Atlantic Large Whale Take Reduction Plan - Comments

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Gear-Marking Requirements for Atlantic Large Whale Take Reduction Plan

Atlantic Large Whale Take Reduction Plan - Comments

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FINAL ENVIRONMENTAL IMPACT STATEMENT,
REGULATORY IMPACT REVIEW, AND FINAL REGULATORY FLEXIBILITY
ANALYSIS
FOR AMENDING
THE ATLANTIC LARGE WHALE TAKE REDUCTION PLAN:
RISK REDUCTION RULE
VOLUME III Appendices

Images collected under MMPA Research permit number MMPA 775-1875 Photo Credit:
NOAA/NEFSC/Christin Khan
National Marine Fisheries Service National Oceanic and Atmospheric Administration
DEPARTMENT OF COMMERCE
Prepared by: NOAA’s National Marine Fisheries Service and Industrial Economics,
Incorporated Final EIS: July 2021
RESPONSIBLE AGENCY:
Assistant Administrator for Fisheries
National Oceanic and Atmospheric Administration
U.S. Department of Commerce Washington, DC 20235

VOLUME III
TABLE OF CONTENTS
Appendix 7.1 Comment Methods and Summary
Appendix 7.2 Comments from Members of the Take Reduction Team
Appendix 7.3 Comments from the Public Sessions
Appendix 7.4 Form Letter Comments
Appendix 7.5 Comment Submission List

APPENDIX 7.1
COMMENTS METHODS AND SUMMARY
1. Summary and Methods
NMFS reviewed and considered all written and oral public submissions received during the
DEIS public review and comment periods. NMFS’ goal was to identify substantive comments to
be addressed in this FEIS, and to categorize those comments based on topics and issues. This
categorization scheme allowed subject matter experts to review comments directly related to
their areas of expertise, and allowed NMFS to generate summary statistics based on the topics
and issues addressed in each of the comments.
All unique public comment submissions received on the Proposed Rule and DEIS can be viewed
online at http://www.regulations.gov by typing “NOAA-NMFS-2020-0031” in the search field.
Due to the vast number of form letters and form letter variants, at least one of each variant was
posted but many near duplicate comments were received but not posted.

2. Methodology
A. Terminology
The following terminology is used throughout this appendix:
•

•
•
•
•

•

Submission: The entire content submitted by a single person or group at a single time.
For example, a 10-page letter from a citizen, an email with a portable document format
(PDF) attachment, and a transcript of an oral comment given at a public hearing meeting
were each considered a submission.
Form letter submission: Pre-written text provided by an interest group for submission by
individuals. Due to the large number of submissions, any text with at least a 70 percent
match was considered a form letter.
Variant form letter submission: A submission that is based on, but does not match the
pre-written form letter template or text prepared by the interest group (less than 70 percent
match), but the substantive comments are either the same or a subset of a form letter).
Unique submission: A submission that is not based on any identified form letter text.
Comment: A specific statement within a submission that expresses a sender’s specific
point of view, concern, question, or suggestion. A comment can consist of more than once
sentence, as long as those grouped sentences express a single idea. One submission may
contain many comments.
Substantive Comment: DEIS submissions were reviewed to identify and categorize
“substantive” comments. To be substantive, a comment must meet both of the following
criteria:
o Related to the Proposed Rule and DEIS: To be substantive, a comment must relate
to Atlantic Large Whale Take Reduction Plan. Comments outside the scope of the
plan, such as those addressing vessel strikes or climate change, were not
considered substantive.

o Consisting of more than simple opinion: This criterion requires that substantive
comments provide information to help NMFS prepare the FEIS by providing
some level of support or basis for the commenter’s position, a specific suggestion,
or some indication of issues the commenter believes are significant. As an
example, “NMFS should do everything it can to protect whales” was not
considered substantive, but “NMFS should create immediate fishing closures in
areas where right whales are most prevalent” was considered substantive.
o Substantive comments include those that suggest the DEIS analysis is flawed in a
specific way, or suggest alternate information than what is presented in the DEIS.
These comments challenge or question the accuracy of information presented, the
adequacy, methodology or assumptions of the analysis presented in the DEIS
(with supporting rationale), present new information relevant to the analysis,
present reasonable alternatives (including mitigation) other than those analyzed in
the document, or corrects factual errors in the content of the DEIS. Substantive
comments could also provide information in support of the analysis presented in
the DEIS

B. Comment Submittal
Federal agencies, state/local/tribal governments, fishermen, and the general public had the
opportunity to provide comments on the DEIS and SEIS via the following mechanisms:
•
•
•

Electronic submissions via www.Regulations.gov on docket number NOAA-NMFS2020-0031
Electronic submissions via email to a NMFS representative
Comments submitted verbally at each of the public information sessions and hearings
(See Chapter 1 of the FEIS for a description of the sessions and Appendix 1.2 for
transcripts)

All submissions initially provided at public information sessions and public hearings were
assigned a unique identification number. That unique ID was retained throughout the comment
management process.

C. Comment Processing
NMFS reviewed all of the comments submitted through public information sessions and
hearings, via email, and submitted through Regulations.gov. The Regulations.gov submissions
were provided in text format and as attachments in PDF, Microsoft Word, or jpg formats. Text
from these comments were copied from the original format into a single Google Sheets
spreadsheet that served as the primary submission database. Where the submission included
multiple comments, the submissions were broken up into several entries. The submission
database also included information about each submission, including the submitter’s name,
affiliation, and overall disposition of the sender toward the Proposed Rule.

3. Substantive Comments Review and Analysis
Each submission was reviewed to identify substantive comments (as defined in above). Each
substantive comment was entered into another Google Sheets spreadsheet that served as the
master substantive comment database with its comment number identifier. Substantive
comments were extracted from the submission text and assigned to a topic and subtopic. Each
substantive comment was assigned to one or more subject matter experts for review and
response, and responses were reviewed by multiple subject matter experts to facilitate FEIS
updates.
NMFS identified a total of 187 distinct substantive comments that were within the scope of
the current rulemaking. The majority of these comments were submitted by multiple people,
some of them by thousands of people. See Chapter 1, Table 1.7 for a list of the unique topics and
subtopics submitted. Comment Submission Summary
NMFS received 171,213 submissions on the Proposed Rule and the Draft Environmental
Impact Statement (DEIS) through the comment portal.
Of these, six submissions from Non-Governmental Organizations were entered as counting
for more than one comment: Pew Charitable Trusts: 47,699; Conservation Law Foundation:
1,192; Humane Society of the U.S: 15,922; Oceana: 18,440; Natural Resources Defense Council:
33,045; Riverkeepers: 4.
Five additional submissions from Non-Governmental Organizations (NGO) were entered as
one comment, but had thousands of signatures attached: International Fund for Animal Welfare:
31,912; Whale and Dolphin Conservation: 3,629; Environment America: 11,727; Center for
Biological Diversity: 26,594; Environmental Action: 11,135. All of the above-referenced
submissions, which represent up to 201,269 people, were in favor of stronger regulations to
protect North Atlantic right whales.
We also received comments through public information sessions and hearings. See Chapter 1
of the FEIS for a breakdown of webinar attendees by date. A total of 211 individuals provided
comments through these informational sessions and public hearings, some of them on multiple
days. Of these, at least 58 identified themselves as fishermen on the webinars.
NMFS received 53,585 individual submissions uploaded through the Regulations.gov portal,
as well as 9 comments emailed directly to our office, of which 3 were also posted on
Regulations.gov. After running a deduplication analysis, 1,360 submissions were posted on
Regulations.gov. From this group, NMFS identified additional form letter submissions not
detected by the deduplication analysis, and, after reviewing the entries for double submissions or
submissions of supporting documentation separate from the original submission, we received
approximately 1,076 unique written submissions that were not clearly part of a coordinated
campaign. While repeated language was identified in a small number of these submissions,
evidence generally did not suggest that these submissions were form letters, or pre-written text
provided by an interest group for submission by individuals. A summary table of unique
submissions by stakeholder groups is below.

Table 7-1: Written DEIS Submissions by Stakeholder Group
Stakeholder Group

Number of Unique Submissions

Academic/Scientific

28

Federal Agencies

2

Federal Resource Managers

1

Fishery Management Associations

2

Fishing Industry Groups

10

Manufacturers

2

Non-Governmental Organizations

71

Public

617

Fishermen

300

Other Industry

2

State Fishery Resource Managers

7

State/Federal Legislators

32

Towns

2

Total

1076

4. Comments Submitted Through Regulations.Gov and Email
Submissions were reviewed to determine the overall disposition of the provider toward the
proposed Project. Based on this review, dispositions of the 1,076 unique submissions is as
follows:
•
•
•
•

Supports some or all of Proposed Rule: 647 (60.13 percent)
Opposes some or all of Proposed Rule: 352 (32.71 percent)
Supports regulation to protect whales, but would like to see this one withdrawn, and for
NMFS to start over: 45 (4.18 percent)
Neutral (no distinct disposition/provided suggestions): 34 (3.16 percent)

Table 7-2 lists the name and agency or organization affiliation (if any) for each person or
group that provided a unique substantive comment during the DEIS comment period submitted
through Regulations.gov. These comments are all available in full on Regulations.gov under the
docket number NOAA-NMFS-2020-0031.
Some individuals submitted more than one unique comment, and some submitted duplicate
comments, which are noted in column 3. In the cases in which more than one person or entity
was represented by the comment, that is noted in the table below. Please note, this list does not
include bulk submissions or form letters and variants on form letters, some of which were
posted, so numbering below is not consecutive. For those, see Table 7-3 below.

Table 7-2 Posted Submissions
Submission ID

Name of Submitter(s)

Organization

7

John Nicastro

8

Harvey Yenkinson

9

Joe Mama

10

Anonymous

11

Paige Rollerson

12

John Williams

13

Robert Rutkowski

14

James Fletcher

15

Seana Parker-Dalton

16

Anonymous

17

Desert Star Systems LLC

18

Anonymous

20

Marc Palombo

21

Mary Branch

22

Mary Branch

23

Mary Branch

24

Richard Lasseter

25

Anonymous

25

Anonymous

26

Zachary Plopper

Wildcoast.org

27

Annalisa Tuel

Turtle Island Restoration Network

28

Naomi Klass

29

Cecyl Ivie

30

Carrington Petras

31

Jarod Bray

32

Katherine Labella

33

Jarod Bray

34

Traci Terrick

36

Jacqueline Mills

38

Kristen Bossert

39

Linda Hilf

40

Anonymous

41

Michael Ciocci

42

Gail Repesnek

43

Kathleen Byrnes

44

Jean Public

Oceana

Submission ID

Name of Submitter(s)

45

Robert McLean

46

Thomas Simmons

47

Leah Rubin

48

Erin Meyer-Gutbrod

49

Robert Boenish

51

Alex Costidas

52

Jamie Daniels

53

Donna Scalcione

54

Richard Stockwell

55

Darcy Silver

56

Jacqueline Mills

57

Christin Lawrence

58

Menin Sur Gaey

59

Michael Kapp

61

Ann Lindberg

62

Charles Barans

63

Meg Hoyle

65

Carol Hill

67

Antonio Riviera

74

Mark Perry

76

Robert Brown

77

Janet Heinle

78

Sandra Iseman

79

Jonathan Mitchell

80

Leo R. Sandy

82

Doreen Tignanelli

83

Heidi Ahlstrand

86

Mary Walls

87

Sonya Chan

88

Robin Pappas

92

Randy Sailer

93

JoAnne Larsen

94

Michael Stock

96

Alan Bosch

97

Jeff Fromberg

98

Dwight Marshall

100

Gilles Dubois

Organization

Florida Oceanographic Society

Submission ID

Name of Submitter(s)

101

Bonnie MacRaith

102

Margo Salone

104

Dan Fogarty

105

Margo Wyse

106

Leslie Lazzo

108

Linda Badham

109

Richard Riggs

110

Susan Krause

111

Richard Clark

112

Robert Reed

114

Susan Weems

115

Dorothy Blake

116

Donna Delisis

117

Pamela Rogers

121

Sally Jacques

122

Doug Krause

123

Judi Calvi

124

Sylvana Arguello

125

Georgia Shankel

129

Julia Couchman

130

Kendrick MIiller

132

Nancy Schultz

134

John Mattinen

137

Annie Vola

138

Rob Jursa

143

Anonymous

144

Lynn Wilbur

146

Laura Blanchette

147

Chris Ottosen

148

Marguery Lee Zucker

149

Karen Anderson

150

Anonymous

156

Garry S. Taroli.

158

Emily Dickinson-Adams

159

Marguery Lee Zucker

160

Anonymous

161

Andrea Wolfson

Organization

IOP Turtle Team

Submission ID

Name of Submitter(s)

162

Sue Harris

163

Tony Vecchio

164

Peter Broderson

167

Jacqueline Wolfe

168

Carol Harris

169

Robin Morton

170

Robert Badcock

171

Charles Greene

172

Evelyn Coltman

173

Dana Oholorogg

174

Sheila Morgan

175

Alan McConigly

176

Carl Oerke Jr

178

Anthony Montapert

179

Alice Jena

180

Michael and Denise Resnick

181

Constance Garcia-Barrio

182

Leslene Dunn

183

Melanie Wentz

184

Rochelle Ellison

186

Charles Barker

188

Deborah Voves

190

Kathi Ridgway

191

Sarah Sowambur

192

Delphine Holman

193

Joanne Lingerfelt

194

Clifford Chapman

195

Lindsay Schoen Lane

196

Diana Douglas

197

Mary Moderacki

198

Laraine Lebron

199

Dan Richman

200

Tamara Rakic

201

Mary Dosch

202

Holly Rose

203

Elizabeth Garratt

204

Lotte Larsson

Organization

Jacksonville Zoo

Island Turtle Team

Submission ID

Name of Submitter(s)

Organization

205

Pam Mettier

206

Linda Carroll

207

Blake Wu

208

Alex Costidis

209

Scott Barton

210

BIll McClellan

211

Scott Melick

212

Raul.M. Grijalve, Chair

214

Kelli Reynolds

216

Sigrid Ramos

218

Maria Lopes

228

Mary Pringle

229

Marilyn Evenson

230

Karen Kindel

231

Jasmine Littleson

233

Victoria Milne

234

Lyra Brennan, Assistant Director

238

John Dziak

240

Nicole Downing

241

Ann Oliver

243

Jenne Sindoni

249

Margaret Halbeisen

251

Jasmine Davidson

253

Peter Anonymous

257

Deanna Turner

266

Anonymous

267

Anonymous

269

David Dow

275

Vincent McKay

277

Anca Vlasopolos

279

Debbie Brooks

280

Paula Brady

286

Martita Lopez

287

Sheila Ward

288

Mary Shabbott

290

Karen Murphy

Take Reduction Team, large whale necropsy team
Take Reduction Team, large whale necropsy lead, Northeast Implementation Team
House Committee on Natural Resources

SC Marine Mammal Stranding Network on Isle of
Palms and Marine Turtle Stranding & Salvage
Network

Mass Audubon's Coastal Waterbird Program

Submission ID

Name of Submitter(s)

Organization

291

Sheryl Gilmore, Bird Family, Gilmore Family,
Vincent Ianuzzi-Sucich, James Tornetta, Natalia
Sawicka, Lillian Westerberg, Edward IanuzziSucich, Ellis Kuester-Ha, Marilena Hall

Acadia Institute of Oceanography

292

Judith Nichols

298

Delphine Reynier

303

Donna Mulvey

310

Margaret Breen

315

James Cooke

324

Karen O'Brien

325

Jeannie Latimer

326

Bette Holland

330

Courtney Zyeda Cole

331

K Griffin

335

Charisse Sproha

336

Katie Stalcup

337

Pat Petro

338

Rachel Sullivan-Lord

339

Vivian Gharakhani

340

Joe Massey

341

Catherine Uden

343

Diana Harding

344

Charlotte Griffith

345

Stephanie Gualtieri

347

Krivo, Maureen

348

Leticia Cruz

349

Shoshana Osofsky

351

Elizabeth Jolin

352

Missy Kendrick

353

Nathan Iyer

354

Darcee Vorndran

355

Derek Brown

357

Bobby Davenport

359

Sierra Lefebvre

360

Arch Lamb

361

Charles H. McMillan, III and Katherine Moore

363

Betsy Smith

364

Claire Sefiane

Calvin Project

Georgia Conservancy

Bay and Reef Tourism Company

Georgia Conservancy

Submission ID

Name of Submitter(s)

Organization

369

Anonymous Anonymous

370

Barbara Bradley

375

Rachel Bramson

376

Wendy Drexler

377

John J Munro III

378

Suzanne Besaw

381

Joanne Ravgiala

383

Doug Teper

384

Bryce Lehner

385

Isaac Wolfson

386

Conner McGarry

387

Jozef Zekanoski

391

Rosemarie Santiesteban

392

Al Segars

393

Kate McPherson

394

Kevin Rose

395

Teri Anulewicz

Georgia State Representative House District 42

396

Stacey Evans

Georgia State Representative House District 57

397

Daly, Tom

399

Gary Fowler

400

Mark Palaez

401

Erick Allen

402

[email protected]

403

Anonymous Anonymous

405

Ines Nedelcovic

406

Jessica Howell-Edwards

409

Mary Townsend

410

Rep Mary Margaret Oliver

414

Maine Lobsterman

415

Diane English

416

Bev Lips

417

Sarah Austin

418

Anthony Cusimano

419

Charles Talley

420

John David Stevens

421

Wendy Van Dyke

435

Marga Frantz

Georgia State Representative House District 40

Georgia State Representative House District 82

Submission ID

Name of Submitter(s)

Organization

436

William Skelly

437

Logan Spratt

438

Anonymous Anonymous

439

Daniell Gilbert

447

Candis Whitney

Amelia Island Conservation Network

448

Rachel Silverstein, Ph.D,

Miami Waterkeeper

449

Karen Swain

450

Hermina Glass-Hill

Susie King Taylor Women's Institute and Ecology
Center and its Coastal Black Women's Coastal
Memory & Conservation Collective in coastal
Georgia

452

Michael Mihalas

North Carolina Council of Trout Unlimited

453

Sandra Fernandez-Achenbach

454

Nancy Blastos

455

Alex Petersen

456

Alison Zyla

457

Joyce Morrison

458

Jeanette Spreemann

459

Joann Ramos

460

Paulette Walton Butler

461

Krista Early

Clean Water Advocate Environment North Carolina

462

Robert Trammel

Trammell Law Firm, GA

463

Alexandra Kearns, Chair

Earthkeeper

464

Jean Dempsey

465

Nancy Daves

467

Nora Schaper

469

Jenifer Hilburn

471

Fernald, Bruce

482

I.J. DuBois

489

Michael Hawkey

500

Glenda Beal

510

Kimberly S. Jackson

511

Barbara Christopher

512

Anonymous

513

Jarod Bray

514

Jared Krivo

515

Heather Bowman Cutway

516

Hayden Hart

Georgia State Senator, District 41

Submission ID

Name of Submitter(s)

517

Eben Nieuwkerk

518

Lee Fisher

520

Gina Fisher

521

Andrew Balser

522

Park Cannon

523

Alan Inzerillo

524

William Morrill

525

Anonymous

528

Anonymous

529

Herman Faulkingham,

532

Alley Blake

533

Gary Libby

534

Justin Vyce

535

Kevin Ritchie

536

Billy Bob Faulkingham

537

Jim O’Connell

538

Charles Johnson

539

Rachel Franks

540

Royce Blackwood

541

Katherine Warden

542

Danette Bordenkircher

543

Sugum Francis

544

Alicia Lancaster

545

J.M.

546

Andrea Sturgeon

547

AJ Bafer

548

Geneviève Nesslage, Chair

549

Anonymous

550

Michael Schierloh

551

Maria Andreatta

552

Rob Pinkham

553

Cathy McPherson

554

Philip Genthner

555

Chris Chipman

556

Mazen Hassan

557

Samuel Sautaux

558

Shawn Howard

Organization

Georgia State Representative House District 58

Atlantic Scientific Review Group

Submission ID

Name of Submitter(s)

559

Rob Pinkham

560

Carl Guyton

561

Jason Joyce

562

Elin Elisofon

563

Gail Bagley

564

Sharanya Majumder

565

Dudley G. Gray

566

Dean Anderson

567

Richard Merrick

568

Matthew Knowlton

569

Najma Zahira

570

Brian Moody

571

Mark Olsen

572

Beth DiGiulio

573

David Devens

574

Chandan Aggarwal

575

Kris Koerber

576

Chris Moore

577

Matthew Skrod

578

John Bruns,

579

Jeremy Rodriguez

580

Michael Hanrahan

581

Troy Lewis

582

Jackson Trahan

583

Scarlette Flores

584

Sydnie Ziegler

585

David Light,

586

Alexandra Dent

587

Volker Poelzl

588

Bryden Wright

589

Micah Anderle

590

Grant Dator

591

Lily Scott

592

Environmental Review, Inc

593

Aurelie Temsamani

594

Maine Lobsterman

595

Emma Elsbecker

Organization

Submission ID

Name of Submitter(s)

Organization

596

Emily Osman

597

Abigail Wiseman

599

Ellen O'Rourke

600

Jim Merryman

602

Eric Lorentzen

603

Meredith LaLumia

604

Kimberly Gilman

605

Richard Osgood

606

Ulysses Lateiner

613

Corina Browarnik

616

Daryl Dunham

617

West Windsor

618

John Todd

619

Mickey Mouse

620

Tyler Norton

621

Joseph DeSalvo

622

Jeff Riccio

623

Barbara Katusha

629

Brenda Frey

639

Danielle Thomas

640

Sam Winchester

642

Michael Kersula

645

Richard Hall

652

Thomas A. Nies

New England Fishery Management Council

653

John Davis and Christine Laporte

Rewilding Institute

654

Daniel J. McKiernan

Massachusetts Division of Marine Resources

655

Paul S. Anderson

Maine Center for Coastal Fisheries

656

Peter Baker, Project Director Conserving Marine
Life, New England and Atlantic Canada The Pew
Charitable Trusts, K. Purcie Bennett-Nickerson,
Attorney Bennett Nickerson Environmental
Consulting, Roger Fleming, Attorney Blue Planet
Strategies

Pew Charitable Trusts, Bennett Nickerson
Environmental Consulting, Blue Planet Strategies

657

26,594 members

Center for Biological Diversity

658

Jennifer Ide

Atlanta City Council

659

Ron Forman, Craig Piper, Roger Germann,
Dennis Pate, Dr. Alistair D.M. Dove, Carrie
Lewis, Jason Patlis, Alan Varsik, Stephen Coan,
Kevin Mills, John Racanelli, Keith Sanford, Kurt

Aquarium Conservation Partnership

Submission ID

Name of Submitter(s)

Organization

Strand, Cynthia Whitbred-Spanoulis, Vikki
Spruill, Daniel Ashe
660

David Kaplan, Esq

Cetacean Society International

661

Rob Pinkham

662

Amy Unzueta

663

Kimberley Beal

664

Lorraine/Paul Mullen,

665

Paige Kurowski

666

William T. McWeeny

667

Bryan Soares

668

Brianna Fenty and 18,440 signatures

Oceana

669

Regina Asmutis-Silvia and Colleen Weiler

Whale and Dolphin Conservation, Take Reduction Team

670

Mary Robichaux

671

Clay Mobley

672

Roderick Throgmorton

673

Rachel Hunt

674

Deborah Williams

675

Thomas Bell

677

Brian Carr

678

Nick Page

679

Heather Denney

680

Kristen Monsell, Erica Fuller, Jane Davenport,
Sharon Young, Keisha Sedlacek

681

Fred Koerber

682

Karie McNickles

683

Taylor Lobster Company

Maine Lobster Dealers’ Association

684

Jamien Hallowell

Maine Lobstermen’s Association Board of Directors

685

Scott Young

686

Sheryle Tamagini

687

Mike Wolowicz

688

Sherman Rich

689

William Nichols

690

Suzanne Hamilton

691

Anna Plotnik

692

Ron Forman, Craig Piper, Roger Germann,
Dennis Pate, Dr. Alistair D.M. Dove, Carrie
Lewis, Jason Patlis, Alan Varsik, Stephen Coan,
Kevin Mills, John Racanelli, Keith Sanford, Kurt

The Calvin Project

Georgia State Representative, House District 48

North Carolina State House District 13

Center for Biological Diversity, Conservation Law
Foundation, Defenders of Wildlife, Humane Society
of the United States, Human Society Legislative Fund

Aquarium Conservation Partnership
Same as 659

Submission ID

Name of Submitter(s)

Organization

Strand, Cynthia Whitbred-Spanoulis, Vikki
Spruill, Daniel Ashe
693

Chris Kelsey

694

Ms. Farrow's 5th graders

695

Mary Todd

696

Sam Wainright

697

Richard A. Wahle, Ph.D

698

Joshua Conover

699

Anonymous

700

Robert Fletcher

701

Peter O. Thomas, Ph.D

Marine Mammal Commission

702

Mary Margaret Oliver

Georgia State Representative House District 82 Same
as 410

703

Michael Jasny

Natural Resources Defense Council

705

Brian Sharp, CT Harry, Dr. Sarah Sharp and
31,912 signatures

International Fund for Animal Welfare

706

Brennan Strong

707

Candis Whitney

708

Scott Barton

Same as 209

710

Charles H. McMillan, III and Katherine Moore

Georgia Conservancy Same as 361

711

S.Rosen

712

Adrienne Sullivan

713

Roger Fleming and R. Zack Klyver

Blue Planet Strategies

714

Alistair D.M. Dove, PhD

Georgia Aquarium

715

Virginia Olsen

Maine Lobstering Union

716

Jacob Thompson

717

Caitlin Trafton,

718

Francine Kershaw, Ph.D

Natural Resources Defense Council

720

Peter O. Thomas, Ph.D.

Marine Mammal Commission Same as 701

721

Samuel Joy

722

David Lemoine

723

Joshua Joyce

724

Derek Lyons

725

Rob Martin

726

Rebekah Hodgson

727

Mark Cheney

728

Claire Atkins-Davis, Sam Perkins, Hartwell
Carson, Emily Sutton, Kemp Burdette

University of Maine Lobster Institute

Catawba Riverkeeper Foundation, Catawba
Riverkeeper, French Broad Riverkeeper, Haw

Submission ID

Name of Submitter(s)

Organization
Riverkeeper, Haw River Assembly, Cape Fear
Riverkeeper, Cape Fear River Watch

729

Thiago Barrett-Pereira

730

Derrick Sibbald

731

Thomas Zoutis

732

Cara Ricciardi

733

David Gilley

734

Robert E. Beal

735

Greg Morris

736

Chris Slay

738

Ian Gibbs

739

Donald Williams

740

Cheri Patterson

741

Hannah Rackliff

742

Lawrence Moffet

744

Elijah Brice,

745

Anonymous

746

Andy Spalding

747

Christopher Lish

748

Anonymous

749

Sue Grist,

750

Katie Lally ,

751

Nick Hynd

752

1,192 CLF Members

753

Paul G. Joy

754

Billy Reid

755

Damian Parkington

756

Will Hargrove

757

Jonathan Norton

758

Wife of a Massachusetts lobsterman

759

Kenneth Murgo

760

Oceana - Sources for Expert Opinion - Part 2

761

Oceana - Sources for Expert Opinion - Part 1

762

Oceana - Sources for Comment Letter - Part 4

763

Anonymous

764

Taylor Strout

765

Oceana - Sources for Comment Letter - Part 3

Atlantic States Marine Fisheries Commission

Coastwise Consulting

New Hampshire Fish and Game Department

Conservation Law Foundation

Submission ID

Name of Submitter(s)

Organization

766

Seth Walker

767

Michael Faulkingham

768

Mara Lyn Leverett

769

Matt Gilley

770

Oceana - Sources for Comment Letter - Part 2

771

Patrick Keliher

772

Oceana - Sources for Comment Letter - Part 1

773

Arlin Alley

774

Karen Tompkins

775

Anonymous

776

Pat Ryan

777

David Travers

778

Ken Nations

779

John Todd

780

Rep. Pricey Harrison (same as 0790)

781

Sereena Knight

782

Andrew Dorr, Town Manager

783

Ryan T Ames

784

attachment from WDC with 3,629 signatures

786

Daniel Johnson

787

Jason SkillinSkillin,

788

Marisol Ballesteros

789

Derek Mallow

Georgia State Representative House District 163

790

Kim Schofield

Georgia State Representative House District 60

791

Sen. David R. Miramant Rep. Joyce “Jay”
McCreight

Maine Senate and House Chairs

792

Al Williams

Georgia State Representative House District 168

793

Welling, Aaron

794

Richard Maximus Strahan

795

Rebecca Theim

796

Andrew Werthmann

797

Pat Doherty

798

Wayne Delano

799

John Rousakis

800

Kimberly Adler -Curley,

801

Scott Swicker

802

Julie A. Albert

Maine Division of Marine Resources

North Carolina State House District 61

Town of Vinalhaven

Whale and Dolphin Conservation

WHALE SAFE USA, MAN AGAINST XTINCTION

City Council, Wisconsin

Oceana

Marine Resource Council

Submission ID

Name of Submitter(s)

Organization

803

Tim Werner

UMass Boston

804

Glenn Compton

ManaSota-88

805

Farris, Cameron

806

Mark Overbaugh

807

Joseph McDonald

808

Anonymous

809

Elijah Joyce

810

Jacqueline Mills

811

Dustin Delano

812

Michael Hunt

815

Anonymous

816

Emily Martin

817

Cole Baines

818

Steve Blackledge, Ben Hellerstein, Anya Fetcher,
Michaela Morris, and 11,727 signatures

819

Carrie Faulkingham

820

Anonymous

821

CM A

822

Derek Colbeth

823

Anonymous

824

Kate-Lyn Knight

825

F/V Carol Ann

826

Peter Cutting

827

Jeffrey Libby

829

Gregory J. Mataronas

830

Christopher Pidden

831

Susan Hutchinson

832

Nikole Ordway

833

Anonymous

834

Amelia Joy

835

Dylan Fernandes, Tram Nguyen, Steven G.
Xiarhos, Michelle M. DuBois, Steve Owens,
Brian W. Murray, Christine Barber, Michael P.
Kushmerek, Paul A. Schmid III, Lindsay
Sabadosa, Erika Uyterhoeven, Kay Khan, Mindy
Domb, Julian Cyr, Sean Garballey, Michael S.
Day, Carlos Gonzalez, Natalie Higgins, Michael
Moore, Kip Diggs, Susan Moran, Paul McMurtry,
Antonio F. D. Cabral, Jack Patrick Lewis, Mike
Connolly

Environment America

Maine Division of Marine Resources (Comments on
Biological Opinion)

Force-E Scuba

Massachusetts State Legislators

Submission ID

Name of Submitter(s)

Organization

836

Nicholas Heal

837

Henry Whetham

838

Nancy Vinson

839

I.J. DuBois

840

Amy Murphy,

841

Henry MacVane

842

Kyle Nichols

843

Chris Tucker

844

Travis Atwood

845

David Myrick

846

Daniel Brooks

847

Anonymous

848

Jeanne Bradbury

849

Dr. Robert Kelly Vance

850

John Kinsella

851

American Clean Power

American Clean Power

852

David Borden

Atlantic Offshore Lobstermen's Association

853

Mattie Whitesell

854

Anonymous

855

Penny Lawson Hackett,

856

Andrew Applegate

857

Anonymous

858

Pat Doherty

859

Jeffrey Solow

860

Phillip Null

861

Keith Rittmaster

862

Karen Francoeur

863

Bret Sparks

864

David Thomas

865

Ben Watson

866

Judi Gavalas

867

David Dow

868

Brandon Burr

869

Samantha Whitcraft

870

Karen King

871

Jarod Bray

872

Bob Ottosen

Bonehenge Whale Center

Fisheries Survival Fund

Georgia State Senate

Sea of Change Foundation

Submission ID

Name of Submitter(s)

Organization

873

Brandie Deal

874

Dr Kristi Dunn

876

Deborah Ravel

877

Mary Edna Fraser

878

Kyle Hudick

879

Bernadette Sullivan-Ericson

880

Angela Wilson

881

Bambie Mazer

882

Christa Hayes

Hayes Environmental Consulting

883

Charles McMillan and Katherine Moore

Georgia Conservancy Same as 361

884

Linda Fraser

885

Sophie Priebe

886

Bob Marshburn

887

Priscilla Guiney

888

Ashley Lucero

889

Jacob Hudnall

890

William Schlesinger

891

Elizabeth Day

892

Samuel Borne

893

David Ashton

894

Albert Knowlton

895

Shane Carter

896

Emily Q

897

Nat Hussey

898

Michael Moore

899

Anonymous

900

Steele, Gary

901

Patrice McCarron, Executive Director

902

BettyAnn Benware

903

Tyler Hodgdon

904

Caroline Corbally

905

Rachel Youens

906

Erika Lebling

907

William Clayton

908

CJ O'Brien

909

Cindy Donnell

Edisto Island Preservation Alliance

Maine Lobstermen's Association

Submission ID

Name of Submitter(s)

Organization

910

Vicki Love, Tracy Tippin, Paige Konger, Nichole
Matteus

Blue-Green Connections Board of Directors

911

David Kaselauskas

912

Stephen Russell

913

Roy Taylor, President

914

Anonymous

915

Andrea Wotan

916

Ethridge Griffin

917

Jen Lomberk

918

Sarah Moorehead

919

Dudley Greeley

920

Rick Bogle

921

Diane Koceja

922

Steve Holzman

923

Ryan Carroll

924

S. Young

925

Gardner Berry

926

Glenace Breton

927

Anonymous

928

Christina Warrington

929

Pat Pesko

930

Dana Wilson

931

Bridget Childers

932

Diana Reiss

933

Julie Henretty

934

Bethany Barton

935

Galen Turner

936

Luke Snow

937

Tom Cloutier

938

anonymous

939

Bruce Gridley

940

Jeff Putnam

941

David Earl

942

David Earl

943

Anonymous

944

Ian Quartin

945

Martha Donnell

Greening Georgia The Environmental Caucus of the
Democratic Party of Georgia

Matanzas Riverkeeper

Hunter College

CLEO Institute

Submission ID

Name of Submitter(s)

946

Zach Lunt

947

Joseph Allen

948

Anonymous

949

Eleanor Rhangos

950

George Dow

951

Kathy Marhefka

952

Carlie Cooper

953

Hancock Point Kayak Tours and Schoodic Maine
Guide

954

Anonymous

955

Nathanial Snow

956

Steve Tasheff

957

Eve Lameyer

958

Ben Hardy

959

Theresa Mercer

960

Lea Schroeder

961

Anonymous

962

Robert Simmons

963

Anonymous

964

Kevin Glover

965

Jack Merrill Lobsterman

966

John Moore

967

Jeff Chanton

968

Julia Illar

969

Kiersten DeLong

970

William Covert

971

John Jordan

973

Tim Walsh

974

Nunan, Chris

975

Ben Weed

976

Eric Feroldi

977

Eric Meschino

978

Griffin Tierney

979

Rachel Broumas

980

Amanda Rea

981

Amy Knowlton, Mark Baumgartner, PhD, Moira
Brown, PhD, Chris Clark, PhD, Peter Corkeron,
PhD, Alexander M. Costidis, PhD, Philip
Hamilton, Steve Katona, Scott Kraus, Scott

Organization

Hancock Point Kayak Tours and Schoodic Maine
Guide

Florida State University

Andersen Cabot Center, New England Aquarium,
Woods Hole Oceanographic Institution, Cornell
University, Virginia Aquarium and Marine Science
Center, College of the Atlantic, UMASS-Boston,

Submission ID

Name of Submitter(s)

Organization

Landry, Stormy Mayo, William McLellan,
Michael Moore, Doug Nowacek, Heather Pettis,
Andy Read, Nick Record Jooke Robbins,
Rosalind Rolland, Brian Sharp, Sarah Sharp, Rob
Schick, Sean Todd, Tim Werner

Duke University, Bigelow Laboratory, Center for
Coastal Studies, University of North CarolinaWilmington, International Fund for Animal Welfare

982

Nora Mouer

983

Briar Ownby-Connolly

984

Julianna Kowal

985

Cassady Whaley

986

Anonymous

987

Mike Jarbeau

988

Takiah A

989

arrett Drake

990

Elizabeth Tautges

991

Anonymous

992

Mike Anderson

993

Michael Herb

994

Shari Anker

995

Alex Brown

996

Robert Donnell

997

Shelly Johnson

999

Holly Masterson

1000

Marnie Crowell

1001

Julia Pickard

1002

Judy Wang

1003

Shelley McGowan

1004

Dayvion Wright

1005

Nick Lemieux

1006

Ed Hutchins

1007

Maiah Clarke

1008

Timesha Ware

1009

Jordan Dishmon

1010

Jaylen Sewell

1011

Savannah Clax

1012

Sydney Madden

1013

Paula Martine

1014

Taylor Smith

1015

Jayme Love

Save the Bay, Narragansett

Conservation Alliance of St. Lucie County

Savannah Real Producers

Submission ID

Name of Submitter(s)

1016

Anonymous

1017

Lillian Saul

1019

Lady Volmar

1020

Rep Karla Drenner

1021

Marjorie Bray

1022

David W. Lunt

1023

William Burns

1024

Ashly Rivera

1025

F Fluker,

1026

Hugh Gilley

1027

Tela C. Fields-Reynolds

1028

Johnny McCarthy

1029

Bailey Bridge

1030

Erianna Hammond

1031

Mark Bradstreet

1032

Maya Sze

1033

Kaila Lenerd

1034

Bryan Lawlor

1035

Mia Arredondo

1036

Amyia James

1037

Rich Lodge

1038

Alice Keyes

1039

Sonny Beal

1040

Darian Braddy

1041

John Pappalardo, CEO

1042

David Bailey

1043

Daniel Kelleher

1044

Lance Kammerud

1045

Jeffrey Thurlow Jr

1046

Antje Fray

1047

Charles Smith

1048

Mary Walls

1049

Melanie Wentz

1050

Beth Casoni, Executive Director

1051

Alan Donahue

1052

Anita Dranetz

1053

John Glowa

Organization

Georgia State Representative District 85

Environment America Research & Policy Center

Cape Cod Commercial Fishermen's Alliance

Massachusetts Lobstermen's Association

Submission ID

Name of Submitter(s)

Organization

1054

Meryle A. Korn

1055

Jonathan Mitchell

1056

Dawn Miller-Walker

1057

Tonia Burk

1058

15,922 signatures

Humane Society of the U.S. and Human Society
Legal Fund

1059

Cale Jaffe

Law School of UVA

1060

Kate Hale Wilson

1061

Christina Diebold

1062

Anna Drummond

1063

Barbara Harper

1064

Stephen Russell

1066

Walter Willey IV

1067

Linda Badham

1068

Quinn Josephine O'Connor

1069

Arnold Francis Jr

1070

Claire Robbins

1071

Thomas Tomkiewicz

1072

Isaac Dworsky

1073

Drew Martin

1074

Sharon Kaplan

1075

Anonymous

1076

Patricia Rand

1077

LaVive Kiely

1078

Kyle Milan

1079

Anonymous

1080

Clay Davidson

1081

Jerry Banks

1082

Elizabeth Mostov

1083

Valory Mitchell

1084

Kristin Yates

1085

Yvonne Cabrales

1086

Helene Frankel

1087

Kathleen Lentz

1088

Elaine Becker

1089

Simardeep Kaur

1090

Michael Conn

Science Eye/Environmental Conservation
Organization

The Turtle Island Restoration Network

The Loxahatchee Group of the Sierra Club

Surfrider Foundation Georgia

Submission ID

Name of Submitter(s)

Organization

1091

Jim Steitz

1092

Anonymous

1093

Anonymous

1094

Peter Jockel

1095

Dan Fisher

1096

Erik Hansen

1097

John Hobby

1098

Susan Downes-Borko

1099

Krissa Schandelmaier

1100

Ardis Wood

1101

Alexa LoMonaco

1102

Justin Papkee

1103

Dan Herb

1104

Eric Knight

1105

Laurin Brooks

1106

Glen Anderson

1107

Ethan Swergold

1108

Anonymous

1109

Miss Long's second grade class

1110

Diana Churchill

1111

Jane Fraser

1112

Janet Lynch

1113

Steve Englebright

1114

Faye Anderson

1115

Jacqueline Bort

1116

Michaela Morris

Environment America

1117

Dean Moss

Port Royal Sound Foundation

1118

Preston Robertson

Florida Wildlife Federation

1119

Amanda Cotton

Amanda Cotton Photo

1120

Gene Bergson

Blue Harvest

1121

Stuart Pimm

Doris Duke Chair of Conservation at Duke University

1122

John Ernst

Mayor of the City of Brookhaven, GA

1123

Rep Betsy Holland

Georgia State Representative

1124

Rep Debbie Buckner

Georgia State Representative

1125

Candis Whitney

Amelia Island Conservation Network (COPY of 447)

1126

David Cousens

Barnstable Community Innovation School in
Hyannis, MA

NY State Assembly Committee on Environmental
Conservation

Submission ID

Name of Submitter(s)

Organization

1127

Dawn Euer

State Senator of Rhode Island

1128

Krista Tripp

1129

Sen. Julie Mayfield

1130

Katie Stanovich

1131

Cara Nonovan

1132

Mariah Newman

1133

Bridget Collins

1134

Lucy Palmer

1135

Katrina Morris and Connor Walsh

1136

Jon Adams

1137

Brian Meade

1138

Jillian Bjourn-Caron

1139

Olivia Castro

1140

Anna Morris

1141

Meghan Donovan

1142

Steve Rosen

1143

Adriana Nunez

1144

Lucas Cates

1145

Greg Perkins

1146

Daniel Whalen

1147

Allen Joshua

1148

Anonymous

1149

Jordan Drouin

1150

Justin Dunbar

1151

Cody Lunt

1152

Chris Martin

1153

Adriene David

1154

Donald Young

1155

Susan Steinhauser

1156

Connor Dennison

1157

Zach Miller

1158

Ann Arthurs

1159

Shelley Wigglesworth

1160

Sabrina Commisso

1161

Heidi Ahlstrand

1162

Anonymous

1163

Diana Forman

North Carolina State Senator

Sea Turtle Preservation Society

Submission ID

Name of Submitter(s)

1164

Robert Baines

1165

Jeffrey Riccio

1166

John Drouin

1167

Ian Lussier,

1168

Chris Scola

1169

Anonymous

1170

Anonymous

1171

Anonymous

1172

Anonymous

1173

Anonymous

1174

Anonymous

1175

William Rossiter

1176

Joshua Todd

1177

Jack Cunningham

1178

Dustin Emery

1179

Jeremy Holmes

1180

Daniel Andrews

1181

Mike Walsh

1182

Erick Harjula

1183

Lynda Walsh

1184

Jeffrey Alley

1185

George Nader

1186

Jeffrey Conant

1187

Eric Jones

1188

Stuart Jones

1189

Stuart Jones

1190

Dr. Eric Keen, Professor of Environmental
Studies

1191

Jacob Watt

1192

Brian Gordius

1193

Phil Odom

1194

Matt Clemons

1195

Rick Moody

1196

Jennifer Myers

1197

Alexander Varner

1198

Grace Diemand

1199

Caliegh D,]

Organization

NY4WHALES

Marshfield Commercial Fisherman's Association

Sewanee: The University of the South Science;
Director, North Coast Cetacean Society; Research
Biologist, Marine Ecology & Telemetry Research

Submission ID

Name of Submitter(s)

1200

Scott Kraus

1201

Pam Magidson

1202

Andrew Thomas

1203

Shane Hatch

1204

Shane Hatch

1205

Leah Weisburd

1206

Anonymous

1207

Philip Graitcer

1208

Richard Smith

1209

Peter Barton

1210

James Clemons

1211

Brenna Sowder

1212

Phillip Thomas

1213

Craig Lazaro

1214

Kitty Hugenschmidt

1215

Mary Kramek

1216

Anonymous

1216

Anonymous

1217

Martie Crone,

1218

Anonymous

1219

Chad Mahoney

1220

Ira Miller

1221

Raymond Weed

1222

Hunt Brown

1223

Sydney Jones

1224

Liz Cook

1225

Kacey Morris

1226

Julie Hansen

1227

Cathy Kristofferson

1228

Jack Merrill

1229

Ellen Bunker

1230

Darrell Fossett

1231

Zach Donnell

1232

Ismael Cervantes

1233

Loretta Lehman

1234

Johanna Finnegan-Topitzer,

Organization

Amelia Island Right Whale Action Group, Sierra
Club of Nassau County

Wright State University

Submission ID

Name of Submitter(s)

1235

Kelly Westkaemper

1236

Peter E. Brodeur

1237

Jessica Dickens

1238

Ron Patuto, President

1239

Anonymous

1240

Sarah Lazaro

1241

Mike Moros

1242

Christopher Urquhart

1243

Jennifer Hickey

1244

Kathy Khoshfahm

1245

Beverly Greenwold

1246

Becky Johns

1247

Anonymous

1248

Anonymous

1249

Anonymous

1250

Anonymous

1251

Tucker Simpson

1252

C. Kramer

1253

Austin Schoppee

1254

Jason Mitschele

1255

Nicolás Macri

1256

Tony Hooper

1257

Anonymous

1258

Zach Whitener

1259

Lillian Wu

1260

Andy Bean

1261

Amy R. Knowlton and Kelly A. Kryc, Ph.D.

1262

Ryan Irving

1263

Michael Floyd

1263

Michael G. Floyd

1264

Matt Samuels

1265

Josh Radford

1266

Anonymous

1267

James Sturks

1268

Halle Troadec

1269

Jennifer Taylor

1270

Anonymous

Organization

Lobster Express

New England Aquarium

Submission ID

Name of Submitter(s)

Organization

1271

Tyler Bemis

1272

Charles Smith

1273

Margaret Gallerani

1274

Kathleen Sullivan

1275

Ryan Dorr

1276

Steve Gilbert,

1277

Maggie Woodward

1278

Edward Pontius

1279

Jessica Daniels

1280

Barbara Skapa

1281

Pat Doherty

1282

Anonymous

1283

Stephen Ross

1284

Ken Lindeman, Ph.D

Florida Institute of Technology

1285

Pamela Lyons Gromen

Wild Oceans

1286

Olaf Aprans

Massachusetts Lobstermen’s Survival Fund

1287

Joseph McDonald

1288

Truck Carlson, Program Coordinator

1289

Curt Brown

1290

Susan Millward

1291

Virginia Welles

1292

Frank Thompson

1293

Sadie Samuels

1294

Rep. Deborah Butler

1295

Brandon Klein

1296

Megan Stolen

1297

Nathaniel Lane

1298

Julie Ferreira, Nassau County FL Sierra Club
Chairperson

1299

Lobster Inc.

1300

Marcia Morey

1301

Ted Will

Georgia Department of Natural Resources, Wildlife
Resources Division

1302

Timothy Timmermann Director, Office of
Environmental Review

Environmental Protection Agency

1303

Charles Ingalls

1304

Andrew Pellechia

Veterans for Clean Water Program, Savannah
Riverkeeper

Animal Welfare Institute

North Carolina State Representative

Amelia Island Right Whale Action Group

Submission ID

Name of Submitter(s)

Organization

1305

Jackie Odell, Executive Director

Northeast Seafood Coalition

1306

Thom Willey

1307

Kevin Tozier

1308

Jeremy Gragert

1309

Anonymous

1315

Annie Tselikis Executive Director

1316

Robert Ingalls

1317

Kenneth L. Crowell, Ph.D.

1318

Julie Eaton

1319

F/V Anvil

1320

Irene Arpayoglou

1321

Pearson Wolk

1322

Cameron Murphy

1323

Stuart Jones

1324

Dianne Matukaitis Brown & Kathleen
McQuiggan, W2O Co-Chairs; Jennifer Goldstein
& Heather Tausig, W2O Marine Animal
Protection Co-Chairs

1324

Attachment, Women Working for Oceans

1325

Michelle Muniz

1326

Timothy Whitehouse, Executive Director

1327

Conor O'Donnell

1328

Jefferson Bolin

1329

Jared Golden Member of Congress Chellie
Pingree Member of Congress Susan M. Collins
United States Senator Angus S. King, Jr. United
States Senator

1330

Rosemarie Santiesteban

1331

Frank Dame, CEO

Clearwater Marine Aquarium

1332

Alice Keyes

One Hundred Miles

1333

Attachment with 33,045 commenters

Natural Resources Defense Council

1334

Melissa L. Whaling, Science & Policy Associate

Southern Environmental Law Center

1334

Sierra B. Weaver, Senior Attorney Southern
Environmental Law Center Melissa L. Whaling,
Science & Policy Associate Southern
Environmental Law Center

N.C. Conservation Network, N.C. Wildlife
Federation, Savannah Riverkeeper, S.C. Coastal
Conservation League, S.C. Sierra Club, S.C. Wildlife
Federation, Altamaha Coastkeeper, Brunswick
Environmental Action Team, Glynn Environmental
Coalition, Initiative to Protect Jekyll Island, Ogeechee
Riverkeeper, One Hundred Miles, St. Marys
EarthKeepers, and Florida Wildlife Federation,

1335

Kathleen Billings Town Manager

Town of Stonington

1336

Chris Dold Chief Zoological Officer

Sea World

City Council, Eau Claire, Wisconsin

Maine Lobster Dealers’ Association

Women Working for Oceans

Public Employees for Environmental Responsibility

Maine Delegation

Submission ID

Name of Submitter(s)

Organization

1339

Brian Chmielecki

1340

47,669 members of the public

The Pew Charitable Trusts

1342

Mary Frances Williams

Georgia State House Representative

1343

Sen Elena Parent

Georgia State Senate

1344

Nan G. Orrock

Georgia State Senate

1345

Allie Beaton

The Georgia Conservancy

1346

Jim O’Connell

1347

Gloria Butler, Minority Leader

Georgia State Senate

1348

Russell Wray

Citizens Opposing Active Sonar Threats (COAST)

1349

Laurin Brooks

1350

Pictures from Mrs. Long's 2nd grade class

1351

Aly Fogel and 11,135 signatures

Environmental Action

1352

Michael Jasny

Natural Resources Defense Council
Same as 0703

1353

Erik Knight

1354

Jacqueline Bort

1355

Dre DiMatteo

1356

Anonymous

1357

Dud Hendrick

1358

Anonymous

1359

Robert L Wilbur

1360

Alex Lund

1361

Kelsey Herb

1362

S. Young

1363

Peter Miller

1364

Nick Nieuwkerk

1365

Robert Strayton

1366

Jason McNamee, PhD

Rhode Island Department of Environmental
Management

NMFS identified 54 form letters that contained repeated language or pre-written text provided by
an interest group for submission by individuals. Table 7-3 identifies the form letters submitted
and the numbers of duplicate submissions.

Table 7-3: Form Letter Submissions
Form Letter
ID

Deduplication Analysis 70-100%
match

Variants Not
Posted

Variants
Posted

Totals

A

22,933

13

119

23,065

B

12,622

21

C

9,360

5

80

9,445

D

7,822

4

32

7,858

E

552

3

1

556

F

62

2

1

65

G

46

9

H

40

4

1

45

I

32

1

1

34

J

31

1

32

K

21

2

23

L

17

M

17

3

N

15

8

O

13

1

P

12

1

Q

11

R

10

S

10

10

T

8

8

U

6

6

V

6

6

W

6

6

X

6

6

Y

6

6

Z

5

3

8

ZA

5

3

8

ZB

5

5

ZC

5

5

ZD

5

5

ZE

5

5

ZF

5

5

ZG

5

5

12,643

55

17
20
24

47
14

3

16
11

1

11

Form Letter
ID

Deduplication Analysis 70-100%
match

Variants Not
Posted

ZH

4

4

ZI

4

4

ZJ

4

4

ZK

4

4

ZL

4

4

ZM

4

4

ZN

4

4

ZO

4

4

ZP

4

4

ZQ

3

ZR

3

ZS

3

3

ZT

3

3

ZU

3

3

ZV

3

3

ZW

3

3

ZX

3

3

ZY

3

3

ZZ

3

3

ZZA

3

3

ZZB

3

3

Totals

53,776

2

80

Variants
Posted

Totals

1

6

2

5

272

54,128

5. Comments Submitted Orally at Public Information
Sessions and Public Hearings
A total of 122 speakers submitted comments orally at public information sessions or public
hearings. Many of the speakers submitted more than one comment, and several submitted
comments at more than one session. If an individual commented at more than one session, the
individual was counted as a unique speaker on each day. A summary table of commenters by
stakeholder group is below.
Table 7-4 Summary of Commenters by Stakeholder Group
Stakeholder Group

Number of Commenters

Academic/Scientific

2

Fishermen
Fishing Industry Group

59
3

NGO

27

Public

27

State Resource Manager

2

State/Federal Legislator

2

Total

122

We tallied a total of 236 unique comments submitted by these speakers. Of the submitted
comments, 44 expressed support for the Proposed Rule, 77 expressed opposition to the Proposed
Rule, and the remaining comments were either specific questions or suggestions that not indicate
support or opposition. The full transcripts from the public hearings are available in Appendix
7.3. The comments contained in these submissions are all addressed in Appendix 1.1 Response
to Comments.
•
•
•

Supports some or all of Proposed Rule: 44 (18.64 percent)
Opposes some or all of Proposed Rule: 77 (32.63 percent)
Neutral (questions/suggestions/did not indicate): 115 (48.73 percent)
Table 7-5: Oral Comment Submissions

Session

Date

Areas

Name

Informational Session

1/12/2021

RI, Southern MA, LMA3 focus

Brian Thibeault

Informational Session

1/12/2021

RI, Southern MA, LMA3 focus

Gary Mataronas

Informational Session

1/12/2021

RI, Southern MA, LMA3 focus

Russel Sylvester

Informational Session

1/12/2021

RI, Southern MA, LMA3 focus

Thomas Zoutis

Informational Session

1/19/2021

Southern ME focus

Alicia Cate

Informational Session

1/19/2021

Southern ME focus

Ira Miller F/V Mallard Sky

Informational Session

1/19/2021

Southern ME focus

Jack Merrill

Informational Session

1/19/2021

Southern ME focus

Zack Klyver

Informational Session

1/20/2021

Northeast ME focus

Andrew Hallinan

Session

Date

Areas

Name

Informational Session

1/20/2021

Northeast ME focus

Eben Wilson

Informational Session

1/20/2021

Northeast ME focus

Gregory Simmons

Informational Session

1/20/2021

Northeast ME focus

Jack Merrill

Informational Session

1/20/2021

Northeast ME focus

Zack Klyver

Informational Session

1/31/2021

Outer Cape MA, LMA1 MA and LMA1
NH focus

Maren Budrow

Informational Session

1/31/2021

Outer Cape MA, LMA1 MA and LMA1
NH focus

Mary Branch

Informational Session

1/31/2021

Outer Cape MA, LMA1 MA and LMA1
NH focus

Max Strahan

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Brennan Strong

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Brian Thibeault

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

David Dow

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Greg Mataronas

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Jenna Stevens

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

John Swoboda

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Lise Sayer

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Matthew Madonna

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Michael Foley

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Paige McGlaughlin

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Patrick Ramage

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Peter Brodeur

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Quinn Josephine O'Connor

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Rachael Thompson

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Robert MacLean

Public Hearing

2/16/2021

RI, Southern MA, LMA3 focus

Sarah Austin

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Brian Sharp

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Elizabeth Clemmy

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Erik Anderson

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Glenn Carroll

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Hermina Glass-Hill

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Jim Kendall

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Joel Cohen

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Krista Early

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Maren Budrow

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Max Ratner

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Peter Meerbergen

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Rain Harbison

Session

Date

Areas

Name

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Sheridan O'Connor

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Stuart Jones

Public Hearing

2/17/2021

Outer Cape MA, LMA1 MA, LMA1 NH

Tessa Brown

Public Hearing

2/23/2021

Southern Maine

Bill McWeeny

Public Hearing

2/23/2021

Southern Maine

Brennan Strong

Public Hearing

2/23/2021

Southern Maine

Caroline Coburn

Public Hearing

2/23/2021

Southern Maine

Chris McIntire

Public Hearing

2/23/2021

Southern Maine

Chris Smith

Public Hearing

2/23/2021

Southern Maine

Cindy Donnell

Public Hearing

2/23/2021

Southern Maine

Commissioner Keliher

Public Hearing

2/23/2021

Southern Maine

CT Harry

Public Hearing

2/23/2021

Southern Maine

David Kaselauskas

Public Hearing

2/23/2021

Southern Maine

Douglas McLennan

Public Hearing

2/23/2021

Southern Maine

Dustin Delano

Public Hearing

2/23/2021

Southern Maine

Eben Nieuwkerk

Public Hearing

2/23/2021

Southern Maine

Erica Fuller

Public Hearing

2/23/2021

Southern Maine

Gib Brogran

Public Hearing

2/23/2021

Southern Maine

Gina Garey

Public Hearing

2/23/2021

Southern Maine

Hayden Brewer

Public Hearing

2/23/2021

Southern Maine

Ira Miller

Public Hearing

2/23/2021

Southern Maine

Jack Thibodeau

Public Hearing

2/23/2021

Southern Maine

Jarod Bray

Public Hearing

2/23/2021

Southern Maine

John Tripp

Public Hearing

2/23/2021

Southern Maine

Joshua Harjula

Public Hearing

2/23/2021

Southern Maine

Judith Howard

Public Hearing

2/23/2021

Southern Maine

Madison Lynch

Public Hearing

2/23/2021

Southern Maine

Matt Gilley

Public Hearing

2/23/2021

Southern Maine

Maya Sze

Public Hearing

2/23/2021

Southern Maine

Reanea Hunter

Public Hearing

2/23/2021

Southern Maine

Ryder Noyes

Public Hearing

2/23/2021

Southern Maine

Sarah Stewart

Public Hearing

2/23/2021

Southern Maine

Star Scott

Public Hearing

2/23/2021

Southern Maine

Troy Plummer

Public Hearing

2/23/2021

Southern Maine

William Clayton

Public Hearing

2/23/2021

Southern Maine

Zack Klyver

Public Hearing

2/24/2021

Northeast ME focus

Barry/Gretchen Catlin

Public Hearing

2/24/2021

Northeast ME focus

Bill McWeeny

Session

Date

Areas

Name

Public Hearing

2/24/2021

Northeast ME focus

Blake Alley

Public Hearing

2/24/2021

Northeast ME focus

Brian Tripp

Public Hearing

2/24/2021

Northeast ME focus

Commissioner Keliher

Public Hearing

2/24/2021

Northeast ME focus

Darren Turner

Public Hearing

2/24/2021

Northeast ME focus

Dwight Staples

Public Hearing

2/24/2021

Northeast ME focus

Gabe Shadis

Public Hearing

2/24/2021

Northeast ME focus

Gina Garey

Public Hearing

2/24/2021

Northeast ME focus

Hannah McGowan

Public Hearing

2/24/2021

Northeast ME focus

Jack Merrill

Public Hearing

2/24/2021

Northeast ME focus

Jacob Thompson

Public Hearing

2/24/2021

Northeast ME focus

Jan Thouron

Public Hearing

2/24/2021

Northeast ME focus

Jason Joyce

Public Hearing

2/24/2021

Northeast ME focus

Jennifer Johnson

Public Hearing

2/24/2021

Northeast ME focus

Jim O'Connell

Public Hearing

2/24/2021

Northeast ME focus

Joel Cohen

Public Hearing

2/24/2021

Northeast ME focus

John Drouin

Public Hearing

2/24/2021

Northeast ME focus

Jon Emerson

Public Hearing

2/24/2021

Northeast ME focus

Julie Albert

Public Hearing

2/24/2021

Northeast ME focus

Julie Eaton

Public Hearing

2/24/2021

Northeast ME focus

Julie Rabinowitz

Public Hearing

2/24/2021

Northeast ME focus

Karen Murray

Public Hearing

2/24/2021

Northeast ME focus

Katharine Deuel

Public Hearing

2/24/2021

Northeast ME focus

Krista Tripp

Public Hearing

2/24/2021

Northeast ME focus

Kristan Porter

Public Hearing

2/24/2021

Northeast ME focus

Lee Watkinson

Public Hearing

2/24/2021

Northeast ME focus

Matt Gilley

Public Hearing

2/24/2021

Northeast ME focus

Matt Samuels

Public Hearing

2/24/2021

Northeast ME focus

Max Strahan

Public Hearing

2/24/2021

Northeast ME focus

Michael Myers

Public Hearing

2/24/2021

Northeast ME focus

Michaela Morris

Public Hearing

2/24/2021

Northeast ME focus

Mikael Stone

Public Hearing

2/24/2021

Northeast ME focus

Noah Mank

Public Hearing

2/24/2021

Northeast ME focus

Rebecca Johns

Public Hearing

2/24/2021

Northeast ME focus

Rep Golden

Public Hearing

2/24/2021

Northeast ME focus

Representative Genevieve McDonald

Public Hearing

2/24/2021

Northeast ME focus

Richard Howland

Public Hearing

2/24/2021

Northeast ME focus

Russel Wray

Session

Date

Areas

Name

Public Hearing

2/24/2021

Northeast ME focus

Sam Rosen

Public Hearing

2/24/2021

Northeast ME focus

Tyler Bemis

Public Hearing

2/24/2021

Northeast ME focus

Virginia Olsen

Public Hearing

2/24/2021

Northeast ME focus

Zack Klyver

6. Unique Comments Summary
When removing duplicate written and oral submissions, we received a total of 1,129 unique
written and oral submissions. The general disposition of these submissions was more positive
than negative.
•
•
•
•

Supports some or all of Proposed Rule: 657 (58.19 percent)
Opposes some or all of Proposed Rule: 386 (34.19 percent)
Supports regulation to protect whales, but would like to see this one withdrawn, and for
NMFS to start over: 46 (4.07 percent)
Neutral (questions/suggestions/did not indicate): 42 (3.72 percent)

7. Form Letter Comments
As noted above, 54 form letters were identified using the Regulations.gov deduplication
analysis, as in Table 7-3 above. These form letters contained 28 separate comments, identified in
Table 7-6 below. The primary form letters, which chosen by the deduplication analysis, are
available in Appendix 7.4
Of the form 54 form submissions, 50 supported stronger regulations to protect right whales,
one supported limiting the number of buoys (ZZ), one supported tracking whales (ZU), one
opposed ropeless fishing (ZZA), and one was an empty test message (ZJ).
Table 7-6 Form Letter Comments
Topic

Comment

Form Letter
ID

Number of
Submissions
Containing

Assistance for
Commercial Fisheries

NMFS should assist commercial trap fisheries in
a transition to whale-safe gear

F, U, ZP

Ban Fishing Gear

The use of any ropes, nets, or any other type of
fishing gear that may entangle any species
should be completely banned.

D

Closures - Emergency

NMFS should immediately implement closures
to lobster and crab fishing with vertical buoy
lines in the areas where right whales concentrate

A, E, Q, W,
ZB, ZI, ZS,
ZV, ZW

23,653

Closures - Emergency MV/N/GOM

Closures must immediately implement
emergency action designating a year-round
closure south of Martha's Vineyard and
Nantucket and in three areas in the Gulf of
Maine

A, J, P, W,
ZB, ZV

23,127

Closures - Insufficient

Closures outlined in the proposed rule are too
small and too short/should be expanded/more,
and longer, habitat closures

A, ZV, J, P,
ZX, B, G, K,
M, S, T, Y,
ZC, ZK, ZL,
ZY, E, V, N,
R, ZH

36,524

Closures - Offshore

Closures in offshore areas would also minimize
the impact on fishermen, because the majority of
lobster fishing occurs closer to shore

A, J, W, ZB,
ZA

23,103

Closures - Best
Available Data

Closures should be based on the best available
science which includes recent and historical
sightings, acoustic data, and prey data.

P, V

22

Closures - Martha's
Vineyard/Nantucket and
Gulf of Maine

The closure south of Nantucket and Martha’s
Vineyard, in the most conservative alternative
(3a) may be an appropriate size but is far too
short in time at February through April. This
should be a year-round closure as right whales
have been seen almost every month of the year
here for the last several years

P, V, ZV

25

Disentanglement

Please re - direct all effort to increased research
and whale disentanglement efforts

ZU

75
7,858

3

Topic

Comment

Form Letter
ID

Number of
Submissions
Containing

Economics

If you do not make serious and timely changes to
your plans, I will go out of business in 10 years
or less

ZU

3

Emergency Action

NOAA Fisheries officials must take emergency
action and create immediate fishing closures in
areas where right whales are most prevalent

I, O, ZT, F,
ZF, C, U, ZG,
V, ZN, E, ZO

10,147

Emergency Action

NMFS has statutory authority to enact
emergency regulations to close important right
whale habitat to fishing with static vertical buoy
lines

B, Y, G, K,
M, T, ZC,
ZK, ZL, ZX,
ZY

12,774

Gear Marking

support increased gear marking with state and
area specific colors and that all gear buoys
everywhere have at least the same marking
requirements as Maine (license number unique
to that fisherman/gear owner)

ZU

General Support

Please protect the whales!

Z, ZQ

Harm Lobster Industry

Fishing restrictions will end up seriously
harming the lobster industry

X

6

Monitoring

Expanded and improved fishery monitoring to
account for interactions between fishing gear
and right whales

ZG

5

Test Message

Test message

ZJ

4

Population Data

New rules should reflect the most recent
population estimate produced by the Agency’s
own scientist, not data consider obsolete by
NOAA itself

A, C, D, H, J,
L, U, P, ZA,
ZD, ZE, ZF,
ZI, ZN, ZO,
ZP, ZT, ZV

Research

We should be conducting a world-class study on
what specific gear configurations and locations
are causing entanglements, and during what
times of the year

ZU

Risk Reduction

NOAA should reduce risk to right whales by at
least 80 percent

A, C, E, F, I,
J, O, P, Q, U,
V, W, ZA,
ZB , ZF, ZI,
ZT, ZV, ZW

33,287

Ropeless - Accelerate
Permitting

NOAA Fisheries should fast-track the transition
to requiring "ropeless" fishing gear

B, D, G, H,
K, L, M, S, T,
Y, ZC, ZD,
ZE, ZK, ZL,
ZM, ZP, ZR,
ZY, ZZB

20,727

Ropeless - Investment

NOAA Fisheries should invest in developing
ropeless technology as quickly and responsibly
as possible, while establishing a plan to assist

C, F, P, R, U,
ZE, ZF, ZG

9,558

3

14

40,529

3

Topic

Comment

Form Letter
ID

Number of
Submissions
Containing

commercial trap fisheries in a transition to
whale-safe gear
Ropeless - Incentives

NOAA Fisheries must continue efforts to test
and foster a market for rope-free technologies,
including the creation of incentives for
fishermen to try them

N, V, ZH, ZO

61

Ropeless - General
Support

Ropeless (or buoyless) fishing adaptations carry
the promise to improve fishing and protect
whales

E, H, ZG, ZX

609

Ropeless - General
Opposition

One thing that CAN NOT happen is ROPELESS
fishing! Ropeless needs to be forgotten, it’s not
needed with the precautions we have now taken
and is a impractical fantasy that would miserably
fail and ruin the lobstering industry.

ZZA

3

Tracking

We need to do much better with tracking right
whales

ZU

3

Trawls

I support limiting the number of buoys

ZZ

3

Weak Rope

This rule relies too heavily on a costly and
inadequate transition to weaker rope, which has
not been proven to protect younger whales and
does not reduce the long-term health effects of
chronic entanglements on whales

A, C, D, E, F,
H, J, L, N, P,
R, U, V, W,
ZD, ZE, ZF,
ZH, ZM, ZP,
ZV

41,205

8. Bulk Submission Comments
As noted above, 11 submissions from Non-Governmental Organizations were either entered
as counting for more than one comment, included multiple signatures, or both. These are listed
below, and are all available on Regulations.gov. All of the these submissions, which represent up
to 201,269 people, were in favor of stronger regulations to protect North Atlantic right whales.
Comments that were submitted on Regulations.gov as one comment but included fewer than 50
signatures are not included in Table 7-7 below, but are included in Table 7-2.
The comments contained in these submissions are all addressed in the Appendix 1.1
Response to Comments.
Table 7-7: Bulk Submissions
Submission ID

Organization

Signatures/Submissions

657

Center for Biological Diversity

26,594

668

Oceana

18,440

705

International Fund for Animal Welfare

31,912

728

Riverkeepers

4

752

Conservation Law Foundation

1,192

784

Whale and Dolphin Conservation

3,629

818

Environment America

11,727

1058

Humane Society of the U.S

15,922

1333

Natural Resources Defense Council

33,045

1340

Pew Charitable Trusts

47,699

1351

Environmental Action

11,135

Appendix 7.2
Comments from TRT Members
Trap/Pot Fishery
1. Atlantic Offshore Lobstermen's Association
2. Rhode Island Lobstermen's Association
3. Massachusetts Lobstermen's Association
4. Maine Lobstermen's Association
Conservation/Environmental Groups
5. Whale and Dolphin Conservation
6. Joint letter from Center for Biological Diversity, Conservation Law Foundation,
Defenders of Wildlife, Humane Society of the U.S.
7. International Fund for Animal Welfare
8. The Humane Society of the U.S.
State Fishery Resource Managers
9. Georgia Department of Natural Resources
10. Joint letter from Connecticut Department of Environmental Protection and New York
Department of Environmental Conservation
11. Massachusetts Department of Marine Fisheries
12. Rhode Island Division of Fish and Wildlife
13. New Hampshire Fish and Game Department
14. Maine Department of Marine Resources
Federal Resource Managers
15. Marine Mammal Commission
Fishery Management Organizations
16. New England Fishery Management Council
17. Atlantic States Marine Fisheries Commission
Academic/Scientific Groups
18. Richard Merrick, Falmouth, MA
19. Alex Costidis, Virginia Aquarium and Marine Science Center
20. Amy Knowlton, New England Aquarium
21. Bill McLellan, University of North Carolina-Wilmington
22. Letter from Scientists: Amy Knowlton, Moira Brown, Ph.D., Peter Corkeron, Ph.D.,
Philip Hamilton, Scott Kraus, Heather Pettis, Rosalind Rolland (Cabot Center, New
England Aquarium), Mark Baumgartner, Ph.D., Michael Moore (Woods Hole
Oceanographic Institution), Chris Clark, Ph.D. (Cornell University), Alexander M.
Costidis, Ph.D. (Virginia Aquarium Marine Science Center), Steve Katona, Sean Todd
(College of the Atlantic), Bill McLellan (UNC-Wilmington) Doug Nowacek, Andy Read,
Rob Schick (Duke University), Nick Record (Bigelow Laboratory for Ocean Sciences),
Scott Landry, Stormy Mayo, Jooke Robbins (Center for Coastal Studies), Brian Sharp,
Sarah Sharp (International Fund for Animal Welfare), Tim Werner, UMASS-Boston

March 1, 2021
Mr. Michael Pentony
Regional Administrator, NMFS GARFO
55 Great Republic Drive
Gloucester MA, 01930
Dear Mike,
The Atlantic Offshore Lobstermen’s Association submits the following comments toward the
Atlantic Large Whale Take Reduction Plan (TRP) proposed rule and draft environmental impact
statement (DEIS). The Association supports NMFS’s efforts to protect endangered North Atlantic
right whales (NARWs) throughout their range, but we have serious concerns about the risk
reduction burden being placed on the northeast lobster and Jonah crab fishery. We cannot stress
strongly enough that NARWs will not be saved from extinction without a comprehensive,
concerted, and holistic approach to reduce serious injury and mortality risk across the species range
from all sources, as demonstrated in the draft Biological Opinion (BiOp)1 model outcomes. This
includes fisheries and ship strikes in Canadian waters, as well as the U.S. Mid-Atlantic and South
Atlantic, and emerging sources of potential anthropogenic harm, including offshore wind
industrialization.
As noted in our scoping comments, recent trends in Canadian waters interactions with NARWs
must be a top consideration when setting US conservation targets, because deaths and serious
injuries attributable to the domestic lobster fleet have been steadily trending downward. US
lobstermen have been marking gear and modifying practices to avoid interactions for over 20
years, during which time the right whale population more than doubled in size. As the BiOp
demonstrates, a total closure of US fixed gear fisheries will not rebuild the population if mortalities
and serious injuries (M/SIs) continue in Canada. Actions taken outside of US waters will greatly
impact the future of fixed gear fisheries in the US; if M/SIs in Canada continue, potential biological
removal (PBR) levels will further decline, and the actions needed for US fisheries to maintain
incidental take permits will become ever more draconian and untenable. The Association requests
that NMFS use every tool at its disposal to ensure protections for right whales in Canada.
Reducing human caused injury to the species must be a shared endeavor, both as a matter of equity
and as the only effective way to conserve NARWs. While we recognize that NMFS has limited
resources available to pursue rulemaking, we note that the Agency has made NARW conservation
a priority (i.e. species in the spotlight). It is unfathomable that NMFS is not currently pursuing
more concerted efforts to reduce injury and mortality risk from recreational boating, shipping, and
offshore wind industries in US waters.

1

Draft Endangered Species Act Section 7 Consultation Biological Opinion for 10 Greater Atlantic Regional Fisheries
Office FMPs. Published online January 2021.

While the lobster fishery faces a real risk of being completely shut down, the Agency has done
little more than outreach to address the failings of the existing Vessel Strike Rule, as outlined in a
recent NMFS report.2 This despite recent deaths of young whales caused by ship strikes in the Mid
and South Atlantic. We therefore ask that NMFS immediately increase enforcement of the existing
vessel strike regulations, consider amending speeding fines to be commiserate with violations, and
initiate rulemaking to better prevent ship strikes.
Further, the government continues to approve incidental harassment permits (IHP) for offshore
wind in the MA/RI lease area without consideration of the cumulative impacts of construction and
operations activities on NARWs and their prey (Figure 1). As noted in the South Fork DEIS3:
“The likelihood of injury depends on proximity to the noise source, the intensity of the source,
the effectiveness of noise attenuation measures, and the duration of noise exposure. For
example, a low-frequency cetacean remaining within 5.4 miles (28,517 feet) of impact hammer
operation over the 4 hours required for a difficult monopile installation could experience
permanent hearing injury, referred to as a permanent threshold shift (PTS).”
Current monitoring plans which rely on vessel based observers are insufficient given the potential
for harming whales miles away. NMFS should consider operating daily aerial surveys and
requiring wind developers to fund and deploy acoustic sensing technologies to monitor NARWs
during marginal weather conditions. Vineyard Wind’s IHP should be re-evaluated considering
recent modifications to construction plans that involve larger turbines.
Focusing specifically on the proposed rule, we disagree with the method used to calculate the
proposed rule’s risk reduction targets for the US lobster fishery. Particularly concerning is the
Agency’s approach of dividing unassigned M/SI entanglements evenly between the US and
Canada, rather than using a proportional division based on known cases (0.18 US/0.82 CN4). While
the Agency provided a limited rational for the 50/50 country split, both the Atlantic Large Whale
Take Reduction Team and CIE Peer Review Panel expressed concern with this method. Also,
puzzlingly, the Agency saw fit to use the data record of known cases to proportionally assign US
cases with undetermined cause (strike vs. entanglement) in the draft BiOp. For the final rule, the
Association strongly recommends that NMFS employ a consistent proportional method that
reflects known data trends to apportion the risk reduction needed by each country.
Entanglement risk reduction needed by US fisheries to account for non-cryptic M/SIs are shown
in the table below. Importantly, the entanglement risk reductions below and calculated in the DEIS
are for all US fisheries. Yet, the fisheries included in the proposed rule comprise 93.7% of the end
lines estimated to be fished in TRP managed waters, not 100% (DEIS, Table 2.3). The Association
requests that the final rule’s risk reduction target be 93.7% of the total US entanglement reduction
need. We encourage NMFS to use 2010-2019 data to calculate the risk reduction needed as this

2

North Atlantic Right Whale Vessel Speed Rule Assessment, June 2020. Published online January 2021.
South Fork Wind Farm and South Fork Export Cable Project, Draft Environmental Impact Statement. January 2021
4
2010-2019 M/SI – 9 Canadian, 2 US, and 38 unattributed entanglement cases, Section 7.2.1., Draft BiOp.
3

period coincides with a regime change in zooplankton prey, includes the latest available data, and
is consistent with data used in the Draft BiOp to estimate risk to NARW.
Table 1: Average annual M/SI by country of origin for the date ranges and values in the DEIS (Table 2.4)
and Draft BiOp (Table 56) using unknown cases assigned proportionally rather than 50:50. Total US are
assigned cases plus unassigned cases attributed to the US using the same proportion as known cases.
Reduction needed was calculated by applying the DEIS equation of 1-(0.9/total US) to the Total US values.

Date
Range

Avg
Yrly
M/SI

US

CN

Unk.

US Unk.
CN Unk.
Total Reduction
proportion proportion US
Needed

2012-2016
2013-2017
2014-2018
2010-2018
2010-2019

5.15
5.55
6.54
5.23
4.90

0.40
0.20
0.20
0.22
0.20

0.60
1.20
1.40
0.78
0.90

4.15
4.15
4.94
4.23
3.80

1.66
0.58
0.62
0.93
0.69

2.49
3.57
4.32
3.30
3.11

2.06
0.78
0.82
1.15
0.89

0.63 (63%)
None, under PBR
None, under PBR

0.34 (34%)
None, under PBR

NMFS staff highlighted the importance of equity when they assembled the Take Reduction Team
(TRT) in 2019 to develop risk reduction proposals that asked each component of the lobster/jonah
crab fishery to assume an equal share of the conservation task. AOLA’s TRT representative
supported this approach at the TRT forums and in previous letters submitted to the Agency, even
though the Area 3 fleet represents <3% of vertical lines fished in all ALWTRP managed water
(<1% when exempted waters gear is included)5. This laudable goal is, unfortunately, not reflected
in the proposed regulations.
Of particular concern is the inconsistent starting point on which risk reduction percentages are
calculated for each lobster management area (LMA) and/or state. The overarching reference year
in the DEIS is calendar year 2017, yet the MA LMA 1 fishery is given credit for extending the
seasonal closure of Cape Cod Bay from 2015 forward, while LMA 2 (RI) and LMA 3 fisheries are
not provided credit for trap cuts that permanently removed gear from the water during the same
years. We support the Agency’s decision to give MA 2015/2016 credit, but the same standard
should apply to all LMAs. Further, the conservation benefit for 2017-2020 trap cuts are credited
differently for LMA 2 and 3. We therefore ask that NMFS consistently apply a reference year
across all regulated jurisdictions; preference being for 2015 forward which would encompass all
fisheries actions since the last amendment to the ALWTRP. If NMFS disregards this request, the
final rule must provide a legal justification explaining how this inconsistent treatment of federal
permit holders does not violate National Standard’s guidelines.
Before providing the Association’s alternative management recommendations for LMA 3, we have
overarching comments regarding the use of 1700lb breaking strength line and closed areas as risk
reduction provisions in the proposed rule.

5

Industrial Economics (IEc) 2017 vertical line model 2017 baseline data. Provided to TRT November 2019.

As to weak end lines and equivalent weak line contrivances, we want to emphasis two points.
Firstly, we appreciate the Agency’s inclusion of weaker line as means to minimize the risk of
serious entanglements, given that fishing without end lines is not a practical near term solution.
However, we do worry about the limited scientific justification for 1700 lbs. as the target strength,
and the seemingly arbitrary decision that weak contrivances placed 40 feet apart are equivalent to
1700 lb. rope. Secondly, AOLA members have been testing modified gear since 2019 and to date
the only rope or contrivance that appears viable is the Time Tension Line Cutter. We understand
that NMFS intends to develop a list of acceptable weak gears ahead of rule implementation,
however time is running short. We cannot stress enough the importance of this work. NMFS needs
to dedicate staff and funding to manufacturing, systematically testing, and approving weak end
line options as a top priority in 2021.
Given that 1700 lb. breaking strength is a rather arbitrary target, we encourage NMFS to be flexible
when approving alternative gears including available gears that may be slightly above the 1700 lb.
target, especially in the short term when options are limited. As documented by Maine DMR,
initial line strength decreases with every pass through the hauler plates, quickly eroding to the
point of needing to be replaced so as not to pose a safety risk. That said, lobstermen should not be
asked to take on the financial and safety burdens of re-rigging gear once again only to be told in a
few years later that the changes didn’t work. All gear changes should be thoroughly tested for
safety, durability, and efficacy before changes are made on the water.
As to closed areas, after much discussion and risk reduction analysis, the TRT opted against
including closed areas in their near unanimous recommendations on which the proposed rule is
founded, yet options for three seasonal closures are included in the DEIS analysis. Closed areas
were generally rejected by the TRT because of concerns that poor spatial and temporal fishing gear
information, and the lack of uniform and consistent NARW surveying methods, would make it
impossible to objectively evaluate seasonal restricted gear areas. The TRT felt that a closure would
have the best chance of reducing entanglement risk when the area was small and well defined, and
fishing gear was removed from the water, rather than moved elsewhere.
Despite the known data weaknesses and lack of uniform data sources, NMFS staff undertook a
commendable and innovative analysis to generate estimated risk reductions for the proposed
seasonal closure areas, primarily using the recently developed Decision Support Tool (DST). As
noted in the DEIS, the CIE Peer Review Panel concluded that the DST provides a useful way for
industry and managers to compare relative changes in entanglement risk for right whales under
various risk management scenarios. However, the proposed rule generally treats the results of
closed area analyses as absolute values without presenting confidence intervals. The DEIS
frequently frames the management options without explaining the underlying data uncertainty and
does not consistently consider the possibility of redirection of fishing effort, both of which interject
uncertainty into the closed area risk reduction evaluation. We agree with the CIE Review Panel in
cautioning the Agency when applying DST results to inform management. We understand that
rulemaking needs to proceed concurrently with improvement of the tool, however this ongoing
development has made it exceedingly difficult to provide comments, on closed areas in
particularly, since the data sets (i.e. Duke Model) and risk reduction credits have changed since
the DEIS was originally drafted.

We feel strongly that closure areas should not be the way forward to protect whales. As noted in
the DEIS, fixed closures are likely to provided only limited and short term benefit because of the
increasing unpredictability of oceanographic patterns, and subsequent NARW habitat use.
Dynamic closures are in principal a better approach, but in practice they have been proven not to
work because of limits on federal rulemaking and the weeks/months needed for the lobster fleet to
move gear. Both fixed and dynamic closures have unpredictable, unintended, and indirect
consequences that cannot be accurately analyzed in an EIS. For example, any or all these scenarios
could occur; “fencing” when moved gear surrounds a closed area, redirection of entanglement
risk when gear is moved to distant areas, gear conflict within and between fixed and mobile fleets,
additional habitat impacts, economic impacts, and inequitable treatment of fishing operations. For
these reasons and those discussed by the TRT we strongly oppose closures, however we encourage
NMFS to reinitiate funding for annual copepod surveys and predictive zooplankton modeling as
they relate to future whale habitat use. We also strongly encourage the Agency to implement the
monitoring and surveillance recommendations made by NMFS’s expert working group.6
If NMFS does pursue closed areas in the final rule, the FEIS must include an improved analysis
of the impacts of displaced fishing on the surrounding habitat and co-occurrence of whales and
endlines. This analysis should rely on information provided by fishermen during the public hearing
process. In contrast to the existing seasonal Massachusetts Restricted Area where the coastal
lobster fleet removes gear from the water and doesn’t fish for three months, the vessels operating
in the proposed closures are generally larger and typically year-round operations that will move
gear to the nearest economical fishing ground. This appears to be particularly true for the nonpreferred LMA 3 George’s Basin closure given fleet dynamics in that area. We agree with NMFS
assessment that closing this area could increase risk to right whales while economically
disadvantaging the fishery. As noted in the DEIS (5-154):
“The trap/pot buoy line closures could also have negative indirect effects if fishing effort is
relocated just outside of the restricted areas adjacent to valuable whale habitats. This
relocated effort may result in a wall of fishing gear, which would increase risk of entanglement
risk as whales move in and out of these management areas”
We contacted the small fleet that operates in Georges Basin and they report that in response to a
closure, they would move gear, likely in close proximity to the closure and/or further west into
offshore Gulf of Maine. Therefore, we oppose the George’s Basin closed area, but encourage the
Agency to pursue measures to improve spatial and temporal fisheries data, such as 100% catch
and effort reporting for all federally permitted lobster vessels and independent validation of effort,
such as though the use of electronic vessel and trap tracking technologies.
We are opposed to NMFS’s preferred and non-preferred South of the Islands closure alternatives,
because we believe a closure in this area will result in redirection of effort and concentrate lobster
gear into other areas inhabited by whales. We offer the below information in response to NMFS
request for “information indicating that we can achieve the 60% risk reduction without the
restricted area, we would consider eliminating the restricted area from rulemaking.” The
following focuses on LMA 3 and the 2/3 overlap, given that we do not represent LMA 2 fishermen
we defer Area 2 recommendations to state agencies and inshore lobstermen’s associations. That
6

NARW Monitoring and Surveillance: Report and Recommendations of the NMFS’s Expert Working Group. NOAA
Technical Memorandum NMFS-OPR-64, June 2020

said, after discussions with MA Lobstermen’s Association leadership we believe they also support
the following recommendations that apply to the Area 2/3 overlap.
Analysis of this closure area is complicated by the cross jurisdictional nature of the location, which
encompasses state and federal waters, and portions of two management areas (LMA 2 & LMA 3)
plus a management overlap area that is shared by federally permitted vessels. The closure area
would be bordered to the north by land masses, to the south by a heavily trafficked shipping lane,
and, depending on the alternative selected, either border on the west or fully encompass, the 1,600
square mile MA/RI offshore wind lease area. Once wind construction and operations begin, the
opportunity to move gear to fishable, open bottom, in LMA 2 will be severely limited (Figure 1).

Figure 1. DEIS’s South of the Islands seasonal fisheries closure proposals in relation to BOEM’s MA/RI
offshore wind area and 1998-2018 whale sightings provided by the NARW Consortium.

We do not dispute that right whales use the proposed seasonal gear risked area, but given the
opportunistic nature of surveying, lack of a mechanism to standard days of effort and transect
patterns, and the possibility of counting the same individual on multiple sequential surveys, the
data should not be used to quantify changes in abundance over time (see quotes below). These data
are valuable as a snapshot of the survey area on a given day, but they have major deficiencies
which need to be corrected, as noted in NMFS’s Expert Working Group report.6
“…opportunistic sightings data can present challenges (no area is systematically surveyed,
effort is not corrected for, and there is potential to count an individual whale more than
once)…” – Dr. Michael Moore, 2020 declaration to US District Court for the D.C. Case 1:18cv-00112-JEB
“Acoustic detection data, opportunistic sightings and right whale satellite-tag tracking data
have not been incorporated into the model of right whale habitat use. Although it is not clear

how these sources of information can be used in the surface density model, as they differ
fundamentally from the systemic surveys used to estimate that model…”- CIE Peer Review of
DST Report 2019
Lobster and Jonah crab effort in LMA 3 and the 2/3 overlap portions of the proposed closure is
primarily seasonal, starting in the fall and continuing until the early spring. Most of the fishery
centers around the southern portion of the 2/3 overlap and the northern portion of LMA 3, with the
effort moving south tracking the winter migration of the crab and lobster populations. The LMA
3 portion of the proposed closure encompasses highly productive Jonah crab fishing bottom, which
has generated approximately $14-18 million dollars annually in recent years.7
LMA 3 vessels specialize in moving gear so a closure of this area will result in 100% of that gear
moving to another area, likely south and east, based on our conversations with fishermen, but given
that LMA 3 is a geographically large area that supports a relatively small number of vessels, gear
could be moved considerable distances with unintended risk consequences. The same is true for
the 45-60 ft LMA 2 vessels that work in the 2/3 overlap, with their gear likely to move west and
north. Given the unpredictable and changing NARW habitat use, noted increases in abundance of
whales in Southern New England and Mid- Atlantic waters, and assurance that fishing gear will
be displaced not removed from the water, it is not an acceptable strategy to assume that a South of
Islands closure area will reduce risk of a critically endangered species. If NMFS does establish a
closed area south of the Islands, we recommend it encompass the smallest possible area spatially
and temporally and include a two year sunset provision. A sunset is advisable given the yet to be
determined consequences of wind industrialization on whale and zooplankton behavior.8
Our final point on closures relates to shipping and offshore wind. If NMFS is going to implement
closures, it is incumbent on the Agency to also implement speed restrictions for all vessels
transiting or operating in other industries in those areas. As the 2019 season in Canada
demonstrated, with nearly half of the mortalities attributable to ship strikes, area closures do not
protect right whales when there is heavy vessel activity. We strongly encourage better monitoring
of whale activity in US shipping lanes (particularly south of Nantucket), penalties for vessels
exceeding speed limits sufficient to correct transgressions, and consideration of redirecting
shipping around whale aggregations.
Alternative Proposal for LMA 3:
After careful consideration of the LMA 3 provisions proposed and consultation with Area 3
participants, we offer the following alternative measures to reduce co-occurrence of NARWs and
vertical lines and reduce entanglement severity using methods that are viable for the offshore fleet.
Thanks to the efforts of Dr. Trego and Dr. Shank to analyze alternative measures, we feel the
alternatives proposed below exceed the proposed rule’s minimum risk reduction target. That said,
we note that some of the subarea options may not be fully additive to the LMA wide options, so
specific credits in the list below may need be adjusted in the final rule.

7

Atlantic States Marine Fisheries Commission, Review of the Interstate FMP for Jonah Crab, 2019 Fishing Year.
Van Berkel, J. et al. 2020. The Effects of Offshore Wind Farms on Hydrodynamics and Implications for Fisheries.
Oceanography: 33:4
8

LMA 3 Wide Provisions:
•

Forthcoming LMA 3 permit trap cap reduction – 12% LMA 3 credit

•

Year round trawling up requirement of 45 traps per trawl with 2 endlines, with area specific
exceptions described below. To accomplish this, the maximum allowed trawl length will
need to be extended to 1.75 nautical miles. – 13.7% LMA 3 credit

•

One end line of each trawl will use1700 lb. breaking strength rope in the top 75% of the
line depth. Weak links (breakaways) remain unchanged at 1500 lbs. The second end line
on each trawl remains full strength. – 29% LMA 3 credit

Sub-Area Provisions:
•

GEORGES BASIN – 50 trap trawls year round in the area shown below (DEIS nonpreferred closures area) with one weak end line in the top 75%. – 12.1% LMA 3 credit

•

SOUTH OF THE ISLANDS - Instead of a seasonal closure in one of the boxes in Figure
1, all vessels fishing in Area 3, or the 2/3 overlap would fish 45 trap trawls, both end lines
using 1700 lb. rope in top 75%, and 600 lb weak links year round. These provisions will
apply only in closed area boundaries in NMFS final rule, and only to the portion of the
closed area encompassing LMA 3 and the 2/3 overlap. – 3.7% LMA 3 credit

•

SHELF EDGE - In waters deeper than 50-75 fathoms, 35 trap trawls year round with one
weak end line to 75%. The final boundary for this area will be determined in the final rule,
but we ask that the Agency select a straight line boundary similar to the chart below, with
35 trap trawls allowed seaward of the line. – minus 0.3% LMA 3 credit

Individual Vessel Provisions:
•

Permit exemption option for smaller Area 3 vessels to allow 40 trap trawls in all areas
year round to address vessel safety and capacity concerns.

The LMA 3 Wide provisions are the same as presented in the proposed rule, so we will not offer
further justification, but do direct you to the discussion of end line reductions below. We also note
that LMA 3 fishermen are interested in considering the use of Time Tension Line Cutters either as
equivalents to 75% weak lines or as an additional provision on the remaining full strength end
lines in the future. We ask that that Agency work expeditiously to test those devices and attribute
risk reduction credit.
As to the sub area options, we propose further trawling up in Georges Basin in recognition of the
potential co-occurrence of NARWs and gear in this area. We feel year round trawling up is a more
protective and preferable option compared to a closed area given the DEIS finding that a seasonal
closed area could increase risk. For Southern New England, we propose an option that will lower
the likelihood of entanglement, without forcing gear to move into areas with unpredictable risk
potential. Given that the LMA 3 and overlap portions of the preferred closures scored only a 3.7%
risk reduction in the DEIS, we believe that the proposed gear modifications ,which would apply to
both LMA 2 and 3 vessels fishing in the overlap, will better reduce risk. Finally, for the shelf edge,
we request allowance to fish 35 trap trawls in consideration of operational and safety constrains
that come with fishing on the continental slope. NMFS initial analysis of this provision found that
it limited LMA 3 wide risk reduction by only 0.3% when these operations fished 35 trap trawls,
rather than 45 trap trawls, given limited co-occurrence of whales and gear in these waters.
The individual vessel provision is also unchanged from the proposed rule. A handful of smaller
LMA 3 vessels have expressed interest in this option for their operations to enhance safety at sea
for crew members.
Related to gear marking, we support the Agency’s proposal to continue with black area marks for
LMA 3, however, given that LMA 3 is prosecuted solely in federal waters, we are uncertain of the
need for the additional federal waters green mark.
Finally, the best way to reduce entanglement risk is to remove vertical lines from the water. NMFS
has recognized this in the proposed rule by crediting LMA 3 for forthcoming changes to the area
trap cap. Given that this credit (12%) is a key component of Area 3’s efforts to conserve NARWs,
we implore GARFO staff to prioritize this long awaited rulemaking. In addition to credit for the
forthcoming trap cap reduction, we ask that NMFS reconsider the entanglement risk reduction
provided by LMA 3’s 2016-2020 trap cuts and transferability conservation tax. We understand the
concern that trap reductions do not necessarily equate to end line reductions, but surely some credit
is due for permanently removing fishing gear.
In fact, 2000-2018 VTR records9 indicate that the average number of traps per trawl increased after
that first round of trap reduction (prior to 2010) and held steady during the first few years of recent
9

A3 2000-2018 VTR data analysis provided to AOLA by GARFO staff.

trap cuts (latest data available). In other words, as the number of traps reduced in LMA 3 so too
did the number of end lines. Increasing the minimum traps per trawl from 20 to 35-45 as proposed
above will ensure that the end lines already removed from the fishery cannot return to the water.
Therefore, we ask that NMFS provide LMA 3 with credit for trap cuts since the reference year
using a metric that is equitable to the proposed LMA 2 credit for similar FMP modifications.
AOLA staff submitted a detailed memo about data sources available for a LMA 3 endline reduction
analysis to NMFS on 2/26/20. To briefly reiterate, there are three data sets that could be used to
broadly assess and characterize fishing effort. 1) VTR records – Self reported fishing effort and
catch data submitted by active LMA3 vessels. These data estimate active traps, average trawl
lengths, and provide spatial and temporal information for a subset of LMA 3 permit holders. These
data are the primary source used in the DEIS analysis. 2) Permit allocation records – Ownership
and traps allocation records for 100% of LMA 3 permit holders. These data provide the maximum
number of traps permitted in the area annually. 3) Permit designation records – Permit renewal
records for 100% of LMA3 permit holders. These data provide the maximum number of active
traps that could be deployed annually.
We ask that NMFS consider permit records the best available data to assess end line reductions,
since they cover 100% of the fishery, are 100% accurate, and are the data source to be used in the
forthcoming trap cap reduction rule. Permitted traps represent the total universe of gear that could
be fished each year, not necessarily active effort, however they also reflect gear that has been
permanently removed from the fishery. Removing traps from existing permits permanently
reduces the risk of entanglement because of limited access provisions the prevent the issuance of
new permits and minimum trawl lengths prevent fishing less traps with more lines.
Table 3: Annual LMA 3 permit records. Trap allocations sourced from GARFO permit records provided
to AOLA staff. End lines calculated using 36 traps per trawl (VTR estimate). Reductions are shown in
comparison to fishing year 2010, but effort was stable until allocation reductions and transferability
conservation tax began in fishing year 2016.
Fishing Year
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020

Traps
148,108
148,108
148,108
148,108
148,108
148,108
136,868
128,901
121,797
115,479
109,378

End Lines
8,288
8,288
8,288
8,288
8,288
8,288
7,604
7,161
6,767
6,416
6,077

Reduction
0%
0%
0%
0%
0%
0%
8%
13%
18%
22%
26%

Given the uncertain surrounding entanglement risk reduction and the needs for greater
enforcement and better data collection, we have aimed to be risk adverse in our proposed measures
to ensure that the LMA 3 fleet goes above the minimum mandate during this phase of rulemaking.

It is our expectation that this approach, as well as our continued participation in gear research and
data improvement efforts, will be considered when future rule making is considered for LMA 3.

In conclusion, the Atlantic Offshore Lobstermen’s Association will continue to work with NMFS
on risk reductions solutions that are feasible for Area 3 fishermen and protective of right whale.
However, we urge NMFS to move quickly to broaden the scope of whale conservation, to not only
hold Canada accountable, but to also make sure other US fisheries, shipping, tourism, commerce
and emerging industries – the nearly 2 million acres of the Atlantic wind energy leases, and
aquaculture – are not putting NARWs at further jeopardy. We further worry that the Agency is not
acting expeditiously to address underlying uncertainty in critical data sets and models, and that the
conservation framework outlined in the Draft Biological Opinion could fail to meet its goals,
resulting in a jeopardy finding and closure of the lobster fishery. As such, we have enclosed our
recommendations for a broader NARW conservation framework as Appendix A.
Thank you for the opportunity to comment,

Sincerely,

David Borden,
Executive Director

Appendix A –NARW Conservation Framework Recommendations
From AOLA’s Bi-Op Letter
We acknowledge that NMFS staff and leadership have worked diligently on the issue of NARW
conservation, but the urgency of this situation requires a more detailed action plan than outlined
in the BiOp framework. With that in mind, we make the following recommendations regarding the
framework process. This list includes many items already in development by the Agency or
recommended by NMFS staff.
Short term priorities (less than one year)

10

•

Given the well documented environmental regime shift in 2010, it is critical that NARWs
and their prey species be effectively monitored. NMFS should fully reinitiate funding for
annual copepod surveys and predictive zooplankton modeling as they relate to NARWs
future use of US habitats. NMFS should implement a plan for systematic broad-scale
coastwide aerial, vessel, and acoustic surveying of the NARW population to standardize
US data sources. Details about how to improve monitoring have been outlined in an
outstanding 2020 NMFS Monitoring and Surveillance Technical Memo.

•

Given the shifts of Calanus sp. biomass and NARWs into Canadian waters, NMFS should
immediately re-engage Canadian counterparts in a dialog aimed at standardizing copepod
and NARW sampling and surveying methods. There needs to be transboundary compatible
surveys and data streams to properly monitor the stock.

•

There should also be immediate standardization of NARW conservation programs in each
country. The recently announced implementation delay of Import Provisions, which were
already 5 years in the making, needs to be reversed. Given that the Import Rule10 is one of
the few tools the US has to increase marine mammal protections and ensure comparable
protections and fair competition, NMFS should seek expedited discussions with Canadian
counterparts and conduct quarterly bilateral meetings.

•

We suggest bilateral meetings include the leadership of NOAA/NMFS, one New England
Fishery Management Council representative, one Atlantic States Marine Fisheries
Commission representative, one environmental/conservation organization representative,
and one inshore and one offshore commercial lobsterman. This would add a needed layer
of transparency to the discussions, strengthen the US delegation, and allow the two fishery
management organization that manage most fixed fishing gear in NARW habitat direct
access and input to the discussions. There are many examples of Council and Commission
participation in international discussions, therefore this request is not without precedent.

•

NMFS should expedite rulemaking on long overdue tasks including 100% reporting in the
federal lobster/Jonah crab fishery and implementation of a trap cap reduction in LMA 3.
The latter was recommended by Atlantic States Marine Fisheries Commission in 2012.

Marine Mammal Protection Act’s Fish and Fish Product Import Provisions

•

NMFS should immediately start rulemaking to address the increase in ship strikes in US
waters described in the recently published vessel speed rule assessment and further
documented in recent weeks in the South Atlantic. In the interim, there should be increased
enforcement of existing ship speed regulations and consideration of amending fee
structures to be commiserate with violations.

Longer term priorities
•

US and Canadian scientists should collaborate on an annual report (similar to the NARW
Consortium’s annual “report card”) that summarizes changes in stock status, provides the
latest entanglement and ship strike data, and provides links to, or appendices of, other
relevant reports and documents. Currently there is a tremendous amount of work being
done by both countries’ governments and private organizations that should be made
available in a timely and transparent way to advance our collective understand of the
species and human interactions.

•

US and Canadian scientists should collaborate on a transboundary benchmark NARW
stock assessment to be completed in 2022/2023. This assessment should be externally peer
reviewed and made publicly available well in advance of the 2024 evaluation period. Phase
3 rulemaking should not begin until the results of the peer reviewed stock assessment are
available to assess progress toward conservation goals.

•

We strongly encourage the Agency to improve the NARW population model used to assess
jeopardy. This will require both better data and re-evaluation of the model’s assumptions.

Summary of AOLA’s Request’s in the above DEIS/Proposed Rule Comment Letter
•

The Association requests that NMFS use every tool at its disposal to ensure protections for
right whales in Canada.

•

We ask that NMFS immediately increase enforcement of the existing vessel strike
regulations, consider amending speeding fines to be commiserate with violations, and
initiate rulemaking to better prevent ship strikes.

•

NMFS should consider operating daily aerial surveys and requiring wind developers to
fund and deploy acoustic sensing technologies to monitor NARWs during marginal
weather conditions. Vineyard Wind’s IHP should be re-evaluated considering recent
modifications to construction plans that involve larger turbines.
For the final rule, the Association strongly recommends that NMFS employ a consistent
proportional method that reflects known data trends to apportion the risk reduction needed
by each country.

•

•

The Association requests that the final rule’s risk reduction target be 93.7% of the total US
entanglement reduction need. We encourage NMFS to use 2010-2019 data to calculate the

risk reduction needed as this period coincides with a regime change in zooplankton prey,
includes the latest available data, and is consistent with data used in the Draft BiOp to
estimate risk to NARW.
•

We ask that NMFS consistently apply a reference year across all regulated jurisdictions;
preference being for 2015 forward which would encompass all fisheries actions since the
last amendment to the ALWTRP. If NMFS disregards this request, the final rule must
provide a legal justification explaining how this inconsistent treatment of federal permit
holders does not violate National Standard’s guidelines.

•

NMFS needs to dedicate staff and funding to manufacturing, systematically testing, and
approving weak end line options as a top priority in 2021.

•

We encourage NMFS to reinitiate funding for annual copepod surveys and predictive
zooplankton modeling as they relate to future whale habitat use. We also strongly
encourage the Agency to address the monitoring and surveillance recommendations made
by NMFS’s expert working group.

•

If NMFS does establish a closed area south of the Islands, we recommend it encompass the
smallest possible area spatially and temporally and include a two year sunset provision. A
sunset is advisable given the yet to be determined consequences of wind industrialization
on whale and zooplankton behavior. Further, we encourage the Agency to better justify
their use of alternative whale sightings data as the best available.

•

We request that NMFS consider AOLA’s risk reduction provisions as an alternative
preferred suite of measures for LMA 3 in the final rule and FEIS.

Taking of Marine Mammals Incidental to Commercial Fishing Operations; Atlantic Large Whale Take
Reduction Plan Regulations; etc.
1 March 2021

Please accept these comments towards the Atlantic Large Whale Risk Reduction Plan.
I agree with the strategy of having gear marking requirements differ according to region. The
entanglement risk problem requires more accurate data to determine areas of particular concern and
having unique gear identifiers based on location is a strong start. The broad brushed approach is one
that is very detrimental to the commercial fishing industry and may cause undue harm to fishermen by
burdening them with regulations that will achieve no entanglement risk reduction. Area specific gear
markings endeavor to gather better data about where entanglements may be occurring and therefore
not only reduce broad brush regulations but also target areas that will achieve the highest risk
reduction. While I agree with having different gear marking requirements for different areas there also
needs to be a balance on the workload for fishermen and having overly complicated regulations that are
hard to enforce. Specifically, requiring a 6” green mark in federal waters in addition to the gear marking
requirements for a particular state may be overly burdensome and create enforcement issues. Gear
marking will need to be done before a season starts and many fishermen start fishing in state waters
and move gear into federal waters as the season progresses. This will mean that fishermen will need to
add a 6” mark to wet, seaweeded rope while dealing with moving gear which always results in space,
time, and weather being at premiums. Also, it is something that may wear off and therefore be
attributed incorrectly to state waters. Finally, this may cause enforcement confusion as environmental
police are tasked with enforcing thousands of laws and rules that differ based on permits/licenses, area
fished, time of year fished, and other ever-changing parameters.
I would like to suggest that NMFS consider and test what is known as Neo-Corp #10 braided rope for
acceptable use in achieving 1700lb breaking strength endlines. It has been tested and found to break at
less than 1700lbs and also has shown to be operationally feasible in many areas. Also, with
consideration to operational feasibility and safety, having the top 50% of each endline be required to be
1700lb weak rope or have weak insertions would be best. This will reduce rope loss and potentially
reduce the amount of line entangled around a whale since the line will break at the 50% point, leaving
behind most of the endline.
Gear marking and preparing endlines with 1700lb breaking strength top portions of weak-insertions is
going to be very time-consuming and add to an already arduous process of preparing traps to be fished
when the season arrives. Over the years fishermen have been asked to do more and more in terms of
regulations. There will come a point when these additional preparations supersede the amount of time
it actually takes to prepare the rest of the gear. It takes a lot of time to be ready for the seasons and is
one of the factors that makes this type of commercial fishing only suitable for dedicated and driven
individuals. This additional time, money, and stress needs to be considered in this rule making and
especially in future rule making.
Having a conservation equivalency in the “trawling up” task is a must. For example if an area is required
to have a 10 trap trawl with endlines, then a 5 trap trawl with a single endline should be

conservationally equivalent. Trawling up poses a MAJOR safety risk for many lobster vessels. Some
vessels are too small for these larger required trawls and/or were not built to handle trawls. Some
fishermen operate their vessels alone. Requiring trawls that are too long greatly reduces their safety. If
possible, an exemption such as vessels 29ft and shorter could be allowed to use shorter trawls or singles
as the state of Massachusetts just enacted in their recent Large Whale Risk Reduction regulations.
Other measures and endeavors that should be undertaken include increasing aerial survey coverage and
occurrences, continuing to monitor large ship traffic and seasonal speed restrictions, pushing Canada to
do their part, and examining the effects of large-scale wind farms on NARWS and their food source. The
wind energy area (WEA) off RI and southern Mass completely covers and engulfs the migration and
foraging areas of Right whales. There have been virtually no studies on the effects of wind farm
geotechnical and geophysical surveys, construction, or operation on copepods or marine mammals.
Wind farms in Europe have been shown to completely alter localized ecosystems based on the creation
of turbidity and sedimentation via modifying currents through physical structures. Wind farm
geotechnical and geophysical surveys employ many of the same survey approaches as oil and gas
exploration, yet they are ongoing with less than minimal oversight or regulatory requirements. Once
construction starts, near continuous around the clock pile driving will result in major effects on marine
organisms on a massive scale. The intense sound and pressure that results is likely to kill most small
zooplankton in a localized area. This would significantly alter the presence of copepods, therefore
reducing a food source for Right whales. The areas south of Martha’s Vineyard and Nantucket
(encompassed by WEA) serve as a temporary foraging spot for Right whales along their migratory route.
The overall condition of individual Right whales is already shown to be declining. If this “rest stop food
source” is reduced or eliminated, RWs will have to endure their long and ever-changing journey with
less food resulting in further declination of their physical aptitude. Agreements by wind farm developers
to halt construction and pile driving during RW presence will only help so much. RWs can be difficult to
spot visually from boats or planes depending on distance from vessel or sea state. Also, sound and
pressure from construction is likely to cover much farther distances than a RW can be visually or
otherwise detected. This will result in further disturbance to RWs and may even result in harassment or
“takes” as defined legally. My concerns here only scratch the surface of issues that need to be
considered and studied with regards to wind farms and endangered species. I realize that the breadth of
this current action does not encompass wind farms, however, I strongly feel that it is important that
NOAA NMFS and BOEM work together on this issue and therefore I am stating it and raising it in a forum
that I believe can at least suggest to the appropriate departments the importance of this issue. Wind
farms proceeding in their current form will undoubtedly have a far greater impact on NARWs than
commercial fishing ever has or ever will. Altering the physical and biological state of an ecosystem will
have an indelible deleterious effect to this species…and many others.

Thank you for your time and consideration of my comments.

Sincerely,
Gregory J. Mataronas

Massachusetts Lobstermen’s Association, Inc.
8 Otis Place ~ Scituate, MA 02066
781.545.6984

February 25, 2021

Via email: [email protected]

&

Online: https://www.regulations.gov/commenton/NOAA-NMFS-2020-0031-0006
Michael Pentony, Regional Administrator
National Marine Fisheries Service,
Greater Atlantic Regional Fisheries Office
55 Great Republic Dr.
Gloucester, MA 01933
RE: NOAA-NMFS-2020-0031-0006
Dear Mr. Pentony,
On behalf of its 1800 members, the Massachusetts Lobstermen’s Association (MLA) respectfully
submits this letter of comment with great concern and reservation to National Marine Fisheries
Service (NMFS) regarding the proposed amendments to the regulations implementing the Atlantic
Large Whale Take Reduction Team Plan (TEAM/PLAN), NOAA-NMFS-2020-0031, to reduce the
incidental mortality and serious injury to North Atlantic Right whales and other protected species in
the northeast commercial lobster and crab trap/pot fisheries to meet the goals of the Marine Mammal
Protection Act (MMPA) and the Endanger Species Act (ESA).
Established in 1963, the MLA is a member-driven organization that accepts and supports the
interdependence of species conservation and the members’ collective economic interests. The MLA
continues to work conscientiously through the management process with the MA Division of Marine
Fisheries (MADMF), Atlantic States Marine Fisheries, National Marine Fisheries Service (NMFS),
and Atlantic Large Whale Take Reduction Team (ALWTRT) to ensure the continued sustainability
and profitability of all the resources in which our members are engaged in.
The cooperation put forth by the Massachusetts commercial lobster industry is a true testament that
we can collectively work together with managers to reduce the potential risk for right whales all the
while preserving the viable and historic commercial lobster fishery here in the Commonwealth.
1

Massachusetts Right Whale Conservation Timeline
1935- International ban on hunting whales goes into effect
1970- North Atlantic Right Whales listed as endangered
1996- NOAA implements the Large Whale Take Reduction Plan
1997-MA requirement for “breakaway” features in gillnets and trap/pot buoy lines
Seasonal ban in Cape Cod Bay for gillnets and on use of floating rope between pots
1997-Dedicated aerial surveys begin in Cape Cod Bay
2000- Year-round gear marking is implemented
2004 – Year-round ban on floating rope between traps in Cape Cod Bay
2007 - Year-round ban on use of floating rope between traps statewide
2014- MA Restricted Area is created – A three-month closure Feb-April to 3,071 sq. miles
2015 - 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area
2016 – 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area
2017 – 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area PLUS 4-day extension
of

the gear closure in Cape Cod Bay

2018 - 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area PLUS a 15-day
extension of the gear closure and speed restriction (10 mph) for small vessels in Cape Cod Bay
2019- 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area
2020 - 3 month (Feb/Apr) closure to all pots/traps in the MA Restricted Area, MLA members deploy
700 coils of whale safe 1700lb weak red rope.
2021 – MFAC implements 73.6% risk reduction conservation measures

Proposed Rule Changes
Modify gear marking to introduce state-specific marking colors
The MLA SUPPORTS increasing the number of the area color for vertical lines markings. By using
a state by state color scheme it will help to identify the origin of an interaction should there be one.
Currently, the limited markings on the vertical lines drastically hinders NMFS’s ability to truly
identify the origin of the interaction to sanction the appropriate risk reductions.
However, the MLA is greatly concerned about the dual permit holders who will have markings
indicative of state waters fishermen should the top 2 fathoms of vertical line be missing upon retrieval
which is where the one federal green mark is located. NMFS needs to seriously reevaluate how these
dual permit holders will mark their endlines in federal waters.
2

Modified Gear Configurations (Trawls and Weak Contrivances)
Trawls
Currently, there are less than 80,000 vertical lines deployed by the commercial lobster fleet in
Massachusetts and a significant number of commercial lobstermen continue to convert their
businesses to fish trawls. Their collective effort to further reduce vertical lines will be beneficial and
the MLA DOES NOT SUPPORT the 50% increase in pots in the trawls for LMA 1, LMA2 and OC
between 3-12nm. The fleet that fishes in these areas is limited by vessel size and available deck
space, creating a significant safety concern.
The proposed gear configurations to reduce the number of vertical buoy lines by requiring more traps
between buoy lines between LMAs is unfair as the LMAs beyond 12nm is only a 25% increase. The
MLA requests the same 25% trawl length increase be applied to all the LMAs under consideration.
LMA

Current

Proposed

Massachusetts Vertical Line Reductions Underway
The MADMF has decades of data to back up the ongoing reduction of the lobster fishery here in
Massachusetts with a 100% MANDATORY reporting. The MADMF can show the downward trend
for the MA lobster fleet. Currently, in Massachusetts there are less than 747 active lobstermen fishing
an average of 490 pots and most of them are fishing 5-30 pot trawls with an estimated 20-25 permits
retiring every year.
The Massachusetts commercial lobster fishery in 2007 had 1,361 permits and as of 2019 there was
only 1,066 permits issued of which 747 were fished. During this timeframe there has been a
reduction of 295 commercial lobster permits with NO NEW PERMITS being issued. The
commercial lobster industry in the Commonwealth deploys approximately 80,000 vertical lines and
the numbers are going down as the new conservation management comes online in early 2021.

3

Table 1: MA Lobster-pot Fishery, Total maximum buoy lines by LMA and Year, 2011-2018
LMA

2011

2012

2013

2014

2015

2016

2017

2018

LMA1

71,811

67,801

65,220

66,050

61,014

64,191

67,846

60,821

LMA2

10,952

10,828

8,560

7,803

7,333

7,167

7,002

6,188

LMA3

1,299

1,256

1,335

1,549

1,040

1,126

1,228

1,656

18,430

15,027

16,773

15,009

15,037

13,669

13,518

13,474

102,492

94,912

91,888

90,411

84,424

86,153

89,594

82,139

OCLMA
Total

Data Source: MA Supplemental Reports and LMA permit declarations

Massachusetts Ongoing Trap Reductions
Currently, Massachusetts commercial lobstermen are still reducing effort through the ongoing trap
reductions in Lobster Management Area (LMA) 2 and LMA 3 and these real numbers in reduction
that need to be quantified and given a conservation credit. Today, there are approximately 70 active
lobstermen in MA LMA 2 and approximately 58 active lobstermen in Outer Cape Cod (OCC), how
much further can they be reduced in effort to remain whole when they are continually paying a
conservation tax every time a tag is transferred. It should also be noted that; every transfer in LMA 2,
LMA 3 and OCC there is also a 10% conservation trap tax which also equates to even a further
reduction in effort.
Weak Contrivances
On January 28th, the MFAC implemented a more restrictive rule for state waters weak insertions at
every 60’, the MLA is concerned that the frequency of weak insertions or weak rope into buoy lines
will not be fair and equitable among states.
The MLA SUPPORTS that EVERY state MUST HAVE THE SAME NUMBER of weak
contrivances in federal waters without any exceptions. The commercial lobstermen here in the
Commonwealth will yet again be doing more than the rest of the lobster fishery and the weak
contrivances for the vertical buoy lines need to be in line with the federal plan. Many MLA members
fish both state and federal waters and these requirements need to lineup so they can move in and out
of state waters into federal waters without changing out their entire endline.
State

Current

Proposed

4

1700lb Weak Red and Candy Cane Rope as a “Weak Contrivance”
In 2019, the Lobster Foundation of Massachusetts was granted a Massachusetts Environmental Trust
grant to develop a 1700lb weaker whale safer red rope that was deployed during the 2020 fishing
season for field testing. The ropes 1700lb breaking strength basis came from the New England
Aquariums study Effects of fishing rope strength on the severity of large whale entanglements by
Amy Knowtlon et. al. where they “found entangled in tested rope strengths below 7.56 kN or 1700
lbsf, implementation of RBS ropes would likely reduce the probability of mortality and suffering”
Kowlton et.al.

We are happy to report that over 700 coils of the first version were
successfully distributed and deployed by several hundred
commercial lobstermen in Massachusetts. MADMF also purchased
400 plus coils of the weak red rope that will be distributed to the
commercial lobster industry in early March.
The LFoM was also awarded a small grant to purchase the 1700lb
breaking strength red and white (Candy Cane) rope to be field tested
this spring (2021). We are looking forward to securing additional
funding to purchase a large quantity of the weak ropes to be
deployed during the 2021 fishing season.
These two weak ropes breaking at 1700lbs have been tested by
Kevin Staples at the Maine Department of Resources and we are
happy to report that they are breaking well within the acceptable
tolerance ranges to significantly reduce the Serious Injury and
Mortality to right whales:
New - Weak rope 3/8”
New -Weak Red Rope Red and White
(Small 3/8”)
(Candy Cane)
1700 lbs
1492 lbs
1736 lbs
1462 lbs
1747 lbs
1501 lbs
1740 lbs
1471 lbs
1675 lbs
1522 lbs

5

Ketcham Supply in New Bedford has been instrumental in getting these two 1700lb. weak ropes
developed and manufactured. We are pleased to report that these weak ropes can be made in state
specific colors and are hopeful that NMFS will utilize these weak ropes and various colorations for
implementation as a default gear marking.
Furthermore, the MLA and LFoM is working tirelessly with the MADMF to develop and test a suite
of acceptable weak contrivances that will be acceptable. We are hopeful that NMFS will adopt these
and release a menu as soon as possible as the commercial lobstermen are looking for options to
configure the endlines to be ready for the 2021 fishing season.
The LFoM is processing all the data that was collected from the first year of the weak red rope
project. The consensus is that the weak red rope is a viable option for a weak contrivance and the
MLA respectfully asks NMFS to accept the 1700lb. weak red rope as a weak contrivance.
The 1700lb. candy cane rope will be field tested this year and should also be accepted as a weak
contrivance based on the manufacturers specifications and testing that has been done by the MEDMR
all of which proves it to be well within the 1700lb., with acceptable tolerances, for a “weak
contrivance” as the industry needs as many options as possible.
(See rope manufacturers specifications below)

6

7

8

Modify existing seasonal restricted areas to restrict buoy lines
(but allow ropeless (acoustic) fishing)
The Massachusetts Lobstermen’s Association DOES NOT SUPPORT ropeless (acoustic)
technology and the MLA DOES NOT support the ten-year timeline set forth in the BiOp which
clearly indicates that ropeless (acoustic) fishing year round is the ultimate goal of NMFS.
LMA

Current

Proposed

Ropeless (Acoustic) Fishing is NOT REAL
Today, there is a lot of misperception on what can and cannot be done in the commercial lobster
fishery when it comes to the use of ropeless (acoustic) fishing. Over the last 5 years or so, there has
been a major effort to make it mandatory for the commercial lobstermen and fixed gear fishermen to
transition over to ropeless (acoustic) gear to further save the right whales.
Furthermore, this gear transition to ropeless (acoustic) is being pushed for year round implementation
when it is not needed as the 3-month closure is in effect when the right whales are present. The MA
Restricted Area has a 0% chance of an entanglement happening and to think there will be zero
failures of this technology is knowingly putting the right whales at risk.
The sheer magnitude of the economic undertaking would be well over 150 million dollars to outfit the
commercial lobster industry here in the Commonwealth the first year. The individual cost would be
an estimated $190,000 per fishermen to outfit their gear to go fishing. Not to mention there is an
average of 10% gear loss each year and this would have to be replaced year in and year out and the
gear loss would likely increase dramatically as the technology has yet to be tested on large scale
multi-disciplined fisheries. This transition would take hundreds of millions of dollars and decades to
implement and outfit every commercial fishing vessel that is on the water.
The unintended consequences of gear conflicts between traditional and ropeless (acoustic) gear in the
fisheries would be grave if not thought through to the end. Fixed gear commercial fishing and the
9

mobile gear industry do not fish in one hypothetical box for a species and this is where the gear
conflicts would be catastrophic given that the technology is not readily available nor do individual
brands talk to each other.
Here is a scenario for comparison when technologies do not communicate with each other; What
would happen if AT & T, Verizon, Singular, Sprint, and Metro PCS cellphones did not
communicate with each other? The consumers would have to carry several cell phones to stay
connected and this would be the same for the ropeless (acoustic) technology. As of today, February
23, 2021, these technologies do not communicate with each other; Desert Star, Edge Tech, Lobster
Lift, Smelts and more, do not interact with each other so each commercial fisherman would have to
have multiple boxes, screens, and transducers on their vessel to see where all the gear is on the
bottom.
As stated by MLA, Secretary Treasurer, Dave Casoni during the North Atlantic Right Whale
Consortium meeting in 2019; “We’re at the Model T today and they expect us to be at the Tesla
tomorrow.” Remember it took 100 plus years to get there with tens of thousands of people working
on the technology.

New seasonal buoy line closures
The MLA DOES NOT support ANY new closures as a
conservation risk reduction measure. The proposed
closure in LMA 2/3 and overlap is almost the size of
Connecticut and unjustly too large and must be reduced
dramatically. The opportunistic sightings data that was
used needs to be excluded as it was not collected in a
systematic or timely manner.
The month of April should also be removed from the proposed SNE closure timeframe for the same
reasons as noted above, the low number of historic opportunistic right whale sightings data does not
warrant this month being closed. There just aren’t the high aggregations and this month would be
economically devastating to the commercial trap/pot fleet (lobster, crab & gillnet).

10

To evade a closure, even with the low number of fishermen fishing and the low number of right
whale sightings, the LMA 2/3 overlap commercial lobstermen would be willing to fish 45 pot trawls
with both endlines weakened to further reduce risk.
The LMA2 commercial lobstermen have been eviscerated through years of trap reductions and there
is so few fishermen fishing in this area and for them to lose yet even more profitable fishing would be
economically devastating to these fishermen.
The MLA further requests that a 5-year review and sunset provision be added to ANY closure as the
ecosystem is rapidly changing and the right whales are moving.

Additional Comments and Concerns
Massachusetts commercial lobstermen have remained at the forefront of conservation measures for
the right whales for over two decades. Unfortunately, the Biological Opinion (BiOp) clearly
indicates an aggressive timeline for the implementation of more conservation measures implemented
above and beyond ALL the conservation measures that are in place today. While NMFS's BiOp
found "no jeopardy", they are basing everything on their contingency plan to implement a
Conservation Framework over the next 10 years leaving the federally permitted commercial
lobstermen in Massachusetts in limbo yet again.
Phase 1: Implementation of the Proposed Rule to reduce risk to right whales from the northeast
lobster and Jonah crab fisheries by at least 60% in 2021.
Phase 2: Implementation of rules (to be determined) to reduce mortality and serious injury (M/SI) in
federal gillnet and other Atlantic coast trap/pot fisheries by 60% in 2023.
Phase 3: Implementation of rules (to be determined) for an additional 60% risk reduction in all
federal fixed gear fisheries in 2025
Phase 4: Implementation of rules (to be determined) for additional 87% risk reduction in all federal
fixed gear fisheries in 2030. This could be reduced to 28% if M/SI from Canada or vessel strikes are
reduced.
The BiOP is setting an unrealistic and unattainable timeline for upwards of a 98% risk reduction
conservation, what does that really mean to the commercial lobstermen in Massachusetts when we are
at 73.6% today, this would be upwards of a 100% risk reduction by 2030. How is this even remotely
11

feasible when Massachusetts commercial lobstermen have ZERO mortalities and or serious injuries
attributed to their fishery!
The unrealistic, idealistic and aggressive “phased” in approach on the Massachusetts commercial
lobster fleet will cause even more economic hardship regardless of them being at the forefront on
ALL the right whale conservation measures to date.

Massachusetts Marine Fisheries Advisory Commission (MFAC)
The MFAC at their January 28, 2021 voted on and passed an aggressive suite of additional
conservation measures for a 73/6% risk reduction for right whale protection will be implemented in
Massachusetts by March 5, 2021. These conservation measures are as follows;
Commercial Fixed Gear Closures
The MFAC voted to:


Expand the existing seasonal state waters

commercial trap gear closure in both space and time.
The existing closure occurs from February 1 – April
30 within Cape Cod Bay, Stellwagen Bank, and the
Outer Cape Cod Lobster Management Area. The
closure area will extend north in state waters from
Scituate Harbor to the New Hampshire maritime
border and the closure duration will extend through
May 15. However, during the May 1 – May 15 period, the closure will occur on a dynamic basis
allowing DMF to lift the closure (or parts thereof) if whales no longer remain in state waters. The
closure will not extend into those southern state waters in Lobster Conservation Management Area 2.


Geographically expand the existing January 1 – May 15 gillnet closure in Cape Cod Bay to include

a discrete area along the South Shore between Plymouth and Scituate.
Commercial Trap Gear Modifications. The MFAC voted to:


Require commercial trap fishermen to fish buoy lines that break when exposed to 1,700 pounds of

tension beginning on May 1, 2021. This may be achieved by fishing specially manufactured buoy
lines with a custom 1,700 pound breaking strength or by inserting NOAA Fisheries approved
12

contrivances into the top 75% of the buoy line every 60’. At this time, the only approved contrivance
is the so-called “South Shore Sleeve.”


Require commercial trap fishermen fish buoy lines with a maximum diameter of 3/8”.

Recreational Lobster and Crab Trap Measures. The MFAC voted to:


Establish a recreational lobster and crab trap haul-out period of November 1 – May 15 (beginning on

November 1, 2021) throughout all of state waters. This haul-out period will not apply to unbuoyed
recreational lobster trap gear fished in the Cape Cod Canal.


Require recreational trap fishermen fish buoy lines with a maximum diameter of 5/16”.

https://www.mass.gov/doc/january-28-2021-mfac-meeting-summary/download?utm_medium=email&utm_source=govdelivery

Massachusetts commercial lobstermen are repeatedly burdened with economic hardships and the
MOST restrictive conservation regulations in the United States commercial lobster industry, it is NO
LONGER the sole responsibility of the Massachusetts commercial lobstermen to do ANY more “risk
reduction or conservation” until other regions step up to the SAME draconian risk reduction and
conservation effort levels that are in place right here in the Commonwealth.

Unknown Takes
NMFS has determined that under these baseline conditions (baseline 2000-2019) predict that the
“right whale population will continue to decline over the next 50 years, even if all U.S. federal fixed
gear fisheries are shut down.” https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DraftFisheriesBiOp011421.pdf
Right whales continue to change their movement patterns, resulting in their emergence in areas at
times of year where they haven’t been traditionally observed. In 2017, right whales appeared in the
Gulf of St. Lawrence, around busy shipping lanes and areas of a high abundance of unregulated
Canadian snow crab gear.
In 2017-2018 in Canada alone there were 12 right whales killed in the Gulf of St Lawrence; 5 to ship
strikes, 2 to entanglements and 5 unknown causes. There were 5 additional live entanglements in this
area. In 2018, a dead right whale was found off the Southeast U.S. in gear consistent with the
Canadian snow crab fishery.

13

Per the ALWTRT proposal, there have been, with certainty, 0.2 takes per year attributed to the U.S.
fisheries and 0.7 to Canadian fisheries. The 0.5 difference is significant between the countries and
seeing Canada is only limited to spatial and temporal protections for right whales ONLY for the snow
crab fishery leaving thousands of unregulated endlines being deployed in Canada.
When a word like “IF” is used to describe how much time right whales spend in the waters of the
U.S. vs. Canada, one would think tagging these animals would be critical in saving them?! While
survey flights religiously track right whales in Massachusetts, there seems to be less of an interest in
tracking them throughout the region. Right whales need to be tagged today!
The staggering amount of deaths endured by the right whales in Canadian waters is unfathomable.
The Canadians have killed on average 8 right whales per year over the last three years. NOAA could
take ALL of the vertical lines out of the water along the East Coast and the Potential Biological
Removal (PBR) would still be exceeded and the U.S commercial lobstermen would still be found
50% at fault! How is the U.S. commercial lobster fishery ever supposed to achieve the PBR goal
when it is truly unattainable?
Currently, there are no regulations on the Canadian lobster fishery prohibiting the use of floating line
at the surface which is deadly to right whales. Whereas, ALL U.S. commercial lobstermen are
prohibited from using floating line at the surface, this conservation measures can make a difference
and it should be implemented in Canada without further delay.
For decades now the commercial lobster industry has asked to tag these animals with great push back.
Now more than ever we need real-time data on where these animals are so to reduce further harm as
these animal’s swim into unprotected water. The days of assuming where they swim need to stop and
tagging them for real-time data needs to be realized without further delay.
We cannot save the species without significant Canadian action TODAY! We need to demand more
action from Canada as right whales are more frequently traveling from Florida to the Gulf of St.
Lawrence into unregulated Canadian gear and vessel activity. When the right whales leave the safest
waters of Cape Cod Bay in the spring they are very well fed and very much alive until they arrive in
the unprotected water in the Gulf of St. Lawrence where they continue to die.

14

Habitat Degradation
As the ecosystem in the Northeast continues to
deteriorate, right whales continue to case the copepods
into the unprotected waters in Canada leaving the U.S
commercial lobstermen continue to pay the price for the
right whales’ failure to thrive. The right whales are
using more energy searching for food leaving them
thinner than their relatives in the Southern Hemisphere.

“The heatwave of 2018 fits with a much longer trend in
the region, which is among the fastest-warming parts of the global ocean. In the past three decades,
the Gulf of Maine has warmed by 0.06°C (0.11°F) per year, three times faster than the global
average. Over the past 15 years, the basin has warmed at seven times the global average. The Gulf
has warmed faster than 99 percent of the global ocean.”
https://climate.nasa.gov/news/2798/watery-heatwave-cooks-the-gulf-of-maine

There is no denying that the ongoing, Watery heatwave cooks the Gulf of Maine, and is driving the right
whales and their food of choice, copepods, northward where they continue encounter large diameter
endlines and heavy fishing gear. “The populations of copepods, a key food source for endangered
Northern Right Whales, also seem to be moving with the changing conditions.”
https://climate.nasa.gov/news/2798/watery-heatwave-cooks-the-gulf-of-maine

Moreover, the negative implications of Projecting the effects of climate change on Calanus
finmarchicus distribution within the U.S. Northeast Continental Shelf, Brian D. Grieve1,2, Jon A.
Hare3 & Vincent S. Saba4, (Grievel et. al.), do not look good for the recovery efforts set forth in the
BiOp or the proposed ALWTRT rule for the right whale.
“Calanus fnmarchicus is vital to pelagic ecosystems in the North Atlantic Ocean. Previous studies
suggest the species is vulnerable to the efects of global warming, particularly on the Northeast U.S.
Shelf, which is in the southern portion of its range. In this study, we evaluate an ensemble of six
diferent downscaled climate models and a high-resolution global climate model, and create a
generalized additive model (GAM) to examine how future changes in temperature and salinity could
afect the distribution and density of C. fnmarchicus. By 2081–2100, we project average C.
15

fnmarchicus density will decrease by as much as 50% under a high greenhouse gas emissions
scenario. These decreases are particularly pronounced in the spring and summer in the Gulf of
Maine and Georges Bank.
Furthermore, the “trained GAM was used to project C. finmarchicus densities into the future under
different climate scenarios. By the 2041–2060 period, there is expected to be similar decreases
in C. finmarchicus density under the RCP 4.5 and RCP 8.5 scenarios, down 22% and 25% of present
day density over all regions and seasons, respectively.” https://www.nature.com/articles/s41598-017-06524-1.pdf This
timeline clearly indicates that ALL the right whale conservation efforts by the lobster fishery will not
help these animals to thrive as they are starving and unable to thrive in an ecosystem that is failing
them.

With all the modeling, speculations, and conservation
efforts being expended on “saving” the right whales,
maybe we should all be looking at saving the Calanus.
Without enough food, calanus, to feed on, by 2100 will
there be any right whales left? Based on the BiOp 50
year predictions and the projected calanus density model,
most likely there will not be any right whales left.

16

Additionally, the BiOp clearly stated; the ecosystem is changing and the species is shifting northward
into unprotected waters. Per the United States Census Bureau’s, Coastline Population Trends in
the United States: 1960 to 2008 the growth along the eastern seaboard of the United States
“Between 1960 and 2008, the percentage increase in population along the coastline (84 percent) was
greater than that of the United States (70 percent).” Unfortunately, the majority of that growth on the
eastern coastline was based on “new coastline residents in the 1990s and post 2000 periods.”
https://www.census.gov/prod/2010pubs/p25-1139.pdf

With upwards of a 500% increase in coastal populations along the eastern seaboard, has a real
detrimental impact on the marine ecosystem. Without ecosystem safeguards in place, there seems to
be an equally disproportionate amount of conservation mandates put on the commercial lobster
industry without any conservation repercussions being put on the population along the eastern
seaboard. Are we all doing our part to save a species that may not be able to be saved or are we
killing the most historic and iconic fishing industries in the United Sates, the American lobster
fishery?
In closing, the Massachusetts Lobstermen’s Association thanks you for the opportunity to comment
and your thoughtful deliberation on our points of concern. Also we respectfully ask you to please
remember, that OUR commercial fishermen are stewards of the sea and without a healthy marine
ecosystem, collectively, they will not be able to continue earning a living in the historic and iconic
commercial lobster fishery.
Sincerely,
Beth Casoni
MLA, Executive Director
cc.
Sen. E. Warren
Sen. E. Markey
Cong. W. Keating
Cong. S. Moulton
Gov. C. Baker
Lt. Gov. K. Polito
EEA, Sec. K. Theoharides
FWE, Com. R. Amidon
DMF, Dir., D. McKiernan
MAFAC

17

March 1, 2021
Via Federal eRulemaking Portal
Michael Pentony, Regional Administrator
NMFS, Greater Atlantic Regional Fisheries Office
55 Great Republic Drive
Gloucester, MA 01930
RE:

Proposed Amendments to Regulations Implementing the Atlantic Large Whale
Take Reduction Plan, NOAA-NMFS-2020-0031

Dear Mr. Pentony:
The Maine Lobstermen’s Association (“MLA”) provides these written comments in
response to the National Marine Fisheries Service’s (“NMFS”) proposed rule to amend the
regulations implementing the Atlantic Large Whale Take Reduction Plan (“TRP”) and NMFS’s
associated draft environmental impact statement (“DEIS”). See 85 Fed. Reg. 86,878 (Dec. 31,
2020) (“Proposed Rule”). MLA appreciates NMFS’s consideration of these comments. 1
The MLA was founded in 1954 and is the oldest and largest fishing industry association
on the east coast. The MLA advocates for a sustainable lobster resource and the fishermen and
communities that depend on it. The MLA engages in advocacy, education, stewardship and
sustainable resource management, collaborative research, and cultural exchange. For more than
65 years, the MLA has ably represented the interests of the Maine lobster industry and educated
the public, regulators, and elected officials about the importance of this industry.

In a letter dated February 19, 2021, the MLA, in conjunction with other fishing associations, submitted
written comments in response to NMFS’s Draft Biological Opinion on 10 Fishery Management Plans in
the Greater Atlantic Region and the New England Fishery Management Council’s Omnibus Amendment
2 (released Jan. 15, 2021) (“Draft BiOp”). The February 19, 2021 comment letter on the Draft BiOp
(“Draft BiOp Comment Letter”) is attached to this comment letter as Addendum 1 and is hereby
incorporated by reference.

1

The MLA is committed to supporting both the continued viability of the Maine lobster
fishery and the improvement of the health of the western North Atlantic stock of the North
Atlantic right whale (“NARW”) through management measures that accurately address
documented risks to the NARW based on the best available science. Maine lobstermen are world
leaders in conservation and stewardship. We take pride in our longstanding sustainable fishing
practices, which include the implementation of successful measures for over two decades to
protect the NARW. Since NMFS formed the Atlantic Large Whale Take Reduction Team
(“TRT”) in 1997, the MLA has been fully engaged in working to reduce the potential risks to the
NARW from entanglement in U.S. fishing gear.
We provide the comments below to inform and improve NMFS’s development of a final
rule and preparation of a final EIS. As an important initial matter, we wish to emphasize that
MLA opposes the proposed LMA1 restricted area, which is the product of a legally,
scientifically, and factually deficient process. The TRT did not recommend (or even discuss) the
LMA1 restricted area. No LMA1 closure of any kind was presented for public review and input
in the scoping process for the DEIS. Consequently, the proposed LMA1restricted area has not
been sufficiently vetted and, indeed, NMFS has substantially underestimated the economic
impact of this proposal. A mere 60 days for public input is not adequate to assess and inform a
proposal that (1) will have adverse economic, operational, safety, and social impacts on the
fishery and (2) in the normal course, would have been comprehensively investigated and
informed through the statutorily mandated Marine Mammal Protection Act (“MMPA”) take
reduction planning and National Environmental Policy Act (“NEPA”) scoping processes.
In the short period of time that has been given, MLA has worked diligently to assess the
proposed LMA1 restricted area as best as possible under the circumstances. Notwithstanding
MLA’s opposition, if NMFS decides to implement the LMA1 restricted area, then MLA strongly
recommends that NMFS: (1) shift the closure period to September through December; (2)
reconfigure the restricted area as specifically described in the comments below; and (3) select
Alternative 1-B (the “trigger” option). These recommendations would significantly reduce the
economic, operational, safety, and social impacts of the closure without compromising
conservation benefits to NARW. Additionally, the “trigger” implementation option would also
allow NMFS to both implement the restricted area if and when it becomes necessary, and
properly investigate temporal and geographic options for the restricted area based on full input
from the fishery and other stakeholders. Our detailed comments and recommendations regarding
the LMA1 restricted area are set forth in Section II.D below.
The other key points and recommendations addressed in Section II below are summarized
briefly as follows:
•

The Proposed Rule unjustifiably targets the Northeast lobster fishery. There have been no
observed serious injury or mortality entanglements associated with the fishery since a
comprehensive suite of protective measures was implemented in 2009. See Section II.A.

•

The 60% risk reduction target is flawed because it arbitrarily assigns only 50% of
unknown entanglements to Canadian fisheries when the best available data show that a
much higher percentage of entanglements occur within Canadian fisheries. Within U.S.

fisheries, NMFS arbitrarily assigns all risk for unknown entanglements to trap/pot gear
when the best available science suggests that NARWs are twice as likely to be entangled
in other types of gear. Accordingly, we recommend that NMFS take a consistent
probabilistic approach for all apportionments that are made for purposes of determining
risk reduction, specifically to base apportionment on observed data. See Section II.B.
•

The Proposed Rule fails to account for the full benefits of weakening vertical lines to
reduce mortality and serious injury from entanglements. The full benefits should be taken
into account in the development of a final rule. See Section II.C.

•

The MLA strongly recommends that NMFS include conservation equivalencies in its
final rule to allow lobstermen as much flexibility as possible in implementing risk
reduction measures, particularly when some of those measure will not be practicable for
many lobstermen. See Section II.E.

•

The MLA supports the Proposed Rule’s gear-marking provisions. See Section II.F.

•

The Proposed Rule underestimates economic impacts. When actual impacts are
considered, the Proposed Rule is economically significant under E.O. 12866 and must be
evaluated as such. See Section II.G.

•

The MLA recommends that NMFS adopt a phased-in implementation schedule for a final
rule because lobstermen cannot reconfigure and mark gear in the middle of the fishing
season. See Section II.H.

•

The final EIS must present a full analysis of all of the technological, operational,
economic, safety, and enforcement concerns that must be resolved for a ropeless gear
fishery to be viable. See Section II.I.

•

Alternative 3 exceeds legal requirements, is impracticable, and fails to maximize net
benefits. NMFS should therefore not adopt Alternative 3 or any portions of Alternative 3.
See Section II.J.

•

The TRT process leading up to the TRP recommendations that form, in part, a basis for
the Proposed Rule was rushed and flawed. This undermines both the TRP
recommendations and the Proposed Rule. See Section II.K.
I. BACKGROUND

A.

The Maine Lobster Fishery.

The Maine Lobster Fishery has long been an integral part of the state’s—and the New
England region’s—culture, heritage, and economy. Lobstering income serves as the foundation
of Maine’s coastal economy and is the economic engine that keeps many small rural towns alive.

Maine’s lobster fleet directly supports more than 10,000 jobs: 3,670 captains, up to 5,750 crew,
and 1,095 students. 2
The Maine Lobster Fishery generates more than $1.5 billion annually in sales and
distribution supply chain revenue to the region’s economy, 3 and is made up of a diverse
collection of small businesses that are located in small, rural communities. Maine lobstermen
live along more than 3,500 miles of coastline in 120 rural communities, including 15 year-round
islands. 4 These coastal communities lack traditional economic opportunity and instead are highly
dependent on self-employment: 23% overall, with a 38% level in year-round island localities
(compared to 13% nationwide). 5 The median household income for Maine lobstermen is
$39,395, compared to the national median of $44,389. 6
By law, every Maine lobsterman is a self-employed business owner. Each runs his or her
own boat and lives, works, and spends his or her earnings locally. Maine’s Department of Marine
Resources (“DMR”) assigns a commercial lobster license and a maximum 800-trap tag allocation
to a vessel. The vessel is owned and operated by the captain. 7 There is no corporate ownership in
the Maine lobster fleet. Licenses and trap tags can be sold only by the state of Maine; no sale or
transfer by private parties is permitted. 8 In 2018, Maine DMR issued 4,830 commercial lobster
licenses and 1,095 student licenses. 9
The Maine Lobster Fishery has been hit hard by the economic fallout of the COVID-19
pandemic. Illness and lockdowns resulted in substantial constriction of the food service and
entertainment sectors, where approximately 70% of American lobster has traditionally been
sold. 10 Lobster is particularly vulnerable to price deflation due to the tremendous risk in holding
This is based on a calculation of potential crew and categories of lobster licenses sold. In 2018, there
were 1,390 Class I licenses (29% no crew allowed), 1,891 Class II licenses (39% one crew member
allowed), and 1,549 Class III licenses (32% up to four crew members allowed). See ME. REV. STAT. tit.
12, § 6421.
2

Michael Donihue, Lobsters to Dollars: The Economic Impact of the Lobster Distribution Supply Chain
in Maine, at 1, 3, 12 (June 2018), www.colby.edu/economics/lobsters/Lobsters2DollarsFinalReport.pdf.

3

WAYPOINTS: LIVELIHOODS ON MAINE’S COAST AND ISLANDS, www.islandinstitute.org/waypointslivelihoods (last visited Mar. 1, 2021).

4

5

Id.

GULF OF ME. RESEARCH INST., A SOCIOECONOMIC SURVEY OF NEW ENGLAND LOBSTER FISHERMEN,
at 27 (2008), http://www.lobstermen.com/wp-content/uploads/2009/10/RES_DH_reports_LobsterSocioec-Survey.pdf.
6

7

ME. REV. STAT. tit. 12, § § 6431-G.

8

Id. § 6421.

ME. DEP’T MARINE RES., LOBSTER ZONE LICENSE AND TRAP TAG ANNUAL SUMMARY (2008–18),
https://www.maine.gov/dmr/science-research/species/lobster/documents/2008Current%20Licenses%20and%20Tags.pdf.
9

Letter from Marianne Lacroix, Exec. Director, Maine Lobster Marketing Collaborative, to Patrice
McCarron, Exec. Director, Me. Lobstermen’s Ass’n, Inc. (Apr. 22, 2020) (on file with recipient).

10

and moving live product. For example, the price paid to lobstermen for their catch dropped from
$6.00 to $3.50 per pound between Memorial Day and early June 2020 as demand fell, putting
lobster businesses at risk of failing.
For more than a century, the Maine Lobster Fishery has been a stable presence along
New England’s waterfronts. It is an icon of the region, and a vital part of the region’s culture,
traditions, and economy. The future of many of Maine’s coastal communities, and economic
opportunity for children growing up in these communities, depends on the continued success of
the Maine Lobster Fishery.
B.

Successful Regulation of the U.S. Northeast Lobster Fishery Under the TRP.

Sections 117 and 118 of the MMPA establish the mechanisms by which NMFS regulates
the interactions of commercial fisheries with marine mammals. Section 117 requires NMFS to,
inter alia, estimate annual levels of “human-caused mortality and serious injury” (“M/SI”) of
marine mammal stocks and to report those estimates in annual stock assessment reports
(“SAR”). 11 Under Section 118, those M/SI estimates are used as the basis for various regulatory
mechanisms. As relevant here, NMFS’s implementation of the MMPA’s take reduction planning
provisions is based upon the level of M/SI by commercial fisheries compared to a marine
mammal stock’s “potential biological removal” level (“PBR”). 12
Commercial fisheries interactions with marine mammals that do not result in M/SI do not
“count against” PBR. 13 Accordingly, take reduction plans can include measures intended to
reduce the severity of marine mammal interactions such that they do not result in M/SI. 14 The
MMPA’s take reduction planning short-term and long-term goals can therefore be achieved by
both minimizing marine mammal interactions and ensuring that any interactions that do occur
result in non-serious injuries.
Under the guidance of the TRT and implementation of the TRP, the NARW population
growth trajectory was favorable for many years. Collaborative work by lobster harvesters,
researchers, fishery managers, and other stakeholders contributed to scientific knowledge of
NARW behavior and interaction with fishing gear and other human activities across its
migratory range. 15 This work included harvesters working alongside fishery regulators, whale
11

16 U.S.C. § 1386.

12

See id. § 1387(f).

13

See id. § 1387(f)(2) (both take reduction planning goals refer only to reducing M/SI).

See, e.g., 50 C.F.R. § 229.37(c) (2012) (Hawaii false killer whale take reduction regulations requiring
weak hooks, strong branch lines, and training to remove hooks and trailing gear from hooked whales,
resulting in non-serious interactions).

14

The MLA and its members have collaborated with scientists in developing and testing fishing gear to
reduce the risk of entanglement. The MLA partnered with the NMFS gear team in the 1990s to measure
gear profiles, test weak links, and explore gear modifications; worked with researchers in the 2000s to
establish methods and standards to deploy weak links, develop buoy line marking methods, and deploy
remotely operated vehicles and sensors to measure groundline rope profiles; and tested a variety of
vertical line modifications, such as weak rope, stiff rope, glow rope, and time tension line cutters. Since

15

scientists, and the private sector to develop innovative fishing practices and gear deployment
strategies intended to reduce the frequency and severity of interactions between whales and
fishing gear. This work led to a series of enhanced measures to mitigate risk to the species
from the U.S. Northeast Lobster Fishery (the “Lobster Fishery”).
Specifically, regulations developed and imposed at the state and federal level, including
those implemented under the TRP, have significantly reduced both (1) the amount of lobsterrelated rope in the water, and (2) the risk of a severe outcome (i.e., a M/SI determination) if a
NARW encounters such gear (see Table 1 below). The principal elements of these protective
measures are summarized below.
•

Sinking groundline requirement. The 2009 TRP regulations preclude the use of “floating
groundlines” connecting lobster traps and, instead, require the use of “sinking
groundlines.” This eliminates the potential for whale entanglement in floating lines near
the ocean bottom. This regulation removed over 27,000 miles of floating groundlines
from New England waters. 16

•

Vertical line reduction. The 2014 TRP regulations established minimum traps per trawl
based on geographic area and distance from shore, resulting in the removal of
approximately 2,740 miles of rope from the water.

•

Massachusetts Restricted Area. In 2015, TRP regulations established a 3,000 square mile
area spanning Cape Cod Bay, Massachusetts Bay, and outer Cape Cod, which has been
closed to lobster gear from February 1 to April 30 annually, eliminating entanglement
risk for up to three-quarters of the NARW during these months. The state waters portion
of this closure is managed by the Massachusetts Division of Fisheries (“DMF”), which
has extended applicability to recreational fishermen and moved the closure date beyond
April 30 as appropriate.

•

Gear Marking. Federal fixed gear fishermen regulated under the TRP are required to
mark vertical lines to aid in identifying the source of gear involved in an entanglement. In
2020, Maine implemented new regulations to require unique and expanded gear
markings.

2010, MLA and its members have worked with scientists to publish a resource describing lobster gear and
configurations deployed in the Lobster Fishery, map lobster fishing effort, develop a fishing gear/right
whale risk model, document wear issues associated with sinking groundlines and recommendations to
improve wear of that line, describe options for best fishing practices, test colored vertical lines, measure
the breaking strength of existing vertical lines, test new versions of weak rope, and update time tension
line cutters. In addition, individual MLA members have collaborated with researchers and developers
seeking to design a viable system for ropeless fishing.
See Brief for Me. Lobstermen’s Association as Intervenor-Defendants’, Decl. of Glenn Salvador at 5,
Ctr. for Biological Diversity v. Ross, 2020 U.S. Dist. LEXIS 149837, Civil Action No. 18-112
(JEB)(Aug. 19, 2020) (Attached to Draft BiOp Comment Letter as Addendum C) [hereinafter Salvador
Decl.].

16

•

Weak Links. The TRP requires the incorporation of 600-lb. weak links (1,100 lbs in
LMA3) in the top of a buoy line and to any attachments along the buoy line.

•

Universal Gear Requirements. The TRP regulations establish a suite of gear
modifications to reduce entanglement risk to NARW, prohibiting the use of floating line
at the surface and wet storage of gear for more than 30 days.

•

Protections in Maine’s Exempt Waters. In addition to the Universal Gear Requirements,
the state of Maine requires lobster gear fished in Maine’s exempt waters where NMFS
has determined there is minimal risk to NARW to implement whale protective measures.
Exempt gear must have at least one of the following modifications: (1) sinking or
neutrally buoyant rope for all buoy lines, (2) sinking or neutrally buoyant rope for all
groundlines, or (3) a 600-lb. weak link attached to the top of the buoy line. 17 As of
September 2020, this gear must be marked with three purple marks (36” at the top and
12” at the middle and bottom on of the line).

•

Gear Marking. Federally regulated fixed gear fishermen are required to mark vertical
lines to aid in identifying the source of gear involved in an entanglement. In 2020, Maine
implemented new regulations to require unique and expanded gear markings.

•

Effort Reduction. The Lobster Fishery has reduced effort across all jurisdictions since the
inception of the TRP. Area 3 has implemented mandatory annual trap allocation limits of
5% per year, Massachusetts has a long-standing moratorium on lobster licenses, and
Maine has established a limited-entry and apprentice Program, all of which have resulted
in a significant reduction in the risk of entanglement to NARWs.

In sum, implementation of additional protective measures by lobstermen under the TRP
has removed nearly 30,000 miles of rope and significantly lowered the risk profile of lobster gear
and fishing practices. MLA has been a key participant in the TRT process, helping to develop
and successfully implement these enhanced protections for NARW with demonstrated success
(Table 1). 18 Since 2009, there has been a sustained downward trend in observed entanglement
and M/SI of NARW in American lobster gear, attributable to the comprehensive actions taken
under the TRP. This must be (but is not) fully accounted for in the DEIS and Proposed Rule. 19

17

188-75-02 ME. CODE R. § A(2) (2021).

TRT members include MLA’s Executive Director, Patrice McCarron (more than 15 years); MLA
President and commercial fisherman, Kristan Porter; MLA Vice-President and lobsterman John
Williams; MLA Director and lobsterman Michael Sargent; and former MLA Board member and
lobsterman, Dwight Carver.

18

NOAA law enforcement has reported excellent compliance rates with fishery regulations, including
measures required by TRP. See, e.g., NAT’L OCEANIC & ATMOSPHERIC ADMIN., ENFORCEMENT REPORT
(Oct. 2018),
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/October%202018/noaa_fisheries_
enforcement_presentation.pdf (compliance rates for all fisheries was 92% in 2017).

19

II. COMMENTS ON PROPOSED RULE
A.

The Proposed Rule Unjustifiably Targets the Lobster Fishery.

The MLA supports risk reduction measures that are based on the best available science,
appropriately designed to achieve applicable legal standards, and accurately reflect the risk posed
by each commercial fishery’s co-occurrence with NARW. The MLA is disappointed that
NMFS’s management recommendations in the Proposed Rule have prioritized additional
mitigation measures in the Lobster Fishery even though the most significant documented threats
to NARW originate elsewhere. As described in the comments below, NMFS is not sufficiently
addressing other, more substantial sources of NARW M/SI. NMFS must address the
entanglement risk posed by all commercial fisheries in order to fulfill its legal obligations.
Additionally, NMFS has not sufficiently presented and analyzed available data showing
that the Lobster Fishery has substantially reduced the risk it presents to NARW over the past
decade through implementation of risk reduction measures that have proven to be effective.
Instead, as explained in the comments below, NMFS has artificially inflated the risk of the
Lobster Fishery based solely on the number of lines fished, and has not appropriately taken into
account indisputably relevant factors such as location-specific whale density, whale behavior,
and the threat levels associated with different types of fishing gear.
As illustrated in Table 1, continuous enhancements of whale protective measures have
been followed by significant declines in NARW entanglements attributed to the Lobster Fishery.
From 2000 to 2010, American lobster gear comprised 45% of known cases of such
entanglements (6 cases out of 13). However, since 2010, lobster gear comprises only 0.04% of
known cases (1 case out of 25). 20 Since 2014, there has been only one entanglement (a nonserious injury) in New England lobster gear. During this same time period, no NARW is known
to have died or suffered serious injury arising from entanglement in gear attributed to lobster
fishing. 21 This is significant since efforts to monitor and study NARW, including expanded
survey effort, have substantially improved since the beginning of the TRT process and increased
the likelihood to detect and identify sources of harm.
Table 1.
Confirmed American Lobster Entanglement 1997-2019
1997-2000
2000-2010
2010-2019
4 Non-serious injuries
1 Mortality;
1 Non-serious injury
4 Non-serious injuries
The MLA therefore continues to object to NMFS’s prioritization of the Lobster Fishery
for immediate management action. The level of risk reduction sought by NMFS is not consistent
with the fishery’s demonstrated lack of confirmed entanglements and M/SI with NARW since
2010.
20

Salvador Decl., supra note 16, at 8.

21

Id.

B.

The Risk Reduction Target of 60% Is Flawed and Inconsistent with the Best
Available Science.

The MLA continues to object to the 60% risk reduction goal upon which the Proposed
Rule is premised because it is not consistent with the best available science. The MLA instead
urges NMFS to adopt a uniform probabilistic approach, giving full weight to observed data, to
appropriately apportion unknown human causes of NARW M/SI. When available, additional
data, information, and expert judgment should be used to refine those proportions. This
methodology should apply to apportionment of (1) entanglements of unknown origin between
U.S. and Canada, and (2) entanglements occurring within the U.S. of unknown fishing gear type.
1.

NMFS ignores trends in observed data in assigning unknown-origin
entanglements to U.S. fisheries.

A core premise of the 60% risk reduction target is NMFS’s assignment of half of all
entanglements of unknown origin to U.S. fisheries. 22 NMFS makes this assumption “[f]or the
purposes of developing a conservative target” despite observational data showing a significantly
higher proportion of entanglements with Canadian fisheries. 23 This 50-50 assumption is very
significant because 96% of all mortality attributed to the Lobster Fishery results from
entanglements of unknown origin. As detailed below, the 50-50 assumption is flawed and
inconsistent with the best available science.
First, NMFS’s 50-50 allocation is not consistent with recent observational data showing
the disproportionate lethality of Canadian snow crab gear. As illustrated by Table 2 below, from
2016 to 2019, the data show a disturbing trend in which Canadian gear accounts for 31% of
known entanglements and 36% of M/SI. However, NMFS improperly discounts the value of
this observed data in the DEIS, stating that entanglements “can rarely be identified to a specific
fishery” and “[i]t is impossible to confirm the country of origin for every incident.” 24 NMFS’s
own data show that identifying causation is not uncommon, with 37% of entanglement cases
confirmed to a country from 2016 to 2019. Moreover, no confirmed M/SI from entanglements
with U.S. fisheries have been observed over the last five years through 2019. Indeed, on
February 23, 2021, the Atlantic Scientific Review Group (“ASRG”) prepared a consensus
statement recommending that NMFS “reassess the 1:1 apportionment of mortality between the
US and Canada based on recent observed M/SI.” (Emphasis added.)

Taking of Marine Mammals Incidental to Commercial Fishing Operations; Atlantic Large Whale Take
Reduction Plan Regulations; Atlantic Coastal Fisheries Cooperative Management Act Provisions;
American Lobster Fishery, 85 Fed. Reg. at 86,880 (Dec. 31, 2020) (to be codified at 50 C.F.R. pt. 229,
697).

22

23

Id.

NAT’L MARINE FISHERIES SERV., DRAFT ENV’T IMPACT STATEMENT, at 2-30 (Dec. 30, 2020)
[hereinafter “DEIS”].
24

Table 2.
Summary of Entanglement Incidents – US-Canada Comparison
2000-2019
2016-2019
Entanglement
MSI
Entanglement
MSI
All events
114
52
51
25
CN
18 (16%)
9 (17%)
16 (31%)
9 (36%)
US
8 (7%)
2 (4%)
3 (6%)
0 (0%)
Unknown
88 (77%)
41 (79%)
32 (63%)
16 (64%)
Source: Adapted from Draft BiOp, Table 56
Second, although the data presented above may not be statistically significant, 25 it is
arbitrary to ignore the stark differences in confirmed U.S. and Canadian entanglements. There
are underlying factors that strongly suggest a divergence with respect to both entanglement risk
associated with the trap/pot gear profiles used in each country and the risk of encounter based on
the recent shift in whale migratory behavior to the Gulf of St. Lawrence during the snow crab
fishing season. The combination of foraging behavior, which exposes whales to greater risk, and
proximity to heavy snow crab fishing gear has proved deadly in recent years. Indeed, Canada had
few, if any, risk reduction measures in place prior to 2017. 26
Meanwhile, beginning in 2009, both U.S. fisheries and maritime transportation sectors
implemented a series of regulatory enhancements to reduce NARW M/SI U.S. waters. 27 U.S.
fisheries implemented additional measures in 2014 to reduce the number of vertical lines. This
set of regulatory improvements, coupled with the shift of NARW migratory habits that exposes
the animals to Canada’s more lethal snow crab gear, explain the differences in the most recent
data.
Glenn Salvador, who spent more than two decades as a gear specialist at NMFS,
examined NMFS’s entanglement data over the 2000-2018 period to assess the effects of the
protective measures implemented in the U.S. (but not in Canada) starting in 2009. 28 Specifically,
Mr. Salvador reviewed data available for 138 documented entanglement cases in U.S. and
Canadian fisheries of all types, and concluded that there has been a significant decline in NARW
entanglements in U.S. lobster gear since 2010. Moreover, he noted that, since 2014, there has
Based on a Student’s T-Test (2-tailed), the difference is not significant at p < 0.05. RONALD E. WAPOLE
& RAYMOND H. MYERS, PROBABILITY & STATISTICS FOR ENGINEERS & SCIENTISTS (7th Ed. 2006).
25

Examining Threats to the North Atlantic Right Whale Before the Subcomm. on Water, Oceans, &
Wildlife of the H. Comm. on Natural Resources, 116th Cong. 6 at 26 (2019),
https://www.congress.gov/116/meeting/house/109022/documents/CHRG-116hhrg35462.pdf (Chris
Oliver, Assistant Administrator for NOAA Fisheries, noting coordination began in 2017).
26

See supra Section I.A. Although increased NARW migration into the Gulf of St. Lawrence was
observed as early as 2015, Canadian regulators did not implement enhanced protective measures for
vessels until 2017 and fisheries until 2018. See NARW sightings data at https://appsnefsc.fisheries.noaa.gov/psb/surveys/MapperiframeWithText.html.

27

28

Salvador Decl., supra note 16, at 5.

been only a single, non-serious entanglement attributed to the Lobster Fishery for which Maine
was ruled out as the origin of the gear involved. 29 Mr. Salvador also observed that rope removed
from entangled whales since 2014 is not characteristic of ropes used in the Lobster Fishery. 30
Based on these findings, he concluded that “the decline in lobster gear entanglement is due to the
success of whale protection measures implemented by lobstermen and a significant distributional
shift of NARW into Canadian waters where they encounter Canadian fishing gear.” 31 Mr.
Salvador further concluded that “[t]he largest entanglement threat is now posed by Canadian
snow crab gear trap/pot gear.” 32 The data supporting his conclusion are illustrated in Figure 1
below.
MLA has identified a pronounced trend in NMFS’s data on gear of unknown origin, with
the proportion of cases with no gear present increasing significantly beginning in 2015
coincident with the increase in confirmed entanglement in Canadian snow crab gear. This raises
significant unanswered questions about the responsibility of Canadian fisheries for these
entanglements. 33
Figure 1.

Third, to determine what percentage of the unknown sources are U.S. versus Canadian
fisheries, NMFS also considered “assigning those seen first in U.S. waters to U.S. gear” and
determined this approach “would suggest that a two- or threefold reduction is necessary to
achieve PBR.” 34 However, as noted in the NARW stock assessment, “[t]he date sighted and
Email from Patrice McCarron, Exec. Director, Me. Lobstermen’s Ass’n, Inc., to Dave Morin, NOAA
Greater Atl. Reg’l Fisheries Office (“GARFO’) Large Whale Disentanglement Coordinator (Aug. 15,
2019). (attached as Addendum 2).
29

30

Id.

31

Id.

32

Id.

The MLA first raised this issue with NMFS in an August 30, 2019 letter to Chris Oliver. Letter from
Me. Lobstermen’s Ass’n, Inc. to Chris Oliver, Assistant Administrator NOAA Fisheries (Aug. 30, 2019)
(attached as Addendum 3).

33

34

DEIS, supra note 24, 2-38.

location provided…are not necessarily when or where the serious injury or mortality occurred;
rather, this information indicates when and where the whale was first reported beached,
entangled, or injured.” 35 According to NMFS’s entanglement data, at least four entanglements
confirmed in Canada gear were first sighted in U.S. waters. Yet NMFS continues to erroneously
cite data on entangled whales first sighted in U.S. waters as a justification for the need for
management action in the U.S. 36
Fourth, the DEIS states “that much of the North Atlantic right whale population is
believed to spend more time exposed to fisheries in U.S. waters than in Canadian waters,” 37 yet
there are no data available to support this assumption. 38 Moreover, residency time in U.S. waters
is generally irrelevant for the purpose of ascertaining the entanglement risk of commercial
fisheries. NMFS should instead compare the time spent by NARW in the portion of U.S. waters
where the lobster fishery operates to inform its assumptions to apportion unknown whales
among fisheries. Residency time in more southern locations, for example, is not indicative of the
entanglement risk of the Lobster Fishery. This same concern was expressed in the Center for
Independent Experts’ (“CIE”) review of the Decision Support Tool (“DST”). 39
Fifth, neither the Proposed Rule nor the DEIS addresses the difference in observation
effort between Canadian and U.S. waters. Survey effort has historically been significantly greater
in U.S. waters, as NMFS has conducted aerial surveillance operations on nearly a year-round
basis for many years. As a result, entanglement events in Canadian waters were likely undersampled prior to 2017, the year when survey effort in Canada was increased with the assistance
of NMFS. 40 Greater survey effort in the U.S. relative to Canada increases the likelihood that an
NAT’L OCEANIC & ATMOSPHERIC ADMIN., U.S. ATL. AND GULF OF MEXICO MARINE MAMMAL STOCK
ASSESSMENTS, at 72 (2019), https://media.fisheries.noaa.gov/dam-migration/2019_sars_atlantic_508.pdf
[hereinafter 2019 Stock Assessments].
35

The fact that NARW carcasses entangled in Canadian snow crab gear started to show up in U.S. waters
since 2015 indicates that entanglements first sighted in the U.S. without the entangling gear present must
be assigned some probability that the entanglement originated in Canada.
36

37

DEIS, supra note 24, at 2-38.

Email from NOAA Greater Atl. Reg’l Fisheries Office to Nat’l Marine Fisheries Serv. Atlantic Large
Whale Take Reduction Team (Apr. 18, 2019) (Introducing the 50:50 US/CN apportionment, GARFO
states: “Because our Stock Assessment Reports have not included a determination on the fraction of time
North Atlantic right whales spend in U.S. and Canadian waters, we do not have a data-based residency
estimate to apply at this time.”); see also Draft BiOp Comment Letter, Addendum D.

38

W.D. BOWEN ET AL., CTR. FOR INDEP. EXPERTS, INDEPENDENT PEER REVIEW SUMMARY REPORT:
REVIEW OF THE NORTH ATLANTIC RIGHT WHALE DECISION SUPPORT TOOL (Dec. 2019),
https://www.st.nmfs.noaa.gov/Assets/Quality-Assurance/documents/peer-reviewreports/2019/2019_12_Bowen_North_Atlantic_right_whale_DST_review_report.pdf [hereinafter BOWEN
ET AL.]
39

NMFS data presented at the October 2018 TRT meeting shows that while surveillance in Canada
increased significantly in 2017 and was greater than U.S. efforts (95 hours in Northeastern US, 152 hours
in CN), surveillance efforts were similar in 2018 (150 hours Northeastern U.S. vs. 152 hours in Canada).
NAT’L MARINE FISHERIES SERV. ATL. LARGE WHALE TAKE REDUCTION TEAM Meeting, Providence, RI,
Oct. 9-12, 2018.
40

entanglement event would be observed. A small number of additional observed entanglements in
Canadian waters would be sufficient to make the difference between the U.S. and Canada
statistically significant. This factor also undermines NMFS’s 50-50 allocation. 41
Sixth, similar to the concerns recently expressed by the ASRG, NMFS’s earlier peer
review of the DST called into question the 50-50 allocation. Specifically, the peer review report
states:
The current approach for apportioning human-caused mortality by
country may not be the most appropriate approach. There has
been a clear recent shift in the spatial distribution of NARW
which has been coupled with a shift in the source of known
serious injuries or mortalities to more Canadian records.
Therefore, a different method from the 50:50 split of unknowns to
US and Canadian fisheries should be examined. [42]
Reviewer Jason How acknowledged the lack of a scientific basis for the 50-50 split and offered a
different approach to address the uncertainty:
The current 50% apportionment of unknowns to U.S. fisheries
does not reflect the current shift in NARW distribution and the
recent increase in Canadian fisheries involvement in SI-M.
Discussions between industry and government should therefore be
entered into to find a compromise solution, whereby the recent
shift in NARW abundance is accounted for, but fishers are still
required to address the SI-M issues which likely arise from their
fisheries noting the large number of unknown SI-M which can’t be
attributed to a particular country.[43]
In sum, NMFS arbitrarily assigns a 50-50 allocation between U.S. and Canadian fisheries
rather than using a probabilistic approach informed by observed entanglements from 2010-2019.
This is not consistent with the best available science, and artificially inflates the presumed
impacts of U.S. fisheries, and the Lobster Fishery specifically, which, in turn, calls into question
NMFS’s 60% risk reduction target. NMFS must revise the risk reduction target to correctly
reflect an allocation of risk between Canada and the U.S. that is supported by the best available
science.

MARTIN CRYER, CTR. FOR INDEP. EXPERTS, INDEPENDENT PEER REVIEW NORTH ATLANTIC RIGHT
WHALE MODEL POPULATIONS, at 5 (May 2020) (stating the 50:50 allocation “does not seem to have
much supporting evidence in the documentation provided.”).
41

42

BOWEN ET AL., supra note 39, at 13.

43

Id. at 18.

2.

The best available science does not support an assumption that all unknown
gear entanglements involve U.S. commercial trap/pot fisheries.

NMFS’s assumption that the U.S. commercial trap/pot fisheries must reduce risk by 60%
is further compromised by NMFS’s mistaken premise that it must focus on the fisheries
“representing the highest number of endlines in the U.S. Atlantic.” 44 The Draft BiOp shows that
this premise stems from NMFS’s assumption that “all of the presumed U.S. entanglements in
unknown gear were from trap/pot gear (2016 IEC, unpublished data).” 45 This misallocation of all
M/SI entanglements of unknown gear type to U.S. trap/pot fisheries has the effect of making
these fisheries responsible for an additional 38% 46 of entanglements with no evidence of the
fisheries’ involvement in those entanglements. This is arbitrary for a number of reasons.
First, the best available data suggest that NARWs are more often entangled in gear types
other than lobster gear. Where the type of gear involved in an entanglement event is known, and
Canadian trap/pot incidents are excluded, the ratio between non-trap/pot gear and trap/pot gear is
1.75:1. See Table 3 below. 47 In other words, observations involving confirmed gear type suggest
that NARW are nearly twice as likely to be entangled in gear other than commercial trap/pot
fisheries. We understand that gear is recovered in a relatively small proportion of entanglement
incidents, and that the gear type is identified in even fewer incidents. However, to completely
discount the distinction in observed data and assign all entanglements of unknown gear type to
trap/pot fisheries for the purpose of assigning responsibility for an allegedly needed risk
reduction is without scientific support and is arbitrary.

44

DEIS, supra note 24, at 2-34.

NAT’L MARINE FISHERIES SERV., DRAFT BIOLOGICAL OPINION ON 10 FISHERY MANAGEMENT PLANS,
at 224 (Jan. 15, 2021),
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DraftFisheriesBiOp011421.pdf.
45

46

76% of M/SI are unknown; NMFS allocates half of this to the U.S. See DEIS, supra note 24, at 2-34.

Email attachment from Colleen Coogan, NOAA Greater Atl. Reg’l Fisheries Office Marine Mammal &
Sea Turtle Branch Chief, to Patrice McCarron, Exec. Director, Me. Lobstermen’s Ass’n, Inc. (Dec. 24,
2020); see Draft BiOp Comment Letter, Addendum E.

47

Table 3.
Summary of Entanglement Incidents – By Gear Type -- 2000-2019
Entanglement
MSI
All events
114
52
Gear known
25
12
Trap/pot
18
10
trap/pot – CN crab
14
8
trap/pot – US
2
1
trap/pot – US lobster
1
0
trap/pot – Unknown
1
1
Non-trap
7
2
Non-trap – US
1
0
Non-trap – country unknown
6
2
Gear unknown
89
40
No gear present
52
18
Gear not recovered
33
19
Gear undetermined
4
3
Source: NMFS NARW Entanglement Data 2000-2019
Second, although most of the lines in U.S. waters are from trap/pot fisheries, NMFS
recognizes that not all lines pose the same risk to NARW. NMFS developed the DST to assess
the variable threat from different gear types and configurations in its risk assessment. A
methodology is under development to assess risk of lobster lines based on the type of rope fished
(i.e., strength based on diameter) and the configuration of the gear (i.e., length of line, length of
trawl). 48 Even with an incomplete understanding of the threat of various gear types, early results
of the DST show that line density alone is not a reliable indicator of risk to whales. For example,
the state of Maine, using the DST, determined that 70% of the risk to NARW from Maine lobster
gear occurs in an area where only 10% of lines are fished. 49
Third, the best available data show that both the entanglement risk and potential of a
severe entanglement differ between trap/pot and non-trap gear. Just as encounters with strong,
large diameter line fished in Canadian trap/pot fisheries have been responsible for the majority of
NARW M/SI in recent years, it is likely that a NARW encountering non-trap gear fished in wide
strings would have a higher likelihood of entanglement than a vertical line occupying less than
See NAT’L MARINE FISHERIES SERV. ATL. LARGE WHALE TAKE REDUCTION TEAM Meeting,
Presentation on Risk Reduction Tool (Apr. 16, 2019),
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/02_presentation_o
n_risk_reduction_tool.html.
48

Letter from Erin Summers, Director of Biomonitoring & Assessment Division of Me. Dep’t Marine
Resources, to Patrice McCarron, Exec. Director, Me. Lobstermen’s Ass’n, Inc. (Feb. 12, 2021) (on file
with recipient); see also DEIS, supra note 24, at 3-105 (with preliminary risk analysis: “Maine federal
waters from the 3- mile line out to 12 miles constitutes 11% of Maine’s annual NARW occurrence and
88% of Maine’s NARW presence is contained beyond 12 miles.”).
49

an inch across the water column. 50 The Woods Hole Oceanographic Institute has developed a
methodology in collaboration with the fishing industry to attribute risk to gear based on
proportion of water column occupied. 51 This information must be considered in this rulemaking.
Fourth, neither the Proposed Rule nor the DEIS addresses the potential for a whale to
shed trap versus non-trap gear, which is highly relevant considering that fishing gear is shed in
the majority of incidents. Two-thirds of all entanglement events are minor, 52 meaning that
whales frequently shed fishing gear, avoiding serious injury. It is reasonable to assume that the
entanglement profile of fishing gear influences the likelihood of its being shed, and ultimately,
the probability of a resulting serious or non-serious entanglement. The DEIS does not analyze
differences between trap and non-trap fisheries with respect to the potential to cause M/SI.
Instead, NMFS simply assigns all M/SI resulting from unknown gear type to trap/pot fisheries
rather than using a probabilistic approach informed by observed entanglements. In so doing,
NMFS fails to accurately address the highly important legal distinction between entanglements
that result in M/SI (which count toward PBR) and entanglements that result in non-serious
injuries (which do not count toward PBR).
Fifth, NMFS has not taken account of significant variances in NARW behavior. The
scientific literature demonstrates that NARW diving depth depends on the distribution of prey
(especially C. finmarchicus) (Baumgarten et al. 2017). Floating groundlines, which have been
prohibited in federal waters since 2009, pose a particular threat in areas where NARW are known
to dive to the seafloor (Hamilton and Krause 2019 53). Foraging behavior exposes baleen to
entanglements, which subsequently interfere with successful feeding (Cassoff et al. 2011 54 and
Johnson et al. 2005 55). There is ample scientific documentation of feeding grounds within U.S.
waters, 56 and fishing gear deployed in those areas must be considered to pose higher risk of M/SI
than elsewhere. Specifically, NARW are known to forage in areas off the coast of Massachusetts
NAT’L OCEANIC & ATMOSPHERIC ADMIN., LIST OF FISHERIES,
https://www.fisheries.noaa.gov/national/marine-mammal-protection/northeast-sink-gillnet-fishery-mmpalist-fisheries (last visited Mar. 1, 2021).
50

See HAUKE L. KITE-POWELL ET AL., THE SPATIAL AND TEMPORAL DISTRIBUTION OF RISK TO RIGHT
WHALES FROM LOBSTER FISHING GEAR OFF THE COAST OF MAINE (forthcoming).
51

PHILLIP K. HAMILTON ET AL., MAINTENANCE OF THE NORTH ATLANTIC RIGHT WHALE CATALOG,
WHALE SCARRING AND VISUAL HEALTH DATABASES, ANTHROPOGENIC INJURY CASE STUDIES, AND
NEAR REAL-TIME MATCHING FOR BIOPSY EFFORTS, ENTANGLED, INJURED, SICK, OR DEAD RIGHT
WHALES, at 50 (Oct. 2020).
52

PHILLIP K. HAMILTON & SCOTT D. KRAUS, FREQUENT ENCOUNTERS WITH THE SEAFLOOR
INCREASE RIGHT WHALES’ RISK OF ENTANGLEMENT IN FISHING GROUNDLINES (July 2019),
https://www.int-res.com/articles/esr2019/39/n039p235.pdf.
53

RACHEL M. CASSOFF ET AL., LETHAL ENTANGLEMENT IN BALEEN WHALES (Oct. 2011),
https://www.int-res.com/articles/feature/d096p175.pdf.

54

AMANDA JOHNSON ET. AL, FISHING GEAR INVOLVED IN ENTANGLEMENTS OF RIGHT AND HUMPBACK
WHALES (Oct. 2005), https://www.bycatch.org/sites/default/files/Johnson_etal_2005.pdf.
55

2019 Stock Assessments, supra note 35; NAT’L OCEANIC & ATMOSPHERIC ADMIN. Technical Memo.
NMFS-NE-264.
56

and the Gulf of St. Lawrence where large aggregations congregate for significant periods of time.
By contrast, NARW in Maine waters are generally transiting from south of Maine to Canadian
waters where their prey is found. 57 Thus, the risk of M/SI to NARW from Maine fishing gear is
lower than the risk posed by fishing gear in waters where NARW foraging occurs based on both
density of whales present and whale behavior.
The Proposed Rule is arbitrarily premised upon a scenario that inflates the assumed
frequency and severity of NARW entanglements with trap/pot fisheries based solely on presence
of rope. If this mistake is not corrected, the Proposed Rule and NMFS’s subsequent regulatory
efforts with respect to non-trap/pot fisheries could fail to benefit NARW because they will not
adequately address entanglement with gear that is most likely to result in M/SI.
We therefore strongly recommend that NMFS take a consistent probabilistic approach for
all apportionments that are made for purposes of determining risk reduction, specifically to base
apportionment on observed data. This approach should also consider additional data,
information, and expert judgment, as appropriate, and apply them in a manner that refines the
allocations based on observed data.
C.

The Proposed Rule Underestimates the Risk Reduction Benefits from Non-Closure
Measures.
1.

The DST is fundamentally flawed and must be updated.

The DST’s calculations of entanglement risk equally weight whale abundance, gear
density, and gear type. Independent reviewers expressed concerns with this approach and made
numerous suggestions to refine it. 58 Based on the reviewers’ comments and input MLA has
received from its members, NMFS cannot support the assumption that the likelihood of
entanglement of NARWs is based equally on these factors. 59 Instead, the DST must consider
whale behavior in addition to whale density and develop a gear threat tool that more accurately
reflects the risk of different gear types including size and strength of gear, and gear
configurations and rigging techniques that inform relative threat of gear to NARW.
Note that the study of NARW foraging tagged a small number of whales around Jeffrey’s Ledge and no
individuals elsewhere within waters offshore of Maine. Most of the foraging whales were located offshore
Massachusetts and in the Bay of Fundy. MARK F. BAUMGARTNER ET AL., NORTH ATLANTIC RIGHT
WHALE FORAGING ECOLOGY AND ITS ROLE IN HUMAN-CAUSED MORTALITY, Fig 1. (OCT. 2017),
https://doi.org/10.3354/meps12315 [hereinafter Baumgartner, et al.].
57

58

See BOWEN ET AL., supra note 38.

JULIE VAN DER HOOP, CTR. FOR INDEP. EXPERTS, REVIEW OF THE NORTH ATLANTIC RIGHT WHALE
DECISION SUPPORT TOOL, at 13 (Dec. 2019) (“The challenge is that we know little about how a cooccurrence becomes an entanglement.”); BOWEN ET AL., supra note 38, at 9 (“Little is known about the
circumstances that lead right whales to become entangled or those that result in the whale becoming
disentangled.”); JASON HOW, CTR. FOR INDEP. EXPERTS, CENTER FOR INDEPENDENT EXPERTS
INDEPENDENT REVIEW OF THE NORTH ATLANTIC RIGHT WHALE DECISION SUPPORT TOOL, at 2 (Dec.
2019) (“Currently there is too much uncertainty regarding the mechanisms surrounding an entanglement
and how these are likely to be impacted by changes to gear configuration and whale size etc.”).
59

Improved information on whale behavior and the threat of various gear types and
configurations is especially important to designing mitigation measures that achieve risk
reduction targets. Making these improvements will ensure that economic impacts are optimized
with respect to reducing entanglement risk, and that the Lobster Fishery receives full credit for
its actions. As presently designed, the DST imposes tremendous cost on the Lobster Fishery
without commensurate risk reduction or properly calculating risk reduction.
There is a significant range in DST estimates of risk reduction from measures in the
Proposed Rule. Specifically, the DEIS estimates the effectiveness of the Proposed Rule to range
from 47.1 to 79.4 percent (DEIS Table 3.4). Excluding the LMA1 restricted area, the estimated
effectiveness varies between 36.1 and 67.7 percent, with a central estimate of 57.3 percent. The
effects of some of the risk reduction measures may exceed the upper bound of effectiveness, let
alone the central estimate, as discussed below for the weak line requirements.
Were the measures in the Preferred Alternative to achieve their maximum estimated
effectiveness, the proposed LMA1 restricted area would not be necessary to meet the Lobster
Fishery’s risk reduction target. NMFS may account for this uncertainty in effectiveness when
structuring its regulations to implement conservation measures in phases. In light of the
recommendations made by independent experts to further refine the DST, which we fully
support, we believe NMFS should use a phased approach to risk reduction rather than
immediately implementing a closure (the LMA1 restricted area) that may not be necessary. 60
2.

The Proposed Rule does not account for the full benefits of weakening
vertical lines.

The proposed mitigation measures that eliminate line in the water (e.g., trawling up or a
closure) would reduce the risk of entanglements of all degrees. Although weak points inserted in
rope do not reduce the risk of a NARW encounter, there is a rational basis to assume that weakpoint insertions effectively reduce the likelihood of a severe (i.e., M/SI) entanglement. NARW
are likely to break free of gear rigged with weak point insertions by applying enough force to
break the line and swim free. However, the DEIS does not sufficiently consider the benefit that
weak point insertions are more likely to result in minor, rather than severe entanglement, and
therefore inaccurately estimates the total benefit of weakening lines to be only 14 percent.
NMFS’s 14% estimate is contrary to the best available science, which suggests that
NARW are capable of applying enough force to break ropes weakened with insertions of 1700pounds or less, 61 and that those encounters rarely result in a severe entanglement. Indeed, actions
that reduce severe entanglements may be sufficient to reduce the M/SI rate to below PBR.

MLA is aware that NMFS has recently re-run the DST model. MLA’s comments are provided based
upon the information presented in the Proposed Rule and the associated record presented for public
review. Any new DST model runs are not part of the administrative record and cannot form the basis for a
final rule under the Administrative Procedure Act (“APA”).
60

LOGAN H. ARTHUR ET. AL., ESTIMATING MAXIMAL FORCE OUTPUT OF CETACEANS USING AXIAL
LOCOMOTOR MUSCLE MORPHOLOGY (May 2015), https://doi.org/10.1111/mms.12230.
61

Knowlton et al. (2015) 62 found that, “broad adoption of ropes with breaking strengths of ≤7.56
kN (≤1700 lbsf) could reduce the number of life‐threatening entanglements for large whales by
at least 72%, and yet could provide sufficient strength to withstand the routine forces involved in
many fishing operations. The authors concluded that “[a] reduction of this magnitude would
achieve nearly all the mitigation legally required for U.S. stocks of North Atlantic right and
humpback whales.” Id. (emphasis added).
The DEIS takes an overly conservative approach by crediting risk reduction for only the
portion of the line above the lowest weak insertion. In taking this approach, NMFS assumes that
a NARW is equally likely to encounter any section of the line, and therefore equally likely to be
entangled at any section of a line. Although this assumption may be correct in areas where
NARW forage and are therefore diving to greater depths (Baumgartner et al. 2017), this
assumption is unsupported in areas where NARW spend the majority of time in transit (such as
waters offshore of Maine). 63 The DEIS does not explain why migrating NARW are equally
likely to encounter line at the surface and seafloor. This assumption is particularly relevant to
Maine fisheries because NARW have primarily used these waters since 2010 for transiting rather
than foraging. Based on the best available information, NMFS should apply more risk reduction
for weak line in areas where NARW transit and are therefore less likely to encounter line at
greater depths.
Finally, in stark contrast to Canadian snow crab gear, lobster gear already incorporates
many weak points in vertical lines through the routine rigging of multiple ropes into a single line
with knots and splices. A NMFS gear specialist characterized snow crab gear as “heavy traps on
knot free and fairly uniform large diameter ropes.” 64 The lack of weak points in this Canadian
gear provides a likely explanation of why snow crab gear, and not lobster gear, is routinely found
on entangled whales and commonly associated with M/SI. The addition of 1700-pound weak
points in a line will further reduce NARW M/SI and exceed the current estimate of 14 percent
risk reduction.
Successful take reduction planning under the MMPA does not occur solely through
mechanisms intended to avoid all marine mammal interactions. Weakening lines is a promising
and well-supported method to reduce the severity of interactions and thereby convert NARW
entanglements that might otherwise result in M/SI to non-serious encounters. The final rule must
more accurately account for this important and effective method for reducing NARW M/SI,
which will achieve more than a 14% risk reduction in the overall plan. Maine DMR developed
an independent methodology to assess the reduction from weak rope. The result of this analysis
was that weak points adopted within the Maine Lobster Fishery, as proposed in the DEIS’s
Preferred Alternative, reduced risk by 25%, compared to the NMFS estimate of 11.8% credit for
Maine. 65
AMY KNOWLTON, EFFECTS OF FISHING ROPE STRENGTH ON THE SEVERITY OF LARGE WHALE
ENTANGLEMENTS (July 2015), https://doi.org/10.1111/cobi.12590.
62

63

BAUMGARTNER ET. AL., supra note 57.

64

DEIS, supra note 24, at 2-40.

65

DEIS, supra note 24, at 3-98.

D.

The Proposed LMA1 Restricted Area is Unwarranted.
1.

MLA opposes the proposed LMA1 restricted area because it was not
recommended by the TRT and lacks a rational basis.

The MMPA places significant emphasis on the judgment and recommendations of take
reduction teams. 66 When amending take reduction plans, as NMFS is proposing to do here, the
Secretary “shall” take a team’s recommended plan into consideration and must provide a written
“explanation of the reasons” for any changes the Secretary makes to the recommended plan
when issuing implementing regulations. 67 Here, NMFS has proposed the LMA1 restricted area,
but the TRT did not consider or recommend the LMA1 restricted area or any other restricted
area in Maine offshore waters. NMFS fails to sufficiently address this significant discrepancy or
explain the reasons why it is proposing to alter the risk reduction approach set forth in the TRT’s
near-consensus recommendation. This violates the MMPA and, in light of the deficiencies
identified above and below, falls short of the rational basis for agency rulemaking required by
the APA. The MLA therefore opposes the LMA1 restricted area.
2.

The DEIS significantly underestimates the cost of the LMA1 restricted area.

NMFS estimates that the LMA1 restricted area will reduce catch by 5 to 10 percent.
NMFS bases this estimate on the following assumptions: (1) there is no additional cost to
fishermen to reconfigure their gear to meet the minimum trawl length required in any area to
which they relocate; (2) fishermen would fish the same number of end lines and traps as they
used in the closed area; (3) fishermen will relocate to productive ground; and (4) fishermen will
continue to make the same number of fishing trips. This assessment is deficient for the following
reasons.
First, NMFS presented no data to support its catch reduction estimate in LMA1 and has
failed to address this data gap as required by law. NMFS admits that “[t]he data required to
develop a rigorous estimate of potential catch impacts are not available.” 68 This information is
plainly “essential to a reasoned choice among alternatives” as NMFS itself has presented three
options for the LMA1 restricted area and two of those options (automatic closure and triggered
closure) were not recommended by the TRT or presented to the public for input during the
NEPA scoping process. 69 Accordingly, NMFS was required to obtain the data and include it in
the DEIS if the “overall costs of obtaining [the data] are not unreasonable.” 70 Alternatively, if
NMFS determined that the costs of obtaining the data are unreasonable, it must present, in the
66

See 16 U.S.C. § 1387(f)(7).

67

See id. § 1387(f)(7)(B–F).

68

DEIS, supra note 24, at 6-212.

The NEPA implementing regulations establish a specific, detailed scoping process, which “shall be an
early and open process for determining the scope of issues to be addressed and for identifying the
significant issues related to a proposed action.” 40 C.F.R. § 1501.7 (emphasis added). The LMA1
restricted area is plainly a “significant issue” but was never addressed during scoping.

69

70

50 C.F.R. § 1502.21(b).

DEIS, the analysis required by 50 C.F.R. § 1502.21(c). 71 The DEIS is legally deficient because it
entirely fails to comply with 50 C.F.R. § 1502.21.
Second, NMFS’s assumptions regarding how fishermen will respond to the LMA1
restricted area are not supported by the best available information, and the agency provides no
evidence or rationale to support those assumptions. Contrary to NMFS’s assumptions, many
fishermen are unlikely to relocate to other, equally productive fishing grounds. An essential
element of any lobstering business plan is to fish the most productive bottom available in the
most cost-effective manner. Since the proposed LMA1 restricted area is located on the outer
most edge of LMA1, lobstermen would not pay the high operating expense to steam that far
offshore unless they are accessing the most productive fishing grounds. The LMA1 restricted
area presents the combined adverse impact of losing access to the most highly productive fishing
bottom while having to compete with other lobstermen fishing in less productive lobstering
areas.
Third, Maine lobstermen cannot simply take up all their gear and shift it to the most
productive fishing bottom. Under Maine’s lobster zone management program, lobstermen are
significantly limited in where they can fish. Lobstermen must declare a home zone where they
are required to fish a majority of their lobster traps, making it illegal to move all of their lobster
gear to another fishing ground of choice. This significantly limits the spatial footprint of the
Maine Lobster Fishery. Maine lobstermen bear the additional burden of having to double tag any
lobster gear fished outside of their home zone. 72

71

Specifically, 50 C.F.R. § 1502.21(c) requires:
(c) If the information relevant to reasonably foreseeable significant
adverse impacts cannot be obtained because the overall costs of
obtaining it are unreasonable or the means to obtain it are not known, the
agency shall include within the environmental impact statement:
(1) A statement that such information is incomplete or unavailable;
(2) A statement of the relevance of the incomplete or unavailable
information to evaluating reasonably foreseeable significant adverse
impacts on the human environment;
(3) A summary of existing credible scientific evidence that is relevant to
evaluating the reasonably foreseeable significant adverse impacts on the
human environment; and
(4) The agency's evaluation of such impacts based upon theoretical
approaches or research methods generally accepted in the scientific
community.

188-25-08 ME. CODE R. § A(5) (2021) (“A person who holds a Class I, Class II or Class III lobster and
crab fishing license may not fish more than 49% of that person’s lobster traps in a limited entry zone
unless that person's license identifies that zone as the declared lobster zone.”).
72

Furthermore, the Maine Lobster Fishery is highly territorial and lobstermen fiercely
protect productive fishing bottom. Many fishing areas are dominated by lobstermen from
particular harbors or towns or by members of a fishing lineage. It can take multiple years for a
lobsterman to establish a fishing presence in a new area, and many attempts to do so end in
failure. For those who are successful, it can take even more time to earn access to the most
productive fishing bottom within a fishing territory.
Fourth, increasing fishing intensity in those areas where lobstermen relocate gear will not
result in lowering catch by 5 to 10 percent compared to catch that would have otherwise been
generated from operating in the LMA1 restricted area. During the closure period, all LMA1
lobster catch will be forfeited and overall catch reductions could be significant. Given the large
number of participants in the Maine Lobster Fishery, NMFS must assume that lobstermen are
already fishing areas to maximize catch within state and federal waters. Even with some
spillover of lobsters at the closure boundaries, total catch is likely to be similar in areas
surrounding the proposed LMA1 closure. Relocating fishing effort during the seasonal closure
will result in more fishermen chasing fewer lobsters, producing less efficient fishing effort, lower
catch shares for individual lobstermen, and declines in operating margins. Any potential for cost
savings to result from reduced fuel usage will be lost as gross monthly revenue declines. As a
result, some vessels will continue to operate at the lower margin while others will take fewer
trips as it may be difficult to cover costs.
When fishermen re-enter the proposed LMA1 restricted area at the end of the seasonal
closure, it is unlikely that they will fully make up lost catch. Some lobster will have migrated out
of the area to deeper waters into Area 3 where Maine lobstermen are not permitted to fish. And
there will be an incentive for Area 3 boats to significantly intensify fishing effort along the edge
of the LMA1 closure while it is in place. The DEIS also fails to account for natural mortality that
will reduce the abundance of lobster, including predation by cod, haddock, seals, and
cannibalism by other lobsters. For the purpose of modeling lobster abundance in the Gulf of
Maine, the American Lobster Technical Committee has used a natural mortality rate of 0.15. 73
All of these contributing factors result in lower harvest and lower value within LMA1 throughout
the year as a result of a four-month closure.
Fifth, the estimate of a 5 to 10 percent reduction in catch not only has no evidentiary
basis, but also fails to account for historic trends in the value of lobster. December and January
are two of the highest months for the price of lobster; the five-year average is $4.55/lb. and $5.05
/lb., respectively. 74 The prices are significantly higher than, for example, August and September
when the price is $3.77/lb. and $4.02/lb., respectively. Not only is the price of lobster greater
during December and January, but LMA1 is disproportionately more important to lobstermen in
terms of landings during these months.

Memorandum from the Am. Lobster Tech. Comm. to the Am. Lobster Mgmt. Bd., Report on the
GOM/GBK Stock, at 27 (Jan. 12, 2017), 589a2d25AmLobsterTC_GOM_GBKStockReport_jan2017.

73

Maine Department of Marine Resources, see https://www.maine.gov/dmr/commercialfishing/landings/documents/LobByCntyMoZone.pd
74

The MLA conducted a survey to solicit feedback on the assumptions in the DEIS to
assess economic impacts of the Proposed Rule, and received 147 responses (Addendum 4). A
total of 62 percent of respondents to MLA’s survey of lobstermen (Table 3, Addendum 4)
reported an anticipated 50 to 100 percent loss of revenue during December as a result of the
LMA1 closure. This number rises to 72 percent of respondents in the month of January, with 40
percent estimating between 75 and 100 percent loss of revenue. Even if the LMA1 restricted area
merely displaced the timing of catch instead of reducing it, the losses to the fishery in terms of
value would substantially exceed 5 to 10 percent.
Sixth, the estimates in tables 6.11 and 6.12 of the DEIS are gross underestimates based on
expert input from lobstermen. There are more boats, more trips, and more catch per trap in the
LMA1 restricted area during October through January, in addition to higher prices (Table 2,
Addendum 4). The price of lobster is particularly inaccurate, perhaps because NMFS erred when
converting price per pound to kilograms. Using NMFS’s arbitrary method of a 5 and 10 percent
loss in catch, the revised total loss in revenue (using the correct data values) is $992,904 and
$1,985,809, respectively.
Table 4.
Catch Impacts in Maine Closed Area by Month (based upon Table 6.12 of DEIS)
revised with MLA survey data
Catch per Price
Total
Total
5% Value 10%
Month
Trap (kg) ($/kg)
Trapsa
Catch (kg) ($)
Value ($)
October

11.4

$

9.00

35,329

210,261

94,597

189,193

November

12.3

$

9.20

45,929

269,926

124,112

248,224

December

12.3

$

10.01

55,108

300,768

150,534

301,068

6.8

$

11.11

56,661

194,032

107,785

215,569

January

Total
992,904
1,985,809
a
The DEIS did not present the method for estimating total traps. Since the survey results
demonstrate more vessels operating in LMA1 than estimated in the DEIS, we assume the
additional vessels fish on average the same number of traps per vessel as estimated in the
DEIS.
In sum, NMFS has substantially underestimated the impacts of the proposed LMA1
restricted area on lobster catch and the value of lobster traditionally caught during the proposed
closure months that will instead be landed later in the season. NMFS must revise its estimate
based on the expert information provided by nearly 150 lobstermen responding to the MLA
survey. This information represents the best available commercial data, and NMFS should reevaluate the net benefits of the proposed LMA1 restricted area accordingly.

MLA therefore recommends that NMFS use the MLA estimate of $992.904 and
$1,985,809, which represents the best available commercial data, in the final EIS and evaluate
the net benefits of the LMA1 restricted area accordingly.
3.

Uncorrected deficiencies in the DST result in an inaccurate assessment of
potential risk in LMA1.

As explained above, there remain significant flaws and uncertainty with the risk
reduction estimates generated by the DST. With respect to the LMA1 restricted area, the “hot
spot” NMFS identifies is primarily predicated on the density of fishing gear rather than observed
whale abundance or behavior since the oceanographic regime shift that occurred in 2010. 75
NMFS’s overreliance on gear density is a driving factor for the assumed entanglement risk to
NARW in the proposed LMA1 restricted area. Were the DST improved as both MLA and
independent experts recommend, we are confident that the LMA1 restricted area would not be
necessary to meet the risk reduction target.
The results of the DST indicate that the LMA1 restricted area is the most significant
source of risk reduction for Maine lobstermen, accounting for 23% of Maine’s risk reduction
(10.8% for the region). This compares to less than 20% (12% for the region) for Maine’s
trawling up measures and less than 12% (14% for the region) for weak point insertions. While
the current DST analysis bears this out, these results are completely counterintuitive, contrary to
the best available data, and underscore the fact that NMFS has artificially inflated the risk posed
by the Maine Lobster Fishery (particularly in LMA1).
Whale sightings data available to the public through WhaleMap show sparse NARW
sightings in the proposed LMA1 restricted area. 76 Maine DMR mapped the NARW glider
detections cited as a justification in the DEIS for the restricted area and determined that 73% of
these detections were outside its boundaries and occurred in Area 3. 77 Two Massachusetts waters
closures in the Proposed Rule that are known for large seasonal aggregations of NARW receive
similar or lower risk reduction scores. The MRA closure where three-quarters of the NARW
population has been sighted in a season receives a risk reduction similar to LMA1 and the South
Island closure, which has frequent high abundance of NARW, receives significantly less risk
reduction. The MLA believes that appropriately weighting whale behavior within the DST would
significantly raise the risk reduction benefit from these two important Massachusetts habitats.

The DEIS’s reference to Cole et al. (2013) at 3-72 lacks relevance because the BiOp discounts most
demographic data (e.g., calving rate) prior to 2010 based on an understanding that a permanent
oceanographic regime shift has occurred. See DEIS, supra note 24, at 7-32. The fact that LMA1 may be
suspected as a breeding ground between 2002 and 2008 would not be relevant unless favorable
oceanographic conditions returned to the area.

75

76

See https://whalemap.org/WhaleMap/.

Statement of Me. Dep’t Marine Resources Commissioner Patrick Keliher, Maine DMR, during DEIS
public hearings, Nat’l Oceanic & Atmospheric Admin. Public Hearings on Proposed Whale Rule,
February 23-24, 2021; DEIS, supra note 24, at 3-72.

77

This uncertainty must inform NMFS’s choice of the alternative for paragraph (c)(6)(ii) of
the proposed regulations, particularly in light of the severe economic impact of the proposed
closure. For reasons discussed here and elsewhere, the MLA believes the LMA1 restricted area is
unnecessary, unduly burdensome, and not fully informed. However, if NMFS proceeds to
implement the LMA1 restricted area (whether as modified or proposed), the need for
improvement of the DST underscores the benefit of selecting Alternative 1-B, which would
allow for further consideration and modification of the LMA1 restricted area before
implementation, if and when a closure is triggered.
4.

Alternative 1-B to the LMA1 restricted area maximizes the net benefits
under E.O. 12866 and is fully consistent with OMB Circular A-4.

As explained above, the costs of the proposed LMA1 restricted area exceed the benefits,
and it is likely that other measures, such as weakened lines, will reduce entanglement risk more
than what is estimated in the DEIS. As stated above, the MLA is opposed to the proposed LMA1
restricted area. If, however, NMFS proceeds to implement the LMA1 restricted area, MLA
strongly believes that Alternative 1-B—to implement the LMA1 restricted area only if certain
triggers are met—maximizes net benefits under E.O. 12866, for the following reasons.
E.O. 12866 directs that “in choosing among alternative regulatory approaches, agencies
should select those approaches that maximize net benefits (including potential economic,
environmental, public health and safety, and other advantages; distributive impacts; and equity),
unless a statute requires another regulatory approach.” 78 The proposed LMA1 restricted area is
predicated on reducing the risk of entanglements resulting in M/SI by 60 percent. As addressed
in Section II.B supra and demonstrated in the MLA’s comments on the Draft BiOp, however, the
target of 60 percent is likely higher than what is necessary to sufficiently reduce the potential risk
posed by the Lobster Fishery. Moreover, NMFS proposes to impose a potentially unnecessary
level of risk reduction on fishing in the LMA1 restricted area without making a “reasoned
determination that the benefits of the intended regulation justify its costs.” 79
Alternative 1-B accounts for the uncertainty associated with the amount of risk reduction
to be achieved by the Lobster Fishery under the Proposed Rule. As MLA has explained,
sufficient uncertainties exist in NMFS’s assessment of risk reduction that the proposed measures
either will not be accurately targeted to protect NARW from risks of M/SI or will prove to
overshoot the statutory goal of reducing M/SI to a level at or below PBR. Under Alternative 1-B,
however, an established procedural time frame would allow for a meaningful evaluation of the
rule’s effectiveness.
During that time, NMFS would continue to improve its understanding of how whale
behavior and gear configuration contribute to severe entanglements and refine and improve the
DST to reflect the best available science as accurately as possible. New information on M/SI
would be collected, including any changes as a result of recently enhanced Canadian regulatory
measures. NMFS would also refine the population models, including the disputed estimate of
78

E.O. 12866 § 1a.

79

Id. § 1a(6).

cryptic mortality. Should the Regional Administrator determine that the frequency of
entanglements in the Northeast region has not been reduced by 60 percent, then the LMA1
restricted area could be put into effect without further rulemaking. By the same token, should the
Regional Administrator find that M/SI has been effectively reduced without implementation of
the LMA1 restrictions, MLA members and other participants in the fishery would not have to
bear its unnecessary costs.
The phased approach taken under Alternative 1-B, which authorizes a seasonally
restricted LMA1 pending an evaluation of the effectiveness of the rule, is fully consistent with
OMB Circular A-4. OMB’s guidance to agencies is that, “when uncertainty has significant
effects on the final conclusion about net benefits, your agency should consider additional
research prior to rulemaking. The costs of being wrong may outweigh the benefits of a faster
decision.” 80 The costs for being wrong in terms of a LMA1 restricted area are significant adverse
impacts to the regional economy while achieving little in terms of recovering the NARW.
5.

Modifying the geographic area of the proposed LMA1 restricted area would
impose less economic and social impacts without compromising risk
reduction.

If NMFS proceeds to implement the proposed LMA1 restricted area, the MLA,
notwithstanding its objections, recommends that NMFS modify the geographic scope of the
restricted area. Unfortunately, NMFS did not seek comments on any proposed closures off the
coast of Maine during scoping, and this proposal was not discussed or recommended by the
TRT. In the absence of required processes that would have informed both stakeholders and
NMFS, Maine lobstermen are attempting (in a short 60-day comment period) to determine how
NMFS’s proposed closure will affect the fishery and what alternatives may reduce adverse
economic and social impacts while retaining conservation benefits. In this light, MLA offers the
two recommendations below, recognizing that the process for determining impacts and benefits
needs to be more thoroughly vetted.
First, the MLA recommends that NMFS move the LMA1 restricted area further offshore
and split the closure area equally between Area 1 and Area 3. Maine lobstermen disagree with
NMFS’s assessment of a lack of fishing effort on the Area 3 side of the line, and based on
observation, believe it to be only slightly less than fishing effort on the Area 1 side of the line.
Additionally, glider detections of NARW cited by NMFS in the DEIS to justify this closure
occurred primarily in Area 3 as noted above. This would decrease the economic burden of the
closure on Maine lobstermen by lessening the spatial extent of lost fishing grounds in Area 1 and
spread it among more vessels by sharing the costs between Area 1 and Area 3 lobstermen.
Second, the MLA alternatively recommends that NMFS reconfigure the LMA1 closure to
encompass an equal spatial area, but make the closure longer and narrower. This would
potentially lessen the economic hardship on boats impacted under the current configuration and
provide a more equitable and lesser economic among more lobster boats. Lobstermen typically
set gear within an area so that they can haul through a set number of traps in a day. The
OFFICE OF MGMT. & BUDGET, CIRCULAR A-4 (Sept. 17, 2003),
https://obamawhitehouse.archives.gov/omb/circulars_a004_a-4/.
80

nearshore portion of the closure will be fished as they transit this area setting gear from west to
east, rather than lengthwise within the closure from north to south. Narrowing the restricted area
will reduce the amount of productive bottom lost. Making it longer will impact more lobstermen
along the coast but lessen the severity of economic impact for individual vessels. Presumably,
this would also provide significant conservation benefit for whales as it runs along NMFS’s
assumed offshore migration route.
The MLA is prepared to work with NMFS and DMR to explore these and other options
to minimize the impacts of the proposed LMA1 restricted area.
6.

Modifying the time period of the proposed LMA1 restricted area would
lessen economic impacts without compromising risk reduction.

If NMFS finalizes a restricted area in LMA1, we request that the seasonal closure begin
September 1 and end December 31. Shifting the closure by one month would significantly
reduce the adverse economic impact on the Maine Lobster Fishery. As discussed in Section D.2
above, an estimated 89 vessels fish the area in January, making these productive grounds the
most important month of the year for many lobstermen. NMFS also identified January as the
most active month in the DEIS. Moreover, January is the month when the price of lobster is at its
near peak (Table 2, Addendum 4). Conversely, lobstermen utilize LMA1 to a much lower extent
during September and the price of lobster is similarly low. According to the DEIS, NARW are
also present in LMA1 during September.
NMFS should endeavor to maximize the cost-effectiveness of the rule both overall and
with respect to specific mitigation requirements. The disproportionately high use of LMA1 by
lobstermen during January makes a closure during this month highly impactful. In contrast, a
closure in September is much less impactful and may allow NMFS to reach its overall risk
reduction target. There are strong arguments for not including a seasonal closure or, if one is
included, predicating it on a subsequent review of the rule’s effectiveness (i.e., Alternative 1-B).
Were NMFS to finalize a LMA1 restricted area, we believe a one-month shift as described here
will meet the risk reduction target, particularly if the DST is revised as recommended to account
for whale behavior and gear threat (e.g., weak lines).
E.

Conservation Equivalencies are necessary to address impracticable non-closure
provisions.

One size does not fit all for NARW conservation measures in the Maine lobster fleet.
Maine is special because there is a place for businesses of all sizes in the lobster fishery. The
Maine fleet is extremely diverse with significant differences in the size of the fishing operations
(vessel size, crew size, trap numbers), geographic differences and fishing styles among zones
(trawl length, bottom type, oceanographic conditions), and the inshore versus offshore fishery.
According to Maine DMR, roughly 20% of Maine’s lobstering vessels are less than 18
feet in length, with an outboard engine and limited deck space. These vessels are often operated
by older fishermen and students, typically fishing alone. Approximately 70% of Maine’s
lobstering fleet is made up of boats from 20 to 39 feet in length. Many of Maine’s medium-sized
vessels are fished by single operators or by the captain with up to two crew members. The

smallest portion of the Maine fleet (10%) is composed of its largest boats, typically ranging from
40 to 50 feet in length. These lobster boats generally operate with a small crew of two to four
sternmen. 81 The Maine Lobster Fishery is primarily a small boat, day-trip fishery in which
lobstermen fish local territories that are close to shore. 82
In order to minimize the profound safety, operational, social, and economic impacts to
Maine lobstermen resulting for many from trawling up and weak point inserts, the MLA urges
NMFS to include conservation equivalencies, as recommended below, to allow each lobsterman
as much flexibility as possible in implementing the required risk reduction. This flexibility may
save lobstermen from having to size up a boat, abandon traditional fishing grounds, or hire more
crew and fish more traps to comply with the regulations. Specifically, MLA supports inclusion of
conservation equivalencies to allow lobstermen to fish minimum trawl lengths with two endlines
or break trawls in half with one endline resulting in an equivalent number of endlines and
protection for right whales. NMFS must also consider proposals for conservation equivalencies
developed by each of Maine’s seven lobster zone councils working in collaboration with Maine
DMR to adapt the trawling up and weak insert requirements to allow fishing areas to achieve an
equal risk reduction based on local fishing conditions. For many lobstermen, implementing the
zone’s conservation equivalency proposal will go a long way in reducing the negative impacts
described below. Maine DMR will provide the specifics of the current proposals. The MLA
urges NMFS to create a process to allow for future requests for conservation equivalencies once
the actual operational, safety, and economic impacts of the plan are more fully understood.
1.

Trawling Up by Distance from Shore

NMFS’s Preferred Alternative 2 adopts many elements of the plan submitted by Maine
DMR to require longer trawls that increase by distance from shore, and the insertion of weak
points in vertical lines. Of concern to MLA is the omission of a provision for conservation
equivalencies, as noted above. NMFS proposes to require Maine lobstermen to deploy the
following minimum trawl lengths and weak point insertions:
Distance from Shore
exempt waters
exemption line to 3 miles (“sliver”)
3 to 6 miles
6 to 12 miles
12+ miles

Table 5.
Min traps/trawl
status quo
3 traps
8 traps
15 traps
25 traps

Weak Insertions
1 located ½ way down
2 located 1/4 & ½ way down
2 located 1/4 & ½ way down
2 located 1/4 & ½ way down
1 located 1/3 way down

Although many lobstering operations in the Maine fleet would be able to adopt the
trawling up and weak point provisions, many others have significant concerns with both trawling

Letter from Patrick Keliher, Me. Dep’t Marine Resources Commissioner, to Michael Pentony, Regional
Administrator of Greater Atlantic Regional Office of NOAA Fisheries (Sept. 16, 2019) (attached as
Addendum 5).

81

82

JAMES M. ACHESON, THE LOBSTER GANGS OF MAINE (1988).

up and weak points as stand-alone management measures, and greater reservations over the
impacts of these measures combined. Specific issues with trawling up include:
a.
The vessel and crew size limit the number of traps and amount of rope that can be
safely handled aboard a vessel. This concern includes lobstering operations of all sizes that do
not operate adequately sized boats to handle longer trawls in the areas they fish. This issue arises
relative to boat length and number of trawls. For example, a 38-foot boat could handle hauling a
15-trap trawl but will face significant challenges in hauling and resetting a 25-trap trawl. By
contrast, a 32-foot boat may not be able to handle a 15-trap trawl, but could safely haul an 8-trap
trawl. These boats may be operating in the same area and would face significantly different
challenges in complying with these rules.
b.
Captains and crew, and single operators in particular, face additional difficulties
in handling longer trawls on deck as it is extremely arduous to operate the vessel and manage
multiple traps and large amounts of rope. The presence of more traps and rope aboard the vessel
significantly increase the potential for accidents as deck space becomes limited. With so much
rope and gear moving quickly, lobstermen are vulnerable to getting fingers, hands, and arms
caught in the rope, which can result in severe injuries, especially when unsnarling trawls.
Untangling snarled gear puts tremendous strain on the line that could give out while a lobsterman
works to free that gear, particularly if it is near a weak point. If a lobsterman or crew’s leg or
gear gets caught up in rope or snagged on a trap, s/he can be pulled overboard in an instant when
gear is being reset. While man overboard situations are dangerous for all lobstermen, the risk is
significantly higher for single operators with no crew to help the victim get back aboard the
vessel. Lobstermen fishing longer trawls on hard bottom or in strong tides and currents also face
elevated safety risk as there are more sinking groundline which may get hung up under rocks,
creating tremendous strain on the line as the captain attempts to haul the gear aboard. If the gear
parts, it will snap, causing a hazard to the person operating the hauler.
c.
Due to vessel limitations, many lobstermen may have to make a difficult choice to
(1) either purchase a larger vessel and fish harder to continue to lobster in waters 12 miles or
more offshore, (2) make modifications to an existing vessel, or alternatively, (3) turn their
fishing effort closer to shore, which creates more fishing pressure and gear conflict in those
areas. Gear conflict will occur when relatively larger boats set a greater proportion of lobster
traps closer to shore, often set as longer trawls in areas where this fishing style is not the norm.
Not only does this create conflict between larger and smaller fishing operations, but also poses a
tremendous safety risk to the operator of the smaller vessels if shorter trawls are set over by
longer trawls due to congestion. Smaller vessels are not equipped to haul back and handle the
number of traps or the strain of the gear which occurs when one trawl is set over another.
d.
Lobstermen who choose to upgrade to a larger vessel capable of safely fishing
longer trawls must take on large payments, and in turn hire more crew and increase effort to
generate the revenue necessary to cover boat payments and increased operating costs. These
lobstermen would concentrate more effort further from shore. This also contributes to a growing
divide between smaller and larger vessels that are forced to segregate and specialize in different
parts of the fishery. It also leaves the small boat fleet vulnerable to extreme congestion and
fishing pressure, and reduced catches, if these larger vessels choose to fish closer to shore.

Adding more traps to each trawl often results in a loss of trap efficiency. Smaller
e.
gangs of gear take longer to haul, so lobstermen fish this way because they are able to deploy
traps more strategically on the bottom to maximize catch. When lobstermen are forced to fish a
certain number of traps in each trawl, they are not able to efficiently work the productive bottom
and catch per trap will go down. Lobstermen cannot effectively set longer trawls on unique
patches of hard bottom or into holes and crevices. Lobstermen who attempt this often find that
the gear gets hung down and parts off during hauling leading to gear loss and corresponding loss
of catch. While lobstermen will attempt to grapple this gear back, it is often difficult to locate it,
especially if it has been dragged by a storm or interaction with other fishing gear. Furthermore,
because of sinking groundlines and traps, lobster gear is nearly impossible to see on bottom
sounders. When gear is lost, lobstermen must purchase new traps and replacement tags, or forgo
the income from the lost gear.
Based on the foregoing concerns, the MLA makes the following recommendations:
•

The MLA recommends that NMFS remove the trawling up requirement for Maine LMA
from 3 to 6 miles because it receives less than 1% credit.

•

The MLA recommends that NMFS consider conservation equivalencies for trawling up
measures to allow gear modifications identified by lobstermen to be fished inside of 12
miles, where there is a lower probability of NARW interaction with lobster gear.

•

The MLA recommends that NMFS continue to research additional options for gear
modifications and accessible technologies to reduce interactions between NARW and
lobster gear. These include:
cap rope diameter at 3/8”;
use a weak rope topper consisting of 5/16” rope at the top 1/3 of the line;
allow the potential for colored ropes to deter NARW;
issue best practices to limit the scope of vertical lines and the use of extra rope in
the surface system;
o promote industry use of whale sightings smart phone app.
o
o
o
o

2.

Weak Rope Insertions

Many of the concerns stated above will be magnified if weak points are inserted into line.
Not surprisingly, weakening ropes is highly suspect to most lobstermen as the success of their
business depends on their ability to haul back each trap or trawl. Lobstermen must know that
gear will remain where it was set, and that it can be efficiently and reliably hauled back. Most
lobstermen are understandably worried that weakening endlines will lead to gear loss, loss of
catch, and additional ghost gear. This becomes even more of a concern as they are asked to trawl
more traps to each endline while making each endline weaker. They fear that adding more
weight and strain to weaker vertical lines will lead to (1) higher failure rate of endlines due to
storms and gear conflict, (2) higher failure rate during hauling due to strain on the line, (3)
increased number of traps lost per failed endline, and (4) and limited ability to grapple lost gear
back due to sinking groundlines.

Maine DMR has worked closely with the region’s industry associations and lobstermen
to (1) test the average strength of vertical lines currently deployed in the fishery; (2) measure the
typical strain on vertical lines as they are being hauled under a variety of fishing, oceanographic,
and weather conditions; and (3) try a variety of methods to insert weak points into vertical lines
including knots, splices, and manufactured devices. 83 These options have been tested repeatedly
to demonstrate that lines predictably break at 1700 lbs. and leave a bitter end that will not catch
in baleen. This research has demonstrated that when lines made up of more than one rope type
are broken, the rope breaks consistently on the weaker (smaller diameter) side of the knot or
splice.
Lobstermen have volunteered significant time to these projects, donated a substantial
amount of rope, and worked to innovate a variety of methods to achieve a 1700-lb. breakaway.
The DMR’s proposal reflects many of the findings of this work, such as requiring only one weak
point insertion in gear fished outside 12 miles as it experiences higher strain than ropes fished
closer to shore. DMR is preparing a list of knots and splices, and is exploring manufactured
devices that can be inserted into the line to reliably break at 1700 pounds of force or less. These
approaches have buy-in from lobstermen, and therefore, can be quickly adopted and provide
immediate benefit to NARW.
In addition, Maine DMR is working with the region’s lobster associations to field-test
time tension line cutters (“TTLC”). A TTLC can be rigged into any section of the vertical line
and will cut the rope after it senses a certain tension on the line that occurs for a set period of
time (as programmed in the device). If a whale encounters the line, thereby applying tension, the
device will cut the rope as prescribed by the TTLC. TTLCs could be used to reduce the
frequency and severity of entanglement in heavier lines providing a mechanism for strong line to
break free if encountered by NARW where 1700-pound weak points are too weak to allow for
safe retrieval of gear.
Under the Proposed Rule, weak points would not be inserted in the bottom half of the line
where lobstermen require stronger rope to safely haul back gear due to documented safety
concerns. TTLCs may provide a viable alternative to incorporate a mechanism that will break at
1700 pounds of pressure over a specified time providing additional protection for NARW while
allowing lobstermen to haul gear safely. If used as an equivalency for a weak insertion at the
bottom of an endline, it could effectively provide an equivalent to a full weak rope and reduce
entanglement risk considerably more than is assumed in the Proposed Rule. This device has
already been through substantial engineering, testing and field research, and provides another
option to reduce the severity of entanglement in heavier lines that could be implemented in the
near-term.
In sum, DMR has tested a variety of options to achieve a 1700-lb. weak point insertion,
many of which were considered and recommended by lobstermen. However, the Proposed Rule

83

DEIS, supra note 24, at 3-92–106; see also DMR ROPE STUDY REVEALS OPTIONS FOR WEAK ROPE,

https://mlcalliance.org/2019/08/12/dmr-rope-study-reveals-options-for-weak-rope/ (last visited Mar. 1,
2021).

does not specify how lobstermen can meet the weak point requirements. Accordingly, the MLA
makes the following recommendations:

F.

•

The MLA recommends that NMFS adopt a robust and flexible list of options, including
all options submitted by Maine DMR such as knots, splices, and manufactured options,
and allow additions and refinements to be made over time as new data become available.
Many of these options already have buy-in from lobstermen and can be more readily
integrated into their fishing gear to provide immediate benefit to NARW.

•

The MLA recommends that NMFS review the results of the DMR’s project to test
TTLCs as a conservation equivalency for weak points. This technology could be phased
into the highest risk areas of the fishery, outside of 12 miles, to further reduce the risk of
M/SI.

•

The MLA recommends that NMFS conduct an analysis of the potential risk reduction
that could be achieved by incorporating a TTLC at the bottom of the vertical line in
various regions, by distance from shore, in the Lobster Fishery.
The MLA Supports NMFS’s Gear-Marking Proposal.

The MLA fully supports NMFS’s proposal to require lobstermen from each state and
LMA3 to mark gear with a unique color, and require more frequent and larger marks. Maine
lobstermen regulated under the TRP have already expanded the size of each mark, increased the
number of gear markings, and changed each gear marking from red to purple with a green tracer
in the top mark. In addition, Maine is requiring lobstermen fishing in exempt waters, who have
never been required to mark gear, to incorporate three purple marks into each vertical line.
This new gear marking scheme is significantly more complex than the previous
requirement under the TRP. Further, implementation in exempt waters impacts thousands of
lobstermen who were not subject to this requirement previously. This gear marking plan strikes a
balance to differentiate lobster gear fished in exempt waters from lobster gear fished in waters
regulated under the TRP in a manner that allows lobstermen to comply when they shift gear back
and forth between the areas by adding or removing a green tracer in the top portion of the line.
The MLA does not support a more complex gear marking program as suggested by other
stakeholders because it would be difficult to implement and reduce compliance.
The DEIS does not include the compliance costs for gear marking experienced by Maine
lobstermen who complied with the TRP gear-marking requirement before implementation of the
final rule. Maine lobstermen incurred this cost in order to comply with the federal gear plan and
expedite a better understanding of the origin of fishing gear that is known to entangle whales.
The MLA therefore recommends that NMFS include the compliance costs for gear marking for
the state of Maine.

The Proposed Rule underestimates economic impacts and is economically
significant under E.O. 12866.

G.

In Section III.D.2 above, we present the cost of the proposed LMA1 restricted area based
on expert input from many affected fishermen and the five-year average price of lobster. These
costs are nearly $2 million and five times more than estimated in the DEIS. Survey respondents
identified numerous other aspects of the Proposed Rule, for which NMFS also underestimates
economic impacts (Table 4, Addendum 4), summarized as follows.
•

Gear marking: Respondents estimated that it would take 6 minutes longer per vertical line
(34 minutes) than estimated in the DEIS.

•

Weak point insertion: Respondents estimated that it would take 9 minutes longer per
insertion (13 minutes) than estimated in the DEIS.

•

Reconfiguration of traps: Respondents estimated that it would take 12 minutes longer per
trap (26 minutes) than estimated in the DEIS.

•

Cost of labor: Respondents estimated the cost of labor to be $15.25 more per hour ($41)
than estimated in the DEIS

•

Gear loss: Respondents estimated gear loss as a consequence of the Proposed Rule to be
on average 15 percent. The DEIS assumed no additional gear loss.

•

Additional crew: Respondents estimated adding an average of 0.79 crew members to
comply with the Proposed Rule. The DEIS acknowledged that some vessels would add
crew but did not provide an estimate.

These estimates are based on the expert opinion of more than 100 Maine lobstermen and
represent the best available information. NMFS must recalculate its estimates of economic
impacts and revise accordingly. Considering that the upper bound cost of the Proposed Rule is
$61 million, it is likely that the revised calculations will demonstrate that the Proposed Rule is
economically significant under E.O. 12866 and a major rule under the Congressional Review
Act. We request that NMFS review and revise the designation of the final rule accordingly.
H.

The Final Rule Must Be Phased In Because Lobstermen Cannot Reconfigure and
Mark Gear During the Fishing Season.

NMFS has stated that it anticipates the release of the Final Rule in early summer—a time
when the lobster season is already in full swing. Most lobstermen haul all or portions of their
gear out of the water during the winter months. Lobstermen work through their gear during haul
out to mark or remark ropes, replace or repair worn ropes and traps, prepare new warps and
reconfigure gear to be reset in the spring. Late spring through late fall comprise the peak fishing
months for Maine lobstermen when nearly all license holders have gear actively deployed. It
would be nearly impossible for Maine lobstermen to comply with new regulations while gear is
actively fished.

The MLA therefore recommends that NMFS adopt a phased in implementation schedule
for the provisions of the Final Rule with the understanding that lobstermen cannot reconfigure
and mark gear in the middle of the fishing season.
I.

Ropeless Gear Is Not Commercially Viable for the Reasonably Foreseeable Future.

As the comments filed by MLA and other fishing associations in response to the Draft
BiOp explain in greater detail, 84 ropeless gear is not a realistic alternative for the Lobster Fishery
for the reasonably foreseeable future. Although NMFS is not mandating its use in the Proposed
Rule, the agency is setting an expectation that this sort of fishing will soon be necessary.
However, ropeless fishing is not commercially viable for technological, operational, cost, safety,
and enforcement reasons that cannot be ignored for purposes of this rulemaking and the future
management of the fishery. The DEIS appropriately recognizes that “[a] number of
technological, regulatory, financial, and operational barriers must be addressed before [ropeless]
fishing gear can be considered operationally feasible on a broad scale.” 85 But the DEIS does not
fully disclose or analyze those barriers and, accordingly, we provide the following additional
information (as well as the detailed comments provided in response to the Draft BiOp).
Technological constraints. The ropeless system depends on reliable and efficient
technology, including an acoustic trigger and release mechanism, dependable vessel-to-satellite
and vessel-to-fleet communication systems that protect private data and function in real time, and
the ability to incorporate this technology across a very diverse fleet that includes many small- to
medium-sized boats that lack the necessary GPS and computer capability, and deck workspace as
well, a problem even for larger vessels. As Dr. Mark Baumgartner of Woods Hole
Oceanographic Institute, has warned: “We are in the early stages of development – mostly proof
of concept with prototypes that are not yet designed for operational fishing by hundreds to
thousands of fishermen…. Every system… will need to go through a redesign process to (a)
incorporate gear location system, (b) work for fishing at scale (e.g., ruggedized design, long
endurance), and (c) enable mass production at low cost.” 86
Operational and economic concerns. The economic model for the Lobster Fishery is
based on a high volume of landings caught with a gang of 800 traps or less (1,945 or fewer in
LMA3) traps, where lobstermen compete for prime bottom. This requires efficient and
predictable hauling and redeployment of gear. Depending on location, 100 to 400 traps per day
must be hauled, using an approach that involves frequent movement to varying fishing areas
depending on catch levels. Any hauling and deployment system that results in fewer traps hauled
per day would significantly and adversely impact the New England lobstering business model. 87
84

See Draft BiOp Comment Letter at 37-40.

85

DEIS, supra note 24, at 3-60.

Mark Baumgardner, Near-term Development (2019), https://ropeless.org/wpcontent/uploads/sites/112/2019/11/21.Baumgartner_nearterm_developments_for_distribution_20191113.pdf

86

In contrast, the one fishery in the world that uses ropeless gear fishes less than 20 traps per day and
does not share fishing territories with other fisheries. See Letter from Kristan Porter, President of Me.
Lobstermen’s Ass’n, Inc. to TRT Ropeless Fishing Subgroup (Mar. 14, 2020)

87

Reduced profits would, in turn, make it more difficult for lobstermen to pay for the high
capital and operating costs required to operate a ropeless system. The current best estimate is that
existing technology for ropeless systems will cost ten times or more per trap compared to gear
currently in use. 88 These systems require significant investment in technology, including a
computer system, acoustic detector, trigger devices, and rope storage systems. Given the failure
rate of current systems, fishermen would also need to invest in redundancy. 89 And in view of the
currently distressed state of the Lobster Fishery resulting from the harsh adverse economic
impacts of the COVID-19 pandemic, as noted above, the real-life commercial feasibility of
ropeless fishing is far from being a realistic option.
Safety risks. Ropeless fishing also poses significant safety risks to fishermen in both the
Lobster Fishery and fisheries that overlap with it. The increased handling time on deck required
in using ropeless gear is a particular concern for fishermen who operate their vessels alone and
must maintain constant steering vigilance to ensure safe vessel maneuvering within high traffic
areas and in high seas. Eliminating the current surface buoy and vertical line system would
remove visible notice to other ocean users of the presence of lobster gear on the ocean floor. In a
fishery that operates coextensively with other fisheries in the same fishing grounds, all of these
fisheries would have to use interoperable tracking and communications software so the location
of fishing gear is known to any vessel or law enforcement accessing an area, but this type of
interoperability is not in existence today. To the contrary, all of the ropeless systems under
development currently use unique acoustic and release devices, rope storage options, and
monitoring and communications software. Without such a coordinated approach, conflict is
inevitable as mobile gear drags through sunken trap gear, risking loss of catch from nets, trawls,
and traps, and endangering vessels and crew seeking to retrieve costly gear. And even if the
diverse fleets were outfitted with compatible detection systems, weather or interaction with
mobile gear can displace sunken lobster traps from their marked location, resulting in “ghost
gear” along with economic losses and unwanted impacts on valuable target species.
Enforcement challenges. In June 2018, the Atlantic States Marine Fisheries
Commission’s (“ASMFC”) Law Enforcement Committee (“LEC”) reviewed the enforceability
of ropeless pop-up buoy gear technologies that were under consideration to reduce impacts on
NARW. 90 The LEC concluded that deployment of ropeless gear would significantly impede law
enforcement’s ability to enforce lobster conservation rules. The concerns identified by LEC
include: (1) the time and cost required to retrieve and re-deploy ropeless gear would significantly
reduce the number of vessels and traps inspected for compliance; (2) the need to access multiple
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/March%202018%20Ropeless%20
subgroup/kristan_porter_observations_of_ropless_fishing.pdf.
See Brief for Me. Lobstermen’s Association as Intervenor-Defendants’, Decl. of N. Oppenheim, Ctr.
for Biological Diversity v. Ross, 2020 U.S. Dist. LEXIS 149837, Civil Action No. 18-112 (JEB)(Aug. 19,
2020) (Attached to Draft BiOp Comment Letter as Addendum F) [hereinafter Oppenheim Decl.].

88

89

Id. at 12.

See ATL. STATES MARINE FISHERIES COMM. LAW ENF’T COMM., Meeting Summary, May 2018,
http://asmfc.org/files/LEC/LEC_MeetingSummary_Spring2018.pdf.

90

pop-up buoy gear technologies and retrieval/mapping systems would represent a financial burden
and logistical challenge; (3) unanswered questions on systems to be used to store and secure trap
location information raised serious concerns; and (4) the vulnerability of acoustic and radio
frequencies to hacking or stolen data posed risks of illegal hauling of gear by others. 91
In sum, many significant issues must be addressed before ropeless technology can
reasonably be considered for fishery-wide adoption. These examinations must address the
technological, operational, and economic impediments that undeniably exist, and which vary
significantly depending upon the scale at which the technology is adopted. Collaboration with
fishermen, and the associations that represent them, is essential for both understanding these
issues and finding appropriate and effective solutions. 92
J.

Alternative 3 Exceeds Legal Requirements and Fails to Maximize Net Benefits
under E.O. 12866.

As reflected in the DEIS (Table 6.22), Alternative 3 would be significantly more
expensive than the preferred Alternative 2. The two largest drivers of the cost are the
requirements to convert full weak rope in the top 75 percent of both buoy lines, and to cap line
allocations at 50 percent of average monthly lines in federal waters. Neither of these
requirements are necessary to meet the applicable statutory requirements, nor are they nearly as
cost-effective as the measures proposed as part of Alternative 2.
Under Alternative 2, the trap/pot fisheries would convert over 26 percent of the rope in
buoy lines outside of Maine exempt waters at an estimated cost of $2.2 million dollars, or $81
thousand for each percent of line converted. Alternative 3 weak line measures would convert
over 73 percent of the rope at an estimated cost of $10.2 million, or about $139 thousand for
each percent of line converted. In other words, the compliance costs of Alternative 3 per unit of
See Letter from Robert E. Beal, Exec. Director Atl. States Marine Fisheries Comm, to Michael
Pentony, Regional Administrator of Greater Atl. Regional Office of NOAA Fisheries (June 19, 2018)
(Draft BiOp Comment Letter, Addendum G).

91

Even if ropeless fishing were currently viable, NMFS has effectively eliminated any incentive to fish in
the proposed LMA1 restricted area because the authorization process to do so is highly uncertain and
onerous. Any vessel that wishes to access the LMA1 restricted area must receive separate authorization
through an exempted fishing permit (“EFP”). Although NMFS endeavors to process an EFP within 60
days, controversial permit applications frequently take much longer. As noted in the DEIS, an EFP to
access a closure in federal waters would need to comply with ESA and NEPA, further extending the
timeline to review and approve an application in addition to delay factors associated with a potential legal
challenge from groups hostile to the lobster fishery. The DEIS also suggests a permit may include a
requirement to carry an observer, which increases cost, reduces operational flexibility, and may further
discourage potential applicants. The DEIS does not explain the evidentiary basis for placing additional
requirements on the use of ropeless gear in restricted areas. The DST upon which the LMA1 restricted
area is based did not assume such additional conditions when estimating the amount of risk reduction
achieved through ropeless fishing. Based on these considerations, it is reasonably foreseeable that the
LMA1 restricted area will be a hard closure during the time period it is closed and, beyond potential pilot
studies, will not be accessed using ropeless gear.

92

rope are nearly double that of the preferred alternative. Yet, there is little additional
corresponding benefit as a result of converting 75 percent of a buoy line to weak. Published
literature (Knowlton et al. 2015, Arthur et al. 2015) has identified 1,700 lbs. as the threshold
below which whales can break free of line, and research conducted by Maine DMR has
demonstrated that rope always breaks at its weakest point.
Therefore, converting large sections of buoy line to weak line is not necessary to reduce
entanglement risk. Rather, the best available information strongly suggests that well-placed weak
links are sufficient. We agree with NMFS’s determination to reject the weak line measures in
Alternative 3.
Additionally, the proposed measure in Alternative 3 to cap line allocations at 50 percent
of average monthly lines in federal waters would have a devastating impact on the Maine
Lobster Fishery. As recognized in the DEIS, 93 it is certain that fishermen will be constrained by
vessel size, rope storage constraints, hauling block capacity, number of crew, or other
operational constraints. The cost to make major modifications to the vessel or hire additional
crew will be prohibitive to many fishermen. The only option for many fishermen will be to
reduce the number of traps fished by up to 50 percent of their current trap level.
There is no analysis or plan in the DEIS for how a line cap would be achieved. It is
reasonably certain that such requirements would have disproportionate and acute impacts on
small vessels and certain rural, coastal communities where fishing with small vessels is more
common. Small vessels would be uniquely disadvantaged by line caps because larger vessels
have additional crew and deck space to adjust to the additional traps per trawl. While the cost of
a line cap may also be substantial for larger vessels, they could potentially continue to fish the
same number of traps and benefit from the reduced fishing effort by smaller vessels. A line cap
would curtail the catch of small vessels while facilitating additional catch by larger vessels,
thereby creating significant inequity in the fishery with ramifications throughout Maine,
particularly with respect to small businesses and disadvantaged small and rural communities.
These significant effects are not analyzed in the DEIS, despite the legal requirement to do so. 94
Alternative 3 would also extend the seasonal closure to February for a total of five
months. Including the month of February, which is outside the time period when LMA1 is
characterized as a “hot spot,” 95 would exacerbate the adverse economic impacts without
commensurate benefits in terms of reducing the risk of entanglement. Moreover, the price of
lobster is historically higher in February ($6.41/lb.) than the months of October through January.
February is also the most important month in terms of accessing LMA1, with 76 percent of
survey respondents landing a majority of their catch in LMA1. For reasons discussed elsewhere
in our comments, we strongly oppose any expansion of the time period of the proposed LMA1
restricted area, as well as potentially shifting the closed period to include February.

93

DEIS, supra note 24, at 6-222.

94

50 C.F.R. § 1508.1(g)(1).

95

DEIS, supra note 24, at 3-72 (Fig. 3.4).

Finally, the MLA is aware that other stakeholders have suggested that NMFS limit
lobstermen to only one endline per trawl. This suggestion is baseless. The need for two endlines
on a trawl has been well established through the TRT process. The MLA strongly opposes the
proposal. 96
In sum, Alternative 3 is neither reasonable as defined at 50 C.F.R. § 1508.1(z), nor is it
analyzed in sufficient detail to comply with NEPA. We strongly oppose including any of the
measures in Alternative 3 in the final rule.
K.

The TRT Process Leading to TRP Recommendations Was Rushed and Flawed.

The process leading up to the April 2019 TRT meeting was rushed and flawed. The TRT
met several times during 2017 and 2018 to discuss the need for management action and consider
preliminary risk reduction proposals to aid in the recovery of NARW. 97 In September 2018, the
NEFSC released a controversial technical memo (NMFS-NE-247), 98 which was presented to the
TRT that month via webinar. That memo set the stage for NMFS to focus its management effort
on the Lobster Fishery. 99
NMFS convened the TRT the week of April 23 to 26, 2019, with the objective to
“develop consensus recommendations on a suite of measures that will achieve a 60 to 80%
reduction in mortalities and serious injuries of right whales in U.S. fisheries to support NMFS
rulemaking that will be initiated in May 2019.” 100 Yet the agency had belatedly presented the
The standard fishing practice is to deploy trawls with two endlines. Endlines are commonly lost for a
variety of reasons including boat traffic, weather and gear set overs, so a second endline is needed to
prevent gear loss and creation of ghost gear. In Downeast Maine, lobstermen must be able to haul back
gear from either end of the trawl depending on the direction of the strong tides and currents. A second
endline is also necessary to allow lobstermen to retrieve gear if one end gets hung down (under rocks or
due to gear set overs in congested areas which is common). This puts tremendous strain on the line and
lobstermen must haul back from the other end in order to safely retrieve the gear.

96

The TRT met several times in 2017 and 2018: April 2017 (Full TRT meeting in RI), November 2017,
January and March 2018 (virtual meetings with information updates), February through April 2018
(several subgroup meetings to discuss weak rope, gear marking and ropeless fishing), September 2018
(webinar on NEFSC Tech Memo NMFS-NE-247), October 2018 (Full TRT meeting to consider
preliminary risk reduction proposals). See Nat’l Marine Fisheries Serv. Atl. Large Whale Take Reduction
Team Meeting Summaries, https://www.fisheries.noaa.gov/new-england-mid-atlantic/marine-mammalprotection/atlantic-large-whale-take-reduction-plan.
97

SEAN A. HAYES, NORTH ATLANTIC RIGHT WHALES – EVALUATING THEIR RECOVERY CHALLENGES IN
2018 (Sept. 2018), https://permanent.fdlp.gov/gpo110779/tm247__2_.pdf; see also NAT’L OCEANIC &
ATMOSPHERIC ADMIN., Technical Memo. NMFS-NE-247 (Sept. 2018).
98

See Letter from Me. Dep’t Marine Res. to Dr. Jon Hare (Oct. 3, 2018) (“While many category I and
category II fisheries from Maine to Florida are regulated under the Atlantic Large Whale Take Reduction
Plan, the content of the Memo is almost exclusively limited to the lobster fishery in the Gulf of Maine.”)
(attached as Addendum 6).
99

See Nat’l Marine Fisheries Serv. Atl. Large Whale Take Reduction Team Memo. (Apr. 23-26, 2019),
https://media.fisheries.noaa.gov/dam-migration/final-atlantic_large_whale_take_reduction_team_meeting_april23-26_kom_(508).pdf.
100

risk reduction goal to the TRT via email on April 5, 2019, and unveiled the DST—which was
still in development—via webinar on April 16, 2019. 101 This left TRT members with no
meaningful amount of time to consider and evaluate the DST. As MLA explained to NMFS in a
letter dated April 22, 2019:
[T]he MLA is deeply disturbed by the timing of NMFS’s release of
new information to guide discussions at this week’s TRT meeting.
Our last TRT meeting was six months ago. NMFS only announced
the Take Reduction Target and presented a draft of the Decision
Support Tool in recent days. Given NMFS’ directive to begin
rulemaking at the conclusion of the meeting, the MLA is extremely
frustrated to receive such critical and complex information just
days before. TRT members are unrealistically expected to reach
consensus on management alternatives before the Team has had
any input on the Take Reduction Target itself or had adequate time
to evaluate and grasp the implications of the new information
presented. 102
Based on its incomplete understanding of the available science and under extreme
pressure exerted by NMFS, Maine’s TRT members reluctantly agreed to the TRT’s
recommendations to achieve a 60% risk reduction in the Lobster Fishery. Due to unresolved
concerns with the timeliness and accuracy of information provided to TRT members, the MLA
subsequently undertook a careful review of NMFS “2000-2018 Right Whale Incident Data” and
corresponding Atlantic Large Whale Entanglement Reports and North Atlantic Right Whale
SARs. The MLA identified substantive errors in NMFS data that show a “distinctly different
understanding of relative risk” posed by Northeast lobster fishing gear to right whales. 103
MLA’s review of NMFS’s entanglement data revealed several errors that changed its
understanding of known causes of right whale entanglement. The 2018 NARW stock assessment
incorrectly coded four NARWs as “gear unknown.” Two of these were determined to be from
non-trap gear, one was from Canadian trap/pot gear, and the only U.S. entanglement was from
gear that did not originate from Maine. Maine’s TRT members would never have agreed to
regulate only the Northeast trap/pot fishery or the 60% risk reduction if accurate data on the
known entanglement cases had been presented to the Team.
See Nat’l Marine Fisheries Serv. Atl. Large Whale Take Reduction Team Meeting Materials (Apr. 2326, 2019),
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/19_april_2019_trt
_meeting.html.

101

Letter from Me. Lobstermen’s Ass’n to NOAA Greater Atl. Reg’l Fisheries (Apr. 22, 2019) (attached
as Addendum 7).
102

The TRT meeting summary states, “A broad-based recommendation that the Agency/Team revisit the
Team’s recommendations if revisions to the model suggest: (1) a distinctly different understanding of
relative risk….” Nat’l Marine Fisheries Serv. Atl. Large Whale Take Reduction Team Key Outcomes
Memo., at 7 (Apr. 23-26, 2019), https://media.fisheries.noaa.gov/dam-migration/final-atlantic_large_whale_take_reduction_team_meeting_april23-26_kom_(508).pdf.
103

Given these findings and lingering concern with the TRT process and outcome, Maine’s
five lobster industry TRT members withdrew support for the “near consensus agreement.”
Unfortunately, although NMFS pledged to address shortcomings in the DST before it was used
for management decisions, a number of those flaws persist, as explained elsewhere in these
comments.
III. CONCLUSION
The MLA appreciates NMFS’s consideration of the comments and recommendations
provided in this letter. The MLA remains committed to working with NMFS to ensure that this
rulemaking process achieves a result that maximizes conservation benefits while also—and very
importantly—minimizing adverse economic, operational, and social impacts to the Maine
Lobster Fishery. The recommendations provided above will help to accomplish that balance and
ensure that any final rule is consistent with the best available scientific and commercial data. If
you have any questions or would like additional information, please do not hesitate to contact me
at 207.967.4555 or [email protected].
Sincerely,

Patrice McCarron
Executive Director
cc:

Dr. Paul Doremus, Acting Assistant Administrator NOAA Fisheries
Sam Rauch, Deputy Assistant Administrator for Regulatory Programs
Jennifer Anderson, Assistant Regional Administrator for Protected Resources
Senator Susan Collins (via Cameron O’Brien)
Senator Angus King (via Peter Benoit and Chris Rector)
Representative Chellie Pingree (via Lisa Pahel and Rhiannon Hampson)
Representative Jared Golden (via Eric Kanter and Morgan Urquhart)
Honorable Janet Mills, Governor of Maine (via Tom Abello)
Patrick Keliher, Commissioner, Maine Dept of Marine Resources
Thomas Nies, Executive Director, New England Fishery Management Council
Robert Beal, Executive Director, Atlantic States Marine Fisheries Commission

Addendum 1 to MLA
Proposed Rule
Comments

Addendum 1 to MLA Proposed Rule Comments
The Lobster Fishing Associations
Maine Lobstermen’s
Association
Massachusetts Lobstermen’s
Association
Atlantic Offshore Lobstermen’s
Association
Maine Lobstering Union

Maine Coast Fishermen’s
Association
New Hampshire Commercial
Fishermens’ Association
Downeast Lobstermen’s
Association
Southern Maine Lobstermen’s
Association

Maine Lobster Dealers
Association
Maine Center for Coastal
Fisheries
Maine Aquaculture Association
O’Hara Corporation

February 19, 2021
Via Email to [email protected]
Paul N. Doremus, Ph.D.
Acting Assistant Administrator
NOAA Fisheries
1315 East-West Highway
14th Floor
Silver Spring, MD 20910
Re: Comments of the Lobster Fishing Associations to the Draft Biological Opinion on 10 Fishery
Management Plans in the Greater Atlantic Region and the New England Fishery Management Council’s
Omnibus Habitat Amendment 2 (Released January 15, 2021)
Dear Dr. Doremus:
Thank you for the opportunity to comment on the above-referenced draft Biological Opinion
(“Draft BiOp”) released on January 15, 2021. The following comments are submitted on behalf of the
Maine Lobstermen’s Association, the Massachusetts Lobstermen’s Association, Atlantic Offshore
Lobstermen’s Association, New Hampshire Commercial Fishermens’ Association, Maine Coast
Fishermen’s Association, Maine Lobstering Union, Downeast Lobstermen’s Association,
Southern Maine Lobstermen’s Association, Maine Lobster Dealers Association, Maine Center
for Coastal Fisheries, Maine Aquaculture Association and the O’Hara Corporation (collectively,
the “Lobster Fishing Associations” or “Associations”). While the extremely short comment
period has not allowed for as thorough a response as this lengthy and complex document
warrants, we appreciate the National Marine Fisheries Service’s (“NMFS”) consideration of
these comments, which we provide in the spirit of refining and improving the Draft BiOp to
present an accurate assessment of the proposed actions consistent with the standards of Section 7
of the Endangered Species Act (“ESA”).1
1

In a letter dated February 5, 2021, the Associations requested a 10-day extension of the comment period
for the Draft BiOp to align with the public comment period on the proposed Atlantic Right Whale Take
Reduction Plan rule that is concurrently posted for public review and comment (“Proposed TRP Rule”).
See 85 Fed. Reg. 86,878 (Dec. 31, 2021). Similar requests were made by the State of Maine, Atlantic
States Marine Fisheries Commission, and Maine’s Congressional delegation. NMFS regrettably denied
the requests. The Associations appreciate that NMFS is working against a litigation deadline, but its
denial of a modest 10-day extension request to allow stakeholders to coordinate their comments on two
inextricably linked regulatory proposals that could fundamentally alter the management, operational
integrity, safety, and financial viability of the fisheries is unreasonable. The Lobster Fishing Associations
strongly encourage NMFS to consider the comments submitted on the Proposed TRP Rule as it revises
and finalizes the BiOp.

I. THE LOBSTER FISHING ASSOCIATIONS HAVE STRONG INTERESTS IN THE
FUTURE OF THE NORTHEAST LOBSTER FISHERY AND SURVIVAL OF THE
NORTH ATLANTIC RIGHT WHALE
The Lobster Fishing Associations represent members who are active participants in the
U.S. Northeast Lobster Fishery (the “Lobster Fishery”) or who are otherwise active in
businesses and organizations directly connected to the extraordinary marine resource that
makes up the Lobster Fishery. A description of each association’s membership, mission and
interest in this proceeding is presented in Addendum A.
The Lobster Fishing Associations share a commitment to support the continued
viability of the Lobster Fishery under principles of sound resource management that promote
sustainability and ensure best practices for the protection and conservation of all marine
resources in the area. They are also dedicated to an effective management plan incorporating
practices and measures built upon the best available commercial and scientific data that
supports the health of the endangered North Atlantic right whale (“NARW”).
As professionals with a deep understanding of our ocean environment, we have
specialized knowledge, experience and perspective to inform this issue. We draw our
livelihoods from the ocean and recognize the fragility of our shared marine environment. Our
fisheries have been well-managed by generations of fishermen who feed our nation with
healthy, sustainably harvested seafood.
The Northeast Lobster Fishery has long been an integral part of the region’s culture,
heritage and economy supporting tens of thousands of jobs and hundreds of ancillary
businesses.2 The fishery remains the most valuable in the United States value at more than $640
million in 2019 and contributing more than $2 billion to the region’s economy3. For rural coastal
communities, the lobster fishery is the economic engine that keeps many small towns alive as
detailed in Addendum B.
These comments focus only on those portions of the Draft BiOp relevant to interactions
between NARWs and anthropogenic sources. As summarized in Section II below and set forth
in detail in Section III, these comments identify significant questions and concerns associated
with the data and analyses presented in the Draft BiOp. Our comments present
recommendations for additional data and analyses to be considered and undertaken by NMFS
in order to ensure accurate identification and analysis of the relative risk to the species and the
associated application of Section 7(a)(2) of the ESA.
The Draft BiOp has profound implications for the future of the Lobster Fishery. It is
therefore essential that the Final BiOp issued by NMFS comprehensively and accurately
considers all of the best available scientific and commercial data, and correctly applies Section
7(a)(2)’s standards. With these comments, we seek to ensure that the Final BiOp presents a
2

Maine's lobster fleet directly supports more than 10,000 jobs (3,670 captains, up to 5,750 crew, and
1,095 students).
3

Donihue, Michael. Lobsters to Dollars: The Economic Impact of the Lobster Distribution Supply Chain
in Maine. June, 2018.Colby College at
http://www.colby.edu/economics/lobsters/Lobsters2DollarsFinalReport.pdf.
2

defensible assessment of the reasonably certain effects of the proposed actions and addresses
actual sources of harm credibly identified and supported by verifiable scientific observations,
data and analysis.
It is of paramount importance to the Associations that the Final BiOp meets these
standards because our members will be asked to implement any additional measures. Such
measures must be plainly demonstrated—based on the best scientific and commercial data
available—to promise positive benefits for the NARW population so that the Associations’
members will have confidence that any additional sacrifices are worthwhile.
II. SUMMARY OF COMMENTS
The Draft BiOp is an expansive document with far-reaching implications for New
England’s iconic fisheries and cultural heritage. The Associations are alarmed that NMFS has
developed a BiOp that assigns highest priority for NARW population recovery to the Lobster
Fishery despite evidence that the most urgent risks are vessel strikes and entanglements in
Canadian fisheries, which do not implement mitigation measures nearly as protective as those
undertaken by the Lobster Fishery. The relative risks presented by the Lobster Fishery—which
have already been substantially mitigated over the last decade—do not justify unsupported
agency mandates that could eliminate an economic and fishing heritage that has sustained our
coastal communities for centuries and is an integral part of New England’s identity.
With that said, the Associations remain committed to working with NMFS and other
stakeholders to design an effective program for avoiding and minimizing impacts to the NARW
population. We have carefully reviewed the Draft BiOp and provide detailed comments in
Section III below, which are summarized as follows:
1. The Lobster Fishery has substantially reduced the risk it presents to NARWs over the
past decade through implementation of risk reduction measures. The best available data
shows that those measures have been effective, and the Final BiOp’s environmental
baseline should fully reflect the benefits of such measures. The Associations encourage
NMFS to focus on implementing effective measures in areas where there is demonstrated
risk. In particular, ropeless gear is not economically viable at this time and there are
numerous technical and operational challenges that must be addressed before it can be
substituted for gear using vertical lines, as explained in greater detail below.
2. NMFS should not be considering a management strategy that holds U.S. fishermen
accountable for NARW M/SI in Canada. The U.S. must engage directly with Canada in
an open and transparent manner. The Associations implore NMFS to engage more
directly and aggressively with Canada to ensure that effective and measurable risk
reductions are implemented bilaterally.
3. The Draft BiOp presents an inaccurate assessment of the effects of the Lobster Fishery by
relying upon unsupported assumptions that artificially inflate the risk from the Lobster
Fishery. The result is that the Draft BiOp does not present an effects scenario that is
“reasonably certain to occur” or supported by the best scientific and commercial data
available.

3

a. NMFS arbitrarily assigned a level of risk to the Lobster Fishery that is
unsupported by the evidence. NMFS must correct this flaw by adopting a uniform
probabilistic approach, based on observed data, to apportion all unknown human
causes. Additional data, information and expert judgment should be used to refine
risk allocation and adapt the proposed management program. This methodology
should apply to apportionment of (1) unknown human causes to vessel strikes
versus entanglements, (2) unknown entanglements between U.S. and Canada, and
(3) unknown entanglements among U.S. fisheries.
b. NMFS based the “North Atlantic Right Whale Conservation Framework for
Federal Fisheries in the Greater Atlantic Region” (“Conservation Framework”) on
an unreliable model that arbitrarily ignored sublethal impacts. In doing so, it
failed to capture the full benefits from mitigation requirements under Phase 1.
c. NMFS arbitrarily selected data from the 2010-2019 time period. It assumed that
unfavorable trends in oceanographic conditions would continue but did not take a
similar approach with favorable trends in observed data on the sources of
entanglements. These latter trends demonstrate disproportionately more
entanglements due to Canadian fisheries and, in the U.S., more entanglements
from non-trap/pot gear. Nonetheless, NMFS allocated more mortality and serious
injury (“M/SI”) incidents to the Lobster Fishery than is supported by the best
available information.
d. The estimate for cryptic mortality is not reliable. This estimate, based on the Pace
et al. model (2017), is highly sensitive to new data and therefore, given the
foreshortened time frame on which it relies, not suitable yet for long-term
planning. Further, these models assume no natural mortality despite wellestablished research to the contrary.
e. NMFS failed to give appropriate weight to mitigation measures that reduce the
severity of entanglement (e.g., weak links). These measures may substantially
reduce or eliminate risks from trap/pot fisheries, based on published scientific
literature.
f. The Decision Support Tool (“DST”) assigns equal weight to whale density, gear
density, and gear type even though reviewers believe that whale behavior and
gear type/configuration are the most relevant factors in determining entanglement
risk. We suggest both approaches be evaluated.
4. Phases 3 and 4 of the Conservation Framework are likely unnecessary once NMFS
performs a more robust and accurate assessment of the effects of the action. We
recommend that NMFS undertake a comprehensive assessment of Phases 1 and 2 that
includes the participation of the states and the fisheries to ensure that the process is fully
informed by the best scientific and commercial data available. The assessment should be
reviewed by the Center for Independent Experts (“CIE”). This will inform whether
Phases 3 and 4 are necessary and, if so, how they should be modified.

4

5. The Conservation Framework’s benchmark of 0.11 M/SI is arbitrary and unsupported by
the best available science or the law. NMFS provides no explanation supporting this
metric or an explanation of how it was calculated. In any event, a “jeopardy”
determination under Section 7(a)(2) of the ESA does not turn on a single metric, much
less one that is far more stringent than would be required to achieve the more protective
goals of the Marine Mammal Protection Act (“MMPA”). NMFS’s requirement that the
M/SI rate “needs to be reduced” to 0.11 to achieve a “no jeopardy” determination has no
precedent in the law or practice, and arbitrarily demands a result that exceeds the
requirements of both the ESA and the MMPA.
6. It is unclear how NMFS intends the Conservation Framework to be implemented
through, or in conjunction with, the two primary sources of authority that govern the
ongoing federal regulation of the Lobster Fishery—i.e., the Atlantic Coastal Fisheries
Cooperative Management Act (“ACFCMA”) and the MMPA. These statutory processes
should be integrated into the Conservation Framework.
7. We offer a number of specific recommendations for refinement and improvement of the
Draft BiOp’s reasonable and prudent measures and associated terms and conditions.
These are set forth in Section III.E below.
III. COMMENTS ON DRAFT BIOLOGICAL OPINION
A.

The Lobster Fishery Has Significantly Reduced Risk to the NARW.

NMFS initiated the Section 7 consultation leading to the Draft BiOp against the
backdrop of an unusual mortality event (“UME”) declared in mid-2017 that tragically
interrupted a prolonged period of improvement in the prospects for recovery of the NARW.
The population growth trajectory had been favorable for many years under the guidance of the
Atlantic Large Whale Take Reduction Team (“TRT”) and the associated Atlantic Large Whale
Take Reduction Plan (“ALWTRP”) implemented by NMFS pursuant to Section 118(f) of the
MMPA. Collaborative work by lobster harvesters, researchers, fishery managers, and other
stakeholders had contributed to scientific knowledge of NARW behavior and interaction with
fishing gear and other human activities across its migratory range.4 This work led to a series of
enhanced measures to mitigate risk to the species from fishing gear. In addition, harvesters
worked alongside fishery regulators, whale scientists, and the private sector to develop
4

The MLA and its members have collaborated with scientists in developing and testing fishing gear to
reduce the risk of entanglement. The MLA partnered with the NMFS gear team in the 1990s to measure
gear profiles, test weak links and explore gear modifications; worked with researchers in the 2000s to
establish methods and standards to deploy weak links, develop buoy line marking methods, deploy
remotely operated vehicle (“ROV”) and sensors to measure groundline rope profiles, and tested a variety
of vertical line modifications such as weak rope, stiff rope, glow rope and time tension line cutters. Since
2010, MLA and its members have worked with scientists to publish a resource describing lobster gear and
configurations deployed in the New England lobster fishery, map lobster fishing effort, develop a fishing
gear/right whale risk model, document wear issues associated with sinking groundlines and
recommendations to improve wear of that line, describe options for best fishing practices, test colored
vertical lines, measure the breaking strength of existing vertical lines, test new versions of weak rope and
update time tension line cutters. In addition, individual MLA members have collaborated with researchers
and developers seeking to design a viable system for ropeless fishing.
5

innovative fishing practices and gear deployment strategies intended to reduce harmful
interactions between whales and fishing gear. 5
The Associations have been key participants in the TRT process, helping to develop
and successfully implement enhanced protections for NARW with demonstrated success.6
Since 2009, a robust new regulatory environment has significantly reduced the risk of NARW
entanglement in American lobster fishing gear by implementing a comprehensive overhaul in
gear configuration and fishing practices over the past 10 years. Regulations developed and
imposed at the state and federal level, including those implemented under the ALWTRP, have
significantly reduced both (1) the amount of lobster fishing gear on the water, and (2) the risk
of a severe outcome if a NARW encounters such gear. The principal elements of the enhanced
measures that have been implemented to protect whales are summarized below.


Sinking groundline requirement. Implemented under ALWTRP in 2009, these regulations
preclude the use of “floating groundlines” connecting lobster traps and, instead, require
the use of “sinking groundlines.” This eliminates the potential for whale entanglement in
floating lines near the ocean bottom. These regulations removed over 27,000 miles of
floating groundlines from New England waters.7



Vertical line reduction. Implemented under ALWTRP in 2014, these regulations establish
minimum traps per trawl based on geographic area and distance from shore, resulting in
the removal of approximately 2,740 miles of rope from the water.



Massachusetts Restricted Area. In 2015, ALWTRP regulations established a 3,000 square
mile area spanning Cape Cod Bay, Massachusetts Bay, and outer Cape Cod, which has
been closed to lobster gear from February 1 to April 30 annually. The state waters portion
of this closure is managed by the Massachusetts Division of Fisheries (“DMF”), which
has extended applicability to recreational fishermen and moved the closure date beyond
April 30 as appropriate.



Universal Gear Requirements. A suite of gear modifications has been established to
reduce entanglement risk to NARW, prohibiting the use of floating line at the surface and

5

MALA works cooperatively with the Massachusetts Division of Marine Fisheries (“DMF”) in efforts to
further reduce risk of entanglement to NARWs. Among other things, MALA is partnering with the
Lobster Foundation of Massachusetts (“LFoM”) and the DMF on an effort to field test 1700lb weak red
rope to further reduce interactions with NARWs and vertical lines. The LFoM and MALA worked to
distribute over 700 coils of the 1700lb weaker red rope to lobstermen in Massachusetts to be field tested
during the 2020 fishing season. The goal is to acquire viable and acceptable “weak contrivance” options
to be off-the-shelf ready for implementation in the 2021 fishing season in Massachusetts.

6

The Associations have been actively involved in the TRT process. TRT members include MLA’s
Executive Director, Patrice McCarron (more than 15 years); MLA President and commercial fisherman,
Kristan Porter; MALA Executive Director, Beth Casoni; MALA President, Massachusetts Marine
Fisheries Commissioner, and commercial fisherman, Arthur Sawyer; AOLA Executive Director, David
Borden; NH Commercial Fishermen’s Association member and lobsterman, Bob Nudd, Jr.; and
Association members who are commercial lobstermen Dwight Carver, John Williams, and Mike Sargent.
7

The Salvador Declaration, which was filed in Ctr. for Biological Diversity v. Ross, Civ. Action No. 18CV-112-JEB, as Document 115-5 at 5 (D. D.C., filed June 18, 2020). (Addendum C).
6

wet storage of gear for more than 30 days, and requiring the incorporation of weak links
in the top of buoy line and to any attachments along the buoy line. Federally regulated
fixed gear fishermen are required to mark vertical lines to aid in identifying the source of
gear involved in an entanglement. In 2020, Maine implemented new regulations to
require unique and expanded gear markings.


Effort Reduction. The Lobster Fishery has reduced effort across all jurisdictions since the
inception of the ALWTRP. Area 3 has implemented mandatory annual trap allocation
limits of 5% per year, Massachusetts has a long-standing moratorium on lobster licenses,
and Maine has established a limited-entry program, all of which has resulted in a
significant reduction in the risk of entanglement to NARWs.

Table 1
Confirmed U.S. Lobster Entanglement 1997-2019
2010-2019
1997-2000
2000-2010
4 Non-serious injuries
1 Mortality;
1 Non-serious injury
4 Non-serious injuries
As illustrated in Table 1, continuous enhancements of whale protective measures have
been followed by significant declines in NARW entanglements attributed to American lobster
fisheries. From 2000 to 2010, U.S. lobster gear comprised 45% of known cases of such
entanglements (6 cases out of 13). However, since 2010, U.S. lobster gear comprises only 0.04%
of known cases (1 case out of 25).8 Since 2014, there has been only one entanglement (a nonserious injury) in New England lobster gear. During this same time period, no NARW is known
to have died or suffered serious injury arising from entanglement in gear attributed to American
lobster fishing.9 This is significant since efforts to monitor and study NARW, including
expanded survey effort and NARW health status, have substantially improved since the
beginning of the TRT process so the likelihood of detection and identification of sources of harm
has improved.
In sum, the best available scientific and commercial data demonstrate that since the
implementation of additional protective measures by American lobster fishermen through the
MMPA’s take reduction planning process, the Lobster Fishery has significantly lowered the risk
profile of its gear and fishing practices to the extent they interact with NARW. Although the
Draft BiOp acknowledges that “risk reduction measures implemented in U.S. fisheries over the
past two decades have reduced impacts to NARW from U.S. fisheries,”10 the benefits of such
measures have not been accounted for, as they must, in the environmental baseline.11 This
8

Salvador declaration at 8 (Addendum C).

9

Id.

10

Draft BiOp at 224.

11

See 50 C.F.R. § 402.02 (“The environmental baseline includes the past and present impacts of all
Federal, State or private actions and other human activities in the action area, the anticipated impacts of
all proposed Federal projects in the action area that have already undergone formal or early section 7
consultation, and the impact of State or private actions which are contemporaneous with the consultation
process.”); ESA Consultation Handbook at 4-22 (Environmental baseline should incorporate actions that
may benefit the species.).
7

sustained downward trend in observed entanglements with Northeast lobster gear, attributable to
the comprehensive actions taken by fishery regulators and harvesters to minimize and avoid
entanglements, is a significant feature of the environmental baseline that cannot be arbitrarily
dismissed or overlooked.12
The Final BiOp will not accurately analyze the risk of adverse interactions between
NARW and lobster gear unless it clearly identifies and considers: (1) the documented reduction
in observed incidents of entanglements with lobster gear since 2010, and (2) the absence of any
incidence of M/SI from such entanglements during that time period. Although entanglement
continues to be a significant factor affecting NARW, NMFS’s most recent data as presented in
the Draft BiOp show that, from 2010-2019,18 cases (16%) of known entanglements were
attributed to Canada (18% M/SI) and only 8 cases (7%) were attributed to the US (4% M/SI).
The trend shifts significantly during the last four years of this time series with 16 cases (33%)
attributed to Canada (39% M/SI) and only 3 cases (6%) attributed to U.S. (0% M/SI). The
percent of unknown entanglements over these four years declined by 61% compared to 77% over
the last ten years.13
As discussed in more detail below, the performance of Canadian fisheries since 2010 has
been troublesome, with a spike in observed entanglements in recent years. A failure to
appropriately consider the increasing trend in incidents occurring in Canada will result in an
arbitrarily high assignment of risk to the Lobster Fishery. The consequences of an inaccurate risk
assignment are non-trivial. The species is experiencing a UME that started in 2017 and recent
scientific observations report declines in species population health status.14 This places a
premium on accurate identification and assessment of sources of harm to NARW so that limited
conservation resources are effectively deployed. The Final BiOp should include a probabilistic
analysis of the relative risk posed by lobster fishing gear and other gear types that have been
identified in entanglement and M/SI incidents over the last decade, as well as relative difference
between Canadian and U.S. fishery risk.
B.

The Draft BiOp Arbitrarily and Substantially Overestimates the Impact of the
Lobster Fishery.
1.

The BiOp must present an objective assessment of the “reasonably certain”
effects of the action, based upon the best available scientific and commercial
information.

Section 7 of the ESA requires NMFS to use the “best available scientific and commercial
information” when developing a BiOp. 16 U.S.C. §1536(a)(2). The “obvious purpose” of this
12

NOAA law enforcement has reported excellent compliance rates with fishery regulations, including
measures required by ALWTRP. See, e.g.,
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/October%202018/noaa_fisheries_
enforcement_presentation.pdf (Compliance rates for all fisheries 92% in 2017).
13

Draft BiOp, Table 56 at 223.

14

While there are likely a multitude of factors involved, low calving has been linked to poor female
health (Rolland et al. 2016) and reduced prey availability (Devine et al. 2017, Johnson et al. 2017,
Meyer-Gutbrod and Green 2014, Meyer-Gutbrod and Greene 2017, Meyer-Gutbrod et al. 2018). Draft
BiOp at 94-95.
8

requirement “is to ensure that the ESA not be implemented haphazardly, on the basis of
speculation or surmise,” particularly when doing so would cause “needless economic
dislocation.” Bennett v. Spear, 520 U.S. 154, 176 (1997). Relatedly, although the ESA’s
legislative history suggests that a federal agency, when faced with uncertain data, should give the
“benefit of the doubt” to the species, that concept does not excuse NMFS from its obligation to
objectively evaluate the “effects of the action,” that are “reasonably certain to occur.” 50 C.F.R.
§ 402.02; see 84 Fed. Reg. 44,976, 44,993 (Sept. 26, 2019) (“‘reasonably certain to occur’
determination must be based on clear and substantial information, using the best scientific and
commercial data available” and is not altered by the “benefit of the doubt” concept); see id. at
45,007. The “benefit of the doubt” concept does “not absolve federal agencies from . . .
developing adequate information on which to base a biological opinion.” Miccosukee Tribe of
Indians of Fla. v. U.S., 566 F.3d 1257, 1267 (11th Cir. 2009), quoting H.R. Rep. No. 96-697, at
12 (Conf. Rep.), as reprinted in 1979 U.S.C.C.A.N at 2576.
At numerous points in the Draft BiOp, when faced with uncertainty, NMFS selects the
variable at the extreme end of a spectrum of choices that assumes the greatest possible impact
from the Lobster Fishery on the basis that it must give the “benefit of the doubt” to the species.
Many such precautionary assumptions, when compounded throughout the modeling analysis,
result in a substantial overestimation of the effects of the Lobster Fishery that is not “reasonably
certain to occur.” This is not how Congress or the Services intended the “benefit of the doubt”
concept to apply. The concept applies only to NMFS’s overarching determination as to whether
an action is likely to jeopardize (after objectively evaluating the “effects of the action”) and
“suggests only that agencies, including the Service, cannot hide behind uncertain scientific data
to shirk their duties under the Act.” Miccosukee Tribe, 566 F.3d at 1267; see Conner v. Buford,
848 F.2d 1441, 1454 (9th Cir. 1988) (agency may not “ignore available biological information”).
The “benefit of the doubt” concept does not permit or compel NMFS to construct implausible
effects scenarios built upon compounded precautionary assumptions, as it has done in the Draft
BiOp. The Draft BiOp’s key errors in this regard are addressed in the following sections.
2.

The Draft BiOp does not evaluate reasonably certain sublethal effects,
resulting in a substantial overestimate of the effects of the proposed actions.

Phases 3 and 4 of the Draft BiOp’s Conservation Framework are predicated on NMFS’s
assumption that implementation of Phases 1 and 2 will be insufficient to avoid jeopardizing the
existence of the NARW. The population model described in Linden (2021)15 is an important
basis for this finding, as it projects a declining NARW population even after implementation of
all four phases of the Conservation Framework under Scenario 2. Phases 3 and 4 are also based
on the qualitative understanding that “[the] operation of the federal fisheries is likely to
contribute to decreased calving rates due to the sublethal effects.”16 The Draft BiOp notes that
“some of the risk reduction measures in Phase 1 and 2 are designed to reduce the severity of
entanglements and not the likelihood” (emphasis added), implying both are necessary. The Draft

15

Linden, D.W. January 9, 2021. Population projections of North Atlantic right whales under varying
human-caused mortality risk and future uncertainty. Greater Atlantic Region Fisheries Office. See section
7 below for additional comments on Linden (2021).
16

Draft BiOp at 338.
9

BiOp goes on to explain that the “risk reduction requirements in Phase 3 and 4 of the
Framework” are necessary to address assumed sublethal effects to NARW.17
The imposition of additional risk reduction requirements in Phases 3 and 4 to address
non-lethal effects is problematic in two ways. First, the Draft BiOp does not quantify sublethal
impacts but rather discusses them qualitatively and makes no effort to further investigate the
potential magnitude of these effects based upon the best available science. Most NARW that
become entangled apparently clear themselves of the gear although they continue to bear scars
after they recover from the direct effects of the encounter.18 A total of 63 percent of
entanglements are minor in severity when they occur,19 but the BiOp notes that “[t]he sublethal
stress of entanglements can have a serious impact on individual health and reproductive rates
(Lysiak et al. 2018, Pettis et al. 2017, Robbins et al. 2015).”20 The Draft BiOp cites no scientific
literature that allows for a population-level understanding of sub-lethal impacts.21 Yet, Phases 3
and 4 still impose numerical risk reduction to address an impact that is not shown by clear and
substantial evidence to be reasonably certain to occur.
Second, Linden (2021) does not incorporate sub-lethal impacts in its model.22 It states:
The projection outputs do not consider any increase in the female
right whale population trajectories due to a reduction in sublethal
effects (i.e., ALWTRP proposed rule, any future risk reduction
measures). The reduction of sublethal effects expected from
reducing entanglements is expected to improve the animal’s heath
and reproductive capacity. However, these reductions cannot be
quantified as they are confounded by other stressors (e.g.,
environmental factors).
The consequence of not considering improvements in the condition of NARW from
fewer overall entanglements and fewer severe, non-lethal entanglements as a result of Phase 1
and 2 measures (and by extension an enhanced calving rate of NARW) is that the population

17

Id. at 338-339.

18

Knowlton, A.R., P.K. Hamilton, M.K. Marx, H.M. Pettis and S.D. Kraus. 2012. Monitoring North
Atlantic right whale Eubalaena glacialis entanglement rates: a 30 year retrospective. Mar. Ecol. Prog.
Ser. 466:293–302.
19

Maintenance of the North Atlantic Right Whale Catalog, Whale Scarring and Visual Health Databases,
Anthropogenic Injury Case Studies, and Near Real-Time Matching for Biopsy Efforts, Entangled, Injured,
Sick, or Dead Right Whales October 1, 2020 at 50.
20

Draft BiOp at 146.

21

“However, at this time, there is no further evidence to make the conclusion that sublethal effects from
fishing gear entanglement alone causes a decline in large whale health. Based on the best available
scientific and commercial data, we believe at least some of the observed variability in right whale calving
rates is due to the sublethal effects of entanglements in U.S. federal fishing gear, but cannot quantify the
degree to which entanglements are affecting calving rates at this time.” Draft BiOp at 221.
22

Id. at 331.
10

model underestimates the stock size under all three scenarios.23 The Draft BiOp acknowledges
this problem: “All scenarios are expected to result in an increase in calving. This increase is not
considered in the population projections, therefore, the three scenarios representing the
implementation of measures to reduce M/SI are conservative.”24 One independent reviewer went
further in her characterization, stating that Linden 2021 presents “overly pessimistic
conclusions” and that the absence of a quantified relationship between fecundity and
entanglement represents a “worst case scenario.”25 But the Draft BiOp does not provide any
further analysis to address the problem.
The overwhelming majority of entanglements are non-lethal, and they are either
important with respect to demographic rates or they are not. If sublethal impacts are important to
the point that the Draft BiOp imposes draconian risk reduction requirements in Phases 3 and 4 of
the Conservation Framework, then the analysis must fully consider sublethal impacts in the
population model upon which these additional phases are predicated. And there is available
scientific information (some of which is cited in Linden 2021) that confirms sub-lethal impacts
occur. Taking sublethal impacts into account in the model would likely generate different results
where calving rates improve and the population is growing under the Conservation Framework.
In fact, the Linden (2021) population model appears to be sensitive to calving rates, with the
author noting that “using a calving rate averaged across the years 1990-2018 produces positive
population trajectories under all three scenarios.”26 27 It goes on to state:
Finally, the population model does not consider the relationship between
entanglement injuries and calving probability (Pettis et al. 2017). It is
possible that mitigation measures aimed at reducing the risk of entanglement
mortality would also reduce sub-lethal entanglements to reproductive adult
females that may be partially responsible for suppressed calving rates in
recent years. Thus, the scenarios represented here may be underestimating
the benefits of risk reduction to the population by focusing only on mortality.
[Emphasis added.]
The Draft BiOp expressly recognizes that its treatment of sub-lethal effects
underestimates population growth.28 But where, as here, available data can be used to further
evaluate this effect and address the flawed underestimate, NMFS must carry out that analysis
because it must evaluate effects that are “reasonably certain to occur.” See Section III.B.1 supra.
23

Id. at 333-335 and 341.

24

Id. at 340.

25

L. New. May 2020, at 2. Center for Independent Experts (CIE) External Independent Peer Review for
“predictive Modeling of North Atlantic Right Whale Population.
26

Linden (2021) at 9.

27

Id., see Figure 2, Draft 2020 Status Assessment Report, growth rate of 2.8 percent for years 1990-2011,
whereas the overall decline in abundance between 2011 and 2018 was 14.35% (CI=11.67% to 16.6%).
Id. at 46.
28

“We expect calving rates will likely improve following the implementation of the Framework as
sublethal effects will be reduced. Calving rates are also likely to improve at a similar rate in the no federal
fisheries scenario. It is likely that both projections are an underestimate, and the right whale population
would fare better than population projections indicate.” Draft BiOp at 341.
11

If NMFS were to perform this analysis and it indeed shows a more favorable population
trajectory under Scenario 2, NMFS may determine that additional risk reduction in Phases 3 and
4 is either unnecessary or can be scaled back from what is currently proposed.
Similarly, if sub-lethal impacts are determined to be insignificant to the population
growth trajectory, then the focus of the Conservation Framework should be on actions that
specifically reduce the severity of entanglement events. Despite NMFS’s worst-case modeling
scenarios, the agency recognizes that “the population is capable of recovering at lower levels
than the current estimate,” referring to NARW abundance estimates of 162 animals in 1980 and
270 animals in 1990, figures that ultimately grew to 483 whales in 2010 (Pace et al. 2017).29
In short, Phases 3 and 4 are not premised on a complete analysis of the best available
scientific data. Performing a complete analysis, as outlined above, would inform both (1)
whether Phases 3 and 4 are necessary and (2) if so, how risk reduction measures in Phases 3 and
4 should be targeted. Moreover, implementation of Phases 3 and 4 should be predicated on a
review of the effectiveness of Phases 1 and 2 in reducing the severity of entanglements. As it
currently stands, the Conservation Framework, on one hand, imposes a severe quantitative risk
reduction requirement at Phases 3 and 4 to, in part, address an uncertain variable (sub-lethal
effects) and, on the other hand, ignores that same variable despite acknowledging that
conservation measures would improve sub-lethal effects. This arbitrarily inflates the effects of
the action beyond what is “reasonably certain to occur.”
3.

The best available science demonstrates that more entanglements are
occurring in Canadian fisheries.

The Draft BiOp allocates half of all entanglements of unknown origin to U.S. fisheries.
This determination is one of the most significant assumptions in the Draft BiOp because 96% of
all mortality attributed to the commercial trap/pot fishery is the result of fishing gear of unknown
origin. The Draft BiOp justifies this allocation with the following rationale:
Although right whales spend more time in U.S. waters than
Canadian waters, for the purposes of this Opinion, we assume that
50% of the observed right whale entanglements where the country
of origin is unknown occurred in the United States. This
assumption is supported by the analysis of recovered entangling
gear. The heavy traps and large diameter, high breaking strength
lines used to target snow crabs in Canada are more lethal than most
U.S. fishing gear.[30] Additionally, risk reduction measures
implemented in U.S. fisheries over the past two decades have
reduced impacts to right whales from U.S. fisheries.[31]
29

Draft BiOp at 340.

30

The fact that Canadian fishing gear is observed to be more lethal than U.S. gear is supported by other
data and analyses, including information provided in the Salvador Declaration at 5. However, the
statement is inexplicably contradicted at page 96 of the Draft BiOp where it is stated that Canadian and
U.S. lobster fisheries use similar gear. The latter statement is incorrect and should be removed or clarified
because it is contrary to the weight of available evidence.
31

Draft BiOp at 224.
12

The Draft BiOp goes on to identify several factors that were considered to determine the
50-50 allocation: (1) that NARW spend more time in U.S. versus Canadian waters; (2) the
relatively higher number of fishing lines in U.S. waters; (3) the “heavy traps” and lethality of
fishing gear used by Canadian snow crab fisheries; (4) the success of risk reduction measures
implemented in U.S. fisheries; and (5) an analysis of recovered entangling gear. However, the
Draft BiOp does not quantify or otherwise explain how these factors were weighted to reach a
50-50 allocation. A close look at these assumptions shows that NMFS’s 50-50 allocation
determination is not consistent with the best available scientific data, including NMFS’s own
data.
First, the Draft BiOp improperly discounts the value of observed data, noting that
“[a]ssignment of an observed entanglement event to a specific fishery or country of origin is
rarely possible.”32 In fact, NMFS’s data show that this is not rare, with 39% of entanglement
cases confirmed to a country from 2016 to 2019.33
Second, NMFS’s assumption that NARW spend more time in U.S. waters than Canadian
waters is not supported by the best available data. By NMFS’s own admission, there are no data
to substantiate the claim that NARW spend more time in U.S. versus Canadian waters.34
Moreover, the amount of residency time in U.S. waters generally is irrelevant for the purpose of
ascertaining the entanglement risk of commercial fisheries. NMFS should instead compare the
time spent by NARW in the portion of U.S. waters where a fishery operates. Residency time in
more southern locations is not indicative of the entanglement risk of the Lobster Fishery. We
therefore encourage NMFS to look more closely at NARW behavior (e.g., transiting vs.
foraging) within areas where fishing gear is deployed because the nature of animal behavior
across commercial fisheries is variable and is likely to be more relevant than residency time. This
same concern was stated in the CIE review of the DST.35
Third, although the Draft BiOp acknowledges that the rapidly expanding Canadian snow
crab fishery uses heavier and more lethal gear,36 Canada had few, if any, risk reduction measures

32

Draft BiOp at 223.

33

Draft BiOp, Table 56.

34

In GARFO’s April 18, 2019 email to the TRT, introducing the 50:50 US/CN apportionment, GARFO
states: “Because our Stock Assessment Reports have not included a determination on the fraction of time
North Atlantic right whales spend in U.S. and Canadian waters, we do not have a data-based residency
estimate to apply at this time.” (see Coogan email in Addendum D)
35

Peer Review Summary Report: Review of the North Atlantic Right Whale Decision Support Tool.
December 2019.
36

Draft BiOp at 224.
13

in place prior to 2017.37 38 Meanwhile, beginning in 20019, both U.S. fisheries and maritime
transportation sectors implemented a series of regulatory enhancements in an effort to reduce
NARW serious injury and mortality in U.S. waters,39 but similar efforts were not undertaken by
Canada at the time.40 U.S. fisheries implemented additional measures in 2014 to reduce the
number of vertical lines.41
As illustrated by Table 2, observed data demonstrate the lethality of Canadian snow crab
gear. Out of 26 entanglements with confirmed origin of fishing gear since 2010, Canadian pot
gear accounts for 16% of entanglement and 17% of M/SI. The last four years of the data show
the true lethality of the gear when it accounts for 31% of known entanglement and 36% of M/SI.
Table 2
Summary of Entanglement Incidents – US-Canada Comparison
2000-2019
2016-2019
Entanglement
MSI
Entanglement
MSI
All events
114
52
51
25
CN
18 (16%)
9 (17%)
16 (31%)
9 (36%)
US
8 (7%)
2 (4%)
3 (6%)
0 (0%)
Unknown
88 (77%)
41 (79%)
32 (63%)
16 (64%)
Source: Adapted from Draft BiOp, Table 56
Although this difference is not statistically significant,42 it is arbitrary to ignore the
difference because there are underlying factors that strongly suggest a divergence between the
two regions with respect to entanglement risk associated with differences in the fixed gear
profiles used in each country.
A previous version of this data was provided to the TRT at its April 2019 meeting. At
that time, investigations were still underway and not all of the Canadian cases had been
identified. Further, the data contained several transcription errors that erroneously determined
37

Examining Threats to the North Atlantic Right Whale, Committee on Natural Resources,
Subcommittee on Water, Oceans, and Wildlife. March 7, 2019. At 26. C. Oliver noting coordination
began in 2017. Available at https://www.congress.gov/116/meeting/house/109022/documents/CHRG116hhrg35462.pdf.
38

Not only is the risk from Canadian fishing gear improperly weighed, but the Draft BiOp does not
include in the environmental baseline recent measures undertaken by Canada. Failure to do so results in a
worst case scenario being analyzed in the jeopardy assessment of the draft BiOp at 333.
39

See discussion of U.S. regulatory measures above at Section III.A.

40

Although increased NARW migration into the Gulf of St. Lawrence was observed as early as 2015,
Canadian regulators did not implement enhanced protective measures for vessels until 2017 and fisheries
until 2018. See NARW sightings data at https://appsnefsc.fisheries.noaa.gov/psb/surveys/MapperiframeWithText.html.
41

See Section III.A. above for a summary of the primary mitigation measures implemented in U.S. waters
since 2009.

42

Based on a Student’s T-Test (2-tailed), the difference is not significant at p < 0.05. Walpole, Ronald E.
(2006). Probability & statistics for engineers & scientists. Myers, H. Raymond. (7th ed.). New Delhi:
Pearson.
14

confirmed non-trap cases as unknown. Based on this incomplete data, TRT members were
instructed by NMFS to concentrate their efforts on reduction of entanglements from the Lobster
Fishery because the fishery posed the most significant threat to the species, a claim that does not
comport with observed data as described below.43
Glenn Salvador, who spent more than two decades as a gear specialist at NMFS,
performed a careful examination of NMFS entanglement data, with updated Canadian cases and
corrections included, and concluded that the April 2019 presentation does not accurately reflect
the threat level presented to NARW by the American lobster fishery. 44 45
Specifically, Mr. Salvador reviewed data available for 138 documented entanglement
cases in U.S. and Canadian fisheries of all types from 2000-2018, and concluded that there has
been a significant decline in NARW entanglements in U.S. lobster gear since 2010. Moreover, he
noted that since 2014 there has been only a single, non-serious entanglement in lobster gear
attributed to the New England lobster fishery, and observed that rope removed from entangled
whales since that time is not characteristic of ropes used in the New England lobster fishery.46
Based on these findings, he concluded that “the decline in lobster gear entanglement is due to the
success of whale protection measures implemented by lobstermen and a significant distributional
shift of NARW into Canadian waters where they encounter Canadian fishing gear.”47 Mr.
Salvador concluded that “[t]he largest entanglement threat is now posed by Canadian snow crab
gear trap/pot gear.”48 The data supporting his conclusion are illustrated in Figure 1 below. As
noted, updated data presented in the Draft BiOp show that this trend has worsened.
Figure 1

43

See NMFS presentation at April TRT meeting at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/Meeting
%20Materials/overview_of_relative_risk_reduction_decision_support_tool__04_23_201.
44

Salvador declaration at 5 (Addendum C).

45

pdf and additional meeting materials at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/01_april_
2019_meeting_materials.html.
46

Id.

47

Id.

48

Salvador declaration at 5 (Addendum C).
15

Mr. Salvador’s analysis of data compiled and presented by NMFS also undermines
NMFS’s 50-50 risk allocation between Canada and the U.S., as proposed in the Draft BiOp. His
analysis strongly supports a finding that, notwithstanding the significant volume of rope the U.S.
lobster fishery deploys in the water column, Canadian fisheries now represent the greater
entanglement threat to NARW.49
Fourth, the Draft BiOp does not address the difference in observation effort between
Canadian and U.S. waters. Survey effort has historically been significantly greater in U.S.
waters, as NMFS conducts aerial operations on nearly a year-round basis. As a result,
entanglement events in Canadian waters were likely under-sampled prior to 2017, the year when
survey effort in Canada was increased with the assistance of NMFS.50 Greater survey effort in
the U.S. relative to Canada increases the likelihood that an entanglement event would be
observed. A small number of additional observed entanglements in Canadian waters would be
sufficient to make the difference between the U.S. and Canada statistically significant. This
factor also undermines the Draft BiOp’s 50-50 allocation.51
Fifth, NMFS’s peer review of this method did not provide conclusive advice on the
allocation method. The report concludes:
The current approach for apportioning human-caused mortality by
country may not be the most appropriate approach. There has
been a clear recent shift in the spatial distribution of NARW
which has been coupled with a shift in the source of known
serious injuries or mortalities to more Canadian records.
Therefore, a different method from the 50:50 split of unknowns to
US and Canadian fisheries should be examined. [52]
Reviewer Jason How acknowledged the lack of scientific basis for the 50-50 split and offered a
different approach to address the uncertainty:
The current 50% apportionment of unknowns to US fisheries does
not reflect the current shift in NARW distribution and the recent
increase in Canadian fisheries involvement in SI-M. Discussions
between industry and government should therefore be entered into
to find a compromise solution, whereby the recent shift in NARW
abundance is accounted for, but fishers are still required to address
49

Salvador declaration at 5, 8-10 (Addendum C).

50

NMFS data presented at the October 2018 TRT meeting shows that while surveillance in Canada
increased significantly in 2017 and was greater than U.S. efforts (95 hours in Northeastern US, 152 hours
in CN), surveillance efforts were similar in 2018 (150 hours Northeastern U.S. vs. 152 hours in Canada).
51

M. Cryer, CIE Independent Peer Review of the North Atlantic Right Whale Model Projects (May
2020), states the 50:50 split “does not seem to have much supporting evidence in the documentation
provided” at 5.
52

Peer Review Summary Report: Review of the North Atlantic Right Whale Decision Support Tool.
December 2019, at 13.
16

the SI-M issues which likely arise from their fisheries noting the
large number of unknown SI-M which can’t be attributed to a
particular country.[53]
Finally, the Draft BiOp overemphasizes the quantity of vertical lines and insufficiently
evaluates available data regarding the threat of different gear types and configurations. The Draft
BiOp’s cursory consideration of gear type is inconsistent with how it attempts to weigh these
factors in the DST. Using a quantitative approach, the DST places equal emphasis on gear type
and gear density in its calculations of entanglement risk.54 Independent reviewers consistently
noted the inherent challenge and problems with how the DST incorporated the risk of
entanglement posed by various fishing gear types.55 56 57
Moreover, multiplying gear density by severity is merely an initial assumption that lacks
sufficient scientific basis.58 59 60 This inadequate approach has significant implications for the
Conservation Framework. Should overall entanglement risk be significantly more sensitive to the
gear type and/or how it is fished than gear density,61 then the Framework has overemphasized the
importance of reducing vertical lines when, instead, it should be focused on reducing the impact
of specific gear types and how those gear types are fished.62 As discussed in other sections of
53

J. How. Center for Independent Expert Independent Peer Review of the North Atlantic Right Whale
Decision Support Tool. Dec. 2019, at 18.

54

As discussed below, we believe the DST may actually underweight gear type and configuration as a
contributing factor to entanglement.
55

W.D. Bowen. December 2019. Independent Peer Review of the North Atlantic Right Whale Decision
Support Tool, at 9.

56

J. How. December 2019. Center for Independent Expert Independent Peer Review of the North Atlantic
Right Whale Decision Support Tool, at 11.
57

During its April 2019 meeting, the TRT acknowledged the importance of identifying the threat of
various gear types and configurations but rejected NMFS’s approach of relying on the mean of seven
expert groups. Further, from the Associations’ perspective, certain groups that do not work in commercial
fisheries would have little insight on the threat of any fishing gear. Others, such as those involved with
disentanglement, would have little expertise with gear that is not typically found on NARW. Yet, these
groups ranked nearly all gear types, however unlikely they were to entangle whales, as at least a “9.”
58

J. Van der Hoop. (2019) Review of the North Atlantic Right Whale Decision Support Tool.at 13. “The
challenge is that we know little about how a co-occurrence becomes an entanglement.”
59

W.D. Bowen. (2019) Independent Peer Review of the North Atlantic Right Whale Decision Support
Tool. At 9. “Little is known about the circumstances that lead right whales to become entangled or those
that result in the whale becoming disentangled.” 
60

J. How. (2019) Center for Independent Experts Independent Review of the North Atlantic Right Whale
Decision Support Tool. At 2. “Currently there is too much uncertainty regarding the mechanisms
surrounding an entanglement and how these are likely to be impacted by changes to gear configuration
and whale size etc”.
61

Knowlton et al. 2016, at 325.

62

For example, nowhere in the scientific record cited in the Draft BiOp is there an explanation why the
DST uses (gear density) x (whale abundance) x (gear severity) = risk instead of (0.5)(gear density) x
(whale abundance) x (gear severity) = risk. As the three DST reviewers noted, there is ample uncertainty
about the circumstances of entanglement. NMFS’s initial assumption of the importance of gear density to
17

these comments, factors such as rope strength, gear configuration, weakened points in line, and,
ultimately, presence of large aggregations of whales and whale behavior, drive risk.
In sum, the Draft BiOp arbitrarily assigns a 50-50 split rather than using a probabilistic
approach informed by observed entanglements from 2010-2019. This inflates the effects of the
actions and presents a scenario that is not “reasonably certain to occur.” For the foregoing
reasons, the Final BiOp should be revised to reflect an allocation of risk between Canada and the
United States that is supported by the best scientific and commercial data available regarding
relative risk, and the underlying DST definition of risk should be adjusted accordingly to meet
that standard.
4.

The best available science does not support assigning all entangled whales
with unknown gear to the commercial trap/pot fisheries.

The Draft BiOp makes a significant assumption by allocating all M/SI entanglements of
unknown gear type to U.S. commercial trap/pot fisheries, making these fisheries responsible for
an additional 38%63 of entanglements with no evidence of the fisheries’ involvement. NMFS
justifies this allocation as follows:
Additionally, 99.7% of vertical lines in the action area are from
trap/pot lines (2016 IEC, unpublished data). Given this information
and for the purposes of this Opinion, we are assuming that all of
the presumed U.S. entanglements in unknown gear were from
trap/pot gear (2016 IEC, unpublished data).64
Allocating all of the entanglements involving unknown gear to the trap/pot fishery is
arbitrary when observed entanglements suggest that NARWs are more often entangled in gear
types other than lobster gear. Where the type of gear involved in an entanglement event is
known, and Canadian trap/pot incidents are excluded, the ratio between non-trap/pot gear and
trap/pot gear is 1.75 : 1.65 In other words, observations involving confirmed gear type suggest
that NARW are nearly twice as likely to be entangled in gear other than commercial trap/pot
fisheries. We understand that gear is recovered in a relatively small proportion of entanglement
incidents, and that the gear type is identified in even fewer incidents. However, to completely
discount the distinction in observed data and assign all entanglements of unknown gear type to
trap/pot fisheries is without scientific support and arbitrary.

risk assessment, therefore, can by no means be treated as a “reasonably certain” effect of the proposed
action. A more rigorous analysis of the DST’s risk calculation is required.
63

78% of M/SI are unknown; the BiOp allocates half of this to the U.S.

64

Draft BiOp at 224.

65

Updated NARW incident data provided to P. McCarron via email by C. Coogan (GARFO) on
12/24/2020 per 10/06/2020 request for data to A. Henry (NEFSC). File “20002019_right_whale_incident_data_12_23_20v.xls.” (Addendum E)
18

Table 3
Summary of Entanglement Incidents – By Gear Type -- 2000-2019
Entanglement
MSI
All events
114
52
Gear known
25
12
Trap/pot
18
10
trap/pot – CN crab
14
8
trap/pot – US
2
1
trap/pot – US lobster
1
0
trap/pot – Unknown
1
1
Non-trap
7
2
Non-trap – US
1
0
Non-trap – country unknown
6
2
Gear unknown
89
40
No gear present
52
18
Gear not recovered
33
19
Gear undetermined
4
3
Source: NMFS NARW Entanglement Data 2000-2019
Although the number of lines in U.S. waters is overwhelmingly from trap/pot fisheries,
NMFS has recognized that not all lines pose the same risk to right whales. NMFS developed the
DST to assess the variable threat from different gear types and configurations in its risk
assessment. A methodology is under development to assess risk of lobster lines based on the type
of rope fished (i.e. diameter) and the configuration of the gear (i.e. length of line, length of
trawl).66 Even with an incomplete understanding of the threat of various gear types, early results
of the DST show that line density as a singular factor is not a good indicator of risk to whales.
For example, the state of Maine, using the DST, determined that 70% of risk to NARW in Maine
waters gear occurs in an area where only 10% of lines are fished.67 This information should be
more fully considered in the Final BiOp and should be applied, as appropriate, to the definition
of risk in the DST as indicated in Section III.B.3 and n. 62.68
Additionally, the best available data show that both the entanglement risk and potential of
a severe entanglement differ between trap/pot and non-trap gear. Just as encounters with strong,
large diameter line fished in Canadian trap/pot fisheries have been responsible for the majority of
NARW M/SI in recent years, it is likely that a NARW encountering gear spread across the water
column would have a high likelihood of entanglement. It is important to recognize that a vertical
66

See Presentation on Decision Support Tool at April 2019 TRT meeting at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/02_presentation_o
n_risk_reduction_tool.html.

67

Erin Summers, Maine DMR personal communication on 2/12/2021. Similar presentation in DEIS,
Appendix Volume 2, page 3-105 with preliminary risk analysis “Maine federal waters from the 3- mile
line out to 12 miles constitutes 11% of Maine’s annual NARW occurrence and 88% of Maine’s NARW
presence is contained beyond 12 miles.”

68

We also urge NMFS to seek expert judgment from those with a deep understanding of the dynamics of
fishing gear – fishermen – to develop this portion of the DST, and to also expand this tool to assess the
risk of non-trap gear.
19

line occupies less than an inch across the water column while non-trap gear is fished in wide
strings that could pose greater risk if deployed where they coincide with whales engaged in
higher risk behaviors.69 A methodology has been developed by Woods Hole Oceanographic
Institute in collaboration with the fishing industry to attribute risk to gear based on proportion of
water column occupied.70 This information should also be considered in the Final BiOp.
Finally, the Draft BiOp does not address the potential for a whale to shed trap versus nontrap gear, which is highly relevant considering that fishing gear is shed in the majority of
incidents. Two-thirds of all entanglement events are minor,71 meaning that whales frequently
shed fishing gear without serious injury to the individual. It is reasonable to assume that the
entanglement profile of fishing gear influences the likelihood of its being shed and therefore
constituting a “minor” entanglement. The Draft BiOp does not analyze differences between trap
and non-trap fisheries with respect to the potential to cause M/SI. Instead, it arbitrarily assigns all
M/SI resulting from unknown gear type to trap/pot fisheries rather than using a probabilistic
approach informed by observed entanglements.
We urge NMFS to take a consistent probabilistic approach for all apportionments in the
BiOp. This would first consider apportionment based on observed data. It should also consider
additional data, information, and expert judgment, as appropriate, and apply them in a manner
that refines the allocations based on observed data. As currently written, the Draft BiOp
arbitrarily assigns all M/SI from unknown gear to trap/pot fisheries despite undisputed evidence
to the contrary. Again, this inflates the effects of the trap/pot fisheries and presents a scenario
that is not reasonably certain to occur.
5.

The BiOp does not account for the full benefits of using weak links.

Certain mitigation measures implemented through Phase 1 of the Conservation
Framework can be expected to reduce minor, moderate, and severe (i.e., those resulting in M/SI)
entanglements by equal amounts. For example, mitigation measures that reduce the number of
lines in the water (e.g., trawling up or a closure) would reduce the risk of entanglements of all
severities. Weak points inserted in rope, however, may significantly reduce the severity of
entanglements because weak points in the line allow the whale to break free of the gear as the
individual whale applies force to swim free. There is a rational basis to assume that weak points
inserted into vertical lines more effectively reduce the likelihood of M/SI relative to other
mitigation measures. However, the Draft BiOp does not consider the benefits of insertion of
weak points. Were the requirements for weakened vertical lines to reduce risk of severe
entanglements by more than 60 percent, thereby significantly reducing M/SI, then the need for
further mitigation requirements under Phase 3 and 4 may be reduced or eliminated entirely.
69

NOAA List of Fisheries at https://www.fisheries.noaa.gov/national/marine-mammalprotection/northeast-sink-gillnet-fishery-mmpa-list-fisheries.
70

See Kite-Powell, H.L., C. Brehme, S. Kraus, P. McCarron, H. Tetreault, and B. Wikgren. In
preparation. The spatial and temporal distribution of risk to Right Whales from lobster fishing gear off the
coast of Maine.
71

Maintenance of the North Atlantic Right Whale Catalog, Whale Scarring and Visual Health Databases,
Anthropogenic Injury Case Studies, and Near Real-Time Matching for Biopsy Efforts, Entangled, Injured,
Sick, or Dead Right Whales October 1, 2020 at 50.
20

Further, the Draft BiOp appears to discount scientific literature that suggest actions that
reduce only the severity of entanglement (and not the likelihood) may be sufficient to recover the
NARW. Knowlton et al. (2015)72 found that, “broad adoption of ropes with breaking strengths of
≤7.56 kN (≤1700 lbsf) could reduce the number of life‐threatening entanglements for large
whales by at least 72%, and yet could provide sufficient strength to withstand the routine forces
involved in many fishing operations. A reduction of this magnitude would achieve nearly all the
mitigation legally required for U.S. stocks of North Atlantic right and humpback whales”
(emphasis added).
In the Lobster Fishery, vertical lines do not maintain their manufactured breaking
strength over time. Vertical lines consist of at least two pieces of rope, and often more if fished
in deeper waters. The majority of vertical lines are fished for five or more years and become
significantly weaker than the manufactured strength, degrading within the first few months in the
water, and further over time, due to wear from the hauler, contact with the traps and bottom
substrate, and exposure to sun.73 The majority of these ropes are joined together with a knot, and
less commonly with a splice. A knot will weaken the line by up to 50% because it creates a curve
in the rope in which the outer circumference is greater than the inner part. The difference in
length creates stress across the width of the rope when put under tension, which undermines its
strength. Splices are stronger than knots but will typically reduce rope strength, though this result
varies widely depending on the type of splice and the number of tucks into the line. A typical
inshore vertical line consists of a 5/16” sink rope at the surface (the U.S. does not allow floating
line on the surface), knotted or spliced into a 3/8” floating line, which runs to the trap.74 Single or
multiple pre-cut lengtheners are added to the line as gear is shifted into deeper waters.
Although lobster gear is already fished with rope that is below manufacturers’ rated
strength specification and in a manner that incorporates weak points throughout the vertical line,
Maine DMR has been conducting research, with funding from NMFS and in collaboration with
the Associations, to develop and test manufactured weak points, specific knots and splicing
techniques that break at 1700 pounds pressure or less and leave a bitter end that will not get
caught in baleen. This research has demonstrated that rope always breaks at its weakest point.
When lines made up of more than one rope type were broken, the rope always broke on the
weaker (smaller diameter) side of the knot or splice. DMR is preparing a list of knots and splices
and exploring manufactured devices that can be inserted into the line to ensure it will break when
it experiences 1700 pounds of force or less. These approaches have buy-in from lobstermen and
could be quickly adopted and provide immediate benefit to NARW.
Maine DMR, in collaboration with the Associations, is also field-testing time tension line
cutters (“TTLC”) as an option to allow rope encountered by a whale to break while maintaining
enough strength to be safely fished in areas where 1700-pound weak points are too weak to allow
for safe retrieval of gear. A TTLC is rigged into the vertical line and will cut the rope after it
72

Knowlton, A.R., Robbins, J., Landry, S., McKenna, H.A., Kraus, S.D., and T.B. Werner (2015), Effects
of fishing rope strength on the severity of large whale entanglements. Conservation Biology 30: 318-328.

73

Maine DMR tested the breaking strength of vertical lines used by lobstermen; ropes consistently broke
well below manufactured rope specifications. Draft Environmental Impact Statement; ALWTRT Risk
Reduction Rule, Appendix I.
74

P. McCarron and H. Tetreault, Lobster Pot Gear Configurations in the Gulf of Maine, 2012.
https://www.bycatch.org/sites/default/files/Lobster_Gear_Report_0.pdf.
21

senses a certain tension on the line that occurs for a set period of time (as programmed in the
device). If a whale encountered the line thereby applying tension, the device would cut the rope
as prescribed by the TTLC. NMFS should consider this to reduce the frequency and severity of
entanglement in heavier lines, as an alternative solution to weak points, that would allow strong
line to break free if encountered by NARW. This device has already been through significant
engineering, testing and field research and provides another option to reduce the severity of
entanglement in heavier lines that could be implemented in the near-term.
There is evidence in the literature that NARW are capable of applying enough force to
break ropes weakened with insertions of 1700-pounds or less75, and that those encounters rarely
result in a severe entanglement. Lobster gear already incorporates many weak points in vertical
lines through the routine rigging of multiple ropes into a single line. The addition of 1700-pound
weak points in line will further reduce NARW M/SI. The Final BiOp must account for the full
conservation benefit of incorporating 1700-pound weak links in vertical lines to accurately
characterize the effects of the action.
6.

NMFS overestimates the contribution of cryptic mortality to annual M/SI.

Without explanation, the Draft BiOp fails to attribute any NARW mortality to natural
causes.76 This omission ignores published scientific literature that documents two natural sources
of mortality: (1) predation by white sharks and (2) recent, unfavorable oceanographic conditions
resulting from climate change.
Taylor et al. (2013)77 document predation events by white sharks on NARW calves in
southeast U.S. waters. In addition, Curtis et al. (2014) report that juvenile and adult white sharks
have been observed scavenging on NARW carcasses on several occasions.78 The authors point to
evidence the sharks may be drawn to NARW calving grounds during the calving season.79 Curtis
et al. also present relative abundance analyses for these NARW predators that “offer a more
optimistic outlook for NWA [Northwest Atlantic] white sharks than previous reports.”80 The
Draft BiOp should, at a minimum, consider this qualitative evidence that NARW calves are
known to be subject to predation by a shark population that appears to be growing and, therefore,
presents the risk of increased predation for juvenile NARW. These reports of risk from natural
predators are consistent with the draft 2020 NARW Stock Assessment Report that also discusses
75

Arthur, L. H., W. A. Mclellan, M. A. Piscitelli, S. A. Rommel, B. L. Woodward, J. P. Winn, C. W.
Potter, and D. Ann Pabst. 2015. Estimating maximal force output of cetaceans using axial locomotor
muscle morphology. Marine Mammal Science 31(4): 1401-1426.

76

Draft BiOp at 225.

77

Taylor, J.K.D., Mandelman, J.W., McLellan, W.A., Moore, M.J., Skomal, G.B., Rotstein, D.S., Kraus,
S.D., Shark predation on North Atlantic right whales (Eubalaena glacialis) in the southeastern United
States calving ground. Marine Mammal Science, 29: 204-212.

78

Curtis, T.H., McCandless, C.T., Carlson, J.K., Skomal, G.B., Kohler, N.E., Natanson, L.J., Burgess,
G.H., Hoey, J.J., and H.L. Pratt. (2014). Seasonal Distribution and Historic Trends in Abundance of
White Sharks, Carcharodon carcharias, in the Western North Atlantic Ocean. PLOS ONE 9(6): e99240
at n.75.
79

Id., at n.76.

80

Id., at n. 21, 27, 77.
22

natural mortality, noting that 14.5 percent of the 124 recorded NARW mortalities between years
1970–2018 were “believed to have died from perinatal complications or other natural causes.”81
As discussed elsewhere in these comments, climate change is another natural threat to the
NARW population that is not appropriately examined and considered in the Draft BiOp. The
Draft BiOp states that climate change may “have several indirect effects on marine mammals,
which may include changes in distribution; displacement from ideal habitats; decline in
individual and population fitness; increased susceptibility to disease and contaminants; and
changes in abundance, migration patterns, community structure, and reproductive success
(Jenssen 2006, MacLeod 2009, Simmonds and Eliott 2009).” However, the Draft BiOp makes no
credible effort to evaluate the probable impact of climate change on the population over time
even though there is ample evidence of indirect effects on marine mammals like NARW in the
form of “changes to the range and abundance of competitors and predators (Learmonth et al.
2006)”82 Notably, Gutbrod-Meyer (2018)83 found that a regime shift attributed to climate-forcing
in the 1990s produced “[l]ow prey abundances [that] reduced calving rates, demonstrating the
significant impact prey availability can have on NARW demography.” Given the undisputed
changes to migratory patterns driven by changes in prey availability and associated non-trivial
impacts on the fitness of marine mammals such as neonates, the Final BiOp would be arbitrarily
deficient if it were to assume no impact of climate change on NARW M/SI.
In sum, it would be arbitrary for the Final BiOp to assume that there is no natural
mortality in the population despite published literature to the contrary. Ignoring natural sources
of mortality has the effect of underestimating the reproductive capacity of the species and ability
of the population to rebound in response to a reduction in anthropogenic mortality and more
favorable oceanographic conditions. Further, based on this assumption, the Draft BiOp attributes
all cryptic mortality to anthropogenic sources, thereby unjustifiably overestimating the impact of
the Lobster Fishery. This again contributes to an effects scenario that is “not reasonably certain
to occur.”
7.

Linden (2021) is an unreliable study and an inappropriate basis for making
50-year projections.
a.

The Linden (2021) model is overly sensitive to new data.

Linden (2021) is based on observed calving and modeled mortality rates derived from
2010-2018, a period characterized as a “regime shift” due to warmer temperatures and changes
in NARW prey distribution. The BiOp scenarios are parameterized on a different time period
than reported in Linden (2021), 2010-2019, but documentation of these model runs is not
included. This is significant because the Linden model relies on output from the Pace et al.
(2017) model which has demonstrated the sensitivity of estimated demographic rates to
incremental additions of additional years of data. Therefore, the addition of another year of data
(i.e., 2020 data) is likely to produce a markedly different projection because the resultant life
81

Draft 2020 Right Whale Stock Assessment Report at 55.

82

Id., at 207.

83

Gutbrod-Meyer, E.L., Greene, C.H., and K.T.A. Davies. (2018) Marine species range shifts necessitate
advanced policy planning: The case of the North Atlantic right whale. Oceanography. 31: 19-23.
23

history parameter estimates may be dramatically different, just as they differed from the 20102018 estimates after adding 2019 data. We acknowledge that independent reviewers supported
the time period to begin in 2010; however, these favorable reviews do not negate the fact that the
Linden model is very sensitive to new data. The addition of one year of data will provide a
different NARW population projection over the next 50 years.
Three versions of the Pace et al. (2017) state-space mark-recapture population model
(“SSMR”) demonstrate changing demographic parameter values each time new data are added to
the model. The Pace model estimated the survival probabilities of NARW females from 1990 to
2014. Linden (2021), as documented in the Draft BiOp Appendix 3, updated the model to
include data through 2018, and Linden (2021B) included data through 2019 as the basis for the
Draft BiOp scenarios. Figure 2 below demonstrates how with each addition of new data, the
estimated adult survival rates change, sometimes dramatically. The addition of 2019 data
(Linden 2021B) in particular, alters the survival estimate for other years in the time series,
affecting at least eight years prior to the added year (2010).
Figure 2

Adult Female Survival Rate 

0.99
0.97
0.95
0.93
Pace 2017
0.91

Linden 2021A

0.89

Linden 2021B

0.87

1990
1992
1994
1996
1998
2000
2002
2004
2006
2008
2010
2012
2014
2014
2014

0.85

The assumed demographic rates on which Linden (2021) relies are not the demographic
rates used in Linden’s model version as the basis of analysis in the Draft BiOp. The addition of
the 2019 data produced new survival (and other vital) rates that imply a substantial change in the
demographic parameters used in the matrix population model, which is particularly problematic
because the elasticity (Table 2 in Draft BiOp Appendix 3) of the Linden model demonstrates that
adult survival “had the greatest potential to affect growth rate.” The addition of 2019 data
dramatically changes the estimates of demographic parameters on which population projections
are based. Note also that 2019 data are the most recent available. The extent to which 2020 data,
which have already been collected, will again change estimates is unknown.
Both the Pace and Linden models are relatively new and highly sensitive to additional
years of data. For example, including data from 2009, the highest year on record for new NARW
calves, could fundamentally change the projections of the Linden model. By selecting 2010 as a
precise demarcation of regime change effects, the analysis no longer reflects the variability

24

evident within longer time frames and only narrowly excludes the highest value in observed
number of calves. The Associations recommend conducting a sensitivity analysis on the
demarcation of the “regime shift” period, for both beginning and end data years, to inform how
reliant the model projections are on a precise definition of an inherently imprecise environmental
process.
In addition, four of the nine years upon which the Linden model is based were associated
with a significantly lower probability of re-sighting individual NARW. The probability of resighting an individual subsequently increased to historic levels in years 2017-2019.84 The driver
for this decline in re-sighting is not explained. The Pace model treats it as an indicator of the
probability of detection. However, it is likely a result of the documented shift in NARW
geographic distribution. Once NMFS completely redesigned its NARW survey,85 individuals
were re-sighted in subsequent years, and the mortality estimates from these prior years would
have been upwardly revised.
Because both the Pace and Linden models are relatively new and highly sensitive to new
data inputs, the addition of one year of data will likely provide very different NARW population
projections over the next 50 years. These models are not sufficient to fully inform the long-term
actions required under the Conservation Framework and result in an overestimate of the risk
reduction that NMFS believes is needed.
b.

The Linden (2021) model improperly parameterizes calving rate.

Linden (2021) is also flawed because it arbitrarily treats NARW calving rate differently
than survival. The Linden model erroneously treats the calving rate with more certainty in its
matrix model simulations than the survival parameters, preventing the full distribution of
credible calving rates to be considered. This locks model outcomes to a relatively small number
of specific observed low calving rates even though there is extensive variability and uncertainty
in calving rates over time.86 Specifically, in each year of each model simulation run used in the
BiOp, the survival parameters are derived from the full posterior distributions of adult female
survivorship supplied from Pace’s SSMR model for 2010-2019.87 For the calving rate, however,
the value for each year was not drawn from the full posterior distributions estimated by the
SSMR model. Instead, the calving rate is drawn as only one of the ten annual means of calving
rates from 2010-2019, even though the full posteriors would have been available for these
derived values during 2010-2019. This method severely limits the potential range of calving
values represented in the model. Importantly, calving rates were reported without 95% credible
84

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020
Annual Report Card. Report to the North Atlantic Right Whale Consortium.
85

T. Cole presentation Oct 2018 TRT meeting at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/October%202018/2018_nefsc_aer
ial_surveys.pdf.
86

Draft 2020 NARW stock assessment, at 48, “During 1990–2017, at least 447 calves were born into the
population. The number of calves born annually ranged from 1 to 39, and averaged 16 but was highly
variable.”
87

Pace et al. (2021) clarifies that derived values may be treated as a posterior because it is derived from
posteriors.
25

intervals, making it additionally difficult88 to assess how the disparity in life history parameters
from the SSMR model inputted into the matrix model affect the population projections. The
Associations therefore recommend that NMFS re-run the model simulation scenarios using the
full derived posterior distributions of calving rates from 2010-2019.
c.

The Linden (2021) model improperly assumes an equal sex ratio.

An equal sex ratio is not reflective of the current NARW population as determined by
Pace et al. (2017). The matrix model further assumes all individuals share the same demographic
parameters, but for small populations individual variation can be important to modeling survival.
To this point, the SSMR model reports that additional stress on females has led to an
increasingly male-dominated population. Applying an assumption that 50% of observed deaths
are female is, therefore, unreasonable. If males make up a larger portion of the population (Pace
et al. 2017), males are statistically more likely to encounter and become entangled in fishing
gear. Alternatively, females are thought to be at greater risk of death from an entanglement when
an incident does occur.
Thus, there are two opposing forces on sex ratio—males are at greater risk of
encountering fishing gear, but females are at a greater risk of mortality when entangled—but it
cannot be assumed that these forces balance each other out in all cases. Importantly, if
entanglement is one of the sources of stress disproportionality causing female mortality, as Pace
et al. (2017) suggest, then we could expect the male/female ratio to respond differently to
alternative mortality reduction scenarios.
The Associations recommend including males in the population model, as done by
Fujiwara and Caswell (2001), in what Linden calls, “the motivating example for this modeling
framework.” Similar concerns about the treatment of the male/female ratio were also raised by
Cryer (2020) during model review.89 An individual-based modeling framework would be more
appropriate for incorporating this variation, as well as for incorporating sublethal entanglement
effects. Such a model appears to be under development by the Population Evaluation Tool
Subgroup of the Northeast Implementation Team. The Associations recommend that this
individual-based model should be used in place of the matrix projection model.
d.

The Linden (2021) model improperly assumes constant and
unfavorable environmental conditions will persist for 50 years.

Additionally, Linden (2021)’s projections of future NARW populations are
inappropriately based on the assumption that the environmental conditions of the Gulf of Maine
and North Atlantic drive NARW demographic parameters and that these environmental
conditions and subsequent demographic parameters will persist for 50 years into the future.
Historical trends in environmental conditions for this region indicate regime changes are
88

The intervals could be recalculated based on Supplement 1.

89

Cryer (2020) at 5. “Similarly, it is also assumed without much documented support, that males and
females are equally vulnerable to entanglement in pot fisheries (and to all anthropogenic mortality in
Canada). Is the evidence for this assumption strong, or is it plausible that the lower survival rate of
females is partly due to higher fishing-related or ship-strike mortality than males?”
26

common (Morse et al. 2017), and no evidence is provided in the draft BiOp to suggest that
fluctuating oceanographic conditions will cease.
Furthermore, Linden’s analysis of model projections using the full time period (19902018) to parameterize the model (Supplement 4) demonstrate that the model outcome is very
sensitive to the assumptions regarding what historical period will be representative of future
conditions. Similar concerns were raised by New (2020) during the CIE review, noting that the
assumption that 2010-2018 conditions will continue for 50 years is “a strong one, especially
given the observed variability in calving from 1990-2018.”
e.

The model improperly finds that adult survival has the greatest
potential to affect growth rate.

Model elasticity is reported in Table 2 (Draft BiOp, Appendix 3), which Linden interprets
to indicate that adult survival “had the greatest potential to affect growth rate” and as
justification to focus the model on adult survival (to the exclusion of calving rate, as discussed
above). In contrast to all other evaluations of the model (except for Supplement 4), these
elasticities were based on the average demographic parameters from the full time series, 19902018, and not on the 2010-2018 time series, from which model projections were derived, nor the
2010-2019 time series on which the Draft BiOp is based. New (2020) also noted in her model
review the need to perform perturbation analyses (of which elasticity is one type). The
Associations recommend recalculating the elasticity using the 2010-2019 demographic data to
better understand the relative effects of different parameters on model outcomes.
f.

The retrospective validation for the Linden model (2021) is not
reliable.

The “retrospective validation” (Figure 7) performed on Linden (2021) is not reliable. It
was performed using the same data that provided the model parameters. That is, the Pace et al.
(2017) SSRM model was fit using data from 1990-2018, and the estimated parameters were
input into the matrix model and then used to retrospectively predict 1990-2009. It should be
expected that the model would perform well on the same data used to build the model.
Importantly, however, the retrospective analysis significantly underestimates the population size
in the later years of the retrospective analysis. The end of the prediction series is where the
“process” error in the projection would accumulate most dramatically, as systematic errors (e.g.,
chronic under or over estimation) multiply in each year. Figure 7 suggests incipient systematic
underestimation of the number of females after 20 years.
This same underestimation could be expected to be further compounded in the 50-year
projections. No quantitative assessment of model performance is provided, only a visual
interpretation of the model fit. The Associations recommend that a quantitative measurement of
model fit (e.g. root mean squared error) and potential for bias should be provided. Additional
validation should be performed in silico using the simulated populations described and fit by
Pace et al. (2017) to test the SSMR model, and New (2020) and Getx (2020) suggestions of the
addition of a validation check in their reviews of Linden (2021) should be incorporated.

27

8.

In sum, the Draft BiOp presents an effects scenario that inflates the assumed
risk from the lobster fishery and is not “reasonably certain to occur.”

As explained in Section III.B.1 supra, NMFS must objectively evaluate the effects of the
action that are “reasonably certain to occur” based upon the “best available scientific and
commercial information.” The effects analysis fails to meet this standard because, as set forth in
the sections above, it presumes effects that do not occur and overestimates the impact of other
assumed effects. We urge NMFS to make the corrections recommended above. Without those
corrections, the BiOp arbitrarily presents an effects scenario that is not based upon the best
available scientific commercial information and is not reasonably certain to occur, as required by
law.
C.

The Conservation Framework Must be Improved.
1.

Certain proposed TRP measures will further reduce impacts and certain
measures are arbitrary or unnecessary.

The Associations support risk reduction measures that are based on the best available
science and appropriately designed to achieve applicable legal standards. To do so, the scope of
management alternatives must accurately reflect the risk posed by each commercial fishery
contributing to M/SI from entanglement. NMFS’s management scope has been, and currently is
(as evidenced by Phase 1), disproportionately and unjustifiably focused on the Lobster Fishery.
As described in the comments above, NMFS is not sufficiently addressing other, more
substantial sources of NARW M/SI. NMFS must address the entanglement risk posed by all
commercial fisheries in order to fulfill its legal obligations.
Additionally, NMFS has not acknowledged data showing that the Lobster Fishery has
substantially reduced the risk it presents to NARW over the past decade through implementation
of risk reduction measures. Instead, as explained in the comments above, NMFS relies on
assumptions that artificially inflate the risk of the Lobster Fishery based solely on number of
lines fished—an assumption it rejects in its DST, which calculates risk based on whale density,
gear density, and risk of gear fished. 90
For all of the reasons stated above, the Associations object to the risk reduction goal set
by NMFS for the Proposed Rule. The Associations urge NMFS to adopt a uniform probabilistic
approach, relying on observed data to apportion all unknown human causes. When available,
additional data, information and expert judgment should be used to refine proportions. This
methodology should apply to apportionment of (1) unknown human causes to vessel strikes
versus entanglements, (2) unknown entanglements between U.S. and Canada, and (3) unknown
U.S. entanglements among U.S. fisheries.
The Associations are concerned with several elements contained in the Proposed Rule for
which we will provide more detail in our comments on that proposed action by March 1. These
concerns are summarized as follows:
90

As indicated at n. 62, the Associations believe the DST calculation of risk nevertheless gives undue
weight to gear density to the detriment of whale behavior and other factors.
28



The Proposed Rule does not include a provision for conservation equivalencies. This is
necessary to allow fishing areas to adapt proposed management measures based on local
fishing conditions.



The Proposed Rule does not allow lobstermen to split trawls in half and fish with one
endline. This would have equivalent conservation benefit to NARW while allowing
smaller vessels within the fleet to more safely manage gear.



The Proposed Rule, and the supporting DEIS, include additional measures that were not
proposed or vetted by the TRT or by the jurisdictions that submitted draft plans for
fisheries in their respective areas. The Preferred Alternative includes restricted areas
which effectively create ropeless fishing areas. The LMA1 restricted area, for example,
has not been previously identified for more aggressive management by the TRT or any of
the jurisdictions. The basis for these closures lacks support or analysis on the record. The
Associations recommend that NMFS explore development of minimum criteria that must
be met to consider triggering a buoy line closure, such as minimum NARW aggregation
size, presence of NARW aggregation for a minimum time period, and recurrence of
NARW aggregations over a minimum number of years. This is reflective of the rationale
used for the Massachusetts Bay Restricted Area.



The Proposed Rule’s Preferred Alternative to establish areas for buoy line closures does
not address the inability of the lobstermen to fish buoy-less gear based on significant
unanswered concerns regarding the availability, reliability, safety and cost of buoy-less
gear systems, and additional challenges with gear conflict and enforcement. These
concerns are outlined in more detail below.



The Proposed Rule does not specify how lobstermen can meet the weak point
requirements. Maine DMR has been working closely with the Associations to develop a
list of methods that would meet this requirement. The Associations recommend that
NMFS ensure a robust and flexible list of options be made available to lobstermen, and
refinements to this list can be made over time as new data become available. This should
include weak point equivalents such as time tension line cutters.



The Proposed Rule grossly underestimates the economic impact of the measures in the
Preferred Alternative on the fishing industry. The Associations will provide more detail
about those impacts in our comments on the Proposed Rule.
2.

The benchmarks proposed in Phases 3 and 4 of the Conservation Framework
are arbitrary, unsupported, and very likely unnecessary.

We strongly believe that Phases 3 and 4 will not be necessary once NMFS reevaluates the
trap/pot fisheries after correcting the errors outlined above. At a minimum, the revised evaluation
should allocate M/SI using a probabilistic approach based on observed data and consider natural
mortality. NMFS should re-run the Linden (2021) model using a calving rate that is both
responsive to improvements resulting from risk reduction measures pursuant to Phases 1 and 2
(such as by evaluating the sensitivity of the projections to a calving rate that increases over time)
and uses the full derived posterior distributions of calving rates from 2010-2019. Given the
29

sensitivity of the Pace and Linden models to new data, all models should be updated at the end of
Phases 1 and 2 before NMFS requires subsequent mitigation measures.
The worst-case scenario constructed by the Draft BiOp also assumes that Canada does
not reduce the number of M/SI incidents occurring from its own activities, despite the fact that it
implemented numerous actions since 2017. Although we believe Canada must go much further
to reduce its impacts on NARW, it is likely that the risk to the NARW population from Canadian
fisheries will measurably improve as a result of Canada’s actions. And we implore NMFS to
engage more directly and aggressively with Canada to ensure that equivalent risk reductions are
implemented bilaterally. Before proceeding with Phases 3 and 4, NMFS should review its
allocation of M/SI between the two countries and update its models to reflect the performance of
Canada’s mitigation programs.
3.

The Phase 4 Benchmark of 0.11 M/SI in the Conservation Framework is
arbitrary and inconsistent with law.

NMFS states that it “determined that M/SI in the federal fisheries needs to be reduced to
0.11 on average annually, within 10 years under a phased implementation (see below), to ensure
that the fisheries will not appreciably reduce the likelihood of survival and recovery of the
species.” Conservation Framework at 4. However, although NMFS analyzes a scenario in which
0.11 M/SI is reached in 10 years, NMFS provides no legal or scientific support for its
determination that M/SI “needs to be reduced to 0.11.” NMFS could almost certainly determine
that an action causing only 0.11 M/SI annually is not likely to jeopardize the NARW. But that
does not mean that a 0.11 MS/I rate is necessary to achieve no-jeopardy. Nor is it necessary or
proper for NMFS to affirmatively make that determination.
The ESA requires NMFS to evaluate an action as proposed and to determine whether,
under Section 7(a)(2), the action is “likely to jeopardize the continued existence of any
endangered species or threatened species.” 16 U.S.C. § 1536(a)(2). In so doing, NMFS must
examine whether the proposed action “reasonably would be expected, directly or indirectly, to
reduce appreciably the likelihood of both the survival and recovery of a listed species in the wild
by reducing the reproduction, numbers, or distribution of that species.” 50 C.F.R. § 402.02
(emphases added). This question—framed in qualitative terms—is not capable of being reduced
to a single metric. Indeed, we are aware of no biological opinions issued by NMFS or its sister
agency, the U.S. Fish and Wildlife Service, in which the agency reduced the jeopardy inquiry to
a single metric that “needs to be” met (much less a metric measured to the hundredth of a
decimal point).
To the extent that the quantitative metrics used for MMPA purposes—such as M/SI, as
referenced in the Conservation Framework—are relevant to the “jeopardy” standard, they do not
provide any hard and fast answers to the nuanced question presented by ESA Section 7. To be
sure, at least two courts have determined that MMPA standards are qualitatively more
stringent—i.e., more protective of marine mammals—than analogous ESA standards. See Ctr.
for Biological Diversity v. Salazar, 695 F.3d 893, 913 (9th Cir. 2012) (MMPA “negligible
impact” more protective than ESA “jeopardy” standard); In re Polar Bear Endangered Species
Act Listing & 4(d) Rule Litigation, 818 F. Supp. 2d 214, 233 (D.D.C. 2011) (approving Service’s
“exhaustive analysis in which it determined that the MMPA is comparable to, or even stricter
than, the take provisions of the ESA in most respects”). But no court has held that achievement

30

of an MMPA metric (such as a particular M/SI rate) is necessary for a no-jeopardy
determination. And even if it were possible to reduce the jeopardy inquiry to a single metric,
there is no rational basis for NMFS to conclude that an M/SI rate of approximately one-eighth of
the established “potential biological removal” rate (“PBR”) is necessary for a no-jeopardy
finding.
Indeed, PBR is one of the MMPA’s most precautionary (i.e., protective) metrics which,
by statute, represents the “maximum number of animals, not including natural mortalities, that
may be removed from a marine mammal stock while allowing that stock to reach or maintain its
optimum sustainable population.” 16 U.S.C. § 1362(20) (emphasis added). “Optimum
sustainable population,” in turn, means “with respect to any population stock, the number of
animals which will result in the maximum productivity of the population or the species, keeping
in mind the carrying capacity of the habitat and the health of the ecosystem of which they form a
constituent element.” Id. § 1362(9) (emphasis added). We are aware of no case law or other
authorities that compare the MMPA’s PBR standard with the ESA’s jeopardy standard.
However, at the very minimum, it is an open question whether an action causing some level of
M/SI at a rate (equal to PBR) that, by the MMPA’s definition, allows the species to achieve its
maximum productivity will nevertheless “appreciably reduce” (i.e., jeopardize) the likelihood of
the species’ survival or recovery. And it certainly cannot be the case that an M/SI level that is a
tiny fraction of the rate (equal to PBR) that allows a species to achieve maximum productivity is
necessary to avoid jeopardy.
Moreover, a collective M/SI rate of 0.11 across all of the ten fisheries would almost
certainly not be necessary to meet the take reduction goals of MMPA Section 118. Under Section
118, the “immediate goal” of a take reduction plan is to reduce a marine mammal stock’s M/SI
from commercial fisheries to below PBR. 16 U.S.C. § 1387(f)(2). In addition to that goal,
Section 118 establishes a “long-term goal” to reduce the MSI “to insignificant levels
approaching a zero mortality and serious injury rate, taking into account the economics of the
fishery, the availability of existing technology, and existing State or regional fishery management
plans.” Id. (emphasis added). The 0.11 metric is far below PBR for NARW. Although not stated
by NMFS, a 0.11 M/SI rate may be aimed at achievement of the Section 118 long-term goal of
levels approaching zero M/SI. But NMFS fails to explain how an M/SI rate of 0.11 across all ten
fisheries can be reached taking into account—as NMFS must— “the economics of the fishery,
the availability of existing technology, and existing State or regional fishery management plans.”
Id.
Regulating the fisheries down to an M/SI rate of 0.11 would mean the economic
decimation, if not elimination, of the U.S. lobster fishery. That means achievement of 0.11 M/SI
would be inconsistent with, and indeed would undermine the MMPA’s long-term take reduction
planning goal, which expressly requires that take reduction plans consider impacts on fishery
economics. It should go without saying that an M/SI rate reduction that exceeds requirements to
meet MMPA goals and likely renders a fishery economically non-viable far exceeds the agency’s
obligations under the statute. Given the substantially over-precautionary assumptions built into
NMFS’s analysis, and the significant uncertainties noted in these comments about the scientific
grounding for that analysis, the Associations submit that the Draft BiOp is scientifically and
legally unsupportable.

31

“Jeopardy” for NARW cannot be reduced to a single metric, given the complexity of the
factors described above when applied through Section 7(a)(2)’s qualitative framework.
Moreover, it is arbitrary and unreasonable to establish a metric that is far below PBR when the
basis for that metric is both (1) unexplained and (2) far more stringent than what would be
required to achieve the more protective goals of the MMPA, including those stated in Section
118. NMFS’s statement that the M/SI rate “needs to be reduced” to 0.11 to achieve a “no
jeopardy” finding misconstrues the jeopardy standard and demands a result that is not required
by either the ESA or the MMPA.
4.

Phases 3 and 4 of the Conservation Framework unreasonably minimize the
role of existing statutes and related processes.

Two primary sources of authority govern the ongoing federal regulation of the Lobster
Fishery: the ACFCMA and the MMPA. It is unclear how NMFS intends the Conservation
Framework to be implemented through, or in conjunction with, these statutes. The Framework
states:
NMFS will consider input from the New England and MidAtlantic Fishery Management Councils and the Atlantic States
Marine Fisheries Commission in developing and implementing
mitigation measures under this Conservation Framework. We
anticipate that the ALWTRT will be convened at least annually to
evaluate incidental entanglement mortality and serious injury, right
whale population status, gear monitoring, gear research, and
compliance, as required by the MMPA. Any ALWTRT
recommendations and associated MMPA rulemaking will be
considered.
Conservation Framework at 7 (emphases added). The problem is that NMFS does not simply
“consider” processes that are mandated by federal law and govern the prosecution of the Lobster
Fishery. Those processes will be ongoing (as required by law) over the 10-year period of the
Conservation Framework (and beyond), will inevitably result in management changes to the
Lobster Fishery and, accordingly, must be taken into account.
The ACFCMA was enacted by Congress to “support and encourage the development,
implementation, and enforcement of effective interstate conservation and management of
Atlantic coastal fishery resources.” 16 U.S.C. § 5101(b). To carry out this purpose, Congress
explained:
The responsibility for managing Atlantic coastal fisheries rests
with the States, which carry out a cooperative program of fishery
oversight and management through the Atlantic States Marine
Fisheries Commission. It is the responsibility of the Federal
Government to support such cooperative interstate management of
coastal fishery resources.
16 U.S.C. § 5101(a)(4) (emphasis added). Under the ACFCMA, the Lobster Fishery is managed
by the Atlantic States Marine Fisheries Commission, which updates and implements the

32

American Lobster Fishery Management Plan (“FMP”). The Fishery will continue to be managed
under the FMP for the next 10 years (and beyond). This must be taken into account in the
Conservation Framework.
In addition, the Lobster Fishery is subject to management under Section 118 of the
MMPA. It is formally included within the scope of the ALWTRT. Under MMPA Section 118,
the TRT makes recommendations for accomplishing the short- and long-term goals of Section
118 (described above). NMFS implements those recommendations through promulgation of
federal regulations. 16 U.S.C. § 1387(f)(7). MMPA Sections 117 and 118 set forth the standards
and processes governing the issuance of take reduction planning regulations, and the
Conservation Framework has no legal bearing on that process. For example, NMFS cannot issue
regulations under Section 118 that serve to regulate a fishery down to an M/SI rate below PBR
that cannot be achieved when “the economics of the fishery, the availability of existing
technology, and existing State or regional fishery management plans” are taken into account. Id.
§ 1387(f)(2). Thus, both the MMPA and ACFCMA must be integrated into the Conservation
Framework as they will govern the prosecution of the Lobster Fishery for the foreseeable future.
5.

The Conservation Framework must build in a more specific adaptive
management component.

For the reasons set forth in all of the comments above, Phases 1 and 2 of the
Conservation Framework are sufficient to support a no-jeopardy conclusion.91 The Associations
recommend that NMFS perform a comprehensive assessment of the fisheries within some
reasonable time after the effectiveness of the implementation of Phases 1 and 2 can be evaluated.
In this respect, the Associations support elements of the adaptive management provisions of the
Conservation Framework. Specifically, the Associations agree that “[a] primary tenet of adaptive
management is to evaluate the efficacy of management actions.” Conservation Framework at 5.
The Associations also agree that the Conservation Framework must “include[] a comprehensive
evaluation mid-way through implementation to determine whether target reductions in M/SI
specified for the final five years of the Framework need to be fully implemented” (or
implemented at all). Id.
Furthermore, the U.S. must engage with Canada in a more direct and transparent manner.
To date NMFS has provided only intermittent updates on what is characterizes as “positive”
developments with Canada, yet NARW continue to die in large numbers in Canada. There has
been no transparency or accountability in this process. If NARW are to recover, the U.S. must
ensure that Canada has effective and measurable conservation measures in place.
91

The Associations maintain that implementation of Phase 1 is sufficient to support a no-jeopardy
determination for the Lobster Fishery, which is a separate action evaluated in the BiOp. See 50 CFR §
402.14(c)(4) (“Any request for formal consultation may encompass, subject to the approval of the
Director, a number of similar individual actions within a given geographical area, a programmatic
consultation, or a segment of a comprehensive plan. The provision in this paragraph (c)(4) does not
relieve the Federal agency of the requirements for considering the effects of the action or actions as a
whole.” (emphasis added)); see also 50 CFR §§ 402.14(g), 402.14(h)(1), 402.14(i) (referring to the
Services’ obligation to make jeopardy determinations and issue ITSs with respect to an action). The Draft
BiOp fails to make separate jeopardy determinations, and to issue separate ITSs, for each of the proposed
actions. Id.
33

The Associations further agree that all of the factors set forth at the top of page 7 of the
Conservation Framework should be considered in a comprehensive assessment of the
effectiveness of Phases 1 and 2.92 In addition to those factors, the comprehensive assessment
should consider:
1. A full and accurate evaluation of all of the issues addressed in Sections III.B.2 -.7 above.
2. The likelihood of entanglement of NARWs based on whale abundance, behavior, and
gear type. In other contexts, researchers have developed models to predict the abundance
and distribution of whales in certain areas based upon oceanographic, ecosystem, and
biological variables.93 The Draft BiOp’s assessments of entanglement risk primarily
focus on the geographic distribution and quantity of fishing gear. Those assessments
should be improved by understanding the likelihood of entanglement based on both the
occurrence and behavior of NARWs and the severity of entanglement based on fishing
gear type and configuration.
3. The likelihood of entanglement by specific gear types and the likelihood of M/SI by
specific gear types, taking into account evidence of the effectiveness of management
measures to reduce entanglements or M/SI.
To achieve this, NMFS must expedite and complete development of Population
Evaluation Tool (“PET”) before the 2023 Evaluation. If this cannot be achieved through the
Northeast Implementation Team (“NEIT”) model, NMFS must hire an expert to complete this
work. NMFS must also update the DST so that it includes (1) the entire U.S. Atlantic coast (and
eventually Canada), (2) all federal U.S. fixed gear fisheries, (3) an incorporation of whale
behavior into the whale density model, and (4) a gear threat tool to incorporate the risk of all
federal fixed gear fisheries. The fishing industry should be consulted to provide expert advice in
the development of this model within the DST.
The comprehensive assessment of Phases 1 and 2 should be supported by research and
monitoring undertaken during Phases 1 and 2 as necessary to fully evaluate all of the factors set
forth above and on page 7 of the Conservation Framework. NMFS should also solicit the
participation of the states and the fisheries to ensure that the process is fully informed by the
“best scientific and commercial data available.” 16 U.S.C. § 1536(a)(2) (emphasis added). All of
this information should be fully and objectively evaluated by NMFS and documented in a
thorough report. That report should then be reviewed by the CIE before it is inputted into
updated models. If the evaluation, including the CIE report, indicates that the Lobster Fishery, as
managed under Phases 1 and 2, may be likely to jeopardize the existence of the NARW, then

92

Conservation Framework at 7. “1. Population status. 2. Population distribution and habitat usage. 3.
Information on calving and survival rates. 4. Entanglements in U.S. state, U.S. federal, and Canadian
commercial fisheries. 5. Changes to the federal fisheries (e.g., changes in co-occurrence due to shifts in
where the fishery operates or changes in effort). 6. Vessel strikes in U.S. and Canadian waters. 7.
Apportionment of M/SI (including cryptic mortality) to federal fisheries and other sources, including
M/SI in Canada, and between vessel strikes and entanglement.”
93

See, e.g., https://mmi.oregonstate.edu/gemm-lab/opal-overlap-predictions-about-large-whalesidentifying-co-occurrence-between-whales.
34

NMFS should reinitiate consultation and assess the status of the proposed actions at that time
under ESA Section 7(a)(2). See 50 C.F.R. § 402.16(a).
D.

Kenney (2018) Is Fundamentally Flawed.

The Draft BiOp cites Kenney (2018) at page 95 in support of the hypothesis that reducing
mortality from entanglements would be sufficient to recover the NARW if all known or
suspected sources of impacts remained constant. However, this population exercise fails to
account for basic biological processes, namely, death. To assess the population size in the
absence of mortality from entanglement, dead whales cannot simply be added back into the
population. Age is not an independent factor and the distribution of ages in the population in one
year affects population size in subsequent years.
In Kenney (2018)’s exercise, adding back a whale in a given year assumes that particular
individual goes on and stays in the population forever. In fact, these “zombie” whales, along with
living whales in this exercise, would be expected to die at a certain rate in subsequent years from
other causes. No other causes of mortality are considered, natural or anthropogenic to act on the
zombie whales. Further, calves have natural mortality rates that are ignored during scenarios
when they are included in this model. See Draft 2020 SAR (14.5 percent of the 124 recorded
mortalities between years 1970 – 2018 were “believed to have died from perinatal complications
or other natural causes).94 Kenney assumes a constant calving rate of one calf per 5yr (0.2/yr).
This process is a vast oversimplification of the life history process of NARW, and Kenney’s
value of the calving rate is far higher than the “best” current estimate of 0.04 in the Draft Stock
Assessment Report (SAR 2020), and would be 4th highest calving rate observed since 1990
according to Linden (2021, Figure 3).
For these reasons, Kenney (2018) does not reflect the best available information and the
BiOp’s effects and jeopardy assessments should not rely on or utilize Kenney (2018).
E.

The Reasonable and Prudent Measures Should be Further Refined and Improved.

The Associations provide the following comments and recommendations for
improvement of the reasonable and prudent measures (“RPM”) and associated terms and
conditions (“T&C”) set forth in the Draft BiOp. We do so mindful of the ESA’s limitations on
RPMs and T&Cs, namely: “Reasonable and prudent measures, along with the terms and
conditions that implement them, cannot alter the basic design, location, scope, duration, or
timing of the action and may involve only minor changes.” 50 C.F.R. § 402.14(i)(2).
NMFS should not be considering any management strategy that holds U.S. fishermen
accountable for NARW M/SI in Canada. The U.S. must engage directly with Canada in an open
and transparent manner to ensure that Canada implements effective and measurable conservation
measures.

94

Draft 2020 Stock Assessment Report, at 55.
35

1.

RPM 1
a.

General comments on RPM 1.

The Associations agree with the core premise of RPM 1—i.e., that “NMFS must continue
to work with the fishing industry and partners to promote, fund, conduct, and/or review research
on gear modifications to reduce incidental takes, and the severity of interactions that do occur, of
ESA-listed species.” We present the following modifications and additions to improve the
effectiveness of RPM 1:

95



This RPM and associated T&Cs should express a clear requirement that NMFS will
invest in gear research and evaluation. Such research must focus on: (1)
understanding the specific risks from existing gear, by fishery and gear type; and (2)
investigation of more immediate and practical gear modifications other than ropeless
fishing that can be implemented to reduce entanglement risk and severity. Such
possible modifications include improved gear marking methods, limits on diameter of
ropes fished as vertical lines, weak rope insert options, time tension line cutters,
newly engineered ropes, alternative trawling and rigging configurations, trap
reductions, and dynamic management if adequate NARW surveillance is possible.
The research should be scoped and undertaken based on direct engagement and
consultation with fishermen and fishing industry representatives, who are best
positioned to identify creative and effective gear modifications.



The process for developing a “Roadmap to Ropeless Fishing” must expressly state
that the process will involve direct engagement and consultation with the Lobster
Fishery. As described in detail below, there are numerous economic, safety,
operational, and enforcement limitations and questions on appropriate scale of
implementation that must be resolved in a “Roadmap to Ropeless Fishing.” The
T&Cs should specify that a draft Roadmap development will include collaboration
and consultation with the fishing industry and provided for review and comment by
industry stakeholders, after which a final Roadmap will be produced. It must also
consider the results of “The Ropeless Fishing Gear Feasibility Study” underway
through the Massachusetts Division of Marine Fisheries (DMF) and other current and
future ropeless fishing feasibility studies.95 It is essential that the Roadmap be
developed in this fashion to ensure that it addresses appropriate scale of
implementation (restricted areas versus broad-scale adoption) engineering questions
related to the function and reliability of the technology as well as the substantial
economic, safety, and operational issues posed by a fleet as diverse as the Lobster
Fishery. This will help to achieve a level of “buy in” from the fishing industry.
Without that “buy in,” the Roadmap will be impracticable and unlikely to succeed.



The T&Cs identify priorities for gear research but specify no timelines. The T&Cs
should specify timelines to ensure that these important research tasks are
accomplished.

https://www.mass.gov/service-details/ropeless-fishing-gear-feasibility-study.
36

b.

Specific concerns regarding development of ropeless fishing.

The Associations have concerns with regard to the accelerated trajectory for development
and implementation of ropeless gear technology. Analysis of this nascent gear technology must
address significant concerns with its present state of development, with particular focus on
methods to ensure the technology can be deployed on a safe and sound operational basis; that it
can address gear conflicts; and that it can offer an efficient, practicable method of harvesting
consistent with regulatory and economic conditions in the fishery. Moreover, current research
and development programs for ropeless gear have not identified a reasonably viable business
model for deployment in the diverse conditions of the Lobster Fishery. In the following sections,
we describe these issues in more detail and recommend that NMFS account for these in RPM 1,
as recommended above.
(i)

Technological limitations, cost, and operational constraints
make ropeless gear not presently economically viable.

Numerous technological issues must be resolved before ropeless fishing will be
commercially viable. The ropeless system aboard each vessel must function reliably and
efficiently. Specifically, the technology must include an acoustic trigger and release system to
allow for efficient and reliable deployment and hauling of gear, the communications system from
the vessel to satellite system must protect private data and function in real-time, and the
communication system which translates data from individual vessels to the fleet and enforcement
must be developed. According to Dr. Mark Baumgartner of Woods Hole Oceanographic
Institute: “We are in the early stages of development – mostly proof of concept with prototypes
that are not yet designed for operational fishing by hundreds to thousands of fishermen…. Every
system… will need to go through a redesign process to (a) incorporate an interoperable gear
location system, (b) work for fishing at scale (e.g., ruggedized design, long endurance), and (c)
enable mass production at low cost.”96
These technological challenges are compounded by the need to incorporate this
technology across a very diverse fleet which ranges from single operators fishing from vessels
less than 30 feet in length to medium size boats up to 40 feet with a small crew to larger vessels
of 65 feet of more that fish in deep offshore waters with crews of up to five. The smallest vessels
have very limited workspace and rarely use sophisticated computer or navigational systems.
While medium and larger vessels may have greater potential to incorporate GPS and computer
technology into a fishing operation, the deck size also remains very limited.
Additionally, there are operational and economic constraints to widespread use of
ropeless gear. The economic model for the New England lobster fishery is predicated upon a
high volume of landings caught with a gang of 800 or less (1,945 or fewer in LMA 3) traps,
where lobstermen compete for prime bottom. This requires lobstermen to efficiently haul and
redeploy gear in a predictable manner. Inshore lobstermen may haul 100 to 200 traps per day,
working four days on and one day off on a weekly cycle. These boats often deploy small gangs
of gear as singles, pairs or triples, that are strategically set on productive hard bottom to
96

Slide 12 located at https://ropeless.org/wp-content/uploads/sites/112/2019/11/21.Baumgartner_nearterm_developments_for_distribution_20191113.pdf.
37

maximize catch. Area 1 federal waters vessels may haul 300 to 400 traps per day, working
through a full gang of traps every two days. This gear is typically deployed as trawls across a
variety of hard and gravel bottom. Traps are frequently loaded onboard and moved to other
fishing areas depending on catch levels. Any hauling and redeployment system that results in
fewer traps hauled per day would significantly impact the business model of lobstering
operations.97
Reduced profits would, in turn, make it more difficult for lobstermen to pay for the high
capital and operating costs required to operate a ropeless system. The current best estimate is that
existing technology for ropeless systems will cost ten times or more per trap compared to gear
currently in use.98 These systems require significant investment in technology, including a
computer system, acoustic detector, trigger devices, and rope storage systems. Given the failure
rate of current systems, fishermen would also need to invest in redundancy.
Kristan Porter, President of the Maine Lobstermen’s Association, traveled to New South
Wales in eastern Australia to experience first-hand a commercial lobster operation using ropeless
fishing system that has been touted as a model for U.S. fisheries. The business model for the
eastern Australia lobster fishery is different than the New England lobster fishery. It is a quotabased fishery with a small number of lobstermen who do not share territory and deploy single
traps that are hauled every three to four weeks. The catch is extremely valuable with the price per
pound typically six times higher than U.S. lobster price, making this fishery highly vulnerable to
poaching. As a result, these lobstermen sought methods to hide gear. Mr. Porter observed:
On the day we fished, Scott hauled 14 single traps and did not reset
most of the gear because he had already caught most of his quota.
Scott and his crew were very skilled at fishing the system,
particularly in matching each pot to the computer so that it was
properly recorded and could be relocated, and the setting of the
burn wire in the acoustic release system. He used a torque wrench
to perfectly set the bolts on either side of the burn wire to hold it in
place; if it was too tight, the wire would break, too loose and the
wire would fall out. Either would result in a failure of the acoustic
release. This was a highly precise process. Setting the burn wire
properly would be difficult to do if handling a high volume of gear
or on a day with rough seas.99
U.S. fishermen who have tested ropeless gear have raised concern over transferability of
this technology to U.S. trap/pot fisheries. Massachusetts lobsterman Dave Casoni tested a
ropeless system and worried about the practicability of his peers adopting this technology,
97

By way of contrast, the one fishery in the world that uses ropeless gear fishes less than 20 traps per day
and does not share fishing territories with other fishermen.
98

The Oppenheim Declaration, which was filed in Ctr. for Biological Diversity v. Ross, Civ. Action No.
18-CV-112-JEB, as Document 115-7 (D. D.C., filed June 18, 2020), at 10 (Addendum F).
99

https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/March%202018%20Ropeless%20
subgroup/kristan_porter_observations_of_ropless_fishing.pdf.
38

particularly those who are elderly or otherwise have little experience and familiarity with digital
technology, touch screens, and other electronic equipment required to operate many pop-up buoy
gear systems.100 Similarly, West Coast Dungeness crab fishermen who have tested ropeless
systems found that these systems have an unacceptably high failure rate resulting in loss of
expensive equipment, hauling and retrieval were extremely time-consuming, there was
inadequate deck space to store ropeless equipment when stacking traps onboard, and gear and
catch were lost because traps landed upside down preventing the retrieval of the gear. Fishermen
have noted that these issues will be compounded in rough seas and cold weather conditions.101
Fishermen have also observed that they will have to make extensive, costly modifications to their
vessels in order to operate many of the pop-up buoy gear systems that are currently available,
requiring new haulers, wiring for electronics, or custom-built platforms or shelving to stabilize
gear while it is being re-coiled or re-spooled.102
(ii)

Ropeless gear presents safety risks.

Ropeless fishing also poses significant safety risks to fishermen in both the Lobster
Fishery and fisheries that overlap with it. The increased handling time on deck required by
ropeless gear is a particular concern for fishermen who operate their vessels alone. Fishermen
who fish alone must handle gear on deck while maintaining a vigilant watch to ensure safe vessel
maneuvering within high traffic areas or in a high sea state. Fishermen are very concerned about
safety issues surrounding gear conflict due to an increase in gear being set over gear on bottom,
or mobile gear unknowingly hauling through fixed gear.
A key function of the surface buoy and vertical line is to allow lobstermen to locate their
traps and safely haul them from the ocean floor to the fishing vessel. Another important function
is to alert other ocean users of the presence of lobster gear. The removal of the surface system
would result in significant conflict among lobstermen and between competing gear types. All of
the ropeless systems under-development use unique acoustic release devices, rope storage
options, and tracking and communications software. For ropeless fishing to work, all of these
systems must be interoperable so location of fishing gear is known to any vessel or law
enforcement accessing an area. There are several commercial fisheries that operate within the
same fishing grounds as lobster fisheries, including groundfish trawl and gillnet fisheries, crab
fisheries, scallop, tuna and shrimp fisheries. Any sunken gear that cannot be detected by other
vessels puts the vessel at risk and may result in loss of catch. Mobile gear that unknowingly
drags through sunken trap gear can lead to loss of catch by damaging nets and creates serious
safety risks to the vessel and crew by hanging down nets and hauling back heavy tangled gear.
Similarly, a lobster trawl set over the top of an unknown sunken trap on bottom is very
dangerous to haul due to the tremendous strain that is exerted on the line. Often the hauling line
will part and the gear and catch will be lost.
A ropeless Lobster Fishery would therefore require all lobstermen, and other fisheries
that overlap with lobster gear, to install and successfully operate computer systems to track and
detect sunken lobster trawls to avoid gear conflict. Even if the fleet is outfitted with compatible
100

Oppenheim Declaration at 14 (Addendum F).

101

Id. at 12 (Addendum F).

102

Id.
39

detection systems, weather or interaction with mobile gear can drag sunken lobster gear from its
marked location putting it out of range of the vessel’s release unit resulting in loss of gear. This
“ghost gear” on the ocean floor is both a risk to protected species and may continue to capture
economically valuable target species.
(iii)

Ropeless gear presents enforcement challenges.

Ropeless fishing also poses enforcement challenges that must be addressed. In June 2018,
ASMFC’s Law Enforcement Committee (LEC) reviewed the enforceability of ropeless pop-up
buoy gear technologies to reduce impacts on NARW.103 The LEC concluded that deployment of
ropeless gear would significantly impede law enforcement’s ability to enforce lobster
conservation rules. The concerns identified by LEC include: (1) the time and cost required to
retrieve and re-deploy ropeless gear would significantly reduce the number of vessels and traps
inspected for compliance; (2) the need to access multiple pop-up buoy gear technologies and
retrieval/mapping systems would represent a financial burden and logistical challenge; (3)
unanswered questions on systems to be used to store and secure trap location information; and
(4) the vulnerability of acoustic and radio frequencies to be hacked or stolen data that lead to
illegal hauling of gear by others as presented in Addendum G.
We encourage NMFS to identify these issues for further analysis and investigation in the
“Roadmap to Ropeless Fishing.” In the immediate term, this technology should be examined for
implementation in restricted areas where deployment of buoy lines is not allowed. However,
there are significant issues that must be addressed before this technology could reasonably be
considered for fishery-wide adoption. These examinations must address the technological,
operational, and economic impediments that undeniably exist, and vary significantly depending
upon the scale at which the technology is adopted. Collaboration with fishermen, and the
associations that represent them, is essential for both understanding these issues and finding
appropriate and effective solutions.
2.

RPM 2

The Associations agree that it is essential that NMFS work to “identify correlations with
environmental conditions or other drivers of incidental take within some or all of the action
area.” NMFS’s current risk assessments are disproportionately weighted to simply assume risk
occurs because fishing gear is present. To more accurately assess risk, NMFS must devote more
resources to assess the likelihood that whales will be present, and whale behavior, in areas with
fishing gear in the first place. In this regard, NMFS should build upon habitat distribution models
that have already been developed in other contexts to develop a more sophisticated habitat
distribution model for NARWs. Such a model should include the monitoring and integration of
variables such as sea surface temperature, plankton distribution, presence of prey, and other
factors that explain the temporal and geographic distribution of NARWs. These models should
be groundtruthed with whale sightings data. Ecological studies should also include additional
monitoring data pursuant to our recommendation on RPM 4.

103

ASMFC LEC May 2018 meeting summary at http://asmfc.org/law-enforcement/the-law-enforcement-committee;
ASMFC May 2018 meeting summary at
https://www.asmfc.org/files/Meetings/2018SpringMeeting/2018SpringMeetingSummary.pdf.

40

The Associations also agree that NMFS must review and assess “all data available on the
observed/documented take” of NARW. This review and assessment must include takes that
occur in Canadian fisheries and in Canadian waters, and this should be expressly stated in the
T&Cs for RPM 2. In this regard, NMFS should use all diplomatic and political means necessary
to obtain data from Canada on species distribution, including surveys that allow for individual
identification that can be included in models. NMFS should also request data on the density and
type of fishing gear deployed (especially snow crab and lobster) in Canadian waters so that it can
work effectively with Canada on equitable solutions to reduce risk entanglement.
Finally, we note that RPM 2 states that, after undertaking review, “NMFS must take
appropriate action to reduce large whale, sea turtle, Atlantic sturgeon, Atlantic salmon, and giant
manta ray interactions and/or their impacts.” The Associations agree that appropriate actions
should be taken. However, any such action(s) must occur through the legally required processes
and cannot occur pursuant to RPMs and T&Cs if they are not limited to “minor changes” that do
not “alter the basic design, location, scope, duration, or timing of the action.” 50 C.F.R. §
402.14(i)(2).
3.

RPM 3

While we recognize that disentangling NARW is dangerous and requires training, the
Associations believe that lobstermen would readily volunteer to be trained and serve as firstresponders when entangled whales are sighted. Historically, some lobstermen have already
received such training.104 NMFS should also explore new and innovative ideas to improve
disentanglement techniques.105 We recommend that this concept be included in RPM 3.
With respect to the fifth T&C, the Associations recommend that NMFS invest in state of
the art technology to provide responders and sightings surveillance teams with high resolution
cameras that have a laser scale built in. This would provide the information necessary to
determine the type of gear and size of rope, if any, on an entangled animal. NMFS should also
provide responders with high resolution drones to obtain better, higher-resolution images of
entanglement and any gear associated with an entanglement. Such data is essential to informing
management measures tailored to addressing actual risks.
Finally, the T&Cs for this RPM should ensure that the U.S. and Canada incorporate
standardized methods and protocols for data collected during disentanglement and chain of
custody and analysis of gear removed from NARW.
4.

RPM 4

The T&Cs for this RPM require NMFS to “continue to monitor” the fisheries but provide
no detail on what type of monitoring should occur or at what levels. We recommend that the
T&C include more detailed specifications for monitoring to ensure that monitoring efforts are
properly directed and effective. Such monitoring must be targeted to specific fisheries and
104

See https://www.capecodtimes.com/article/20130716/NEWS/307160322.

105

See The Nature Conservancy collaborative research project to develop new disentanglement
technology.
https://www.youtube.com/watch?v=_nj9rATdHQs&ab_channel=TheNatureConservancyinCalifornia.
41

require specific reporting by fishery and area, which would be included in comprehensive
reporting to more accurately assess levels of risk by fishery and area.
NMFS must also increase NARW surveillance within the action area. A recent report by
a NMFS expert working group states: “It is clear that long-term satellite tags could help provide
valuable data about NARW habitat use, including discovery of unknown foraging areas, return to
previously used foraging areas, and other shifts in distribution that might occur.”106 Long-term
satellite tags and other methods should be prioritized and funded as possible ways to obtain
better surveillance of NARW distribution.
NMFS should fund implementation of 100% harvester reporting by all jurisdictions and
develop and implement a cost-effective vessel tracking technology for trap/pot fishery that has
been piloted by ASMFC.
5.

RPM 5

NMFS should make a concerted effort to employ a more reliable modeling framework
that can support future decisions. While some minor improvements to the matrix model are
suggested in other sections, the development of an individual-based model should be expedited.
In an individual-based model, each individual of a population is tracked and allowed to have
unique demographic parameters and follow rules about interactions with other individuals and
the environment. In contrast, the assumption of a matrix model is that all individuals represented
in a matrix have identical demographic parameters and behavior. In very large populations, the
law of large numbers suggests that this assumption of matrix models may be close to the truth,
and some significant computational advantage is gained with this assumption. In small
populations, however, individual variations in demographic rates can be very important. In the
case of NARW, the detailed catalog of individual identifications over long periods of time
suggests an individual approach may be beneficial. In fact, the SSMR model takes an individual
approach, providing survival probabilities for every individual NARW in the record. The matrix
model then sweeps this individual level information into population-wide summary statistics. An
individual-based model approach would be much more consistent with the available data and the
Pace et al. (2017) modeling approach. Indeed, the individual-based model approach appears to
be the selected method of the PET Subgroup of the NEIT. Getz (2020) also suggests the use of
an individual-based model in their model review.
In addition, RPM 5 must include a direction to NMFS to better investigate and
understand sources of NARW natural mortality, particularly for newborn (neonate) calves that
are subject to predation. Natural mortality already occurs and is not well understood by NMFS,
yet is a critical factor in understanding population growth rates of NARW. Moreover, natural
mortality of neonate calves could become a serious problem in the future as white shark
populations continue to grow.
IV. CONCLUSION
106

See North Atlantic Right Whale Monitoring and Surveillance: Report and Recommendations of the
National Marine Fisheries Service’s Expert Working Group (Erin M. Oleson, Jason Baker, Jay Barlow,
Jeff E. Moore, Paul Wade) (June 2020),
https://repository.library.noaa.gov/view/noaa/25910/noaa_25910_DS1.pdf.
42

We appreciate the opportunity to provide comments on the Draft BiOp. The Associations
are committed to working with NMFS through legal and evaluative processes that are based
upon objective assessments of the best scientific data available. As explained above, we have
significant concerns about the Draft BiOp, such as its inaccurate portrayal of the effects of the
Lobster Fishery through numerous incorrect or overly conservative assumptions. We respectfully
request that NMFS address these concerns. We also appreciate NMFS’s consideration of our
other recommended improvements, such as the construction of a more specific adaptive
management framework and proposed refinements to the reasonable and prudent measures. If
you have any questions or would like additional information, please do not hesitate to contact
Patrice McCarron at 207-967-4555 or [email protected].
Sincerely,
Patrice McCarron
Executive Director
Maine Lobstermen’s Association

Beth Casoni
Executive Director
Massachusetts Lobstermen’s Association

David Borden
Executive Director
Atlantic Offshore Lobstermen’s Association

Erik Anderson
President
New Hampshire Commercial Fishermen’s Association

Ben Martens
Executive Director
Maine Coast Fishermen’s Association

Rocky Alley
President
Maine Lobstering Union

Sheila Dassatt
Executive Director
Downeast Lobstermen’s Association

Laurin Brooks
President
Southern Maine Lobstermen’s Association

Annie Tselikis
Executive Director
Maine Lobster Dealers Association

Paul Anderson
Executive Director
Maine Center for Coastal Fisheries

Casey O'Hara
Vice-President
O’Hara Corporation

Sebastian Belle
Executive Director
Maine Aquaculture Association

cc: Sam Rauch, Deputy Assistant Administrator for Regulatory Programs
Mike Pentony, Regional Administrator, Greater Atlantic Regional Office
Jennifer Anderson, Assistant Regional Administrator for Protected Resources
Senator Susan Collins (via Cameron O’Brien)
Senator Angus King (via Peter Benoit and Chris Rector)
Representative Chellie Pingree (via Lisa Pahel and Rhiannon Hampson)
Representative Jared Golden (via Eric Kanter and Morgan Urquhart)
Senator Jeanne Shaheen (via Sarah Holmes)
Senator Maggie Hassan (via Victoria Williams)

43

Representative Chris Pappas (via Ashley Motta)
Senator Elizabeth Warren (via Bruno Freitas)
Senator Ed Markey (via Nolan O’Brien)
Representative Bill Keating (via Andrew Nelson)
Representative Seth Moulton (via Olivia Hussey)
Representative Katherin Clark (via Ilina Shaw)
Representative Stephen Lynch (via Megan Hollingshead and Bruce Fernandez)
Senator Jack Reed (via Steven Keenan)
Senator Sheldon Whitehouse (via Karen Bradbury)
Representative David Cicilline (via Matthew McGinn)
Representative James Langevin (via Peter LaFountain)
Honorable Janet Mills, Governor of Maine (via Tom Abello)
Honorable Governor Chris Sununu, Governor of New Hampshire
Honorable Charlie Baker, Governor of Massachusetts (via Kristen Lepore)
Honorable Gina Raimondo, Governor of Rhode Island
Patrick Keliher, Commissioner, Maine Dept of Marine Resources
Cheri Patterson, Director, NH Department of Fish and Game
Dan McKiernan, Director, Massachusetts Division of Marine Fisheries
Janet Coit, Director, RI Department of Environmental Management
Thomas Nies, Executive Director, New England Fishery Management Council
Robert Beal, Executive Director, Atlantic States Marine Fisheries Commission

44

Addendum A 
 
Overview of The Associations 
 
Maine Lobstermen’s Association (MLA) 
 
The Maine Lobstermen’s Association’s (MLA) was founded in 1954 and is the oldest and largest fishing 
industry association on the east coast. The MLA advocates for a sustainable lobster resource and the 
fishermen and communities that depend on it. The MLA engages in advocacy, education, stewardship 
and sustainable resource management, collaborative research and cultural exchange. For more than 65 
years, the MLA has ably represented the interests of the Maine lobster industry and educated the public 
about the importance of this industry.  
 
Massachusetts Lobstermen’s Association 
 
The Massachusetts Lobstermen’s Association was established in 1963 by the fishermen, for the 
fishermen, and is presently one of the leading commercial fishing industry associations in New England. 
On behalf of its 1,800 members, the MALA works to maintain both the industry and the resource. The 
MALA strives to be proactive on issues affecting the lobster industry and is active in the management 
process at both the state and federal levels. 
 
MALA has become a trustworthy voice for the industry on important issues and is looked to by both the 
fishing industry and the management community. The Massachusetts Lobstermen’s Association is a 
member‐driven organization that accepts and supports the interdependence of species conservation 
and the members’ collective economic interests.  
 
Atlantic Offshore Lobstermen’s Association 
 
The Atlantic Offshore Lobstermen’s Association (AOLA) is the sole organized voice for the federal 
offshore lobster industry, representing a majority of the active fleet with members from New Hampshire 
to New Jersey. The Association supports the efforts of the offshore lobster industry to develop and 
maintain a strong, stable, and sustainably minded fishery. Offshore lobster fishing is pursued by a 
relatively small fleet (approximately 65 active vessels) in an area 40‐120 miles from shore that spans 
from the Canadian border to the mid‐Atlantic. 
 
The Executive Director of AOLA has held a seat on the Atlantic Large Whale Take Reduction Team (TRT) 
since its inception in 1996 and has participated in the development of all Atlantic Large Whale Take 
Reduction Plan conservation provisions since that time, including provisions undertaken since the 2014 
Endangered Species Act Biological Opinion. David Borden has been the AOLA Executive Director since 
2013.  He also serves as a Commissioner for the Atlantic States Marine Fisheries Commission (ASMFC) 
with a seat on the Lobster Board.  Grant Moore is AOLA’s President, alternative TRT member, and 
Chairman of the ASMFC’s Area 3 Lobster Conservation Management Team. 
 
Since 2018 AOLA staff and members have been participants on collaborative research projects to 
develop whale protections.  Work has included load and breaking strength testing of existing vertical 
lines, testing manufactured 1700lb breaking strength rope and weak rope contrivances, and testing of 
acoustic release (ropeless) technologies. AOLA members have also provided researchers and managers 

with critical information about fishing operations to inform fisheries characterizations, model 
development, and gear technology specifications. 
 
Maine Coast Fishermen’s Association 
 
The Maine Coast Fishermen’s Association (MCFA) is an industry‐based non‐profit that identifies and 
fosters ways to restore the fisheries of the Gulf of Maine and sustain Maine’s iconic fishing communities 
for future generations. Established and run by Maine fishermen, the objectives of MCFA are to provide a 
voice for our fishing communities, to rebuild the Gulf of Maine ecosystem, and to support diverse fishing 
businesses throughout Maine. MCFA strives to ensure that Maine's fishing communities can thrive 
today, tomorrow, and forever. We do this by advocating for policies and regulations that create healthy 
and sustainable fisheries, securing access to those fisheries through protecting working waterfront and 
permit banking, and supporting profitable fishing businesses through research and community 
development. 
 
New Hampshire Commercial Fishermen’s Association 
 
The New Hampshire Commercial Fishermen’s Association works to recognize, promote, and encourage 
all commercial fisheries in the State of New Hampshire in a manner that enhances resource 
conservation, effective management, wise laws and a friendly spirit of co‐operation among all 
commercial fishermen. The association’s members have consistently and currently participate in all 
aspects of fishery management at levels that effectively contribute to the discussions and outcomes in 
the best interest of the resource and industry. Our members are active on the Area 1 LCMT, ALWTRT, a 
variety of ALWTRT rope workshops and initiatives along with ongoing collaborations specific to lobster 
issues. 
 
Maine Lobstering Union 
 
Maine Lobstering Union (MLU) is a nationally backed organization working through solidarity to bring 
support to Maine’s Lobstermen. The MLU provides education, upholds traditional sustainable lobstering 
practices and advocates for the fishermen that rely on them. The MLU is dedicated to improving the 
quality of life for our fishermen. Lobster 207 is the first Union‐owned, fair‐trade lobster co‐op. Our 
members own their product, “From the ocean floor to your door”. 
  
Downeast Lobstermen’s Association (DELA) 
 
The Downeast Lobstermen’s Association was formed in 1990 by a small group of lobstermen in the 
Jonesport, Maine area to maintain traditional lobstering for fishermen and their families and to maintain 
our lifestyle for our future generations. Since its humble beginning, DELA has become known state and 
nationwide, representing lobstermen from Kittery to Eastport, and from nearby states including New 
Hampshire and Massachusetts. DELA’s members share the same interest and concerns about their 
fishery. DELA’s work includes representing the Maine lobster industry on the Lobster Institute, the 
Research, Education and Development Board, Maine Fishermen's Forum Board and we collaborate on a 
variety of research projects with Maine Department of Marine Resources, Gulf of Maine Lobster 
Research Institute, and more. 
 
Southern Maine Lobstermen’s Association (SMLA) 
 

The Southern Maine Lobstermen’s Association was formed in 1972 as a non‐profit cooperative. SMLA 
has served southern Maine’s commercial lobstermen through the collective purchase of fishing gear and 
supplies and advocating lobstermen on a variety of regulatory issues. SMLA members have served on 
the Lobster Advisory Council, the Lobster Research Education and Development board, and as well as 
collaborative with state and federal agencies on a variety of oceanographic survey, dredging, and 
collaborative research projects.   
 
Maine Lobster Dealers Association (MLDA) 
 
The Maine Lobster Dealers’ Association was formed in 1985 to support the interests of lobster 
wholesalers and processors. Together with our members, we proactively work towards solutions to the 
regulatory and commercial challenges in the lobster supply chain worldwide. MLDA’s members are the 
businesses that procure lobster from Maine’s commercial lobster fishermen and add value to it by 
grading it for specific sizes and quality or process it into value‐added products like lobster meat or frozen 
tails. Without our hardworking fishermen, there is no product for us to ship around the world; without 
live lobster wholesalers and lobster processors, there is no connection between our small coastal towns 
and the domestic and global market place. We work hand in hand with our commercial fishermen and 
we are concerned about their fishing future because our member companies and the 6,000 jobs that 
exist in Maine’s lobster supply chain, depend upon a biologically and economically sustainable fishery.  
 
Maine Center for Coastal Fisheries 
 
The Maine Center for Coastal Fisheries (MCCF) mission is to sustain commercial fishing and Maine’s 
coastal fishing communities in eastern Maine and beyond. We are not an association of fishermen, but 
we are located in Stonington, Maine’s largest lobster landing port, and we have several fishermen on 
our Board of Directors. We conduct collaborative research with fishermen and we are a boundary 
spanning organization promoting collaborative management strategies that are based on local 
knowledge and sound science. Our long‐term goal is to help transform fisheries management to me 
more ecosystem‐based to be more responsive to natural and social changes affecting fisheries and 
communities. Dr. Carla Guenther, Chief Scientist is a co‐investigator on a current study of the socio‐
economic stressors on Maine’s lobster fishery that is being funded by the National Sea Grant Program. 
MCCF endorses the comments and concerns that are included in this response to the draft Biological 
Opinion. 
 
O’Hara Corporation 
 
The O'Hara Corporation is a family held company that has owned and operated commercial fishing 
vessels for over 114 years. Our home office is located in Rockland Maine, which is the homeport of our 2 
Atlantic herring vessels that supply bait to our local lobster communities through our shoreside division 
of O'Hara Bait. 
 
Maine Aquaculture Association  
 
The Maine Aquaculture Association (MAA) is the oldest state aquaculture association in the country. 
Founded in 1977, MAA represents the commercial aquatic farmers of Maine. Our members grow 23 
different species, and directly employ over 700 Maine citizens in year‐round jobs with an additional 300 
seasonal employees generating more than 150 million dollars in economic activity annually. The MAA is 
a co‐founder of the Maine Working Waterfront Coalition that served as the model for the creation of 

the National Working Waterfront Coalition. In cooperation with a number of environmental advocacy 
groups (ASF, TU, CLF), MAA developed third party audited environmental management systems 
designed to reduce the environmental footprint of our farms and minimize any interactions with species 
listed under the Endangered Species Act.  
 

Addendum B 
 
Economic Importance of the Northeast Lobster Fishery 
 
The Northeast Lobster Fishery has long been an integral part of the region’s culture, heritage and 
economy supporting tens of thousands of jobs and hundreds of ancillary businesses.1 The fishery 
remains the most valuable in the United States. In 2019, lobster landed in the states of Maine, New 
Hampshire, Massachusetts and Rhode Island were valued at nearly $640 million, with Maine and 
Massachusetts representing 91% of the revenue. The lobster fleet contributed an additional $12 million 
in Jonah crab landings (Table 1). The lobster distribution supply chain in Maine alone was estimated to 
contribute $968 million to the Maine economy supporting over 5,500 workers.2  
 
Table 1 
2019 Ex‐vessel Value of Lobster and Jonah Crab  
 
Lobster 
Jonah Crab 
Maine 
$ 486,639,304 
$ 422,041 
Massachusetts 
$ 94,414,921 
$ 8,137,652 
New Hampshire 
$ 35,428,408 
$ 42,406 
Rhode Island 
$ 10,988,713 
$ 3,391,499 
Total  
$ 627,481,346 
$ 11,993,598 
Total lobster and crab 
$ 639,474,944 
Source: NOAA Fisheries 
 
For rural coastal communities, the lobster fishery is the economic engine that keeps many small towns 
alive. The majority of the lobster fleet is owned and operated by a vessel Captain who lives, works, and 
spends earnings locally. 3 As a business sector, commercial lobstering is a primary economic driver. Each 
dollar earned by a lobsterman generates several more, generating jobs and economic value for local 
economies. Overall, he lobster fishery is estimated to contribute more than $2 billion to the region’s 
economy4. When lobstermen are paid for their product at the dock, they spend those earnings on 
everything from meals at local restaurants and gas for their trucks and boats to new traps, boats, and 
homes in their local communities. 
 
While the lobster fishery is the economic engine of coastal economies, it is comprised of a very diverse 
fleet of small businesses. The fishery takes place over a vast area under varied bottom habitats and 
conditions ranging from shallow coastal areas to deep offshore waters. The fleet varies dramatically in 
vessel size, size of gear fished (traps and rope), gear configuration, number of crew and spatial extent of 
the fishery.  
 

 
1

 Maine's lobster fleet directly supports more than 10,000 jobs (3,670 Captains, up to 5,750 crew, 1,095 students) 
 Donihue, Michael. Lobsters to Dollars: The Economic Impact of the Lobster Distribution Supply Chain in Maine. 
June, 2018.Colby College at http://www.colby.edu/economics/lobsters/Lobsters2DollarsFinalReport.pdf 
3
 Maine Revised Statutes, Title 12, Chapter 619, Subchapter 1, §6431‐G 
4
 Donihue, Michael. Lobsters to Dollars: The Economic Impact of the Lobster Distribution Supply Chain in Maine. 
June, 2018.Colby College at http://www.colby.edu/economics/lobsters/Lobsters2DollarsFinalReport.pdf 
2

In 2018, Maine issued 4,830 commercial lobster licenses and 1,095 student licenses5. Massachusetts has 
an estimated 850 active lobster licenses6, New Hampshire has an estimated 320 active lobster licenses7. 
In 2017, National Marine Fisheries Service reported 2,034 federal lobster trap permits for Lobster 
Conservation Management Areas (LMAs) managed under the Atlantic States Marine Fisheries 
Commission. The majority of federal lobster permits (79%) are issued for Lobster Management Area 1 
(1,601). In most cases Area 1 federal permit holders also hold a state permit. NMFS issued 107 Area 3 
permits with approximately 65 active vessels. 8 9 
 
The inshore state waters fleets are comprised of small to medium sized boats that fish several days a 
week during the spring, summer and fall months in local territories that are close to shore. These 
inshore coastal fleets are comprised of small vessels (less than 20 feet in length), some operated by 
students and elderly fishermen, typically with only the Captain aboard. The state waters fisheries also 
include medium‐size vessels (20 to 39 feet in length) which fish out to the state waters three‐mile line. 
These vessels are fished by single operators or carry a small crew of up to two.  
 
Approximately 20% of state waters lobstermen also hold a federal Area 1 permit which allows them to 
fish in federal waters. Many fish year‐round from larger vessels (40 to 50 feet in length) with a crew of 
two to four sternmen. The Area 3 fleet operates differently from state waters and the Area 1 fishery. An 
Area 3 fishing trip usually lasts four to ten days aboard vessels ranging from 50 to 100 feet in length 
carrying a four to five crew.  
 
For more than a century Maine’s lobster fishery has been a stable presence along New England’s 
waterfronts. It is an icon of the region, and an integral part of the region’s culture, traditions and 
economy. The future of many New England coastal communities depends upon the continued success of 
the lobster fishery. 
 

 
5

 Maine DMR estimates that 70% of commercial licenses are actively fished (cite email from DMR) 
 Beth Casoni, Massachusetts Lobstermen’s Association, personal communication. 
7
 Renee Zobel, New Hampshire Fish and Game, personal communication 
8
 NOAA Fisheries, 2017 at https://www.fisheries.noaa.gov/permit/american‐lobster‐permitting‐
information#:~:text=Only%20one%20federal%20lobster%20permit,stay%20with%20the%20permitted%20vessel. 
9
 David Borden, Atlantic Offshore Lobstermen’s Association, personal communication. 
6

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 1 of 11

Addendum C
IN THE UNITED STATES DISTRICT COURT FOR THE DISTRICT OF COLUMBIA
CENTER FOR BIOLOGICAL DIVERSITY,
et al.,
Plaintiffs,
v.
WILBUR ROSS, et al.,
Federal Defendants, and
MAINE LOBSTERMEN’S ASSOCIATION,
INC., and
MASSACHUSETTS LOBSTERMEN’S
ASSOCIATION,
Defendant-Intervenors.

Civil Action Nos. 18-112 (JEB)

Declaration of Glenn Salvador
In Support of Intervenor-Defendants’ Remedy Brief
I, Glenn Salvador, state and declare as follows:
1. I have significant first-hand knowledge of New England, mid-Atlantic and Southeast
Atlantic commercial fisheries, including knowledge of target species and bycatch interactions,
the type of gear and rigging strategies deployed for various fisheries, and operation of vessels
and equipment.
2. I have 22 years of professional experience as the Gear Specialist and Fisheries Liaison
for NOAA Fisheries (NMFS) serving in this role from 1996 to 2018. I worked for the Northeast
Regional office based in Gloucester, MA. In addition to working as NMFS Gear Specialist, I also
served as the Fisheries Liaison for the Northeast Fisheries from 1996 to 2002 and Mid-Atlantic
Fisheries from 2003 to 2018. My duties included working with fishermen to develop and test
gear innovations to reduce the likelihood of entanglement, answering fishermen’s questions
about how to comply with whale protection requirements, and investigating the source of gear
removed from entangled large whales. This work was achieved by attending industry meetings,
trade shows and workshops, meeting fishermen on the dock, publishing columns in trade

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 2 of 11

magazines, and going on commercial fishing trips with regulated fishermen. During all of these
years, I worked closely with my counterparts throughout the Northeast, Mid-Atlantic and
Southeast regions.
3. I worked as a commercial fisherman for 15 years in the Gulf of Maine, from 1970 to
1985, in the inshore and offshore lobster and gillnet fisheries. I also owned and operated a
commercial fishing vessel working in trap and mobile gear commercial fisheries in the West
Indies from 1982-1985. I worked briefly as a boat building apprentice in Beals, Maine for two
years in the late 1980’s, as a field agent and research vessel Captain for the state of Maine
Department of Marine Resources from 1987 to 1990, and as a senior at-sea fisheries observer for
Manomet from 1990 to 1996 collecting commercial fishing data on east coast fisheries operating
from Maine to Florida, including inshore and offshore lobster and gillnet fisheries.
4. I am a certified U.S. merchant marine officer with a 100-ton Master License, a
certified Master Fisherman by the World Food and Agriculture Association, and a certified
Marine Surveyor by the U.S. Surveyors Association. I have received several awards from the
U.S. Department of Commerce including the 2004 Bronze Medal for forging cooperative
relationships with fishermen and developing gear modifications; the 2007 Bronze Medal for
excellence in managing a fishing gear buy-back program; the 2007 Silver Medal for reducing the
bycatch of marine mammals and turtles in commercial fisheries; and the 2016 Bronze Medal for
exceptional leadership, innovation and collaborative approach in working with commercial
fishermen and stakeholders.
5. As NMFS’s Fisheries Liaison, I led the region’s collaborative research efforts with
fishermen to develop entanglement mitigation strategies that are safe and operationally practical
for the fleet. There was strong interest from the fishing community to participate in research to

2

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 3 of 11

develop whale-friendly fishing gear and deployment strategies. These projects included
documenting operational needs of the lobster and gillnet fisheries, including the loads
encountered on lines during hauling and setting of gear and observing vertical and bottom
profiles of gear when they are fished. I coordinated many collaborative research projects with
fishermen. Gillnet research included modified float lines and lead lines to weaken the net
through the use of knots, lighter ropes, weak links and “Chinese fingers.” Lobster gear research
included testing of low profile ropes, acoustic releases, mechanical weak links, bottom weak
links and buoy line messenger systems, gear marking techniques, weak link testing, gear retrieval
with lighter buoy lines, low profile groundlines and time tension line cutters. I also conducted a
variety of workshops with fishermen including whale disentanglement workshops for fishermen
focused on proper identification of whale species and safely executing successful
disentanglement strategies for fishermen, and several gear development workshops. I learned
early in the process that fisheries are extremely diverse and because of that, there are no simple
solutions.
6. I was personally involved in analyzing much of the gear removed from entangled large
whales, including North Atlantic right whales. In investigating these cases, I interviewed those
who observed the whale entangled at sea, were involved in efforts to disentangle the whale, the
necropsy team and the fishermen who set the gear when this information was available. The
results of these investigations were included in National Marine Fisheries Service annual Atlantic
Large Whale Entanglement Reports from 1999 to 2018. i
7. There are only a few instances where a right whale has been observed encountering
and becoming entangled in commercial fishing gear. This makes analyzing gear removed from
entangled whales extremely complicated because we are trying to reverse engineer an

3

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 4 of 11

unobserved event. This requires a complex investigation to determine the origin of the fishery
(such as country or state/province), the category of fixed gear (such as netting, trap/pot, long
line), and the target fishery. The gear team also makes determinations on whether or not the
entangling gear was compliant with regulatory requirements. This requires intimate knowledge
of the range of surface systems, types of rope used to deploy the gear and the size and scale of
the fishing gear, such as traps or nets commonly used in a range of fisheries. Once NMFS
received the entangling gear from the disentanglement team, all gear was inventoried, measured
and logged. Gear was categorized as part of the surface system (buoys, buoy sticks, highflyers,
weak links, etc.) or bottom system (traps, nets, hooks, etc.), ropes were measured by lengths
recovered, diameter and unique features (float, sink, lead-lined, etc.), and unique identifying
features were noted, such as various flotation devices, knots and splices, gear marking or other
elements. Conclusive determinations were challenging because often only a portion of the gear
system was retrieved, and many fisheries deploy similar pieces of gear. Identifying the
responsible fishery can be determined if identifying marks were retrieved, such as a license
number on a buoy, mandatory gear marks, or other distinguishing features.
8. For this declaration I have reviewed the data on gear fishing gear removed from right
whales since records were officially maintained by NMFS beginning in 1997. Specifically, I
referenced the database prepared by NMFS for the Atlantic Large Whale Take Reduction Team
(ALWTRT) as background information for its April 2019 meeting. These data clearly show that
since 2010 lobster fishing gear and ropes have been rarely removed from North Atlantic right
whales, something that was common prior to 2010. Based on this review and my cumulative
professional experience as a gear specialist and commercial fisherman, it is my opinion that the
changes in gear and fishing practices in the American lobster fishery implemented in 2009 and

4

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 5 of 11

2014 have significantly reduced the risk of the New England lobster fishery to right whales. The
largest entanglement threat is now posed by Canadian snow crab gear trap/pot gear.
9. The analysis of fishing gear removed from right whales, for which I was a key member
of the investigative team until 2018, indicates that entanglement in New England lobster gear has
declined by 90% since 2010. From 1997 through 2010, lobster gear was removed from 10 North
Atlantic right whales. In the last decade, lobster gear has been removed from only one right
whale, which did not result in a serious injury. The majority of rope removed from right whales
since 2010 is large diameter rope that is rarely deployed in the New England lobster fishery. The
decline in lobster gear removed from entangled right whales reflects the success of key
conservation measures implemented by fishermen, such as sinking groundlines. The 2009
requirement to replace the floating rope deployed between traps with rope that sinks resulted in
the removal of 27,000 miles of floating groundlines from New England’s waters. Since then,
there have been no instances of groundlines removed from entangled right whales.ii The 2014
requirement to reduce vertical lines removed an additional 2,740 miles of rope from the water.iii
Right Whale Entanglement
10. When a live whale is reported entangled at sea, a response team is deployed to assess
the whale and its condition and efforts are made to disentangle the whale. The success of this
effort is highly dependent upon weather, location of the whale and complexity of entanglement.
Disentanglers attempt to retrieve any gear removed from whales, but this is not always possible.
Often gear that is cut in an effort to free the whale will sink to the bottom, or cuts to the gear that
are made to simplify the entanglement configuration allow the whale to shed the gear at sea on
its own so the gear is not recovered. Any gear retrieved from an entangled whale is turned over
to the NMFS gear team which conducts a thorough investigation of the case. A report is prepared

5

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 6 of 11

for each case which includes a summary of the case, a description of the gear removed from a
whale and conclusions regarding gear type and target fishery when determined.
11. As an example, NMFS entanglement case E02-17 involved an entangled right whale
#3530, known as Ruffian, first observed off the Georgia coast during an aerial survey in January
2017 by Florida Fish and Wildlife Conservation Commission (FWC). The case was reported to
the Georgia Department of Natural Resources (GA DNR) which responded on scene. GA DNR
attached a telemetry buoy to the whale so that it could be relocated for disentanglement the next
day. The response team made a strategic cut near the head, and the whale shed the remaining
gear the next day. Upon analysis by the NMFS gear team, the gear description noted “451 feet of
5/8” line was recovered with a large conical steel trap (134 lbs) that had empty bait bags, and a
partially destroyed plastic funnel. Cut-out areas in the mesh of the trap were consistent with
those required in the snow crab fishery per DFO [Canada’s Department of Fisheries and
Oceans]. Some of the line recovered also has a unique core build that is not used in any known
U.S. Atlantic fishery but has been identified in other confirmed Canadian snow crab cases.” The
gear team commented, “No twine remained in the mesh cut-outs suggesting that the trap was in
the water for at least a period of four months per DFO. No trap tag or surface buoy was present
to help identify the exact location of the fishery or fishery.” The gear team concluded,
“Recovered gear is consistent with the Canadian snow crab fishery. Growth on the trap, line and
the missing escape vents suggest that the gear was in the water for at least a period of 4 months.”
This gear is now located at NMFS gear facility in Narrangansett, RI.
12. In my experience, there are many cases in which right whales are reported entangled
but are observed gear-free in future sightings. The majority of entanglements do not result in
serious injury or death. The 2019 draft Right Whale Stock Assessment (page 142) notes,

6

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 7 of 11

“Whales often free themselves of gear following an entanglement event.”iv Knowlton, et al,
2012, published the first significant research on right whale encounter rates with fishing gear
from 1980 to 2009, finding that “Most right whales that become entangled apparently clear
themselves of the gear and are left with only scars.” This research documented that an average of
98.8% of these right whale encounters with fishing gear do not result in serious injury over the
30 year time series.v
Decreasing Trend in American Lobster Gear associate with Right Whale Entanglement
13. My former colleague, David Morin, NOAA Fisheries Large Whale Disentanglement
Coordinator, provided a database to the Atlantic Large Whale Take Reduction Team at its April
2019 meeting containing records of right whale vessel strikes and entanglements documented
between 2000 and 2018.vi This database includes all of the known information on fisheries and
gear associated with right whale entanglements during this time period. Earlier versions of these
data formed the basis to classify the American lobster fishery as a Category I fishery under the
Marine Mammal Protection Act’s annual List of Fisheries determination. These data and
corresponding categorization established the basis for the formation of the ALWTRT and
development of the Atlantic Large Whale Take Reduction Plan (ALWTRP).
14. This database also contains data on vessel strikes which remain a source of right
whale serious injury and mortality. From 2000 to 2018, there were 70 documented vessel strikes
with right whales. Of these, 33 were attributed to U.S. vessels, 7 to Canadian vessels and 30 were
undetermined. Of the U.S. vessel strikes, 16 occurred prior to 2009 when the US ship strike plan
was implemented and 17 have occurred since; seven of the latter resulted in serious injury or
mortality. Additionally, a right whale calf born in 2020 was struck by a vessel and was last

7

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 8 of 11

observed in poor condition. Of the Canadian vessel strikes, 3 occurred prior to 2009; 4 have
occurred since. All resulted in serious injury or mortality.
15. Based on my years of experience working as a commercial fisherman and analyzing
gear removed from whales for NMFS, it is often difficult to determine the fishery from which the
entangling gear originated. While there may be a case to rule out a certain fishery, NMFS does
not track that data. For example, a whale sighted with a small piece of netting and section of rope
would be reviewed by the NMFS gear team. Without specific identifying marks, the rope could
be from any number of fisheries, such as whelk, black sea bass or other fishery. The netting
could be from fixed gear or pelagic net fishery. It also is impossible to determine conclusively
that the two pieces of gear recovered originated from the same commercial gear deployment.
This hypothetical example would likely be determined as “unknown,” although there are many
fisheries that one could likely rule out.
16. It is important to understand that discussion of “commercial fishery entanglement
rates” encompasses a wide diversity of commercial fisheries located in two countries. Of extreme
relevance to this court proceeding, it is not synonymous with entanglement rates from the
American lobster fishery.
17. From 2000 to 2018, there were 164 documented entanglements representing a range
of commercial fisheries in the U.S. and Canada. There were 38 cases for which the entangling
gear could be traced to a fishery; 13 of those cases occurred before 2010 and 25 cases occurred
over the last decade. These data show two significant trends.
18. The first important trend is the significant decline in right whale entanglements in
U.S. lobster gear since 2010. From 2000 to 2010, U.S. lobster gear comprised 45% of known
cases (6 cases out of 13). However, since 2010 U.S. lobster gear comprises only 0.04% of known

8

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 9 of 11

cases (1 case out of 25). Since 2014, there has been only one entanglement, a non-serious injury,
in New England lobster gear. As detailed below, ropes removed during this time period are not
characteristic of ropes used in the New England lobster fishery. In my expert opinion, the decline
in lobster gear entanglement is due to the success of whale protection measures implemented by
lobstermen and a significant distributional shift of right whales into Canadian waters where they
encounter Canadian fishing gear.
19. The second important trend is the dramatic increase in right whale entanglements in
Canadian trap/pot gear since 2010. From 2000 to 2010, 23% of known entanglements were in
Canadian trap gear (3 out of 13). This has increased to 52% since 2010 (13 out of 25). Seven of
these recent cases resulted in serious injuries or mortalities to right whales.
20. Gillnet gear also emerged as a known threat to right whales. There has been a slight
increase in trend in gillnet gear or netting removed from right whales, with one case documented
prior to 2010 and seven cases over the last decade; three of these recent cases resulted in serious
injuries. There was also a significant increase in entanglements that could not be attributed to a
fishery since 2010. In recent years, the proportion of these cases with no gear present has
increased.
21. There has been a significant change in the size of ropes removed from right whales in
recent years. Prior to 2010, 84% of rope removed from right whales was smaller than ½”
diameter (26 of 31 samples) and representative of ropes that may be deployed in New England’s
lobster fisheries. Since 2010, the diameter or ropes removed from entangled right whales has
increased dramatically. Ropes ½” in diameter or larger now represents 79% of rope removed
from entangled right whales (19 of 24 cases), up from 16% in the previous decade. This trend is
significant because the New England lobster fishery deploys predominantly smaller ropes. The

9

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 10 of 11

most commonly fished rope is of 3/8” diameter, although smaller ropes of 5/16” diameter and
slightly larger ropes of 7/16” diameter are also deployed frequently. Maine Department of a
Marine Resources conducted a study of New England lobstermen in 2019 which documented
that 94% of lobstermen from Maine, New Hampshire, Massachusetts and Rhode Island fish with
ropes smaller than ½” diameter.1
22. Overall, from 2000 to 2018, there were 164 documented entanglements representing a
range of commercial fisheries. Of these 17 were attributed to U.S. fisheries, 21 to Canadian
fisheries and 126 were not traced to either country. Of the U.S. entanglements in commercial
fishing gear, nine occurred prior to 2010 when major modifications to the Atlantic Large Whale
Take Reduction Plan were implemented banning the use of floating groundlines in fixed gear
fisheries managed under the plan; eight have occurred since, two of which resulted in serious
injury or mortality. Of the Canadian entanglements in commercial fishing gear, 5 occurred prior
to 2010 and 16 have occurred since, six of which resulted in serious injury or mortality.
23. I worked on the analysis of entangled right whale 3911, now known as Bayla, that
died in 2010. The acute cause of death of this whale was shark predation, although the necropsy
team noted significant entanglement trauma on the head, mouth and flippers. The gear team
examined approximately 435 feet of 7/16” diameter polypropylene (floating) rope, which had six
to seven gangions along this rope with portions of bridles attached. Some of the bridle ends are
attached to plastic coated wire mesh, measuring 2” by 2” center to center. This gear is consistent
with floating groundline used in the trap/pot fishery prior to April 2009 in U.S. trap/pot fisheries
regulated under the ALWTRP. Floating groundline was banned from use in most U.S. trap/pot

1

This does not include data from the Area 3 lobster fishery. See
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/Meeting%20Materials/Inters
essional/assessment_of_vertical_line_use__in_ne_trap_pot_fisheries___summer_et_al.pdf

10

Case 1:18-cv-00112-JEB Document 115-5 Filed 06/18/20 Page 11 of 11

fisheries in April 2019. The gear team did not determine that this entanglement was caused by
lobster gear for several reasons because there were several trap/pot fisheries that could not be
ruled out. Importantly, there was no surface system or trap tags found to identify the target
fishery. This gear had characteristics consistent with several trap/pot fisheries including
Canadian lobster, jonah crab or conch.
I declare under penalty of perjury that the foregoing is true and correct to the best of my
knowledge and belief.

Executed on June 18, 2020 at Belle Haven Virginia

_____________/s/_______________
Glenn Salvador
i

NMFS Gear Entanglement reports are located at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/reports/index.html
ii

The two most recent right whale trap/pot fishery groundline entanglement involved floating and not sinking line.
These were right whale 3911 (2010) and right whale 3311 (2011).
iii

https://s3.amazonaws.com/nefmc.org/NEFMC-PRD-RW-Presentation_Final_rvsd.pdf

iv

U.S. Atlantic and Gulf of Mexico Draft Marine Mammal Stock Assessment, North Atlantic right whale
(Eubalaena glacialis): Western Atlantic Stock, 2019 draft report
v

Knowlton, A.R., P.K. Hamilton, M.K. Marx, H.M. Pettis and S.D. Kraus. 2012. Monitoring North Atlantic right
whale Eubalaena glacialis entanglement rates: a 30 year retrospective. Mar. Ecol. Prog. Ser. 466:293–302.
vi

NOAA Fisheries’ 2000-2018 Right Whale Incident Data Spreadsheet, located at
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/20002018_right_whale_incident_data_3_19_19v.xlsx.

11

Addendum D
Patrice McCarron
From:
Sent:
To:
Subject:

Colleen Coogan - NOAA Federal 
Thursday, April 18, 2019 11:16 AM
_NMFS GAR ALWTRP members
Take reduction target approaches considered

Categories:

Purple category

TRT Members and Alternates:
Good morning.
Mike Asaro and I have received thoughtful questions from some of you regarding the take reduction
target that we identified in my April 5th email to you all. We thought it would be helpful to share our
thinking with you in advance of the meeting.
As we tackled this question, we considered several potential approaches to assigning unattributed
mortalities and serious injury to Canada or U.S. fisheries. Below is our assessment of these different
approaches.
Approach 1: One approach would be to apply the ratio of gear associated with documented mortalities
and serious injuries (M/SI) that has been identified to country's fishery across the unattributed M/SI
cases to establish the portion of M/SI that should be assigned to each country. Under this approach, the
U.S. contribution to M/SI for the period between 2012-2016 would be about twice PBR (meriting a 50%
reduction target). Due primarily to 2016 and 2017 documented entanglements, the U.S. portion of M/SI
under this approach would drop during the 2014 - 2018 time period (data are still preliminary) to about
PBR.
Discussion: Given the high level of scrutiny that the Gulf of St. Lawrence has been under since 2017 (4 - 6
aircraft actively surveying the Gulf - a fairly closed system so high detection rates) and, the highly
recognizable rope used in the snow crab fishery (i.e. gear marking is not required to identify it -even
outside of the Gulf of St. Lawrence), takes in the snow crab fishery, particularly within the Gulf of St.
Lawrence, have a higher likelihood of being documented and identified than takes in gear from other
portions of right whales’ range. For example, takes in open waters of the Gulf of Maine, where carcasses
can drift further offshore, would be less likely to be detected. Some years, carcasses in the Gulf of Maine
or other New England waters are detected with entanglement injuries but no gear. And as you know,
even when gear is retrieved, our ability to accurately identify and assign retrieved rope to other fisheries
continues to be limited under current gear marking schemes.
Conclusion: Given the many variables that allow us to identify gear on right whales (presence or absence,
gear marking or other recognition factors, detection/observer effort overlap with fishery, etc), we do not
consider the subset of entanglements with retrieved gear that can be identified to be a representative
ratio toward apportioning unattributed M/SI cases. We opted not to pursue this approach.
Approach 2: Apportion PBR and unattributed M/SI according to the fraction of time that right whales
spend in each country.
Discussion: This approach is consistent with the 2016 Guidelines for Preparing Stock Assessment
Reports. In recent years, up to half of the right whale populat ion appears to spend up to six months, in the
Gulf of St. Lawrence. Following the 2016 Guidelines which call for consideration of residency patterns, we
could reasonably assign 25% of the PBR to Canada and 75% to the U.S, dropping the U.S. PBR to 0.68.
1

Similarly, the relative amount of time that North Atlantic right whales are exposed to fishing gear in U.S.
waters exceeds that in Canadian waters. Consequently, up to 75% of the unattributed M/SI could be
assigned to U.S. gear based on the duration of exposure. The reduction in M/SI following this assignment
of PBR would have generated the highest target risk reduction for U.S. fisheries (90 to 93%).
Conclusion: Because our Stock Assessment Reports have not included a determination on the fraction of
time North Atlantic right whales spend in U.S. and Canadian waters, we do not have a data-based
residency estimate to apply at this time. Additionally, area closures, sinking ground lines, weak links, and
other risk reduction efforts taken by U.S. fishermen justify a reduced assignment of the impact of U.S. gear
on right whales relative to Canadian gear. Therefore we did not choose to apply this approach.
Approach 3: Apportion unattributed M/SI equally between U.S. and Canada.
Discussion: Although right whales spend more time in U.S. waters, area closures, sinking ground lines,
weak links, and other risk reduction efforts taken by U.S. fishermen reduce the impact of U.S. gear on
right whales relative to Canadian gear. For most of the period considered in our M/SI estimates - that is,
until 2018 - there were no targeted right whale risk reduction measures to prevent entanglements in
Canadian fisheries.
Conclusion: This is the approach we took, identified in the April 5th email. Apportioning half of the
unattributed M/SI entanglements to U.S. and half to Canada results in a target risk reduction for U.S.
fisheries of 60% to 80%.
Additionally, we want to share a few other considerations that shaped out thinking:
 In 2018, Canada implemented new regulations in the Gulf of St. Lawrence to protect right whales

from entanglement in the Gulf to fishing gear. These regulations were likely responsible for the
decrease in observed entanglements in that area for 2018. If they continue to implement
closures and monitoring in this area of high co-occurrence of right whales and snow crab gear,
Canadian gear may not be identified as responsible for a greater percentage of take in future
years.
 During that same year of intensive monitoring of the Gulf of St. Lawrence, two dead right whales
with no gear remaining but showing signs of acute entanglement were observed in New
England waters. USCG hindcast models did not indicate these whales came any great distance
from where they were documented. Right whale carcasses do decompose quickly in the ocean
so given the USCG hindcasts, we cannot attribute these mortalities to Canadian fisheries.
 Right whales have demonstrated high variability in their residency patterns in some of what we
previously considered to be key habitats. Although their stay duration in some areas has
decreased, surveys and acoustic detections confirm that these habitats have not been entirely
abandoned. We need to ensure that our regulations need to include measures that are more
resilient to changes in right whale distribution, as well as in fishery distribution patterns. (i.e.,
they will protect right whales no matter what their residency patterns). Past use and persistent
occurrence remains the greatest predictor we have for future distribution.
Canada's involvement in Take Reduction efforts: Under the MMPA, the TRP process does not enable or
require Canada to directly participate in the U.S. TRT process. However, bilateral engagement has been
amplified and will continue with an eye toward continued and sustainable fishery mitigation measures
throughout the North Atlantic right whale population’s range.
As has been true since the TRT began deliberations over 20 years ago, we are challenged by our inability
to precisely identify how and where right whale entanglements occur. Nearly 100 right whales a year
exhibit new scars indicating interactions with rope. Despite numerous efforts and the ongoing guidance
of the TRT, we have not been successful at bringing the rate of mortalities and serious injuries in U.S.
2

fixed gear fisheries as low as needed to meet and sustain the PBR prescribed by the MMPA for such an
endangered population. Given the reduced rate of calving, the rapid decline in the North Atlantic right
whale population in just a few years, and the evidence of a continued high rate of entanglement, it is our
best judgment that both U.S. and Canada must take and sustain additional efforts to reduce the mortality
and serious injuries in fisheries.
Thank you all for thinking carefully about our challenges next week, and weighing these
considerations. We look forward to working with you in Providence.
Colleen and Mike
--

Colleen Coogan

Marine Mammal Take Reduction Team Coordinator
NMFS, Greater Atlantic Region

978 281-9181

3

Addendum E
Patrice McCarron
From:
Sent:
To:
Cc:
Subject:

Allison Henry - NOAA Federal 
Monday, December 28, 2020 8:19 AM
Patrice McCarron
David Morin
Re: Right whale data request

Follow Up Flag:
Flag Status:

Follow up
Flagged

Hi, Patrice, 
 
Colleen forwarded you the spreadsheet I was prepping for you and the rest of the TRT members. Along with adding the 
2019 events, I did make a few minor corrections to a handful of previous events, so definitely use this updated version 
for any analysis. 
 
Based on Colleen's email it looks like this will be on the TRT website soon so you'll have a new link to provide. 
 
Happy Holidays to you as well! 
Allison 
 
On Wed, Dec 23, 2020 at 4:40 PM Patrice McCarron  wrote: 
Hi Allison 
  
Thanks for the note. I was wondering if I got lost in the end of the year shuffle but hadn’t found my way to get an email 
out to check in! 
Glad that it is in the works. It would be great if I have it in hand at the new year so I can wrap my head around the 
official data as we prepare to comment on the next RW SAR and the draft rules and biop.  
There are so many iterations in the media that it gets confusing.  
  
As a side issue, it would be good to have a way to cite this data directly (rather than just NMFS) as I am often asked 
about data sources. For the last year and half, I have been able to send the link to the spreadsheet that Dave gave to 
the TRT in April. Would be good if we have a common source of info to reference. Not sure if that is possible.  
  
Happy Holidays – I hope you and your family are doing well.  
It sure has been one crazy year! 
 
Patrice 
1

  
***************** 
Patrice McCarron 
Executive Director, Maine Lobstermen’s Association 
  
From: Allison Henry ‐ NOAA Federal   
Sent: Tuesday, December 22, 2020 4:04 PM 
To: Patrice McCarron  
Cc: David Morin  
Subject: Re: Right whale data request 
  
Hi, Patrice, 
  
I promise I have not forgotten this request. I'm just waiting on some sighting history information that hopefully will be 
coming by next week. I apologize for not checking in with you sooner. 
  
Happy Solstice ‐ I hope everything gets brighter along with the days! 
Allison 
  
On Wed, Oct 14, 2020 at 6:04 PM Patrice McCarron  wrote: 
Hi Allison 
  
The most recent ‘official’ data I have access to is the spreadsheet prepared in March 2019 for the April TRT meeting. 
It is posted at the bottom of this page: 
https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/19_april_2019_trt_meeting.
html 
  
It would be great to see all of the data, including non‐human, to get a sense of how many there are in that data set. 
For timing, I’d love it as soon as you are able to do it. I really have no idea what the official data says for the end of 
2018 or 2019, so I’d like to get up to speed on where things are truly at. 
2

  
General fields based off Dave’s spreadsheet for consistency sake (to the extent that these are available). But, I’m 
happy to take whatever you have ready to go.  
  
Date first observed 
RW ID/Name 
NMFS ID 
Location description 
Narrative 
Initial condition 
Exam 
Cause (EN, VS, etc) 
Fate: MT, SI, NS, PR 
Value against PBR 
Country of origin 
Country of origin conf code 
Gear analysis 
Gear type 
Gear retrieved 
Gear analysis 
  
If there are any fishery notes or rope size, that would be great, but I’m guessing that has not all been analyzed. 
  
I really appreciate this.  
Thank you! 
Patrice 
  
3

***************** 
Patrice McCarron 
Executive Director, Maine Lobstermen’s Association 
  
From: Allison Henry ‐ NOAA Federal   
Sent: Monday, October 12, 2020 12:52 PM 
To: Patrice McCarron  
Cc: David Morin  
Subject: Re: Right whale data request 
  
Hi, Patrice, 
  
Sorry for the late response. Yes, these data are hard to track and I appreciate you coming to me directly. I'm happy to 
pull them for you ‐ when do you need them by and what fields are you looking for? I assume the usual basic sighting 
info (date, general location, narrative) and determination results. Do you want all RW events or just the ones with 
confirmed human interactions? Since my focus is the whale and its outcome, I'll let Dave (cc'd) add in the relevant 
gear data to ensure that component is the most up to date as well. 
  
I'm doing as well as can be expected in these crazy times and hope you are as well. 
  
Cheers, 
Allison 
  
On Tue, Oct 6, 2020 at 2:17 PM Patrice McCarron  wrote: 
Hi Allison 
  
Can you please send me a spreadsheet with the RW serious injury and mortality from 2010 to present (date of most 
up to date info)? 
This information is very difficult to track and I want to be sure I am up to date on NMFS’ determinations for these 
entanglements. 
  
4

I hope you are well with all that is going on these days. 
  
Thank you. 
Patrice 
  
  
  
‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐‐ 
Patrice McCarron 
Maine Lobstermen's Association 
2 Storer St, Suite 203, Kennebunk, ME 04043 
207‐967‐4555 (office) * 207‐205‐4544 (cell) 
Not a member? Join today! www.mainelobstermen.org 
  
 
 
  
‐‐  
Allison Henry 
Fishery Biologist 
NOAA Fisheries 
[email protected] 
508.495.2048 
http://www.nefsc.noaa.gov/psb/ 

 
To help protect y ou r priv acy , Microsoft Office prev ented automatic download of this picture from the Internet.

 
 
 
  
‐‐  
5

Allison Henry (pronouns: she/her) 
Fishery Biologist, NEFSC 
NOAA Fisheries | U.S. Department of Commerce 
[email protected] 
508.495.2048 
http://www.nefsc.noaa.gov/psb/ 

 
To help protect y ou r priv acy , Microsoft Office prev ented automatic download of this picture from the Internet.

 
 
 
 
‐‐  
Allison Henry (pronouns: she/her) 
Fishery Biologist, NEFSC 
NOAA Fisheries | U.S. Department of Commerce 
[email protected] 
508.495.2048 
http://www.nefsc.noaa.gov/psb/ 

 
To help protect y ou r
priv acy , Micro so ft Office
prev ented au tomatic
download of this pictu re
from the Internet.

 

6

Addendum E, cont
Patrice McCarron
From:
Sent:
To:
Cc:
Subject:
Attachments:

Colleen Coogan - NOAA Federal 
Thursday, December 24, 2020 11:55 AM
Patrice McCarron
Allison Henry - NOAA Federal; David Morin - NOAA Federal; Marisa Trego - NOAA Affiliate; Kate
Swails; Jennifer Goebel; Jennifer Anderson
Re: Boston Globe article on RW
2000-2019_right_whale_incident_data_12_23_20v.xlsx

Follow Up Flag:
Flag Status:

Follow up
Flagged

Patrice,
Rather than wait until we have the fully vetted 2020 entanglement incident analyses, Allison Henry
has provided the attached 2000 to 2019 updated right whale incident data. We will share with the full
team early in the New Year.
This includes all incidents, not just entanglements, and not all listed incidents are serious injuries and
mortalities so as usual please note the column header descriptions and caveats (described in the first
two tabs) when filtering the data.
We agree with you that Dave Abel's reported numbers are not supported by these data.
Thanks to Allison for getting this to us!
And Merry Christmas, hope you and your family have a happy and healthy 2021!
 
On Fri, Dec 18, 2020 at 4:57 PM Patrice McCarron  wrote: 
Hi Colleen 
  
I just read Dave Abel’s article on RW in the Globe from December 17, and I question a few of the facts in his piece. 
Unfortunately, I do not have access to the most up to date data, so I am not able to do that on my own. Are you able to 
clarify whether or not these statements are fact? 
  

“Over the past decade, the population of right whales has plummeted by more than a
quarter, and millions of vertical buoy lines used in the Gulf of Maine have been the
leading cause of death” 
  
I am not aware of any data that indicates that “millions of VBL used in the GOM have been the leading cause of death.” 
1

  
  

“Between 2010 and 2019, 43 right whales were found to have died as a result of
entanglements from the lines that extend from buoys at the surface to traps on the
seafloor, according to the National Marine Fisheries Service. By contrast, 14 are known to
have died as a result of vessel strikes.” 
  
The table that Dave Morin shared with the TRT for the April 2019 meeting shows from 2010 to 2018, there were 23 ENT 
mortalities and 20 VS mortalities. The numbers cited by Abel don’t seem to make sense in light of the data from last 
year. Can you clarify if Abel’s numbers are accurate? 
  
Here is a link to the article, which I’m sure you have already read. 
  
https://www.bostonglobe.com/2020/12/17/metro/major‐effort‐protect‐endangered‐whales‐state‐officials‐plan‐ban‐
lobster‐fishing‐several‐months‐year/ 
  
I appreciate your feedback on this. Thank you Colleen! 
Patrice 
  
  
************** 
Patrice McCarron 
Executive Director, Maine Lobstermen’s Association 
President, Maine Lobstermen’s Community Alliance 
207‐967‐4555 office * 207‐205‐4544 cell 
2 Storer St, Suite 2013, Kennebunk, ME 04043 
  
 
 
 
‐‐  
2

Colleen Coogan
Marine Mammal Sea Turtle Team 
NMFS, Greater Atlantic Region 

Desk: 978 281-9181
Cell: 978 675-5562 - if texting please identify yourself in initial text
ALWTRT current webpage
ALWTRT archived pages
MARINE ANIMAL HOTLINE: 866-755-NOAA (6622)

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 1 of 16

Addendum F
IN THE UNITED STATES DISTRICT COURT FOR THE DISTRICT OF COLUMBIA
CENTER FOR BIOLOGICAL
DIVERSITY et al.,
Plaintiffs,
v.
WILBUR ROSS, et al.,
Federal Defendants, and
MAINE LOBSTERMEN’S ASSOCIATION,
INC., and
MASSACHUSETTS LOBSTERMEN’S
ASSOCIATION,
Defendant-Intervenors.

Civil Action Nos. 18-112 (JEB)

Declaration of Noah Oppenheim
In support of Intervenor-Defendants’ Remedy Brief
I, Noah Oppenheim, state and declare as follows:
1. I am the Principal of Homarus Strategies, a Limited Liability Corporation formed in
April 2020. Homarus Strategies is a consulting firm focused on enhancing marine resource
sustainability and productivity, supporting coastal communities and their access to the living
marine resources on which they depend. Homarus Strategies is engaged in work on behalf of
commercial fishing organizations to support their engagement in public processes that pertain to
the prosecution of fisheries and to ensure that their voices are heard by decision makers whose
experience rarely includes the perspectives or expertise of professional fishermen who have spent
their careers working at sea.
2. I am a marine scientist and fisheries policy expert who has worked as a federal fisheries
observer in the fixed and mobile gear groundfish fisheries in the Bering Sea and as a commercial
salmon fisherman in Alaska. I received master’s degrees in marine biology and marine policy from
the University of Maine’s School of Marine Sciences. The focus of my graduate research was the
American lobster fishery in New England. I developed a population dynamics model forecasting
lobster fishery recruitment and commercial harvest for fishing areas from Rhode Island to New
Brunswick, Canada based on a survey of larval lobster abundance and environmental factors

1

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 2 of 16

including warming ocean temperatures driven by climate change. I also studied the perceptions
and utility of scientific information and fishery management policies from the perspectives of
lobster fishermen for whom scientific information is sometimes intended but often not
appropriately designed or scaled.
3. During my graduate studies from 2013-2016 involving research on the American lobster
fishery, I became familiar with various measures implemented to reduce entanglement risk to large
whales from lobster gear, including the use of colored line marking to identify gear with its fishery
of origin, weak links, the use of line that sinks rather than floats between traps set on bottom, and
regulatory requirements for trawling (colloquially known as ‘trawls’ or ‘gangs’) multiple traps on
bottom that are connected to a buoy at the surface via a vertical line at one or both ends of the
trawl. I also became familiar with measures being developed or proposed to further reduce alleged
whale entanglements in the American lobster fishery, including ‘cutter’ systems, expansion of
weak link systems in buoy lines and the development of ‘pop-up buoy gear’ (also known as ‘oncall’, ‘ropeless’, or ‘buoy line-less’ gear, although a majority of such systems include buoys and
one or more segments of rope). During my studies I engaged with numerous commercial
lobstermen, marine scientists, and fishery managers about the various regulatory and technological
proposals to address whale entanglement in the lobster fishery, including the viability of using
pop-up buoy gear.
4. Pop-up buoy gear is class of fishing equipment that removes or greatly reduces static
vertical lines in the water column as a gear retrieval system and instead uses various alternative
buoyancy mechanisms and communications technologies to mark the location of fixed gear,
identify the owner/operator of the gear, and retrieve the gear. Most prototype or commercially
available pop-up buoy gear equipment uses the submersion of a buoyancy device and acoustic
signaling to actuate the surfacing of the buoyancy device. Pop-up buoy gear can be divided into
two primary types or classes: ‘lift bag gear’ which uses compressed air (for example, SCUBA
tanks) to fill a bag to bring submerged gear to the surface for retrieval; and ‘remote coupler gear’
which uses coiled or spooled lines and buoys that are released from traps or separate weighted

2

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 3 of 16

anchors to reach the surface using a timed-release mechanism or after receiving an acoustic signal
(Figure 1). Some remote coupler-type pop-up buoy gear systems require the use of a destructible
component that must be reloaded for re-use. Many pop-up buoy gear systems require the use of
GPS-based mapping platforms, specialized networked telecommunications equipment, acoustic
modems for transmitting coded acoustic signals, and specialized equipment for re-coiling, rearming, or re-deploying the equipment.

Figure 1: A diagram illustrating two types of pop-up buoy gear systems. The top diagram
illustrates remote coupler gear and the bottom diagram illustrates lift bag gear. Accessed from
the California Ocean Protection Council website at www.opc.ca.gov.
5. From January 2016 through January 2017 I was a Sea Grant Policy Fellow in the US
Congress. During this time, I was responsible for the natural resources portfolio in the office of
Congressman Jared Huffman, at the time the Ranking Member of the Water, Power and Oceans
Subcommittee of the House Natural Resources Committee. My duties as Policy Fellow included
legislative development, office and committee engagement on state and federal fisheries policy
matters, assistance with executing the oversight functions of the Congress over the National
Oceanic and Atmospheric Administration (“NOAA”) (including the National Marine Fisheries

3

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 4 of 16

Service or “NMFS”), and engaging with the constituents of California’s second congressional
district.
6. During my tenure with Congressman Huffman I became aware of the issue of whale
entanglement in the west coast Dungeness crab fishery as well as various proposed solutions to
minimize and mitigate interactions between ESA-listed whales and Dungeness crab fishing gear.
During this time I became aware of the existence of proposals to test pop-up buoy gear in
Dungeness crab fishing grounds, as well as the proposals by some non-governmental organizations
to mandate its use in the Dungeness crab fishery.
7. From February 2017 to April 2020 I was the Executive Director of the Pacific Coast
Federation of Fishermen’s Associations (“PCFFA”) and PCFFA’s sister organization, the Institute
for Fisheries Resources (“IFR”).1 In that capacity I directed all of PCFFA’s and IFR’s fishery
management policy, environmental advocacy, and litigation in support of the commercial fishing
communities of the West Coast. IFR and PCFFA are especially engaged in legal action to prevent
harm to the living marine resources on which their members depend as well as to prevent the
implementation of policies that unduly or arbitrarily preclude their access to those resources.
8. In the course of executing my responsibilities at PCFFA and IFR I engaged with
numerous Dungeness crab fishermen about their experience with and concerns about pop-up buoy
gear. I worked closely with two Dungeness crab fishermen who have first-hand knowledge of
buoy-less or pop-up buoy gear systems which they tested from their vessels.

1

PCFFA is a 501(c)(5) nonprofit trade association established in 1976. PCFFA is the largest trade organization of
commercial fishing families on the west coast. PCFFA is a federation of 15 smaller commercial fishermen’s
associations, vessel owners’ associations, port associations, and marketing associations, with member associations in
most major ports in California north of Point Conception. Collectively, PCFFA’s port and member associations
represent approximately 750 commercial fishing families West-Coast-wide who are small and mid-sized
commercial fishing boat owners and operators, most of whom derive part or all of their income from the harvesting
of Dungeness crabs.
IFR is a 501(c)(3) non-profit, public interest marine resources protection and conservation organization incorporated
in the State of California which is closely affiliated with PCFFA and with similar Board structure, general
membership, and staff. IFR was created in 1993 by PCFFA to help fund, manage, and advocate for PCFFA’s
fisheries habitat conservation and restoration agenda, particularly for protecting and restoring and improving
fisheries that have suffered from poor inland and coastal water quality and the impacts of climate change including
drought and harmful algal blooms. IFR has many supporting members coastwide, most of whom are commercial
fishermen and women, or individuals who have a personal interest in protecting fish and the integrity of seafood
markets.

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 5 of 16

9. In my position as Executive Director of IFR, I also supervised and directed all of IFR’s
many fisheries conservation programs in Oregon, Washington, and California. Much of IFR’s
work focuses on efforts to restore and protect fishery resources within the coastal waters and
watersheds of these three states. IFR, in particular, has been an active and important voice in
habitat protection and restoration issues coastwide for the benefit of increased harvest of public
trust fishery resources. I am currently the commercial fishing representative to the Pacific Fishery
Management Council’s Habitat Committee.
10. The California Dungeness crab fishery and the New England lobster fishery are similar
in many respects. Each are considered models of sustainable fishery management in their region
and populations of Dungeness crabs and lobsters are stable and healthy throughout core ranges of
both fisheries. These fisheries have developed similar management strategies that are implemented
through differing management measures. Each have systems of limited entry, trap limits, size
limits and protections of females or gravid females. The economic model for both fisheries is
dependent upon a high volume of landings, requiring significant effort by repeatedly retrieving
and redeploying traps. Dungeness crab fishermen can haul and redeploy 300-400 traps per day
which is similar to some Maine lobstermen who fish further from shore on larger vessels in order
to remain competitive. Others, who fish in smaller boats closer to shore, would haul on average
200 or less traps per day.
11. Both the California Dungeness crab fishery and American lobster fishery are required
by law to affix a buoy attached by a line to enable the location of gear, identify the individual to
whom the gear belongs, and to provide a mechanism by which to retrieve the gear from the
seafloor. While the lobster fishery allows for the deployment of multiple traps on bottom, known
as a ‘trawl’ or a ‘gang’, this practice is unlawful in the Dungeness crab fishery. In the Dungeness
crab fishery, each line and buoy setup is coiled and placed entirely within its corresponding trap
to maximize stacking volume and to increase safety and handling efficiency on deck (Figure 2). A
typical Dungeness crab trap, line, and buoy costs around $200. An equivalent set-up in the New
England lobster fishery also costs around $200.

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 6 of 16

Figure 2. A standard West Coast Dungeness crab trap with main buoy and single trailer buoy
setup indicated. Source: Oregon Department of Fish and Wildlife.
12. In California, Dungeness crab fishing occurs from November 15th to July 15th. Frequent
intense storms and strong currents throughout the water column can flip and transport fishing gear
and mobilize the ocean substrate to such a degree that traps become buried in the sand, often
requiring the use of specialized high-velocity water pumps to retrieve them; the nozzles attached
to these pumps must ‘chase’ a line with a buoy to a stuck trap in order to retrieve it.
13. The American lobster fishery is open year-round with the exception of targeted closures
implemented to protect North Atlantic right whales. However, the majority (~80%) of Maine
lobstermen hold only state licenses and thus are limited to fishing in state waters located within 3
miles from shore. These vessels typically fish from May through November. Those who hold
federal American lobster permits are more likely to fish year-round. Lobstermen who fish in the
Outer Cape Cod area and in Downeast Maine also work in areas with intense bottom currents and
tides which requires additional ballast to hold gear in place and prevent gear loss.
14. A marine heat wave in the Pacific Ocean that began in late 2013 and persisted for three
years affected the timing and distribution of marine mammals off the coast of California. It also
caused an increase in the abundance and toxicity of various Pseudo-nitzschia plankton species

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 7 of 16

which are sometimes known to produce elevated levels of the potent neurotoxin, domoic acid.
Concentrations of domoic acid exceeding US Food and Drug Administration (FDA) action levels
were detected in Dungeness crabs prior to the scheduled opening of the 2015/16 commercial
fishing season in November, resulting in five month delay and a phased-in opening of the fishery.
This resulted in a significantly greater than normal concentration of fishing gear that corresponded
with a very early springtime migration of endangered humpback whales. The whales swam
abnormally close to shore in search of forage, resulting in a high level of interactions between
fishing gear and humpback whales. According to NOAA, there were 19 confirmed entanglements
of humpback whales with California Dungeness crab fishing gear in 2016, compared with an
average of 0.84 confirmed entanglements with humpback whales over the previous thirteen years
(2003-2015).
15. In September 2015, the California Department of Fish and Wildlife (CDFW), in
partnership with California Ocean Protection Council and National Marine Fisheries Service,
established the California Dungeness Crab Fishing Gear Working Group (“Working Group”) to
address an increase in large whale entanglements in Dungeness crab fishing gear. From July
2019 to April 2020 I was a member of the California Dungeness Crab Fishing Gear Working
Group (“Working Group”) which developed fishing gear best practices to reduce entanglement
risk. The Working Group identified four factors that served as primary indicators of increased
risk of entanglements between ESA-listed whales and commercial fishing gear to be used in a
management framework called the Risk Assessment and Mitigation Program (“RAMP”).
16. In October 2017 the Center for Biological Diversity (CBD) filed a lawsuit against the
California Department of Fish and Wildlife (CDFW) alleging that continued management of the
California Dungeness crab fishery violated the ESA due to the occurrence of ‘take’ of ESA-listed
Distinct Population Segments (DPS) of humpback whales and other listed species absent an
Incidental Take Permit (“ITP”).2 In November 2017 the PCFFA Board of Directors voted to seek

2

CBD v. Bonham, US. Dist. Ct. California, N. Dist, No. 3:17-cv-05685-MMC (“CBD v. Bonham”)

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 8 of 16

to join CBD v. Bonham as Defendant-Intervenors. In March 2018 PCFFA’s motion to intervene
was filed and subsequently approved.
17. In July 2018 I participated in a meeting convened by pop-up fishing gear proponents
with fishing industry members, CDFW Law Enforcement Officers, and pop-up gear
manufacturers. The meeting included presentations from the manufacturers of ‘remote coupler’
and ‘lift bag’ systems and discussions about the various impediments and problems with each
system, including challenges of use on board vessels, challenges with the interaction of pop-up
buoy gear with mobile and other fixed gear, and challenges for law enforcement officers regarding
location, retrieval, and redeployment of pop-up gear.
18. In November 2018 CDFW announced it would develop a Habitat Conservation Plan
pursuant to an application for an ITP for its management of the Dungeness Crab Fishery. In March
2019, Judge Maxine Chesney of the US District Court in San Francisco informed the parties to
CBD v. Bonham she was inclined to rule in favor of the plaintiff’s motion for summary judgment
resulting in a settlement agreement for a stay agreement signed by all parties dated March 26,
2019. CBD attorneys insisted on the inclusion of provisions to the stay agreement for certain
fishing areas to be “only open to ropeless fishing gear by default” and for “[CDFW to] continue to
support development of ropeless gear technology, or any other alternative gear, and explicitly
allow for its testing and use in the RAMP regulation”3. Further, the settlement requires CDFW to
“…amend existing regulations or finalize new regulations by November 1, 2020, that allow
alternate gear, including ropeless gear, that meets the enforcement criteria to be used in any area
closed to commercial Dungeness crab fishing to protect whales or sea turtles”4.
19. In April 2019 I attended the Atlantic Large Whale Take Reduction Team meeting and
engaged with New England lobstermen, scientists, agency staff, and environmental nonprofit
organization staff about risk assessment and mitigation approaches in the New England lobster

3
4

Case 3:17-cv-05685-MMC Document 71 Exhibit A pp. 2
ID. at 4.

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 9 of 16

fishery. I specifically explored the state of knowledge and engineering development of pop-up
buoy gear.
20. I am familiar with three California commercial Dungeness crab fishermen who have
tested pop-up buoy gear systems on their vessels. I have worked extensively with two of them,
Captain John Mellor of San Francisco and Captain Dick Ogg of Bodega Bay, to understand their
experience testing this gear and its potential as an entanglement mitigation strategy that can be
scaled across the fishery. Each of these fishermen has experienced operational and technical
challenges with this gear and have stated that they do not believe pop-up buoy gear is compatible
with commercial fishing as it currently exists.
21. Mr. Mellor tested the FioBuoy (spooled line) and Desert Star (line-in-bag) pop-up
buoy gear systems affixed to his Dungeness crab traps in San Francisco Bay, California, a sheltered
area with limited wave action, in shallow water at slack tide with little wind (atypical conditions
for the Dungeness crab fishery).5 He successfully deployed and retrieved each type of pop-up buoy
gear once. He noted that on the final deployment it became difficult to determine the location of
the buoyant float released from the trap because the tide had begun to run slightly. He reported
that he does not believe the equipment he tested to be compatible with his fishing operation because
the equipment was difficult to handle, there is no spatial mapping software platform or package
that would enable him to confidently track the deployment and retrieval of his gear, and the
equipment was neither robust enough nor compact enough to fit inside his traps for stacking or
handling the rigors of loading and unloading or repeated deployments.
22. Mr. Ogg also tested the FioBuoy and Desert Star pop-up buoy gear affixed to his
Dungeness crab traps in the ocean waters off the coast of Bodega Bay, California in shallow water
with relatively calm sea state conditions. In his first deployment of the FioBuoy system, he was
unsuccessful in activating the gear’s release mechanism, but successfully activated the release
mechanism on a second attempt. He also deployed the Desert Star system, successfully

5

Fiobuoy at http://fiomarine.com/; Desert Star at https://www.desertstar.com/

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Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 10 of 16

establishing communication with the system and confirming the activation of the release
mechanism, although the buoy was not released by the system. He was unable to retrieve the gear
and attempted to have the gear retrieved by a SCUBA diver. Unfortunately, this gear was lost and
is now a piece of marine debris. Mr. Ogg believes the Desert Star gear may have landed underneath
his trap when it contacted the seafloor or that current may have caused his trap to roll over on top
of the pop-up buoy gear. It is common in fixed gear fisheries for traps to land upside-down or roll
over. The successful retrieval of the pop-up buoy systems he tested is dependent upon the gear
landing on bottom in a stable upright position. Based on his experience, Mr. Ogg believes that gear
loss resulting from this system would be a common and costly occurrence under normal fishing
conditions.
23. Mr. Mellor, Mr. Ogg, as well as many other Dungeness crab fishermen who are
familiar with pop-up buoy gear, have described the problems and challenges they see with the use
of the gear. Many of these problems and challenges pertain to the ease of use of the systems,
including but not limited to the amount of time necessary to use them on board their fishing vessels.
24. Pop-up buoy gear systems are currently, or foreseeably, unreliable and cost prohibitive.
Current commercial units cost 10 times or more per trap compared to gear they currently use.
Fishermen would also have to purchase or lease expensive electronic equipment to arm and retrieve
pop-up buoy gear. For example, if a California Dungeness crab fisherman who owns a tier 1 permit
were required to purchase $5,000 pop-up buoy units for each of her 500 traps, she would incur a
cost of $2,500,000. This same fisherman would have to reduce the number of traps she fishes from
500 to 20 if she wished to maintain the same budget for fishing gear after switching to pop-up
buoy gear. The economic model could not be supported by the fishery.
25. Fishermen have observed that they will also have to make extensive, expensive
modifications to their vessels in order to operate many of the pop-up buoy gear systems that are
currently available, requiring new haulers, wiring for electronics, or custom-built platforms or
shelving to stabilize gear while it is being re-coiled or re-spooled.

10

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 11 of 16

26. Mr. Ogg and other fishermen are concerned that the pop-up buoy gear systems that
have been tested have an unacceptably high failure rate, resulting in losses of very expensive
equipment. The typical failure or loss rate of traps for the California Dungeness crab fishery over
the course of a seven month fishing season is around 1.5%. A fisherman might typically cycle
through his or her gear twenty times in a typical season, meaning that the failure or loss rate of a
typical Dungeness crab trap can be estimated to be around one in 1,250 trap pulls. I am not aware
of any existing pop-up buoy gear systems that have a failure rate within two orders of magnitude
of ‘traditional’ line and buoy gear configurations when affixed to Dungeness crab or American
lobster traps.
27. Increased losses of fishing gear due to the failure of pop-up buoy gear to deploy when
signaled would occur if such gear were put into widespread use today. Marine debris resulting
from lost ‘ghost gear’ is a recognized problem in fixed gear fisheries and may pose entanglement
risk to whales.
28. The Ropeless Fishing Consortium was organized to advance the development of
fishing with pop-up buoy gear as a right whale entanglement mitigation solution. The group has
held three workshops in 2017, 2018 and 2019. Dr. Mark Baumgartner of Woods Hole
Oceanographic Institute (WHOI), a founding member of the group, made two significant
observations during the 2019 meeting in response to his question, “When can we go ropeless?” He
observed, 1) “We are in the early stages of development – mostly proof of concept with prototypes
that are not yet designed for operational fishing by hundreds to thousands of fishermen,” and 2)
“Every system you have seen today will need to go through a redesign process to (a) incorporate
an interoperable gear location system, (b) work for fishing at scale (e.g., ruggedized design, long
endurance), and (c) enable mass production at low cost.”6
29. NOAA Fisheries released a concept paper in 2010 to investigate the feasibility of
piloting the use of buoy line-less gear in the Great South Channel Restricted Area (GSCRA)

6

Slide 12 located at https://ropeless.org/wp-content/uploads/sites/112/2019/11/21.Baumgartner_nearterm_developments_for_distribution_20191113.pdf

11

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 12 of 16

which is already closed to trap/pot and gillnet fishing under the Atlantic Large Whale Take
Reduction Plan (TRP). NOAA did not support moving forward with rulemaking to allow buoy
line-less gear to be fished in this closed area citing several reasons including: 1) the potential
increase in risk to large whales from a malfunctioning device (e.g. vertical line present in the
water column for a period of time) compared to the current status quo (i.e. closure), 2) the lack of
creation of an incentive to develop innovative gear, 3) the potential for gear conflicts, 4) the lack
of viable technologies or methods for fishing without buoy lines, and 5) the need to address
regulatory hurdles under the American Lobster Fishery Management Plan and ALWTRP. NMFS
concluded that development of fisheries management measures that would include the use of
buoy line-less gear could be explored in the future if the gear conflict and other regulatory issues
associated with its use were addressed.7
30. Based on conversations I have had with fishermen who have tested this gear in both
California and New England, the issues identified by NOAA in 2010 have not been addressed at
this time. Fishermen continue to observe that the operation of pop-up buoy gear systems
significantly slows the pace of fishing operations, poses safety challenges, and challenges their
ability to operate in a safe, cost effective manner. Fishermen are concerned that there are specific
times at which gear handling would be adversely time-consuming: 1) during retrieval and respooling or re-coiling of gear, 2) during re-arming or resetting of the pop-up release mechanism
itself, 3) during use of any electronic equipment used to arm, set, or locate the gear, and 4)
during the time spent searching for gear that has been moved due by the current. Increased
handling time is exacerbated by cold weather operations, which are common in both the
Dungeness crab and American lobster fisheries. Cold weather significantly decreases fine motor
function and requires the use of gloves, which must be removed to arm most pop-up buoy gear
systems and to operate the interfaces of the electronic equipment used to track deployment
locations and transmit acoustic signals from vessels to the gear. The increased handling time on

7

https://archive.fisheries.noaa.gov/garfo/whaletrp/trt/meetings/MidAtlantic_Southeast_ALWTRT_Materials/Final%20Lineless%20Concept%20Paper%20Nov2010.pdf

12

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 13 of 16

deck required by pop-up buoy gear is a particular concern for fishermen who operate their
vessels alone. Fishermen who fish alone must handle gear on deck while maintaining a vigilant
watch to ensure safe vessel maneuvering within high traffic areas or in a high sea state; several
such fishermen have communicated to me that they would be concerned for their personal safety
if they were to have to use pop-up gear and fish alone. In 2018, 1,390 Maine lobstermen were
Class 1 lobster license holders, which does not allow them to take crew.
31. A Maine commercial lobster fisherman, Kristan Porter, (President of the Maine
Lobstermen’s Association), tested the Desert Star System in 2013 during a research trip to
eastern Australia to investigate potential whale entanglement mitigation tools for the American
lobster fishery. This technology was adopted by some fishermen in the Australian rock lobster
fishery to hide gear from poachers because each trap in that fishery is set out for 30 days and
each trap haul is worth thousands of dollars. The Australian rock lobster fishery is the sole
fishery that operates within lobster fishing grounds, negating gear conflict between fishing
sectors. Mr. Porter hauled 14 single traps during his fishing trip there, whereas he typically hauls
around 200 per day in the Maine lobster fishery. He reported fishing the pop-up system to be
time consuming, frustrating, and tedious. Operation of this equipment required a high level of
skill to properly record each gear set in the system, and to reset the burn wire for the acoustic
release after each haul. Mr. Porter met others in the Australian lobster fishery who were not able
to successfully fish the system. He noted that this technology would not easily transfer to the
New England lobster fishery because the system greatly limits that number of traps that can be
hauled in a day, lobstermen fish much more tightly together, share bottom with other lobstermen
and with fishermen active in other fisheries.8
32. A Massachusetts lobsterman, Dave Casoni, has tested the Desert Star pop-up buoy
gear on several occasions from his fishing vessel. Mr. Casoni has expressed concerns about the

8

https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/March%202018%20Ropeless%20subgroup/
kristan_porter_observations_of_ropless_fishing.pdf

13

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 14 of 16

practicability and use of pop-up buoy gear systems on his fishing vessel and those of his peers.
Mr. Casoni fishes without a hired crew member and does not feel that pop-up buoy gear would be
safe or workable for fishermen operating alone. Additionally, Mr. Casoni has identified the
technologies used in pop-up buoy gear systems he is familiar with as highly complicated when
compared to the relatively simple technology of a traditional buoy line setup. Many commercial
lobstermen are elderly or otherwise have little experience and familiarity with digital technology,
touch screens, and other electronic equipment required to operate many pop-up buoy gear systems.
Mr. Casoni believes that a significant number of commercial lobstermen would be unable to
operate the pop-up buoy gear systems he is familiar with. Required use of these systems would
preclude a significant segment of the lobster fishery from being able to participate, based to a large
extent on their age and familiarity with certain modern technologies.
33. The Atlantic States Marine Fisheries Commission (ASMFC) has jurisdiction over the
Fishery Management Plan for American Lobster, Amendment 3 and its addenda, under the Atlantic
Coastal Fisheries Cooperative Management Act. In June 2018, ASMFC’s Law Enforcement
Committee (LEC) reviewed the enforceability of pop-up buoy gear technologies under
consideration to reduce impacts on right whales. The LEC raised several concerns about the impact
of pop-up buoy gear technology on the enforceability of lobster conservation rules. The LEC found
that the time and cost required for enforcement officers to retrieve and re-deploy pop-up buoy gear
would significantly reduce law enforcement agencies’ ability to ensure compliance with fishery
regulation and lobster conservation laws because gear could not be hauled regularly, resulting in
fewer lobster traps inspected per trip, reducing incentives for compliance. The LEC noted that the
adoption of multiple pop-up buoy gear technologies and retrieval/mapping systems would
represent a financial burden to law enforcement agencies and a logistical challenge for law
enforcement, which would need to be equipped to deal with different systems. There were concerns
raised about the storage and security of trap location information and the potential for poachers to
steal other’s acoustic data and unlawfully activate pop-up buoy gear.

14

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 15 of 16

34. The widespread deployment of pop-up buoy gear in commercial lobster fishing
grounds would result in significant conflict amongst fishermen and between competing gear types.
These conflicts reflect both the spatial incompatibility of mobile gear (trawl gear, troll gear) and
other types of fixed gear (gillnets, longlines, and ‘traditional’ trap equipment) with pop-up buoy
gear that is unmarked at the surface. There are several commercial fisheries that operate within the
same fishing grounds as lobster fisheries, including groundfish trawl fisheries, crab fisheries, and
scallop fisheries. The deployment of pop-up buoy gear in a fixed gear fishery would require that
all other fisheries operating in the area to purchase and use expensive electronic mapping and
communications equipment in order to be able to detect and avoid traps deployed with pop-up
buoy gear. Alternatively, it would require the delineation of zones of the ocean for specific
fisheries or gear types, prioritizing access to resources to some and denying it to others.
35. I am not familiar with any fishery management or marine spatial planning process that
could legally facilitate an ocean zoning scheme that would prevent gear conflict between fishing
sectors if one or more were required to use pop-up buoy gear. An ocean zoning process that
excluded commercial fishing in one or more sectors solely because of the presence of a gear type
from another fishery could be in violation of the guiding principles of the Magnuson-Stevens
Fishery Conservation and Management Act (16 USC §§1801 et seq.) that call for maximized
efficiency in the use of the nation’s fisheries resources. It is my opinion that the prevention of the
efficient operation of mobile and fixed gear fisheries in areas of the US Exclusive Economic Zone
in which pop-up gear is deployed would constitute inefficient management of the nation’s fishery
resources.
36. In addition to the challenges of conforming to fishery management principles espoused
in federal statute, any requirement to use of pop-up buoy gear in the American lobster fishery
would violate both federal and state fishery management laws. Federal gear marking requirements
for the American lobster fishery include Universal Trap/Pot Requirements on the buoy, including
vessel registration number and/or US vessel documentation number, federal commercial fishing
permit number or positive identification as required by the vessel’s home-port state. Lobster trawls

15

Case 1:18-cv-00112-JEB Document 115-7 Filed 06/18/20 Page 16 of 16

of three or fewer traps fished in federal waters must be attached to and marked with a single buoy;
lobster trap trawls of more than three traps must be marked with a radar reflector and a single flag
or pennant on the westernmost end and radar reflector only on the easternmost end. Individual
states also have gear marking requirements.9 For example, Maine law states that “[a] person may
not fish for or take lobster by any method other than conventional lobster traps…”10 and requires
that “[a] lobster or crab trap or trawl must be marked by a lobster buoy as described in subsections
3 and 4. The buoy must be visible at the surface.”11 In Massachusetts, state regulations require a
single buoy with a flag to mark the north (or west) end of the trawl and a double buoy on the south
(or east) end. The double buoy can be two buoys tied together or can be two buoys on a 3- to 4foot-long stick.
37. Based on my professional experience and for the reasons stated above, it is my opinion
and belief that there does not currently exist a pop-up buoy gear system that could be practicably
implemented for use today in the Dungeness crab fishery or the American lobster fishery. Further,
it is my opinion and belief that there are significant legal, operational, safety, and economic
challenges that would be necessary to address, likely requiring years of research, testing, and
communication with commercial fisheries stakeholders as well as changes to one or more states’
laws before pop-up buoy gear could become feasible for widespread use in any American fixed
gear fishery including Dungeness crab or American lobster fisheries.
I declare under penalty of perjury that the foregoing is true and correct to the best of my
knowledge and belief.
Executed this 18th day of June, 2020, at Brunswick, Maine.

_____________/s/_______________
Noah Oppenheim
9

https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/March%202018%20Ropeless%20subgroup/r
opeless_subgroup_lobster_gear.pdf
10 MRSA, Title 12, §6432(1)
11 MRSA, Title 12, §6432(2)

16

Addendum G

Addendum 2 to MLA
Proposed Rule
Comments

Addendum 2 to MLA Proposed Rule Comments
Patrice McCarron
From:
Sent:
To:
Cc:
Subject:

David Morin - NOAA Federal 
Thursday, August 15, 2019 10:22 AM
Patrice McCarron
John Higgins; Colleen Coogan; Allison Henry; Michael Asaro
Re: Confirm gear determinations

Correct
On Thu, Aug 15, 2019 at 10:16 AM Patrice McCarron  wrote:
Can you explain what you mean by “nearby gear”.

I am asking about the basis of the US designation. I want to be sure I understand it. The condition of the carcass and the
fact that it was anchored in place are the justification for the designation as US gear. This must mean that you have
determined that the whale encountered that gear at or very close to the area where it was sighted; hence, it is US gear.

Do I understand this correctly?

From: David Morin - NOAA Federal 
Sent: Thursday, August 15, 2019 10:10 AM
To: Patrice McCarron 
Cc: John Higgins ; Colleen Coogan ; Allison Henry
; Michael Asaro 
Subject: Re: Confirm gear determinations

Patrice,

The condition of the carcass, which indicated it was a recent entanglement, indicated the country of origin was
U.S. We've never assigned gear type based on nearby gear. I never said anything about the state besides I cannot say
it is MA.

On Thu, Aug 15, 2019 at 9:10 AM Patrice McCarron  wrote:
Thanks Dave. I guess that is part of my confusion, you say “We've never assigned an origin based on gear nearby.”
However, you (or someone) did assign an origin. The origin is “US”, the fishery/gear is “unknown”.
1

If the premise is that it is US gear because it was anchored in place, then doesn’t it hold true that this could not be
Maine gear. The assumption is the entanglement happened in proximity to where it was found. Otherwise, it could
have been gear from anywhere.

I am just trying to understand the rationale of the final designation for this case and its implications.

Thank you.
Patrice

From: David Morin - NOAA Federal 
Sent: Wednesday, August 14, 2019 10:28 AM
To: Patrice McCarron 
Cc: John Higgins ; Colleen Coogan ; Allison Henry
; Michael Asaro 
Subject: Re: Confirm gear determinations

Scientific papers have different interpretations all the time. Very common. The gear team did not author this
paper. We saw a draft but basically at the very end just before publication.

The necropsy report speculated as to the origin of gear and we did not author that report either. No gear was
recovered or analyzed closely. All that exists for that case is the 4 photos I showed you. We've never assigned an
origin based on gear nearby.

On Wed, Aug 14, 2019 at 10:12 AM Patrice McCarron  wrote:
I would also note that the first case is in the published literature and this paper has already been cited widely. I dont
see how you can dismiss one finding from the paper and dismiss another.

Sent from my Verizon, Samsung Galaxy smartphone

2

-------- Original message -------From: Patrice McCarron 
Date: 8/14/19 9:53 AM (GMT-05:00)
To: David Morin - NOAA Federal 
Cc: John Higgins , Colleen Coogan , Allison Henry

Subject: Re: Confirm gear determinations

Hi Dave

For the first one, there should be photos documenting the float buoys and line across the body. According to Allison,
GARFO has those so she was not able to share them. I would appreciate if you would check your files and share those
with me.

A follow up question for that case, if it was anchored in US waters, I assume the entanglement happened at that site
so this would be attributed to Mass gear. I know there is no official designation for that but it is typically noted when
that information is understood.

For the second case, NMFS determined "Monofilament mesh and line of unknown fishery and origin" in the
entanglement report.

You have already confirmed that is the correct determination in a previous email. However, the spreadsheet codes it
as unknown. My question is how does that error get corrected at NMFS?

Thanks again for your time.
Patrice

Sent from my Verizon, Samsung Galaxy smartphone

3

-------- Original message -------From: David Morin - NOAA Federal 
Date: 8/14/19 7:45 AM (GMT-05:00)
To: Patrice McCarron 
Cc: John Higgins , Colleen Coogan , Allison Henry

Subject: Re: Confirm gear determinations

Patrice,

E22-14 - Gear in proximity to a carcass that was no longer present is not enough for us to make a gear
determination. I also have no evidence for "a line of floats lying along its body". However, due to the animal's
anchored state we felt comfortable in calling it U.S. unknown gear. Naturally, it's possible someone had additional
records to could change our determination but I don't have anything currently to change it.

E44-16 - That spreadsheet we provided to the TRT is not something we use, nor am I updating it. It was provided to
the team to provide a simple one-time summary of all right whale cases. We do not code gear into categories for our
determinations like that. I think partly what you're getting at is why didn't we call it gillnet? There was not enough
evidence (no gear recovered, just photographs) to make that conclusion.

Best,
David

On Tue, Aug 13, 2019 at 10:00 PM Patrice McCarron  wrote:
Hi John and Dave

Higgy, great to see you tonight. Here’s the info on the cases I was asking about. I want to close the loop on the gear
determinations. Once I’m clear on NMFS gear determination, I want to be sure I code it properly in the spreadsheet.

4

1. Case NMFS E22-14 (aka IFAW14-156Eg). This is coded as US unknown. Allison Henry said the documentation
is from the Sharp et al, 2019 paper. The Sharp paper says:
“One of the unexamined entangled whales (IFAW14-156Eg) was possibly entangled and anchored in fixed gear
south of Nantucket, MA, USA, based on the presence of a line of floats lying along its body, 2 endlines present in
the initial report images, and a stationary position at sea for multiple days. This carcass could not be examined
by responders due to poor weather. When conditions improved, fixed gear with large polyballs similar to that
documented on the entangled whale were identified at the coordinates of the carcass, but the whale was no
longer present.”

Allison said because it was there for two days in a row, it is deemed US gear. The necropsy report in the Sharp et
al supplement says “Based on the presence of the line with float buoys along the body of the whale, the
entanglement gear type was most likely gillnet” (attached, page 49). This is different than the findings in the
entanglement report. Just want to confirm the gear determination for this whale since the necropsy says gillnet.

2. One of the “unknown” SIM whales from 2016 (NMFS E44-16) has an official finding in the entanglement
report: Monofilament mesh and line of unknown fishery and origin". Dave, you have already confirmed this
finding with me. I just want to understand how you will code it in the spreadsheet so I can update mine.

Thank you!

Patrice

-----------------------------------------------Patrice McCarron
207-967-4555 (office) * 207-205-4544 (cell)

Maine Lobstermen's Association
203 Lafayette Center, Kennebunk, ME 04043
Not a member? Join today! www.mainelobstermen.org

5

Maine Lobstermen's Community Alliance
PO Box 315, Kennebunk, ME 04043
www.mlcalliance.org

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
6

Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

7

Patrice McCarron
From:
Sent:
To:
Cc:
Subject:
Attachments:

David Morin - NOAA Federal 
Wednesday, August 14, 2019 10:11 AM
Patrice McCarron
John Higgins; Colleen Coogan; Allison Henry
Re: Confirm gear determinations
Whale (1).jpg; Whale (2).jpg; Whale (3).jpg; Whale (4).jpg

E22-14 - That whale was spotted 36 NM south of Nantucket, so I don't think it is appropriate to call it MA
gear. Especially since gear was not recovered or analyzed closely. Attached are photos.
That table will not be corrected. It was a one-time supplement for the TRT. GARFO makes the gear determination and
our records and report have it correctly. I'm sure NEFSC will adjust their records to match. Please remember that the
table was a combination of multiple sources and not surprisingly some differences showed up between those sources.

On Wed, Aug 14, 2019 at 9:53 AM Patrice McCarron  wrote:
Hi Dave
For the first one, there should be photos documenting the float buoys and line across the body. According to Allison,
GARFO has those so she was not able to share them. I would appreciate if you would check your files and share those
with me.
A follow up question for that case, if it was anchored in US waters, I assume the entanglement happened at that site so
this would be attributed to Mass gear. I know there is no official designation for that but it is typically noted when that
information is understood.
For the second case, NMFS determined "Monofilament mesh and line of unknown fishery and origin" in the
entanglement report.
You have already confirmed that is the correct determination in a previous email. However, the spreadsheet codes it as
unknown. My question is how does that error get corrected at NMFS?

Thanks again for your time.
Patrice
Sent from my Verizon, Samsung Galaxy smartphone

-------- Original message -------From: David Morin - NOAA Federal 
Date: 8/14/19 7:45 AM (GMT-05:00)
To: Patrice McCarron 
Cc: John Higgins , Colleen Coogan , Allison Henry

Subject: Re: Confirm gear determinations
Patrice,
1

E22-14 - Gear in proximity to a carcass that was no longer present is not enough for us to make a gear determination. I
also have no evidence for "a line of floats lying along its body". However, due to the animal's anchored state we felt
comfortable in calling it U.S. unknown gear. Naturally, it's possible someone had additional records to could change
our determination but I don't have anything currently to change it.
E44-16 - That spreadsheet we provided to the TRT is not something we use, nor am I updating it. It was provided to
the team to provide a simple one-time summary of all right whale cases. We do not code gear into categories for our
determinations like that. I think partly what you're getting at is why didn't we call it gillnet? There was not enough
evidence (no gear recovered, just photographs) to make that conclusion.
Best,
David
On Tue, Aug 13, 2019 at 10:00 PM Patrice McCarron  wrote:
Hi John and Dave

Higgy, great to see you tonight. Here’s the info on the cases I was asking about. I want to close the loop on the gear
determinations. Once I’m clear on NMFS gear determination, I want to be sure I code it properly in the spreadsheet.

1.Case NMFS E22-14 (aka IFAW14-156Eg). This is coded as US unknown. Allison Henry said the documentation is
from the Sharp et al, 2019 paper. The Sharp paper says:
“One of the unexamined entangled whales (IFAW14-156Eg) was possibly entangled and anchored in fixed gear
south of Nantucket, MA, USA, based on the presence of a line of floats lying along its body, 2 endlines present in
the initial report images, and a stationary position at sea for multiple days. This carcass could not be examined by
responders due to poor weather. When conditions improved, fixed gear with large polyballs similar to that
documented on the entangled whale were identified at the coordinates of the carcass, but the whale was no
longer present.”

Allison said because it was there for two days in a row, it is deemed US gear. The necropsy report in the Sharp et
al supplement says “Based on the presence of the line with float buoys along the body of the whale, the
entanglement gear type was most likely gillnet” (attached, page 49). This is different than the findings in the
entanglement report. Just want to confirm the gear determination for this whale since the necropsy says gillnet.

2.One of the “unknown” SIM whales from 2016 (NMFS E44-16) has an official finding in the entanglement report:
Monofilament mesh and line of unknown fishery and origin". Dave, you have already confirmed this finding
with me. I just want to understand how you will code it in the spreadsheet so I can update mine.

Thank you!
2

Patrice

-----------------------------------------------Patrice McCarron
207-967-4555 (office) * 207-205-4544 (cell)

Maine Lobstermen's Association
203 Lafayette Center, Kennebunk, ME 04043
Not a member? Join today! www.mainelobstermen.org

Maine Lobstermen's Community Alliance
PO Box 315, Kennebunk, ME 04043
www.mlcalliance.org

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
3

National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

4

Patrice McCarron
From:
Sent:
To:
Subject:

Allison Henry - NOAA Federal 
Tuesday, August 13, 2019 4:58 PM
Patrice McCarron
Re: questions on entanglement spreadsheet

There are a few guys on the gear team, but I'd start with David Morin.
Glad to be of help. Got your vacation bounce back. Enjoy your time off! I'm going on one soon myself. :)
Allison
On Tue, Aug 13, 2019 at 4:55 PM Patrice McCarron  wrote:
That makes sense. Do you know who at GARFO is responsible for gear determinations?
I really appreciate all of your help.
Patrice
Sent from my Verizon, Samsung Galaxy smartphone

-------- Original message -------From: Allison Henry - NOAA Federal 
Date: 8/13/19 4:28 PM (GMT-05:00)
To: Patrice McCarron 
Subject: Re: questions on entanglement spreadsheet
Hi, Patrice,
Glad you found it helpful. I am not the one who makes decisions about gear type or fishery. I rely on the gear analysts
at GARFO to do that. My hands are already full with the injury and mortality component! When there isn't an identified
fishery, in some cases we can assign it to at minimum a country based on things like freshness of carcass,
weighted/anchored, sighting history, and/or proximity to EEZ among other details. I can't comment on whether or not
it's Massachusetts gear and/or gillnet as that's not my area of expertise and suggest you pose these questions to
GARFO.
Regarding cause of death - Since the carcass was not recovered and a necropsy was unable to be conducted, this is an
event where we apply our Center's mortality criteria (see Caveats tab in that incident spreadsheet). This carcass fits #2
and #3 of the Table 2. entanglement mortality which is why we are considering it confirmed.
Best,
Allison
On Tue, Aug 13, 2019 at 3:59 PM Patrice McCarron  wrote:
The description in the Sharp report sounded like gillnet gear, and this supplement states it clearly, “Based on the
presence of the line with float buoys along the body of the whale, the entanglement gear type was most likely gillnet.”
1

Two questions:
1. Since this whale is anchored and therefore considered to have been entangled in US gear, wouldn’t also be true
that this was entangled in Massachusetts gear given its location?
2. Given the photographic evidence and description of the gear, shouldn’t this case be recorded as gillnet gear? The
findings of the death are “probable”; it seems there is just as much probable evidence that the gear is gillnet gear.

I appreciate your time on this. Thank you.
Patrice

From: Allison Henry - NOAA Federal 
Sent: Tuesday, August 13, 2019 3:32 PM
To: Patrice McCarron 
Subject: Re: questions on entanglement spreadsheet

Hi, Patrice,

Attached is Sharp's paper (if you don't already have it) and the supplemental material which provides more details on
E22-14 (aka IFAW14-156Eg). Mendy and/or David should have the original images for this event. I only have ones
already embedded in documents like Sharp's report.

Allison

On Tue, Aug 13, 2019 at 3:02 PM Patrice McCarron  wrote:
Hi Allison

I am interested in reviewing the necropsy report for this whale (E22-14). Can you send me a link or a copy of the
report?

2

Also, I would like to view the photos of the anchored whale you reference, and are referenced in the Sharp report.
Can you send those as well?

Thank you.
Patrice

From: Patrice McCarron
Sent: Tuesday, August 06, 2019 4:14 PM
To: Allison Henry - NOAA Federal 
Cc: David Morin 
Subject: RE: FW: questions on entanglement spreadsheet

Yes, that explains the mismatch between the reports. I don’t have access to those necropsy reports.
Thank you!

*****************
Patrice McCarron
Executive Director, Maine Lobstermen’s Association

From: Allison Henry - NOAA Federal 
Sent: Tuesday, August 6, 2019 2:32 PM
To: Patrice McCarron 
Cc: David Morin 
Subject: Re: FW: questions on entanglement spreadsheet

Hi, Patrice,

Michael Moore at WHOI created an investigation report with a timeline summary and other details. USCG originally
reported it as a humpback on 9/27 and NMFS did not receive photos to confirm species as a right whale until later
(GARFO can confirm date received. Distributed USCG images to response team on 10/2). A NMFS shorebird survey
documented the carcass in the same position on the following day 9/28 and reported it on 9/29. Weather prevented
a mounted response until 10/4.
3

Images show a fresh carcass with no signs of bloating or emaciation.

I hope that helps,
Allison

On Tue, Aug 6, 2019 at 2:10 PM Patrice McCarron  wrote:
Thanks for the prompt reply.

What is the source of info for E22-14? I only have access to the entanglement report which doesn’t match your
notes.

The Entanglement report states: “USCG aerial survey sighted and documented the animal. Carcass was not reported
until the next day and poor weather prevented an immediate search for the animal. A search conducted days later
did not relocate the carcass.”

And concludes
Gear Type: Unknown
Target Species: Unknown
Gear Description: Red polyball and line visible. Wraps around the right flipper and line is seen laying across the head
and body. Polyball on the ventral side of the whale.
Comments: Photographs do not show any distinguishing characteristics or markings to conduct detailed gear
analysis. Conclusions: Wraps around the right flipper are visible and line is seen laying across the head and body.
Polyball on the ventral side of the whale. Gear of unknown origin.

*****************
Patrice McCarron
Executive Director, Maine Lobstermen’s Association

4

From: Allison Henry - NOAA Federal 
Sent: Tuesday, August 6, 2019 2:04 PM
To: Patrice McCarron 
Cc: David Morin 
Subject: Re: FW: questions on entanglement spreadsheet

Hi, Patrice,

Just back in the office after many days of flying. I'll start with these two cases you asked about specifically and then
go back through the email thread to see if I need to chime in elsewhere.

E22-14: we have as US since carcass appeared to be anchored/weighted in position. Sharp et al 2019 has Proximate
COD = acute entanglement and Ultimate COD = probable drowning/asphyxiation. So, most parsimonious that it was
an acute event in US waters, rather than a chronic one of unknown origin.

Regarding RW 3993 and RW unknown in 2011 - I have no genetic results. Let me check in with the folks at NEA and
see if there's anything new on that front.

Cheers,
Allison

On Tue, Aug 6, 2019 at 1:42 PM Patrice McCarron  wrote:
Hi Allison

Are you able to provide information on these two right whale cases? It is regarding the information in the
spreadsheet distributed by NMFS for the TRT meeting:
It’s at this link:
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/19_april_2019_tr
t_meeting.html, entitled “2000-2018 Right Whale Incident Data 03/19/2019”

I’m sure you have seen the thread that I emailed Dave, but he singled out these two that you may be able to
answer:
5

9/27/2014, RW unknown, E22-14 states “gear of unknown origin”; NMFS entanglement spreadsheet has gear
origin “US”. Shouldn’t this be “first seen in US” and not confirmed in US gear?
2/13/2011, RW 3993 and 3/16/2011, RW unknown. These were potentially the same whale, pending genetic
analysis. What were the results of this? Should this be one record or two?
Thank you.
Patrice
*****************
Patrice McCarron
Executive Director, Maine Lobstermen’s Association

From: David Morin - NOAA Federal 
Sent: Monday, August 5, 2019 3:41 PM
To: Patrice McCarron 
Cc: Allison Henry ; Colleen Coogan ; Mark Minton
; John Higgins ; Michael Asaro 
Subject: Re: questions on entanglement spreadsheet

No. What I'm saying is when I keep track of entanglement cases, I only include cases where gear was documented
on the animal. Cases where entanglement trauma was the only indication, or entrapments such as weirs, NEFSC
also includes those cases as they are needed for SI determinations.

The spreadsheet was meant to give the TRT a general summary of cases and like I stated, not surprisin gly, there are
some errors that slipped through the cracks from such large multiple data sets. My understanding is we are not
providing that spreadsheet on a periodic basis, it was rather meant as a one-time product. Determinations often
change as new information comes forward. Feel free to update your version as you see fit.

On Mon, Aug 5, 2019 at 3:32 PM Patrice McCarron  wrote:
Thanks Dave

Believe me, I understand the confusion surrounding keeping this all straight.

6

Are you saying that those first 6 cases should NOT be included in the entanglement records? I know one is listed
as an SI. Just want to be clear.

Regarding the second set of whales, you have confirmed that case E44-16 should be “monofilament mesh and
line”. However the entanglement spreadsheet has it listed as “gear unknown”. It seem that this field should be
updated on that spreadsheet to MF or NE or something to reflect that information. Is this correct?

*****************
Patrice McCarron
Executive Director, Maine Lobstermen’s Association

From: David Morin - NOAA Federal 
Sent: Monday, August 5, 2019 3:20 PM
To: Patrice McCarron 
Cc: Allison Henry ; Colleen Coogan ; Mark Minton
; John Higgins ; Michael Asaro 
Subject: Re: questions on entanglement spreadsheet

That spreadsheet was mostly NEFSC SI database, with some gear information provided by me. Naturally, as soon
as a database is created it is already out of date. It is very difficult to keep track of all these cases and not
surprisingly when multiple sources are used to compile data some errors or confusion occurs, especially for old
cases

I'm only commenting on the gear aspect of the cases you have listed. NEFSC might be able to provide more
comments.

E03-03 - No gear present
E04-05 - Unclear if entangled or just scars
E06-06 - No gear present
7/05/15 - Herring weir - I don't count these as entanglements in my data
3/01/17 - No gear present
E07-13 - Unclear as to the Cause of Death
7

E44-16 - Our gear report conclusion (this is the official gear determination) - "Monofilament mesh and line of
unknown fishery and origin".
4/16/15 - Without knowing the details... likely the animal does not have enough information to assign it a catalog
number, but can be identified in certain scenarios.
9/04/14 #4001 - No, 1st entangled sighting is in Bay of Fundy. General assumption is rig ht whales can easily travel
50 miles a day. 2 weeks is plenty of time for it to come from U.S.
E22-14 - NEFSC will have to comment on.
2/13/2011, RW 3993 and 3/16/2011, RW unknown - NEFSC will have to comment on.
6/27/2010 - Not sure what happened with this one. Gear appeared to be recovered from necropsy. I believe I
have some photos of the gear, but will need the gear team to check the warehouse to confirm. By the pictures, it
is a mesh, but not monofilament, although again I'm not sure this is the correct associated gear. Hig and Mark please check j062610

On Mon, Aug 5, 2019 at 12:52 PM Patrice McCarron  wrote:
Hi Dave

I’ve finally had time to go through the whale spreadsheet you provided in April. I have a few questions.

Based on my records, you are missing several entanglements:
E03-03 (SI 0.75)
E04-05
E06-06
7/5/2015, RW4140 in a herring weir fishery, NFS
3/1/2017, 2479 in CCB, NSI healing injury, no gear present
E07-13, whale was found dead, but is listed as NS

Can you let me know if these should or should not be included as part of the entanglement database?

8

Questions on Whales with SI/M
E44-06, 12/4/2016, RW 3405, NMFS entanglement report states “monofilament mesh and line of unknown
fishery and origin”; NMFS entanglement sheet has gear type unknown; Why isn’t this recorded as “netting” or
“gillnet” with fishery and origin unknown?

4/6/2015, RW CT04CCB14, how does this case have an incident on or before date recorded if the whale is not in
the RW catalog?

9/4/2014, RW 4001, This whale has an incident date on or after 8/20/20104. This is only 2 weeks. Could this be
assumed to be likely entangled in CN gear?

9/27/2014, RW unknown, E22-14 states “gear of unknown origin”; NMFS entanglement spreadsheet has gear
origin “US”. Shouldn’t this be “first seen in US” and not confirmed in US gear?

2/13/2011, RW 3993 and 3/16/2011, RW unknown. These were potentially the same whale, pending genetic
analysis. What were the results of this? Should this be one record or two?

6/27/2010, RW 1124, “carcass has net marks suggesting drowning from gear entanglement”. Is this evidence of
netting or gillnet involved?

Thanks.
Patrice

**************
Patrice McCarron
9

Executive Director, Maine Lobstermen’s Association
President, Maine Lobstermen’s Community Alliance
207-967-4555 office * 207-205-4544 cell
2 Storer St, Suite 2013, Kennebunk, ME 04043

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-David Morin
Large Whale Entanglement Response Coordinator
Greater Atlantic Fisheries Regional Office
National Marine Fisheries Service, NOAA
Protected Resources Division
10

55 Great Republic Drive
Gloucester, MA 01930
O# 978-282-8472
C# 978-479-9727

-Allison Henry
Fishery Biologist
NOAA Fisheries
[email protected]
508.495.2048
http://www.nefsc.noaa.gov/psb/
To help
protect y our
priv acy ,
Micro so ft
Office
prev ented
auto matic
download of
this pictu re
from the
In ternet.

-Allison Henry
Fishery Biologist
NOAA Fisheries
[email protected]
508.495.2048
http://www.nefsc.noaa.gov/psb/
To help
protect y our
priv acy ,
Micro so ft
Office
prev ented
auto matic
download of
this pictu re
from the
In ternet.

-Allison Henry
Fishery Biologist
NOAA Fisheries
[email protected]
508.495.2048
http://www.nefsc.noaa.gov/psb/
11

To help
protect y our
priv acy ,
Micro so ft
Office
prev ented
auto matic
download of
this pictu re
from the
In ternet.

-Allison Henry
Fishery Biologist
NOAA Fisheries
[email protected]
508.495.2048
http://www.nefsc.noaa.gov/psb/
To help
protect y our
priv acy ,
Micro so ft
Office
prev ented
auto matic
download of
this pictu re
from the
In ternet.

-Allison Henry
Fishery Biologist
NOAA Fisheries
[email protected]
508.495.2048
http://www.nefsc.noaa.gov/psb/
To help
protect y our
priv acy ,
Micro so ft
Office
prev ented
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12

Addendum 3 to MLA
Proposed Rule
Comments

Addendum 3 to MLA Proposed Rule Comments

Chris Oliver, Assistant Administrator for NOAA Fisheries
National Oceanic and Atmospheric Administration
1401 Constitution Ave NW, Room 5128
Washington, DC 20230
August 30, 2019
Via Email
Dear Mr. Oliver:
I am writing to inform you that Maine’s five lobster industry members of the Atlantic Large Whale Take
Reduction Team (TRT) are forced to withdraw support for the near-consensus agreement reached
during the April 2019 TRT meeting due to serious flaws in the data presented to the TRT and in how the
process was conducted. NMFS’ failure to present data fully and accurately led the TRT to an outcome
that is in conflict with available data.
Substantive errors in NOAA Fisheries’ (NMFS or the Agency) data and its last-minute announcement of a
U.S. risk-reduction target that was fully assigned to the Northeast lobster fishery led the TRT to work
with an erroneous assumption about the relative risk to North Atlantic right whales from that fishery
and discount the relative risk posed by other sources.1 As a result, the Agency’s current rulemaking does
not address the full scope of known human causes of decline in the species and will be insufficient to
reverse the right whale population’s downward trend.
Following the TRT meeting, MLA undertook a careful review of data available from the Agency, due to
unresolved concerns with the timeliness and accuracy of information provided to TRT members.2 3 Our
review revealed substantive errors in NMFS data and the omission of critical information that shows a

1

Take Reduction Target Letter April 5, 2019,

https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/06_take_reduction_target_let
ter_april52019.html
2

MLA expressed significant concerns prior to, during and since the April 2019 meeting. See, e.g., MLA letter to
Michael Pentony, GARFO on 4/22/2019.
3
MLA analyzed data provided to the TRT, 2000-2018 Right Whale Incident Data, located at
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/20002018_right_whale_incident_data_3_19_19v.xlsx

“distinctly different understanding of relative risk” posed by Northeast lobster fishing gear to right
whales.4
Specifically, and as discussed in more detail below, the NMFS data contained errors that significantly
impact our understanding of human causes of serious injury and mortality to right whales. The corrected
data show that gillnet gear and netting play a much larger role in entanglement cases than was
previously understood. Further, NMFS’ failure to investigate a pronounced increase in observations of
unknown gear, particularly the increase in cases since 2015 with no gear present, leaves significant
unanswered questions about the responsibility of Canadian fisheries for these entanglements. As a
result, the data presented to the TRT and fishing industry erroneously overstate the share properly
attributable to the Northeast lobster fishery and downplay the role of other gears in right whale serious
injury and mortality.
The MLA’s analysis found that gillnet and netting gear were the most prevalent gear (other than
Canadian snow crab gear), and the Northeast lobster fishery (and the Maine lobster fishery in particular)
were the least prevalent in right whale entanglements from known causes. This finding means the 60%
conservation target stipulated by the Agency and allocated solely to the Northeast lobster fishery is
unsupported by the best available data, and any package of remedial measures designed to meet it
cannot credibly generate the conservation benefits anticipated. At a minimum, the U.S. risk reduction
target must be shared amongst the fisheries contributing to entanglement.
Furthermore, the MLA’s findings reveal evidence — also not presented to the TRT — that the current
Take Reduction Plan is working. Since the plan was amended in 2009 and 2014, there has been a strong
downward trend in the incidence of entanglement cases involving U.S. lobster gear, from seven cases
prior to 2010 to only one case – a non-serious injury in Massachusetts lobster gear – since then. The
data show only one confirmed right whale entanglement in Maine lobster gear, which dates back to
2002, with no known serious injuries or mortalities attributable to that gear. NMFS’ data also show that
ropes removed from right whales in recent years are not representative of ropes used in Maine’s lobster
fishery.5
Based on these findings, the MLA has grown even more concerned that the TRT deliberations were
conducted without sufficient data from the agency to inform its efforts to select appropriate mitigation
measures that address risk.6 In short, the rules proposed are misaligned and too narrow in scope to
effectively protect right whales.
MLA’s findings further reinforce our agreement with Governor Mills’ expressed concern over the
“disturbing lack of evidence connecting the Maine lobster industry to recent right whale deaths” and her
directive to Commissioner Keliher “to evaluate a risk reduction target for Maine that is commensurate
to any actual risk posed by the Maine lobster industry.”

4

Page 7 of the draft April 2019 TRT meeting summary states, “A broad-based recommendation that the
Agency/Team revisit the Team’s recommendations if revisions to the model suggest: (1) a distinctly different
understanding of relative risk….”
5
Since 2010, larger diameter ropes of ½” or greater represent 79% of the gear removed from entangled whales.
Maine DMR research has determined that 92% of Maine lobstermen fish with smaller diameter ropes.
6
MLA scoping statement presented at NMFS Scoping Meetings on August 12, 13, 14 and 15.

Given the significance of the deficiencies identified, the MLA and Maine’s five lobster industry TRT
members can no longer adhere to the outcome of the April 2019 TRT meeting. The MLA cannot
responsibly recommend its members undertake changes in fishing practices when whales may continue
to become entangled in fishing gear, such as gillnets, which are not included in the current rulemaking.
The MLA stands ready to implement new conservation measures in the Maine lobster fishery to protect
right whales but must have assurances that the Agency is adequately addressing all known humancaused threats to right whales and that the science indicates proposed conservation measures are likely
to further the goal of species recovery.
The MLA calls for the Agency to publish a thorough analysis of its own data regarding known sources of
entanglement risk to right whales and conduct a new analysis of the risk reduction target, including the
new information identified by the MLA. The Agency should then re-convene the TRT so it can
appropriately advise the Agency on effective management approaches to aid in the species recovery
based on a comprehensive understanding of known entanglement threats.
The remainder of this letter will identify specific concerns that need to be addressed in order to achieve
that goal.
1. NMFS’ Technical Memorandum Erroneously Assumed the Northeast Lobster Fishery is the Most
Significant Human Cause of Serious Injury and Mortality
In September 2018, NMFS issued a Technical Memorandum entitled “North Atlantic Right Whales –
Evaluating their Recovery Challenges in 2018”.7 As MLA articulated during the October 2018 TRT
meeting, the memo wrongly forced TRT members to presume, for purposes of their deliberations, that
the Northeast lobster fishery presents the most significant human cause of right whale serious injury
and mortality without evidence to support that assumption.
NMFS’ reliance on the September 2018 Technical Memo distracted the Agency from fully considering
the best available data from its entanglement database. NMFS did not adequately analyze its data on
human-caused serious injury and mortality so the TRT did not have the benefit of reliable information to
accomplish its task. NMFS’ failure to present data fully and accurately led the TRT to an outcome that is
in conflict with available data.
Maine DMR wrote to the Northeast Fisheries Science Center (NEFSC) on October 3, 2018 stating its
concern that the memo is “based on conjecture, without sound scientific basis” and that “the net result
of the oversimplified picture painted by this Memo is likely to be regulations imposed on a fishery or in
an area that will result in very little conservation benefit for the right whale”. 8 To date, the memo has
not been withdrawn or substantively updated and thus remains a source of misinformation on the
challenges facing North Atlantic right whales. The MLA urges NMFS to withdraw the technical memo and
conduct a thorough, accurate review of data on known human causes of serious injury and mortality.
NMFS must also correct its presentation of data on entangled right whales. Since the release of the
technical memo, NMFS has consistently implied that serious injury and mortality from the Northeast
lobster fishery exceeds Potential Biological Removal (PBR), even though this assertion is not supported
by the data. The Agency has repeatedly – at the TRT and elsewhere – presented a graph of
7
8

NOAA Technical Memorandum NMFS-NE-247, September 2018.
Maine DMR letter to Dr. Jon Hare, NEFSC on October 3, 2018.

entanglements first sighted in U.S. waters as de facto evidence that U.S. fishing entanglements exceed
PBR.9 Given that the rulemaking process addresses only the Northeast lobster fishery, the public
assumes these entanglements result from that fishery. Further, it is well understood that the initial
sighting location of an entangled whale is not indicative of where an entanglement occurred. For
example, of the 16 entanglements confirmed in Canadian fishing gear since 2014, four were first sighted
in U.S. waters. NMFS also continues to present a misleading map from the technical memo depicting
cases where the location of the entangling fishing gear is known.10 This includes 10 entanglement cases
in U.S. lobster gear, eight of which occurred prior to the 2009 and 2014 amendments to the Take
Reduction Plan. The two cases since then were in Massachusetts lobster gear and were successfully
disentangled. In fact, other than two cases from Canada, none of the entanglements depicted resulted
in right whale serious injuries or mortalities.
The cumulative result of misinformation in the technical memo and NMFS’ other data presentations was
to create the erroneous inference that the Northeast lobster fishery is the most significant threat to
right whales as the basis for the TRT deliberations. Because of this error, the TRT decision-making
process was not based on data most relevant to the task of selecting management measures
appropriate to address risk.
2. NMFS’ Stipulated 60% Risk Reduction Target is Inconsistent with its Own Data and was Imposed
Without Consultation with the TRT
The MLA supports the development of a risk reduction target because it is necessary to gauge the
effectiveness of proposed management measures intended to aid in the recovery of right whales. Given
the high level of uncertainty surrounding sources of human-caused right whale serious injury and
mortality, an effective risk reduction target must be informed by the best available data. NMFS has not
acted in accordance with these principles.
On April 5, 2018, NOAA Fisheries issued a press release to TRT members stating “we believe that to
achieve this goal [to reduce right whale serious injury and mortality to below PBR], mortalities and
serious injuries in U.S. fisheries will likely need to be reduced by 60 to 80% from current levels. 11 The
Agency provided neither documentation on the data and methodology used to calculate the risk
reduction goal nor an opportunity for the TRT to offer input on the target.
The MLA — and other members of the TRT — raised questions with the Agency on the assumptions
used to set this risk reduction target.12 13 Despite its initial statement that “mortalities and serious
injuries in U.S. fisheries will likely need to be reduced by 60 to 80% from current levels”(emphasis
9

NMFS has presented this information on multiple occasions to the New England Fishery Management Council,
Atlantic States Marine Fisheries Commission, Take Reduction Team, August 2019 scoping meetings, and others.
See e.g. in Appendix 9.
10
Ibid.
11
Take Reduction Target Letter April 5, 2019 is located at
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/06_take_reduction_target_let
ter_april52019.html
12

MLA email to M Asaro and C Coogan, GARFO on 4/3 /2019; MLA email to M Asaro and C Coogan, GARFO on
4/4/2019 and response on 4/17/2019.
13
For similar reasons, the MLA also objected to the inclusion of the Maine lobster fishery as a Category I fishery
under the Marine Mammal Protection Act in the 2019 List of Fisheries. See, e.g., MLA comments to Shannon
Bettridge on 11/23/2018 in response to 83 FR 53422, October 23, 2018.

added), the Agency declined to engage in dialogue or entertain input to revise the target. NMFS’ only
explanation of the goal appears in an email responding to MLA’s questions, which NMFS then sent to
the TRT.14
In order for whale conservation measures to be effective, the risk reduction target must be derived from
review of data showing the impact of all fisheries known to contribute to risk and must accurately reflect
the risk posed by each fishery. The best way to establish such a target is not to adopt it by fiat and press
release, but rather to develop it through a collaborative process with the Agency and members of the
TRT using the best available data on all involved fisheries.
Based on MLA’s review of the data, the Agency’s designated risk reduction target has several significant
flaws.
1. NMFS inappropriately assigned the full responsibility for the U.S. risk reduction to the Northeast
lobster fishery, ignoring the risk posed by other U.S. fixed gear fisheries, including gillnets and
trap/pot fisheries in the mid- Atlantic and south-Atlantic.
2. NMFS incongruously apportions serious injury and mortality from unknown gear equally
between the U.S. and Canada. The Agency ignores known serious injury and mortality rates for
U.S. and Canadian fisheries when apportioning these to each country. Further, NMFS assigns full
responsibility for the U.S. portion of these to the Northeast lobster fishery, ignoring the risk
posed by other U.S. fixed gear fisheries.
3. NMFS did not conduct an analysis of trends in serious injury and mortality from unknown gear,
such as the recent increase in cases with no gear present, to inform its allocation of these to
each fishery and country.
If risk is not effectively addressed where it occurs, the U.S. management plan cannot effectively recover
the species.
In order to establish a target based on the best available data and evidence, NMFS must evaluate the
relative risk from all known causes of harm, taking into account what is known about entanglement.
MLA’s analysis of NMFS’ data (2010-2018) reveals a striking hierarchy of serious injury and mortality to
right whales from known human causes, with the Canadian snow crab fishery accounting for 31%, gillnet
and netting gear representing 13%, unknown trap/pot gear representing 4% and U.S. trap/pot gear
representing 4%. U.S. and Canadian vessel strikes account for the remaining 48%. There are no known
cases involving Northeast lobster gear. 15
A significant challenge in reducing entanglement risk is how to address the many entanglement cases
where the origin of the gear is not known. While reliance on assumptions remains necessary, these
assumptions must be informed by the best available data. Consideration of known causes of serious
injury and mortality and deeper analysis of trends in unknown gear must be paramount considerations.
The MLA identified a pronounced and increasing trend in NMFS’ data on gear of unknown origin, with
the proportion of cases with no gear present increasing significantly beginning in 2015. 16 This is

14

NMFS email to TRT on 4/18/2019.
See graph of all known human causes in Appendix 15.
16
See graph of Entanglement Serious Injury and Mortality, with unknown gear broken out to show cases with no
gear present in Appendix 16.
15

coincident with the shift in large numbers of right whales to the Gulf of St. Lawrence and the significant
increase in the incidence of right whale entanglements in Canadian snow crab gear. 17
Under NMFS’ approach, this significant spike in unknown gear incidents remains unexplained and is
arbitrarily split equally between the U.S. and Canada, with the U. S. portion attributed exclusively to the
lobster fishery. NMFS has failed to provide a rational explanation for this split, which over-weights the
contribution of U.S. gear during a time when whales are known to have spent increasing periods in
Canadian waters and virtually all entanglements were known to be from Canadian gear.
The result is that NMFS’s risk reduction target will not achieve its intended result to reverse the right
whale population decline. The Agency must reconsider this goal to address its flawed assumptions and
omission of consideration of risk posed by other U.S. fixed gear fisheries.
The MLA understands there are data challenges that complicate assignment of risk associated with
unknown gear. To help close the knowledge gap, the MLA proposes, for its part, to expand and uniquely
mark Maine lobster fishing gear for Maine’s lobster fishery and to introduce gear marking in Maine’s
exempted waters. The MLA urges NMFS to pursue a similar strategy in other fisheries so the Agency and
the TRT will have the benefit of best available information on the origin of unknown gear.
3. NMFS data contained substantive errors which render the Agency’s management priorities
flawed
In its review of NMFS’ data, MLA noted two cases with substantive errors that led the TRT to conduct its
work without an accurate understanding of the role of Northeast lobster fishery and other gears in right
whale serious injury and mortality.
Right whale 3405 (NMFS E44-16), which was found entangled in 2016, was determined to have been
entangled in monofilament mesh and line of unknown origin. However, the pro-rated serious injury
(0.75) was attributed in the 2018 right whale stock assessment to unknown gear and, therefore, is not
accurately represented in NMFS’ data. After persistent requests by MLA, this error was acknowledged
by the Northeast Fisheries Science Center (NEFSC) on August 15, 2019, nearly four months after the TRT
meeting. 18
NMFS’ data also incorrectly categorizes a mortality case involving the floating carcass of an unknown
right whale (NMFS E22-14) found in 2014. The whale was determined to have perished due to
entrapment in fishing gear. Investigation of this case revealed that the stationary position of the whale,
36 nm south of Nantucket, and the fresh nature of the carcass led NMFS to determine that it was
entangled in unknown U.S. fishing gear. Questioning by MLA confirmed that these circumstances rule
out Maine as a source of the entangling gear.19 The necropsy findings recently published in Diseases of

17

See https://www.nefsc.noaa.gov/psb/surveys/MapperiframeWithText.html; See table of increase in Canadian snow
crab entanglements and 2014 to 2019 Gulf of St. Lawrence sightings charts in Appendix 17.
18
Emails from MLA to D Morin (GARFO) and A Henry (NEFSC) response to MLA on 8/15/2019.
19
Emails from D Morin (GARFO) to MLA on 8/15/2019 and A Henry (NEFSC) to MLA on 8/13/2019.

Aquatic Organisms concluded that “[b]ased on the presence of the line with float buoys along the body
of the whale, the entanglement gear type was most likely gillnet”.20 21
This means that the only documented serious injury or mortality known to have occurred in U.S. fishing
gear did not originate from Maine and likely resulted from gillnet gear, not lobster gear. In view of these
findings, the MLA asks NMFS to reconsider the gear designation in this case due to the conflicting
determinations between NMFS and the necropsy results on the entangling gear. The MLA concurs with
the necropsy team, based on the photos of the right whale and the gear located at the entanglement
site, that the entanglement gear was most likely gillnet.
These findings fundamentally change our understanding of the relative role of gillnet and trap/pot gear
in right whale serious injury and mortality and demonstrate that the TRT’s advice does not address the
primary cause of documented risk arising from U.S. fishing gear.
4. NMFS Used a “Decision Support Tool,” Still in Development and Not Peer-reviewed, as the Basis
of the TRT’s Recommendations
The MLA fully supports the use of a model to assess the risk of right whale entanglement, spatially and
temporally, to guide the development of effective management approaches to protect right whales.
Such a tool must adequately characterize fisheries that have the potential to interact with right whales,
the unique threat posed by varying gear types and configurations, and whale density and behavior. The
NEFSC has done an admirable job in developing a decision support tool, however, the tool is still under
development and is not yet ready to be used for reliable quantitative assessment of the effectiveness of
proposed management measures.
NMFS announced its nascent decision support tool just one week before the April 2019 TRT meeting. 22
This resulted in confusion among TRT members and inadequate time to understand the data and
assumptions that serve as the basis for the tool. TRT members were required to use the tool to assess
the effectiveness of management scenarios in achieving the stipulated minimum 60% risk reduction and,
at the same time, were told to use the model’s output only as guidance.
During the TRT meeting, it became clear that while the tool holds promise to assess right whale
management approaches, it has many limitations. The tool contains three inputs: fishing effort data,
whale density data and an assessment of the risk of varying lobster gear, which are given equal weight.
TRT members voiced many concerns with each of these components, which are contained in the draft
meeting summary of the TRT meeting.
The MLA believes the data and design of the decision support tool must be significantly improved. The
whale model portion of the tool was developed for U.S. Navy applications and does not adequately
characterize whale density in important fishing areas. Since 2010, more than half the right whale
20

Sharp, et al, Gross and histopathologic diagnoses from North Atlantic right whale Eubalaena glacialis mortalities
between 2003 and 2018, Diseases of Aquatic Organisms, Vol 135, June 2019. See pages 9 and 20, and pages 4 and
49 in Supplement.
21
See email from M Moore (WHOI) to MLA and necropsy timeline and information on 8/21/2019.
22
The decision support tool was introduced to the TRT on April 16, 2019 via a two hour webinar. Materials located
at:

https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/02_presentation_on_risk_red
uction_tool.html

population has been regularly sighted feeding in Massachusetts in and around Cape Cod Bay and in a
significant new habitat south of Nantucket. As dense aggregations of right whales have increased in
Massachusetts waters, the number of right whales detected along the Maine coast has declined, facts
not adequately captured in the model’s inputs. In fact, the whale model does not include data on the
newly identified habitat around Nantucket, contains limited whale data on the Gulf of Maine and does
not include any whale density data for coastal Maine. The tool cannot accurately reflect the risk of
various fisheries to right whales unless these data issues are resolved. 23
Furthermore, the whale model does not allow whale distribution patterns to be considered by year,
particularly before and after 2010, when whale distribution patterns shifted significantly. This masks the
risk to right whales in current high use habitats where they did not have a significant presence prior to
2010. NMFS has stated that this issue will be addressed in October 2019, but it will not be available in
time to analyze options in the Draft Environmental Impact Statement. The whale model also does not
weight the risk of an entanglement based on the whale’s behavior, such as feeding versus transiting, an
important consideration in assessing entanglement risk. The MLA is concerned that without addressing
these deficiencies, the decision support tool cannot effectively assess proposed management
approaches. Due to these and other concerns, the TRT has asked that the tool be peer-reviewed before
it is used to assess options, and further that the TRT have input into the Terms of Reference.
In developing the decision support tool, the NEFSC developed a gear “severity index” to determine the
risk of various gear types that may be encountered by a right whale. NMFS developed this index by
polling TRT members on the risk of certain lobster gear configurations.24 The index accounts for onethird of the assessment tool input. TRT members raised strong concerns with this approach, in part
because the results of the exercise significantly impact the assessment of management approaches such
as weak rope.
The MLA remains concerned that the responses to the poll were analyzed by caucus, resulting in a lower
weight to votes from fishing industry members, who are the most knowledgeable about fishing gear,
and higher weights to votes from all other TRT members.25 While NOAA Fisheries has pledged to revisit
this methodology, the TRT has not received any updates on its progress. The MLA is also concerned that
the severity index considers only lobster gear.
NMFS continues to publish broadly the preliminary results of the tool’s assessment of management
scenarios presented to the TRT as the basis for developing rules, even though it has conceded that the
tool remains under development and has not been peer reviewed.26 This has created confusion among
industry members about the effectiveness of management measures proposed by various jurisdictions
23

See

https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/narwdensitymodel.mp4 and
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/17_model_documentation.ht
ml
24

See email from C Coogan on 4/7/2019 regarding the development of the severity index.
Maine’s TRT members requested data on the number of respondents in each caucus. While data was not
provided, S Hayes (NEFSC) stated during the TRT meeting that the fishing caucus had roughly double the number of
respondents compared to all other caucuses which were equal. Also see slides 10 and 12 in
25

https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/Meeting%20Materials/overvie
w_of_relative_risk_reduction_decision_support_tool__04_23_2018.pdf .
26
See e.g., NOAA Fisheries Navigator, June 2019 at http://fish-news.com/cfn/wp-content/uploads/2019/08/NOAANavigator-6_19-%C6%92.pdf

as the industry weighs in on the scope of rulemaking. MLA objects to the use of the model’s assessment
results until the infirmities identified above have been resolved.
5. NOAA Fisheries Asserted Pressure to Reach Consensus to Avert Threat of a Jeopardy Finding in
Pending Biological Opinion
TRT members were pressured to reach a consensus agreement for measures that address risk to the
Northeast lobster fishery under a threat that the April 2019 TRT meeting would provide the only
opportunity for members to guide right whale risk reduction measures due to the pending Biological
Opinion for the American Lobster Fishery. Based on our data analysis, the gillnet fishery is a significant
source of risk and should be required to identify management measures to avert a jeopardy finding in its
pending Biological Opinion.
The TRT did not discuss this because NMFS has effectively placed the full burden of the U.S. risk
reduction on the Northeast lobster fishery. It has further failed to adequately review and discuss other
human-based causes of right whale serious injury and mortality with the TRT. The MLA strongly urges
NMFS’ Section 7 team undertaking the Biological Opinions for the American Lobster and Batched
Fisheries to incorporate the new data discovered by MLA into the ongoing analysis.
6. The Right Whale Decline is Part of a Larger Problem
NMFS’ data and other recent scientific work indicate that the right whale population decline, including
its deteriorating health and reproductive success, is driven by changing environmental conditions,
resulting in a dramatic shift in right whale distribution and migratory patterns. 27
The data are clear that Canadian entanglements and vessel strikes are now the most significant cause of
right whale serious injury and death because right whales are spending significantly more time in
Canada’s largely unregulated waters. There have been eight right whale deaths and three new
entanglements in Canadian waters already this year.28
The MLA was disturbed to learn NMFS’ data show that since 2009, when the Take Reduction Plan
required changes in lobster fishing practices and the U.S. ship strike plan was implemented, more right
whales have been struck by U.S. ships than have been entangled in U.S. fishing gear. According to the
2018 right whale stock assessment, serious injury and mortality from U.S. ship strikes was 0.81 and U.S.
entanglement was 0.4. In fact, U.S. (31%) and Canadian (17%) vessel strikes now account for 48% of
known human-caused serious injury and mortality (2010-2018).29 NMFS has not acknowledged the
ongoing contribution of ship strikes to right whale serious injury and mortality, but instead has brought
attention only on the Northeast lobster fishery.30 The MLA is not aware of any planned rulemaking to
address the risk to right whales due to U.S. ship strikes and urges the Agency to address this issue
promptly.

27

Meyer-Gutbrod, et al, Global Change Biology, 2018; Chust, et al, ICES Journal of Marine Science, 2013; Record, et
al, Oceanography, 2019.
28
See 2019 Canadian Right Whale Incidents.
29
See Summary of U.S. Ship Strike Incidents.
30
See e.g., NMFS slide from 8/12/2019 Machias, ME scoping meeting.

The MLA is also concerned that NMFS is not objecting to other threats to right whales and their habitat
such as seismic testing, offshore wind developments and offshore aquaculture.31 MLA believes it is
arbitrary to focus conservation efforts so disproportionately on the lobster fishery, which has a
demonstrated track record of implementing measures to protect endangered whales, while taking no
action with respect to emerging threats to right whales and their habitat. These threats must be
considered if we hope to have success in achieving long-term recovery of the species. If they are not
addressed, the actions taken by fishermen will have no chance of success.
7. Moving Forward
The MLA remains committed to do its part to aid in the recovery of right whales. Since NMFS formed the
Atlantic Large Whale Take Reduction Team (TRT) in 1997, MLA has been a full partner in working to
reduce harm to large whales from entanglement in U.S. fishing gear. The MLA strongly supports
measures to further our understanding of right whales and the risks they face. These measures include
expanded and unique gear marking for Maine, 100% harvester reporting, vessel monitoring in federal
waters, investment in the development of a tagging device to improve data on right whale distribution,
increased right whale surveillance in regulated waters, stable funding for long-term plankton monitoring
and development of right whale habitat suitability models.
While the MLA supports requiring gear marking on vertical lines in Maine’s exempted waters, our
support is conditional on it being implemented by the state of Maine. The MLA will not support
including this measure as part of the Take Reduction Plan as we remain strongly opposed to the
expansion of any Take Reduction Plan measures into Maine’s exempt waters.
The MLA stands ready to work with NMFS, the TRT, the state of Maine and our members to identify
measures that address the actual risk that the Maine lobster fishery poses to right whales. For the
amendments to the Take Reduction Plan to be effective, the process must be based on sound science
and carefully vetted data analysis that identifies actual risk to endangered whales.
Maine cannot stem the decline of the right whale population on its own. Maine’s lobstermen believe it
is past time for all stakeholders in the effort to ensure a thriving future for right whales to examine and
address the multiple stressors and threats to the species that occur outside of our waters.
Thank you.
Sincerely,

Patrice McCarron
Executive Director
Cc:
President Donald J. Trump (via Alexander Willette, Executive Office of the President)
Senator Susan Collins (via Cameron O’Brien)
31

See e.g., C Oliver testimony before Committee on Natural Resources, Subcommittee on Water, Oceans and
Wildlife, U.S. House of Representatives on 3/19/2019.

Senator Angus King (via Peter Benoit)
Representative Chellie Pingree (via Kimber Colton and Rhiannon Hamspon)
Representative Jared Golden (via Eric Kanter)
Governor Janet Mills (via Thomas Abello)
Patrick Keliher, Commissioner, Maine Department of Marine Resources
Stuart Levenbach, Chief of Staff, NOAA
Sam Rauch, Deputy Assistant Administrator for Regulatory Programs, NOAA Fisheries
Donna Wieting, Director, Office of Protected Resources, NOAA Fisheries
Catherine Marzin, Deputy Director, Office of Protected Resources, NOAA Fisheries
Shannon Bettridge, Chief, Marine Mammals and Sea Turtles, Office of Protected Resources, NOAA Fisheries
Angela Somma, Chief, Endangered Species Conservation, Office of Protected Resources, NOAA Fisheries
Michael Pentony, Regional Administrator, GARFO
Mark Murray-Brown, Section 7 Coordinator, GARFO
Michael Asaro, Marine Mammal and Sea Turtle Branch Chief, GARFO
Colleen Coogan, Marine Mammal Take Reduction Team Coordinator, GARFO
Atlantic Large Whale Take Reduction Team members (via Colleen Coogan, GARFO)

Addendum 4 to MLA
Proposed Rule
Comments

Addendum 4 to MLA Proposed Rule Comments
Addendum4: Survey Results of Maine Lobstermen
MLA conducted a survey of participants in the Maine lobster fishery from February 23 to February 26. 146
responses were received, though not all respondents answered all of the questions. Most respondents had a
federal permit, and nearly 30 percent would be directly affected by the proposed LMA1 closure.

Zone

#

A
B
C
D
E
F
G
Other
Total
%

22
25
32
23
16
16
9
3
146

Table 1
Characterization of respondents to MLA survey
Fish LMA1
Boat Length
Federal
Percent
RA during
permit
<25 25-34
35-40
41-45
closure
15%
12
2
1
3
7
9
17%
20
3
1
1
16
3
22%
28
18
0
4
16
5
16%
14
9
0
2
11
10
11%
9
8
1
4
10
1
11%
10
3
0
4
7
3
6%
4
0
0
3
5
1
2%
2
0
0
0
2
1
99
43
3
21
74
33
68%
29%
2%
14%
51%
23%

Table 2
Utilization of LMA1 during the proposed seasonal closure

a

.

Month

Vessels

Oct
Nov
Dec
Jan

59
71
85
89

Trips Catch (lbs.) / Trap
13
13
10
8

25
27
27
15

Price ($/lb.)a
4.09
4.18
4.55
5.05

Based on 5-year average based on data provided by the Maine Department of Marine
Resources

1

46-50
2
4
7
0
0
2
0
0
15
10%

Impact
reduced by
Do not fish
<25%
25-50%
50-75%
75-100%
Do not fish
<25%
25-50%
50-75%
75-100%
Do not fish
<25%
25-50%
50-75%
75-100%
Do not fish
<25%
25-50%
50-75%
75-100%

Table 3
Economic impact of LMA1 restricted area by month
August
December
Impact
Landings
%
Traps
%
Landings
%
reduced by
22
73%
5
63% Do not fish
0
0%
4
13%
1
13% <25%
5
14%
1
3%
0
0% 25-50%
9
25%
0
0%
1
13% 50-75%
11
31%
3
10%
1
13% 75-100%
11
31%
September
January
19
63%
4
50% Do not fish
1
3%
7
23%
2
25% <25%
4
12%
1
3%
0
0% 25-50%
4
12%
0
0%
1
13% 50-75%
11
33%
3
10%
1
13% 75-100%
13
39%
October
February
10
31%
2
22% Do not fish
1
3%
11
34%
3
33% <25%
4
12%
5
16%
2
22% 25-50%
3
9%
1
3%
0
0% 50-75%
13
38%
5
16%
2
22% 75-100%
13
38%
November
March
2
6%
1
9% Do not fish
2
6%
8
23%
2
18% <25%
6
19%
12
34%
3
27% 25-50%
4
13%
4
11%
2
18% 50-75%
9
28%
9
26%
3
27% 75-100%
11
34%

2

Traps

%

0
3
2
2
4

0%
27%
18%
18%
36%

0
1
4
1
5

0%
9%
36%
9%
45%

1
1
2
3
4

9%
9%
18%
27%
36%

1
2
0
4
3

10%
20%
0%
40%
30%

.
Table 4
Impact of proposed rule compared to DEIS estimates

Gear marking
(Min/VL)
Weak point
Insertion
(Insert/Min)
Reconfigure
trawls (Min/trap)
Cost of Labor
($/hr.)
% gear loss
Crew added
(person)
Annual catch
(lbs)/trap

<25 ft.

25-34

35-40

41-45

46-50

Number
of
Responses

34

28

29

36

34

34

134

5

13

6

12

14

12

12

128

15

26

27.5

24

28

22

26

113

25.75

41.00

38.00

33.00

40.00

44.00

54.00

122

0

15

15

18

15

15

15

119

0

0.79

1

1

0.87

0.6

0.53

131

42.5

81

53

55

72

100

141

123

DEIS

Average

30

By Boat Length

3

Addendum 5 to MLA
Proposed Rule
Comments

Addendum 5 to MLA Proposed Rule Comments
STATE OF MAINE
D EPARTMENT OF M ARINE R ESOURCES
21 STATE HOUSE STATION
AUGUSTA, MAINE
04333-0021
JANET T. MILLS

PATRICK C. KELIHER

GOVERNOR

COMMISSIONER

September 16, 2019
Michael Pentony
Regional Administrator
National Marine Fisheries Service
55 Great Republic Drive
Gloucester, Massachusetts 01930
Dear Mr. Pentony,
The Maine Department of Marine Resources (ME DMR) appreciates the opportunity to comment on
the upcoming rule-making to amend the Atlantic Large Whale Take Reduction Plan (ALWTRP).
Proposed changes to the ALWTRP are likely to have large impacts on Maine’s lobster fishery, the
social and economic backbone of Maine’s coastal and island communities. In 2018, landings from
the Maine lobster fishery were valued at over $486 million and a recent economic study determined
the fishery has an economic impact of an addition $1 billion annually1. This fishery not only
encompasses the roughly 4,800 lobster license holders and 1,100 student license holders but also
sternmen, dealers and distributors, bait dealers, and trap builders who contribute to this fishery and
their communities. Understanding the full impact of these pending regulations on the Maine lobster
fishery, and to the North Atlantic right whale population, will be critical to ensure the appropriate
suite of measures is implemented.
A.

Characteristics of the Maine Lobster Fishery

The Maine lobster fishery is comprised of a diverse set of vessels, fishermen, and fishing practices.
According to data collected in 2018, roughly 20% of vessels registered to Maine lobster license
holders are less than 18 feet in length while 10% of vessels are greater than 39 feet in length. Thus,
most fishermen who participate in the lobster fishery use smaller boats and typically fish close to
shore. In addition to length, vessels in the Maine lobster fleet vary in their construction and layout.
Smaller vessels, less than 25 feet in length, tend to be outboards and have extremely limited deck
space for the temporary storage of gear. Some boats have open sterns which allow individual traps,
or trawls, to be easily set off the back of the vessel. However, other boats have closed sterns,
requiring traps to be set over the side of the boat. As a result, safe and fishable trawl lengths are not
only dictated by the size of the vessel but also its construction.
Fishing practices within the Maine lobster fishery vary between the eastern and western ends of the
State, and between inshore and offshore fishermen. In most state waters, the average trawl length can
be characterized by singles, doubles, and triples; however, this masks important regional differences.
1

Lobsters to Dollars: The Economic Impact of the Lobster Distribution Supply Chain in Maine by Michael Donihue, Colby
College. June 2018.

For example, as a long-standing convention, fishermen in Casco Bay often fish trawls with two
endlines. In this area, recreational and commercial boat traffic is very high and, as a result, fishermen
can experience significant buoy loss. Longer trawls allow these fishermen to reduce their number of
buoy lines and minimize their potential loss. In contrast, fishermen in mid-coast Maine tend to fish
smaller trawl lengths which allow for a higher degree of precision to set traps on specific ledges and
cracks, the preferable habitat of lobsters. This increases a fisherman’s trap efficiency. An added
benefit of fishing singles, pairs, and triples is that it reduces potential gear conflicts between other
fishermen if, and when, traps are set over one another. In federal waters, trawl lengths increase, in
part due to existing regulations in the ALWTRP. In some of Maine’s furthest fishing grounds
(outside of 12 miles from shore), trawl lengths average around 15 traps per trawl.
Fishing operations also differ by the number of crew onboard. 29% of license holders have a Class I
license, which allows only the individual named on the license to participate in lobster fishing.
Therefore, at a minimum, a quarter of the fleet operates without an unlicensed crew. 39% of Maine
lobster fishermen have a license which allows for one unlicensed crew member onboard while the
remaining 32% have a license which allows 2 unlicensed crew onboard.
Landings in the Maine lobster fishery have spatial and regional patterns. While the pounds of lobster
landed vary across the State, most landings occur within state waters. In 2008, 81% of pounds landed
were harvested within three miles of shore. Federal waters, broken up by 3 to 12 miles and outside
12 miles from shore, landed 15% and 4% of the pounds in that year, respectively. Recently, the
pattern of catch based on distance from shore has slightly shifted, with an uptick in federal waters
landings. In 2016, state waters accounted for 68% of the pounds landed, while 3 to 12 and beyond 12
miles accounted for 23% and 9%, respectively. This pattern of landings does not, however, equate to
an identical shift in effort offshore. Between 2008 and 2016, the number of trips recorded within
state waters dropped by only 7%, while the number of trips outside 12 miles increased by just 3%.
B.

Management Tools Considered

At the April Atlantic Large Whale Take Reduction Team (ALWTRT) meeting, several management
tools were discussed which could reduce the risk of serious injury and mortality from entanglements.
Some of the tools considered included: area closures, dynamic management areas, trap reductions,
vertical line reductions, and 1700 pound rope. Following the ALWTRT meeting, ME DMR reviewed
the measures to understand the potential conservation benefits to right whales versus the burden to
fishermen. The intent was to consider a range of measures, and then take the most viable options out
to industry for feedback.
ME DMR held seven industry meeting to get input from fishermen on the feasibility and
implications of these management tools. Based on our internal analysis and the feedback obtained
through industry meetings, the following comments are offered regarding the various management
tools.
Area closures were proposed and discussed at the ALWTRT meeting but were ultimately not
included in any of the final recommendations. Following the ALWTRT meeting, ME DMR
continued to discuss the potential efficacy of area closures. Ultimately, ME DMR did not include an
area closure in the June 2019 presentation (see Appendix I) to industry due to several pertinent
concerns. First, the efficacy of area closures relies on the assumption that gear within the closure is
brought to shore. While this assumption holds true in the existing Cape Cod Bay closure due to its

timing and location, the same assumption would not hold in Maine waters. Offshore fishermen
deploy gear year-round, moving traps to various fishing grounds as lobsters respond to
environmental changes. As a result, a federal waters closure, akin to some of the proposals discussed
at the ALWTRT, would not result in traps taken out of the water but may instead result in fishermen
moving gear to the boundaries of the closure, concentrating gear around an area intended to protect
right whales. This ‘curtain effect’ may have the unintended consequence of increasing vertical line
densities in areas of known right whale distribution.
Industry members also asked about the potential conservation benefits of a seasonal closure during
the spring months in state waters. After conducting analysis, ME DMR found negligible reductions
in risk through this type of measure given right whales are infrequently sighted in state waters and
there is minimal lobster gear set during the spring months. As a result, a spring state waters closure
resulted in more of a paper exercise than a meaningful conservation benefit for right whales. ME
DMR found specific areas and times for closures which resulted in a meaningful risk reduction were
hard to define due to a lack of right whale sightings, and their more diffuse and changing use of the
habitats in the Gulf of Maine.
Also discussed at the ALWTRT meeting were dynamic management closures. A potential benefit of
this approach is that protections are enacted only when right whales are present, lessening the burden
on industry. ME DMR considered this approach but quickly came up with several concerns
regarding their effectiveness in protecting right whales. The primary concern is that dynamic
management is reactive; it relies on right whales being spotted to enact a management response.
Given right whales are notoriously hard to observe and weather conditions along the Maine coast can
impede sighting efforts, ME DMR questioned the ability to effectively patrol northern Gulf of Maine
waters and spot whales. Furthermore, the resources needed to support successful dynamic
management are intensive and expensive, raising concerns of whether dynamic management is a
long-term solution for right whale protection. Ultimately, ME DMR concluded measures which can
provide year-round protections to right whales are stronger given all whales are positively impacted,
not just those sighted.
The ALWTRT briefly discussed trap reductions at its April meeting, particularly those that are
ongoing in Lobster Management Areas 2 and 3. ME DMR evaluated the potential benefit of trap
reductions as a right whale protection measure and presented these findings to the lobster industry to
get feedback. The most frequent concern raised by industry regarding trap reductions was that the
ratio between vertical lines and traps is not one-to-one. This means that, particularly offshore, a
substantial trap reduction is needed to see a modest reduction in the number of vertical lines.
Industry expressed concern that, as a primary management tool to save right whales, trap reductions
could result in large economic consequences due to reduced catch and revenue. Others noted that
focusing on trap reductions is ancillary to the conversation since it is vertical lines, not traps, which
pose a risk to whales. In addition, the diversity of Maine’s lobster fleet, as well as varying levels of
participation, make it challenging to implement a trap reduction which does not result in some
individuals increasing their effort. This was the result of a substantial trap reduction in 1997; some
individuals removed gear from the water while others increased their effort up to the new limit.
One of the primary management tools ME DMR discussed with industry was vertical line reductions
via trawling-up. After analyzing many of the potential management tools, trawling-up appears to
provide some of the strongest benefits; namely, it addresses serious injury and mortality considered
under the Marine Mammal Protection Act as well as risk under the Endangered Species Act. Further,

it directly addresses the cause of entanglements: vertical lines in the water column. At the June
industry meetings, a series of trawling-up scenarios were presented to industry. These ranged from
doubles to quads in state waters and from twenty to forty trap trawls offshore. In response, industry
provided critical input on the extent of trawling-up which is feasible and safe in the Maine lobster
fishery. Specifically, while offshore fishermen expressed some ability to add traps to an existing
trawl, they expressed grave concerns about moving to thirty or forty trap trawls. Several noted that
only a few boats are safely equipped to handle forty traps, in addition to the mile of rope needed to
fish at these trawl lengths. As a result, requiring fishermen to operate beyond their boat capacities
would result in dangerous fishing practices and the loss of human life. Inshore fishermen also
highlighted that trawling-up scenarios need to consider the feasibility of smaller boats, particularly
skiffs, which have limited deck space and are often operated by a single individual. Moreover,
fishermen noted that, at longer trawl lengths, those who operate alone may have to hire a crew.
Outside of safety concerns, fishermen also provided insight on the potential consequences of
trawling-up on fishing operations. First, longer trawls may increase gear conflicts and gear loss as
there is a higher chance of trawls being set over one another. Second, longer trawls may decrease a
fisherman’s ability to maneuver traps on to specific ledges and cracks which produce high catch
rates. This would reduce a trap’s efficiency. Third, industry highlighted that fishermen frequently
move traps across regulatory boundaries (i.e. the three mile line, the six mile line, etc.). This
movement needs to be considered to ensure ongoing fishing practices and new regulations are
congruent. To this end, fishermen suggested that any trawling-up scenario differentiated by distance
from shore be comprised of multiples of one another so trawl lengths can easily be extended or
shortened. In addition, law enforcement personnel were asked to provide input on the feasibility of
enforcing long trawl lengths; they noted that, with the current platforms available, it would be nearly
impossible for enforcement to safely haul long trawls to check compliance with the ALWTRP and
lobster resource management measures.
Finally, the implementation of 1700 pound rope was also considered by both the ALWTRT and ME
DMR. One advantage of 1700 pound rope is it offers a level of protection for all lines left in the
water and can substantially reduce the occurrence of a serious injury or mortality which results from
an entanglement. However, it does not address the risk of an entanglement occurring. In its June
industry meetings, ME DMR presented 1700 pound rope as a potential management tool for
consideration. At the time, ME DMR presented this as 75% topper in federal waters. It became clear
from several comments that, to accommodate a 75% topper, fishermen intended to increase the
length of their vertical line to ensure there was enough rope strength at the bottom where the strain of
hauling traps is highest. This result would be counter to the efforts of the ALWTRT and a clear
example of the unintended consequences which can result from management action. Instead, several
industry members felt that, with existing vertical line lengths, modifications to the top 50% of the
rope would be more feasible. Industry also commented that 1700 pound rope should be achieved
through modifications to existing rope, as opposed to requiring fishermen to buy new rope. This
could be achieved through specific splices or the threading of existing swivels into the rope to
achieve a 1700 pound breaking strength. Law enforcement personnel also provided guidance on the
enforceability of 1700 pound rope. They noted a specific number of weak points in a rope is more
enforceable than 1700 pound rope regulations based on depth fished or the length of the vertical line.
They also highlighted that enforcement of a rope diameter, as a proxy for 1700 pound rope, would be
challenging since rope can expand in the water and differs by manufacturer.

C.
Gear Marking
It is widely recognized that one of the biggest challenges faced by the ALWTRT when discussing the
entanglement of right whales is the lack of data on the source of entanglements. This creates large
amounts of uncertainty about which fisheries and regions are contributing to serious injury and
mortality. At its industry meetings in June, ME DMR proposed a Maine-only purple gear mark to the
lobster industry. This purple mark would replace the current red mark used to distinguish the
Northeast trap/pot fishery and would allow Maine to better understand its role in the right whale
conversation. The use of a Maine-only gear mark was unanimously supported by fishermen at all
seven industry meetings as fishermen expressed strong support for identifying their gear from other
trap/pot fisheries.
As stated in a letter to NOAA dated July 10th, ME DMR fully supports the improvement of gear
marking to better inform conversations on right whale entanglements. As a result, the State intends to
implement a Maine-only gear mark ahead of the federal regulatory process. ME DMR has already
begun the State’s regulatory process and, under the current timeline, the Maine-only gear mark could
be required for Maine licensed lobster fishermen by spring 2020. Critical to this effort is guidance
and confirmation from NOAA regarding the placement and color of the Maine-only mark. ME DMR
highlights that it has not received a response to its July 10th letter to NOAA requesting written
confirmation regarding the location and color of the Maine-only gear mark. This level of
communication is needed to support Maine’s efforts to enact regulations ahead of the federal
process. For example, it is unclear if additional gear marking areas, such as Jeffery’s Ledge and
Jordan Basin, will be maintained as states move to their own marks. ME DMR recommends that, as a
part of the proposed rule, NOAA re-evaluates these markings against recent sightings data to
determine the usefulness of area-specific marks in addition to state-specific marks.
D.

Recommendations for the Proposed Rule-Making

As NOAA engages in the writing of a proposed rule, ME DMR requests the agency consider two
topics which were not fully discussed or voted on at the ALWTRT meeting. A question repeatedly
raised at the ME DMR industry meetings was the continued use of Maine’s exemption line. As
outlined in the 2007 Final Rule to the ALWTRP, the exemption line is based on the low number of
right whale sightings in this area. NOAA has consistently defended the exemption line in previous
rule-makings, commenting “NMFS does not believe that regulating the waters that will be exempted
from the ALWTRP would have a significant benefit to large whales.”2. Additionally, studies have
shown there are low concentrations of calanus copepods shoreward of the 100 meter isobath, which
do not support the aggregation of right whales.3 As a result, NOAA did not include exempted waters
as a part of the critical habitat designation for right whales. Instead, NOAA used the exemption line
from the ALWTRP as the nearshore boundary, stating “late stage copepods in quantities sufficient to
trigger right whale foraging are not present inshore of the Maine exemption line”4. Given no vote at
the April ALWTRT meeting was taken in regards to the exemption line, ME DMR requests NOAA
consider the impacts to industry versus the conservation benefits of establishing regulations within

2

Taking of Marine Mammals Incidental to Commercial Fishing Operations; Atlantic Large Whale Take Reduction Plan
Regulations, 72 Fed. Reg. 57103 (October 5, 2007).
3
Runge 2012 Report “Summer distribution of the planktonic copepod, Calanus finmarchicus, along the coast of
the Gulf of Maine”
4
Endangered and Threatened Species; Critical Habitat for Endangered North Atlantic Right Whale, 81 Fed. Reg. 4837
(January 27, 2016).

the exemption line. Taking extensive action in areas where right whales rarely, if ever, visit will not
have a measurable impact on the right whale population.
In addition, ME DMR requests NOAA include a method for conservation equivalency within the
proposed rule. As previously described, a key feature of the Maine lobster fishery is its diversity.
This breadth of vessel size, fishing location, and crew precipitates the need for different management
approaches within the State. Allowing for conservation equivalency in the rule-making provides an
opportunity for fishermen to develop equivalent, or more conservative, regulations in their region to
meet the requirements of the ALWTRP. This flexibility is needed to ensure not only the long-term
success of the lobster fishery but also the protections provided to right whales.
E.

Conclusions

ME DMR appreciates the opportunity to comment on the upcoming proposed rule regarding right
whales and the Northeast trap/pot fishery. The Maine lobster fishery has been an active participant in
the conservation of right whales for over twenty years. While ME DMR recognizes the scope of this
comment period pertains to US entanglements in the trap/pot fishery, the Department highlights that
this scope does not encompass the full set of impacts on the right whale population. Specifically,
entanglement records indicate the full risk reduction outlined by NOAA should not be solely on the
Northeast lobster fishery and the apportionment of risk to Canada should reflect the stark increase in
right whale mortalities resulting from the snow crab fishery and Canadian vessel strikes. ME DMR
underscores that placing further regulations on the Maine lobster fishery will not improve the status
of the right whale population if mortalities are happening elsewhere.
We appreciate NOAA’s consideration of these comments.

Sincerely,

Pat Keliher, Commissioner

Addendum 6 to MLA
Proposed Rule
Comments

Addendum 6 to MLA Proposed Rule Comments
STATE OF MAINE
D EPARTMENT OF M ARINE R ESOURCES
21 STATE HOUSE STATION
AUGUSTA, MAINE
04333-0021
PAUL R. LEPAGE

PATRICK C. KELIHER

GOVERNOR

COMMISSIONER

October 3, 2018

Dear Dr. Hare,
I am writing in response to the recently released NOAA Technical Memorandum NMFS-NE247, North Atlantic Right Whales—Evaluating Their Recovery Challenges in 2018 (“Technical Memo”
or “Memo”). Regrettably, I have significant concerns about the scientific merit of this document, which I
have documented below in detail.
As I am sure you’ll agree, any measures developed to protect right whales must be based on
sound science in order to be effective. For this reason, it is imperative that the Technical Memo provide
a comprehensive picture of the best available science to inform the critical decisions that the TRT is
being asked to make. The title of the Memo implies a comprehensive look at all stressors across the
right whale’s range. While many category I and category II fisheries from Maine to Florida are regulated
under the Atlantic Large Whale Take Reduction Plan, the content of the Memo is almost exclusively
limited to the lobster fishery in the Gulf of Maine. There is little context offered for how right whales are
utilizing expanded habitats in Canadian and Mid-Atlantic waters, and how that changing range and
interactions with other fisheries affects risk of entanglement. Absent this information, any discussion on
new regulations will be based on an incomplete picture, and provide uncertain benefit to whales. It is
my sincere hope that you will endeavor to update and correct this document expeditiously, as we
anticipate its use to inform the work of the Atlantic Large Whale Take Reduction Team (ALWTRT) at
its upcoming meeting in Providence.
Overall, the Memo is inconsistent in its application and interpretation of various data sets and
publications. In some cases, conclusions directly contradict statements and information previously
presented by NOAA. In several instances, the paper lacks citations or cites inappropriate sources (i.e.
industry documents instead of raw data; unpublished articles) and appears to be stating conclusions or
opinions without any supporting data (i.e. that the 2015 vertical line regulations are making
entanglements worse). Our most substantive concerns are addressed below but please note that this list
does not represent an exhaustive list of the issues we identified, which range from minor technical points
to omissions of core data sources.
First and most significantly, the Memo suggests that the 2015 vertical line regulations increased
the strength of rope and therefore the severity of entanglements by altering fishing practices and
encouraging the use of larger diameter ropes as vertical lines. There are no current data sets or analyses
used to support this theory. The paper instead cites Knowlton et al. 2016. While the Knowlton paper
accurately characterizes the change in rope strength through manufacturing processes over time, the data

used encompass the years 1994-2010. This time period was largely before any of the substantial changes
in gear due to regulations, such as the sinking groundline regulation in 2009 and the vertical line rule in
2015, and overlapped with a time period in which right whales actually saw population increases. There
has been no recent assessment that states that fishermen have been using larger diameter rope in
response to the vertical line regulations in 2015.
Additionally, to our knowledge, there is no published analysis of ropes taken from right whales
that includes the time period since the vertical line regulations went into effect in 2015, nor any
assessment of the efficacy of those regulations. The most recent publication that details current instances
of entanglements that resulted in serious injuries or mortalities, NOAA’s “Serious Injury and Mortality
Determinations for Baleen Whale Stocks Along the Gulf of Mexico, United States East Coast, and
Atlantic Canadian provinces, 2011—2015” (Ref Doc. 17-19) was published in 2017 and relies on data
from 2011-2015 (prior to the implementation of the vertical line rule). Instead of using this most recent
agency source, the Memo repeatedly cites Knowlton et al. 2012 to point out the increasing rate of
entanglements and that 83% of the population has been entangled at least once. Knowlton et al. 2012 is a
comprehensive 30-year retrospective of the right whale catalogue but does not provide an assessment of
entanglements in the right whale population beyond 2009. While it is indisputable that entanglements are
increasing, a more recent assessment would provide a more accurate picture of the current threats facing
right whales, which are changing rapidly. In fact, due to the lack of data on this critical question, NOAA
recently funded DMR’s current research project to improve understanding of gear usage, hauling load
and vertical line breaking strength. In sum, the Memo fails to take a comprehensive look at how
entanglement rates and severity have changed since the implementation of the sinking groundline and
vertical line regulations went into effect in 2009 and 2015, respectively, nor does it assess changes or
trends in entangling gear during that time period. It is therefore an unreliable assessment of current
regulations.
Second, the Memo cites increased Maine landings to indicate increased effort. Most importantly,
landings are not a proxy for effort, and have never been used as an accepted metrc for increased risk of
entanglement. The Memo cites Maine state landings data to demonstrate increased effort offshore
without describing where the data apply in terms of fishing areas. It uses these landings to assert that
there is an increased overlap and therefore level of risk “offshore.” The data provided by DMR staff
represents landings generated from logbooks from 10% of randomly selected harvesters licensed by the
state. Contrary to the assertion made in Figure 2c, Maine logbook reported landings have increased both
inshore (which we define from 0-12 miles) and offshore (from 12 miles to the Area 1 boundary), but,
when comparing the two areas, the inshore portion has increased at five times the rate of the offshore
area. It appeared, from the webinar held at the time of publication, that NOAA interpreted “offshore” as
being out to the Hague Line (based on the webinar presenter’s interpretation of heat map slides, which
are not included in the Memo). These heat maps interpolate VTR data for lobster. While Area 3 has 50100% of Federal licenses reporting through VTRs (ASMFC TC Memo July 2015), most Area 1 Federal
lobster permit holders are exempt from VTR requirements and those with permits required to report
represent less than 10% of Maine Federal permit holders and 3% of the total license holders in Maine
(ASMFC TC Memo January 2017). Maine has only a handful of Area 3 license holders (permitted by
NOAA), and the majority of effort that we categorize as being beyond 12 miles would end at the Area
1/3 boundary, approximately 40 miles from the coastline. Area 3 VTR data could characterize
“offshore” effort but was not used in the Memo. It is unclear why NOAA would choose to use state
landings records for only one state that is dominated by inshore effort if seeking to accurately
characterize offshore effort, as the majority of the truly “offshore” effort (in Area 3) is from
permitholders in other states.

While the State of Maine recognizes that the size of our fishery is the reason for the focus on our
impact to right whales, effective management measures will require a clear picture of changing
population distribution and abundance in recent years. The Memo repeatedly points to an expanding
range and increasing overlap with fisheries as sources of increased risk. It notes decreased observations
of right whales in the Gulf of Maine and Bay of Fundy during the summer months and southeast coast in
the winter, and increased presence in the Gulf of St. Lawrence in the summer and off the mid-Atlantic in
the winter. Despite the changes in distribution, the only fishery considered for “increased” overlap is the
Gulf of Maine lobster fishery, despite the parallel assertion that the Gulf of Maine is an area of decreased
presence and the fact that NOAA’s own observation resources have been diverted to Canada because of
this shift. There is also little assessment of the unregulated fisheries they encounter in the Bay of Fundy,
on the Scotian Shelf and into the Gulf of St. Lawrence, or the devastating interactions that resulted when
right whales overlapped with changes in the snow crab fishery in 2017.
Additionally, there is no discussion of the role of other US regions or fisheries despite the fact
that the Memo states that right whales are increasingly using other areas, such as the mid-Atlantic.
Furthermore, the Memo includes little discussion of the impact of other U.S. or Canadian fisheries on
right whales. All vertical lines do not present the same level of risk; the location, the season, the type of
gear, and whether it incorporates conservation regulations (e.g. the use of weak links and sinking line in
surface systems) all factor into the level of risk posed by a given line. Additionally, lines that overlap
with right whale feeding aggregations inherently pose more risk of entanglement. A shift in habitat use
out of the Gulf of Maine and into Canadian waters does not double risk, but rather it shifts the spatial
intensity of the risk that exists. The Memo does not cite evidence for the assertion that closures are
regionally effective, nor does it cite any basis for Figure 4’s assertion that vertical lines have increased in
the Northeast since 2011. In fact, this claim directly contradicts a presentation made by Mark MurrayBrown to the New England Fishery Management Council in December 2017, pointing to the reduction
of 2740 miles of vertical line achieved through implementation of the 2015 regulations.
There are additional instances where a more comprehensive data set is available but inexplicably
not used. For example, Figure 5 seems to be trying to show the relevance of the lobster fishery in
entanglements, but most of the entanglements shown are from years prior to when the sinking groundline
and vertical line rules were implemented. This Figure shows only those entanglements where the set
locations are known, and it is unclear whether it shows all entanglements or only those resulting in
serious injury or mortality. Notably absent from the Memo is any reference to the much more robust
dataset curated by NMFS that documents entanglements to confirmed fisheries, which would provide a
much more comprehensive look at the causes of entanglements across the right whale’s range. Use of
this dataset would also allow a look at how entanglements have changed, either by the confirmed fishery
to which the entanglements are attributed, or by characteristics of the rope (i.e. diameter) over time. Two
of the entanglements in Maine shown on this map also fail to note that Maine lobster gear was the
secondary cause of entanglement. The use of range-wide, recent fishery confirmed instances of
entanglement would inform consideration of what measures would most effectively curtail the current
entanglement problem. Focusing on only entanglements where the set location is known drastically
limits an already small dataset and could result in the misalignment of new regulations with the current
entanglement risk.
I strongly believe the Maine lobster industry takes the threats to right whales seriously and will
work to identify a meaningful solution appropriate to the risk posed by their fishery under current
biological and environmental conditions and considering past regulatory actions. However, conclusions

based on conjecture, without sound scientific basis, will alienate their critical participation in this
process. The net result of the oversimplified picture painted by this Memo is likely to be regulations
imposed on a fishery or in an area that will result in very little conservation benefit for the right whale
but will come at a great cost to the fishermen in terms of money, time, and safety.
I look forward to working with you and your staff to improve the accuracy of the information
which will inform the ALWTRT’s work going forward. If you have any questions or would like to
discuss this further, please contact Erin Summers, email: [email protected]; telephone: (207)
633-9556.
Sincerely,

Patrick C. Keliher
Commissioner

Cc:

Mike Pentony, Regional Administrator, Greater Atlantic Regional Office
Mike Asaro, Protected Resource Division, Greater Atlantic Regional Office

Addendum 7 to MLA
Proposed Rule
Comments

Addendum 7 to MLA Proposed Rule Comments

Michael Pentony
Regional Administrator
Greater Atlantic Regional Fisheries Office
National Marine Fisheries Service
55 Great Republic Drive
Gloucester, MA 01930
April 22, 2019
Dear Mr. Pentony:
I am writing to share the Maine Lobstermen’s Association’s perspective and concerns regarding the
ongoing process to identify and implement conservation measures to protect right whales. The MLA has
been involved with the Atlantic Large Whale Take Reduction Team (TRT) since its inception and remains
committed to working with your agency through this process.
The MLA is deeply disturbed by the timing of NMFS’s release of new information to guide discussions at
this week’s TRT meeting. Our last TRT meeting was six months ago. NMFS only announced the Take
Reduction Target and presented a draft of the Decision Support Tool in recent days. Given NMFS’
directive to begin rulemaking at the conclusion of the meeting, the MLA is extremely frustrated to
receive such critical and complex information just days before. TRT members are unrealistically
expected to reach consensus on management alternatives before the Team has had any input on the
Take Reduction Target itself or had adequate time to evaluate and grasp the implications of the new
information presented.
NMFS announced the Take Reduction Target of 60% to 80% on April 5 via email with no opportunity for
discussion by any TRT member. The MLA communicated our concerns to NMFS staff during the past
month about the approach used to set the Take Reduction Target, however staff has been unwilling to
adjust the timetable or process in any way in order to preserve the goal of a collaborative, evidencebased stakeholder process that can achieve consensus on effective management alternatives.
Shared Responsibility between US and Canada
The MLA has also pointed out to NMFS staff a critical flaw in the current path the agency is following.
The best available information about current risks to the right whale population indicate PBR will never
be achieved with management measures implemented unilaterally by U.S. fisheries. The evidence
indicates Canadian fisheries are playing an increasingly large role in right whale serious injury and
mortality. NMFS has effectively ignored this evidence as it formulated the Take Reduction Target and, in
the process, has made no apparent effort to allocate risk to Canadian fisheries in proportion to the
significant role they are now playing.

In particular, the MLA has strong reservations about any methodology that attributes serious injury and
mortality from unknown gear equally between the two countries as though, counterfactually, the risk
from fishing practices in the two countries were equal. Using NMFS’ most recent data, serious injury and
mortality from 2014 to 2018 is 6.2, with 1.6 confirmed to Canada, 0.2 confirmed to U.S. gear.
Furthermore, the majority of rope removed from whales in recent years is larger rope, not consistent
with nearshore U.S. gear, which is the majority of gear fished in U.S. waters.
While Canada has done an admirable job recently implementing whale protection measures in the Gulf
of St. Lawrence, there has been little discussion of the amount of directed effort in the snow crab fishery
from year to year. This year the Gulf of St. Lawrence snow crab quota will increase by 32% compared to
last year. Canada has also not implemented whale protection measures in fisheries outside of that
region even though right whales continue to use habitats that overlap with many Canadian lobster and
snow crab fisheries. Unless the risk from Canadian lobster and snow crab fisheries is accurately
reflected in the proposals presented to the TRT, any resulting management measures in U.S. waters
cannot credibly be relied on to achieve PBR for the endangered whale population.
The MLA also strongly disagrees that U.S. fisheries should be held accountable for the estimated
unobserved serious injuries and mortalities, for which there are no data, under the Take Reduction Plan.
Decision Support Tool
NMFS presented its nascent Decision Support Tool, still under development, to the TRT on April 16, just
one week before the meeting. The information was presented via webinar and allotted only 30 minutes
for questions from team members. While the MLA supports development of this tool to assess
management alternatives, we have serious reservations because the tool is still under development and
has not yet been adequately vetted or peer reviewed. Based on the tool’s preliminary results produced
during the webinar, the MLA is concerned that it will generate unrealistic management alternatives
during the TRT meeting, thus undermining the ability of TRT members to reach consensus on critical
management issues.
It is our sincere hope that, when completed, the management advice produced by the Decision Support
Tool will assist the TRT to identify approaches that will translate into real protections for right whales. As
with any modeling effort, it is important that the model utilize the best available information on whales,
fishing effort and risk of fishing gear so that its output reflects our general understanding of how these
elements interact. Based on the MLA’s first look at the tool last week, it did not achieve this.
In order for the TRT process to be successful, stakeholders must have confidence in the analytical tool if
we are to make decisions based on its assessment of alternatives. The MLA has numerous concerns
regarding the assumptions and data streams used in the tool. We believe other TRT members are likely
to have similar reservations about the quality of inputs to the tool. While we are confident that these
concerns can be addressed, it is important that they be resolved before the tool is employed in the TRT
process. As has often been the case in the past, management advice based on a model’s output could
change significantly as the model is further refined.
The model uses three inputs: whale density, gear density and severity to determine risk. The model
assumes equal weight for these inputs in producing a risk score. The MLA is concerned that equal
weighting of these inputs does not produce an output that reflects our current knowledge of whales and
the risks posed by fishing gear.

Based on the initial demonstration of the tool, the equal weighting of these inputs will always produce
the same outcome: areas with the most gear pose the highest risk. Since the scale of gear density is
exponentially higher than whale density, the gear signal swamps the other indicators. In some cases, this
is likely an accurate reflection of risk. But in other cases, the tool may predict a higher risk for densely
fished areas with little history of whale sightings compared to areas with fishing gear set around feeding
aggregations of right whales, or to areas fished with larger, heavy gear often linked to serious injury and
mortality.
We request that NMFS and the TRT explore options to add a weighting to the whale inputs based on
habitat use, life history, and recent whale distribution shifts. Further, the whale data must be expanded
beyond standardized tracks in order to adequately reflect the recent shift of right whales out of the Gulf
of Maine and into new habitats, as noted in the published literature. The MLA also requests that NMFS
and the TRT explore options to refine the rankings in the severity tool to incorporate data on known
serious injury and mortality as it relates to gear type. These issues require further discussion and
problem-solving cooperatively in order to realistically address the level of risk associated with whale
behavior and recent changes in distribution. The MLA is ready to share ideas on how to improve the
model with relevant NMFS staff.
Whale conservation cannot happen without input and cooperation from fishermen. Fishermen must
understand the justification for each management measure and how implementation will benefit whale
conservation goals. With a common understanding, fishermen can be trusted to adopt the new
management plan and maintain their historically high compliance levels. Achieving high compliance is
unrealistic if proposed measures have uncertain efficacy and cannot credibly be relied on to reduce risk
for whales.
The MLA remains committed to the TRT process and to identifying conservation measures to improve
protections for right whales. It is crucially important that those who will be affected by the results of the
TRT process are in full support of the methodology and tools used in that process. Before the agency
initiates rulemaking, it is imperative that the Decision Support Tool receive thorough consideration by
the TRT and undergo a peer review before any management decisions are made. We urge NMFS to
schedule a follow-up TRT meeting once the model is refined and a peer review of the tool completed. In
the meantime, the MLA will continue to offer constructive feedback and engage our fishermen on the
progress of the TRT.
Thank you for your consideration.
Best regards,
Patrice McCarron
Executive Director
cc. Jon Hare, Northeast Fisheries Science Center
Patrick Keliher, Maine Dept of Marine Resources
Senator Susan Collins
Senator Angus King
Representative Chellie Pingree
Representative Jared Golden

WDC, 7 Nelson Street, Plymouth, MA, 02360
[email protected] whales.org

T +(508) 746-2522 F +(508)746-2537

WDC is a registered 501(c)3 non-profit organization.

Re: Taking of Marine Mammals Incidental to Commercial Fishing Operations; Atlantic Large Whale
Take Reduction Plan Regulations; etc.

Submitted electronically via the Federal eRulemaking portal
March 1, 2021
We submit the following comments addressing both the Draft Environmental Impact Statement: ALWTRP
Risk Reduction Rule (DEIS) and the Proposed Rule to Amend the Atlantic Large Whale Take Reduction
Plan to Reduce Risk of Serious Injury and Mortality to North Atlantic Right Whales Caused by
Entanglement in Northeast Crab and Lobster Trap/Pot Fisheries (NOAA-NMFS-2020-0031) (PR) on behalf
of Whale and Dolphin Conservation. Our comments largely focus on the impact of the DEIS and proposed
rule on the recovery of critically endangered North Atlantic right whales. Understanding that the National
Marine Fisheries Service (NMFS) is aware of the contributing anthropogenic risks leading to the population
decline of the species, we have not provided additional background on these issues in our comments.
Instead, we address specific aspects of the DEIS and PR.
Risk Reduction Goals Must Be Increased:
First, it is unclear why NMFS’s interim and long-term goals appear to only address Potential Biological
Removal (PBR) as a threshold for recovery. According to the Marine Mammal Protection Act (MMPA), the
actual threshold NMFS should be aiming to achieve is a Zero Rate Mortality Goal (ZMRG), or 10% of PBR.
In its recent draft Biological Opinion of 10 Fisheries (BiOp), NMFS stated that “it is inconceivable that the
species has ever been below PBR” and yet the Agency has proposed a rule which fails to meet PBR and
completely disregards ZMRG.
The Agency provided the 60-80% risk reduction goal to the Atlantic Large Whale Take Reduction Team
(TRT) nearly two years ago based on 2016 population estimates and a PBR of 0.9.1 At that time, NMFS
indicated that, if cryptic mortalities were included in its analysis, the average annual rate of serious injuries
and mortalities (SI/M) for North Atlantic right whales from entanglement in U.S. fisheries alone was 4.3,
and “would have to be reduced by about 80% in U.S. fisheries to get below the stock’s PBR of 0.9”2
However, NMFS has subsequently revised both the population abundance and average annual rate of
serious injuries and mortalities for right whales resulting from incidental entanglements in U.S. fishing
gear: in the draft BiOp, NMFS stated: “Using the methods in Pace et al. (2017), this year’s
preliminary estimate is 366 (95% credible interval range of 353-377) individuals as of
1

https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/trt/meetings/April%202019/06_take_reduction_target_lette
r_april52019.html.
2
Ibid.

WDC, 7 Nelson Street, Plymouth, MA, 02360
[email protected] whales.org

T +(508) 746-2522 F +(508)746-2537

WDC is a registered 501(c)3 non-profit organization.

January 2019.”3 Using 366 as the Nmin, PBR is now 0.7.4 Table 57 of the BiOp estimates the annual
average SI/M of right whales from U.S. fishery entanglements as 6.7245. Using NMFS’ methodology and
updated data, the risk reduction target required to reduce SI/M in US fisheries is closer to 90%.
Risk Reduction Necessary to Reduce SI/M
using data provided by NMFS

Population
Est

PBR

SI/M
% risk
(observed reduction
and
necessary
cryptic)*

Proposed Rule (PR) 2016 pop estimate

445

0.9

2.2

60

2016 estimate including cryptic
mortality

445

0.9

4.3*

80

Updated data including cryptic mortality

366

0.7

6.724*

90

Neither the risk reduction targets in the preferred or non-preferred alternatives come close to what is
necessary to reduce SI/M to below PBR.
In our view, a target aimed at reducing risk is not equivalent to a reduction in fishing effort, and there are
ways in which the target could be achieved while minimizing further impacts on the industry. The
proposed rule must be revised to reduce takes below PBR within five years, and ultimately achieve ZMRG.
Ignoring these new data will not adequately protect right whales, and places an undue burden on the
industry which will be told, once again, that despite implementing costly modifications, they were not
enough.
All measures counted toward risk reduction must be codified under the TRP:
During the 2018 meeting of the TRT, to which we are appointed, the TRT agreed to a near-consensus
proposal to achieve at least a 60% risk reduction in each Northeast Lobster Management Area, allowing
states to collaborate with industry members to “refine the implementation approach.”6 WDC supported
this proposal.
At no time during that meeting did NMFS indicate to the TRT that it itended to only consider measures for
3

https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DraftFisheriesBiOp011421.pdf
PBR = Nminx0.5(Rmax)xFr. In this case, 0.7=366x0.2x0.1
5
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DraftFisheriesBiOp011421.pdf
6
https://media.fisheries.noaa.gov/dam-migration/final--atlantic_large_whale_take_reduction_team_meeting_april2326_kom_(508).pdf
4

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federally permitted fisheries in its proposed rule making. We were under the assumption that NMFS
would adopt measures developed by the northeast states with their industry members in its Take
Reduction Plan (TRP). Yet, according to the PR, a number of measures including, but not limited to,
closed areas and gear marking, are mandated only by state regulatory processes and not incorporated into
the PR. The Agency has no means to ensure that these measures will be implemented. For example, Table
1.1 of the DEIS includes a measure from the state of Massachusetts to require no single pots on vessels
more than 29’ in length after January 1, 2020. Not only is this timeline clearly outdated, but the state did
not implement this measure in its final rulemaking.7
Similarly, NMFS is problematically relying on lobster fishery management by the Atlantic States Marine
Fisheries Commission (ASMFC) to reduce risk to right whales. According to the Agency, “ongoing and
imminent (RIN 0648-BF01) Lobster Plan fishery management modifications that result in line reductions
relative to the 2017 baseline would provide risk reduction in the lobster fishery that would be counted
towards the 60 percent goal.“8 While these reductions may legitimately reduce risk if implemented, they
remain in a proposed rule stage after two years, with no definitive date as to when, or if, they will be
enacted.9 Any measures which are not codified under the TRP cannot be guaranteed to be implemented
and should not be counted toward the 60% as risk reduction target.
In addition, we take issue with this statement in the DEIS: “Inclusion of risk reduction as a result of fishery
management actions towards the risk reduction target was supported by the Team in their April 2019
recommendation.” This was not met with widespread Team support as indicated in the meeting summary
which states “Effort reduction through trap allocation reductions was also discussed with mixed
support:”10
The MMPA is clear that federal protections afforded to marine mammals do not solely apply to federal
waters. Unless measures are implemented under the TRP, NMFS has no ability to require their application,
enforcement, or permanence. We appreciate that the TRT serves only as an advisory body to NMFS and
that the Agency has sole discretion and responsibility to implement the TRP. However, we would not have
supported the measures proposed at the 2018 TRT meeting had we known that NMFS intended to restrict
its authority to only measures in federal waters under the TRP. This is not in the best interest of right
whales and violates the intent of the MMPA.

7

https://www.mass.gov/doc/12921-marine-fisheries-advisory-commission-meets-and-approves-newregulations/download.
8
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf
9
https://www.reginfo.gov/public/do/eAgendaViewRule?pubId=202010&RIN=0648-BF01.
10
https://www.fisheries.noaa.gov/webdam/download/97751765.

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Trawling Up Measures:
We acknowledge comments from the industry regarding the difficulty that trawling up can pose to smaller
vessels, as well as the risks associated with heavier trawls. Heavy trawls also pose risk to whales who may
be unable to swim away with gear and, instead, become anchored and drown. As a result, we believe that
NMFS should choose its non-preferred alternative option capping endines at 50% of the average monthly
lines fished in federal waters in 2017. A requirement to fish with only one endline could immediately
achieve this reduction, without impacting smaller vessels or posing additional risk to fishermen or whales.
Agreements about the direction of gear sets should be developed by industry members fishing in specific
regions to avoid lay overs or conflicts with mobile gear fleets.
With regard to state waters, we ask for clarification on the Maine 3-6nm proposals of a minimum of 8
traps per trawl. It appears that the Maine proposal would allow 2 endlines for 8 traps, or 1 endline for four
traps. However, the current TRP requires trawls of five traps or fewer to have only one endline. Is this
proposal intended to modify the current TRP requirements?
As stated previously, the Massachusetts restriction banning single traps on vessels longer than 29’ was
not included in the MA DMF final rule. We are therefore unclear as to how the percent reduction attributed
to this measure has been reallocated.
We are also unclear as to what trawl requirements are intended for the LMA2/3 overlap. According to the
preferred alternative, a minimum of 25 traps/trawl would be required in LMA2, but 45 traps/trawl are
required for LMA3. What would be the minimum number required for the overlap area, and how was this
calculated in the risk reduction percentage attributed to LMA3? As stated previously, we believe this is
better resolved by requiring only one endline per trawl.
We ask NMFS to place a cap on all vertical lines in permitted US fisheries. All permits considered for
fisheries using vertical line, including aquaculture, must be considered in this cap. Placing the sole
burden of vertical line reduction on the lobster and Jonah crab fishery does not achieve adequate risk
reduction if risk is increased by permitting other fisheries. In fact, based on the data provided in the DEIS,
gillnets appear to pose a disproportionally high risk of entanglement to right whales. Table 2.2 in the DEIS
shows that gillnet/netting represents 47% of known fishery entanglements to right whales, yet gillnets
represent only 1.9% of vertical lines in non-exempt waters (Table 2.3 of the DEIS).11 NMFS must reduce
entanglement risk to right whales by evaluating vertical line risk as a whole, not which fishery that line
represents.

11

https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf

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Lastly, as stated in our 2018 proposal to the TRT, it is our understanding that federal permit holders who
hold only a lobster permit are not required to submit Vessel Trip Reports (VTR) and, therefore, data on the
distribution and density of vertical lines, especially in offshore areas, are inadequate. According to the
presentation provided to the ALWTRT on 9/18/2018, there appeared to be an increase in vertical lines in
the Northeast region since the 2013 vertical line reduction rule was implemented. Even considering the
possibility of a statistical error, there was no significant decrease detected from the implementation of the
rule. Additionally, the Statistical Reporting Areas (SRAs) are currently too large to determine risk based on
the very limited reporting. We recommend NMFS require vessels engaged in all fixed-gear fisheries that
use vertical line be required to use VMS and/or AIS as well as submit VTRs. The vessel-specific data do
not need to be made available to the public, but can provide NMFS the ability to evaluate distribution and
density of lines from fisheries that pose risk to whales and assist NMFS in monitoring compliance with the
TRP.
Seasonally Restricting Buoy Lines:
LMA1 Restricted Area Oct-Feb: First, it is odd that the Agency is specifically seeking comments to remove
a restricted area from the PR: “commenters that believe these additional restricted areas are not warranted
to achieve PBR should provide specific information or analysis in support of recommended removal of
restricted areas from the proposed rule.”12 Any proposal to close an area to fishing should be based on
science and demonstrate a tangible risk reudction for right whales. It is therefore unclear how a proposed
closure would no longer be warranted simply based on public input. Furthermore, neither the PR nor the
DEIS provide any insight into what conservation equivalencies would be established as an alternative to
this closure.
Based on data available in the public domain, we support this proposed closure. Acoustical data indicate
that this area is used by right whales, especially in December and January (Figure 1).

12

https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf

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Figure 1. Approximation of LMA1 proposed closure overlaid with data from
https://whalemap.ocean.dal.ca/WhaleMap/ 2/11/2016-2/25/2021

LMA3 Restricted Area May-Aug: Again, based on data available in the public domain, we agree that this
area does warrant protection during the times proposed at a minimum. Even archival telemetry data
appears to show that this may be a transit corridor for right whales moving between the Gulf of St.
Lawrence and the Gulf of Maine (Figures 2). However, we note that gear displacement can increase risk if
moved to an rea where whales occur but, in the absence of survey effort, risk appears lower. Given the
potential for the northern edge of George’s Bank to be regularly used as a route between the Gulf of St.
Lawrence and the Gulf of Maine, we suggest that fishing with one endline be required from AprilNovember along the entire northern edge of George’s Bank may be a more risk averse alternative to the
seasonal closure. NMFS should analyze the difference in risk reduction between this 50% reduction in
vertical line and the proposed closure with potential gear displacement.

Figure 2 Telemetry track of "Churchill" from 2001http://www.gulfofmaine.org/times/fall2001/right_whales.html and
Sightings data from 5/01/2016 -8/31/2020 https://whalemap.ocean.dal.ca/WhaleMap/

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A: Large South Island Restricted Area: We do not support the preferred alternative of a seasonal
restriction which only includes the MA South Island boundaries from February through April. Both the
detection data and previously established seasonal management measures support the Large South Island
Restricted Area as the most protective to right whales (Figure 3).
NMFS has confirmed that the area south of the islands is a year-round habitat for the species.13 The
preferred alternative measure does not protect whales west of the restricted area, for which a Seasonal
Management Area (SMA) was established (red box) from November 1-April 30 (Figure 3) to reduce risk
from ship strikes. The . The determination of this SMA itself indicates the importance of this area for right
whales and warrants its inclusion in restrictions to reduce entanglements.
We ask NMFS to modify the timeframes of this restriction to begin in November, not only to be consistent
with protections from vessel strikes, but also to protect what is likely a mating ground. Surface Active
Groups have been documented in this region14 and, given the gestation period of right whales, this
behavior is more likely to result in pregnancy during the winter months. Furthermore, sightings data from
the New England Aquarium indicate that at least some calving females do not migrate to the Gulf of St.
Lawrence but do use the waters south of the islands. Sightings of this subset of females have been
documented in this region between December and May (P. Hamilton, pers comm)15.
Given that this area is of year-round use to the species, we further request that NMFS require only one
endline between May and October to further reduce risk, as the heavier gear used in the offshore fishery is
known to pose a more significant risk of SI/M to right whales.16
Given the likelihood that this area is a winter mating ground as well as preferred habitat for at least some
calving females, it is essential that it be afforded significant protection from both vessel strikes and
entanglements. As such, we strongly urge NMFS to modify the entire Large South Island Restricted Area
as an SMA to simultaneously reduce vessel strike risks.

13

https://repository.library.noaa.gov/view/noaa/25910
https://www.int-res.com/articles/esr2017/34/n034p045.pdf
15
Phillip Hamilton, Research Scientist, Anderson Cabot Center for Ocean Life, New England Aquarium, [email protected]
16
https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/cobi.12590
14

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Figure 3 Right whale detections sourced from https://whalemap.ocean.dal.ca/WhaleMap

We were not able to discern how NMFS evaluated risk from gear displacement as a result of seasonally
restricted areas. NMFS has implied this PR would result in benefits to right whales and other large whale
species yet the measures are clearly aimed at reducing risk to right whales only. While it is likely that
some portion of gear would be moved from a seasonal restricted area, we could not find a risk analysis to
determine what potential increase in risk may result from gear displacement to other large whales. We
believe that NMFS must consider these potential risks before assuming broad scale benefits to other
species purportedly covered by the rule.
On-Demand Gear in Restricted Areas:
We commend NMFS for its encouragement of the development of on-demand gear by
enabling its use in restricted areas. However, we do not agree with NMFS’ assertion that the
use of on-demand gear in the restricted areas should be evaluated as “neutral” risk. There
are no data to substantiate that sinking groundline poses no risk to large whale species in
general, or right whales specifically. We appreciate that NMFS has indicated they made this

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statement based on an assumption that only a limited number of fishermen would trial on-demand gear in
the restricted areas. However, we remind NMFS that as the technology advances, the use of this gear will
increase. We support its use and believe it will substantially reduce risk, but it does not entirely remove
risk and NMFS should not make statements that imply it can evaluate the use of on-demand gear as
neutral in all cases. We ask NMFS to qualify its statement regarding “neutral risk” for any fishery using
lines that can result in an accidental entanglement.
Reduced Breaking Line Strength:
We do not disagree that lines with higher breaking strengths pose more risk of SI/M to whales, but that
does not mean lower breaking strength lines pose less risk to right whales. We have significant concerns
about the Agency’s reliance on reduced breaking strength rope as the primary mitigation measure in the
PR. The risk reduction from using weak rope is based on a single study, which itself concludes that risk is
not reduced for right whale calves – an age class essential for recovery of the population – or reduce risk
to other large whale species, for which the Agency has implied will benefit from this rule.17 In fact, the
Agency states in the DEIS that “Knowlton et al. (2016) reported that age plays a role in a right whale’s
ability to break free of rope and that adults may be better able to break free from ropes of lower breaking
strength than ropes of greater breaking strength so these measures may benefit adults more than calves
or juveniles”18 (emphasis added). Calves and juveniles are the future of the species, so it would seem their
protection and survival is essential for species recovery. Weak rope itself also does not prevent
entanglements, which may still cause stress and sub-lethal impacts to entangled whales. NMFS itself
concluded in the DEIS that “continuous sublethal stress of entanglement could be impacting population
health and contributing to increased reproductive intervals.”19
Of further concern is NMFS’ intention to implement this measure through the use of breakaway links in
vertical lines. During the February 25, 2021 ALWTRT public hearing, a member of the Center for Coastal
Studies disentanglement team and co-author of the single study on reduced breaking strength rope
expressed his concerns about lines breaking and making it more difficult for disentanglement teams to
free entangled whales.20 NMFS clearly relies on disentanglement as a tool for reducing SI/M of right
whales and notes that, between 2010 and 2018, seven right whales would have been added to the SI/M list
had they not been disentangled.21 Without intervention, those whales alone would have exceeded PBR for
the species. Implementing measures which may result in the loss of these whales by making
17

https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/cobi.12590
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf
19
Ibid.
20
https://www.greateratlantic.fisheries.noaa.gov/public/nema/SFD/ALWTRTDEISProposed%20RuleComment%20Opportunity.mp4
21
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf
18

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disentanglement efforts more provides no benefit to the species or to the fishing industry, who will be
once again asked to significantly modify gear at their expense because measures they were mandated to
enact by the Agency did not work.
We have similar concerns with the proposed movement of the weak link/line requirement at the buoy.
This appears to be an experiment that is being codified into the PR before it is tested for effectiveness. In
responding to comments, we ask the Agency to provide all scientific information that this proposed
measure is based on.
Removing line reduces risk, reducing its breaking strength and changing weak links based on untested
theories trades one risk for another. Neither right whales nor the fishing industry should be subjected to
swapping risks.
Gear Marking:
We have provided multiple comments over many years regarding our concerns about the woefully
inadequate gear marking requirements for fixed-gear fisheries in the U.S.. Not only has the lack of gear
marking hindered targeted management measures to reduce risk to endangered right whales, ir is
arguably the biggest source of frustration for the industry, which feels it is being asked to modify gear
without any evidence of the risk posed by U.S. fisheries. Gear marking is not mitigation, and it is not
intended to place blame: it is a tool that can help identify areas of risk to right whales and reduce impacts
on fisheries that are not likely to pose risk. As such, we once again, strongly urge NMFS to require gear
marking that is specific both to individual fisheries and to the region in which they are fished, as proposed
in the non-preferred alternative, and to include groundline in the requirements. As gear marking is being
implemented solely for the conservation benefit of protected species, it should not be managed by state
regulations, but must be a requirement of the TRP.
Economic Impact and Benefits of Species Recovery:
We understand and appreciate that NMFS must evaluate potential economic impacts on fisheries as a
result of the PR. However, the Agency does not appear to correct these estimates based on the actual
impact, or lack thereof. For instance, in the 2013 DEIS for the previous vertical line proposed rule, NMFS
estimated that the Massachusetts Restricted Area would cost between $560,000 and
$830,000 per year.22 However, subsequent data presented in Myers and Moore (2019) found
that “Massachusetts state landings value reached record highs for all three years for which
22

https://archive.fisheries.noaa.gov/garfo/protected/whaletrp/eis2013/voli/chapter-8_summary-feis_2014_v_1.pdf

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data are available since the closure was implemented (2015, 2016, and 2017).”23 They concluded that the
“loss in landings during the high-price closure period has therefore been more than compensated for by
growth in total landings.”24
We urge NMFS to standardize a review of its economic analysis based on the actual impact of previous
rules, and provide these data to the ALWTRT for review. We are concerned that the Agency’s broad
assumptions may unnecessarily alarm industry members and their families, who view potential economic
hardships that may not be born out to the extent presented.
We also believe that NMFS does a disservice to its economic review by discounting the potential benefit of
reducing the need for disentanglement efforts. As stated previously, NMFS acknowledges
disentanglement as a tool of the TRP and recognized that seven right whale entanglements did not result
in SI/M as a result of disentanglement intervention. However, the economic value of disentanglement is
not considered.It is likely that, in the absence of disentanglement, additional costly measures would have
previously been required of the industry. As such, disentanglement should be viewed as an economic
offset in the proposed rule. We ask NMFS to evaluate the annual average costs of retaining each
disentanglement team, including its equipment, insurance requirements, and staff, and factor in this offset
against the economic impact to the industry. Any additional costs per effort should also be included. As
the teams must be available 365 days/year, we believe the cost for retention and response should be
combined as the total value. It is important to note that the majority of these costs are currently the
responsibility of the permitted NGOs, not the Agency nor the industry, which benefits from their actions.
As such, we feel these costs are significant and should be considered as an offset to the economic impact
of the PR.
The benefits of species recovery are also inadequately addressed. The DEIS addresses the “nonconsumptive use benefits” of whale watching and the “non-use benefits” society may place on whales.
However, the Agency entirely dismisses the ecological benefit of whale recovery. Whales play a role in
helping to create a healthy ocean ecosystem, on which we rely to breathe, to eat, and to fight climate
change. Emerging research underscores the critical role North Atlantic right whales play in the ecosystem
by providing key nutrients for phytoplankton, which in turn produce most of the world’s oxygen and are
the base on which fish stocks depend.25 Data supporting the direct link between healthy whale populations
and the fight against climate change continue to grow. Researchers have found the role of whales so
23

https://darchive.mblwhoilibrary.org/bitstream/handle/1912/24899/Myers_Moore_pre_print.pdf?sequence=4&isAllowed=
y
24
Ibid.
25
https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0156553

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significant they concluded that the “full recovery from one serious anthropogenic impact on marine
ecosystems, namely the dramatic depletion of whale populations, can help to counter the impacts of
another now underway—the decline in nutrients for phytoplankton growth caused by ocean warming.”26
The pivotal contribution made by marine mammals to health of our shared planet should be a standard
consideration for NMFS in all of its consultations and rulemaking for marine mammals.
Monitoring and Enforcement:
We were dismayed to find that the PR does not include a monitoring and enforcement plan. According to
the Purpose and Need for Action, monitoring and compliance with regulatory actions is required, yet the
DEIS states that “monitoring and enforcement will be developed in collaboration with the TRT and
enforcement partners.”27 The substantial delay in the release of the PR and the lack of any proposed
monitoring and enforcement plan only further delays protections to right whales.
Implementation Date:
During the February 16, 2021 public hearing regarding the PR, NMFS indicated that the final rule was not
likely to be published until sometime during the summer of 2021. The publication of the rule, however, is
not the same as implementation of the rule. For example, the most protective measures in the amended
TRP issued in 2014 did not go into effect for a full year.28 A similar delay in implementation date for this
PR would not only delay mitigation measures, but also delay the timeline of the conservation framework
the draft BiOp is relying on. All subsequent delays come at the expense of right whales and the fishing
industry, which is likely to be subjected to further restrictions as the species continues to decline due to
NMFS’s inaction.
Other Large Whale Species:
We do not believe it is accurate for the DEIS to state that “most” of the Plan’s measures were designed to
reduce risk to right whales when, in fact, all of the measures were designed with that intent. Any benefits
to humpbacks, finbacks, or minkes will be incidental at best and, in some cases, this rule may result in
negative impacts to these species if gear is displaced from areas of high use by right whalesinto areas of
high use by other species.

26

https://journals.plos.org/plosone/article/authors?id=10.1371/journal.pone.0013255
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DEIS_RIR_ALWTRP_RiskReductionRule_VolumeI.pdf
28
https://www.federalregister.gov/documents/2014/06/27/2014-14936/taking-of-marine-mammals-incidental-tocommercial-fishing-operations-atlantic-large-whale-take
27

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It is unclear why Sei whales were not mentioned in the DEIS. Sei whales overlap often with right whales
as they prey on similar species. Additionally, there is evidence that this species is also subject to
entanglements (9/16/2006 Jeffrey’s Ledge; 4/9/2008 GSC; 5/11/2016 Jeffrey’s Ledge; 4/26/2019 George’s
Basin; and SI noted on 5/11/207 off NC). While SI/M for this species does not currently exceed PBR, we
believe they deserve mention and consideration given they are likely feeding in proximity to right whales
and risk is probably higher than what is reported.
Right Whale Triggers:
We ask NMFS to clarify its proposed trigger of three right whales in the Massachusetts Bay Restricted
Area. Are three right whales inclusive of a cow/calf? We suggest that NMFS modify this trigger to include
three individual right whales and/or the sighting of a cow/calf pair. The need to protect calving females
and their progeny is paramount to the future of this species, and any sighting of a mother and calf should
be a trigger for action.
Messaging:
We attended all listening sessions and public hearings offered by NMFS regarding the proposed rule and
DEIS. Common themes were apparent: members of the general public had misunderstandings about why
rulemaking was underway, the data used, and the efficacy of on-demand gear. We appreciate that these
hearings were a place for NMFS to receive information and not respond to it, but we strongly urge NMFS
to immediately and publicly respond accurately to the misinformation that is circulating and that the
Agency helped perpetuate.
1. Rulemaking is not the result of NGO litigation. NMFS has a statutory obligation to redo the BiOp
and modify the TRP based on the best available science. NGO litigation resulted from delays in
NMFS actions to move forward, it did not cause the actions to be required. NMFS must clarify that
it is operating based on its obligations, independent of any and all litigation or lobbying associated
with these actions.
2. The data on population estimates for right whales are peer-reviewed, including by members of the
Atlantic Scientific Review Group, which includes a scientist representing the Maine Department of
Natural Resources.
3. On-demand gear is in progress. We do not agree with many of comments made by the industry or
conservation commumity indicating that on-demand gear will never work or is not
commercially viable at this time. Significant progress has been made over the past
two years with the input of fishermen. NMFS should provide updates on its progress

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to all interested parties and prioritize the resolution of gear conflicts through geolocation as part of
the TRP.
Conclusion:
The PR and accompanying DEIS do not consider an adequate range of alternatives, did not use the best
available information on population abundance and PBR, and therefore do not achieve the risk reduction
targets needed to protect right whales. As such, it also does not achieve significant risk reduction for the
other large whale species it purports to protect. Implementing an insufficient rule is harmful both to right
whales and to the fishermen impacted by these measures, who will inevitably be subject to additional
changes and regulations as right whales continue to be accidentally entangled in their gear. We ask NMFS
to immediately implement emergency measures while this PR is amended to provide sufficient protection
and risk reduction to North Altantic right whales and ensure long-term certainty for the fishing industry.
As longstanding members of the ALWTRT, we thank you for the opportunity to comment on these
important documents.
Sincerely,

Regina Asmutis-Silvia
Executive Director
ALWTRT Conservation Member

Colleen Weiler
Jessica Rekos Fellow
ALWTRT Conservation Alternate

• Center for Biological Diversity • Conservation Law Foundation •
• Defenders of Wildlife • Humane Society of the United States •
• Humane Society Legislative Fund •
Colleen Coogan
National Marine Fisheries Service
Northeast Regional Office
55 Great Republic Drive
Gloucester, MA 01930
March 1, 2021
via regulations.gov
Re:

Proposed Rule to Amend Atlantic Large Whale Take Reduction Plan Regulations, 85
Fed. Reg. 86,878 (Dec. 31, 2020), and Draft Environmental Impact Statement
NOAA-NMFS-2020-0031

Dear Ms. Coogan,
On behalf of the Center for Biological Diversity, Conservation Law Foundation, Defenders of
Wildlife, the Humane Society of the United States, Humane Society Legislative Fund, and our
millions of members and supporters, we submit these comments to the National Marine Fisheries
Service (NMFS) on its proposed rule to amend the regulations implementing the Atlantic Large
Whale Take Reduction Plan (Plan or ALWTRP) and associated Draft Environmental Impact
Statement (DEIS).
As conservation members and alternates on the Atlantic Large Whale Take Reduction Team
(Team), we have forcefully advocated for NMFS to fulfill its obligations under the Marine
Mammal Protection Act 1 (MMPA) and Endangered Species Act 2 (ESA) to protect large whales
covered by the Plan, especially the critically imperiled North Atlantic right whale. The history of
the Plan is the history of NMFS’s failure to meet these statutory mandates. The species—and the
fisheries—now face the consequences of twenty-five years of agency denial and delay.
Since NMFS first promulgated the Plan in 1997, it has never complied with its MMPA
obligation to bring mortalities and serious injuries (M/SI) in Category I and II fisheries to at or
below the right whale’s potential biological removal (PBR), to say nothing of the zero mortality
rate goal (ZMRG). NMFS has been equally cavalier with its ESA obligations, tacitly allowing
unlawful right whale take in both state and federal fisheries without consequences. On NMFS’s
watch, right whales don’t die of old age.
Yet time and again NMFS has dragged its feet in amending and implementing the Plan. It has
refused to finalize proposed regulations until compelled to do so by litigation. It has failed to
1
2

16 U.S.C. §§ 1361–1389.
Id. §§ 1531–1544.

implement proactive, protective measures the right whale’s status demands and the law requires.
It has acceded to certain industry demands to carve out exemptions and rollbacks from Plan
requirements and caved in the face of resistance to basic measures like gear marking.
Now, nearly twenty-five years after the original Plan, the right whale—and the agency—are at a
crossroads. In the decade since 2011, the right whale has lost nearly all the hard-won population
gains it made the decade previously. From a peak of 483 individuals in 2011, the population has
plummeted to 356 animals—only around 56 more than when the Plan was first finalized in 1997.
Lethal and sublethal entanglements are killing off right whales and depressing their reproduction.
Cryptic mortalities are nearly 2.5 times observed mortalities. Two-thirds of cryptic mortalities
are entanglement-related. Mortalities are outpacing births by a significant and growing margin.
In short, the species is on a death march to oblivion that can only be reversed with decisive,
large-scale, sweeping federal actions to address the existential threats of fishing gear
entanglements and vessel strikes in U.S. and Canadian waters. If there was ever a time for NMFS
to answer Congress’ clarion calls in the ESA and MMPA to save the right whale from extinction
at human hands, that time is now. 3
But while this crisis necessitates immediate and substantial reductions in entanglements, NMFS
has proposed a rule that will accomplish neither. NMFS does not even pretend that this
rulemaking will satisfy the MMPA’s immediate requirement to bring M/SI below PBR,
explicitly putting off that goal for a full decade longer under its Conservation Framework. The
proposed measures are highly unlikely to meet even the inadequate 60% risk reduction target
NMFS set based on now-outdated data, let alone the much higher risk reduction target that new
data on population estimates, PBR, and cryptic mortality necessitate. The DEIS does not satisfy
the National Environmental Policy Act’s (NEPA) requirements for analyzing a full range of
reasonable alternatives that meet the purpose and need of this rulemaking. And as described at
length in our recent comments on the draft Biological Opinion (BiOp), NMFS cannot finalize
that document as drafted without violating the ESA.
In short, NMFS cannot conclude this rulemaking within the parameters and proposals it has
proffered for public comment without violating the MMPA, NEPA, and the ESA. If it proceeds
as planned NMFS will inevitably face litigation while subjecting industry to costly, disruptive,
and ultimately insufficient regulatory measures and wasting more months and years that the
critically endangered right whale does not have to spare.
The only reasonable course of action is for NMFS to withdraw the proposed rule and take it
(along with the DEIS and draft BiOp) back to the drawing board to bring them into compliance
with the law. In the interim, NMFS must act on our December 2, 2020 petition for emergency
rulemaking under MMPA section 118(g) by: (1) finding that the incidental mortality and serious
injury of right whales from commercial fisheries is having an immediate and significant impact
on the species; and (2) prescribing emergency regulations, including temporary closures, to
protect right whales in the interim while developing, approving, and implementing Plan
amendments that will satisfy NMFS’s legal obligations while setting the right whale and the
The United States must also aggressively engage in an open and transparent process with Canada to ensure that
appropriate risk reduction measures are implemented bilaterally.

3

commercial fisheries on a sustainable path forward.
While revising the rule, the agency should clarify for the public and the industry that it must take
this action to address long standing legal requirements under the ESA and MMPA, not only the
court decision which required the agency to do what the law already required of it. In addition,
the agency should clarify that a particular risk reduction target is not equivalent to the same
reduction in fishing effort. Regardless, ignoring new scientific data will not adequately protect
right whales or the industry which will be told, once again, that despite implementing costly
modifications, they were not enough.
I.

TIMING OF THE PROPOSED RULE/NEPA ANALYSIS RELATIVE TO THE
FINAL BIOLOGICAL OPINION

The agency is well aware that it must complete its new biological opinion by May 31, 2021. Yet
NMFS staff have stated several times during the course of informational meetings and public
hearings on the proposed rule that the agency expects to complete the final rule and Final
Environmental Impact Statement (FEIS) sometime this summer, with the Record of Decision
(ROD) to follow after a 30-day minimum waiting period. We are deeply concerned that if NMFS
follows through on its plan to complete the biological opinion months earlier than the final rule
and FEIS/ROD, it will violate the ESA, the Administrative Procedure Act (APA), or both. This
approach would also contradict representations that NMFS made in federal court—
representations on which the Court based its decision.
A biological opinion must be coextensive with the agency action it analyzes and must analyze
the effects of the entire agency action. Conner v. Burford, 848 F.2d 1441, 1453, 1457–58 (9th
Cir. 1998); see also id. at 1453. We have already detailed the extensive defects in the agency’s
definition of the proposed action in our comments on the draft BiOp. We need not reiterate those
here to state the obvious: if NMFS has not yet decided on the measures to be promulgated in the
final rule amending the Plan, it cannot complete a meaningful and lawful biological opinion
without the certainty of what the final action—and thus the effects of the entire agency action—
will be. See Ctr. for Biological Diversity v. Ross, Case No. 18-cv-112 (D.D.C.), ECF No. 111-1
(Fourth Declaration of Jennifer Anderson) at para. 14 (“Completion of the Biological Opinion is
linked to completion of the rulemaking process, as the analysis of the effects of the fisheries as
modified by the rulemaking necessitates knowing what measures will be in the final rule.”). A
biological opinion issued when the agency action itself is not final is ipso facto incomplete and
unlawful.
As is equally obvious, NMFS must have a valid biological opinion on the state of the world as it
exists (i.e., on the ongoing authorization and management of state and federal fisheries as
regulated by the Atlantic Coastal Fisheries Cooperative Management Act, the MMPA and the
Magnuson-Stevens Fishery Conservation and Management Act), not a biological opinion on
future measures not in effect yet. If NMFS issues a final biological opinion that relies on future
measures in the final rule and FEIS/ROD, it will continue to be in violation of sections 7 and 9 of
the ESA.
NMFS also risks violating the APA’s notice and comment requirements if it rushes to finalize its

MMPA decision for purposes of the ESA consultation but then publishes the final rule months
later, particularly if it has still not finished analyzing and responding to public comments. The
APA obligates NMFS not only to analyze and respond to the public’s comments on the proposed
rule but to make reasoned choices in its final rule and to alter course where justified. That
requires the agency to keep a mind sufficiently open to change based on public comments. See,
e.g., Grand Canyon Air Tour Coal. v. FAA, 154 F.3d 455, 467–68 (D.C. Cir. 1998) (“An agency
is required to provide a meaningful opportunity for comments, which means that the agency’s
mind must be open to considering them”).
If NMFS renders its final decision on what measures to incorporate in the final rule amending the
Plan for ESA consultation purposes but still has not completed its FEIS, let alone the ROD, it
will have violated NEPA. That statute’s twin aims are informing decisionmakers and informing
the public both to stimulate public involvement in federal agency decisionmaking and to ensure
agency accountability. See Dep’t of Transp. v. Public Citizen, 541 U.S. 752, 768 (2004)
(describing NEPA as intended to “provid[e] a springboard for public comment” (alteration in
original)); New Mexico ex rel. Richardson v. Bureau of Land Mgmt., 565 F.3d 683, 703) (10th
Cir. 2009) (“By focusing both agency and public attention on the environmental effects of
proposed actions, NEPA facilitates informed decisionmaking by agencies and allows the political
process to check those decisions.”). NMFS must take this hard look “objectively and in good
faith, not as an exercise in form over substance, and not as a subterfuge designed to rationalize a
decision already made.” Metcalf v. Daley, 214 F.3d 1135, 1142 (9th Cir. 2000). If NMFS has
already decided for ESA consultation purposes what its action will be long before the FEIS and
ROD issue, the NEPA process will have been a meaningless exercise.
Additionally, in Center for Biological Diversity v. Ross, the Court vacated the previous 2014
biological opinion, but stayed that vacatur until May 31, 2021 based explicitly on NMFS’s
representations for how much time it would need to complete the final rule, not just the new
biological opinion. For example, the Court stated: “vacatur of the 2014 BiOp is appropriate, but
[] relief shall be stayed until May 31, not January 31, 2021, to give Defendants time to complete
the new rule and BiOp.” 480 F.Supp.3d 236, 240 (D.D.C. 2020) (emphasis added). The Court
based its decision on the fact that:
NMFS currently estimates that it will publish a final amended Take Reduction Plan
and implementing regulations by May 31, 2021. See Fourth Anderson Decl., ¶¶ 11–
13. The agency intends to issue a new BiOp (presumably including an ITS this time,
if required) for the lobster fishery simultaneously with publishing the final amended
Plan, as the required “analysis of the effects of the fisheries [on the right whale] ...
necessitates knowing what measures will be in the final rule.” Defs. Remedy Opp.
at 10–11.
Id. at 243. Indeed, after finding that NMFS’s “timetable for completing the rulemaking process is
reasonably consistent with the MMPA,” the Court stated: “[a]lthough the Court therefore finds
the May 31, 2021, deadline acceptable, it will look with considerable disfavor on any future
requests by NMFS for even more time to complete the new rule and BiOp.” Id. at 249 (emphasis
added).

A. NMFS Has a Decades-Long History of Failing to Implement Measures Sufficient to
Meet PBR
NMFS has lost sight of several critical aspects of section 118 in the nearly twenty-five years it
has administered the ALWTRP. First, Congress did not intend to allow NMFS decades to reduce
right whale M/SI to below PBR or to give the agency leeway to promulgate a Plan or
amendments that admittedly will not meet this target at all. Second, Congress expressly stated
that reducing M/SI to below PBR is only an interim goal on the way to ZMRG. Third, Congress
explicitly allowed NMFS to take into account economic and other factors in a Plan only if M/SI
is below PBR and on its way to ZMRG.
Congress amended the MMPA in 1994 to add section 118 to require “immediate action to protect
. . . marine mammal stocks most affected by interactions with commercial fishing operations.” S.
Rep. No. 103-220, at 6 (1994) (emphasis added); 16 U.S.C. § 1387. Especially concerned about
the incidental take of endangered marine mammals in commercial fisheries, Congress specified
that any such take requires authorization under both section 118 and section 101(a)(5)(E). See 16
U.S.C. §§ 1371(a)(5)(E), 1387(a)(2).
Section 118 requires NMFS to develop a take reduction plan for Category I and II fisheries that
interact with “strategic stocks,” including ESA-listed marine mammals. Id. §§ 1387(f)(1),
1362(19)(C). The statute specifies that, as a short-term goal, each take reduction plan must
contain regulatory measures to reduce fishery-related mortality and serious injury to below the
species’ PBR within six months of the plan’s implementation. Id. § 1387(f)(2), (f)(5)(A),
(f)(7)(F). The true goal of section 118 is not PBR but ZMRG. Id. § 1387(b). Therefore, the longterm goal of a take reduction plan must be to reduce, within five years of its implementation,
incidental mortality and serious injury “to insignificant levels approaching a zero mortality and
serious injury rate.” 4 16 U.S.C. § 1387(f)(2).
Congress did not entrust NMFS with the latitude to interpret a reasonable timeframe for
accomplishing section 118’s goal for species like the right whale. Rather, it established section
118’s “immediate” goal “that the incidental mortality or serious injury of marine mammals
occurring in the course of commercial fishing operations be reduced to insignificant levels
approaching a zero mortality and serious injury rate within 7 years after April 30, 1994.” Id. §
1387(a)(1) (emphasis added); see also id. § 1387(b)(1) (“Commercial fisheries shall reduce
incidental mortality and serious injury of marine mammals to insignificant levels approaching a
zero mortality and serious injury rate within 7 years after April 30, 1994”).
Congress thus set clear expectations for NMFS to reduce M/SI of right whales in commercial
fisheries to below PBR and to ZMRG by dates certain, as NMFS acknowledged in promulgating
the original 1997 ALWTRP. See 62 Fed. Reg. 39,157, 39,159 (Jul. 22, 1997) (MMPA required
Plan to reduce right whale M/SI below PBR of 0.4 animals per year by January 1998 and further
reduce M/SI to ZMRG by April 30, 2001 while taking into account fisheries economics, etc.).
Yet the Plan not only failed to accomplish these statutory mandates by the congressionally-set
deadlines, it has not even managed to keep pace with the increasing rates of M/SI in U.S.
NMFS defines “insignificant levels approaching . . . zero” or “ZMRG” to mean 10% of a stock’s PBR. 50 C.F.R. §
229.2.

4

commercial fisheries.
Although NMFS cannot turn back the clock to comply with prior deadlines, it is equally obvious
that it may not continue to push substantive compliance with the statute off to some future point
one minute longer. Congress did not give NMFS a free hand to determine when a Plan or its
amendments will fulfill section 118’s mandates, such as NMFS is now purporting to do with the
proposed rule and Conservation Framework that optimistically (and unrealistically) project
finally achieving M/SI reductions below PBR five to ten years from now.
Nor did Congress give NMFS a free hand to determine whether a Plan or its amendments will
meet the statutory mandates at all. The language of section 118 allows no exceptions: any take
reduction plan or amendments thereto shall include measures to reduce M/SI to below PBR, and,
thereafter, shall be amended as necessary to meet section’s 118 requirements (i.e., ZMRG). See,
e.g., 16 U.S.C. § 1387(f)(7)(C), (F).
B. Economics Only Comes into Play When Analyzing ZMRG
Section 118 does not authorize NMFS to promulgate amendments that yet again attempt merely
to reduce the risk of commercial fisheries on right whales, e.g., 85 Fed. Reg. at 86,879; it must
promulgate measures that will in fact meet the statutory targets of reducing M/SI to below PBR
and ultimately to ZMRG. NMFS knows full well that the proposed rule will not meet PBR; at the
very, very best, it will bring down M/SI to more than three times PBR. 5
From the very outset, NMFS has imputed to itself discretion under section 118 to subsume the
requirement to bring right whale M/SI below PBR through the Plan (which it has never
succeeded in doing) to its desire to minimize economic impacts to the fisheries. See 62 Fed. Reg.
at 39,159 (rejecting approach of extensive closures that would guarantee M/SI “but only at a high
cost to many fishermen” and instead choosing an approach relying on untested gear
modifications, limited closures, and disentanglement efforts); id. at 39,182 (“Widespread
closures, although they might achieve the goals of the MMPA, would be economically costly.
Such huge economic costs would not be necessary if disentanglement efforts and gear
modifications are successful in reducing bycatch to MMPA standards.”). Yet section 118 itself
does not support that exercise of discretion, as illustrated by the very different language
Congress used in the two sentences composing section 118(f)(2)’s commands for a strategic
stock such as the right whale. The first sentence reads:
The immediate goal of a take reduction plan for a strategic stock shall be to
reduce, within 6 months of its implementation, the incidental mortality or
serious injury of marine mammals incidentally taken in the course of
commercial fishing operations to levels less than the potential biological
See NMFS, Draft Endangered Species Act Section 7 Consultation on the: (a) Authorization of the American
Lobster, Atlantic Bluefish, Atlantic Deep-Sea Red Crab, Mackerel/Squid/Butterfish, Monkfish, Northeast
Multispecies, Northeast Skate Complex, Spiny Dogfish, Summer Flounder/Scup/Black Sea Bass, and Jonah Crab
Fisheries and (b) Implementation of the New England Fisheries Management Council’s Omnibus Essential Fish
Habitat Amendment 2 [Consultation No. GARFO-2017-00031, Jan. 2021, available at
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/DraftFisheriesBiOp011421.pdf (Draft BiOp).
230.
5

removal level established for that stock under section 1386 of this title.
16 U.S.C. § 1387(f)(2). Only after that goal has been accomplished does the second sentence
allow the agency to balance how to accomplish the long-term goal, i.e., ZMRG, against the
fisheries’ interests:
The long-term goal of the plan shall be to reduce, within 5 years of its
implementation, the incidental mortality or serious injury of marine
mammals incidentally taken in the course of commercial fishing operations
to insignificant levels approaching a zero mortality and serious injury rate,
taking into account the economics of the fishery, the availability of existing
technology, and existing State or regional fishery management plans.
Id (emphasis added). Congress clearly intended NMFS to immediately reduce M/SI below PBR;
only after that immediate goal has been achieved may NMFS balance the requirement to further
reduce M/SI to ZMRG with fisheries economics and other concerns.
For twenty-four years now, NMFS has administered, and, from time to time, amended, a Plan
based on the hope that gear modifications and limited closures will achieve in bringing right
whale M/SI down to PBR, falling well short of the six-month deadline and the goal of the statute.
II.

NONE OF THE PROPOSED MEASURES ADEQUATELY REDUCE RISK

Our organizations do not support either Alternative 2 (Preferred Alternative) or Alternative 3 in
the DEIS for several reasons including: (1) that they cannot adequately reduce risk to right
whales as packaged; (2) many of the assumptions upon which they allegedly reduce risk are
unfounded; (3) to the extent they incorporate state measures they are not yet added to the TRP;
and (4) an admitted lack of enforcement beyond 12 nautical miles makes their effectiveness
questionable. Neither do we support Alternative 1, the “No Action Alternative,” as action is
clearly needed.
According to the proposed rule, the Preferred Alternative will “achieve a greater than 60-percent
reduction” in risk by ultimately implementing measures falling into four main categories: (1)
gear modifications intended to reduce the number of vertical lines; (2) seasonal restricted areas
that would allow ropeless fishing; (3) the replacement of buoy lines with weak rope or weak
insertions; and (4) additional gear marking requirements. 85 Fed. Reg. at 86,881, 86,885. In the
DEIS, NMFS estimates that the Preferred Alternative could reduce risk by up to 64.3%. DEIS
Vol. I at 3-68.
Alternative 3 analyzes similar measures as well as: (1) larger, longer, and additional seasonal
restricted areas; (2) a line cap allocation capped at 50 percent of the lines fished in 2017 in
federal and non-exempt waters throughout the Northeast except in offshore LMA3; and (3) more
robust gear markings. NMFS indicates that Alternative 3 could reduce risk by up to 72.6%. DEIS
Vol. I at 3-69.

A. The Risk Reduction Targets are not based on the Best Scientific and Commercial
Data Available
Nearly two years ago, NMFS provided the Atlantic Large Whale Take Reduction Team (TRT)
with a 60-80% risk reduction goal based on 2016 population estimates and a PBR of 0.9. Id. at 347, 67. At the time, NMFS indicated that, if cryptic mortalities were included in its analysis, the
average annual rate of serious injuries and mortalities from entanglement in U.S. fisheries was
4.3 and “would have to be reduced by about 80% in U.S. fisheries to get below the stock’s PBR
of 0.9.” Since that time, NMFS has revised its population estimates and average annual rate of
serious injuries and mortalities resulting from incidental entanglements in U.S. fishing gear. In
its recently published draft BiOp , NMFS stated: “Using the methods in Pace et al. (2017), this
year’s preliminary estimate is 366 (95% credible interval range of 353-377) individuals as of
January 2019.” 6 Using 366 as the Nmin, PBR is now 0.7. 7 Table 57 of the draft BiOp estimates
the annual average M/SI of right whales from U.S. fishery entanglements as 6.724. 8 Thus, using
NMFS’s own methodology and updated data, the risk reduction target required to reduce
M/SI in US fisheries is closer to 90%.
The proposed rule needs to be revised to achieve M/SI below PBR (at minimum). That is
especially true considering other new information, including an updated paper from Pace et al.
(2021) that determined based on data from 2010–2017 that the observed mortality detection rate
was only 29% of total mortality, leaving 71% of mortalities undetected, 9 and the estimate from
the New England Aquarium that the number of right whales alive at the end of 2019 was only
356 individuals, as few as 70 of which were breeding females. 10
B. The Gear Modifications Proposed to Reduce the Number of Vertical Lines Cannot
Adequately Reduce Risk
The proposed rule describes 2 major gear modifications necessary to reduce the number of
vertical lines in the Preferred Alternative: (1) increasing the number of traps on a trawl
(“trawling up”); and (2) extending the maximum trawl length (distance between endlines) in
LMA3. 85 Fed. Red. at 86,881. NMFS also analyzes capping line allocations at 50 percent of
average monthly lines in federal waters in the DEIS for Alternative 3. See DEIS Vol. I at 1-7.
We address each of these in turn.
1. Trawling Up and Line Caps
Every vertical line in the water increases entanglement risk for right whales. Trawling up is one
method to reduce the number of vertical lines and could encourage efficiency. However, trawling
up will only be guaranteed to reduce the number of vertical lines in the water (and thus risk) if it
is combined with a line cap providing a concrete metric for reductions from the baseline. See
Draft BiOp.
PBR = Nmin x 0.5 (Rmax) x Fr. In this case, 0.7 = 366 x 0.2 x 0.1.
8
Draft BiOp.
9
Pace, R. M. III et al. 2021. Cryptic mortality of North Atlantic right whales. Conservation Science and Practice.
e346.
10
New England Aquarium, Right Whale Consortium Releases 2020 Report Card Update, Nov. 9, 2020,
https://www.andersoncabotcenterforoceanlife.org/blog/2020-narwc-report-card/.
6
7

DEIS Vol. II at 5-143 (indicating that a 50% line cap reduction would reduce entanglement risk
by 45% in federal waters and stating that trawling up alone is insufficient to reduce vertical line
numbers). According to a September 18, 2018 TRT presentation, the number of vertical lines in
the Northeast region has increased since the 2013 vertical line reduction rule was implemented.
Even considering the possibility of a statistical error, there was no significant decrease detected
from the implementation of the rule. This combination would hold the fisheries accountable and
could prevent latent effort from being realized. See DEIS Vol. II at 5-139 (discussing need for a
mechanism to prevent latent effort from being activated).
It is not clear, however, that trawling up necessarily reduces risk to right whales (especially to
juvenile and calves). Quantitative date on the relationship between gear configurations and the
probability of causing serious injuries and mortalities is largely lacking. DEIS Vol. II at 3-12.
For example, an inshore fisherman forced to fish 15 rather than 5 traps/trawl may choose heavier
line thus increasing risk. On the other hand, an offshore fisherman forced to fish 45 rather than
25 traps/trawl is already using heavy line and probably does not significantly increase risk as a
right whale will likely drown under either scenario given the weight of the gear. See e.g., DEIS
Vol. II at 3-47-48.
Fishermen have raised safety concerns related to trawling up. It is logical to expect that trawling
up could be more difficult on a smaller vessel (where the deck may not be able to accommodate
the increased number of traps), or for Captains fishing alone. For those reasons, our
organizations do not oppose the conservation equivalency proposed for LMA3, that would
increase the maximum length of a trawl from 1.5nm to 1.75 nm to allow a limited number of
vessels to fish more than 45 traps per trawl so that smaller vessels can fish less traps/trawl due to
safety concerns. 85 Fed. Reg. 86,886. 11
Although the proposed rule only seeks comment on the Northeast American lobster fishery, it is
our view that all fisheries using vertical line, including but not limited to aquaculture, must be
considered in this cap. Placing the sole burden of vertical line reduction on the lobster and Jonah
crab fishery does little to reduce risk to right whales if risk is increased elsewhere by permitting
other fisheries and activities. Data provided in the DEIS, indicate that gillnets pose a
disproportionately high risk of entanglement to right whales. See DEIS Vol. I at Table 2.2
showing that gillnet/netting represents 47% of known fishery entanglements to right whales, yet
gillnets represent only 1.9% of vertical lines in non-exempt waters (Table 2.3 of DEIS Vol. I)).
To reduce the number of serious injuries and mortalities below PBR, NMFS must evaluate the
vertical line risk in all fisheries and identify a regulatory mechanism for implementing line caps
as soon as possible.
2. NMFS Should Require the Use of One End-Line
The DEIS states that fishing with one end-line was “considered but not analyzed” due to industry
concerns about safety, increased gear conflict, and increased gear loss. DEIS Vol. II at 5-138.
Given that none of the measures in the proposed rule adequately reduce risk to right whales and
Pers. comm. with TRT member David Borden (only a limited number of vessels will want an exemption from the
45 trap/trawl requirement.

11

that the remaining measures that would adequately reduce risk are not generally attractive to the
industry either, NMFS should fully analyze this option as part of its do-over.
To immediately reduce the number of vertical lines outside of closures, NMFS should require all
trap/pot fisheries operating in the Northeast to use a single surface end-line in those areas where
right whales are known or expected to be (either socializing, transiting, feeding, or breeding).
This immediate 50% reduction in endlines would reduce risk. Understanding that additional gear
conflicts could occur in the absence of surface markings, agreements about the direction of gear
sets should be developed by industry members fishing in specific regions and sharing agreements
with the mobile gear fleet should be drafted (as they already are in certain areas).
C. The Seasonal Restrictions to Buoy Lines Proposed Will Not Adequately Reduce
Risk
Both the Preferred Alternative and Alternative 3 propose new restricted areas that are inadequate
to reduce risk sufficient to meet PBR. It is also difficult to discern how NMFS evaluated risk
related to gear displacement for the specifically identified closures. See DEIS Vol. II at 3-36
(only analyzing redirected effort generally and modelling redirected effort for the Northeast
Canyons and Seamounts National Marine Monument) While it is likely that some portion of gear
(traps and lines) will be moved or removed, a risk analysis that looks at the impact of such gear
displacement should be considered before assuming the costs or benefits. To the extent that
NMFS relies on state measures to reduce risk, it must incorporate those into the Plan.
Our organizations support the following new Restricted Areas:
● The LMA1 Restricted Area in Alternative 3—Offshore ME LMA1/3 border, zones
C/D/E—closed from October to February that allows fishing without buoy lines (with
appropriate authorizations for exemption from surface gear requirements).
● The “Large Rectangular Area” in Alternative 3 in Southern New England, as modified to
be a year-round restricted area closed to buoy lines with allowances for fishing without
buoy lines (with appropriate authorizations for exemption from surface gear
requirements).
1. The LMA1 Restricted Area in Gulf of Maine
Based on the best commercial and scientific data available in the public domain, including
acoustic data, we support the LMA1 Restricted Area analyzed in Alternative 3 which closes
the area to vertical buoy lines October - February. This area has been identified as a
“foraging hotspot” for right whales using the Duke Habitat Model within the Decision Support
Tool and poses a higher than average risk based on co-occurrence. DEIS Vol. I at 3-71, 72. It is
also our understanding that based on the demographics of the fleet operating within the
boundaries denoted and testimony at public hearings, that at least some of the gear will come out
of the water minimizing risk due to shifted effort.

We oppose the trigger process described in the Preferred Alternative that allows the Regional
Administrator the discretion to make a decision about this closure based on non-identified
criteria. Any proposal to close an area to fishing should be based on sound science and
demonstrate a tangible risk reduction to right whales, thus it is unclear how a proposed closure
would no longer be warranted simply based on public input or whatever conservation
equivalencies would be established in place of this closure if it is removed. Ironically, this is
contradictory to what the agency has said elsewhere about its ability to do NEPA analysis on
dynamic management.
2. The Massachusetts South Island Restricted Area in the Preferred Alternative is
Insufficient
Our organizations do not support the Preferred Alternative - “South Island Restricted Area” - that
closes an area south of Nantucket from February through April because the area is too small in
time and space. A large body of science demonstrates a year-round presence of right whales in
Southern New England. Based on this data, as well as the size of previously established
restricted areas in the Plan, we support the “Large South Island Restricted Area” analyzed in
Alternative 3. However, we urge the agency to make this a year-round closure to vertical
buoy lines. Modifying the Large South Island Restricted Area to restrict vertical buoy lines yearround would be the most protective and fully account for the variable habitat use of this region
by right whales.
Right whale distribution and habitat use has shifted since 2010 in response to climate changedriven shifts in prey availability. 12 The best scientific and commercial data available, including
aerial surveys, 13 acoustic detections, 14 stranding data, 15 a series of DMAs declared by NMFS
pursuant to the ship strike rule, 16 and prey data, 17 all indicate that right whales now heavily rely

12
Record, N., Runge, J., Pendleton, D., Balch, W., Davies, K., Pershing, A., Johnson, C., Stamieszkin, K., Ji, R.,
Feng, Z. and Kraus, S. 2019. Rapid Climate-Driven Circulation Changes Threaten Conservation of Endangered
North Atlantic Right Whales. Oceanography. Vol. 32, pp. 162–169.
13
Kraus, S.D., Leiter, S., Stone, K., Wikgren, B., Mayo, C., Hughes, P., Kenney, R.D., Clark, C.W., Rice, A.N.,
Estabrok, B., and Tielens, J. 2016. Northeast large pelagic survey collaborative aerial and acoustic surveys for large
whales and sea turtles. Final Report. OCS Study, BOEM 2016-054, pp. 118; Leiter, S.M., Stone, K.M., Thompson,
J.L., Accardo, C.M., Wikgren, B.C., Zani, M.A., Cole, T.V.N., Kenney, R.D., Mayo, C.A., and Kraus, S.D. 2017.
North Atlantic right whale Eubalaena glacialis occurrence in offshore wind energy areas near Massachusetts and
Rhode Island, USA. Endangered Species Research. Vol. 34, pp. 45–59; Quintana, E., “Monthly report No. 3: May
2017,” Report prepared for the Massachusetts Clean Energy Center by the New England Aquarium, pp. 26 (May 15,
2017).
14
Kraus, et al. 2016; Davis, G.E., Baumgartner, M.F., Bonnell, J.M., Bell, J., Berchick, C., Bort Thorton, J., Brault,
S., Buchanan, G., Charif, R.A., Cholewiak, D., 2017. Long‐term passive acoustic recordings track the changing
distribution of North Atlantic right whales (Eubalaena glacialis) from 2004 to 2014. Scientific Reports. Vol. 7, p.
13460.
15
Asaro, M.J., Update on US Right Whale Mortalities in 2017, NMFS, November 30, 2017, available at:
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/
2017%20Nov/asaro_usstrandings_nov2017.pdf.
16
NMFS Interactive DMA Analyses: https://www.nefsc.noaa.gov/rcb/interactive-monthly-dma-analyses/.
17
Pendleton, D.E., Pershing, A., Brown, M.W., Mayo, C.A., Kanney, R.D., Record, N.R., and Cole, T.V.N. 2009.
Regional-scale mean copepod concentration indicates relative abundance of North Atlantic right whales. Marine
Ecology Progress Series. Vol. 378, pp. 211–225; NOAA Northeast Fisheries Science Center, “Ecology of the

on Southern New England waters. 18 In January 2019, an aggregation representing a quarter of
the population—100 whales—was seen in this area 19 engaged in both foraging and social
activities, demonstrating that it is clearly more than just a migratory corridor. Southern New
England is important to all life history stages. 20 Surface Active Groups have also been
documented in this region 21 and, given the gestation period of right whales, this behavior is more
likely to result in pregnancy during the winter months.
Large, consistent aggregations of right whales in all four seasons, have led scientists and a
NMFS Expert Working Group to describe Southern New England as a year-round foraging
“hotspot.” 22 Several other scientific data sources demonstrate that right whales use these waters
year-round. 23 Further, a recent presentation at the North Atlantic Right Whale Symposium
discussed new evidence showing that 11 out of 15 newly catalogued whales identified south of
Cape Cod have never been sighted further north in the Bay of Fundy or the Gulf of St.
Lawrence, 24 and suggesting this area may represent an end-point of the northern migration for
some portion of the population.
In addition to year-round use of the area, the relative abundance in the area has increased. For
example, there is evidence of a broader temporal shift in distribution resulting in greater
densities off Rhode Island and Massachusetts later in the year, through May and into the summer
months. 25 April appears to be particularly important for females of reproductive age. 26 Interannual and inter-seasonal variability in aerial and acoustic detections imply that there are no
clear spatial patterns of habitat use across Southern New England and right whales should be
expected to be encountered equally across the region. 27

Northeast US Continental Shelf – Zooplankton,” available at https://www.nefsc.noaa.gov/ecosys/ecosystemecology/zooplankton.html.
18
Although there are challenges in the use of opportunistic sightings data (no area systematically surveyed, effort
not corrected for, and potential for counting an individual whale more than once), they are a proxy for habitat used
by North Atlantic right whales, as validated by NMFS’ management actions based on these data, including the
implementation of DMAs.
19
NMFS, Voluntary Vessel Speed Restriction Zone in Effect South of Nantucket to Protect Right Whales (Jan. 28,
2019), https://www.fisheries.noaa.gov/feature-story/voluntary-vessel-speed-restriction-zone-effect-south-nantucketprotect-right-whales.
20
Leiter et al. 2017, at 52–54.
21
Id.
22
Oleson, E.M., Baker, J., Barlow, J., Moore, J.E., and Wade, P., 2020. North Atlantic Right Whale Monitoring and
Surveillance: Report and Recommendations of the National Marine Fisheries Service’s Expert Working Group.
NOAA Technical Memorandum NMFS-OPR-64, at Fig. 1.
23
Kraus, S.D. 2016; Davis, G.E., et al. 2017; NMFS Interactive DMA Analyses.
24
Hamilton, P., “North Atlantic Right Whale Catalog Update, Recent Genetic Findings and Whale Naming
Results,” Presentation at the North Atlantic Right Whale Consortium Annual Meeting (Oct. 29, 2020).
25
Davis, G. E., et al. 2017.
26
Leiter, S.M., et al., “North Atlantic right whale Eubalaena glacialis occurrence in offshore wind energy areas near
Massachusetts and Rhode Island, USA.” Endang Spec Res Vol. 34: 45–59 (2017).
27
Id.; DMAs; Redfern, J., Pendleton, D., O’Brien, O., Ganley, L., Hodge, B. and McKenna, K., “Tools to identify
and minimize risk to marine mammals,” Presentation to the Massachusetts Habitat Working Group (Dec. 11, 2020).

Finally, the Preferred Alternative could result in redirected effort into areas of high risk as the
Commonwealth of Massachusetts did not close state waters south of the islands after all. 28
Given the potential for this area to be a winter mating ground as well as preferred habitat for at
least some calving females, it is essential that it be afforded significant protection from both
vessel strikes and entanglements. We strongly urge NMFS to modify the entire Large South
Island Restricted Area as a Seasonal Management Area to simultaneously reduce vessel
strike risks.
3. The Georges Basin Restricted Area
Alternative 3 analyzes a buoy line closure in the “Georges Basin Restricted Area” between May
and August. Our organizations support closures that do not cause predictable relocation of lines
to areas of high co-occurrence with right whales, inadvertently displacing risk. This particular
offshore area in Georges Basin is important to right whales as plankton data demonstrates its
importance as foraging habitat 29 and sightings data (albeit rare currently) as well as telemetry
data 30 suggest that this may be a transit corridor for whales moving between the Gulf of St.
Lawrence and the Gulf of Maine. See DEIS Vol. II at 3-62 (showing increased right whale
density along the northern edge of Georges Bank from April through September). However,
those benefits are only afforded if gear does not shift into areas of increased risk. Given the size
and demographic of the fishing effort there, it is our view that these traps/vertical lines are
unlikely to come out of the water between May and August and it is more likely than not that
they will relocate into equally high risk areas.
For that reason, we have concerns that a full closure of the area proposed could increase risk by
shifting effort south and west resulting in even higher densities along the corridor. Given the
potential for the northern edge of Georges Bank to be a regular route between the Gulf of St.
Lawrence and Gulf of Maine, we recommend that NMFS only allow trap/pot fishing with
one end line along the entire northern edge of Georges Bank from April – September, as an
alternative to the Georges Basin Restricted Area proposed. While it would not entirely
remove risk, it would reduce risk to a larger spatial area by 50% without incurring additional
costs to the industry. In addition, NMFS should send an enforcement boat to the area on a regular
basis (at least once per week) and perform additional surveys (aerial and vessel) to better
understand right whale abundance and behavior while using the area.

Sean Horgan, Fish panel bans inshore lobstering during whale migration, Gloucester Times, Jan. 28, 2021
https://www.gloucestertimes.com/news/fish-panel-bans-inshore-lobstering-during-whalemigration/article_761e98de-6196-11eb-b9f6-c3c00dd2aecc.html; MA DMF, February 19, 2021, “New Protected
Species Regulations Finalized for Fixed Gear Fisheries and Industry Outreach on Required Gear Modifications,”
https://content.govdelivery.com/accounts/MADMF/bulletins/2c2930d. This highlights why NMFS cannot rely on
any risk reduction measures unless those measures are specifically incorporated into the ALWTRP—only then can
NMFS assure such measures will in fact be legally required as part of the ALWTRP. NMFS cannot delegate its legal
obligation to adopt measures to reduce M/SI to the states.
29
DEIS Vol. I at 3-71, 72-74.
30
Telemetry track of "Churchill" from 2001, available at
http://www.gulfofmaine.org/times/fall2001/right_whales.html.
28

D. Weak Rope Will Not Reduce the Risk of Entanglement
1. “Weak Rope” and “Weak Insertions” are Unproven Conservation Measures
Our organizations do not support the weak rope or weak link insertions analyzed in the DEIS.
The use of weak rope or weak insertions is unproven and cannot guarantee the projected risk
reduction goals in the proposed rule. 31 Any assumptions about the efficacy of weak rope or weak
contrivances for reducing serious injuries and mortalities are just that—assumptions—that are
largely theoretical and untested in the field.
We have previously expressed concerns regarding the efficacy of using 1,700 lb breaking
strength rope. At this time, it is neither commercially available nor proven to reduce serious
injury and mortality to right whales. The data presented in Knowlton et al. (2016) were obtained
prior to 2011, before right whales significantly shifted their habitat use. 32 In addition, the
breaking strength does not appear to reduce risk of serious injury or mortality to right whales
under two years of age. Indeed, the single paper on which the concept of weak rope as a
mitigation measure was developed is based on the “suggest[ion]” that “adult right whales . . .
can break free from [] weaker ropes and thereby avoid a life-threatening entanglement.” Younger
right whales (calves and juveniles), as well as smaller whales of other species, have a much
lower force output than adult right whales, 33 and are less likely to be able to break even lowerpound breaking strength rope.
NMFS’s application of the weak inserts is also problematic as they do not go the entire length of
the rope. In the preferred alternative, weak insertions are only proposed down to 50 percent in
the rope in nearshore areas and 35 percent in offshore areas. DEIS Vol. I at 1-15.
As NMFS acknowledges in the DEIS, lower-pound breaking strength ropes may reduce the
severity of the entanglements, but they will not reduce the encounter rates and associated risk
including serious injury or mortality and longer-term sublethal impacts depending on the
complexity and specifics of an entanglement event. Id. For example, even so-called weak rope
could wrap around a whale’s mouth and damage its baleen, thereby impeding its ability to feed,
leading to weight loss and starvation. Even if that weight loss is not fatal in and of itself, in
females it can contribute to delayed reproduction. 34 During the February 25, 2021 ALWTRT
public hearing, a member of the Center for Coastal Studies disentanglement team and co-author
of the single study on reduced breaking strength rope, expressed his concerns about lines
breaking and making it more difficult for disentanglement teams to free entangled whales. 35
DEIS Vol. I at 3-68, Table 3.4.
Knowlton, A. R., J. Robbins, S. Landry, H. A. McKenna, S. D. Kraus, and T. B. Werner. 2016. Effects of fishing
rope strength on the severity of large whale entanglements. Conserv Biol 30:318-328.
33
Amy Knowlton, Tim Werner and Scott Kraus, Whale Release Ropes, Presentation at the Consortium for Wildlife
Bycatch Reduction, https://www.mmc.gov/wp-content/uploads/Knowlton2_Marine-Mammal-CommissionKnowlton2-VERSION-2.pdf at 7 (emphasis added).
34
See, e.g., Moore et al. 2021. “Assessing North Atlantic right whale health: threats, and development of tools
critical for conservation of the species.” Dis Aquat Org Vol. 143: 205–226, 2021. https://doi.org/10.3354/dao03578.
35
NMFS, Atlantic Large Whale Take Reduction Plan Proposed Modifications, Feb. 2021 Presentation, available at
https://www.greateratlantic.fisheries.noaa.gov/public/nema/SFD/ALWTRTDEISProposed%20RuleComment%20Opportunity.mp4.
31
32

On that note, NMFS inappropriately relies on disentanglement as a tool toward reducing M/SI of
right whales and notes that, between 2010 and 2018, seven right whales would have been added
to the M/SI list had they not been disentangled. DEIS Vol. I at 2-30; see also id. at 3-76. Without
intervention, those whales alone would have exceeded PBR for the species. Implementing
measures which may result in the loss of these whales by making it more difficult to disentangle
them provides no benefit to the species or to the fishing industry who will be once again asked to
modify gear at their expense because measures they were mandated to enact by the Agency did
not work.
We have similar concerns with the proposed movement of the weak link/line requirement at the
buoy. This appears to be an experiment that is being codified before it is tested. In responding to
comments, we ask the agency to provide the scientific information that this proposed measure is
based upon.
The agency’s reliance on weak rope, contrivances or toppers to reduce risk, especially in
offshore areas, is particularly unreasonable where (1) lobstermen use a large number of pots per
trawl, and have expressed concerns about safety and lost gear; (2) the area is of particularly high
risk for right whales due to the heavier line and increased number of traps used there; and (3)
there is evidence that whales that become entangled near the bottom (where there will not be
nearby weak insertion) have more complex entanglements and cannot break free as easily. 36
2. Weak Rope Inhibits Species’ Recovery
After 50 years of management, conservation and management measures to date have wholly
failed to recover the species. A recently published paper summarizing the spiraling health of
right whales, the increasing threats they face, and the tools that will be critical for their
conservation. 37 The paper concludes that the use of weak rope as a management measure is
inconsistent with the recovery of the species and that “to enable species recovery, reduction in
mortalities have to be accompanied by substantial reduction of sub-lethal trauma as well,”
stating:
The role of sub-lethal entanglement drag in reducing NARW health and
fecundity should be a major consideration in comparing the efficacy of
potential mitigation measures. Thus, while 1700 lb (~773 kg) breaking
strength rope may reduce mortality and severe injury, it will continue to be
a source of morbidity. Ultimately, removal of rope from the water column
will better enable species recovery. 38

36
Howle, et al. 2019. Simulation of the entanglement of a North Atlantic right whale (Eubalaena glacialis) with
fixed fishing gear. MARINE MAMMAL SCIENCE, 35(3): 760–778 (July 2019).
37
Moore et al. 2021. “Assessing North Atlantic right whale health: threats, and development of tools critical for
conservation of the species.” Dis Aquat Org Vol. 143: 205–226, 2021. https://doi.org/10.3354/dao03578.
38
Id.

3. NMFS’s Risk Reduction Analysis Uses a Flawed Baseline
NMFS estimates that 26% percent of the vertical lines in the water will be converted to weak
rope in the Preferred Alternative, and 73% will be converted to full weak rope in Alternative 3
accounting for approximately significant reductions in risk. DEIS Vol. I at 1-15; DEIS Vol. I at
3-68, Table 3.4. For this analysis, the agency unreasonably assumes that inserts placed at least
every 40 feet. are equivalent to full weak rope. Id. at 1-14. The analysis which compares various
proposed insert intervals to a line with weak inserts every 40 feet (“lower bound”), and also
recognizes the depth of the lowest insert (upper bound), 39 is flawed. Weak inserts every 40 feet
cannot be used as the baseline for determining the percentage of risk reduction that a “full weak
rope,” would provide because that risk reduction is unknown. Any calculation of the relative risk
reduction of the lesser weak insertion methods proposed, should calculate risk reduction relative
to no ropes in the water (i.e., zero risk), not a line with inserts every 40 feet.
E. Improved Gear Markings Are Necessary but Will Not Reduce Risk
In our view, none of the gear marking measures analyzed or proposed in the DEIS are sufficient.
We strongly urge NMFS, again, to require gear markings that are specific to the fishery and
region in which it is fished, and that can be seen from a plane or boat. Appropriate gear marking
requirements should also include requirements for groundlines. In addition, as gear marking is
implemented solely for the conservation benefit of right whales, it should be a requirement of the
Plan rather than managed by state regulations.
Insufficient gear marking requirements for fixed-gear fisheries in the U.S. have demonstrably
hindered targeted management measures to reduce risk to endangered right whales. Our
organizations have commented several times over the last five years on this issue, yet NMFS has
failed to implement new gear marking requirements. In most cases, NMFS cannot determine the
origin (to fishery or country) of the gear documented on and/or removed from right whales to the
detriment of whales and the fisheries implicated. DEIS Vol. I at 1-5; 2-40. A better
understanding of gear origin, particularly since 2010, is necessary to define areas of high risk to
the species and is long overdue. In addition, NMFS should work with gear specialists in both the
U.S. and Canada to re-analyze gear documented on, or removed from, entangled large whales in
the past.
We strongly urge NMFS to require gear marking that is specific both to a fishery and to the
region in which it is fished, and that supports observation of marks from platforms such as boats
and planes. It is apparent that the current requirement for gear marking is too broad, enabling at
least some industry members to deny potential risk from their fishery, even when the gear
removed from whales is consistent with that fished in that region. 40 For instance, NMFS’s right
whale incident data includes several cases of retrieved gear which was marked with a red tracer
“The lower bound compares the proposed insert intervals relative to insert intervals every 40 ft and provides the
percentage of rope within buoy lines that would be considered weak by that metric. The upper bound recognizes that
the depth of the lowest insert is important; a whale hitting the line above the lowest weak insert could break away,
preventing attachment to the bottom gear and an acute drowning event, and possibly before a serious entanglement
injury can be incurred. That upper bound is the estimated percent of line above the lowest weak insert.” Id.
40
Letter from Maine Lobstermen’s Association to NMFS, Apr. 30, 2019, https://mainelobstermen.org/wpcontent/uploads/2019/08/MLA-TRT-near-consensus-withdrawal_2019.08.30-FINAL.pdf?x44315.
39

and was attributed to the “Northern inshore/nearshore trap” fishery but in only once case was it
identified as lobster gear. 41 More specified gear marking requirements under the Plan would
substantially reduce the equivocation of which fisheries do, in fact, pose demonstrable risk to the
species.
There are also compelling cases in NMFS’s own data set for which gear remains categorized as
unknown but for which gear determination cannot rule out U.S. fisheries. For example, right
whale 4146 was documented as entangled on April 23, 2017, entangled and images indicate that
the entanglement appears recent and therefore likely to have occurred in U.S. waters. Similarly,
right whale 4091 is listed on a NMFS incident report on May 12, 2018 as having “Line trailing
from right mouthline, with at least one pectoral wrap, and trailing 50 ft. Buoy pinned close to
flipper.” As stated previously, this whale was sighted gear free in the Cape Cod Bay only six
days earlier. It is most likely the whales became entangled in U.S. waters and the most likely
source of line in U.S. waters is from U.S. fixed fishing gear. However, in neither case does
NMFS provide any attribution of gear. We therefore suggest NMFS include a category in their
assessment clarifying when U.S. fishing gear cannot be ruled out.
We continue to recommend significantly improved gear marking requirements on every 40 feet
of line in all U.S. fisheries known to interact with right whales to better define the region and
fishery beyond the broad regional mandates which currently exist. NMFS itself provided support
for the increased frequency of gear marking in its gear marking resources, stating:
“[a]lternatively, if rope were marked every 40 feet we could expect [to] get the information
provided by the mark 90% of the time, because at least 40 feet of rope is likely to be
recovered.” 42 In light of the frequency with which right whales encounter the bottom while
foraging, 43 we recommend unique markings to identify sinking groundline as part of the vertical
line system versus those lines used to connect traps to better inform when and where whales
encounter gear.
In addition to improved gear marking in the Northeastern American trap/pot fisheries, NMFS
should immediately require enhanced gear marking requirements for all permit holders in all
Category I and II fisheries likely to entangle marine mammals including, but not limited to: the
Northeast sink gillnet, Northeast drift gillnet, Northeast anchored float gillnet, Southeast Atlantic
gillnet, Mid-Atlantic gillnet, Southeastern Atlantic U.S. shark gillnet, Atlantic mixed species
trap/pot, Atlantic blue crab trap/pot, and the Mid-Atlantic American lobster trap/pot fisheries.

NMFS, 2000-2018 Right Whale Incident Data, Apr. 19, 2019,
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202019/20002018_right_whale_incident_data_3_19_19v.xlsx.
42
NMFS, Past Gear Marking Efforts, updated March 2018,
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/trt/meetings/April%202018/past_alwtrt_gear_mar
king.pdf.
43
Hamilton PK, Kraus SD (2019) Frequent encounters with the seafloor increase right whales’ risk of entanglement
in fishing groundlines. Endang Species Res 39:235-246. https://doi.org/10.3354/esr00963.
41

F. 100% Harvester Reporting, Vessel Tracking Systems, and Enhanced
Enforcement Must be Prioritized
As the DEIS acknowledges, Maine still does not have 100% harvester reporting (DEIS Vol. II at
3-102), nor has NMFS finalized a rule requiring it. We urge NMFS to initiate and develop an
action that would immediately require: (1) 100% harvester reporting in the entire fishery (2) all
federal permit holders to obtain and use a GARFO-approved vessel tracking system; and (2) all
federal permit holders to mark all traps electronically in order to provide detailed information on
gear type and set location, enhance the enforcement of all regulatory measures in fixed gear
fisheries, and help ascertain the ownership of lost or damaged gear.
G. Ropeless Fishing is the Only Way to Adequately Reduce Risk in the Long Term
Our organizations support and appreciate the modifications—in the Preferred Alternative and
Alternative 3—that change the existing seasonal restricted areas from areas closed to harvesting
lobster and crab to areas closed to persistent buoy lines. 44 85 Fed. Reg. at 86,887; DEIS Vol. I at
1-7. We also support the measures in both Alternative 2 and 3 that would allow fishing without
buoy lines in any newly established restricted areas. Id. As a recent paper noted, ropeless fishing
is the only way to adequately reduce risk to right whales, while allowing fishing in the long
term. 45 However, any authorization to fish in such a closure, such as an exempted fishing permit
or letter of authorization, should include conditions to protect right whales such as area
restrictions, low vessel speed, observer monitoring, and reporting requirements. See DEIS Vol. I
at 1-7 (“would” include in Alternative 3 and “likely” in Alternative 2).
III.

THE DEIS FAILS TO COMPLY WITH NEPA

NEPA, 42 U.S.C. § 4321 et seq., is the fundamental tool for ensuring that federal agencies
properly vet the impacts of major federal actions on wildlife, natural resources, and communities.
It requires federal agencies to consider reasonable alternatives and identify the most
environmentally preferable one.
A central purpose of NEPA is to assure that federal decision-makers consider the environmental
consequences of their actions before a decision to act is made and to provide for “[a]ccurate
scientific analysis, expert agency comments, and public scrutiny” of agency decisions. 42 U.S.C.
§ 4332(C); Marsh v. Or. Natural Res. Council, 490 U.S. 360, 371 (1989) (NEPA ensures that
“the agency will not act on incomplete information, only to regret its decision after it is too late
to correct”). Under NEPA, federal agencies are required to take a “hard look” at environmental
consequences in order to integrate environmental impacts into the decision making process.
Kleppe v. Sierra Club, 427 U.S. 390, 410 n.21 (1976).
Because the proposed rule to amend the Plan is a major federal action significantly affecting the
44
As the relative risk of sinking groundline is still uncertain, it is our view that waters within the Cape Cod Bay
where the highest known concentration of right whales seasonally occurs, should remain closed to all fixed gear
fishing until additional data about the efficacy of ropeless gear becomes available.
45
Moore et al. 2021. “Assessing North Atlantic right whale health: threats, and development of tools critical for
conservation of the species.” Dis Aquat Org Vol. 143: 205–226, 2021. https://doi.org/10.3354/dao03578.

human environment, it is subject to NEPA’s “detailed statement” requirement. NMFS’s EIS
must therefore evaluate: (i) the environmental impact of the proposed action, including the
cumulative impacts; (ii) any adverse environmental effects which cannot be avoided should the
proposal be implemented; (iii) alternatives to the proposed action; (iv) the relationship between
short-term uses of man’s environment and the maintenance and enhancement of long-term
productivity; and (v) any irreversible and irretrievable commitments of resources which would
be involved in the proposed action should it be implemented. 42 U.S.C. § 4332(2)(C).
NMFS cannot avoid its obligation to conduct a comprehensive review of the direct, indirect, and
cumulative impacts of the proposed rule by relying on the amendments to NEPA’s implementing
regulations recently issued by the Council of Environmental Quality (“CEQ”). NMFS began its
NEPA process on the proposed rule well before the regulatory amendments went into effect and
thus NMFS should apply the old regulations. Compare 84 Fed. Reg. 37822 (Aug. 2, 2019)
(NMFS’s notice of intent to prepare an environmental impact statement on proposed rule to
amend the ALWTRP) with 85 Fed. Reg. 43304 (July 16, 2020) (final rule amending CEQ
regulations, with an effective date of September 14, 2020). Moreover, the new regulations are
unlawful and, in any event, cannot trump NMFS’s statutory obligations to fully consider the
direct, indirect, and cumulative effects of its actions. 46
A. The DEIS Fails to Properly Define the Purpose and Need for Action
NMFS fails to properly define the purpose and need. In preparing the DEIS, NMFS must define
its purpose and need in acting. 40 C.F.R. §§ 1502.13–1502.14 (2019).This is part of the
“responsibility for defining at the outset the objectives of an action” to be taken by the agency.
Citizens Against Burlington, Inc. v. Busey, 938 F.2d 190, 196 (D.C. Cir. 1991). This purpose and
need inquiry is crucial for a sufficient environmental analysis because “[t]he stated goal of a
project necessarily dictates the range of ‘reasonable’ alternatives.” Carmel-by- the-Sea v. U.S.
Dep't of Transp., 123 F.3d 1142, 1155 (9th Cir. 1997). Thus, “an agency cannot define its
objectives in unreasonably narrow terms” without violating NEPA. Id.
In crafting the purpose and need statement, the agency must incorporate the parameters set by
Congress in relevant statutes. Busey, 938 F.2d at 196. Here, that means considering the overall
goal of the MMPA to protect and recover imperiled marine mammals, 16 U.S.C. § 1361, the goal
of section 118 to drive to M/SI of marine mammals in commercial fishing gear to below ZMRG,
id. § 1387(a)(1), and Congress’s directive that “[t]he interest in maintaining healthy populations
of marine mammals comes first” under the statute. Kokechik Fishermen’s Ass’n v. Sec’y of
Comm., 839 F.2d 795, 800, 802 (D.C. Cir. 1988); see also Animal Welfare Inst. v. Kreps, 561
F.2d 1002, 1007 (D.C. Cir. 1977) (“the MMPA is . . . motivated by considerations of
humaneness toward animals, who are uniquely incapable of defending their own interests”).
See 42 U.S.C. § 4332; Kleppe, 427 U.S. at 410 (citing 42 U.S.C. § 4332(2)(C)). There are at least five lawsuits
challenging the new regulations. See Complaint, Wild Virginia et al. v. Council on Environmental Quality et al., No.
3:20-cv-00045 (W.D. Va. July 29, 2020), ECF No. 1; Complaint, California et al. v. Council on Environmental
Quality et al., No. 3:20-cv-06057 (N.D. Cal. Aug. 28, 2020), ECF No. 1; Complaint, Alaska Community Action on
Toxics et al. v. Council on Environmental Quality, No. 3:20-cv-05199 (N.D. Cal. Jul. 29, 2020), ECF No. 1;
Complaint, Iowa Citizens for Community Improvement et al. v. Council on Environmental Quality et al., No. 1:20cv-02715 (D.D.C. Sept. 23, 2020), ECF No. 1; Complaint, Environmental Justice Health Alliance et al. v. Council
on Environmental Quality et al., No. 1:20-cv-06143 (S.D.N.Y. Aug. 8, 2020), ECF No. 1.
46

NMFS must also consider the goals of the ESA, which are to protect and recover threatened and
endangered species and their habitats, 16 U.S.C. § 1531, and “[t]he plain intent of Congress in
enacting this statute . . . to halt and reverse the trend toward species extinction, whatever the
cost.” Tenn. Valley Auth. v. Hill, 437 U.S. 153, 184 (1978); see also id. at 185 (agencies must
“afford first priority to the declared national polity of saving endangered species”).
While NMFS correctly indicates in its purpose and need statement that the agency must take
action to further reduce the risk of right whale M/SI in commercial fishing gear to comply with
the MMPA, its purpose and need statement is otherwise both too narrow. In particular, the
purpose and need statement is too narrow because it is based on the need to reduce M/SI by 60%
and ignores the urgent need to reduce the sublethal impacts of entanglement. See DEIS Vol. I at
2-41.
As explained above, NMFS’s 60% risk reduction target is insufficient. Supra Section II.A.
Indeed, NMFS’s purpose and need is based on outdated information that fails to consider the best
available right whale science, including a recent analysis documenting the substantial cryptic
mortality right whales suffer, and that entanglements are responsible for the majority of such
deaths. See id. New information reveals that NMFS should reduce risk by at least 90%, see id.,
meaning the agency must adopt significantly more mitigation measures than what is currently on
the table. By narrowly defining the purpose and need statement as measures that achieve a 60%
reduction in the risk of right whale M/SI, NMFS arbitrarily makes the preferred alternative the
only choice that will meet this goal.
And while the focus of section 118 of the MMPA may be on reducing M/SI from commercial
fisheries, NMFS’s obligations under the ESA are much broader than that. NMFS must ensure
that its actions in authorizing and managing the fisheries neither jeopardize the right whale’s
continued existence nor adversely modify its critical habitat. See 16 U.S.C. § 1356(a)(2). This
requires considering not only the deaths and serious injuries caused by entanglement in fishing
gear, but all the other impacts such entanglements cause, including impeding the whale’s ability
to reproduce, or increasing its vulnerability to death or injury from other stressors such as vessel
strikes.
It is well established that right whales are negatively impacted by entanglement, not only through
a reduction in the numbers of individuals through serious injuries and mortalities, but also
through increasing a whale’s stress hormone levels, leading to infections; making them more
vulnerable to other sources of mortality like vessel strikes; and impeding their ability to feed. 47
For example, studies have concluded that “[p]rotracted entanglement in fishing gear often leads
to emaciation through reduced mobility and foraging ability, and energy budget depletion from
See, e.g., Julie M. van der Hoop, Douglas P. Nowacek, Michael J. Moore, M. S. Triantafyllou. 2017. Swimming
kinematics and efficiency of entangled North Atlantic right whales. Endang. Species Res. Vol. 32: 1–17, 2017, doi:
10.3354/esr00781; Julie van der Hoop, Peter Corkeron and Michael Moore. 2016. Entanglement is a costly life
history stage in large whales. Ecology and Evolution, 7: 92–106, doi:10.1002/ece3.2615; Cassoff RM, Moore KM,
McLellan WA, Barco SG, Rotstein DS, Moore MJ. 2011. Lethal entanglement in baleen whales. Dis. Aquat. Org.
96: 175−185; Moore, M. and van der Hoop, J. 2012. The Painful Side of Trap and Fixed Net Fisheries: Chronic
Entanglement of Large Whales. Journal of Marine Biology. Volume 2012, Article ID 230653,
doi.org/10.1155/2012/230653.
47

the added drag of towing gear for months or years.” 48 Additionally, the “chronic effects of
entanglement in free-swimming individuals include systemic infection and debilitation from
extensive tissue damage . . . More common in protracted cases is severe emaciation due to the
inability to cope with a negative energy budget, driven by the combined effects of reduced
mobility and foraging ability, and increased energetic demand imposed by towing accessory gear
for months to years.” 49
The best available scientific data also indicates that even a single line increases drag on a whale;
extra energy demand may affect body condition to the point that individual females’
reproductive capacities could be impaired. Indeed, scientific studies have concluded that poor
body condition that may result from chronic entanglement in right whales is a serious limitation
to reproductive success. 50 Studies have also found that “[r]eproductive females seen alive and
carrying gear or with severe wounds from entanglement had a significantly lower chance of
calving again. Females that experienced moderate or severe entanglement wounds between
calvings had a significantly longer calving interval than females that experienced minor or no
entanglement wounds;” 51 that “females that have suffered a severe entanglement are
significantly less likely to calve again;” 52 and that “[h]uman impacts are reducing the
reproductive success of this population.” 53
Other studies have concluded that entanglements contribute to poor body condition in juvenile
right whales, adults, and lactating females, “which could be suppressing their growth, survival,
age of sexual maturation and calving rates.” 54 Moreover, the poor condition of lactating females,
may cause a reduction in calf growth rates, “potentially lead[ing] to a reduction in calf survival
or an increase in female calving intervals.” 55 As such, “the poor body condition of individuals
within the NARW population is of major concern for its future viability.” 56 Thus, entanglement
is likely one of the major determinants of reproductive failure in right whales, and probably all
large whales. NMFS cannot define its purpose and need to focus solely on serious injury and
mortality.

Julie van der Hoop, et al. 2014. Behavioral impacts of disentanglement of a right whale under sedation and the
energetic cost of entanglement. Marine Mammal Science. Vol. 30:1, pp. 282–307.
49
Id.
50
Miller, C. , D. Reeb, P. Best, A. Knowlton, M.Brown and M.Moore. 2011. Blubber thickness in right whales
(Eubalaena glacialis) and (Eubalaena australis) related with reproduction, life history status and prey abundance.
Marine Ecology Progress Series. Vol. 438, pp. 267–283.
51
Knowlton, A., P. Hamilton, M. Marx, H. Pettis, and S. Kraus. 2012. Monitoring North Atlantic right whale
(Eubalaena glacialis) entanglement rates: a 30 yr retrospective. Marine Ecology Progress series. Vol. 466, pp 293–
302; Knowlton, A., P. Hamilton, and H. Pettis. 2012. Status of Reproductive Females in the North Atlantic Right
Whale Population and Impacts of Human Activities on their Reproductive Success. Report Submitted to Woods
Hole Oceanographic Institution.
52
Julie van der Hoop, et al. 2016.
53
Id.
54
Christiansen, F., Dawson, S.M., Durban, J.W., Fearnbach, H., Miller, C.A., Bejder, L., Uhart, M., Sironi, M.,
Corkeron, P., Rayment, W., Leunissen, E., Haria, E., Ward, R., Warick, H.A., Kerr, I., Lynn, M.S., Pettis, H.M., &
Moore, M.J. 2020. Population comparison of right whale body condition reveals poor state of the North Atlantic
right whale. Marine Ecology Progress Series. Vol. 640, pp. 1–16.
55
Id.
56
Id.
48

B. The DEIS Fails to Properly Examine the Direct and Indirect Impacts to Right
Whales
The DEIS fails to take a hard look at the direct and indirect impacts on right whales. The relevant
regulations define “direct” effects as those that are “caused by the action and occur at the same
time and place;” and “indirect” effects as those that are “caused by the action and are later in
time or farther removed in distance, but are still reasonably foreseeable.” 40 C.F.R. § 1508.8
(2019).
NMFS fails to properly evaluate the direct impacts of the proposed rule on right whales by
failing to base its analysis on accurate scientific information, improperly narrowing the scope of
the action under review, and assuming the efficacy of risk reduction measures without any
discussion of how these measures will not sufficiently reduce risk. As an initial matter, because
the DEIS fails to properly define the proposed rule as part of its authorization and management
of operation of the fisheries in state and federal waters under the MMPA, the DEIS improperly
characterizes the nature and extent of the direct effects as beneficial, rendering the agency’s
analysis too narrow. Moreover, the analysis is based on outdated information that does not
constitute the best available science on right whales, violating the requirement that “[t]he
information must be of high quality” because [a]ccurate scientific analysis, expert agency
comments, and public scrutiny are essential to implementing NEPA.” 40 C.F.R. § 1500.1(b)
(2019).
For example, the proposed rule and DEIS explain that NMFS established the 60% risk reduction
target based on a PBR of 0.9. 85 Fed. Reg. at 86,880; DEIS Vol. I at 1-2. However, as NMFS is
well aware, the right whale PBR is now officially 0.8 as per the final 2019 Stock Assessment
Report and actually 0.7 as per the most recent data on the population estimate. 57 The DEIS
further explains that the assumptions underlying this risk reduction target, were based on an
estimate that 40% of mortalities between 2010 and 2018 were unobserved. DEIS Vol. I at 2-39.
But a newly-published paper finds that 71% of mortalities between 2010 to 2017 were
unobserved. 58
In addition, NMFS simply assumes that the proposed rule will adequately mitigate impacts to
right whales to achieve the agency’s stated risk reduction target, without addressing the
likelihood that it will not do so. As the Supreme Court has instructed, “omission of a reasonably
complete discussion of possible mitigation measures would undermine the ‘action-forcing’
function of NEPA. Without such a discussion, neither the agency nor other interested groups and
individuals can properly evaluate the severity of the adverse effects.” Robertson, 490 U.S. at
353. NEPA requires that FERC discuss mitigation measures with “sufficient detail to ensure that
environmental consequences have been fairly evaluated.” Id. at 352. “An essential component of
a reasonably complete mitigation discussion is an assessment of whether the proposed mitigation
measures can be effective. . . A mitigation discussion without at least some evaluation of
effectiveness is useless in making that determination.” South Fork Band Council v. U.S. Dep’t of
the Interior, 588 F.3d 718, 727 (9th Cir. 2009) (citations omitted).
NMFS, Stock Assessment Report: North Atlantic Right Whale, Apr. 2020 at 22; Colleen Coogan, NMFS,
Presentation to the Atlantic Large Whale Take Reduction Team, Jan. 2021.
58
Pace et al. 2021.
57

Moreover, many of the measures on which NMFS relies in its proposed rule are unproven and
therefore not guaranteed to hit the projected risk reduction goal. As explained above, the
proposed rule relies extensively on the use of weak rope or weak insertions to reduce risk of right
whale M/SI. See supra Section II.D. But the efficacy of this rope at reducing M/SI is untested,
assumes right whales are entangled in particular ways, and will not address the sublethal impacts
impeding the recovery of the species. Id. Indeed, numerous scientists recently determined that
“while 1700 lb (~773 kg) weak rope breaking strength rope may reduce mortality and sever
injury, it will continue to be a source of morbidity.” 59 As such, “removal of rope from the water
column will better enable species recovery.” 60
Indeed, numerous studies have demonstrated that NMFS’s long history of implementing a series
of complex, inefficient gear modifications via the ALWTRP have been ineffective at reducing
M/SI to the levels the agency assumed in those rules and associated documents. For example, a
2007 scientific review panel stated that:
In general, [NMFS] should set higher standards of protection and place
greater reliance on the ability of industry to adapt to those standards, rather
than continuing to depend on a complex, shifting, inefficient, and
ineffective network of regulatory measures to protect the whales. The
guiding principle should be to separate high-risk human activities from right
whales, in both space and time, to the maximum extent feasible. 61
Studies issued since then only reinforce this point. For example, a 2014 study by agency
scientists concluded that incremental gear modifications under the ALWTRP from 1999 to 2009
were “generally ineffective in abating whale deaths from entanglements in fishing gear.” 62 In
October 2018, NMFS’s Technical Memorandum observed that, starting in 1997 when the
original Plan was put in place, including the 2009 sinking groundline and 2014 vertical line
rules, data from 2000 through 2017 showed that “absolute entanglements appear to be on the
rise.” 63 The same document noted the “unintended consequences” of the 2015 vertical line rule
that required trawling up, potentially contributing to the increased severity of entanglements. 64
NMFS’s NEPA evaluation therefore cannot simply assume its proposed rule will achieve its
goals and must disclose potential shortcomings, particularly where available evidence indicates
the proposed rule will not be sufficiently protective.
NMFS also fails to take a hard look at the indirect impacts of the proposed rule. Because the
Moore et al. 2021 (emphasis added).
Id.
61
Reeves, R.R., A.J. Read, L. Lowry, S.K. Katona, and D.J. Boness. 2007. Report of the North Atlantic right whale
program review, 13-17 March 2006, Woods Hole, Massachusetts. Marine Mammal Commission, Bethesda, MD.
62
Pace, R. M. III et al. 2014.
63
Hayes S.A., Gardner S., Garrison L., Henry A., Leandro L. 2018. North Atlantic right whales - Evaluating their
recovery challenges in 2018. NOAA Tech Memo NMFS NE. 247; 24 p. at 8.
64
Id.; see also Kenney, R. 2018. What if there were no fishing? North Atlantic right whale population trajectories
without entanglement mortality. Endangered Spec. Res. 37:233 (“[d[espite legal requirements to reduce fisheryrelated mortality, little or no real progress has been made over the last 2 decades”).
59
60

proposed rule is part of NMFS’s authorization of the fisheries under the MMPA, NMFS must
consider all the impacts of the fisheries on right whales as part of its analysis. Yet NMFS failed
to do so.
Specifically, NMFS failed to take a hard look at the impacts that fishing activity can have on
prey availability for right whales. Right whales select foraging areas based on a relatively high
threshold of copepod density. See, e.g., DEIS Vol. I at 4-86. Notably, foraging areas with
suitable prey density are limited relative to the overall distribution of North Atlantic right
whales, 65 meaning that unrestricted and undisturbed access to suitable areas, when they exist, is
extremely important for the species to maintain its energy budget. Scientific information on right
whale functional ecology also shows that the species employs a “high-drag” foraging strategy
that enables them to selectively target high-density prey patches, but is energetically expensive. 66
Thus, if access to prey is limited in any way, the ability of the whale to offset its energy
expenditure during foraging is jeopardized. NMFS itself has elsewhere recognized that these
prey disturbances should and could be minimized because it relies on the Massachusetts
Restricted Area to “further minimize” such disturbances stating:
Localized disturbance to dense copepod aggregations by these gear types is
further minimized by MMPA gillnet and trap/pot closure areas that exist in
temporal and spatial areas where these dense concentrations are expected to
trigger foraging behavior (e.g., Massachusetts Bay Restricted Area). 50
CFR 229.23). 67
While NMFS’s DEIS acknowledges that reduced prey availability can negatively affect right
whale health, e.g., DEIS Vol. I at 1-4, 4-88, the agency failed to consider the role the proposed
action has in exacerbating those impacts.
Relatedly, NMFS also failed to consider the impacts of fishing vessel operations on right whales.
This is improper considering that NMFS elsewhere acknowledged that noise pollution from
fishing vessels can negatively impact right whales and increase the risk of ship strikes. See e.g.,
Draft BiOp at 146. Indeed, there have been at least four documented right whale deaths and
serious injuries due to vessel strikes in U.S. waters since January 1, 2020, all due to confirmed or
suspected recreational fishing vessels less than 65 feet. 68
C. The DEIS Does Not Examine a Reasonable Range of Alternatives or Adequately
Describe Differences Between Alternatives
The DEIS fails to analyze a reasonable range of alternatives, or adequately analyze the
differences between alternatives. NEPA requires a “detailed statement” of “alternatives to the
65

Id.
Van der Hoop, J., Nousek-McGregor, A.E., Nowacek, D.P., Parks, S.E., Tyack, P., and Madsen, P, “Foraging
rates of ram-filtering North Atlantic right whales,” Functional Ecology, published online May 11, 2019.
67
Draft BiOp at 87.
68
Aidan Cox, North Atlantic right whale found dead on Florida beach, CBC News, Feb. 17, 2021,
https://www.cbc.ca/news/canada/new-brunswick/right-whale-death-1.5917363.
66

proposed action.” 42 U.S.C. § 4332(2)(c). In considering alternatives, an agency “should present
the environmental impacts of the proposal and the alternatives in comparative form, thus sharply
defining the issues and providing a clear basis for choice among options by the decisionmaker
and the public.” 40 C.F.R. § 1502.14 (2019).
The requirement to consider reasonable alternatives “lies at the heart of any NEPA analysis.”
California ex rel. Lockyer v. U.S. Dept. of Agric., 459 F. Supp. 2d 874, 905 (N.D. Cal. 2006).
The purpose of this section is “to insist that no major federal project should be undertaken
without intense consideration of other more ecologically sound courses of action, including
shelving the entire project, or of accomplishing the same result by entirely different means.”
Envt’l Defense Fund v. Army Corps of Engr’s, 492 F.2d 1123, 1135 (5th Cir. 1974).
While an agency is not obliged to consider every alternative to every aspect of a proposed action,
the agency must “consider such alternatives to the proposed action as may partially or
completely meet the proposal’s goal.” Nat. Resources Defense Council v. Callaway, 524 F 2d.
79, 93 (2d Cir. 1975). In considering what constitutes a reasonable alternative, “an agency should
always consider the views of Congress, expressed, to the extent that the agency can determine
them, in the agency’s statutory authorization to act, as well as in other congressional directives.”
Citizens Against Burlington v. Busey, 938 F.2d 190, 196 (D.C. Cir. 1991). The existence of a
viable but unexamined alternative renders an EIS inadequate. Citizens for a Better Henderson v.
Hodel, 768 F.2d 1051, 1057 (9th Cir. 1985).
Despite these obligations, NMFS considered only three primary alternatives: (1) Alternative 1
(not issuing the proposed rule); (2) Alternative 2 (issuing the proposed rule); and (3) Alternative
3 (similar to Alternative 2 but with some additional measures). NMFS neglected to consider a
range of reasonable alternatives because none of the action alternatives meet NMFS’s protective
mandates under NEPA and the MMPA (or the ESA) or provide a meaningful range of adequate
mitigation measures. See supra Section II.
Indeed, there are relatively few differences among the action alternatives. Both alternatives
would require a combination of trawling up, seasonal buoy line restricted areas, and weak lines
or weak insertions. See DEIS Vol. I at 3-52–3-53. NMFS estimates Alternative 2 would reduce
M/SI risk by 64.3% while it estimates that Alternative 3 would reduce M/SI risk by 69.6% to
72.6%. Id. at 3-68, 3-69. The lack of any meaningful difference between the alternatives
considered in detail violates the requirements of NEPA. See Muckleshoot Indian Tribe v. U.S.
Forest Serv., 177 F.3d 800, 813 (9th Cir. 1999) (federal agency violated NEPA where two action
alternatives considered were “virtually identical”).
For example, NMFS failed to examine a truly protective alternative: no fishing. Because
NMFS’s No Action alternative reflects continued fishing under the current ALWTRP, NMFS
should have considered an additional alternative that analyzed no commercial fishing, and thus
no risk to from entanglements in U.S. fishing gear. This would have provided an important basis
for the public and the agency to compare the tradeoffs between continued fishing and continued
risk of entanglements, serious injuries, and mortalities in fishing gear, versus an alternative under
which there would be zero risk of entanglement in commercial fishing gear in U.S. waters. No
fishing protects the critically endangered right whale NMFS is mandated to protect, conserve,

and recovery; while continued fishing with unattended vertical line continues to threaten the
survival and recovery of this critically endangered species. 69
At the very least, NMFS must consider an alternative that would reduce serious injury and
mortality of right whales in Northeast trap fisheries by 90%. NMFS’s failure to do so is
especially glaring where the agency itself identified the need to reduce U.S. entanglement-related
M/SI by upwards of 80% at a time when PBR for right whales was 0.9, DEIS Vol. I at 3-47, and
the PBR for right whales is now 0.7. 70 See supra Section II.A. Additionally, NMFS should have
evaluated alternatives that considered adopting the closures proposed as part of the Preferred
Alternative and Alternative 3 as year-round restricted areas, particularly considering the best
available science demonstrates that right whales use the waters in Southern New England in all
months of the year. See supra Section II.C.2.
NMFS should also consider an alternative that considers a line cap on all gear and include an
alternative that address risk from gillnet gear. The agency chose not to focus on gillnets in its
current rulemaking because lobster gear makes up a significantly greater portion of the line in
right whale habitat. See, e.g., DEIS Vol. I at 2-34, 2-40. However, while gillnets make up a small
amount of the line in right whale habitat, they pose a disproportionate risk of entangling a right
whale. 71 The presence of one or more nets (up to 300 feet long each) strung together and held up
by floats, presents a much bigger target area for whales foraging throughout the water column, as
compared to vertical trap/pot buoy lines without net in between. The agency must consider an
alternative that evaluates the risk reduction benefits of restricting gillnet fishing.
While not necessarily in the spirit of TRT negotiations, NMFS’s failure to examine a no-fishing
alternative, or an alternative that would further reduce risk to right whales (to 80% or more), as
part of its NEPA analysis is especially arbitrary considering that the status of the species has
become particularly dire in the years the much-needed amendments to the ALWTRP have
languished. See Nat. Res. Def. Council v. U.S. Forest Serv., 421 F.3d 797, 813–14 (9th Cir.
2005) (NEPA obliges an agency to revisit its alternatives analysis whenever there are “changed
circumstances [that] affect the factors relevant to the development and evaluation of
alternatives,” and “account for such change in the alternatives it considers.”).
NMFS’s failure to address a reasonable range of alternatives is due, at least in part, to its
unfounded rejection of alternatives proposed during scoping or elsewhere. In particular, NMFS
rejected several proposals that would have required larger closures than what NMFS has
proposed—such as the closure of all of Statistical Area 529, the seasonal closure of LMA3 above
That the agency purports to have addressed these impacts in an appendix to its draft biological opinion on
operation of the federal fisheries is irrelevant as the agency’s obligations under NEPA and the ESA are distinct in
several important respects. See, e.g., Fund for Animals v. Hall, 448 F. Supp. 2d 127, 136 (D.D.C. 2006) (describing
differences). Moreover, “an agency may not circumvent its obligation to provide a clear assessment of
environmental impacts simply by placing [vital] analysis in an appendix.” Or. Envt’l Council v. Kunzman, 817 F.2d
484, 494 (9th Cir. 1987).
70
See, e.g., Colleen Coogan Presentation to the Atlantic Large Whale Take Reduction Team, Jan. 2021.
71
“Per the agency’s draft North Atlantic Right Whale Conservation Framework for Federal Fisheries in the Greater
Atlantic Region, the agency is not even planning on having the ALWTRT evaluate the risk from gillnets and provide
recommendations until 2023 and the agency anticipates acting on recommendations from the ALWTRP in 2025.”
NARWConservationFrameworkGARFO.pdf.
69

40.3 degrees, or the closure of all waters from January through April—because these measures
were “too large” and “unpopular with stakeholders.” DEIS Vol. I at 3-79. NEPA does not
contain a “popularity” exemption to the requirement to consider a reasonable range of
alternatives—indeed, neither do the ESA or MMPA contain a “popularity” exemption to their
legal requirements.
NMFS’s rejection of these alternatives on this basis is particularly concerning in light of the
agency’s recognition that the proposed rule will not meet its legal obligation under the MMPA to
reduce M/SI to below PBR (not to mention ZMRG), see supra Section I; and its
acknowledgement over two decades ago, that reducing entanglement risk for right whales would
be especially difficult and that “extensive closures of large areas of the ocean to lobster and
gillnet fishermen . . . would guarantee reduction of entanglements causing serious injury and
mortalities.” 62 Fed. Reg. 39,157, 39,159 (July 22, 1997); cf., Citizens Against Burlington, 938
F.2d at 196.
In addition to failing to examine a reasonable range of alternatives, NMFS also failed to
adequately compare the differences between the alternatives it did consider. For example, NMFS
states that the no action alternative would have “high[ly] negative” consequences on right whales
because “serious injury and mortality would continue to occur and impact population health,” the
agency also states that Alternative 2—the preferred alternative— would have a “positive” effect
on right whales because it “would reduce right whale co-occurrence by 69%.” See, e.g., DEIS
Vol. I at 8-276. Similarly, it states that Alternative 3—the non-preferred alternative— would
have a “highly positive” effect on right whales by “reduc[ing] right whale co-occurrence by 83–
88%. Id. These assumptions are unfounded for the reasons described above. See supra Section II.
But even if true, that would not save the agency’s analysis because NMFS failed to acknowledge
that even under these alternatives, right whale serious injury and mortality would continue to
occur and at unsustainable levels. See, e.g., id.
D. The DEIS Fails to Properly Examine Cumulative Impacts
To ensure that the full effect of its decision is analyzed, NEPA requires NMFS to examine the
potential cumulative impacts. See 42 U.S.C. § 4332(2)(C); 40 C.F.R. § 1508.9 (2019); Te-Moak
Tribe of W. Shoshone of Nev. v. U.S. Dep’t of the Interior, 608 F.3d 592,602-03 (9th Cir. 2010)
(citation omitted). A “cumulative impact” is “the impact on the environment which results from
the incremental impact of the action when added to other past, present, and reasonably
foreseeable future actions regardless of what agency (Federal or non-Federal) or person
undertakes such other actions. Cumulative impacts can result from individually minor but
collectively significant actions taking place over a period of time.” 40 C.F.R. § 1508.7 (2019).
“[I]n considering cumulative impact, an agency must provide some quantified or detailed
information; . . . general statements about possible effects and some risk do not constitute a hard
look absent a justification regarding why more definitive information could not be provided.”
Ocean Advocates v. U.S. Army Corps of Eng’rs, 361 F.3d 1108,1128 (9th Cir. 2004) (citation
omitted); see also Te-Moak Tribe of W. Shoshone v. U.S. Dep’t of the Interior, 608 F.3d 592,
603-06 (9th Cir. 2010) (rejecting the EA’s cumulative impact analysis because it failed to
analyze impacts in light of other projects that would impact the same resources).

NMFS failed to comply with these requirements. Its “analysis” of cumulative impacts amounts to
nothing more than general statements about activities that impact large whales and other species.
As one example, NMFS states that noise can have “low negative to negative” impacts on large
whales, DEIS Vol. I at 8-254, 8-259, NMFS makes no attempt to quantify take from noise
pollution or otherwise take a hard look at their detrimental impacts. For example, NMFS fails to
even acknowledge its rule issued under the MMPA that allows the Navy to harass right whales
hundreds of times each year over the next seven years incidental to testing and training activities
conducted in the Atlantic Fleet Training and Testing Study Area. See 84 Fed. Reg. 70,712,
70,763 (authorizing 471 instances of Level B harassment of right whales from December 2019
through November 2025). Nor does NMFS attempt to quantify or take a hard look at the impacts
of noise from vessel traffic.
Noise from the Navy’s activities, the maritime industry, and the numerous offshore wind projects
in Southern New England waters 72 will certainly “impact” right whales, and likely significantly
so. For example, scientific research reveals that chronic stress in North Atlantic right whales is
associated with exposure to low frequency noise from ship traffic. 73 Specifically, “the adverse
consequences of chronic stress often include long term reductions in fertility and decreases in
reproductive behavior; increased rates of miscarriages; increased vulnerability to diseases and
parasites; muscle wasting; disruptions in carbohydrate metabolism; circulatory diseases; and
permanent cognitive impairment.” 74 As such, “over the long term, chronic stress itself can reduce
reproduction, negatively affect health, and even kill outright.” 75 In addition, right whales will
experience temporary threshold shifts, behavioral response (including foraging displacement),
and stress throughout the Atlantic from Navy sonar and other transducers, 76 as well as offshore
wind projects. All of the existing and increasing ocean noise impacts important communications,
including those between mothers and calves. 77
In fact, NMFS lumps its analysis of the cumulative impacts on right whales together with other
whales by only generally describing impacts on “large whales.” See, e.g., DEIS Vol. I at 8-250–
8-251, 8-259. But this fails to constitute the hard look required by law and obfuscates the
BOEM, Atlantic OCS Renewable Energy – Massachusetts to South Carolina, Mar. 2020,
https://www.boem.gov/sites/default/files/images/Map%20of%20Atlantic%20OCS%20renewable%20energy%20are
as.jpg.
73
Rolland, R, et al. 2012. Evidence that ship noise increases stress in right whales. Proc. R. Soc. B. 279: 2363–2368.
74
Rolland, R.M., K.E. Hunt, G.J. Doucette, L.G. Rickard, and S.K. Wasser. 2007. The inner whale: hormones,
biotoxins and parasites. In: Kraus S.D. and R.M. Rolland, (eds.). The Urban Whale: North Atlantic Right Whales at
the Crossroads. Harvard University Press, Cambridge, MA.
75
Id.; see also Mayo, C.S., Page, M., Osterberg, D., and Pershing, A., “On the path to starvation: the effects of
anthropogenic noise on right whale foraging success,” North Atlantic Right Whale Consortium: Abstracts of the
Annual Meeting (2008) (finding that decrements in North Atlantic right whale sensory range due to shipping noise
have a larger impact on food intake than patch-density distribution and are likely to compromise fitness).
76
See, e.g., NMFS, Biological and Conference Opinion on U.S. Navy Atlantic Fleet Training and Testing and the
National Marine Fisheries Service's Promulgation of Regulations Pursuant to the Marine Mammal Protection Act for
the Navy to "Take" Marine Mammals Incidental to Atlantic Fleet Training and Testing (Nov. 2018) at 508.
77
See, e.g., NMFS, Biological Opinion on the Bureau of Ocean Energy Management's Issuance of Five Oil and Gas
Permits for Geological and Geophysical Seismic Surveys off the Atlantic Coast of the United States, and the
National Marine Fisheries Services' Issuance of Associated Incidental Harassment Authorizations (Nov. 2018) at 87
(“North Atlantic right whales shift calling frequencies, particularly those of upcalls, and increase call amplitude over
both long and short term periods due to exposure to vessel sound, which may limit their communication space by as
much as 67 percent compared to historically lower sound conditions”).
72

distinct, significant cumulative impacts that will likely befall right whales in light of their
critically endangered status and sensitivity to the various stressors listed, such as the fact that
right whales, and female and their calves in particular, are more at risk of vessel strikes than
other species. 78
NMFS also seems to have artificially narrowed the definition of the action area for purposes of
its cumulative impacts analysis. Specifically, NMFS defines the action area as “focused
primarily on the Northeast Region Trap/Pot Management Area.” DEIS Vol. I at 8-248. But this
ignores the behavioral characteristics of right whales and other species who migrate hundreds or
thousands of miles in the Atlantic and thus will be exposed to the risk of vessel strikes, noise
pollution, and other stressors in areas outside the narrow circle NMFS has drawn for purposes of
its cumulative impacts analysis. While the agency considers the impacts of entanglements and
vessel strikes “in Canadian waters . . . because of the magnitude of impact this is have on the
population,” id., NMFS must also analyze the combined impacts of the species’ exposure to
other stressors outside New England. See, e.g., Nat. Res. Def. Council v. Hodel, 865 F.2d 288,
297–300 (D.C. Cir. 1988) (rejecting EIS where it failed to properly consider the impacts of
offshore oil and gas activities on species who migrate through multiple planning areas); Utahns
v. U.S. Dep’t of Transportation, 305 F.3d 1152, 1180 (10th Cir. 2002) (holding EIS inadequate
where it only evaluated impacts within 1,000 feet of proposed project because it limited analysis
to smaller, less mobile species and ignored impacts to migratory species). For example, it is not
clear if the agency considered the impacts of vessel strikes in the mid- and south-Atlantic
regions, despite this stressor having significant impacts on the population in these waters. Indeed,
in the last 14 months alone numerous right whales have been killed or seriously injured by vessel
strikes in U.S. waters outside New England. 79 Additionally, it is unclear whether the agency
considered other stressors right whales also face, or are reasonably likely to face in the
foreseeable future, in waters outside New England and Canadian waters such as vessel noise or
plastic pollution.
While NMFS may consider the impacts from the proposed rule to be minor (or beneficial), that
does not absolve the agency of its duty under NEPA to consider the combined impacts of the
regulations on imperiled right whales or other species, particularly because the regulations are
part of NMFS’s authorization of the operation of the fisheries under the MMPA. As one
appellate court has explained:
the addition of a small amount of [pollution] to a [waterway] may have
only a limited impact on [fish] survival, or perhaps no impact at all. But
the addition of a small amount here, a small amount there, and still more
at another point could add up to some-thing with a much greater impact,
until there comes a point where even a marginal increase will mean that no
[fish] survive.
78
See, e.g., 78 Fed. Reg. 73726, 73727 (Dec. 9, 2013) (“Right whales appear to be more vulnerable to ship strikes
than other large whale species”); NMFS, North Atlantic Right Whale (Eubalaena glacialis) Vessel Speed Rule
Assessment (June 2020) at 23.
79
See, e.g., NMFS, 2017–2021 North Atlantic Right Whale Unusual Mortality Event,
https://www.fisheries.noaa.gov/national/marine-life-distress/2017-2021-north-atlantic-right-whale-unusualmortality-event (updated Feb. 28, 2021).

Klamath-Siskiyou Wildlands Ctr. v. Bureau of Land Mgmt., 387 F.3d 989, 994 (9th Cir. 2004).
The same is true for impacts to right whales from entanglements in commercial fishing gear,
vessel strikes, noise pollution, and other stressors—the addition of some impacts here, and some
impacts there, could add up to cumulatively significant impacts, particularly where NMFS has
found that protecting every individual right whale is essential to its recovery; that its extinction is
almost certain in the immediate future if existing threats are not dramatically reduced; and the
best available science indicates that ongoing entanglements and vessel strikes are not only
impeding the species’ recovery but actively driving the species toward extinction. 80 NMFS must
carefully examine and disclose these impacts to comply with NEPA.
E. The Economic Analysis in the DEIS Is Fundamentally Flawed
NMFS’s economic analysis of the proposed rule in the DEIS is flawed in two fundamental ways.
First, it fails to properly consider that reduced effort does not equate to reduced catch. Second, it
fails to consider the significant economic benefit from preventing whale entanglements.
The DEIS overestimates the economic impact of the proposed rule on industry by incorrectly
assuming reduced effort will lead to reduced landings. Research examining the catch of lobsters
in Maine and Canada concluded that there is far more effort in the U.S. than is needed to obtain
the same level of catch. 81 Accordingly, seasonal closures and trap reductions could provide
substantial benefit to endangered whales while having little economic impact on fishermen. 82
The authors of a 2007 study stated, for example, that “if Maine restricted its fishing season to 6
months and reduced the number of traps by a factor of 10, the same amount of lobster could be
landed with greatly reduced risk to right whales and other species.” 83
Recent studies have reached similar conclusions. For example, a 2020 study found that Canadian
fishers in the Gulf of Maine caught about the same about of lobster using 7.5 times less effort
than Maine fishers in U.S. waters. 84 In particularly, the study determined that from 2007 to 2013
in Maine, lobster landings doubled as the number of traps fell 10.5% and landings per trap
increased by about 125%; and that Massachusetts achieved record-high landings since the
implementation of trap/pot seasonal closures, especially within those areas most affected by the
closures. 85 As such, “a negative economic impact should not be assumed with effort
reduction.” 86
The DEIS also overestimates the economic impacts by ignoring the economic benefits of
80
See, e.g., Pace et al 2021; NMFS, Immediate Action Needed to Save North Atlantic Right Whales, July 3, 2019,
https://www.fisheries.noaa.gov/leadership-message/immediate-action-needed-save-north-atlantic-right-whales;
NMFS, Species in the Spotlight, https://www.fisheries.noaa.gov/topic/endangered-species-conservation#species-inthe-spotlight (last visited Feb. 3, 2021).
81
Myers, R.A., S.A. Boudreau, R.D. Kenney, M.J. Moore, A.A. Rosenberg, S.A. Sherrill-Mix, and B. Worm. 2007.
Saving endangered whales at no cost. Curr. Biol. 17(1): R10–R11.
82
Id.
83
Id.
84
Hannah J. Myers and Michael J. Moore. 2020. Reducing effort in the U.S. American lobster (Homarus
americanus) fishery to prevent North Atlantic right whale (Eubalaena glacialis) entanglements may support higher
profits and long-term sustainability. Marine Policy. Vol. 118: 103399.
85
Id.
86
Id.

reducing entanglement risk. While putting a dollar figure on an individual whale is not
necessarily the best way to measure its inherent value, NMFS cannot focus solely on the cost to
industry while ignoring the significant benefits provided by large whales—including to the
fisheries themselves—particularly where tools exist to estimate the economic benefits of whales.
For example, the International Monetary Fund recently issued a “conservative estimate[]” that
placed the average value of an individual large whale at more than $2 million due to the
ecosystem services individual whales provide in carbon sequestration and fertilizing activity that
adds significantly to phytoplankton growth in the areas whales frequent. 87 In addition, reducing
the frequency and severity of whale entanglements, will also reduce the expense associated with
disentanglement efforts. But NMFS failed to consider these benefits in evaluating the economic
impact of the proposed rule. This is improper.
Courts have held that it is arbitrary for an agency to focus solely on the costs to industry from
enacting regulations while ignoring the economic benefits of the new standards. See, e.g., Ctr.
for Biological Diversity v. Nat’l Highway Traffic Safety Admin., 538 F.3d 1172, 1203 (9th Cir.
2008) (holding that it was arbitrary for an agency to consider the economic benefits of decreased
carbon emissions from tailpipes when establishing corporate average fuel economy standards for
light trucks when it considered economic costs to industry from enacting stricter standards); see
also High Country Conservation Advocates v. U.S. Forest Serv., 52 F. Supp. 3d 1174, 1190-93
(D. Colo. 2014) (holding that it was arbitrary for the agency to consider the economic benefits of
a coal mine expansion without also assessing the climate consequences of the end use of coal
using the Social Cost of Carbon protocol).
In other words, NMFS “cannot put a thumb on the scale by undervaluing the benefits and
overvaluing the costs of more stringent standards.” Ctr. for Biological Diversity, 538 F.3d at
1198; see also Mont. Envtl. Info. Ctr. v. U.S. Office of Surface Mining, Case No. 15-106-MDWM, 2017 WL 3480262, at *15 (D. Mont. Aug. 14, 2017). Yet that is just what NMFS’s DEIS
does. While it contains a lengthy analysis of the economic impact to industry, it has no analysis
or discussion of the economic benefit of the regulations—whether quantitative or qualitative.
While there may be a range of values, the value of saving whales “is certainly not zero” as
NMFS irrational treats such value in its DEIS. See Ctr. for Biological Diversity, 538 F.3d at
1200.
V.

CONCLUSION

NMFS’s proposed rule and its associated DEIS are fundamentally flawed and fail to comply with
the agency’s legal obligations under the MMPA, ESA, and NEPA in numerous ways. NMFS
must revise its risk reduction target, proposed rule and associated documents, reissue them for
public notice and comment, and implement emergency measures to significantly reduce
entanglement risk in the interim. Failure to do so would be a gross dereliction of the agency’s
duties and condemn the right whale to suffer yet more of the entanglements in commercial
fishing that are not only impeding the species recovery, but actively driving it closer to the brink
of extinction.
Id.; see also Carl Wilson, Manipulative Trapping Experiments In The Monhegan Island Lobster Conservation
Area, Jan. 2010; Stephanie A. Boudreau & Boris Worm. 2010. Top-down control of lobster in the Gulf of Maine:
insights from local ecological knowledge and research surveys. Mar. Ecol. Prog. Ser. Vol. 403: 181–191.
87

Sincerely,
/s/ Kristen Monsell
Kristen Monsell
Oceans Legal Director & Senior Attorney
Center for Biological Diversity
[email protected]
/s/ Erica Fuller
Erica Fuller
Senior Attorney
Conservation Law Foundation
[email protected]
/s/ Jane Davenport
Jane Davenport
Senior Attorney
Defenders of Wildlife
[email protected]
/s/ Sharon Young
Sharon Young
Senior Strategist, Marine Issues
The Humane Society of the United States
[email protected]
/s/ Keisha Sedlacek
Keisha Sedlacek
Director of Regulatory Affairs
Humane Society Legislative Fund
[email protected]

• Center for Biological Diversity • Conservation Law Foundation •
• Defenders of Wildlife • Humane Society of the United States •
• Humane Society Legislative Fund •

Attachments to Comments on:
Proposed Rule to Amend Atlantic Large Whale Take Reduction Plan Regulations, 85 Fed. Reg.
86,878 (Dec. 31, 2020), and Draft Environmental Impact Statement
NOAA-NMFS-2020-0031
March 1, 2021

North Atlantic Right Whale Consortium
2020 Annual Report Card
Pettis, H.M.1, Pace, R.M. III2, Hamilton, P.K.1
1
2

Anderson Cabot Center for Ocean Life at the New England Aquarium, Central Wharf, Boston, MA, USA 02110
Grizzlywhaler Consulting Services, 137 W. Pelham Road, Shutesbury, MA 10702

NORTH ATLANTIC RIGHT WHALE CONSORTIUM BACKGROUND
The North Atlantic right whale (Eubalaena glacialis) remains one of the most endangered large whales in the
world. Over the past two decades, there has been increasing interest in addressing the problems hampering the
recovery of North Atlantic right whales by using innovative research techniques, new technologies, analyses of
existing databases, and enhanced conservation and education strategies. This increased interest demanded better
coordination and collaboration among all stakeholders to ensure that there was improved access to data, research
efforts were not duplicative, and that findings were shared with all interested parties. The North Atlantic Right
Whale Consortium, initially formed in 1986 by five research institutions to share data among themselves, was
expanded in 1997 to address these greater needs. Currently, the Consortium membership is comprised of
representatives from more than 100 entities including: research, academic, and conservation organizations;
shipping and fishing industries; whale watching companies; technical experts; United States (U.S.) and Canadian
Government agencies; and state authorities.
The Consortium membership is committed to long-term research and management efforts, and to coordinating and
integrating the wide variety of databases and research efforts related to right whales to provide the relevant
management, academic, and conservation groups with the best scientific advice and recommendations on right
whale conservation. The Consortium is also committed to sharing new and updated methods with its membership,
providing up-to-date information on right whale biology and conservation to the public, and maintaining effective
communication with U.S. and Canadian Government agencies, state authorities, the Canadian Right Whale
Network, the U.S. Southeast and Northeast Right Whale Implementation Teams, the Atlantic Large Whale Take
Reduction Team, the Atlantic Scientific Review Group, and members of the U.S. Congress. The Consortium
membership supports the maintenance and long-term continuity of the separate research programs under its
umbrella, and serves as executor for database archives that include right whale sightings and photo-identification
data contributed by private institutions, government scientists and agencies, and individuals. Lastly, the
Consortium is interested in maximizing the effectiveness of management measures to protect right whales,
including using management models from other fields.
The Consortium is governed by an Executive Committee and Board members who are elected by the general
Consortium Membership at the Annual Meeting.
North Atlantic Right Whale Consortium members agreed in 2004 that an annual “report card” on the status of right
whales would be useful. This report card includes updates on the status of the cataloged population, mortalities and
injury events, and a summary of management and research efforts that have occurred over the previous 12 months.
The Board’s goal is to make public a summary of current research and management activities, as well as provide
detailed recommendations for future activities. The Board views this report as a valuable asset in assessing the
effects of research and management over time.
ESSENTIAL SPECIES MONITORING AND PRIORITIES
In the 2009 Report Card to the International Whaling Commission (IWC), the Consortium Board identified key
monitoring efforts that must be continued and maintained in order to identify trends in the species, as well as assess
the factors behind any changes in these trends (Pettis, 2009). The key efforts are: (1) Photographic identification
and cataloging of right whales in historically and emerging high-use habitats and migratory corridors, including,
but not limited to, the southeast United States, Cape Cod Bay, Gulf of St. Lawrence, Great South Channel, Bay of
Fundy, Scotian Shelf, and Jeffreys Ledge, (2) Monitoring of scarring and visual health assessment from
photographic data, (3) Examination of all mortalities, and (4) Continue using photo-ID and genetic profiling to
monitor species structure and how this changes over time.
Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

The Consortium Board regards the Consortium databases as essential to recovery efforts for the North Atlantic
right whale species. In a review of the federal recovery program for North Atlantic right whales, the Marine
Mammal Commission agreed with the Board’s sentiment, stating that “both databases play critical roles in right
whale conservation” and that the Identification Catalog “is the cornerstone of right whale research and monitoring”
(Reeves et al. 2007). The review went on to recommend that both databases (“both” here and above refers to the
Identification and Sightings databases; there are several Consortium databases available) be fully funded on a
stable basis. Additionally, the Board recognizes the importance that passive acoustic monitoring has played in our
understanding of right whale distribution and its potential role in mitigating anthropogenic impacts on the species.
The Board strongly supports and encourages efforts to develop a comprehensive Right Whale Acoustic Detection
Database that will serve as an additional resource in conservation and management efforts.
Since 2010, right whale distribution and patterns of habitat use have shifted, in some cases dramatically. These
shifts have been observed throughout the range of North Atlantic right whales and have direct implications on
research and management activities, amd on each of the key efforts identified above. As such, the Board believes
that identifying potential extralimital and new critical habitats and developing alternative survey effort strategies to
respond to the distributional changes should continue to be a priority. These strategies should include efforts to not
only locate, including use of passive acoustic monitoring, and identify individual right whales, but also to ensure
that information critical to important monitoring and management efforts (i.e. health assessment, injury and
scarring assessments) is effectively and efficiently collected. The drastic shifts in right whale distribution, both
temporally and spatially, and the speed at which they occurred, should be viewed as a harbinger of the inadequacy
of static mitigation efforts focused solely on past habitat use.
In 2020, two right whale mortalities were detected, a decrease over 10 mortalities in 2019. The causes of death
were attributed to a vessel strike for the first and possible injury during birth or dystocia for the second. The
confirmed vessel strike was the first vessel strike mortality detected in US waters since 2017. There were three
additional vessel strikes detected in 2020, one of which was presumed fatal and also occurred in U.S. waters. The
presumed fatal strike occurred in an active Seasonal Management Area with vessel speed restrictions in place and
the confirmed mortality in an area not under vessel speed restrictions at the time of detection. The absence of
detected mortalities in Canadian waters in 2020 was encouraging and likely driven by several factors, including the
reduction in large vessel traffic due to COVID-19 as well as ongoing vessel strike and entanglement mitigation
measures in Canadian waters.
There were no confirmed entanglement mortalities detected in 2020, however, five right whales were documented
carrying gear- four of the entanglements first seen in 2020. Four of the five entanglements are considered to be lifethreatening and though all five were detected in U.S. waters, the origin of the gear in all cases is currently
unknown.
Ten right whale calves were born in 2020, up from seven in 2019. However, births remain significantly below
what is expected and over the last four years (2017-2020) detected mortalities outnumbered births by 3:2. The
species continues to be in decline and in July 2020, the International Union for Conservation of Nature (IUCN) red
listed the North Atlantic right whale changing its status from endangered to critically endangered. This designation
is made when a species is considered at high risk for global extinction. The North Atlantic right whale is the only
large whale species on the list.
Discussions about reducing anthropogenic impacts on right whales in both Canadian and U.S. waters are ongoing
and encouraging. However, despite the 2020 reduction in overall mortalities and increase in births over 2019, a one
year improvement does not a trend make and the species remains in decline. Anthropogenic injuries and mortalities
remain a threat to the existence of North Atlantic right whale and immediate, broad-based mitigation strategies that
result in significant risk reduction throughout the right whale’s range (both realized and potential) must be a
priority if this species is to survive.
POPULATION STATUS
The ability to monitor North Atlantic right whale vital rates is entirely dependent on the North Atlantic Right
Whale Identification Database (Catalog), curated by the Anderson Cabot Center for Ocean Life at the New
England Aquarium. As of September 1, 2020, the database consists of over a million slides, prints, and digital
images collected during the 83,988 sightings of 761 individual right whales photographed since 1935. Each year,
2,000 to 5,000 sightings consisting of 20-30,000 images are added to the identification database. Using Catalog

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

data, a number of methods have been employed to estimate the number of North Atlantic right whales alive
annually. Due to lag times in Catalog data submissions and data processing, only data through 2019 were available
for these calculations. Here we describe four different estimate methods and present the Consortium’s best estimate
for 2019. The first two methods use the calendar year; the last two methods use the “whale” year which runs from
December 1 to November 30. This latter definition was created to avoid “double counting” whales seen in the
southeast US in December and January
Presumed Alive Method
The presumed alive method (PA) counts whales that have been seen at least once in the last six years (Knowlton et
al. 1994). It is a consistently measureable and easily available value, but it assumes that whales remain alive for six
years after their last sighting (which is often not the case) and the estimates for recent years may be artificially low
due to delays in data processing. The PA number for 2019 is 458.
Catalog Method
The Catalog method (formerly referred to as the “Report Card” method) includes a low, middle and high estimate.
A table with all of these estimates as well as a full description of the methodology is provided in Appendix 1 of
this report card. The values are based upon the number of photographed whales only; they exclude potential
unphotographed whales and therefore should not be considered a “population estimate”. This method has the
weakness of utilizing the PA methodology with its assumptions, but it does incorporate whales that have been
photographed but not yet added to the Catalog. The Catalog estimates for 2019 range from a low of 339 to a high
of 723 with a middle estimate of 486.
Minimum Number Alive Method
The Minimum Number Alive (MNA) is the number that was historically used in National Marine Fisheries Service
stock assessment reports and counts whales seen in a given year, plus any whale not seen that year- but seen both
before and after (see Hayes et al. 2017). The MNA number is more accurate than PA for older years, but is also not
accurate for recent years for the same reason as the PA method, plus the fact that there have been fewer “after”
years to detect a whale. The MNA number for 2019 is 347.
Pace Method
The Pace Method was added to the 2016 report card and has been included ever since. This analysis comes from
the Pace et al. 2017 model which “adapted a state-space formulation with Jolly-Seber assumptions about
population entry (birth and immigration) to individual resighting histories and fit it using empirical Bayes
methodology.” This model estimate accounts for whales that have not been photographed. The full methodology is
available in the paper. It is important to note that the estimates provided by the Pace et al. 2017 methodology
represent the estimated abundance at the start of the sample period plus all new entries into the population. That
number for 2019 is 366. If one wanted an estimate at the end of the interval, one could subtract the number of
known dead (or estimated number of dead if a detection rate for carcasses was available).
The full results for all four methods are presented in Figure 1. All numbers except the past Catalog method
estimates were recalculated using data as of September 1, 2020 and therefore the numbers in this figure will differ
from those in past report cards. The PA number is always artificially high as a comparison to the past year’s MNA
numbers attest. The difference is largely due to whales that have not been seen since before the year in question.
For example, the 30+ animals that the PA number included in 1990 but the MNA did not are all whales that have
not been seen since 1990 and are thus very likely dead. From 1990 to 2010, the average difference between the PA
number and the MNA number was 35 animals. If that difference remained consistent into this decade, the adjusted
presumed alive number in 2019 would be 423 whales. The Pace method removes assumptions of when a whale is
alive and is likely more accurate. The Catalog estimates are always higher than the other two methods for the most
recent years. However, the fact that the old Catalog estimates for 2005 to 2009 were close to the eventual MNA
numbers suggests that the methodology worked reasonably well through 2009. However, starting in 2010, the two
numbers started to diverge. This is partially because fewer whales were seen so the MNA number may be
artificially low. But it also appears that the six-year assumption for PA whales is increasingly erroneous; whales
die sooner than six years after their last sighting. The Catalog estimate does however capture recent increase in
calves that have not yet been cataloged. This delay in cataloging is largely due to the right whale distribution shift
that has resulted in fewer calves being seen on the feeding grounds with their mothers, and fewer sightings of them
as juveniles anywhere- both of which make cataloging recent calves challenging. There is some evidence this delay
may be impacting the Pace model for recent years.
Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

Figure 1. Assessments of the North Atlantic right whale population based on four available assessment methods. The Pace
model shows a point "estimate" along with error bars which represent 95% of the posteriori probability. That model estimates
the number of whale alive at the start of each year plus any new whales estimated to enter during that year. Data through 2019
as of September 1, 2020.

Best Right Whale Population Estimate 2019
We believe the Pace Method provides the best estimate for 2019. To get an estimate of whales alive at the end of
2019, we can take the estimate at the start of 2019 (366, Figure 1) and subtract the observed deaths during 2019 (8
cataloged whales and two unidentified). Therefore, the best estimate for the end of 2019 is 356 whales (95%
confidence range +/- 11 and 13 respectively) using data as of September 1, 2020. This represents a more
precipitous drop than previous years. Last year’s Pace Method number for 2018 was 85 animals more than the
MNA number at that time; this year’s number is just 19 more than the MNA number (and that MNA number will
increase over time as more whales are identified in 2019 and more “after” years are added). Survivorship is
decreasing and that alone may account for the narrowing of the gap between MNA and the Pace Method number.
The completion of 2019 data and the processing of additional 2020 data, along with further examination of the
model, may help determine whether there is, in fact, a downward bias and if so, how large it is.

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

How Well Are We Monitoring?
Below is an annual count of sightings, unique individuals, whales presumed alive, kilometers of effort that have
been submitted to the sightings database at the University of Rhode Island, and percent of the population that is
identified each year from 2000 onward (Table 1). Data as of September 1, 2020.
Table 1. Annual counts of photo-ID sightings, unique individuals, presumed living whales, survey effort (in Beaufort conditions
<4), and the percentage of the population seen. Survey effort from dedicated surveys only; opportunistic sightings do not record
or report effort. None of the numbers for 2019 are final as not all of the data for that year have been submitted or analyzed. Data
as of September 1, 2020.

Year
2000

Unique
Sightings
IDs
3286
246

Best Population
Estimate
(Pace model)*
309

Survey Effort
(1,000 km)
125

% of Presumed Alive
Population Seen*
80%

2001

3983

286

332

127

86%

2002

2725

315

345

252

91%

2003

2406

315

359

180

88%

2004

1839

299

368

287

81%

2005

3408

364

391

357

93%

2006

2803

348

402

316

87%

2007

3768

384

412

267

93%

2008

4164

408

430

254

95%

2009

4698

427

460

246

93%

2010

3236

432

476

271

91%

2011

3479

444

481

234

92%

2012

2127

383

471

271

81%

2013

1905

296

478

215

62%

2014

2404

379

473

200

80%

2015

1774

268

467

184

57%

2016

2210

327

451

155

73%

2017

3126

377

425

178

89%

2018

3833

358

383

190

93%

2019

4402

339

366

141

93%

*In previous Report Cards, the population estimate and resulting % presumed alive seen were based on the Middle Catalog
number (see Population Status section above and Appendix 1). Given that the Report Card now considers the population
estimate based on the Pace Method to be the most accurate estimate, we have modified Table 1 to include the Pace Model
estimate as the best population estimate and as the denominator for the calculation of the % presumed alive population seen.

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

Reproduction
There were 10 documented calves born in 2020 (Table 2).
Table 2. Summary of calving events and associated inter-birth interval times for North Atlantic right whales from 2009-2020.
The number of available cows, defined as females who have given birth to at least one previous calf, were presumed to be
alive, and have not given birth in the last two years, are followed by the percentage of available cows to successfully calve.
First time mothers are now included in the available to calve count.

Year
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020

Calf
Count
39
19
22
7
20
11
17
14*
5
0
7
10

Available Cows/
% to calve
66/59.1%
49/38.8%
51/43.1%
66/10.7%
90/22.2%
86/12.8%
84/20.2%
85/16.5%
71/7.0%
76/0
87/8.0%
77/13%

Average
Interval
4.0
3.3
3.7
5.4
4.6
4.4
5.5
6.6
10.2
7
7.6

Median
Interval
4
3
3
4
4
4.5
6
7
8
7
7

First time
Moms
8
4
3
2
7
1
4
4
0
1
1

*There were 14 mothers seen with calves in the 2015/2016 season, however, due to a three-way calf switch that
included the presumed loss of one calf that was never photographed, only 13 calves were photographed.

Mortalities
Between 01 January 2020 – 31 December 2020, two right whale mortalities were documented in U.S. waters (Table
3). The necropsy for the first, a calf of the year, was conducted and the cause of death was identified as vessel strike.
The second mortality documented was a neonate discovered in November 2020. Initial necropsy results suggest the
calf died at, or shortly after, birth. There was no evidence of anthropogenic injury found. The Consortium Board
recognizes necropsies as significant data collection events that provide valuable information on which management
and conservation measures can be (and have been) based. The Board views consistent necropsy response and support
(both financial and personnel) as critical to monitor both right whale recovery and the efficacy of management
actions.
Non-lethal Vessel Strikes, Entanglements, and Entrapments
Vessel Strikes:
There were three non-lethal vessel strike injuries documented between 01 January 2020 – 31 December 2020
(Table 4). One of these cases, the 2020Calfof2360 sighted with strike wounds in January, was considered nonlethal because it was last seen alive. However, the injuries to the whale were severe and the whale is not expected
to have survived.
Entanglement and Entrapments
There were five active entanglement/entrapment cases reported between 01 January 2020 – 31 December 2020, of
which four were new. Table 5 includes newly reported cases as well as pertinent updates to previously reported
cases.

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

Table 3. Documented right whale mortalities 01 January 2020 – 31 December 2020.
Whale #
2020Calfof3560

Date
06/25/2020

Location
NJ - MIDA

Sex
M

Age
calf

Field #

Necropsied?
Yes

Cause
Vessel strike

11/20/2020

NC – MIDA

M

calf

CALO 20-09

Yes

Possible dystocia

Comments
Necropsy results indicate that the calf had evidence of at
least two separate vessel collisions, the latter of which
occurred shortly before the whale died and was the likely
cause of death. The calf was last sighted alive on
04/06/2020 off North Carolina. The whale’s mother was
resighted on 07/22/2020 in the Gulf of St. Lawrence.
Necropsy indicates no evidence of human interactions
from entanglement or vessel strike. Initial results suggest
the whale died during birth, or shortly thereafter. Multiple
genetic samples were collected in order to identify the
calf's mother.

Table 4. Right whale vessel strikes (non-lethal) detected between 01 January 2020 – 31 December 2020.

Whale #
2020Calfof2360

Date of First
Injury
Sighting
01/08/2020

First location
Georgia

Sex
Unk

Age
(current)
calf

1017

02/29/2020

Cape Cod Bay

M

40+

4539

04/05/2020

Cape Cod Bay

M

5

Comments
At first sighting of the calf of the year, at least two wounds consistent with propeller strike were observed on
calf’s head. The anterior most wound wraps over front of left rostrum and is deep. Aerial images do not allow
for full assessment of the wounds. There is concern that the injury may impede suckling. Resighted 01/10/2020
by aerial team, noted that wounds were still bleeding. A multi-agency effort to deliver antibiotics to the calf on
01/15/2020 was successful. Neither the calf nor its mother #2360 have been sighted since 01/15/2020. Given
the nature of the injuries to the calf, it is not expected to have survived the strike.
Sighted with series of 25+ minor prop cuts down right flank. Orange cyamids are visible in several aft cuts.
Overall condition of the whale is good. Last sighted without cuts on 07/11/2019 in the Gulf of St. Lawrence.
Whale observed on 04/05/2020 in Cape Cod Bay with wound to right blowhole and very faint and minor marks
on right side that appear to be propeller marks. Whale appeared to be in good condition. Resighted several
times in the Gulf of St. Lawrence between June and September 2020.

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale Consortium.
www.narwc.org

Table 5. Right whale entanglements and status updates 01 January 2020 – 31 December 2020. Newly reported entanglements (carrying gear) and updates to previously reported
entanglements are in bold. Dead whales first sighted entangled at death are not included here. However, whales sighted alive as entangled and later dead are included.

Whale #
3466

Date of First
Entanglement
Sighting
12/21/2019

3180

02/24/2020

WR-2020-02

First
location
~20m south
Nantucket
USA

Sex
M

Age
(in 2020)
15

~45m SE of
Nantucket

F

19

03/16/2020

George’s
Bank

Unk

Unk

4680

10/11/2020

~3m east of
Sea Bright ,
NJ

M

4

At a minimum, the whale has two passes of line around its rostrum, with line embedded in the
rostrum. There is a large open lesion above the left shoulder. The whale is in extremely poor
condition with significant body condition loss, lesioned and grey skin, and accumulations of orange
cyamids on head and body. Survival is questionable.

3920

10/19/2020

South of
Nantucket

M

11

During a search for entangled right whale #4680, the CCS aerial survey team found #3920
entangled south of Nantucket on 10/19/2020. The free-swimming whale had line wrapped tightly
around it’s hear with line embedded in the forward part of the upper jaw. There was also trailing
line. The CCS response team was able to locate the whale, affix a telemetry buoy to the
entanglement, and remove ~100 feet of trailing line. Whale location and weather are being
monitored for further intervention.

Comments
At the initial entanglement sighting, the whale had multiple passes of yellow line through its mouth. The
line appeared to be buoyant and trails behind the whale to a jumble and at least one bitter end. There is no
evidence of tackle or buoys and the flippers do not appear to be involved. No response was mounted due
to the time of day and distance from shore. The large amount of line and the jumble indicate that the
whale will have difficulty shedding the gear and the configuration may become more complicated.
Resighted on 01/18/2020, 01/22/2020, and 1/31/2020 southeast of Nantucket. Reporting group
indicates no change in entanglement or condition. Response not possible given time of day and
distance to shore.
Whale sighted during an aerial survey, no response possible due to time of day and distance from
rescue team. The full extent of the entanglement is unclear, however, a white bullet buoy was visibly
lodged in the mouth and there may be a tight wrap of line around the bonnet. No trailing or
suspended gear was visible. The whale was in extremely poor condition: emaciated, grey, and large
cyamid aggregations on head and above both flippers.
A commercial fisher reported an entangled right whale ~130nm east of Cape Cod on Georges Bank
via the USCG. No response was mounted due to the time of day and distance. Entanglement
described as whale with two orange polyballs trailing ~30ft aft of the flukes. No images were taken.

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale Consortium.
www.narwc.org

Monitoring Health of Injured Right Whales
Efforts to better track and monitor the health of anthropogenic injury of North Atlantic right whales were initiated
in January 2013. These efforts aim to support annually mandated human induced serious injury and mortality
determinations, to reduce the likelihood of undetected and unreported events, and to better assess both short and
long-term impacts of injury on right whale health. Previously and newly injured right whales with vessel strikes,
attached fixed gear, or with moderate to severe entanglement injuries in the absence of attached gear (see
Knowlton et al. 2016 for review of injury types) are flagged for monitoring biannually. Each whale’s pre- and postinjury health conditions are evaluated using the visual health assessment technique (Pettis et al. 2004) and a
determination of the impact of injury on health is made. Based on the available sighting and health information,
whales are assigned to one of four categories: 1) Evidence of declining health coinciding with injury; 2)
Inconclusive (this determination was assigned to animals when a: evidence of declining health exists but it was
unclear whether or not it was linked to injury and/or b: images/information were inadequate to fully assess health
condition visually; and/or c: condition has improved but remains compromised; 3) No indication of declining
health caused by injury based on available images/information (these are removed from the monitoring list should
subsequent sightings also show no impact of injury on health); and 4) Extended Monitor - no indication of
declining health or whale’s condition has improved but whale will remain on monitoring list because of injury
severity and/or is still carrying gear. This last category was created to capture whales without current health
impacts related to injury, but with injuries that have the potential to negatively impact future health condition (e.g.
some severe vessel strikes, whales carrying gear, etc.).
Between 01 January and 31 December 2020, thirteen new injury-of-interest events were documented for twelve
whales, including four whales with attached gear, six entanglement injuries but no gear attached (including two new
injuries detected for one whale), and three vessel strikes (Tables 6 and 7). Of these twelve whales, four exhibited
declining condition coinciding with injury. The impact of injury on the health of four whales was inconclusive. There
were no visual indicators of injury impact on health condition for the remaining four newly injured whales (Table
7). Twenty whales previously on the monitoring list were removed, including six who became presumed dead
(Knowlton et al. 1994). The remaining 14 whales were removed for improved condition and/or length of time since
initial injury detections. As of 31 December 2020, the Serious Injury/Human Impact list includes 62 whales with
74 injuries documented from March 2004 through 31 December 2020 (Table 8). The majority of the injuries are
entanglement related (63/74, 85.1%) followed by vessel strikes (9/74, 12.2%). There are two whales on the list
with injuries of unknown origin.
Table 6. Since the inception of the injured right whale monitoring protocol, the number of injured whales and newly reported
injuries has varied by year. The number of whales included on the injured whale list is given for each report and is followed
parenthetically by how many of those were newly detected injuries. There are currently twelve whales on the injured list with
multiple injuries.

Year

June

December

2013
kslafjskadl;jdfkl;saj
2014
kl;jfdsakl;jfk

33*

32 (2)

45 (16)

50 (6)

2015
Fjdkalfjdksla;jkl;

51 (4)

59 (9)

2016

60 (4)

63(8)

2017

61 (4)

70 (10)

2018

74 (9)

70 (8)

2019

-

72 (9)

2020

-

62 (13)

*The first injured whale monitoring report was distributed in June 2013
and therefore does not include a comparative number of newly reported
injuries. In 2019, reporting moved from a biannual to an annual basis.
Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

Table 7. Impact of anthropogenic injury on right whale visual health for newly detected injured right whales.

Decline in Condition
Inconclusive
No Decline in Condition
Total

Entanglement
Gear Present
No Gear Present
3
0
1
3
0
2
4
5

Vessel Strike Other
1
0
2
3

0
0
0
0

Total
4
4
4
12*

*Two new injuries were detected on whales that were already on the monitoring list. One newly injured whale
had two injuries detected in 2020.
Table 8. Impact of anthropogenic injury on right whale visual health by injury type based on assessments of photographs preand post-injury for all North Atlantic right whales on the Serious Injury/Human Impact list as of 31 December 2020.

Decline in Condition
Inconclusive
No Decline in Condition
Extended Monitor
Total

Entanglement
Gear Present
No Gear Present
10
11
12
14
1
4
1
1
24
30

Vessel Strike Other
1
2
3
0
6

1
1
0
0
2

Total
23
29
8
2
62*

*This represents the number of whales on the monitoring list. Twelve of these whales have each had second
injuries documented since their initial injury sighting. For purposes of this report, whales are included under the
category representing their most recent injury.

AERIAL AND VESSEL-BASED SIGHTING SUMMARY: 2019
Prior to the 2017 Report Card, sighting information was reported for the time period following the previous
NARWC Annual Meeting. However, that reporting included the current year for which not all data has necessarily
been received and/or processed. Therefore, beginning with the 2017 Report Card, sighting summaries will be
presented for the previous calendar year. Cataloged sighting information for the year 2019 (analysed 01 September
2020) is summarized below (Table 9) and includes survey, research, and opportunistic sightings. Months with
sightings, survey types, and major contributing organizations (>10% total sightings for region) are listed.
Major Contributing Organizations
BOS: Blue Ocean Society
CCS: Center for Coastal Studies
CMARI: Clearwater Marine Aquarium Research Institute
CWI: Canadian Whale Institute
DAL: Dalhousie University
DFO: Fisheries and Oceans Canada
FWRI: Florida Fish and Wildlife Research Institute
GDNR: Georgia Department of Natural Resources

GMWSR: Grand Manan Whale and Seabird Research
Station
NEAq: New England Aquarium
NEFSC: Northeast Fisheries Science Center
QLM: Quoddy Link Marine
TC: Transport Canada
UNB: University of New Brunswick
WHOI: Woods Hole Oceanographic Institution

Pettis, H.M., Pace, R.M. III, Hamilton, P.K. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium.
www.narwc.org

Table 9. Summary of 2019 right whale sightings by habitat region. Analyses for 2019 data are ongoing and therefore the data
presented here should not be considered complete.

Region

# Sightings

Sighting Months

Survey types/activities

Organizations

Bay of Fundy

70

May, Jul - Oct

Vessel surveys, biopsy
sampling

GMWSR, NEAq,
QLM

East (East of Mainland US
(Azores, Nova Scotian Shelf,
Spain, Bermuda, Canary Islands)

11

Jul, Oct

Aerial surveys

DFO

Gulf of Maine

335

Jan - Mar, May Sept, Nov

Aerial & Vessel surveys

NEAq, NEFSC

Great South Channel
Jeffreys Ledge

61
4

Mar - Sep
Jul, Sep - Oct

Aerial & Vessel surveys
Aerial surveys, whale watch

CCS, NEFSC
BOS, CCS

Mid-Atlantic (includes south of
Cape Cod)

436

Jan - May, Jul Sep, Nov - Dec

Aerial & Vessel surveys

NEAq, NEFSC

Jan - May

Aerial & Vessel surveys,
biopsy & habitat sampling,
drone photogrammetry

CCS, NEFSC,
WHOI
CWI, DAL, DFO,
NEAq, NEFSC, TC,
UNB
CMARI, FWRI,
GDNR

New England (Massachusetts
Bay/Cape Cod Bay)

1372

North (North of 46° incl.
Newfoundland, Gulf of St.
Lawrence, Iceland)

1827

May - Oct

Aerial & Vessel surveys,
biopsy sampling

Southeast United States

146

Jan - Mar, Nov Dec

Aerial & Vessel surveys,
biopsy & drone sampling

MANAGEMENT AND MITIGATION ACTIVITIES
NMFS, United States 2020 Management and Mitigation Activities
●

North Atlantic Right Whale Unusual Mortality Event
An Unusual Mortality Event (UME) was declared by the National Marine Fisheries Service (NMFS) for
North Atlantic right whales (Eubalaena glacialis) starting in 2017 due to elevated strandings along the
Northwest Atlantic Ocean coast, especially in the Gulf of St. Lawrence region of Canada. This is a
transboundary event and the investigation includes whales stranding in both the United States and Canada.
The event is ongoing with the 32 confirmed dead stranded whales (21 in Canada; 11 in the U.S.) to date.
The breakdown by year includes 17 confirmed dead stranded whales (12 in Canada; 5 in the U.S.) in 2017,
three whales in the U.S in 2018, nine whales in Canada and one in the U.S in 2019, and two dead whales in
the U.S. in 2020 (through 08 December). Of the 32 dead right whales, 22 were necropsied and 18 were
determined to have died as a direct result of human activities (either confirmed, probable, or suspect), from
entanglements (8) or vessel strikes (10). Additionally, since 2017, 13 live free-swimming non-stranded
whales have been documented with serious injuries from either entanglements (4 in Canada; 8 in the U.S.)
or vessel strikes (1 in the U.S). Therefore, the preliminary cumulative total number of animals currently in
the North Atlantic right whale UME is 45 individuals, including 32 confirmed mortalities and 13 seriously
injured free-swimming whales. Thus, given there are less than 400 individual North Atlantic right whales
remaining, these 45 individuals in the UME represent at minimum 10% of the population, which is a
significant impact on such a critically endangered species.
More information can be found at NMFS UME website: (https://www.fisheries.noaa.gov/national/marinelife-distress/2017-2020-north-atlantic-right-whale-unusual-mortality-event).

●

North Atlantic Right Whale Monitoring Plan
NMFS summarized the findings of a 2019 North Atlantic Right Whale expert Working Group that
considered right whale monitoring objectives related to: (1) improving our understanding of population
status by identifying and tracking essential population metrics, and (2) improving our understanding of
distribution and habitat use. A report of the Working Group’s recommendations was released in August

Pettis, H.M. et al. 2018. North Atlantic Right Whale Consortium 2019 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

2020 and can be found on NMFS’ website at: https://www.fisheries.noaa.gov/resource/document/northatlantic-right-whale-monitoring-and-surveillance-report-and-recommendations.
The report presents the Working Group’s recommendations for a comprehensive monitoring strategy to
guide future analyses and data collection on (1) North Atlantic right whale demographics and population
status, (2) distribution shifts and habitat use range-wide, and (3) the health of individuals and the
population. NMFS is currently reviewing the Working Group’s recommendations, as well as other
information relevant to monitoring right whales, as it considers making any changes to its current right
whale monitoring and surveillance program. In doing so, we will work closely with our partners to ensure
that all North Atlantic right whale monitoring efforts are effective in helping to recover the species.
●

North Atlantic Right Whale Health Assessment Workshop:
NMFS convened a Workshop on North Atlantic Right Whale Health Assessment June 24-26, 2019 in
Silver Spring, Maryland, under the auspices of the Working Group on Marine Mammal Unusual
Mortality Events (Working Group) in response to the ongoing North Atlantic Right Whale UME and
the endangered status of the species. The main goals of the workshop were: 1) to assess current health
information data, including associated data gaps, and 2) identify appropriate available and needed
tools and techniques for collecting standardized health data that can be used to understand health
effects of environmental and human impacts (e.g., entanglement), and inform fecundity and
survivorship models to ultimately guide population recovery of North Atlantic right whales.
Over the course of the three days, the workshop participants helped NMFS summarize North Atlantic right
whale population status and existing health-assessment information; identified several ways to prioritize
health data collection, tools and methods; and prioritized ways to increase the use of health data to aid in
monitoring individual health, informing population health, and identifying the population consequences of
multiple stressors, including the connection between human activities (e.g., entanglement) and health.
A draft report detailing the workshop proceedings and recommendations is now complete. Release of the
report was previously delayed but we now anticipate it will be released in early January 2021.

●

Vessel Speed Rule Report
NMFS has undertaken an assessment of the right whale vessel speed rule. The assessment will include
information on biological effectiveness, mariner compliance, outreach and enforcement efforts,
navigational safety, and economic impacts. Additionally, the assessment will assess the voluntary Dynamic
Management Area (DMA) program and examine small vessel (<65ft) traffic patterns within Seasonal
Management Areas.
NMFS continues to move forward with a suite of activities designed to 1) further investigate possible
changes to the speed rule regulations, 2) assess the efficacy of other vessel strike mitigation efforts, and 3)
enhance our outreach and enforcement strategies.

●

DMA and Right Whale Slow Zone info
NMFS began the voluntary DMA program at the same time as our mandatory speed reduction regulations.
Under this program, NMFS established DMAs when visual sightings documented the presence of three or
more right whales within a discrete area. Vessels 65 feet and larger were asked to avoid or slow to 10 knots
or less in these areas to protect right whales from vessel strike. Early in this fiscal year, the North Atlantic
right whale Northeast U.S. Implementation Team identified the opportunity for NMFS GARFO to enhance
vessel strike reduction efforts by also using acoustic information to alert vessels of right whale presence.
Based on this idea, NMFS GARFO launched the Right Whale Slow Zones campaign in August of 2020.
Under this new name – Right Whale Slow Zones – NMFS GARFO is expanding voluntary speed reduction
efforts in the Northeast U.S. Now, NMFS GARFO is asking vessels of all sizes to avoid or slow down to
10 knots or less in areas where right whales have been seen (i.e., DMAs) or heard (i.e., areas where
acoustic detections are received).
Over the last five years NMFS has recorded a noticeable and steady increase in the number of DMAs
triggered. During 2016, five DMAs occurred and speed restrictions were requested. However, in the last
three years (2018-2020), notifications have increased to 20 or more annually. Historically, DMAs were
triggered/and initiated due to right whale visual observations. In August of 2020, since the launch of Right

Pettis, H.M. et al. 2018. North Atlantic Right Whale Consortium 2019 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Whale Slow Zones, acoustic receivers and arrays were added as a new technology used to trigger right
whale presence notifications in the Northeast U.S. To date, (12-9-2020) we have had four acoustically
triggered SLOW Zone events in two locations (New York Bight, NY and Atlantic City, NJ). Two events in
each location, which have led to extensions of the original trigger.
The North Atlantic right whale Northeast Implementation Team identified and outlined some of the
positive opportunities for NMFS to begin using acoustic receivers and detections as another alternative
trigger for establishing right whale SLOW Zones. These suggestions were researched, discussed and
developed by management. Acoustic triggers were accepted and have been established in the Northeast
U.S. per the NEIT recommendation related to trigger criteria, duration and size.
●

U.S. North Atlantic Right Whale Implementation Teams
In 2020, NMFS conducted a number of management activities under the Endangered Species Act (ESA)
related to recovery plan implementation specific to Section 4(f). This included:
○
Northeast U.S. Implementation Team (NEIT)
NMFS GARFO continued to liaison with the NEIT on activities to assist in the implementation of
the recovery plan in the Northeast U.S. This included the NEIT’s continued discussion and
furtherance of identified priorities to support right whale recovery in the Northeast. For example,
the NEIT’s recommendation to NMFS GARFO to enhance vessel strike reduction efforts using
acoustic information informed the acoustic portion of the new “Right Whale Slow Zones.”
Specifically, the areas triggered by acoustic detections in the Northeast U.S. are established per the
NEIT recommendation related to trigger criteria, duration and size.
○
Population Evaluation Subgroup
The U.S. Implementation Team’s Population Evaluation Tool Subgroup continued to meet and
work towards development of a population viability analysis to characterize North Atlantic right
whale extinction risk. This is a coastwide collaboration including Canada.

●

Species in the Spotlight
North Atlantic Right Whales became a Species in the Spotlight in 2019. NMFS is working to develop a
Species in the Spotlight 5-year action plan which builds upon existing recovery and conservation plans and
details the focused efforts needed over the next five years to reduce threats and stabilize the North Atlantic
right whale population decline. Considerations include input from the Northeast and Southeast
Implementation Teams from their October 2019 joint meeting. NMFS expects the action plan to be
publicly available in the spring of 2021.

●

Atlantic Large Whale Take Reduction Plan
NMFS is requesting comments on the proposed rule to modify the Atlantic Large Whale Take Reduction
Plan (ALWTRP) and associated Draft Environmental Impact Statement (DEIS). The proposed rule and a
Notice of Availability of the DEIS were published in the Federal Register on December 31, 2020. Links to
both documents as well as supporting information can be found on the ALWTRP website.
Comments on the Proposed Rule and DEIS are due by March 1, 2020. NMFS is holding informational
sessions in January to give the public an opportunity to learn about the proposed rule and DEIS before
providing comments. Comments can be submitted in writing or orally:
o To submit written comments go to the regulations.gov website, search for
NOAA-NMFS-2020-0031 and choose “Comment Now”.
o Oral comments can be provided during February public hearing sessions.
Proposed changes to the Plan would:
o Modify gear marking to introduce state-specific colors for gear marks and increase the number of
gear markings and areas requiring marked lines.
o Modify gear configurations to reduce the number of vertical lines by requiring more traps between
buoy lines and by introducing weak insertions or weak rope into buoy lines.
o Modify existing seasonal restricted areas to allow ropeless fishing,
o Add one or two new seasonal restricted areas that are closed to buoy lines but allow ropeless
fishing.
Contact [email protected] or [email protected] with questions.

Pettis, H.M. et al. 2018. North Atlantic Right Whale Consortium 2019 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

●

Offshore Wind Energy:
Offshore wind energy development along the U.S. East Coast continued to progress rapidly in 2020,
including the first two turbines being installed in Federal waters off the coast of Virginia. Currently, there
are 16 active leases on the Outer Continental Shelf of the U.S. East Coast between southern New England
and North Carolina. Many of the proposed projects are simultaneously conducting site assessment
activities, including geotechnical and geophysical surveys, and preparing Construction and Operating
Plans. The effects of all these activities on protected species and their habitat are assessed under the ESA
and the Marine Mammal Protection Act (MMPA). NMFS continued its engagement in the burgeoning
industry in 2020 fulfilling multiple roles, primarily providing input and review throughout the One
Federal Decision process as a cooperating agency to the Bureau of Ocean Energy Management , the lead
Federal agency for authorizing the construction, operation, and eventual decommissioning of any
offshore wind project) and also providing data and analyses on protected species to developers and
working on a number of regional coordination projects to advance our scientific understanding of the
effects of offshore wind development. Additional activities in 2020 included:
○ Completing the ESA section 7 biological opinion for the Vineyard Wind 1 project, the Opinion
can be found at: https://repository.library.noaa.gov/view/noaa/27243
○ Continuing to conduct a programmatic ESA consultation on offshore wind energy survey
activities to include actions from Maine-Florida and update analyses of effects to ESA-listed
species and their habitats.
○ Processing MMPA Incidental Take Authorizations related to Vineyard Wind 1 and South Fork
construction.
○ Coordinating with the Northeast Fisheries Science Center (NEFSC) to improve our
understanding of the effects of offshore wind development on protected species.
More information on NOAA’s role in offshore wind energy development can be found at:
https://www.fisheries.noaa.gov/new-england-mid-atlantic/science-data/offshore-wind-energydevelopment-new-england-mid-atlantic-waters

●

Aquaculture Interactions Working Group (AIWG):
The NOAA Aquaculture Interactions Working Group (AIWG) coalesced in 2019 in partnership between
the NMFS Office of Protected Resources and Office of Aquaculture to address the potential risk of
protected species interactions with marine aquaculture gear. The objectives of this working group are to:
(1) consider ways to assess the risk of adverse impacts to protected species associated with various types of
aquaculture gear, (2) evaluate strategies to avoid or minimize risks to protected species and their habitats
(e.g., siting, engineering design, monitoring), and (3) develop operational products such as guidance
documents and best management practices that will constitute national guidance on assessing and
minimizing potential risks to protected species and their habitats from aquaculture operations. Efforts by
the AIWG are ongoing, with guidance and information produced by this working group expected
throughout 2021.

●

Ropeless Fishing Research:
During FY20 the NMFS NEFSC accelerated the research and development of a ropeless fishing pilot
program. Many activities have been accomplished or are being planned to aid in both testing and
development of ropeless systems. The NEFSC has built relationships with fishermen, manufacturers of
ropeless systems, and nongovernmental organizations (NGO) to help facilitate the development of safe and
operationally feasible methods to remove the vertical lines from pot/trap and other fishing gears.
We continue to expand our capacity to work on innovative gear solutions. Activities include:
○ NEFSC acquisition of a total of 10 ropeless fishing systems from six vendors were added to the
collaborative Gear Library which now maintains 47+ ropeless fishing systems.
○ Contracting with 16 collaborative fishermen to conduct both inshore and offshore trials of ropeless
fishing systems.
○ Completion of 120 active fishing hauls using ropeless fishing systems. Dedicated training/rigging
days accomplished prior to each new vessel or ropeless fishing system.
○ Two federal employees have been reprogrammed to work on ropeless testing and four contractors
added to the team.
○ Economics staff are estimating anticipated cost reductions of ropeless technology over time.
○ NEFSC/Protected Species Branch is working with the National Aeronautics and Space
Administration’s Center for Collaborative Excellence and Yet2 to crowdsource market research to

Pettis, H.M. et al. 2018. North Atlantic Right Whale Consortium 2019 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

○
○
○
○



identify vendors with the expertise to develop an inexpensive geolocation system for traps and pots
to be used by fishermen, managers, and enforcement.
Funding was provided to the National Fish and Wildlife Federation to develop a scoping project to
elicit feedback from key stakeholder groups on ropeless fishing conflict issues (matched by
$300,000 from private corporations).
NMFS staff are actively participating in newly formed ropeless fishing forums including the
Ropeless Consortium and Canadian Gear Innovation Summit.
Worked with communications staff to develop an infographic and informational videos on ropeless
systems.
Working with NGOs and engineers to develop a geolocation system to resolve issues of gear
conflict, fishermen setting their gear over or fishing through ropeless fishing system systems set on
the ocean floor.

NOAA called for 27 Dynamic Management Area (DMA) voluntary speed reduction zones between 01 January
2020 and 31 December 2020 (Table 10).

Table 10. Dynamic Management Area (DMA) voluntary speed reduction zones posted by NOAA between 01 January 2020
and 31 December 2020.
Trigger
Date
Number
Sightings
of Right
General Location
Boundaries
(date of
Source
Whales
RW
sightings)
31 nm south of
41 11 N
40 22 N
1/22/2020
58
NOAA aerial team
Nantucket
069 32 W
070 37 W
31 nm south of
41 11 N
40 22 N
1/31/2020
50
NOAA aerial team
Nantucket
069 32 W
070 37 W
31 nm south of
41 11 N
40 22 N
2/9/2020
14
NOAA aerial team
Nantucket
069 32 W
070 37 W
NARW Sighting
31 nm south of
41 11 N
40 22 N
2/20/2020
8
Survey
Nantucket
069 32 W
070 37 W
3/2/2020

66

NARW Sighting
Survey

Extended 31 nm south of
Nantucket and 47 nm SE
Nantucket, MA

41 11 N
069 32 W
41 02 N
068 58 W

40 22 N
070 37 W
40 15 N
070 01 W

41 11 N
069 32 W
41 02 N
068 58 W
42 45 N
070 11 W
42 47 N
070 26 W
42 47 N
070 26 W
41 16 N
069 37 W
41 16 N
069 37 W
41 16 N
069 37 W
41 16 N
069 37 W
41 16 N
069 37 W

40 22 N
070 37 W
40 15 N
070 01 W
42 04 N
071 10 W
42 05 N
071 23 W
42 05 N
071 23 W
40 32 N
070 28 W
40 32 N
070 28 W
40 32 N
070 28 W
40 32 N
070 28 W
40 32 N
070 28 W

3/12/2020

13

NOAA Aerial team

31 nm south of
Nantucket and 47 nm SE
Nantucket, MA

3/23/2020

4

NOAA Aerial team

East of Boston

4/9/2020

5

4/24/2020

4

8/31/2020

8

NOAA Aerial Team

South of Nantucket

9/14/2020

7

NOAA Aerial team

South of Nantucket

9/24/2020

4

NEA aerial survey

South of Nantucket

10/4/2020

3

NEA aerial survey

South of Nantucket

10/19/2020

6

CCS aerial survey

South of Nantucket

Opportunistic
Sighting from Shore
Boston Harbor
Cruise

Nahant, MA
NE of Boston

Pettis, H.M. et al. 2018. North Atlantic Right Whale Consortium 2019 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Table 10 (cont’d). Dynamic Management Area (DMA) voluntary speed reduction zones posted by NOAA between 01
January 2020 and 31 December 2020.
Trigger Date
Number of Right
Sightings Source
General Location
Boundaries
(date of RW
Whales
sightings)
41 16 N
40 32 N
10/31/2020
4
NOAA aerial survey
South of Nantucket
069 37 W 070 28 W
40 59 N
40 23 N
11/15/2020
4
NOAA aerial survey
SE of Nantucket
069 05 W 069 52 W
40 41 N
40 01 N
11/17/2020
WHOI Acoustic Buoy
SE of New York City
73 03 W
073 55 W
39 25 N
38 44 N
11/20/2020
WHOI Acoustic Buoy
SE of Atlantic City
073 44 W 074 36 W
41 01 N
40 22 N
11/29/2020
3
NEA aerial survey
SW of Nantucket Isl.
070 07 W 070 59 W
40 41 N
40 01 N
11/30/2020
WHOI acoustic buoy
SE of New York City
73 03 W
73 55 W
39 25 N
38 44 N
12/7/2020
WHOI Acoustic Buoy
SE of Atlantic City
073 44 W 074 36 W
40 41 N
40 01 N
12/9/2020
WHOI Acoustic Buoy
SE of New York City
73 03 W
73 55 W
41 26 N
40 44 N
12/14/2020
4
NEA aerial survey
SE of Nantucket Isl.
069 31W 070 25 W
40 41 N
40 01 N
12/20/2020
WHOI Acoustic Buoy
SE of New York City
73 03 W
73 55 W
39 25 N
38 44 N
12/20/2020
WHOI Acoustic Buoy
SE of Atlantic City
073 44 W 074 36 W
PR Observers aboard
S of Martha's
12/30/2020
7
survey vessel 41 25 N
40 44 N
Vineyard
VENTUS
069 59 W 070 55 W
W of Martha's
41 34 N
40 54 N
12/31/2020
WHOI Acoustic Buoy
Vineyard
070 50 W 071 43 W

Fisheries and Oceans Canada and Transport Canada, Canadian 2020 Management and Mitigation Activities
Input from Fisheries and Oceans Canada
 2020 is the fourth year that the Government of Canada has implemented targeted management measures to
help protect and recover NARW by addressing primary threats to the population: vessel strikes (Transport
Canada lead) and entanglement in fishing gear (Fisheries and Oceans lead).


In February 2020, additional management measures to protect North Atlantic right whales were announced
for 2020 and beyond. These include the expansion of temporary area closures to fisheries triggered by
single whale detections in the Gulf of St. Lawrence, Roseway and Grand Manan Basins, and the entire Bay
of Fundy as well as season-long area closures to protect aggregations in the Gulf of St. Lawrence. The new
season-long closure protocol, an adaptive management measure, resulted in the largest area closed to
fishing to date. As of November 13, 2020, 175 full grids (approximately 36,000 km2) were closed for the
season. As of November 13, 2020, 36 full grids were temporarily closed (approximately 6,400 km2) within
the Gulf of St. Lawrence, Bay of Fundy and Roseway Basin. In comparison, the static season long closure
area to protect right whales in 2019 was 2,200 square km.



This is also the first year where acoustic technology was used to trigger fishery area closures. This
technology successfully detected the presence of whales, in turn, triggering both fishing and shipping
measures.



Canada implemented a requirement for fixed gear fisheries in Atlantic Canada and Quebec to be marked
by end of 2020 and to have weak breaking points in their vertical lines as well as other gear modifications

Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

for the end of 2021 and beyond. Additionally, all fishing licence holders are required to report lost gear and
any interactions with marine mammals.


Canada’s on the water, in the air and acoustic whale surveillance program covers all of Atlantic Canada
and Quebec, with targeted monitoring in the Gulf of St. Lawrence, the Bay of Fundy and other areas. For
example, at any given time through peak NARW months in Canada (April to November), upwards of 4-5
planes from DFO and Transport Canada were monitoring different areas for right whales and potential
overlap with fishing activity and vessel traffic. As of November 2020, over 2000 hours of flights were
designated for NARW.



Right whales were first sighted in Canadian waters on May 3rd, 2020. As of early December, there have
been over 1000 detections in Canadian waters of right whales and 128 different individuals have been
identified from visual surveillance in Canadian waters this year, including five new right whale calves.
Analysis of photos from 2020 is ongoing.



With less than 400 remaining, the Government of Canada continues to take action to protect the
endangered North Atlantic right whale. To date, there have been no Right whale deaths or new
entanglements reported in Canadian waters for 2020.



The Government of Canada has been working with industry, to identify gear solutions for alleviating injury
to right whales and has provided funding for entrepreneurs and the fishing industry for gear development
and pilots. Many innovative approaches to addressing gear modification were discussed during the Gear
Innovation Summit hosted by the Minister of Fisheries and Oceans from February 11-12, in Halifax, N.S.



Over the past three years, ropeless gear trials have been conducted in Atlantic Canada. In 2020, the
Department supported the first dedicated trials of ropeless gear for crab fishing in an area closed due to the
presence of right whales, their catches were sold on the commercial market. Future gear modifications that
are being considered include: requirements for maximum rope diameters of 5/8 inches, sinking rope
between pots and traps, and reductions in vertical and floating rope.



Fisheries and Oceans has continued annual investment of over $1 million for marine mammal response
organizations and investments in science to better understand threats to right whales, and to inform future
management measures. The Department is also delivering $4.5 million over four years to build additional
capacity across Canada for safe and effective marine mammal incident response. The funds for 2020-21
will further support necropsies, Indigenous community response capacity, and in particular increased large
whale disentanglement response capacity in the Gulf of St. Lawrence. Meetings are held annually with
Marine Mammal Response partners to discuss the operational season and needs moving forward.



Fisheries and Oceans hosted the Gear Innovation Summit in Halifax on February 11-12, 2020. The Summit
provided an opportunity for harvesters, technical experts, non-government and government agencies to
share information and learn about technologies and programming aimed to the prevention, reduction, and
retrieval of ghost gear and industry-led whale safe gear initiatives. Attended by over 250 stakeholders as
well as the Minister of Fisheries and Oceans, the event included plenary sessions, expert panel discussions
and a trade show to allow for harvesters to further discuss the application of technology in their operations.



Fisheries and Oceans is committed to addressing the threat of abandoned, lost, or otherwise discarded
fishing gear through various initiatives, including the Sustainable Fisheries Solutions and Retrieval
Support Contributions program (Ghost Gear Fund). Projects supported by Fisheries and Oceans Canada
have been responsible for the removal of almost 69 tons worth of lost or discarded fishing gear from
coastal waters in Atlantic Canada this year.



On November 17-18, 2020, Fisheries and Oceans Canada held the North Atlantic Right Whale Roundtable
Meeting with indigenous groups, the fishing industry, provinces, and marine mammal experts. The
Roundtable and other discussions with harvesters play an important role in the preparation of Canada’s
measures to protect right whales and to support sustainable fisheries for 2021 and beyond.

Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Input from Transport Canada
Essential Population Monitoring and Priorities
In the spring of 2018, Canada announced new measures to mitigate both entanglements and vessel strikes in areas
in which right whales frequent, including vessel speed reductions, temporary and fixed fisheries management areas
and closures, and increased reporting requirements for fishing activity, lost gear, and interactions with marine
mammals. There were no detected right whale mortalities in Canadian waters in 2018, though there were three
entangled whales detected that year. In 2019, similar mitigation measures were put into place in Canadian waters.
Between 04 and 27 June 2019, seven right whale mortalities were detected in Canadian waters, three of which were
attributed to vessel strikes. In response, vessel strike mitigation measures in the Gulf of St. Lawrence were
expanded on 08 July 2019. Two additional right whale mortalities were detected in Canadian waters in July 2019
(causes of death undetermined) and a third whale who became severely entangled in the Gulf of St. Lawrence in
August 2019, well after the snow crab fishery season was over, was discovered dead in waters off New York, U.S.
in September 2019. In 2020, Canada further expanded on the measures introduced in July 2019. There were no
known right whale mortalities in Canadian waters in 2020.
Management and Mitigation Activities
 In 2020, Transport Canada once again implemented a large mandatory static speed restriction zone
covering much of the Gulf of St. Lawrence, and dynamic speed restriction zones in the shipping lanes
north and south of Anticosti Island to reduce the risk of vessel collisions with the North Atlantic right
whale. These measures, applicable to all vessels longer than 13m, came into force on April 28, 2020 and
were in place until November 15, 2020.
 Additionally, Transport Canada instituted Seasonal Management Areas from April 28 to June 30, 2020 to
expand the static speed restriction zone for part of the season and a mandatory restricted area in and near
the Shediac Valley to protect aggregating North Atlantic right whales from August 2 to October 9, 2020 –
the area was closed to all vessels longer than 13m with exceptions for fishing and certain other activities.
Vessels permitted to transit in or through the zone were limited to speeds of no more than 8kn
 Transport Canada also conducted a trial voluntary slowdown in Cabot Strait from April 28 to June 15,
2020, and October 1 to November 15, 2020.
 Transport Canada used two new surveillance technologies to detect North Atlantic right whales to inform
active management of dynamic vessel speed measures - a Remotely Piloted Aircraft System (RPAS or
drone) and an acoustic underwater glider. These two technologies complimented the surveillance flights
flown by Transport Canada’s National Aerial Surveillance Program (NASP).
 Transport Canada began evaluating the 2020 measures before the conclusion of the season, and continues
to engage with the marine transportation industry, fishers, scientists, and other stakeholders to refine and
develop measures for 2021.
 The Government of Canada consults with fishing and shipping industry representatives, Indigenous groups
and other partners, for feedback on measures and to support the development of future measures.
2020 NORTH ATLANTIC RIGHT WHALE PUBLICATIONS/REPORTS
Reports and publications that utilized NARWC databases in 2020 and/or those of general interest to the right whale
community are listed and hyperlinked (when available) below.
Publications/Theses
Baumgartner MF., Bonnell J, Corkeron PJ., Van Parijs SM., Hotchkin C, Hodges BA., Bort Thornton J, Mensi
BL., Bruner SM. 2020. Slocum Gliders Provide Accurate Near Real-Time Estimates of Baleen Whale Presence
From Human-Reviewed Passive Acoustic Detection Information.Frontiers in Marine Science 7:100.
DOI=10.3389/fmars.2020.00100
Brown, A.H. and Niedzwecki, J.M., 2020. Assessing the risk of whale entanglement with fishing gear
debris. Marine Pollution Bulletin, 161, p.111720.
Christiansen F., Dawson S.M., Durban J.W., Fearnbach H., Miller C.A., Bejder L., Uhart M., Sironi M., Corkeron
P., Rayment W., Leunissen E., Haria E., Ward R., Warick H.A., Kerr I., Lynn M.S., Pettis H.M., Moore
M.J. 2020. Population comparison of right whale body condition reveals poor state of the North Atlantic right
Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

whale. Mar Ecol Prog Ser 640:1-16. https://doi.org/10.3354/meps13299
Davis, G.E., Baumgartner, M.F., Corkeron, P.J., Bell, J., Berchok, C., Bonnell, J.M., Brault, S., Buchanan, G.A.,
Cholewiak, D., Clark, C.W. and Delarue, J., 2020. Exploring movement patterns and changing distributions of
baleen whales in the western North Atlantic using a decade of passive acoustic data. Global Change Biology.
de Lavigerie, G.D., Bosselaers, M., Goolaerts, S., Park, T., Lambert, O. and Marx, F.G., 2020. New Pliocene right
whale from Belgium informs balaenid phylogeny and function. Journal of Systematic Palaeontology, pp.1-26.
Fortune, S.M., Moore, M.J., Perryman, W.L. and Trites, A.W., Body growth of North Atlantic right whales
(Eubalaena glacialis) revisited. Marine Mammal Science.
Henry A.G., Garron M., Morin D., Reid A., Ledwell W., Cole TVN. 2020. Serious Injury and Mortality
Determinations for Baleen Whale Stocks along the Gulf of Mexico, United States East Coast, and Atlantic
Canadian Provinces, 2013-2017. US Dept Commer, Northeast Fish Sci Cent Ref Doc. 20-06; 53 p.
Ierardi, J.L., Veloso, A. and Mancia, A., 2020. Transcriptome analysis of cadmium exposure in kidney fibroblast
cells of the North Atlantic right whale (Eubalaena glacialis). Comparative Biochemistry and Physiology Part C:
Toxicology & Pharmacology, p.108946.
Johnson, H.D., Baumgartner, M.F. and Taggart, C.T., Estimating North Atlantic right whale (Eubalaena glacialis)
location uncertainty following visual or acoustic detection to inform dynamic management. Conservation Science
and Practice, p.e267.
Kelley, D.E., Vlasic, J.P., Brillant, S.W. 2020. Assessing the lethality of ship strikes on whales using simple
biophysical models. Mar Mam Sci. 2020; 1– 17.
Koubrak, O., VanderZwaag, D.L. and Worm, B., 2020. Saving the North Atlantic Right Whale in a Changing
Ocean: Gauging Scientific and Law and Policy Responses.
Martins, M.C.I., Miller, C., Hamilton, P., Robbins, J., Zitterbart, D.P. and Moore, M., Respiration cycle duration
and seawater flux through open blowholes of humpback (Megaptera novaeangliae) and North Atlantic right
(Eubalaena glacialis) whales. Mar Mam Sci. 2020; 1-20
Montes, N., Swett, R. and Gowan, T., 2020. Risk of encounters between North Atlantic right whales and
recreational vessel traffic in the southeastern United States. Ecology and Society, 25(4).
Moore M.J., Mitchell G.H., Rowles T.K., and Early G. 2020. Dead Cetacean? Beach, Bloat, Float, Sink. Front.
Mar. Sci. 7:333. doi: 10.3389/fmars.2020.00333
Myers, H.J. and M.J. Moore. 2020. Reducing effort in the U.S. American lobster (Homarus americanus) fishery to
prevent North Atlantic right whale (Eubalaena glacialis) entanglements may support higher profits and long-term
sustainability. Marine Policy 118:104017
Ohnemus, K.P. The (en)tangled web they weave: Stakeholder perceptions of the Large Whale Take Reduction Plan
process. 2020. Open Access Master's Theses. Paper 1836. https://digitalcommons.uri.edu/theses/1836

Radvan S. 2019. Effects of inbreeding on fitness in the North Atlantic right whale (Eubalaena glacialis).
Honours thesis Submitted to Saint Mary’s University, Halifax, Nova Scotia. 63 pp.
Rockwood, R.C., Adams, J., Silber, G. and Jahncke, J., 2020. Estimating effectiveness of speed reduction measures
for decreasing whale-strike mortality in a high-risk region. Endangered Species Research, 43, pp.145-166.
Simard, Y., Roy, N., Giard, S. and Aulanier, F., 2019. North Atlantic right whale shift to the Gulf of St. Lawrence
in 2015, revealed by long-term passive acoustics. Endangered Species Research, 40, pp.271-284.
Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Reports
Bourque, L., Wimmer, T., Lair, S., Jones, M., Daoust, P.-Y. 2020. Incident Report: North Atlantic Right Whale
Mortality Event in Eastern Canada, 2019. Collaborative Report Produced by: Canadian Wildlife Health
Cooperative and Marine Animal Response Society. 210 pp.
Fauquier D., Long K., Biederon I., Wilkin S., Rowles T., Patterson, E., Henry A., Garon M., Fougeres E., Famer,
N.A., Baker J, Ziccardi M. 2020. Report of the Health Assessment Workshop for North Atlantic Right Whales
(Eubalaena glacialis), June 24-26, 2019. NOAA Tech. Memo. NMFS-OPR-65, 67 p.
Gavrilchuk, K., Lesage, V., Fortune, S., Trites, A.W., and Plourde, S. 2020. A mechanistic approach to predicting
suitable foraging habitat for reproductively mature North Atlantic right whales in the Gulf of St. Lawrence. DFO
Can. Sci. Advis. Sec. Res. Doc. 2020/034. iv + 47 p.
Knowlton A.R., Zani M.A., Howe K.R., Hamilton P.K., Burgess L.A., Graham K.M., Pettis H.M., Kraus S.D.,
Brown M.B. 2019. Research, Monitoring and Conservation of the North Atlantic Right Whale (Eubalaena
glacialis) in the southern Gulf of St. Lawrence and the Bay of Fundy – 2019. Report to Irving Oil. 61 pp.
Lehoux, C., Plourde S., and Lesage, V. 2020. Significance of dominant zooplankton species to the North Atlantic
Right Whale potential foraging habitats in the Gulf of St. Lawrence: a bioenergetic approach. DFO Can. Sci.
Advis. Sec. Res. Doc. 2020/033. iv + 44 p.
Morin, D., Moise, M., Higgins, J., Minton, M. 2020. 2017 Atlantic Large Whale Entanglement Report. Greater
Atlantic Region Policy Series 20(2).
O’Brien O, McKenna K, Baumgartner M, Redfern J. 2020. Megafauna Aerial Surveys in the Wind Energy Areas
of Massachusetts and Rhode Island with Emphasis on Large Whales. Summary Report Part 1: Sightings and Data –
Campaign 5, 2018-2019. Report to Massachusetts Clean Energy Center. 63 pp.
Oleson E.M., Baker J., Barlow J., Moore J.E., Wade P. 2020. North Atlantic Right Whale Monitoring and
Surveillance: Report and Recommendations of the National Marine Fisheries Service’s Expert Working Group.
NOAA Tech. Memo. NMFS-F/OPR-64, 47 pp.
Pettis HM. 2019. Monitoring injured North Atlantic right whales: December 2019 report. A report to the Volgenau
Foundation. 10 pp.
Pettis HM, Pace RM, and Hamilton PK. 2019. North Atlantic Right Whale Consortium 2019 annual report card.
Report to the North Atlantic Right Whale Consortium, November 2019. 19 pp.
Tetra Tech and LGL. 2020. Final Comprehensive Report for New York Bight Whale Monitoring Aerial Surveys,
March 2017 – February 2020. Technical report prepared by Tetra Tech, Inc. and LGL Ecological Research
Associates, Inc. 211 pp. + appendices. Prepared for New York State Department of Environmental Conservation,
Division of Marine Resources, East Setauket, NY. May 18, 2020
REFERENCES
Hayes S.A., Josephson E., Maze-Foley K., Rosel, P.E., editors. (2017). US Atlantic and Gulf of Mexico Marine
Mammal Stock Assessments -- 2016. NOAA Tech Memo NMFS NE 241; 274 p. Available from: National Marine
Fisheries Service, 166 Water Street, Woods Hole, MA 02543-1026, or online at /publications/doi:10.7289/V5/TMNEFSC-241
Knowlton, A.R., Kraus, S.D., Kenney, R.D. (1994). Reproduction in North Atlantic right whales (Eubalaena
glacialis). Can J Zool Vol. 72:1297-1305.
Knowlton, A.R., Robbins, J., Landry, S., McKenna, H., Kraus, S.D., Werner, T.B. (2016). Effects of fishing gear
strength on the severity of large whale entanglements. Conserv Bio. 30: 318-328.

Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Pace, R.M., Corkeron, P.J., Kraus, S.D. (2017). State–space mark–recapture estimates reveal a recent decline in
abundance of North Atlantic right whales. Ecol Evo. 1-12.
Pettis H.M., Rolland R.M., Hamilton P.K., Brault S., Knowlton A.R., Kraus S.D. (2004). Visual health assessment
of North Atlantic right whales (Eubalaena glacialis) using photographs. Can J Zool 82:8-19
Pettis, H.M. (2009). North Atlantic Right Whale Consortium Annual Report Card (01 November 2007 – 30 April
2009). International Whaling Commission Annual Meeting, May 2009. Reference Document SC/61/BRG1.
Reeves, R.R., Read, A.J., Lowry, L., Katona, S.K., Bonnes, D.J. (2007). Report of the North Atlantic Right Whale
Program Review. Marine Mammal Commission. Bethesda, Maryland.

Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Appendix 1
Catalog Assessment Method
We have developed standardized criteria that can be applied each year to get a low, middle (best estimate) and
upper number of whales in the population as determined from Catalog data. One term needs to be explained to
understand these numbers. Whales are given temporary intermatch codes if 1) two or more sightings match each
other, and 2) neither have been matched to a catalog whale. Some of these whales will eventually be matched to
existing cataloged whales and others will be determined to be “new” to the Catalog and assigned a number. Once
an intermatch whale is given a Catalog number, or matched to another intermatch code whale, the intermatch code
is made inactive. The results for 2019 are provided below in Table 1.
LOWER
To determine the lower bound, we simply count the number of unique cataloged whales identified the year before.
Because of delays in processing data, this number is lower than the eventual total number of whales seen alive in
that year.
MIDDLE
The middle bound is determined by summing three categories:
1. All whales presumed to be alive in that year (i.e. seen in the last six years),
2. Intermatch whales that are likely to be added to the Catalog. This is calculated by first finding all
intermatch codes that span two or more years (both those that are active and those that were matched and
made inactive), removing all calves and any SEUS whales whose sightings span two years only because
they are seen in December and January of the same field season. Then, we determine which of those
intermatch whales have Catalog numbers and what percent of those were new to the catalog (i.e. had not
been matched to an existing cataloged whale). The remaining, unidentified intermatch whales are then
multiplied by that fraction to determine how many are likely new to the Catalog (e.g. if only 20% of the
matched intermatch whales were new, then 20% of the unmatched intermatch whales are likely new). That
number is then added to the count of calves born more than two years earlier that are unmatched with
active intermatch codes (indicating there is enough information to potentially match them in the future).
Process changed Oct. 2009.
3. Calves from the last two years that have not been cataloged. We make an assessment of whether there is
enough photographic information to likely be able to match them to future sightings and thus eventually
assign them a Catalog number. We then sum those that will likely be cataloged.
UPPER
The upper bound is also the sum of three categories:
1. All Cataloged whales minus those whose carcasses were identified. Even whales missing for 30 years
included.
2. All active intermatch whales minus calves from the last two years.
3. All calves from the last two years minus those known to be dead.
Table 1. The Catalog method of estimating the population represents an assessment of the number of photographed
whales in the North Atlantic Right Whale Identification Database. Analysis completed 9/1/20.

Low: 339 individuals

339 Cataloged whales seen in 2019

Middle: 486 individuals

458 Cataloged whales presumed alive in 2019
23 Intermatch whales likely to be added to Catalog
5 Calves from 2018 and 2019 likely to be added to Catalog

High: 723 individuals
690 All Cataloged whales in 2019 minus those known dead
26 All active intermatch codes without 2018 & 2019 calves
7 All uncataloged 2018 and 2019 calves minus dead

Pettis, H.M. et al. 2021. North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North Atlantic Right Whale
Consortium.
www.narwc.org

Whale Release Ropes
Amy Knowlton, Tim Werner and Scott Kraus
Anderson Cabot Center for Ocean Life
at the New England Aquarium
Consortium for Wildlife Bycatch Reduction

Florida FWC
Taken under NOAA permit #594-1759

Talk overview
• Evidence that whale release ropes could
benefit large whales
• Where and how could whale release ropes be
effectively used based on strains placed on
ropes during fishing
• Status of whale release rope manufacturing
and testing

Published in journal
in April 2016
Open access

New rope breaking strength (lbs)

Rope retrieved from all species
14,000
12,000
10,000
8,000

Right whales

6,000

Humpack whales

4,000

Minke whales
Fin whales

2,000
0
0.0

0.2

0.4

0.6

0.8

1.0

Rope diameter (inches)

70 large whales with 132 retrieved ropes
Used strongest rope for each case
30 RW, 30 HW, 8 MW, 2 FW

Right whales by age

14,000

New rope breaking strength (lbs)

12,000

10,000

8,000

Adult
Juvenile 6-8 yo

6,000

Juvenile 3-5 yo
Calf/juvenile 0-2 yo
Unknown age

4,000

2,000

0
0.2

0.3

0.4

0.5

0.6

Rope diameter (inches)

0.7

0.8

0.9

1,700 lbs

• Minke’s in significantly lower breaking strength than right and humpback whales
• Adult right whales in significantly stronger ropes than juvenile RW and all
humpbacks
• Breaking strength trended upward with injury severity

Adult right whale –max force ~ 8,000 lbs
Young right whales would have much lower force output

Arthur LH, McLellan WA, Piscitelli MA, Rommel SA, Woodward BL,
Winn JP, Potter CW, Pabst DA. 2015. Estimating maximal force
output of cetaceans using axial locomotor muscle morphology.
Marine Mammal Science DOI: 10.1111/mms.12230.

Our findings
meshed with
findings of
Arthur et al.
which show
increasing
estimated force
output based on
musculature and
total length

Injury severity

Gear configuration risk

1,032 cases

76 cases

Any explanation for these
temporal changes?

STRONG ROPE

STRONG ROPE

STRONG ROPE

WHALE RELEASE ROPE

WHALE RELEASE ROPE

This could also benefit fishermen as
it would be less likely that their gear
would be shifted from where it was
set and they could grapple for it

What rope strength do fishermen need?
How to measure the strain placed on the
endline during fishing operations?
• Load cell attached to boat davit
• Development of a formulaic approach

Load cell
Maximum strain on endline before first pot is brought onboard
Main variables that might influence strain:
• Water depth
• Configuration and weight of gear set
• Rope diameter
• Speed of hauler
• Water velocity – from current and/or boat operations or
whale with gear under tow
• Shock load from wave action/heaving boat
• Length of groundline between pots

AT SEA TESTING

Hauling 5 pot trawl in
200 ft water depth
With ~90 ft of groundline
between first and second pot

With ~210 ft of
groundline between
first and second pot
– “groundline
extension”
= notable reduction in strain

TOWING A SINGLE POT AT VARIOUS SPEEDS

Formulaic approach
• Consulting with engineer Dr. Jud DeCew
• Using OrcaFlex software – used in oil and gas industry to understand
strains placed on ropes
• Can plug in a variety of changeable parameters to build a model
• Can evaluate different water depths, gear configurations, and water
velocities
• Preliminary results are available and under review
• Will continue to ground truth the model with some at-sea testing

No water velocity

Simulated hauling of a 5 pot trawl with no water velocity –
maximum strain 314 lbs

Sensitivity analyses
of static parameters

Trap drag coefficient and # of
traps on the water column had
the most sensitivity as water
velocity increases

Influence of wave action and hauler speed
3 pots in the
water column
Surface structure

3.3 ft (1 meter)
wave height

Different wave
periods
400 lbs

Hauling initiated at
50 sec mark
Hauling speed can
dramatically
influence rope strain
especially as waves
are closer together
Peak at slow hauling
is ~ 600 lbs

400 lbs

Peak at fast hauling
is ~1,000 lbs

If a whale reacts by
increasing its velocity
when entangled, the
greater the # of pots
attached, the more
quickly the whale will
reach the 1700 lb
breaking strength.

1,700 lbs

Trawling up may be a
benefit AS LONG AS
the end line is of
reduced breaking
strength
Reducing the # of pots
in the water column at
any one time will
reduce the hauling
strain
With reduced breaking
strength endlines, if
sinking groundlines are
stronger, may help
with gear retrieval

Main findings
Operational measures can be taken to reduce the
strain while fishing:
– reduce hauler speed especially in high seas
– reduce # of pots in water column (until reach
stronger sinking groundline) – groundline
extension
– try to keep vessel over the top of gear when
hauling

Main findings
Main parameters effecting rope strain
– Drag coefficient and # of pots in the water column
– Water velocity
– Wave height and period
– Hauler speed
Parameters that will be further tested: line
stiffness/stretchiness, influence of groundline
extension, bigger wave heights

Status of whale release rope
manufacturing and testing
Prior studies to
assess
whether weak
ropes are
“fishable”
have been
done
Goal is to
create and
test a variety
of whale
release ropes
that are not
costly

Status of whale release rope
manufacturing and testing
3 different whale release rope types
• Hollow braided sleeve to create weak
links in rope
• Cut strand rope – cut a specific # of
strands in regular rope to create weak
links in rope
• Reformulated rope to be 1700 lb
breaking strength along entire length

Status of whale release rope
manufacturing and testing
• At sea testing – late spring/summer 2017
– Will compare whale release prototypes with
control ropes to evaluate gear loss, degradation,
and handling concerns

• Lab testing will be done before and after at
sea testing

Paradigm shift in fishing is essential
• Make all gear ideally “safe” or at least “safer” for whales
• Ropeless fishing techniques would eliminate entanglements
• Red/orange colored ropes may prevent many entanglements from
occurring (according to studies by Kraus and others)
• Whale release rope (<1,700 lb breaking strength) would reduce
severity of entanglements
• Other measures such as sinking groundlines, end line reduction and
closures would reduce the frequency of entanglements by lowering
the amount of rope in the water column
• Measures would need to be implemented throughout the right
whale’s range in the U.S. and Canada

Acknowledgements
Grant support to the Bycatch Consortium and
the Anderson Cabot Center from:
- NOAA Fisheries
- Massachusetts Executive Office of
Energy and Environmental Affairs
- Island Foundation
- Volgenau Foundation
- Cross Foundation

At sea load cell testing:
- Monica Zani
- Mike Lane
Formulaic testing
- Jud DeCew
Fishing industry feedback and at-sea testing
- Mass Lobstermen’s Association
- Maine Lobstermen’s Association
- South Shore Lobster Fishermen’s
Association

OPINION
published: 17 August 2016
doi: 10.3389/fmars.2016.00137

Recent Scientific Publications Cast
Doubt on North Atlantic Right Whale
Future
Scott D. Kraus 1*, Robert D. Kenney 2 , Charles A. Mayo 3 , William A. McLellan 4 ,
Michael J. Moore 5 and Douglas P. Nowacek 6
1

New England Aquarium, Boston, MA, USA, 2 Graduate School of Oceanography, University of Rhode Island, Narragansett,
RI, USA, 3 Right Whale Ecology Program, Provincetown Center for Coastal Studies, Provincetown, MA, USA, 4 Biology and
Marine Biology, University of North Carolina, Wilmington, NC, USA, 5 Biology Department, Woods Hole Oceanographic
Institution, Woods Hole, MA, USA, 6 Nicholas School of the Environment and Pratt School of Engineering, Duke University
Marine Laboratory, Duke University, Beaufort, NC, USA
Keywords: right whales, conservation, mortalities, entanglements, population recovery

Edited by:
Graeme Clive Hays,
Deakin University, Australia
Reviewed by:
Luis Cardona,
University of Barcelona, Spain
Fredrik Christiansen,
Murdoch University, Australia
*Correspondence:
Scott D. Kraus
[email protected]
Specialty section:
This article was submitted to
Marine Megafauna,
a section of the journal
Frontiers in Marine Science
Received: 30 March 2016
Accepted: 25 July 2016
Published: 17 August 2016
Citation:
Kraus SD, Kenney RD, Mayo CA,
McLellan WA, Moore MJ and
Nowacek DP (2016) Recent Scientific
Publications Cast Doubt on North
Atlantic Right Whale Future.
Front. Mar. Sci. 3:137.
doi: 10.3389/fmars.2016.00137

The North Atlantic right whale, Eubalaena glacialis, was near extinction by 1935, when whaling for
this species became illegal. In 1992, 295 right whales were estimated alive (Knowlton et al., 1994),
and growth from 1990 to 2010 averaged 2.8% per year (Waring et al., 2016), bringing the population
to about 500 individuals in 2015 (Pettis and Hamilton, 2015). However, since 2010, calving rates
have dropped by nearly 40%, and the last four decades have seen increasing numbers of right whales
killed by entanglements in fishing gear and collisions with ships combined (Knowlton et al., 2012;
Van der Hoop et al., 2013; Pace et al., 2014). Recent U.S. and Canadian regulatory actions (slowing
ships and moving shipping lanes) appear to have been successful at reducing ship kills (Laist et al.,
2014; Van der Hoop et al., 2015).
However, the National Marine Fisheries Service (NMFS) draft 2015 marine mammal stock
assessment for right whales reports that between 2009 and 2013 an average of 4.3 right whales were
killed by human activities each year, with nearly all of these deaths attributable to entanglement
in fishing gear (Waring et al., 2016). For context, from 1970 to 2009, 44% of diagnosed RW
mortality cases were due to ship kills and 35% were due to entanglements (Van der Hoop et al.,
2013). From 2010 to 2015, 15% of diagnosed right whale mortalities were due to ship kills and
85% were due to entanglements (Pettis and Hamilton, 2015; Waring et al., 2016). In January of
2016, an announcement on expanded critical habitat for right whales included this quote, “We’re
making significant progress in reversing the population decline of the species, and are seeing signs
of recovery” (NOAA, 2016). In contrast to this optimistic view of right whale recovery, our review
of the recent science suggests that fishing gear entanglements are increasing in number and severity,
and that this source of injury and mortalities may be overwhelming recovery efforts.
Almost four decades of research based on the ability to identify individual whales has yielded
immense amounts of information about this population’s biology. The right whale catalog and
sightings database provide information on the age and sex of individuals, movements and habitat
use patterns, reproduction, mortality, and the impacts of human activities on the population
(Hamilton et al., 2007). Multiple research programs run concurrently on genetics, endocrinology,
health, feeding, stress, and acoustics in many institutions (Kraus and Rolland, 2007). From these
large datasets, mathematical models that describe trends in population growth and demographics
as well as the effects of human activities on health and mortality have been developed (Schick et al.,
2013; Robbins et al., 2015; Rolland et al., 2016).
Since 1980, the leading causes of mortality in right whales have been collisions with ships and
entanglements in fishing gear, which combined caused half of the 99 confirmed right whale deaths
(Van der Hoop et al., 2013). That estimate is a minimum, since the other half includes natural

Frontiers in Marine Science | www.frontiersin.org

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August 2016 | Volume 3 | Article 137

Kraus et al.

Right Whale Future in Doubt

FIGURE 1 | Assessments of the North Atlantic right whale population based on three available assessment methods (from Pettis and Hamilton, 2015);
(http://www.narwc.org/pdf/2015%20Report%20Card.pdf).

rate (6−7%) of all other well-studied right whale populations
around the world (Best et al., 2001). Two, in recent years,
population growth rates appear to be declining (Figure 1),
likely due to a combination of anthropogenic mortalities and
reduced calving rates (Kraus et al., 2007; Pettis and Hamilton,
2015). Three, mortalities and serious injuries from fishing gear
entanglements remain far higher than the limits mandated by
US Endangered Species Act and Canadian Species At Risk
Act regulations, further jeopardizing recovery and leaving the
population vulnerable to declines (Knowlton et al., 2015; Waring
et al., 2016).
In conclusion, right whales are not yet a conservation success
story. Right whales need immediate and significant management
intervention to reduce mortalities and injuries from fishing gear,
and managers need a better understanding about the causes of
reduced calving rates before this species can be considered on the
road to recovery. Failure to act on this new information will lead
to further declines in this population’s number and increase its
vulnerability to extinction.

mortalities and deaths where the cause could not be determined,
and not all dead whales were discovered. Since U.S. NOAA
regulations lowered ship speed limits in the vicinity of right
whale habitats in 2008, deaths from vessel strikes have declined
(Laist et al., 2014; Van der Hoop et al., 2015). In contrast, despite
a nearly 20-year US federal effort to reduce accidental kills of
whales in fishing gear, sub-lethal and lethal entanglement rates
have increased (Van der Hoop et al., 2013; Arthur et al., 2015;
Knowlton et al., 2015), and there is no evidence that current
fishing regulations have been effective at reducing mortality
(Pace et al., 2014). As of 2015, 83% of all right whales display
scars or carry ropes indicative of past entanglements. Sublethal entanglements can cause reproductive failure and declining
health long after the entanglement is over (Rolland et al., 2016;
Van der Hoop et al., 2016).
Attempts at population viability analyses on right whales
have largely failed due to the dual complications of capture
heterogeneity (in tag-recapture population assessments) and
small sample sizes. There are however early indicators of
population well-being, including health assessments, scarring
rates and frequencies, reproductive rates, and necropsy data, all
of which precede changes in population size and demographics,
and all of which indicate declines in this population (Knowlton
et al., 2012; Pettis and Hamilton, 2015; Rolland et al., 2016).
From this extensive research, three points emerge. One, until
recently, the population was growing at 2−3%/year (Waring
et al., 2016), although this rate is less than one-half of the growth

AUTHOR CONTRIBUTIONS
All authors have a long history (>20 years) of research and
significant contributions to right whale research in the North
Atlantic. In the context of this paper, all authors have contributed
data, analyses, writing, and editing, as well as conceptual
development to this submission.

REFERENCES

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doi: 10.1111/mms.12230
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whales: worldwide status. J. Cetacean Res. Manage. (Special Issue) 2, 1–309.

Arthur, L. A., McLellan, W. A., Piscitelli, M. A., Rommel, S. A., Woodward, B.
L., Winn, J. P., et al. (2015). Estimating maximal force output of cetaceans

Frontiers in Marine Science | www.frontiersin.org

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August 2016 | Volume 3 | Article 137

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Right Whale Future in Doubt

Robbins, J., Knowlton, A. R., and Landry, S. (2015). Apparent survival of North
Atlantic right whales after entanglement in fishing gear. Biol. Conserv. 191,
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Rolland, R. M., Schick, R. S., Pettis, H. M., Knowlton, A. R., Hamilton, P. K., Clark,
J. S., et al. (2016). Health of North Atlantic right whales (Eubalaena glacialis)
over three decades: from individual health to demographic and population
health trends. Mar. Ecol. Prog. Ser. 542, 265–282. doi: 10.3354/meps11547
Schick, R. S., Kraus, S. D., Rolland, R. M., Knowlton, A. R., Hamilton, P. K., Pettis,
H. M., et al. (2013). Using hierarchical Bayes to understand movement, health,
and survival in the endangered North Atlantic right whale. PLoS ONE 8:e64166.
doi: 10.1371/journal.pone.0064166
Van der Hoop, J. M., Corkeron, P., Kenney, J., Landry, S., Morin, D., Smith, J.,
et al. (2016). Drag from fishing gear entangling North Atlantic right whales.
Mar. Mamm. Sci. 32, 619–642. doi: 10.1111/mms.12292
Van der Hoop, J. M., Moore, M. J., Barco, S. G., Cole, T. V. N., Daoust, P.-Y., Henry,
A. G., et al. (2013). Assessment of management to mitigate anthropogenic
effects on large whales. Conserv. Biol. 27, 121–133. doi: 10.1111/j.15231739.2012.01934.x
Van der Hoop, J. M., Vanderlaan, A. S. M., Cole, T. V. N., Henry, A. G., Hall, L.,
Mase-Guthrie, B., et al. (2015). Vessel strikes to large whales before and after
the 2008 Ship Strike Rule. Conserv. Lett. 8, 24–32. doi: 10.1111/conl.12105
Waring, G. T., Josephson, E., Maze-Foley, K., and Rosel, P. E. (eds.). (2016). US
Atlantic and Gulf of Mexico. MarineMammal Stock Assessments – 2015. NOAA
Technical Memorandum NMFS-NE-238.

Hamilton, P. K., Knowlton, A. R., and Marx, M. K. (2007). “Right whales tell
their own stories: the photo-identification catalog,” in The Urban Whale: North
Atlantic Right Whales at the Crossroads, eds S. D. Kraus and R. M. Rolland
(Cambridge, MA: Harvard University Press), 75–104.
Knowlton, A. R., Hamilton, P. K., Marx, M. K., Pettis, H. M., and Kraus,
S. D. (2012). Monitoring North Atlantic right whale Eubalaena glacialis
entanglement rates: a 30 yr retrospective. Mar. Ecol. Prog. Ser. 466, 293–302.
doi: 10.3354/meps09923
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Atlantic right whales (Eubalaena glacialis). Can. J. Zool. 72, 1297–1305. doi:
10.1139/z94-173
Knowlton, A. R., Robbins, J., Landry, S., McKenna, H. A., Kraus, S. D., and
Werner, T. (2015). Implications of fishing rope strength on the severity of
large whale entanglements. Conserv. Biol. 30, 318–328. doi: 10.1111/cobi.
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low return: the strange case of reproduction in Eubalaena glacialis,” in
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D. Kraus and R. M. Rolland (Cambridge, MA: Harvard University Press),
172–199.
Kraus, S. D., and Rolland, R. M. (2007). The Urban Whale: North Atlantic Right
Whales at the Crossroads. Cambridge, MA: Harvard University Press.
Laist, D. W., Knowlton, A. R., and Pendleton, D. (2014). Effectiveness of
mandatory vessel speed limits for protecting North Atlantic right whales.
Endang. Spec. Res. 23, 133–147. doi: 10.3354/esr00586
NOAA (2016). NOAA Expands Critical Habitat for Endangered North Atlantic
Right Whales. Available online at: http://www.greateratlantic.fisheries.no
aa.gov/mediacenter/2016/january/25_noaa_expands_critical_habitat_for_enda
ngered_north_atlantic_right_whales.html
Pace, R. M. I. I. I., Cole, T. V. N., and Henry, A. G. (2014). Incremental fishing
gear modifications fail to significantly reduce large whale serious injury rates.
Endang. Spec. Res. 26, 115–126. doi: 10.3354/esr00635
Pettis, H. M., and Hamilton, P. K. (2015). North Atlantic Right Whale Consortium
2015 Annual Report Card. Report to the North Atlantic Right Whale
Consortium, November 2015. Available online at: http://www.narwc.org/pdf/
2015%20Report%20Card.pdf

Frontiers in Marine Science | www.frontiersin.org

Conflict of Interest Statement: The authors declare that the research was
conducted in the absence of any commercial or financial relationships that could
be construed as a potential conflict of interest.
Copyright © 2016 Kraus, Kenney, Mayo, McLellan, Moore and Nowacek. This
is an open-access article distributed under the terms of the Creative Commons
Attribution License (CC BY). The use, distribution or reproduction in other forums
is permitted, provided the original author(s) or licensor are credited and that the
original publication in this journal is cited, in accordance with accepted academic
practice. No use, distribution or reproduction is permitted which does not comply
with these terms.

3

August 2016 | Volume 3 | Article 137

ICES Journal of Marine Science (2019), 76(4), 781–786. doi:10.1093/icesjms/fsy194

How we can all stop killing whales: a proposal to avoid whale
entanglement in fishing gear
Michael J. Moore*
Biology Department, Woods Hole Oceanographic Institution, 266 Woods Hole Rd, Woods Hole, MA 02543, USA
*Corresponding author: tel: 508 289 3228; e-mail: [email protected].
Moore, M. J. How we can all stop killing whales: a proposal to avoid whale entanglement in fishing gear. – ICES Journal of Marine
Science, 76: 781–786.
Received 26 October 2018; revised 21 November 2018; accepted 30 November 2018; advance access publication 10 January 2019.
Whales are federally protected by the Marine Mammal Protection Act; endangered species, such as the North Atlantic right whale, receive
additional protection under the Endangered Species Act. However, their regulations have failed to satisfy conservation and animal welfare
concerns. From 1990 to 2011 the North Atlantic right whale (Eubalaena glacialis, NARW) population grew at a mean of 2.8% annually.
However, population trends reversed since 2011; the species is in decline, with only 100 reproductively active females remaining. This failure
is driven by vessel collisions and increasingly fatal and serious entanglement in fixed fishing gear, whose rope strength has increased substantially. Chronic entanglement, drag, and associated morbidity have been linked to poor fecundity. Genuine solutions involve designating areas
to be avoided and speed restrictions for ships and removing fishing trap ropes from the water column. A trap fishing closure for NARW habitat in the Cape Cod Bay (U.S.) area has been in place seasonally since 2015. 2017 mortalities in Eastern Canada elicited substantive management changes whereby the 2018 presence of NARW in active trap fishing areas resulted in an effective closure. To avoid these costly closures,
the traditional trap fishery model of rope end lines attached to surface marker buoys has to be modified so that traps are marked virtually,
and retrieved with gear that does not remain in the water column except during trap retrieval. Consumer demand for genuinely whale-safe
products will augment and encourage the necessary regulatory changes so that trap fisheries conserve target and nontarget species.
Keywords: end line, entanglement, large whale, rope removal, trap.

In a previous “Food for Thought” titled “How we all kill whales”
(Moore, 2014), I suggested that: “western countries have, through
the development and increase in fishing and shipping in continental shelf waters, essentially resumed whaling as vessel speeds
and fishing gear strength have increased in recent decades.”
Others have reviewed the effectiveness of whale/vessel strike mitigation (Silber et al., 2012). Here, I will consider how we can stop
killing whales with our seafood harvesting habits.
Ethical consumers are keen to ask where their seafood came
from and how it was caught, hoping that the provider responds
that the food source was certified sustainable by an entity such as
the Marine Stewardship Council (MSC). At this point, the MSC
product stamp is widely available and considered a sustainability
standard. There is a general sense that the sustainable seafood
movement has made remarkable progress and is now an integral
part of running a modern seafood business, ultimately translating

into healthier oceans. The business model of sustainable fisheries
is expected to be viable and effective (Walton Family Foundation,
2017). However, the sustainable seafood movement has historically failed to consider bycatch when defining certification standards (O’Connell, 2017). This is beginning to be considered and
should become a routine assessment.
On the U.S. and Canadian eastern seaboard, the number of
mortalities and serious injuries of the North Atlantic right
(Eubalaena glacialis—NARW) whale routinely exceed the
“potential biological removal” (PBR) values set by the U.S.’s
National Oceanic and Atmospheric Agency (NOAA) by factors of
two to four. PBR, a biological reference point, is defined as the
maximum number of animals that can be killed by anthropogenic
causes each year whilst allowing that stock to reach or maintain
its optimal sustainable population level. It is typically used to assess whether or not measures taken to protect a population are

C International Council for the Exploration of the Sea 2019. All rights reserved.
V

For permissions, please email: [email protected]

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Food for Thought

782

mortality event of 3% of the population (20 deaths). The diagnosed causes of death (12 in Canada and 8 in the USA) were entanglement and vessel strike (NOAA, 2018a).
In addition to its critical role in worsening the threat of extinction for the NARW, entanglement also poses a major animal welfare
concern (Figure 4). Large whales that become entangled in fishing
gear and are unable to break free take an average of six months to
die (Moore and van der Hoop, 2012). Entanglement effects include:
constriction, partial amputation, presumed chronic and severe pain,
impaired feeding, drag and reduced fecundity.
Despite the negative population and calving trends described
above, if anthropogenic impacts on NARW mortality and fecundity are successfully mitigated, their potential for recovery is
great. The Southern right whale (Eubalena australis), a closely related species and pertinent comparison, has recently experienced
intrinsic annual growth of 7% (International Whaling
Commission, 2013). Thus, despite years of U.S. and Canadian federal management effort to conserve the species, there is every
reason to also seek general public engagement in the success or
failure of current efforts to prevent extinction of the NARW.
The relationship between large whales feeding on high density
zooplankton prey patches and fixed trap fisheries for lobster and
crab and other species is not intuitive to most seafood consumers.
There seems to be no obvious direct resource competition except
for space. As such, whale conservationists are likely the only consumers of lobster and crab who think of entangled whales as they
dine. However, where the two resources do overlap (Figure 5),
the conflict can be serious; and overlap is not uncommon: 85%
of NARW bear scars from being entangled in gear once in their
lives, and over half bear scars of being entangled two or more
times (Knowlton et al., 2012; Pettis et al., 2017). Sustainable seafood certifiers, like MSC, can use their label to inform consumers
of such conflicts, especially when they are not obvious. In March

Figure 1. Abundance of North Atlantic right whale with recent disproportionate loss of females, many of which are never reproductively
active (Pace et al., 2017).

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effective. PBR is regularly updated in NOAA Stock Assessment
Reports (NOAA, 2018b).
The current status of the NARW population is best illustrated
by the reduction in estimated abundance since 2010, with a disporportionate loss of females (Figure 1). This has occurred despite a range of regulatory changes aimed at achieving PBR
(Pennisi, 2017). There has been an increasing number of entanglement mortalities since 2010 (Figure 2). Whereas many whale
entanglements cannot be traced as to source fishery, given inadequate gear marking, the overwhelming nature of rope in the water
column in whale habitat are endlines and floating groundlines
from trap fisheries, especially American lobster (Boenish and
Chen, 2018; Hayes et al., 2018) and snow crab (Daoust et al.,
2017; DFO, 2017). As can be clearly seen, if avoidance of whale
morbidity and mortality are included in the definiton of
“sustainable,” fisheries that harvest using traps with line in the
water column, are far from sustainable.
NARW fecundity has also dropped since 2010 (Figure 3). No
new calves were observed in 2018, the first time that no calves
have been counted since scientists began monitoring the population more than forty years ago (Kraus et al., 1986).
These and other data were summarized by a recent review
(NMFS, 2017): “In many ways, progress towards NARW recovery
has regressed.” The population has been declining since 2010 and
has exhibited changes in habitat use (Pace et al., 2017). During
this period, NARW calving rates have remained below average
(Hayes et al., 2017) and body condition of the population has
worsened (Rolland et al., 2016). Important questions have developed in the scientific literature on energetic stressors on NARW,
both from prey availability (Meyer-Gutbrod et al., 2015) and the
energetic costs of chronic, sub lethal entanglement (Knowlton
et al., 2012; van der Hoop et al., 2017). In addition, between 7
June 2017 and 15 October 2018, NARW experienced a significant

M. J. Moore

783

How we can all stop killing whales

Figure 3. Annual North Atlantic right whale calf count (2002–2018). No calves were recorded in 2018. NOAA Stock Assessment Reports
2002–2014 (North Atlantic Right Whale Consortium, 2018; NOAA, 2018b).
2018, MSC chose to do so. It suspended the Gulf of Saint
Lawrence snow crab fishery certificate due to fishery involvement
in the NARW mortality event that occurred in the spring and
summer of 2017 in the Gulf of Saint Lawrence.
Following the 2017 mortality event, the Canadian government
also closed snow crab and lobster fisheries in the Gulf of Saint
Lawrence and Bay of Fundy when NARW were sighted from

April to June 2018. In contrast, April 2018 sightings of NARW
from the beaches of Gloucester, Massachusetts and York, Maine
in the USA, did not result in comparable closures. Thus far, there
have been three entanglement-related NARW mortalities in
Northeast U.S. waters in 2018.
The Canadian closures and an annual closure of Cape Cod Bay
and adjacent waters have elicited substantial concern from the

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Figure 2. Diagnosed North Atlantic right whale vessel and entanglement mortality and serious injury (2002–2017). NOAA Stock Assessment
Reports 2002–2014 (NOAA, 2018b), NOAA Preliminary Data 2015–2017 (Henry, 2017; North Atlantic Right Whale Consortium, 2018).

784

M. J. Moore

Figure 4. (a) Chronically entangled, emaciated North Atlantic right
whale towing rope and a trap fragment (Moore et al., 2013). This
whale died two weeks after partial disentanglement. Florida Wildlife
Commission, NOAA Permit #594-1759. (b) Section through lip of
the same whale at necropsy showing segment of rope (arrow) that
lacerated lip with resultant scar. The rope segment remained as a
foreign body embedded in the lip. (c) Vinyl covered wire mesh trap
fragment attached to a trap gangion, removed with 54 m of 11 mm
diameter floating rope from animal whilst alive. Georgia DNR. B & C
NOAA Permit 932-1905-01/MA-009526.
affected fishing industry sectors (CBC, 2018; WickedLocal.com,
2018) and spurred some willingness to trial alternative trap marking and retrieval options that are whale-safe (Ropeless
Consortium, 2018), if doing so will reopen closed fishing areas.
These whale-safe gear options, commonly referred to as

“ropeless” or “buoyless” (no rope in water column in whale and
turtle habitat, irrespective of source, except during trap retrieval
if need be) would remove trap end lines from the water column,
lowering the risk of entanglement substantially, leaving only risk
from any ground line if traps deployed in a trawl. In this regard,
the U.S. is planning an experimental fishery to harvest lobster
without the use of end lines (Department of Commerce, 2018).
Previous mitigation measures such as weak links and sinking
ground line (van der Hoop et al., 2013), implemented in 2007,
have led to no detectable overall decrease in entanglements. On
the contrary, entanglement mortality has increased since these
regulations have been in place (NMFS, 2017). Rules setting a
minimum number of traps per trawl, designed to reduce entanglement risk by lowering the number of vertical trap lines in the
water, not only failed to ultimately reduce the number of vertical
lines, but may have had the unintended consequence of encouraging fishermen to use stronger lines to haul the longer trawls
(Hayes et al., 2018), resulting in an increase in the severity of injuries caused by entanglement (Knowlton et al., 2016). A short
term mitigation would involve fishing with reduced strength rope
(Knowlton et al., 2016). However, eliminating end lines in the
water column by fishing with ropeless gear is the only long term
option to end NARW entanglements. Obviously this recommendation could eventually involve a vast amount of lobster and crab
habitat, in that passive acoustic surveys of NARW vocalization
show their habitat to be very extensive in space and time (Davis
et al., 2017). It should start by developing ropeless approaches in
currently closed NARW/trap fishing conflict hotspots in time and
space, such as a closed lobster fishery in the Cape Cod Bay area in
Massachusetts, USA, and the snow crab fishery in the Gulf of St
Lawrence, Canada, where the industry will have the greatest incentive to gain access to areas from which they are currently excluded. The resulting product could sell for a significant
sustainability premium. From there, as the technology becomes
more affordable it should be encouraged to spread to other areas,
because as climate change and consequent prey distribution shifts
continue to change the nature of optimal whale habitat, the high
mobility of both the whales and the relevant fisheries will result
in ongoing entanglements unless ropeless technology is adopted
over wide areas.
Similarly, disentanglement of large whales by humans has been
used to mitigate large whale entanglement since the 1970s. It has

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Figure 5. Illustration of a string of bottom traps (known as a trawl),
linked by negatively buoyant ground lines, with a line from the end
trap to a surface marker buoy. Filter-feeding North Atlantic right
whales risk open mouth and appendage entanglements when
swimming in fields of these vertical lines and buoys.

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How we can all stop killing whales

an obvious value to individual animals, and each individual is
critical to the NARW population of <450 animals. However,
only a minority of serious chronic entanglement cases are ever
encountered (Hayes et al., 2018). Disentanglement can only ever
be palliative to the conservation risks faced by large whale species.
Therefore, the idea has grown that traditional fixed shellfish
and finfish traps that have end lines and surface marker floats
should be re-engineered to enable trap retrieval without line in
the water column, except if needed during trap retrieval
(Figure 6; Ropeless Consortium, 2018). An example of such a system would be to have bottom-stowed, acoustically released buoyant retrieval rope (Partan and Ball, 2016); or an acoustically
triggered lift bag (https://www.smelts.org/line-less-technology;
which avoids rope altogether); or to use a traditional grapple.
Whichever retrieval method is used, there also needs to be an
alternative system to fulfil the surface buoy’s role of enabling the
trap owner and other vessels to know where traps are located on
the bottom. Without this virtual marker, layovers of different
strings of traps will be inevitable—and potentially dangerous in
deeper waters. This requires development of a robust, affordable
trap marker that acquires a GPS position before deployment, and
then ideally updates its position by ranging from passing vessels
equipped to communicate with the virtually marked traps. Where
traps are attached to each other in a string or trawl, traps at each
end of the trawl would be marked. An acoustic trap marker
would also enable recovery of displaced traps, reducing ghost
gear. There are a range of such transponders available for scientific and defence applications. The concept would need to be
engineered specifically for trap marking, it would have to be affordable and durable, identifiable as to permit holder only by its
owner and law enforcement and interfaced with vessel and cloud
display systems.
The challenges to adopt these changes are substantial. Safety
issues include avoiding layovers by different strings of traps.
Layovers can be common where traps are fished in close proximity. Thus, an affordable, robust, virtual trap marker will be essential. Other vessels such as fish and scallop bottom trawlers will
need to receive and display the virtual trap marks on their wheelhouse plotters as well. As this technology gains acceptance, economy of scale should increase affordability. In undeveloped
countries this will be especially challenging, but there are

Acknowledgements
I thank Mark Baumgartner, Scott Kraus, Tim Werner, Amy
Knowlton, Heather Pettis, Scott Landry, Stormy Mayo, Fred
Penney, and Beth Casoni for discussions on this topic and Natalie
Renier for drawing Figures 5 and 6. Funding was provided by the
Woods Hole Oceanographic Institution Independent Research
and Development Program.

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M. J. Moore

Vol. 143: 205–226, 2021
https://doi.org/10.3354/dao03578

DISEASES OF AQUATIC ORGANISMS
Dis Aquat Org

FEATURE ARTICLE

Published online February 25

OPEN
ACCESS

REVIEW

Assessing North Atlantic right whale health: threats,
and development of tools critical for conservation
of the species
Michael J. Moore1,*, Teresa K. Rowles, Deborah A. Fauquier, Jason D. Baker,
Ingrid Biedron, John W. Durban, Philip K. Hamilton, Allison G. Henry,
Amy R. Knowlton, William A. McLellan, Carolyn A. Miller1, Richard M. Pace III,
Heather M. Pettis, Stephen Raverty, Rosalind M. Rolland, Robert S. Schick,
Sarah M. Sharp, Cynthia R. Smith, Len Thomas, Julie M. van der Hoop1,
Michael H. Ziccardi
1
Woods Hole Oceanographic Institution, Woods Hole MA 02543, USA
Co-authors’ addresses given in a supplement; www.int-res.com/articles/suppl/d143p205_supp.pdf

ABSTRACT: Whaling has decimated North Atlantic
right whales Eubalaena glacialis (NARW) since the
11th century and southern right whales E. australis
(SRW) since the 19th century. Today, NARWs are Critically Endangered and decreasing, whereas SRWs are
recovering. We review NARW health assessment
literature, NARW Consortium databases, and efforts
and limitations to monitor individual and species
health, survival, and fecundity. Photographs are used
to track individual movement and external signs of
health such as evidence of vessel and entanglement
trauma. Post-mortem examinations establish cause of
death and determine organ pathology. Photogrammetry is used to assess growth rates and body condition. Samples of blow, skin, blubber, baleen and
feces quantify hormones that provide information
on stress, reproduction, and nutrition, identify microbiome changes, and assess evidence of infection.
We also discuss models of the population consequences of multiple stressors, including the connection between human activities (e.g. entanglement)
and health. Lethal and sublethal vessel and entanglement trauma have been identified as major threats
to the species. There is a clear and immediate need
for expanding trauma reduction measures. Beyond
these major concerns, further study is needed to
evaluate the impact of other stressors, such as pathogens, microbiome changes, and algal and industrial
toxins, on NARW reproductive success and health.
*Corresponding author: [email protected]

North Atlantic right whale (Catalog #3530 ‘Ruffian’), showing
healed scarring from an entanglement 8 yr earlier.
Photo: J. Durban & Holly Fearnbach

Current and new health assessment tools should be
developed and used to monitor the effectiveness
of management measures and will help determine
whether they are sufficient for a substantive species
recovery.

KEY WORDS: Right whale · Health · Trauma ·
Reproduction · Stressor · Cumulative effects
© The authors 2021. Open Access under Creative Commons by
Attribution Licence. Use, distribution and reproduction are unrestricted. Authors and original publication must be credited.
Publisher: Inter-Research · www.int-res.com

Dis Aquat Org 143: 205–226, 2021

206

1. INTRODUCTION
The North Atlantic right whale (NARW) Eubalaena
glacialis species is Critically Endangered and declining. Past and current conservation measures have
failed to maintain a recovery trajectory for the species. Therefore, better understanding of the current
status of NARW health, and tools to evaluate health,
are critical to reverse the decline and restart the
recovery of this species. The challenges of studying
large whales and their health include, but are not
limited to, the following factors: distance-, weatherand season-dependent logistics; locating them; collecting and analyzing the data; and determining the
causes of observed morbidity and mortality. A recent
review of the right whale genus Eubalaena spp.
(Harcourt et al. 2019) summarized the extensive relevant literature in the context of future directions for
comparative research among the 3 extant species to
inform conservation. Topics included variable recovery from historic whaling, linking individuals to population level response, adapting to shifting resources,
emergent diseases and vulnerability under stress, and
cumulative effects. Our review summarizes data, publications and past workshops, related to the health of
NARWs as discussed at a workshop in Silver Spring,
MD, USA, in June 2019 (Fauquier et al. 2020). Previous workshops are summarized in that report
(Brownell et al. 1986, Best et al. 2001, Reeves et al.
2001, O’Hara et al. 2003, Rowles et al. 2006, International Whaling Commission 2010, Thomas et al. 2013,
Sironi et al. 2018, Sisson & Long 2018). Additionally,
we periodically refer to unpublished analyses of data
by authors of this review to provide as current a perspective as possible. Most of those data are available
from the NARW Consortium (NARWC) database collection (www.narwc.org/narwc-databases.html).
Implications and recommendations from the 2020
workshop, and consequent discussions, are then presented in the context of (1) furthering our overall
understanding of NARW health, and (2) the use of
health assessment tools to gauge the efficacy of measures designed to enhance the recovery of the NARW
species. For a recent bibliography on this topic see
https://repository.library.noaa.gov/view/noaa/20221.
For the purpose of this review, we define wildlife
health following Stephen (2014, p. 427)
Health is the result of interacting biologic, social, and environmental determinants that combine to affect the animal’s or population’s capacity to cope with change.
Health cannot be measured solely by what is absent, but
rather by characteristics of the animals and their ecosys-

tem that affect their vulnerability and resilience. Wildlife
health is not a biologic state but rather a dynamic social
construct based on human expectations and knowledge.

Following centuries of whaling, with the last documented event in 1967 (Maul & Sergeant 1977), the
NARW species underwent a very slow recovery
(~2.8% yr−1) until 2010 (Fig. 1). Since then, abundance has declined by 20%, so that as of 2020 there
are about 356 animals remaining (Pace et al. 2017,
NOAA 2020, Pettis et al. 2020). In 2020, the IUCN
changed the species listing from Endangered to
Critically Endangered (Cooke 2020), the only large
whale species in the world to warrant this designation. The North Pacific right whale E. japonica is
listed by the IUCN as Endangered, with the Northeast Pacific subpopulation as Critically Endangered.
In contrast, most southern right whale (SRW) E. australis populations have recovered remarkably from
historic whaling, despite a major setback from Russian whaling in the 1960s (Yablokov 1994, Corkeron
et al. 2018). The species is listed as of Least Concern
by the IUCN, although in some habitats SRW sightings have plateaued in recent years (Jackson et al.
2020, Stamation et al. 2020).
Right whales are individually identified using photographs of cornified skin patterns, called callosities,
on their heads (Payne et al. 1983, Kraus et al. 1986,
Kraus 1990). The North Atlantic Right Whale Catalog
(http://rwcatalog.neaq.org) contains all known photographed sightings of NARWs from 1935 to the present (Hamilton et al. 2007). The Catalog is used to
monitor their distribution, associations, survival, reproduction, movement, and health. There is an intensive photo-identification survey effort conducted
annually in many NARW habitats resulting in an
average of 75% of this species being photo-documented each year (Pettis et al. 2020). The Catalog is
the hub of the NARWC database collection (www.
narwc.org/narwc-databases.html).
A recent broad-scale NARW distribution shift
began in 2010 or 2011 (Record et al. 2019). Sightings
decreased drastically on the calving ground off the
southeastern USA and in 3 northern feeding habitats
(Davies et al. 2019, Gowan et al. 2019): Great South
Channel (southeast of Cape Cod, MA, USA), Bay of
Fundy, and Roseway Basin south of Nova Scotia
(Canada). As much as 50% of this species had been
seen in each of these habitats in some years prior to
2010 (Fauquier et al. 2020). Recently, annual counts
have decreased to only about 100 individuals on
average in the Great South Channel and 35 or fewer
in the other 3 habitats (except in 2014 in the Bay of

Moore et al.: Right whale health

207

Fig. 1. Population trends in the North Atlantic and southern right whale species (estimates for North Atlantic species prior to
1990 are unavailable; southern estimates prior to 1990 on decadal scale). Illegal whaling caused a downturn in the southern species in the 1960s. Figure modified from Moore & Myers (2019); used by permission. Data from International Whaling
Commission (2013), Pace et al. (2017), Pettis et al. (2020)

Fundy, when over 100 whales were present for a very
short time). At the same time, sightings increased in
one well-studied habitat, Cape Cod Bay, MA, USA,
and in 2 lesser historically known feeding habitats:
one south of Nantucket, MA, USA, and one in the
Gulf of St. Lawrence, Canada. Since 2010, over 250
whales have been seen annually in the first region,
and 100 to 150 have been seen annually in each of
the latter two. In addition to sightings, passive acoustic
data show an increased occurrence of NARW calls
off the mid-Atlantic, herein described as north of
Cape Hatteras to south of Cape Cod, and some calls
along the edge of the continental shelf (Davis et
al. 2017).
These distribution shifts have impacted the collection of sightings and photos and the data derived from
those observations. The average percent of whales
photographed and identified annually dropped from
81% during the 8 yr before the shift (2003 to 2010) to
68% during the 8 yr after the shift (2011 to 2018)
(Pettis et al. 2020). This smaller percentage of the
species being observed annually impacts the precision and potential accuracy of abundance estimates.
The decrease in shipboard photographs, which had
been primarily collected from historical high-residency areas (e.g. the Bay of Fundy and off the south-

eastern USA in the 2000s) affects the ability to assess
body condition and scarring from shipboard images.
Finally, mothers are being seen with their calves less
frequently on the northern feeding grounds, making
it harder to photo-identify those calves because their
callosities are generally not well developed until the
latter half of their birth year, and at the very least,
this has delayed our ability to catalog those calves.
These impacts on the photo-identification data collection have downstream effects (e.g. the potential
underestimate in abundance and calf survival) that
should be considered when analyzing the data and
assessing monitoring power especially when comparing pre-2010 to post-2011 derived products (Fauquier et al. 2020).
In summary, cataloging the location and identification of individual NARWs, year by year, has been
the cornerstone of our developing understanding
of the health of individuals, their movements, and
the species as a whole. Therefore, we need to regain adequate cataloging of the species, especially
in light of the recent habitat shifts, by increasing
photo identification effort in the mid-Atlantic, southern New England, and the Gulf of St Lawrence
among other currently important habitat areas. In
addition, we need to be better prepared for future

208

Dis Aquat Org 143: 205–226, 2021

mortalities caused by commercial fishing operations
and vessel strikes in the past 50 yr have kept the species numbers severely reduced, albeit with a slow
recovery until 2010, but with a subsequent decline
though 2020 as described above (Pettis et al. 2020). In
the late 2010s, clustered mortality events occurred in
2. RESULTS
the Gulf of St. Lawrence with 12 deaths in 2017 and
9 in 2019 — the majority due to human activities
2.1. North Atlantic right whale trauma
(Daoust et al. 2018, Sharp et al. 2019, Bourque et al.
2020). This, along with mortalities in the USA,
2.1.1. North Atlantic right whale mortality
resulted in its National Marine Fisheries Service
(NMFS, part of the National Oceanic and Atmospheric
There has been little comparison of mortality patAdministration [NOAA]) declaring an Unusual Morterns between SRW and NARW. Such comparisons as
tality Event (www.fisheries.noaa.gov/national/marinethere are should be expanded. In Peninsula Valdés,
life-distress/2017-2020-north-atlantic-right-whaleArgentina (a well-studied SRW calving ground with
unusual-mortality-event), a stranding that is unexlow historical calf mortality) between 2003 and 2018,
pected, involves a significant die-off of any marine
20% (738/4403) of calves (mostly neonates) died
mammal population, and demands immediate re(Fig. 2) (Sironi et al. 2018). Current theories as to the
sponse (16 USC § 1421h(6); see https://www.fisheries.
cause(s) include predation from kelp gull attacks
noaa.gov/national/marine-mammal- protection/
(Sironi et al. 2018). There have been reports of SRW
marine-mammal-protection-act).
vessel strikes and entanglements (Van Waerebeek et
A review of 54 NARW mortalities from 1970−2002
al. 2007, Kemper et al. 2008, Zappes et al. 2013). How(Moore et al. 2004), an average of 1.7 (54/32) mortalever, these events have not precluded the species
ities per year, found anthropogenic trauma in 77%
from a substantial post-whaling recovery (Fig. 1). In
(14/18) of juveniles and adults that were completely
contrast, for NARW, human-induced trauma has
necropsied. Of these, the cause of death (COD) was
been a major factor in the failure of that species
determined to be vessel strike in 71% (10/14) while
to recover. Their perinatal mortalities are from natu29% (4/14) died of entanglement. The COD for the
ral causes, but older calves can be vessel struck,
remaining 4 juveniles and adults could not be deterwhile juveniles and adults die acutely after asphyximined. More recently, Sharp et al. (2019) undertook
ation in heavy fishing gear, or after severe vessel
a thorough review of 70 deaths between 2003 and
trauma, or chronically after a debilitating entangle2018, an average of 4.7 (70/15) mortalities per year,
ment, or initially sublethal vessel trauma. From early
in which 80% (56/70) of carcasses were examined
Basque whaling through commercial whaling, by the
externally and 63% (44/70) were necropsied. Where
1930s NARW numbers had been reduced to possibly
COD was determined, 88% (38/43) were anthroless than a hundred (Reeves et al. 2007). Incidental
pogenic in origin. The relative threat of
entanglement in commercial fishing
gear increased from the previous estimate, accounting for 58% (22/38) of
the anthropogenic deaths, while vessel
strike accounted for 42% (16/38) of
these cases. Females accounted for 66%
(19/29) of known-sex adult deaths. In
both studies (Moore et al. 2004, Sharp et
al. 2019), juvenile and adult mortalities
of NARWs from known causes were all
due to anthropogenic trauma. In the
1980s through the 2000s, deaths were
overwhelmingly due to vessel strikes as
animals transited either south to the
calving grounds or back north to feedFig. 2. Minimum counts of live and dead southern right whale calves in Peninsula Valdés, Argentina, 2001−2019. Data: Sironi et al. (2018), M. Sironi, V. ing grounds. During this time, necropsy
teams documented 3 pregnant NARWs
Rowntree and M. Uhart pers. comm.
shifts of distribution and rapidly shifting efforts
to maintain adequate photo-identification of the
population.

Moore et al.: Right whale health

with evidence of vessel strikes in the mid-Atlantic
and southeast USA, which motivated the development of coast-wide seasonal management areas
(SMAs), where most vessels > 65 ft (~20 m) are
required to slow to 10 knots or less at certain times of
the year (when NARWs are expected to be present)
as a conservation strategy (Silber et al. 2014).
Diagnostic necropsies provide critical data, for
maintaining an up-to-date understanding of how anthropogenic trauma on the species is changing in
time and space. Without these data, the necessary
ongoing optimization and evaluation of mitigation
measures cannot occur.

209

injury determinations and estimates of human impact on this species, and predicting survival (Pettis et
al. 2004, Schick et al. 2013). Additionally, VHAs
show promise in helping to estimate the time of
death when whales are not sighted post injury (H. M.
Pettis unpubl. data).
The VHA method has also enabled a broad, longterm assessment of the nature and impact of sublethal trauma on the species. Qualitatively, its applicability to the entire photo-ID catalog has made it a
vital resource, given its sample size, and it should
continue to be promulgated to adequately monitor
the extent and variation in sub-lethal trauma impacts
on the species. Quantitively it has been linked to
demographic outcomes (Schick et al. 2016).

2.1.2. Visual health and injury assessments
Assessment of live animals in the context of their
catalogued individual identity gives a unique,
sequential perspective on the status and trend of
each animal and aids in identifying sublethal impacts
that may affect reproductive success and therefore
be targets for mitigation. The visual health assessment (VHA) method (Pettis et al. 2004, Rolland et al.
2016) allows for non-invasive assessments of NARW
health using photographs taken from boats and aircraft. Data on body condition, skin condition (lesions
and skin sloughing), rake marks (shallow striations in
the skin) forward of the blowholes, and cyamids
(whale lice) around the blowholes can be linked
to the NARW Catalog (http://rwcatalog.neaq.org),
allowing one to examine associations between
health, individual life-history, and post-mortem information (www.narwc.org/narwc-databases.html).
Analyses of these data have established connections
between health, reproduction, and anthropogenic
impacts (Pettis et al. 2004, Rolland et al. 2016). Two
health conditions, emaciated body condition and
swath skin lesions, have emerged as prognostic indicators of poor NARW survival (Pettis et al. 2004,
Hamilton & Marx 2005). The incidence of these conditions has varied over time, with the highest incidence of both documented in 2011−2016 (Pettis
2019). Other types of skin lesions are regularly observed on NARW, though the etiology, and their
impact on survival and reproduction are unknown
(Pettis et al. 2004, Hamilton & Marx 2005, Rolland et
al. 2016). Beginning in 2009, far more whales have
been scored as thin, at least once annually, than the
number scored with poor skin condition (Pettis et al.
2004). The VHA method has been valuable in retrospective analysis for evaluating sub-lethal anthropogenic injury impact on health, informing annual

2.1.3. NOAA fisheries serious injury assessments
In the USA, NMFS is responsible for management
of NARWs under the Endangered Species Act and
Marine Mammal Protection Act (MMPA). As mandated by the MMPA, it estimates the number of
human-caused mortalities and serious injuries of
NARWs. Predicting the likely outcome for animals
with substantive injuries is important to estimate
the overall mortality incidence. Furthermore, recent
modeling (Pace et al. 2021) has shown that only
38% of total mortality was detected during 1990−2017:
this cryptic mortality factor is driven at least in part
by NARW lost to follow up because they are emaciated and sink due to being negatively buoyant
(Moore et al. 2020). Others will likely float offshore
until they decompose, without ever being observed,
or at least not reported. The extent of the crypsis was
modeled by comparing the number of carcasses documented to the number of animals that disappeared
from the photo-ID catalog through time. A formal
method to assess the status of chronically traumatized individual NARWs, linked with an ongoing estimate of cryptic mortality, is critical to understanding
their prognosis and overall mortality incidence.
NMFS serious injury (SI) assessments estimate
annual rates of human-caused mortality and SI for all
marine mammal stocks occurring within USA waters
(NOAA 2012, 2020). NMFS Northeast Fisheries Science Center (NEFSC) has made SI determinations for
western North Atlantic large whale stocks since 1999
using all available relevant injury event information
including sighting history, necropsy reports, and
health assessments when available. NEFSC used its
own criteria to assess large whale injuries until 2012,
when USA National SI criteria guidelines were

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established (NOAA 2012). NEFSC criteria used prior
to 2012 did not count events for which there were
insufficient data to make a lethal take determination
against potential biological removal (PBR). A take is
defined by the MMPA as ‘to harass, hunt, capture, or
kill, or attempt to harass, hunt, capture, or kill any
marine mammal’ (16 USC § 1362 (16)). PBR is defined by the MMPA as the maximum number of animals, not including natural mortalities, that may be
removed from a marine mammal stock while allowing that stock to reach or maintain its optimum sustainable population. The National criteria now
address such data-poor events by providing prorated
values that count against PBR. A retrospective application of the National criteria to all NARW injury
events from 2000 to present resulted in only 0.8%
(14/184) events between 2000 and 2011 being
changed from a 0 to a prorated value, which illustrates that injury determinations of this stock have
been relatively consistent across the years despite
evolving SI criteria (Fig. 3) and is likely due to the
data-rich nature of NARW injury events. As seen in
Fig. 3, and further supported by others (Knowlton et
al. 2016), the rate of entanglement related SI and
mortality has been increasing in the last decade,
whereas that of vessel strike has decreased. The
entanglement rate alone has remained above PBR
throughout the timeline (i.e. since 2000). If it were
not for disentanglement efforts, the situation would
be even worse, as in some circumstances, disentan-

glement teams are able to avert SIs. However, the
practice of not counting such cases towards PBR
does devalue such data as an index of entanglement
risk.
The SI determination process is the primary tool
used by NMFS to include an estimate of the annual
human-caused mortality and serious injury in annual
stock assessment in the USA. It provides an annual
update on the nature and extent of the different
sources of lethal trauma to the species. A major limitation is the lag time from when data are available to
when they are incorporated into a publicly available
annual report. Given the current high incidence of
serious injuries and mortalities, a closer to real-time
analysis, and reporting, would facilitate equally
prompt trauma mitigation enhancement.

2.1.4. Frequency, and effects, of vessel strikes and
entanglement on North Atlantic right whale
reproduction

During times of decadal prey declines, calving output is lower (Hlista et al. 2009, Meyer-Gutbrod et al.
2015). Additionally, quantifying the sublethal incidences of vessel and rope trauma on NARW reproductive success, in the context of their unfolding
demographic and migratory history, is a critical
aspect of understanding these sources of trauma. As
part of the recent workshop, we updated earlier studies of vessel and rope
trauma.
2.1.4.1. Vessel strikes. We examined
NARW Catalog photographs of live individuals for evidence of external trauma
from vessel strikes (propeller cuts or
gashes) and necropsy reports for cause
of death information. External sharp
trauma wounds on both live and dead
whales resulting from vessel strike
were categorized as superficial, shallow, or deep, while blunt trauma cases
were only determined from necropsy
reports (Fig. 4). With the implementation of a USA ship-speed rule in 2008,
there appeared to be some reduction in
Fig. 3. Rolling 5 yr average of (USA and Canada) North Atlantic right whales lethal vessel strikes for NARWs when
(NARW) entanglement (EN), vessel strike (VS), total mortality (MT), and serious comparing known vessel-struck carcass
injury (SI, excluding 27 cases prevented by disentanglement), and potential detections in or within 45 nmiles (74 km)
biological removal (PBR). Northeast Fisheries Science Center (NEFSC) criteria
of an active SMA pre- and post-rule,
were applied up to 2010. National (Nat’l) SI criteria were applied after 2010,
and retroactively to earlier years, showing the minor difference between the 2 whereas for humpback whales Megcriteria
aptera novaeangliae mortalities were

Moore et al.: Right whale health

211

Fig. 4. Incidence of blunt trauma, and 3 degrees of severity of propeller cuts observed in 101 North Atlantic right whales. Of animals with cuts, 8 were found dead and 66 alive, but 7 of the latter were later presumed dead as a result. The 16 blunt trauma
cases were all dead. Thus, a total of 29 were known or presumed dead from vessel strike (A. Knowlton et al. unpubl. data.)

al. 2012, A. R. Knowlton unpubl. data). Some whales
reduced both inside and outside the areas (Laist et al.
have evidence of as many as 8 entanglement interac2014) (Table 1). Meanwhile, van der Hoop et al. (2014)
tions over the course of a lifetime. Incidents of modfound no detectable reduction in vessel strike mortalerate and severe entanglements have become more
ities of all large whale species in the actual SMAs
prevalent in the last decade (Knowlton et al. 2016).
along the eastern USA, suggesting that the existing
These are known to cause health impacts and
SMAs may not be large enough to provide adequate
reduced survival, especially in reproductive females
protection. Furthermore, in recent years right whales
(Fauquier et al. 2020). The complexity of attached
have ventured further into Canadian waters, with a
gear has also been assessed, and the majority of
shift into the Gulf of St. Lawrence, where no protecentanglements since the mid-1990s has been
tion measures were in place until after at least onedeemed high-risk, i.e. likely to be lethal without
third of the 12 mortalities in the region were reported
intervention, possibly because of increasing rope
as vessel strike in 2017 (Fig. 3; Daoust et al. 2018,
strengths, resulting from manufacturing changes
Sharp et al. 2019). Two others of the 12 were acute
(Knowlton et al. 2016). Based on these results, Knowlentanglements, and 6 could not be diagnosed.
ton et al. (2016) suggested maximum rope strengths
A recent assessment of fate by propeller wound
of 1700 lb (~773 kg) for consideration in fixed fishing
category revealed that superficial and shallow cuts
gear throughout the NARW range in order to allow
did not affect 3 yr survival, but deep cuts were lethal
more whales to break free from entanglements.
in the majority of cases (A. R. Knowlton & A. M. Cos2.1.4.3. Impacts of human activities on reproductidis unpubl. data). A detailed, quantitative assesstive females. An assessment of all reproductive
ment of propeller cuts, carried out for 39 cases,
females (i.e. females that have had a calf) since 1980
showed that vessels > 65 ft (~20 m) were involved in
found that 42% (76/180) have either been found
most of the deep cut cases, although there were 2
cases involving vessels in the 40−65 ft
Table 1. Vessel-struck North Atlantic right/ humpback whale deaths inside or
(12–20 m) length range that resulted
within 45 nmiles (74 km) of seasonal management areas (SMA) versus those
in deep cuts and subsequent fatality
beyond 45 nmiles, before and after the SMA implementation on December 8,
(A. R. Knowlton & A. M. Costidis un2008 (Laist et al. 2014)
publ. data).
2.1.4.2. Entanglements. For entanInside or < 45 nmiles of
Beyond 45 nmiles of
glements, a total of 1538 interactions
SMA boundary
SMA boundary
Right
Humpback
Right
Humpback
have been documented between 1980
and 2017 involving 86.1% (642/746) of
1990 to Dec 8 2008
13
12
2
14
the species; 8% (51/642) of these cases
Dec 9 2008 to Dec 8 2013 0
2
2
4
involved attached gear (Knowlton et

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Dis Aquat Org 143: 205–226, 2021

dead or have disappeared, with at least one-third of
those losses due to vessel strikes and entanglements.
The effect of entanglement injury severity on fecundity indicates a cessation in calving for a period of
time after a severe injury (van der Hoop et al. 2017a,
A. R. Knowlton unpubl. data).
Both vessel strikes and entanglement continue to
impact right whale reproductive success. Thus, to
enable species recovery, reduction in mortalities
have to be accompanied by substantial reduction of
sub-lethal trauma as well.

2.1.5. Trends in growth and body condition from
photogrammetry
Orthogonal aerial photogrammetry with accurate
altitude data (Durban et al. 2016) can provide precise
measurement of large whale length and width,
enabling analysis of energy transfer during suckling
(Christiansen et al. 2018). High-resolution drone
images also provide information on skin condition,
whale lice burdens, and the severity/incidence of
entanglement wounds, notably coupled with quantitative photogrammetry measurements from the same
whales.
Comparison between SRWs in Argentina, New
Zealand, and Australia to NARWs in the North
Atlantic revealed NARW juveniles, adults, and lactating females to be in generally poorer body condition and to be attaining shorter adult lengths than
SRW (Fig. 5; Christiansen et al. 2020). Aerial photogrammetry studies to assess trends in growth and
body condition of NARWs in Cape Cod Bay, MA,
in March and April 2016−2020 (J. W. Durban unpubl.
data) are being compared with aerial images collected by NOAA’s Southwest Fisheries Science
Center (SWFSC) during August 2000−2002 using
manned aircraft flying over the Bay of Fundy. For
both datasets, matching whales to the NARW Catalog enables body length, and width profiles, to be
linked to whale age, sex, and life histories, and
assessment of changes in an individual whale’s condition over time. Ongoing analysis of the NARW time
series (J. W. Durban unpubl. data) revealed some
whales are growing more slowly in recent years compared to those growing during the 2000−2002 sampling, as inferred from reduced length at age relationships in the more recent surveys. Whales also
appeared to be in poorer body condition in recent
spring surveys compared to previous sampling,
although the previous study took place in summer, so
that change may be due to seasonal change in body

condition of this capital breeder. Ongoing longitudinal monitoring during consistent spring sampling in
Cape Cod Bay is being used to assess this.

2.1.6. Energetic cost of entanglement
NARW recovery is dependent on sustained reproductive success, which requires adequate body condition. Normal energy costs include metabolism,
migration, foraging, and pregnancy; additional exogenous stress adds to those costs. Chronically entangled NARWs may carry fishing gear for months to
years, and often show signs of considerable loss in
energy reserves over that time period, as evidenced
by emaciation. Drag measured from gear that was
removed from entangled NARWs (van der Hoop et
al. 2013, 2016) was combined with other measured
parameters, allowing estimation of drag on new
entanglement cases at the time of their observation
(van der Hoop et al. 2017a). Drag measurements
enabled estimation of the energetic cost of entanglement using biomechanics and physical models, and
blubber thickness and body condition measurements
(van der Hoop et al. 2017b). Impacts of entanglements persist even after disentanglement due to time
needed for recovery (van der Hoop et al. 2017a). For
the cases evaluated in these studies, the median
energetic recovery is 1.3−3 mo (max. 16 mo).
The role of sub-lethal entanglement drag in reducing NARW health and fecundity should be a major
consideration in comparing the efficacy of potential
mitigation measures. Thus, while 1700 lb (~773 kg)
breaking strength rope may reduce mortality and
sever injury, it will continue to be a source of morbidity. Ultimately, removal of rope from the water column will better enable species recovery.

2.1.7. Acoustic trauma
Parks et al. (2007) showed that right whales call at
a higher frequency, and at a lower rate, in higher
noise conditions, perhaps as a response to increased
background noise. This may increase communication range under such conditions (Tennessen &
Parks 2016). The resultant health impacts of acoustic
stressors are unclear (Rolland et al. 2012). Better
understanding of the effects of background shipping
and offshore wind energy production noise and
episodic noise associated with seismic survey and
windfarm installation are critical in terms of focused
mitigation.

Moore et al.: Right whale health

213

Fig. 5 . Body condition compared between southern right whales in New Zealand, Australia and Argentina, and North Atlantic
right whales. Solid line represents the back-transformed fitted values of the linear model (reproduced from Christiansen et al.
2020; used by permission)

2.2. Reproduction in North Atlantic right whales
2.2.1. Reproductive success
NARW had one-third the calving success of SRW
between 1992 and 2016 (Corkeron et al. 2018). Nutrition is a major determinant of reproductive success.
In a study of SRW calving success in southern Brazil,
significant correlations were found with krill densities, Oceanic Niño Index, and Antarctic sea ice area
(Seyboth et al. 2016). Similarly, calving success in
Argentina was tied to global climate signals (Leaper
et al. 2006). A comparison of blubber thickness in SRW
and NARW suggested that marked fluctuations in
North Atlantic right whale reproduction have a nutritional component (Miller et al. 2011). However, right
whale feeding success is dependent on fine-scale
plankton densities that do, or do not, elicit feeding
(Pershing et al. 2009). Hypotheses concerning NARW
migration and foraging strategies have recently been
reviewed (Kenney et al. 2020). Plourde et al. (2019)
describe foraging areas for NARW in Canadian waters
in the context of climate change and the documented

shift in NARW distribution. However, the remoteness
of most SRW feeding habitats makes access challenging; thus, direct comparisons between foraging SRW
and NARW in terms of the nutritional basis for calving success have not yet been undertaken.
Between 2011 and 2018 an average of 12 NARW
calves were born per year (including none born in
2018), compared to 1 of 23 per year during the previous 8 yr (Pettis et al. 2020). The calving index (annual
percentage of reproductive females presumed alive
and available to calve that was observed to produce
a calf) averaged 47% from 2003 to 2010 but has
dropped to an average of 17% since 2010.
In 2019, there were 92 known reproductively
active females that had been seen alive in the previous 6 yr. In addition, there were another 36 females
age 10 to 19 that had not yet been observed with a
calf, and 30 immature females, suggesting the pool of
future reproductive recruits is low. However, those
calves born after 2010 that have not yet been cataloged are not included in this analysis, so the future
female pool may be slightly larger (www.narwc.org/
narwc-databases.html).

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Dis Aquat Org 143: 205–226, 2021

The inter-birth interval, which averaged 3.9 yr
2003−2010, increased to an average of 5.8 yr from
2011−2018, with a peak of 10.2 yr in 2017 (Pettis et al.
2020). The mean age of first parturition (Knowlton et
al. 1994, Hamilton et al. 1998) for all known-age
females is 10.2 yr (n = 76, range 5 to 23, SD 3.3). This
analysis does not account for potential missed first
calving events. The tail of the distribution includes
2 records over 19 yr of age: a first calving at 21 and
23 yr, both of which could be the result of missed
calving events. However, the mean age of first parturition will likely increase in the future, as half of the
known age females between 10 and 19 yr old have
not yet been observed with a calf. The combination
of the changes in inter-birth interval and age to first
reproduction suggests that both parous and nulliparous females are experiencing delays in calving. It
remains unknown how many of the current nulliparous 10 to 19 yr old females are biologically able
to get pregnant and successfully reproduce. The
timing of these calving delays corresponds with the
recent distribution shifts described earlier, and
those shifts may correlate with changing environmental conditions. Potential explanations for this reproductive cessation or delay are explored under
other sections of this review, such as 2.2.2.
The low reproductive rate of NARWs is likely the
result of several factors. Forty-nine females calved
only once, and 53% (26/49) disappeared from the
sighting record within 2 yr of that calving and very
likely did not survive long enough to reproduce
again. The remaining 47% (23/49) were seen 3 or
more years after their first calving and thus were theoretically available to calve again. Ten percent (6/60)
of females over 19 yr old have never calved. Given
the age of first parturition presented above, it is
unlikely these females will ever calve successfully.
That percentage increases to 33.8% (46/136) if the
10 to 19 yr old nulliparous females are included, but
these females may just be delaying calving and thus
will likely enter the reproductive pool in the future.
Another concern is evidence of low calf survival in
some females. One female has been able to reproduce, but her calf survival is consistently low. She has
had 6 calves, but the last 4 have not survived; at least
2 of them because they were apparently not successfully nursed (www.narwc.org/narwc-databases.html).
Other factors affecting reproductive success include changes in investment in offspring, differences
in reproduction in relation to feeding habitats, and
changes in NARW social interactions. Hamilton &
Cooper (2010) showed that 71% (12/17) of all calves
born in 2001 stayed with their mothers into the sec-

ond year. They compared the fitness (age at first
breeding and calving rate) of the 2001-born female
calves that stayed with their mothers into the second
year with those that did not and found no clear difference. In the late 1990s, some females that had a profile of being seen less frequently, which may indicate
they fed in unknown habitats, continued to calve
when other females stopped. All of the females that
calved between 1998 and 2000 fit this profile. For the
recent calving downturn, while 60% of the females
in 2017 fit this profile, all of them had prolonged calving intervals equivalent to those of other females that
calved during this time suggesting that, although
they were calving, they were faring no better than
the other females. Investigating these females that
may feed elsewhere is hampered by the lack of a consistent or rigorous way to define and categorize them.
Finally, the percent of sightings involved in surfaceactive groups appears to mirror the number of calves
born (www.narwc.org/narwc-databases.html). This
preliminary result could be explored by habitat to
see whether the occurrence of these groups, some of
which are related to mating, can be correlated with
species-wide health. Reversing the trend of failed
reproduction, by reducing sub-lethal trauma stands
alongside reducing mortality as the 2 critical goals
for enabling NARW species recovery.

2.2.2. Reproductive and stress hormones
Endocrine studies involving NARWs started in
1999 with the validation of immunoassays to measure
steroid reproductive and stress hormone metabolites
in fecal samples. Currently, immunoassays for a
panel of 6 hormone classes including estrogen, progesterone, androgens, glucocorticoids, aldosterone,
and thyroid hormones have been validated (Rolland
et al. 2005, Hunt et al. 2006, Burgess et al. 2017, R. M.
Rolland unpubl. data) for multiple biological matrices
including the following: feces, blubber, blow (exhaled
breath), and baleen (Rolland & Moore 2018). The
temporal signature of hormones differs between these
matrices from real-time or near-real-time (serum,
blow), to days or months (feces and blubber), to years
(baleen). Hormone measures from feces, and blubber
integrate circulating levels of hormones over these
different temporal scales and are especially valuable
for assessment of chronic stress.
Over 400 fecal samples collected from 1999−2019
have been assayed for the 6 hormone classes mentioned above. Approximately one-third of the samples have been linked to identified NARWs with

Moore et al.: Right whale health

known life-history data. Results show that concentrations of fecal estrogens, progesterone, and androgens are reliable predictors of sex, pregnancy, and
lactation in females and sexual maturity in males
(Rolland et al. 2005). Three cases of pregnancy loss or
undetected perinatal or young calf death have been
inferred using highly elevated fecal progesterone
metabolites and sighting records on the calving
ground during the following winter, without a calf
(R. M. Rolland unpubl. data). Levels of adrenal stress
hormone metabolites vary with reproductive status,
sex, and physiological state, and reflect relative
adrenal cortical activity (Rolland et al. 2017). Comparison of fecal glucocorticoids (FGCs) in healthy
NARWs, to those killed acutely (vessel strike), suffering long-term entanglement, or prolonged live
stranding (chronic), found extreme elevations of
FGCs in cases of severe, chronic illness or injury
(Rolland et al. 2017). FGCs have been used to link
shipping noise exposure in NARWs to elevated FGCs
indicating chronic stress (Rolland et al. 2012). Fecal
aldosterone levels provide an additional measure of
adrenal cortical activation (Burgess et al. 2017). Fecal
thyroid hormones are a biomarker of nutritional status in NARWs, as thyroid gland hormone concentrations decrease during seasonal nutritional deficits
and increases during periods of energy abundance
(R. M. Rolland unpubl. data).
Studies of chemical profiles in NARW baleen have
shown a valuable timeline of data ranging from very
recent levels at the gum line, to up to 8 yr prior at the
tip (Hunt et al. 2016). In fact, baleen progesterone
profiles from 2 NARWs showed elevations 2 orders of
magnitude higher than baseline in time points corresponding to known pregnancies. Baleen from a
chronically entangled NARW was analyzed for
steroid and thyroid hormones and stable isotopes
and showed an 8 yr profile of foraging and migration
behavior, stress response, and reproduction, with a
23 mo progesterone peak correlating to a single
known calving event and elevated triiodothyronine
(T3) and thyroxine (T4), suggesting that the entanglement event began 3 mo before it was first sighted
entangled (Lysiak et al. 2018). Reproductive and stress
hormone studies can usefully continue to investigate
the parameters impacting pregnancy and recruitment.

2.3. Biotoxins and parasites
A 6 yr (2001−2006) analysis of fecal samples collected in the Bay of Fundy showed that some NARWs
were exposed to at least 2 classes of algal biotoxins:

215

paralytic shellfish poisoning toxins (PSP), primarily
saxitoxins and amnesiac shellfish poisoning, and
domoic acid (DA) (Doucette et al. 2012). In this study,
73% (96/132) of samples tested positive for PSP toxins and 25% (31/126) tested positive for DA. Both
biotoxins were also detected in a small number of
fecal samples collected in Cape Cod Bay, the Great
South Channel and Roseway Basin. The results of
this study suggest that NARWs are exposed to both
algal biotoxins on an approximately annual basis in
multiple habitats for periods of up to 6 mo (April
through September). There were similar exposure
rates for females and males (PSP: ~70−80%; DA:
~25−30%). Both pregnant and lactating females
were exposed to both biotoxins, suggesting the
potential for maternal toxin transfer and possible
effects on fetal and suckling animals. Additionally,
22% of the fecal samples tested for PSP and DA
showed concurrent exposure to both neurotoxins,
leading to questions of interactive effects (Doucette
et al. 2012). While exposure to these biotoxins was
not significantly linked with observed health effects
in NARWs (and their sensitivity to these toxins
remains unknown), there is a potential for indirect
effects (e.g. increased susceptibility to anthropogenic
risks: Doucette et al. 2012 discuss possible effects of
PSP on whales: neurotoxic effects impacting organ
function, diving reflex and effects of DA on reproduction — based on California sea lion research) that
will likely never be measurable. These data provide
baseline levels of these 2 biotoxins for comparison to
exposure levels in the future. A study of the possible
role of biotoxins in the calf mortality event in Peninsula Valdés, Argentina, found a relationship between
Pseudo-nitzschia spp. densities (but not Alexandrium
tamarense) and calf deaths (Wilson et al. 2016).
A 5 yr study (2002−2006) assessed the prevalence
of Giardia and Cryptosporidium spp. using analysis
of fecal samples (Hughes-Hanks et al. 2005, Rolland
et al. 2007, R. M. Rolland unpubl. data). Fecal samples were examined for the presence of cysts/oocysts
using an immunofluorescent assay procedure. The
overall annual prevalence of Giardia was 68%
(78/115) (range = 38−77%), Cryptosporidium oocysts
were detected in 14% (16/115) of samples (range =
7−38%), and all Cryptosporidium positive samples
were co-infected with Giardia. Molecular characterization and phylogenetic analysis of the NARW isolates were unsuccessful, so species and genotypes
remain unknown. While the effects of these organisms on NARWs are generally unknown, co-infection
with both Giardia and Cryptosporidium was found to
be associated with a decline in body condition using

Dis Aquat Org 143: 205–226, 2021

216

a visual assessment method (R. M. Rolland unpubl.
data).
Thus, SRW and NARW are clearly exposed to a
variety of biotoxins and parasites, but their role in
health determination remain unclear. Comparative
biotoxin studies between SRW and NARW could be
of value.

2.4. Modeling
2.4.1. Survival assessments and trends with emphasis
on reproductive females
Mathematical modeling can be used to link the intermittent spatially referenced observations of individual NARWs and their visual health measurements to estimates of their movement between regions,
underlying health, and survival. Such a model, based
on a hierarchical Bayesian state-space modeling
framework, was constructed using monthly time steps
and 9 geographic regions and fitted to over 30 yr of
sightings data (Schick et al. 2013, Rolland et al. 2016,
Schick et al. 2016). An investigation found negative
health impacts in NARWs entangled in gear. Individual’s health declined between the date seen without
injuries and the first date of entanglement detection,
and the overall average health continued to decline
for those whales with attached gear. Results were further parsed by entanglement severity and category,
by presence/absence of gear, by sex, and, for females,
by reproductive class (A. R. Knowlton unpubl. data).
These declines in health were greater among whales
categorized as having severe entanglements, both
with and without gear present. The average health
score during entangled periods was poorer for reproductively active females, with declines in health translating to lower reproductive output. Survival analysis
as a function of sex and entanglement severity showed
that severe injuries resulted in steep declines in individual survival, with the decline in survival being
greater for females than for males.
The above model was built and fit to data (as well
as incorporating expert opinion) pre-2011, before the
documented shift in distribution; the model is currently being altered to account for the changing
movement patterns and VHA data. The spatial portion of the model needs to be updated to accurately
depict recent movement patterns into previously
understudied regions, as well as to account for the
changing VHA data collection platforms. The sightings model from (Schick et al. 2013) is (1) individual
specific, but not time varying, and (2) indexed to sur-

vey effort in different regions. This component of the
model needs to be updated in order to better account
for recent changes in effort, and distribution.

2.4.2. Population models and assessment tool
A NARW population evaluation tool is under
development, with objectives that include prospective estimates of extinction risk and other demographic characterizations over various time scales.
The model will consist of a baseline scenario projection and a quantitative threat assessment to examine
the effects of modifying projected threat influences
on demographic processes (i.e. scenarios modified
from baseline). Although the lethal impacts of threats
are relatively straightforward to include in a population viability model, the non-lethal influence of
entanglement wounding, vessel-collision wounding,
anthropogenic noise, changes in prey distribution and
quality, and contaminants on body condition, growth,
reproduction and survival are more difficult to parameterize. Model projections that include influences
of all threats are required, even while the functional
relationships between threat and health outcomes
are not well-known. The more these relationships
can be bounded by expert opinion, the less uncertainty will be transferred into population projections.
Modeling survival and population assessment are
important activities to inform managers of NARW
status and trends. Further understanding of the
interactions of multiple stressors and their impacts
on mortality and morbidity will enhance ongoing
management.

2.5. Emerging tools
2.5.1. Baleen whale microbiomes as potential
indicators of health
In humans, microbiotas (assemblages of microorganisms) are linked to many aspects of health, such
as body condition, digestion and nutrition, immune
function, inflammation, and behavior (Ley 2010, Cho
& Blaser 2012, Ezenwa et al. 2012, McFall-Ngai et al.
2013). Although microbiotas of marine mammals are
not as well studied as those of humans, there is evidence of highly diverse skin, respiratory, gut and oral
microbiomes that vary with host phylogeny, diet,
habitat, and health (Apprill et al. 2014, 2020, Nelson
et al. 2015, Sanders et al. 2015, Bik et al. 2016). Little
is known about the microbiotas of right whales, but

Moore et al.: Right whale health

results from studies on the skin, blow, and gut microbiotas of other baleen whale species support a framework for using the microbiotas of these sample types
to monitor baleen whale health, including that of
right whales.
Blow and skin microbiotas of humpback whales
from different geographical locations have been
investigated by a few studies using high-throughput
sequencing of the V4 region of the small subunit
ribosomal RNA (16S rRNA) gene. In one study evaluating blow collected from seemingly healthy humpback whales (Apprill et al. 2017), 25 bacteria were
found to be common to all samples — one of the most
extensive core microbiotas found in any mammal to
date. Similar results and sequences were also recovered in blow collected from southern hemisphere
humpback whales (Pirotta et al. 2017). Apprill et al.
(2017) also detected numerous genus-level relatives
of mammalian pathogenic bacteria. Because the
whales appeared healthy, these pathogen relatives
likely were not acting as pathogens at the time, but
such screening methods could be used to quickly
identify samples that need to be examined for pathogens with finer resolution methods. Similar to the
trends for core bacteria in the blow samples, 2 skinassociated bacterial taxa were common to seemingly
healthy humpback whales from different oceans
(Apprill et al. 2014, Bierlich et al. 2018), where abundances appeared to be affected by environmental
conditions (Bierlich et al. 2018). Additionally, altered
skin microbiotas were observed in a handful of humpback whales with compromised health (stranded,
entangled) (Apprill et al. 2011, 2014). Taken together,
these results suggest that screening for changes to the
signatures of the skin and blow microbiotas, i.e. the
presence of non-typical microbes, potential pathogens, and changes to the diversity of the overall
microbiotas and/or the composition and abundance
of core bacteria, could be used to monitor health of
baleen whales (Apprill et al. 2011, 2014, 2017), including right whales.
To date, samples of blow (n = 120) have been collected from NARW and SRW (Argentina, and Auckland Islands, New Zealand) (C. A. Miller et al. unpubl.
data). The microbiotas from these blow samples will
be explored in the context of body condition measurements, life history traits, and other indices of
health. They will also be screened at the genus level
for relatives of pathogens and likely will be sequenced
deeper to examine the function of the microbes,
viruses, and genes involved in virulence. Given the
conspicuous differences in body condition between
NARW and SRW (Miller et al. 2011, Christiansen

217

et al. 2020), the comparison of the blow-associated
microbiotas between these populations has the potential to reveal information about right whale health, in
addition to their different habitats and diets.
The gut microbiotas of mammals play an important
role in digestion, nutrition, and health. Right whales
depend on a diet rich in the high-energy lipids for
achieving and sustaining the body fat reserves necessary for reproduction and survival, but little is
known about how they digest these lipids because
fresh samples of gut contents from right whales are
rare. Native Alaskans harvest bowhead Balaena
mysticetus whales for subsistence, and in the past,
have generously allowed limited access to harvested
whales for scientific purposes. Bowhead whales are a
close taxonomic relative of right whales and consume
prey rich in the same high-energy lipids. Hence, studies of lipid digestion and microbiotas in bowhead
whales could provide important information for
understanding right whale nutrition. In harvested
bowhead whales, lipid digestion and microbial communities were mapped along the gastrointestinal
tract (GI, forestomach through colon) by characterizing the lipid compositions (lipidomes) using HPLCMS/MS and the microbiotas using high-throughput
sequencing of the V4 region of the 16S rRNA gene
(Miller et al. 2020). The lipidomes and microbiotas
were tightly correlated as their compositions changed
throughout the GI tract, with lipidomes and microbiotas being variable in the small intestine (the area
of lipid digestion in mammals). The results suggested
that wax esters, the primary prey lipids that are also
prominent in right whale prey, were digested in the
mid to distal small intestine and that specific bacteria
appeared to play a role in their digestion. Despite differences in analytical methods, the bowhead whale
gut microbiotas consisted of bacteria from many of
the same phyla as Sanders et al. (2015) found in fecal
samples from 7 right whales, but direct comparisons of
lower level taxonomy are needed. However, because
of the similarity in the diets and GI tract anatomy of
right and bowhead whales and because they are
phylogenetically closely related, these data from
(Miller et al. 2020) may provide a model for right
whale gut microbiome and lipid digestion, thereby
potentially adding to the understanding of right
whale nutrition, body condition and overall health.
Additionally, recent analysis of how host phylogeny and life history stage modify the gut microbiome in dwarf Kogia sima and pygmy Kogia breviceps sperm whales (Erwin et al. 2017, Denison et al.
2020) may also have relevance to study of right
whale health.

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Dis Aquat Org 143: 205–226, 2021

Overall, skin, blow and gut-associated microbiomes show potential for usefulness in monitoring
health of baleen whales — especially blow, which
can be collected non-invasively. Paired gut microbiome and lipidome studies have the potential to provide insights into nutrition and body condition and
may be useful for evaluating the mechanisms
involved in balaenid whale nutrition. Many laboratories are now implementing portable sequencing
techniques that could be used to rapidly screen for,
and identify, altered microbiomes in field settings
(Hu et al. 2018, 2019). This technology has the
potential to provide diagnostic-type details about
how baleen whale microbiomes change due to animal health and environmental or ecosystem-related
alterations.

inshore dolphins with 2-yr-ahead survival and successful reproduction for pregnant females observed
by follow-up surveys. Data from 8 populations were
included. The numerous measurements of blood and
other parameters taken during health assessments
have been organized into panels of organ status
or specified disease condition to identify abnormal
cases for each panel using previously established reference ranges. One future component of the project
is to assess how the models and methods developed
may be applied to other species for which such comprehensive hands-on health assessments are not
available. In particular, if a remote blood sampling
device could be developed for large whales, this
approach would substantially enhance our understanding of right whale health.

2.5.2. Small cetacean health assessments

3. DISCUSSION

Recent advances in small cetacean health assessments are important to review when considering
new approaches for evaluating NARW health. In particular, the Deepwater Horizon (DWH) oil spill provided a major opportunity to develop a new synthesis
of wild dolphin health assessment tools to better
understand the response to a major stressor (Fauquier
et al. 2020). These tools allowed for the diagnosis of
reproductive failure, lung injury, impaired stress
response, and poor body condition in common bottlenose dolphins Tursiops truncatus in the aftermath of
the DWH disaster (Schwacke et al. 2014, Lane et al.
2015, Kellar et al. 2017, Smith et al. 2017). Although
many of the tools utilized in small cetacean exams
would need to be substantially modified for large
whales, their potential application to NARW health
assessment should be considered (Schwacke et al.
2014, NOAA 2015, Venn-Watson et al. 2015, Smith et
al. 2017, Fauquier et al. 2020).

3.1. NARW health threats

2.5.3. Predicting Tursiops survival and reproduction
from health assessment data
An expert system developed for predicting survival
and reproduction in dolphins based on health assessments could inform approaches for linking current
NARW health measures to demography and suggest
efficacious future measurements (L. Thomas pers.
obs.). The ‘Veterinary Expert System for Outcome
Prediction’ (VESOP) model in dolphins uses statistical models linking measurements of wild bottlenose
dolphin health made during hands-on sampling of

Understanding NARW health has resulted from
decades of research throughout the primary range of
this species from Florida to Canada. The sharing and
analysis of photographs, samples, and data from both
live NARWs and carcasses, has been undertaken by
a growing, evolving and integrated community of
conservation biologists, modelers, and veterinarians.
There is a collaborative ethic, in large part driven by
the NARWC being focused on recovery of this
endangered species. There is a strong level of collaboration between the USA and Canada at the federal,
research and non-governmental organizational levels.
There is a substantial body of information that
points to a major impact of lethal and sub-lethal
anthropogenic trauma and stressors. However, establishing clear cause and effect linkages can be challenging, especially for the sublethal impacts given
that multi-factorial processes are involved.
The key identified species-level concerns are low
fecundity resulting in extended inter-birth intervals
for some females, and others never calving at all, and
poor survival (especially females) from high mortality
and chronic morbidity. Together, these are the symptoms of the species downward trajectory. These species-level findings are in stark contrast to the high
fecundity and good survival of SRWs. Although
SRWs were similarly harvested down to a few hundred animals, in the post-whaling era, the relative
lack of anthropogenic threats has allowed the SRW to
rebound dramatically. Critical for NARWs is that they

Moore et al.: Right whale health

are exposed to substantially greater human activity
than SRW, given that 90% of the human species lives
north of the equator (W. Rankin, The World’s Population in 2000, by Latitude; www.radicalcartography.
net/index.html?histpop). This is the fundamental
basis for far greater risk of anthropogenic trauma to
NARWs.
The primary known stressors for NARWs include
food quantity and quality, entanglement, vessel
strike, and noise. Climate change-driven distribution
shifts of food, followed by the change in distribution
of NARWs (Record et al. 2019) have complicated
efforts to monitor and manage NARW health by
decreasing the ability to document individuals on an
annual basis. This requires management measures
that are flexible and effective in the face of changing
distributions and the uncertainty predicted by climate change. Of these stressors, vessel trauma and
entanglement are potentially the most tractable to
reduce, in terms of beneficial management actions.
Vessel noise is also a serious concern. Fig. 6 summarizes stressors and tools that are important for NARW
health studies.
This review identified that the primary tools for
assessing individual health include visual health
indicators, body condition (an integrated energetic
index), presence of vessel strike and entanglement
wounds and scars, and detection of biota (biotoxins,
parasites, and most recently, microbiome status).

219

Stress hormones sampled from blow, blubber and
feces provide excellent shorter-term indicators of
stress. The above tools are primarily collected using
boat-based methods. Baleen samples collected at
necropsy have provided data on health and nutrition
over up to the last 8 yr of an animal’s life.
Given the precarious status of the species, the primary roles of existing and potential new health
assessment tools are (1) evaluation of the efficacy of
management changes designed to enhance species
recovery; (2) expansion of our understanding of
NARW health and reproductive success; and (3)
increased perspective of the relative significance and
trends of anthropogenic versus food limitation/other
impacts on population health. Central to these goals
are models designed to recognize important stressors, responses to them, and to management changes.
Table 2 summarizes the available tools for NARW
health assessment in the context of each major stressor and their use in assessment of their health and
efficacy of mitigation efforts. New and recent tools
(Section 2.5 above) may include adaptions for NARW
assessments based on those used in the evaluation of
the impacts of the DWH spill on small odontocetes
(e.g. photo identification, diagnostic pathology and
modeling), further development of microbiome studies, possible systems to collect blood samples from
large whales at sea, and infra-red thermography
from vessels and manned or unmanned aircraft. In

Fig. 6. Summary of the threats facing North Atlantic right whales, and current and potential health assessment methods. Fig. 3
modified from Harcourt et al (2019), with permission from the artist, Julie van der Hoop

Dis Aquat Org 143: 205–226, 2021

Change in levels of observed effects: immune
function, microbiome change, disease

VHA, Photogrammetry
Stress hormones

Sample collection: food, blow, feces, blubber
Sampling of live or dead whales
or prey species

Model to calculate estimate of takes
Necropsy
Cryptic mortality.
Carcass detection and diagnosis

Harmful biota
& pollution

Not manageable in relevant timescale
Change in ambient and episodic noise

PCOD; frequency of injury severity levels
Scarring analyses

Visual surveillance of living whales
Passive acoustic monitoring
Sampling of live whales

VHA, photogrammetry, microbiome, hormones
Visual surveillance of living whales

Food limitation
Ocean noise

High capture rate of living species; reduction
in observed external injuries
Reduction in whales with attached gear;
reduction in moderate and severe injuries
Reduction in estimate of annual takes
Reduction in carcass detections and COD of
entanglement

Model to calculate estimate of takes
Necropsy
Cryptic mortality
Carcass detection and diagnosis

Entanglements

High capture rate of living species; reduction
in observed external injuries; improved VHA
health scores; improved calving rates
Reduction in estimate of annual takes
Reduction in carcass detections and COD of
vessel strike
VHA, photogrammetry, microbiome, hormones
Visual surveillance of living whales
Vessel strikes

How to assess efficacy of mitigation
How to assess health impacts
How to measure occurrence
Stressor

Table 2. Application of health assessment tools. COD: cause of death; VHA: visual health assessment; PCOD: population consequences of disturbance

220

light of the above review, we recommend implementing the following critical measures. Recommendations from the review are collated in Table 3.

3.2. Population
(1) Increased shipboard surveys in the recently recognized important NARW habitats are needed to
improve our ability to track changes in species status,
health, and entanglement or vessel strike wounding/
scarring, as well as to collect biological samples.
(2) Survey efforts need to be flexible to detect
future habitat shifts, and survey areas need to be
updated. Satellite detection techniques should be
employed in this regard as they mature (Bamford et
al. 2020) to find new aggregations as possible.
(3) Increased aerial and vessel photographic capture of a larger portion of the species annually is necessary to track individual health and overall species
health, as well as allow for continued modeling of
vital rates.
(4) Further comparisons between SRW and NARW
populations and individuals would potentially add
understanding for the failure of the NARW recovery
post-whaling.

3.3. Individual
(1) Consistent long-term collection of well-calibrated photogrammetric data are needed to provide
essential perspectives on changing body condition
and growth rates.
(2) Further investigations are needed to detect
pregnancy, pregnancy loss, and perinatal loss in
the reproductively viable female population. This
will inform why fecundity rates are low, and to
develop potential remediation actions. Specifically,
further investigation is needed to identify the
causes for the observed nulliparous females that
are old enough to be sexually mature but have not
calved.
(3) Increased effort to collect appropriate samples
(e.g. biopsy, feces, blow) from adult females
without a calf present are needed to allow assessment of pregnancy, pregnancy loss, and resting
status through hormonal testing. Exploration into
the stage of gestation during which pregnancy loss
occurs could potentially be captured through this
investigation and be instrumental in the identification of potential stressors that are inducing pregnancy loss.

Moore et al.: Right whale health

221

Table 3. Summary of information needs and management actions
Section
1

Information needs

2.4
2.5.1
2.5.3

Increase the proportion of North Atlantic right whales (NARW) sighted annually, by expanding effort in
current high use habitats such as mid-Atlantic, southern New England, and the Gulf of St Lawrence
Further compare the demographics of Southern right whales and NARW
Diagnostic beach necropsies, and assessment of carcasses at sea as practical
Current Visual Health Assessment of the entire photograph catalog of NARW to qualitatively assess the status
and trends of NARW health
Method to categorize chronically traumatized whales to better prognosticate
Quantify live animal vessel strike trauma
Quantify live animal entanglement trauma
Quantitative assessment of body length and condition changes through time
Establish energetic models involving prey, rope drag, and other sub-lethal trauma to better understand
reproductive failure
Acute and chronic effects of background and episodic noise trauma
Assessment of relationship of sub-lethal trauma to reproductive success
SRW vs. NARW foraging dynamics
Surface active group prevalence vs. calving rate by habitat
Endocrine basis of pregnancy and recruitment success, and stress response
Comparison of biotoxin exposure and effects in SRW and NARW
Giardia and Cryptosporidium vs. decline in body condition, including genotyping and tracking origin of
infections
Survival, demographic and multiple stressor models
Microbiomes in the context of health and disease
Develop a large whale blood sampling tool

Section

Management actions for conservation merit

2.1.1
2.1.4.1
2.1.4.2
2.1.4.3
2.1.6
2.1.7
2.2.1

Use diagnostic necropsy data to evaluate effectiveness of NARW trauma mitigation strategies
Substantially reduce large vessel propeller trauma
Consider maximum rope strength of 1700 lb (~773 kg) throughout NARW range
Minimize sub-lethal vessel and entanglement trauma
Removal of rope from the water column to reduce trauma and energy loss in sub-lethal entanglements
Reduce background and episodic noise
Minimize sub-lethal and lethal trauma to enable NARW recovery

2.1
2.1.1
2.1.2
2.1.3
2.1.4.1
2.1.4.2
2.1.5
2.1.6
2.1.7
2.2.1
2.2.1
2.2.1
2.2.2
2.3
2.3

(4) Analysis of fecal, blow, and biopsy samples for
microbiome and other biota are needed to enhance
our understanding of overall health in this species.
(5) Greater capacity to retrieve and examine floating carcasses from substantial offshore distances to
enhance evaluation of mitigation efforts.

3.5. Management
(1) Shifting mortality locations indicate the need for
effective broad-scale management measures that
allow healthy female NARWs to forage, conceive,
deliver, and wean calves.
(2) Management needs are summarized in Table 3.

3.4. Modeling
4. CONCLUSIONS
(1) An assessment of the interaction of multiple
stressors in each major habitat is needed to enable
more spatially precise management measures and to
improve modeling efforts to determine how broad
scale management measures may influence health
and reproduction (Fig. 7).
(2) Population consequence of multiple stressor
(PCOMS) and other models are needed to test the
conservation and species recovery benefit of undertaking specific health assessment options.

In contrast to SRW, the NARW species has failed to
maintain a positive trajectory towards recovery from
the impacts of historic whaling. The reasons for this
are complex but center on the far greater pressure
from human activities in the northern versus southern hemispheres.
The major known anthropogenic sources of lethal
and sublethal NARW trauma are from collisions with
vessels and fishing gear entanglement. These have

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Dis Aquat Org 143: 205–226, 2021

Fig. 7. Population consequence of multiple stressors conceptual model for North Atlantic right whales that links multiple stressors
(blue box) to changes in physiology, trauma and condition (red box) that are detected from retrospective and drone-based studies
(green box). All of these, as well as background environmental signals of climate change and the North Atlantic Oscillation
(NAO), link to changes in growth (measured by drone photogrammetry), reproduction and survival (purple box). VHA: visual
health assessment

increased in recent decades. Vessels have got larger
and faster, increasing the lethality and frequency
of collisions. Fishing gear strength has increased,
with resultant increased morbidity and mortality from
entanglement.
The already poor fecundity and survival of NARWs
has devolved into a recent decline. The species
peaked at 500 individuals in 2010. The best estimate
for 2019 is approximately 360 animals.
Climate-driven changes in NARW habitat features
(biological, physical, chemical) resulting in changes
in migration and foraging patterns that have correlated with a further reduction in already poor reproductive success. Extreme recent warming of the Gulf
of Maine, a major feeding habitat, has led to an
increase in the use of the Gulf of St Lawrence, when
ice free.
The interaction of sub-lethal stressors such as
decreased energy intake and entanglement trauma
must be better quantified in order to identify critical
management strategies to enhance NARW body condition and reproductive success. While foraging success is the most critical determinant of health, little
can be done to enhance it, whereas anthropogenic
trauma is also a major factor and is avoidable, given
adequate and effective management changes.
Tools critical to assessing the efficacy of measures
to mitigate failed recovery include visual surveys,
photo-ID catalog-based species analyses, annual scarring assessments, visual and photogrammetric health
assessments, and necropsies. These efforts are ongoing but need to be continually optimized as environmental changes drive shifts in NARW distribution
and behavior.
Investigation of individual health, analyzing blow,
blubber, fecal, and other samples in addition to
conducting complete necropsy examinations is critical to better understanding the health, reproductive status, and disease states of the NARW population. While we understand the fundamental role of
trauma in NARW status, a more nuanced under-

standing of other aspects of their health would be
hugely valuable.
Modeling is critical to our understanding of the status and trends of NARW health, and in particular for
understanding the interactions of multiple stressors
on both individuals and the species as a whole.
Given the fragmented and changing nature of routine sighting and health assessment opportunities,
models are critical to translate available data into
best estimates of NARW status and trends.
Acknowledgements. This review summarizes material
presented and discussed at a workshop on North Atlantic
Right Whale Health Assessment, June 24−26, 2019, Silver
Spring MD, USA (Fauquier et al. 2020). We thank all
the participants of the workshop for their contributions.
NA14OAR4320158 funded the drafting of this manuscript.
We sincerely thank 3 anonymous reviewers for their constructive comments. The scientific results and conclusions,
as well as any views or opinions expressed herein, are those
of the authors and do not necessarily reflect the views of
NOAA.
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Editorial responsibility: Dave S. Rotstein,
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Submitted: September 25, 2020; Accepted: January 6, 2021
Proofs received from author(s): February 22, 2021

Reducing effort in the U.S. American lobster (Homarus americanus) fishery to
prevent North Atlantic right whale (Eubalaena glacialis) entanglements may
support higher profits and long-term sustainability
Hannah J. Myers1, 2, 3 and Michael J. Moore1
1

Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA 02543 U.S.A.
International Fund for Animal Welfare, Yarmouth Port, MA 02674 U.S.A.
3
College of Fisheries and Ocean Sciences, University of Alaska Fairbanks, Fairbanks, AK 99775
U.S.A.
2

Abstract
North Atlantic right whales (Eubalaena glacialis) feed and migrate in areas of the inshore and
offshore trap fishery for American lobster (Homarus americanus) in the Northeast U.S. In
addition to a recent increase in lethal and sub-lethal interactions with Canadian snow crab gear,
entanglement in both Canadian and U.S. lobster trap gear threatens the continued existence of
this endangered species. The U.S. National Marine Fisheries Service is considering a number of
measures to prevent right whale entanglement bycatch that could impact lobster fishing effort.
The U.S. lobster fishery in Maine expends approximately 7.5 times as much effort as the
Canadian fishery in Lobster Fishing Area 34, where fishers catch about 3.7 times more lobster
per trap than Maine fishers. From 2007 to 2013 in Maine, lobster landings doubled as the number
of traps fell 10.5 percent and landings per trap increased by about 125 percent. The state of
Massachusetts has achieved record high landings since trap/pot seasonal closures have been
implemented to protect right whales, especially within the Statistical Reporting Areas most
affected by the closures. Therefore, a negative economic impact should not be assumed with
effort reduction. In fact, reducing effort may serve to increase fishing profits while supporting
the protection of endangered North Atlantic right whales and the long-term sustainability of the
lobster fishery.
Keywords: bycatch, fisheries management, North Atlantic right whales, overfishing, fishing
technology, ropeless fishing
1. Background
The United States’ National Marine Fisheries Service (NMFS) is preparing significant new
regulations designed to reduce bycatch of endangered North Atlantic right whales (Eubalaena
glacialis) in the American lobster (Homarus americanus) fishery. Entanglement in fixed fishing
gear, which, in U.S. waters, is dominated by gear from the American lobster fishery, is the
leading cause of mortality among North Atlantic right whales (Pettis et al. 2018; Sharp et al.
2019) and has important sublethal impacts on the species’ ability to recover (van der Hoop et al.
2017). Many of the measures NMFS is considering could lead to a reduction in fishing effort.
Myers et al. (2007) showed how reducing effort would benefit both the U.S. lobster industry and
the North Atlantic right whale. Here we extend that concept by exploring how overcapacity and
effort reduction are connected to American lobster landings and revenue in the U.S. fishery.
1A. The U.S. American lobster fishery

1

The American lobster fishery is the United States’ most valuable fishery, bringing in over US
$670 million in landings revenue in 2016 (NMFS Annual Commercial Landings Statistics). It is
based in the Northeast, especially the states of Maine, Massachusetts, New Hampshire, and
Rhode Island, and is fished using fixed trap/pot fishing gear. Trap/pot fishing gear consists of a
baited trap or string of traps (referred to as a trawl) on the seafloor connected to a surface buoy
with a vertical buoyline or “endline.” The surface buoy and endline serve to mark the location of
the trap or trawl for the owner and other fixed and mobile fishing gear (i.e. scallop dredge and
bottom trawl) operators operating in the area, as well as to allow the traps to be hauled up
through the water column. The rope connecting traps in a trawl is referred to as “groundline.”
Since 2007, NMFS has required fishers in most areas to use sinking or neutrally buoyant
groundline due to the potential for floating groundline to entangle North Atlantic right whales
(NMFS 2007).
However, North Atlantic right whales and other protected species—including humpback, fin, sei,
and minke whales and loggerhead and leatherback sea turtles—are known to become entangled
in trap/pot endlines (Hayes et al. 2018b; NMFS 2014) [Figure 1]. The U.S. American lobster
fishery employs an estimated 912,300 vertical endlines during peak fishing months—many of
which are within the North Atlantic right whale’s designated Critical Habitat Area (NMFS 2016;
NMFS co-occurrence model 2019) [Figures 2, 3]. The rope used for endlines has become
significantly stronger over recent decades as manufacturing techniques have evolved, likely
contributing to an increase in right whale entanglement severity and mortality as whales are less
able to break free of entangling line and gear (Knowlton et al. 2016).

Figure 1: Illustration of a North Atlantic right whale entangled in vertical endline, showing the surface buoy,
endline, and string of traps or “trawl” connected by sinking groundline. Credit: Natalie Renier, Woods Hole
Oceanographic Institution

2

Figure 2 (left): Map of estimated commercial trap/pot endline
density (number of endlines per 100 square nautical miles) in
September in the Northeast U.S. using 2016 and 2017 fisheries
data. The total number of commercial trap/pot endlines in use in
the Northeast region in September is estimated to be 920,500,
912,300 of which are used to catch lobster. Source: NMFS cooccurrence model 2019,
https://www.greateratlantic.fisheries.noaa.gov/protected/whaletrp/
trt/meetings/April%202019/apr_16_risk_reduction_decision_tool
_webinar_full_slide_deck.pdf
Figure 3 (right): Map of North Atlantic right whale designated critical habitat area in the Northeast U.S. Source:
NMFS 2016, available at https://www.fisheries.noaa.gov/resource/map/north-atlantic-right-whale-critical-habitatmap-and-gis-data.

The Atlantic States Marine Fisheries Commission (ASMFC) has divided the U.S. lobster stock
into three biological areas: the Gulf of Maine, Georges Bank, and southern New England.
According to the most recent stock assessment from 2015, the Gulf of Maine and Georges Bank
stocks are not depleted and overfishing is not occurring, but the southern New England stock is
severely depleted (ASMFC 2015). Climate change and associated disease and poor recruitment
may be at least partly responsible for the collapse of the southern New England stock (ASMFC
2015). The Gulf of Maine stock accounts for more than 90 percent of U.S. landings (ASMFC
2015). The Gulf of Maine and Georges Banks stocks are heavily fished, especially in the fall, but
stock abundance is also high (ASMFC 2015). However, in the most recent stock assessment
from 2015, three of the five young of year indicators—which help indicate future sustainability
of the stock—were low, which may suggest potential declines in recruitment in future years
(ASMFC 2015). Using an annual larval settlement index and local bottom temperature and
disease prevalence indicators, Oppenheim et al. (2019) predict that Gulf of Maine lobster
landings will decline to near-historical levels within the next decade as the lobster population
continues to recede poleward in a warming ocean.
The U.S. American lobster fishery has experienced robust growth in recent decades, with peak
landings in 2016 of over 72,000 metric tons (nearly 160 million pounds) valued at more than
$670 million (NMFS Annual Commercial Landings Statistics). Landings value has also shown
consistent growth. Total U.S. American lobster landings weight increased by 2.78 times from
1992 to 2016, while landings value increased by 2.24 times when adjusted for inflation (4.03
times nominal value) [Figure 4].

3

U.S. annual American lobster landings
Landings, millions USD and lbs

700
600
500
400
300
200
100

6

4

20
1

2

20
1

0

20
1

8

20
1

6

20
0

4

20
0

2

20
0

0

20
0

8

20
0

19
9

6

4

19
9

2

19
9

0

19
9

19
9

8
19
8

19
8

6

0

Year
Landings value (USD)
Landings value adjusted for inflation (USD)
Landings weight (lbs)
Figure 4: U.S. annual commercial lobster landings weight and value (nominal and adjusted for inflation) from 1986
to 2017. Inflation adjustment was made using the Producer Price Index (PPI) for Unprocessed Shellfish indexed to
December 1991 (PPI not available for 1986 to 1991). Landings data from National Marine Fisheries Service
(NMFS) Annual Commercial Landing Statistics 2019, PPI from U.S. Bureau of Labor Statistics.

This growth in landings has not been driven by a rise in the number of individuals fishing; the
total number of participants in the fishery has fallen from an estimated 13,000 in 1997 to 8,485
in 2019 (NMFS 1997; NMFS 2019b). There are currently about 2,000 fishers actively operating
with a federal commercial trap/pot license (GARFO American Lobster 2019); states issue the
majority of licenses. NMFS issued a moratorium on new federal licenses in 1999 (NMFS 1999).
Fewer fishers are bringing in significantly more revenue, although costs (especially fuel and bait)
have not remained stagnant. The fishery is dominated by small owner-operated businesses.
1B. North Atlantic right whales
Once numbering in the tens of thousands (Monsarrat et al. 2015), as of 2018 there were an
estimated 411 North Atlantic right whales remaining (Pace et al. 2017; Pettis et al. 2018). The
population grew slowly from a low of approximately 270 animals in 1990 to 482 in 2010, but has
since declined rapidly (Pace et al. 2017) [Figure 5]. Only approximately 90 reproductive-aged
females remain in the population (Pace et al. 2017; Hayes et al. 2018a). With continued high
rates of anthropogenic mortality, the population could be functionally extinct within several
decades (Meyer-Gutbrod and Greene 2018). North Atlantic right whales are protected under the
U.S.’s Endangered Species Act (ESA) and Marine Mammal Protection Act (MMPA) and
Canada’s Species at Risk Act.

4

600

40

30

400

25

300

20
15

200

10

100

5

Calves
Diagnosed entanglements
Population

Year

18
20

16
20

14
20

12
20

10
20

08
20

06
20

04
20

02
20

00
20

98
19

96
19

19

19

94

0
92

0
90

Estimated population

500

35

19

Number of calves and observed mortalities and
serious injuries

45

North Atlantic right whale population, calves, and number and cause of
observed mortalities and serious injuries

Diagnosed vessel strikes
Observed mortalities and serious injuries

Figure 5: Estimated North Atlantic right whale population, number of calves, observed mortalities and serious
injuries, and diagnosed cause of death or serious injury. Diagnosed entanglements have increased significantly since
the population has been in decline. Data from Waring et al. 1997, Kraus et al. 2001, Waring et al. 2002, Moore et al.
2004, Waring et al. 2015, Pace et al. 2017, Pettis et al. 2018, Hayes et al. 2018b, and NOAA Northeast Fisheries
Science Center (unpublished).

In addition to the legal imperative to conserve this species, large whales such as right whales are
increasingly recognized for their important role in sequestering carbon from the atmosphere into
the deep sea and in mixing and transporting nutrients to support primary productivity in marine
ecosystems (Lavery et al. 2010; Pershing et al. 2010; Roman et al. 2014). A recent estimate
placed the value of an average individual large whale at over US $2 million in terms of carbon
sequestration, fisheries productivity enhancement, and ecotourism (Chami et al. 2019).
Entanglement in fishing gear and vessel strikes are responsible for all diagnosed adult North
Atlantic right whale mortalities since 1970; no adults are known to have died of natural causes in
almost fifty years (though many mortalities are not observed or diagnosed) (Moore et al. 2004;
Sharp et al. 2019). Entanglement was the cause of death in 72 percent of diagnosed adult
mortalities since the population has been in decline (from 2010 to 2018), but only 35 percent
from 2000 to 2009 (Moore et al. 2004; Sharp et al. 2019).
North Atlantic right whales can be found off the coast of New England and Canada in areas
likely to overlap with trap/pot fisheries throughout the year (Davis et al. 2017) [Figure 6]. Rope
taken off entangled whales has been tracked to fisheries throughout these areas (Hayes et al.
2018a) [Figure 7].

5

Figure 6 (left): Number of days by season with
confirmed North Atlantic right whale acoustic
detections from 2004 to 2014, summarized from all
available acoustic recording locations. Source: Davis et
al. 2017
Figure 7 (right): Map of North Atlantic right whale
entanglements from 1997 to 2017 for which the set location and gear type are known and gear was recovered from a
whale. Source: Hayes et al. 2018a

NMFS has calculated Potential Biological Removal (PBR) for North Atlantic right whales at 0.9,
meaning that less than one animal can be killed each year due to human activity while still
allowing the population to recover (Hayes et al. 2018b). Right whale serious injuries and
mortalities in U.S. waters from entanglement alone—excluding entanglements known to be
caused by Canadian gear—have exceeded PBR every year except for two since 2000 (Morin et
al. 2018b). In their most recent ESA Section 7 consultation on the impacts of the American
lobster fishery, NMFS stated that U.S. lobster fishing gear is likely to kill 3.25 animals annually
(NMFS 2014). Entanglement is very common among North Atlantic right whales: in a 2012
study, 83 percent of right whales showed scars from entanglements and an estimated 26
percent—or approximately 100 animals—are entangled each year (Knowlton et al. 2012).
In addition to mortalities, entanglement has serious sublethal impacts on North Atlantic right
whales that likely inhibit the species’ ability to recover (van der Hoop et al. 2017). Right whales
can produce up to an estimated 8,000lbs of force with a single stroke of their flukes (Arthur et al.
2015), so they will often continue to swim while entangled in rope and/or associated traps and
buoys. Entangling gear creates substantial drag for a swimming animal, and the energetic
demands of an entanglement are comparable to or exceed those of other major life history events
such as migration and pregnancy (van der Hoop et al. 2016; van der Hoop et al. 2017).
For reproductive females, the energetic costs of entanglement can extend the amount of time
needed to recover fat stores following pregnancy, calving and lactation, potentially delaying the
female’s ability to become pregnant (van der Hoop et al. 2017). In recent years, the average
calving interval for reproductive females has stretched from three to ten years (Pettis et al. 2018).
Females have about a five percent chance of not becoming entangled during that ten-year period
(Hayes et al. 2018a).
6

Entanglement also poses a serious animal welfare concern. Beyond preventing the take of marine
mammals, including North Atlantic right whales, at unsustainable levels, the MMPA also
specifies that takes must be humane—wherein the term “humane” means “that method of taking
which involves the least possible degree of pain and suffering practicable to the mammal
involved” (MMPA 1972). When a right whale becomes entangled, the line and gear can wrap
around the animal’s body, flukes, flippers and mouth [Figure 8]—impeding swimming and
feeding, causing chronic infection, emaciation, and damage to blubber, muscle, and bone (Moore
et al. 2006; Moore and van der Hoop 2012; Moore 2013; Dolman and Moore 2017; Sharp et al.
2019) [Figure 9]. It can take months to years for a North Atlantic right whale to die of
entanglement, during which time it experiences extreme pain and debilitation (Moore et al. 2006;
Moore and van der Hoop 2012; Moore 2013; Moore 2014; Dolman and Moore 2017). For
example, entanglement is known to have caused fatal scoliosis in a juvenile whale due to the
strain of dragging fishing gear as a young animal [Figure 10] and nearly severed flippers on
multiple animals swimming in up to 30 to 50 wraps of constricting rope [Figure 11] (Sharp et al.
2019).

Figure 8: A live entangled North Atlantic right whale showing fishing line wraps over the blowhole and through the
mouth, damaging baleen plates. Credit: Nick Hawkins

7

Figure 9: Fishing rope furrowed into the lip of Bayla, North Atlantic right whale #3911. Credit: Michael Moore,
NMFS Permit 932-1905-00/MA-009526

Figure 10: North Atlantic right whale (CALO0901, 3710) with debilitating abnormal curvature of the spine
(scoliosis) caused by an entanglement. This injury caused chronic damage to the spine, which ultimately led to the
young animal’s death. Image credit: University of North Carolina Wilmington; NMFS Permit No. 932-1489.

8

a

b

Figure 11a (top): North Atlantic right whale (SC118) with 13 constricting wraps of fishing line around a pectoral
flipper that caused a partial amputation.
Figure 11b (bottom): Deep furrow created by fishing line sawing into the humerus of the same whale over time, and
the bone’s unsuccessful attempt to repair this injury. Image credit: NOAA National Ocean Service Center for
Coastal Environmental Health and Biomolecular Research Coastal Marine Mammal Strandings and Assessments
Project; NMFS Permit No. 932-1905

1C. Regulatory processes concerning the U.S. American lobster fishery and North Atlantic
right whales
The U.S. American lobster fishery is cooperatively managed by the states (0-3 miles from shore)
and NMFS (3+ miles from shore) under the framework of the ASMFC. State waters regulations
are promulgated by the respective government agencies, i.e. the Maine Department of Marine
Resources and Massachusetts Division of Marine Fisheries, while complementary federal water
9

regulations are promulgated by NMFS. The ASMFC assesses the fishery according to seven
Lobster Management Areas (LMAs) [Figure 12], of which LMA 1 is the most productive, with
92.5 percent of total catch in 2012 (the most recent year for which landings by LMA are
available) (ASMFC 2018b). Many fishers are licensed to operate in both state and federal waters;
for example, 27 percent of fishers with Massachusetts state licenses also have federal licenses
(Massachusetts DMF unpublished data). In cases where state and federal regulations differ, the
most restrictive rule applies.
Figure 12: Map of Lobster Management Areas
showing Gulf of Maine - Georges Bank and
southern New England lobster stock areas, and
NMFS Statistical Reporting Areas. Source: Atlantic
States Marine Fisheries Commission, Map of Stock
Assessment and Management Areas, available at
http://www.asmfc.org/uploads/file//58f8cd9aLobste
rManagement_StockArea_Map_Nov2016.JPG

The Atlantic Large Whale Take Reduction
Team (ALWTRT), a group of fishers,
scientists, conservationists, and state and
federal officials, was created in 1996 as
mandated by the Marine Mammal
Protection Act to advise NMFS on steps to
reduce incidental take (or killing) of large
whales in Atlantic fixed gear (trap/pot and
gillnet) fisheries to a level below PBR
(NMFS 1997). Although the ALWTRT is
mandated to reduce take of all large whale
species affected by the fisheries, in recent
years the ALWTRT has focused on North
Atlantic right whales due to the urgency of
the right whale entanglement crisis and the
potential for this species to become extinct in the near future.
Since 1997, NMFS has taken a series of management actions, some of which were recommended
by the ALWTRT, to identify and reduce North Atlantic right whale bycatch (Hayes 2018a).
These include gear marking requirements, surface weak links, sinking groundlines, trap limits,
minimum numbers of traps per endline, and seasonal fishery closures (Hayes et al. 2018a).
However, right whale entanglement mortalities and serious injuries have increased substantially
over the same period and the population trajectory has reversed from modest growth to rapid
decline. Though a number of factors have likely contributed to the rising entanglement mortality
rate, including stronger fishing rope (Knowlton et al. 2016) and climate change-related shifts in
right whale distribution (Record et al. 2019), protective measures to date have failed to
demonstrably reduce total right whale entanglement risk and mortalities.
Between June 2017 and September 2019, 30 North Atlantic right whales were found dead in U.S.
and Canadian waters in an Unusual Mortality Event (UME) (NOAA 2019). This UME has
brought renewed urgency to the ALWTRT and NMFS rulemaking processes.

10

At the April 2019 ALWTRT meeting, NMFS indicated an intent to develop and implement new
rules to reduce North Atlantic right whale bycatch by 60 to 80 percent and asked Team members
to generate proposals to meet that risk reduction target (NMFS correspondence 2019). At the end
of the meeting, the Team reached near-consensus agreement on a suite of measures implemented
by state and federal management area (NMFS Key Outcomes Memorandum 2019). The primary
risk reduction measures agreed upon were:
1. Reductions in the number of endlines fished by 18 to 50 percent
2. Use of reduced breaking strength (less than 1,700lbs force) endlines
There were notable differences in the recommendations from different caucus groups within the
ALWTRT. The fishing industry and state management representatives focused on endline
reductions and reduced breaking strength rope, while the conservation non-governmental
organization (NGOs) members also recommended:
3. Additional time/area fishery closures in North Atlantic right whale aggregation areas
4. Rapid research using and steps toward implementation of ropeless fishing gear
(defined as gear that does not use endlines prior to gear retrieval)
Additional seasonal closures and ropeless gear testing and/or implementation were not included
in the near-consensus recommendations (NMFS Key Outcomes Memorandum 2019), but are
likely to be continually considered as part of ongoing efforts to reduce large whale bycatch in the
fishery.
The ALWTRT’s near-consensus subsequently withered on August 20th, 2019 when the Maine
Lobstermen’s Association withdrew their support (Maine Lobstermen’s Association 2019).
However, the purpose of the ALWTRT is to make consensus-based recommendations to NMFS,
and under the MMPA NMFS is responsible for implementing measures to reduce serious injuries
and mortalities to below PBR regardless of whether the Team reaches consensus (MMPA 1972).
NMFS therefore subsequently indicated their intent to move forward with regulations (Oliver
2019). In August 2019, NMFS published a notice of intent to prepare an environmental impact
statement and a request for public comments on proposed modifications to the Atlantic Large
Whale Take Reduction Plan, which was based on the ALWTRT’s risk reduction framework
(NMFS 2019a). NMFS is tentatively expected to release a proposed rule including the
ALWTRT’s recommendations by early 2020, with a final rule expected thereafter.
2. Potential impacts of proposed regulations on fishing effort
Each of the major management measures NMFS is considering to reduce right whale bycatch
could have an impact on fishing effort, described here by the number of traps or trap days used,
as explained below. If the lobster fishery is operating efficiently, then a reduction in effort would
likely lead to reduced landings and potentially lower revenue (depending on the extent to which
price rises in response to a contraction of supply). In contrast, if the exploitation rate in the
lobster fishery is above optimum efficiency, reducing effort would likely allow lobster biomass
to build up so that catch rates remain high with substantially reduced operating costs (Myers et
al. 2007; Worm et al. 2009). Understanding how effort reduction could impact the fishery is
important for federal and state regulators, the fishing industry, and conservation interests.
1. Reductions in the number of endlines fished
11

There are multiple ways in which an endline reduction can be implemented: (1) directly, such as
through a vertical endline cap that could be administered similar to trap tags, and (2) indirectly,
such as through a trap limit reduction combined with a set minimum number of traps per trawl.
In either case, it is imperative that a vertical endline reduction be implemented as a reduction
from the actual number of endlines fished, not from the amount currently allowed under
regulations, for such a measure to have the expected entanglement risk reduction benefit for right
whales. This is because in many areas of the fishery actual effort is lower than regulations allow.
If, for example, the trap limit was reduced from 800 to 600 traps in an area where fishers use 550
traps on average, the measure would have significantly less than a 25 percent entanglement risk
reduction benefit.
If a direct endline cap were to be pursued, the endline reduction would not necessarily lead to an
equivalent reduction in the number of traps fished, because many fishers can add traps to trawls
in order to continue fishing their standard number of traps. However, vessel and other equipment
constraints would likely limit some individuals from fishing their full trap allocation.1 For
example, fishers operating offshore in LMA3 often already fish long trawls of 20 or more traps
and may have a limited ability to add more traps per endline. Fishers who operate on small
vessels inshore may not have sufficient mechanical hauling strength to fish longer trawls.
Therefore, we expect an endline cap to lead to a reduction in effort that is greater than zero but
less than the amount of the endline reduction (for example, a 50 percent endline reduction will
lead to a trap reduction between 0 and 50 percent). In contrast, an indirect endline reduction
implemented through a trap reduction and minimum number of traps per trawl would have a
direct impact on effort, provided that the reduction is from actual number of traps fished.
2. Use of reduced breaking strength (less than 1,700lbs force) endlines
Of the proposed measures, the use of reduced breaking strength endlines has the least clear
impact on effort, and may not lead to an appreciable reduction in the number of traps fished. If
fishers find that 1,700lb breaking strength rope cannot adequately handle their trawls as currently
configured, they may consider reducing the number of traps per trawl so as to reduce the load on
the endline when hauling (although there are also requirements on the minimum number of trap
per trawl). However, other reconfigurations, such as lengthening the groundline between the first
and second traps in a trawl, may similarly reduce the load on the endline without reducing the
number of traps per trawl.
3. Additional time/area fishery closures in North Atlantic right whale aggregation areas
Seasonal closures would have a direct impact on fishing effort by requiring complete removal of
fishing gear from an area for a period of time. The extent to which seasonal closures will impact
fishing effort depends on the duration of the closure, season, and area fished. Although fishers
are currently allowed to harvest American lobster year-round other than within specific seasonal
closures, there are significant differences in effort and landings by season. For example, in many
areas landings are highest in the fall, while late winter and early spring bring in a significantly
lower harvest (ASMFC 2015). However, some fishers keep their gear in the water even when

1

Most fishers in the U.S. lobster fishery are licensed to use up to 800 traps, though there are important differences
by area, especially in LMA3 where fishers may use up to 1,945 traps (GARFO American Lobster Commercial
Fishing Regulations 2019).

12

harvest is minimal,2 and endlines pose the same whale bycatch threat regardless of how much
lobster is being harvested.
Neither fishing effort nor right whales are evenly distributed across the fishery; seasonal closures
aim to identify areas and periods of highest risk. One particular area of concern discussed at the
April 2019 ALWTRT meeting is south of Martha’s Vineyard and Nantucket in NMFS Statistical
Reporting Area 537 (NMFS Key Outcomes Memorandum 2019). Right whales have maintained
a near-constant presence in Area 537 over the last three years and have frequently been observed
aggregating in large numbers—sometimes more than 100 individuals (NOAA Right Whale
Sightings Advisory System, NMFS Key Outcomes Memorandum 2019). Their presence has
triggered NMFS to implement a number of successive Dynamic Management Areas, where
mariners are asked (but not required) to avoid the area or reduce vessel speed to 10 knots or less
(NMFS Office of Protected Resources 2019). Effort in this area is relatively low, but the offshore
lobster industry operating there uses heavy fishing gear (NMFS co-occurrence model 2019;
NMFS Key Outcomes Memorandum 2019).
4. Use of ropeless fishing gear
Instead of leaving an endline in the water continuously, ropeless fishing gear releases a buoy and
endline or inflates a lift bag to come to the surface when a fisher sends an acoustic command to
retrieve their trawl (Myers et al. 2019) [Figure 13]. Alternatively, many fishers already use a
customized hook to catch the groundline between traps and haul their gear to the surface—called
grappling—when the permanent buoy or endline go missing (Myers et al. 2019). Both acousticrelease ropeless fishing and grappling have the potential to substantially reduce or eliminate
entanglement in endlines. Entanglement involvement with endlines is the most commonly
identified interaction since the sinking groundline rule went into effect (D. Morin personal
communication); since 2007, line consistent with endlines has been recovered from entangled
whales about ten times more often than line consistent with groundline (Morin et al. 2018a).

Figure 13: Illustration of acoustic-release ropeless fishing gear. Upon receiving an acoustic trigger, a buoy and
2

Marine mammal regulations require that lobster traps be hauled back only once every 30 days (GARFO American
Lobster Commercial Fishing Regulations 2019).

13

endline attached to a trap at the end of a trawl deploys for retrieval or a lift bag inflates and brings the attached trap
and trawl to the surface. Endlines are only used during gear retrieval, or not at all if a lift bag is used. A virtual trap
marker visible on a screen in the vessel would replace the marker buoy. Credit: Natalie Renier, Woods Hole
Oceanographic Institution

Ropeless fishing gear may take longer to retrieve than traditional methods due to the added time
needed to triangulate on gear position using acoustic signals and/or the time needed to grapple
(Myers et al. 2019). This may be particularly relevant for early adopters of ropeless gear; time
costs may go down as fishers become accustomed to different retrieval methods and technologies
are iteratively improved. If fishers are not able to haul as many trawls per day when fishing
ropeless, ropeless fishing could effectively cause a reduction in effort. Additionally, the upfront
costs of transitioning to ropeless fishing gear may be too high for fishers to replace all of their
endlines at once. Combining a transition to ropeless fishing gear with an endline or trap
reduction could make the upfront investment more feasible.
On the other hand, ropeless fishing could offer a solution for fishers facing an endline reduction:
if allowed by federal and/or state regulations,3 fishers could replace some of their endlines with
ropeless retrieval units to meet endline reduction requirements. Therefore, the overall impact of
ropeless fishing on effort depends on implementation.
3. Overcapacity and effort reduction in the U.S. lobster fishery
We examined three case studies to describe how fishing effort has correlated with landings in the
U.S. lobster fishery:
A. Comparison of lobster fishing effort on the U.S. (Maine) and Canadian (Lobster
Fishing Area 34) sides of the Gulf of Maine in terms of number of traps and season
days
B. State of Maine landings and number of traps over time
C. Landings within the Massachusetts Restricted Area seasonal trap/pot closure and
Massachusetts statewide landings since the closure was implemented
We used publicly available4 landings data, price indices, and trap and license counts and the
longest available time series up to 1986 in order to show decadal trends.
3A. Effort and landings in the Gulf of Maine: Maine compared to Lobster Fishing Area 34
We employ a comparison of the lobster fishery on the U.S. and Canadian sides of the Hague
Line, the North Atlantic boundary between U.S. and Canadian fishing waters, in 2016 and 2017.5

3

Current federal and state regulations require the use of surface marking systems that use endlines in the American
lobster fishery (GARFO American Lobster Commercial Fishing Regulations 2019). However, NMFS and some state
agencies have demonstrated interest in supporting ropeless gear development and use.
4
Some data sets used are not publicly published but are available upon request to the relevant state or federal
agency.
5
Myers et al. (2007) also employed a comparison of the U.S. and Canadian lobster fisheries across the Hague Line
and found that U.S. effort was about 13 times higher than Canadian. However, Myers et al. (2007) compared
landings and traps in the U.S.’s Lobster Management Area 1 and Canada’s Lobster Fishing Area 34 and calculated
effort using different assumptions. We chose to compare the state of Maine and LFA 34 because more recent and
complete landings and effort data were available. Therefore, these two studies should not be directly compared,
14

U.S. landings are from Maine state- and federally licensed landings from the Gulf of Maine;
Canadian landings are from Lobster Fishing Area (LFA) 34 [Figure 14]. These two areas share
similar biological characteristics and have both experienced record landings in recent years
following four decades of landings growth (Myers et al. 2007; DFO Seafisheries Landings;
NMFS Annual Commercial Landings Statistics). However, the Maine lobster fishery has a much
higher trap limit and is allowed to fish year round, whereas LFA 34 is restricted to about one half
of the trap limit for most Maine fishers and fishing is restricted to a winter season from the last
Monday in November to May 31st (GARFO American Lobster Commercial Fishing Regulations;
DFO Integrated Fisheries Management Plan 2019).

Figure 14: Map of U.S. Lobster Management Areas (LMAs) and Canadian Lobster Fishing Areas (LFAs) in the
Gulf of Maine divided by the Hague Line. Maine landings and effort (primarily from LMA1 and LMA3) are
compared to landings and effort in LFA 34. This map shows the U.S. definition of the Hague Line. Map created in
QGIS using shapefiles from NMFS Greater Atlantic Regional Fisheries Office (Lobster Management Areas) and
Free 2017 (Atlantic Coast: Lobster Fishing Areas).

To compare effort in Maine and LFA 34, we compared lobster landings, number of traps, and
season days in each area in 2016 and 2017, the two most recent years for which data are
available [Table 1]. LFA 34 data are provided by fishing season; in this analysis 2016 refers to
the 2015/2016 fishing season and 2017 refers to the 2016/2017 fishing season. For the state of
Maine, the number of traps is the number of trap tags sold, as published by the state of Maine
Department of Marine Resources (Maine DMR 2019). For LFA 34, we calculated the number of
although the conclusion that the U.S. Gulf of Maine fishery is operating at substantial overcapacity holds in both
assessments.
15

traps as the trap limit (3836) multiplied by the number of licenses (979) (DFO 2019). We
calculate overcapacity in Maine compared to LFA 34 as:
Overcapacity in Maine versus LFA 34 =
(number of traps x season days) / landings
Lobster Fishing Effort in Maine versus Lobster Fishing Area 34, 2016
Maine
LFA 34
Maine/LFA 34
Landings (metric
tons)
Number of traps

60,175

29,151

2.06

2,946,000

375,000

7.86

Season days
Overcapacity in
Maine versus LFA
34

365

184

1.98
7.55

Table 1A: Landings, number of traps, and season days in Maine versus Lobster Fishing Area (LFA) 34 in 2016
(LFA 34’s 2015/2016 fishing season). Maine fishers used approximately 7.55 times as much effort as fishers in LFA
34 to harvest the same amount of lobster. Maine landings data from National Marine Fisheries Service Annual
Commercial Landings Statistics and number of traps from Maine Department of Marine Resources Historical Maine
Lobster Landings. LFA 34 landings, number of licenses, trap limits, and season days from Fisheries and Oceans
Canada March 2019 update to the Integrated Fisheries Management Plan for LFAs 27-38.

Lobster Fishing Effort in Maine versus Lobster Fishing Area 34, 2017
Maine
LFA 34
Maine/LFA 34
Landings (metric
tons)
Number of traps

48,983

22,679

2.16

2,954,000

375,000

7.88

Season days
Overcapacity in
Maine versus LFA
34

365

185

1.97
7.20

Table 1B: Landings, number of traps, and season days in Maine versus Lobster Fishing Area (LFA) 34 in 2017
(LFA 34’s 2016/2017 fishing season). Maine fishers used approximately 7.20 times as much effort as fishers in LFA
34 to harvest the same amount of lobster. Maine landings data from National Marine Fisheries Service Annual
Commercial Landings Statistics and number of traps from Maine Department of Marine Resources Historical Maine
Lobster Landings. LFA 34 landings, number of licenses, trap limits, and season days from Fisheries and Oceans
Canada March 2019 update to the Integrated Fisheries Management Plan for LFAs 27-38.

In Maine, fishers use nearly eight times as many traps to catch about twice as much lobster as
fishers in LFA 34 [Table 1]. Since the lobster fishing season in Maine is almost twice as long as
that in LFA 34, we calculate that effort in Maine is approximately 7.5 times higher than that in

6

The trap limit in LFA 34 is 375 for approximately two thirds of the season and 400 for one third of the season
(DFO 2019). We therefore used a scaled trap multiplier of 383.

16

LFA 34 to harvest the same amount of landings. Results were comparable from 2016 to 2017, as
both areas experienced a drop in landings of about 20 percent.
It is important to note that many Maine fishers do not actively fish during the full 365-day
season, and commonly remove gear for part of the year. However, even if we estimate that
Maine fishers use 75 percent of available fishing days (292 days), capacity in Maine is still about
5.5 times that in LFA 34. Additionally, the number of trap tags sold in Maine does not fully
account for latent effort; some fishers likely do not use all of the trap tags they purchase.
However, the number of trap tags sold is markedly lower than the full trap limit. In 2016 and
2017, the number of trap tags sold averaged 490 and 493 per fisher, respectively (Maine DMR
2019), whereas the trap limit is 800 in most areas. This indicates that the number of trap tags sold
is a better indicator for actual effort than the number of licenses multiplied by the trap limit in
Maine. In contrast, the number of traps for LFA 34 calculated here represents the upper bound
for this area and assumes all license holders fish the full trap limit.7
Even if latent effort in Maine is approximately 20 percent of the number of trap tags sold and
Maine fishers actively fish 75 percent of the year, overcapacity in Maine compared to LFA 34 is
4.5 times.8 Even a much lower overcapacity estimate would indicate that effort reduction
measures currently under consideration by NMFS (i.e. an endline and possible trap reduction of
up to 50 percent) would likely benefit the fishery.
Next, we calculated landings per trap in Maine compared to LFA 34 [Table 2]. Total landings
indicate a fisher’s revenue (when multiplied by ex-vessel price), and does not account for cost. In
contrast, landings per trap is a stronger proxy for profit than total landings because it partially
accounts for costs by standardizing to effort. Bait and fuel are frequently the most significant
input costs to harvest lobster, and are closely related to the number of traps used (i.e. each trap is
baited, and fishers likely travel farther and use more fuel to haul more traps). To calculate
landings per trap, we divided total annual landings by the number of traps from Table 1.
Landings per trap in Maine versus Lobster Fishing Area 34
Maine landings per LFA 34 landings
trap (lbs)
per trap (lbs)
2016
45
171
2017
37
133

LFA 34/ Maine
3.8
3.6

Table 2: Landings per trap in Maine compared to Lobster Fishing Area (LFA) 34 in 2016 and 2017 (LFA 34’s
2015/2016 and 2016/2017 fishing seasons, respectively). LFA 34 fishers harvested about 3.7 times as much lobster
per trap as Maine fishers. Maine landings data from National Marine Fisheries Service Annual Commercial
Landings Statistics and number of traps from Maine Department of Marine Resources Historical Maine Lobster
Landings. LFA 34 landings, number of licenses, trap limits, and season days from Fisheries and Oceans Canada
March 2019 update to the Integrated Fisheries Management Plan for LFAs 27-38.

In 2016 and 2017, LFA 34 fishers brought in about 3.7 times as much lobster per trap than Maine
fishers (3.8 times in 2016 and 3.6 times in 2017). This calculation of landings per trap does not
take season days into account. Again, if latent effort in Maine is approximately 20 percent of the
7

LFA 34 license holders are issued a yearly set of trap tags which matches the trap limit, they do not select a
number of trap tags to purchase each year (Fisheries and Oceans Canada March 2019 update to the Integrated
Fisheries Management Plan for LFAs 27-38).
8
7.5 x .80 x .75 = 4.5 times overcapacity in Maine compared to Lobster Fishing Area 34
17

number of trap tags sold, LFA 34 landings per trap are still three times higher than in Maine,
assuming all LFA 34 fishers use the full trap limit.
LFA 34 did not achieve high landings in recent years by increasing effort; the number of lobster
licenses and trap limit has remained consistent over time [Figure 14] (Myers et al. 2007; DFO
2011; DFO Atlantic Region Licenses). Therefore, landings per trap (a proxy for profit) in LFA
34 mirrored growth in total landings [Figure 15]. In contrast, the number of traps in Maine
increased for much of the last three decades [Figure 14] (Maine DMR 2019), likely indicating
comparably higher costs and lower profits during a similar period of landings growth [Figure
15]. We compared the number of lobster traps in Nova Scotia Maritimes and Maine from 1990 to
2017 to illustrate this concept. Here we switch to Nova Scotia Maritimes because a more
consistent time series of the number of licenses is available (DFO Atlantic Region Licenses).
LFA 34 is the most significant contributor to total Nova Scotia Maritimes landings. The number
of traps in Nova Scotia Maritimes was calculated by multiplying the annual number of licenses
by the proportion of licenses per LFA, category, and LFA restrictions from the most recent
Integrated Fisheries Management Plan from 2011 (DFO 2011).

3,500
3,000
2,500
2,000
1,500
1,000
500

16
20

14
20

12
20

10
20

08
20

06
20

04
20

02
20

00
20

98
19

96
19

94
19

19

19

92

0
90

Approximate number of traps
(thousands)

Number of lobster traps in Maine and Nova Scotia Maritimes

Year
NS Maritimes number of traps

Maine number of traps

Figure 14: Estimated number of lobster traps in Maine versus Nova Scotia (NS) Maritimes from 1990 to 2017.
Maine number of traps showed uneven growth until reaching a peak of 3.283 million traps in 2006 and has since
tapered off slightly, while NS Maritimes number of traps has remained relatively consistent at approximately
900,000 traps. Data from Maine Department of Marine Resources Historical Maine Lobster Landings, DFO
Integrated Fisheries Management Plan for LFAs 27-38 (2011), and DFO Atlantic Region Licenses.

18

20

20

20

20

20

20

20

20

20

19

19

19

19

19

16

0
14

0
12

10

10

20

08

20

06

40

04

30

02

60

00

40

98

80

96

50

94

100

92

60

Landings, metric tons (thousands)

70

120

90

Landings per trap, lbs

140

Lobster landings and landings per trap in Maine and Nova
Scotia Maritimes

Year
NS (Maritimes) landings per trap (lbs)

ME landings per trap (lbs)

NS (Maritimes) landings, metric tons

ME landings, metric tons

Figure 15: Maine and Nova Scotia (NS) Maritimes lobster landings and landings per trap from 1990 to 2017. While
NS Maritimes landings per trap mirrored landings growth, Maine landings per trap remained relatively stagnant for
the majority of this period. Data from DFO Seafisheries Landings, DFO Atlantic Region Licences, DFO Integrated
Fisheries Management Plan for LFAs 27-38 (2011), NMFS Annual Commercial Landings Statistics, and Maine
Department of Marine Resources Historical Maine Lobster Landings.

Landings per trap is especially relevant as per trap harvesting costs, especially bait, are expected
to rise in the near future. For example, from 2018 to 2019 the U.S. Atlantic herring quota was cut
by 80 percent and is expected to remain low in coming years (NMFS 2019c). Because herring
has been the most important American lobster bait, the reduced quota could cause bait shortages
and higher prices in the near-term, increasing per trap lobster harvesting costs (though other bait
alternatives may mitigate higher costs) (NMFS 2019c).
3B. Maine landings and number of traps over time
Maine is the largest contributor to the American lobster fishery, with fishers in the state bringing
in 83.3 percent of total U.S. catch in 2016 (NMFS Annual Commercial Landings Statistics). The
Maine Department of Marine Resources maintains a database of historical Maine lobster
landings that details the number of traps in the fishery (Maine DMR 2019).9 The number of traps
used by Maine lobster fishers grew through the late 1980s and 90s to reach a high in 2006 of
3.283 million traps, and has since tapered off [Figure 16]. Landings have shown strong growth
throughout, driving the overall growth in the U.S. lobster fishery despite the collapse of the
southern New England stock since the late 1990s [Figure 16] (ASMFC 2015).

9

From 1981 to 1995, DMR calculated the number of traps used by estimating the number of active boats and mean
traps per harvester. From 1996 to 2016 the number of traps was taken from the number of trap tags sold.

19

120

3

100

2.5

80

2

60

1.5

40

1

20

0.5

16

14

20

20

12

20

10

08

Year
Landings per trap

20

20

06

20

04

02

20

20

00

20

98

96

Total landings weight

19

19

94

19

92

19

19

19

19

90

0
88

0

Number of traps (millions)

3.5

86

Landings weight (millions of lbs) and
landings per trap (lbs)

Maine landings per trap, number of traps, and total landings
140

Number of traps

Figure 16: Maine lobster landings per trap, number of traps (an upper bound indicated by the number of trap tags
sold), and total landings weight from 1986 to 2017. Landings per trap were relatively stagnant except from 2007 to
2013, when landings per trap increased substantially year on year, correlating with a decrease in the number of traps
and faster rate of growth in total landings. Data from National Marine Fisheries Service Annual Commercial
Landings and Maine Department of Marine Resources Historical Maine Lobster Landings.

Although many factors impact landings, historically a reduction in number of traps has not been
connected to reduced landings in Maine. Landings per trap have been relatively stagnant in
Maine for most of the last three decades, except for a period from 2007 to 2013 when landings
per trap grew rapidly year on year. During this period, landings per trap grew 124 percent from
19.6lbs to 43.8lbs. This growth in landings per trap correlates with a 10.5 percent decrease in
number of traps and a doubling in landings (100.2 percent increase). As discussed above (section
3A), landings per trap is a better proxy for fishing profit than landings alone. The rate of growth
of total landings weight was also faster after trap numbers began to fall: from 2007 to 2016
Maine landings grew by 207 percent, whereas from 1997 to 2006 landings grew by 160 percent,
and landings grew by 183 percent in the decade prior. Such a correlation between reduced effort
and increased landings is characteristic of an overexploited fishery.
3C. Massachusetts landings before and after implementation of the Massachusetts
Restricted Area trap/pot seasonal closure
In 2015, NMFS expanded trap/pot seasonal closures in the Massachusetts Restricted Area and
the Great South Channel to protect significant aggregations of North Atlantic right whales
known to feed in these areas each year [Figure 17] (NMFS 2014b). The Massachusetts Restricted
Area is closed to trap/pot fishing from February 1st to April 30th and the Great South Channel is
closed to trap/pot fishing from April 1st to June 30th (NMFS 2014b). In 2017, 2018, and 2019,
the Massachusetts Division of Marine Fisheries extended the closure in Cape Cod Bay by up to
14 days due to the continued presence of endangered right whales (Massachusetts DMF 2017;
2018; 2019). We focus on the Massachusetts Restricted Area closure in this study because it
fully covers multiple Statistical Reporting Areas, making it more feasible to discern the change
20

in landings since the closure was implemented, and because the Massachusetts Restricted Area
contributes a greater portion of total statewide landings.

Figure 17: Map showing the Massachusetts Restricted Area (green) and Great South Channel (blue) Trap/Pot
Closures and Massachusetts lobster harvesting Statistical Reporting Areas (SRAs). The Massachusetts Restricted
Area closure includes all of SRAs 6, 7, 8, and 9 and most of SRA 5, as well as portions of SRA 18 and 19. The
Great South Channel is located within SRAs 18 and 19. Map created in QGIS using shapefiles from NMFS Greater
Atlantic Regional Fisheries Office (Great South Channel Restricted Trap/Pot Area and Massachusetts Restriced
Area) and MassGIS Bureau of Geographic Information (Lobster Harvest Zones, State Outline, and New England).

These Massachusetts Restricted Area closure primarily impacts Massachusetts-based fishers,
especially those fishing Massachusetts’ south shore, Cape Cod Bay, and the outer Cape, though
the exact number of fishers affected is unclear. In an amendment to the final rule establishing the
trap/pot fishery closure published in 2014, NMFS estimated that “slightly more than” 125 fishers
would be affected by the Massachusetts Restricted Area closure (NMFS 2014b). The
Massachusetts Division of Marine Fisheries (DMF) has identified 172 individuals who
previously fished in Statistical Reporting Areas that fall within the Massachusetts Restricted
Area during February, March, and April who can no longer do so (Massachusetts DMF
unpublished data). Representatives of the fishing industry have recently estimated that 250
fishers are affected (Casoni 2018). In 2017, there were 1,018 commercial lobster permits
licensed in Massachusetts, of which approximately 780 are actively fished (Massachusetts DMF
unpublished data). Therefore, according to these estimates the Massachusetts Restricted Area
closure affects between 16 and 32 percent of Massachusetts’ active lobster fishers.
Since the seasonal closures last at least three months, fishers who are impacted often publicly
state that they lose at least one quarter of their income each year due to the closures (Abel 2019a;
Abel 2019b). Some fishers claim that the three-month closure effectively becomes five months,
causing them to lose closer to 40 percent of their annual income because it takes about one
month to remove their traps before the February 1st start date and another month to replace them
once the fishery reopens (Abel 2019a; Abel 2019b; Casoni 2019). However, in the three years

21

for which Vessel Trip Report data are available since the closure was implemented (2015, 2016,
and 2017), lobster landings in the Statistical Reporting Areas (SRAs) covered by the closures
have continued to grow to record highs [Figure 18] (Massachusetts DMF unpublished data).
Vessel Trip Reports are collected for all commercial vessels fishing in Massachusetts waters
(ASMFC 2018a).
Lobster landings in Massachusetts Statistical Reporting Areas 5 to 9
4,500,000
4,000,000
Annual landings, lbs

3,500,000
3,000,000
2,500,000
2,000,000
1,500,000
1,000,000
500,000

16
20

14
20

12
20

10
20

08
20

06
20

04
20

02
20

00
20

98
19

96
19

94
19

92
19

19

90

0

Year
SRA 5

SRA 6

SRA 7

SRA 8

SRA 9

Total MRA

Figure 18: Annual lobster landings weight, in millions of pounds, for Massachusetts Statistical Reporting Areas
(SRAs) 5, 6, 7, 8, and 9 from 1990 to 2017. Vertical line indicates the start of the Massachusetts Restricted Area
Trap/Pot Closure in 2015. The Massachusetts Restricted Area Trap/Pot Closure includes all of SRAs 6, 7, 8, and 9,
as well as most of SRA 5 and small portions of SRAs 18 and 19. Data from the Massachusetts Division of Marine
Fisheries (unpublished).

The growth in landings in the Massachusetts Restricted Area is consistent with statewide trends:
Massachusetts state landings value reached record highs for all three years for which data are
available since the closure was implemented (2015, 2016, and 2017) [Figure 19] (NMFS Annual
Commercial Landings Statistics). Massachusetts’ landings weight also reached an all-time high
in 2016, and 2015 and 2017 were the fifth and third highest years on record, respectively [Figure
19] (NMFS Annual Commercial Landings Statistics).

22

Massachusetts landings (millions lbs)

90

18

80

16

70

14

60

12

50

10

40

8

Feb. 1, 2015: Massachusetts Restricted
Area seasonal closure went into effect
April 1, 2015: Great South Channel
seasonal closure went into effect

6
4
2

30
20
10

16
20

14
20

12
20

10
20

08
20

06

04

20

20

02

00

20

20

98
19

96
19

94
19

92
19

90
19

88

0

19

19

86

0

Massachusetts landings value (millions USD)

Massachusetts lobster landings

20

Year
MA landings (lbs)

MA landings (value, USD)

Figure 19: Massachusetts state landings by weight and value from 1986 to 2017. The Massachusetts Restricted Area
and Great South Channel seasonal trap/pot closures took effect in 2015. Data from National Marine Fisheries
Service Annual Commercial Landings Statistics.

Standardizing landings weight to 1990 in the primary SRAs covered by the Massachusetts
Restricted Area and the rest of Massachusetts shows that commercial lobster fishers in SRAs 5 to
9 have experienced stronger growth than those in the rest of the state since the closure was
implemented. Landings growth in SRAs 5 to 9 continued consistently since the seasonal closure
was implemented on February 1st, 2015, but was inconsistent elsewhere [Figure 20]. Notably,
landings weight in SRAs 5 to 9 did not drop from 2016 to 2017, in contrast to the rest of
Massachusetts and most of the Northeast U.S. When compared to neighboring areas (SRAs 1 to
4 to the north of the Massachusetts Restricted Area and SRAs 10 to 14 to the south), the SRAs
covered by the closure have also shown stronger relative growth [Figure 21].

23

Landings weight, standardized to 1990

3

American lobster landings weight in the Statistical Reporting
Areas covered by the Massachusetts Restricted Area closure and
the rest of Massachusetts

2
1
0
1990 1992 1994 1996 1998 2000 2002 2004 2006 2008 2010 2012 2014 2016
-1
-2
-3
-4

Year
Massachusetts Restricted Area

Rest of Massachusetts

9

Lobster landings in Statistical Reporting Areas covered by the
Massachusetts Restricted Area closure and neighboring areas

8
7
6
5
4
3
2
1

SRAs 1-4

Year
SRAs 5-9

16
20

14
20

12
20

10
20

08
20

06
20

04
20

02
20

00
20

98
19

96
19

94
19

19

19

92

0

90

Landings weight, millions of pounds

Figure 20: American lobster commercial landings weight standardized to 1990 landings in the primary Statistical
Reporting Areas (SRAs) covered by the Massachusetts Restricted Area (SRAs 5, 6, 7, 8, and 9) and the rest of the
state of Massachusetts. The Massachusetts Restricted Area seasonal trap/pot fishery closure took place on February
1st, 2015. Data from Massachusetts Division of Marine Fisheries (unpublished) and National Marine Fisheries
Service Annual Commercial Landings Statistics.

SRAs 10-14

Figure 21: Lobster landings weight in the Statistical Reporting Areas (SRAs) covered by the Massachusetts
Restricted Area (5-9) and to the north (1-4) and south (10-14) from 1990 to 2017. Relative growth in landings in
SRAs 5 to 9 was stronger than in neighboring areas since the closure was implemented. Vertical line indicates the
start of the three-month closure in 2015. Data from Massachusetts Division of Marine Fisheries (unpublished).

24

Landings weight (millions lbs)

4

Massachusetts monthly lobster landings weight and ex-vessel price

3.5
3
2.5
2
1.5
1
0.5
Jan-07
Jun-07
Nov-07
Apr-08
Sep-08
Feb-09
Jul-09
Dec-09
May-10
Oct-10
Mar-11
Aug-11
Jan-12
Jun-12
Nov-12
Apr-13
Sep-13
Feb-14
Jul-14
Dec-14
May-15
Oct-15
Mar-16
Aug-16
Jan-17
Jun-17
Nov-17
Apr-18
Sep-18

0

10
9
8
7
6
5
4
3
2
1
0

Price per pound (USD)

Lobster is not harvested evenly throughout the year, but rather landings are typically low in
February, March, and April. This was a significant part of the rationale for amending the
Massachusetts Restricted Area closure start date from January 1st to February 1st, which NMFS
did before the closure was enacted in 2015 (NMFS 2014b). Although landings during the closure
period have historically been very low across the state, low weight is in part compensated for by
higher price per pound [Figure 22] (Atlantic Coastal Cooperative Statistics Program). Fishers
who previously may have harvested during the closure months could have experienced a
negative economic impact even if they were able to harvest more weight later on, since they
would be selling it for a lower price.

Month
Landings weight

Price

Figure 22: Massachusetts monthly lobster landings weight and ex-vessel price per pound, January 2007 to
December 2018. Price is nominal and not adjusted for inflation. Data from Atlantic Coastal Cooperative Statistics
Program.

However, average lobster landings from February, March, and April in SRAs 5 to 9 changed by
only 19,450 pounds from the four-year period immediately before the Massachusetts Restricted
Area closure was implemented (2011 to 2014) to the four-year period immediately after (2015 to
2018) (Massachusetts DMF unpublished data). When monthly landings weight is multiplied by
the average price per pound in Massachusetts for each month, we find that this 19,450 pound
difference is equivalent to a change in revenue of about $94,000 for all of SRAs 5 to 9
(Massachusetts DMF unpublished data) [Figure 23]. Since the closure was implemented, SRAs 5
to 9 have landed an average of 4.16 million pounds of lobster worth about $19.41 million
annually10 (Massachusetts DMF unpublished data; NMFS Annual Commercial Landings
Statistics). The change in landings during the closure months is therefore worth only about 0.5
percent of annual landings from these areas. On the other hand, annual landings from SRAs 5 to
9 have gone up about 587,800 pounds since the closure was implemented (Massachusetts DMF
unpublished data), an overall increase approximately 30 times greater than the amount lost
10

This value was calculated by multiplying the average annual portion of statewide landings from SRAs 5 to 9
(0.2396) by the average landings value for the state of Massachusetts ($80,991,600) from 2015 to 2017.
25

during the closure months. Overall, the loss in landings during the high-price closure period has
therefore been more than compensated for by growth in total landings.

300,000

Lobster landings value from Massachusetts Statistical Reporting
Areas 5 to 9 in February, March, and April

Landings value, USD

250,000
200,000
150,000
100,000
50,000

February

Year
March

April

18
20

17
20

16
20

15
20

14
20

13
20

12
20

11
20

10
20

09
20

08
20

07
20

06
20

20

05

0

Total

Figure 23: Lobster landings value in February, March, and April from Massachusetts Statistical Reporting Areas 5
to 9, 2005 to 2018. Landings value from these areas dropped approximately $94,000 from the period immediately
before to the period immediately after the closure was implemented. Vertical line indicates the start of the
Massachusetts Restricted Area trap/pot closure in 2015. Landings value calculated by multiplying landings weight
for each area by average price for Massachusetts for that month and year. Value is nominal and not adjusted for
inflation. Data from Massachusetts Division of Marine Fisheries (unpublished).

It is important to note that landings by SRA and by state mask individual differences among
fishers, some of whom may have lost income due to the closures. This analysis also does not
address potential changes in the portions of SRAs 18 and 19 that are covered by the
Massachusetts Restricted Area, since finer scale data would be needed to separate landings from
the closure portions and the rest of those areas. Additionally, changing local oceanographic
conditions affect how much lobster biomass is available to harvest (Goode et al. 2019,
Oppenheim et al. 2019), making it difficult to isolate the impact of the closures. However, the
available evidence does not demonstrate that the Massachusetts Restricted Area closure has had
an overall negative economic impact. Instead, landings have reached record highs, and landings
from the primary SRAs covered by the Massachusetts Restricted Area showed stronger and more
consistent growth than from the rest of the state. The closure may allow for a buildup in lobster
biomass that is brought in later in the season, as can occur with effort reduction (Myers et al.
2007). Lobsters that otherwise would have been caught during the closure period increase in size
(leading to higher landings weight if they are caught later on) and contribute to the reproductive
cycle to grow the total stock.
Massachusetts’ recent experience with the Massachusetts Restricted Area trap/pot closure
suggests that seasonal closures will not necessarily cause landings to drop. The reduction in
effort that occurred with the closure did not correlate with a drop in landings. In contrast,
landings have continued to rise since the closure was implemented.

26

4. Discussion
Available evidence does not show that landings in the U.S. lobster fishery will necessarily fall
with effort reduction. In contrast, in both Maine and Massachusetts an actual or presumed drop
in effort has correlated with record high landings, and the significant overcapacity in the Maine
fishery compared to Lobster Fishing Area 34 suggests that effort could be substantially reduced
and allow fishers to harvest the same landings with lower costs. Therefore, a negative economic
impact should not be presumed with right whale bycatch mitigation measures that include or
could cause a reduction in fishing effort; the economic impact of effort reduction could in fact be
positive.
Although many factors influence total landings, the potential capacity to harvest the same
landings with approximately 7.5 times less effort and the correlation between reduced effort and
higher landings in the U.S. lobster fishery is typical of an overexploited resource (Worm et al.
2009). It is also in line with international fishing trends: effective catch per unit effort—a
standard measure of fishing efficiency calibrated to technological advancement—has decreased
by approximately 80 percent in North America from 1950 to 2015, as fishing exploitation has
expanded faster than fish stocks can support (Rousseau et al. 2019). Precaution regarding
overexploitation is especially important as multiple indicators show that the Gulf of Maine
American lobster stock is unlikely to sustain current high abundance levels in the near future
(ASMFC 2015; Oppenheim et al. 2019) and as the Gulf of Maine continues to warm at a rapid
rate (Pershing et al. 2015; Record et al. 2019).
For the U.S. American lobster fishery to continue to be successful for generations, it is in the best
interest of fishers to scale back effort in advance of an ecological or economic crisis (Steneck et
al. 2011). As available evidence indicates that the U.S. lobster fishery is currently operating with
significant overcapacity, doing so may also support higher profits in the near-term. If fishing
effort is scaled back in a manner that reduces the number and strength of vertical endlines, it will
simultaneously serve to reduce entanglement risk for North Atlantic right whales. This study
provides particular support for a trap reduction implemented in concert with a set minimum
number of traps per trawl or an endline cap, as well as seasonal closures. Additional closures in
areas of high right whale aggregation could provide significant conservation benefit and may not
have a net negative economic impact if overall landings gains exceed losses during the closure
period. Other right whale protection measures that may indirectly lead to a reduction in effort,
such as ropeless fishing, could also serve to reduce overexploitation in the lobster fishery.
Implementing ropeless fishing together with a trap reduction could strengthen this benefit while
reducing the upfront cost of technological transition.
After decades of insufficient protections, the U.S. American lobster fishery is facing potentially
significant new regulations to protect North Atlantic right whales from entanglement. However,
a negative economic impact should not be presumed with such measures; right whale bycatch
mitigation measures that include or could cause a reduction in lobster fishing effort may support
higher profits and the long-term sustainability of the fishery.

27

Acknowledgments
We thank Erica Fuller of the Conservation Law Foundation and Burton Shank from the National
Oceanic and Atmospheric Administration’s Northeast Fisheries Science Center for their review
and feedback on this manuscript.
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Nature’s Solution

T O C L I M AT E C H A N G E
A strategy to protect whales can limit greenhouse gases and global warming

W

hen it comes to saving the planet, one
whale is worth thousands of trees.
Scientific research now indicates more
clearly than ever that our carbon footprint—the
release of carbon dioxide (CO2) into the atmosphere,
where it contributes to global warming through the
so-called greenhouse effect—now threatens our
ecosystems and our way of life. But efforts to mitigate
climate change face two significant challenges. The
first is to find effective ways to reduce the amount
of CO2 in the atmosphere or its impact on average
global temperature. The second is to raise sufficient
funds to put these technologies into practice.
Many proposed solutions to global warming,
such as capturing carbon directly from the air

34

FINANCE & DEVELOPMENT | December 2019

and burying it deep in the earth, are complex,
untested, and expensive. What if there were a
low-tech solution to this problem that not only was
effective and economical, but also had a successful
funding model?
An example of such an opportunity comes from
a surprisingly simple and essentially “no-tech”
strategy to capture more carbon from the atmosphere: increase global whale populations. Marine
biologists have recently discovered that whales—
especially the great whales—play a significant role
in capturing carbon from the atmosphere (Roman
and others 2014). And international organizations
have implemented programs such as Reducing
Emissions from Degradation and Deforestation

PHOTOS: ISTOCK/JAMESTEOHART; MAMMUTH

Ralph Chami, Thomas Cosimano, Connel Fullenkamp, and Sena Oztosun

CHART 1

Whale carbon and oxygen flux
Atmospheric carbon

Solar energy

Atmospheric oxygen

Phytoplankton
Movement

Whale Pump
All whales dive underwater to feed
and return to the surface to breathe.
At the surface, they release buoyant
fecal plumes that are rich in nutrients
that phytoplankton need to grow.

Great Whale Conveyor Belt
Many whales migrate from nutrient-rich feeding grounds to nutrient-poor
breeding grounds. On the breeding grounds, whales release nitrogen-rich
urea that can stimulate phytoplankton growth.

Movement

Nutrient flux

Feeding grounds

Breeding grounds

Carbon flux

Biomass Carbon
All living things are made of carbon and thus
serve as carbon reservoirs throughout their
lifespans. The larger and more long-lived the
animal, the more carbon is stored.

Waste products
Oxygen flux

Deadfall Carbon
When large marine vertebrates die, their carcasses
sink to the seafloor. There, the carbon inside their
carcasses can support deep-sea ecosystems and be
incorporated into marine sediments.
Deep Ocean Floor
© GRID-Arendal 2019

(REDD) that fund the preservation of carboncapturing ecosystems.
Adapting these initiatives to support international
efforts to restore whale populations could lead to a
breakthrough in the fight against climate change.
The carbon capture potential of whales is truly
startling. Whales accumulate carbon in their bodies
during their long lives. When they die, they sink to
the bottom of the ocean; each great whale sequesters
33 tons of CO2 on average, taking that carbon out
of the atmosphere for centuries. A tree, meanwhile,
absorbs only up to 48 pounds of CO2 a year.
Protecting whales could add significantly to carbon
capture because the current population of the largest
great whales is only a small fraction of what it once
was. Sadly, after decades of industrialized whaling,
biologists estimate that overall whale populations are
now less than one-fourth what they once were. Some
species, like the blue whales, have been reduced to
only 3 percent of their previous abundance. Thus,
	

the benefits from whales’ ecosystem services to us
and to our survival are much less than they could be.
But this is only the beginning of the story.

The whale pump
Wherever whales, the largest living things on
earth, are found, so are populations of some of the
smallest, phytoplankton. Not only do these microscopic creatures contribute at least 50 percent
of all oxygen to our atmosphere, they do so by
capturing about 37 billion metric tons of CO2,
an estimated 40 percent of all CO2 produced. To
put things in perspective, we calculate that this is
equivalent to the amount of CO2 captured by 1.70
trillion trees—four Amazon forests’ worth—or 70
times the amount absorbed by all the trees in the
US Redwood National and State Parks each year.
More phytoplankton means more carbon capture.
In recent years, scientists have discovered that
whales have a multiplier effect of increasing
December 2019 | FINANCE & DEVELOPMENT

35

phytoplankton production wherever they go.
How? It turns out that whales’ waste products
contain exactly the substances—notably iron and
nitrogen—phytoplankton need to grow. Whales
bring minerals up to the ocean surface through their
vertical movement, called the “whale pump,” and
through their migration across oceans, called the
“whale conveyor belt” (see Chart 1). Preliminary
modeling and estimates indicate that this fertilizing
activity adds significantly to phytoplankton growth
in the areas whales frequent.
Despite the fact that nutrients are carried into
the ocean through dust storms, river sediments,
and upwelling from wind and waves, nitrogen and
phosphorus remain scarce and limit the amount of
phytoplankton that can bloom in warmer parts of
the oceans. In colder regions, such as in the Southern
Ocean, the limiting mineral tends to be iron. If
more of these missing minerals became available
in parts of the ocean where they are scarce, more
phytoplankton could grow, potentially absorbing
much more carbon than otherwise possible.

Letting whales live
This is where the whales come in. If whales were
allowed to return to their prewhaling number of 4
to 5 million—from slightly more than 1.3 million
today—it could add significantly to the amount
of phytoplankton in the oceans and to the carbon
they capture each year. At a minimum, even a 1
percent increase in phytoplankton productivity
thanks to whale activity would capture hundreds of
millions of tons of additional CO2 a year, equivalent
to the sudden appearance of 2 billion mature trees.
Imagine the impact over the average lifespan of a
whale, more than 60 years.
Despite the drastic reduction in commercial
whaling, whales still face significant life-threatening
hazards, including ship strikes, entanglement in
fishing nets, waterborne plastic waste, and noise
pollution. While some species of whales are recovering—slowly—many are not.
Enhancing protection of whales from humanmade dangers would deliver benefits to humans,
the planet, and of course, the whales themselves.
This “earth-tech” approach to carbon sequestration
also avoids the risk of unanticipated harm from
suggested untested high-tech fixes. Nature has
had millions of years to perfect her whale-based
carbon sink technology. All we need to do is let
the whales live.
36

FINANCE & DEVELOPMENT | December 2019

Now we turn to the economic side of the solution. Protecting whales has a cost. Mitigating the
many threats to whales involves compensating
those causing the threats, a group that includes
countries, businesses, and individuals. Ensuring
that this approach is practical involves determining
whales’ monetary value.

International public good
Whales produce climate benefits that are dispersed
all over the globe. And because people’s benefits from
the existence of whales do not diminish the benefits
that others receive from them, they are a textbook
public good (see Chart 2). This means that whales are
affected by the classic “tragedy of the commons” that
afflicts public goods: no individual who benefits from
them is sufficiently motivated to pay his or her fair
share to support them. Just think of the importance
of earth’s atmosphere to humans’ survival. Even
though all nations acknowledge that everyone has
an interest in preserving this common resource for
the future, global coordination remains a problem.
To solve this international public goods problem,
we must first ask, What is the monetary value of a
whale? Proper valuation is warranted if businesses
and other stakeholders are to be galvanized to save
the whales by showing that the benefits of protecting
them far exceed the cost. We estimate the value of an
average great whale by determining today’s value of
the carbon sequestered by a whale over its lifetime,
using scientific estimates of the amount whales
contribute to carbon sequestration, the market price
of carbon dioxide, and the financial technique of
discounting. To this, we also add today’s value of the
whale’s other economic contributions, such as fishery
enhancement and ecotourism, over its lifetime. Our
conservative estimates put the value of the average
great whale, based on its various activities, at more
than $2 million, and easily over $1 trillion for the
current stock of great whales.
But there is still the question of how to reduce
the myriad dangers to whales, such as ship strikes
and other hazards. Luckily, economists know how
these types of problems can be solved. In fact, a
potential model for such solutions is the United
Nations (UN) REDD program. Recognizing that
deforestation accounts for 17 percent of carbon
emissions, REDD provides incentives for countries
to preserve their forests as a means of keeping CO2
out of the atmosphere. In a similar way, we can create
financial mechanisms to promote the restoration

THE ECONOMICS OF CLIMATE

CHART 2

The whale is an international public good

Summer feeding grounds
Winter breeding grounds
Probable resident population
Summer and winter relates to seasons
in the Northern Hemisphere.

Source: Adapted from CONABIO, Informe final
del Proyecto W024: La ballena jorobada
(Megaptera novaeangliae) en la Norma Oficial
Mexicana, 2002.

of the world’s whale populations. Incentives in the
form of subsidies or other compensation could help
those who incur significant costs as a result of whale
protection. For example, shipping companies could
be compensated for the cost of altered shipping
routes to reduce the risk of collisions.
This solution, however, raises questions that are
tricky to answer. To begin with, a financial facility
for protecting whales and other natural assets must
be set up and funded. Exactly how much should we
be willing to spend on protecting the whales? We
estimate that, if whales were allowed to return to
their prewhaling numbers—capturing 1.7 billion
tons of CO2 annually—it would be worth about
$13 a person a year to subsidize these whales’ CO2
sequestration efforts. If we agree to pay this cost, how
should it be allocated across countries, individuals,
and businesses? How much should each individual,
company, and country that must bear some of the
cost of protecting whales be compensated? And
who will oversee the compensation and monitor
compliance with the new rules?
International financial institutions, in partnership with other UN and multilateral
organizations, are ideally suited to advise, monitor,
and coordinate the actions of countries in protecting
	

© GRID-Arendal 2019

whales. Whales are commonly found in the waters
around low-income and fragile states, countries that
may be unable to deal with the needed mitigation
measures. Support for these countries could come,
for example, from the Global Environment Facility,
which typically provides support to such countries to
meet international environmental agreements. The
IMF is also well placed to help governments integrate
the macroeconomic benefit that whales provide in
mitigating climate change, as well as the cost of
measures to protect the whales, into their macro-fiscal
frameworks. The World Bank has the expertise to
design and implement specific programs to compensate private sector actors for their efforts to protect
whales. Other UN and multilateral organizations
can oversee compliance and collect data to measure
the progress of these efforts.

A new mindset
Coordinating the economics of whale protection
must rise to the top of the global community’s climate
agenda. Since the role of whales is irreplaceable in
mitigating and building resilience to climate change,
their survival should be integrated into the objectives
of the 190 countries that in 2015 signed the Paris
Agreement for combating climate risk.
December 2019 | FINANCE & DEVELOPMENT

37

THEME TITLE

CHART 3

$
$
$
$
$
$
$
$ $ $$
$
$
$ $$
$ $$ $ $ $
$
$ $$$$
$
$
$
$
$ $$ $$ $ $ $
$
$
$
$
$
$
$ $$ $
$
$
$
$
$
$ $ $ $ $$ $$$$$$$$ $$$ $$ $$
$
$
$
$
$
$
$
$
$
$$$ $
$ $$
$
$
$
$
$
$
$
$
$
$
$
$
$ $$
$
$
$
$
$
$
$
$ $$
$ $ $ $
$
$ $
Fishing industry estimated
at over $150 billion. Whales
contribute to the food
web chain and increased
fish stocks.

ale w orth?
How much is one w h

Whale watching
industry estimated at
over $2 billion globally.

$$$$ $$$ $$ $$
$$

$

International institutions and governments,
however, must also exert their influence to bring
about a new mindset—an approach that recognizes
and implements a holistic approach toward human
survival, which involves living within the bounds
of the natural world. Whales are not a human
solution—these great creatures having inherent
value of their own and the right to live—but this
new mindset recognizes and values their integral
place in a sustainable ocean and planet. Healthy
whale populations imply healthy marine life including fish, seabirds, and an overall vibrant system
that recycles nutrients between oceans and land,
improving life in both places. The “earth-tech”
strategy of supporting whales’ return to their previous abundance in the oceans would significantly
benefit not only life in the oceans, but also life on
land, including our own.
With the consequences of climate change here
and now, there is no time to lose in identifying
and implementing new methods to prevent or
reverse harm to the global ecosystem. This is
especially true when it comes to improving the
protection of whales so that their populations can
grow more quickly. Unless new steps are taken,
we estimate it would take over 30 years just to
38

Each whale sequesters 33
tons of CO2, on average,
when it dies and sinks to
the ocean floor.

$
$
$$
$$
$
$
$
$$
$ $$
$
$ $$
$
$$
$ $
$ $$
$
$ $
$ $$
$ $ $ $$
$
$
$

$ $$
$
$

$
$
$

$$

FINANCE & DEVELOPMENT | December 2019

Phytoplankton productivity,
which is enhanced by
whales, captures 37 billion
tons of CO2 per year.

© GRID-Arendal 2019

double the number of current whales and several
generations to return them to their prewhaling
numbers. Society and our own survival can’t
afford to wait this long.
RALPH CHAMI is an assistant director and SENA OZTOSUN is a
research analyst in the IMF’s Institute for Capacity Development,
THOMAS COSIMANO is professor emeritus at the University
of Notre Dame’s Mendoza College of Business, and CONNEL
FULLENKAMP is professor of the practice of economics and
director at Duke University’s Economics Center for Teaching.
References:
Lavery, T., B. Roudnew, P. Gill, J. Seymour, L. Seuront, G. Johnson, J. Mitchell, and
V. Smetacek. 2010. “Iron Defecation by Sperm Whales Stimulates Carbon Export in
the Southern Ocean.” Proceedings of the Royal Society B: Biological Sciences 277,
no. 1699:3527–31.
Lutz, S., and A. Martin. 2014. Fish Carbon: Exploring Marine Vertebrate Carbon
Services. Arendal, Norway: GRID-Arendal.
Pershing, A., L. Christensen, N. Record, G. Sherwood, and P. Stetson. 2010. “The Impact of
Whaling on the Ocean Carbon Cycle: Why Bigger Was Better.” PLoS One 5, no. 8:1–9.
Roman, J., J. Estes, L. Morissette, C. Smith, D. Costa, J. McCarthy, J. B. Nation, S.
Nicol, A. Pershing, and V. Smetacek. 2014. “Whales as Marine Ecosystem Engineers”
Frontiers in Ecology and the Environment 12, no. 7: 377–85.
Smith, C., J. Roman, and J. B. Nation. 2019. “A Metapopulation Model for Whale-Fall Specialists:
The Largest Whales Are Essential to Prevent Species Extinctions—The Sea.”Unpublished.

See discussions, stats, and author profiles for this publication at: https://www.researchgate.net/publication/270509225

Incremental fishing gear modifications fail to significantly reduce large whale
serious injury rates
Article  in  Endangered Species Research · December 2014
DOI: 10.3354/esr00635

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Vol. 26: 115–126, 2014
doi: 10.3354/esr00635

ENDANGERED SPECIES RESEARCH
Endang Species Res

Published online December 10

OPEN
ACCESS

Incremental fishing gear modifications fail to
significantly reduce large whale serious injury rates
Richard M. Pace III*, Timothy V. N. Cole, Allison G. Henry
Northeast Fisheries Science Center, National Marine Fisheries Service, 166 Water Street, Woods Hole, MA 02543, USA

ABSTRACT: A major and immediate goal of the US Marine Mammal Protection Act is the reduction of marine mammal mortality incidental with commercial fishing operations. Under articles of
the Act, the Atlantic Large Whale Take Reduction Plan (ALWTRP) was developed and implemented to reduce entanglement mortality of North Atlantic right whales Eubalaena glacialis, Gulf
of Maine humpback whales Megaptera novaeangliae, and western North Atlantic fin whales Balaenoptera physalus by requiring modifications to commercial fishing gear (i.e. pots and sink gillnets). Although they undercount the number of entanglements, counts of detected incidents of
entanglements and entanglement-related mortality are the primary index to entanglement mortality. We analyzed the annual counts of large whale entanglements including serious injuries and
mortalities attributed to entanglements to evaluate the effectiveness of the ALWTRP from 1999 to
2009. The annual number of mortality events (including serious injuries) related to fishing gear
entanglements averaged 2.5 for right whales, 6.5 for humpbacks, 0.6 for fin whales, and 2.4 for
minke whales B. acutorostrata. Annual entanglement rates increased during the study period, but
evidence for increased rates of entanglement-related mortality was equivocal. No significant
changes occurred in waiting time (the number of days between entanglement events) in response
to any management measures implemented to reduce large whale mortalities between 1998 and
2009, implying that these measures were generally ineffective in abating whale deaths from
entanglements in fishing gear.
KEY WORDS: By-catch · Human-caused mortality · Large whales · Efficacy tests

INTRODUCTION
Cetaceans, including large whales, frequently
become entangled in commercial fishing gear, and
some entanglements result in injuries that may lead
to the whale’s death (Moore et al. 2005). In the USA,
all entanglements, regardless of their lethality, constitute ‘a take’ or form of harassment that the Marine
Mammal Protection Act (MMPA) and the Endangered Species Act (ESA) are intended to restrict.
When human-caused mortality exceeds a prescribed
threshold value, the MMPA compels the US government, in this case the National Marine Fisheries
Service (NMFS; US Department of Commerce), to
convene a take reduction team to develop rules to
*Corresponding author: [email protected]

reduce human-caused mortality related to commercial fishing within the exclusive economic zone (EEZ)
of the USA. In developing take reduction plans,
NMFS convenes meetings of stakeholders, primarily
state government representatives, fishing industry
participants, conservation advocates, and academic
scientists, in an attempt to negotiate practical mitigation measures through consensus agreements. Regulations may target both lethal and non-lethal takes,
and it is important that NMFS can demonstrate that a
reduction in entanglements results from these rules.
The set of rules described in the Atlantic Large
Whale Take Reduction Plan (ALWTRP) (National
Marine Fisheries Service 2007) attempts to reduce
entanglement mortality of North Atlantic right
Outside the USA © The US Government 2014. Open Access under
Creative Commons by Attribution Licence. Use, distribution and
reproduction are unrestricted. Authors and original publication
must be credited. Publisher: Inter-Research · www.int-res.com

116

Endang Species Res 26: 115–126, 2014

whales Eubalaena glacialis, Gulf of Maine humpback whales Megaptera novaeangliae, and western
North Atlantic fin whales Balaenoptera physalus by
stipulating fishing restrictions and requirements for
modifications to commercial pot fishing gear and sinking gillnets in the temperate western North Atlantic.
Ideally, the best indicator of the biological effectiveness of ALWTRP rules would be to compare
measures of the incidence of entanglement or mortality rate due to entanglement both before and after
regulations are in place. If we could estimate the
cause-specific mortality due to entanglement at different times, we could gauge the effectiveness of regulations and measure the influence of entanglement
on demographic patterns. However, the logistics of
studying wild cetaceans renders estimates of causespecific mortality unlikely in the near future. Most
whales die far from shore, and few carcasses are discovered for which the cause of mortality can be reasonably assured. Finally, detectability rates may vary
significantly among causes of mortality so that
observed proportions of detected causes may be unreliable estimates (Williams et al. 2011). This detection issue influences any measure of incidence rates,
such that records of entanglement or mortality due to
entanglement likely represent a small subset of
actual entanglements. Using counts of incidents to
judge effectiveness requires an assumption that the
fraction of detected entanglements is not greatly
influenced by the rate of occurrence and has a constant expectation throughout the time series being
examined. Because unbiased estimates of annual
numbers of entanglements, mortality due to entanglement, or even population sizes are not available,
the basic data of raw counts of detected entanglements and deaths are the only direct measure of fisheries interactions with large whales.
We evaluated the ALWTRP’s (National Marine
Fisheries Service 2007) effectiveness in meeting the
stated management goals directed at stocks of several baleen whales that spend significant time in US
waters off the northeastern US coast. These rules
attempt to reduce entanglement mortality of North
Atlantic right whales, Gulf of Maine humpback
whales, and western North Atlantic fin whales by
regulating both commercial pot and sink gillnet fisheries. We note that with the exception of right
whales, we are referencing stocks which are subpopulations recognized in US regulations as spending
significant time in US waters. We were particularly
interested in entanglement data prior to the enactment of a relatively contentious regulation referred to
as the ‘ground line rule’, which requires fishers to use

sinking lines in their gear configurations (National
Marine Fisheries Service 2008). We believed that if
the ALWTRP rules were effective, there would be a
reduction in entanglement-related deaths and concomitantly in the detection of such deaths for these
whale stocks, as well as for the Canadian east coast
minke whale (Balaenoptera acutorostrata) stock,
which is common in the same US waters. Specifically,
we examined entanglement event data to determine
the basic character of the event time series from 1999
through 2009. We also used simulation to examine
the power of these methods, including an assessment
of the influence of population change on the discovery of decreased incidence rates.

METHODS
Large whale entanglements were detected opportunistically by a wide range of observers, including
biologists, commercial fishermen, commercial whale
watchers, recreational boaters, and others. They
were reported to the NMFS primarily through the
Atlantic Large Whale Disentanglement Network and
formal marine mammal stranding networks along the
east coast of the USA and Canada. Those reports
were evaluated by the Northeast Fisheries Science
Center as part of a federal process to quantify serious
injuries and mortalities (e.g. Henry et al. 2011). Here,
those data were used to examine temporal patterns
in reported entanglements of right, humpback, fin,
and minke whales from 1 January 1999 through
31 December 2009. We removed all entanglements
with strong evidence that they occurred outside the
US EEZ (first seen entangled east of Halifax, Nova
Scotia, or entangled in Canadian gear) and those
entangled in gear from fisheries not regulated by the
ALWTRP (principally fish weirs). We evaluated 2 data
sets: all entanglements, and the subset of entanglements judged to result in mortality or serious injury.
Hereafter, the term mortality will refer to any known
dead animals or those judged to have received serious injuries caused by fishery interactions that,
according to NMFS guidelines, would likely result in
death.
We examined these data in 2 different forms: the
annual counts and the waiting times between
detected events. Counts per unit time and waiting
times are 2 measures associated with the same
process, and either type of data may be used to evaluate rates of events through time. Annual counts of
entanglement and mortality events for each species
should resemble a Poisson process, each with its own

Pace et al.: NW Atlantic whale entanglements

inherent rate, and can be summarized with generalized linear models for Poisson data. Waiting times,
which we defined as the numbers of days elapsed
between the discovery dates of 2 subsequent events,
are a continuous analog to the count data and may
offer advantages when analyzing relatively rare
events. In particular, they have a cumulative distribution along a time axis that may inform our examinations. Based on a simulation experiment, Pace (2011)
concluded that waiting times were more sensitive
than counts per unit time for detecting modest
changes (e.g. 50% reduction) when annual detections averaged fewer than 10. Because rates of entanglement detections are low, we focused our analysis
on waiting times.

Statistical analysis
We conducted pair-wise comparisons of annual
rates of entanglements between stocks, and calculated generalized linear models of annual counts and
‘waiting times’ to judge competing hypotheses about
changes in entanglement rates through time. For
each of the 4 stocks, we first examined the waiting
time data relative to fits of models of exponential
waiting times assuming a constant mean annual rate
of entanglement. We estimated the mean exponential waiting time over the entire period and plotted
the empirical cumulative distribution against a theoretical one with the estimated mean as its sole
parameter. Second, we examined pair-wise plots of
counts of entanglements between stocks to look for
common patterns and evaluated Poisson regressions
for pairs that appeared correlated. We combined all
event data in the same model allowing ‘species’ as a
possible predictor, and we fit a series of generalized
linear models (McCullagh & Nelder 1989) to counts
and their associated waiting times between events.
Competing models were, in ascending order of complexity with regard to time:
(1) a single constant rate (null model);
(2) species-specific intercepts and a constant rate
through time;
(3) species-specific intercepts plus 2 different rates
representing the time frames of the initial ALWTRP
and the subsequent expanded gear modifications beginning in 2002 (a breakdown of regulation changes
over time appears in the supplemental material in
van der Hoop et al. 2013);
(4) species-specific intercepts and a linearly (in the
link) changing rate through time;
(5) species-specific intercepts plus a quadratic mo-

117

del of continuous time to accommodate possible multiple reductions in entanglements or entanglementrelated mortalities over time;
(6) species-specific intercepts plus variable rates
among years (i.e. 11 rates, 1 per year 1999−2009); and
(7) species-specific rates (i.e. species by continuous
time interaction).
To count data, we fit analogous logistic regression
models to examine evidence for changes in the proportions of mortalities observed per detected entanglement. All models were developed using the generalized linear model (‘glm’) procedure in R (ver. 2.14)
(R Development Core Team 2011). Model comparisons were based on corrected Akaike’s information
criterion (AICc) and associated weight of evidence
calculations for likelihood models (Anderson 2008).
When there was no clear best model, we used modelaveraged predictions calculated using the R package
‘AICcmodavg’ (ver. 1.24) to summarize relationships.
Evaluations of similar data suggested that a relatively powerful approach for detecting changes may
be to develop regressions of event times against
order of occurrence (cumulative waiting time for an
event versus its occurrence), and to compare models
with and without change points (Pace 2011). The
approach is attractive in that one can visualize and
test for divergence (change point) occurring when a
specific conservation measure is enacted or becomes
effective. However, arranging the data thusly likely
imputes an auto-correlated error structure which
bears consideration, and because the predictor is
now order of occurrence, the method is most suitable
for one species at a time or pooled events. The
ALWTRP rules have been amended in ways that presumably would have increased protection to whales
during the study period, so we fit generalized least
squares models (Pinheiro & Bates 2000) to event
times allowing for auto-correlated errors to examine
the evidence for a change in the rate of entanglement
and entanglement mortality detections in the period
1999 to 2009. Specifically, competing models were
(Fig. 1):
(8) a single slope (a constant rate, not shown in
Fig. 1);
(9) a fixed change point having 2 slopes coinciding
with initial ALWTRP and expanded gear modifications in 2002;
(10) a fixed change point having 2 slopes on either
side of the implementation date for another set of
expanded gear modifications (starting with an entanglement prior to 5 October 2008); and
(11) a linear model with a quadratic term to test for
curvilinear change over the study period.

Endang Species Res 26: 115–126, 2014

118

No population growth
15

15

Annual counts of events

Base = 3 yr

–1

Base = 5 yr –1

10

10

5

5

dure in R for calculations. Model comparisons were based on AICc and
associated weight of evidence calculations for likelihood models (Anderson
2008).

Simulation experiments
0

0

Annual counts of events

We were interested in the general
sensitivity of the above analyses to
15
15
these kinds of moderately low obBase = 10 yr –1
served rates of occurrence over similar
short time frames. So, in addition to
10
10
evaluating the available records of
detected entanglements and the sub–1
Base = 15 yr
5
5
set leading to mortalities, we examined the potential to detect a change
0
0
in rates of events using a set of simulation trials. Specifically, we simulated
1998
2002
2006
1998
2002
2006
sets (1000 each) of randomly generYear
ated exponential waiting times that
2% increase per year due to population growth
could occur over an 11 yr period if the
15
15
rates of occurrence of events were
Base = 3 yr –1
Base = 5 yr –1
generated under the following set of
10
10
experimental conditions:
(1) Base rates of 3, 5, 10, or 15 events
per year; and
5
5
(2) Changes to the base rate (effects)
within a time series diminished at 8 or
0
0
10% per year, or alternatively, after
the first event occurring in Year 5,
15
15
base rates would decrease by 0, 33, or
–1
50%
Base = 10 yr
This yielded 20 experimental set10
10
tings with known mean rates of event
occurrence (see Table 1). For each siBase = 15 yr –1
5
5
mulated data set, we fit the following
models using either a glm or generalized least squares (gls):
0
0
(1) Constant count of events each
1998
2002
2006
1998
2002
2006
year
(Poisson, glm)
Year
(2) Two mean rates, one for Years
Fig. 1. Experimental conditions (i.e. true mean event rates) for simulations to
1−5 and the other for Years 6−11 (Poistest the power of statistical models to detect deviations in exponential waiting
son, glm)
times due to conservation measures that reduce event rates under no growth
and 2% growth scenarios. Each color represents 4 different patterns of change
(3) Graduated rate change (Poisson,
in entanglement mortalities. Constant rate is absent but shown are a 33%
glm)
reduction in Year 5, a 50% reduction in Year 5, and an 8% drop per year
(4) Constant waiting times across
years (Gamma, glm)
To examine whether population growth might act
(5) Different mean waiting times for Years 1−5 and
to obscure substantial conservation benefits, we repYears 6−11 (Gamma, glm)
licated the above experimental conditions assuming
(6) Gradually changing mean waiting time over the
annual 2% growth (Fig. 1). We used the ‘gls’ procestudy period (Gamma, glm)

Pace et al.: NW Atlantic whale entanglements

(7) Event time series with a constant slope (gls,
auto-correlated errors)
(8) Segmented regression allowing the slope of the
event time series to change at the start of Year 6 (gls,
auto-correlated errors)
(9) Linear regression including a quadratic term to
allow for continuous change over the event time
series (gls, auto-correlated errors).
For each trial, we used deviance tests to make the
following model comparisons: 2 vs. 1, 3 vs. 1, 5 vs. 4,
6 vs. 4, 8 vs. 7, and 9 vs. 7. The percent rejections
(alpha = 0.05) were taken as Type I errors under no
change, or as measure of power to detect a true
change for the 20 combinations of 4 base levels and 5
effects.

RESULTS
Whale events evaluated by the
Northeast Fisheries Science Center
for the 11 yr period prior to enactment
of the ground-line rule (1999−2009)
included 167, 59, 62, and 22 records of
entanglements of humpback, right,
minke, and fin whales, respectively,
of which 72, 28, 26, and 7 were classified as serious injuries or mortalities.
Comparisons of counts of entanglements and mortalities between species
showed little agreement, except that
annual right whale entanglements
were correlated with those of humpback whales (Poisson regression with
log link: slope = 0.082 ± 0.30 SE [Pr >
|Z| = 0.0058] probability of a greater
absolute Z-statistic). Empirical distributions of species-specific waiting
times had the same general appearance of exponential random variables
generated by theoretical distributions
derived using the calculated means
as the theoretical mean. Close inspection of these comparisons gave the
impression of a slight lack-of-fit due
to excessive clustering of shorter
waiting times (Fig. 2), but there was
no substantive statistical evidence
that single species models of waiting
times were different from a constant
Poisson process through time.
Generalized linear models provided
substantial evidence that counts of

119

entanglements and mortalities due to entanglement
and their associated waiting times were not consistent during the study period (Table 1). Substantial
differences in base rates were exhibited among
species, with humpback entanglements and mortalities reported more than twice as frequently as those
of right and minke whales, which were much more
common than those of fin whales. Annual counts of
detected entanglements increased, and waiting
times slightly decreased during the study period
(Fig. 3A,B), but results from entanglement-related
mortalities were less clear. Counts of detected mortalities were relatively constant, with a small increase
occurring after 2002, whereas model-averaged predictions of waiting times between mortalities slightly
increased (Fig. 3C,D). Our logistic model provided

Table 1. Results of generalized linear models of waiting times between entanglements or mortalities due to entanglement for 4 species of baleen whales
(Balaenoptera acutorostrata, B. physalus, Eubalaena glacialis, Megaptera
novaeangliae) in the Atlantic exclusive economic zone (EEZ) from 1999 to
2009. K: no. of parameters in the model; AICc: corrected Akaike’s information
criterion
K

AICc

ΔAICc

5
6
5
4
8
14
1

203.84
205.28
206.26
208.96
209.22
218.38
343.19

0
1.44
2.42
5.12
5.38
14.54
139.34

0.52
0.25
0.15
0.04
0.04
0
0

0.52
0.77
0.92
0.96
1
1
1

Entanglement waiting times
Species + Quadratic(Year)
7
Species
5
Species + Year
6
Species + Factor(Year)
15
Species + 2 Periods
6
Species × Year
9
Constant
2

420.54
422.95
423.06
424.59
424.96
430.85
471.64

0
2.42
2.52
4.05
4.42
10.32
51.1

0.55
0.16
0.15
0.07
0.06
0
0

0.55
0.71
0.86
0.94
1
1
1

Mortality + Serious injury counts
Species
3
Species + 2 Periods
4
Species + Year
4
Species + Quadratic(Year)
5
Species × Year
6
Species + Factor(Year)
13
Constant
1

134.05
134.96
136.65
139.43
140.88
153.69
159.32

0
0.91
2.6
5.39
6.84
19.65
25.27

0.5
0.32
0.14
0.03
0.02
0
0

0.5
0.81
0.95
0.98
1
1
1

Mortality + Serious injury waiting times
Species + Year
5
358.07
Species
4
358.08
Species + 2 Periods
5
360.42
Species + Quadratic(Year)
6
360.48
Species × Year
7
363.74
Constant
2
373.09
Species + Factor(Year)
14
375.88

0
0.01
2.35
2.4
5.67
15.01
17.81

0.38
0.37
0.12
0.11
0.02
0
0

0.38
0.75
0.86
0.98
1
1
1

Model

Entanglement counts
Species + Year
Species + Quadratic(Year)
Species + 2 Periods
Species
Species × Year
Species + Factor(Year)
Constant

AICc Cumulative
weight
weight

Endang Species Res 26: 115–126, 2014

120

Entanglements
1.0

1.0
Humpback

Cumulative proportion

0.8
0.6

0.6

0.4

0.4

0.2

0.2

0

Right

0.8

0
0

50

100

150

200

250

300

0

1.0

200

400

600

1.0
Minke

0.8

0.8

0.6

0.6

0.4

0.4

0.2

0.2

0

0
0

100

200

300

400

500

Fin

0

600

500

1000

Time between events (d)
Mortalities
1.0

1.0
Humpback

Cumulative proportion

0.8
0.6

0.6

0.4

0.4

0.2

0.2

0

Right

0.8

0
0

100

200

300

400

0

500

1.0

500

1000

1500

1.0
Minke

0.8

0.8

0.6

0.6

0.4

0.4

0.2

0.2

0

Fin

0
0

500

1000

0

1000

2000

3000

4000

Time between events (d)
Fig. 2. Empirical cumulative distributions (red lines with dots) plotted against their theoretical distributions (solid black lines)
derived from using means of waiting times between detected entanglements or mortalities due to entanglements for 4 species
of large whales (humpback whale Megaptera novaeangliae; right whale Eubalaena glacialis; minke whale Balaenoptera acutorostrata; fin whale B. physalus) monitored in the Atlantic US exclusive economic zone (EEZ) from 1999 to 2009. Note the
different x-axis scales

evidence for a declining trend in the probability that
a detected entanglement would be classified as a
mortality or serious injury, and that the species being
monitored had little influence on proportions
(Table 2, Fig. 4). In the case of minke whale mortalities due to entanglement, a model that predicted
decreased death rates per detected entanglement
over time (quadratic fit; Table 3) had about twice the

supporting evidence than the model fitting only a
constant rate.
Our tests of the cumulative waiting times for entanglements and their related mortalities varied somewhat among species (Fig. 5). In general, there was
modest to little evidence to support deviation in
either the entanglement rate or the lethal entanglement rate from a constant rate during the study

Pace et al.: NW Atlantic whale entanglements

Model Averaged Predictions:5 best
AICc weights = 0.52, 0.25, 0.15, 0.04,Model
0.4
Averaged Predictions−4 best
AICc weights = 0.50, 0.32, 0.14, 0.03

15
10
5
0

2002

2002

2004

2004
Year

2006

2006

Fin

B

300

200

Model Averaged Predictions:5 best
AICc weights = 0.55, 0.16, 0.15, 0.07, 0.06

100

2008

2008

14

2000
350

C

Model Averaged Predictions:4 best
AICc weights = 0.50, 0.32, 0.14, 0.03

Waiting time (d)
detected mortalities

12

Mink
400

0
2000

2000

Annual counts of detected
entanglement mortalties

A

Right

Waiting time (d) between
entanglement detections

20

02468101214

Annual counts of detected
entanglements

Humpback

121

10
8
6
4
2

300

2002

2004

2006

2008

D

Model Averaged Predictions:4 best
AICc weights = 0.38, 0.37, 0.12, 0.11

250
200
150
100
50

0

2000

2002

2004

2006

2008

2000

2002

2004

2006

2008

Year
Fig. 3. Annual values plotted against resulting generalized linear model fits to (A) counts of entanglements, (B) waiting times
between entanglements, (C) counts of mortalities due to entanglement, and (D) waiting times between detected entanglement
mortalities for (A,B) 4 species and (C,D) 3 species of large whales (for full species names see Fig. 2) monitored in the Atlantic
US exclusive economic zone (EEZ) from 1999 to 2009. AICc: corrected Akaike’s information criterion

Not surprisingly, results from our
simulation experiments showed the
marked influence that sample size
(number of events tallied) and effect
sizes (overall reductions in event
rates) have on the chances of detectModel
K
AICc
ΔAICc
AICc Cumulative
ing a true change in event rates
weight
weight
(Fig. 6). A 20% reduction in entanQuadratic(Year)
3
422.38
0
0.43
0.43
glement rate had little chance of
Year
2
422.41
0.03
0.43
0.86
being detected in the simulations
Constant
1
425.5
3.12
0.09
0.95
even when the base rate was 15
Species + Year
5
427.35
4.97
0.04
0.99
entanglements per year. More subSpecies
4
429.96
7.58
0.01
1
Species × Year
8
431.97
9.59
0
1
stantial effect sizes stood a fair
Species + Factor(Year)
288 8526.76 8104.38
0
1
chance of being detected when initial rates were 10 or more per year,
period because there was no clear winner among
and models of waiting times (glm, gamma with
competing models (AICc difference of >8; Tables 3
inverse link) were slightly more powerful at detect& 4). In nearly all instances of evidence supporting
ing true change than those relying on count data.
change elements, the estimated parameters led to
Models of event times were substantially more powmodels predicting that events were more frequent
erful than those for counts or waiting times but, surtoward the end of the study period. Increasing event
prisingly, the Type I error rates for this approach
rates through time was most evident for humpback
were also substantially higher (~40%) than normally
and fin whale entanglements, for which there was no
accepted in the classical statistical paradigm. Incluevidence to support a constant event rate.
ding 2% annual population growth with a concomiTable 2. Results of logistic regression models of probability that a detected
entanglement was a mortality or serious injury for 4 species of baleen whales
(Balaenoptera acutorostrata, B. physalus, Eubalaena glacialis, Megaptera
novaeangliae) in the Atlantic EEZ from 1999 to 2009. See Table 1 for
abbreviations

Endang Species Res 26: 115–126, 2014

122

Pr (fatal entanglements)

0.8

tant increase in mortality events
slightly lowered the rejection rate of
false null hypotheses (Fig. 6), but
modest and large effect sizes were
readily detected.

0.6

0.4

DISCUSSION
0.2

Species
Humpback
Right
Minke

0.0

2000

2004

2002

2006

2008

Year
Fig. 4. Annual proportions of detected entanglements declared to be mortalities or
serious injuries plotted against a logistic regression model fit to events built on
continuous time for 3 species of large whales monitored in the Atlantic US EEZ
from 1999 to 2009. Note that competing models that included species as a predictor had little influence on the model-averaged predicted proportions. Points are
raw species within year proportions. Line is model-averaged using the 4 best AICc
weights = 0.43, 0.43, 0.09, 0.04. Fitted line ± 1 SE. See Fig. 2 for full species names

Entanglements
8

Humpback

4

0

0
0

Years since 1 Jan 1999

8

4
50

100

150

0

Right

8

4

0

0
10

10

20

30

40

50

60

8

4
0

Minke

20

30

40

50

Fin

60

5

10

15

20

Mortalities due to entanglement
Humpback

8

8

Minke

4

4

0

0
0

10 20 30 40

50 60

Right

8

0

70

4

0

0
5

10

15

20

25

8

4
0

5

10

15

20

25

Fin
1

2

3

4

5

6

7

Order
Fig. 5. Plots of event times (years since 1 January 1999) by order of occurrence
for entanglement or mortalities or serious injuries due to entanglement events
for 4 species of large whales (see Fig. 2 for full species names) monitored in the
Atlantic US EEZ from 1999 to 2009. A conservation measure that reduces rates
of occurrence would cause plots to deflect upward (more time between events).
Note the different x-axis scales

The data available for measuring
fisheries interactions with large
whales, as with many situations in
conservation biology, are often too
sparse to support strong conclusions
about the efficacy of attempts to mitigate those interactions. As our simulations showed, rates of detected
entanglement-related mortality must
be reduced substantially (on the
order of 50% or more) to have much
of a guarantee of a change over short
time frames (10 yr) being detected. A
solution to this dilemma may exist
if multiple rare events can be linked
in a common analysis or concomitant predictors can be incorporated
(Dixon et al. 2005). Analyzing a similar time series of events, Pace (2011)
recognized that sums of Poisson processes remain Poisson, and thus he
pooled detected ship strikes of large
whales to achieve greater power in
his evaluations. In our analysis of
the efficacy of rules to mitigate fisheries interactions with large whales,
we used the idea that modifications
to gear may affect interaction rates
with multiple species, and combined
4 species into a common set of analyses to increase the power of our
analyses.
Through our examination of detection times of entanglements and entanglement-related deaths, we found
no evidence to suggest that the
frequency of entanglements or entanglement-related mortality substantially abated during 1999−2009.
The lack of evidence to support declining frequencies of entanglement
or serious injury due to entanglement
remains disappointing, given that
considerable time and expense have

Pace et al.: NW Atlantic whale entanglements

Table 3. Model comparisons of generalized least squares fits (auto-correlated
error structure) to detected mortalities and serious injuries from gear entanglement predicted by competing models on their order of occurrence, for
Megaptera novaeangliae, Eubalaena glacialis, and Balaenoptera acutorostrata.
See Table 1 for abbreviations

123

that events became more frequent
through the study period. Our results
indicate a clear need for different or
additional mitigation measures.
At least 2 indirect lines of evidence
support our conclusion that mitigation
Model
Mortalities
measures deployed during our study
K
AICc
ΔAICc
AICc Cumulative
weight
weight
period were insufficient to reduce
large whale and fisheries interactions
Humpback whale
to acceptable levels. Robbins (2011,
Change after 2002
5
−24.69
0
0.75
0.75
Linear regression
4
−21.32
3.38
0.14
0.88
2012) analyzed entanglement rates of
Quadratic
5
−19.97
4.72
0.07
0.95
humpback whales in the Gulf of
Change after 2008
5
−19.11
5.58
0.05
1
Maine and concluded that new enRight whale
tanglements
were either constant or
Linear regression
4
30.39
0
0.51
0.51
increasing during a time frame largely
Change after 2008
5
32.21
1.82
0.21
0.71
Quadratic
5
32.73
2.33
0.16
0.87
overlapping ours. Similarly, Knowlton
Change after 2002
5
33.16
2.76
0.13
1
et al. (2012) evaluated rates of entanMinke whale
glement scar acquisition by North
Quadratic
5
36.59
0
0.53
0.53
Atlantic right whales and estimated a
Linear regression
4
37.71
1.12
0.3
0.83
nearly constant rate of new scarring
Change after 2002
5
39.95
3.36
0.1
0.93
Change after 2008
5
40.76
4.16
0.07
1
from 1999 to 2006. Knowlton et al.
(2012) also detected an increase in the
rate of right whales carrying gear and
Table 4. Model comparisons of generalized least squares (auto-correlated error
an increase in the number of whales
structure) fits to entanglement detections predicted by competing models on
that they determined as seriously
their order of occurrence, for Megaptera novaeangliae, Eubalaena glacialis,
injured. (Their definition varies someBalaenoptera acutorostrata, and B. physalus. See Table 1 for abbreviations
what from NMFS definition.) More directly, van der Hoop et al. (2013) evalModel
Entanglements
uated stranding records and found
K
AICc
ΔAICc
AICc Cumulative
weight
weight
significant increases in entanglement
and vessel strike mortality probabiliHumpback whale
ties for large whales from 1990
Quadratic
5 −289.16
0
0.93
0.93
through 2009. In addition, they found
Change after 2008
5 −282.87
6.28
0.04
0.97
Change after 2002
5 −282.18
6.98
0.03
1
no significant change in the local
Linear regression
4 −278.55
10.61
0
1
intensity of mortalities before and
Right whale
after 2003, which implies that much of
Change after 2008
5
−20.37
0
0.46
0.46
the detected increase in our first
Linear regression
4
−19.66
0.71
0.33
0.79
model was due to increased lethal
Quadratic
5
−17.5
2.87
0.11
0.9
Change after 2002
5
−17.3
3.07
0.1
1
fisheries interactions.
Minke whale
It is possible that entanglements
Quadratic
5
5.42
0
0.34
0.34
and
related mortalities declined durLinear regression
4
5.71
0.3
0.29
0.63
ing
the
period but that the detectaChange after 2002
5
5.8
0.38
0.28
0.91
Change after 2008
5
8.02
2.61
0.09
1
bility of events increased, or growing
Fin whale
whale populations produced increaQuadratic
5
33.46
0
0.94
0.94
sed numbers of events despite a deChange after 2002
5
39.26
5.81
0.05
0.99
clining prevalence. Based on studies
Linear regression
4
44.49
11.03
0
1
of acquisition rates of non-lethal enChange after 2008
5
45.11
11.65
0
1
tanglement scars on humpback whales,
only a small fraction of entanglements
been spent involving stakeholders in a process to
are detected (Robbins 2011). Thus, variable detection
develop measures (gear modifications) specifically
rates could significantly alter waiting times inherent
designed to mitigate such interactions. Most of the
in our records. However, we are aware of no evievidence from evaluating the event data suggests
dence to suggest that detectability of events has

Endang Species Res 26: 115–126, 2014

124

Base = 5 events per year

Base = 3 events per year

Proportion rejected

1 2 3
Down 8% yr –1

4

5

6

1 2 3

4

5

6

Down 10% yr –1

Down 8% yr–1

Down 10% yr –1

80
60
40
20
Constant

20% drop Year 6

50% drop Year 6

Constant

80
60
40
20

80
60
40
20
0

20% drop Year 6

50% drop Year 6

80
60
40
20
0
1 2 3

4

5

6

1 2 3

4

5

6

1 2 3

4

5

6

1 2 3

4

5

6

Statistical test number
Base = 15 events per year

Base = 10 events per year
1 2 3

Proportion rejected

Down 8%

100
80
60
40
20
0

yr –1

Constant

1 2 3 4 5 6

4

5

Down 10%

yr –1

20% drop Year 6

6

1 2 3
Down 8%

100
80
60
40
20
0

50% drop Year 6

1 2 3 4 5 6

100
80
60
40
20

yr –1

Constant

1 2 3 4 5 6

4

5

Down 10%

yr –1

20% drop Year 6

6

100
80
60
40
20
50% drop Year 6

1 2 3 4 5 6

Statistical test number
Fig. 6. Results of simulations examining the power of 6 different deviance tests to detect differences from constant event rates
(H0) when rates increase linearly with populations and concomitant event rate growth of 2% (d) and no growth (m). Plot groupings portray different base event rates modified with 5 different rate-reducing effects (see ‘Methods’ for a description of experimental conditions and specific tests 1−6). Note that a difference in a trial occurs when the appropriate statistical test statistic
is rejected at α = 0.05, and rejecting when H0 is true (no difference exists = Constant) is a Type I error

changed. As noted earlier, detections come from a
wide range of observers, including biologists, commercial fishermen, commercial whale watchers, recreational boaters, and others. No large changes in
large whale research and management occurred during our study, thus there was relatively constant effort
exerted in detecting entanglements. Many detections came from naturalists on whale watch boats
operating in the Gulf of Maine, a multi-vendor enterprise that has been operating at about the same level
for >20 yr. Anecdotally, we note that this haphazard
collection process was able to detect a significant
mortality event of humpbacks that occurred during
2003 in the Gulf of Maine and not associated with
entanglement (Gulland 2006). The entanglement
rates of right whales and humpback whales were correlated. This relationship was likely evident because
events are frequent enough for both of these
2 species to detect a similarly increasing pattern

through time, whereas fin whales showed no correlation with either because the detections are less frequent. Many humpback and right whales frequent
the Gulf of Maine during late spring and summer.
While not completely overlapping in time and space,
they likely show enough co-occurrence with fixed
fishing gear, especially pot gear, to show a similar
pattern. North Atlantic right whale population growth
has been estimated at 2.6% per year (Waring et al.
2011). Although precise population growth rates were
not available for Gulf of Maine humpback whales for
the period in question (Robbins 2007, Waring et al.
2011), we assumed a 2% per year increase for the
purpose of simulation. Based on these simulations,
small improvements resulting from gear modifications could be obscured by opposing effects of population growth, but the substantial true decreases
hoped for by the ALTWRT and required to meet the
mandates of the MMPA would not be masked.

Pace et al.: NW Atlantic whale entanglements

NMFS is mandated to reduce human-caused mortality of marine mammals to levels not compromising
stock viability. In agreement with other studies, our
analysis causes us to strongly reject the notion that
significant conservation gains resulted from the first
10 yr of ALWTRT negotiated incremental mitigation
measures. The key word here is significant reductions which would not likely be masked by small
amounts of population growth or shifts in whale and
gear distribution. Further, our findings support decisions by NMFS to impose further conservation measures such as the recently instituted ‘ground line rule’,
and to seek other means of reducing whale–gear
interactions. However, the lack of progress during
the first 10 yr is cause for concern. That the development of measures to reduce large whale entanglements has been incremental may have been predicted, given the lack of fundamental knowledge of
how entanglements occur (Johnson et al. 2007) and
the economic value of the fisheries responsible for
entanglements (Myers et al. 2007). Measured approaches seem warranted when knowledge is lacking and economic costs are potentially high. What
seems to have received little weight in the evolution
of rules was that, in the early stages, an analysis of
right whale demographics concluded that the species,
one of the most critically endangered cetaceans in
the world, was headed for extinction if human-caused
mortality was not reduced (Fujiwara & Caswell
2001). We believed that, to be effective, mitigation
measures would produce substantial direct reductions in mortality (biological response). However, we
may be experiencing a common problem in conservation: we are attempting to evaluate a process without any explicitly measurable goals or trade-offs
(Lonergan 2011). Although the MMPA does provide
an explicit goal to reduce takes below a stock’s
‘potential biological removal’ (PBR) in 6 mo, that goal
was not achieved for most large whale stocks found
off the northeast USA. PBR is typically exceeded
even when using confirmed human-caused mortalities as a measure, which is likely a biased low accounting of takes. Moreover, it has not proven useful
to compare observed takes to the PBR threshold as an
‘on-off’ switch approach to evaluating effectiveness
of management actions, where observed takes which
are below PBR indicate effective actions, and takes
which exceed PBR indicate ineffective measures.
Observed entanglements and entanglement-related
mortalities have frequently exceeded PBR (van der
Hoop et al. 2013) for more than a decade for western
North Atlantic baleen whales with no apparent catastrophic consequences for these stocks (Waring et al.

125

2011). Without more sensitive effectiveness measures, the lack of definitive positive results such as
ours will be a frequent result of effectiveness evaluations. In this paper, we have produced an evaluation
of management action effectiveness despite the meager data available for that evaluation.
Acknowledgements. We are especially grateful to the US
and the Canadian Maritime Provinces and Newfoundland
stranding and entanglement networks, and the Atlantic
Large Whale Disentanglement Network, whose members
searched for and examined whales both live and dead. It is a
difficult, dirty, and ceaseless job that deserves special recognition. The United States Coast Guard was instrumental in
conveying sightings reported by mariners, investigating carcasses at sea, and assisting in disentanglement efforts. We
are also grateful to the staff of the Provincetown Center for
Coastal Studies (PCCS), New England Aquarium, Whale
Center of New England (WCNE), NOAA aerial survey
teams, Wildlife Trust, the states of Florida and Georgia,
Northeast Fisheries Observer Program, Marine Animal
Response Society, New Brunswick Museum, Atlantic Veterinary College, Grand Manan Whale and Seabird Research
Station, Whale Release and Stranding, and many others for
providing the sightings that have allowed this work to be
conducted.
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(2011) U.S. Atlantic and Gulf of Mexico marine mammal
stock assessments — 2010. NOAA Tech Memo NMFS NE
219. National Marine Fisheries Service, Woods Hole,
MA. www.nefsc.noaa.gov/nefsc/publications/
Williams R, Gero S, Bejder L, Calambokidis J, Kraus S (2011)
Underestimating the damage: interpreting cetacean carcass recoveries in the context of the Deepwater Horizon/BP incident. Conserv Lett 4:228−233
Submitted: July 15, 2013; Accepted: July 19, 2014
Proofs received from author(s): October 17, 2014

Received: 2 July 2020

Revised: 5 November 2020

Accepted: 19 November 2020

DOI: 10.1111/csp2.346

CONTRIBUTED PAPER

Cryptic mortality of North Atlantic right whales
Richard M. Pace III1
Amy R. Knowlton3 |

| Rob Williams2 | Scott D. Kraus3 |
Heather M. Pettis3

1

Northeast Fisheries Science Center,
Woods Hole, Massachusetts

2

Oceans Initiative, Seattle, Washington

3

Anderson Cabot Center for Ocean Life,
New England Aquarium, Boston,
Massachusetts
Correspondence
Richard M. Pace III, Northeast Fisheries
Science Center, 166 Water Street, Woods
Hole, MA 02543.
Email: [email protected]
Funding information
National Marine Fisheries Service and The
New England Aquarium

Abstract
Evaluations of the conservation status of the endangered North Atlantic right
whale as well as many other wildlife species often rely extensively on counts
and cause-of-death determinations of carcasses found accidentally or during
dedicated surveys. Even when survey effort dedicated to a population is extensive, many deaths may go unseen. We used an abundance estimation model to
derive estimates of cryptic mortality for North Atlantic right whales and found
that observed carcasses accounted for only 36% of all estimated death during
1990–2017. We found strong evidence that total mortality varied over time, and
that observed carcass counts were poor predictors of estimated annual numbers
of whales dying. Importantly, there were substantial differences between fractions of deaths determined to be entanglement related during necropsy (49%)
and the fraction of cryptic deaths suffering serious injuries related to entanglement (87%). Although we concluded that a single year's observations produced
poor estimates of carcass detection rates due to the volatility of ratios of small
counts, ratio estimates of data pooled over periods of consistent survey may offer
better information on detection rates. Additionally, it appears unwise to consider
cause of death determinations from detected carcasses as representative of
cause-specific mortality rates in right whales given the large number of seriously
injured whales from entanglement that are likely part of the unseen mortality.
KEYWORDS
carcass detection, cryptic mortality, detection bias, right whale, total mortality

1 | INTRODUCTION
The North Atlantic right whale, Eubalaena glacialis, is
among the world's most endangered large whale
populations (Reynolds, Marsh, & Ragen, 2009). The population at its recent peak numbered 500 individuals in
Richard M. Pace III and Rob Williams should be considered joint first
author.

2010 (Pace, Corkeron, & Kraus, 2017) but has been declining since and at the start of 2018 numbers 400 (Pettis,
Pace III, & Hamilton, 2020). The deaths of at least 17
individuals in 2017 (Davies & Brillant, 2019) and 10 more
in 2019 has renewed concerns about recovery potential of
this population (Kraus et al., 2016). Between 2003 and
2018, conclusions drawn from 38 of 44 (88%) necropsies
conducted on right whales attributed death to human causes, namely collisions with vessels and entanglement in

This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided
the original work is properly cited.
© 2021 The Authors. Conservation Science and Practice published by Wiley Periodicals LLC. on behalf of Society for Conservation Biology
Conservation Science and Practice. 2021;e346.
https://doi.org/10.1111/csp2.346

wileyonlinelibrary.com/journal/csp2

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fishing gear (Moore, et al. 2004; Sharp, McLellan, Rotstein,
et al., 2019).
The known deaths suggest that recovery of North
Atlantic right whales is in serious jeopardy (Corkeron
et al., 2018) unless substantial mitigation measures that
reduce mortality and serious injury from human
activities are instituted immediately (Kenney, 2018;
Moore, 2014). But, these known deaths represent only a
fraction of the true death toll, because counts of carcasses
do not agree with the numbers of whales that disappear
from long term sighting records. In the fisheries management literature, postrelease mortality of fish has been termed “cryptic mortality” (Coggins Jr, Catalano, Allen,
Pine III, & Walters, 2007), and this term has been applied
to human activities that kill marine mammals without
resulting in an observed carcass. Several reference points
have been developed that estimate the number of
animals that can be removed from a marine mammal
population each year while still achieving conservation
objectives (e.g., Chilvers, 2008; Hammill & Stenson, 2007;
Wade, 1998; Williams, Thomas, Ashe, Clark, &
Hammond, 2016), but these all rely on unbiased calculations of mortality rates. For many smaller cetacean species, a bycatch mortality rate can be estimated from
observers placed on a representative sample of fishing
boats to document takes, which can then be scaled up to
the fleet as a whole (Wade, 1998). The kinds of human
activity resulting in major sources of mortality for many
larger cetaceans do not lend themselves to estimation
from dedicated observer coverage. Examples include
bycatch in fixed gear and unattended fisheries, such as
lobster or crab pots (Johnson et al., 2005), oil spills, or
collisions with ships (Laist et al., 2001) Although these
causes are readily detected in recovered carcasses, no
sampling frameworks exist to infer their incidence rates.
Several factors interact to cause undercounting of
human-caused mortalities of cetaceans. Generally speaking, in order for anthropogenic mortality to be detected, a
whale carcass must float or strand, be detected by human
observers before decomposition or scavenging occurs, be
subject to an evaluation by a qualified veterinary pathologist to determine cause of death, and then have that
result reported in the primary literature or in publicly
accessible databases (Faerber & Baird, 2010). At any
point along the time line from death to disintegration,
information about the cause of mortality can be lost
including even its occurrence. Herein, we distinguish
between carcass “detection” (i.e., identifying an observed
carcass to be a right whale and therefore a known death
in the population regardless of whether it can be identified as a known individual), and carcass “recovery”
(a term often used in studies of known individuals implying that the carcass has been identified to the list of

PACE ET AL.

known population members). Unless otherwise noted,
we focus on carcass detection rates in this study.
Some studies have attempted to estimate carcass
detection rates in a number of cetacean populations, and
these studies reveal that the potential for underestimation of human-caused mortality is considerable. Two
populations of resident, fish-eating killer whales (Orcinus
orca) are found in the coastal waters of British Columbia
(Canada) and Washington State (USA). The population is
studied through an annual census. Between 1974 and
2008, only 3 and 20%, respectively, of the presumed
deaths of northern and southern resident killer whales
resulted in detected carcasses (Barbieri et al., 2013). In a
relatively closed area, Wells et al. (2015) estimated dolphin carcass recovery rates as 33% in Sarasota Bay, FL. In
a retrospective analysis inspired by the Deepwater Horizon oil spill, historic carcass detection rates in the northern Gulf of Mexico averaged 2% among 14 cetacean
species (Williams, Gero, Bejder, et al., 2011). Some rare
species had a carcass detection rate of 0%, and the sperm
whale (Physeter macrocephalus, the largest whale in the
study) had a detection rate of 3.4% (Williams et al., 2011).
A particularly data-rich study on a coastal population
of bottlenose dolphins (Tursiops truncatus) revealed a
carcass detection rate of 25% (95% CI = 20, 33%), and
made the argument that observed (minimum) numbers
of anthropogenic mortality of dolphins derived from
strandings should be corrected to account for unobserved
mortality (Carretta et al., 2016). This careful analysis led
to a policy change for management of human activities
affecting US Pacific coast dolphins. Now, US marine
mammal stock assessment reports1 for coastal bottlenose
dolphins in California that report anthropogenic mortalities detected from beach-cast carcasses are multiplied by
a factor of 4 to account explicitly for cryptic mortality.
A management focus merely on the number of
detected carcasses will underestimate the severity of
anthropogenic mortality, and consequently, the management response will fail to take into account the severity
of the threats. Methods are needed to scale up the known
mortality to estimate the total amount of human-caused
mortality that must be mitigated to save endangered
whales. An initial assessment of natural and humancaused mortality in North Atlantic right whales for the
period 1980–1999 suggested a 17% carcass detection rate
(Kraus, Brown, Caswell, et al., 2005), but increased search effort and stranding response funding in recent years
would suggest a higher rate may apply now. Because the
sighting rates of live right whales has varied over time
(Pace et al., 2017), it stands to reason that carcass detection rate varies over time. Additionally, detectability of
carcasses could be influenced by cause of death. For
example, healthy whales struck by vessels likely float for

PACE ET AL.

longer periods and therefore may be detected at higher
rates than chronically entangled animals that burn their
fat stores for months as they slowly starve to death
(Moore, Mitchell, Rowles, & Early, 2020). Additional analyses are needed to generate a robust multiplier that can
be used in management (e.g., Carretta et al., 2016). Without a statistically robust multiplier, correction factors to
account for imperfect carcass detection can result in
estimates of mortality that exceed the size of the entire
population (Parrish & Boersma, 1995).
Our study had three main objectives:
1. To estimate average carcass detection rates of North
Atlantic right whales, and explore how this may have
changed over time. Estimating this parameter will not
affect our understanding of population dynamics,
because detected and undetected mortality are already
subsumed within the survival estimates (Pace et al.,
2017). However, understanding the extent to which
anthropogenic mortality is undercounted may alter
our perspective of the potential scope for population
recovery if precautionary mitigation measures were
implemented broadly. We briefly explore two alternative estimators for detection rate over a specified time
interval.
2. Explore the hypothesis that carcass detection may
vary with cause of death. Evidence for differential carcass detection rates could change our understanding
of the relative importance of the two main risk factors
(i.e., collision with vessels and entanglement), and
more accurate information could change the emphasis
placed on various mitigation measures.
3. Our long-term objective is to stimulate a discussion at
the science-policy interface on the need to improve
the way that cryptic mortality is handled in management. Using the extremely data-rich case study of the
North Atlantic right whale, we advocate developing
multipliers to better account for cryptic mortality
when assessing conservation status of marine mammal stocks (Carretta et al., 2016).

2 | METHODS
Three lines of inquiry were used to explore factors
influencing carcass detection rates in North Atlantic right
whales.

2.1 | The ratio of observed to estimated
mortalities
Observed mortalities of right whales exist in two categories: (1) a discovered carcass that can be identified as a

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whale known to the North Atlantic Right Whale Catalog
(Hamilton, Knowlton, & Marx, 2007) and (2) a discovered
carcass that is not identifiable to individual either by photograph (position of carcass obscuring matching features
or state of decomposition) or genetic fingerprint
(no sample gathered or no match found).
Annual estimates of the total number of right whale
deaths from 1990 to 2017 were generated from a previously published hierarchical state-space model of right
whale abundance (Pace et al., 2017). The model to estimate abundance is parameterized to yield posterior distributions of Nt and Bt, which are respectively, the
abundance and numbers of new entrants (Births) to the
population in year t. For each of 20,000 realizations in
the Markov chain Monte Carlo run after initial burn-in,
we calculated the estimated number of deaths according
to the following formula:
Dt = Nt – Nt + 1 + Bt
where Dt is the number of deaths occurring in the interval [t, t + 1]. We assumed that the derived values represented a posterior distribution for each Dt and calculated
95% highly credible regions for each estimate. We further
assume that the population is closed to permanent emigration, which seems well supported by the long study
period and the lack of evidence of right whale being resident in other parts of the North Atlantic. We calculated
an additional total mortality estimate from abundance
estimates from the aforementioned model and detected
calf counts according to:
Dtotal = N1990 – N2018 + CΣð1990 – 2017Þ
where CΣ(1990–2017) = 407 was the total calf count during
1990–2017.
We fitted generalized linear models (GLMs) to examine whether or not the observed number of carcasses were
predictive of estimated median number of deaths each
year. Candidate models included: constant estimated
death rate over time; a linear predictive relationship
between annual carcass counts and annual estimated
death count; a simple periodic variation in the estimated
death count over three “eras” (1990–1991; 1992–2009; and
2010–2017); and a model with both era effect and observed
carcass counts as predictors. The choice of eras was based
on time frames of significant changes in search effort patterns and/or animal distributions, where the predictive
value of carcass counts might vary with these changes. In
particular, we believed that variable periods evident in the
recapture rates of individuals was indicative of three eras
that might have differing carcass detection rates. We estimated the relative effective detection effort as the mean
adult female capture probability for the era.

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2.2 | Cause of serious injuries and cause
of death
Additionally, mortalities can be inferred for whales seen
alive but declared seriously injured by the National
Marine Fisheries Service (NMFS; Henry et al., 2017).
These injured whales are often in poor health condition
or suffering from complex entanglements that will interfere with foraging. Many are eventually presumed to
have died as they commonly disappear from the sighting
records within 1–2 years following their injury. We only
counted whales as seriously injured the first year of
their determined status and removed from the counts
two whales that were determined to be seriously injured
but appeared to recover. From first principles, it seems
plausible that whales that become entangled and lose
fat during the months it takes them to die may be less
likely to be detected as carcasses if they sink soon after
death, although Moore et al. (2020) show that carcasses
that sink in shallower water are more likely to bloat
and refloat. Conversely, healthy whales killed immediately by ship strikes would be more likely to float. It is
impossible to test directly for differences in detection
rate based on cause of death, precisely because one
never sees the unobserved mortality. We explored the
plausibility of this scenario using a subset of whales that
were observed with serious injuries just prior to their
disappearance (Henry et al., 2017; Knowlton, Hamilton,
Marx, Pettis, & Kraus, 2012). Using data from New
England Aquarium (NEAQ) and NMFS, we examined
the fate of animals last seen with serious injuries arising
from either fisheries gear entanglement or “other”
(i.e., mostly consistent with blunt force trauma or fresh
propeller wounds). We compared the frequency of
occurrence of serious injuries from entanglement and
other anthropogenic sources with sources of mortality
determined from examined carcasses of noncalf animals.
Causes of mortality for examined carcasses have been
documented in Moore, Knowlton, Krauss, McLellan,
and Bonde (2004) and Sharp et al. (2019). We note that
a few animals may have been observed as serious injuries and later found dead but no link clearly establishing
that it was the same individual. Because we are comparing the distributions of death causes, double counting in
this instance would only act to reduce differences in
distributions.

2.3 | Body condition and subsequent
carcass recovery of known individuals
Each individual in the North Atlantic right whale catalog
has a suite of health records over its sighting history,

PACE ET AL.

each of which includes a visual estimate of body fat stores
(Pettis et al., 2004). For 159 whales that were known
(28) or presumed (131) to have died and had an assessment of body condition within 6 months of its last
sighting, we modeled the probability that a carcass would
be recovered as a function of visual body condition. The
rationale was that whales observed to be skinny just
before death could act as a proxy for entangled whales
that took several months to die (Pettis et al., 2017),
whereas whales with healthy fat stores just before their
death could act as a proxy for whales that were struck by
a ship and died immediately with fat reserves intact
(Moore et al., 2020).
We fitted a binomial GLM to the fate of each individual whale, whose carcass was either recovered (1) or not
recovered (0), using body fat condition as a candidate
covariate. Statistical support for including the covariate
was estimated by comparing AIC of this model to an
intercept-only model.

3 | RESULTS
3.1 | Magnitude of cryptic mortality
When compared with the derived estimates of total mortality from the abundance model (Pace et al., 2017)
extended to produce estimates for 1990–2017, counts of
carcasses seriously underrepresented total right whale
mortality (Figure 1). During this period, the number of
deaths derived from the abundance model was 2.8 times
the carcass count.

F I G U R E 1 Counts (black dots) of right whale carcasses and
total number of right whale deaths estimated from an abundance
model (diamonds) together with their 95% credible intervals.
Overall detection rate was the sum of carcass counts across the
entire time frame divided by the sum of estimated deaths

PACE ET AL.

T A B L E 1 Information criteria
generated from GLMs fit to estimated
annual mortality of North Atlantic right
whales

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Model

Parameters count

AICc

Delta_AICc

AICcWt

Era

3

151.0

0

0.79

Era + Carcass count

4

154.5

2.7

0.21

Carcass count

2

184.6

32.8

0

Constant

1

185.8

34.1

0

Note: Prior choice of models included (1) constant death count over time, (2) linear correspondence between
observed carcasses estimates, (3) varying by different eras of survey effort or whale distribution a model, and
(4) an additive model including 2 and 3. Models assumed data were Poisson and the three Eras were
1990–1991, 1992–2009, and 2010–2017.

T A B L E 2 Likely cause of death distribution for noncalf North
Atlantic right whales during 1990–2017 (excluding undetermined,
n = 3) from examined carcasses versus live animals declared as
seriously injured by NMFS
Data source

Entanglement

Vessel collision

Carcass

20 (49%)

21 (51%)

Serious injury

54 (87%)

8 (13%)

Note: Chi-sq. test for similar distributions between data sources X2 = 16.1,
p <.001.

F I G U R E 2 Variability in carcass detection rate in three periods
that appear to correspond to changes in NARW distribution and
search effort. Solid circles represent the retransformed predictions
from the binomial GLM with Era as a categorical predictor
accompanied by approximate 95% confidence bounds. Open
squares are calculated as ratio estimates for each Era where
Proportion detected = Sum of observed/(Sum estimated total
mortality for the period) mathematically equivalent to the GLM
predicted values. Error bars are 1 standard error of each ratio
estimates demonstrate the large variance among calculated annual
detection ratios. Values below intervals are the Era-specific means
of estimated capture probability of adult females from the
abundance model used to calculate total number of deaths

3.2 | The predictive ability of observed
carcass counts
Comparison of four models used to evaluate the predictive
value of annual carcass counts revealed that very little
information about the number of right whales dying in a
given year could be derived from carcass counts (Table 1).
The model with the most support validated the higher
undetected death tolls during 2010–2017 shown in
Figure 1.
The overall estimate of carcass detection rate was 36%.
Our GLM produced little support that annual counts of
carcasses were predictive of annual mortality estimates
(Table 1). However, when we pooled data from eras of

more similar survey effort and whale distribution, a pattern of detection emerged that fit with our prior suspicions
(Figure 2). When survey effort was lower for important
whale use areas during 1990–1991, the ratio of detected
carcasses was only 17% (2 s.e. = 5.5%). Detection increased
significantly to 43% (2 s.e. = 0.6%) during a lengthy period
of high whale recapture rate (1992–2009) and declined to
29% (2 s.e. = 2.8%) from 2010 to 2017 as whales changed
their area use patterns and recapture rates declined.

3.3 | Cause of serious injuries and cause
of death
From 1990 to 2017, a total of 62 North Atlantic right
whales were reported by NMFS as having “serious injuries” that were defined as life-threatening, and subsequently disappeared. Entanglement accounted for the
vast majority (54 of 62, or 87%) of serious injuries
(Table 2). Because these whales were never seen again,
one would also expect to see 87% of deaths to be caused
by entanglement. Among 41 examined carcasses, only
49% of deaths were determined to be entanglement
related. Assuming all of the “other” sources of serious
injury or mortality of noncalf whales can be attributed to
vessel collisions, there is a large disparity between the
sets of observations (X2 = 16, p <.001). This disparity suggests that it may be unreasonable to use the distribution
of causes of death from examined carcasses to characterize the cryptic deaths.

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3.4 | Body condition and subsequent
carcass recovery of known individuals
The model with the highest information content based
on AIC was one not relying on body condition to predict
the probability of detection (AIC = 150.0). Using body fat
condition at the time of the last sighting had little support
from the data (AIC = 151.9; ΔAIC = 1.9 over an intercept-only model).

4 | DISCUSSION
Recent results from a hierarchical state-space model of
North Atlantic right whale population dynamics (Pace
et al., 2017) were integrated with data on animal health,
encounters, necropsies, and serious injuries held by the
North Atlantic Right Whale Consortium at the New
England Aquarium (Hamilton et al., 2007; Pettis
et al., 2004) or published literature (Moore et al., 2004;
Sharp et al., 2019) with the serious injury and mortality
database held by NMFS (Henry et al., 2017). Taken
together, these data suggest that 36% of right whale
deaths resulted in a carcass detection. Experts who have
led the data collection efforts believe that changes in
whale distribution and search effort by agencies on both
sides of the Canada-US border may have changed carcass
detection rates over time. By pooling data across relatively homogeneous periods of survey effort and whale
distribution, we found modest deviations in carcass
detection rates over time. The period of much lower
effective searching (lower capture rates of live whales)
produced a low estimated detection rate consistent with
that reported by Kraus et al. (2005) using different
methods to estimate total mortality. They estimated that
the carcass detection rate was 17% based on data from
1980 to 1999 (Kraus et al., 2005). There appears to have
been a large increase in detection rate to 43% during a
period coincident with the highest estimated recapture
rates of live whales reported by Pace et al. (2017), but the
estimated value is still below half. In the most recent era,
carcass detection rates have fallen off as whales spend
less time in previously well surveyed areas.
Our analysis allows us to caution strongly against
relying on a single year's count of carcasses to infer differing amounts of total mortality. These counts are usually
small (<10) and hence widely varying relative to their
mean. Despite our own cautionary note, we found it of
interest that during 2017, a year of an unusually high carcass count coupled with a dramatic increase in Canadian
survey effort to find carcasses, the number of dead found
may have accounted for nearly every whale estimated to
have died that year. This finding is clearly not indicative

PACE ET AL.

of the recent past, given that the overall detection rate
during 2010–2017 was only 29%.
There is a striking mismatch between the causes of
serious injuries observed in living whales and the causes
of mortality revealed in necropsies of dead whales.
Entanglement accounted for the vast majority (54 of
62, or 87%) of serious injuries, but only 20 of 41 (49%) of
mortality in examined carcasses. Collisions with vessels
and “other” causes represent 8 of 62 (13%) of serious
injury cases, but represent 21 of 42 (51%) of mortalities in
examined carcasses. We caution, however, that blunt
force trauma incurred by whales that are seriously
injured by a vessel collision may be difficult to detect
from photographs of free swimming whale that may ultimately die as a result of the collision. Despite the possibility of missing some vessel collisions that produced
serious injuries, the disparity in observed rates of serious
injury by cause suggests that cryptic deaths due to entanglements significantly outnumbers cryptic deaths from
vessel collisions or other causes. Although this dissonance could not be explained by a model of carcass detection as a function of visual body condition, the topic
warrants continued research. If attempts are made to
expand detected causes of mortality to total counts, detection rates should be calculated over a rolling time block
to reduce the influence of any 1 year's values. Alternatively, estimated mortality values should be calculated
over periods of homogeneous live right whale capture
probabilities. Regardless, entanglement-related mortality
is widely underestimated, which has important implications for management actions to promote recovery.

5 | CONCLUSION
The amount of cryptic mortality occurring over longer
time intervals seem to vary with effective survey effort to
finding live whales. The evidence surrounding whales
not recovered following their likely deaths, suggests that
cryptic deaths are more likely entanglement related than
the record of examined carcasses indicates. As monitoring and managing the conservation status of North Atlantic right whales requires robust quantitative data, this
study showed that total mortality was 2.8 times the number of detected carcasses during 1990–2017. Annual
counts of right whale carcasses do a poor job of indicating
the total mortality for that year, and carcass detection
rates seem to vary with effective survey effort. The incidence rates among causes of mortality differs significantly between those examined carcasses from which a
cause of death was determined, and those animals whose
likely death followed a serious injury. The evidence surrounding whales not recovered following their likely

PACE ET AL.

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deaths, suggests that cryptic deaths are almost twice as
likely to be due to entanglements than the records from
examined carcasses whales indicate.
A C K N O WL E D G M E N T S
The authors gratefully acknowledge support to New
England Aquarium's right whale research program from
the Volgenau Foundation, and to Oceans Initiative from
Fisheries and Oceans Canada and Save Our Coasts Foundation. The authors also thank A. Henry for verifying
accounting of right whale serious injury and mortality
data from NEFSC archives. The capacity to develop precise estimates of North Atlantic right whale demographic
parameters is due to the thousands of photographic captures of whales contributed by hundreds of collaborators
working through the North Atlantic Right Whale Consortium for over nearly 40 years.
CONFLICT OF INTEREST
The authors have no conflicts of interests to declare.
A U T H O R C ON T R I B U T I O NS
Richard M. Pace and Rob Williams contributed equally
to the analysis and writing of this paper and should be
regarded as joint first authors. Scott D. Kraus helped
focus the content, provided extensive edits, and access to
data. Amy R. Knowlton and Heather M. Pettis compiled
and extracted data and provided text and edits.
DATA AVAILABILITY STATEMENT
Data used to calculate total mortality and a table of
known deaths by cause are available from RMP.
E TH IC S ST A T EME N T
Data used in this manuscript were all collected using
guidelines and permits provided by federal (US and
Canadian) agencies which govern the ethical treatment
of animals.
ORCID
Richard M. Pace III
1210

https://orcid.org/0000-0002-8506-

ENDNOTE
1

https://www.fisheries.noaa.gov/national/marine-mammalprotection/marine-mammal-stock-assessment-reports-speciesstock

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Kraus, S., & Clapham, P. (2005). Fishing gear involved in
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Kenney, R. D. (2018). What if there were no fishing? North Atlantic
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Kraus, S. D. (2012). Monitoring North Atlantic right whale
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How to cite this article: Pace RM III,
Williams R, Kraus SD, Knowlton AR, Pettis HM.
Cryptic mortality of North Atlantic right whales.
Conservation Science and Practice. 2021;e346.
https://doi.org/10.1111/csp2.346

Tools to identify and minimize
risks to marine mammals
Jessica Redfern, Dan Pendleton,
Orla O’Brien, Laura Ganley,
Brooke Hodge, Katherine McKenna
EcoMap

Spatial Ecology, Mapping, and Assessment Program

Right Whales

Photographer: Marianna Hagbloom
Credit: Anderson Cabot Center
New England Aquarium
Collected under Canadian SARA permit

Right Whales
Little survey effort in this area and
time period (2002-2006)!

Pendleton et al. 2012.
Endangered Species Research
18:147-161.

Photo on the left
Photographer: Melissa Patrician
Credit: Anderson Cabot Center
New England Aquarium
Collected under Canadian SARA permit

Massachusetts and Rhode Island
Wind Energy Areas

Right Whales and Wind Energy
Wind Energy Areas

New England Aquarium
Aerial surveys
2011-present
Approximately monthly

2011- 2020 surveys funded by MassCEC and BOEM

2020-2021 surveys funded by Equinor Wind U.S., Mayflower Wind Energy
LLC, Ørsted North America, and Vineyard Wind

Right Whales and Wind Energy
New England Aquarium Aerial surveys
2011-2015

Aerial Surveys 2018-2019
• 40 surveys flown over 185.8 hours
• Documented marine fauna, human
activity, and debris

• Observer sightings and photos taken directly
below the plane

• 1,436 detections of marine fauna
• 10,940 individuals
• 17 species
•
•
•
•
•

Large whales
Small cetaceans
Birds
Sharks/fish
Sea turtles

Aerial Surveys 2018-2019
Right Whales
Seen in every season and 9 of 11 months surveyed
Number of Whales

July

June

May

April

March

February

January

December

November

35
30
25
20
15
10
5
0

October

Whales/1000*Km

Sightings Rate
2018 - 2019

Temporal Changes
Right whale temporal occurrence
• 2011-2015: Dec. – April
• 2018-2019: All year

Leiter et al. 2017

July

June

May

April

March

February

January

November

October

Whales/1000*Km

35
30
25
20
15
10
5
0

December

Sightings Rate
2018 - 2019

Endangered Species Research

Aerial Surveys 2018-2019

Right Whale Seasonal Abundance Estimates
• Single abundance estimate for the entire survey area
• Captures temporal trends in abundance
• Does not capture spatial trends within the study area

Photographs taken under NOAA permit 19674

Aerial Surveys 2018-2019

Right Whale Seasonal Abundance Estimates

Progress!
Half-normal

Hazard rate

• 2011 – 2015: detection function for all large whales
• 2017 – 2019: detection function for right whales

Aerial Surveys 2018-2019

Right Whale Seasonal Abundance Estimates

Confidence intervals are large

Temporal Changes
Leiter et al. 2017

Endangered Species Research

• Confidence intervals are large
• Density appears to be increasing
•
•

Need to recalculate abundance from the earlier surveys
to standardize methodology
• For example: change in detection function
Explore Bayesian trend assessment (e.g., Moore and
Barlow 2011, 2013)

Aerial Surveys 2018-2019
Right Whales

Eastern side of study area
Some seasonal distributions
shifts

Spatial Changes

2018-2019
Eastern side of study area

Leiter et al. 2017

Endangered Species
Research

Habitat Modeling

Seasonal abundance
estimates and sightings
rates tell us the number
of animals in whole
study area
Sightings per unit effort
provides estimates only
in sampled areas

Habitat Modeling

What if we want to
know the impact of an
activity within one of
these lease areas?

Habitat Modeling

What if we want to
know the impact of an
activity within one of
these lease areas?

Habitat models can be used to estimate
distribution patterns at smaller spatial scales

Density Surface Modeling
• Data from 2017 and 2018
• Transect lines divided into
~4.6 km segments
• Oceanographic data extracted at segment midpoints
– Log transformed chlorophyll-a (mg/m3) concentration
• NASA MODIS-Aqua, 4.6 x 4.6 km resolution

– Sea surface temperature
• NASA MODIS-Aqua sensor, 4.6 x 4.6 km resolution

– Depth

Density Surface Modeling

Density Surface Modeling

• Captures spatial and temporal trends in distributions
• Estimates density
• Rather than probability of occurrence
• Requires line-transect data
• We need to improve our oceanographic variables to
better capture spatial patterns

Occupancy Modeling
• Probability that a site is occupied
• Addresses imperfect detection
– Observer bias
– Availability bias

• Uses presence/absence data
Probability of habitat use

– Option to use a wider range of data sets
Right Whales

Jan-Mar

Apr-Jun

Jul-Sep

Oct-Dec

Multi-year seasons (2012 – 2018)

Seasonal Occupancy Predictions

Moving Forward
• Manuscript documenting temporal and spatial
changes among surveys
• Standardizing methodology

• Demographic analyses to understand when males and
females, adults and juveniles are in the study area
• Habitat modeling
• Analyzing data for other species
December 2018

Acknowledgements
•
•

•
•

Aerial surveys of offshore wind energy areas sponsored by MassCEC and the
Bureau of Ocean Energy Management
AvWatch, aerial survey observers, and everyone involved in collecting these
valuable data sets
New England Aquarium Right Whale Catalog and Photo ID team
EcoMap team:
Laura Ganley Katherine McKenna
Orla O’Brien

Dan Pendleton

Questions?
Jessica Redfern
[email protected]

Brooke Hodge

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01ÿ

North Atlantic Right Whale Monitoring
and Surveillance: Report and
Recommendations of the National Marine
Fisheries Service’s Expert Working
Group
Erin M. Oleson, Jason Baker, Jay Barlow, Jeff E. Moore, Paul Wade

U.S. Department of Commerce
National Oceanic and Atmospheric Administration
National Marine Fisheries Service
NOAA Technical Memorandum NMFS-OPR-64
June 2020

North Atlantic Right Whale Monitoring and Surveillance:
Report and Recommendations of the National Marine
Fisheries Service’s Expert Working Group
Erin M. Oleson1, Jason Baker1, Jay Barlow2, Jeff E. Moore2, Paul Wade3

1

National Marine Fisheries Service, Pacific Islands Fisheries Science Center
National Marine Fisheries Service, Southwest Fisheries Science Center
3
National Marine Fisheries Service, Alaska Fisheries Science Center
2

NOAA Technical Memorandum NMFS-OPR-64
June 2020

U.S. Department of Commerce
Wilbur L. Ross, Jr., Secretary
National Oceanic and Atmospheric Administration
Neil A. Jacobs, Ph.D., Acting NOAA Administrator
National Marine Fisheries Service
Chris Oliver, Assistant Administrator for Fisheries

Recommended citation:
Erin M. Oleson, Jason Baker, Jay Barlow, Jeff E. Moore, Paul Wade. 2020. North Atlantic Right
Whale Monitoring and Surveillance: Report and Recommendations of the National Marine
Fisheries Service’s Expert Working Group. NOAA Tech. Memo. NMFS-F/OPR-64, 47 p.

Copies of this report may be obtained from:
Office of Protected Resources
National Oceanic and Atmospheric Administration
1315 East-West Highway
Silver Spring, MD 20910
Or online at:
https://repository.library.noaa.gov/

ii

TABLE OF CONTENTS
LIST OF ACRONYMS .................................................................................................. V
EXECUTIVE SUMMARY ..............................................................................................1
I. WORKSHOP OBJECTIVES .......................................................................................4
Population Status .......................................................................................................................... 4
Distribution and Habitat .............................................................................................................. 4
Health Status ................................................................................................................................. 5

II. DESCRIPTION OF CURRENT EFFORTS ..................................................................6
Primary Data Collection Efforts in Support of Population Assessment .................................. 6
Photo-Identification Data Contributed by Partners ................................................................... 7
Photo-Identification Data Collected by NMFS Aerial Surveys .................................................. 9
Analysis Efforts to Assess Population Status............................................................................ 11
Efforts to Describe Distribution and Habitat ........................................................................... 12
Efforts to Assess Population Health .......................................................................................... 14

III. DATA GAPS AND LIMITS TO INFERENCE ..........................................................14
Need for Spatially-Temporally Standardized Survey Design ................................................. 14
Collection of Consistent Data Elements by All Data Contributors ........................................ 15
Leveraging Existing Data to Address Key Management Questions ...................................... 16

IV. RECOMMENDATIONS .........................................................................................16
Essential Population and Individual Metrics ........................................................................... 16
Adult Survival............................................................................................................................ 16
Calf to Subadult Survival (Roughly Ages 0 to 5 Years) ............................................................ 16
Abundance................................................................................................................................. 17

iii

Calf Production......................................................................................................................... 17
Population Age-Sex Structure ................................................................................................... 17
Number of Reproductive Females ............................................................................................. 18
Visual Health Index (and Potentially Other Health Metrics) ................................................... 18
Interrogating Existing Data to Inform Future Monitoring Schemes ..................................... 18
Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure High Precision and Minimize
Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner ............ 18
Objective 2. Maintain Sufficient Effort to Detect Entangled, Injured, and Dead North Atlantic
Right Whales ............................................................................................................................. 20
Objective 3. Improve Characterization of Risk Seascape ......................................................... 20
Objective 4. Improve Understanding of Relative Detection by Acoustics Versus Visual Survey
................................................................................................................................................... 21
Improving the North Atlantic Right Whale Habitat Model ................................................... 21
An Integrated Passive Acoustic and Visual Survey Monitoring Plan .................................... 22
Acoustic Monitoring to Examine Distribution and Habitat Use .............................................. 23
Aerial Surveys and Collection of Identification Photographs .................................................. 28
Data Collected on Vessel-Based Surveys ................................................................................. 32
Other Research Recommendations ........................................................................................... 33
Examination of Acoustic Records from the Northeast Atlantic and Adjacent Seas .................. 33
Satellite Imagery ....................................................................................................................... 33
Tagging ..................................................................................................................................... 34

V. CONCLUSIONS AND ACKNOWLEDGEMENTS .......................................................34
VI. LITERATURE CITED ...........................................................................................36
APPENDIX I. TABLES ................................................................................................38
APPENDIX II. WORKSHOP PARTICIPANTS AND CONTRIBUTORS............................42
APPENDIX III. WORKSHOP AGENDA .......................................................................43

iv

LIST OF ACRONYMS
BOEM – Bureau of Ocean Energy Management
CCB – Cape Cod Bay (CCB)
CCS – Provincetown Center for Coastal Studies (CCS),
DFO – Department of Fisheries and Oceans Canada
GOM – Gulf of Maine
GoSL – Gulf of St. Lawrence
GSC – Great South Channel
LIMPET – Low Impact Minimally Percutaneous Electronic Transmitter
NARW – North Atlantic right whale
NEAq – the New England Aquarium
NEFSC – Northeast Fisheries Science Center
NMFS – National Marine Fisheries Service
NOAA – National Oceanic and Atmospheric Administration
PAM – Passive Acoustic Monitoring
RNA – Ribonucleic Acid
SEFSC – Southeast Fisheries Science Center
SERO – Southeast Regional Office
SEUS – Southeastern United States
U.S. – United States
UAS – Unmanned Aerial Systems
VHR – Very High Resolution

v

vi

EXECUTIVE SUMMARY
The National Marine Fisheries Service (NMFS) North Atlantic right whale (NARW) Steering
Committee convened an expert Working Group to address two objectives related to monitoring
NARWs: (1) improving our understanding of population status by identifying and tracking
essential population metrics, and (2) improving our understanding of distribution and habitat use.
The Working Group consisted of five NMFS researchers (the authors of this report) with
expertise in marine mammal monitoring, but not directly involved in current NARW monitoring
efforts. The Working Group was convened during a three-day workshop (held at NMFS
Southwest Fisheries Science Center in La Jolla, California, from October 22-24, 2019, with
remote participants on Day 1), and on a series of follow up conference calls. This report provides
a brief summary of the information provided to the Working Group, including historic and
current NARW monitoring efforts conducted by NMFS and partner institutions, information on
the status and trends of NARWs, and analyses conducted during the workshop or at the Working
Group’s request. Moreover, the report primarily presents the Working Group’s recommendations
for a comprehensive monitoring strategy to guide future analyses and data collection on (1)
NARW demographics and population status, (2) distribution shifts and habitat use range-wide,
and (3) the health of individuals and the population. The Working Group’s recommendations are
intended to improve NMFS’ overall monitoring strategy for NARW, with recognition of the
significant contribution to NARW research and monitoring carried out by NMFS and partner
institutions and agencies.
The Working Group’s recommendations address several overarching themes. These include (1)
identifying the essential population and individual metrics to be monitored, (2) characterizing
analyses that may be conducted with existing data that are critical to fine-tuning and efficiently
executing an effective monitoring plan, (3) expanding the NARW species distribution model
through data standardization and coordination, (4) establishing an integrated visual and passive
acoustic monitoring (PAM) scheme, and (5) evaluating the utility of other research tools
including satellite imagery and telemetry tagging for NARWs.
The Working Group agreed that the most important population and individual metrics to be
monitored include adult survival, calf to subadult survival, abundance, calf production,
population age-sex structure, number or reproductive females, and the visual health index. At
present, adult survival, abundance, and calf survival are estimated with high precision and low
bias through the intensive aerial photo-identification efforts of NMFS and its partners. In
contrast, calf to subadult survival is estimated with low precision owing to small sample size,
and the number of reproductive females is not estimated annually. The age-sex structure of
NARWs has not been estimated, though given the extensive data available on individual whales,
could be generated and would provide valuable insight into the current demographics of the
population and its future trajectory. Finally, a visual health assessment has been developed that
provides information on individual health and body condition. A 2019 workshop on NARW
1

health assessment provided insights into expanding and improving this assessment. The Working
Group recommends that once the utility of those metrics has been established, their estimation
should be considered for integration in the monitoring program.
The NARW data that have been amassed to date are an invaluable resource that could be further
analyzed to inform a future, more optimized monitoring plan. The Working Group identified and
described 11 retrospective analyses within four overarching objectives: (1) optimizing aerial and
vessel-based survey effort to ensure high precision and low bias in the estimation of population
and individual metrics identified above, (2) maintaining sufficient effort to detect entangled,
injured, and dead NARWs, (3) improving characterization of the overall risk seascape, and (4)
improving understanding of the relative detection by visual versus passive acoustic platforms.
Many of the analyses identified will be critically important to designing and executing an
efficient monitoring plan.
The current NARW habitat model is a valuable resource for examining habitat hotspots and
historical distribution shifts. A robust quantitative habitat-based density model requires specific
data inputs, and the variability in data collection approaches across all NARW partners has
slowed progress toward the next generation model. Increased standardization in the collection of
a small subset of survey effort metrics and sighting parameters would facilitate much broader
integration of the vast network of spatial data collected on NARWs and, together with
cooperation with Canadian modeling efforts, provide a more robust model for future predictions
of habitat shifts and risk assessments.
Based on review of past and current NMFS and partner survey efforts, the relative contribution
of unique photographic identifications from various regions and contributors, and the ongoing
PAM work along the U.S. and Canadian east coasts, the Working Group provides specific
recommendations for developing an integrated visual (aerial and vessel-based) and PAM plan
that attempts to maintain appropriate survey effort to estimate essential population demographic
metrics, track individual health status, and capture habitat hotspots and shifts, in an efficient and
cost-effective manner while reducing cost and risk to humans of significant and sustained use of
survey aircraft. This plan envisions:
● Establishing a network of 16 long-term passive acoustic listening stations to monitor
distribution and habitat use
● Conducting targeted aerial surveys (i.e., at aggregations of whales) to collect photoidentifications of ~90% of the population within a given year
● Coordinating efficient, and timely identification of individuals across all data collectors
within a survey year
● Conducting periodic broad-scale systematic aerial surveys of the entire Gulf of Maine
and Southern New England area, alternating with a systematic rotation through all
historical NARW hotspots

2

● Maintaining or increasing vessel survey effort to collect individual health data and
replace aerial surveys for collecting individual identification photos whenever possible
The Working Group puts forward these recommendations acknowledging the significant efforts
of NMFS and its partners over several decades. The recommendations in this report are intended
to capture the best and most effective elements of those past and ongoing efforts and provide a
roadmap for a systematic, efficient, and effective monitoring strategy for the future.

3

I. WORKSHOP OBJECTIVES
The National Marine Fisheries Service (NMFS) North Atlantic right whale (NARW) Steering
Committee convened an expert Working Group to address two broad objectives related to
monitoring NARWs: (1) improving our understanding of population status by identifying and
tracking essential population metrics, and (2) improving our understanding of distribution and
habitat use. The expert Working Group consisted of five staff with expertise in marine mammal
monitoring and quantitative assessments, but not directly involved with current NARW
monitoring efforts, who were asked to develop options for a comprehensive strategy to:
1. Monitor population status, including estimates of abundance, trends, survival and birth
rates, and other demographic metrics
2. Monitor distribution shifts and habitat use range-wide
3. Assess health of individuals and the population (e.g., identify causation/threats, assess
sublethal effects) through biological sampling
The Working Group’s specific tasks were to provide expert guidance to the Steering Committee
on how best to achieve the following more specific objectives:

Population Status
●

Identify the essential population demographic metrics (e.g., survival rate, birth rate, age
at calving, calving rate, age structure, life span) the agency should use to track recovery
of this species, including a description of why each metric is essential for monitoring the
population status.
● Develop a monitoring/surveillance plan for each essential population metric identified
above, including options for:
o Sampling methods
o Data types
o Sampling locations (e.g., region and/or range-wide)
o Monitoring/survey frequencies

Distribution and Habitat
●

Determine approach for identifying:
o Distribution, occurrence, and habitat use in the mid-Atlantic region (i.e., west of
72° 30’ West, south of 40° 00’ North through 35° 30’ North (North Carolina))
o Migratory corridor and associated physical and biological features in the midAtlantic
o The unobserved portion of the population in time/space (i.e., “missing whales”
not detected during aerial surveys in northeast and southeast)
o Where animals die

4

●

Determine best methods for quantifying changes in occurrence and distribution (e.g.,
relative to a changing climate)
● Determine whether, and if so how, historic and current visual sightings data can be
combined with passive acoustic detection data to assess past and current occurrence and
distribution, and decadal-scale changes in distribution

Health Status
●

Determine approach for identifying cause(s) or contributing factors for dead, injured,
entangled animals and poor reproduction and poor health
● Determine approach for collecting:
o Health assessment data, such as body condition and skin condition including
scarring
o Hormones for assessing reproductive state, stress, metabolism/energetics,
nutritional state
o Injury state (e.g., wounds, entanglements, skin lesions, etc.)
The Working Group met October 22-24, 2019 at the NMFS Southwest Fisheries Science Center
in La Jolla, California (see Appendix II). The group received presentations on management
needs for monitoring data, using mark-recapture analysis to estimate abundance and evaluate
trends, current monitoring efforts in the U.S. and Canada using planes, vessels, and passive
acoustics, and current funding levels (see Appendix III). The following report describes
recommended options for comprehensively monitoring the NARW population throughout its
range using various platforms and the rationale associated with each element.

5

II. DESCRIPTION OF CURRENT EFFORTS

Figure 1. Known primary North Atlantic right whale habitats.

Primary Data Collection Efforts in Support of Population Assessment
The primary data collected for monitoring population status (population size, trends in
abundance, survival rates, and recruitment) come from the photo-identification studies in known
NARW habitats (Figure 1) conducted from multiple platforms (aircraft and surface vessels) by
multiple governmental and non-governmental programs. Most of the current data are provided
by the Provincetown Center for Coastal Studies (CCS), NMFS Northeast Fisheries Science
Center (NEFSC), Department of Fisheries and Oceans (DFO) Canada and Transport Canada, the

6

New England Aquarium (NEAq), and combined efforts of the NMFS Southeast Fisheries
Science Center (SEFSC), NMFS Southeast Regional Office (SERO), and the states of Florida
and Georgia, as well as a variety of other contributors. Major funders of this data collection
include NMFS, the Bureau of Ocean Energy Management (BOEM), U.S. Navy, Transport
Canada, DFO and the State of Massachusetts. All sighting and survey effort records are
submitted to the NARW Consortium Database maintained by the University of Rhode Island for
inclusion in the sightings database and those with photographs are also submitted to the NEAq
for integration into a unified photo-identification catalog 1. Most field research teams match their
photographs to this catalog during their field efforts.
The number of NARW identifications collected by each cooperating institution and platform
(aerial or vessel) has varied from 2001 to 2017 (Appendix I, Tables 1 and 2), with contributions
from Canada increasing dramatically in recent years as the distribution of NARWs has shifted
and the efforts of Canadian Government agencies have increased. Similarly, the number of
NARW identifications has varied by region from 2001 to 2017 (Appendix I, Tables 3 and 4),
most notably with recent increases in sampling in the Gulf of St. Lawrence. Many individual
NARWs are seen by multiple institutions and in multiple areas within a single year, such that the
number of NARWs seen uniquely by a single institution/platform (Appendix I, Table 2) or in a
single area (Appendix I, Table 4) is typically less than ⅓ of the total number of NARWs seen in
a year. Each year, surface vessels provide a few identifications that are not obtained from any
other source (Appendix I, Table 2), but the majority of identifications now come from aircraft
(Appendix I, Table 1).
Photo-Identification Data Contributed by Partners
1. Provincetown Center for Coastal Studies aerial surveys in Cape Cod Bay 2
CCS flies a fixed survey grid over the entirety of Cape Cod Bay and the eastern Cape several
days per month during winter and early spring until NARWs leave this foraging ground for other
regions. These surveys provide a large number of photo identifications (Appendix I, Tables 1 and
3), including a large proportion of the unique identifications provided to the catalog each year
(Appendix I, Tables 2 and 4). CCS also conducts small boat habitat surveys along predetermined
tracklines to visit 8-9 sampling stations, as well as foraging surveys directed by aerial sightings
of NARWs, both of which may provide additional photo identifications.

1
2

http://rwcatalog.neaq.org/Terms.aspx
https://coastalstudies.org/right-whale-research/population-monitoring/

7

2. DFO Canada 3 and Transport Canada 4 aerial surveys in the Gulf of St. Lawrence
In response to apparent recent increases in NARW abundance and observed deaths in the Gulf of
St. Lawrence, DFO and Transport Canada now conduct substantial aerial survey effort from
spring through fall to locate NARWs. The survey effort has been focused primarily on the main
shipping routes within the Gulf of St. Lawrence, as well as over primary fishing regions, but
includes some flights into other regions of likely NARW habitat. Oblique identification
photographs are collected from the planes, though information on regions with large
aggregations of whales is generally passed to NMFS to conduct flights for additional photoidentification efforts. DFO survey efforts account for most of the unique identifications in
Canada (Appendix I, Tables 2 and 4).
3. New England Aquarium 5 small boat surveys in the Bay of Fundy, Roseway Basin/Scotian
Shelf, and Gulf of St. Lawrence
The NEAq began annual small boat surveys in the Bay of Fundy in 1980 and in the Roseway
Basin/Scotia Shelf regions more recently. Traditionally, both surveys provided a reasonable
number of unique identifications (Appendix I, Table 2), but the number of NARWs using these
areas has declined in recent years. The NEAq has recently been conducting small boat surveys in
the Gulf of St. Lawrence in response to an increase in NARW sightings in that region. Many of
the NEAq photo-identification efforts are focused on collecting data for individual whale health
assessments, requiring more detailed photographs from a variety of angles to provide a robust
examination of current health status (e.g., Pettis et al. 2004). The NEAq has been conducting
aerial surveys in the offshore waters south of Nantucket and Martha’s Vineyard since 2011,
though the steering committee did not have access to these data so they are not discussed
specifically in this report.
4. Southeastern U.S. (SEUS) small boat surveys
The states of Georgia and Florida conduct small boat surveys of the winter calving areas,
directed by NARW detections from the aerial surveys. This effort serves primarily to collect
biopsy samples of calves for genotyping and later identification.

3
https://www.dfo-mpo.gc.ca/species-especes/mammals-mammiferes/narightwhale-baleinenoirean/alert-alerte/indexeng.html
4
https://www.tc.gc.ca/en/services/marine/navigation-marine-conditions/protecting-north-atlantic-right-whalescollisions-ships-gulf-st-lawrence.html
5
https://www.andersoncabotcenterforoceanlife.org/category/right-whale-research/

8

Figure 2. Summary of NEFSC aerial survey approaches since 2002 (left panels), and overall
survey effort and combined NARW sightings resulting from broad-scale surveys form 20022006 (right panel). Provided to Working Group by NEFSC.
Photo-Identification Data Collected by NMFS Aerial Surveys
The NEFSC conducts aerial surveys in a National Oceanic and Atmospheric Administration
(NOAA) Twin Otter for much of the year. These include surveys of designated geographic areas
as well as other Gulf of Maine sites in spring, summer, and fall, South of the Islands (i.e.,
Nantucket and Martha’s Vineyard) in fall, winter, and spring, and most recently in the Gulf of St.
Lawrence in spring, summer, and fall. Much of the survey effort in the Gulf of St. Lawrence is
dedicated to areas of NARW concentration identified from DFO surveys and also to locate dead
or entangled NARWs for recovery efforts.

9

Figure 3. Seasonal distribution of NMFS aerial survey effort in recent years (2016-2019), and
previous years (2010 through 2015). Actual effort may vary considerably between locations.
Photo-identification surveys conducted by the NEFSC have evolved substantially over time.
These surveys initially flew over the Great South Channel (1998-2001), and then evolved to
broad-scale systematic surveys (2002-2006) throughout U.S. waters in the Gulf of Maine and
Southern New England (Figure 2 and Figure 3). The results of those broad-scale surveys led to
more targeted surveys in designated “boxes” from 2007-2016 in order to maximize survey effort
in locations that consistently contained aggregations of NARWs. This was modified starting in
2017 to direct survey efforts to areas with the highest capture rates, to maximize detections of
unique individuals. Surveys are flown repeatedly to the same area until the discovery curve for
new individuals levels off and few or no new individuals are detected.

10

SERO, in collaboration with the states of Georgia and Florida, conduct aerial surveys of the
winter calving areas. These have been very successful, and not long ago were providing as many
as 120 unique identifications per year. However, NARWs’ usage of the area has dramatically
declined, and as few as seven NARWs, including accompanied calves, have been identified in
recent years.

Analysis Efforts to Assess Population Status
The primary tool for integrating and interpreting the photo-identification data into population
assessments is the Bayesian integrated population model developed by Pace et al. (2017).
Analyses of data collected through 2018 presented at the workshop show relatively constant noncalf (ages 5+) survival rates of ~0.98 and 0.97 (for males and females, respectively) from 1990 to
2014 and a decrease to ~0.96 and 0.95 (respectively) for 2015-2016. Survival rates of calves (0-5
years) were about 2% less than for females ages 5+, and changes in both adult and calf survival
rates over time are constrained in the model to follow an identical trend (i.e., the age-sex class
effect is additive on the logit scale). Survival rate estimates of NARWs younger than adults have
low precision, owing to small sample sizes. Consequently, it remains uncertain whether juvenile
survival has changed in recent years. The model estimates an increasing population trend from
~260 in 1990 to a maximum of ~483 in 2011 followed by a decrease to ~410 in 2018.
A calf production index (the proportion of calves in the population) can be estimated from the
number of calves observed in a given year and the model-based estimates of population size.
Results show that calf production has been very low since 2010 (compared to values in 20012009) and is below the level required for replacement of adults. It appears that this recent decline
in calf production is largely responsible for the observed decline in population size in recent
years. The potential contribution of reduced survival of both young and adult NARWs to the
population trend remains uncertain.
The estimated proportion of the population sampled by photo-identification each year (capture
probability) has been very high, roughly 90% in the years 2000 to 2010. Capture probabilities
began to drop starting in 2011 likely because of changes in NARW distributions (Davis et al.
2017), reaching levels of approximately 50-60% in 2014. With subsequent changes in survey
effort, values for the most recent years (2016-17) are again approaching 90%. A high capture
probability not only reduces the variance in estimated parameters, it also reduces the likelihood
of bias caused by violations in model assumptions.
The higher male survival rate than female survival rate will result in a population with an
increasingly biased sex ratio in older individuals, which reduces the reproductive potential for a
given total population size. In the published model of NARW population dynamics, Pace et al.
(2017) estimate that the ratio of females to males increased from 1:1.15 in 1990 to 1:1.46 in
2015. If this apparent pattern continues, there is concern that population productivity may
continue to decrease.
11

Efforts to Describe Distribution and Habitat
There have been many efforts to describe NARW foraging and mating habitat, drivers of habitat
preferences, and habitat quality and variability. The same aerial and vessel surveys that provide
identification photographs also provide much of the data used to study distribution and habitat.
Opportunistic sightings also provide new insights in areas that are not covered by existing survey
effort. Quantitative descriptions of NARW habitat typically require design-based surveys and
data from targeted surveys cannot be used for these analyses. Diverse PAM efforts have also
been ongoing for almost two decades and collectively provide a rich dataset for examining
distribution. However, most passive acoustic recorder deployments have been short-term or
funded by partners interested in specific questions or regions, requiring researchers to piece
together datasets that do not overlap in time, do not consistently sample the same sites, and may
not be recording in optimal seasons or locations.
Several decades of research have shown that NARWs use discrete habitats at specific times of
the year (Figure 1), and researchers have taken advantage of this to target data collection. Well
documented NARW foraging habitats include Cape Cod Bay, the Great South Channel and edge
of Georges Bank, an area to the south of Martha’s Vineyard and Nantucket, the waters around
the Bay of Fundy, Roseway Basin, the southern Gulf of St. Lawrence and the western end of
Anticosti Island (Davies et al. 2019; Davis et al. 2017; Durette-Morin et al. 2019; Leiter et al.
2017; Mayo et al. 2018; Simard et al. 2019). Additionally, the whales’ only known calving
ground extends along the coast of the South Atlantic Bight (Gowan and Ortega-Ortiz 2014;
Keller et al. 2012). NARWs respond to environmental changes and may use habitat
intermittently over time. The whales have been known to nearly abandon a frequently used
foraging habitat only to come back in future years in large numbers. In recent years, the whales
have demonstrated actual shifts in distribution, frequenting previously unrecognized foraging
habitats. However, sightings data indicate that NARWs may investigate a previously preferred
habitat, but not stay if the prey resource is insufficient, so some habitats previously used no
longer have high densities of NARWs (Davies et al. 2019; Davis et al. 2017).
A recent effort to aggregate all available and appropriate survey data resulted in monthly
predictive habitat models along the U.S. east coast for NARWs and several other cetacean
species (Roberts et al. 2016). These habitat-informed density models offer the most
comprehensive evaluation of NARW density along the east coast to date and include relevant
data through 2016. The Duke University team is currently funded under a cooperative agreement
with NMFS to update the models using 2017 and 2018 data as well as create separate models for
the periods before and after 2010 when NARW distribution began to shift. It is worth noting that
not all NARW surveys or datasets are appropriate for use in this type of quantitative model. This
density modeling effort requires survey data collected using line-transect survey protocols. The
Roberts et al. models are not able to incorporate opportunistic NARW sightings, non-line

12

transect survey data, or data from directed survey efforts (i.e., those directed at known
aggregations of NARWs).
There have been many PAM efforts throughout the northwest Atlantic over the past decade,
including efforts by NEFSC to maintain collaborative long-term monitoring of species
occurrence from the northern Gulf of Maine south through the New York Bight as part of the
Northeast Passive Acoustic sensing Network (Van Parijs et al. 2015). Acoustic data provide
insights into the occurrence of NARWs at times of the year when poor weather and lack of light
make visual surveys highly restricted (i.e., late fall to early spring). A recent analysis of NARW
seasonal and annual occurrence throughout the Northwest Atlantic using a diverse set of PAM
data collected by a large number of collaborators resulted in an impressive assessment of
changes in NARW distribution over 11 geographic regions from 2004 through 2014 (Davis et al.
2017). Although the aggregated dataset provides great insights into NARW occurrence and
changes in distribution over the decade, the lack of concurrent and continuous monitoring at
many locations hinders detailed examination of the movements of NARWs between regions and
the changes in distribution over time (see Figure 4).

Figure 4. (Reprinted from Davis et al. 2017, Figure 5). The proportion of year with available
passive acoustic recordings in each monitored region (see Davis et al. 2017, Fig. 1). Years are
split into quarters from January 2004 to December 2014. Black indicates at least one recorder
present for the entire quarter year for that region, lighter gray indicates a portion of that time
period with recordings, and white indicates no available acoustic data for that region and time
period.
Recent NARW sightings and acoustic detections in the Northeast Atlantic, coupled with historic
records of NARW presence, are intriguing and suggest monitoring efforts should expand to
targeted surveys in these more eastern areas, at least on a sporadic basis. For example, within the
last decade one NARW has been sighted and detected in Icelandic waters during the summer
months. Historic whaling records also indicate NARWs used this area in the summer.

13

Efforts to Assess Population Health
Health status has largely been assessed using photographs from the aerial and vessel surveys
using a well-established NEAq protocol. These visual health assessments have been shown to be
correlated with survival and birth rates for NARWs (Pettis et al. 2004). Additional biological
samples taken during small boat efforts also contribute information on hormone levels and other
metrics. Photogrammetric measurements of NARWs have been made from unmanned aerial
systems (UAS) deployed from surface vessels and may also contribute useful information on
health status. To date, only the visual health assessments are routinely done and other efforts are
largely in the research and development phase. Additional research is needed to determine
whether other metrics are correlated with survival and birth rates.
In June of 2019, NMFS convened a workshop related to assessing NARW health. The goals of
the workshop were to (1) assess current NARW health information data, including associated
data gaps, and (2) identify appropriate available and needed tools and techniques for collecting
standardized health data that can be used to understand health effects of environmental and
human impacts (e.g., entanglement), and inform fecundity and survivorship models to ultimately
guide population recovery. A forthcoming report further details this workshop and efforts to
assess NARW population health. An important result of the workshop was the recognition that
the vast majority of data used to assess NARW health are collected during vessel surveys.
Accordingly, in developing recommendations for vessel surveys, the Working Group considered
health assessment data needs.

III. DATA GAPS AND LIMITS TO INFERENCE
Need for Spatially-Temporally Standardized Survey Design
As NARW distribution has varied over time, so has the spatial distribution of survey effort, as
‘following’ larger aggregations of animals maximizes collection of photo identifications and
other datasets. Indeed, the collection of identification photographs of NARWs has been
spectacularly successful, providing for precise estimates of population size and survival rate by
year (Pace et al. 2017).
However, there are trade-offs to this adaptive sampling approach. As noted above, such
opportunistic (in contrast with design-based) datasets are less amenable to spatial habitat and
density-surface modeling. They also make it difficult to assess longitudinal changes in
population distributions because the locations of animals are confounded with the locations of
effort and new aggregation sites can be difficult to detect (e.g., if NARWs start using unsurveyed areas). In addition, the estimation of certain demographic metrics can be prone to bias
under this adaptive sampling approach. In particular, obtaining an unbiased estimate of
population size requires that all animals in the population are available to be sampled, meaning
that all individuals are at least occasionally present in areas where photo-identification efforts are
14

occurring. If a segment of the population is, or becomes, unavailable to the survey efforts (by
permanently moving to new areas), the population size will be under-estimated. Less obviously,
estimates may also be biased if capture heterogeneity (across years or individuals) is extreme.
Extreme heterogeneity can occur if, for example, some animals temporarily (for a period of
years) emigrate to un-sampled areas, or if individuals are site-faithful to areas sampled more- or
less-often. Heterogeneity can be modeled with random effect parameters, but this does not
provide a guarantee of eliminating bias (e.g., if heterogeneity is not logit-normal distributed) and
does not improve precision. These issues can affect survival-rate estimation as well, although
survival estimation is more robust to capture heterogeneity than is abundance estimation. Finally,
this adaptive sampling approach means that only a fraction of the population’s distribution is
known, with the remainder of the population being distributed in un-surveyed areas. A potential
concern is that these ‘missing’ animals could be incurring mortality risk (e.g., from vessel strike
or gear entanglement) that is not being managed or assessed. Systematic annual survey area
throughout the NARW range, including new areas that may have a relatively high likelihood of
being occupied, would provide a more complete picture of whether the population is incurring
risks throughout the year.
A coordinated range-wide monitoring plan should achieve a balance between maximizing photoidentification data collection (i.e., targeted effort on aggregations) and obtaining broad-scale,
spatially and temporally representative distribution data throughout the range that allows for
valid spatial modeling and detecting changes in animal use and movement patterns. There should
be continuous monitoring in potential high-risk areas should NARWs start using those areas
(e.g., in areas of high fishing vertical line density or vessel traffic), as well as periodic
monitoring of some sort (acoustic or visual survey) in areas of potential but previously
undocumented use, so that potential colonization of these areas is detectable. Areas of potential
use could be identified, for example, by spatial density or occupancy modeling efforts, fit to
visual survey or PAM data (cf., Monsarrat et al. 2015; Roberts et al. 2016). The viability of using
satellite image data to identify new aggregation areas could also be explored.

Collection of Consistent Data Elements by All Data Contributors
There are many researchers and institutions contributing to NARW research and recovery
efforts. Many of these institutions have been conducting NARW research for decades and use
their own established protocols for various types of data collection. The NARW Consortium has
done a tremendous job of aggregating the various data sources to make all data maximally usable
to the collective; however, some quantitative analysis efforts have been hindered by differences
in data collection approach among data contributors. In particular, NARW spatial density models
require standard measures of search effort and perpendicular detection distance, which have not
been readily available from all surveys. Although there have been significant post-hoc efforts to
standardize data for analyses, this has been a large task that could be mitigated through
developing standards for collecting a common data subset across the various data contributors.

15

Leveraging Existing Data to Address Key Management Questions
The impressive photo-identification catalog and analyses of these data have generated precise
inferences about trends in population size, survival, and reproductive rates. However, the full
potential of the catalog in addressing additional management questions has yet to be fully
explored. Additional, key management questions such as those related to quantifying unobserved
human-caused mortality and understanding anthropogenic influences on survival and
reproduction may be addressed through additional analyses of the catalog, modifying or
extending existing models, and in some cases, through modifying survey efforts to obtain
additional necessary data. Below, the Working Group makes several related recommendations on
this point.

IV. RECOMMENDATIONS
Essential Population and Individual Metrics
Several key demographic metrics and individual-level metrics have been and continue to be
estimated for this population. Some of these, including adult survival and abundance, are
estimated with high precision and apparently with little bias. It would be informative to improve
estimates of some other metrics and population metrics that are currently either estimated with
low precision or not available. Below, the Working Group provides a list of high priority metrics
and recommendations regarding their relative need for improvement.
Adult Survival
Adult survival is currently estimated annually with sufficient precision and low bias. This should
be continued. The Working Group suggests that survival modeling be further investigated to
evaluate support for any change in the disparity between adult male and female survival rates
over time. The estimated survival rates in Pace et al. (2017) and updated output shared at the
workshop were based on a model with an additive survival effect, which constrains the sex
difference to be constant over time. A model with a sex x time interaction might indicate whether
adult female survival has become relatively lower than male survival in recent years. The initial
sex state of individuals of unknown sex (assumed to be at parity) may also affect the change in
sex ratio in the model. The Working Group also recommends exploration of alternative
assumptions on initial sex ratios.
Calf to Subadult Survival (Roughly Ages 0 to 5 Years)
Calf to subadult survival is currently estimated annually but with relatively low precision owing
to low sample sizes. The Working Group recommends exploring alternative capture-recapture
model formulations to determine whether any change in survival of young animals has occurred
in recent years. One such potential formulation might allow young NARW survival to be
estimated independently from adults (i.e., an interaction rather than additive age effect) and with
16

years grouped appropriately (i.e., before and after some potential change-point year) for young
animals in order to increase the precision of estimates for this age class. A proportion of young
NARWs are of uncertain age. Precision in age-specific estimates of young NARW survival could
be improved by increased effort to determine their ages through genetic sampling and matching
with biopsy samples obtained from neonates.
Abundance
Population size is estimated annually and with high precision and low bias. This should be
continued.
Calf Production
The number of calves born annually is determined through total enumeration during intensive
aerial surveys in the calving area. It is rare to find a new calf on the foraging grounds not
previously identified on the southeast calving grounds. Calf production combined with other
relevant information can be used to derive other reproductive metrics of interest, including gross
reproductive rate (calves per mature female), calves per female (without regard to age), a calving
index (calves divided by total abundance), and inter-birth interval. Estimation of calf production
should continue, with effort adjusted appropriately to achieve total enumeration without
excessive expenditure of survey resources.
Population Age-Sex Structure
The age-sex structure of the NARW population is not currently available. The age-sex structure
is a product of the annual survival and reproductive output of a population for a generation. As
such, it is a convenient graphical integration of a population’s history. Gaps in one or more ages
reflect either a deficit in births or high historic mortality. Furthermore, future population trends
are determined by both prevailing vital rates (survival and reproductive rates) and current agesex structure. If an age-sex structure is significantly perturbed relative to the theoretical stable
age distribution associated with the lifetable (matrix of survival and reproductive rates), the
future realized population trend may be dominated by the age-sex structure. Currently, the
NARW age-sex structure is not estimated, but it could be based on the known individuals in the
population and information on their known, estimated, or minimum ages. There will be error in
the estimated age-sex structure owing to uncertainty in observed individuals’ ages and sexes, as
well as uncertainty in the estimated unobserved portion of the population in a given year.
However, given the wealth of data available for this population, it is anticipated that the
uncertainty in the age-sex structure will be relatively low. A variety of statistical approaches
could be used to incorporate uncertainty in age and sex into the estimated structure. Again,
additional effort to biopsy young animals and match them via genetic analysis to already
sampled neonates would reduce uncertainty in the calf to subadult ages.

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Number of Reproductive Females
This metric is easy to understand and conveys the current dire status of the NARW. It has been
estimated in the past but apparently is not updated regularly. This could be readily achieved
using reproductive histories of individual females combined with the female population age
structure.
Visual Health Index (and Potentially Other Health Metrics)
The preceding metrics are all population-level metrics in that they apply to demographic groups
of animals or the entire population. Here the Working Group highlights the priority to measure
relevant health metrics at the individual level. An existing visual health assessment index is
derived from photographs and incorporates information on qualitative body condition, skin
condition, rake marks, cyamid loads, and lesions. These body and skin condition metrics have
proven to be a significant predictor of individuals’ survival. A suite of additional individual
health associated metrics was identified during the 2019 NARW Health Workshop as potentially
informative for health status, future survival, and future reproductive performance. Once the
utility of such metrics has been established, their estimation should be considered for integration
in the monitoring program.

Interrogating Existing Data to Inform Future Monitoring Schemes
The NARW data that have been amassed to date are an invaluable resource that could be further
analyzed to inform a future, more optimized monitoring plan. The Working Group was provided
an extensive overview of the data collection and monitoring efforts that have been ongoing by
NMFS and other organizations; however, the Working Group did not have an opportunity to
analyze existing data to inform monitoring plan recommendations. Although the Working Group
presents a monitoring plan below, it acknowledges that aspects of this proposed plan may be
refined through additional analyses of existing datasets. The Working Group recommends
several analyses of the photo-identification, survey, and other data prior to finalizing a
monitoring plan. Below the Working Group outlines desired objectives and a suite of analyses
that could be conducted on existing data to help achieve those objectives through the design of
an improved monitoring plan.
Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure High Precision and Minimize
Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner
Achieving this objective depends upon maintaining high (approximately ≥ 0.90) annual capture
probabilities for all age and sex classes, minimizing heterogeneity in capture probabilities among
individuals, and re-distributing effort in such a way as to reduce oversampling or undersampling
of certain areas (and thereby certain segments of the population).

18

Proposed retrospective analyses:
A. Enumerate and track number of overall and unique identifications by source, platform, and
region. During the workshop, the number of individuals documented per year by platform and
organization (Appendix I, Table 1) and geographic area (Appendix I, Table 3) was provided for
review, together with the number of individual NARWs seen only by a single platform or source
(Appendix I, Table 2) and in a single area (Appendix I, Table 4). This information is extremely
informative for determining where effort may be adjusted to maximize the number of individuals
identified each year. The 2018-2019 data could not yet be evaluated in this way, but should be
added when it becomes available to reflect the most current information for planning future
survey effort. Further, while the Working Group aimed to identify the most significant data
contributors based on the provided presentations, some significant sources may have been
omitted such that the organizations and platforms should be reviewed for completeness.
B. Investigate drivers of individual capture heterogeneity. Heterogeneity can be attributed to both
sampling methods and intrinsic biology of animals. It may be possible to discern from existing
capture histories if the variability in re-sightability among individuals is mostly due to
distribution of survey effort in space and time, variability in animal behavior affecting detection
and identification, or variability in mark distinctiveness among individuals. Such information
could be used to adjust survey design to reduce heterogeneity.
C. Related to (B), investigate temporal and spatial patterns of occurrence for those NARWs seen
only once per year, or which go undetected for one or more years. These NARWs, by definition,
have relatively low sighting probabilities. This analysis may suggest strategies for increasing the
probability of detecting these NARWs, thereby reducing potential bias in estimates of survival
and abundance.
D. Subsample existing sightings histories to simulate how reduced effort (temporally/spatially)
might affect the precision and bias of the metrics used to monitor population status. This will
help inform whether reducing effort in specific areas, times, or from specific platforms will result
in undue bias or unacceptable uncertainty. This will also help evaluate whether the overall
capture probability goal could be reduced to less than 90% of the population per year.
E. Determine level of effort required to identify new calves. With the reduced number of calves
seen in the southeast area in recent years, a post-hoc re-sampling analysis could be used to
determine the level of aerial effort that is needed to find and photograph all calves born in a
given year (recognizing that this effort is likely to change as the number of births changes). In
addition, the integrated mark-recapture model provides estimates of calf production. These
estimates should be compared to independent estimates of calf production (e.g., from the
southeast surveys). If the model approach indeed provides good estimates of calf production, this
could potentially reduce the need to collect as much winter survey data from the southeast
region.
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Objective 2. Maintain Sufficient Effort to Detect Entangled, Injured, and Dead North Atlantic
Right Whales
Achieving this objective is critical for assessing threats, assigning cause of death, designing
mitigation strategies, and evaluating the efficacy of those strategies. Between 2010 and 2017,
approximately 50% of the estimated NARWs that were killed or seriously injured were detected.
Live, entangled NARWs may be disentangled and thereby relieved of suffering, injury, and
death. Any adjustment in surveillance for optimizing estimation of demographic metric must be
balanced with potential degradation in the likelihood of detecting entangled, injured, and dead
NARWs.
Proposed retrospective analyses:
A. Map when, where, and by what platform entangled, injured and dead NARWs have been first
detected to date.
B. Subsample existing sightings data to simulate how dead, injured, and entangled NARW
detections would have been affected by reduced effort. Determine the level of aerial survey
effort needed to detect dead, injured, or entangled NARWs.
C. Estimate unobserved human-caused mortality. Integrating information on human-caused
injury and mortality (e.g., entanglements, vessel strikes) into the mark-recapture model may help
build on previous efforts to estimate unobserved human-caused mortality (Pace et al. in prep.).
For example, for entanglements this would take the form of a multi-state model, where sighting
information is used to classify individuals as entangled or not, and this information is used to
estimate the probability of transitioning from an un-entangled to an entangled state (taking
resight probability into account) and the associated mortality rate. It would also provide
estimates of the annual likelihood of animals becoming entangled in a year. Surveys designed to
maximize detection of entangled, injured, or dead NARWs, and to identify the location of
entanglement, injury, and mortality, would provide more robust data to inform this effort.
Objective 3. Improve Characterization of Risk Seascape
Understanding the spatial and temporal distribution of threats is key to designing mitigation
measures.
Proposed retrospective analyses:
A. The Working Group recommends increased modeling effort to better understand drivers of
variation in calf production, the correlation between calf production and survival (for various age
classes), and the relative contribution of environmental versus anthropogenic impacts to survival
and reproduction. An effort should be made to investigate correlates of survival and reproduction
in sighting histories (cf., Wade and Clapham 2000) to determine whether individuals’

20

distribution patterns have been predictive of subsequent survival, health status, reproductive
success, or observation as injured or entangled. Calf production may be reduced by nutritional
stress, injury-related stress (vessel strike or entanglement), or the additive or synergistic effect of
these. An analysis of an individual’s reproductive success and sighting histories as they relate to
these factors may help to tease apart the influence of these factors on calf production.
As with calf production, adult survival may similarly be reduced by nutritional stress and humancaused factors (entanglements and vessel strikes). In general, adult survival is expected to be
more robust to environmental conditions than reproduction, but whether the environment is
playing a role in reducing adult survival may be detectable by correlation with calf production,
annual oceanographic or prey metrics that should relate to the individual’s ability to meet
energetic needs, and independent population-health assessment data. Inferences from this effort
would better inform risk assessments and the extent to which current population dynamics are
within management control vs. driven by environmental conditions.
B. Some risks have been more or less well described for the areas and times where NARWs have
traditionally been present. In recent years, NARWS have redistributed in ways that were not
predicted nor are even yet well characterized. Given this uncertainty, formally characterizing
threats (e.g., vessels/fishing) in areas where NARWs may be spending more time in recent years
(e.g., Mid-Atlantic, Canada outside Gulf of St. Lawrence, Iceland, others) could help prioritize
survey effort (including acoustic recorders) to characterize NARW use of the highest perceived
risk areas.
Objective 4. Improve Understanding of Relative Detection by Acoustics Versus Visual Survey
Acoustic and visual (aerial and vessel) surveillance are used to detect presence of NARW and a
future monitoring plan will continue to employ both methods. Both methods fail to detect some
NARWs that are present. In particular, behavioral state and acoustic propagation conditions may
have significant impact on the ability of acoustic monitoring devices to detect NARWs known to
be in a given area. Understanding these factors and predicting when each method will provide
the greatest surveillance pay-off is key to a cost-effective monitoring plan.
Proposed retrospective analyses:
A. Evaluate situations where acoustic recorders were present in the same times and places as
aerial or boat surveys. Identify instances where acoustic monitoring indicated NARWs were
present but they were not detected visually, and vice versa. This may inform strategies for
deploying surveillance resources, especially in currently under-surveyed locations of interest.

Improving the North Atlantic Right Whale Habitat Model
NARW spatial density models have been developed at Duke University (e.g., Roberts et al.
2016). There have been a number of challenges associated with expanding the geographic scale
21

of the models and the types of data that can be used to inform the density predictions. For
example, it seems that some data contributors do not distinguish between periods of ‘on-effort’
vs. ‘off-effort’ survey or note the distance to sighted groups. Many of our other
recommendations already address some of these challenges (need for systematic effort, need for
common data types, etc.). However, the existence of a broad spatial-scale predictive modeling
tool would have many uses in facilitating efficient monitoring for NARWs within and between
years. Extrapolation of models using environmental covariates to presently un-surveyed areas
could provide clues for targeting regions for PAM or focusing aerial surveys in the future.
Further, the Working Group was presented an overview of ongoing work by DFO with regard to
developing NARW habitat-prediction models. To the extent feasible, the Working Group
recommends a coordinated and unified modeling approach to provide distribution and
density predictions across the range of NARW habitat. Such a model would require
considerable collaboration among U.S. and Canadian researchers to ensure consistent data
inputs, but would provide a powerful tool for examining possible distribution shifts based on
future conditions or for identifying locations where future focused effort may be most efficient or
effective.
Although NMFS conducts a large share of overall aerial survey efforts, there are several other
research groups that regularly or intermittently conduct aerial surveys, including collection of
identification photographs. Attempts to integrate and use these data are slowed by the need to
standardize the data to a common framework (identifying periods of survey effort versus periods
off the transect line for other purposes, measurement perpendicular sighting distance, etc.).
Working with contributing research groups, the Working Group recommends developing
standards for collecting a common data subset (e.g., effort and perpendicular sighting
distance) instituted by all aerial survey efforts to facilitate maximal use of collected
encounter and photo-identification data. The identification and collection of a common data
subset isn’t meant to replace data collection protocols long used by various survey groups, but
rather to ensure that a standard set of data required for quantitative analyses is collected in the
same way by all partners, maximizing the utility for all datasets. At minimum, all teams should
record whether the survey (or portion of the survey) was systematic, opportunistic, or directed at
known aggregations, and for those portions that represent systematic survey effort, indicate when
the plane is “on-effort” surveying along the transect line, and the distance to sighted groups.

An Integrated Passive Acoustic and Visual Survey Monitoring Plan
The Working Group thinks that a well-designed, long-term coordinated visual and PAM effort
may yield the greatest benefit by providing consistent input datasets for examining occupancy,
predicting (or at least retrospectively identifying) distribution shifts, and supporting abundance
analyses and estimation of other vital demographic rates for this population. Passive acoustic
recorders can provide continuous monitoring year-round, providing valuable information on

22

occurrence, even in times of year with poor weather conditions. Visual surveys provide
opportunity to collect identification photographs, critical for quantitative assessment. Aerial
platforms also provide broad geographic sampling, better for spatial modeling of habitat use,
compared to fixed-site PAM efforts.
The complementary strengths of these data collection platforms allow for efficient and costeffective data collection across a broad area. Monitoring of high risk areas (e.g., shipping lanes,
high density vertical line fishing areas) with low densities of NARWs is probably best
accomplished with acoustic recorders, whereas monitoring and data collection in high density
hotspots is achieved with visual survey platforms where critical identification photographs can
be taken, and other biological samples can be collected. While specific regions or periods may be
best suited to either passive acoustic or visual survey effort, there are several cases where the
combination of monitoring approaches may provide for the greatest and most consistent data
collection opportunity. For example, acoustic monitoring data may reveal the presence of
NARWs in an area, allowing subsequent targeted visual surveys to that area. In specific regions,
deploying near real-time auto-detection buoys may provide opportunity to rapidly deploy visual
survey resources when NARWs are detected, allowing for data collection from NARWs that may
not be commonly seen in core foraging areas. Conversely, if visual sighting rates fall in an area
where NARWs used to occur at higher density, a switch to acoustic monitoring of the area
allows for continued monitoring of the region in the event that the NARWs return as conditions
change and NARW distribution shifts.
Therefore, the Working Group recommends that NARW passive acoustic and visual
surveys become more systematic. There are many areas that should be monitored each year
(continuously or seasonally as appropriate) in a similar way, and on a standard cycle. Such
monitoring may be acoustic or visual depending on the density of NARWs likely to be in that
area, and may switch between visual and acoustic monitoring over time, but consistent
monitoring in those spaces should be maintained through some sampling platform. Some areas
should continue to be sampled every year. Other areas can be sampled on a less frequent basis,
but without abandoning periodic sampling altogether, despite the apparent distribution of
NARWs. This will reduce the number of assumptions being made about where the NARWs are,
and will let data inform the analyses of NARW distribution, and its change through time.
Specific passive acoustic and visual survey recommendations addressing this need for systematic
survey efforts are described in more detail in the sections below.
Acoustic Monitoring to Examine Distribution and Habitat Use
Although NARWs are not highly vocal when transiting and mom-calf pairs are often quiet,
presumably to prevent detection by predators, PAM efforts have clearly identified occurrence in
regions that were not otherwise being monitored. While the detection probability may vary
seasonally and by behavioral state, PAM is a low cost monitoring tool, particularly when using

23

archival recorders and analyzing data with highly efficient and accurate automatic detectors and
call classifiers.
While visual surveys, both aerial and vessel-based, have been common for decades, PAM efforts
specifically designed for monitoring NARW distribution and habitat shifts have not been broadly
or sustainably supported. Several PAM efforts have been undertaken by a large variety of
institutions, though many were not specifically designed to assess NARW distribution or
occurrence. An impressive effort to consolidate these disparate data to assess NARW trends and
distribution over time has resulted in valuable insights (Davis et al. 2017); however, the lack of
systematic long-term sampling designs hinder the ability to derive strong conclusions from these
data. The Working Group recommends that NMFS establish and analyze long-term
permanent passive acoustic stations where recorders will be regularly maintained to ensure
long-term records of NARW occurrence at those sites. Analysis of passive acoustic data from
specific monitoring locations will allow for identifying shifts in distribution over time and
habitat use changes. Some of our recommended monitoring locations occur in Canadian waters.
The Canadian Government and some academic researchers have plans for an impressive array of
PAM stations in the Gulf of St. Lawrence and surrounding waters. Effort need not be duplicated,
but the long-term effort should be sustained independent of the funding streams of these
individual researchers.
The Working Group recommends a large number of permanent continuous long-term monitoring
sites, augmented by a smaller number of established stations that could be monitored every 2-4
years, or in response to other information such as from visual surveys. There should be a
commitment to fund all stations consistently through time and all sites should be monitored with
calibrated and standardized equipment to allow for robust quantitative comparisons among sites.
Although the location of specific monitoring sites may need to be adjusted over time for various
reasons, possible monitoring sites should be well considered in advance to allow for the greatest
consistency without additional confounding variables (including differences in site-specific
physical features and detection range) that may reduce the value of some datasets for various
quantitative or qualitative examination of space use, population trends, or other metrics.
Reductions in overall monitoring effort should be carefully considered based on proven
redundancy in the results of passive acoustic efforts at neighboring monitoring stations, and the
ability to monitor that region with other approaches.
The location of the permanent acoustic stations should be based on a combination of several
factors, including:
●
●
●
●

Hotspots of historical and/or current NARW distribution
Shipping lanes where risk of vessel strike is highest
Areas with high density of fishing gear with vertical lines
Areas through which migration is thought to occur

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● Calving areas
The Working Group recommends long-term (multi-year) continuous acoustic monitoring
in the regions listed below (Figure 5). The rationale for choosing various locations is noted in
parentheses. Some locations may require more than one acoustic monitoring site to adequately
monitor the region. Acoustic monitoring has been conducted in several of these locations. If
appropriate, use of the same monitoring sites should be considered.
1. Northern Gulf of St. Lawrence near Anacosti Island (current foraging area, high
density of fishing gear)
2. Southern Gulf of St. Lawrence near Prince Edward Island (current foraging area, high
density of fishing gear)
3. Roseway Basin/Scotia Shelf (historical foraging area)
4. Coast of Maine (high density of fishing gear)
5. Jordan Basin (historical foraging area, seasonally increasing density of fishing gear)
6. Boston Harbor shipping lane (exposure to vessel traffic)
7. Georges Bank (historical forging area, offshore pot fishery)
8. North of Great South Channel (current foraging area, exposure to vessel traffic)
9. Great South Channel (current foraging area, exposure to vessel traffic)
10. South of Islands (e.g., Martha’s Vineyard and Nantucket) (current foraging area)
11. New York Bight (current foraging area, exposure to vessel traffic)
12. Mouth of Delaware Bay (migratory route, historical winter aggregations, exposure to
vessel traffic)
13. Mouth of Chesapeake Bay (migratory route, historical winter aggregations, exposure
to vessel traffic)
14. Cape Hatteras (migration pinch point)
15. Charleston Inlet (migratory route, exposure to vessel traffic)
16. Southeast US calving ground (calving area, exposure to vessel traffic)
The Bay of Fundy was identified as a high priority area for passive acoustic monitoring;
however, strong tidal currents may prevent successful monitoring of this region so it is not listed
above. If appropriate and cost-effective mooring options become available, monitoring in this
region should be considered. Alternative approaches to monitoring the Bay of Fundy may be
needed in the meantime.
In addition to the permanent monitoring areas identified above, the Working Group recommends
additional year-round monitoring occur on a periodic basis (every 2-4 years) in the following
regions:
● Jeffreys Ledge (historical foraging area)
● Wilkinson Basin, Gulf of Maine (historical foraging area)
● Savannah Inlet (migratory route, exposure to vessel traffic)
25

Finally, exploratory short-term monitoring should be carried out to investigate the occurrence of
NARWs in potential foraging areas that are not being surveyed by other means. Such areas may
include regions with infrequent sightings of NARWs, or regions to the northeast where foraging
habitat is predicted by various modeling efforts (including that of Monsarrat et al. 2015). This
list is not exhaustive, but rather provides suggestions based on the above rationale. Some regions
may be better assessed with underwater gliders outfitted with PAM devices. The choice of
acoustic monitoring platform can be determined based on hardware available, the size of the
possible monitoring region, and the need to monitor for extended duration. After examination of
the results in Monsarrat et al. (2015), the Working Group specifically recommends exploratory
short-term monitoring in the following areas that have three features: (1) identified as predicted
habitat from the model results, (2) historical (pre-1950) records of NARWs, and (3) post-1950
sightings of NARWs:
● Off of southeast Labrador (possible summer/fall foraging area). Labrador is
approximately the same distance from the Gulf of Maine as is the foraging area in the
Gulf of St. Lawrence, suggesting easy travel to this area if it becomes a productive
foraging area.
● Off of southeast Greenland (possible summer/fall foraging area). Although farther,
this area could be utilized once NARWs leave Cape Cod Bay after the spring.
● Off the east and west coasts of Iceland (possible summer/fall foraging area). Iceland
is more distant than other proposed monitoring areas; however, at least one NARW
has been seen recently in local waters.

26

Figure 5. Proposed acoustic monitoring stations in the U.S. and Canada. Continuous year-round
monitoring is recommended at the green sites and periodic monitoring (every 2-4 years) at purple
sites. The red site (Bay of Fundy) is considered a priority for continuous monitoring but may
require an alternate plan due to strong tidal forces. The locations are approximate and do not
represent a specific monitoring site.
In addition to archival long-term monitoring, real-time acoustic monitoring in the mid-Atlantic
area and in currently sparsely used foraging areas may provide opportunity for response to
intermittent and infrequent aggregations of NARWs in these areas. Auto-buoys provide for near
real-time detections of NARW calls that visual survey teams can then respond to for collection
of identification photographs or biological samples. Real-time monitoring efforts must be well

27

coordinated to ensure visual teams are available to respond to relatively rare detection events. If
such coordination is not feasible, the cost of real-time efforts may not be worth the investment.
PAM is a powerful and efficient method for monitoring NARW distribution, though its capacity
to provide insights is limited by several biological and physical factors that must be considered
when designing a PAM network for the species. Calling rates vary among demographic groups
and during different behaviors (Parks et al. 2014), such as quieter mother-calf pairs, which may
result in lower detection probability in calving regions and along northbound migration routes.
Detection probability also varies with different acoustic habitats, bathymetry, and recorders (e.g.,
Rice et al. 2014; Risch et al. 2014), highlighting the need to use consistent calibrated hardware
and quantify detection range seasonally if aiming to use the data in quantitative analyses of
NARW distribution, and especially if attempting to estimate NARW abundance using these data.
Aerial Surveys and Collection of Identification Photographs
Photo-identification studies are conducted by a number of groups independent of NMFS,
including CCS, DFO, and the NEAq. These groups have consistently provided 50% or more of
all photo identifications, and their efforts are essential to maintaining a high quality monitoring
program for this population. Below, the Working Group provides a strawman survey plan based
on the information provided to the Working Group (not informed by the analyses outlined
above).
Specifically, the plan assumes continuation of the following efforts by NMFS partners:
● Vessel-based surveys in the Bay of Fundy, Roseway Basin, and in the Gulf of St.
Lawrence by the NEAq
● Aerial surveys in Cape Cod Bay and areas adjacent to Cape Cod by CCS
● Aerial surveys in the Gulf of St. Lawrence by Canada DFO and Transport Canada
The evolution of the NEFSC survey effort- from broad-scale surveys, to specific survey boxes, to
directed effort in areas of high capture rates- was sensible and highly successful at maximizing
the collection of identification photographs. The NEFSC aerial surveys in recent years have often
resulted in more than 200 identifications in a year (Appendix I, Table 1), but there is
considerable overlap in identifications with other survey efforts, such as with CCS effort in Cape
Cod Bay, and in 2017-2018 with DFO efforts in the Gulf of St. Lawrence (Appendix I, Table 4).
The proportion of unique identifications attributable to NEFSC aerial surveys averages about
32% per year since 2002, though this identification rate has fallen by about 10% compared to the
period of broad-scale surveys (~41%). There are many factors that may confound the rate of
capturing unique identifications in recent years, including extent and distribution of survey effort
and NARW distribution, and while the Working Group commends the significant NEFSC aerial
efforts to collect identification photos, it recommends returning to broader scale surveys that

28

would allow for identifying habitats being used by NARWs for the first time, return to
historically used habitats, and presence of NARWs in high risk areas.
Underlying all of our survey recommendations is the premise that photo-identification efforts
should be designed and maintained to achieve a capture probability of approximately 90%.
A metric for measuring progress towards meeting this objective is the number of unique
individuals sampled in a given year. The NEFSC endeavors to maximize the number of animals
identified in a year for a given level of sampling effort by targeted sampling of high-density
areas. In this way, roughly the same number of unique animals can be detected with significantly
fewer flight hours. The Working Group supports this approach, though also recommends that
sampling be designed to achieve a wide range of sample locations to reduce potential bias
associated with geographic heterogeneity in capture probability among individuals.
The Working Group also recognizes that aerial photo-identification efforts represent a risk to
survey personnel. The geographic coverage provided by aerial surveys should be weighed
against the high value of data that may be collected using alternative platforms, such as surveys
by surface vessels and the use of UAS launched from surface vessels. In particular, the use of
UAS for collecting photographs may allow for reducing aerial survey effort for photoidentification. Mindful of the danger of aerial surveys, the Working Group specifically does
not recommend increasing aerial survey effort to achieve a higher than 90% capture
probability to monitor population abundance, trends, and vital rates. Effort reductions may be
achieved by reducing the number of days allocated to return to high-density hotspots, and
terminating effort there before a full plateau in the discovery curve. From discovery curves
presented to the Working Group, it appears that ~1/3 to 1/4 of the survey effort in those locations
results in obtaining only a few additional identifications. Of course, one cannot know when the
discovery curve will plateau until it is observed. However, sufficient experience in the last few
years exists to be able to make some predictions of how many days should be spent returning to a
high-density area, in order to reduce the total number of flight days.
The Working Group considers this 90% metric to be cumulative across all data contributors and
platforms, such that the Working Group recommends additional efforts to coordinate
identification of individuals across all data collectors operating along the east coast
throughout the survey year. This could be accomplished if survey teams were to determine
NARW identities as soon as possible after detection by vessel or aerial surveys. These would
ideally be entered into a shared near real-time updated list of unique NARWs identified by any
survey platform during the year. When the collective effort from all surveys identifies a number
of unique NARWs greater than 90% of the NARW abundance estimated for the previous year,
aerial survey efforts should be reduced, or redirected to other tasks, including identifying and
tracking dead or injured NARWs.

29

NARW distribution is likely to continue to vary in the future, and it is important that systematic
surveys be conducted to recognize those changes when they occur. The Working Group approves
of the current design, whereby key areas of known NARW aggregation are targeted (i.e., boxes
in Figure 2) and survey effort is dynamically allocated in those areas until most or all the unique
NARWs within them have been identified. However, the Working Group recommends that
this approach should be balanced by repeating broad-scale systematic surveys of the entire
Gulf of Maine/Southern New England on a regular schedule. The Working Group also notes
that some boxes are no longer surveyed in some years, apparently because they have recently
contained few or no NARWs (e.g., Jordan Basin in the middle of northern Gulf of Maine). The
Working Group recommends that some effort continue in these areas, on an annual basis if
possible. This could be accomplished by a lower density of aerial track lines or by a shift to
passive acoustic recorders to, at least retrospectively, identify a return of NARWs to that habitat.
The following is an example of an aerial survey plan that accords with our recommendations.
(I) Conduct a broad-scale survey covering the Gulf of Maine and Southern New England
every 3rd year.
The Working Group recommends that a broad-scale survey should be conducted every 3rd year.
This timing balances detecting distributional shifts in a timely fashion with maintaining higher
efficiency in obtaining NARW identifications in other years by focusing effort on high NARW
density areas. The survey would be designed to provide data that could be used for modeling the
spatial distribution of NARWs, by providing systematic uniform coverage of the survey area.
These data would help identify and analyze major changes in NARW distribution and habitat
use. This would ensure that emerging habitat hotspots have a high probability of being
discovered relatively quickly so they can be included in future photo-identification surveys, and
that emerging use of areas with high risk from vessel traffic or high density of fishing gear
vertical lines would also be identified. At least two complete surveys should be completed, one
in spring, and one in late summer/fall (September/October) to ensure surveys are not missing
important areas being used by NARWs. The goal should not be to detect every single NARW in
the survey area, rather to achieve a high probability of detecting areas being used by an
appreciable number of NARWs.
The Working Group recognizes that conducting such broad-scale surveys could potentially
consume all or a large percentage of available flight time in a year. To balance the need for
information on broad-scale distribution with collecting identification photographs, a stratified
design may be appropriate, where specific strata could be designated to have higher sampling
intensity (e.g., more transect lines). Strata with higher sampling would be guided by those areas
currently known to contain higher densities of NARWs, such as South of the Islands. The
Working Group is aware that the NEAq is currently conducting aerial surveys south of
Nantucket and Martha’s Vineyard, and that this effort is not captured in the present enumeration

30

of unique identification photos by platform or area. That effort need not be replicated by NMFS
to the extent that the NEAq continues to fly in that region and collect the data needed to assess
overall distribution and abundance (i.e., identification photographs and effort information).
(II) In the two other years of a 3-year period, continue targeted photo-identification
surveys, with modification to ensure some systematic components are maintained through
time.
The Working Group is impressed by the efforts to increase the collection of identification
photographs of NARWs from the NEFSC aerial surveys. It is clear that photographs from some
locations are only collected from that platform, and every year these contain identifications of
NARWs only seen in those areas. This especially includes the Great South Channel, the area
north of the Great South Channel, north of Cape Cod Bay, the northern edge of Georges Bank,
and the area South of the Islands. The Working Group encourages continuation of this work, and
commend the NEFSC aerial survey team for their efforts.
The establishment (after the 2002-2006 broad-scale surveys) of designated survey boxes around
hotspots was an excellent idea. The Working Group recommends maintaining consistent survey
boxes through time to provide another source of long-term data to assess habitat use and NARW
movements. It appears from examination of past survey efforts that the geographic boundaries of
some surveyed boxes occasionally changes seasonally or annually. The Working Group
recommends fixing the boundaries of the survey boxes and maintaining a single design of
specified survey boxes. In particular, the Working Group recommends establishing a permanent
survey box South of the Islands (Nantucket and Martha’s Vineyard), to the south of Block
Island, and in the New York shipping lane. This could include a partitioning into an eastern
(south of Block Island) box and a western (south of Nantucket) box. The Working Group also
notes that a large number of NARWs were seen in spring well to the south of the area typically
surveyed (i.e., Nantucket shoal, or south of Block Island), close to the edge of the shelf break.
The Working Group realizes this may be a newly discovered extension of this area, such that the
‘permanent’ box to be surveyed in the future may need to encompass this area, as well.
Further, as shown in Figure 3, there are several locations in the Gulf of Maine that are no longer
surveyed in summer or fall because NARWs are no longer commonly seen there. The
recommended broad-scale surveys will provide information from this area; however, additional
effort in this historical hotspot would be worthwhile given the significant fishing effort there.
Therefore, the Working Group further recommends establishing a regular systematic
rotation through all historical hotspots and in all seasons previously detected. This could be
accomplished by rotating among historical hotspots over the two years of targeted surveys
between broad-scale surveys.
Finally, reiterating our recommendation related to improving the NARW habitat model, the
Working Group recommends working with all data contributors to develop standards for
31

collecting a common data subset that may be instituted by all aerial survey efforts to facilitate
maximal use of collected encounter and photo-identification data. Many aerial survey efforts
provide identification photos that contribute to examining population demographics and
distribution. With relatively little additional data recording effort, periods of survey efforts that
are either systematic, opportunistic, or targeted may be identified, and the effort within each state
tracked to allow for use of a border set of survey data within a robust quantitative habitatmodeling framework.
Data Collected on Vessel-Based Surveys
As much as possible, the Working Group recommends substituting vessel-based effort for
aerial effort. The Working Group makes this recommendation for several reasons. First, for the
safety of researchers, as cumulative time spent flying adds to cumulative risk. Second, genetic,
some health assessment, and other biological sample data can only be collected from NARWs on
the water. A monitoring plan that aims to provide appropriate data for monitoring individual and
population health must include vessel-based survey and data collection efforts. Such efforts
provide the only opportunity to collect biopsy samples for genetic and other tissue-based
analyses, to fly UAS platforms for photogrammetry or blow sampling, and to allow for collection
of fecal samples. The Working Group recommends that vessel-based survey efforts be
maintained at least at current levels, or increased to replace aerial survey effort, across all
data contributors. Expansion of boat-based UAS surveillance may be a viable replacement for
some aerial survey effort though will require investment in vessel support. Vessel-based survey
efforts are currently undertaken primarily by NMFS’ partners. If partners are not able to continue
vessel-based survey and data collection efforts, such efforts may need to be augmented by or
funded by NMFS.
Work by Pettis et al. (2004) has shown that photo-identification images can be used for
monitoring the health of individuals. There are also many powerful new techniques and
methodologies that have become available in recent years. These include analyses of hormones,
various ‘Omics- including ribonucleic acid (RNA) transcriptomics for gene expression such as
immune response and photogrammetry for examining body condition and identifying pregnant
females. Although many of these analyses are not yet being undertaken on NARWs, every effort
should be taken to accommodate the greatest range of future analytical approaches possible. To
that end, the Working Group recommends that biopsy samples be placed into small liquid
nitrogen dry shippers immediately on collection, to provide high quality genetic material that
can be used for cutting edge methods such as RNA transcriptomics, but also archived for
methods that have not yet been developed. Further, efforts to obtain biopsy samples from older
calves should be prioritized so they can be genetically matched to samples from neonates in
order to reduce age and sex uncertainty in assessment models.
At present, the majority of health assessments linked to survival are almost entirely based on
photographs collected during vessel-based surveys. Through development and testing of various
32

proxies, it may be feasible to determine overall health condition through use of aerial imagery,
collected by airplane or UAS. As such, the Working Group recommends a set of feasibility
studies using imagery collected by UAS. Lateral imagery taken from the vessel paired with
aerial imagery collected by UAS for the same whale may provide for development of proxies
measured from the aerial photographs for health metrics that are currently only derived from
vessel-based photos. In particular, health assessments based on length and girth measurements
made from aerial photographs would provide additional health data for a larger sample of
NARWs than can currently be achieved by vessel-based photographs alone.
The Working Group members do not consider themselves experts in health assessment, and
largely defer to input provided at the June 2019 Health Assessment Workshop. Beyond
recommendations for maintaining vessel-based survey effort, the Working Group outlines two
research projects it feels should be carried out to further health assessment studies on NARWs.
1. Examine whether body condition or skin condition assessments may provide an early
indication of calf production. It is possible that years of low calf production would be
preceded by periods of poor body of skin condition.
2. Determine appropriate and efficient biological sampling for establishing pregnancy
rates.

Other Research Recommendations
In addition to the monitoring plan recommendations provided above, the Working Group
identified several other research tools that could be used to assess NARW distribution and
abundance.
Examination of Acoustic Records from the Northeast Atlantic and Adjacent Seas
Many researchers along the west coast of Europe and in the Mediterranean have deployed
passive acoustic sensors to study a variety of cetacean and fish taxa. In addition, NARWs have
been observed off the coast of France and the west coast of Europe and a portion of adjacent seas
have been identified as regions of probable NARW habitat by Monsarrat et al. (2015). Although
none of these sensors were deployed specifically to look for NARW calls, the use of efficient
and reliable automatic detectors could make such “needle in a haystack” analysis a
relatively quick and possibly highly valuable task.
Satellite Imagery
Recent progress has been made in using very high resolution (VHR) satellite imagery to study
large whales in remote areas (e.g., Cubaynes et al. 2019) This approach could be useful for
identifying new or previously undetected aggregation areas, particularly if any exist to the north
of where current survey efforts exist. Spatially extrapolated areas of predicted occurrence would

33

be a logical first area to explore with VHR imagery. Satellite image data should be explored as
a potential option for identifying NARWs and documenting distribution shifts.
Tagging
It is clear that long-term location satellite tags could help provide valuable data about NARW
habitat use, including discovery of unknown foraging areas, return to previously used forarging
areas, and other shifts in distribution that might occur. It could also help estimate time spent by
NARWs in high-risk areas, and could help further define important migration corridors.
However, tag durations are still too short to provide the needed information without deploying
deep implantation tags that embed in muscle tissue. Information presented to the Working Group
indicated that Low Impact Minimally Percutaneous Electronic Transmitter (LIMPET) tags had
fairly short durations and that the newly developed ‘Blubber’ tags, although better, in a test on
eight Southern right whales, had a median duration of only 16 days, with a mean of 21 days (A.
Zerbini. pers. comm.). The developers of the ‘Blubber’ tag are continuing research and
modifications with a goal of trying to extend the median duration to 30 days.
Assuming a travel rate of ~75 nautical miles per day, it would take a NARW leaving Cape Cod
Bay ~10 days to reach the Gulf of St Lawrence or southeast of Labrador, but about ~22 days to
reach possible foraging areas southeast of Greenland, and even longer to reach Iceland.
Migration from South of the Islands to Georgia would take ~11 days. Many of these movements
cannot yet be fully documented via existing non-deep-implant tag technology. Documenting
shorter distance movements, though potentially feasible, would require deployment of the tag
within several days of departure to have a reasonable chance of documenting the journey, a
logistical challenge for most research teams.
Given concerns about risk to these critically endangered whales from deep implantation tags, it
seems reasonable to wait to evaluate whether the retention time can be increased for novel, less
invasive tagging technologies (e.g., LIMPET tags, ‘Blubber’ tags, or other technologies) to the
point where they can be used to answer the most pressing questions about NARW movement.
The Working Group recommends evaluating the results from Southern right whale tagging
efforts before additional tagging of NARWs.

V. CONCLUSIONS AND ACKNOWLEDGEMENTS
The Working Group assembled by the NARW Steering Committee consisted of NMFS
researchers with expertise in marine mammal monitoring and quantitative assessments, but not
directly involved in current NARW monitoring efforts. The intent of assembling such a group
was to provide a knowledgeable, but independent review of the past and current research efforts
by NMFS and its partners, and from that, develop a comprehensive monitoring plan that was not
influenced by a direct interest in the long-standing research efforts. The Working Group
endeavored to consider the full range of monitoring options, while understanding funding and
logistic constraints, the rationale for various research approaches, and the evolution of NARW
34

research in the region. The Working Group did not attempt to conduct independent analyses or
assessments of the vast wealth of NARW data available. The Working Group did its best to be as
detailed as possible with recommendations in hopes that they will be helpful as NMFS considers
how to move forward with NARW monitoring over the coming years.
The Working Group could not have accomplished their task without the direct input of several
NMFS researchers from the NEFSC (Tim Cole, Lisa Conger, Richard Pace, Sofie Van Parijs),
managers from NMFS’ Greater Atlantic Regional Office (Diane Borggaard), NMFS Office of
Protected Resources (Caroline Good), and DFO (Simon Nadeau) the NARW Steering
Committee (Mike Asaro, Lance Garrison, Sean Hayes, Kristy Long, Eric Patterson, Barb
Zoodsma, and see Appendix II) and other independent institutions and agencies dedicated to
NARW research and conservation. NMFS and other research institutions and agencies have been
working to understand many aspects of NARW biology, ecology, and the threats to the species
for decades. The large and impressive collective effort and the cooperation among research
groups should be applauded. It is the summary of this impressive effort and large dataset that
provided the Working Group with a rich understanding of the rationale for past and current
efforts, where efforts could be shifted while maintaining the high quality demographic dataset,
and where new approaches or new analyses of existing data may provide new insights.
The Working Group has developed a set of recommendations that include retrospective analyses
of existing datasets, expansion of the NARW habitat model, and specific recommendations for
the design and execution of an integrated visual and PAM plan. Ideally, these recommendations
will contribute to efficient and effective monitoring of important NARW population metrics,
while also making those research efforts safer for the dedicated researchers who conduct them
every year.

35

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space: Four mysticete species described using new VHR satellite imagery. Marine Mammal
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Vanderlaan. 2019. Variation in North Atlantic right whale Eubalaena glacialis occurrence in the
Bay of Fundy, Canada, over three decades. Endangered Species Research 39:159-171.
Davis, G., E., M. F. Baumgartner, J. M. Bonnell, J. Bell, C. Berchok, J. Bort Thornton, S. Brault,
G. Buchanan, R. A. Charif, D. Cholewiak, C. W. Clark, P. J. Corkeron, J. Delarue, K. Dudzinski,
L. Hatch, J. Hildebrand, L. Hodge, H. Klinck, S. D. Kraus, B. Martin, D. K. Mellinger, H.
Moors-Murphy, S. Nieukirk, D. P. Nowacek, S. Parks, A. J. Read, A. N. Rice, D. Risch, A.
Sirovic, M. Soldevilla, K. Stafford, J. E. Stanistreet, E. Summers, S. Todd, A. Warde, and S. M.
Van Parijs. 2017. Long-term passive acoustic recordings track the changing distribution of North
Atlantic right whales (Eubalaena glacialis) from 2004 to 2014. Scientific Reports 7(1):13460.
Durette-Morin, D., K. T. A. Davies, H. D. Johnson, M. W. Brown, H. Moors-Murphy, B. Martin,
and C. T. Taggart. 2019. Passive acoustic monitoring predicts daily variation in North Atlantic
right whale presence and relative abundance in Roseway Basin, Canada. Marine Mammal
Science 35(4):1280-1303.
Gowan, T. A., and J. G. Ortega-Ortiz. 2014. Wintering habitat model for the North Atlantic right
whale (Eubalaena glacialis) in the southeastern United States. PLoS One 9(4):e95126.
Keller, C., L. P. Garrison, R. Baumstark, L. I. Ward-Geiger, and E. Hines. 2012. Application of a
habitat model to define calving habitat of the North Atlantic right whale in the southeastern
United States. Endangered Species Research 18(1):73-87.
Leiter, S. M., K. M. Stone, J. L. Thompson, C. M. Accardo, B. C. Wikgren, M. A. Zani, T. V. N.
Cole, R. D. Kenney, C. A. Mayo, and S. D. Kraus. 2017. North Atlantic right whale Eubalaena
glacialis occurrence in offshore wind energy areas near Massachusetts and Rhode Island, USA.
Endangered Species Research 34:45-59.
Mayo, C. A., L. Ganley, C. A. Hudak, S. Brault, M. K. Marx, E. Burke, and M. W. Brown. 2018.
Distribution, demography, and behavior of North Atlantic right whales (Eubalaena glacialis) in
Cape Cod Bay, Massachusetts, 1998-2013. Marine Mammal Science 34(4):979-996.
Monsarrat, S., M. G. Pennino, T. D. Smith, R. R. Reeves, C. N. Meynard, D. Kaplan, M., and A.
S. L. Rodrigues. 2015. Historical summer distribution of the endangered North Atlantic right
whale (Eubalaena glacialis): A hypothesis based on environmental preferences of a congeneric
species. Diversity and Distributions 21(8):925-937.
Pace et al. in prep. Estimates of cryptic mortality in the North Atlantic right whale population.

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Pace, R. M., P. J. Corkeron, and S. D. Kraus. 2017. State-space mark-recapture estimates reveal
a recent decline in abundance of North Atlantic right whales. Ecology and Evolution
7(21):8730–8741.
Parks, S., L. Conger, D. Cusano, and S. M. Van Parijs. 2014. Variation in the acoustic behavior
of right whale mother-calf pairs. Journal of the Acoustical Society of America 135(4 Part
2):2240.
Pettis, H. M., R. M. Rolland, P. K. Hamilton, S. Brault, A. R. Knowlton, and S. D. Kraus. 2004.
Visual health assessment of North Atlantic right whales (Eubalaena glacialis) using
photographs. Canadian Journal of Zoology 82(1):8-19.
Rice, A. N., J. T. Tielens, B. J. Estabrook, C. A. Muirhead, A. Rahaman, M. Guerra, and C. W.
Clark. 2014. Variation of ocean acoustic environments along the western North Atlantic coast: A
case study in context of the right whale migration route. Ecological Informatics 21:89-99.
Risch, D., M. Castellote, C. W. Clark, G. E. Davis, P. J. Dugan, L. E. W. Hodge, A. Kumar, K.
Lucke, and D. K. Mellinger. 2014. Seasonal migrations of North Atlantic minke whales: Novel
insights from large-scale passive acoustic monitoring networks. Movement Ecology 2(1):24.
Roberts, J. J., B. D. Best, L. Mannocci, E. Fujioka, P. N. Halpin, D. L. Palka, L. P. Garrison, K.
D. Mullin, T. V. N. Cole, C. B. Khan, W. A. McLellan, D. A. Pabst, and G. G. Lockhart. 2016.
Habitat-based cetacean density models for the U.S. Atlantic and Gulf of Mexico. Scientific
Reports 6:22615.
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of St. Lawrence in 2015, revealed by long-term passive acoustics. Endangered Species Research
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Van Parijs, S. M., M. F. Baumgartner, D. Cholewiak, G. E. Davis, J. Gedamke, D. Gerlach, S.
Haver, J. Hatch, L. Hatch, C. Hotchkin, A. Izzi, H. Klinck, E. Matzen, D. Risch, G. K. Silber,
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Wade, P. R., and P. J. Clapham. 2000. The influence of spatial distribution on survival estimates:
use of cluster analysis to address heterogeneity in North Atlantic right whales Presented at the
52nd annual meeting of the Scientific Committee of the International Whaling Commission,
SC/52/ForInfo3, Adelaide, Australia.

37

APPENDIX I. TABLES
Table 1. Total number of NARWs identified by each contributing survey platform and
institution from 2001 to 2017 (resights across contributors have not been removed, but resights
of individuals within an institution have) 6. Abbreviations are given in Section II. Information
provided by Richard M. Pace based on data collected by many individuals and institutions (see
acknowledgements in Pace et al. 2017).
Year

NEFSC
Aerial

NEFSC
Vessel

CCS
Aerial

SEUS
Aerial

NEAq
Vessel

DFO
Aerial

All

2001

31

52

106

83

142

7

282

2002

206

89

96

58

115

20

303

2003

175

152

93

84

91

6

314

2004

118

21

91

76

154

1

286

2005

258

44

93

179

243

6

353

2006

188

0

121

135

225

6

347

2007

295

0

191

137

144

1

379

2008

288

115

200

188

176

0

389

2009

262

0

214

237

218

0

422

2010

267

111

182

225

102

1

422

2011

257

46

329

152

190

3

437

2012

183

169

236

59

86

8

374

2013

23

73

241

50

117

4

297

2014

134

62

262

49

83

21

371

2015

103

50

144

39

6

20

267

2016

140

31

195

30

97

49

323

2017

211

128

254

5

38

105

363

6

The data used to generate these tables were preliminary working datasets. The tables should be updated prior to use
in future planning. Also see recommendations in Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure
High Precision and Minimize Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner,
Proposed retrospective analyses: A.

38

Table 2. Number of NARWs uniquely identified by only one survey platform and institution
from 2001 to 2017 (NARWs sighted by more than one institution have been removed) 7.
Abbreviations are given in Section II. Information provided by Richard M. Pace based on data
collected by many individuals and institutions (see acknowledgements in Pace et al. 2017).
Year

NEFSC
Aerial

NEFSC
Vessel

CCS
Aerial

SEUS
Aerial

NEAq
Vessel

DFO
Aerial

All

2001

2

2

8

8

4

0

24

2002

40

11

5

4

6

0

66

2003

22

28

18

14

0

0

82

2004

28

5

14

16

21

1

85

2005

40

1

7

6

12

1

67

2006

38

0

9

15

22

0

84

2007

41

0

13

8

1

1

64

2008

56

3

17

5

6

0

87

2009

34

0

20

17

5

0

76

2010

43

5

10

24

2

0

84

2011

36

0

31

11

2

1

81

2012

44

19

43

5

5

1

117

2013

4

1

78

9

3

2

97

2014

27

1

74

11

1

5

119

2015

44

4

37

10

2

6

103

2016

35

0

39

5

11

14

104

2017

23

1

27

0

2

25

78

7

The data used to generate these tables were preliminary working datasets. The tables should be updated prior to use
in future planning. Also see recommendations in Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure
High Precision and Minimize Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner,
Proposed retrospective analyses: A.

39

Table 3. Total number of NARWs identified in each survey location from 2001 to 2017 (resights
across locations have not been removed, but resights of individuals within a location have) 8.
Abbreviations are for the Bay of Fundy (Fundy), Cape Cod Bay (CCB), the great south Channel
(GSC), the Gulf of St. Lawrence (GoSL), the Gulf of Maine (GOM), and the southeastern United
States (SEUS). Information provided by Richard M. Pace based on data collected by many
individuals and institutions (see acknowledgements in Pace et al. 2017).
Year

Fundy

CCB

GSC

GoSL

GOM

SEUS

All

2001

151

78

210

9

82

83

282

2002

145

20

207

20

98

58

303

2003

116

36

217

6

111

84

314

2004

108

61

160

1

76

76

286

2005

192

45

282

6

70

179

353

2006

113

66

99

6

190

135

347

2007

162

127

287

1

210

137

379

2008

183

180

227

0

193

188

389

2009

186

205

142

0

209

237

422

2010

86

136

178

1

243

225

422

2011

178

283

155

3

286

152

437

2012

53

192

98

8

230

59

374

2013

15

216

67

4

82

50

297

2014

108

247

111

21

98

49

371

2015

29

124

42

50

97

39

267

2016

120

180

110

50

98

30

323

2017

35

252

98

131

95

5

363

8

The data used to generate these tables were preliminary working datasets. The tables should be updated prior to use
in future planning. Also see recommendations in Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure
High Precision and Minimize Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner,
Proposed retrospective analyses: A.

40

Table 4. Number of NARWs uniquely identified in only one survey location from 2001 to 2017
(NARWs sighted in multiple locations have been removed) 9. Abbreviations are for the Bay of
Fundy (Fundy), Cape Cod Bay (CCB), the great south Channel (GSC), the Gulf of St. Lawrence
(GoSL), the Gulf of Maine (GOM), and the southeastern US (SEUS). Information provided by
Richard M. Pace based on data collected by many individuals and institutions (see
acknowledgements in Pace et al. 2017).
Year

Fundy

CCB

GSC

GoSL

GOM

SEUS

All

2001

13

2

55

1

5

8

84

2002

24

2

51

6

8

4

95

2003

7

4

71

3

21

14

120

2004

19

7

42

0

8

16

92

2005

10

3

44

1

8

6

72

2006

9

3

7

2

33

15

69

2007

8

1

42

0

14

8

73

2008

12

11

21

0

28

5

77

2009

4

20

11

0

23

17

75

2010

4

6

17

0

25

24

76

2011

5

19

8

0

25

11

68

2012

8

29

15

3

52

5

112

2013

3

83

16

2

9

9

122

2014

14

63

23

5

3

11

119

2015

7

33

18

17

15

10

100

2016

38

49

30

8

10

5

140

2017

2

52

7

16

1

0

78

9

The data used to generate these tables were preliminary working datasets. The tables should be updated prior to use
in future planning. Also see recommendations in Objective 1. Optimize Aerial and Vessel Survey Effort to Ensure
High Precision and Minimize Bias in Estimates of Survival, New Entrants, and Abundance in an Efficient Manner,
Proposed retrospective analyses: A.

41

APPENDIX II. WORKSHOP PARTICIPANTS AND CONTRIBUTORS
Table 5. List of workshop participants, contributors, affiliations, and role and contributions.
First

Last

Affiliation

Jason

Baker

Pacific Islands Fisheries Science Center Working Group

Jay

Barlow

Southwest Fisheries Science Center

Working Group

Jeff

Moore

Southwest Fisheries Science Center

Working Group

Erin

Oleson

Pacific Island Fisheries Science Center Working Group

Paul

Wade

Alaska Fisheries Science Center

Working Group

Mike

Asaro

Greater Atlantic Regional Fisheries
Office

NARW Steering Committee,
Workshop Organizer

Lance

Garrison

Southeast Fisheries Science Center

NARW Steering Committee,
Workshop Organizer, Presenter,
Participant, Report Editor

Sean

Hayes

Northeast Fisheries Science Center

NARW Steering Committee,
Workshop Organizer, Presenter,
Participant, Report Editor

Kristy

Long

Office of Protected Resources

NARW Steering Committee,
Lead Workshop Organizer,
Presenter, Participant, Report
Editor

Eric

Patterson

Office of Protected Resources

NARW Steering Committee,
Workshop Organizer, Report
Editor

Barb

Zoodsma

Southeast Regional Office

NARW Steering Committee,
Workshop Organizer,
Participant, Report Editor

Diane

Borggaard Greater Atlantic Regional Fisheries
Office

Participant

Tim

Cole

Northeast Fisheries Science Center

Presenter

Lisa

Conger

Northeast Fisheries Science Center

Presenter

Caroline Good

Office of Protected Resources

Presenter, Participant, Report
Editor

Simon

Fisheries and Oceans Canada

Presenter

Northeast Fisheries Science Center

Presenter, Participant,
Analytical Support

Nadeau

Richard Pace
Sofie

Role and Contributions

Van Parijs Northeast Fisheries Science Center

42

Presenter

|

Received: 8 December 2018    Accepted: 29 April 2019
DOI: 10.1111/1365-2435.13357

RESEARCH ARTICLE

Foraging rates of ram‐filtering North Atlantic right whales
Julie Marie van der Hoop1
Susan E. Parks4

 | Anna E. Nousek‐McGregor2

 | Peter Tyack5

 | Douglas P. Nowacek3

 |

 | Peter Teglberg Madsen1,6

1
Department of Bioscience, Aarhus University, Aarhus, Denmark; 2School of Life Sciences, University of Glasgow, Glasgow, UK; 3Nicholas School of the
Environment & Pratt School of Engineering, Duke University, Beaufort, North California; 4Biology Department, Syracuse University, Syracuse, New York; 5Sea
Mammal Research Unit, Scottish Oceans Institute, University of St Andrews, St Andrews, UK and 6Aarhus Institute of Advanced Studies, Aarhus University,
Aarhus, Denmark

Correspondence
Julie Marie van der Hoop
Email: [email protected]
Funding information
Marie Sklodowska‐Curie Individual
Fellowship; Marine Alliance for Science
and Technology for Scotland, Grant/
Award Number: HR09011; Office of
Naval Research, Grant/Award Number:
N000140410709; NOAA Fisheries' North
Atlantic Right Whale Grant Program, Grant/
Award Number: NA04NMF4720405;
Horizon 2020
Handling Editor: Jeremy Goldbogen

Abstract
1.	 North Atlantic right whales spend their summer months foraging primarily in
American and Canadian Atlantic waters on high‐energy‐density prey. Here, they
rapidly accumulate and store energy obtained within a few months to support
future migrations and reproduction while fasting. High drag from their ram‐filter
foraging strategy places a limit on what prey densities will be energetically efficient to target.
2.	 Our understanding of the volume of prey‐laden water filtered by right whales during a dive or foraging bout, and what information they use to decide to forage or
not, has been limited by the difficulties of measuring when they feed at depth,
how fast they swim during continuous ram filtration and how often they might
swallow accumulated prey.
3.	 We used 10 DTAG deployments from right whales in the Bay of Fundy, Canada, to
quantify swimming speeds and estimate the volume of prey‐laden water filtered
per dive. We used the tag’s inertial sensors to evaluate the timing of frequent
biomechanical changes that likely indicate the truncation of continuous filtration,
and whether the number or timing of these fluking bouts relates to longer feeding
dives or other foraging decisions.
4.	 During foraging dives, right whales descended at 1.4 (±0.2 SD) m/s and slowed to
swim at 1.1 (±0.3) m/s while filtering. We found consistent pauses in the fluking
behaviour of foraging right whales, every 56 (±22) s. Whales filtered on average
78 (±30) m3 of water per fluking bout and on average 673 (±201) m3 per dive.
5.	 Right whales filter large volumes of water at low speeds with a high duty cycle,
but require sufficiently high prey energy densities to compensate for a high‐drag
foraging strategy. Closely related bowhead whales have a larger gape but swim
more slowly, filtering greater volumes with lower drag. Our findings highlight that
right whales acquire their energy in a relatively short period of intense foraging;
even moderate changes in their feeding behaviour or their prey energy density
are likely to negatively impact their yearly energy budgets and therefore reduce
fitness substantially.

1290  |  ©
2019 The Authors. Functional Ecology
	wileyonlinelibrary.com/journal/fec
© 2019 British Ecological Society

Functional Ecology. 2019;33:1290–1306.

van der

|

Functional Ecology
      1291

HOOP et al.

KEYWORDS

biomechanics, drag, filter feeding, foraging, ram filtration, right whale

1 | I NTRO D U C TI O N

filtration, water moves parallel along the inner surface of the baleen
plates, rather than perpendicular; this concentrates small (1–3 mm)

Endangered North Atlantic right whales (Eubalaena glacialis, hereaf-

copepods while slowing the overall flow of prey‐laden water through

ter right whales) are capital breeders that spend their summer months

the mouth, to then be swallowed (Potvin & Werth, 2017).

foraging on planktonic prey, primarily lipid‐rich copepods (including

Right whales show morphological adaptations to their high‐

Calanus spp.) in American and Canadian Atlantic waters. Here, they

drag foraging mode, with fused vertebrae to maintain rigidity when

obtain food with high energy density (Davies, Vanderlaan, Smedbol,

swimming with an open mouth (Sanderson & Wassersug, 1993).

& Taggart, 2015; Michaud & Taggart, 2007), which allows rapid ac-

Similarly, one would expect biomechanical adaptations, such as the

cumulation of energy over a short period of time. The energy ac-

low‐speed, continuous swimming adopted by other ram filter feed-

quired during a foraging season facilitates the growth of dependent

ers (Simon, Johnson, Tyack, & Madsen, 2009; Sims, 2000b). Simon

calves, the energetic recovery of lactating females (Christiansen

et al. (2009) noted consistent, brief pauses in the swimming be-

et al., 2018; Miller, Best, Perryman, Baumgartner, & Moore, 2012;

haviour of bowhead whales (Balaena mysticetus) and proposed

Miller et al., 2011) and the storage of energy for future demands.

these pauses likely indicate the truncation of a continuous filtration

Accumulated lipid stores are required to sustain individuals during

event and the processing (swallowing) of accumulated prey. It would

prolonged fasting migrations, are critical for successful calving and

therefore be expected that with their shared foraging strategy, right

nurture (Christiansen et al., 2018), and can buffer against effects

whales would show similar biomechanical patterns that may relate to

from human stressors, including unanticipated energetically costly

the rate of prey acquisition.

life‐history events such as entanglement (van der Hoop, Corkeron,

However, we still know very little about how a gigantic filter
feeder with one of the highest predator–prey size ratios survives on

& Moore, 2016).
The abundance and distribution of prey in right whale foraging

a very specific resource that is constrained in both space and time.

habitats are known to vary year‐to‐year and in multiyear regime

This lack of understanding primarily stems from the difficulties of

shifts (Greene et al., 2013; Patrician & Kenney, 2010). Prey avail-

measuring when right whales feed at depth, how fast they move

ability has been linked to changes in population health (Rolland et

during continuous ram filtration and how often they might swallow

al., 2016), reproduction (Hlista, Sosik, Martin Traykovski, Kenney,

accumulated prey. Subsurface behaviour of right whales is difficult

& Moore, 2009; Meyer‐Gutbrod & Greene, 2014; Miller et al.,

to observe, but the analysis of high‐resolution acoustic biologging

2011) and distribution (Davies et al., 2015), and recent observa-

tag data has provided insights into the fine‐scale movement and

tions suggest that declines in the occurrence of whales in the Bay

behaviour (van der Hoop, Nowacek, Moore, & Triantafyllou, 2017;

of Fundy since 2010 have coincided with changes in food supply

Nowacek et al., 2001), body condition (Nousek‐McGregor, Miller,

(Davies et al., 2019). Quantification of the rates and dynamics

Moore, & Nowacek, 2013), acoustic ecology (Parks et al., 2011) and

of food acquisition in this endangered, capital breeding species

foraging of right whales (Parks, Warren, Stamieszkin, Mayo, & Wiley,

is therefore critical to evaluate the energetic consequences of

2012).

changing habitats and human stressors (Harcourt, van der Hoop,

Here, we harness the rich potential of multisensor biologging
DTAGs to quantify swimming speeds and test hypotheses related

Kraus, & Carroll, 2019).
Right whales target prey patches above 103 copepods/m3

to the detailed foraging behaviour and biomechanics in right whales.

(Murison & Gaskin, 1989) and up to 10 copepods/m (Baumgartner

Specifically, we use 10 DTAG deployments from right whales feed-

& Mate, 2003; Baumgartner, Wenzel, Lysiak, & Patrician, 2017; Mayo

ing in the Bay of Fundy, Canada, to address the following questions:

& Marx, 1990). In the Grand Manan Basin in the Bay of Fundy, a right

(a) How fast do right whales filter? Optimal diving behaviour would

whale critical habitat and summer foraging area (Brown et al., 2009),

maximize the time spent foraging on high‐energy‐density prey, while

individual diving behaviour is strongly correlated with the depth of

staying within oxygen requirements (Thompson & Fedak, 2001).

maximum Calanus abundance between 100 and 150 m (Baumgartner

This can be accomplished by minimizing the proportion of time

& Mate, 2003; Baumgartner et al., 2017). There, 4–8 km patches of

spent travelling to and from the resource at depth and also recov-

5

3

copepods with energy densities above 15 J/m develop; within the

ering at the surface, or by reducing oxygen consumption at depth.

large patch, concentration and energy density can vary on  spatial

To reduce the energetic demands of a high‐drag feeding strategy

scales of 500 m (Michaud & Taggart, 2011). To target these high den-

(and therefore increasing time in the prey layer), we hypothesized

sities of small prey, right whales ram filter feed as they propel them-

that right whales would adopt a slow filtering speed, similar to bow-

selves forward with their mouths agape (Goldbogen et al., 2016;

head whales. However, given their relatively small mouth apertures

Lambertsen, Rasmussen, Lancaster, & Hintz, 2005; Potvin & Werth,

compared to bowhead whales, do right whales swim and therefore

2017; Watkins & Schevill, 1976; Werth, 2001). Through cross‐flow

filter water faster than bowheads? We investigate how the factors

3

|

Functional Ecology
1292      

van der

HOOP et al.

12.0 ± 0.2

11.6 ± 0.3

12.5 (M)

11.6 ± 0.3

13.4 ± 0.2

11.1 ± 0.3

12.5 (M)

duration. If extrinsically driven, we would expect fluking bouts to

12.0 ± 0.2

If biomechanically driven, we would expect low variation in bout

12.1 (M)

Length (m)

(i.e. related to prey processing/density/patch structure; extrinsic)?

11.9 (M)

pattern; intrinsic) or are they variable in duration and filtered volume

4

>3

3

11

2

>11

4

18

sized that if fluking bout duration is inversely related to prey density,

>3

Age

diving behaviours and foraging biomechanics linked? We hypothe-

>4

be variable in duration and filtered volume. Further, (d) are these

and if right whales maximize their diving behaviour to forage within

F
0

F
0

M

F
2

0

M

F

M

F

M

M
1

4

time spent in a high‐quality prey patch).

1

more dense prey, and longer or more tortuous dives would maximize

0

N non‐foraging
dives

to accumulated prey mass, then shorter fluking bouts would reflect

0

pauses are linked to prey processing, and if that processing is linked

0

Sex

high‐quality patches, dives with shorter bouts would be longer (i.e. if

7
4:10
6:20
3,142
05_230a

A, H, S

18
7:57
9:00
3,360
05_226b

H

22

12
5:36

11:35
13:57
A, H, S

A

8:37

7

8
8:32

2:14
7:54

10:48

39

5
1:19

11:33
11:33

6

8
1:43

2:26
2:26

1:48
None

A, H, S

2,413

3,208

shaped dives based on bottom‐phase duration: the bottom phase of

05_215a

et al., 2001; Simon et al., 2009). We distinguished between U‐ and V‐

05_224a

Balaenid whales show characteristic U‐shaped foraging dives and
V‐shaped non‐foraging dives (Baumgartner & Mate, 2003; Nowacek

A, H, S

frame of our analysis for each deployment in Figure S1.

3,323

deployments and the temporal extent of the playbacks and the time

2,350

et al., 2004). For transparency, we show the full depth record of all

02_221d

were reported to return to normal activity within minutes (Nowacek

05_210b

2 hr preceding the playback (02_221d). We chose a 2‐hr wait from
the end of the last playback to be cautious, though exposed whales

None

where >2  hr of data was available 2  hr after the end of the final
sound exposure to the animal (Table 1). For one whale, we used the

3,108

05_219a; Table 1). Additionally, we analysed data from deployments

1,409

where no playbacks occurred (tags 01_214a, 01_221a, 02_233a,

02_233a

We made use of this existing tag library and selected deployments

05_219a

alerting stimuli, following a playback protocol (Nowacek et al., 2004).

1:43

DTAGs were initially deployed on right whales in the Bay of
Fundy to test for whales’ responses to sounds, including vessels and

None

(MathWorks, Natick, MA, USA) for all analyses.

None

org) and additional software, custom written in MATLAB 2015b

2,790

a combination of existing biologging tag analysis tools (animaltags.

2,830

magnetometers; sensor data were recorded at 23.5 Hz (2001, 2002)
and 50 Hz (2005) and were decimated to ~5 Hz for analysis. We used

TA B L E 1   Information on tag deployments, analysed tag data and tagged whales

DTAG includes a pressure sensor and 3‐axis accelerometers and

01_214a

recorded sound at 32 kHz (2001 and 2002) and 96 kHz (2005). The

01_221a

& Tyack, 2004; Nowacek et al., 2001; Parks et al., 2011). The tags

Total duration
(hr:min)

July and August 2001, 2002 and 2005 (Table 1; Nowacek, Johnson,

Acoustic
playback

in the Bay of Fundy, Canada, in the late‐summer foraging season,

EgNO

the acoustic environment and locomotor behaviour of right whales

Deployment ID

We used archival digital acoustic recording tags (DTAGs) to record

Analysed
­duration (hr:min)

N foraging
dives

2 |  M ATE R I A L S A N D M E TH O DS

Note: Total duration refers to the total duration of recorded data, versus the analysed data that were selected 2 hr following the end of the last acoustic playback to the animal. Acoustic playbacks
were either none, or alarm (A), high‐frequency sounds (H) or silence (S), as described in Nowacek et al. (2004). Additional aspects and portions of the dataset are described in Table 1 (Nowacek et al.,
2004, 2001; Parks et al., 2011). The number of foraging and non‐foraging dives (to >50 m) reflect only those in the analysed time periods. EgNO refers to the individual identifiers in the New England
Aquarium North Atlantic right whale catalog. Length (±95% prediction interval) was estimated from age following Moore et al. (2004) or measured by aerial photogrammetry (M; W. Perryman Personal
Communication), and gape area estimates (±95% prediction interval) are described in the manuscript text.

1.3 ± 0.1

1.2 ± 0.1

1.5 ± 0.1

1.2 ± 0.1

1.8 ± 0.2

1.0 ± 0.1

are pauses in fluking consistent in their timing (i.e. a biomechanical

1.5 ± 0.1

patterns as other ram filter feeders during foraging dives? (c) If so,

1.3 ± 0.1

We expected biomechanical adaptations to a high‐drag foraging strategy: (b) Do right whales show the same characteristic gait

1.3 ± 0.1

across different species and groups of ram filter feeders.

1.4 ± 0.1

Estimated gape
area (m2)

of gape, speed and foraging time affect the volumes of water filtered

van der

|

Functional Ecology
      1293

HOOP et al.

dives began the first time the pitch angle became positive after the

This method has proven useful in estimating speed by calibrating

whale left the surface, and ended when the pitch was last negative.

measured flow noise in situ to the vertical speed of a tagged ani-

U‐shaped foraging dives had a clear bottom phase with only slightly

mal when it is oriented at sufficiently high pitch angles (von Benda‐

variable depth, whereas V‐shaped dives had bottom phases <5  s

Beckmann, Wensveen, Samarra, Beerens, & Miller, 2016; Goldbogen

(Figure 1). We defined dives as departures from the surface >50 m as

et al., 2006; Miller, Johnson, Tyack, & Terray, 2004; Sato, Mitani,

has been the convention for characterizing diving behaviour of right

Cameron, Siniff, & Naito, 2003; Simon et al., 2009).

whales in deep‐water foraging habitats (Baumgartner & Mate, 2003;

We estimated the vertical swimming speed as the change in

Nowacek et al., 2001). There were no instances of shallow feeding

depth divided by the sine of the pitch angle, when the absolute

excluded from the analysis; shallow feeding was not expected or ob-

pitch angle exceeded 30 degrees to ensure reliable speed estima-

served as most Calanus were in diapause and concentrated at depth

tion (sensu Simon, Johnson, & Madsen, 2012). To estimate swimming

(Baumgartner & Mate, 2003; Baumgartner et al., 2017; Michaud &

speed for times when the pitch angle was low (e.g. the bottom phase

Taggart, 2007). We checked the sensitivity of the dive depth thresh-

of foraging dives), we used the low‐frequency flow noise as recorded

old based on the breakpoint in the cumulative distribution function

on each tag as a proxy for speed (following, e.g. Burgess et al., 1998;

of all dive depths >5 m. Setting the depth threshold at 50 m rather

Goldbogen et al., 2008; Simon et al., 2009). We computed flow noise

than 10 m did not lead to a difference in the number of estimated

as the noise power centred at 500 Hz, band‐pass filtered with a 2‐

foraging or non‐foraging dives: the shallowest foraging dive was

pole Butterworth filter and subsequently decimated to a resolution

100 m, no matter the threshold used. Incomplete dive cycles due to

of 25 Hz (Simon et al., 2009). For each tag and all dives, we then com-

tag release were not included in the analysis.

puted the mean noise power in 5 s bins and the mean vertical speed
in the same 5 s bins. We ignored the first and last 5 s of each dive as
air bubbles could often be heard escaping the plastic housing of the

2.1 | Speed estimation

tag at these times. We obtained a flow‐noise calibration by fitting a

For applications where animal speed is used to test ecological and

second‐order polynomial to the relationship between the log10 (noise

physiological hypotheses, many biologging tags have introduced ex-

power) and vertical speed (as in Goldbogen et al., 2006; Goldbogen

ternal sensors to measure passing flow. Many have calibrated meas-

et al., 2008) for each deployment, and applied this relationship to

ured speed with the rotation rate of external impellers (Blackwell,

estimate speeds from flow noise when the pitch angle was low.

Haverl, Le Boeuf, & Costa, 1999; Burgess, Tyack, Le Boeuf, & Costa,
1998; Watanabe, Lydersen, Fisk, & Kovacs, 2012) and micro‐turbines (Gabaldon et al., 2019), as well as the amplitude of vibrations

2.2 | Inertial sensor analysis

as measured by the tag's accelerometers (Cade, Barr, Calambokidis,

We derived pitch, roll and heading from the accelerometer and

Friedlaender, & Goldbogen, 2018). Absolute speed estimates are

magnetometer signals after correcting for the orientation of

sensitive to stalling at high and low speeds, tag shape and place-

the tags on the whales by rotating each three‐element vector

ment on the body, orientation with respect to the flow and calibra-

(Johnson, 2015; Johnson & Tyack, 2003). We calculated the pitch

tion technique, as well as to the estimation errors in the analytical

deviation as the difference between the instantaneous and mean

techniques (e.g. reviewed in Cade et al., 2018). Another method is

body posture orientation (following e.g. Simon et al., 2012; van

to use the relationship between the amplitude of low‐frequency

der Hoop et al., 2017). This cyclic pattern in pitch deviation is

(50–500 Hz) flow noise recorded on the tag's hydrophones, which is

reflective of fluking behaviour as swimming motion is along the

approximately cubic with speed (Finger, Abbagnaro, & Bauer, 1979).

pitch axis (Figure 1). We detected pauses in fluking behaviour by

2

0
–10

1.8

Depth (m)

Pitch
(degrees)

50

Descent phase

0

Ascent phase

Descent phase

1.6

Ascent phase
Bottom phase
– 50

1.4

–100

1.2

–150

1

Estimated Speed (m/s)

Pitch Deviation
(degrees)

2.2
10

0.8

– 200

5

0

Time (min)

5

0

10

15

Time (min)

F I G U R E 1   Example V‐shaped non‐foraging (left) and U‐shaped foraging (right) dive profiles of North Atlantic right whales. Diving depth
is coloured by estimated speed (m/s), overlaid with total body pitch (degrees, black). Pitch deviation (degrees, orange) is plotted above each
dive, with triangles indicating the start of pauses between fluking bouts detected in the foraging dive. Dive phases of descent, bottom and
ascent, as determined from the pitch record, are also noted

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detecting instances where the Hilbert‐transformed pitch devia-

each dive. The tortuosity metric here was computed as 1 minus the

tion signal was lower than its 10% value for that deployment >2 s.

estimated distance covered/the stretched‐out track length over

This 10% cut‐off is similar to the <0.04 radian Hilbert transform

the time interval; the index therefore ranges from 0 for straight‐

threshold previously used for glide detection (van der Hoop et al.,

line movement to 1 for extreme circular movement (Wilson et al.,

2017; Nousek‐McGregor et al., 2013; Woodward, 2006) but allows

2007).

for differences in tag placement between deployments which can
lead to different measured pitch values. The 2‐s detection thresh-

2.3 | Filtered volume estimation

old was set specifically to distinguish between pauses in fluking
behaviour and prolonged gliding behaviours previously described

We obtained the ID number and age at tagging from the NARWC

in right whales (Nousek‐McGregor, 2010; Nousek‐McGregor et al.,

(2006). Length measurements from aerial photogrammetry were

2013; Nowacek et al., 2001). Detected pauses were checked for

available for 4 individuals (W. Perryman Personal Communication;

each dive and manually confirmed. We detected pauses only dur-

Table 1, Figure 2), and for all other individuals, we estimated

ing the bottom phase of U‐shaped dives and only when body pitch

body length from the length‐at‐age curve in Moore, Knowlton,

was <30 degrees, i.e. when the whale was not orienting upwards

Kraus, McLellan, and Bonde (2004). Only minimum age was avail-

or downwards or changing depth (Figure 1).

able from the catalog for two individuals that were not meas-

We computed the duration of each bout of active fluking be-

ured (02_221d, Eg 2350; 05_226b, Eg 3360), so we used these

tween consecutive pauses. We expected that if short bouts (i.e. fre-

available ages to obtain conservative length estimates for these

quent pauses) indicated higher prey densities, then longer U‐shaped

individuals. To estimate gape, we fit a linear model to aerial pho-

foraging dives would be associated with shorter fluking bouts, to

togrammetry measurements of North Atlantic and southern right

maximize the time at depth in a good prey patch; to test this hypoth-

whale (E. australis) calves and adults (n  =  56) from Miller (2005)

esis, we used a linear model for the effect of foraging bout duration

and Miller et al. (2012) to estimate the mouth width (width at 10%

on dive duration. We calculated the instantaneous fluke‐stroke rate

of the body length; m) from total body length (m). We estimated

(Hz) over the deployment as the time between successive peaks in

the length of the longest baleen plate (m) for each individual

the pitch deviation signal. We calculated the mean instantaneous

from body length (m) based on values reported for North Pacific

fluke‐stroke rate over (a) the descent, bottom and ascent portions of

(E. japonica, n = 21) and Southern right whales (n = 14; Figure S2;

each dive, and (b) each fluking bout.

Omura, Ohsumi, Nemoto, Nasu, & Kasuya, 1969; Best & Schell,

We constructed dead‐reckoned pseudo  tracks of each whale

1996). We were unable to find similar measurements for North

within each dive from the accelerometer, magnetometer and depth

Atlantic right whales in the literature or in the North Atlantic Right

sensors, and the estimated speed within each dive. We used the

Whale Consortium Necropsy Database. Following previous work

derived northings and eastings (m) to calculate the tortuosity of

(Kenney, Hyman, Owen, Scott, & Winn, 1986; Watkins & Schevill,

the whales’ paths in the horizontal plane at 10‐s intervals within

1976), we estimated the gape area as the (mouth width x longest

Age (years)
2

2.5

4

6

8

10

12 14 16 18

2.5

2

2

2

1.5

1.5

Body length (m)

1

0.5
10

10.5

11

11.5

1

Head width (m)

Baleen length (m)

Gape area (m 2 )

Head width (m)

12

12.5

Body length (m)

13

13.5

14

0.5
14.5

Head width (m)

Gape =
Width x Length

Baleen length (m)

Baleen length (m)

F I G U R E 2   Estimated gape area (m2,
purple), head width (m, blue) and baleen
length (m, orange) with body length (m)
and age of North Atlantic right whales.
Dotted lines represent 95% CI. Circles
represent estimated gape for individuals
with measured (open) and estimated
(closed) body lengths in this study. Baleen
lengths are from North Pacific (Omura et
al., 1969) and southern right whales (Best
& Schell, 1996), head width from Miller
(2005) and Miller et al. (2012), and length‐
at‐age curve for North Atlantic right
whales from Moore et al. (2004)

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baleen plate length)/2 (Figures 2 and S2), and propagated errors
from the age–length, length–width and length–baleen length estimates. The volumetric filtration rate was estimated by integrating
the estimated swimming speed (m/s) and the estimated gape of
each tagged whale (m2) over bout durations and dive durations
(sensu Simon et al., 2009).
We used a linear model to assess the effect of estimated swimming speed, gape area and bottom time on the total volume filtered
per dive. We used linear models to test whether the proportion of
time spent foraging per dive differed with dive depth, with the expectation that if dive duration was aerobically limited, then deeper
dives would have significantly shorter bottom times due to transit
to and from the foraging depth. We computed these statistics for
foraging dives only.

3 |   R E S U LT S
For 10 whales tagged for longer than 74:06  hr:min, we analysed a

F I G U R E 3   The relationship between flow noise and vertical
speed on ascents (blue) and descents (orange) >±30 degree body
pitch. Black line is the fitted relationship with dashed lines as
prediction intervals

total of 57:04 hr:min of tag data (range 1:18–11:34 hr:min per whale;
Table 1, Figure S1) during which individuals completed a total of 140

(mean 8.2  ±  3.1). During these bouts, estimated swimming speed

dives >50 m. Of these, 132 were categorized as U‐shaped (foraging)

was 1.1 (±0.3) m/s.

dives and 8 as V‐shaped (non‐foraging) dives. The mean depth of U‐

Whales filtered on average 78 (±30) m3 of water per fluking bout,

shaped foraging dives was 138 (±25) m, and the shallowest foraging

but fluking bouts did not end after a fixed volume of water had been

dive was 89 m (tag 02_221d; Table 1). The mean depth of V‐shaped

filtered (range 10–328 m3). Per dive, whales filtered a mean of 673

dives was 124 (±25) m.

(±201) m3 of water total (Figure 4a), and dives were not terminated

For the 10 tag records, the R 2 for the flow‐speed correla-

at a fixed volume of water filtered per dive (Figures 4a, 5 and 6).

tions averaged 0.76 (±SD 0.19), with an RMSE of 0.13 m/s (±0.05;

At the bottom of foraging dives, the mean filtration rate was 1.4

Figure 3). For U‐shaped foraging dives, right whales descended

(±0.3) m3/s; however, including transit time, mean filtration rates per

at mean (±SD) pitch angles of −58 (±9) degrees, at speeds of on

complete foraging dive were 0.9 (±0.2) m3/s or 3,210 (±870) m3/hr.

average 1.4 (±0.2) m/s with fluke stroke rates of 0.07 (±0.04) Hz

The total volume filtered over the course of a tag deployment var-

(Figure 1). Ascents were similar, with mean pitch angles of 54 (±10)

ied from 342 m3/hr (01_214a) to 3,315 m3/hr (05_219a), primarily

degrees and speeds of 1.5 (±0.2) m/s, with fluke stroke rates of

driven by activity budgets, as whales exhibit other (e.g. non‐forag-

0.14 (±0.02) Hz. At the bottom of U‐shaped foraging dives, right

ing) behaviours (Figure 4c).

whales on average slowed to 1.1 (±0.3) m/s while actively swim-

In foraging dives, whales descended to the foraging depth within

ming with fluke stroke rates of 0.16 (±0.2) Hz. In contrast, during

the first 17 (±5)% of the dive duration (2.0 ± 0.4 min) and foraged

V‐shaped dives, pitch angles on descent and ascent were −5 (±5)

until 85 (±5)% of the dive duration (10.9 ± 1.5 min) before ascend-

and 23 (±14) degrees, respectively, at speeds of 1.5 (±0.2) and 1.3

ing (Figure 5c). We detected a significant relationship between dive

(±0.2) m/s.

depth and the proportional time of onset of foraging (F1,129 = 5.71,

We detected pauses in consistent fluking behaviour at the bot-

pslope = 0.0184), but the effect size was 3 (±3)%; this means the onset

tom of foraging dives, every 56 (±22) seconds (Figures 1 and 4b). The

of foraging varied from 14% (SE 13%–17%) into the dive cycle for a

median duration of these pauses was 3.5  s. These pauses did not

82‐m dive compared to 19% (SE 17%–20%) for a 177‐m dive. Further,

appear to be a consequence orientation in a different axis: within

depth of dive explained little to no variance in the proportional time

20  s preceding and following a pause in continuous fluking, rolls

to onset of feeding (R2 = 0.035). Similarly, the proportional time of

were occasional, and heading was often continuously changing; the

the end of foraging decreased significantly with depth (F1,129 = 16.9,

change in depth ranged  ±  10  m (Figure S3). We hypothesized that

pslope  <  0.0001), with a similarly small effect size of −6 (±3%) and

if bout duration was inversely related to prey density, and if right

R2  =  0.119 (Figure 5c). The total proportion of the dive spent for-

whales maximized their diving behaviour to forage within high‐qual-

aging decreased with depth by a total of 10% (73% to 63%) across

ity patches, dives with shorter bouts would be longer. We found no

the range of dive depths (82–177 m; R2 = 0.088). There was no sig-

relationship between dive duration and the duration of fluking bouts

nificant relationship between the depth of each dive and the total

within each dive (R  = 0.001; Figure 4b). The number of fluking bouts

volume filtered (R2 = 0.001, F1,115 = 0.212, p = 0.884; Figure 4d). Even

increased with dive duration, as expected as both are related to time;

in the shortest dives with <5 min and <50% of bottom time (Figures

however, the number of bouts within a dive ranged from 0 to 14

4a and 5b,c), whales performed fluking bouts.

2

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F I G U R E 4   (a) The total volume of water filtered per dive (m3, circles), coloured to match each dive profile for a representative North
Atlantic right whale (05_215a). The grey line shows the rate at which the volume is filtered (i.e. the filtered volume through time for each
dive). Small points along the grey line note the timing of pauses in fluking. (b) The mean (error bar SD) duration of fluking bouts (s) during
each dive versus the duration of those dives (s). The coloured circles match the same dives in panel a. Grey points are data for the other tags.
(c) Estimated filtration rate (m3/hr) calculated during the bottom phase, per entire dive cycle, and throughout the tag deployments; colours
represent different individuals. (d) The estimated total volume of water filtered (m3) compared to the maximum depth of each foraging (red)
and non‐foraging dive (black; m)
Three variables contribute to the total filtered volume per dive:

residence in an area, and therefore hypothesized that dives with higher

swimming speed (estimated from flow noise), gape (estimated from

filtered volumes, or more or shorter fluking bouts, would have more

age and morphometrics) and time per dive spent foraging (bottom

tortuous paths. We found no relationship between the total volume fil-

time, estimated from tag data). We used a linear model to assess

tered per dive and the mean tortuosity within that dive (F1,128 = 0.793,

the effect of each of these variables on the total volume filtered

p = 0.375, R2 = −0.002) nor the bout duration (inter‐pause interval) and

per dive. The three factors explained 89.5% of the variability in fil-

the tortuosity of the dive (F1,128 = 0.003, p = 0.958).

tered volume (F3,126  =  357, p  <  0.0001). The dive bottom time had

the greatest effect size (875 ± 71 m3), followed by swimming speed

(704 ± 53 m3). Gape had the lowest effect size of 349 ± 67 m3 across

4 | D I S CU S S I O N

the range of 1–1.8 m2.
Based on the dead‐reckoned tracks of individuals, whales exhibited

Balaenid whales acquire their food in a short period in the spring

a variety of subsurface foraging behaviours (Figure 7). The tortuosity

and summer, putting a premium on understanding where, how and

of horizontal movement within dives was on average 0.022 (±0.025),

how much prey‐laden water these ram filter feeders process to fuel

up to 0.117, and varied even between sequential dives (Figure 7). We

their capital‐breeding lifestyle. We employed pressure, inertial and

expected tortuosity to reflect animals “working a patch,” maintaining

acoustic sensors on biologging tags to estimate the filtration rates of

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F I G U R E 5   Total volume of water filtered per dive (m3) versus dive duration (min; a) and bottom foraging duration (min; b) for 10 North
Atlantic right whales. The vertical bars in c show the proportional time of onset of foraging to the end of foraging, at the foraging depth of
each dive; circles represent the total proportion of each dive spent foraging. In all panels, colours indicate the gape area size (m2) of different
whales
right whales and the biomechanics relevant to their foraging behav-

filtration rate, but only partially compensates for the smaller mouth

iours: (a) How fast do right whales filter? (b) Do right whales show

area. To acquire similar prey resources as bowheads, right whales

the same characteristic gait patterns as other ram filter feeders dur-

must feed on higher density prey aggregations, on prey with higher

ing foraging dives? (c) If so, are pauses in fluking a biomechanical

energy density, and (or) for longer periods of time.

pattern or related to prey processing/density/patch structure?

Based on in situ speed estimates, measured diving behaviour

We found that right whales made repeated foraging dives to

and individual‐specific gape measurements, the right whales in this

depths where they slowed to 1.1 (±0.3) m/s or 0.09 (±0.03) body

study filtered on average 3,211 (±874) m3 of water per hour during

lengths/s. At depth, they carried out a repetitive gait with short,

complete foraging dives (i.e. a round trip from the surface, including

~2 s pauses between bouts of higher frequency fluking behaviour.

time of descent and ascent). Over the course of deployments, fil-

We suggest that, similar to observations in bowhead whales, right

tration rates varied from 342 m3/hr to >3,300 m3/hr depending on

whales swim at consistently low speeds when foraging to reduce

individual behaviour and size. During active foraging at the bottom

the drag of their open mouths. However, right whales only slow

of U‐shaped dives, the whales filtered 4,520 (±1,230) m3/hr, which is

down by 26% (compared to 40% for bowhead whales; Simon et al.,

~30% lower than the estimates of 6,250 m3/hr by Kenney et al. (1986)

2009), likely due to the smaller cross‐sectional mouth area per body

and 6,534 m3/hr by Baumgartner and Mate (2003). This difference is

size; the faster swimming speed of right whales provides a higher

primarily due to explicitly including variation in mouth gape with age

F I G U R E 6   The estimated bottom
speed (m/s; ± prediction error in grey),
gape area (m2) and bottom time (sec)
of the dives of 10 North Atlantic right
whales, coloured by the estimated total
volume of water filtered (m3) per dive. 2D
projections are shown in grey circles; gape
is jittered randomly up to 0.05 m2 to see
overlapping points

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F I G U R E 7   Subsurface foraging behaviour (pseudo‐tracks) of four sequential dives (a, b, c and d) of one example North Atlantic right
whale (05_215a) foraging in the Bay of Fundy, Canada. The estimated volume of water filtered per dive is printed on each panel. Filled black
triangles indicate position of dive initiation (downward‐facing) and surfacing (upward‐facing); open triangles at depth indicate pauses in
fluking behaviour. The colour along the track indicates estimated swimming speed
(determined from body size and baleen length, Figure 2), as well as

hr swimming at 1.5 m/s, compared to 5,760 m3/hr (33% less) swim-

in situ estimates of swimming speed as these individuals foraged at

ming at 1.0 m/s. Considering the error in our speed estimation (mean

depth with their mouth agape (Figure 1).

RMSE = 0.13 m/s), filtered volume estimates are likely within ± 10%,

Previous models of foraging in right whales assumed a constant

still less than the difference between assuming a constant speed ver-

mouth area of 1–1.2 m2 and speeds of 1.5 m/s (Baumgartner & Mate,

sus an estimate from flow noise. Speed estimates from flow noise do

2003; Kenney et al., 1986), whereas our gape estimates account for

have a low‐speed limitation because (a) flow noise must be higher than

changes with age for the first time (1–2 m2, a doubling over the life

background noise and self‐noise of the recorder, so will be more chal-

span). Not including this variation would lead to considerable under-

lenging to detect at slow speeds, and (b) the regression relationships

estimates of the volumes filtered and subsequent prey consumed by

can induce errors at either end of the measured speeds (Figure 3; von

adult right whales. This study included many subadult individuals,

Benda‐Beckmann et al., 2016; Blackwell et al., 1999; Burgess et al.,

aged 2–4 years, with estimated gape areas of 1.1–1.3 m2 (Table 1).

1998; Cade et al., 2018). We measured vertical speeds in the range of

The difference in estimated filtered volumes for these animals, using

0.4–3.5 m/s (Figure 3). Though there are limitations in the flow‐noise

age‐specific gape versus a constant gape of 1.2 m2 (Baumgartner &

approach, it provides estimates of variation in swimming speed, critical

Mate, 2003; Kenney et al., 1986), is negligible at ~4%. However, the

to addressing our main hypotheses. Including morphological variation

underestimate of filtered volume is considerable in older and larger

and tag‐derived estimates of swimming speed through water with the

individuals with estimated gape areas of up to 1.8 m2 (Figure 2). We

time spent foraging during the bottom phase of U‐shaped dives re-

estimated a gape of 1.8 m2 for an >11‐year‐old male (02_221d) in this

fined the estimates of filtration and therefore hourly prey ingestion

3

study. This individual filtered an average of 760 (±400) m of water

during foraging with variable behaviour over the course of a day.

per dive. Per‐dive volume estimates would have been 530 (±270) m3,

We found a marked stereotypy in the diving behaviour of right

230 m3 or 30% less than if we had assumed a non‐age adjusted gape

whales in deep‐water foraging habitats: individuals performed re-

of 1.2 m2.

peated foraging dives to consistent depth and duration for periods

Second, previous studies used higher fixed values for swimming

of >10  hr (34 dives, Figures 4a, S1). Right whales are able to rap-

speed, or at least minimum swimming speeds of 1.5 m/s (Baumgartner

idly descend to foraging depth at high pitch angles, and similarly

& Mate, 2003; Kenney et al., 1986; Watkins & Schevill, 1976, 1979).

return to the surface quickly after foraging, optimizing their time

We estimated swimming speeds of 1.1 (±0.3) m/s for whales when

at depth (Baumgartner & Mate, 2003; Nowacek et al., 2001). We

foraging, based on our tag data. Though this difference may seem

hypothesized that if whales were consistently diving to their aero-

minimal, it translates to considerable differences in volume fil-

bic dive limit, they would have filtered lower total volumes of water

tered: an 8‐m whale with a gape of 1.6 m2 would filter 8,640 m3/

in deeper dives, due to the time required to transit to the foraging

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patch (Thompson & Fedak, 2001). However, the lack of a significant

as well as small‐scale changes in the vertical dimension between

effect of dive depth on the total volume filtered per dive and the

dives (Figure S3) further suggest that right whales are capable of

low explanatory power of depth on foraging duration emphasizes

detecting fine‐scale variations in prey density and adjusting their

that by completing many shorter, aerobic dives with steep ascents

foraging behaviour accordingly (Baumgartner et al., 2017; Kenney,

and descents and short surface intervals right whales maximize the

Mayo, & Winn, 2001; Mayo & Goldman, 1992; Mayo & Marx, 1990).

time spent foraging in a consistent prey patch, regardless of its depth

Simultaneous measurements of the vertical distribution of prey

(Baumgartner et al., 2017). While individuals are able to optimize

and right whale diving behaviour made in foraging habitats have

their time foraging in high‐density prey layers, they apparently will

shown how right whales are able to repeatedly target the depth

also go without foraging for extended periods of time (2+ hr; Figure

of maximum copepod concentrations (Baumgartner & Mate, 2003;

S1) in this otherwise rich environment. Understanding why individu-

Parks et al., 2012). By making fine‐scale adjustments in the verti-

als do or do not forage should be explored with future prey‐density

cal dimension (~20 cm), right whales can increase energy intake by

measurements simultaneous with tag deployments (Baumgartner &

as much as 20% (Mayo & Goldman, 1992). In the horizontal plane,

Mate, 2003; Parks et al., 2012); this may improve our understanding

copepod energy density can vary by a factor of 3.5 over a hori-

the effects of physiological mechanisms such as digestion and prey

zontal distance of 2  km in the Bay of Fundy (Michaud & Taggart,

processing that may limit the duration of productive foraging bouts

2011), and high energy (10–30 kJ/m3) patches ~1km in length and

(Horning, 2012).

1–10  m thick can form in similar deep‐water foraging habitats of

Previous descriptions of right whale diving behaviour in deep‐

right whales (Davies, Taggart, & Smedbol, 2014); variations in C5

water foraging habitats categorized three types of dives based on

concentration, lipid content and energy density are considerable

k‐means clustering: foraging dives, V‐shaped dives and “other” or

at horizontal scales of 500 m (Michaud & Taggart, 2011). Further

“Type 2” dives (Baumgartner & Mate, 2003; Nousek‐McGregor,

study to map the fine‐scale horizontal distribution of copepod lay-

2010). These “Type 2” dives are often to depths just above of the

ers, and their nutritional value, especially relative to surface‐cor-

bottom mixed layer and even to the seafloor (Baumgartner & Mate,

rected 3‐D movements of foraging whales could further elucidate

2003). These dives have previously been described as intermediate

how right whales exploit and detect patches of different energy

between foraging and V‐shaped dives: they do not maximize the

densities and dimensions.

time spent at depth, with longer ascents compared to typical for-

The bowhead whale is a closely related balaenid species with

aging dives (Baumgartner & Mate, 2003; Nousek‐McGregor, 2010).

similar foraging ecology and behaviour to right whales; both target

However, the reduction in speed in the clear bottom phase of these

calanoid copepod prey by continuous ram filtration (Laidre, Heide‐

dives is consistent with foraging (Nousek‐McGregor, 2010). In this

Jørgensen, & Nielsen, 2007; Pomerleau et al., 2011; Walkusz et

analysis, we separated deep dives into foraging and non‐forag-

al., 2012). Bowhead and right whales share similar morphology

ing categories based only on a clear bottom phase and found that

(Figures 8 and 9) but differ considerably in the magnitude of their

shorter dives with a lower proportion of time spent on the bottom

gape area, as well as their baleen areas, widths and lengths for a

(fitting the description of “Type 2” dives) do show clear fluking bouts

similar body size (George et al., 2016; Lambertsen et al., 2005;

at low speeds (Figures 4a and 5b,c). The “Type 2” or “other” dives

Omura et al., 1969; Werth, 2004; Werth et al., 2018). We have

therefore may be those where foraging was terminated, perhaps

shown that right whales slow to 1.1 (±0.3) m/s during presumed

due to inadequate prey densities (Hazen, Friedlaender, & Goldbogen,

foraging bouts, faster than the estimate by Simon et al. (2009) of

2015; Stephens, 2008; Thompson & Fedak, 2001). The deep non‐

0.7 (±0.1) m/s for foraging bowhead whales. The slow foraging

foraging dives may serve to locate and/or judge prey patches. The

speed of balaenids has been linked to their ram‐filtering strat-

diverse suite of sensors in these DTAGs is therefore useful to further

egy that incurs high drag, the level of which is a function of the

elucidate behaviours previously inferred from time‐depth recorders,

frontal area of the whale, that is its gape and the square of the

without inertial sensors.

forward speed. The estimated gape sizes for right whales in this

Presenting dive behaviour through time can be misunderstood

study were 1.1–1.8 m2; a 12‐m right whale would have a gape of

to suggest that a submerged animal's path is straight in the hor-

1.3 m2 , compared to the 4.2  m2 gape of a 12‐m adult bowhead

izontal dimension. The incorporation of inertial sensors in tags

(Simon et al., 2009; Werth, 2004). Due to their smaller gape per

enables the estimation of a dead‐reckoned track, though these

body size compared to bowheads (Figure 8b), right whales have a

are also imperfect due to additive error in the sensors and igno-

lower frontal area and therefore can forage at higher swimming

rance to external forces, e.g. currents (Johnson & Tyack, 2003; Liu,

speeds while likely incurring similar levels of drag and energetic

Battaile, Trites, & Zidek, 2015; Schmidt et al., 2007; Shiomi et al.,

cost as bowheads. Within the tagged right whales in our study, this

2010). Irrespective of these errors, pseudo tracks do, however, cap-

is illustrated in the inverse relationship between gape and foraging

ture the qualitative nature of animal movement and can be useful

speed (Figure 6 projected on bottom). However, foraging at higher

in inferring how animals move, rather than where they go; for our

speeds only partially compensates for a smaller gape and still does

purpose, these tracks illustrate the degree to which right whales

not achieve the same filtration rate.

move horizontally within dives (Figure 7). The variation in the hor-

Drag increases linearly with area, but with the square of velocity

izontal movement patterns of whales foraging at depth (Figure 7)

(Vogel, 1994). While the baleen area primarily affects drag forces

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F I G U R E 8   (a) Filtration rates (dashed lines) and relative mouth friction drag (solid lines, relative to bowhead) across swimming speeds
for a 12‐m bowhead whale with an estimated gape area of 4.2 m2 and two right whales (body lengths 11 and 14 m) with gape areas of 1
and 2 m2. Average speeds of filtering bowhead (Simon et al., 2009) and right whales (this study) are marked with arrows. (b) Length‐specific
filtration rate of bowheads (black triangles; Simon et al., 2009) and right whales (coloured triangles; this study) and length‐specific gape of
bowhead (blue dot–dash; data from Werth, 2004) and right (blue dash) whales. Error bars are ± 1 SD
and the outflow speed after water is filtered through the baleen

a filtration rate of 3 m3/s only by swimming at 3 m/s, where its drag

(Potvin & Werth, 2017; Werth & Potvin, 2016; Werth et al., 2018),

force would be roughly 4× greater than the bowhead filtering at the

the mouth opening area affects the inflow volume of prey‐laden

same rate swimming at 0.7 m/s. A larger (14 m) right whale with a

water. The trade‐offs in the relationship between mouth friction

gape of 2  m2 could filter 3  m3/s swimming at 1.5  m/s, but would

drag, area and speed have been illustrated by Potvin and Werth

incur twice the drag cost doing so. While the filtration of ram feeding

(2017); we present the estimated open‐mouth friction drag relative

versus intermittent lunge/suction feeding has been often contrasted

to bowhead whales (i.e. scaled by gape area) and put these values in

in cetaceans (Goldbogen et al., 2016; Werth et al., 2018), there has

context with their resulting filtration rates (Figure 8a). When forag-

been little discussion of the drag and size trade‐offs in filtration effi-

ing at higher speeds, right whales incur similar drag forces to bow-

ciency within balaenids.

head whales, due to their smaller gape area; however, even at these

With a smaller gape than bowhead whales, and with greater

speeds their filtration rate remains lower. At 1.1 m/s, an 11‐m right

drag‐induced costs and pressures, right whales have been predicted

whale filters at a rate of 1.1 m3/s; a bowhead of the same length with

to target higher densities of prey when foraging. Prey‐field sampling

a gape of 4.2 m2 filters nearly 3 m3/s of water at its preferred speed

in areas around right whales when foraging or not has suggested

(Figure 8). That same right whale, with a gape of 1 m2, would achieve

density thresholds of 800–1,000 copepods/m3, below which right

Bowhead Whale North Atlantic right whale
Balaena mysticetus
Eubalaena glacialis
Gape Area
Body Length
Speed
Filtration Rate
Prey Concentration
Pause Interval
References

4.23 m2

1– 2 m2

Whale shark
Rhincodon typus

Basking shark
Cetorhinus maximus

0.1 m2

0.4 m2

12 m

10 –14 m

6m

4 – 6.5 m

0.7 m/s

1.2 m/s

0.3 –1 m/s

0.85 m/s

3.0 m3/s

1.4–2.4 m3/s

0.01– 0.1 m3/s

1 – 10 g/m3

>170 g/m3
103 –105 copepods/m3

104 plankton/m3

150 s

50 s

120–180 s

Werth (2004)
Simon et al. (2009)
Laidre et al. (2007)

This study
Murison & Gaskin (1989)
Baumgartner & Mate (2003)

Nelson & Eckert (2007)
Motta et al. (2010)

0.3 m3/s
0.3–3 g/m3
30– 60 s
Hallacher (1977)
Sims (2000)

F I G U R E 9   Comparative
morphometrics, swimming speed during
filtering, filtration rate, prey concentration
and inter‐pause interval for four species
of large ram filter feeders. The four buccal
cavity outlines shown are colour‐coded:
white represents baleen or gill racks, grey
the tongue (mysticetes), and black and
dark grey the overall shape of the head

van der

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      1301

HOOP et al.

whales will stop feeding (Beardsley et al., 1996; Mayo & Marx, 1990;

30 m3), which is consistent with the alternative hypothesis that the

Murison & Gaskin, 1989). At those thresholds, right whales in this

rate of prey acquisition or bolus formation may instead be the driver

study, which filtered 1.4 m3/s at the bottom of foraging dives, would

of these intervals. These pauses lasted less than half a full fluke stroke

be concentrating >60,000 copepods per minute in their mouths.

cycle (~6.25  s) and therefore differ from prolonged glides (>5  s) em-

In situ measurements of the prey field in the vicinity of whales

ployed in burst‐and‐coast swimming (Videler & Weihs, 1982; Weihs,

tagged with time‐depth recorders suggest that right whales target

1974; Williams, 1999). These pauses are also consistent with observa-

prey patches of 103–105 copepods/m3 (Baumgartner & Mate, 2003).

tions of right whales “nodding” at the surface while skim feeding (Mayo

By selectively targeting high‐density prey patches, right whales are

& Marx, 1990). Further, the more frequent timing of these pauses in

likely able to obtain sufficient energy to offset their high‐drag for-

right whales compared to bowheads is consistent with filtering much

aging strategy. There are few estimates of prey densities selected

more dense concentrations of prey, in concert with the morphological

by foraging bowhead whales, especially around tagged individuals.

differences described above.

Laidre et al. (2007) report densities of 1 g/m3 in surface waters but

After obtaining prey via an efficient cross‐flow filtration system

do not provide densities at depths where bowhead whales spend

(Potvin & Werth, 2017; Sanderson, Roberts, Lineburg, & Brooks, 2016),

the majority of their time feeding (Simon et al., 2009). Such densities

accumulated prey must be swallowed; pausing filtration to swallow has

appear low; even assuming prey densities around bowhead whales

been observed in other ram filter feeders ranging in size from basking

are an order of magnitude higher (10 g/m3), right whale energy ac-

and whale sharks (Figure 9; Motta et al., 2010; Nelson & Eckert, 2007;

quisition considerably outpaces that of bowheads.

Sims, 2000b) to paddlefish (Sanderson, Cech, & Cheer, 1994) and her-

If right whales waited until the end of a dive to process or

ring, shad, sardines, menhaden and alewife (Sanderson & Wassersug,

swallow prey, a massive accumulation of material would occur in

1990). Hallacher (1977) and later Sims (2000b) noted pauses in the

the mouth (Werth, 2001; Werth et al., 2018). We estimated that

open‐mouth feeding behaviours of basking sharks, with ~3 s interrup-

right whales filtered 670 m3 of water per foraging dive (mean body

tions to swallow prey. The rates of prey‐handling pauses may therefore

length  =  12.1  ±  0.6  m). Even assuming the lowest threshold of co-

be additional density‐mediated foraging behaviours (Hallacher, 1977;

pepod density measured in the Bay of Fundy (800 copepods/m3;

Runge, Pepin, & Silvert, 1987). The differences in gape areas, body

Murison & Gaskin, 1989), and with a capture efficiency of 95% (Mayo,

size, filtration rate and prey density between balaenids and large fishes

Letcher, & Scott, 2001), a 12‐m right whale would accumulate 5 × 105

(Figure 9) illustrate how continuous ram filtration in large fishes is much

copepods in their mouth by the end of a dive (1.7 MJ based on the

less efficient per unit time, though they often forage on similar prey

lower individual energy content of 3.4 J; Michaud & Taggart, 2007).

species. Basking sharks often forage on calanoid copepods, though in

At the highest measured copepod densities of 15,000 copepods/m3

different habitats they will forage on larger zooplankton prey (Baduini,

(Baumgartner & Mate, 2003), this would translate to as many as 9 mil-

1995; Sims, 2008; Sims & Merrett, 1997). The much longer feeding sea-

lion copepods per dive (18–36 L, 45 MJ based on the upper individual

son and an order of magnitude lower metabolic rate in large ram‐fil-

energy content of 5 J; Michaud & Taggart, 2007). Such high maximum

ter‐feeding fish (Motta et al., 2010; Sims, 2000a; Watanabe, Goldman,

feeding rates highlight why right whales may be able to acquire a large

Caselle, Chapman, & Papastamatiou, 2015) likely allow for much lower

proportion of their total annual energy intake in the months when

acquisition rates. Additionally, fish are able to forage continuously, as

copepods are at their highest energy densities and when and where

they do not have the same time restriction of returning to the surface

they maximally aggregate. It also highlights that taking brief pauses

to breathe as whales; the oxygen demands of filter‐feeding fish are met

from foraging to swallow prey throughout the dive is therefore likely

within the medium and by the same water flow through the gills as is

to be necessary.

used to filter prey (Sanderson et al., 1994; Sanderson, Cheer, Goodrich,

Simon et al. (2009) reported a characteristic swimming gait in bow-

Graziano, & Callan, 2001; Sims, 2008). Still, ram‐filter‐feeding fish show

head whales, where periods of high‐amplitude and high‐frequency

evidence for threshold feeding behaviours, leaving patches when prey

(0.12  Hz) fluking were interrupted by consistent pauses, half a fluke

densities are <0.5–0.7 g/m3 (Sims, 1999). Specific models to incorpo-

3

stroke in duration, occurring every 2.4  min, or ~480 m of water fil-

rate metabolic rate and oxygen demand versus drag, speed and filter

tered. They suggested these pauses may be related to prey handling

area of ram‐filter‐feeding marine animals may elucidate how different

and that the consistency of the behaviour may be due to exploitation

species and groups address these trade‐offs in morphology, movement

of continuous prey patches. In balaenids, the prey slurry likely accu-

and energetics.

mulates in the postlingual recess just before the oesophagus, prior to

Some of the parameters used to estimate filtration rates of

swallowing (Lambertsen et al., 2005). If pauses in fluking are linked to

swimming animals could incorporate improved measures in future

prey processing, and if that processing is linked to accumulated prey

studies. For example, changes in mouth aperture or gape are hard

mass (i.e. if it is limited by pharynx/oesophagus size, 3–10 cm; Albert,

to measure, especially at depth. At the surface, aerial footage from

1981; Lowry & Frost, 1984), then the timing of the pauses should be

surface‐feeding whales may be useful to quantify rates of mouth

a function of swimming speed and prey density. We detected similar

closure or small changes in gape or mouth position through time,

pauses, ~3 s long, between ~50 s bouts of fluking behaviour. We found

but how these movements translate from surface feeding to depth

that the timing of pauses did not occur at completely fixed time in-

would be unknown. Use of sensors on tags to measure gape would

tervals (SD 22  s) or after specific volumes of water were filtered (SD

help refine these estimates (Liebsch, Wilson, Bornemann, Adelung,

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Functional Ecology
1302      

van der

HOOP et al.

& Plötz, 2007; Robson, Thomas, Garcia de Leaniz, & Wilson, 2009).

the completion of this study. MASTS is funded by the Scottish Funding

Prey density and energy content are important to inform the op-

Council (grant reference HR09011) and contributing institutions. This

timal filtering speed for trade‐offs between energy expenditure

work is dedicated in memory of Jerry Conway of Canada’s DFO and

and acquisition. Attempts to co‐locate zooplankton sampling with

Canadian Whale Institute, who was instrumental in facilitating right

time‐depth recorders have led to estimates of energy acquisition

whale research in the Bay of Fundy.

(Baumgartner & Mate, 2003), but there is always some degree of
spatial and temporal decoupling that may lead to substantial errors
in these estimates. In situ prey‐field measurements from onboard

AU T H O R S ’ C O N T R I B U T I O N S

sonar tags would address many of the temporal and spatial decou-

J.M.v.d.H. and P.T.M. conceived the ideas and designed methodol-

pling problems between tag data and ship‐based echosounders

ogy with input from the other authors; D.P.N., S.E.P. and P.L.T. de-

(Goulet et al., 2019; Lawson et al., 2015). These, in concert with the

signed the initial experiments; D.P.N. and S.E.P. collected the data;

speed estimates and biomechanics, could help elucidate individual

J.M.v.d.H. and A.E.N.‐M. analysed the data; J.M.v.d.H. led the writ-

foraging decisions, fluking behaviours and how they directly relate

ing of the manuscript. All authors contributed critically to the drafts

to measured prey densities.

and gave final approval for publication.

Short‐duration, minimally invasive acoustic biologging tags provide glimpses into the foraging behaviours of right whales at depth.
These technologies can be combined with repeated aerial photo-

DATA AC C E S S I B I L I T Y

grammetry or photographs over time to estimate changes in body

Code and data associated with the manuscript are available at

shape and condition (Miller et al., 2011; Nousek‐McGregor et al.,

https​://doi.org/10.5281/zenodo.2660074 (van der Hoop et al., 2019).

2013; Pettis et al., 2004, 2017), as well as over what time periods
and in what areas right whales may be obtaining sufficient energy
resources. With the recent observed changes in distribution, body

ORCID

condition and prey availability (Angell, Wilson, Moore, & Stegeman,

Julie Marie Hoop 

2004; Davis et al., 2017; Greene et al., 2013; Meyer‐Gutbrod &

Anna E. Nousek‐McGregor 

Greene, 2014), it is critical to further understand the energetic trade‐
offs between filtration and acquisition in right whales. If prey densi-

https://orcid.org/0000-0003-2327-9000

Douglas P. Nowacek 

https://orcid.org/0000-0001-8910-6490

https://orcid.org/0000-0002-8137-1836

https://orcid.org/0000-0001-6663-627X

ties or energy content decreases (DFO, 2018), the energy gained per

Susan E. Parks 

energetic cost incurred will not balance and could result in an en-

Peter Tyack 

ergy‐deficit and poor body condition (Fortune, Trites, Mayo, Rosen,

Peter Teglberg Madsen 

https://orcid.org/0000-0002-8409-4790
https://orcid.org/0000-0002-5208-5259

& Hamilton, 2013). Comparative studies that integrate prey measurements, filtration and biomechanics could further quantify how
foraging in different habitats directly contributes to individual health,
nutritive status and the fitness necessary for the survival and recovery of the species.

AC K N OW L E D G E M E N T S
We acknowledge the field efforts of many over the years to collect
these tag data. We thank Mark Johnson for tag and analysis tool development and for providing helpful feedback, including on previous
versions of this manuscript. We are grateful for conversations with
Alex Werth, Jean Potvin, Marilyn Marx and Michael Moore, as well as
very helpful comments from two anonymous reviewers. Carolyn Miller
and Wayne Perryman provided head and body width and body length
measurements. Funding for tag deployments was provided by the
Office of Naval Research N000140410709 and the NOAA Fisheries'
North Atlantic Right Whale Grant Program NA04NMF4720405. Tag
data were collected in the United States and Canada under NMFS
permit #14791. JVDH received funding from the European Union's
Horizon 2020 research and innovation programme under the Marie
Skłodowska‐Curie Individual Fellowship Grant Agreement No.
706867. PLT acknowledges the support of the MASTS pooling initiative (The Marine Alliance for Science and Technology for Scotland) in

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S U P P O R T I N G I N FO R M AT I O N
Additional supporting information may be found online in the
Supporting Information section at the end of the article.

How to cite this article: van der Hoop JM, Nousek‐McGregor
AE, Nowacek DP, Parks SE, Tyack P, Madsen PT. Foraging rates
of ram‐filtering North Atlantic right whales. Funct Ecol.
2019;33:1290–1306. https​://doi.org/10.1111/1365-2435.13357​

Manipulative Trapping Experiments
In The Monhegan Island Lobster Conservation Area

NEC Award #05-949
Period of Performance: August 1, 2004 through June 30, 2008
Submission Date: January 2010

Carl Wilson
Maine Department of Marine Resources
West Boothbay Harbor, ME 04575
207-633-9538
207-633-9579 (fax)
[email protected]

Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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Abstract
Two manipulative trapping experiments were conducted within the Monhegan
Island Lobster Conservation Area (MILCA) during September through October
2005 and August through September 2007. In addition the MILCA fishery was
evaluated with respect to annual catch, trap hauls, maximum trap limits and
season length through daily harvester logbooks. The objectives of the trapping
studies were to test the impact of trap density on catch rates and the cumulative
catch, and to determine the relationship between soak time and catch rates. In
2005, catch rates for medium (167 km-2) and low (50 km-2) trap density areas
always exceeded those of high (500 km-2) trap density areas. Catch rates for all
areas paralleled an increase in lobster abundance, determined by independent
video monitoring, over the course of the study. The cumulative catch found in
high trap density areas was 16 and 68% higher than medium and low density
areas respectively. However, soak times in medium trap density areas could
have been decreased to compensate for losses in total catch. Migration within
the MILCA, as measured by recapture rates in trapping areas, suggest that in
excess of 90% of lobsters moved out of the areas within eight days after initial
capture. In 2007, the impact of soak time on catch was non-linear and indicates
that a maximum catch for traps with reduced competition from other traps is 4.2
times higher than is observed in the surrounding Maine lobster fishery. The
extension of the MILCA season by two months and reduction of the maximum
trap limit from 600 to 300 traps following the 2006/2007 season resulted in a
median 72 and 67% increase in landings for MILCA participants in the two
seasons following the change. These studies suggest the current Maine lobster
fishery could reduce traps with little impact on total catch, but the level and
spatial extent of any reduction would need to be matched to the annual
movements of the lobster resource and fishery.
Introduction
All three American lobster stocks in the United States are acknowledged to be
heavily exploited. Yet, the assessment of the US lobster resource provides a
mixed picture relative to stock status. The Southern New England stock is
considered to be depleted with fishing mortality estimates above and abundance
below the 1982 to 2003 median). The Gulf of Maine (GOM) and Georges Bank
(GBK) stocks continue to benefit from favorable recruitment with resulting fishing
mortality levels below and the abundance levels above median 1982 to 2003
levels (ASMFC 2009). This contrasting stock status serves as an opportunity to
understand the mechanisms driving the trajectory of stock abundance and
potential measures to improve unfavorable conditions.
While managers and fishermen have little influence on environmental conditions
that may contribute to stock increases or decreases, steps have been taken
manage aspects of the fishery in their control. Within the last ten years, the
Atlantic States Marine Fisheries Commission (ASMFC) working with Lobster

Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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Conservation Management Teams (LCMTs) as directed to develop plans
designed to control or reduce fishing mortality. Each management area has
taken steps to reduce traps in the fishery by implementing trap limits or
establishing historical participation levels. Over 10,000 fishermen have been
affected by these reductions directly or indirectly in the expectation of increased
biological benefit. Unfortunately, the relationship between the number of traps
and the associated fishing mortality rate is poorly understood, raising questions
about the effectiveness of limiting traps to control fishing mortality.
Understanding how traps influence fishing effort is fundamental to our
understanding of the assessment and management of the lobster resource in the
Northwest Atlantic. The performance and selectivity of traps can be influenced
by the availability of lobsters, inter and intra-specific interactions, bait efficiency
and gear selectivity (Miller 1990, Krouse 1989). To date attempts to model the
interaction of traps, fishing effort and fishing mortality have been limited and have
offered little guidance to managers (Russell 1994). By conducting controlled
fishing experiments, the effects of many of the above mentioned variables can be
separately identified, possibly resulting in clearer understanding of how traps
influence fishing effort, exploitation and finally fishing mortality.

Many studies have looked at the complexity of interactions with baited traps in
the lobster fishery. In reviews by Krouse (1989) and Miller (1990) several factors
were identified as contributing to the potential efficiency of traps, such as the
quantity of bait used, bottom sea water temperatures, physical and biological
characteristics of the bottom, inter and intra trap saturation effects, trap entrance
and exit selectivity, and variable fishing strategies. All these factors make
defining fishing effort in the lobster fishery difficult.
All lobster stocks in the Northwest Atlantic show signs of stress from fishing
effort. Measures of the effect of fishing effort on the population and fishery
include a reduced mean size, biased sex ratios, reduced reproductive potential
and loss of revenue to the fleet (ASMFC 2009, Skud 1974, Krouse 1989,
Rothschild 1972).
Fishing mortality and exploitation rates can be measured from fishery dependent
and independent sources. Assessment techniques include tag recapture
experiments (Ricker, 1975), Length cohort analysis and catch-effort methods
(Estrella and Cadrin 1996) and survey based estimates (ASMFC 2000). In
recent years change-in-ratio (CIR) methods have been successfully used in the
Tasmanian rock lobster fishery (Frusher et al. 1997), similar approaches have
been introduced for the Gulf of St. Lawrence (Comeau and Mallet 2001) and
Nova Scotia (Claytor and Allard 2003).
Ultimately the number of traps do relate to fishing mortality. However, because
the lobster fishery has the ability to compensate for reductions in traps by

Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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increasing efficiency, the relationship between trap number and effective fishing
effort is likely to be highly nonlinear (Russell 1994). Reductions in effort (traps)
to decrease fishing mortality have been questioned by industry and have not
been successful in practice.
Project Objectives and Scientific Hypothesis
Objectives
• Identify eight suitable 0.9 km2 areas of equivalent depth and bottom
characteristics within the Monhegan Island Lobster Conservation Area
(MILCA).
• Deploy traps in areas covering three experimental trap densities that are
representative of the variation along the coast of Maine.
• Conduct trapping experiments over a two-month period standardizing for
soak time, bait and gear.
• Record catch composition (legal, sublegal, V-notch and egg bearing) for
each trap hauled using electronic logbooks and on-board observers.
• Tag each lobster with batch tags unique to each trapping day.
• Record the location, incidence, size and biological status of recaptured
lobsters over the study period.
• Determine habitat specific lobster density before, during and after the
study period using remote video cameras.
• Monitoring the MILCA fishing season
• Record daily catch statistics during the MILCA fishing season (traps
hauled, average depth fished, average location, bait used, soak time)
• Investigate the impact on catch with variable soak (2005, 2007)
Hypothesis
•
•
•
•

Catch rates of lobsters are influenced by trap density
Cumulative impacts on local population structure (fishing “mortality”,
density, size composition, sex ratio) vary by trap density and trapping
duration.
Catch rates are not influenced by soak time.
Using the continuous change in ratio (CIR) method advanced by Claytor
and Allard (2003) determine the trajectory of daily exploitation of MILCA
fishing season relative to changes in catch and catch rates over the
course of the season.

Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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Participants
Project Leader
Carl Wilson
Maine Department of Marine
Resources
PO Box 8
West Boothbay Harbor, ME 04575
207-633-9538
207-633-9579 (fax)
[email protected]
Yong Chen, Ph.D.
University of Maine
School of Marine Sciences
Orono, ME 04469
207-581-4303
[email protected]
Richard A. Wahle, Ph.D.
Bigelow Laboratory for Ocean
Sciences
McKown Point Rd
West Boothbay Harbor, Maine 04575
207 633 9659
[email protected]
Michael C Bell, Ph.D.
The Centre for Environment,
Fisheries and Aquaculture Science
Lowestoft Laboratory
Pakefield Road
Lowestoft Suffolk
NR33 0HT, UK
+44 (0)1502 524320
[email protected]
Ross Claytor, Ph.D.
Bedford Institute of Oceanography
Dartmouth, Nova Scotia
902-426-4721
[email protected]

Mathew Thomson
F/V Pats Girl
PO Box 42
Monhegan, ME 04852
207-594-1778
Matt Weber
F/V Seldom Seen
PO Box 42
Monhegan , ME 04852
207-596-7289
Robert Bracy
F/V Pandora
PO Box 312
Monhegan, ME 04852
596-6748
Sherman Stanley
F/V Legacy
PO Box 127
Monhegan, ME 04852
207-596-0326
Dan Murdock
F/V Sylvia Anne
PO Box 363
Monhegan, ME 04852
207-594-2912
Lucas Chioffi
F/V Fenris
PO Box 141
Monhegan, ME 04852
207-596-7159
David Boegel
F/V Kathleen
Po Box 38
Monhegan, ME 04852
207-594-5546

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Methods
The waters surrounding Monhegan Island have been a seasonal winter fishery
since 1907; in 1998 the Maine legislature officially recognized this area as the
Monhegan Island Lobster Conservation Area (MILCA). Participation in the
MILCA is limited to 17 lobstermen in approximately 95 km2 immediately
surrounding Monhegan Island (Figure 1). The MILCA is the only area in New
England that is closed during summer and fall months when the rest of New
England’s lobster fishery is at its peak. The MILCA represents a rare opportunity
to conduct experiments in a trap free setting in one of the most productive lobster
regions of the coast. An explicit aim of the Maine legislature, when establishing
MILCA, was to promote scientific studies, a goal that complements the Northeast
Consortium goal of evaluating closed areas and improving fishing practices.

Multibeam Survey of MILCA Waters
In April 2005, a week long Multi-Beam survey was conducted to survey the
Monhegan Island Lobster Conservation Area. The survey was conducted by
mounting the multi-beam transducer to the off-side of the F/V Seldom Seen. The
survey was sub-contracted through the Pennsylvania State University, under the
leadership of Dr. Tom Weber (now with UNH). The resulting survey produced a
map with a horizontal resolution of 5-meters and a 1-meter depth. Backscatter
data was recorded and will be used as a proxy for habitat, but was not available
at the time of site selection. Subsequent video drops were conducted in July,
2005 to validate backscatter data.

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Figure 1. Bathymetry of the Monhegan Island Lobster Conservation Area
(MILCA). The MILCA is located in the Mid-coast region of Maine, and is
the only area seasonally closed to the lobster fishery in the US.
Soundings were taken during a weeklong multi-beam survey on the F/V
Seldom Seen.

The impact of trap density on catch (September and October, 2005)
Eight 0.9 km2 experimental trapping areas were selected based on their
bathymetric characteristics, six areas were randomly selected for the trap density
experiment (Figure 2). Three levels of trap densities (50, 167 and 500 traps km2
) were assigned to these areas, with soak time standardized at 4-nights (96
hours). Fishermen were randomly assigned areas and the number of traps to be
Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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placed in each area. The remaining two experimental areas were assigned a
density of 167 km-2 to test the impact on catch with variable soak times described
below (Table 1 and Figure 2).
167

Random soak time (1-8 days)
167

500

50
50

167
500

167

Figure 2. Defined areas indicate the location and trap density tested for
the 2005 trapping experiment.
Table 1. The distribution of traps by industry participant for the 2005
manipulative trapping project.
Fisherman
Area
MW
1
44
2*
3*
4
16
5
30
6
40
7
66
8
20
* Random Soak

RB
90

SS
40

DM
90

LC
96

DB
90

MT
150
150

30

96
30

10
30
104
30

6
30
60
30

50
20
20

104
20

Density
500
167
167
50
50
167
500
167

Traps
450
150
150
46
46
150
450
150

Trapping experiments were conducted from August 30 (traps set) through
November 1, 2005 (traps removed). Traps in the six areas with a fixed 4-night
soak time were hauled 12 times.

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All traps were set as pairs. Each trap was a standard 4-foot, double parlor, wire
trap with a minimum of one escape vent for juvenile lobster. All traps were
hauled and rebaited on predetermined dates. If traps were missed (entangled,
lost buoy, gear loss) these were noted and replacement traps were added to the
area on the next hauling date.
The contents of each trap were counted for composition of the lobster catch
(legal, sublegal, V-notch, egg bearing and oversize). Crab counts were collected
after October 1, 2005 through the completion of the experiment. All lobster and
crab counts were immediately entered in to a Thistle Marine Electronic Logbook,
which subsequently attached a latitude longitude location and time stamp to each
entry. Legal lobsters were removed, banded and placed in on-board recirculating
tanks. At the end of the day all legal lobsters were released at a common drop
point within the MILCA (N 43o46.2” W 69o20.0”). At-sea observers were placed
on 20% of all trips (20 of 99) to record detailed biological information on lobsters
encountered.
Investigation of soak on catch (2005 and 2007)
Two experiments were conducted, in 2005 and 2007, to test the impact of soak
time on catch. In 2005, two 0.9 km2 areas were assigned a 167 trap km-2
density. In this case one fisherman (M. Thomson, F/V Pats Girl) was the only
industry participant (Table 1 and Figure 1). Soak time varied from one to eight
days and were randomly assigned throughout the experiment. The two areas
with random soak times were scheduled to be hauled 15 times. In this
experiment, legal lobsters were immediately returned to the water.
A second soak time experiment was conducted between August 15 and
September 15, 2007. For this experiment the entire MILCA was used as a test
area (Figure 1). In total, 360 traps were set as pairs. Half of the traps were
assigned random locations that remained fixed over the course of the
experiment, The second half of the traps were moved at the discretion of the
industry participants. The 90 fixed sites were evenly distributed between three
depth strata (0-30, 31-60, 60-90 m). These fixed sites were evenly distributed
between industry participants (Chioffi, Weber and Stanley). All traps were hauled
ten times on random dates, with soak times varying from one to six days. On
rare occasions some traps were hauled on as little as five hours soak. Each
industry participant had an independent hauling schedule to ensure soak times
were evenly assigned throughout the experiment and minimize the effect of
changing lobster availability.
Table 2. The hauling schedule for three industry participants was
determined by random draw of soak times from one to six days. Each
participants hauled fixed location traps and industry selected locations
each designated day. The experiment began August 15 and ended
September 15, 2007.

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Haul #
1
2
3
4
5
6
7
8
9
10

Chioffi
Stanley
Weber
Soak time (Days)
4
3
3
2
1
4
6
3
6
1
5
5
3
4
2
5
2
4
4
6
2
2
2
1
3
1
3
1
4
1

As each pair was hauled; location, depth and trap contents were recorded on a
paper log. The number of legal, sublegal and illegal lobster in each pair was
noted. Each lobster was “knuckle banded” and returned immediately to the
water. Any recaptures were noted and rebanded.
To determine the relationship between catch rate and soak time, individual haul
data was fit to the three parameter model described in Saila et. Al. (2002) where
the catch at time (Ct) is described as
Equation 1.0

Ct = ab + a(t − b)e − ct

Where Ct is the catch at time t, and a, b and c are parameters to be solved for.
The time when a trap reaches maximal catch, Tmax, can be resolved via the
equation
Equation 2.0

Tmax = 1 / c + b

And the maximal catch, Cmax, via
Equation 3.0

Cmax = ab + ac −1e − (1+cb )

The product of the parameters a and b is the asymptotic catch and parameters a
and c depend on local animal density and trap entry rates; however, c largely
reflects the probability of escape (Saila et al. 2002).
The model parameters were estimated by least squares minimization using MS
Excel Solver. In the case of the 2005 experiment, all traps (recorded as pairs but
reported as catch per trap) were used from both areas as the catch rates
between the two areas were not significantly different. For the 2007 experiment,
fixed location traps were compared to industry selected traps regardless of
depth.
Finally, the catch at time was compared to the state wide Lobster Port Sampling
Program results from 2000-2007, an intercept survey that randomly selects 10
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dealers each month and interviews harvesters that land their catch on the
selected day. Each interviewed harvester is asked a series of catch and effort
questions; including total pounds landed, traps hauled and average soak time. In
this case, model parameters were estimated using trip level data reported on a
per trap basis.
Tag and recapture experiment
All lobster encountered during the 2005 trap density experiment were batch
tagged with a daily, uniquely colored, “knuckle band”. In the six trapping areas
with constant soak time, legal lobsters were removed, banded and placed in onboard recirculating tanks. At the end of the day all legal lobsters were released
at a common drop point within the MILCA (N 43o46.2” W 69o20.0”). All sublegal
and illegal (V-notch, Egg bearing, Oversize) lobsters were “knuckle banded” and
immediately returned to the sea.
In the two trapping areas investigating the impact of variable soak times in 2005,
all lobsters were “knuckle banded” and immediately released after counts were
taken.
Recaptures were entered into the Thistle Marine Electronic Logbooks and
recorded by on-board observers for both experiments in 2005. Specific
information taken for each recaptured lobster included the original date of
capture and additional recaptures (derived from band color and quantity),
location, size, sex, and reproductive status.
For the 2007 experiment on soak time, all lobsters were “knuckle banded”
immediately and released after counts were recorded. For this experiment,
unique batch colors were not assigned as the hauling schedule varied randomly
between the three industry participants (Table 2). Recaptures were recorded
and an additional “knuckle band” was added. Recaptures were recorded as
sublegal, legal or illegal and were counted independently of other lobsters.

Independent monitoring of MILCA during experimental trapping
In an attempt to quantify lobster density in experimental trapping areas
throughout the 2005 experiment, video surveys were conducted on four dates,
September 2 and 30 and October 19 and 21, 2005, to determine relative
abundance of lobster and crab. Surveys were conducted by drifting with
prevailing winds and currents. Four transects were conducted in each area on
each day, with a planned minimum transect length of 100 m or approximately 15
minutes of video. The video camera was suspended off the sea floor bottom,
with an average viewing area of 1.0 m2. Four 150 watt halogen lights were
located at the base of the camera frame and were adjusted for lighting
conditions. A location and time stamp was over laid on the video feed to facilitate

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post processing. All video was recorded using a Sony Digital-8mm recorder and
a Sub Sea Video system. Fields notes were confirmed with lab based video
processing. Each transect location, start and stop times, errors in recording,
substrate and presence of crabs and/or lobster were noted.
Monitoring of the MILCA fishing seasons
The Monhegan Island Lobster Conservation Area (MILCA) is the only closed
season lobster fishery in the US lobster fishery and provides an opportunity to
compare the compounded impacts of depletion within a determined area.
Three initiatives were used to track the seasonal patterns of the MILCA fishing
season and annual catch from 2004 through June 2009. Prior to the 2005
trapping experiments, logbooks were distributed to participating MILCA
fishermen. Each participant was asked to record the daily catch and effort. The
season ran from December 1, 2004 through May 30, 2005. Specific elements
captured were catch, trap hauls, average soak time, depth fished and general
location on a daily basis.
In 2007, MILCA participants submitted a bill to the Maine Legislature to extend
their season from a December 1, start date to October 1 (Maine Public Law
Chapter 219).
As part of this law, the Maine DMR Commissioner “…shall
establish by rule a trap limit for the open season established… The trap limit
may not exceed 475 traps per individual..." (12 MRSA 6472). The subsequent
2007/2008 and 2008/2009 season trap limit was set at 300 traps per individual.
Two additional sources of information to monitor the MILCA season became
available as part of the law change. MILCA participants were asked to voluntarily
submit the prior three season total landings to use a baseline to evaluate the
season and trap change. Finally, each MILCA participant is now required to
complete daily trip reports similar to those described for the 2004/2005 season.
The average of the three seasons prior to the 2007 MILCA law change
(2004/2005, 2005/2006 and 2006/2007) were used to evaluate the median
percent change for the 2007/2008 and 2008/2009 seasons.
Data
All experimental catch, biological measurement and video surveys will be
available in raw or summarized format by request to Carl Wilson
([email protected] 207.633.9538). Harvester logbook records collected
prior to the 2005 trapping experiment and in subsequent seasons are considered
confidential information by the Maine Department of Marine Resources, and
therefore will only be available in summarized format. The multibeam data is
available on request and is currently referenced on the Gulf of Maine Mapping
Initiative website (http://www.gulfofmaine.org/gommi/coverage-map.php ).

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Results and Conclusions
The impact of trap density on catch (September and October, 2005)
During the experimental trapping period, 20,100 trap hauls were conducted with
approximately 72,000 lobsters counted, measured, banded and released. The
designated number of traps in each area were maintained during the course of
the experiment by adding traps as they were lost. The standardized 4-day soak
was maintained throughout the experiment with the exception of haul #10, when
high seas extended the soak time to 5-days.
Technical errors with the Thistle Marine Electronic Logbooks resulted in the
direct loss of 33% of the potential trap hauls information. Difficulties encountered
included box malfunction, data entry, modem upload, and database errors. In
the six areas where soak time was held constant and trap densities varied
between 50, 167 and 500 traps km-2 data remained representative as each
treatment had a minimum of two participating fishermen and information was
recorded for each haul. At sea observers provided detailed catch and effort
information on 5,038 trap hauls (25% of the total). In some cases at sea
observer data can be used on trips where the electronic logbook failed, lessoning
the impact of data losses.
Significant differences in catch rates were observed between all areas. During
the course of the experiment, catch rates in all areas significantly increased,
independent of the trap density (p<0.001). High density areas (500 traps km-2)
always had a lower catch rate than medium (167 traps km-2) or low (50 traps km2
) density areas. In aggregate, medium and low density areas had 2-4 times
higher catch rate than high density areas. There was one medium density
(Figure 3, Area 6M) where catch rates equaled or exceeded low density catch
rates.
Increases in catch rates over the duration of the experiment in all areas may
indicate a regional scale (10-20 km) increase in lobster availability. We did not
observe localized depletion even as legal lobsters were removed from the study
areas on every haul.

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16.0

Catch per Pair (+-se)

14.0
12.0

1(H)
4(L)

10.0

5(L)

8.0

6(M)

6.0

7(H)
8(M)

4.0
2.0
0.0
1

2

3

4

5

6

7

8

9

10

11

12

Haul Number

Figure 3. Catch per pair of legal lobster in high (500 traps km-2), medium
(167 traps km-2) and low (50 traps km-2) density areas. The experiment
began August 30, and ended October 18, 2006. Hauls were on four night
soaks except Haul 10 when weather delayed hauling.
There were significant differences between all areas and trap density treatment,
however these impacts were local (10-100 m) and were overwhelmed by the
regional (10-20 km) changes in lobster availability. The distribution of the legal
catch varied within each trapping area. In areas with trap densities of 500 traps
km-2 the highest legal catch was observed on the edges of the areas. Catch
rates often declined within 50 meters of the edge and remained consistent to the
center of the area. Traps in the center of high density areas had consistently
lower catch rates, the largest incidence of zero catches and were likely
influenced by competition from nearby traps.
In low and medium density areas (50 and 167 traps km-2) catch rates were
largely uniform throughout the areas. The incidence of trap hauls that recorded
zero legal lobsters were rare and catch rates did not decline from the edge to the
center of the area. We infer that trap competition was lower between adjacent
traps in these areas. In one area (167 traps km-2) directly to the southwest of
Monhegan Island, catch rates were consistently high in the northeast corner, or
the area closest to the Island. It is speculated that this corner represented a
corridor for lobsters moving from shallow waters near the island to deeper waters
(Figures 4 and 5).

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167*
500

167*

50

50
167
167

500

Figure 4. Trap haul location and catch in eight experimental trapping
areas. Trap densities of high (500 traps km-2), medium (167 traps km-2)
and low (50 traps km-2) were maintained for the duration of the
experiment. A total of 20,100 traps were hauled during the experiment.
Legal catch per pair is reflected as a color gradient from white (zero) to
red (11-34). * Indicates areas where random soak time was applied.

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50
167
500
Figure 5. Trap haul locations in three experimental trapping areas. Trap
densities of High (500 traps km-2), Medium (167 traps km-2) and Low (50
traps km-2) were maintained during the experiment. Legal catch per trap
is represented with red (+) as zero and increasing bubble size to a
maximum size representing 9-34 lobster.
When the average cumulative effect of the number of trap hauls and catch is
compared between low, medium and high density areas, the medium density
areas caught 16% less than the high density areas despite the fact that high
density areas had three times more traps. Low density areas had the highest per
trap average, but were unable to compensate for the loss in total catch with
constant soak times of 4-nights (Figure 3, Figure 6).

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7,000
Catch (+se)
6,000

Trap Hauls

Number

5,000
4,000
3,000
2,000
1,000
Low

Med

High

Density

Figure 6. The average legal catch and trap hauls for low, medium and
high density areas (50, 167 and 500 trap km-2) with soak time held
constant at 4-nights.
Error bars indicate standard error between
cumulative catch between areas.
The impact of soak time on catch
In the two areas designed to test the impact of variable soak time on catch in
2005, a total of 2,564 trap hauls were recorded. In these traps 11,411 lobsters
and 3,493 crabs were counted. Legal lobsters were the most prevalent (n=
5,824) followed by sublegal lobster (n= 4,800) and finally illegal lobster (n= 787).
The most significant loss due to electronic logbook error was encountered in the
two areas where soak time was varied randomly, 33% of the potential day/area
combinations (10 out of a possible 30) were lost completely. Poor sea conditions
and a scarcity of available crew limited this portion of the experiment to days
when the larger six area trapping experiments were not hauling and inadvertently
increased the maximum planned soak times from six to eight days (Table 3).
Table 3. Haul dates, associated soak times and trap hauls recorded for
the 2005 experiment on the impact of soak time in two experimental areas
with a density of 167 traps km-2. Electronic logbook errors resulted in the
loss of all records in Area 3, and greatly reduced the number recorded in
Area 2 after 9/30/2005.

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Haul
1
2
3
4
5
6
7
8
9
10
11
12

Date
9/3/2005
9/9/2005
9/11/2005
9/15/2005
9/19/2005
9/20/2005
9/24/2005
9/30/2005
10/19/2005
10/21/2005
10/29/2005
10/31/2005

SOAK
4
6
2
4
4
1
4
6
8
2
8
2

Area 2
144
144
148
138
146
146
144
126
50
54
138
76

Area 3
128
144
136
142
146
140
134
140

As with the other medium and low density areas, the catch was largely uniform
from the edge of each trapping area to the center, indicating minimal competition
between traps (Figure 4). Additionally the experimental areas where soak was
held constant, a pattern of increasing catch rates from the start of the experiment
was observed similar to those areas where soak was held constant (Figures 3
and 7).

6.0
Area 2

Catch per Trap Haul

5.0

Area 3

4.0
3.0
2.0
1.0
0.0
1

2

3

4

5

6

7

8

9

10

11

12

Haul Num ber

Figure 7. Catch per trap haul of legal lobsters in two 0.9 km2 areas in
2005 with soak times between 1 and 8 days (Table 3). The trapping
experiment began on August 30 and concluded on November 30. Errors
uploading catch data from Area 3 resulted in this information being lost
after the eighth haul.

Catch rates between the two soak experimental areas were not significantly
different (P > 0.05); therefore, all trap hauls were combined to determine the

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relationship between catch and soak (Figure 8).
A non-linear asymptotic
relationship was fit to the individual haul data as described by equation 1.0. The
maximum catch per trap was estimated to be 5.2 legal lobsters per trap, a
number exceeded by less than 9% of all trap hauls recorded. The calculated
maximum soak time was 35.2 days, nearly four times the tested maximum soak
(Table 4). The estimated catch was 1.3 legal lobster per trap at two days, and
2.2 at four days. This non-linear relationship results suggest that soak times in
medium density areas (and by inference low density) could be reduced to
increase the frequency of trap hauls and to compensate for the lower number of
traps in these areas when compared to high trap density areas.

16
Catch per Trap (Legals)

14
12
10
8
6
4
2
0
0.0

1.0

2.0

3.0

4.0

5.0

6.0

7.0

8.0

Soak (days)
Model results

2005 Traps Medium Density

Figure 8 Combined haul data (n=2,564 trap hauls) for the two medium
density areas used to test the impact of soak time on catch in September
and October 2005.
Model results follow least square estimations
described in Equation 1.0.
In 2007, the trapping experiment encompassing the entire MILCA to test the
impact of soak time on catch recorded a total of 3,474 trap hauls that caught
14,112 legal, 6,194 sublegal, 2,014 illegal and 5,066 crab. A total of 5,679
lobsters were recaptured, and will be discussed below. Industry selected sites
accounted for 51% of trap hauls but 65% of the lobsters.
In general industry participants did not change the location of traps after the first
haul. Industry traps tended to concentrate in depths less than 40 m with the
highest catch rates (Figures 9 and 10).

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Figure 9. The location of fixed (black “+”) and industry selected sites (red
“o”) for the 2007 experiment to investigate the impact of catch rates on
soak. Each location represents one pair of traps. The experiment ran from
August 15 through September 15, 2007. Industry participants could
change the location traps if desired.

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Figure 10. The catch rate of legal lobsters for fixed and industry selected
stations for the 2007 experiment to investigate the impact of catch rates
on soak. The experiment ran from August 15 through September 15,
2007.
Unlike the 2005 study, we did not observed a difference of catch rates over the
course of the 2007 experiment regardless of soak time and depth (Figure 11).
The majority of lobsters caught had molted for the season. We speculate that
lobsters are less migratory in August/September than in September/October.
The catch rates did decline with respect to depth for fixed and industry selected
stations (Figure 12).

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30

Legal Catch per Trap

25
20
15
10
5
0
8/11

8/16

8/21

8/26

8/31

9/5

9/10

9/15

9/20

Date (2007)

Figure 11. Legal catch per trap for fixed locations (+) and industry
selected locations (O) from August 15 through September 15, 2007. A
total of 3,474 trap hauls that caught 14,112 legal lobsters.

30
Industry Selected
y = -0.1077x + 7.4155
2
R = 0.0546

Catch per trap

25
20

Fixed Locations
y = -0.0913x + 5.2227
2
R = 0.1748

15
10
5
0
0

10

20

30

40

50

60

Depth (fa)

Figure 12. Legal catch per trap for fixed locations (+) and industry
selected locations (O) by depth (fathoms) from August 15 through
September 15, 2007. Linear regression fit applied independently to
industry (solid blue line) and fixed sites (solid black line).
When model parameters are estimated to determine the relationship between
soak and catch, following Equations 1.0, 2.0 and 3.0, differences between fixed
and industry selected locations are evident. The estimated maximum catch for
fixed traps was 3.4 legals per trap and 40% more for industry selected sites at
6.5 legals per trap. The estimated maximum soak time was 9.7 days for fixed
locations and 16% more at 22.1 days for industry selected locations. As was
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estimated for the 2005 experiment, the maximum soak time exceeded the
maximum of 6 days tested. Approximately 23% of trap hauls exceeded the
estimated maximum catch for fixed stations and 30% for industry selected sites.
Finally, when parameters are estimated for the relationship between soak and
catch based on the 2000-2007 Lobster Port Sampling Program (LPS), the
maximum catch and the maximum soak was 40 to 85% lower than was observed
in the 2005 or 2007 experiments (Table 4). The variability in the maximum soak
and maximum catch may indicate that trap capacity had not been reached. If
longer soak times, in excess of 10-14 days, had been tested, the escape
parameter, c, may have been estimated with more certainty.
The non-linear relationship between soak and catch for all scenarios tested
above indicates that there is efficiency to be gained, by decreasing soak and
competition between traps, that would offset reductions in catch by reducing
traps (Figure 13 A). It is important to note that the current Maine lobster fishery,
largely regarded as a intensively trapped fishery, with an average catch of 1.4 at
the average soak time of 5.2 days could increase by 4.2 times to achieve the
catch rates observed in the 2007 industry selected sites (Table 5).
The asymptotic relationship expressed by Equation 1.0 allows an interpretation of
the maximum catch at a maximum soak time and an interpretation of catch per
trap per day. For all scenarios tested in Table 4, there is an inverse relationship
for maximum catch per trap per day with soak. The maximum catch per trap per
day is observed after one day of soak for all scenarios, followed by values
declining rapidly until approximately six nights. The disparity between the
average soak of 5.2 days measured by the LPS and the maximum catch per trap
per day for all tested scenarios suggests the current lobster fishery is fishing 80%
below maximum efficiency with regards to soak time (Figure 13 B).
Table 4. Estimated model results and parameters to determine the
relationship between catch and soak from Saila et al. (2002). Model
results for the 2005 and 2007 Monhegan trapping experiments are based
on trap haul data. Results for the 2000-2007 Lobster Port Sampling
program are based on daily trip results. Parameters were estimated using
least square methods with MS Excel Solver.
Survey
Initial values
2005 Medium Density*
2007 Fixed Stations*
2007 Industry Selected Stations*
2000-2007 Port Sampling**
* pairs ** interviews

Number
1,282
888
925
3,915

Max
Catch per Trap
5.2
3.4
6.5
1.4

Max
Soak
35.2
9.7
22.1
5.6

a

Model parameters
b
c
2.9
-0.62
0.16
0.21
25.12
0.1
0.46
7.33
0.42
0.32
20.45
0.59
0.52
1.81
0.27

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A.

7

Catch per Trap (Legals)

6
5
4
3
2
1
0
0

2

4

6

8

10

12

Soak (days)
2005 Medium Density
(n=1282 pairs)

14

B.

4
Catch per Trap per Day (Legals)

2007 Fixed Stations (n=888 pairs)
3.5

2007 Industry Selected Stations (n=925 pairs)

3

2000-07 Port Sampling (n= 3915 interviews)

2.5
2
1.5
1
0.5
0
0

2

4

6

8

10

12

14

Soak (days)
2005 Medium Density (n=1282 pairs)
2007 Fixed Stations (n=888 pairs)
2007 Industry Selected Stations (n=925 pairs)
2000-07 Port Sampling (n= 3915 interviews)

Figure 13. The relationship between soak time and catch (A) for the 2005
and 2007 experiments and the 2000-2007 Lobster Port Sampling Program
following Equation 1.0. The projected catch per trap per day (B) for each
scenario tested.

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Table 5. Model fit catch per trap at five nights soak, from Equation 1, for
the 2005 and 2007 soak time experiments and the 2000-2007 Lobster
Port Sampling Program.
Survey
2005 Medium Density*
2007 Fixed Stations*
2007 Industry Selected Stations*
2000-2007 Port Sampling**
* pairs ** interviews

Catch per Trap Catch per Trap
at five nights
per day
6.2
1.24
3.3
0.66
2.6
0.52
1.4
0.28

Tag and recapture results
Of the estimated 72,000 lobsters captured and tagged in the 2005 trapping
experiments, less than 15% were recaptured in subsequent hauls. In areas
where legal lobsters were removed after each haul, on average recapture rates
were consistently less than 10%. In the two areas (medium density and random
soak times) where legal lobsters were tagged and returned to the same area a
greater, yet still low, percentage of 10-15% were recaptured on the next haul
(Figure 14).
When recaptures are interpreted as a function of days at large in areas with fixed
4-night soak times, we find that less than 5% of lobsters were recaptured after
twelve days (3 hauls) (Figure 15). Even in the two areas where soak time was
varied randomly, legals were returned to the same area, and initial recapture
rates were the highest, less than 5% returns were observed after three
subsequent hauls (Figure 16). These results suggest that movement into and
out of each experimental area was an important factor in this experiment as a
complete overturn in each area likely occurred on a continual two-week basis.
The observations that recapture rates decline significantly after initial capture and
were consistent among trap density treatments violates assumptions of a closed
population needed for tag based estimates of population structure and fishing
removals.
There were distinct biological differences in the make up of recaptures from
areas where legal lobsters were removed and in areas where legals were
returned immediately to the same area. In the six trapping areas where legal
lobster were removed, a total of 3,575 were recaptured one or more times.
Nearly 70% of recaptures in these were female (n = 2,526), suggesting females
were 2.5 times more likely to be recaptured than males in these areas. Of the
total recaptures in the fixed soak time areas, 32% were “legal”, indicating
movements of legal lobsters from the common drop off location or from random
soak areas back through trapping areas (Figure 17 A).
In the two areas where legal lobsters were immediately returned to the same
trapping areas 2,326 lobsters were recaptured. Of these, only 49% of the

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recaptures were females, indicating males were just as likely to be recaptured as
females in these areas. Additionally, 72% of the returns were “legal” in size and
disposition (Figure 17 B). Although the increases in catch rates in all areas over
the course of the experiment and low recapture rates have suggested no
depletion in the experimental areas, the differences in the biological composition
of the catch suggest that removing legals from the trapping areas did have an
impact at some level.

30%

Percent Recapture

25%
20%
15%
10%
5%
0%
Low

Low

Med

Med

Med(S)

Med(S)

High

High

Area (density)

Figure 14. The average percentage recaptures after one haul for the eight
experimental trapping areas. The areas in dark blue indicate treatments
where legal lobsters were removed from the study areas. Light blue
(Medium density, random soak times), indicates treatments where legal
lobsters were returned to the study areas. Error bars are the standard
deviation of the percentage of first day recaptures by area.

50%
All areas
40%

High density
Med density

Percent Recapture

Low density
30%

20%

10%

0%
0

4

8

12

16

20

24

28

32

36

40

44

-10%
Days at large

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Figure 15. Average percentage of recaptures as a function of days at
large and trap density in areas where soak time was standardized to 4nights.
0.5
0.45

Percent Recapture

0.4
0.35
0.3
0.25
0.2
0.15
0.1
0.05
0
0

1

2

3

4

5

6

7

8

9

10

11

12

13

15

Hauls since Initial Capture

Figure 16. Average percentage of recaptures as a function of hauls since
initial capture in areas where soak time was randomly selected between
one and eight nights.

A. Legal lobsters removed from areas

B. Legal lobsters returned to areas

1400

1600

Females with Notch and Eggs

1200

Females with Eggs

800

Males

600
400

Females with Eggs

1200
Count

Count

Females No Notch or Eggs

Females with Notch and Eggs

1400

32%
“legal” returns

Females with Notch

1000

Females with Notch

72%
“legal” returns

Females No Notch or Eggs

1000

Males

800
600
400

200

200

0
4

5

6

7

8

9
Size

10

11

12

13

0
4

5

6

7

8

9

10

11

12

13

Size

Figure 17. Size composition and biological makeup of recaptured lobster
in (A) areas where legal lobsters were removed and (B) areas where legal
lobsters were immediately returned. Red line indicated the break between
sublegal and legal size.
In contrast to the 2005 trap density experiment, the 2007 trap study did see
compounding impacts of trapping on the incidence of recaptures. Over the
course of the experiment covering 30 days and spanning five weeks, the
proportion of legal recaptures increased from 10-15% after the first week, to 2535% in the final week of the experiment (Figure 18). Industry selected traps
tended to be clustered in string of pairs which may have resulted in a consistently
higher proportion of legal recaptures than the fixed stations which were relatively
isolated. Regardless of industry selected stations or fixed stations, a higher
proportion of legal recaptures were observed than was recorded in the 2005
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experimental trapping areas. This disparity may be a reflection of water depth
and timing of the experiment. The 2005 trapping had medium depth of 55 m
while the 2007 experiment was 40 m. The 2007 experiment was conducted in
August/September while the 2005 experiment covered October/November.

0.40

Recap Legals of Total Legals

0.35
0.30

Recap / Total
15 Aug - 15 Sep 2007
n = 14,112 legals
n = 4,909 legal recaps

0.25
0.20
0.15
0.10
0.05
0.00
33

34

35

36

37

Week

All traps

Fixed Stations

Industry Selected

Figure 18. The proportion of legal recaptures to the total legal lobsters
caught by week in the 2007 experiment. The experiment began on
August 15, and concluded September 15, 2007. Lobsters were “knucklebanded” and immediately returned to the water in the same location.
Monitoring the MILCA fishery
The 2004/2005 MILCA fishing season ran for 180 consecutive days from
December 1, 2004 through May 30, 2005. Each of the 12 MILCA participants
was licensed to fish 600 traps. Four MILCA participants (or 4 of 7 listed as
participants on this project) completed daily trip reports.
At the beginning of the season the average soak time was three days with
participants averaging 3.75 pounds per trap haul. Within six weeks the average
soak time had increased to seven days and catch rates had dropped to less than
2.5 pounds per trap (Figure 19). The first month of the MILCA is very important,
50% of the annual catch is caught within the first three weeks of the season
(Figure 20). The rapid decline in catch rates and increases in soak time are
thought to be a result of the cumulative impact of the removal of legal lobster,

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lobster movement out of MILCA waters and a decrease in water temperatures
lowering the propensity of lobster to enter traps.

25
Lbs/trap

4.5

Pounds per trap per soak

4

20

Soak time

3.5
3

15

2.5
2

10

1.5
1

5

Average Soak Time (days)

Lbs per trap or Lbs per trap per day

5

0.5

26

24

22

20

18

16

14

9

7

5

3

12

0

1

0

Week Number

Figure 19. Average pounds per trap haul, pounds per trap per day soak
and soak observed during the 2004/05 MILCA season. The season
started December 1, 2004 (week 1) and ended May 30, 2005 (week 26).
100

30

90
80

20

Percent of catch

70

Cumulative
Percent

60
50

15

40
10

30

Cumulative percent of catch

Percent of total catch

25

20

5

10
0

0
1

3

5

7

9

12

14

16

18

20

22

24

26

Season week

Figure 20. The percent catch and cumulative percent of the annual catch
by week during the 2004/05 MILCA season. The season started
December 1, 2004 (week 1) and ended May 30, 2005 (week 26).
Following the 2006/2007 season MILCA participants successfully facilitated a
legislative change to expand their season from 180 to a maximum of 240 days.
In doing so they accepted a lower trap limit, not to exceed 475, but set by the
MEDMR Commissioner. In letters to the MEDMR from MILCA participants, it

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was generally understood that MILCA goals were to increase their profits by 25%
relative to the previous three seasons. The 2007/2008 season was set with a
start date of October 1, 2007 and closing June 7, 2008 with a trap limit of 300
traps. The dates and trap numbers for the 2008/2009 season remained at these
levels.
A direct result of the 2007 law change was that fewer traps were hauled more
often for a longer period of time that resulted in a higher catch. Relative to the
average of the three seasons prior to the 2007 law change, the catch of MILCA
participants who submitted information (n=7) increased by a median of 72 and
67% for the 2007/2008 and 2008/2009 season (Figure 21). When total annual
trap hauls, a gross measure of effort, is compared before and after the 2007 law
change (n= 4 participants), there was an 18% increase in trap hauls for the
2007/2008 season and a 18% decrease for the 2008/2009 season as compared
to the 2004/2005 season (Figure 22).
The success of the two seasons following the change to the MILCA season and
subsequent 50% reduction of the maximum trap limit should not be considered a
“real-world” application of reducing traps in the lobster fishery. While the
reduction in traps was significant, the opportunity to expand the MILCA to
previously un-fished months far exceeded the loss of traps. The overall trap
density within MILCA is less than 100 traps km-2. At this density traps are likely
competing with each other when set nearby, but are not saturating the MILCA
waters with traps relative to the rest of the Coast of Maine. There are no other
areas along the Coast of Maine that are seasonally closed; therefore, an
expectation of increasing total catch as a result of a trap reduction, as was seen
within the MILCA, are unlikely.

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% Difference from baseline seasons

80%
70%
60%
50%
40%
30%
20%
10%
0%
-10%
-20%
-30%
Median %

2004/2005

2005/2006

2006/2007

2007/2008

2008/2009

11%

2%

-16%

72%

67%

Season

Figure 21. The median percentage difference of each seasons’ landings
relative to the average of 2004/2005, 2005/2006 and 2006/2007 landings.
Values for the 2007/2008 and 2008/2008 seasons (shaded gray) follow
the change in MILCA law that extended the season by two months and
reduced the maximum number of traps fished from 600 to 300.

Median total trap hauls

14,000
12,000
10,000
8,000
6,000
4,000
2,000
2004/2005

2007/2008

2008/2009

Season

Figure 22. Median total trap hauls for four MILCA participants spanning
the 2004/2005, 2007/2008 and 2008/2009 seasons. Values for the
2007/2008 and 2008/2008 seasons follow the change in MILCA law that

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extended the season by two months and reduced the maximum number of
traps fished from 600 to 300.
Independent monitoring of MILCA during experimental trapping
A total of 128 video transect were conducted over four days and among the eight
experimental areas on the F/V Pandora. The average transect length was 130 m
with a minimum of 70 m and a maximum of 240 m (Figure 23). A total of 16,582
m2 were surveyed, with 298 lobster and 1,299 crabs observed. Lobster densities
on the bottom increased over the course of the experiment (Figure 24). The
average density of lobster was 0.02 m-2, with a low of 0.006 m-2on September 2,
and a high observed on October 19 (of 0.026 m-2).
The consistent increase in lobster density over the course of the experiment
substantiates the regional pattern of increased catch rates observed.

Number of Transects

25

20

15

10

5

25
0

23
0

21
0

19
0

17
0

15
0

13
0

11
0

90

70

50

0

Transect Length (m)

Figure 23. The number (n = 128) and length (mean = 130 m) of video
transects conducted before during and after the trapping experiments.

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Number per m -2

0.040

High

0.035

Med
Low

0.030

Med-soak
0.025
0.020
0.015
0.010
0.005

10
/2
7

10
/2
0

10
/1
3

10
/6

9/
29

9/
22

9/
15

9/
8

9/
1

0.000

Date

Figure 24. The average lobster density (number per m-2) in four
experimental treatments conducted during September 2 and 30 and
October, 19 and 21, 2005.
Partnerships
This project could not have been completed with out direct industry involvement
in all aspects of the project. As the project was designed to “simulate” fishing,
there was a natural fit of collaboration with 7 of 12 fishermen licensed to fish in
MILCA waters. In total over 25 members of the commercial industry directly
participated in this project.
Impacts and Applications
This project has broad impacts for trap fisheries in the US and Canada.
Understanding how traps catch lobster helps to make informed decisions when
changes in traps are proposed or interpreting results of previous trap
reductions/changes. In general terms, understanding that reductions in traps (in
this case trap density), can be partially or fully compensated by decreasing
average soak time is an important component to any decision. These results
present a double edge sword to proponents and opponents of trap reductions.
Catch rate increased with decreasing trap density. However, total catch and
therefore fishing mortality are likely not impacted until traps are reduced to the
point where increases in catch rates and decreases in soak times can not make
up for the loss in total catch.
This project has identified that individual trap catch rates are influenced by
surrounding traps in the area. Across the scale of trap densities tested in this
experiment, somewhere between 167 and 500 traps km-2, there is a transition
from saturating an area with traps and saturating individual traps. This tipping
point is an important level to know, and could in part be investigated by

Wilson, Monhegan Trapping Experiments, NEC Award 05-949

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conducting additional controlled trapping experiments, where lobster competition
in and around traps could be monitored through video.
The MILCA is the only seasonally closed area for lobster fishing in the US.
Experimental areas for the 2005 experiment were isolated “islands” of traps,
surrounded by unfished areas. It is unknown if the baited traps in these islands
may have attracted lobster from surrounding unfished areas and influenced the
catch rates. The 2007 trapping experiment to test the impact of soak time was
conducted in the entire MILCA, with traps having little to no competition among
traps. Regardless of the experiment in MILCA water’s, we have demonstrated
that traps at known densities or in relative isolation can have a cumulative
biological and fishery impact on the local lobster resource even when 70% or
more or captured lobsters were never recovered.
Future trap density experiments should be conducted in defined areas, in regions
where there is active fishing. We observed significant differences in catch
between high density and low density areas at times when lobster density was
low and high. Based on the 2005 trap density experiments, it is reasonable to
assume if trap densities could be reduced in actively fished areas, then catch
rates should increase and compensate for any reduction.
Testing the cumulative impacts of the lobster fishery on the resource may be
difficult to do by manipulating defined areas (km) as we have demonstrated that
lobsters are unlikely to be caught in the same area in as little as two weeks.
Fixed areas would not adequately capture the natural movements of lobsters and
the fishery that pursues them. A more appropriate test would be to manipulate
trap numbers at a scale that would reasonably capture regional movement of
lobsters in one year (10s km).
Finally, the trapping experiments were conducted at an opportunistic time for
MILCA participants. The 2005 experiment followed the first of three consecutive
years with declining catch. In meetings prior to submission and funding of this
project, some MILCA participants expressed skepticism to the availability of
lobsters in MILCA waters outside of their fishing season and to the risks
associated with reducing traps. However; the 2005 experiment, regardless of
trap density treatment, demonstrated an increase in lobster availability in the
early Fall within the MILCA waters. It is this knowledge that may have reduced
some of the uncertainties and risk MILCA participants undertook by expanding
their season in 2007 while reducing the maximum trap limit from 600 to 300. In
the two seasons following the 2007 legislative change, total catch has increased
dramatically, but a significantly lowered boat price and increases in the cost of
bait and fuel have dampened the success of the season/trap change. At the
writing of this report it is clear that the perceived success of the MILCA is more
closely linked to the financial success of participants and the Monhegan Island
community then to the undefined standards of exclusive fishing rights in a state
sanctioned Lobster Conservation Area.

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Presentations
This project has been presented to many different groups and audiences. A
partial list is as follows:
February 2006
Monhegan Island Fisherman, Monhegan Maine
Commissioner of Marine Resources, Hallowell Maine
Zone D, Rockland Maine
March 2006
Phippsburg Public Library, Phippsburg, Maine
Wiscassett Public Library, Wiscassett, Maine
Zone D, Rockland, Maine
Cutler Fishermen, Cutler, Maine
April 2006
Swans Island Fishermen, Swans Island, Maine
Isle Au Haut Fishermen Co-op, Isle Au Haut, Maine
Maine Sea Grant Review, Orono, Maine
Lobster Advisory Council, Augusta, Maine
University of New Hampshire, Durham, NH
May 2006
Irish Lobster Fishery Conference, Gallway, Ireland
Lobster Conservation Mangement Team, Portsmouth, NH
Lobster Advisory Council, Augusta, ME
September 2006
Maine Offshore Lobstermen Association, Brunswick, ME
Downeast Lobsterman Association, Ellsworth, ME
Chewonki Foundation, Boothbay Harbor, ME
Commissioner of Marine Resources, Hallowell Maine
November 2006
Lobster Advisory Council, Augusta, ME
February 2007
Fishermen and Scientist Research Society, Truro, NS
Zone C, Bucksport, ME
Zone E, Wiscassett, ME
Zone F, Cape Porpoise, ME
March 2007
Outward Bound Science Educators, Portland, ME
GMRI Fish Tank, Portland, ME
April 2007
Zone B, Bar Harbor, ME
Zone D, Rockland, ME
August 2007
Gulf of Maine Research Foundation, Damariscotta, ME
September 2007

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8th International Conference on Lobster Biology and Management,
Charletown, PEI
February 2008
University of Southern Maine, Portland, ME
March 2008
Maine Fishermans Forum, Rockland ME
April, June and July 2008
Tenants Harbor Fishermen, St. George, ME.
Published reports and papers

This project has not been submitted for peer review. However, extensive
coverage of the preliminary results were published in the Fisherman Voice
(March 2006) and featured in the NEC contribution to the Commercial Fisheries
News (May 2006).
Images
All images are available on request in full resolution. Maine Department of
Marine Resources should be credit for all photos, unless otherwise specified.

A

B

C

D

Figure 25. (A) Captain Mathew Thomson, F/V Pats Girl. (B) Lobster
tagged and re-caught three times during the 2005 soak time experiment.
(C) F/V Seldom Seen and (D) F/V Kathleen.

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A

B

C

D

Figure 26. (A) Entering trap haul information on Thistle Marine Electronic
Logbook. (B) Monhegan Island from air. (C) A lobster that was recaught
three times during the 2005 soak time experiment. (D) View of Monhegan
Harbor from Fish Beach.

A

B

C

D

Figure 27. (A) The Monhegan Island fish house, location of project
meetings. (B) F/V Pandora. (C) Jessica Stevens, primary sea sampler for
the 2005 experiments. (D) F/V Pandora loading traps on trap day,
December 2005.
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A

B

C

D

Figure 28. (A) Captain Robert Bracy, F/V Pandora. (B) F/V Pats Girl, (C)
Captain Dan Murdock, F/V Sylvia Anne and (D) Captain David Boegel and
crew Rusty Spear, F/V Kathleen.

A

B

C

D

Figure 29. (A) Drop camera system onboard the F/V Pandora. (B) Captain
Sherm Stanley and Matt Schweier, F/V Legacy. (C) Kohl Lord coiling rope
at the conclusion of the 2005 trapping experiment. (D) F/V Sylvia Ann
taking up traps.

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A

B

C

D

Figure 30. (A) F/V Fenris, (B) F/V Sylvia Anne, and (C) M. Schweier and
S. Stanley unloading traps. (D) Traps on the Monhegan wharf at the
conclusion of the 2005 trap density experiments.

A

B

C

D

Figure 31. (A) Monhegan Harbor. (B) Angela Iannicelli and Matt Weber
rowing to F/V Seldom Seen. (C) Captain Matt Weber, F/V Seldom Seen,
with a standard 4-foot trap hauled in a medium density area. (D) F/V
Sylvia Anne in the distance.

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A

B

C

Figure 32. (A) Dr. Tom Weber, UPENN now at UNH, during the April 2005
multibeam survey. (B) Multibeam display on board the F/V Seldom Seen.
(C) F/V Seldom seen, leaving Monhegan Harbor while conducting the
multibeam survey. Monhegan Boat Line ferry, M/V Laura B, in the
distance.

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A

C

B

D

Figure 33. (A) S. Stanley and K. Lord haul typical trap from industry
selected sites for the 2007 experiment on soak time. (B) M. Weber and
Chris Smith hauling a pair, while Jeni Menendez, DMR sea sampler,
records and measures lobsters. (C) Lucas Chioffi, captain F/V Fenris
recovers a pair of traps while Carl Wilson, DMR, records and measures
lobsters.
A
B

C

D

Figure 34. Lucas Chioffi rebaits a trap, with lobsters and the 2007 logbook
in the foreground. (B) An exceptional catch. (C) S. Stanley prepares to set
traps using experimental low profile whale line. (D) F/V Legacy.

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A

C

B

D

Figure 36. (A) L. Chioffi and M. Weber haul and rebait traps while J.
Menendez records and measures lobsters aboard the F/V Fenris. (B) K.
Lord sets a trap. (C) S. Stanley, K. Lord and Tasmanian Rock Lobster
fisherman, Neville Perryman recover a pair of trap. (D) F/V Seldom seen
having just set a pair of traps in Monhegan Harbor.

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Future research
The MILCA offers a unique opportunity to conduct controlled experiments on
lobster in a trap free environment. The basic findings of this project that relate to
trap density, soak time and recapture rates have broad implications for the Maine
lobster fishery and lobster biology. However; caution should be used if specific
results are applied to other areas of the Coast of Maine. The preliminary results
of the trap density studies have been presented to various industry councils and
to public audiences. The potential application of experimental results to areas
outside the MILCA is the largest criticism received and presents the strongest
case for future research.
The Maine DMR was approached, by fishermen in Tenants Harbor, Maine, to
conduct a trap density experiment in their fishing area. Tenants Harbor is a
heavily fished area, approximately 30 km from Monhegan Island. Nearly 90
licensed fishermen, fish up to a maximum of 800 traps, in an area the size of the
MILCA. Fishermen report that trap densities in excess of 2,000 traps km-2 are
not uncommon during summer months when fishermen shift traps to inshore
waters to catch newly molted lobsters.
In August 2009, a two week experiment was conducted in two ½ nm2
experimental areas near Tenants Harbor. The objective of this study was to
document the impact of removing 50% of the traps. Aerial over flights prior to the
start of the experiment recorded nearly 3,000 buoys in the experimental areas,
and on the water observations suggested as many 40 fishermen fished there.
Fishermen were asked to remove traps on a voluntary basis and were
compensated to do so. Preliminary results suggest that an insufficient number of
traps were moved to test the impacts of reduced trap density. However; the
challenges of conducting controlled experiments in an open fishing area were
revealed and can serve to guide additional studies.

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1

March 1, 2021
Dr. Paul Doremus
Acting Assistant Administrator for NOAA Fisheries
National Marine Fisheries Service
1315 East-West Highway
Silver Spring, MD 20910
Re: Comment on Proposed Risk Reduction Rule to Modify the Atlantic Large Whale Take
Reduction Plan
Dear Dr. Doremus,
Thank you for the opportunity to provide comments on behalf of the International Fund for Animal
Welfare (IFAW) on the proposed risk reduction rule entitled “Taking of Marine Mammals Incidental
to Commercial Fishing Operations; Atlantic Large Whale Take Reduction Plan Regulations;
Atlantic Coastal Fisheries Cooperative Management Act Provisions; American Lobster Fishery”.
We write as a veterinarian and biologists-- active members of the right whale research and
conservation community – who lead necropsies on dead right whales, assist with Unusual
Mortality Event documentation, and serve on the Take Reduction Team and the Board of the
North Atlantic Right Whale Consortium (NARWC). We believe this rule as proposed will fail to
reduce incidental mortality and serious injury to the North Atlantic right whale caused by
entanglement in fishing gear to or below the federally mandated limit.
The modifications currently proposed in this rule were based on discussions held at the April 2019
TRT meeting with the goal of achieving at least a 64 percent risk reduction in mortalities and
serious injuries. In the two years since this goal was originally discussed, there have been 21
additional documented right whale serious injuries and mortalities. 1 This egregious exceedance
of “allowable takes,” which are fewer than one NARW per year is a clear indicator that the
population is in free fall and the previously agreed upon goals will not be sufficient to prevent
extinction. Additional risk reduction measures must be enacted in order to preserve this species
and ensure NOAA’s compliance with both the Marine Mammal Protection Act (MMPA) and the
Endangered Species Act (ESA).
Considering the vast complexities of formulating a new suite of risk reduction measures, we
acknowledge NOAA Fisheries’ dedicated efforts to this process. However, current proposals do
not incorporate the best available science regarding current population status, which is estimated
at 356 individuals and fewer than 90 breeding females. Right whales are one of the most
endangered marine species in the world. 2 Since 2017, when the current right whale Unusual
1

Fisheries, N. (2020). 2017–2020 North Atlantic Right Whale Unusual Mortality Event. Retrieved
from https://www.fisheries.noaa.gov/national/marine-life-distress/2017-2020-north-atlantic-right-whale-unusualmortality-event
2 Pettis, HM. et al. (2021). North Atlantic Right Whale Consortium 2020 Annual Report Card. Report to the North
Atlantic Right Whale Consortium. Retrieved
from https://www.narwc.org/uploads/1/1/6/6/116623219/2020narwcreport_cardfinal.pdf

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[email protected]

290 Summer Street
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Yarmouth Port, MA 02675

2
Mortality Event was declared, 48 right whales (or 13.5 percent of the known population) have died
or are presumed to have died – alarming scientists, policymakers, and advocates working to
protect this critically endangered species. 3 Just two days ago, “Cottontail” – a right whale sighted
last October with a severe entanglement and the focus of several rescue attempts – was found
dead off the coast of South Carolina, emaciated and fatally entangled in fishing gear. 4 This whale
joins a long and growing list of whales that have succumbed to their entanglements; IFAW-led
research has shown that entanglement in fishing gear is the leading threat to right whales, with
nearly 60 percent of determined causes of death between 2003 and 2019 from entanglement. 5
Given these urgent circumstances, we offer the following comments on three key areas in which
the proposed risk reduction measures are insufficient and urge NOAA to opt for the “alternative 3
(non-preferred) option”:
1. The 64 percent risk reduction should be increased to 80 percent (70 percent at a
minimum)
The proposed rulemaking is based on outdated information and does not account for the most
recent right whale population estimate showing a continued and marked decline in North
Atlantic right whales. The overarching goal of these measures is to reduce serious injuries
and mortalities of right whales to below Potential Biological Removal (PBR), or the maximum
number of incidental human-caused deaths per year that will not prevent a species from
recovering. When developing the proposed risk reduction percentage targets over a year ago
based on an over-estimated population assessment, NOAA Fisheries used a PBR value of
0.9 and determined that at least a 60 percent reduction in risk was adequate for a population
of approximately 409 whales. However, with the recently revised population estimate of 356
and the unfortunate subsequent 13 mortalities documented in the past year, these new data
points dictate that the PBR would be lower than 0.9 and risk reduction needs to be at least 70
percent for the species to recover. This can only be reached through the “alternative 3 option.”
In fact, the US Marine Mammal Commission recommended that any proposed new rule
include a baseline risk reduction target of 80 percent. 6 The foundation of the proposed
rulemaking is therefore fundamentally flawed as it aims to meet a mark that is too low to stop
the current population decline. The 64 percent target of reduced risk outlined in the
proposed rule should be increased to 80 percent.
2. Weak Line is Not a Solution
The management measures proposed in the rulemaking are insufficient to achieve the level
of risk reduction needed to save the species for the long-term. The proposed rulemaking does
include some meaningful measures that would reduce the number of vertical buoy ropes
(VBR) in the water. These include “trawling up” (putting more traps between buoys),
3

Fisheries, N. (2020). 2017–2020 North Atlantic Right Whale Unusual Mortality Event. Retrieved
from https://www.fisheries.noaa.gov/national/marine-life-distress/2017-2020-north-atlantic-right-whale-unusualmortality-event
4 Greater Atlantic Regional Fisheries Office. (2021). Adult North Atlantic Right Whale Found Dead off South. NOAA
Fisheries. Retrieved from https://www.fisheries.noaa.gov/feature-story/adult-north-atlantic-right-whale-found-deadsouth-carolina
5 Sharp, SM., McLellan, WA., Rostein, AM., et al. (2019). Gross and histopathologic diagnoses from North Atlantic
right whale Eubalaena glacialis mortalities between 2003 and 2018. Inter-Research Science Publisher. Retrieved
from https://www.semanticscholar.org/paper/Gross-and-histopathologic-diagnoses-from-North-2003-SharpMcLellan/4da1a5202873da9475fa09e0af5b9ebc60297fa5
6 Thomas, PO. (2019). Comments on Atlantic Large Whale Take Reduction Plan Scoping. Marine Mammal
Commission (MMC). Retrieved from https://www.mmc.gov/wp-content/uploads/19-09-23-Pentony-Right-whale-DEISscoping.pdf

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www.ifaw.org

+1 508 744 290
[email protected]

290 Summer Street
e
Yarmouth Port, MA 02675

3
particularly within Maine waters where VBR risk is high due to heavy fishing concentration,
capping the number of VBR at half the number used in 2017, and restricting the use of VBR
in some high whale density/high-risk areas through seasonal fishing closures. In fact, the
“alternative 3 option” further reduces VBR in the water, and should therefore be prioritized.
However, the proposed extensive implementation of 1700-pound breaking strength rope (i.e.,
“weak rope”) as a key risk reduction measure will neither protect young right whales from
lethal entanglements, nor eliminate the long-term health impacts on adults chronically
entangled in gear. Calves and some juvenile right whales are not likely to be able to generate
sufficient force to break 1700 lbs. of rope. 7 Chronic entanglement in any line can have sublethal impacts on right whales, and is likely a major contributing factor to their reduced
reproductive rates in recent years. Only by actually reducing VBR in the water will we make
strides to save right whales from extinction. Weak lines can only be seen as an inferior and
interim risk reduction measure until ropeless fishing can be adopted by all fishermen. Where
vertical lines continue to be used in the interim, they should be reduced to 1700 lbs
throughout the entire length not just the upper portion. NOAA Fisheries should not
view weak rope as a long-term solution.
•

As an example of the inability of weak rope to protect juveniles, and the cascading
effect on the future population, we point your attention to the mother of one of the
first right whale calves born this season, right whale #4040 “Chiminea.” In April 2011,
when she was just four years old, “Chiminea” was sighted entangled in hundreds of
feet of line in Cape Cod Bay. As young as she was, “Chiminea” would not have been
protected by reduced breaking strength systems. Fortunately, in her case, all of the
many factors that must align did and she was successfully disentangled and able to
contribute to population growth, and recently sighted off Georgia with her first calf on
December 4, 2020. NOAA Fisheries cannot continue to rely on disentanglement as
the solution to the entanglement problem, as it simply is not enough to protect all
right whales. VBR must be removed from the water column and not just
replaced with weak rope.

3. Ropeless is the Solution
NOAA Fisheries should provide a more concrete pathway for ropeless fishing technology in
the proposed risk reduction plan. Ropeless fishing eliminates the need for vertical buoy rope
in the water column, except during the final stage of active retrieval, eliminating the risk of
entanglement to whales. Removing VBR from the water column will protect right whales, while
allowing fishermen to maintain – and even expand – their access to important fishing areas.
Ropeless gear technology is the most effective long-term solution that can reduce
entanglement risk, ensure fishermen can pursue their livelihoods, and protect the marine
ecosystem. Specifically, ropeless technology should operate through a streamlined permitting
process. While we commend NOAA Fisheries on the inclusion of ropeless fishing as a
potential option in seasonally restricted areas, fishermen need a clear permitting process
that provides a path for the use of ropeless gear to protect right whales while allowing
fishermen to fish. A viable legal path for ropeless would further incentivize fishermen to use
this innovative gear that does not harm whales. Relying on current one-off Exempted Fishing
Permits (EFPs) granting use of non-compliant gear for ropeless is not a long-term solution.
7 Knowlton, AR., Robbins, R., Landry S., et al. (2015). Effects of fishing rope strength on the severity of large whale
entanglements. Society for Conservation Biology. Retrieved from
https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/cobi.12590

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www.ifaw.org

+1 508 744 290
[email protected]

290 Summer Street
e
Yarmouth Port, MA 02675

4

Given these critical deficiencies within the proposed rule modifications, we urge you to: 1) apply
up to date and accurate right whale population and PBR data, 2) reduce emphasis on weak rope
as a solution to entanglement and instead focus on VBR reduction, and 3) expand and accelerate
permitting of ropeless fishing gear in order to strengthen the proposed rule and achieve the
necessary 80 percent risk reduction. In the event these essential changes require significant
additional time for agency review --time critically endangered right whales do not have --, or NOAA
Fisheries’ current preferred option cannot be amended to achieve the percent risk reduction
needed to reduce entanglement, we support the non-preferred or “alternative 3” option of 70
percent or greater as the adequate regulatory approach within the rulemaking framework
and timeline.
The International Fund for Animal Welfare (IFAW) is a Massachusetts-based nonprofit
organization with experts across the U.S. and around the world. Our Marine Mammal Rescue and
Research team, located on Cape Cod, is a leader in right whale mortality investigation and
provides on the ground expertise to evaluate causes of death in this critically endangered species.
Realizing from this work the true causes and that long-term solutions are needed, IFAW’s
campaign to protect and save North Atlantic right whales is founded on our desire to seek out
collaborative, pragmatic solutions that bring together diverse stakeholders in pursuit of meaningful
change on the water. We have a long history of working with fishermen to understand their
concerns and find a sustainable path forward, and facilitated and subsidized sinking ground line,
partnering with fishermen to test, refine, and promote ropeless fishing technology, and worked
with gear manufacturers to ensure their innovations can come to market. Informed by this
expertise and first-hand experience we urge you to include expansion and implementation of
ropeless fishing technology in the current proposed risk reduction plan to save right whales.
Thank you again for the opportunity to comment and for the hard work you, and the rest of NOAA
Fisheries, are undertaking for this urgent conservation challenge. IFAW scientists and experts
would be pleased to engage with you and your staff in whatever ways would be helpful.

Sincerely,
Brian Sharp
Director, IFAW Marine Mammal Rescue & Research and ALWTRT Member
CT Harry
IFAW Marine Campaigner and ALWTRT Alternate Member
Dr. Sarah Sharp
IFAW Veterinarian and North Atlantic Right Whale Consortium Board Member- Elect

International Fund for Animal Welfare
www.ifaw.org

+1 508 744 290
[email protected]

290 Summer Street
e
Yarmouth Port, MA 02675

February 26, 2021
Colleen Coogan
National Marine Fisheries Service
Greater Atlantic Regional Fisheries Office
55 Great Republic Dr.
Gloucester, MA 01930
Sent via regulations.gov
Re: Taking of Marine Mammals Incidental to Commercial Fishing Operations; Atlantic
Large Whale Take Reduction Plan Regulations; etc. (NOAA-NMFS-2020-0031)
Dear Ms. Coogan:
Supporters of the Humane Society Legislative Fund (HSLF) and the Humane Society of the United
States (HSUS) signed onto letters regarding the National Marine Fisheries Service’s request for
comments on the proposed rule amending the Atlantic Large Whale Take Reduction Plan. 85 Fed.
Reg. 86878 (Dec. 31, 2020). Our supporters believe the proposed rule does not go far enough to
protect this imperiled species and request that NMFS provide additional protections in the final
rule to help ensure North Atlantic right whales are provided the federal protections required by
law.
Over 15,000 HSUS and HSLF supporters signed onto the attached comment letters. The text of
the letters sent to supporters of each organization were identical. We are submitting their names to
be considered by the Agency in its review process.
•
•

The document titled “HSUS Supporters Right Whale Comments 2.25.21” contains 10,775
signatures.
The document titled “HSLF Supporters Right Whale Comments 2.26.21” contains 5,147
signatures.

Thank you for providing our supporters the opportunity to weigh in on this action. If you have any
questions, please do not hesitate to contact me.
Sincerely,

Keisha Sedlacek
Director of Regulatory Affairs, Federal Affairs
Humane Society Legislative Fund
[email protected]
(202)-955-3661

Attachment 1- HSUS and HSLF Comment Letters
[Name]
[Address]
[Date]
Subject: NMFS's proposed rule to address North Atlantic right whale fishing gear entanglements
is not sufficient
To Whom It May Concern:
The National Marine Fisheries Service's proposed rule to address North Atlantic right whale
entanglements in fishing gear does not go far enough to save this species from extinction.
With fewer than 360 individuals surviving and only about 70 breeding females remaining, it is
imperative that the agency address entanglements in fishing gear in a meaningful way. Severe
entanglement in lobster and crab trap/pot gear is the leading cause of death for this species.
Scientists have determined that more than 85 percent of right whales have been entangled in
fishing gear at least once in their lifetimes, and 60 percent have been entangled multiple times.
There is technology available that potentially reduces the risk of entanglement in trap/pot fishing
gear known as "ropeless" or "pop-up" gear, and other less protective technology known as "weak
line" rope; however, the most effective management tool short of converting all traps to ropeless
throughout the fishery is to simply close areas to fishing when these animals are known to be in
those waters.
Signed,
[Name]

GEORGIA
DEPARTMENT OF NATURAL RESOURCES

WILDLIFE RESOURCES DIVISION
MARK WILLIAMS
COMMISSIONER

TED WILL
DIRECTOR

March 1, 2021
MS.Donna Wieting, Director
Office of Protected Resources
National Marine Fisheries Service
1315 East-West Highway
Silver Spring, Maryland 20910
RE:

ALWTRP Proposed Rule, RIN 0648-BJ09

Dear Ms. Wieting:
On December 31, 2020, the National Marine Fisheries Service published a proposed rule to amend
the Atlantic Large Whale Take Reduction Plan (ALWTRP) to reduce takes of North Atlantic right whales
in the Northeast U.S. lobster pot fishery. Staff of the Georgia Department of Natural Resources' Wildlife
Resources Division has reviewed the proposed rule and the accompanying draft environmental impact
statement (DEIS).
The North Atlantic right whale is Georgia's official state marine mammal, and our coastal waters
lie at the center of the species' only calving ground. Right whales are critically endangered, in large part
because of human-caused mortality. Since 2011 the species has declined by an estimated 23 percent,
erasing population gains made from 2004 to 2010. Federal waters offshore of Georgia have been closed to
fixed fishing gear (e.g., crab pots, gillnets) each winter since 2015 to protect right whales from rope
entanglements. Various measures have also been implemented in Northeast U.S. waters through the
ALWTRP process. However, entanglement remains the leading cause of whale death and injury, and over
90% of fixed gear buoy ropes in U.S. Atlantic waters are attached to lobster pots in the Northeast U.S. We
prefer that NMFS rewrite the final rule around DEIS Alternative 3 to address this problem. Our comments
on the proposed rule are attached; we appreciate NMFS' careful consideration of these concerns in
developing the final rule.
Thank you for the opportunity to comment on the proposed ALWTRP rule. We look forward to
continued cooperation with NMFS staff on this and other matters. If you have further questions, please
contact Clay George at 912-262-3336 or [email protected].

Attachment

2067 U.S. HIGHWAY 278 S.E. l SOCIAL CIRCLE, GEORGIA 30025
706.557.3333 l FAX 706.557.3030 l WWW.GEORGIAWILDLIFE.COM

Georgia DNR Wildlife Resources Division Comments on Atlantic Large Whale Take Reduction
Plan Proposed Rule, RIN 0648-B.109
The proposed rule seeks to reduce entanglement risk by approximately 60% by (1) reducing the number
of buoy lines in the water column, (2) implementing new seasonal restricted areas, and (3) reducing the
severity of entanglements when they occur. Our comments are as follows:
•

•

•

The draft environmental impact statement (DEIS) underestimates the number of right whale
mortalities and serious injuries attributable to the lobster fishery. Mortality and serious injury will
need to be reduced by over 80%1 to bring takes below the current Potential Biological Removal
threshold of 0.8 whales per year (Hayes et al. 2020).
There is significant uncertainty that the proposed rule, based on Alternative 2, can meet the proposed
objective to reduce entanglement risk by —60%. Specifically:
o The benefit of increasing trap/trawl limits ("trawling-up") is debatable. Trawling-up is a core
component of the 2015 ALWTRP amendment and there is no clear evidence this strategy has
reduced number of buoy lines deployed. Further, there is no guarantee that additional
trawling-up will result in broadscale reduction in lobster buoy lines. Lastly, trawling-up may
encourage fishermen to use stronger buoy lines, thereby increasing severity of injuries (Hayes
et al. 2018, Knowlton et al. 2016).
o Proposed seasonal gear closures in LMA1 and LMA2 are not sufficient in size or duration to
reduce whale/gear co-occurrence and discourage gear relocation.
o The frequency of weak rope breakaways is insufficient to reduce injury in deeper waters
where buoy lines are longer and stronger.
o The benefits of weak rope breakaways are uncertain and have not been implemented on a
large scale.
We recommend that NMFS rewrite the final rule based on Alternative 3 with the following additional
considerations:
o The 50% buoy line cap should also be required in the offshore lobster fishery (LMA3). Right
whales occur year-round throughout LMA3 (Roberts et al. 2016).
o The proposed restricted areas in LMA1 and LMA3 are insufficient in size and duration.
Their conservation benefit will be offset if gear is relocated to the restricted area boundaries.
NMFS should develop an adaptive approach to timing, duration and size restrictions
o Requiring weak rope "toppers" on the top 75% of buoy lines could lower risk of whale
injuries when entanglernents occur. This may be particularly important if the buoy cap
encourages some fishermen to increase the number of pots fished per trawl. NMFS should

Mortality rates should be calculated from statistically-derived mortality estimates (Pace et al. 2021) as follows:
201 (estimated mortality during 2010-2019, draft BiOp page 225) * 0.5 (proportion of entanglements assumed
occurring in U.S. waters, draft BiOp page 224) * 0.73 (proportion of U.S. mortalities due.to entanglement, draft
BiOp page 227) * 0.93 (proportion of buoy lines fished by ALWTRP-regulated lobster fishery in the Northeast U.S.,
DEIS page 3-67) / 10 years = 6.82 estimated mortality/year. Risk reduction needed: 1 — (0.8 [current PBR, Hayes et
al 2020] / 6.82 [estimated mortality/year from above]) = 88%. See ALWTRP DEIS page 2-39 for risk reduction
equation.

•

•

also require toppers to be used in LMA3. The long trawls' that are fished in LMA3 likely
pose a high risk of mortality and serious injury if whales become entangled.
We recommend that NMFS analyze the effects of closing the Northeast U.S. portion of LMA3 to
persistent buoy lines year-round. Offshore waters are used by right whales year-round (Roberts et al.
2016). The heavy gear used in the offshore fishety may be inherently dangerous to whales (Knowlton
et al. 2016). This change would impact a small fraction (approximately 5%) of federal lobster
permits3, and may encourage the further development of"rope-less" gear systems.
We support opening restricted areas to rope-less fishing gear to incentivize the continued
development of that technology.

References

Hayes, S. A., S. Gardner, L. P. Garrison, A. Henry, and L. Leandro. 2018. North Atlantic right whalesevaluating their recovery challenges in 2018. National Marine Fisheries Service, Northeast Fisheries
Science Center, September. NOAA Technical Memorandum NMFS-NE-247.
Hayes, S. A., E. Josephson, K. Maze-Foley, and P. E. Rosel. 2020. U.S. Atlantic and Gulf of Mexico
marine mammal stock assessments - 2019. National Marine Fisheries Service, Northeast Fisheries
Science Center, Woods Hole, Massachusetts. NOAA Technical Memorandum NMFS-NE-264.
Knowlton, A. R., J. Robbins, S. Landry, H. A. McKenna, S. D. Kraus, and T. B. Werner. 2016. Effects
of fishing rope strength on the severity of large whale entanglements. Conservation Biology 30:318-328.
Pace, R. M., III, R. Williams, S. D. Kraus, A. R. Knowlton, and H. M. Pettis. 2021. Cryptic mortality of
North Atlantic right whales. Conservation Science and Practice e346. https://doi.org/10.1111/csp2.346
Roberts, J. J., B. D. Best, L. Mannocci, E. Fujioka, P. N. Halpin, D. L. Palka, L. P. Garrison, K. D.
Mullin, T. V. N. Cole, C. B. Khan, W. M. McLellan, D. A. Pabst, G. G. Lockhart. 2016. Habitat-based
cetacean density models for the U.S. Atlantic and Gulf of Mexico. Scientific Reports 6: 22615. doi:
10.1038/srep22615. https://seamap.env.duke.edu/models/Duke-EC-GOM2015/EC_North_Atlantic right whale maps.htm I

Current ALWTRP regulations require a minimum of 20 pots per trawl and a maximum trawl length of 1.5 nmi in
LMA 3. Both DEIS alternatives propose to increase trawl lengths to 1.75 nmi and a minimum of 45 pots per trawl.
3 NMFS GARFO issued 91 lobster permits for LMA3 in 2018. 1,732 permits were issued in LMA1, LMA2 and
OCC (DEIS 4-117).
2

The Commonwealth of Massachusetts
Division of Marine Fisheries
251 Causeway Street, Suite 400, Boston, MA 02114
p: (617) 626-1520 | f: (617) 626-1509
www.mass.gov/marinefisheries

CHARLES D. BAKER
Governor

KARYN E. POLITO
Lt. Governor

KATHLEEN A. THEOHARIDES
Secretary

RONALD S. AMIDON
Commissioner

DANIEL J. MCKIERNAN
Director

March 1, 2021
Mr. Michael Pentony
Regional Administrator
Greater Atlantic Regional Fisheries Office
National Marine Fisheries Service
Gloucester, MA 01930
ATTN: Large Whale Proposed Rule (NOAA-NMFS-2013-0095)
Dear Mr. Pentony,
Please accept the following comments on proposed amendments to the Atlantic Large Whale Take
Reduction Plan which are designed to limit the frequency and severity of interactions between large
whales and trap/pot fishing gear in the Northeast Region.
Trawl Up/Line Reduction. MA DMF supports trawling up measures proposed in the Preferred
Alternative (Alternative Two) which call for minimum standards for traps per trawl in various zones as a
function of distance from shore and Lobster Management Area (LMA). In DMF’s Right Whale
Conservation Plan which was submitted to NMFS on March 6, 2020, we proposed the future prohibition
upon permit transfer of fishing with single traps in MA state waters by fishermen using a vessel 29’ and
longer. However, DMF subsequently introduced a modified version of this proposal, that would simply
ban the use of fishing singles on vessels larger than 29’ as part of a rule making package developed in
December of 2020. This aspect of the state’s proposal was not approved at the January 28,
2021 meeting of the Marine Fisheries Advisory Commission. DMF and the Commission received
substantial opposition to the proposal from many lobstermen, especially those who fish in the OCC LMA
and LMA 2 with small trap allocations and small- to medium-sized vessels. These lobstermen told DMF
and the Commission that they have developed a business model that optimized safety and
profits. Many fishermen responded to the agency’s proposal with plans to purchase a smaller vessel to
continue fishing single traps. The Commission concluded that the goal of further reducing vertical lines
(if warranted in the future) should be accomplished through other means that would not compromise
safety nor be easily subverted as noted. The Commission has created a subcommittee to study the issue
and assist DMF to devise successful solutions.
Seasonal Buoy Line Restricted Areas. DMF supports many of the aspects of the Preferred Alternative
(Alternative Two).
• We support the Massachusetts South Island Restricted Area in Alternative Two and are
pleased that the agency is presenting this area as part of the Preferred Alternative. This
area was identified by DMF as part of the proposed conservation plans submitted to NMFS
last year and in our opinion encompasses an area that host large seasonal aggregations of
whales based on the most recent sighting trends. Since 2010, although Cape Cod Bay has

been a persistent aggregations every winter/spring, right whales have demonstrated range
shifts away from some traditional feeding grounds and a propensity to aggregate in new
areas. Given the increased variability in right whale movement patterns we recommend
that sightings data be evaluated every 3 years to ensure that all time-area
closures adequately protect seasonal aggregations of whales.
•

We would like to reaffirm the conservation benefits of the Massachusetts Bay Restricted
Area Closure. This area seasonally hosts the largest aggregation of North Atlantic right
whales in the world and serves as a critically important feeding area. This closure affects
much of the Massachusetts inshore fishery, with a significant portion of our fleet losing the
opportunity to fish in order to protect right whales. While this closure is important, and a
necessary measure toward the recovery of right whales, it is critically important that the
Service continue to include its benefit in all evaluations of risk reduction.
•

We request that NMFS change their proposed measure to reflect that Massachusetts
state waters portions of the MBRA will be closed through May 15. DMF will continue to use
the authority of the Director to dynamically manage the Massachusetts Bay Restricted Area
during the month of May. We will open the fishery in May if aerial surveillance
demonstrates that right whales have left the area. The entire area would remain closed if
whale aggregations persist. In the event that smaller number of whales remain in the
MBRA, smaller portions of the area would remain closed when surveillance reveal 3 or
more whales are present. DMF has enacted closure extensions in early May for four of the
last six years when right whales have remained in Cape Cod Bay, and state regulations give
the authority to the Director to keep areas closed under the authority of a declaration. DMF
recently enacted new regulations that extend the closure in state waters from the MBRA up
to the New Hampshire border. This area extension of the MBRA will be managed in the
same manner.
•

DMF agrees with the proposal to modify seasonal closures to allow fishing “without
persistent buoy lines” but additional administrative process must be accomplished before
this can be a successful fishery management strategy year-round. NMFS’ Exempted fishery
permit process, NEPA analyses, and communication to fishermen using competing gears and
other fishing fleets about “ropeless fishing” and the development of the technologies needs
to be delineated before this can be widely implemented. We anticipate being able to
provide you more advice about how to permit and manage “ropeless fishing” at the end of
the year upon completion of the NFWF funded study (“Ropeless Fishing Gear Feasibility
Study”), a 12-month project which will evaluate legal, regulatory, technological, and fishing
challenges and opportunities of alternative lobster gear to reduce entanglements).
Other Line Reduction. DMF supports NMFS factoring in the expected buoy line reductions associated
with the ongoing effort reduction plans of the ASMFC’s interstate lobster management plan in two
lobster management zones (LMA 2 and LMA 3). The long-term reduction on buoy lines will be
commensurate with trap allocation reductions.
Weak Line. DMF supports the adoption of weak line as a conservation management strategy. Since the
inception of the Large Whale Take Reduction Team in 1996, a variety of proposals have been considered
for break-away links or devices along the vertical line as a means to reduce risk of serious injuries and
mortality. However, none were embraced due to concerns about operations safety for fishermen. Since

that time, however, research has been conducted on the appropriate breaking strength to reduce whale
injuries, as well as work on potential weak insertions for buoy lines to achieve that breaking
strength. The New England Aquarium’s Amy Knowlton’s research on rope breaking strength and
entanglement severity appears to find a “sweet spot” with her conclusion that 72% of right whale
serious injuries and mortalities could be eliminated if rope breaking strength was 1,700 lbs. or less. In
addition, the South Shore Lobstermen’s Association partnered with New England Aquarium and the
Commonwealth of Massachusetts to test weak sleeve insertions for buoy lines that would break at 1,700
lbs. The success of those sleeves and the recent development of fully-formed reduced breaking strength
rope make weak buoy lines a more operationally feasibly conservation measure. In Massachusetts state
waters, DMF is implementing a requirement for vertical lines to either be comprised of fully-formed
1,700 lb. breaking strength line or for lines stronger than 1,700 lbs., they must be equipped with weak
insertions every 60 feet in the upper 75% of the line that breaks at 1,700 lbs. We believe this frequency
of weak insertions offers a significantly precautionary measure to reduce entanglement severity and
should be counted as a fully weak rope under the Take Reduction Plan. The Massachusetts plan would
offer a significantly higher level of risk reduction from weak line than what is proposed under
Alternative 2, where only 26% of buoy lines will be converted to fully weak rope.
Weak Link Modification. DMF supports removing the longstanding weak link requirement at the
surface system as found in Alternative 3. The new 1,700 breaking strength buoy line proposals have
introduced a new approach for breakaways. Moreover, there may be advantages to having the buoy
remain affixed to any entangling ropes - at least temporarily:
• It could enhance disentanglement efforts if the disentanglement teams are
better able to grab the entangling lines by tying on the trailing surface system;
• It could provide some level of drag that may contribute to the rope being pulled
naturally off the whale;
• It could enhance the potential to better identify gear involved in
entanglements. The most definitive gear identification information is inscribed
onto the buoy which could further contribute to our understanding of
where entanglements occur, a critical shortfall in the ongoing conservation efforts
and will allow future regulations to be more surgical in time and space.
Gear Marking. DMF supports the modification of gear marking regulations to introduce state-specific
colors and an increase in the number and area of marks on buoy lines. Gear is not retrieved and/or the
fishery of origin or type of fishing gear is not known for most entanglements. It is imperative that the
gear marking scheme eliminate any ambiguity in the possible determination of the jurisdiction and
location where each entanglement occurred and the authority that licensed the gear. In the interest
of achieving more granular data regarding where entanglements occur, we recommend that that the
Service consider a gear marking scheme that clearly differentiates gear set in state waters from gear set
in federal waters. Ideally, the state-specific color should cover only those buoy lines that are actually set
in state waters, or the additional mark for designating fishing in the EEZ be affixed more frequently in
the buoy line than the current proposal of a single green mark in the upper portion of the buoy line. It
will be critical to attribute any future entanglements to the jurisdiction where the gear was set. The rule
as currently drafted could result in improper attribution to a state waters fishery if the single green mark
is lost when the top of the buoy line is parted off. This ambiguity in marking could lead to the improper
assignment of a future entanglement to the wrong jurisdiction (i.e. state vs. federal waters). If NMFS is
interested in differentiating gear from different lobster management areas within federal waters, we
suggest that it develop a unique LMA marking scheme for fisheries operating in federal waters. We
acknowledge that having separate and distinct marking scheme for state and federal waters puts a

substantial burden on dual (state and federal) permit holders who regularly move gear between state
and federal waters. Unfortunately, the increased burden associated with separate and non-ambiguous
gear marking schemes in state and federal waters is necessary, especially in light of the fact that the
draft Biological Opinion published in February of 2021 has an incidental take statement
that only applies to fisheries prosecuted in federal waters. Accordingly, it is critical to ensure that a well
thought-out distinct marking scheme be developed to accurately identify gear back to the
jurisdiction where it was set. We recommend NMFS continue to consult its gear specialists and state
representatives on the TRT before enacting a final regulation.
Thank you for the opportunity to comment and we look forward to future collaborations on these
important matters.
Sincerely,

Daniel J. McKiernan, Director
CC: Massachusetts Marine Fisheries Advisory Commission

RHODE ISLAND
DEPARTMENT OF ENVIRONMENTAL MANAGEMENT
DIVISION OF MARINE FISHERIES

Three Fort Wetherill Road
Jamestown, Rhode Island 02835

March 17, 2021
Michael Pentony, Regional Administrator
NOAA Fisheries, GARFO
55 Great Republic Drive
Gloucester, MA 01930
Dear Mr. Pentony,
The Rhode Island Department of Environmental Management, Division of Marine Fisheries (RIDMF),
would like to submit the following comments for consideration on the Proposed Rule and Draft
Environmental Impact Statement for amending the Atlantic Large Whale Take Reduction Plan.
Specifically, these comments address the LMA 2 portion of the Take Reduction Plan. These comments
are intended to continue the commitment Rhode Island has to ensure the continued survival of the North
Atlantic Right Whale (NARW) while allowing the Rhode Island lobster and Jonah crab fisheries to persist
and be profitable during a challenging time for those fisheries.
Sincerely,

Jason McNamee, PhD
Deputy Director RIDEM

Telephone 401.423.1923 | www.dem.ri.gov | Rhode Island Relay 711

State of Rhode Island comments on Proposed Rule, taking of Marine Mammals
Incidental to Commercial Fishing Operations.
The State of Rhode Island offers the following comments related to the Draft Environmental Impact
Statement and proposed rule related to the taking of marine mammals incidental to commercial fishing,
which includes the NE trap/pot fishery which occurs under the jurisdiction of the state waters portion of
lobster conservation management area 2 (LCMA 2).
As a long-standing member of the National Oceanographic and Atmospheric Administration (NOAA)
Atlantic Large Whale Take Reduction Team (ALWTRT), Rhode Island Department of Environmental
Management supports actions needed to reduce the likelihood of entanglements of large whales which
cause serious injury or mortality and reduce the potential biological removal (PBR) to the specified level
to assure rebuilding of large whales, specifically the north Atlantic right whale (NARW).
As described in Section 3.1.1.2 of the DEIS, Rhode Island supports the risk reduction associated with the
parallel regulatory track of fishery management measures in lobster management area 2 in the form of an
Atlantic States Marine Fisheries Commission (ASMFC) effort control plan (Addendum XVIII) that has
continued into the 2021 fishing year. The remaining reduction in risk comes from full weak vertical line
or weak insertions and trawling up measures based on distance from shore where fixed gear fisheries take
place.
Rhode Island supports the proposal offered to NOAA Fisheries in spring of 2020, which achieved the
needed risk reduction of 60% through the amended ASMFC interstate fishery management plan that
reduced traps by 50% and an associated vertical line reduction as reported by an RIDMF accompanying
analysis.
The proposed rule would reduce the number of vertical buoy lines fished outside of areas exempted under
the Plan by increasing the minimum number of traps required per trawl (known as trawling-up), based on
area fished and distance from shore. The following comments pertain to the changes proposed to reduce
the number of vertical buoy lines through the trawling up alternative.
The Rhode Island component of LCMA 2 is comprised of vessels which range in size from 25’-50’ in
length. Federally permitted vessels prosecute the lobster and Jonah crab fisheries outside of exempted
waters, the state waters demarcation line out to and beyond the 12nm territorial sea line. Additionally, a
strong seasonal component of the fishery exists throughout the summer months outside of 12nm, however
this coincides with a period of time when large whales are less likely to be present.
Due to the status of the lobster resource in SNE, participants have made choices to make their business
flexible, profitable and increase efficiency by fishing alone. The trawling up alternatives for distance
fished from shore 3-12 nm and greater than 12 nm are a safety concern for smaller vessels that are
generally less than 35’ in length fishing in coastal waters for some portion of the fishing year. Trawling
up measures for such a small portion of the RI lobster management area (LMA) 2 fleet offer minimal risk
reduction values of less than 1% according to the updated model runs of the decision support tool (DST).
Rhode Island supports standardized minimum traps per trawl coastwide but understands the practical and
operational differences by jurisdiction. A conceivable example would be participants who currently fish
15 traps per trawl will continue to do so (therefore will not reduce even though they can), however those
who fish with fewer traps per trawl could continue to do so for safety reasons. Given this trade off, the
change in risk reduction would be minimal. Due to the portion of the industry affected and the slight risk
Telephone 401.423.1923 | www.dem.ri.gov | Rhode Island Relay 711

reduction, Rhode Island supports an exemption for vessels operators who fish alone, be held to a
minimum of 10 traps per trawl in portions of LMA 2 inside 12nm.
In addition to the above exemption request, the RIDMF, based on industry comments, supports the
analysis of a conservation equivalency to the trawling up measure in areas greater than 12 nm from shore
from 25 traps per trawl to 15 traps per trawl through the use of full weak vertical line and its associated
risk reduction benefit as opposed to weak inserts within the Rhode island portion of LMA 2. We request
that full weak vertical line risk reduction be used as a conservation equivalency to the line reduction
measures using weak insertions specified in section 3.2.1.2 of the Preferred Alternative 2 of the draft
environmental impact statement (DEIS). Although the number of vertical lines may not be reduced, the
risk reduction values are minimal and using full weak vertical line will decrease the likelihood of large
whales incurring serious injury in the unlikely event that an entanglement occurs.
The RI fixed gear fishery has been using a unique marking requirement for single trap/pots in the state
waters portion of LMA 2 for greater than 5 years. With new enhanced gear marking requirements for each
state jurisdiction as well as a unique federal waters fishery mark, the state supports the elimination of the
state specific single pot gear marking requirement.
The RIDMF supports the Preferred Alternative 2 in section 3.2.1.2 for the Massachusetts South Island
Restricted Area and does not support additional seasonal restricted areas at this time.
The RIDMF supports the use of seasonal restricted areas open to ropeless fishing as specified in section
3.3.2.1 of the DEIS in an effort to foster the development these technologies under exempted fishing
permit (EFP) controls but contend that ropeless fishing should not be implemented on a large scale
coastwide until questions and issues are addressed regarding interactions among the various fishing
sectors using these areas.
The RIDMF would like to comment and support the need and ability of both federal and state law
enforcement agencies to have adequate resources to effectively enforce amendments to the management
plan. Without the resources to enforce updated rules, the effectiveness of these alternatives will be
unsuccessful. The RIDMF supports the enforceability of weak line through identification by means of a
manufactured colored strand, an aspect that identifies the lines breaking strength compliance.
The RIDMF supports an appropriate implementation date to the final rule that allows the industry time
prior to the start of a fishing years to re-configure both line and gear modifications using the upcoming
fishing season to develop and test configurations to meet the management plans overall risk reduction
target.
Finally, the RIDMF would like to comment on other federal fixed gear fisheries. It is our understanding
that any trap, pot, contrivance etc. that is capable of catching a lobster is required to have a valid lobster
trap tag affixed to it. This would indicate that any trap which falls into this category is subject to the
marking, weak insert, and trawling up requirements of this rule. We would ask for clarification on this
assumption from NOAA, which should help to guide discussions in the next ALWTRT process which
will be aimed at the addition gear types of gill nets and fish pots.

Telephone 401.423.1923 | www.dem.ri.gov | Rhode Island Relay 711

March 1, 2021
Mr. Michael Pentony
Regional Administrator
Greater Atlantic Regional Fisheries Office
National Marine Fisheries Service
55 Great Republic Drive
Gloucester, MA 01930
Dear Mr. Pentony:|
Thank you for the opportunity to provide comments on the Draft Environmental Impact
Statement (DEIS) Regulatory Impact Review, and Initial Regulatory Flexibility Analysis for
Amending the Atlantic Large Whale Take Reduction Plan (ALWTRP): Risk Reduction Rule.
The New Hampshire Fish and Game Department (NHFGD) supports Alternative Two of the
alternatives presented in the DEIS that seeks to reduce the mortality and serious injury of the
North Atlantic right whale by 60% or more in the Northeast Region Trap/Pot Management Area
lobster and Jonah crab trap/pot gear. This alternative:
 Increases the number of traps per trawl (trawling up) based on area fished and miles
fished from shore in the Northeast Region (Maine to Rhode Island),
 Initiates two new seasonal closures and extends the Massachusetts Restricted Area
Closure,
 Initiates the conversion of vertical buoy lines to weak rope, or insertions in buoy lines of
weaker rope or other weak inserts, with a maximum breaking strength of 1,700 lbs, and
 Creates area specific gear marking requirements that differentiate vertical lines by state
and federal waters and expands into areas previously exempt from gear marking.
As these measures may meet the current co-occurrence conditions of large whales encountering
vertical lines, the NHFGD would recommend evaluations (e.g., sighting surveys, zooplankton
surveys, etc.) be conducted more frequently to assure the measures are working as intended, as
well as detect the right whale range shifts and adjust management measures as needed.
While the NHFGD agrees with finding alternative methods or new technology that will continue
to reduce serious injury or mortality due to entanglements, there should be more robust
evaluations to assure of their effectiveness, interactions with other area competing fishing gears,
enforceability, and economic viability for the lobster fishing industry. In the future, maintaining

a workgroup of various industry members, state and federal agencies, and gear specialists to
consider new methodologies with all fishing industries would be beneficial with industry buy-in
when new technology is being considered.
Reducing vertical lines in areas of high co-occurrence, such as trawling up more traps, as well as
mitigating occurrences with high volume vertical lines and low whale sightings (e.g., weak rope
or weak insertions) are measures the NHFGD agree should reduce serious injury and mortality
with Right whales and meet the 60%+ risk reduction goal. In addition to these two measures,
other risk reduction efforts should be continuously factored into the risk reduction model. These
would include, but not limited to, current and future effort reduction efforts ASMFC initiates in
interstate lobster or Jonah crab fisheries management plans so the fishing industry is being
credited with their continued efforts. An important consideration in trawling more traps to
vertical lines should be allowing safety exemptions for new/young harvesters, smaller vessels,
nearshore fisheries, shallow waters, etc.
The NHFGD supports weak rope or weak contrivances in vertical line as a risk reduction
management strategy. As this technology is still developing to meet the industry’s varying area
operational needs it is important to allow for continuous tested variations to be accepted fishing
practices. NMFS should dedicate specialists and funding to testing, working with rope
manufacturers, and determining several variations of weak line contrivances in 2021. If these
rules will be enacted in 2022, it will be critical to the industry to know a variety of options. Any
variations should be well publicized as accepted rope or contrivances so the industry can be
adaptable in meeting operational and financial needs to these new and developing rules. The
New Hampshire fishing industry finds operational utility in allowing weak insertion placement at
60 feet intervals instead of 40 foot intervals to address the varying depths between state and
federal waters while moving gear on a seasonal basis.
The use of the current weak links at the surface system should be an option even if weak rope or
contrivances are to be enacted. While there is a question as to whether this technology has
worked as intended in releasing rope from an entanglement situation the offshore lobster industry
finds utility in maintaining this early gear modification as stated in the DEIS as well as some
ALTWRT members indicating:




A buoy provides resistance through the water as a whale moves forward, pulling the line
away from the whale and in a simple entanglement possibly pulling line out of baleen or
off of a whale.
The buoy, especially if it is pulling line away from the whale, provides the
disentanglement team with an opportunity to grapple the line and pull it from the whale
and/or attach tracking buoys to help monitor an entanglement.
And commercial fishery regulations require harvesters to include identification
information on buoys. Identification of last known set location of the gear retrieved from
large whales is often only possible when a buoy has been retrieved.

Extensive gear marking that will help determine where entanglements occur will be critical in
determining effective future risk reduction measures. NHFGD supports the gear marking
proposed in the proposed rules to assure assignment of future entanglements are clearly

identified and management measures be taken based on these observations instead of the current
uncertain assignments. This should also help further clarify identification between the US and
Canada gear and allow for a more appropriate distribution of risk apportionment. NHFGD would
also recommend more defined marking in federal waters to demarcate LMA’s to better
determine future management measures by lobster management area based on entanglement
data.
In conclusion, NHFGD supports Alternative Two of the DEIS. It will be critical in the future to
develop a monitoring plan to assure management measures are effective over time and to track
the implementation and innovations of gear modifications. It will be important for next steps of
the ALWTRT to start risk reduction measures for other fishing gears, ship strikes, and other
developing ocean uses (e.g., aquaculture, offshore energy), etc. that may affect the whale
conservation measures the lobster fishing industry is undergoing.
Thank you again for the opportunity to comment.
Sincerely,

Cheri Patterson
Chief, Marine Fisheries
cc:

Scott Mason, Executive Director

STATE OF MAINE
DEPARTMENT OF M ARINE R ESOURCES
21 STATE HOUSE STATION
AUGUSTA, MAINE
04333-0021
JANET T. MILLS

PATRICK C. KELIHER

GOVERNOR

COMMISSIONER

March 1, 2021
Colleen Coogan
National Marine Fisheries Service
Greater Atlantic Regional Fisheries Office
55 Great Republic Drive
Gloucester, Massachusetts 01930
Dear Mrs. Coogan,
The Maine Department of Marine Resources (ME DMR) submits these comments on the Proposed Rule
and Draft Environmental Impact Statement (DEIS) regarding the Taking of Marine Mammals Incidental
to Commercial Fishing Operations; Atlantic Large Whale Take Reduction Plan Regulations; Atlantic
Coastal Fisheries Cooperative Management Act Provisions; American Lobster Fishery (85 FR 86878).
In general, ME DMR supports National Marine Fisheries Service’s (NMFS) preferred Alternative 2
given it achieves the 60% risk reduction target for the Northeast lobster fishery and, apart from the LMA
1 Restricted Area, includes measures for Maine which are primarily based on the December 2019
proposal submitted by ME DMR. This proposal was developed with significant industry input which is
critical to ensuring successful adoption of the measures.
Detailed comments on each of the measures in the Proposed Rule follow; however, we provide a
summary of our three primary comments below.
1. ME DMR supports the inclusion of equivalency within the trawling-up provisions. A key part of
ME DMR’s proposal was that a trawl with two endlines is equivalent to a trawl with half as many
traps and one endline. This type of flexibility, whereby fishermen maintain a consistent proportion of
vertical lines to traps in a trawl, is critical to ensure the measures designed to provide protections for
right whales (NARWs) also ensure safety at sea. As was repeated over and over at many of the
industry meetings ME DMR hosted, the diversity of Maine’s lobster fleet means a one-size-fits-all
approach does not work; allowing for trawl configurations which achieve the same level of risk
reduction is critical to maintain fleet diversity. The Proposed Rule cites concern over fishermen
safety and gear conflicts as reasons for not implementing this type of equivalency. Ironically, it is the
safety concerns repeatedly raised by fishermen which lead ME DMR to propose this type of
measure. It is not dramatic to say, without this type of provision, fishermen’s lives will be in danger.
2. There is a lack of evidence supporting NMFS finding that the LMA 1 Restricted Area will
result in significant protections for right whales. Results of the Duke Habitat Model suggest the

1

LMA 1 Restricted Area is a ‘hot-spot’ of right whales in the late fall and early winter. In fact, risk
reduction calculated by the Decision Support Tool indicates the LMA 1 closure, if implemented,
would become the most important conservation area to NARWs along the coast. However, there is
very little data, particularly recent data, supporting this finding. The DEIS references a paper by Cole
et al (2013) indicating the presence of NARWs in the region; yet, the paper by Cole et al. considers
data between 2002 and 2008. Given the well-documented shift in NARW distribution since 2010 1,
particularly in the Gulf of Maine, it is unlikely that this data reflects current trends in NARW
distribution. In addition, the DEIS points to data from recent acoustic gliders in the Gulf of Maine.
However, when ME DMR mapped glider positions from those NARW detections against the bounds
of the closure, 73% of them were outside of the closure area. Data underlying the Habitat Model also
raise questions. As acknowledged in the DEIS, there is a lack of recent standardized surveys in the
offshore Gulf of Maine to inform the Habitat Model. This is an important consideration given the
aforementioned change in NARW distribution since 2010. As ME DMR found, when comparing
data in the Habitat Model from 2003-2009 and 2010-2018, there was a two-fold decrease in the
predicted number of whales in the closure after 2010. Thus, data collected prior to 2010 is
amplifying the identification of this area as a ‘hot-spot’.
There is very little data supporting the finding that this closure will provide meaningful protections
to NARWs, let alone that it will be the most important area closure to NARWs in terms of risk
reduction. As a result, ME DMR does not support the LMA 1 closure because it creates a dangerous
precedent in which closure areas identified in a model are implemented without corroborating
evidence from surveys or other monitoring efforts. Additionally, it appears that the hot spot analysis
used to generate the closure was based solely on the risk associated with Maine’s portion of LMA 1.
A more biologically meaningful closure would result if that methodology was applied to the region
as a whole, irrespective of lobster management areas.
If NMFS concludes the LMA 1 Restricted Area is necessary, ME DMR supports a trigger approach.
Importantly, ME DMR strongly recommends that the trigger mechanism and the closure be spatially
and temporally aligned. At present, the trigger described in the DEIS is based on future actions in the
Northeast trap/pot fishery at-large, rather than future conditions in Maine. As a result, an action
outside of Maine waters could trigger a closure that primarily effects Maine fishermen. Additionally,
as currently proposed, information assessed prior to the closure time period may trigger the closure;
however, this means there is no alignment between the time period of information informing the
trigger and the time period of the closure. ME DMR recommends that, if used, the trigger be based
on conditions in Maine so that the cause and effect are spatially and temporally linked.
3. ME DMR recommends the inclusion of conservation equivalency proposals developed by the
Maine Lobster Zone Councils in the final rule. Throughout 2020, ME DMR worked with the
regional Lobster Zone Councils to develop conservation equivalency (CE) proposals to the statewide
plan. This was done in recognition that each region has unique fishing conditions and practices, and
Davies, K., M. Brown, P. Hamilton, A. Knowlton, C. Taggart, and A. Vanderlaan. 2019. Variation in North Atlantic right
whale Eubalaena glacialis occurrence in the Bay of Fundy, Canada, over three decades. Endangered Species Research
39:159-171; Davis, G. E., Baumgartner, M. F., Bonnell, J. M., Bell, J., Berchok, C., Thorton, J. B., Brault, S., Buchanan, G.,
Charif, R. A., Cholewiak, D., Clark, C. W., Cockeron, P., Delarue, J., Dudzinski, K., Hatch, L., Hildebrand, J., Hodge, L.,
Klinck, H., Kraus, S., Martin, B., Mellinger, D. K., Moors-Murhpy, H., Nieukirk, S., Nowacek, D. P., Parks, S., Read, A. J.,
Rice, A. N., Risch, D., Sirovic, A., Soldevilla, M., Stafford, K., Stanistreet, J. E., Summers, E., Todd, S., Warde, A., and S.
M. Van Parijs. 2017. Long-term passive acoustic recordings track the changing distribution of North Atlantic right whales
(Eubalaena glacialis) from 2004 to 2014. Scientific Reports. 7:13460 (1-12).

1

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that the risk for NARWs is not consistent along the Maine coast. Thus, a one size fits all approach
does not work for Maine. All of Maine's Zones developed and voted on CE proposals which focus on
changes to the trawling-up and weak point measures. In total, ME DMR calculates that the proposals
achieve a higher risk reduction than what was achieved in the statewide plan. Equally important, this
process fosters industry buy-in to the management process by allowing fishermen to recommend
measures for implementation in their region. ME DMR strongly recommends NMFS incorporate
these Zone-specific CE proposals into the final rule.
I. Comments on Underlying Methods and Relative Risk
Two and a half weeks before the end of the public comment period on the Proposed Rule, ME DMR was
informed that NMFS’s calculation of the risk reduction achieved by Maine’s proposal was significantly
less than what ME DMR had calculated. Specifically, while ME DMR had calculated at least a 52% risk
reduction from the measures included in Maine’s proposal (the percentage was expected to be higher
with the inclusion of measures implemented in Maine’s exempt area but ME DMR did not receive
feedback from NMFS on how much risk reduction these measures added), NMFS revealed that, by their
calculations in the DEIS, Maine’s plan only achieved a 37% risk reduction; with the addition of the
LMA 1 Restricted Area, Maine achieved a 52% risk reduction.
To say that this news came as a surprise would be an understatement. When Maine was finalizing its
state plan, ME DMR had a conference call with NMFS on December 19, 2019. Participants on the call
included staff from ME DMR, the Greater Atlantic Regional Fisheries Office (GARFO), and the
Northeast Fisheries Science Center (NEFSC). On the call, NEFSC staff member Sean Hayes confirmed
verbally to ME DMR that he was calculating a similar risk reduction to that of ME DMR. Further, the
fact that ME DMR and NEFSC were using slightly different methods but ended up with very similar risk
reductions was seen as corroboration of ME DMR’s calculation. Since this call, it is clear NMFS’s
method to calculate risk reduction has significantly changed. What is unclear is why these changes were
never communicated to ME DMR. In the roughly thirteen months since ME DMR submitted its
proposal, NMFS had ample time to communicate these changes in the risk reduction scores. Further, in
written correspondence between the Greater Atlantic Regional Fisheries Office (GARFO) and ME DMR
shortly after the submission of Maine’s proposal, GARFO had several opportunities to communicate
their own risk reduction calculations to ME DMR.
While this revelation may not have specific impacts on the total risk reduction achieved in the Northeast
lobster fishery, there are large ramifications for Maine. Starting in 2019 ME DMR held 60 meetings,
with over 2500 industry members, trying find a solution that recognizes the diversity of Maine’s lobster
fleet. This included meetings with each of the Lobster Zones to develop conservation equivalency
proposals. With this new information, there are now multiple methods to calculate the risk reduction
percentages associated with different management tools. This change also undermines industry’s
confidence in the management process as the risk reduction percentages associated with various
management measures appear to be in constant flux.
Ultimately, the largest change comes from the method used to calculate the risk reduction associated
with weak points. In the DEIS, NMFS uses the average of two methods to assess the risk reduction of
weak points; one method considers the depth of the weak points and the other considers their frequency
relative to a 40ft spacing. As outlined in greater detail on page 6-7 of these comments, ME DMR does
not support the method which considers the spacing of weak points relative to 40ft. In this calculation,
NMFS assumes a weak point every 40ft is equivalent to full weak rope; however, there is no information
in the literature to support this finding. In fact, the origin of 40ft spacing came from a gear marking

3

proposal and not a discussion on weak points. Further, this method fails to consider how full 1700-lb
rope breaks; specifically, it too breaks at its weakest point. Extensive breaking strength data collected by
Maine DMR and shared with NMFS, has shown that the weakest part of a rope is at a connection point
in the line. Different types of splices and knots used to connect pieces of rope together in a vertical line
will reduce the strength of the rope by up to 60%. In a piece of weak rope, this weakest point would be
where it ties into the rest of the vertical line and not necessarily on or close to an entangled whale. As a
result, a rope with its weakest point 50% down the vertical line should break at the same point as a
vertical line with weak rope in the top 50% of the line. Importantly, NMFS methods fail to consider this
point and assign very different risk reductions to the two configurations.
Given these deficiencies, ME DMR finds the method which considers the depth of the lowest weak point
to be the most defensible method to assess risk reduction because it considers at what depth the vertical
line is likely to break. This is the same method that ME DMR employed when developing Maine’s
original proposal. ME DMR highlights that, if this method is used alone, the risk reduction calculated in
the DEIS for measures in Maine’s waters achieves the 60% risk reduction set out by the Atlantic Large
Whale Take Reduction Team (ALWTRT).
ME DMR also highlights the vast difference in relative risk between Maine’s waters and the broader
Northeast region. While Maine accounts for 64% of all vertical lines on the entire east coast, it
represents just 30% of the risk associated with the New England region that is being regulated through
this proposed rule. Lobster fisheries in Maine, New Hampshire and parts of Massachusetts make up
LMA 1, which constitutes 74% of the entanglement risk in New England. The Maine fishery alone has
more than 90% of the LMA 1 vertical lines yet it’s risk relative to that area is less than half at 40%.
Stated again, even though Maine makes up more than 90% of the gear, the risk is relatively low because
of the low occurrence of right whales. This discrepancy is made all the more obvious in Maine’s exempt
waters which constitute 73% of vertical lines in the Maine lobster fishery but just 3% of the state’s risk.
This imbalance between number of vertical lines and associated risk indicates that whale density is a
driving factor in the calculation of risk, making it difficult to move the needle on risk reduction in areas
of low right whale occurrence. Moreover, the low overlap with right whales requires impacting a large
number of fishermen for even low to moderate risk reduction benefit.
II. NMFS’s Preferred Alternative 2
The following comments pertain to NMFS preferred Alternative 2. Given most of these measures, with
the exception of the LMA 1 Restricted Area, align with the state proposal, ME DMR is generally
supportive of preferred Alternative 2. Detailed comments on each of the proposed management measures
are included below.
Trawl Length Minimums
ME DMR supports the inclusion of trawl length minimums as a method to reduce the number of vertical
lines in the water. While increases to trawl length minimums must be balanced with safety at sea, the
measures included in preferred Alternative 2, for the most part, reflect the trawl length minimums
submitted by the states and developed through extensive industry outreach. As a note, on page 3-54 to 355 of the DEIS, it appears Maine’s LMA 1 trawling up measures between 6-12nm are not listed; this
should be added in the Final Environmental Impact Statement (FEIS).
As described starting on page 18 of this letter, ME DMR has worked with the regional Lobster Zone
Councils since Maine’s submission of the statewide proposal to develop Zone-specific CE proposals. For

4

these proposals, Zones could consider modifications to the trawling up minimums and weak point
measures as long as they achieved the same, or greater, level of risk reduction as was achieved under the
statewide plan. All Zones pursued this option. ME DMR strongly recommends NMFS include the trawl
length minimums proposed by the Zone-specific CE proposals in the final rule (see Table 2) as they
represent significant industry time and commitment to balance regional fishing practices with risk
reduction goals. Many of the CE proposals drafted by the Zones include a slightly higher trawl length
minimum between 3 and 6 miles from shore (5 traps per one endline/10 traps per two endlines). Whereas
in the proposed rule less than 1% of Maine’s risk reduction is achieved by the trawl length minimums
from 3-6nm, these CE proposals should increase the risk reduction achieved in this distance from shore.
For the trawling-up measures in both Maine’s statewide proposal and for those included in the Zone CE
proposals, ME DMR strongly recommends NMFS include the use of endline equivalencies. A key
element of ME DMR’s proposal was the fact that a trawl with two endlines achieves an equivalent level
of risk reduction to a trawl with one endline and half as many traps (i.e. an eight trap trawl with two
endlines is equivalent in terms of risk reduction to a four trap trawl with one endline). Page 18 of the
Proposed Rule states the option for fishermen to use an equivalent proportion of buoy lines to traps was
not included given concerns over gear conflicts and safety. Ironically, fishermen safety is one of the
primary reasons ME DMR proposed this type of equivalency. Throughout public meetings with
fishermen, ME DMR consistently heard one size does not fit all and moving to longer trawls would
imperil those who fish on vessels which are smaller or have less deck space. In recognition of these very
real safety concerns, Maine proposed trawl length equivalencies through which fishermen can comply by
either trawling up or reducing the number of endlines on a trawl. This system does not compromise the
risk reduction achieved and ensures a broad array of fishermen can safely adopt the new measures. In
essence, this is similar to the idea behind the endline cap proposed by NMFS in Alternative 3; provide
fishermen a level of flexibility to best adapt the new regulations to their unique fishing practices.
Without this flexibility, fishermen safety will be compromised. The Proposed Rule also references a
need to modify 50 CFR 697.21(b)(2), which requires both endlines be marked with a buoy and radar
reflector when there are more than three traps on a trawl. ME DMR supports modifying this regulation to
allow a greater number of traps per single endline given it will reduce the number of vertical lines in the
water. Modifying this regulation may also provide an opportunity for a broader conversation on the radar
reflector requirement given there have been ongoing discussions between Maine Marine Patrol and the
US Coast Guard regarding the enforcement of this provision.
In the DEIS, NMFS discusses two ways in which trawling up may not achieve the anticipated risk
reduction targets. The first is longer trawls may result in fishermen using stronger vertical lines, causing
more lethal entanglements. ME DMR highlights that as a part of Maine’s proposal, every vertical line in
the Maine lobster fishery will be required to have a weak point which breaks at 1700-pounds. This
measure will limit the breaking strength of vertical lines. The second concern raised focused on the
activation of latent effort. As described in Maine’s proposal, the level of latent effort in the Maine
lobster fishery has been incredibly stable over the last decade. In fact, in 2014 and 2016, the two years
straddling the last trawling up rule, Maine recorded the same number of latent licenses. As a result, there
is not a history of increased effort following previous modifications to the trawl length requirements. ME
DMR also notes that the total number of licenses in the Maine lobster fishery is decreasing as many
Zones have implemented exit ratios which require multiple licenses to be retired before a new license is
issued. Specifically, since 2016, the total number of Maine lobster licenses has decreased by 134.
ME DMR also notes slide 29 of NMFS’s presentation on the Proposed Rule shows that, by far, the
greatest impact of the new trawling up measures is on the Maine lobster fishery. Specifically, the table

5

estimates 1,602 fishermen in Maine non-exempt waters will be impacted by the new trawl length
minimums. In contrast, 82 fishermen in LMA 3, 21 fishermen in Massachusetts, 7 fishermen in Rhode
Island, and 0 fishermen in New Hampshire are expected to be impacted by the trawling-up measures.
Given the magnitude of impact in Maine, ME DMR is confident the higher trawl length minimums will
reduce the number of vertical lines in Maine waters.
Weak Points
ME DMR generally supports the weak point configurations as proposed in NMFS’s preferred
Alternative 2. As noted above when discussing trawling-up minimums, the Maine Lobster Zone
Councils worked to develop CE proposals which recognize Maine’s diverse fishing practices. Some of
the CE proposals recommend changes to the weak point configurations and these proposed changes can
be found in Table 2. ME DMR strongly recommends NMFS include the Zone-specific CE proposals in
the final rule.
Within the Proposed Rule and DEIS, Maine’s proposal for weak points between the exemption line and
the three-mile line is incorrectly stated. In Table 3 of the Proposed Rule, Maine’s weak point measures
between the exemption line and the three-mile line are written as 2 weak points, one 25% and one 50%
down the vertical line. However, Maine’s proposal included 1 weak point 50% down the vertical line in
all state waters; this is identical to what is proposed for New Hampshire, Massachusetts, and Rhode
Island state waters. The error is also found in Table 1.1 and Table 3.3 of the DEIS; however, it appears it
is correctly written on page 3-55 of the DEIS. To be clear, ME DMR is proposing, and supports, 1 weak
point 50% down the vertical line in all state waters.
Throughout the DEIS, it is frequently stated that weak points every 40ft are equivalent full weak rope.
However, there is no citation or scientific support provided for this statement. To the knowledge of ME
DMR staff, there has been no study which equates a specific number of weak points to full weak rope.
As described in Maine’s original proposal to NMFS, the use of 40ft spacing was originally discussed in a
2009 report by the International Fund for Animal Welfare on gear marking. The report suggests that
because 90% of the gear recovered from whales is at least 40 ft in length, marking gear every 40 ft
would result in 90% of recovered gear having a mark which can be used to discern fishery and/or set
location. The first time 40ft spacing was used in conjunction with weak points was in a 2017
Massachusetts South Shore Lobstermen’s Association proposal. Here, the Lobstermen’s Association
proposed implementing a weak sleeve every 40ft to have the sleeves act as both weak points and gear
marks, not because scientific literature supported this spacing. It now appears the 40ft spacing has taken
on a life of its own, becoming a standard against which weak point proposals are judged.
The DEIS also appears to misconstrue how and where rope breaks, particularly with regard to
engineered 1700-lb rope. The DEIS asserts that the greater number of weak points in a vertical line, the
closer the line is to full weak rope, at least in its calculation of risk reduction. The DEIS also notes the
greater number of weak points in the line, the more likely the weak point will be outside of the mouth of
the NARW where it can more easily break free. The implicit assumption here is with a full weak rope, a
NARW should be able to break the line at any place because there will be a section of line outside of the
whale’s mouth which breaks at 1700-lbs. However, this fails to recognize that a rope breaks at its
weakest point, which is where that piece of rope connects to another. Even a full 1700-lb line will be 4060% weaker at its connection point and will break there (Figures 1, 2), making the trailing gear left on a
whale the same whether there is a single weak point halfway down or a 50% full weak line topper. ME
DMR has conducted breaking tests involving more than 1,500 pieces or rope, weak rope, and weak point
connection types. These tests have shown lines consistently break at the connection point. Therefore, the

6

weakest point on full 1700-lb rope is where it is connected into the rest of the vertical line, and not some
intermediate point on the rope.

Figure 1: Percent reduction in break strength from rope breaking tests conducted by ME DMR. The samples
include new rope from a variety of manufacturers, and in varying diameters. Reductions in breaking strength for
various connection point types, as well as a segments of rope with no connections, are shown. Reduction in
breaking strength was measured from the breaking strength of the weakest rope in the configuraton.

Figure 2: Picture of a 1700-lb weak rope on the rope breaking machine at ME DMR. This example shows a ½”
weak rope (1700 lb) and ½” Everson sink, connected by a butt (or inline) splice. The weak rope broke at the
connection point to the Everson sink line.

7

For these reasons, ME DMR does not support NMFS’ method to calculate risk reduction based on the
frequency of weak points relative to 40ft. In the DEIS, NMFS averages two methods to determine the
potential risk reduction from weak points. One method, which DMR supports and used, considers the
depth at which weak points are implemented. This calculation makes sense because it acknowledges at
what depth the vertical line is likely to break. It also acknowledges that a rope with its weakest point
50% down the line will break at the same place as a vertical line that has a 50% weak rope topper. ME
DMR believes this method is valid, defensible, and doesn’t arbitrarily award higher risk reduction to
some configurations without evidence to support it.
The second method considers the frequency of weak points, with the assumption that a weak point every
40ft is equivalent to full weak rope. For the reasons outlined above, ME DMR does not support this
method because it relies on a 40ft standard which has no basis in literature. It also relies on rationale
which does not accurately reflect how and where rope breaks. Giving credit only the to the 40ft. of rope
on either side of a weak point does not acknowledge the fact that the line broke free with a decreased
risk of serious injury and mortality. Assigning higher risk reduction credit for a higher frequency of
weak points or full weak rope gives a false sense of knowledge about where that rope will break.
In using the first method, rather than averaging the output of the two methods, the measures proposed in
Maine waters achieve a 60% risk reduction. As noted in Knowlton et al. (2016), the “adoption of ropes
with breaking strengths of ≤ 7.56 κN (≤1700 lbs) could reduce the number of life-threatening
entanglements for large whales by at least 72%.” 2 As a result, literature supports significant risk
reduction from the use of vertical lines which break at 1700 lbs.
LMA 1 Restricted Area
There is insufficient evidence to support the finding that the LMA 1 Restricted Area will achieve
significant protections for NARWs. In particular, ME DMR is surprised to see that, of all the closures
(either existing or proposed) in the DEIS, the LMA 1 Restricted Area is expected to achieve the highest
level of risk reduction. As outlined below, the DEIS lacks adequate data to support this finding.
Page 3-71 of the DEIS describes a hot-spot analysis used to identity the bounds of the LMA 1 Restricted
Area. This analysis primarily relies on the Duke Habitat Model and appears to be conducted solely in
Maine’s portion of LMA 1. Given the DEIS admits that “aerial surveys in recent years have been sparse
for this area”, 3 ME DMR questioned if older data may be driving the identification of this closure within
the Habitat Model. This consideration is important given there has been a well-documented shift in
NARW distribution since 2010. 4 As a result, should NARW sightings prior to 2010 be driving the
identification of the area as a ‘hot-spot’, the proposed Restricted Area may not reflect current trends in
NARW distribution, especially given this analysis does not incorporate the rest of the New England
region covered by this proposed rule. To investigate this, ME DMR reviewed the Duke Habitat Model to
compare the number of NARWs measured in the proposed LMA 1 Restricted Area across time. Our
investigation found that, within this closure, the number of NARW units is two times higher between
2003 and 2009, than it is between 2010 and 2018. Thus, older data seems to be having a larger influence
on the identification of the LMA 1 Restricted Area. Interestingly, the DEIS acknowledges this decline in
NARW occurrence in the Gulf of Maine, but argues “while there is a reduction in the magnitude of use
Knowlton, A. R., Robbins, J., Landry, S., McKenna, H. A., Kraus, S. D., and T. B. Werner. 2015. Effects of fishing rope
strength on the severity of large whale entanglements. Conservation Biology, 30, 2:318-328.
3
NMFS. 2020. Draft Environmental Impact Statement, Regulatory Impact Review, and Initial Regulatory Flexibility
Analysis for Amending the Atlantic Large Whale Take Reduction Plan: Risk Reduction Rule Volume 1. Pg 3-72.
4
Davies et al 2019; Davies et al. 2017.
2

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in the Gulf of Maine, the distribution of NARWs has remained consistent”. 5 ME DMR disagrees with
NMFS’s assertion that older data is still suitable as long as the distribution has not changed. ME DMR
contends that the magnitude of NARWs in the Gulf of Maine is a critical factor in assessing the efficacy
and impact of potential management measures, particularly area closures. Further, the magnitude of
NARWs in a region directly contributes to risk reduction levels. It is thus counterintuitive for an area
which is experiencing a decrease in the magnitude of NARWs to achieve such high levels of risk
reduction from a closure.
NMFS also identified two additional sources of information as supporting evidence for the proposed
LMA 1 Restricted Area. First, the DEIS cites a paper by Cole et al. 2013 indicating the presence of
NARWs in the region. The aerial surveys in this paper were conducted between 2002 and 2008 6, before
the 2010-shift in NARW habitat use. As a result, these aerial surveys do not reflect current trends in
NARW distribution. The DEIS also cites recent work with acoustic gliders in 2018 and 2019 in the
offshore Gulf of Maine. ME DMR mapped NARW detections from the last few years of glider data and
found that 73% of the reported positions of the NARW detections were outside of the proposed LMA 1
Restricted Area (Figure 3). Further, the temporal deployment of the gliders is inconsistent with the
timing of the proposed closure. The gliders are deployed from eastern Maine in December, reaching the
closure sometime in January. In contrast, the LMA 1 Restricted Area is proposed to start in October and
end in January. The minimal overlap in timing between the glider and the proposed closure means this
acoustic data provides very little data supporting the findings of the Habitat Model.

Figure 3: NARW detections (red circles) recorded by acoustic gliders between 1/12/2019 and 1/25/2019. The
yellow box represents the proposed LMA 1 Restricted Area.
NMFS. 2020. Draft Environmental Impact Statement, Regulatory Impact Review, and Initial Regulatory Flexibility
Analysis for Amending the Atlantic Large Whale Take Reduction Plan: Risk Reduction Rule Volume 1. Pg 3-72.
6
Cole, T., P. Hamilton, A. Henry, P. Duley, R. Pace, B. White, and T. Frasier. 2013. Evidence of a North Atlantic right
whale Eubalaena glacialis mating ground. Endangered Species Research 21:55-64.
5

9

The analysis presented in the DEIS also raises questions about the methods used to identify the LMA 1
Restricted Area and its expected utility. Table 3.4 of the DEIS shows various risk reduction percentages
for the different measures included in the DEIS. ME DMR was surprised to see the risk reduction
expected for the LMA 1 Restricted Area (10.8%) is higher than the risk reduction achieved with the
closure of the Massachusetts Restricted Area (MRA) from February through April (9.9%). Given over
half of the NARW population annually visits the MRA during the closure, it seems unreasonable to
expect a lower risk reduction for the MRA than for the proposed LMA 1 Restricted Area, where there is
no evidence showing significant and recent NARW aggregations. A comparison of the proposed LMA 1
Restricted Area versus the proposed Georges Basin closure in Alternative 3 raises similar questions,
particularly since both closures were derived using the same methodology. The Georges Basin closure is
only expected to achieve a 6.5% risk reduction; however, in comparing Figures 3.4 and 3.5 from the
DEIS, the scale on the Georges Basin hot spot analysis is 5 times higher than that of the LMA 1
Restricted Area. If the two figures were presented on the same scale, it is likely the region within the
LMA 1 Restricted Area would not be identified as a hot spot. It is unclear how the scales for the two
figures can be so different, but the LMA 1 Restricted Area receives a higher risk reduction percentage.
It is also unclear why NMFS conducted a hot-spot analysis for LMA 1 and then a separate hot-spot
analysis for LMA 3. If the intent is to identify closure locations which provide the greatest benefit to
NARWs, ME DMR suggests the region should have been analyzed as a whole, rather than by
management area. When ME DMR assessed the outputs of the Habitat Model across the northeast
region, as opposed to just looking at a single LMA, the results showed that predicted areas of high right
whale density were not confined to LMA 1. In fact, Figure 4 shows that LMA 1 appears to be a
relatively small portion of an offshore Gulf of Maine ‘hot-spot’. Therefore, it seems incongruous, and
counter to the biological basis of the LMA 1 Restricted Area, to have different management measures in
different areas of this broader ‘hot-spot’.

Figure 4: Image from Duke Right Whale Habitat Model showing right whale abundance per 100km2 from
October through January. Data in the Duke Habitat Model is from 2010-2018. Black lines outline the Maine
Lobster Management Zones in Maine’s portion of LMA 1.

10

Overall, there is very little data supporting the finding that this closure will provide meaningful
protections to NARWs, let alone that it would be the most important area closure to NARWs. Instead,
evidence reviewed by ME DMR suggests that this closure will result in disproportionate negative
impacts to the Maine lobster fishery compared to its resulting protection to NARWs. As a result, ME
DMR does not support the LMA 1 Restricted Area. An area closure is an appropriate management tool
for regions where there are known and consistent aggregations of whales. For the proposed LMA 1
Restricted Area, the number of whales using the Gulf of Maine has decreased and there are no data to
suggest continued and consistent use of this area by NARWs. As a result, NMFS has failed to provide
evidence that the LMA 1 Restricted Area meets the necessary criteria of an effective area closure.
Implementation of the LMA 1 Restricted Area would set a dangerous precedent in which management
measures are implemented based on model outputs with very little corroborating data or evidence. Given
the change in distribution of NARWs in the last decade, monitoring of potential closure areas should be
undertaken before implementation of area closures to ensure model outputs match reality.
If, despite these concerns, NOAA concludes the closure is necessary, ME DMR supports the trigger
approach over immediate implementation of the closure. The trigger approach acknowledges the lack of
data supporting the biological benefit of this closure and allows future conditions to determine its
implementation. The trigger approach also allows for the collection of data to better inform future
decision making.
There are several data collection efforts which could provide much needed information on the presence
of right whales and fishing gear in the region, and thus inform a future trigger. ME DMR has recently
received a grant to purchase and deploy at least eight passive acoustic sound traps to record right whale
vocalizations within the offshore Gulf of Maine. Sound traps will be set in the spring of 2021 and will be
used to target offshore areas of interest, including the proposed LMA 1 Restricted Area. These archival
units will also be run in tandem with eight existing sounds traps that have been placed in inshore Maine
through a collaboration between DMR and the NEFSC. The deployment of sound traps will provide a
critical source of information to annually assess right whale occurrence and habitat use. This information
could also be used to inform future management, including a trigger for the LMA 1 Restricted Area.
Based on information collected with the sound traps, NMFS could develop a trigger for the
implementation of the closure based on a specific number of detection days. For example, a recorded
number of detection days in year 1 could be compared to a trigger to determine implementation of the
LMA 1 Restricted Area in year 2.
Equally important is the collection of data on fishing effort in the region. As is noted in the DEIS, there
is a lack of information on the spatial location of the lobster fishery. This means the amount of fishing
gear in the proposed LMA 1 Restricted Area must be estimated based on models and assumptions.
NMFS staff has suggested there is concern about effort in the lobster fishery moving offshore. If this
concern is driving the proposal of the closure, the easiest way to elucidate spatial trends in fishing effort
is to require the use of trackers on all vessels wishing to fish in the LMA 1 Restricted Area. This would
not only allow for the collection of data on fishing activity, but it would better inform expected risk
reductions and strengthen our understanding of potential economic impacts. Requiring trackers on
vessels looking to access an area is comparable to other federal fisheries where, if a vessel wants to fish
in an exemption area or gear restricted area, greater levels of reporting and observer coverage are
generally required. ME DMR supports the requirement for trackers on vessels wishing to access the
LMA 1 Restricted Area and notes that, like the sound traps, information collected through trackers could
be used to develop a trigger for implementation of the closure based on fishing effort.

11

Importantly, ME DMR strongly recommends that the trigger mechanism and the closure be aligned
spatially and temporally. While DMR has provided some suggestions on the development of potential
triggers, as currently proposed, the Regional Administrator would annually assess conditions in the
Northeast trap/pot fishery to determine if the implementation of the closure is necessary to reduce the
frequency of entanglements by 60%. Given how few entanglements have been linked to the Northeast
trap/pot fishery, ME DMR interprets this to mean that any entanglement in the Northeast trap/pot fishery
would trigger implementation of the closure. A primary concern of ME DMR is that, under this proposed
approach, it would be possible for an NARW entanglement outside of Maine to trigger a closure in
Maine waters. This breaks the causal link between a potential future entanglement and the subsequent
management response. If NMFS is going to use a trigger approach for implementing the LMA 1
Restricted Area, ME DMR strongly recommends the trigger mechanism and the resulting closure be
spatially aligned so that future conditions in Maine are the basis of the trigger. Further, the information
to assess the need for a closure should be temporally aligned with the timing of the closure. At present,
the Regional Administrator would assess conditions in advance of October to determine if the closure is
necessary. However, this method assumes that unfavorable conditions in the first half of the year can be
remedied by a closure starting in October. This assumption is not true as risk varies through time and
space. Instead, conditions in October through January in year 1 should dictate the implementation of a
closure in year 2.
Also important to the success of a trigger is the amount of advanced notification given to fishermen. The
proposed rule does not specify a date by which fishermen would be notified about the triggering of the
LMA 1 Restricted Area. Given its distance from shore, DMR anticipates that it could take significant
time for a lobsterman to remove gear from the region, particularly if the majority of his or her traps are
located offshore. As noted above, ME DMR supports a trigger mechanism that is aligned spatially and
temporally with the Restricted Area, such that conditions in year 1 determine whether the closure is
implemented in year 2. This system would provide ample notice to fishermen to plan out the location of
their fishing activities in a subsequent year.
ME DMR also underscores industry-identified deficiencies in the economic impact analysis associated
with the LMA 1 Restricted Area. Chapter 6 of the DEIS states that implementation of the LMA 1
Restricted Area will impact 45 vessels at an economic cost of $106,000-315,000. Many industry
members have reached out to ME DMR indicating that this economic analysis significantly
underestimates the impact of the closure. Based on 10% harvester reporting and 100% dealer reporting,
ME DMR estimates that in the fourth quarter of 2019 (October – December), there were 2,687 trips to
waters outside of 12nm from shore in Zones C, D, and E. 7 These trips landed a total of 3,972,842 pounds
of lobster at an estimated value of $22.3 million. 8 Looking at the first quarter (January – March) of
2019, ME DMR estimates there were 1,075 trips to Zones C, D and E outside of 12nm. These trips
landed a total of 798,414 pounds of lobster at an estimated value of $5.1 million.
To better identify economic impacts of the closure, ME DMR staff took the ratio of the area of the
proposed LMA 1 Restricted Area to the total area of each zone outside 12 miles from shore. This was
then multiplied by the first and fourth quarter values for each zone outside 12nm in which the closure
occurs to estimate the value of the fishery within the closure. The result is that, in the first and fourth
Methods for how ME DMR estimates pounds landed and value by Zone and distance from shore can be found here:
https://htmlpreview.github.io/?https://github.com/mainedmr/DMR-GISDocs/blob/master/mainedmr_lobster_ec_metadata.html
8
Value is based on the average value for that quarter based on dealer reports.
7

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quarter of 2019, ME DMR estimates 19.4% of Maine’s lobster landings from outside 12 miles from
shore came from the proposed LMA 1 Restricted Area. This results in an estimated economic value of
$12.7 million. Based on this analysis, the economic impacts in the DEIS appear to significantly
underestimate the value of the catch impacted by this closure. In fact, based on this analysis a 5% and
10% decrease in the value of catch would equate to $636,000 and $1.27 million, respectively; this
estimate is 3.6 times higher than what is shown in Table 6.12 of the DEIS. As a note, ME DMR is
unclear how the 5% and 10% reductions in catch were calculated from the data presented in Table 6.12.
When ME DMR multiples “Total Catch (kg)” by “Price ($/kg)” and then takes 5% and 10% of this
product, Maine gets significantly different values than what is presented in the columns labeled “5%
Value ($)” and “10% Value ($)”.
Finally, in calculating the costs associated with the closure, NMFS only focuses on the estimated 45
displaced vessels and deducts percentages off their catch. However, this analysis does not consider the
indirect impacts on other fishermen in adjacent regions. As ME DMR noted in its September 2019
scoping comments, an area closure can result in increased gear density around the closure boundary. The
DEIS predicts this aggregation of gear will occur as fishermen impacted by the LMA 1 Restricted Area
are expected to relocate gear closer to shore, as oppose to remove their gear from the water. While
analysis in Chapter 5 of the DEIS suggests this will not result in an increase in right whale cooccurrence, this does not consider resulting impacts on fishermen. For example, for fishermen who do
not fish in the closure but just adjacent to it, the relocation of gear shoreward of the closure boundary
will negatively impact their catch. Denser aggregations of gear outside the closure may also result in
increased set overs. These secondary impacts are not accounted for in the DEIS but represent real-life
consequences to implementation of a restricted area.
Gear Marking
ME DMR supports the gear marking scheme proposed in preferred Alternative 2. While gear marking
does not specifically reduce the risk of entanglement to NARWs, entanglements of unknown cause
which are subsequently attributed to a region or fishery do have real world consequences for fisheries
with vertical lines. NMFS’s proposal to increase the number of markings, and the spatial specificity of
those markings, should help increase the frequency with which future entanglements can be linked to a
specific fishery.
As is noted in the Proposed Rule, ME DMR implemented enhanced gear marking in the Maine lobster
fishery in September 2020. The gear marking scheme outlined in the Proposed Rule and DEIS largely
follows what was implemented by ME DMR; that said, there are a few inconsistencies. First, in Maine’s
regulations, the number of 1-foot marks in state waters, in addition to the 3-foot mark, is based on the
length of the buoy line as opposed to the depth of water, as indicated in Table 3.3 of the DEIS. Maine’s
regulation for buoy lines less than 100ft in length appears to be correctly described on page 3-77 of the
DEIS. Second, in the sliver between Maine’s exempted waters and federal waters, ME DMR requires the
6-inch green mark in the top two fathoms of the buoy line. While this appears to align with what is
presented in Table 3.3 of the DEIS, it is different than what is included in Table 1.1 of the DEIS and in
the Fact Sheet, where the six-inch green mark is only required in federal waters. To be clear, Maine is
requiring a 6-inch green mark outside of exempted waters, including the sliver area.
ME DMR was disappointed to see that the economic impacts of gear marking in the Maine lobster
fishery were not included in the DEIS. While the justification given is that the costs of gear marking
have already occurred and are not a direct result of the Proposed Rule, ME DMR highlights that the
enhanced gear marking requirements were implemented in direct anticipation of this Proposed Rule.

13

Moreover, knowing additional gear marking was going to be proposed in the rulemaking, ME DMR
proactively implemented regulations. By not including the economic costs of gear marking in the Maine
lobster fishery, the economic impact of this rulemaking is not fully captured. Further, this policy creates
a disincentive for states to proactively implement regulations to protect NARWs, given it is now clear
any associated costs will not be analyzed in the DEIS. ME DMR’s highest priority is on-time
rulemaking. That said, ME DMR strongly recommends the costs associated with gear marking in the
Maine lobster fishery be included in the FEIS.
Testing of Ropeless Technology in Closed Areas
The Proposed Rule includes a renewed focus on the development of ropeless fishing. This is proposed
primarily through the use of Exempted Fishing Permits (EFPs) within closed areas. Given the need to
apply for an EFP to use ropeless fishing gear, ME DMR agrees with NMFS inherent assessment that
ropeless fishing is not ready for ‘prime time’.
While there has been increased testing regarding the retrieval of a trap from the ocean floor via ropeless
gear, significant challenges with the operation of ropeless technologies within the broader maritime
community still exist. For example, mobile gear fishermen need to identify the location of ropeless gear
so they can avoid gear conflicts when operating bottom-tending gear. To date, impacts to the mobile gear
fleet have largely been ignored. Dynamics within Maine’s lobster fishery provide additional challenges
as fishermen often sets traps close to one another as they compete for hard and dynamic bottom
substrate. The effectiveness of ropeless fishing gear when it is set close together, or on top of one
another, has not been tested. There are also financial challenges regarding the adoption of ropeless gear,
including the high cost of the technology relative to existing operating costs. Maine lobster license
holders are both owners and operators. Fisherman have been clear that, based on the current estimated
cost of ropeless fishing, adoption of this technology will upend their business models putting many out
of business. Uncertainties regarding long-term costs of ropeless fishing also make business planning
impossible. For example, it is unclear how frequently ropeless technology will need to be replaced or at
what rate gear will be lost, whether that be from the ropeless technology failing to deploy or increased
gear conflicts.
ME DMR recognizes that some fishermen are interested in pursuing ropeless fishing technology to be
able to access closed areas. That said, ME DMR is concerned that the proposed method for
administering the testing of ropeless fishing has not been thoroughly considered, and that the impacts to
other fisheries have not been evaluated in the DEIS. The use of an EFP to test ropeless fishing allows
NMFS to track the number of fishermen testing this technology; however, it is unclear how other
fishermen would know about these tests or the precise location of the ropeless gear. According to a
GARFO webpage on EFPs 9, the location of the exempted fishing activity is required in the application;
yet, location is described in terms of broad areas such as statistical area or closed area. In reality, specific
coordinates would be needed so mobile gear fishermen and ropeless technology can co-exist in areas
where both fisheries operate. In the absence of this information, ME DMR is concerned mobile gear
fishermen will be forced out of large areas given the uncertainty in the precise location of the ropeless
fishing gear. In fact, NMFS’s intent to close areas which are sufficiently large to provide protections to
whales results in greater uncertainty for the mobile fleet in terms of where ropeless technology may be
located. At present, the DEIS does not, either qualitatively or quantitatively, discuss impacts to the
mobile gear fleet.
https://www.fisheries.noaa.gov/new-england-mid-atlantic/sustainable-fisheries/scientific-research-and-exempting-fishingpermits#application-requirements
9

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On the January 7th Atlantic Large Whale Take Reduction Team call, a question regarding the potential
impacts of ropeless fishing gear on the mobile gear fleet was raised. ME DMR was surprised to hear
NMFS suggest a potential solution to this problem would be to require an agreement between mobile
gear fishermen and the trap fisherman as a condition of the EFP. Asking a fisherman to undertake a
potentially controversial negotiation with other fishermen seems unreasonable and unrealistic. Industry
agreements between the mobile gear fleet and trap/pot fisheries have occurred in the past but many, such
as an agreement in Closed Area II, are codified in fishery management plans. It is unlikely NMFS is
asking for codified agreements between segments of the fishing industry, but it is also unclear what
would constitute a sufficient level of agreement for approval of an EFP or how NMFS would ensure all
affected parties have been party to and agreed to any negotiated outcome.
ME DMR is also concerned that by permitting the testing of ropeless technology through an EFP, there
is no mechanism to enforce lobster resource management measures by participating vessels. Currently,
no marine enforcement vessels in Maine are equipped with the technology needed to retrieve ropeless
fishing devices and appropriately set back the gear. Without adequate resources to properly equip law
enforcement vessels and train officers on the use of that equipment, the testing of ropeless fishing in
closed areas, such as the proposed LMA 1 Restricted Area, could result in inadequate enforcement of
lobster resource management measures.
Overall, if NMFS pursues the EFP as a method to test ropeless fishing, ME DMR strongly recommends
the FEIS include an evaluation of potential impacts on the mobile gear fleet and on the ability to enforce
lobster resource management measures. There are many challenges facing ropeless fishing, both in the
development of the technology and in its testing. Unfortunately, the lobster fishery finds itself in a
situation where future risk reductions prescribed in the draft Biological Opinion could require adoption
of this technology. ME DMR is willing to engage with NMFS on ropeless technology to address the
issues outlined above, but we need to work within operational realities. A potential area of collaboration
is on NMFS’s roadmap to ropeless fishing; development of this roadmap presents an opportunity for ME
DMR to highlight challenges with ropeless fishing, consider solutions, and identify metrics to determine
when specific challenges have been addressed.
III. NMFS’s Non-Preferred Alterative 3
Overall, ME DMR does not support NMFS Alternative 3. However, we provide the following comments
on measures included in Alternative 3 given some of the management tools were considered, but
ultimately rejected, by ME DMR when developing the state’s proposal.
Line Cap for Federal Permit Holders
As mentioned in the DEIS, ME DMR discussed a line tag system, very similar to a line cap, when
developing the state proposal. The obvious advantage of this system is it provides flexibility to adapt
new regulations to a diverse set of individual fishing practices and businesses. Even with this flexibility,
ME DMR decided not to pursue this alternative for several reasons. The first is that developing a method
to allocate vertical lines is a tremendously complex and time-intensive process. Just like developing an
allocation system for quota takes many years, a line cap system would similarly have to pinpoint primary
data sources, identify qualifying criteria, outline an allocation method, and engage industry. This is made
all the more challenging by the fact that, for most lobstermen, we don’t know how many vertical lines
they fish. In recognition of this, the DEIS proposes using dealer data to determine the number of
endlines allocated to a fisherman; however, this means landings, not effort data, would be used to

15

determine the number of vertical lines a fisherman receives. Since catch per unit effort is not uniform
across time and space, pounds of lobster landed is not an appropriate proxy for the number of vertical
lines used. Furthermore, dealer data does not consider the existing trawling up requirements in place,
whereby an offshore fisherman and an inshore fisherman may land a similar number of pounds but be
subject to different trawling-up requirements. For any allocation method developed, there would
undoubtably have to be an appeal process in which fishermen could petition for a different number of
vertical lines based on new, missing, or incomplete information. With all of this complexity, it is almost
certain the trawling up measures, as proposed in Alternative 2, could be more efficiently implemented
than a line cap system. The ability to implement new regulations in a reasonably expedient timeframe is
important given the poor status of the NARW population.
The administrative burden of a line cap system is also something which deterred ME DMR from
pursuing this management measure. Already, the lobster fishery uses trap tags to identify legal traps and
monitor the number of traps being fished by an individual. The annual administrative burden of
executing contracts with a trap tag provider and distributing trap tags to thousands of fishermen is not
insubstantial. Importantly, for a line cap system this administrative burden not only includes the annual
tasks associated with distributing line tags for both ends of the buoy line but also upfront staff time to
develop the allocation system. Based on the description of the line cap on page 5-142 of the DEIS, it
appears NMFS plans to divert both of these responsibilities to the Atlantic States Marine Fisheries
Commission and the New England states. Placing these burdens on the New England states will exceed
staff resources at ME DMR.
Extension of LMA 1 Closure into February
A key aspect of the Alternative 3 proposal is the extension of the LMA 1 closure into February.
Interestingly, the DEIS describes the closure in February as a ‘soft restricted area’ where, based on aerial
or acoustic surveys, the Regional Administrator could shorten the closure if no NARWs are detected.
Given the lack of existing aerial surveys or consistent real-time acoustic assets in the Gulf of Maine
during this time period, it is unclear how this dynamic closure approach would be feasible. While ME
DMR plans to deploy sound traps to the offshore region, these do not provide real-time data and could
not be used to support dynamic management.
The extension of the LMA 1 restricted area into February also appears to result in very little additional
risk reduction. In comparing the risk reduction percentages achieved under the two alternatives in Table
3.4 of the DEIS, it appears the risk reduction benefit of the February closure is, on average, only 0.7%.
That said, the economic impacts of this extension are substantial, particularly given the generally high
price for lobster at this time of year, as noted in Table 6.12. As described on page 12 of this letter, in the
first quarter of 2019, ME DMR estimates there were 1,075 trips to Zones C, D and E outside of 12nm.
These trips resulted in 798,414 pounds of lobster landed with an estimated value of $5.1 million. While
this represents an upper-bound of the economic impact of the extended closure given the longer time
period and larger area considered, it does suggest there would be substantial costs from expanding the
timeframe of the closure.
Weak Line 75% Down Vertical Line
Alterative 3 proposes full weak rope in the top 75% of all buoy lines. ME DMR is opposed to this
management measure because of feedback from fishermen that it would be unsafe to haul gear with
weak points below 50% of the vertical line. Additionally, load cell data collected by ME DMR and the
University of Maine documenting hauling strains of fishing gear corroborates these serious safety
concerns for fishermen using longer trawls, fishing in deeper water, or fishing in strong tidal currents. As

16

discussed on pages 22-25 of ME DMR’s December 2019 proposal, the data collected by load cells on
hauling strains indicates a combination of longer trawls (20 trap trawls or greater) and deeper water (100
fathom or deeper) frequently result in loads above 1700 pounds. Given increases in the number of traps
per trawl are included directly in Alternative 2, and indirectly through line caps in Alternative 3, it is
likely all trawls outside of 12nm from shore will exceed 20 traps and, depending on depth, will
experience loads greater than 1700 pounds during hauling. Other conditions such as set-overs, hang
downs, strong tides, and poor weather or sea conditions will further increase hauling strains, causing
lines which may be in less than 100 fathom of water or attached to fewer than 20 traps to exceed 1700
lbs of load and break. ME DMR is opposed to any management measure which will compromise the
safety of fishermen at sea.
If a requirement for full weak rope in the top 75% of all buoy lines was to be implemented, a likely
response would be for fishermen to drastically increase the amount of rope in the water. This would
occur two ways. The first response would be to lengthen the scope of the vertical line so that there is still
enough length in the 25% of the line which is not weak rope to ensure sufficient strength when hauling
multiple traps in the water column. The second response would be to increase the length of groundline
between the first and second traps, in order to reduce the number of traps in the water column, and thus
the hauling load, on the vertical line. In either case, adding more rope to the water column is contrary to
the intent of this Proposed Rule. More rope, both in the scope of the vertical line and in the groundline,
creates slack which can pose greater risk to NARWs.
Gear Marking with Woven Identification Tape
Alternative 3 proposes, in addition to a state-specific gear mark at the top of the line, an ID tape woven
throughout the length of a vertical line. The intent is to increase the frequency with which gear
associated with a NARW entanglement can be identified. While ME DMR generally supports efforts to
increase gear marking, the substitution of a woven ID tape for fewer state-specific gear markings seems
not only confusing to industry but also disingenuous to their recent gear marking efforts. Thousands of
Maine fishermen have spent countless hours repainting their vertical lines with purple and green marks;
to change these requirements yet again will result in frustration and poor compliance.
The concept of an ID tape also appears to be far from ready for implementation. Page 6-220 of the DEIS
notes that ID tape ropes are not currently available from suppliers and pricing of this technology could
not be determined. As a result, important questions about the ID tape remain such as how often it needs
to be replaced or what the costs are to industry. The DEIS also fails to estimate any economic impact of
a woven ID tape on the Maine lobster fishery. While the DEIS uses the fact that Maine has already
implemented state-specific gear marking as justification for not including the fishery in the economic
analysis in Alternative 2, the DEIS fails to acknowledge that no state has adopted woven ID tapes as
described in Alternative 3. Therefore, Alternative 3 would impose additional costs on Maine fishermen
which are not represented or calculated in the DEIS. This is on top of the costs which Maine fishermen
have already incurred from the state proactively adopting enhanced gear marking.
600-lb Weak Link
Alternative 3 considers the removal of the 600-lb weak link for all vertical lines which incorporate 1700
lbs weak points or use weak line. The requirement for weak links at the buoy was one of the earliest
measures adopted in the Atlantic Large Whale Take Reduction Plan (ALWTRP). However, as outlined
in the DIES on page 3-64, there are now concerns that the weak link may have unintended consequences
such as removing resistance created by the buoy in an entanglement or hampering disentanglement
efforts and the subsequent identification of fishing gear. Based on these comments, ME DMR is

17

concerned the 600-lb weak link is not an effective management tool and recommends it be removed
from the ALWTRP. Following this rulemaking, fishermen will be subject to a significant number of
regulations which increase the cost of their operation and compromise safety at sea. Requiring measures
which are not effective is not helpful to NARWs or fishermen.
IV. Zone Conservation Equivalency Proposals
Following submission of Maine’s statewide NARW proposal, ME DMR initiated conversations with
each of the Lobster Zone Councils to provide the opportunity to develop CE proposals. Through this
process, Zones were asked if they wanted to make Zone-specific changes to the state-wide proposal (i.e.
traps per trawl minimums and weak points) to address regional concerns. Importantly, the CE proposal
had to meet a similar level of risk reduction, or achieve a higher level of risk reduction, as the Zone
originally achieved under the statewide plan. These criteria ensured the cumulative changes to ME
DMR’s statewide plan would not result in a loss of risk reduction, but instead would maintain or increase
the level of risk reduction achieved.
ME DMR staff worked with the Lobster Zone Councils throughout 2020 to identify potential alternatives
and conduct analysis on the risk reduction achieved. These Zone-specific conversations allowed industry
to tailor plans which reflect the distribution of gear (taken from the IEC model) and modeled ‘whale
units’ (taken from the Duke whale model) in their region. For example, between 3nm and 12 nm from
shore, Zones C and D have a very low percentage of modeled whale units while Zones A and B have
greater than 30% of their whale units (Table 1). This means changes to measures between 3-12nm from
shore have large impacts on the risk reduction achieved in Zones A and B but relatively little impact in
Zones C and D. These types of considerations allowed the Lobster Zone Councils to propose measures
which balance their regional concerns with an understanding of where their Zone-specific risk is highest.
Table 1: Percent of annual modeled whale units and annual vertical lines, by Maine lobster zone and distance
from shore, from the risk reduction model. Annual modeled whale units to not reflect sightings but are derived
from the Duke habitat model.

Zone G

Zone F

Zone E

Zone D

Ex-3 miles
3-12 miles
12+ miles
Ex-3 miles
3-12 miles
12+ miles
Ex-3 miles
3-12 miles
12+ miles
Ex-3 miles
3-12 miles
12+ miles

% Annual
Whale Units
1%
19%
80%
0%
1%
99%
0%
2%
98%
0%
4%
96%

% Annual
Vertical Lines
47%
45%
8%
38%
47%
16%
60%
27%
12%
66%
22%
12%

Zone C

Zone B

Zone A

Ex-3 miles
3-12 miles
12+ miles
Ex-3 miles
3-12 miles
12+ miles
Ex-3 miles
3-12 miles
12+ miles

% Annual
Whale Units
1%
7%
92%
2%
27%
72%
3%
30%
67%

% Annual
Vertical Lines
76%
20%
4%
59%
38%
4%
59%
33%
8%

In the end, all Zones chose to make some modifications to the statewide plan to reflect their specific
fishing conditions and their spatial trends in risk. ME DMR notes two significant benefits which resulted
from this process. First, by ME DMRs calculation, the risk reduction achieved by the compilation of the

18

CE proposals is higher than the risk reduction achieved under the statewide plan. Second, enabling the
Zones to develop a CE proposal helped to build industry buy-in to the new measures; industry became
instrumental in developing a bottom-up approach to these measures.
Table 2 outlines the CE proposals being brought forth by the seven Lobster Zone Councils. As is evident
in the description of each of the Zones’ proposals below, they all rely on the use of trawl-length
equivalency, whereby a trawl with two endlines is equal in terms of risk to a trawl with one endline and
half as many traps. The innate need for this flexibility has been previously described in this comment
letter but ME DMR highlights this point again in the Zone Council proposals. Many times, Zones
struggled to find a trawl-minimum which worked for all fishermen in their region; the only way they
were able to ensure adequate risk reduction and fishermen safety was by using trawl length
equivalencies.
For some Zones, trawl length equivalencies are also critical because they have trawl length maximums in
state regulations. For example, Zone B currently has a three-trap trawl minimum and maximum from 3-6
miles from shore and a five-trap maximum and minimum in some, but not all, waters from 6-12 miles
from shore (Figure 5). These trawl maximums were implemented to prevent gear conflicts created by the
uniqueness of the area. Specifically, Zone C fishermen fish significant amounts of gear in Zone B, as
Maine lobstermen are allowed to fish up to 49% of their traps in a neighboring zone. This resulted in an
amalgamation of different trawl lengths and fishing practices in a single area. Further, large offshore
trawls, with differences in magnitude much greater than the trawl length equivalencies proposed by
Maine, were being moved inshore; nothing prevented fifteen trap trawls from being fished next to three
trap trawls. Due to these area-specific challenges and the Zone’s authority to set trawl maximums, Zone
B is interested in maintaining equivalent trawl minimums and maximums. They are proposing to raise
their trawl minimum and maximum to 5 traps per single endline between 3-6 miles from shore as a way
to achieve risk reduction but also maintain the uniformity in trawl lengths. Between 6-12 miles from
shore, Zone B is proposing to maintain its five trap trawl maximum and minimum on the eastern half of
the Zone by fishing with one endline; outside of this trawl line, there is no trawl maximum. As a result,
Zone B is proposing trawl length minimum equivalencies of 5 traps per single endline/10 traps per 2
endlines between 6-12 miles from shore to address these different maximum trawl requirements in state
regulations. To do this, NMFS will need to modify 50 CFR 697.21(b)(2) to allow trawls with more than
three traps to be set with a single endline in federal waters.

19

Table 2: Conservation equivalency proposals by the Maine Lobster Zones. ME DMR recommends these measures be included in the FEIS.

20

Zone G
Zone G expressed concern about the operational safety of weak points, particularly at greater depths. As
a result, they proposed increasing the minimum trawl lengths in federal waters to be able to move weak
point requirements further up in the water column. Specifically, Zone G proposed increasing the
minimum trawl length from 3-6 miles to 5 traps per one endline/10 traps per two endlines, and
increasing the minimum trawl length from 6-12 miles to 10 traps per one endline/20 traps per two
endlines. The hope of the Zone was that this would allow them to implement 1 weak point 33% down
the vertical line in federal waters. Ultimately, this initial concept fell short of the original risk reduction
percentage. As a result, Zone G proposed a hybrid weak point configuration outside of 12nm from shore,
where their modeled whale units are highest. The hybrid concept requires 1 weak point 33% down on
one endline of a trawl and 2 weak points, 25% and 50% down, on the other endline of a trawl.
Zone F
Like Zone G, Zone F also expressed concern about the operational safety of a weak point 50% down the
vertical line in federal waters. As a result, they sought alternatives which resulted in a single weak point
33% down the vertical line in federal waters. Zone F also considered the CE proposals from their
neighboring Zones, Zones G and E. Given lobster harvesters in Maine can fish up to 49% of their traps
in an adjacent Zone, it was important to fishermen in Zone F to consider the proposals from neighboring
Zones and create as much consistency as possible, particularly regarding trawl minimums. With these
dynamics in mind, Zone F proposed adopting Zone E’s minimum number of traps per trawl from 312nm from shore (5 traps per one endline/10 traps per two endlines) and Zone G’s minimum number of
traps per trawl outside of 12 miles from shore (25 traps per two endlines).
Zones E and D
Zones E and D expressed concern about the ability for vessels to safely fish 25 traps per trawl outside 12
miles from shore. To make up for this loss of risk reduction outside 12nm from shore, Zones E and D
proposed adding an additional weak point further down the line in order to have a trawl length of 20
traps in this region. Both zones also opted to have the same number of traps per trawl required in the 36nm and 6-12nm distances from shore; this resulted in a uniform trawl length of 5 traps per one endline
and 10 traps per two endlines from 3-12nm. Finally, since both zones had 0% of their whale units
between the exemption line and 3 miles from shore area, they were able to implement a minimum trawl
length of two traps per endline in this region without impacting the overall risk reduction.
Zone C
Like Zones E and D, Zone C expressed concern about the ability of all vessels to safely fish 25 traps per
trawl outside 12 miles from shore. Unlike Zones E and D, Zone C was not able to achieve a 20-trap trawl
length by adding a second weak point further down the vertical line. As a result, Zone C added an
additional weak point outside 12nm from shore and increased the trawl length minimums between 36nm and 6-12nm from shore. This resulted in a minimum of 5 traps per one endline/10 traps per two
endlines from 3-6nm from shore and 10 traps per one endline/20 traps per two endlines from 6-12nm
from shore. These increases in the trawl length, and the fact that only 1% of Zone C’s whale units are
between the exemption line and 3 miles from shore, meant the Zone could implement doubles between
the exemption line and 3 miles.
Zone B
Zone B expressed concern about the trawl length minimums from 6-12 miles from shore. This is
primarily driven by the location of Mount Desert Rock which, while surrounded by state waters, is
located offshore (Figure 5). As a result, there is a “bubble” of state waters around Mount Desert Rock,

21

followed immediately by trawl regulations for 6-12nm from shore. Given this geography, Zone B
fishermen were cognizant of the change in trawl minimums from state waters to 6-12nm from shore and
were uncomfortable with the jump from 3 traps per trawl in state waters to 8 traps per one endline/15
traps per two endlines immediately adjacent. Zone B fishermen also expressed concern about trawl
length maximums in their Zone. From 3-6 miles from shore there is both a 3 trap trawl minimum and
maximum. From 6-12 miles from shore there is a trawl line which runs from the eastern edge of the
Zone northwest to the 6 mile line (depicted in the double hatched polygon seaward of the six-mile line in
Figure 5). Within this polygon, there is both a 5 trap trawl minimum and maximum.

Figure 5: Regulatory map of Maine Lobster Zone B. Orange lines indicate east and west boundaries of Zone B.
The green line is the exemption line, the purple line is the 3 mile line, and the blue line is the 6 mile line. The
different colors indicate the distance from shore bands. Mount Desert Rock is located within the blue circle that is
outlined in purple. The hatched marks indicate trawl maximums in state regulations. All waters in Zone B from 36 miles from shore have a trawl maximum as well as the northeastern section of 6-12 miles from shore, as
depicted by hatched markings.

To address these concerns, Zone B sought to achieve a minimum trawl length of 5 traps per one
endline/10 traps per two endlines from 6-12 miles from shore. As a result, Zone B proposed increasing
the trawl minimum from 3-6 miles from shore to five traps per one endline as well as increasing the
number the number of weak points outside 12nm from shore, where the majority of their annual whale
units are modeled.
In response to the trawl length maximums in state regulation, Zone B plans to amend the current state
regulations such that the new trawl minimum of 5 traps per one endline between 3-6 miles from shore is
also the new trawl maximum. This is why the Zone B proposal only includes a minimum of 5 traps per
one endline from 3-6 miles from shore, as opposed to also having the equivalent risk reduction
configuration of 10 traps per two endlines. From 6-12 miles from shore, part of Zone B has a 5 trap trawl
maximum, which Zone B plans to keep, and the other part of the Zone has no trawl maximum.
Therefore, from 6-12nm from shore, Zone B is proposing the equivalent risk reduction configurations of

22

a minimum of 5 traps per one endline/10 traps per two endlines to account for these differing regulations
in trawl maximums. Trawl length equivalencies are vital to Zone B’s plan to maintain trawl length
uniformity given the unique gear conflict challenges faced in this area.
Zone A
When Zone A began its discussion on a CE proposal, the industry members were split. The western part
of the Zone supported maintaining the measures in the coastwide plan, noting that the trawl minimums,
while an increase, were still operationally safe. The eastern part of the Zone expressed grave concern
about the location and depth of the weak points. Several industry members from the eastern most part of
the Zone noted the extreme and powerful tides which increase the strain and hauling load on their
vertical lines. They also noted that they are quite often contending with set-overs from Canadian lobster
gear. As a result, they were concerned not only about the potential for massive gear loss but also for the
safety of their crew.
The Zone originally tried to develop a single set of trawling up measures and weak point requirements
which balanced the needs of the two ends of the Zone; however, a compromise could not be struck
which achieved the needed level of risk reduction. As a result, ME DMR tried to identify a longitudinal
point at which the oceanographic conditions significantly changed. Looking at the literature, ME DMR
found tidal currents are strongest in Grand Manan channel. 10 Specifically, maximum velocities off of
Schoodic Peninsula, the western end of Zone A, are approximately 0.6 m/s while maximum velocities in
Grand Manan channel, the eastern part of Zone A, are more than double at 1.3 m/s. 11 Further, models of
the currents in eastern Maine show a persistent region off of Cutler, Maine and through the Grand
Manan Channel which develops high water velocities with each tidal cycle (Figure 6). 12 Given this
information, ME DMR worked with industry to identify a line which would split Zone A based on
oceanographic conditions and fishing practices. This line ended up being 67o18’ longitude, which runs
due south from Cross Island. To the west of this line, Zone A is proposing to maintain the statewide
proposed measures and not pursue a CE. To the east of this line, Zone A is proposing to increase the
minimum trawl length from 3-12nm to 10 traps per 1 endline/20 traps per two endlines. This is a
significant increase in the minimum trawl length, particularly between 3-6nm from shore where the
proposed trawl length minimum is over double what is in the DEIS. This large increase in the trawl
minimums was offered so fishermen in the eastern part of Zone A could have 1 weak point 33% down
the vertical line in federal waters.

Conlon, L.M., Xue, H., Morello, S., & Yund, P.O. (2018) Nearshore flow patterns in a complex, tidally driven system in
summer: Part I. Model validation and circulation. Journal of Geophysical Research: Oceans, 123(4), 2401-2421.
11
Conlon et al., 2018.
12
Conlon et al., 2018.
10

23

Figure 6: Maximum water speed during a tidal cycle off of Eastern Maine. Red coloring indicates a higher water
speed during the tidal cycle. Longitude and latitudes are indicated on the axes.

Creating a line in Zone A makes it difficult to use the risk reduction model to determine the resulting
risk reduction percentage in the eastern part of Zone A. As a result, ME DMR used sea sampling data
from this region to determine if the trawl minimums recommended in the CE proposal were higher than
the trawls lengths currently used in the fishery. Since the proposed trawl lengths for the eastern part of
Zone A are higher than those in the statewide plan, by the transitive property a reduction in vertical lines
under the CE proposal would result in a higher level of risk reduction than originally achieved in the
statewide plan. Sea sampling data showed the vast majority of trawl lengths ranged from 6 to 15 traps
per two endlines (Figure 7). As a result, moving to a trawl minimum of 20 traps per two endlines would
reduce the number of vertical lines east of 67o18’, and to a greater extent than the trawl minimums under
the statewide plan. Further, since a reduction in vertical lines, which addresses the need to reduce serious
injury/mortality and the risk of entanglement, was being proposed in place of a second weak point,
which only addresses the need to reduce serious injury/mortality, ME DMR felt the CE proposal resulted
in a stronger conservation plan for NARWs.

Figure 7: Trawl length information collected by ME DMR during sea sampling (2012-2019). Data is presented in
boxes to protect continentality. Different colored boxes represent different averages for minimum trawl length.
The blue line plots the 67o18’ longitude line due south from Cross Island.

24

Overarching Observations
As previously mentioned, every Zone took the opportunity to fine-tune a risk reduction plan which
addressed their region’s specific needs. The multitude of proposals can at first glance appear
overwhelming but interestingly, many similarities emerged from the Zone-specific work. For example,
every Zone except Zone A is proposing a minimum of five traps per one endline from 3-6 miles from
shore. Given this is a higher trawl length minimum than what is outlined in the proposed rule, this should
result in a higher percentage of risk reduction coming from 3-6nm. Outside 12nm from shore, four Zones
are proposing a 25-trap trawl minimum and three zones are proposing a 20-trap trawl minimum.
Similarly, between the exemption line and 3 miles from shore, the same four Zones are proposing a 3trap trawl minimum while the other three zones are proposing a 2-trap minimum. Thus, in the end, there
are many similarities between what the Zones are proposing.
V. Additional Comments
Conservation Equivalency
A key component of Maine’s December 2019 proposal was a method for CE, by which measures of
equal or greater risk reduction value could be swapped with existing measures. Based on the
presentations given by NMFS staff on this Proposed Rule, there appears to be an opportunity for states,
within their public comment, to propose CE proposals; ME DMR has taken the opportunity to do this
with the Zone Council proposals. However, there does not appear to be a process to do this in a nimble
manner in the future. ME DMR recommends NMFS establish a permanent process by which
stakeholders can propose measures which achieve equal, or greater, protection for NARWs. At present,
state proposals must be vetted through the ALWTRT and then implemented through rulemaking; all
told, this process can be time consuming. An alternative structure for quickly accepting and vetting
amendments to the Plan should be implemented to allow for greater flexibility and adaptability within
the ALWTRP. This could become critically important given NARW distribution continues to change
and there may be a need for timely action in the future. Specifically, ME DMR supports an amendment
to the existing regulatory structure such that, as long as NMFS calculates a CE proposal achieves the
same (or greater) level of conservation value, the CE proposal goes straight to rulemaking.
In addition, as outlined on page 34 of Maine’s proposal, ME DMR supports individual safety
exemptions for the small number of fishermen who, due to the physical limitations of their boat, will
have to purchase a new vessel in order to come into compliance with the measures in the proposed rule.
These concerns are primarily related to the higher trawl length minimums proposed, which will require
more traps on deck. ME DMR is not asking for these fishermen to be exempt from the risk reduction
requirements but instead is requesting the flexibility to address these safety concerns on an individual
basis. Given the economic impacts related to this proposed rule, the uncertainty of the fishery created by
the draft Biological Opinion, and the fact that the purchase of a new boat can be cost prohibitive, ME
DMR envisions that, in these few cases, individuals would be subject to other management measures,
such as a trap reduction, in order to safely fish shorter trawls but still remove vertical lines from the
water. ME DMR can license an individual reflecting a lower trap limit, ensuring that the Maine Marine
Patrol is aware of this type of individual CE safety exemptions.
Implementation Timeline
Neither the Proposed Rule nor the DEIS outline an implementation timeline. ME DMR recognizes there
are still many uncertainties which will impact the pace of implementation, including the timing of the
final rule being published. That said, ME DMR highlights there must be a balance between quickly
providing additional protections to NARWs and providing fishermen adequate time to safely implement

25

the new measures. Of the measures included in preferred Alternative 2, the implementation of weak
points and changes to trawl length minimums will likely require the greatest amount of time and effort
by fishermen to implement. Early summer is a time when many Maine fishermen are putting traps in the
water, and around the time we anticipate publication of the final rule. Implementing weak points and
changing trawl length configurations on the water, once gear has been set, will be extremely difficult for
most fishermen and near-impossible for others with limited deck space. As a result, when developing the
implementation timeframe, NMFS should heavily rely on industry comments and needs. ME DMR notes
that deadlines based on calendar years, such as January 1, are not necessarily relevant to the fishery;
instead, deadlines based on operational ‘seasons’ of the fishery are more appropriate.
Enforcement
Page 3-77 of the DEIS discusses the importance of enforcement and monitoring in the lobster fishery.
ME DMR agrees these are integral components of any successful suite of management measures. The
DEIS mentions that an offshore enforcement plan, which involves traditional methods and use of new
technologies, will be presented to the Take Reduction Team in early 2021. ME DMR stresses the
importance of engaging Maine’s Marine Patrol in the development of this enforcement plan. Marine
Patrol hauls and inspects the majority of lobster gear in the Northeast, and their input on ways to
advance enforcement and monitoring will be critical to the development of an effective plan.
Maine Marine Patrol’s involvement is particularly critical as new technologies for enforcement are
developed. At a recent New England Fishery Management Council meeting, representatives from
NOAA’s Office of Law Enforcement discussed a pilot program in which an ROV was used to conduct
inspections of offshore lobster gear. Following the Council meeting, Maine Marine Patrol had a meeting
with the Office of Law Enforcement to learn more about the pilot program. They found that the ROV
pilot program cost approximately $100,000 to inspect a modest amount of gear. Further, the inspection
primarily consisted of an assessment of presence vs. absence of management measures, as opposed to
being able to measure things like the size of escape vents. While it is unclear if ROVs will be included in
the upcoming enforcement plan, ME DMR shares this story to highlight the importance of engaging with
Marine Patrol throughout the course of a project so that future work can be maximized for the
understanding and benefit of all enforcement agencies. Factors such as relative cost and the ability to
assess multiple aspects of a management measure (such as the presence of an escape vent and its size)
are important when developing an enforcement plan.
As NMFS explores new enforcement technologies, ME DMR believes the offshore areas of LMA 1 and
LMA 3 must be patrolled by traditional methods as well. While the Maine Marine Patrol has vessels up
to 46 feet in length, it is clear there is strong need for larger vessels to be deployed to patrol these
offshore waters. ROV’s, while potentially a valuable tool for the enforcement of whale rules, will not
assist us in ensuring lobster regulations related to the sustainability of the resource are followed. It is also
not clear that the ROV costs are sustainable in the long-term. There is no better enforcement tool than
the presence of a vessel capable of hauling gear.
Related to the effectiveness of offshore enforcement is the ability to track vessels. Offshore fishing areas
pose unique challenges to enforcing regulations because the areas are vast. As a result, significant time
can be spent looking for offshore lobster gear before it can be inspected. This increases the costs
associated with enforcement offshore. As a result, ME DMR supports continued conversations between
NMFS and the Atlantic States Marine Fisheries Commission (ASMFC) to advance the use of vessel
tracking in offshore waters. As stated earlier in this letter, ME DMR believes vessel tracking could
become an integral part of a trigger mechanism for the LMA 1 Restricted Area.

26

Trap Reductions and ASMFC
Throughout industry discussions on the proposed rule and DEIS, there continue to be significant
conversation around trap reductions. This includes those who support trap reductions as a way to reduce
the number of vertical lines and those who oppose trap reductions given it is the line, not the trap, that
entangles whales. Should NMFS consider this tool during this or future rulemaking, ME DMR strongly
recommends NMFS immediately engage with the ASMFC. Not only is ASMFC home to the American
Lobster Fishery Management Plan, but it is also a venue for dialogue between the Northeast states. This
will be important given, as ME DMR’s understands it, trap reductions would have to be implemented
across an LMA as opposed to in a single state.
Canada’s 2021 Measures
While the proposed rule and DEIS are focused on the US lobster and Jonah crab fisheries, ME DMR
would be remiss if it did not comment on the record its deep disappointment with Canada’s 2021 fishery
management measures. On February 18th, the Department of Fisheries and Oceans Canada (DFO)
announced its 2021 measures to protect right whales. 13 The contrast between Canada’s measures, and
those being considered in this proposed rule for US fisheries, could not be starker.
Canada is once again relying almost entirely on dynamic area closures which are triggered upon
detection of a right whale. As ME DMR has noted numerous times, this method is completely reactive in
providing protections to right whales. In contrast, almost all the measures being proposed for US
fisheries are proactive in nature, meaning the detection of a right whale is not needed for their
implementation. This is critical given the many challenges associated with monitoring large portions of
the ocean and the difficulty in sighting right whales. To speak plainly, should a plane be unable to fly, or
an acoustic device fail to operate, an undetected right whale will not receive protections in Canadian
waters.
To make matters worse, in 2021 DFO is reducing the strength of the dynamic closure system by
requiring a right whale be detected multiple times in order to extend the closure through November 15th
in the Gulf of St. Lawrence, or to extend the closure by 15 days in the Bay of Fundy and critical habitat
areas in Roseway and Grand Manan basins. This means that a monitoring system which is already
fraught with challenges and potential inadequacies will be even more critical to provide protections to
right whales.
Further, while NOAA is proposing the use of 1700-lb weak points in this proposed rule, DFO has also
announced that they are delaying the implementation of weak rope until the end of 2022. This represents
a full year delay. It is not until after the implementation of weak rope that DFO will also consider
implementation of other gear specific measures such as sinking groundline or a prohibition on float rope
at the surface. These measures have been required in US fixed gear fisheries for well over a decade.
The consistent weakening of Canada’s measures to protect right whales is not only frustrating, but it is
disastrous for US fixed gear fisheries. Given the status of the right whale population and the risk
reduction measures outlined in the draft Biological Opinion, the fate of US federal fixed gear fisheries is
inextricably linked to Canada’s ability to reduce right whale mortality. If Canada implements measures
Fisheries and Oceans Canada. February 18, 2021. “2021 fishery management measures North Atlantic right whales”
https://www.dfo-mpo.gc.ca/fisheries-peches/commercial-commerciale/atl-arc/narw-bnan/management-gestioneng.html?utm_source=North+Atlantic+Right+Whale+Consortium+List&utm_campaign=646252a36cEMAIL_CAMPAIGN_2020_02_14_02_55_COPY_03&utm_medium=email&utm_term=0_4485741029-646252a36c52467869
13

27

1 March 2021
Mr. Michael Pentony, Regional Administrator
Greater Atlantic Regional Fisheries Office
National Marine Fisheries Service
55 Great Republic Drive
Gloucester, MA 01930–2276
Subject: Comments on Proposed Amendments to the Atlantic Large Whale Take Reduction Plan
Dear Mr. Pentony:
On 31 December 2020, the National Marine Fisheries Service (NMFS) published a proposed
rule and request for comments on an amendment to the Atlantic Large Whale Take Reduction Plan
(the ALWTRP or Plan, herein) (85 Fed. Reg. 86879). At the same time, NMFS published a Draft
Environmental Impact Statement (DEIS) and Regulatory Impact Review / Initial Regulatory
Flexibility Analysis. The stated goal of the proposed amendment to the ALWTRP is to reduce the
risk of ‘human-caused mortality and serious injury’ (MSI) of North Atlantic right whales (Eubalaena
glacialis; right whales herein) and other large whales caused by the entanglement in Northeast Region
lobster and Jonah crab trap/pot fisheries. The DEIS analyzes the potential environmental impacts
of alternative potential amendments to the ALWTRP under the National Environmental Policy Act
(42 U.S.C. § 4321 et seq.).
Section 118 of the Marine Mammal Protection Act (MMPA), added to the Act in 1994,
governs the “Taking of Marine Mammals Incidental to Commercial Fishing Operations”. Section
118(a)(1) establishes as the MMPA’s “immediate goal” the reduction of MSI due to commercial
fishing to “insignificant levels approaching zero within 7 years after the date of enactment,” i.e., by
30 April 2001. This goal is carried forward in section 118(b), which mandates that commercial
fisheries meet the goal by the specified date. Further, for strategic stocks taken by Category I or II
fisheries,1 section 118(f) requires NMFS to “develop and implement a take reduction plan designed
to assist in the recovery or prevent the depletion of each [such] stock.” In addition, section 118(f)(2)
identifies two ALWTRP goals, the reduction of: (1) MSI due to fisheries interactions (fMSI) to a
level less than the stock’s potential biological removal level (PBR) within six months of plan
implementation, and (2) fMSI to “insignificant levels approaching a zero mortality and serious injury
rate” within five years, “taking into account the economics of the fishery, the availability of existing
MMPA section 118(c)(1) requires NMFS to publish a list of fisheries that cause “(i) frequent incidental mortality
and serious injury of marine mammals; (ii) occasional incidental mortality and serious injury of marine mammals;
and (iii) a remote likelihood of or no known incidental mortality or serious injury of marine mammals.” In
implementing regulations (60 Fed. Reg. 45086, August 30 1995), NMFS defines fisheries as being Category I
(“frequent” MSI): the fishery is “itself responsible for the annual removal of 50 percent or more of any stock’s
potential biological removal level”; or Category II (“occasional” MSI): “collectively with other fisheries, is
responsible for the annual removal of more than 10 percent of any marine mammal stock’s potential biological
removal level and that is by itself responsible for the annual removal of between 1 and 50 percent, exclusive, of any
stock’s potential biological removal level”.
1

4340 East-West Highway • Room 700 • Bethesda, MD 20814-4498 • T: 301.504.0087 • F: 301.504.0099
www.mmc.gov

Mr. Michael Pentony
1 March 2021
Page 2
technology, and existing State or regional fishery management plans.” What became known as the
‘zero mortality rate goal’ (ZMRG) was set by NMFS in regulation as 10 percent of a stock’s PBR (50
CFR § 229.2). Section 117 of the MMPA, also enacted in 1994, requires NMFS to prepare and
publish stock assessments for all U.S. marine mammal stocks that occur in U.S. waters on a
prescribed schedule. Those stock assessments provide estimates of the best and minimum estimates
of population size, PBR, fMSI, MSI due to other human causes, and the total MSI (tMSI). Stocks for
which tMSI exceeds PBR or that are listed as endangered or threatened under the Endangered
Species Act (ESA) are designated as ‘strategic’ stocks.2 The North Atlantic right whale is a ‘strategic’
stock under both criteria, as it was listed as an endangered species in 1970, and the stock’s tMSI has
exceeded PBR in every year since these values were first calculated in 1995.3
As thoroughly documented in the DEIS and Biological Opinion,4 North Atlantic right
whales are declining and at an increasing risk of extinction. As detailed herein (see the Appendix),
despite earlier population growth, the number of right whales has decreased significantly since 2010.
Entanglement in lobster- and crab-trap gear is the primary proximate driver of the decrease, which is
also significantly contributed to by vessel strikes. In addition to deaths from these causes, persistent
entanglement injuries have caused a decline in the condition and health of individuals, and, in
females, reduced fecundity. NMFS and the entire community of individuals and organizations linked
to the issue of right whale entanglement (e.g., fishermen, scientists, conservationists), are well aware
that a significantly improved mitigation effort is needed to reverse the decline in the population.
Considering the population status, and in recognition of its statutory obligations, NMFS
used its take-reduction process and consultations with New England states to develop the mitigation
measures, Preferred Alternative, and Non-preferred Alternative in the proposed amendment to the
ALWTRP (see the Appendix for details). As described in the Appendix, NMFS is proposing the
implementation of measures that would (1) reduce the number of vertical lines deployed; (2) expand
existing, and establish new, time-area closures to buoyed trap fishing, (3) require the use of so-called
weak line (ropes used for buoy- or end-line that can be broken by a right whale that becomes
entangled in them), and (4) improve gear-marking regulations; see the Appendix for a discussion of
these and other mitigation measures.
The Marine Mammal Commission (the Commission), in consultation with its Committee of
Scientific Advisors on Marine Mammals, provides the following comments and recommendations
on the ALWTRP amendment options and DEIS alternatives.
The Commission found NMFS’s proposed amendment to be substantially inadequate to
meet the requirements of the MMPA, and therefore in need of extensive revision. The
Commission’s recommendations, described in detail below in the Recommendations and Rationale
section, are summarized here:

A ‘strategic’ stock is defined in the MMPA, section 3(19), as one “for which the level of direct human-caused
mortality exceeds the potential biological removal level”, or “which is listed as a threatened species or endangered
species under the Endangered Species Act of 1973”.
3
NMFS North Atlantic right whale stock assessments are available at:
https://www.fisheries.noaa.gov/national/marine-mammal-protection/marine-mammal-stock-assessment-reportsspecies-stock.
4
Released on 15 January 2021. The Commission’s comment letter on the Biological Opinion can be found at:
https://www.mmc.gov/wp-content/uploads/21-02-19-Pentony-Biological-Opinion.pdf
2

 
 
 

Mr. Michael Pentony
1 March 2021
Page 3
1. NMFS has been managing North Atlantic right whales and attempting to mitigate the
impact of lobster- and crab-trap fisheries for over 25 years, and has yet to fulfill its
MMPA section 118 obligations to reduce this source of fMSI to insignificant levels
(ZMRG). Neither the Preferred nor the Non-preferred Alternative of the proposed
amendment would achieve the necessary outcome. To do so, NMFS must replace the
proposed rule with regulations and TRP amendments that have a much higher likelihood
of immediately meeting the requirements of the MMPA.
2. In the final rule implementing the TRP amendment, NMFS must: 1) rely on measures
most likely to meet expectations, namely direct line controls, dynamic time-area closures,
rope that is weak throughout, and so-called ropeless gear; and 2) use a short-term,
adaptive management approach to assess and recalibrate the measures to reach the
expected effectiveness at achieving TRP goals.
3. NMFS has crafted its proposed measures to attain a risk-reduction target that is
substantially too low. In light of: 1) the agency’s long-standing failure to reduce fMSI to
required levels, 2) uncertainty regarding the efficiency of the newly proposed measures,
3) underestimation of the expected risk reduction due to double counting, and 4) the
agency’s failure to set a target that adequately takes account of unobserved deaths
(cryptic mortality), NMFS must set a much more risk-averse target, and take into
account the best available data and science to ensure the accuracy of that target.
4. For the reasons articulated in the previous recommendations, NMFS must reject the
Preferred Alternative, and select the Non-preferred Alternative with these modifications
or modifications similar in effect:
A. Mitigation measures designed to achieve an expected risk reduction sufficiently
in excess of 80 percent to account for (i) performance uncertainty, (ii) double
counting, and (iii) the best-available scientific estimate of the total mortality rate,
which could be achieved by:
1. Increasing the sizes or durations of proposed closures, or establishing
additional closures;
2. Designing dynamic time-area closures similar to those implemented in
Canada;
3. Capping the number of vertical lines at much lower levels; and
4. Establishing additional buoyless restricted areas5 in offshore areas, or
requiring the offshore fishery to adopt pop-up gear within three years.
B. Monitoring and adaptive modification of these measures and their proximate
effects are mandated as an annual or biennial process to ensure that the actual
performance of the proposed measures is matching expected performance.
5. To increase understanding of the dynamics of entanglement to better inform mitigation
measures and the derivation of more accurate, site-specific, risk-reduction targets, NMFS
must implement gear marking regulations that (i) are specific to more jurisdictional and
environmental areas than currently proposed, (ii) applicable to all elements of the gear,

These are areas in which all fixed gear fishing that uses persistent surface buoys are prohibited, but do allow fixed
gear that uses pop-up technology.

5

 
 
 

Mr. Michael Pentony
1 March 2021
Page 4
(iii) require 40-60 foot spacing along all lines, and (iv) require marks that are replaced
before they become unreadable.
6. Given that the maximum gear-marking benefit would be accomplished if marks were
specific to each fisherman, NMFS should undertake the necessary research and
development to enable manufacturers to create individual marking schemes or devices
that are operationally feasible and affordable.
Recommendations and Rationale
Failure to meet MMPA requirements. NMFS has been attempting to achieve the “immediate”
goal of section 118(f) of the MMPA for right whales—to reduce fMSI to below the species’
potential biological removal level within six months of take reduction plan implementation—for 27
years. Since 1999, when it published the first TRP for these fisheries, the agency has yet to achieve
even that short-term goal, and remains even further away from meeting the Act’s more ambitious
ZMRG goal, or from satisfying the negligible impact standard necessary to obtain the separate
incidental take authorization required under section 101(a)(5)(E). Although NMFS had consistently
predicted that U.S. fishery-management programs would be sufficiently protective of right whales to
meet MMPA requirements and enable the agency to make ‘no jeopardy’ findings under the
Endangered Species Act (ESA), it is clear in retrospect that those predictions were based on overly
optimistic assumptions concerning the programs’ expected and actual effectiveness.
NMFS’s failure is attributable in part to the difficulty the ALWTRT encountered over the
years in trying to reach consensus on prescribing strong mitigation measures, and in part to NMFS’s
failure to adequately supplement the team’s recommended plan and amendments in order to meet
the MMPA’s take reduction mandates. Once again, it appears that the agency is overestimating the
effectiveness of the measures being proposed as amendments to the ALWTRP. In a related process,
NMFS released a draft Biological Opinion on 15 January 2021 assessing the impacts of 10 Greater
Atlantic Region fisheries, including the lobster fishery, on species listed as endangered or threatened
under the ESA, including the North Atlantic right whale.6 NMFS, in an implicit recognition that the
measures included in the proposed rule would, by themselves, not reduce fMSI sufficiently to meet
the applicable ESA and MMPA standards, created what it is calling a Conservation Framework.7
The Conservation Framework describes a series of mitigation measures to be implemented
in phases over the next decade. In phase one of the 10-year implementation period, the proposed
rule and the amendments to the ALWTRP under review in this rulemaking would be implemented
during the first half of 2021. NMFS expects these measures to reduce fMSI of right whales by
roughly 60 percent. In phase two, in 2023, NMFS would implement measures to reduce mortality
and serious injury in gillnet and other trap fisheries (besides the American lobster and Jonah crab
fisheries) by 60 percent. After implementing phases one and two, NMFS intends to evaluate the
performance of those measures. Phase three, which NMFS would implement through rulemaking in
2025, is designed “to further reduce [fMSI] by 56% in all federal fixed gear fisheries….”8 Phase three
https://www.fisheries.noaa.gov/bulletin/draft-biological-opinion-10-fishery-management-plans-released
https://www.greateratlantic.fisheries.noaa.gov/public/nema/PRD/NARWConservationFrameworkGARFO.pdf
8
The 60 percent reduction in mortality and serious injury expected to result from the measures in the proposed TRP
amendment would occur in both federal and state waters. Because most of the risk of mortality and serious injury
occurs in federal rather than state waters, the risk reduction in federal waters will be slightly less than the overall
target of 60 percent, namely 57 percent.
6
7

 
 
 

Mr. Michael Pentony
1 March 2021
Page 5
will be followed by another evaluation period in 2025-2026. NMFS intends to implement phase four
in 2030 with the goal “to further reduce [mortality and serious injury] ([by] up to 87%) in fixed gear
fisheries.”
The Biological Opinion sets the current level of right whale MSI at 4.94 whales per year due
to fisheries operating in federal waters, with an additional 1.78 whale deaths and serious injuries
occurring annually in state waters. Assuming that measures implemented under the Conservation
Framework are as effective as predicted, fMSI in federal waters would be reduced in phase one from
its current level of 4.94 to 2.2, in phase two to 2.13, in phase three to 0.85, and finally in phase four
(i.e., in 2030) to 0.11. While specific measures have been identified and proposed for phase one of
the Conservation Framework, NMFS has not identified any specific measures that would be adopted
under the latter three phases to achieve the specified take-reduction targets. Additionally, NMFS
explains that the “Conservation Framework specifies targets rather than particular measures to be
implemented” and that NMFS is “committed to working with [its] partners on the implementation
of measures to meet the goals of the Conservation Framework.” In the Conservation Framework,
NMFS does list measures that could be employed, which include, but are not limited to, further
trawling up, weakening of vertical lines, the use of pop-up gear, additional time-area closures for
buoyed gear, and buoy-line reduction, perhaps through an allocation program that would cap line
numbers.
Even if take-reduction measures proposed in the Preferred Alternative and phases 2-4 of the
Conservation Framework prove fully effective, entanglement risk to right whales will not be reduced
to insignificant levels approaching a zero rate for at least another ten years, roughly 30-35 years
longer than required by the 1994 MMPA amendments. Moreover, fMSI of right whales would
continue to exceed the species’ PBR level for most of the next decade despite the directive in section
118(f) that the immediate goal of the TRP is to reduce fMSI to below PBR within six months.
NMFS states that it is committed to “implement[ing] measures that are necessary for the recovery of
right whales….” However, it is impossible to know at this point whether the yet-to-be-specified
measures that NMFS ultimately adopts over the next ten years will be adequate to achieve that goal.
The increasing extinction risk facing right whales demands that NMFS take actions having a greater
likelihood of success. The Conservation Framework stresses that NMFS will have to engage in
adaptive management to ensure that the Framework is successful. The Commission agrees and
commends NMFS for recognizing this necessity, but notes that the Framework provides scant
information on fisheries monitoring, evaluation of efficacy, and development of subsequent adaptive
measures. Given the long history of failure to adopt effective take reduction measures, the
Commission stresses the necessity of promulgating stronger more immediately effective measures
rather than assuming that a successful outcome will result from the vaguely defined Conservation
Framework. The Commission submitted comments on the draft Biological Opinion and
Conservation Framework on 19 February 2021, raising similar concerns regarding the Agency’s track
record and optimistic predictions, with respect to the proposed no-jeopardy finding and associated
incidental take statement.
Therefore, the Commission recommends that NMFS fulfill its obligations under section 118
of the MMPA by replacing the proposed rule with regulations and TRP amendments that have a
much higher likelihood of immediately reducing fMSI of right whales across all commercial fisheries
(including cryptic mortality) to below PBR and with a detailed proposal for further reducing fMSI to

 
 
 

Mr. Michael Pentony
1 March 2021
Page 6
insignificant levels (i.e., below ZMRG) in less than five years.9 The proposed amendment to the
TRP and the Preferred Alternative are insufficient to achieve either of these outcomes. The
Commission’s concerns over the proposed rule and options for strengthening the agency’s response
are detailed below.
Insufficient risk reduction. In light of the historical failure of past risk-reduction measures, there
are reasons to expect that the measures proposed herein will also fail to achieve the risk-reduction
target set in the proposed amendment, let alone the immediate and long-term goals of the MMPA
and the ALWTRP.
First, static time-area closures are a potentially highly effective means to reduce the number
of vertical lines in the water, but they only work as long as the whales continue to aggregate in the
designated times and areas. Arguably, the North Atlantic right whale is in increased peril now
because of an environmental regime shift that occurred over an unknown timespan around 2010,
which resulted in the population’s distribution shifting, thus increasing the risks from anthropogenic
impacts. There are no guarantees that ocean warming-driven shifts in distribution will not continue,
further reducing the effectiveness of static time-area closures. In addition, trawling-up as a means to
reduce the number of vertical lines is an as yet unproven method to reduce entanglement frequency,
and there is every reason to expect that entanglements that do still occur will be more severe.
Fishermen are well known for finding innovative and unanticipated ways to adapt to regulations that
restrict their fishing practices. Often their best choice is to comply with a regulation, but sometimes
they choose a legal option that does not change their practices as the regulators intended (i.e., in this
case reducing the number of vertical lines in the water). NMFS could avoid this uncertainty if it
chose to control the number of lines directly by capping their numbers, i.e., by adopting this element
of the Non-preferred Alternative. Finally, the best available science (Knowlton et al. 2015) provides
a strong expectation that weaker buoy lines will reduce the severity of entanglement injuries and the
likelihood of deaths. However, much less is known about how large whales free themselves from
entanglements by breaking entangling ropes. It is not known whether the complicated and varying
schemes for weakening buoy lines in the Preferred Alternative will have the desired outcome.
Experts have argued that numerous weak insertions placed in buoy lines every 40 feet or so, or rope
that is weak throughout, should be the most effective at reducing entanglement, but even that is
largely conjectural. Nonetheless, if the experts are correct, then the Non-preferred Alternative
should be more effective at reducing injury severity. The efficacy of the proposed measures will not
be known until they are in widespread use, and then only with adequate monitoring. Monitoring of
the proximate effects of the measures (e.g., whether trawling up is achieving the anticipated vertical
line reduction; what could be called ‘operational performance’) can be conducted annually or
biennially, but detecting intermediate effects (e.g., reduced entanglement rates), or ultimate effects
(e.g., improved demographic rates) will take years. During those years, if the expected risk reduction
does not occur, North Atlantic right whales will suffer and the species will become further
imperiled.
The Commission suggests that these sources of effectiveness or performance uncertainty
require the agency’s attention. It is not acceptable management practice to implement measures of
highly uncertain effectiveness, and assume that they will work until proven otherwise. In part, that is
how the agency has arrived at this juncture, where more than 25 years of management have not
As noted above, NMFS and the fisheries should be achieving the ZMRG immediately—they are 20 years overdue
in meeting this mandate. However, even reducing incidental take to below PBR would be an important first step.
9

 
 
 

Mr. Michael Pentony
1 March 2021
Page 7
produced the desired results and right whales are declining toward extinction. The Commission fully
understands that the availability of “proven entanglement mitigation measures” is limited and that
often what is available are measures that experts and experienced individuals can only predict to
have a good chance of working.
In this situation, the Commission recommends that the appropriate path forward is to: 1)
rely on the measures that are most likely to be as effective as expected (specifically―direct line
controls, dynamic time-area closures, rope that is weak throughout, and pop-up gear, which holds
the promise of greatest effectiveness if it can be made practicable in the densely fished areas), and 2)
use a ‘quick-cycle’,10 adaptive management approach to assess and readjust the suite of mitigation
measures being used to achieve ALWTRP goals. We emphasize ‘quick-cycle’ (e.g., 1-2 years) because
ineffective management that is in place for five years before being assessed will result in an
unacceptable increase in the risk of extinction.
Second, the Preferred Alternative includes a risk-reduction ‘credit’ of 9.9 percent to account
for the likely benefits provided by the Massachusetts Restricted Area (MRA). That credit is included
in the estimated risk reduction expected from the Preferred Alternative, but its effect should already
be reflected in the 2017 baseline fMSI. Thus, the actual expected risk reduction of the Preferred
Alternative is less than even the lower limit of the 60-80 percent target. The DEIS states―
Given the large scale of the current MRA and the importance of the area for right whales,
the take reduction team agreed that Massachusetts fishermen should get equivalent credit for
maintaining the closure from February through April. This closure was implemented
effective June 2015 through modifications to the Atlantic Large Whale Take Reduction Plan,
impacting a portion of LMA One and the outer cape LMA. The Take Reduction Team
recognized the high and increasing value of this recently expanded area, and recognizes its
disproportionate impact on Massachusetts fishermen when they recommended inclusion of
the closure area risk reduction towards the 60 percent risk reduction target.
The Commission’s representative and several other Team members opposed inclusion of
MRA credit in calculating risk reduction achieved by the measures included in the Preferred
Alternative. Although the Commission appreciates the desire of Massachusetts fishermen to receive
credit for their considerable past and ongoing conservation efforts, which are undeniable, NMFS
will have to include additional risk-reduction measures in the Preferred Alternative if it is going to
reach the predicted risk reduction of 64 percent.
Third, as mentioned above, the 80-percent upper limit of the risk-reduction target was
included by NMFS to account for cryptic mortality. The lower limit takes into account only known
fMSI. NMFS stated that its approach, at the time Team members were developing their
recommendations, was to assume that “half of the estimated undocumented incidents occurred in
U.S. waters and were caused primarily by incidental entanglements.” In the DEIS, NMFS states―
If we assume half of the estimated mortalities and serious injuries [observed and cryptic]
occur incidental to U.S. fisheries (5.25), mortality and serious injury is more than five times
higher than potential biological removal and requires an 83% reduction … [and] serious

10

 
 
 

One that is focused on the operational performance, i.e., the proximate effects of the newly implemented measures

Mr. Michael Pentony
1 March 2021
Page 8
injury and mortality of right whales in U.S. fishing gear must be reduced by 60%
(documented) to 80% (estimated) to achieve potential biological removal.
However, NMFS noted that “given the assumptions and other sources of uncertainty in the
80 percent target, as well as the challenges of achieving such a target without large economic impacts
to the fishery, the Take Reduction Team focused on recommendations to achieve the lower 60
percent target.” The Commission suggests that the difficulty the Team faced in trying to get risk
reduction above 60 percent also stemmed from the lack of agreement about including additional
time-area closures. This resulted in the Team simply aiming, by default, to achieve the lower limit of
the target (i.e., 60 percent).
Throughout the Team’s deliberations, NMFS was very clear that not all the carcasses of
North Atlantic right whales that die are detected and reported and that this necessitates reducing risk
by roughly 80 percent. The Commission is therefore perplexed that NMFS would adopt the lower
limit as the target in the proposed amendment. In the DEIS, NMFS notes the difficulty in
apportioning cryptic mortality between entanglement and ship strike, but this difficulty should not
have precluded the agency from placing bounds on the proportion likely due to entanglement. To
adopt the 60-percent target is to implicitly assume that there is zero undetected/unreported, i.e.,
cryptic, mortality, which the agency knows is not true and runs counter to the findings of its own
scientists. Additionally, NMFS fails to acknowledge in the DEIS that the magnitude of cryptic
mortality is likely much greater than was thought in 2019 to be the case. In deriving the 80-percent
target to account for cryptic mortality, NMFS relied on an estimate provided by an analysis led by a
NMFS scientist. As described in the DEIS and above, using the methods of Pace et al. 2017, an
estimated 40 percent of right whale deaths are not observed and reported (i.e., they are ‘cryptic’).
However, a new analysis focused explicitly on estimating the cryptic mortality rate found that cryptic
mortality accounts for 64 percent of the estimated total number of deaths in the population (Pace et
al. 2021), an increase of 60 percent over the Pace et al. 2017 estimate. Thus, even the 80-percent risk
reduction target is a significant underestimate of the magnitude of decrease in fMSI that is needed to
reach the ZMRG level. It is not clear why the proposed rule and DEIS fail to cite or incorporate the
cryptic mortality results in Pace et al. 2021. While this paper was published after NMFS had released
the proposed rule and DEIS, the lead author is a NMFS scientist and the agency would have been in
possession of the results approved by its own internal review process prior to the paper’s being
submitted for publication in July 2020. It is clear that the proposed rule and DEIS have not used the
best available data and science as presented in Pace et al. (2021).
In light of all the issues raised in this section, the Commission recommends that NMFS (a)
reassess its risk-reduction target in light of: 1) the agency’s long-standing failure to reduce fMSI to
required levels, 2) uncertainty regarding the efficiency of the newly proposed measures, 3)
underestimation of the expected risk reduction due to double counting of the effect of the MRA,
and 4) the agency’s failure to set a target that adequately takes account of cryptic mortality; and (b)
promulgate a final ALWTRP amendment that includes those measures that have the greatest chance
of achieving the requisite risk-reduction level. The first two factors mentioned above suggest that
NMFS should set a conservative (i.e. substantially more risk-averse) risk-reduction target that has an
uncertainty buffer as a way of improving the chance that the nominal target will be reached, while
the latter two factors require that NMFS take into account the best available data and science to
ensure the accuracy of that target.

 
 
 

Mr. Michael Pentony
1 March 2021
Page 9
Alternatives. The Commission believes it highly unlikely that the Preferred Alternative will be
as effective as anticipated. Effectiveness in this context relies on measures that are to varying degrees
untested or potentially unreliable. Rather than directly regulating the number of vertical lines that
can be fished at any given time, the Preferred Alternative relies on an indirect method, trawling-up,
to reduce the number of vertical lines, without any assurance that this approach would achieve the
expected magnitude of line reduction. The Preferred Alternative also relies on weak-rope
configurations that have not been tested. There is reasonably strong scientific support for requiring
ropes to break at 1700 pounds or less, but it is unknown whether right whales will be able to break
lines that have just one or two weak insertions, rather than lines with insertions every 40 feet or that
are weak throughout, as recommended by scientists. Therefore, whether the proposed
configurations will be effective is almost entirely speculative. Finally, the Preferred Alternative
further relies heavily on fixed closures to continue providing protection for right whale hotspots,
which is problematic in an era when marine environments are changing in response to ocean
warming. This is in contrast to dynamic closures such as those being used in Canada, apparently
with considerable success. The Commission therefore recommends that NMFS reject its Preferred
Alternative as inadequate for the many reasons articulated above.
The Non-preferred Alternative will likely be more effective than the Preferred Alternative,
but is likely still inadequate to achieve the goals of the MMPA. On the positive side, it relies on
direct control of the number of vertical lines. This is an improvement on the trawling-up approach,
but it is not without challenges. Although capping line numbers appears straightforward and could
be achieved by permitting lines in addition to traps, Massachusetts is the only State where buoy or
end lines currently are counted or regulated. Other states currently lack the data and regulatory
mechanisms for implementing this approach. Implementing line caps will require a phase-in period
during which regulatory agencies develop the necessary policies to regulate and monitor vertical line
numbers, and collect baseline data on the number of lines being used. Another improvement offered
by the Non-preferred Alternative would be the establishment of a larger closure south of Nantucket,
which has become recognized as important winter habitat for right whales, and another closure
north of Georges Bank. In addition, the Non-preferred Alternative would, for the most part, require
fully weak rope. In contrast to these positive elements, however, the Non-preferred Alternative
would not offer much improvement in the risk reduction in LMA3, and it also does not achieve the
upper limit of the take-reduction target. NMFS and independent experts suspect that LMA3, where
the offshore fishery operates, is responsible for a disproportionate number of entanglements,
especially severe entanglements, that lead to fMSI. Because of the depths at which the gear is fished,
the strong currents, and the large number of traps per trawl, that fishery uses very heavy (strong)
lines, which almost certainly cannot be broken by adult right whales, let alone younger animals. Also,
because of these factors it is difficult for the gear to incorporate weak insertions without
compromising the ability of the fishermen to successfully retrieve their gear. As a result, under either
alternative it is not likely that the offshore fishery will be able to achieve a risk reduction of more
than 15 percent (Table 3.4 in the DEIS).
Considering the discussion and recommendations above, the Commission recommends that
NMFS adopt the Non-preferred Alternative, with the following modifications―
1) Changes are made to the proposed mitigation measures to achieve an expected risk
reduction sufficiently in excess of 80 percent to account for (i) performance uncertainty,
(ii) double counting of the MRA ‘credit’, and (iii) the 64-percent cryptic mortality rate
estimated by Pace et al. 2021, the best available science, which could be achieved by:
 
 
 

Mr. Michael Pentony
1 March 2021
Page 10
a. Increasing the sizes or durations of proposed closures, or establishing additional
closures targeted at right whale hotspots with moderate to high entanglement risk;
b. Designing dynamic time-area closures similar to those implemented in Canada;
c. Capping vertical lines at much lower than present levels;11 and
d. Establishing additional buoyless restricted areas in LMA3, or requiring the offshore
fishery to adopt pop-up gear within three years.
2) Monitoring and adaptive modification of these measures and their proximate effects are
mandated as an annual or biennial process to ensure that the actual performance of the
proposed measures is matching expected performance.
Gear marking. One of the major sources of uncertainty in determining appropriate areaspecific risk-reduction targets is the shortage of information on the types and sources of gear that
entangles right whales. As described in the DEIS, the source (e.g., country, state, or fishery) could be
identified in just 24 percent of the cases of whales found to be seriously injured or dead as a result of
entanglement. Identifying the gear involved is critical to deriving accurate area-specific riskreduction targets, and for improved understanding of the entanglement dynamics that lead to serious
injuries and deaths. NMFS recognizes this imperative, as evidenced by the expanded gear-marking
regulations included with the 2014 amendment to the ALWTRP, and by the improved marking
schemes that are part of the proposed amendment’s Preferred and Non-preferred Alternatives (see
Table 3.3 in the DEIS). While the new regulations would allow, in some cases, retrieved gear to be
linked to a state or management area (e.g., federal waters), the Commission believes that they fall
well short of what is needed.
To improve understanding of entanglement dynamics and derive more accurate and sitespecific risk-reduction targets, the proposed marking regulations need to be strengthened
considerably. Among other things, gear-marking provisions should require more marks on lines and
include unique marks for more fishing areas and marks that distinguish whether the rope was used
as a buoy or end line or as a groundline. The Commission believes that this is the only way to
provide the information needed to evaluate the effectiveness of current mitigation measures and to
make informed decisions on any necessary further measures.
Therefore, at a minimum, the Commission recommends that NMFS revise the gear-marking
measures in the proposed TRP amendment to include the following features:
1.

2.

Area-specific marking schemes are developed for jurisdictional areas (e.g., United States
vs Canada, individual states, state vs federal waters) and areas of high entanglement risk
(e.g., hot spots where there is a strong correlation or overlap between whale abundance
and gear density);
All vertical end or buoy lines and groundlines are marked, including with an additional
mark to distinguish vertical lines from groundlines;

The Decision Support Tool (DST) should be used to determine the actual amount of vertical line reduction, in
combination with other measures, necessary to account for serious injuries and total deaths in the population.

11

 
 
 

Mr. Michael Pentony
1 March 2021
Page 11
3.
4.

Identifying marks are sufficiently spaced, such as every 40-60 feet, to ensure that the
maximum amount of recovered gear can be identified; and
Marks on buoys, lines and traps are replaced before they become unreadable due to
abrasion or other degradation processes.

The Commission recognizes the difficulty and added expense associated with jurisdictionally
and/or geographically fine-scale marking schemes. A fisherman who fishes widely in state and
federal waters might need to have several sets of lines, each with a different set of marks. There is,
however, a simple and powerful solution to this problem, which is to make all marks specific to the
owner of the gear. Thus, each fisherman would mark his or her gear with a unique combination of
marks, or a strand of uniquely identifiable wire or tape woven into all ropes, throughout or at regular
intervals along the rope. Although this would be more expensive, within a few years it likely would
settle the question of to what extent each fishery is responsible for the entanglement of right whales,
and it would provide detailed information to be used in studies of entanglement dynamics, data that
are critical for developing improved mitigation measures. While fishermen might object to being
individually identified, this is already a reality because buoys and traps have to be marked individually
in the two states with the largest number of lobster fishermen, Maine and Massachusetts. Therefore,
the Commission recommends that NMFS undertake the necessary research and development to
enable manufacturers to create individual marking schemes or devices that are operationally feasible
and affordable.
Conservation Action
The Commission supports NMFS’s intention to protect and recover right whales, but
believes, as reflected by the agency’s decision to undertake this rulemaking, that it must be much
stronger and that additional actions are needed to meet the various mandates of the MMPA.12 Most
pressing is the need for the United States and Canada to prevent any human-caused mortality and
serious injury, thereby beginning to reverse the downward population trend. Adoption of vesselspeed regulations and entanglement mitigation measures by the United States over roughly the past
three decades apparently helped to reduce the mortality rate and contributed to the positive
population growth rate observed prior to 2010 (Pace et al. 2017, Corkeron et al. 2018). However,
even when the population was growing, the estimated rate of 2.8 percent was substantially below
what might be expected for this species given the 5.3-7.2 percent population growth rates observed
in the closely related southern right whale, and the 4.0 percent intrinsic rate of increase (Rmax)
estimated for the North Atlantic right whale (Corkeron et al. 2018).
In 2006, when the right whale population was still growing, a panel convened by the
Commission recommended that NMFS adopt a more aggressive and precautionary approach to
managing right whale interactions with fisheries (Reeves et al. 2007). The panel’s report concluded
that:
“In general, [NMFS] should set higher standards of protection and
place greater reliance on the ability of industry to adapt to those
These include reducing mortality and serious injury to less than PBR and ultimately to insignificant levels
approaching a zero mortality and serious injury rate (§ 118(f), not allowing the taking of right whales incidental to
commercial fisheries unless it would have a negligible impact on the stock (§ 101(a)(5)(E), and ultimately
replenishing the stock to the point where it no longer is depleted (§ 2(2), 2(6)).
12

 
 
 

Mr. Michael Pentony
1 March 2021
Page 12
standards, rather than continuing to depend on a complex, shifting,
inefficient, and ineffective network of regulatory measures to protect
the whales. The guiding principle should be to separate high-risk
human activities from right whales, in both space and time, to the
maximum extent feasible.”
Although NMFS chose not to adopt that advice in 2007, it remains relevant, and even more
critical to right whale recovery now that the population is declining at an alarming rate. The
protection of right whales can no longer rely on unproven measures and overly optimistic
projections. If strong mitigation measures prove to be effective in reducing MSI below PBR, then
NMFS can assess whether economic and other considerations weigh in favor of scaling those
measures back and take more time to determine how to satisfy the ZMRG. The setting of higher
standards, followed by adaptive modifications, is the approach Canada adopted following the large
number of entanglement and vessel-strike deaths that occurred in the Gulf of St. Lawrence in 2017,
and the United States should follow suit.
We hope these comments and recommendations are helpful. Please contact me if you have
questions regarding the Commission’s recommendations and rationale.
Sincerely,

Peter O. Thomas, Ph.D.,
Executive Director

Cc: Jennifer Anderson, Assistant Regional Administrator for Protected Resources,
Greater Atlantic Region
Diane L. Borggaard, Acting Marine Mammal and Sea Turtle Group Lead,
Greater Atlantic Region
Colleen C. Coogan, Marine Mammal and Sea Turtle Branch Chief, Greater Atlantic Region
Marisa Trego, Marine Mammal Take Reduction Team Coordinator, Greater Atlantic Region
Jonathan A. Hare, PhD, Science Director, Northeast Fisheries Science Center
Donna S. Wieting, Director, Office of Protected Resources
Shannon Bettridge, PhD, Chief, Marine Mammals and Sea Turtles Division
Francisco E. Werner, PhD, Director, Scientific Programs and Chief Science Advisor
Sam D. Rauch III, Deputy Assistant Administrator for Regulatory Programs

 
 
 

Mr. Michael Pentony
1 March 2021
Page 13
APPENDIX – Additional, Supporting and Background Information.
Population Status
Since 2010, the right whale population has been declining steadily at approximately one
percent per year, and faces an increasing risk of extinction (Kraus et al. 2016, Pace et al. 2017, Pettis
et al. 2020). A recent population assessment revealed poor body condition of North Atlantic right
whales compared to three populations of southern right whales (Christiansen et al. 2020). Both
lethal and sub-lethal anthropogenic trauma from entanglements and vessel collisions are thought to
contribute to this decline in population abundance (Sharp et al. 2019, Christiansen et al. 2020,
Moore et al. 2021,). Sub-lethal effects of entanglements of individual whales whose health is already
compromised, as evident from poor body condition, can result in reproductive failure. The best
available scientific information clearly identifies entanglements in fishing gear, especially lobster and
crab pots or traps (generically, traps hereafter), and vessel strikes in both the United States and
Canada as the two main anthropogenic drivers of the decline (NMFS 2019). Vessel strikes were, for
a period of at least 10 years, the primary documented cause of right whale deaths in U.S. waters, but
now entanglement in fishing gear is the leading documented cause of both mortality and serious
injury (Sharp et al. 2019, Moore et al. 2021).13 Early analyses of rules designed to limit vessel speeds
in U.S. waters to reduce the number of vessel strikes of large whales indicated that the regulations
were having the desired effect (Laist et al. 2014, van der Hoop et al. 2015), but a recent analysis
indicates that the effect is not very large (NMFS 2020a, Moore et al. 2021). Vessel strikes were a
significant cause of right whale deaths in Canada in 2017 (Daoust et al. 2017) and again in 2019.14
Although the population had been increasing at a relatively slow rate of 2.8 percent per year
during the 1990s and 2000s (Pace et al. 2017, Corkeron et al. 2018), it peaked at an estimated 483
whales in 2010 and decreased to an estimated 35615 whales at the end of 2019 (DEIS, Biological
Opinion, Pettis et al. 2020), a decline of 36 percent in just a decade. On the positive side, in 2020,
only two whales are known to have died in U.S. waters and 10 calves were observed. As of midFebruary 2021, 15 calves had been detected, although one is known to have died due to a vessel
strike. Particularly alarming is the fact that no more than 90 reproductive-age females remained as of
2017 (Hayes et al. 2018), and their numbers are declining more rapidly than males’ (Pace et al. 2017).
Two studies have found that females accounted for 66 percent of deaths of adults (Moore et al.
2004, Sharp et al. 2019).
Entanglement in fishing gear is so frequent that 83 percent of all right whales bear
entanglement scars (a term meant to encompass both healed and unhealed wounds as well as
amputations), and 59 percent have scars from multiple entanglements (Knowlton et al. 2012a).
Every year, on average, 26 percent of the whales acquire new entanglement scars (Knowlton et al.
2012a), leading to the conclusion that, over a ten-year period, each whale has a 95 percent chance of
being entangled at least once (Hayes et al. 2018). This situation is exacerbated by the fact that
From 2012 to 2016, over twelve times as many whales died due to entanglement compared to vessel strikes
(NMFS 2019).
14
Right Whale News, September 2019, at: https://www.narwc.org/uploads/1/1/6/6/116623219/rwn-sep19.pdf
15
NMFS, using the method of Pace et al. 2017 estimated there were 366 individuals in the population as of January
2019 (95-percent credible interval 353-377), from which Pettis et al. 2020 subtracted the number of known deaths in
2019 to produce the estimate of 356 at the end of January 2021. The actual number was probably somewhat lower
because Pettis et al. (2020) did not account for likely undetected deaths, which easily could have equaled or
exceeded the number of known deaths (Pace et al. 2017, Pace et al. 2020).
13

 
 
 

Mr. Michael Pentony
1 March 2021
Page 14
moderate to severe entanglements are becoming more frequent, apparently due to increases in the
strength of rope used by fishermen (Knowlton et al. 2015), and the likelihood that an entanglement
leads to death or serious injury is increasing by 6.3 percent per year (Hayes et al. 2018).
The known number of right whales dying has increased rapidly since 2010 (Figure 1, Pace et
al. 2021), and the proportion of deaths attributable to entanglements also has increased substantially
(Figure 4, NMFS 2020b), although population modeling has indicated the mortality rate of adult
right whales has not declined (Pace et al. 2017).16 Roughly 34 deaths and serious injuries of entangled
right whales have been documented in the most recent five years of data (2014-2018; NMFS 2020b).
NMFS’s North Atlantic right whale stock assessment reports17 indicate that the annual mean of
observed MSI increased from 1.3 prior to 1999, to 5.8 from 2000-2009, and to 6.9 from 2014 to
2018. Moreover, this should be considered a minimum, as the carcasses of an estimated 64% percent
of all right whales presumed to be dead go undetected (‘cryptic mortality’; Pace et al. 2021). Thus,
the number of undetected deaths from 2014 to 2018 could have been as high as 19 right whales,
although Pace et al. (2021) recommend making such extrapolations cautiously as the likelihood of
detection of MSI differs substantially between entanglements and vessel strikes. In a recent
presentation to the NMFS’s Atlantic Scientific Review group Dr. Pace cautioned that most deaths
predicted to have occurred by his population model (Pace et al. 2017) go undetected and that the
number of detected deaths and serious injuries is a very poor predictor of the total.
Even minor entanglement in fishing gear can have sub-lethal effects. The condition and
health of entangled females can be severely compromised (Knowlton et al. 2012b, Robbins et al.
2015, Rolland et al. 2016, van der Hoop et al. 2017, Knowlton et al. 2018), and this contributes to
the recent and prolonged low calving rate (Kraus et al. 2016, Pace et al. 2017). Females require at
least two or three years to build the nutritional reserves needed to calve, and apparently do not calve
if they are in poor condition (Schick et al. 2013). Given the annual scarring rate, it is likely that about
half of all reproductive-age females are entangled during the inter-birth period. The mean inter-birth
interval increased from roughly 3-4 years during 2009-2011, to 4.5-6.5 years between 2012 and 2016,
to 7-10 years from 2017 to 2020 (Pettis et al. 2020). Calving rates declined by nearly 40 percent
between 2010 and 2016 (Kraus et al. 2016, Pace et al. 2017), and in 2018 no calves were seen. From
2010 to 2016, an average of 16 calves were observed each year (range, 7-22), but only 22 calves in
total were seen from 2017-2020 (average=5.5 per year, range, 0-10; Pettis et al. 2020). Entanglementcaused health decline is not the only driver of lower calving rates,18 but it is a significant factor
(Corkeron et al. 2018). Further, the situation is likely worse than these statistics indicate because
observed scarring rates do not fully reflect entanglement rates, as not every scar is detected and not
every entanglement results in scarring.
Mitigation Measures
The mitigation of entanglement risk for North Atlantic right whales rests primarily on two
approaches: 1) reducing the likelihood of entanglement, which is achieved mostly by removing
entangling lines from the environment, and 2) reducing the severity of entanglements and the
This suggests that the increase in the number of known deaths is a change in the discover/reporting rate, and that
the decline in the population is due to a decrease in the reproductive rate.
17
See NMFS North Atlantic right whale stock assessments at: https://www.fisheries.noaa.gov/national/marinemammal-protection/marine-mammal-stock-assessment-reports-species-stock.
18
Reproductive rates are also dependent on prey availability and energy expenditure, both of which have been
changing (references in Hayes et al. 2018).
16

 
 
 

Mr. Michael Pentony
1 March 2021
Page 15
resulting injuries, which is achieved primarily by making it more likely that an entangled whale can
break the line and shed the attached gear. While right whales can become entangled in ground lines,
the large majority of entanglements appear to be in buoy or end lines (often referred to generically as
vertical lines).
Likelihood of Entanglement. Eliminating vertical lines would virtually end the entanglement of
right whales.19 Although this could be achieved by closing fisheries, such an action is socially,
economically, and politically infeasible. So-called ropeless, buoyless, or pop-up gear eliminates the
need for vertical lines while allowing fishing to continue, conceivably without reducing fishing effort.
This option is seen by many as the ideal solution, but by others as infeasible, particularly those
engaged in trap fisheries. In 2018, when the current take reduction plan (TRP) amendment process
began, pop-up gear designs were deemed insufficiently advanced for adoption in American and
Canadian lobster and crab trap fisheries. However, a great deal of progress has been made in the last
two years, and several trials that are underway various types of pop-up gear are showing encouraging
early results. Some developers claim that their gear is ready to use now in certain segments of the
fisheries. The biggest current obstacle to widespread implementation of pop-up gear is the lack of a
universally available interoperability system that would enable everyone to “see” deployed pop-up
gear virtually.20
Effort reduction is another approach to reducing the number of vertical lines. It is generally
believed that direct control, which would be achieved by capping the number of lines permitted to
be used by individual fishermen or the fishery as a whole, would be the most effective form of effort
control. However, the states have not embraced this approach21 and have instead focused on indirect
approaches for reducing the number of vertical lines, such as allowing or requiring an increased
number of traps per vertical line, a practice referred to in New England as ‘trawling up’.
Vertical-line reduction can also be achieved by reducing fishing effort (e.g., number of
permitted traps, fishermen or vessels) or prohibiting fishing where and when whales are most likely
to be present. Such fixed time-area closures are being used now in parts of Massachusetts and
adjacent federal waters (referred to as restricted areas),22 and dynamic time-area closures are being
used in Canada to reduce the risk of entanglement and in the U.S. and Canada to reduce the risk of
vessel strikes. Dynamic management areas (DMAs) implemented to reduce vessel-strike risk in the
U.S. have had some success (NMFS 2020a). However, fishery DMAs trialed by NMFS in the early
2000s were rejected due to logistical difficulties encountered by fishermen (e.g., the difficulty of
pulling gear quickly) and the accompanying monitoring requirements. The benefits may now
outweigh the costs, especially in an era when environmental changes driven by ocean warming are
affecting fishing effort and whale distribution patterns from year to year, as the Canadians have
demonstrated in the last four years. With the right whale population declining and at a much greater

However, even in the absence of vertical lines, traps would still be connected by ground lines. Although, the use
of sinking ground lines, which are required in all U.S. lobster fisheries, reduces the chance of entangling large
whales, that chance is not zero because right whales are known to feed on the bottom.
20
In the absence of surface marking with a buoy or buoys, and interoperability software system would allow any
legitimate user with an acoustic modem (e.g., the owner of the gear, other fishermen in the same fishery or cooccurring fisheries, enforcement agencies) to gain access to data on the location of the pop-up gear.
21
Some states lack the regulations necessary to set line caps, and/or lack data on how many lines are being used.
22 Current restricted areas protect large numbers of right whales in Cape Cod Bay and around Cape Cod durin g
February, March, and April, and in the Great South Channel during April, May, and June.
19

 
 
 

Mr. Michael Pentony
1 March 2021
Page 16
risk of extinction than it has been for a considerable time, the cost-benefit analysis for fishery DMAs
likely has changed.
Other methods have been tested to reduce the likelihood of entanglement, such as stiff or
taut line or acoustic deterrents, but most of these alternatives have been found to be impractical or
ineffective (FAO 2021). A recent research project suggested that red ropes would be more readily
detected by right whales than ropes of other colors (Kraus et al. 2014), an idea that has gained some
traction with the TRT.
Severity of Entanglement. The risk of death and severity of injuries whales sustain increase with
entangling rope strength23 and the mass attached (Knowlton et al. 2015, 2018). Research has found
that adult and juvenile right whales are not found entangled in rope with a breaking strength of less
than 1,700 pounds, suggesting that right whales are able to free themselves from ropes with lower
breaking strength (Knowlton et al. 2015). Most rope currently in use is much stronger, especially in
conditions in which high loads are placed on vertical lines during gear retrieval. This occurs when
there are strong currents or ‘sticky’ substrates, pots/traps are very heavy (e.g., in the Canadian snow
crab fishery), or large numbers of traps are fished together in a single ‘trawl’ (e.g., in the
offshore/deep-water lobster fishery).
NMFS and the Atlantic Large Whale Take Reduction Team (the ALWTRT, or the Team)
have considered a variety of approaches for reducing the strength of the rope used in New England,
referred to in shorthand as ‘1,700-pound equivalents’. More generally, rope that whales are able to
break is referred to as ‘weak rope’, whether it is weak throughout or has weak insertions or links.
The ‘1,700-pound equivalents’ include 1) rope with a breaking strength of 1,700-pound throughout,
and 2) 1,700-pound splices, knots, or sleeves (insertions) used to join sections of rope. Deploying
1,700-pound rope, or stronger rope with 1,700 pound sleeves, has been considered the most
promising weak-rope option, although a reliable commercial source of 1,700-pound rope has not yet
been found (C. Coogan, GARFO, pers. comm.). Splices and knots are regarded as easier and less
expensive options for fishermen to implement, compared to sleeves, but much more difficult to
design to ensure that they have the right breaking strength. In addition, there is a strong concern
that knots would make the line more likely to get snagged in a whale’s baleen, thus increasing the
likelihood of severe injury. Although promising and successfully trialed by a few fishermen, sleeves
have not been scientifically tested and it is unknown how they will perform in entanglement
situations.
Background to Proposed ALWTRP Amendment
NMFS’s early actions and performance. As prescribed in section 118(f)(6)(A) of the MMPA, in
1996, NMFS established a take reduction team, which would become the ALWTRT, and charged it
with developing and submitting to NMFS within six months a draft TRP. In February 1999, NMFS
published a final rule implementing the TRP. Subsequently NMFS was unable to reduce tMSI to
ZMRG within seven years, unable to reduce fMSI to less than PBR within six months, and unable to
reduce fMSI to less than ZMRG within five years. In fact, the agency has not achieved the first goal
in the 27 years since the amendment of the MMPA in 1994, or the second and third goals in the 21
years since the implementation of the TRP in 1999.

23

 
 
 

Rope strength depends on the diameter, construction and composition of the rope.

Mr. Michael Pentony
1 March 2021
Page 17
Although NMFS had not achieved any of the MMPA’s prescribed goals, the population was
increasing relatively slowly in the late 1990s and 2000s (Waring et al. 2011, Pace et al. 2017,
Corkeron et al. 2018), which gave the agency some reason to believe that the take-reduction
measures were working. However, several developments over the last decade have countered that
view. First, an analysis led by a NMFS scientist found little evidence that past entanglement
mitigation measures recommended by the Team, and implemented by NMFS and the states, had
been effective (Pace et al. 2014). Second, population modeling has definitively shown that the
population has been declining since 2010, MSI has been increasing, and fMSI alone has exceeded
PBR by 2-3 whale deaths per year (Pace et al. 2017, Corkeron et al. 2018, Hayes et al. 2019). Third,
in 2017, 17 right whales died from vessel strikes and entanglements in the United States and Canada;
until that point the number of dead whales found in any one year had not exceeded seven (average
3.15 per year).24
NMFS’s response to the crisis. Concerned about the status of right whales, NMFS convened an
in-person meeting of the ALWTRT in October 2018. Before the meeting, Team members were
invited to submit proposals specifying the measures they considered necessary to meet at least the
first goal of the ALWTRP (reducing fMSI to less than the PBR). The measures developed by Team
members representing environmental NGOs or states (likely in collaboration with fishermen and
fishing industry representatives), and scientist members, included the use of―










weak rope/links used for/within buoy lines;
weaker, smaller-diameter buoy lines;
direct limits (caps) on the number of buoy lines;
indirect controls on the number of buoy lines by limiting trap numbers or by ‘trawling up’;25
transitioning to pop-up gear;
expanding the duration and area of existing restricted areas (time-area closures to buoyed
trap fishing);
new restricted areas where buoyed trap fishing is not permitted;
line that is more visible to right whales; and
improved enforcement.

The proposals also included a variety of measures that would generally contribute to entanglement
mitigation indirectly and over time, things such as research, monitoring and gear marking, however,
those measures were not included in risk-reduction calculations.
After much discussion of these measures, the Team did not reach consensus on
recommendations concerning an amendment to the ALWTRP. It did identified a need for an
objective risk-reduction target and a tool for evaluating mitigation options against that target. Multistakeholder sub-groups within the team developed ‘work-plan’ recommendations meant to enable
NMFS to focus its data gathering and analyses toward that end before the next meeting, which was
scheduled to take place in April 2019.26
Data extracted from Figure 1 in Pace et al. 2021
Increasing the number of traps allowed or required per buoy/vertical line.
26
Summaries of each of these meetings are available at: https://www.fisheries.noaa.gov/new-england-midatlantic/marine-mammal-protection/atlantic-large-whale-take-reduction-plan
24
25

 
 
 

Mr. Michael Pentony
1 March 2021
Page 18
Prior to the April 2019 meeting, NMFS assessed the relative contributions of U.S. and
Canadian fisheries to the entanglement-related mortality and serious injury of right whales, and
completed the development of the first generation of a decision-support tool (model; the DST) to
assess entanglement risk reduction that could be expected from proposed mitigation measures,
singly or in combination.27 Based on the best available science, NMFS estimated that, to reduce
fMSI to less than PBR, a 60-80 percent reduction in entanglement risk in the United States would be
necessary, independent of the mitigation of other sources of risk in the United States and Canada.
NMFS charged the Team with finding a combination of mitigation measures from those identified
during the October 2018 meeting that could be implemented immediately28 and would achieve the
target of a 60-80 percent reduction in entanglement risk. The assumption was that implementation
of those measures would in practice reduce fMSI by an amount within that range. The 60-percent
level reflected the known number of fMSIs, while the 80-percent level reflected the total estimated
number of deaths due to fisheries.29 At the time, it had been estimated that 40 percent of presumed
deaths due to all causes go undetected (‘cryptic mortality’; Pace et al. 2017). The Team and NMFS
recognized that the 60- 80-percent targets had a great deal of associated uncertainty because they
was based on analysis of a relatively small number of entanglements and estimating the number of
unknown deaths, respectively. Also, much of that uncertainty would remain unresolvable because
the source of most gear recovered from right whales cannot be assigned to a particular fishery or
fishery component, due largely to inadequate gear marking. As described above, analyses conducted
since that meeting have indicated that the level of cryptic mortality is higher than thought at the
time. Therefore, the upper bound of the range for the entanglement risk-reduction target should be
higher, probably substantially higher, than 80 percent.
At the start of the April 2019 meeting, NMFS signaled its intention to initiate rulemaking in
May of that year, and its intention to augment the Team’s TRP amendment recommendations if
they did not have the potential to reach the 60-percent risk-reduction target at a minimum, and
preferably the 80-percent target. In addition, NMFS indicated that the agency wanted to achieve the
80-percent risk reduction. During that meeting, the Team used the DST to estimate the potential
risk reduction of different entanglement mitigation measures, and to build suites of measures
designed to achieve the 60-80 percent risk reduction target. Due to strong opposition by industry
and some state representatives to the expansion, or establishment of additional, time/area closures,
those options were effectively excluded from consideration by the Team. This left basically just two
mitigation measures on the table – reduction in the number of vertical lines and reduction in the
strength of lines. The first is meant to reduce the likelihood that a whale will become entangled, the
second, to reduce the severity of injuries once a whale is entangled. It quickly became apparent that
the 80-percent risk-reduction target could not be achieved with line-number and rope-strength
measures alone, i.e. without the inclusion of time/area closures. Therefore, the Team’s efforts ended
up focusing on achieving a reduction in risk of at least 60 percent. Finally, because of the necessity
to involve states in coordinating their regulations with federal regulations to reach the target risk
reduction for the entire region, the Team focused on developing state-specific suites of measures.
[describe the tool]
The use of pop-up gear was excluded from consideration because it was judged to be several years from being
ready to be used in the fisheries in question.
29
The 60-percent target is based on known mortalities and serious injuries, while the 80-percent target is based on
total mortalities, which is the sum of know mortalities and serious injuries and the estimated number of cryptic
mortalities.
27
28

 
 
 

Mr. Michael Pentony
1 March 2021
Page 19
The suite of measures that was recommended to NMFS as an amendment to the ALWTRP is
shown in (Table 3.1 in the DEIS).
For the most part, the measures proposed by the Team in (DEIS Table 3.1) were projected
to reach or approach the lower limit of the risk-reduction target with one important exception.
Those members representing the offshore lobster fishery, which operates in LMA3 (lobster
management area 3),30 were unable to offer a proposal to meet the risk-reduction target. Because the
fishermen in this sector already used long trawls, trawling up would not reduce the number of end
lines significantly, and because they fish in deep water with large numbers of traps per trawl, they
could not use weak rope. They argued that their fishery needed more time to study the problem and
pledged to develop measures that would meet the target. Although relatively few vertical lines in
New England belong to this fishery, because it uses heavy rope and trawls with large number of
traps, and the fishery overlaps significantly with right whale presence, it likely represents a
disproportionately large risk to right whales.
On 2 August 2019, NMFS published a notice of intent to prepare a draft Environmental
Impact Statement (DEIS) and a request for comments on potential amendments to the ALWTRP
(84 Fed. Reg. 37822). The DEIS was to analyze the potential environmental impacts of alternative
potential amendments to the ALWTRP under the National Environmental Policy Act (42 U.S.C. §
4321 et seq.). NMFS stated that proposals recommended by the Team at the April 2019 meeting
would form the basis of those alternatives, and that the DEIS would inform subsequent NMFS
rulemaking to implement the ALWTRP in order to meet the take reduction requirements of the
Marine Mammal Protection Act (MMPA). In its comment letter of 23 September 2019,31 the
Commission recommended that ―
1. DEIS alternatives rely most heavily on options that would 1) produce the greatest
estimated risk reduction, 2) remove substantial numbers of vertical lines from the
water column, 3) have strong scientific support, and 4) be most likely to reduce MSI
to MMPA-mandated levels;
2. DEIS alternatives should include measures from the following categories: 1)
substantial reductions in vertical line numbers in all states and LMAs, 2) time-area
closures to protect the largest and most predictable concentrations and migratory
pathways of right whales, 3) use of weak rope (1,700-pound equivalents) in every
trap fishery, 4) use of any other proven measures that will reduce entanglement risk
severity, such as high-visibility rope, and 5) actions taken or planned by NMFS to
secure the cooperation of and the implementation of comparable measures by other
jurisdictions, such as state and Canadian management agencies;
3. The final rule require the offshore lobster fishery to a make the transition to pop-up
gear on an aggressive, time-bound schedule, if it cannot implement a weak-rope
option;
4. The DEIS’s preferred alternative be crafted to achieve an 80-percent entanglement
risk reduction;

30
31

 
 
 

Lobster management areas are labeled in Figure 3.1 of the DEIS.
https://www.mmc.gov/wp-content/uploads/19-09-23-Pentony-Right-whale-DEIS-scoping.pdf

Mr. Michael Pentony
1 March 2021
Page 20
5. The DEIS evaluate options for the expansion of and establishment of new restricted
areas;
6. The DEIS assess the risk reduction achieved by restricted-area options and the
potential for those closures to increase risk in other areas due to displaced effort;
7. The final rule require NMFS to monitor and assess the effectiveness of all fixed
closures and to use the results to modify the geographic and temporal extent of the
closures on a regular basis;
8. The DEIS evaluate the costs and benefits of using dynamic closures to protect right
whale aggregations, similar to those implemented by Canada in 2018, and work with
the states to overcome any impediments to implementing dynamic closures in U.S.
waters.
Proposed ALWTRP Amendment
On 31 December 2020, NMFS released the draft rule to implement a proposed amendment
to the ALWTRP and the DEIS analyzing the effect of that rule. Besides the pro-forma ‘no action’
alternative, the DEIS included a Preferred and a Non-preferred Alternative, both of which included
measures in three general categories ― line reduction, restricted areas, and weak line (Table 3.2 in the
DEIS).
Line reduction. In the Preferred Alternative, line reductions are anticipated to result from
‘trawling-up’ requirements that vary among states, from LMAs, and by distance from shore, while
the Non-preferred Alternative primarily would require a 50-percent cap on the number of vertical
lines that could be fished in federal waters and portions of Maine’s state waters.
Restricted areas. The Preferred Alternative would create two new restricted areas (DEIS Table
3.2)―a closure in Maine’s offshore waters from October to January (“LMA1 Restricted Area”), and
a closure south and southeast of Nantucket in Massachusetts’s offshore waters in February and
April (“Massachusetts South Island Restricted Area”) (Figure 3.1 in the DEIS). The Non-Preferred
Alternative also includes the LMA1 Restricted Area, two versions of a larger South Island Restricted
Area, and the Georges Basin Restricted Area, an additional area at the Hague Line east of Cape Cod
(Figure 3.2 in the DEIS). Both alternatives modify existing closures and establish new closures to
allow fishing without buoy lines (i.e., with pop-up gear).
Weak line. The Preferred Alternative requires a complex system of weak insertions that vary
in number and positioning on the line by state, LMA, and distance from shore (DEIS Table 3.2).
The Non-preferred Alternative requires the use of fully weak rope in the top 75 percent of all buoy
lines.
Expected risk reduction. NMFS used the DST to estimate the expected entanglement risk
reduction of different measures and alternatives (Table 3.4 in the DEIS).
The DST estimates that the Preferred Alternative would achieve a 64.3-percent risk
reduction. Individual contributions were made by weak-line insertions (14 percent), trawling up (12
percent), the two new closures (15 percent), and a combination of trawling up and weak lines in
 
 
 

Mr. Michael Pentony
1 March 2021
Page 21
LMA3 (8 percent).32 Interestingly, 9.9 percent of the total risk reduction in the Preferred Alternative
is linked to an “MRA credit”. This element reflects a proposal first made by Team members from
the State of Massachusetts, and ultimately accepted by NMFS, that Massachusetts be given credit for
the risk reduction already achieved through the earlier establishment of the Massachusetts Restricted
Area, which includes Cape Cod Bay and areas east of Cape Cod. The risk reduction target of 60-80
percent was based on the latest available estimate of entanglement-related mortality and serious
injury attributed to U.S. fisheries, relative to the PBR; 2017 was used as the baseline year for these
calculations. Because any risk reduction achieved by the MRA had already affected the level of fMSI,
adding it to the predicted risk reduction to be achieved with the Preferred Alternatives amounts to
double counting. Therefore, the risk reduction that can be expected to be achieved by the Preferred
Alternative would be 54.4, not 64.3 percent.
In contrast, the Non-preferred Alternative would be expected to achieve a 70-73 percent risk
reduction depending on which options are chosen. In this case, the 50-percent cap on vertical lines
(45 percent), more extensive use of weak-line insertions (35 percent), and closures (33 percent) were
the major contributors to the estimated 70+ percent risk reduction.

The individual risk-reduction estimates are not additive. For example, the effect of a weak-rope measure depends
on how much rope is being used. Suppose that a weak-rope, assessed by itself (i.e., under baseline conditions),
achieve an X-percent risk reduction, while a line-reduction option assessed by itself achieves a Y-percent risk
reduction. Then, the risk reduction achieved by implementing the line-reduction and weak-rope options would be
less X+Y, because with the line reduction in effect there is less line than under baseline conditions that could be
converted to weak rope.

32

 
 
 

Mr. Michael Pentony
1 March 2021
Page 22
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Sironi, P. Corkeron, W. Rayment, E. Leunissen, E. Haria, R. Ward, H.A. Warick, I. Kerr,
M.S. Lynn, H.M. Pettis, and M.J. Moore. Population comparison of right whale body
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Progress Series 466:293–302.
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Atlantic right whale population and impacts of human activities on their reproductive
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reduce right whale entanglements. Report to the Bycatch Reduction Engineering Program
(BREP), National Marine Fisheries Service, Office of Sustainable Fisheries. BREP 1:67-75.
At: https://pdfs.semanticscholar.org/d9b6/49a937a562d010c2a9ab6aad0332d4b1f4aa.pdf
Kraus, S.D., R.D. Kenney, C.A. Mayo, W.A. McLellan, M.J. Moore, and D.P. Nowacek. 2016.
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Laist, D.W., A.R. Knowlton, and D. Pendleton. 2014. Effectiveness of mandatory vessel speed limits
for protecting North Atlantic right whales. Endangered Species Research 23(2):133-147.

 
 
 

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Moore, M., A. Knowlton, S. Kraus, W. McLellan, and R. Bonde. 2004. Morphometry, gross
morphology and available histopathology in Northwest Atlantic right whale (Eubalaena
glacialis) mortalities (1970 to 2002). Journal of Cetacean Research and Management 6: 199−214.
Moore, M.J., T.K. Rowles, D.A. Fauquier, J.D. Baker, I. Biedron, J.W. Durban, P.K. Hamilton, A.G.
Henry, A.R. Knowlton, W.A. McLellan, C.A. Miller, R.M. Pace III, H.M. Pettis, S. Raverty,
R.M. Rolland, R.S. Schick, S.M. Sharp, C.R. Smith, L.Thomas, J.M. van der Hoop, and M.H.
Ziccardi. 2021. Assessing North Atlantic right whale health: threats, and development of
tools critical for conservation of the species. Diseases of Aquatic Organisms 143:205-226.
NMFS. 2019. North Atlantic right whale (Eubalaena glacialis) Western Atlantic Stock. In: US Atlantic
and Gulf of Mexico Marine Mammal Stock Assessments – 2018. S.A. Hayes, E. Josephson,
K. Maze-Foley, and P.E. Rosel (editors). NOAA Technical Memorandum NMFS-NE-258, pp
14-29. At: https://www.nefsc.noaa.gov/publications/tm/tm241/8_F2016_rightwhale.pdf
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and Gulf of Mexico Marine Mammal Stock Assessments – 2019. S.A. Hayes, E. Josephson,
K. Maze-Foley, and P.E. Rosel (editors). NOAA Technical Memorandum NMFS-NE-264, pp
14-29. https://media.fisheries.noaa.gov/dam-migration/2019_sars_atlantic_508.pdf
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significantly reduce large whale serious injury rates. Endangered Species Research 26:115–126.
Pace III, R.M., P.J. Corkeron, and S.D. Kraus. 2017. State-space mark-recapture estimates reveal a
recent decline in abundance of North Atlantic right whales. Ecology and Evolution 7(21):87308741.
Pace III, R.M., R. Williams, S.D. Kraus, A.R. Knowlton, and H.M. Pettis. 2021. Cryptic mortality of
North Atlantic right whales. Conservation Science and Practice 2021:e346.
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annual report card.
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Reeves, R.R., A.J. Read, L. Lowry, S.K. Katona, and D.J. Boness. 2007. Report of the North Atlantic
right whale program review, 13-17 March 2006, Woods Hole, Massachusetts. Marine
Mammal Commission, Bethesda, MD. 73 pp. Available at: https://www.mmc.gov/wpcontent/uploads/rightwhalereport.pdf
Robbins, J., A.R. Knowlton, and S. Landry. Apparent survival of North Atlantic right whales after
entanglement in fishing gear. Biological Conservation 191:421-427.
Rolland, R.M., R.S. Schick, H.M. Pettis, A.R. Knowlton, P.K. Hamilton, J.S. Clark, and S.D. Kraus.
2016. Health of North Atlantic right whales (Eubalaena glacialis) over three decades: from
individual health to demographic and population health trends. Marine Ecology Progress Series
542:265–282.
Schick, R.S., S.D. Kraus, R.M. Rolland, A.R. Knowlton, P.K Hamilton, H.M. Pettis, R.D. Kenney,
and J.S. Clark. 2013. Using hierarchical Bayes to understand movement, health, and survival
in the endangered North Atlantic right whale. PLoS ONE 8(6):e64166.
Sharp, S.M., W.A. McLellan, D.S. Rotstein, A.M. Costidis, S.G. Barco, K. Durham, T.D. Pitchford,
K.A. Jackson, P.-Y. Daoust, T. Wimmer, E.L. Couture, L. Bourque, T. Frasier, B. Frasier, D.
Fauquier, T.K. Rowles, P.K. Hamilton, H. Pettis, and M.J. Moore. Gross and
 
 
 

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1 March 2021
Page 24
histopathologic diagnoses from North Atlantic right whale Eubalaena glacialis mortalities
between 2003 and 2018. Diseases of Aquatic Organisms 135:1-31.
van der Hoop, J.M., A.S.M. Vanderlaan, T.V.N. Cole, A.G. Henry, L. Hall, B. Mase-Guthrie, T.
Wimmer, and M.J. Moore. 2015. Vessel strikes to large whales before and after the 2008 Ship
Strike Rule. Conservation Letters 8:24–32.
van der Hoop, J.M., P. Corkeron, and M.J. Moore. 2015. Entanglement is a costly life-history stage
in large whales. Ecology and Evolution 7:92-106.
Waring GT, Josephson E, Maze-Foley K, Rosel PE (eds) (2011) U.S. Atlantic and Gulf of Mexico
marine mammal stock assessments—2010. NOAA Tech Memo NMFS NE 219. National
Marine Fisheries Service, Woods Hole, MA. www.nefsc.noaa.gov/nefsc/publications/

 
 
 

New England Fishery Management Council
50 WATER STREET

|

NEWBURYPORT, MASSACHUSETTS 01950

|

PHONE 978 465 0492

John F. Quinn, J.D., Ph.D., Chairman | Thomas A. Nies, Executive Director

|

FAX 978 465 3116

February 26, 2021
Mr. Michael Pentony
Regional Administrator
NMFS/GARFO
55 Great Republic Drive
Gloucester, MA 01930
Re: Atlantic Large Whale Take Reduction Plan Regulations (85 FR 96878; NOAA-NMFS-20200031)
Dear Mike:
The New England Fishery Management Council (Council) reviewed the proposed changes to the
regulations implementing the Atlantic Large Whale Take Reduction Plan, as well as the Draft
Environmental Impact Statement (DEIS) that supports the proposed rule. These changes would
modify regulations for the American Lobster and Jonah Crab trap/pot fisheries. While the
Council does not manage either of these fisheries, we do manage seven fisheries that use mobile
gear. We are concerned that the proposed rule and DEIS ignore the possible impacts on these
fisheries. Changes to restricted areas and closures have the potential to impact mobile gear
fishermen; these impacts are not addressed in any way in the DEIS. Indeed, the DEIS does not
even identify mobile gear fisheries as Affected Fisheries and ignores their communities.
Estimates of economic impacts are only provided for the lobster and crab fisheries. These are
shortcomings that should be addressed in the FEIS. As explained below, we are also concerned
about the proposal to allow ropeless fishing in restricted areas.
Section 6.3 of the DEIS discusses the impacts of seasonal restricted areas closed to trap/pot buoy
lines. The analysis notes that trap fishermen have three possible responses: suspend fishing, relocate
gear, or use ropeless retrieval systems. The latter two responses could negatively affect mobile gear
fishermen. In the following paragraphs we explain our concerns about the ropeless gear proposal as
currently drafted and identify issues that should be analyzed in the final EIS (FEIS).
The Council is concerned by the proposal to allow ropeless fishing in restricted or closed areas
(after approval of an EFP) because how this gear would be avoided by mobile bottom-tending
gear is not addressed. There would seem to be two possibilities to minimize this problem: either
mariners purchase equipment that can detect and display the location of the gear, or trap-only
areas are identified. The DEIS does not analyze the impacts of either of these possibilities. As
noted in a presentation given to the Council in December 2020, one of the issues with ropeless
fishing that has yet to be solved is how gear locations are marked for other mariners. Since
1

ropeless gear is not marked on the surface, there is a concern that mobile bottom tending gear
will drag over the trap or pot trawls. There are no cost estimates provided if mobile-gear vessels
either decide (or are required) to purchase the equipment needed to locate the traps. If the
number of fishermen who choose ropeless gear is initially small, the costs to other fisheries may
exceed the cost to trap fisheries. Purchasing and installing the necessary equipment could easily
cost $10,000 or more per trawl vessel 1. The second approach – limiting ropeless gear to traponly areas – would also impose costs that are not addressed in the DEIS. There is no explanation
of how trap-only areas would be determined: would they be limited to areas currently closed to
mobile bottom-tending gear?
As the DEIS notes, new area measures may cause fishermen to relocate. The DEIS
acknowledges in Section 5.2.3.1 that the expansion of ropeless gear in restricted areas could lead
to reduced bottom trawling in these areas, but the analyses only notes this may have positive
benefits for benthic habitat and does not discuss the economic impacts on mobile gear
fishermen2. We acknowledge that the impacts on mobile gear fishermen should trap fishermen
relocate are difficult to evaluate, but they are completely ignored by the DEIS. As noted by
recent Council gear conflict discussions, mobile and trap gear fishermen compete for access to
the ocean. On the one hand, if all traps are removed from an area during a closure, mobile gear
fishermen might benefit from a period where they do not have to avoid lobster gear. On the other
hand, if the gear is moved such that another area can no longer be fished, that will have a
negative impact. It is possible that one mobile gear fishery could benefit while another is
disadvantaged. Gear conflicts may increase, particularly if the traps/pots are moved out of an
area where mobile gear is not permitted into an area where it is allowed (for example, out of the
habitat management area that is overlapped by the proposed South Island Restricted Area). The
FEIS should include analyses that explore these possibilities. This could be done using available
data on the location of different fisheries that overlap the proposed restricted areas, using
information and analytic approaches developed for analyzing the impacts of offshore wind areas.
The Council recognizes that definitive conclusions may not be possible because of the difficulty
in forecasting the response of trap fishermen to the regulations, but the FEIS should still discuss
this issue.
In order to characterize the number of mobile gear vessels that may be affected by ropeless gear
areas or the relocation of lobster fishing effort, my staff examined recent mobile gear (bottom
and midwater trawl, dredge) and fixed gear (bottom longline, sink gillnet) fishing effort in the
proposed restricted areas. The results of that analysis are attached. There are hundreds of mobile
gear vessels that fish in the proposed restricted areas. In the proposed South Island Restricted
Area, surfclam and scallop dredge vessels appear most likely to be affected. In addition, scallop
dredge, clam dredge, bottom trawl, and fixed gear vessels that fish in both the Great South
Channel Restricted Area and the Massachusetts Restricted Area are also at risk. The FEIS should

1

We have been unable to definitively determine the cost of equipment that will detect ropeless gear in time for a
trawl vessel to alter course and avoid it. This estimate is based on the cost of purchasing and installing a forwardlooking depth sounder on a fishing vessel. It may under-estimate the cost if multiple transducers are required. It
also does not consider the availability of vessel haulout facilities.
2
This conclusion of possible positive habitat impacts is suspect. The seasonal exclusion of mobile bottom-tending
gear is not likely to have a major habitat benefit, given that recovery time scales are on the order of months to
years.

2

take a close look at these results and evaluate the impacts on these vessels. The final rule should
address how the concerns of these vessels will be addressed.
To summarize our comments, the Council has great concerns about the proposal to allow
ropeless fishing because at present there is no clear mechanism for mobile gear to avoid it and
the costs to these fisheries are unknown. We also urge the agency to improve the economic
analyses to address the effects of the entire proposed rule on mobile gear fisheries. Thank-you
for providing us the opportunity to comment. Please contact me if you have questions.
Sincerely,

Thomas A. Nies
Executive Director

Attachment: Fishing Effort in the Proposed Whale Restricted Areas

3

Fishing effort in the proposed whale restricted areas
Source: VTR, Clam Logbook. Data compiled by Geret DePiper and Dennis Corvi, NEFSC and summarized
by Michelle Bachman. February 25, 2021
Pot/trap effort, as well as effort using some additional gear types with small amounts of total landings,
are not included in this summary.

South Island Restricted Area
Activity was grouped across multiple gear codes as follows:
•
•
•
•

Clam dredge: DRC
Scallop dredge: DRS, DSC, DTC, DTS
Bottom trawl: OHS, OTC, OTF, OTO, OTR
Bottom fixed gears: GNS, LLB

Target species (>40,000 lb during 2019 in that gear category):
•
•
•
•

Clam dredge: Surfclam, ocean quahog
Scallop dredge: Sea scallop
Bottom trawl: Butterfish, cod, haddock, longfin squid, monkfish, redfish, summer flounder
Fixed gears: Monkfish, tilefish

Trips shows unique TRIPID values from VTR, except for clam dredges, where the GEARID field was used,
because the clam logbooks do not have TRIPID.
The column ‘Average percent inside’ relates to the proportion of the trip footprint estimated to occur
within the restricted area, averaged across the records in the table. This is based on the fishing
footprints method, where the latitude/longitude reported on the VTR is the assumed center of the
spatial distribution of effort, but where activity is inferred over a circular footprint around the center
point. The higher percentages for clam and scallop dredges suggest that clam dredge, and to a lesser
extent scallop dredge, trips are truly focused inside this area, while there is less direct overlap for other
gears. This indirect overlap due to the footprint method is likely responsible for some of the deeperwater target species indicated in the results, such as red crab.
Considering individual seasons and permits (this is not shown in the table below), there are many
vessels with just a few (<5) overlapping trips, but some clam and scallop dredge vessels show many (i.e.
10-30 trips) overlapping the area, suggesting a greater dependency on the area for those fishermen.
Data are for February, March, and April only.

Table 1. Fishing effort in South Island Restricted Area with select gear types.

2015
Clam dredge
Scallop dredge
Bottom trawl
Fixed
2016
Clam dredge
Scallop dredge
Bottom trawl
Fixed
2017
Clam dredge
Scallop dredge
Bottom trawl
Fixed
2018
Clam dredge
Scallop dredge
Bottom trawl
Fixed
2019
Clam dredge
Scallop dredge
Bottom trawl
Fixed

Trips

Average percent
Inside

Permits

Total quantity
kept

182
128
81
7

11
75
51
6

73.49%
30.06%
2.04%
7.05%

1,863,818
1,492,653
2,866,961
144,936

190
194
80
7

14
87
55
3

77.37%
36.57%
1.62%
11.23%

2,128,354
1,945,667
1,538,089
35,590

135
584
90
3

14
137
55
3

90.15%
22.08%
1.26%
13.51%

1,528,607
2,613,525
4,181,955
11,222

156
262
70
13

13
117
37
6

87.18%
47.73%
1.93%
35.22%

1,657,760
2,443,301
2,824,948
163,189

162
629
55
18

12
211
37
9

89.90%
17.77%
0.57%
7.18%

1,565,979
8,022,149
3,971,207
226,407

LMA 1
Activity was grouped across multiple gear codes as follows:
•
•
•

Bottom trawl: OHS, OTB, OTF
Bottom fixed gears: GNS, LLB
Other: HND, OTM, PTM, PUR

Target species (>40,000 lb during 2019 in that gear category):
•
•
•

Bottom trawl: American plaice, lobster, cod, haddock, monkfish, pollock, redfish, whiting, white
hake, witch flounder
Bottom fixed gears: Pollock
Other: Herring

The column ‘Average percent inside’ relates to the proportion of the trip footprint estimated to occur
within the restricted area, averaged across the records in the table. This is based on the fishing
footprints method, where the latitude/longitude reported on the VTR is the assumed center of the
spatial distribution of effort, but where activity is inferred over a circular footprint around the center
point. Unlike the higher percentages for clam and scallop dredges in the South Island RA, these lower
percentages suggest that trips occur partially inside and partially outside LMA 1.
Considering individual seasons and permits (this is not shown in the table below), there are many
vessels with just a few (<5) overlapping trips, but some vessels show 6-20 trips overlapping the area
(higher values for some pot vessels), suggesting a greater dependency on the area for those fishermen.
Data are for October, November, December, and January only.

Table 2. Fishing effort in LMA 1 with select gear types.

2015
Bottom trawl
Fixed
Other
Pots
2016
Bottom trawl
Fixed
Other
Pots
2017
Bottom trawl
Fixed
Other
Pots
2018
Bottom trawl
Fixed
Other
Pots
2019
Bottom trawl
Fixed
Other
Pots

Trips

Average percent
inside

Permits

Total quantity kept

258
92
46
341

44
13
13
36

4%
12%
6%
9%

4,351,353
513,457
4,868,137
1,119,310

301
66
17
278

49
13
8
37

4%
9%
1%
7%

4,238,240
404,642
5,314,607
992,949

340
70
17
288

55
13
5
34

8%
12%
4%
4%

6,259,539
390,664
610,380
843,158

298
69
15
295

44
11
4
35

10%
11%
0%
7%

6,559,828
533,021
1,663,553
786,011

266
36
5
150

41
8
4
27

9%
20%
3%
8%

5,864,087
271,566
484,333
690,753

Great South Channel Restricted Area
Activity was grouped across multiple gear codes as follows:
•
•
•
•
•

Clam dredge: DRC
Scallop dredge: DRS, DSC, DTC, DTS
Bottom trawl: OHS, OTB, OTF, OTO, OTR, OTS
Fixed gears: GNS, LLB
Midwater trawl: OTM, PTM

Target species (>40,000 lb during 2019 in that gear category):
•
•
•
•
•

Clam dredge: Surfclam
Scallop dredge: Sea scallop
Bottom trawl: American plaice, American lobster, cod, haddock, Illex squid, longfin squid,
monkfish, pollock, redfish, scup, silver hake, skates, white hake, winter flounder, witch flounder
Fixed gears: Skates
Midwater gears: Atlantic herring

Trips shows unique TRIPID values from VTR, except for clam dredges, where the GEARID field was used,
because the clam logbooks do not have TRIPID.
The column ‘Average percent inside’ relates to the proportion of the trip footprint estimated to occur
within the restricted area, averaged across the records in the table. This is based on the fishing
footprints method, where the latitude/longitude reported on the VTR is the assumed center of the
spatial distribution of effort, but where activity is inferred over a circular footprint around the center
point. The higher percentages for scallop dredges and fixed gears suggests these trips are truly focused
inside this area, while there is less direct overlap for other gears.
Data are for April, May, and June only.

Table 3. Fishing effort in GSC Restricted Area with select gear types.

2015
Clam dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2016
Clam dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2017
Clam dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2018
Clam dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2019
Clam dredge
Scallop dredge
Bottom trawl
Fixed

Trips

Average percent
inside

Permits

Total quantity
kept

28
385
436
33
24

7
120
110
10
17

2%
42%
19%
8%
34%

604,934
2,678,375
13,049,800
17,147,686
297,826

78
183
410
37
70

11
87
120
11
25

6%
40%
15%
35%
30%

912,153
1,994,880
13,038,256
18,583,674
1,361,869

87
171
396
22
65

9
102
109
9
19

9%
38%
19%
23%
42%

1,280,561
1,583,087
8,827,336
11,608,135
647,718

32
707
306
1
43

9
151
79
1
17

35%
81%
20%
15%
46%

1,043,009
3,241,612
8,113,599
150,600
391,530

62
708
306
35

10
138
80
14

21%
88%
20%
39%

907,942
2,614,005
8,609,141
362,085

Massachusetts Restricted Area
Activity was grouped across multiple gear codes as follows:
•
•
•
•
•

Other dredge: DRC, DRO
Scallop dredge: DRS, DSC, DTC, DTS
Bottom trawl: OHS, OTC, OTF, OTR, OTS
Fixed gears: GNS, LLB
Midwater trawl: OTM, PTM

Target species (>40,000 lb during 2019 in that gear category):
•
•
•
•
•

Other dredge: Surfclam
Scallop dredge: Sea scallop
Bottom trawl: American plaice, American lobster, cod, haddock, monkfish, pollock, redfish,
skates, white hake, winter flounder, yellowtail flounder
Fixed gears: No single species above threshold
Midwater gears: Atlantic herring

Trips shows unique TRIPID values from VTR, except for the other dredge category, where the GEARID
field was used, because the clam logbooks do not have TRIPID.
The column ‘Average percent inside’ relates to the proportion of the trip footprint estimated to occur
within the restricted area, averaged across the records in the table. This is based on the fishing
footprints method, where the latitude/longitude reported on the VTR is the assumed center of the
spatial distribution of effort, but where activity is inferred over a circular footprint around the center
point. The higher percentages for scallop dredges and fixed gears suggests these trips are truly focused
inside this area, while there is less direct overlap for other gears.
Data are for February, March, and April only.

Table 4. Fishing effort in Massachusetts Restricted Area with select gear types.
Row Labels
2015
Other dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2016
Other dredge
Scallop dredge
Bottom trawl
Fixed
2017
Other dredge
Scallop dredge
Bottom trawl
Fixed
2018
Other dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed
2019
Other dredge
Scallop dredge
Bottom trawl
Midwater trawl
Fixed

Trips

Average of
Percent Inside

Permits

Total quantity
kept

164
361
346
7
12

11
75
78
4
5

23%
84%
26%
80%
7%

1,526,971
928,924
5,519,323
2,278,366
109,024

145
439
578
100

12
106
89
17

23%
69%
25%
67%

1,454,743
1,446,450
4,913,809
126,220

67
573
634
74

12
135
99
16

23%
86%
22%
73%

834,111
2,077,342
6,147,289
101,331

51
919
576
*
78

6
115
80
*
17

31%
82%
26%
*
60%

697,069
1,426,691
6,103,193
*
151,037

58
1062
521
*
73

10
139
71
*
13

32%
85%
27%
*
80%

673,205
2,288,495
6,747,962
*
91,132

Atlantic States Marine Fisheries Commission
1050 N. Highland Street • Suite 200A-N • Arlington, VA 22201
703.842.0740 • 703.842.0741 (fax) • www.asmfc.org
Patrick C. Keliher (ME), Chair

A.G. "Spud" Woodward (GA). ['ice-Chair

Robert E. Beal, Executive Director

Sustainable and Cooperative Management of Atlantic Coastal Fisheries

March 1, 2021
Michael Pentony
Regional Administrator
National Marine Fisheries Service
55 Great Republic Drive
Gloucester, Massachusetts 01930
Dear Mr. Pentony,
I am writing on behalf of the Atlantic States Marine Fisheries Commission (Commission) to provide
comments on the Draft Environmental Impact Statement (DEIS) and proposed rule to modify the
Atlantic Large Whale Take Reduction Plan (ALWTRP).
The Commission urges NOAA Fisheries to work towards timely completion of the final rule for the
ALWTRP. Complementary to the ongoing changes in the ALWTRP is a court ordered completion of a
Biological Opinion under Section 7 of the ESA. In his August 19, 2020 ruling, U.S District Court Judge
James E. Boasberg ordered NOAA Fisheries to issue a new Biological Opinion on federal fisheries no
later than May 31, 2021. While the court order is not specific to the proposed rule, timely completion of
changes to the ALWTRP is necessary so that the two documents move in parallel and these regulatory
changes can be considered in the Biological Opinion. Delay of the Biological Opinion, or supporting
documentation in this rule, has the potential for the court to intervene with a complete closure of the
lobster and Jonah crab fisheries, which would have devastating impacts to the industry and the
communities they support.
The proposed rule would reduce the number of vertical buoy lines fished outside of areas exempted
under the ALWTRP by increasing the minimum number of traps required per trawl (known as trawlingup) based on area fished and distance from shore. As the purpose of these measures is to reduce the
number of vertical buoy lines, the Commission requests the final rule allow for trawl equivalency within
an area. Trawl equivalencies give the individual harvester the flexibility to adapt to new fishing practices
while using configurations that achieve the intentions of the ALWTRP. The diversity of bottom habitat
and the fishing fleet make one size fits all regulations difficult and dangerous for harvesters. Within a
small area there can be significant variation in vessel size and configuration, with varying capacity for
safely hauling and carrying traps. However, under the proposed rule, all vessels must follow the same
trap per trawl requirement. Larger trap per trawl requirements pose safety concerns for smaller vessels,
or vessels with less deck space, because they do not have the capacity to haul or hold the required
trawls. The Commission is supportive of trawl equivalencies because they provide more flexibility for
harvesters to use alternative configurations, and address logistic and safety concerns, while still
accomplishing the required vertical line reductions. The Commission's American Lobster Fishery
Management Plan (FMP) does not specify the number of traps per trawl, therefore trawl equivalencies
will not undermine the FMP.
MAINE • NEW HAMPSHIRE • MASSACHUSETTS • RHODE ISLAND • CONNECTICUT • NEW YORK • NEW JERSEY • DELAWARE
PENNSYLVANIA • MARYLAND • VIRGINIA • NORTH CAROLINA • SOUTH CAROLINA • GEORGIA • FLORIDA
L2I-016

Mr. Pentony
Page 2
March 1, 2021
The Commission is concerned that although the proposed rule includes provisions for "ropeless" fishing
to occur within the seasonal restricted areas, it does not adequately address the costs of transitioning to
ropeless gear. The DEIS estimates costs associated with suspending fishing or relocating effort during
seasonal closures, but does not provide any analysis to estimate the costs of adopting ropeless gear. In
addition, there is no discussion in the DEIS on the costs that ropeless fishing testing could incur on nontrap gear fisheries, such as the mobile gear fleet. Since the removal of surface systems would eliminate
the visual signal of where traps are located, vessels operating in ALWTRP closed areas, including those
who participate in mobile gear fisheries, would need to have an acoustic modem in order to locate
submerged taps, or they may be shut out of fishing in certain areas if there is no way to detect ropeless
fishing gear to avoid gear conflicts. Given the uncertainty in the vessels that would be impacted by the
use of ropeless fishing in closed areas, the Commission requests a comprehensive cost analysis be
conducted.
There is still significant uncertainty surrounding the enforceability of lobster resource management
measures with ropeless fishing. Currently no state marine enforcement vessels are equipped with the
appropriate technology to retrieve and return ropeless fishing devices. Without adequate resources to
properly equip law enforcement vessels and train officers on the new equipment, the use of ropeless
fishing in closed areas could result in incomplete enforcement of management measures within the
lobster and Jonah crab fisheries. This challenge may be further complicated if multiple ropeless
technologies with different retrieval mechanisms are tested within a state. The DEIS should analyze the
impact of ropeless fishing testing on the ability to adequately enforce lobster management resource
measures.
The ALWTRP measures must be enforceable in order to have positive impacts on whale populations.
The Commission has previously expressed concern to NOAA Fisheries over the lack of offshore
enforcement. Specifically, enforcement of regulations in the offshore portion of the lobster/crab
pot/trap fishery is minimal and both the Commission and industry were concerned the incidence of
non-compliance is rising. These concerns still hold true today. If the measures required by the
ALWTRP cannot be enforced, the ALWTRP will not be successful. While the distance from shore and
depth 9f water create unique challenges in monitoring the offshore lobster fishery, the Commission
believes solutions exist to effectively enforce regulations throughout the management unit.
It is irrefutable that the impacts of the ALWTRP will be substantial and will result in negative economic
and social impacts on the lobster and Jonah crab fisheries, as well as dependent communities. The DEIS
estimates the total cost of the proposed rule over the first six years of implementation to be between
$24.5 and $53.5 million, in 2020 dollars, with compliance costs per small business entity ranging from
$1,900 to $4,100 per year for six years. Given the magnitude of the proposed changes, they will not only
take time to implement, but will also impose significant costs to thousands of harvesters. It is vital the
fmal rule take this into consideration and provide practical start dates for implementation of the
proposed measures, such that the required changes can be achieved without severe economic
consequences to the fisheries.
As proposed, the ALWTRP will require extensive changes to the operation of lobster and crab trap/pot
fisheries in the Northeast region. To ensure the smoothest possible transition to the new requirements

Mr. Pentony
Page 3
March 1, 2021
across all affected states and areas, and minimize negative economic impacts to the fishery, coordination
with state agencies, law enforcement, the Commission and the industry will be essential.
The Commission is prepared to provide support as NOAA Fisheries moves forward with the proposed
modifications to the Plan to achieve a 60% risk reduction. We appreciate NOAA Fisheries support and
collaboration on this important issue.

Sincerely,

Robert E. Beal

cc: American Lobster Management Board
ISFMP Policy Board

Dr. Paul Doremus
Acting Assistant Administrator for NOAA Fisheries
National Marine Fisheries Service
1315 East-West Highway
Silver Spring, MD 20910
Dear Dr. Doremus,
As a member of both the ASRG and the ALWTRP I sit in an interesting position to comment on
the proposed rule implementing amendments to the Atlantic Large Whale Take Reduction Plan.
In this joint capacity, I respectfully submit comments and recommendations with regards to the
science and process for the development of the the proposed rule:
1. With respect to the 60% risk reduction target – Updating M/SI estimates to include
unobserved mortality indicates that Alternative 2 of the proposed rule’s 60% risk
reduction would not reduce takes below PBR; however, Alternative 3 which achieves an
estimated 70-86%% risk reduction would have a better chance of reducing takes to
below overall PBR:
a. if 4.82 M/SI per year are from Federal trap/pot fisheries (as per BiOp, pg.227 and
Table 59),
b. A 60% reduction would allow 1.93 takes per year, but
c. PBR is 0.8 (and 0.4 for US fisheries), and
d. A 70 to 86% reduction would reduce takes to 1.45 to 0.67 per year in the Federal
trap/pot fishery.
2. Seasonal restricted area” alternatives are insufficiently broad in time and space –
a. The “Massachusetts South Islands” seasonal gear closure area doesn’t take into
consideration recent surveys which well document that many NARW foraging
there through the winter and to the south of Martha’s Vineyard, so NOAA should
consider expanding the proposed gear closure areas south of both Islands in
time and space based on recent aerial and acoustic surveys. The preferred
alternative relies too heavily on just the latest year or two of data available at
the time, but NARWs have occurred throughout much of the larger rectangular
area in Alternative 3 over the 2010–2020 period.
b. BSIA also suggests that seasonal restricted area in LMA1 could be extended into
LMA 3 for additional risk reduction, The Duke model, WHOI glider detections,
and the co-occurrence model all suggest that any potential hot spot of right
whales in this area extends beyond the LMA1 boundary into LMA 3. It is not clear
why the restriction is only proposed for in LMA1. This is another place which
could achieve significant risk reduction.
3. Dynamic Area Closures could further reduce entanglement risk - Given that the
presence of NARWs in the Massachusetts South Island and LMA1 seasonal restricted
areas are reflect a new phenomenon resulting from shifting distributions of NARW prey,
it is likely that whales will continue to be found in areas and times which are not

protected by seasonal gear closures. For example, whales can occur in the South Island
area in any month of the year, with an unusual peak (from summer) in July. Additionally,
sightings of right whales in the proposed LMA1 closure are highly variable across time.
As such, dynamic area closures to fixed gear should be reconsidered as a way to spatially
protect ephemeral groupings of whales.
4. The reduction of M/SI to NARW achieved from reliance on weak links and weak
vertical lines with <1700# breaking strength may be less than estimated., because:
a. The Knowlton et al (2015) analysis suggesting whales do not become entangled
in lines with a breaking strength of less than 1700# line in use is biased in that
very few vertical lines in the analysis period had breaking strengths < 1,700#;
b. After the implementation of weak links, the frequency of whales being anchored
by or dragging pots appears to have declined (no NARW have been found trailing
pots or anchored to gear in the US during 2015-2019), as such further weakening
vertical line strength may not significantly reduce this sort of interaction; and
c. Entangling whales in lines < 1,700# may still lead to M/SI and sublethal effects
(leading to reduced reproduction).
5. The process by which the amendments to the ALWTRP were developed did not
involve the entire ALWTRT – the Take Reduction Team developed a consensus
framework TRP in April 2019, but the states and industry fleshed out their individual
area’s plans separately from the Team’s discussions. The TRP should then have come
back to the full Team for final review; lacking that review, the final plan should not be
considered to be a consensus plan.
6. A Final thought - These comments are all major revisions to the proposed rule, and
given the timeline, it will be difficult to adequately consider them/analyze data, and
then meet with the Team for consensus. As such, NOAA should consider developing a
Supplemental Proposed Rule within a timeline sufficient to incorporate consideration of
significant comments, and use the spring ALWTRT meeting to work towards a consensus
on the final plan/rule.
Thanks for consideration of my comments!!
Sincerely,
Richard L Merrick
Richard L Merrick
[email protected]

Public Comments on DEIS ALWTRP & Trap/Pot Gear
1/27/2021

Overall view: The proposed plan seems to have largely disregarded the nearly unanimous

recommendations of the TRT. It is my recollection that the main thrust of the TRT nearconsensus recommendations hinged on reducing vertical lines, and since ropeless fishing
technology and management of gear conflict seem to be a continuing challenge, that left the
TRT with removal of vertical lines by reduction of effort as the best alternative. The rationale of
this is that success of risk reduction from removal of vertical lines does not depend on cooccurrence modeling or the survey effort, data and time required to update such modeling. This
brings me to my biggest concerns with the new plan, which are outlined below.
1) Perhaps most importantly, the risk reduction measures being proposed are based on a PBR
for right whales of 0.9. Not only does this ignore the best available data which suggests a
reduction in PBR is in order, but it also allocates the full PBR to the pot/trap fishery. Since
gillnets and vessels also play sizable roles in the decline of NARW, meeting a 0.9 PBR with
pot/trap gear, which l still don't think this plan does, would still have cumulative mortalities
above 0.9 PBR with combined vessel and gillnet mortalities. Using 0.9 PBR for pot/trap fishery
alone would require that ALL other anthropogenic mortality be reduced to zero. Since l doubt
there is a plan to do that, pot/trap fishery should not be allocated the full 0.9 PBR, but rather a
percentage of that which correlates to the percentage of mortalities that fishery is estimated to
be responsible for. l find this to be one of the greatest flaws in this plan, and one that will likely
ensure continued cumulative mortality above PBR and therefore not meet the mortality
reduction required by law.
2) Since management that is based on co-occurrence modeling depends on distribution of the

gear and the whales, heavy dependence of static restricted areas (e.g. LMA1) to reduce risk
seems flawed at best. The reason for this is twofold:
A) Even though restricted areas may reduce some risk, it seems like a far more
theoretical risk reduction measure than removal of vertical lines, which is a tangible risk
reduction that provides protection to the whales throughout their movements. Afterall,
whales do not miraculously arrive in restricted areas.
B) There is no current mechanism l am aware of for real-time monitoring of whale
distribution or modification of said distribution within the restricted areas in the event
distribution shifts out of the restricted areas. Since any modification of restricted areas
would require another very lengthy TRT process, it is an untenable mechanism for
managing this species or the main threat to it, even if we had reliable real-time survey
effort to support such a modification to the restricted area.
Even without the likely impending reduction of PBR, l have a hard time seeing how this measure
would satisfy the management needs for these endangered whales.
3) Since the new population data suggests PBR should be lowered, how is it you are proceeding
with the old risk reduction numbers? Would a drop in PBR not necessitate an increased risk

Public Comments on DEIS ALWTRP & Trap/Pot Gear
1/27/2021
reduction required to meet sustainable numbers? I recognize the new numbers are not yet
confirmed in the newest the Stock Assessment Report, but if we have knowledge of their
existence and believe them to be credible, disregarding them in the formation of the required
risk reduction and this DEIS seems negligent. The DEIS states that the TRT focused
recommendations on the lower 60% risk reduction because of economic impacts to the fishery,
among other things. Given the new population data and how long this process has taken
(outside of the TRT process), I dare suggest several TRT members may have a different opinion.
Therefore, this statement within the DEIS represents TRT comments and opinions that have not
aged well with new information.

4) At first glance, the measures discussed in the preferred option for LMA3 seem woefully
inadequate. Given line strengths, pot counts, etc., LMA3 arguably presents the most lethal
interactions for NARWs due to both line strength and weight of the trawl of pots. The measures
being taken do not, in my opinion, reduce this significant threat adequately. Since PBR is so low
(and likely will fall lower), only a few interactions with this gear could easily exceed PBR. Due to
the water depth, distance from shore, and weight of the gear, these mortalities will likely go
undetected. Out of sight, out of mind but the population continues to decline.
5) LMA3 also presents a monitoring and enforcement challenge. Trawling up to 45 pots
presents a challenge to agencies tasked with gear inspections. Are the vessels responsible for
gear inspection capable of pulling up and inspecting such large pot strings? If the gear cannot
be monitored/inspected, this measure is unenforceable, and therefore one of the largest risks
in LMA3 remains.
6) State management credits: It is my understanding that several state credits are being added
to the risk reduction estimates, yet I am not clear on how the credits are estimated. l also may
have missed any discussion regarding how those states will be held accountable for those
measures, other than vague statements about Plan modifications being made in response. As
someone who has seen how our state manages the menhaden fishery within the Chesapeake
Bay, I have serious concerns. At the TRT meeting NOAA leadership gave speeches about the
urgency of the situation, and that drastic measures must be taken. The DEIS has language
suggesting that further modifications to the Plan may be made if the identified state measures
are not implemented. This suggests another possible source of significant delay, since even
more time would be required to allow state implementation, evaluate state implementation,
and enact additional measures to combat lack of state implementation. This strategy goes
against the very urgency NOAA leadership expressed at the TRT meeting and adds additional
time to what has already been significantly delayed.
7) Weak lines (breaking at 1,700 lbs) are not a clean answer. While the preferred option of the
DEIS assigns 26% risk reduction to weak lines, it is not yet clear to me how that risk reduction is
calculated, since lines can lead to different types of mortality, namely acute/peracute mortality
through underwater entrapment, and chronic mortality or morbidity through gradual
laceration, constriction, infection, amputation, etc. Never mind the fact that weak lines don't

Public Comments on DEIS ALWTRP & Trap/Pot Gear
1/27/2021
really address young whales, which I am unclear if counted in this particular risk reduction. The
1,700 lbs breaking strength likely only addresses acute mortalities. Without significant vertical
line reductions, the threat is still considerable, and despite restricted areas, the whales must
still travel through all the gear to get to those areas. Therefore, when estimates that all buoy
lines (outside of ME exemption areas) would be "modified and more than 26% of the
rope...would be weakened", this certainly does not translate into as large a risk reduction
because even weaker lines are deadly. This is once again a strong argument for vertical line
reduction.
8) Comments in the DEIS about the regional administrator determining whether frequency of

entanglements has been reduced by 60% ring hollow to me. I do not pretend to know all the
intricacies or data channels, but it is my understanding that the fidelity in data to make such a
determination is questionable, at least on a short-term basis. Additionally, it is possible such
determination depends on a few specific organizations obtaining such data, rather than
inherent NOAA programs. If this is indeed the case, it remains unclear to me how this clause is
very meaningful, or how such determinations will be made by the regional administrator.
Sincerely,
I\

,

Alexander M. Costidis, Ph.D.
Senior Scientist
Stranding Response and Biomedical Research
Stranding Response Program
Virginia Aquarium & Marine Science Center
Additional affiliations:
NOAA Right whale necropsy team leader
NOAA Unusual Mortality Event working group member
Atlantic Large Whale Take Reduction Team member

ACostidis_Comments to Colleen regarding DEIS for ALWTRP_1-19-2021

Hi Colleen,
Thank you for giving us a synopsis of the proposed rule last week. I would like to start by saying
that I do not envy your job. I wanted to follow up with some comments to you, though I plan to
also submit public comments.
Overall view: As confirmed during the Q&A, the plan seems to have largely disregarded the
nearly unanimous recommendations of the TRT. On a personal note, the whole process of the
TRT and plan development has been very disappointing. While I recognize the TRT is supposed
to serve an advisory role, the backroom dealings that transpired with only certain “team”
members of the TRT go a long way toward jeopardizing any legitimacy the process has.
It is my recollection that the main thrust of the TRT near-consensus recommendations hinged
on reducing vertical lines, and since ropeless fishing technology and management of gear
conflict seem to be a continuing challenge, that left us with removal of vertical lines by
reduction of effort as our best alternative. The rationale of this is that success of risk reduction
from removal of vertical lines does not depend on co-occurrence modeling or the survey effort,
data and time required to update such modeling. This brings me to my biggest concerns with
the new plan.
1) Since management based on co-occurrence modeling depends on distribution of the gear
and the whales, heavy dependence of static restricted areas (e.g. LMA1) to reduce risk seems
flawed at best. The reason for this is twofold:
A) Even though restricted areas may reduce some risk, it seems like a far more
theoretical risk reduction measure than removal of vertical lines, which is a tangible risk
reduction that provides protection to the whales throughout their movements. Afterall,
whales do not miraculously arrive in restricted areas.
B) There is no current mechanism I am aware of for real-time monitoring of whale
distribution or modification of said distribution within the restricted areas in the event
distribution shifts out of the restricted areas. Since any modification of restricted areas
would require another very lengthy TRT process, it is an untenable mechanism for
managing this species or the main threat to it, even if we had reliable real-time survey
effort to support such a modification to the restricted area.
Even without the likely impending reduction of PBR, I have a hard time seeing how this measure
would satisfy the management needs for these endangered whales.
2) Since the new population data suggests PBR should be lowered, how is it you are proceeding
with the old risk reduction numbers? Would a drop in PBR not necessitate an increased risk
reduction required to meet sustainable numbers? I recognize the new numbers are not yet
confirmed in the newest the Stock Assessment Report, but if we have knowledge of their
existence and believe them to be credible, disregarding them in the formation of the required

ACostidis_Comments to Colleen regarding DEIS for ALWTRP_1-19-2021

risk reduction and this DEIS seems negligent. The DEIS states that the TRT focused
recommendations on the lower 60% risk reduction because of economic impacts to the fishery,
among other things. Given the new population data and how long this process has taken
(outside of the TRT process), I dare suggest several TRT members may have a different opinion.
Therefore, this statement within the DEIS represents TRT comments and opinions that have not
aged well with new information.
3) Perhaps most importantly, the risk reduction measures are being based on a PBR of 0.9. This
allocates the full PBR to the pot/trap fishery. Since gillnets and vessels also play sizable roles in
the decline of NARW, meeting a 0.9 PBR with pot/trap gear, which I still don’t think this plan
does, would still have cumulative mortalities above 0.9 PBR with combined vessel and gillnet
mortalities. Using 0.9 PBR for pot/trap fishery would require that ALL other anthropogenic
mortality be reduced to zero. Since I doubt there is a plan to do that, pot/trap fishery should
not be allocated the full 0.9 PBR, but rather a percentage of that which correlates to the
percentage of mortalities that fishery is estimated to be responsible for. I find this to be one of
the greatest flaws in this plan, and one that will likely ensure continued cumulative mortality
above PBR.
4) At first glance, the measures discussed in the preferred option for LMA3 seem woefully
inadequate. Given line strengths, pot counts, etc., LMA3 arguably presents the most lethal
interactions for NARWs due to both line strength and weight of the trawl of pots. The measures
being taken do not, in my opinion, reduce this significant threat adequately. Since PBR is so low
(and likely will fall lower), only a few interactions with this gear could easily exceed PBR. Due to
the water depth, distance from shore, and weight of the gear, these mortalities will likely go
undetected. Out of sight, out of mind but the population continues to decline.
5) LMA3 also presents a monitoring and enforcement challenge. Trawling up to 45 pots
presents a challenge to agencies tasked with gear inspections. Are the vessels responsible for
gear inspection capable of pulling up and inspecting such large pot strings? If the gear cannot
be monitored/inspected, this measure is unenforceable, and therefore one of the largest risks
in LMA3 remains.
6) State management credits: It is my understanding that several state credits are being added
to the risk reduction estimates, yet I am not clear on how the credits are estimated. I also may
have missed any discussion regarding how those states will be held accountable for those
measures, other than vague statements about Plan modifications being made in response. As
someone who has seen how our state manages the menhaden fishery within the Chesapeake
Bay, I have serious concerns. At the TRT meeting NOAA leadership gave speeches about the
urgency of the situation, and that drastic measures must be taken. The DEIS has language
suggesting that further modifications to the Plan may be made if the identified state measures
are not implemented. This suggests another possible source of significant delay, since even
more time would be required to allow state implementation, evaluate state implementation,
and enact additional measures to combat lack of state implementation. This strategy goes

ACostidis_Comments to Colleen regarding DEIS for ALWTRP_1-19-2021

against the very urgency NOAA leadership expressed at the TRT meeting and adds additional
time to what has already been significantly delayed.
7) Weak lines (breaking at 1,700 lbs) are not a clean answer. While the preferred option of the
DEIS assigns 26% risk reduction to weak lines, it is not yet clear to me how that risk reduction is
calculated, since lines can lead to different types of mortality, namely acute/peracute mortality
through underwater entrapment, and chronic mortality or morbidity through gradual
laceration, constriction, infection, amputation etc. Never mind the fact that weak lines don’t
really address young whales, which I am unclear if counted in this particular risk reduction? The
1,700 lbs breaking strength likely only addresses acute mortalities. Without significant vertical
line reductions, the threat is still considerable, and despite restricted areas, the whales must
still travel through all the gear to get to those areas. Therefore, when estimates that all buoy
lines (outside of ME exemption areas) would be "modified and more than 26% of the
rope...would be weakened", this certainly does not translate into as large a risk reduction
because even weaker lines are deadly. This is once again a strong argument for vertical line
reduction.
8) Comments in the DEIS about the regional administrator determining whether frequency of
entanglements has been reduced by 60% ring hollow to me. I do not pretend to know all the
intricacies or data channels, but it is my understanding that the fidelity in data to make such a
determination is questionable, at least on a short-term basis. Additionally, it is possible such
determination depends on a few specific organizations obtaining such data, rather than
inherent NOAA programs. If this is indeed the case, it remains unclear to me how this clause is
very meaningful, or how such determinations will be made by the regional administrator.
Sincerely,

Alex Costidis

	
Mr. Ben Friedman
Deputy Under Secretary for Operations, performing the duties of Under Secretary of Commerce for
Oceans and Atmosphere and NOAA Administrator
National Oceanic and Atmospheric Administration
Re: Document ID NOAA-NMFS-2020-0031-0006 on the Proposed Rule Taking of Marine Mammals
Incidental to Commercial Fishing Operations; Atlantic Large Whale Take Reduction Plan Regulations;
Atlantic Coastal Fisheries Cooperative Management Act Provisions; American Lobster Fishery
March 1, 2021
Dear Mr. Friedman,
In response to the National Oceanic and Atmospheric Administration’s (NOAA) Proposed Rule (Proposed
Rule) to amend the regulations implementing the Atlantic Large Whale Take Reduction Plan to reduce
the incidental mortality and serious injury to North Atlantic right whales (Eubalaena glacialis), fin whales
(Balaenoptera physalus), and humpback whales (Megaptera novaeangliae) in northeast commercial
lobster and crab trap/pot fisheries to meet the goals of the Marine Mammal Protection Act and the
Endangered Species Act, the New England Aquarium (Aquarium) submits this comment to express our
strong reservations that the measures outlined in the Proposed Rule and accompanying Draft
Environmental Impact Statement (DEIS) are not nearly aggressive enough to change the fate of North
Atlantic right whales (NARW) in U.S. waters. Based on our decades of NARW expertise, the Aquarium
strongly urges NOAA to revise this Proposed Rule substantially before finalizing it.
Founded in 1969, the Aquarium is a catalyst for global change through public engagement, commitment
to marine animal conservation, leadership in education, innovative scientific research, and effective
advocacy for a vital and vibrant ocean. For decades, the Aquarium has been working to protect marine
and freshwater ecosystems from human impacts and conserve threatened and endangered animals and
habitats. The Aquarium’s scientists conduct cutting-edge research to understand, quantify, and reduce
the consequences of human activities on the health of marine species and ecosystems by developing
science-based solutions and advocating for policies that balance human use of the ocean with the need
for a healthy, thriving ocean now and in the future.
Scientists at the Aquarium have been researching NARWs for more than 40 years with the express goal
of preventing this species from going extinct. To that end, scientists from the Aquarium have served on
the Atlantic Large Whale Take Reduction Team (ALWTRT) since it was formed in 1996. While we are
pleased to see that published research by our scientists was used to inform aspects of the Proposed
Rule, our primary concern with the Proposed Rule is that it fails to utilize more recent scientific results
and, as a result, the proposed measures will fail to reduce the risks to NARWs and other whales from
entanglements in fixed fishing gear resulting in serious injuries and mortalities.
The Aquarium’s detailed comments regarding the Proposed Rule and DEIS follow together with specific,
scientifically-informed recommendations on how to strengthen the regulations before they becomes
final. We trust these comments will be viewed as a constructive contribution to the ongoing
deliberations, and we are pleased to elaborate or clarify further as needed.

	

													
	

North Atlantic right whales: Status and Overview of Risks
The population of NARWs has been in decline since 2010, and the best population estimates indicate
that there are only 356 animals alive today1. Given the small size of the population, this species does not
have the capacity to sustain high death rates and unpredictable, but declining birth rates.
During the 2000s, calving rates averaged 24 calves per year, but over the past 12 years (2010-2021),
calving rates have decreased to an average of 12 per year and, in 2018, no calves were born2. Low
calving rates, likely exacerbated by the deteriorating health of reproductive females (Christiansen et al.
2020) caused by prolonged stress from entanglements in fixed fishing gear and other stressors, make it
less and less likely that the population will be able to recover unless changes are made to eliminate
human-caused mortality and help this species survive.
Human-caused mortality and serious injury of NARWs has exceeded legal limits for the past 20 years and
has increased in recent years (Sharp et al. 2019). Furthermore, recently published results show that for
the period 2010-2017, the probability of detecting a whale carcass was just 29 percent, which means
that for every observed death of a NARW, as many as three additional whales have likely died (Pace et
al. 2021). This is particularly relevant to the Proposed Rule because, as the Pace et al. (2021) paper
details, unobserved mortalities likely result from entanglements rather than vessel strikes.
Mortalities and serious injuries of NARWs from fishing gear entanglements have steadily increased from
2001 to the present (Pace et al. 2021; Sharp et al. 2019; and Knowlton et al. 2016). Changes in the
fishing industry likely contributed to this increase. First, the annual number of trap tags documented by
the Maine Department of Marine Resources has steadily increased over time, first exceeding one million
traps in 1970, followed by two million traps in 1982, and three million traps in 1999. The number of trap
tags sold has remained close to or over three million through 20193. Second, in the mid-1990s, rope
manufacturing technology changed, which nearly doubled the strength of ropes used for fishing
(McKenna et al. 2004). Finally, lobster distribution has shifted and more fishermen are choosing to fish
offshore in more months of the year4, which is resulting in greater and more unpredictable overlap with
NARWs who are shifting their movements due to climate change (Record et al. 2019). An assessment of
30 years of entanglement data (1980-2009) showed a total of 83 percent of all NARWs had been
entangled at least once in their lives, and 59 percent had been entangled more than once (Knowlton et
al. 2012). Subsequent analyses that included data through 2018 showed that the number of NARWs that
had been entangled at least once increased to 87 percent and that the frequency of moderate and
severe injuries also increased5. From 2010-2018, a total of 558 entanglements were documented,
resulting in 112 moderate injuries and 84 severe injuries that had both lethal (Sharp et al. 2019) and
sublethal effects (Robbins et al. 2015; Knowlton et al. 2016) on this species6.

																																																								

https://www.narwc.org/report-cards.html
https://www.narwc.org/report-cards.html
3 https://www.maine.gov/dmr/commercial-fishing/landings/documents/lobster.table.pdf
4 https://mlcalliance.org/all-about-lobster/lobster-2-2-inshore-vs-offshore-fishing/
5 https://www.narwc.org/uploads/1/1/6/6/116623219/catalog_report-2020_-_final.pdf
6 https://www.narwc.org/uploads/1/1/6/6/116623219/catalog_report-2020_-_final.pdf
1
2

	
								
	
	

2

													
	

Percent Risk Reduction
RECOMMENDATION 1: In its Final Rule, NOAA should implement measures that reduce the risk of
entanglements of NARWs and other cetaceans in fixed fishing gear by at least 80 percent.
North Atlantic right whales have been in decline for a decade after a slow documented recovery from
the whaling era (Pace et al. 2017). In the absence of strong rules preventing entanglements and vessel
strikes, the abundance of the species has declined at an unacceptable rate to the current number of 356
remaining animals7. Recognizing the time required to finalize regulations that result in action on the
water, we expect the species’ abundance will only continue to decline. The Proposed Rule was
developed to reduce the risks of entanglements in fishing gear by a minimum of 60 percent, which may
have been satisfactory when this process started in 2017, but is no longer sufficient now that that there
are substantially fewer (16 percent) NARWs today than in 2017.
Because the Proposed Rule does not account for the most recent population number and the delays in
finalizing regulations despite having this information available while the rule was being drafted (Pace et
al. 2021), reducing the risk by at least 80 percent is now more appropriate. The Proposed Rule should be
revised to reflect the best-available scientific data on the status of the population and to meet NOAA’s
legal requirements under the Marine Mammal Protection Act and the Endangered Species Act.
The Proposed Rule’s accompanying DEIS states that “the immediate goal of a take reduction plan is to
reduce the serious injury and mortality of strategic stocks being taken during U.S. commercial fishing
operations to below PBR levels within six months of its implementation. The long-term goal of a take
reduction plan is to reduce, within five years of its implementation, the incidental mortality and serious
injury of strategic marine mammals taken in the course of commercial fishing operations to insignificant
levels approaching a zero mortality and serious injury rate…” (p. 299); however, the Aquarium argues
that reducing risk by 60 percent will not reduce mortalities and serious injuries to below the Potential
Biological Removal (PBR) of 0.8 in a five-year timeframe.
The Aquarium would like to take this opportunity to address a common misinterpretation of the
modeling results presented in Linden (2021) that suggested removing all mortality attributed to lobster
fishing will not prevent the population from declining. This misinterpretation is used to argue
that restrictions to the lobster fishery are not justified as they will not improve the conservation status
of NARWs. This reasoning is fallacious. The matrix model used in Linden (2021) is the same one
published in Corkeron et al. (2018), using the R code from that paper. What Linden (2021) does not
provide is the estimates of annual survival and fecundity used to populate the model matrix.
As Corkeron et al. (2018) demonstrate, using the upper estimates of survival that NARWs are capable of
results in an annual population increase on the order of four percent. Corkeron et al. (2018) also
demonstrate that the vast majority of NARW mortality is due to anthropogenic causes
(including lobster fishing). Therefore, if all anthropogenic mortality were eliminated to allow NARWs to
recover, their population should increase in abundance at about four percent per year. As entanglement
in fishing gear accounts for a significant proportion of anthropogenic mortality and morbidity of NARWs
(Sharp et al. 2019 and Pace et al. 2021), reducing the risks of mortality and serious injury from
entanglements will have a conservation benefit.

																																																								
7

https://www.narwc.org/report-cards.html

	
								
	
	

3

													
	

Closures
RECOMMENDATION 2: The Aquarium supports closures as a highly effective tool to reduce the risk of
entanglements in fishing gear and is a proponent of ropeless gear. The Aquarium recommends that
NOAA take following actions to reduce the risks even further:
a. Re-evaluate the closures in the Proposed Rule using a risk-reduction target of 80 percent rather
than 60 percent.
b. Develop a mechanism that allows that allows for expeditious adjustments to be made to the
timing and spatial extent of the closures based on scientific observations that include visual and
acoustic sighting detections and computer modeling confirming the absence or presence of
NARWs.
c. Allow Exempted Fishing Permits (EFPs) in closed areas to evaluate the feasibility of ropeless
gear and further assess potential risks posed by groundlines, early release of endlines, and
increased fishing vessel traffic.
Eliminating vertical lines in the water column is the best tool for eliminating risk of entanglements of
NARWs, and closures are an effective tool to accomplish that. Whales and other marine life in closed
areas typically experience zero risk of becoming entangled in fishing gear, and the Aquarium supports
implementing these measures as one of the methods NOAA can and should employ to reduce the risks
of entanglements.
The distribution of NARWs has shifted dramatically over the past decade, and climate change has made
their movements more difficult to predict. As new aggregation areas are identified from direct
observations, acoustic detections, and/or modelling, it is important to have a rapid regulatory response
method to change, expand, or extend closures as needed and to allow ropeless fishing in these closed
areas. A network of closures should occur throughout the species’ range and protect a sufficiently large
enough area to help the population recover (see “Scientist letter,” Appendix 1).
To ensure testing of ropeless gear is conducted as safely as possible, the Aquarium recommends the
following:
1. A thorough evaluation and report by the National Marine Fisheries Service (NMFS) gear team to
determine if sinking groundlines have been found on known U.S. gear entangling large whales
since that regulation was implemented in 2009;
2. A mandate that endlines used in ropeless gear are 1700 pound of force (LBF) breaking strength
through the entire length of the rope; and
3. A requirement that fishing vessels operate at less than ten knots in the EFP and the closed area
regardless of their vessel length.

	
								
	
	

4

													
	

Allowing EFPs into existing closures (Massachusetts Restricted Area and Great South Channel Restricted
Trap/Pot Area), where entanglement risk is currently zero, will inherently increase risk. Considerations
of EFPs in these areas must be conservative and include both careful evaluation of this introduced risk as
well as extensive monitoring. The Aquarium recommends EFPs be allowed in these presently closed
areas only after careful review of testing being conducted elsewhere in the United States and Canada to
understand how much risk might be introduced and whether or not that risk can be reduced.
With respect to the closures detailed in the Proposed Rule, the Aquarium supports maintaining the two
existing closures (the Massachusetts Restricted Area and the Great South Channel Restricted Trap/Pot
Area) as well as implementing the two new seasonal restricted areas (offshore of Maine along the LMA1
and LMA3 border and south of Cape Cod and Nantucket) with the caveat that the closed areas—
including both existing and new closures—be reassessed for both spatial extent and timing using a risk
reduction target of 80 percent to reduce mortalities and serious injuries below PBR and enable NARWs
to recover.
The Aquarium is concerned that the restricted area offshore of Maine (LMA1 restricted area) is not large
enough as the Northeast Fisheries Science Center model is based on outdated survey data that are only
from summer months. In determining the boundaries and extent of the LMA 1 restricted area, the DEIS
relies on its Decision Support Tool (DST), which the Aquarium believes does not consider uncertainty
appropriately. For more information, please see the “Incorporating Uncertainty” section of the
Aquarium’s recent comment on NOAA’s Biological Opinion (Appendix 2).
With respect to the proposed restricted area south of Nantucket and Martha’s Vineyard, aerial surveys
show NARWs in the region most months of the year since 2017 (Quintana-Rizzo pers. comm., paper in
review) with as much as 25 percent of the population present from December through May (Figure 1).
Given these data, we argue that this region should be considered for a year-round closure and that the
largest area proposed be implemented in the Final Rule. In the absence of a year-round closure south of
Nantucket and Martha’s Vineyard, areas where 1700 lbf rope and/or contrivances can’t be used (i.e.
offshore) should remain closed except for fishermen with permits to use ropeless gear.
Finally, according to recently published technical guidelines from the United Nations’ Food and
Agriculture Organization, time-area or spatial closures can be effective when data about the marine
mammals are known, such as distribution, abundance, survival rates, population viability, year-to-year
variability, distribution of fishing effort, and level of bycatch (FAO 2021). Additionally, the guidelines
state:
To be effective, spatial closures should have positive impacts not only within the areas themselves
but also for the population as a whole. Only a few studies have quantified the effect of closures on
the bycatch species or populations of marine mammals for which they were established. Gormley et
al. (2012) used tag-recapture data of Hector’s dolphins in the vicinity of a small reserve in New
Zealand that bans the use of gillnets: they found that the reserve increased the means of survival
probability for the resident population, but the size of the reserve was in itself insufficient for the
recovery of the overall population. Slooten (2013) modelled the potential for population recovery of
this endangered species throughout its entire range under the existing spatial management system,

	
								
	
	

5

													
	

and concluded that the existing scheme (reserve locations, sizes and management regimes) was
unlikely to lead to a recovery of the Hector’s dolphin population, and nor would it prevent the species
from continuing its decline. Rojas-Bracho and Reeves (2013) concluded that protected areas needed
to encompass the entire range of the critically endangered vaquita (Phocoena sinus) in order to
eliminate bycatch completely and give the remaining population a higher probability of recovery. The
consensus from these studies is that adopting spatial closures as a principal management response
for the reduction of bycatch of marine mammals did not achieve adequate – or indeed measurable –
population recovery. This does not mean that they cannot contribute to achieving population
stabilization (FAO 2021).

Figure 1: Monthly sighting rates of NARWs and monthly aerial surveys conducted in the southern New England
wind energy area. Sighting rate is defined as the number of NARWs per 1,000 km of survey (Quintana-Rizzo, pers.
comm, paper in review).

While closures reduce the risk of entanglement in the closed areas for the duration of the closed period,
the Aquarium notes that both fishing effort and the number of vertical lines outside the closed areas
may increase and needs to be accounted for in NOAA’s calculations of risk reduction. The FAO also
identifies the risk of pushing fishing effort into other areas where denser gear can lead to more
entanglements, as noted by NMFS in the DEIS. This is a particular concern in areas where data on gear
density and sightings are not robust due to low survey effort and lack of historical reporting.

	
								
	
	

6

													
	

Recognizing that the Proposed Rule only addresses the commercial lobster and crab fishery in New
England, the Aquarium suggests that in subsequent rulemakings NOAA also consider and propose
additional closures for other fisheries throughout the NARW’s entire U.S. range to bring the risk of
mortalities and serious injuries below the PBR level.
Weak Rope and Other Proposed Gear Modifications
RECOMMENDATION 3: The Aquarium supports implementing 1700 lbf weak rope and/or contrivances
every 40 feet throughout the full length of an endline outside of closed areas as an interim measure to
reduce the likelihood of sustained and chronic entanglements as well as severe and lethal injuries to
whales until the industry transitions to ropeless gear. The Aquarium does not view weak rope and/or
contrivances as a permanent solution to eliminate the risk from entanglement impacts.
Recognizing that ropeless fishing gear is not yet ready for widespread commercial deployment in the
fisheries subject to these regulations, the Aquarium realizes the need for interim measures that allow
fishing to continue while also reducing the risk of mortality and serious injury to whales from
entanglements in fixed fishing gear, which is why the Aquarium supports using weak ropes and/or
contrivances outside of closed areas. If weak rope or contrivances can’t be implemented (e.g. offshore in
water depths of more than 300 feet), then the Aquarium strongly recommends that those fisheries be
closed except to ropeless fishing gear.
Applying weak rope and/or contrivances as described in NOAA’s Proposed Rule is unacceptable if the
goal is to prevent serious injuries and mortalities to NARWs and other whale species.
Using weak rope or insertions at the top half or top third of the endline reduces risk less than the
calculations suggest. In Howle et al. (2019), the authors conducted simulations using the Virtual Whale
Entanglement Simulator and determined that, “For these middle and lower water column interactions,
we found that the encounter was more likely to result in a lasting entanglement.” In these scenarios, if
the rope does not part, the whale could potentially drown in the gear or develop a complex
entanglement that is more likely to lead to death. Therefore, requiring that 1700 lbf rope be integrated
throughout the entirety of an endline will provide the greatest benefit to reduce the severity of any
entanglements.
To accommodate 1700 lbf breaking strength rope through the entire endline and not have
it lead to greater gear loss, integrating a groundline extension between the first and second (or more)
pots is an option. The Aquarium’s work with load cell testing compared the tensions when hauling
the endline of a five-pot trawl with the groundline length between the first and second pot at 90 feet
and 210 feet in 200-foot water depth. In these tests, the tension was reduced by more than half
when the groundline extension was added (Knowlton et al. 2018).
South Shore Sleeves with 1700 lbf breaking strength have been tested successfully in waters up to 300
feet without reconfiguring gear. Based on the map below (Figure 2), this suggests that 1700 lbf breaking
strength rope could be used out to at least 12 nautical miles (nm) offshore in Maine and New Hampshire
and even further offshore in Massachusetts and Rhode Island. In deeper waters, a groundline extension

	
								
	
	

7

													
	

that reduces the number of pots in the water column until the first pot is brought on board could be
used as an approach that supports using 1700 lbf breaking strength rope.
Because rope diameters greater than 7/16 inch represent the deadliest gear to NARWs of all ages and is
typically used in offshore waters, wherever the industry is unable to use 1700 lbf breaking strength rope
and/or approved contrivances, we strongly recommend that those fisheries be closed indefinitely except
to ropeless fishing gear.
Knowlton et al. (2016) showed that the breaking strength of ropes between adult and young juvenile
NARWs was significantly different with all adults found in ropes ranging from ~4,300 to 11,400 lbf
breaking strength and between ~1/2-3/4 inch diameter and 0-2 year olds in ~1,900 to 4,100 lbf ropes
between ~5/16-7/16 inch diameter. Deploying ropes with strengths at or below 1,700 lbf will help all
age groups.
If a whale becomes entangled, 1700 lbf breaking strength rope and/or contrivances will help ensure that
the heavy bottom gear parts from the endline before a complex entanglement develops. In their North
Atlantic Right Whale Consortium presentation in October 20208, Knowlton et al. used OrcaFlex software
simulations to show that tension on the endline near the seafloor will reach 1700 lbf the quickest. This is
encouraging as it would reduce the risk of complex entanglements noted by Howle et al. (2018) if the
entanglements occur at depth.
In addition, applying multiple weak insertions throughout an endline is likely to reduce the risk of trailing
gear. Ocean engineers have noted that the endline reaches 1700 lbf tension closest to and below the
point of impact as the whale starts towing the gear. If any remaining gear is below the point where the
whale strikes, the buoy above the impact point should be able to pull the rope through the mouth or
other part of the body involved in the entanglement and allow the whale to shed the gear more easily.
Using weak insertions may be a cheaper option for the fishery and could potentially be more effective
than fully formed weak rope if breaks occur in a more predictable fashion, although this should be
evaluated by reviewing all large whale entanglements as 1700 lbf ropes and/or contrivances are
integrated into the fishery. To ensure that there is an understanding of what kind of rope remains on an
entangled whale, fully formed 1700 lbf breaking strength ropes should be uniquely colored (as proposed
by the Massachusetts Department of Marine Fisheries9). If this Proposed Rule goes forward as is, which
the Aquarium does not recommend or support, then any endline with one or two weak insertions at the
top half or top third of an endline should be marked to show it is different than the lower part of the
endline. Otherwise, it will be difficult to assess whether or not the modification has helped in the event
of an entanglement.

																																																								
8
9

https://drive.google.com/file/d/1IEF6w-4yGUG5EMTVjO2mqo8k5jX8-UmC/view
https://www.mass.gov/doc/january-28-2021-mfac-meeting-summary/download	

	
								
	
	

8

													
	

Figure 2: Bathymetric map of New England and the Gulf of Maine. Colors represent ocean depth in feet.

Additional benefits to using 1700 lbf breaking strength ropes and/or contrivances are that they may
reduce the chance of a trawl being shifted by a whale or a vessel and they give the fisherman or woman
a better chance of grappling for the trawl.
The intervals proposed in NOAA’s rules are inadequate to reduce serious injuries and mortality resulting
from entanglements in 1700 lbf breaking strength rope in any meaningful way. For fishermen and
women, law enforcement efforts, and the whales, it is critical that weak rope and/or insertions be used
consistently, are easy to identify, and actually prevent lethal and sub-lethal entanglements. Because of
this, the Aquarium strongly advocates that the insertions be required every 40 feet throughout the
entirety of the endline.

	
								
	
	

9

													
	

In Knowlton et al.’s 2020 North Atlantic Right Whale Consortium presentation10, collaborators showed
that if weak links or weak rope weren’t used in an endline, seven out of 12 scenarios (58 percent) failed
to reach the standard rope breaking strength of 3720 or 7950 lbf (inshore/offshore, respectively) when
pulled at four or eight knots. With weak links, only two of 12 scenarios (17 percent) failed to reach the
1700 lbf breaking strength (five-pot trawl pulled at four knots). The time to line parting with weak
links (1700 lbf) integrated every 40 feet was considerably lower (five to 72 seconds) than the time to
parting the stronger rope with no weak links (12 to 94 seconds), but this threshold was only reached in
five of the 12 scenarios indicating some bottom gear would likely remain attached in entanglements
with no weak rope or insertions. Studies suggest that this will greatly increase drag and expedite a
whale’s decline due to energetic impacts (van der Hoop et al. 2016 and 2017; Pettis et al. 2017). This
type of scenario has been most recently observed with the entangled NARW Cottontail (Catalog No.
3920, an eleven-year-old male) who was first observed entangled in October 2020 off southern New
England, resighted off the coast of Florida on February 18, 2021 in severely emaciated condition, and
discovered dead off the coast of South Carolina on February 27, 2021. He apparently had weight
attached to the entangling rope and was not able to be disentangled despite two attempts. It is not yet
known where or in what kind of gear this entanglement occurred.
Although weak ropes and/or contrivances will not prevent entanglements from occurring, the reduced
time to parting of the line and the increased likelihood that the line will part at all suggests that this is a
viable interim option and should be used in all areas outside of closures and in water depths where it
can be accommodated. Offshore waters where industry deems it infeasible to integrate weak rope
and/or contrivances due to potential gear loss or safety concerns should be transitioned to ropeless
fishing to ensure that the stronger ropes are removed from the fishery as quickly as possible.
The Aquarium notes that trailing gear even without attached bottom gear is a concern due to energetic
impacts to NARWs. Maine’s Department of Marine Resources conservation equivalency proposal11
noted that line lengths ranging from 50-200 feet might be left on an entangled NARW, which they
suggest that is not a concern. Research published by van der Hoop et al. (2016) demonstrates that rope
drag itself has a significant effect on energetics. This impact also continues to be observed on the water.
For example, NARW #2310 (a male more than 25-years old) was observed with a single line through the
mouth and trailing one to two body lengths of line December 20, 2018. Subsequent sightings show the
whale carrying this gear for at least 126 days while his condition continued to decline. Since he has been
unable to be disentangled, he may very likely die from an entanglement that does not appear complex
but is clearly being influenced by trailing gear.
Gear Marking
RECOMMENDATION 4: While the Aquarium supports the Proposed Rule regarding gear marking, gear
marking itself does not reduce the risk to NARWs of entanglements in fishing gear; however, in the
rare case where gear is closely observed or retrieved, knowing the location and fishery that caused the
entanglement will provide valuable information to managers.

																																																								

10	https://drive.google.com/file/d/1IEF6w-4yGUG5EMTVjO2mqo8k5jX8-UmC/view	
11	https://www.maine.gov/dmr/news-details.html?id=1933868	

	
								
	
	

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While marking gear in itself will not reduce the risk that whales will become entangled or reduce the
severity of entanglements, as stated in the Proposed Rule, “…the markings would increase the
information available regarding the fishery and state of origin of large whale entanglements to aid the
efforts of NMFS and the ALWTRT…”
The Aquarium agrees that gear marking could provide some valuable information in the small subset of
entanglement cases with attached gear, but not as currently proposed. Of the 1625 entanglement
events documented since 1980, only 124 cases (7.6 percent) had attached gear and only a subset of
those could be traced back to origin. Because such a small fraction of detected entanglements have gear
closely observed or retrieved, it is likely that many serious injuries and mortalities resulting from
entanglements will remain unattributed despite the new gear marking requirements.
Alternatively, if gear marking or rope coloration focused on showing whether a rope was 1700 lbf, this
would help inform whether weaker ropes are showing up on entangled whales and having the intended
benefit (i.e. resulting in a lower risk entanglement). If weak insertions are integrated into endlines, they
could also serve as a weak rope gear mark.
Long-term entanglements can lead to weight and fat loss causing the animals to sink after death (any
heavy gear being dragged by the whale can also cause it to sink). Reducing and eliminating the risk of
entanglements to NARWs in fixed fishing gear must be NOAA’s priority so that identifying the origin of
fishing gear becomes obsolete and unnecessary.
Effort Reduction
RECOMMENDATION 5: While NOAA’s Proposed Rule does not address effort reduction as a potential
tool to reduce risks of entanglements to NARWs, limiting the number of traps fished and reducing the
number of licenses over time will help reduce the number of vertical lines in the water, which can
decrease the likelihood of NARWs becoming entangled in fishing gear. The Aquarium encourages
NOAA to include effort reduction as a tool to reduce risk in the Final Rule, including support for
fishermen and women to transition out of the fishery if needed.
The Aquarium was disappointed to see that the Proposed Rule did not include any measures to reduce
effort in the fishery. Recently published research suggests that effort reduction will not necessarily have
a negative economic impact and, in fact, is likely to generate higher profits while enabling the industry
to operate with less gear in the water and over a shorter season (Myers and Moore 2020). The results
from this work showed that, “The U.S. lobster fishery in Maine expends approximately 7.5 times as much
effort as the Canadian fishery in Lobster Fishing Area 34, where Canadian fishers catch about 3.7 times
more per trap than their counterparts in Maine.” In addition, “The state of Massachusetts has achieved
record high landings since trap/pot seasonal closures have been implemented to protect right whales,
especially within the Statistical Reporting Areas most affected by closures” (Myers and Moore 2020).
The Aquarium is also concerned that trawling up is not the best approach to achieving vertical line
reduction as it introduces safety concerns and does not address gear conflicts that will likely arise from
longer trawls. The DEIS also notes that potential catch reduction from trawling up is the main economic
concern for Alternative 2, although when considering the variability of the lobster resource, this
calculation seems hypothetical. Because fishing with less gear over a shorter season appears to

	
								
	
	

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correspond with higher landings and higher profits while also reducing the risk of entanglements to
NARWs by removing vertical lines from the water column, the Aquarium recommends that NOAA
seriously consider including effort reduction measures in its Final Rule such as the 50 percent endline
cap discussed in Alternative 3 to address safety concerns and potentially improve catch levels (Myers
and Moore 2020).
The Aquarium also recommends that NOAA consider reducing the number of licenses it issues and
offering support for fishermen and women to transition out of the fishery as another mechanism to
reduce effort in the fishery.
Economic Considerations
RECOMMENDATION 6: The Aquarium recommends that NOAA promulgate rules that reduce the risk of
entanglements in fishing gear by 80 percent to prevent the fishery from incurring incremental effort
and expense resulting from multiple rulemakings. In addition, the Aquarium recommends that NOAA’s
economic analysis consider the economic benefits of protecting whales to other sectors of the
economy.
While the Aquarium recognizes the cost of complying with the Final Rule will not be insignificant for the
fishery, after reviewing the Proposed Rule and DEIS, we are concerned that the least-cost alternative is
being promoted at the expense of the long-term survival of NARWs. Rather than prioritizing a more
conservative risk reduction target of 80 percent, which has a greater probability of conserving NARWs as
required by law, the 60 percent target was chosen primarily due to economic considerations (as detailed
on page 22 of the DEIS, Alternative 3, which also achieved the 60 percent target would be a more
effective approach to reduce NARW mortality, but would cost two to three times more per unit of risk
reduction than the preferred alternative).
We note that while NMFS must take economic considerations into account, the least-cost alternative is
not required to be selected. Steps can and should be taken to reduce the cost burden on fishermen and
women that would be affected, as well as to increase regulatory compliance, another stated concern
(DEIS, p. 25). That said, promulgating stronger rules and measures now is not only necessary for the
survival of the species, but may also serve as a future cost-saving measure: If the lesser risk reduction
target (60 percent) does not sufficiently reduce take below PBR, both fishermen/women and NOAA will
be forced to incur additional effort and expense to redo this same process. These incremental costs may
potentially be avoided by applying a more aggressive risk reduction target of 80 percent in this
rulemaking, which has the added benefit of preventing unnecessary deaths of NARWs in the interim. We
also note in the Effort Reduction section of this comment that reducing effort is likely to have a positive
economic impact on the industry as a whole in addition to individual fishermen and women.
Furthermore, the Aquarium notes that the economic analysis focuses on impacts to a single sector of
the economy (fishing industry), without simultaneously considering the potential benefits of increased
NARW protection to other sectors (these benefits are loosely discussed in the Initial Regulatory
Flexibility Analysis section of the DEIS, but are not integrated into the main Economic and Social Impacts
discussion). For example, in Hancock County, identified as one of the more vulnerable communities in
Maine, living resources extraction, which includes commercial fisheries, fish hatcheries, seafood
processing, and seafood markets, contributed $64.5 million in Gross Domestic Product (GDP) to the total
ocean economy of the county in 2017. In contrast, ocean-based tourism and recreation, a sector likely to

	
								
	
	

12

													
	

benefit from an increased population of NARWs and other large whales through improved opportunities
such as whale watching, contributed more than three times that amount—$211.6 million in GDP—for
the same time period (NOAA 2017). These numbers are not unique to Maine. Similar trends are
observed in Massachusetts and Rhode Island, as well.
The economic and social impact sections of the DEIS should explicitly consider the potential economic
and social benefits of the Proposed Rule (e.g. by supporting an increase in the NARW
population), including considering how these benefits may offset costs incurred through the
proposed action (i.e. through economic diversification, opportunities for alternative livelihoods, etc.).
Finally, we note that the economic and social impacts analysis fails to consider the impact that the
ongoing COVID-19 pandemic has had on demand for the fisheries impacted by this Proposed Rule; for
example, in the first six months of 2020, U.S. exports of lobster declined by 44.6 percent (FAO Globefish
2021) and that significant uncertainty regarding the duration and extent of these impacts remains.
Ropeless Fishing Gear
RECOMMENDATION 7: The Aquarium considers ropeless fishing gear as the key to a future in which
fishing and NARWs can coexist and recommends that NOAA should explore every opportunity to
subsidize and otherwise reduce direct costs to fishermen and women related to this action, including
increased funding and grant programs for industry-led trials of ropeless fishing gear.
As described in the Aquarium’s comment regarding closures, testing, evaluation, and deployment
of ropeless gear should be permitted in closed areas (with caveats) and anywhere offshore where
1700 lbf breaking strength ropes can’t be used. NOAA should work closely with scientists,
fishermen/women, and engineers who are presently developing and testing ropeless gear to develop a
detailed timeline, strategy, and cost details for transitioning the fishery.
Furthermore, government investment to develop and evaluate ropeless fishing is urgently needed. Any
federal investments must consider the use of subsidies to help shift all members of the industry affected
by closures, and we encourage NOAA to work with Congress to request the needed appropriations to
facilitate this transition as quickly as possible. These goals should be endorsed by NOAA to signal the
agency’s support of ropeless fishing and to encourage investment and development by commercial
manufacturers. Ropeless retrieval systems are functional today, but a universal solution to monitor a
fishery without buoys marking endlines and address gear conflict issues does not yet exist and must be
developed with the support of NOAA quickly. These investments will benefit fishermen/women and
whales, and should be a top priority (modified from “Scientist Letter,” Appendix 1).
Reporting, Monitoring, and Enforcement
RECOMMENDATION 8: NOAA should work with states to continue improving compliance and
reporting in the crab and lobster fisheries, including accurate trip reporting, and increased gear checks
to ensure that the proposed gear changes are being enacted correctly and in a timely manner.

	
								
	
	

13

													
	

Specific to weak ropes, contrivances, and gear marking, the Aquarium recognizes that it is important to
develop a monitoring strategy to inform managers whether or not regulations are benefitting NARWs.
We suggest the following approaches:
1. Continue annual scar coding efforts (conducted by the New England Aquarium) to determine
the frequency of events and the proportion of sighted individuals with scars. As
closures, endline reductions, and ropeless fishing gear are implemented into the fishery, the
frequency of entanglements needs to be quantified to assess how effective the rules are;
2. For a given year of entanglements documented from scarring assessments, determine the
proportion resulting in minor, moderate, and severe injuries. If weak rope works as intended,
entanglement scarring should be less severe but may not be less frequent;
3. For those cases where the gear can be observed, assess the number of whales with attached
gear by year. Any entanglement configurations need to be evaluated carefully to determine if
trailing line levels have been reduced, entanglement complexity is high or low risk, and gear
marks are evident. In addition, the rope diameter, what part of the gear is involved in the
entanglement, and if the gear on the whale is weak rope or used contrivances should also be
evaluated. Case studies should continue to be created12; and
4. Entanglement events of each individual need to be reviewed to determine the timeframe and
potential country of origin of entanglement.
The Aquarium notes that a lack of scientific certainty is sometimes used to suggest that more
information is needed to inform decision making, which then causes further delays in needed action. We
disagree with this. The body of scientific research on NARWs and entanglements is both established and
clear in its conclusions: Entanglements in fixed fishing gear are causing serious injuries and mortalities to
the critically endangered NARW at a rate that the species can’t sustain if it is to survive. While we
encourage NOAA to invest in increasing surveillance and monitoring efforts throughout the U.S. range of
the NARW, we recommend that those efforts be focused on assessing the health and well-being of the
individuals and the population. As noted earlier, in the near-term, these efforts can and should be used
to inform management decisions regarding the extent and timing of closures and provide information
about any entanglements that do occur in weak rope, but once the fishery transitions to ropeless gear,
surveillance and monitoring efforts for entanglements should no longer be necessary.
Decision Support Tool
In response to NOAA’s Draft Biological Opinion on 10 Fishery Management Plans, the Aquarium
submitted an extensive comment regarding NOAA’s finding of no jeopardy for NARWs, which we
disagreed with. As part of that comment, the Aquarium provided an extensive discussion about our
concerns with the Decision Support Tool, including the appropriate use of uncertainty in models for
conservation. The Aquarium’s comment on the Biological Opinion is provided as Appendix 2 of this
document.

																																																								
12

https://www.bycatch.org/project/case-studies-north-atlantic-right-whale-fishing-gear-entanglements

	
								
	
	

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Conclusion
The Aquarium thanks NOAA for the opportunity to comment on this Proposed Rule and DEIS. Our
comments are provided with the intent that they be used to inform changes in the Final Rule that will
significantly reduce the risk of entanglements in fixed gear to NARWs and other whales. As a member of
the ALWTRT since its inception, the Aquarium has participated in the process in good faith that NOAA
will take the necessary steps to manage this species as required by the Marine Mammal Protection Act
and the Endangered Species Act. The Aquarium recognizes that all of the measures detailed in the
Aquarium’s comments are just part of many that are needed to prevent this species from going extinct.
In addition to making necessary changes to the fisheries where entanglement is a risk, other risks,
including those from vessel strikes, ocean noise, pollution, and climate change must also be addressed
aggressively and expeditiously. The Aquarium looks forward to continuing work in partnership with
federal and state governments and other members of the ALWTRT to ensure the survival of this species.
The Aquarium’s scientists and experts are available to answer any questions or provide additional
information should it be needed.
Sincerely,

Amy R. Knowlton
Senior Scientist, Anderson Cabot Center for Ocean Life at the New England Aquarium
Member, Atlantic Large Whale Take Reduction Team

Kelly A. Kryc, Ph.D.
Director of Ocean Policy
New England Aquarium

	
								
	
	

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APPENDIX 1:
Scientist Letter

	
								
	
	

19

Docket No. 201221–0351
Proposed Rule: Taking of Marine Mammals Incidental to Commercial Fishing
Operations; Atlantic Large Whale Take Reduction Plan Regulations; Atlantic Coastal
Fisheries Cooperative Management Act Provisions; American Lobster Fishery
To: Mr. Ben Friedman (Deputy Under Secretary for Operations, performing the duties of
Under Secretary of Commerce for Oceans and Atmosphere and NOAA Administrator)
Cc: NOAA Fisheries - Paul Doremus (Acting Assistant Administrator for Fisheries), Sam
Rauch (Deputy Assistant Administrator for Regulatory Programs), Cisco Werner
(Director of Scientific Programs and Chief Science Advisor), Donna Wieting (Director of
NOAA Fisheries Office of Protected Resources), Evan Howell (Director of NOAA
Fisheries’ Office of Science and Technology), Karen Hyun (NOAA Chief of Staff), and
Colleen Coogan (Marine Mammal and Sea Turtle Branch Chief, Greater Atlantic
Regional Fisheries Office)

February 25, 2021
Dear Mr. Friedman:
We represent a group of scientists with extensive expertise in the biology of large whales,
oceanography, and fisheries. We are writing to express our serious concerns about the
proposed rule titled Taking of Marine Mammals Incidental to Commercial Fishing
Operations; Atlantic Large Whale Take Reduction Plan Regulations; Atlantic Coastal
Fisheries Cooperative Management Act Provisions; American Lobster Fishery put
forward by NOAA Fisheries to reduce entanglement risk to North Atlantic right whales
(NARW) caused by Northeast crab and lobster trap/pot fisheries
(https://www.govinfo.gov/content/pkg/FR-2020-12-31/pdf/2020-28775.pdf). Whales
continue to be impacted by entanglement and NARWs are known to be dying at an
increasing and unsustainable rate. Just since October 2020 there have been three NARW
observed in U.S. waters with serious entanglements - none could be disentangled, and all
are likely to die. The proposed rule represents a dramatic weakening of the
recommendations made by the Atlantic Large Whale Take Reduction Team (ALWTRT)
in April 2019 as a path towards achieving reduction in entanglement risk.
This weakening of the proposed take reduction strategy runs counter to all scientific
analysis, particularly in light of the well documented and ongoing reduction in the
population size of this critically endangered species (https://www.narwc.org/reportcards.html). Furthermore, entanglement mortality continues at unsustainable levels and
much of it goes undetected. For every right whale carcass observed, almost three more
deaths go undocumented

(https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/csp2.346). Finally, NOAA’s
report on the increasing frequency of serious injuries from entanglements
(https://repository.library.noaa.gov/view/noaa/21249) demonstrates that the problem is
getting worse, not better. If the current rate of population decline does not change
(approximately 20 whales per year over the last 5 years), the North Atlantic right whale
will be functionally extinct in less than two decades. In light of this scientific
information, we strongly urge NOAA leadership to revisit and considerably strengthen
the proposed rule.
We specifically suggest the following:
1) The 60% target of reduced risk outlined in the proposed rule should be
increased to 80%
Rapid and effective management action is critical to turn the trajectory of this
species around. We recommend increasing the risk reduction in the U.S. lobster
and crab fishery to 80%, applying additional measures in other U.S. fixed gear
fisheries, and working closely with the Canadian government to implement similar
risk reduction goals in their fisheries. These actions will provide the best chance of
achieving the risk reduction targets mandated by the Endangered Species Act and
the Marine Mammal Protection Act (MMPA). The recent Biological Opinion
(https://www.fisheries.noaa.gov/bulletin/draft-biological-opinion-10-fisherymanagement-plans-released) estimates the current proposed rule will not reduce
U.S. entanglements below the Potential Biological Removal level of 0.8
individuals annually as mandated by the MMPA. Only rapid and sustained actions
such as those described herein can change the trajectory of the NARW population.
2) Endline reductions, closures, and 1700 lb ropes should be considered as
interim measures as ropeless gear becomes a more viable option
The concerns about ropes and entanglements of large whales is a long standing
problem. As Johnson et al. stated in 2005, “…any line rising into the water column
poses a significant entanglement risk”
(https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1748-7692.2005.tb01256.x). In
recent years, a tremendous amount of effort by engineers, fishers, and scientists
has led to promising options to address this threat with gear technology. We ask
NOAA leadership to acknowledge that ropeless gear may nearly eliminate the risk
of large whale entanglements and support an economically viable fishing industry.
Government investment to accelerate the development and evaluation of ropeless
fishing is urgently needed, which should include plans for experimental fisheries
in closed areas by January 2022. Support for these investments must consider the
use of subsidies to help shift all members of the industry affected by closures to
this option by January 2024. These goals should be endorsed by NOAA Fisheries

to signal the agency’s support of ropeless fishing and to encourage investment and
development by commercial manufacturers. Ropeless retrieval systems are
functional today, but a universal solution to monitor a fishery without buoys
marking endlines and address gear conflict issues does not yet exist and must be
developed with the support of NOAA Fisheries quickly. These investments will
benefit fishermen and whales, and should be a top priority. In the meantime,
scaled-up efforts to reduce the total number of endlines, to implement closures and
to use 1700 lb ropes/weak insertions should be considered the best interim options
for reducing risk and impact.
3) Where vertical lines continue to be necessary, endline strength should be
reduced to 1700 lbs throughout the entire length, not just the upper portion
Rope strength plays a critical role in entanglement risk and injury severity (see
https://conbio.onlinelibrary.wiley.com/doi/10.1111/cobi.12590), and the
ALWTRT came to near consensus in April 2019 in requesting that vertical lines
with a breaking strength of 1700 lb, either entirely or with weak links inserted
every 40 feet, be used throughout the lobster and crab industry to reduce risk. This
recommendation has been weakened in the proposed rule such that weak
rope/weak insertions are now only being proposed for the top half or top third of
an endline with only one to two weak insertions required independent of endline
length. The original ALWTRT agreement as it pertains to weakened vertical lines,
which would require use of 1,700 lb rope or sleeves through the entire endline
length, should be reinstated and applied throughout lobster and crab fisheries as a
part of this rulemaking and expanded to other fixed gear fisheries in the near
future.
4) A mechanism should be developed to allow vertical line closures to
expeditiously be extended spatially or temporally based on scientific
observations that include computer modeling
Fisheries closures that eliminate vertical lines in the water column are the most
effective tool for mitigating risk of entanglements of right whales where the two
overlap in space and time. Right whales have shifted their distribution
dramatically in the past 10 years and their movements have become more difficult
to predict as a result of climate change. As new aggregation areas are identified
from direct observations, acoustic detections, and/or modelling, it is important to
have a rapid regulatory response method to change, expand, or extend closures as
needed and allow ropeless fishing in these closed areas. A network of closures
should occur throughout the species range, and protect a sufficiently large enough
area to help recover the population.

As academic members of the Atlantic Large Whale Take Reduction Team and scientists
who study large whales, oceanography, and fisheries issues, we recognize the tremendous
challenge facing NOAA Fisheries to prevent the extinction of the NARW while
minimizing the economic impact upon fisheries. We believe that, for the fishing industry
and NARWs to coexist, the transition to fully weak rope and ropeless gear requires
immediate government support to help fishers procure new gear. No further delays or
concessions that undermine the ability of proposed measures to prevent NARWs from
going extinct should be allowed in implementing strong, effective and enforceable rules.
If an 80% reduction in risk cannot be accomplished in this rulemaking effort, NOAA
Fisheries should request the Atlantic Large Whale Take Reduction team to immediately
consider additional measures for these fisheries during 2021 discussions.
Thank you for considering our request. We will each be providing more detailed
comments to the proposed rule.
Sincerely,
Amy Knowlton
Senior Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Member, Atlantic Large Whale Take Reduction Team
Member, Southeast Implementation Team for Right Whale Recovery
Board Member, North Atlantic Right Whale Consortium
Mark Baumgartner, PhD
Senior Scientist
Biology Department
Woods Hole Oceanographic Institution
266 Woods Hole Road
Woods Hole, MA 02543
Past chair, North Atlantic Right Whale Consortium
Vice-chair, Ropeless Consortium
Board Member, North Atlantic Right Whale Consortium
Member, Northeast Implementation Team for Right Whale Recovery

Moira Brown, PhD
Emeritus Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Vice Chair and Past Chair, North Atlantic Right Whale Consortium
Chris Clark, PhD
Senior Scientist
Cornell Lab of Ornithology
159 Sapsucker Woods Road
Ithaca, NY 14850
Peter Corkeron, PhD
Senior Scientist and Chair, Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Board Member, North Atlantic Right Whale Consortium
Alexander M. Costidis, PhD
Stranding Response Coordinator/Senior Curator
Virginia Aquarium & Marine Science Center
717 General Booth Blvd.
Virginia Beach, Virginia 23451, USA
Member, Atlantic Large Whale Take Reduction Team
Member, Bottlenose Dolphin Take Reduction Team
Member of Working Group for Marine Mammal Unusual Mortality Events
NOAA Right whale Necropsy Team Leader
Philip Hamilton
Research Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Board Member, North Atlantic Right Whale Consortium

Steven Katona, PhD
Emeritus
College of the Atlantic
105 Eden St.
Bar Harbor, ME 04609
Robert D. Kenney, PhD
Emeritus Marine Research Scientist & Adjunct Professor in Residence
University of Rhode Island
Graduate School of Oceanography
Narragansett Bay Campus Box 40
215 South Ferry Road
Narragansett, RI 02882-1197, U.S.A.
Member, Atlantic Large Whale Take Reduction Team
Scott Kraus, PhD
Emeritus Senior Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Past Member, Atlantic Large Whale Take Reduction Team
Chair, North Atlantic Right Whale Consortium
Scott Landry
Marine Animal Entanglement Response
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Member, Atlantic Large Whale Take Reduction Team
Board Member, North Atlantic Right Whale Consortium
Charles “Stormy” Mayo, PhD
Senior Scientist
Director, Right Whale Ecology Program
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Member, Atlantic Large Whale Take Reduction Team

William McLellan
University of North Carolina Wilmington
601 South College Road
Wilmington, NC 28403
Member, Atlantic Large Whale Take Reduction Team
Member, Pelagic Longline Take Reduction Team
Member, Bottlenose Dolphin Take Reduction Team
Member, Harbor Porpoise Take Reduction Team
Member, Northeast Implementation Team for Right Whale Recovery
Member, Southeast Implementation Team for Right Whale Recovery
Member, NARW Unusual Mortality Event Investigative Team
Master Necropsy Team Leader
North Carolina State Stranding Coordinator
Past Board Member, North Atlantic Right Whale Consortium
Emeritus Member, Working Group on Marine Mammal Unusual Mortality Events
Michael Moore, Vet MB, PhD
Senior Scientist, Biology Department,
Director, Marine Mammal Center
Woods Hole Oceanographic Institution, Woods Hole, MA 02543
Board Member, North Atlantic Right Whale Consortium
Emeritus Member, Past Chair, Working Group on Marine Mammal Unusual Mortality
Events
Necropsy Team Leader
Doug Nowacek, PhD
Nicholas School of the Environment
Duke University
135 Duke Marine Lab Rd
Beaufort, NC 28516
Heather Pettis
Associate Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Executive Administrator, North Atlantic Right Whale Consortium
Alternate Member, Atlantic Large Whale Take Reduction Team

Andrew Read, PhD
Stephen A. Toth Professor of Marine Biology
Director, Duke University Marine Laboratory
Chair, Division of Marine Science and Conservation
Nicholas School of the Environment
Duke University
135 Duke Marine Lab Rd
Beaufort, NC 28516
Member, Bottlenose Dolphin Take Reduction Team
Member, False Killer Whale Take Reduction Team
Alternate Member, Pelagic Longline Take Reduction Team
Past Member, Harbor Porpoise Take Reduction Team
Member and Past Chair, Atlantic Scientific Review Group
Nicholas Record, PhD
Senior Research Scientist
Bigelow Laboratory for Ocean Sciences
Director, Sea Change Semester Program
60 Bigelow Drive
East Boothbay, ME 04544
Member, Atlantic Large Whale Take Reduction Team
Jooke Robbins, PhD
Senior Scientist
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Past Member and Alternate, Atlantic Large Whale Take Reduction Team
Rosalind Rolland, PhD
Emeritus Senior Scientist
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Past Board Member, North Atlantic Right Whale Consortium
Brian Sharp
Director, Marine Mammal Rescue and Research
International Fund for Animal Welfare
290 Summer St.
Yarmouth Port, MA 02675
Member, Atlantic Large Whale Take Reduction Team

Sarah Sharp, DVM
Marine Mammal Rescue and Research Program
International Fund for Animal Welfare
290 Summer St.
Yarmouth Port, MA 02675
Rob Schick, PhD
Marine Geospatial Ecology Lab
Nicholas School of the Environment
Duke University
Durham, NC 27708
Sean K. Todd, PhD
Steve K. Katona Chair in Marine Science
Director, Allied Whale
College of the Atlantic
105 Eden Street,
Bar Harbor, ME, 04609 US
Tim Werner, PhD
Senior Associate, OAI Consulting
Research Fellow, School for the Environment
UMASS-Boston
McCormack 2nd floor 615
UMass Boston 100 Morrissey Blvd.
Boston, MA 02125
Member, Pelagic Longline Take Reduction Team
Alternate Member, Atlantic Large Whale Take Reduction Team

APPENDIX 2:
New England Aquarium February 22, 2021 comment on NOAA’s Draft Biological Opinion on 10 Fishery
Management Plans in the Greater Atlantic Region and the New England Fishery Management
Council’s Omnibus Habitat Amendment 2

	

	
Michael Pentony	
Regional Administrator	
Greater Atlantic Regional Fisheries Office	
55 Great Republic Drive	
NOAA Fisheries Service	
Gloucester, MA 01930	
Re: Draft Biological Opinion on 10 Fishery Management Plans in the Greater Atlantic Region and
the New England Fishery Management Council’s Omnibus Habitat Amendment 2	
In response to the Draft Biological Opinion on 10 Fishery Management Plans, the New England
Aquarium (Aquarium) submits this comment strongly urging the National Oceanic and Atmospheric
Administration (NOAA) to reconsider its finding of no jeopardy for North Atlantic right whales
(NARW). 	
Founded in 1969, the Aquarium is a global leader in marine conservation and a catalyst for global change
through public engagement, commitment to marine animal conservation, leadership in education,
innovative scientific research, and effective advocacy for vital and vibrant oceans. For decades, the
Aquarium has been working to protect marine and freshwater ecosystems from human impacts and
conserve threatened and endangered animals and habitats. The Aquarium’s scientists conduct cuttingedge research to understand, quantify, and reduce the consequences of human activities on the health of
marine species and ecosystems by developing science-based solutions and advocating for policies that
balance human use of the ocean with the need for a healthy, thriving ocean now and in the future.	
Scientists at the Aquarium have been researching NARWs for more than 40 years with the goal of
preventing this species from going extinct. In addition, representatives from the Aquarium have served on
the Atlantic Large Whale Take Reduction Team since it was formed in 1996. The Aquarium is pleased to
see that published research by our scientists was used to inform aspects of these measures.
Here we provide comments and recommendations on the Draft Biological Opinion (BiOp) and the
Conservation Framework associated with it. This comment focuses on findings in the Draft BiOp
pertaining to NARWs based on our long-standing scientific expertise and commitment to conserving this
species. In addition, as the most endangered species reviewed in the Draft BiOp, it is critical to the
conservation plan, pending rulemaking, and draft environmental impact statement that the findings in the
Final BiOp are accurate and based on the best-available science.	
First, we wish to compliment NOAA staff on aspects of this work. The review of the NARW in the Status
of the Species section of the Draft BiOp is well written and cites the appropriate and best-available
scientific literature. The modeling work conducted by Dr. Daniel Linden of Greater Atlantic Regional
Fisheries Office (GARFO) presented in the document “Population projections of North Atlantic right
whales under varying human-caused mortality risk and future uncertainty” (Appendix 3) is excellent, and
we compliment his analysis. While it is possible to argue some of the detail of the models (as we do
below), the work is of a very high standard. We see that the reviews of this work, conducted by expert
reviewers for the Center for Independent Experts (CIE) were supportive, offering only a few suggestions
for possible improvement to the science1. We also note that, although it is not part of the Draft BiOp or
Conservation Framework, the recent paper led by Dr. Richard Pace of the Northeast Fisheries Science
Center (NEFSC), which we cite several times below, is a very important contribution that informs our

																																																								
1

https://www.st.nmfs.noaa.gov/science-quality-assurance/cie-peer-reviews/cie-review-2020 	

	

													
	

comments. Dr. Pace is to be complimented for his excellent analyses that have advanced our
understanding of the current situation of NARWs. 	
Although we are impressed by these aspects of the work, we have significant concerns with other aspects
of the Draft BiOp and Conservation Framework. While we concentrate our comment on the scientific
content of the Draft BiOp, we also take this opportunity to raise one initial, yet critical, concern. 	
No Jeopardy Finding	
The Draft BiOp finds no jeopardy based on the assumption that, in the first phase of the Conservation
Framework, regulations still in draft form are sufficient enough to reduce fisheries-induced mortality and
morbidity of NARWs to the extent that they will recover. As these regulations are still in draft form, there
is no guarantee that they will be promulgated, implemented, and/or enforced. Whether or not they are
sufficient is another question entirely, which the Aquarium will address in its response to the Proposed
Rule to Amend the Atlantic Large Whale Take Reduction Plan to Reduce Risk of Serious Injury and
Mortality to North Atlantic Right Whales Caused by Entanglement in Northeast Crab and Lobster
Trap/Pot Fisheries and Draft Environmental Impact Statement. 	
Recommendation 1: In the absence of a final rule, the Aquarium does not think it is appropriate to
make a “no jeopardy” finding. 	
Furthermore, as detailed below, the Aquarium has significant issues of concern with the Draft BiOp and
Conservation Framework and strongly asserts that the science supports a jeopardy finding.	
Risk reduction and the time required to implement changes	
North Atlantic right whales have been in decline for a decade. In the absence of strong rules preventing
entanglements and vessel strikes, we have come to expect the abundance of the species to continue to
decline. Because it takes time to finalize regulations (and Biological Opinions) and even longer for those
to result in action on the water, we understand that while these processes are ongoing, it is likely that the
species’ abundance will continue declining. The Draft BiOp does not account for this time delay, despite
having a strong model that indicates the trajectory of the species’ abundance while the BiOp and
regulations were being drafted (see also Meyer-Gutbrod et al. 2018 on this topic in the Canadian
management setting). This is not well thought through and should be. 	
It was clear after the Atlantic Large Whale Take Reduction Team (ALWTRT) meeting in 2017 that
NARW Serious Injury and Mortality (SI/M) had exceeded the “jeopardy” threshold identified, thus
initiating the need for a new BiOp. Despite this, it took almost four years for this Draft BiOp to be
released, during which time the number of NARWs kept declining. The redrafted BiOp needs to account
for this continuing decline and must account for the time in which it takes NOAA to implement changes
on the water. Corkeron et al.’s (2018) matrix model [disclosure: Aquarium employees are authors of
Corkeron et al. 2018], as applied by Linden 2021 and suitably corrected for uncertainty (see below), can
be used to project what the abundance of NARWs is likely to be, and from that, appropriate measures
reconsidered. 	
To give a concrete example, the Draft BiOp and Conservation Framework are predicated on the idea that
a 60% reduction in anthropogenic mortality will be sufficient to take NARWs from jeopardy. While 60%
risk reduction may have been satisfactory when this process started in 2017, in 2021 60% risk reduction is

	
								
	
	

2	

													
	

no longer sufficient as there are now substantially (16%) fewer NARWs than there were in 2017. An 80%
risk reduction target initially is now more appropriate and should be used in the redrafted BiOp. 	
Recommendation 2: We recommend that the redrafted BiOp be based on an 80% risk reduction target.	
Incorporating Uncertainty	
There are several instances where the modeling that informs the Draft BiOp and Conservation Framework
does not incorporate uncertainty in the data sufficiently, especially given the scale of the conservation
challenges facing NARWs. 	
We note the significant paper on this topic by Dr. Barb Taylor and coauthors, “Incorporating Uncertainty
into Management Models for Marine Mammals,” published in Conservation Biology in 2000 (Taylor et
al. 2000). As Taylor et al. (2000) discuss in their paper, “The history of marine mammal management
clearly demonstrates the need to incorporate uncertainty into management models” (p.1250); and “The
simulations clearly show that accounting for uncertainty by using a lower percentile is precautionary,
whereas the typical practice of the best estimate is not” (p.1248)—in this quote, the “best estimate” is
generally considered the mean.	
For example, the matrix modeling in Linden (2021) uses the mean estimates of posterior distributions of
survival from the re-run mark-recapture model of Pace et al. 2017 as matrix model inputs. A more
appropriate approach for conservation, following the findings of Taylor et al. (2000), would be to use the
80th percentile of these posterior distributions to account for the substantial uncertainty in them. To be
clear, this is not a criticism of the model used, but of how the model is applied for conservation to inform
a Section 7 decision under the Endangered Species Act. We note parenthetically that better allowing for
uncertainty was raised as a concern by Dr. New in her CIE review2 of the Linden 2021 paper.
Likewise, the data used for the Decision Support Tool (DST, see, e.g., page 220 of the Draft BiOp)
includes substantial uncertainties in both the models of whales’ distribution and the data on fisheries. The
DST should be re-run using appropriate percentiles rather than means or medians to estimate overlap of
fisheries and the whales’ distributions. 	
Recommendation 3: We recommend that the redrafted BiOp re-run the analyses using appropriate
uncertainty parameters and that the conservation implications of the revised models be reassessed in
the revised Section 7 assessment.	
Cryptic mortality and its implications	
A recent 2021 paper by Dr. Richard Pace and coauthors [disclosure: Aquarium employees are authors of
this paper] estimates the unobserved (“cryptic”) mortality of NARWs (Pace et al. 2021). In this paper, the
authors show that for the period 2010-2017 (which is most relevant to the Draft BiOp), the probability of
detecting a whale carcass was 29% (with two standard errors of 2.8%). In addition, during the 2019 North
Atlantic Right Whale Consortium meeting, Dr. Pace gave a talk entitled, “Estimating latent mortality of
North Atlantic right whales” that summarized the earlier stages of this analysis. Because the manuscript
was submitted on July 2, 2020, we presume that it was reviewed and cleared by NOAA’s NEFSC prior to
submission based on Dr. Pace’s affiliation with NEFSC. As these scientific results were available to

																																																								
2

https://www.st.nmfs.noaa.gov/Assets/Quality-Assurance/documents/peer-reviewreports/2020/2020_05%20New%20NARW%20Pop%20Model%20Review%20Report.pdf 	

	
								
	
	

3	

													
	

NOAA prior to publication of the paper, they should have been considered in the Draft BiOp. To ensure
that the final BiOp findings are based on the best-available science, we contend that the results presented
in Pace et al. 2021 should now be considered in the forthcoming redrafted BiOp. 	
Important inferences drawn from the work published in Pace et al. 2021 are summarized in the discussion
including (1) “There is a striking mismatch between the causes of serious injuries observed in living
whales and the causes of mortality revealed in necropsies of dead whales;” and (2) “…the disparity in
observed rates of serious injury by cause suggests that cryptic deaths due to entanglements significantly
outnumbers cryptic deaths from vessel collisions or other causes.” The relevance of the analyses
presented in section 7.2.1.3 (e.g., Table 56) needs to be revisited in the redraft of the BiOp. 	
We are gratified to see the Draft BiOp’s authors state “Although the observed entanglement data include
non-SI/M events, these observed events are considered a minimum estimate, and the actual entanglement
rate is likely higher. To account for this underrepresentation of non-SI/M events in the observed
entanglement data, our annual entanglement estimate for this Opinion is based on the scarring analysis
presented in Hamilton et al. (2019). We, however, suggest that the apportioning of SI/M proportions on
pages 223-225 of the Draft BiOp needs to be reviewed in light of the findings of Pace et al. (2021). 	
Recommendation 4: We recommend that the redrafted BiOp include this review of apportioning SI/M
in light of the findings of Pace et al. (2021).	
Timing of conservation actions and their evaluation	
The timeline for implementing the Conservation Framework (Table 2 of the Draft BiOp) is insufficient.
For example, it is not clear if Phase 1 will even be fully implemented by the start of 2023. Since it has
already been at least four years since the 2017 Atlantic Large Whale Take Reduction Team (ALWTRT)
meeting during which it was determined that the number of deaths were over jeopardy to initiate Phase 1,
we do not reasonably expect that an ALWTRT meeting in 2021 will result in implementation of Phase 2
by 2023.	
In addition, the timing allowed to evaluate the efficacy of actions is inappropriately short. Although some
evaluations can be based on analysis of scarring rates on individually identified whales, these analyses
invariably have a lag of a year or so, as it takes time to obtain and process these data. As Pace et al.
(2021) note in their Conclusion, “Annual counts of right whale carcasses do a poor job of indicating the
total mortality for that year.” This demonstrates that it is inappropriate to use one or two years of SI/M
observations to make a definitive inference on whether a management action (or actions) is (are) reducing
deleterious anthropogenic impacts on NARWs.	
Recommendation 5: We recommend that the redrafted BiOp include a revised Section 10.3.1 Large
Whale Monitoring that addresses the timeline of conservation actions and includes simulation
modeling to demonstrate the efficacy of the monitoring program developed.	
Reporting SI/M when there is an expectation that SI/M will fall to less than 0.2/year	
NOAA Fisheries reports SI/M data on rolling five-year averages, as discussed in Section 10.3.1 of the
Draft BiOp. The expectation in the Draft BiOp is that Phase 4 of the Conservation Framework (p.232)
will result in an average annual SI/M of 0.11/year. Assuming this optimistic projection is realized, for
NOAA staff to calculate SI/M, NOAA will need to revise the timing over which SI/M is calculated. If the

	
								
	
	

4	

													
	

expectation is that there will be one SI/M every nine years, then using rolling five-year averages is, from
very basic mathematics, inappropriate. The rolling average will need to be longer. We note
parenthetically that this is already a problem for the Gulf of Mexico Whale (Balaenoptera ricei )—
another very-low abundance species managed by NOAA (also Red Listed as Critically Endangered).	
Recommendation 6: We recommend that the redrafted BiOp discuss how NOAA will change its
practices for reporting SI/M to account for low annual rates of this measure, should they arise. 	
Essential physical or biological features	
There is a very salient point missing in the Draft BiOp discussion of “essential physical or biological
features” of NARW Critical Habitat, Section 4.1.10 (pp. 83-88). Of the four physical states of matter (gas,
liquid, solid, and plasma), both liquid and solid forms are relevant in this context. Seawater is a liquid and
fishing gear is a solid. By introducing numerous solid objects (i.e. fishing gear) into seawater, it is
inevitable that the physical features of NARW Critical Habitat (liquid) are fundamentally altered by those
activities.	
Recommendation 7: We recommend that the redrafted BiOp recognize that fishing using vertical lines
alters the essential physical features of the ocean in areas where gear is introduced.	
Climate change	
Section 6.2. of the Draft BiOp, which addresses “Species Specific Information on Climate Change
Effects,” for whales is weak. It glosses over the fact that NARWs are already impacted by climate change
as demonstrated by recent literature cited in the Draft BiOp (e.g. Meyer-Gutbrod et al 2014 and 2017). It
also fails to recognize the changes in distribution of other baleen whales from work led by NOAA’s
NEFSC scientists (Davis et al. 2020 [disclosure: an Aquarium employee is an author on this paper]).
Without argument, the current decline of NARWs is exacerbated by ecosystem changes driven by
climate. 	
The Draft BiOp also lacks discussion of what can be done to ameliorate the impacts of climate change on
NARWs despite a substantial body of literature focused on applying resilience-based management to
address climate change in marine environments (for an introduction, see Bellwood et al. 2004; Hughes et
al. 2005) and examples of using these approaches for on-water management (e.g., Fernandes 2005). There
has not, to our knowledge, been any work that embeds managing climate impacts on a whale population
explicitly into a resilience framework. We recommend that NOAA consider this approach in the revised
BiOp as it offers a way forward for this challenging problem. Notwithstanding this existing body of
research, all citations in the final paragraph of Section 6.2 on whales are based on NOAA’s work, much
of which is not peer-reviewed, and should be remedied in subsequent versions.	
Briefly, we suggest that managing for resilience, rather than managing to avoid extinction, will give
greater likelihood that NARWs will avoid extinction in the face of our current climate emergency. For a
whale species, managing for resilience would include ensuring that their abundance is sufficiently large to
buffer against climate-induced deleterious changes, such as those we have seen in NARWs. Comparative
work on other right whales that do have this buffer (Corkeron et al. 2018 [disclosure: Aquarium
employees are authors of this paper]) shows that adult female mortality from anthropogenic sources has
been the primary cause of NARW’s lack of recovery. Further, at an individual level, NARWs lack the
energy buffer that other right whales have to increase calving rates (Christiansen et al. 2020 [disclosure:

	
								
	
	

5	

													
	

an Aquarium employee is an author of this paper]). For example, entanglements can have substantial
impacts on individual NARW’s energy budgets (van der Hoop et al. 2017 [disclosure: an Aquarium
employee is an author of this paper] ), and the energy stores of NARWs can be measured reliably with
drone-based photogrammetry (Christiansen et al. 2020). Monitoring the relationships between
entanglement scarring and energy stores can provide a way to manage for resilience of individuals’
energy stores, as one example.	
Recommendation 8: We recommend that the redrafted BiOp include a discussion of managing for
resilience in the face of climate change and that that consideration is reflected throughout the
redrafted document. 	
Minor issues	
We raise a couple of minor points, one of which requires correction, and the other is a suggestion for
further research. 	
First, on page 220 of the Draft BiOp, the statement “However, at this time, there is no further evidence to
make the conclusion that sublethal effects from fishing gear entanglement alone causes a decline in large
whale health” is incorrect. See van der Hoop’s work on morbidity from entanglement, particularly van der
Hoop et al. 2017 where the models demonstrate that entanglement alone is sufficient to cause a decline in
reproductive output.	
Second, as a suggestion for an area of future research, we note that the mark-recapture model that NOAA
is using for NARWs still defines adults as whales over five years of age. This was a reasonable
assumption when the model was developed. Now, however, the age at first reproduction of female
NARWs is substantially greater than five. This year’s calving cohort included five first-time mothers
whose ages are 12, 12, 13, 14, and 19, respectively. The cutoff for adults in NOAA’s model should be
revised to take into account recent changes in age at first reproduction. 	
The Aquarium thanks NOAA for the opportunity to review and comment on the Draft Biological
Opinion. As part of the management strategy and conservation plan to recover NARWs, the Aquarium
submits our recommendations to improve and strengthen the scientific basis under which NOAA
determined a “no jeopardy” finding for this species and respectfully requests that this finding be revisited
in light of information shared in this submission.	
Our scientists are available to answer any questions or provide additional information.	
Sincerely,	

Peter Corkeron, Ph.D.
Senior Scientist and Chair
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life	
New England Aquarium	

Kelly A. Kryc, Ph.D.	
Director of Ocean Policy	
New England Aquarium	

	
								
	
	

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References	
Bellwood, D., Hughes, T., Folke, C. et al. Confronting the coral reef crisis. Nature 429, 827–833 (2004).
https://doi.org/10.1038/nature02691
Christiansen F, Dawson SM, Durban JW, Fearnbach H and others 2020. Population comparison of right
whale body condition reveals poor state of the North Atlantic right whale. Mar Ecol Prog Ser 640:116 https://doi.org/10.3354/meps13299
Corkeron P, Hamilton P, Bannister J, Best P, Charlton C, Groch KR, Findlay K, Rowntree V, Vermeulen
E, Pace RM. 2018. The recovery of North Atlantic right whales, Eubalaena glacialis, has been
constrained by human-caused mortality. Royal Society Open Science. 5(11). doi:10.1098/rsos.180892	
Davis, GE, Baumgartner, MF, Corkeron, PJ, et al. 2020. Exploring movement patterns and changing
distributions of baleen whales in the western North Atlantic using a decade of passive acoustic data.
Glob Change Biol. 26: 4812– 4840. https://doi.org/10.1111/gcb.15191 	
Fernandes, L., Day, J., Lewis, et al. (2005), Establishing Representative No-Take Areas in the Great
Barrier Reef: Large-Scale Implementation of Theory on Marine Protected Areas. Conservation
Biology, 19: 1733-1744. https://doi.org/10.1111/j.1523-1739.2005.00302.x 	
Hughes, TP., Bellwood, DR., Folke, C et al 2005. New paradigms for supporting the resilience of marine
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8	

20 January 2021
Colleen,
Please find below my comments on the proposed ALWTRP. They will be brief and as focused as
I can make them.
When the ALWTRT met in Providence in 2019, we were tasked by senior NMFS management
with reaching 80% reduction in risk to NARW mortalities as that would be the only way to stem
the dramatic losses to this population/species. In the following 20 months, the status of the
population has only declined to the extremely grim reality we face today. Despite this reality,
the plan proposed in 2019 has been watered down, at a time that the population has reached
the level it was when the ALWTRT was first opened twenty years ago. Simply stated, the
ALWTRP needs to do more. My comments on portions on the plan are as follows.
It is unclear how modifications in LMA3 gear will significantly reduce risk. One line will remain
as currently fished and one line will be “weakened” in some way, at some point along its length.
It appears LMA3 fishers were asked how they could best implement the weak line- why was
that not finalized prior to the release of ‘the plan”? Additionally, there is a vague ask of fishers
operating in LMA3 if they can parse out the number of pots hauled by vessels so that, maybe,
larger boats could haul trawls with more traps allowing smaller boats to fish the same trawls as
they do now. That extremely weak solution, on an agreement among boats, does not seem
possible to score for risk reduction. If asked, I couldn’t tell anyone how the riskiest gear being
fished will be specifically modified under this plan!
We must remove all weak links that have been, or will be proposed, to allow buoys to part from
vertical lines during entanglement. The buoys are the only guaranteed means of identifying the
gear type and where it was fished, and could also work as a toggle producing drag to pull gear
free from the whale. The buoys are more visible to survey teams and can facilitate
disentanglement by teams more easily monitoring a whale. There are certainly entanglement
scenarios where the buoy could increase line wrapping on an appendage but if all effort is
made to part off the trawl with weak links the buoy remaining on could work to pull line free
before it tightens around the rostrum or flippers.
Weak line has become the focus of much risk reduction. The work in our Lab has shown that
whales do have upper limits to the force they produce while swimming, so completely agree
with this risk reduction strategy. There appear to be several weak sleeves and/or other
proposed modifications put in gear to weaken it. But the initial goal was to prompt line
manufacturers to provide line that would achieve that reduction. During the plan roll out call
there was a comment made by (I think) a MA fisher that the weak line they had purchased was
not being recognized as meeting the goals of the plan. Moving to the actual line being weak
along the entire length must be the goal of the plan. Inserting a weak sleeve, etc. along the line

does not provide full risk reduction. If weak line has already been manufactured it has to be
acceptable to the plan.
A large component of the plan is the implementation of restricted areas. Opening these areas
appears to be dependent on NARW sightings for the trigger. Tying any plan component to the
distribution of NARWs conflicts with the development of coastwide management. If there were
structured restrictions and even closures that were in place and could be implemented in nearreal time after agreed upon triggers, I feel these management strategies would achieve
required take reductions. As it is stated in the current plan, action is based on unaccountable
decisions from GARFO management.
Now a note about process. It is unacceptable to the concept of a Take Reduction TEAM that a
single entity represented on the team can act outside of the team meeting to stop the process.
Being represented on the team, then acting outside of the team to alter the plan in their best
interests, MUST STOP! Many are at risk of losing interest in being involved in any TRT if the real
plan is developed outside of team input.
I understand the complexities of producing a plan (and this one is not even in the water) but
the final results are far different from the meeting in Providence and, more importantly, I don’t
see how they will reach the ever increasing need for serious injury and mortality reductions in
this population.
I do appreciate all the effort you personally have expended to get us to this point!

Best
William McLellan
NC State Stranding Coordinator
Master Necropsy Team Leader
ALWTRT Member
University of North Carolina Wilmington

Docket No. 201221–0351
Proposed Rule: Taking of Marine Mammals Incidental to Commercial Fishing
Operations; Atlantic Large Whale Take Reduction Plan Regulations; Atlantic Coastal
Fisheries Cooperative Management Act Provisions; American Lobster Fishery
To: Mr. Ben Friedman (Deputy Under Secretary for Operations, performing the duties of
Under Secretary of Commerce for Oceans and Atmosphere and NOAA Administrator)
Cc: NOAA Fisheries - Paul Doremus (Acting Assistant Administrator for Fisheries), Sam
Rauch (Deputy Assistant Administrator for Regulatory Programs), Cisco Werner
(Director of Scientific Programs and Chief Science Advisor), Donna Wieting (Director of
NOAA Fisheries Office of Protected Resources), Evan Howell (Director of NOAA
Fisheries’ Office of Science and Technology), Karen Hyun (NOAA Chief of Staff), and
Colleen Coogan (Marine Mammal and Sea Turtle Branch Chief, Greater Atlantic
Regional Fisheries Office)

February 25, 2021
Dear Mr. Friedman:
We represent a group of scientists with extensive expertise in the biology of large whales,
oceanography, and fisheries. We are writing to express our serious concerns about the
proposed rule titled Taking of Marine Mammals Incidental to Commercial Fishing
Operations; Atlantic Large Whale Take Reduction Plan Regulations; Atlantic Coastal
Fisheries Cooperative Management Act Provisions; American Lobster Fishery put
forward by NOAA Fisheries to reduce entanglement risk to North Atlantic right whales
(NARW) caused by Northeast crab and lobster trap/pot fisheries
(https://www.govinfo.gov/content/pkg/FR-2020-12-31/pdf/2020-28775.pdf). Whales
continue to be impacted by entanglement and NARWs are known to be dying at an
increasing and unsustainable rate. Just since October 2020 there have been three NARW
observed in U.S. waters with serious entanglements - none could be disentangled, and all
are likely to die. The proposed rule represents a dramatic weakening of the
recommendations made by the Atlantic Large Whale Take Reduction Team (ALWTRT)
in April 2019 as a path towards achieving reduction in entanglement risk.
This weakening of the proposed take reduction strategy runs counter to all scientific
analysis, particularly in light of the well documented and ongoing reduction in the
population size of this critically endangered species (https://www.narwc.org/reportcards.html). Furthermore, entanglement mortality continues at unsustainable levels and
much of it goes undetected. For every right whale carcass observed, almost three more
deaths go undocumented

(https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/csp2.346). Finally, NOAA’s
report on the increasing frequency of serious injuries from entanglements
(https://repository.library.noaa.gov/view/noaa/21249) demonstrates that the problem is
getting worse, not better. If the current rate of population decline does not change
(approximately 20 whales per year over the last 5 years), the North Atlantic right whale
will be functionally extinct in less than two decades. In light of this scientific
information, we strongly urge NOAA leadership to revisit and considerably strengthen
the proposed rule.
We specifically suggest the following:
1) The 60% target of reduced risk outlined in the proposed rule should be
increased to 80%
Rapid and effective management action is critical to turn the trajectory of this
species around. We recommend increasing the risk reduction in the U.S. lobster
and crab fishery to 80%, applying additional measures in other U.S. fixed gear
fisheries, and working closely with the Canadian government to implement similar
risk reduction goals in their fisheries. These actions will provide the best chance of
achieving the risk reduction targets mandated by the Endangered Species Act and
the Marine Mammal Protection Act (MMPA). The recent Biological Opinion
(https://www.fisheries.noaa.gov/bulletin/draft-biological-opinion-10-fisherymanagement-plans-released) estimates the current proposed rule will not reduce
U.S. entanglements below the Potential Biological Removal level of 0.8
individuals annually as mandated by the MMPA. Only rapid and sustained actions
such as those described herein can change the trajectory of the NARW population.
2) Endline reductions, closures, and 1700 lb ropes should be considered as
interim measures as ropeless gear becomes a more viable option
The concerns about ropes and entanglements of large whales is a long standing
problem. As Johnson et al. stated in 2005, “…any line rising into the water column
poses a significant entanglement risk”
(https://onlinelibrary.wiley.com/doi/abs/10.1111/j.1748-7692.2005.tb01256.x). In
recent years, a tremendous amount of effort by engineers, fishers, and scientists
has led to promising options to address this threat with gear technology. We ask
NOAA leadership to acknowledge that ropeless gear may nearly eliminate the risk
of large whale entanglements and support an economically viable fishing industry.
Government investment to accelerate the development and evaluation of ropeless
fishing is urgently needed, which should include plans for experimental fisheries
in closed areas by January 2022. Support for these investments must consider the
use of subsidies to help shift all members of the industry affected by closures to
this option by January 2024. These goals should be endorsed by NOAA Fisheries

to signal the agency’s support of ropeless fishing and to encourage investment and
development by commercial manufacturers. Ropeless retrieval systems are
functional today, but a universal solution to monitor a fishery without buoys
marking endlines and address gear conflict issues does not yet exist and must be
developed with the support of NOAA Fisheries quickly. These investments will
benefit fishermen and whales, and should be a top priority. In the meantime,
scaled-up efforts to reduce the total number of endlines, to implement closures and
to use 1700 lb ropes/weak insertions should be considered the best interim options
for reducing risk and impact.
3) Where vertical lines continue to be necessary, endline strength should be
reduced to 1700 lbs throughout the entire length, not just the upper portion
Rope strength plays a critical role in entanglement risk and injury severity (see
https://conbio.onlinelibrary.wiley.com/doi/10.1111/cobi.12590), and the
ALWTRT came to near consensus in April 2019 in requesting that vertical lines
with a breaking strength of 1700 lb, either entirely or with weak links inserted
every 40 feet, be used throughout the lobster and crab industry to reduce risk. This
recommendation has been weakened in the proposed rule such that weak
rope/weak insertions are now only being proposed for the top half or top third of
an endline with only one to two weak insertions required independent of endline
length. The original ALWTRT agreement as it pertains to weakened vertical lines,
which would require use of 1,700 lb rope or sleeves through the entire endline
length, should be reinstated and applied throughout lobster and crab fisheries as a
part of this rulemaking and expanded to other fixed gear fisheries in the near
future.
4) A mechanism should be developed to allow vertical line closures to
expeditiously be extended spatially or temporally based on scientific
observations that include computer modeling
Fisheries closures that eliminate vertical lines in the water column are the most
effective tool for mitigating risk of entanglements of right whales where the two
overlap in space and time. Right whales have shifted their distribution
dramatically in the past 10 years and their movements have become more difficult
to predict as a result of climate change. As new aggregation areas are identified
from direct observations, acoustic detections, and/or modelling, it is important to
have a rapid regulatory response method to change, expand, or extend closures as
needed and allow ropeless fishing in these closed areas. A network of closures
should occur throughout the species range, and protect a sufficiently large enough
area to help recover the population.

As academic members of the Atlantic Large Whale Take Reduction Team and scientists
who study large whales, oceanography, and fisheries issues, we recognize the tremendous
challenge facing NOAA Fisheries to prevent the extinction of the NARW while
minimizing the economic impact upon fisheries. We believe that, for the fishing industry
and NARWs to coexist, the transition to fully weak rope and ropeless gear requires
immediate government support to help fishers procure new gear. No further delays or
concessions that undermine the ability of proposed measures to prevent NARWs from
going extinct should be allowed in implementing strong, effective and enforceable rules.
If an 80% reduction in risk cannot be accomplished in this rulemaking effort, NOAA
Fisheries should request the Atlantic Large Whale Take Reduction team to immediately
consider additional measures for these fisheries during 2021 discussions.
Thank you for considering our request. We will each be providing more detailed
comments to the proposed rule.
Sincerely,
Amy Knowlton
Senior Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Member, Atlantic Large Whale Take Reduction Team
Member, Southeast Implementation Team for Right Whale Recovery
Board Member, North Atlantic Right Whale Consortium
Mark Baumgartner, PhD
Senior Scientist
Biology Department
Woods Hole Oceanographic Institution
266 Woods Hole Road
Woods Hole, MA 02543
Past chair, North Atlantic Right Whale Consortium
Vice-chair, Ropeless Consortium
Board Member, North Atlantic Right Whale Consortium
Member, Northeast Implementation Team for Right Whale Recovery

Moira Brown, PhD
Emeritus Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Vice Chair and Past Chair, North Atlantic Right Whale Consortium
Chris Clark, PhD
Senior Scientist
Cornell Lab of Ornithology
159 Sapsucker Woods Road
Ithaca, NY 14850
Peter Corkeron, PhD
Senior Scientist and Chair, Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Board Member, North Atlantic Right Whale Consortium
Alexander M. Costidis, PhD
Stranding Response Coordinator/Senior Curator
Virginia Aquarium & Marine Science Center
717 General Booth Blvd.
Virginia Beach, Virginia 23451, USA
Member, Atlantic Large Whale Take Reduction Team
Member, Bottlenose Dolphin Take Reduction Team
Member of Working Group for Marine Mammal Unusual Mortality Events
NOAA Right whale Necropsy Team Leader
Philip Hamilton
Research Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Board Member, North Atlantic Right Whale Consortium

Steven Katona, PhD
Emeritus
College of the Atlantic
105 Eden St.
Bar Harbor, ME 04609
Robert D. Kenney, PhD
Emeritus Marine Research Scientist & Adjunct Professor in Residence
University of Rhode Island
Graduate School of Oceanography
Narragansett Bay Campus Box 40
215 South Ferry Road
Narragansett, RI 02882-1197, U.S.A.
Member, Atlantic Large Whale Take Reduction Team
Scott Kraus, PhD
Emeritus Senior Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Past Member, Atlantic Large Whale Take Reduction Team
Chair, North Atlantic Right Whale Consortium
Scott Landry
Marine Animal Entanglement Response
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Member, Atlantic Large Whale Take Reduction Team
Board Member, North Atlantic Right Whale Consortium
Charles “Stormy” Mayo, PhD
Senior Scientist
Director, Right Whale Ecology Program
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Member, Atlantic Large Whale Take Reduction Team

William McLellan
University of North Carolina Wilmington
601 South College Road
Wilmington, NC 28403
Member, Atlantic Large Whale Take Reduction Team
Member, Pelagic Longline Take Reduction Team
Member, Bottlenose Dolphin Take Reduction Team
Member, Harbor Porpoise Take Reduction Team
Member, Northeast Implementation Team for Right Whale Recovery
Member, Southeast Implementation Team for Right Whale Recovery
Member, NARW Unusual Mortality Event Investigative Team
Master Necropsy Team Leader
North Carolina State Stranding Coordinator
Past Board Member, North Atlantic Right Whale Consortium
Emeritus Member, Working Group on Marine Mammal Unusual Mortality Events
Michael Moore, Vet MB, PhD
Senior Scientist, Biology Department,
Director, Marine Mammal Center
Woods Hole Oceanographic Institution, Woods Hole, MA 02543
Board Member, North Atlantic Right Whale Consortium
Emeritus Member, Past Chair, Working Group on Marine Mammal Unusual Mortality
Events
Necropsy Team Leader
Doug Nowacek, PhD
Nicholas School of the Environment
Duke University
135 Duke Marine Lab Rd
Beaufort, NC 28516
Heather Pettis
Associate Scientist
Kraus Marine Mammal Conservation Program
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Executive Administrator, North Atlantic Right Whale Consortium
Alternate Member, Atlantic Large Whale Take Reduction Team

Andrew Read, PhD
Stephen A. Toth Professor of Marine Biology
Director, Duke University Marine Laboratory
Chair, Division of Marine Science and Conservation
Nicholas School of the Environment
Duke University
135 Duke Marine Lab Rd
Beaufort, NC 28516
Member, Bottlenose Dolphin Take Reduction Team
Member, False Killer Whale Take Reduction Team
Alternate Member, Pelagic Longline Take Reduction Team
Past Member, Harbor Porpoise Take Reduction Team
Member and Past Chair, Atlantic Scientific Review Group
Nicholas Record, PhD
Senior Research Scientist
Bigelow Laboratory for Ocean Sciences
Director, Sea Change Semester Program
60 Bigelow Drive
East Boothbay, ME 04544
Member, Atlantic Large Whale Take Reduction Team
Jooke Robbins, PhD
Senior Scientist
Center for Coastal Studies
5 Holway Ave.
Provincetown, MA 02657
Past Member and Alternate, Atlantic Large Whale Take Reduction Team
Rosalind Rolland, PhD
Emeritus Senior Scientist
Anderson Cabot Center for Ocean Life
New England Aquarium
Central Wharf
Boston, MA 02110
Past Board Member, North Atlantic Right Whale Consortium
Brian Sharp
Director, Marine Mammal Rescue and Research
International Fund for Animal Welfare
290 Summer St.
Yarmouth Port, MA 02675
Member, Atlantic Large Whale Take Reduction Team

Sarah Sharp, DVM
Marine Mammal Rescue and Research Program
International Fund for Animal Welfare
290 Summer St.
Yarmouth Port, MA 02675
Rob Schick, PhD
Marine Geospatial Ecology Lab
Nicholas School of the Environment
Duke University
Durham, NC 27708
Sean K. Todd, PhD
Steve K. Katona Chair in Marine Science
Director, Allied Whale
College of the Atlantic
105 Eden Street,
Bar Harbor, ME, 04609 US
Tim Werner, PhD
Senior Associate, OAI Consulting
Research Fellow, School for the Environment
UMASS-Boston
McCormack 2nd floor 615
UMass Boston 100 Morrissey Blvd.
Boston, MA 02125
Member, Pelagic Longline Take Reduction Team
Alternate Member, Atlantic Large Whale Take Reduction Team

Appendix 7.3
Transcripts from Public Information Sessions and Public Hearings
In January 2021, we held four public information sessions and in February 2021, we held four
public hearings, all virtual due to the global pandemic. The sessions were organized by region,
though everyone was welcome to attend any session. Although the purpose of the January
meetings was to provide information and answer questions, we accepted oral comments on the
proposed rule and the Draft Environmental Impact Statement (DEIS) at all eight meetings. See
Tables 1.5 and 1.6 for a breakdown of participants that attended the information sessions and
public hearings.
Information Sessions
1. Rhode Island, Southern Massachusetts and LMA3, Tuesday, January 12, 2021, 6:30-8:30
pm
2. Massachusetts (Outer Cape and LMA1) and New Hampshire (LMA1), Wednesday,
January 13, 2021, 6:30-8:30 pm
3. Southern Maine, Tuesday, January 19, 2021, 6:30-8:30 pm
4. Northern Maine, Wednesday, January 20, 2021, 6:30-8:30 pm
Public Hearings
1. Rhode Island, Southern Massachusetts and LMA3, Tuesday, February 16, 2021, 6:308:30 pm
2. Massachusetts (Outer Cape and LMA1) and New Hampshire (LMA1), Wednesday,
February 17, 2021, 6:30-8:30 pm
3. Southern Maine, Tuesday, February 23, 2021, 6:30-8:30 pm
4. Northern Maine, Wednesday, February 24, 2021, 6:30-8:30 pm
A total of 211 people provided comments through these informational sessions and public
hearings. Of these, at least 58 identified themselves as fishermen on the calls. About 77
commenters voiced support for this rule or strengthening this rule, while 44 generally opposed
the rule or questioned the need for a rule. Many people had questions or wanted clarification on
particular parts of the rule, but did not specifically voice either support or opposition.

Information Session 1
Rhode Island, Southern Massachusetts and LMA3, Tuesday, January 12, 2021, 6:30-8:30 pm
Can you jump back to that slide and go through that for us? Oh, well, Kara will have to jump
back to the slides.
Yeah, can you, Can you say which slide one more time for me?
The Trawl-up slide for preferred alternatives. So in LMA 2 between 3 and 12 nautical miles, It
was 15 traps per trawl, I believe. And beyond 12 nautical miles, it's 25 traps per trawl. Yeah.
OK, you say that one more time for me?
So in LMA 2, between 3 and 12 nautical miles, it will be requiring 15 traps per trawl and beyond
12 nautical miles, 25 traps per trawl.
OK, thank you.
That was slide 20, for people who are following in the slide deck.
OK, Brian. I'm coming back to you. Let's try this again. You are unmuted, You'll have to unmute
yourself.
OK, can we hear me now?
Yes.
Hey, Hello, everyone. Just the LMA2 question, also a conservation equivalency question. If we
were able to get a proven 1700lb breaking strength for the top 75% of our vertical lines, joined
with, uh, a knot at the 25% mark from the bottom, which would also weaken it, could that be
considered a conservation equivalency to perhaps two installed weak links or breakaway
insertions?
That is definitely a conservation equivalency to the weak insertions, because that's full, Weak
rope what we consider to be full, weak rope. Scott has suggested that it gets equal, or greater risk
reduction, if all of the LMA 2 boats did that then, then the trawling up suggestions that are in
place right now, it's difficult for us to determine how much risk reduction we get if just the
Rhode Island boats do that. I'm not sure if you're fishing from Rhode Island, but that's a proposal
we've heard from Rhode Island. But that is something that we would look into trying to figure
out how to analyze that, and consider that as an alternative. As a conservation equivalency
alternative
OK, Yeah, now you, you stated that, that might actually give a greater conservation equivalency.
so, ah, certainly not looking for more than the 1700, but maybe the percentage of the vertical
line, you know, through it through a model, if it could be adjusted, where maybe it was, you
know, 60%, instead of 75%, if that met the conservation equivalency barrier. Just, you know, I

819

know we have to find the exact rope that that is. And I know it's not a designated line diameter,
but, you know, before the public comment period, even, we need to kind of diagnose what that
might be for an option. For the industry, you know, in the in perhaps the 12 Mile and in industry
of LMA 2. And I am fishing out of Rhode Island, so, I am speaking on behalf of them.
So, out of Rhode Island right now, what's proposed is a 15 trap trawl out to 12 miles?
Correct.
And that, that's not what you're fishing now?
And, but, I thought that also included two weak link insertions.
Yeah, as well as two weak insertions.
While also trawling up.
That's right.
Yeah, OK, All right. Yeah.
I just was looking at, you know, some of the discussions we've had through industry, um, and in
some of the small boat size, obviously a 15 trap trawl, you know, as you've heard through, you
know, from industry and through your meetings, 15 traps might be larger then, then a boat could
handle. I've talked to several of them today, you know, they say, Obviously they'll do it, it needs
to be done if it needs to be done, but wondering what risk reduction would get us to a 12 trap
trawl and what another preferred possible alternative could be to allow them to maybe trawl up
to just 12 traps. And just for the future, I know nobody's poised to answer that question right
now, but if that could be a model run that gets done in the future.
Well, I'll tell you are well represented by a Scott O and also by the TRT members, including
Peter, who's now an alternate. And I'm sure they're going to make us run those for you in the
near future. So, we will work on that with them.
Yup, OK, yup, I, I have spoken with both of them also today. And was just bringing up, but it's a
question at this point for the group. Just, you know, just so it didn't come from out of nowhere,
wasn't a rug pulled out from under anybody's feet. So, I just wanted to have the potential of that
proposal on the table. While we're formulating, you know, I've been involved in lots of
processes. And, and, and once the modeling has done, a lot of times, there's no longer any input.
We're just trying to adjust it. So, while we're still somewhat early, wanted to just get that on the
table, please.
And, you know, it's difficult because I think in our in our data there aren't very many vessels,
fishing are fewer than 12 trap trawls already. So, there wouldn't be much. There'll be no credit
for the 12 trap trawl component of that. And all of the risk reduction would have to come from or

820

very little I should say I shouldn't say none. Maybe, maybe not enough to be calculated, actually,
if it's only a couple of boats, Out of all the boats fishing there,
OK.
It will be tricky but will work with Scott and, and actually the analysts in Rhode Island also have
a good understanding of your fishery, so we'll work with them to see.
Yeah, no, that's appreciated. I mean, I, I discussed it with 3, 3 individual people today that do
that, so. So, the number zero is, is not, is not a number, you know, there is some percentage of it,
and, you know, if the equivalency doesn't get met, I completely understand, I just, you know, as
representing them a little bit, I wanted to make sure that they know their voice was heard to some
extent, obviously, from a greater safety point. So. Yeah, I think, I think that was my main
question, actually. What were those two things, the content, and, you know, how to achieve some
potential different conservation equivalency. So, I appreciate your time. Hopefully, there'll be a
few more questions from the gallery and informational session and people should not be shy to
ask questions if they have them. So, thank you.
Thanks for your example, Brian.
Yep, and we have one Mark, I'm coming to you. You are unmuted, you can just unmute yourself
and ask a question.
I had, uh, I think it's pertinent. Do the wind farm constructions continue in this proposed
south of Martha's Vineyard closed area when we can't have access to it? Do they still continue to
do their construction during this closure?
Um, Mark, that's a good question and I know I can contact you so I can get you information on
what their plans are. I have not been involved in the wind farm Construction, Endangered
Species Act consultations. What we do through our rulemaking, you know, under the Marine
Mammal Protection Act, it's specific to commercial fishing. So our rulemaking, my team, does
not affect what goes on in that area. Um, so I don't know what the construction restrictions are,
what the seasonal component of that is or even what the status of that project is. But I work near
people who do that so I can get that information for you and I'll see if I can get that before even
our further are next public meeting tomorrow night.
OK, Thank you. I didn't know if this was within the realm, but thanks Colleen.
Yeah. It's outside of the scope of the Take Reduction Team, which is really specific to the US.
Commercial fisheries,
OK.
There's a lot of recovery actions and other actions going on outside of the scope of this rule.
That's one of them. Thanks, Mark.

821

Yes.
OK, Gary, I'm coming to you next. You are unmuted, you can ask your question.
Oh, yeah, you got me?
Yes we can hear you.
Ok, Yeah. I kind of agree with Brian, I fish out of Saconnet Point, Little Compton, Rhode Island
Waters Lobster Management Area 2. I'm kind of getting long in the tooth. I've got a 40 footer I
fish by myself and I don't lobster anymore, just Black sea bass, I use 10 trap trawls. There's
another gentleman, Westport, I believe, he fishes 10 trap trawls also. That's what's safe for me to
fish on my boat. So if there is a equivalency concern I think, that it should be brought in, because
I start two miles off the beach in May, and by December, I'm 15 miles off the beach. So me, it
would be a hardship, to keep adding onto that trawl all the time, so it would be an unsafe
situation and 10 traps is what I fish without any safety concerns. So, I just wanted to make that
comment.
OK, I will let you know that right now, these rules affect only Lobster and Jonah crab fishermen,
but you know. It's smart to be paying attention now, because starting this Spring, we're going to
be looking at all the other, um, at all the all the other regions down to Florida and all the other
fisheries, Gill net and trap pots. So that's good to know and we'll know be talking about that soon
with the Take reduction team. Also, if you're fishing out to 15 miles, that means as currently
proposed that would include a 25 trap trawl area, which would sounds like it would be very
burdensome for your vessel.
Yeah, That would be, uh, definitely unsafe , like I say, I fish by myself and I fish because I enjoy
to fish. The only thing else I want to say is the Coast Guard sometimes gets a little anxious when
they come aboard. And you try to tell them that it's a sea bass pot not a lobster pot. It doesn't
seem to matter to them. It's a pot to them. A pot to some people is a pot, whether it's a sea bass
pot or a lobster pot. And when you try to tell them, no, there's a sea bass pot and then maybe And
they do catch lobsters, there is no doubt about it. So if it comes up and they're on board while
you're hauling the gear and it's got a lobster in it, they're going to consider that a lobster pot. So I
have that concern also.
All right. And from the, from the point of a whale, it doesn't matter what the pot is, it's the
buoy line, and the configurations, that, that impact. So, um, so ultimately, we will be, including
all those other fisheries in these rules as well within the next year or so. We'll be proposing new
measures and they, and we would want them to be consistent. So Yep smart for you to kind of
get in on these measures, because this would be your future too.
Thank you very much, I appreciate that.
Thank you for the comments.

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Colleen, we have no more questions, but we have a comment from Russell, Russell, I'm coming
to unmute you.
Do you want to jump to the comments slide? A couple of these questions have been more like
comments, and we are recording all this, so. So, you know, we're documenting this, oh, it's very
similar. Just put, comment in the, in the comment field, in the question field if you want to
comment. And I'm sorry, Russell, your comment.
I was just following up with what they're both saying. He was saying he was representing three
people he had spoken with today and I would be a fourth running 10 pot trawls in that same area.
OK, great. And are you targeting primarily black sea bass currently?
No lobster, crab.
Lobster, OK. And you fish out to 10 miles?
Yes.
OK, thanks. Yes. So unless we see a lot of questions put into the queue, we can, anyone who's
interested in providing a public comment can comment at this time by putting “comment” into
the question box.
Yeah. OK. Thomas, you are unmuted, and you may make your comment. I can see that you're
unmuted, but we can't hear you.
That may appear.
Yeah, I could just hear you, Thomas. Oh, I'm so sorry wrong Thomas, everyone. Other Thomas',
you just need to unmute yourself and make your comment. My apologies.
Hey, everybody, can you hear me? Very Good. Sorry about that. So this is just a comment. I just
want to thank you all for inspiring people like myself, a marine science student, and your hard
work and love of these whales is really inspiring, and it's been great just to sit in here and the
recent Right Whale consortium. And just hear everybody talk about their passion for
conservation and these Whales. So thank you.
Thanks for that comment. Any other comments tonight?
Not at this time. Do we have anyone else who would like to make a public comment? Or who
has just thought about another question? OK, Brian, I'm coming back to you, Brian, has a
question. Brian, you can unmute yourself and ask your question.
Hello, again. Hello, hello.
Coming across loud and clear, Brian.

823

OK, very good, thank you. I just actually, I wanted to, going to be more of an answer for Mark
that had requested before. The COPs, the cops for all the wind farm vessels are allowing
construction year round for all the wind farm fields. So there is year round construction going,
they are all vessels are supposed to have during the migration, migration times are supposed to
have biologists on the vessel's to do correct spotting, um, of migrating right whales and they are
supposed to stop construction for as long as the vessels are in as long as the whales, sorry, as
long as the whales are in view of the vessels. Um, it's, it's, you know, being involved both in
whales, and wind farms it's, it's a pretty lousy hand for the fishermen to have to face year round,
Year round: crisis and decisions that we're going to have to make, while these Wind Farm
companies do have a hall pass, so when the opportunity does arrive, having the take reduction
team hold them to that standard. At the very least, what I would ask you, you know, that they
would hold them to the standard of having the proper observers on the boat and following the
protocols that are set forth in their construction operation plan. That was about it. So, I guess
that's more of a comment than a question.
It's a good comment. And we will take that to the folks we work with that are responsible for
helping promote those measures with the wind farm, evaluate the wind farm, and identify those
measures. So we'll make sure they're accountable and will pass on as we have in the past that the
fishermen fishing in that area want to make sure there's equitable requirements.
Colleen at this time, there are no questions or comments left in the queue.
OK, so we'll go ahead and consider that a wrap of our first remote meeting. I really appreciate
those of you that attended today, and, again, this was our first run. So, oh, you're sort of our
guinea pigs, are not intentionally did put a lot of prep and really appreciate all the NOAA staff
who are on helping maintain the queues and keep the call going, Marisa and Chao for helping
present and Kara for helping us navigate GoTo Webinar generally. And, you know, get us
through the queue as well. And thanks, Joanne Lorello for helping out with technical support.
Thank you everybody and goodnight, and maybe see some of you on future meetings. Thanks.
Colleen I will leave the line open for just a couple more minutes in case anyone is. Furiously
writing all of the information on the last slide.

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Information Session 2
Massachusetts (Outer Cape and LMA1) and New Hampshire (LMA1), Wednesday, January 13,
2021, 6:30-8:30 pm
So as Colleen mentioned, go ahead and type a question in the questions box. It's helpful for us to
sort of lump the questions together by like-topics. If you know your topic or know your slide
number, put that in there now.
First up, we have Gib Brogan. I am unmuting you, you may unmute yourself and ask your
question.
Hi, Gib Brogan with Oceana. I've got a question you may give
you're, you're very faint. We can't hear you.
Sorry. Hold on. Or is that better?
A little bit.
OK, that's good if it's going to get. I'm, I'm afraid I'll speak up.
In the early in your presentation Colleen, you mentioned that the value of PBR is in flux and will
be going down based on more updated stock assessments. Last week in the TRT information
session, you mentioned that the agency has conducted an analysis that looks at the effect of a
lower PBR on the risk reduction target. I'm just wondering, is there any analysis that's available
that can support that? And, if not, then I'm just curious on the effect of a change in PBR on the
risk reduction target.
So, thanks, Gib. We haven't made that available because there were so many preliminary data
points in that normally before we make something public we wait till a lot of the information is
peer reviewed. But to describe it to you, um, the what the main thing that happens when in our
target, the way we formulate our target, the main thing that happens when the number of whales
goes down is the PBR goes down. And, as you might recall, the way we developed our target
was by assigning known US takes to the US, an estimated take level as well as 50% of the
unknown. You know, we know it was an entanglement. It was seen in US waters, or, what we
know is an entanglement. But, we don't know where the entanglement occurred. We didn't get
the gear off it, so, we split up, there, was unattributed, serious injury and mortality is 50%,
Canadian 50% US. And so we only assigned, you know, we assigned half of those in the US
responsibility. So another thing that's happened in the last five years is that there are no over the
most recent five years, there are no known US um, injuries and mortalities. Most of the whales
that we've seen haven't had gear on them or we retrieve no gear. And so or we couldn't identify
the gear. So as a result, the, the estimated take attributed to the US went down as did the
potential biological removal level. So in the end, our estimates are similar, 60 to 80%, depending
on the assumptions. We are considering whether or not, even though it's very preliminary,
whether or not we can make that available and so, you know, keep looking at the TRT web page
if we, if we put that, know that those calculations out there, that's where they'll show up.

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And PBR is a formula that anyone can calculate themselves. And so you can sort of look at the
new, some of the new numbers coming out. You use nMin, zero point zero four and zero point
one times a half and you can calculate the PBR level yourself. And that's sort of the fundamental
start of the analysis that was done that we showed at the or that was discussed at the meeting last
week. OK, do we have any other questions, just type “question” in the chat. OK, excellent.
Marin. I'm coming to you. I have unmuted you. Yep.
I want to say thank you, guys, for the presentation. My question was I was looking at the
website, and for the latest entanglement reports. You guys noted a male right whale
entanglement off the Georgia Florida line, just in the last couple of weeks, January 2021. So I
guess my question is, is that this proposed rule is to achieve a 60% reduction in risk to hit the
zero point nine PBR. Why are not all other fisheries included in this proposed ruling south of
Rhode Island? And it's not uncommon to have these entanglements. In, you know, Georgia,
Virginia, Florida. And I also didn't see that in the north-east region. It seems like it's just Lobster
and Gill net. But what about some of the other fisheries that are affected by ALWTRT
regulations currently?
I'll try answering that one. So earlier when I identified the efforts for the April 2019 meeting, I
indicated that we did. We did focus the scope of that meeting on the north-east Lobster and
Jonah Crab Fisheries, because that's where 93% of the buoy lines are fished. Where right whales
occur. Um, when we do coast wide, multi, many multi fishery rule, it can take even longer to get
a proposed final rule that takes a lot longer to develop that. And so because we were in a hurry
we wanted to focus and get, you know, the largest number of potential threats covered in the rule
at one time. So that's why we focus on north-east lobster and Jonah crab.
We have notified the team and we are starting to make plans for a Spring 2021 meeting to look at
all other lobster fisheries further south and all the other trap/pot and gillnet fisheries as well.
So we're in the process of preparing materials to have the team start meeting on that. Um, that
entanglement that was observed off of Georgia. I believe it was this week. Um, We don't. that, as
I mentioned in the slide, showing Dragon, the picture of Dragon. Where we first see an
entanglement is probably best correlated with where we have aerial surveys, or good
opportunistic effort, like whale watching or other eyes on the water. It's not where the
entanglement occurs. Right whales can drag these drag gear for miles and miles and for months
and months. So first sighting, uh, often has nothing to do with the, the location of the
entanglement. This is not a brand-new entanglement. This is the first sighting of entanglement.
The Whale apparently has reportedly has cyamids on it, which suggests that the abrasions are not
new, caused by the entanglement
Thank you. I appreciate the response. It's just one of these overall things where you're putting
such a big cost and burden on these two fisheries, when it's a shared responsibility. Because just
as you say, you know, a lot of these entanglements haven't been identified by gear. Or by area.
But yet, these two fisheries and this region is bearing the brunt right now.
So, you know, if you want to submit that as your comments, when the comment period, or during
the public comment period, please do, that we do plan to regulate these other fisheries as well.

826

Yeah. No, I appreciate that. Thank you.
OK, Mike Walsh. I'm coming' to you. You are unmuted, you can unmute yourself and ask your
question.
Yes. My question was I thought I might have heard somebody say that these implementations of
the contrivances or gear markings would be pushed out a little further due to the length of these
discussions and comment periods. You know? I know plan to start fishing hopefully back on
May first, But, you know, Will be Will I need to have my gear ready by May first ready to go for
this or will likely be pushed out?
Mike? Are you a Massachusetts fisherman?
I am yes. Marshfield, I'm in the closure.
So, do you fish primarily in State waters?
Yes, I do.
So this the State is on a parallel track to implement rules on well, I shouldn't say parallel, there.
They're well ahead of us. So, I don't know what those final rules will look like.
I think that there was recently an indication that that was going to be pushed back a few more
weeks before they finalize those things. I do think probably by, I don't know, there's a delay in
implementation, that's something you'll have to ask the state regulators.
Thank you.
OK, Kurt, Coming to you. All right. You are unmuted, you can unmute yourself, and I will head
over to Slide 41 for you.
We're going to pass. We've figured it out.
Awesome. Thank you. OK, Mary Branch. You ask your question, and I will head over to slides
27 through 30.
Well, I'm just, I'm just been following this for a while. Can you hear me?
Yes.
Yep, OK. And I always get there. I'm just a regular citizen down in Texas and um just very
concerned about the right whales, especially. And I noticed that and the answer is probably
obvious. And I'm just trying to process all of this. But I noticed. And on those slides, the
preferred and non-preferred, um, methods, and the non-preferred seem to have such a significant
reduction in right whale, or all whale takes. And I know it's also a very significant increased cost.
But to me, biologically, I mean, these whales are going extinct there. I think they're 1. 1 or 2

827

whales away from becoming critically endangered, or what you call the red, the red zone, where
they may never recover. And less than 400 significantly less than 400 of them in known
existence. So why wouldn't And maybe you're doing that in the Proposed Rule, but why wouldn't
you at least take some non-preferred methods that have that 80% or 83% reduction in occurrence
and mix some of those in with the preferred to achieve a better balance. But I don't know. Maybe
you're doing that. I just don't know the entire rules. So that was just my question. And I know
there's a cost. But wouldn't it be Great if the fishermen and everybody could agree to maybe the
first couple of years trying at a higher cost or maybe a reduced catch just and making these
changes. Just to see if it makes a difference. Then you'd have some really good data that Yes.
This does make a difference. So, that's my question.
I'm not sure I can answer that to your satisfaction, but you can certainly comment. You know, in
public comments that you think that our final rule should include measures from our nonpreferred alternative. Um, the, the, the large, cost is a part of it. We were also working with a
target of 60, well 60 to 80%, but 60% was really what the TRT was going with. There are a lot of
uncertainties about where mortalities are coming from and the proportion for instance coming
from Canada or other places. And Canada's recent in recent years taken a lot of steps to try and
reduce takes. and they've reduced the obvious takes at least. And so we might see. We might see
those benefits in changes in what we're seeing in our waters as well. But again, that's a You've
got, you raise a valid point and that is a good public comment for you to make if, if you're you
want us to look at finalizing something from our non-preferred alternative.
OK, Thank you.
OK? Let's see here. Gib I'm coming back to you. You are unmuted. You can unmute yourself
and ask your question.
My question is about the proposed LMA1 restricted area and the Preferred Alternative. And they,
too, I think, you call them co proposals. one of them relies on the regional administrator to make
a call in the fall. And just wondering, could you describe how that would work? Are we looking
at a situation where the regional administrator would have absolute discretion or would the EIS
include a series of criteria? And then, my other, the other question on the same thing is, how
does the agency propose to collect and process information in near real time to make any
determination in season?
So, those details are not in there, in the DEIS currently, things, that, some conversations that
were held during the TRT team meetings related to trying to develop more adaptive closures, that
or based on evidence, it wouldn't, I don't think it would be something that the regional
administrator would wait till October to do it. And I, and as we discuss it with the take reduction
team, if we were able to prepare regulations to allow that, it would probably require consultation
with the take reduction team. So I would envision something more like in, in July of every year.
We would call the team together to look at information such as projections of where copepods
are or the last year's aerial survey and other survey efforts to see what whales are doing, and the
most recent time series we have available. Right now to get, to get data into models. It's always
two years lag. Sometimes more. So we would be looking at the real data, rather than using the
model, potentially, unless we develop a more agile model. But those details haven't been worked

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out, Gib. I do think that anything we would do would require consultation with the team, not the
regional administrator entirely by himself. Um, but, as I said, we haven't worked out all those
details and they're not currently in the in the DEIS.
OK, thank you. That's very useful. I was trying to reconcile that process with the considered but
rejected alternative of using dynamic management and that's also data dependent and happening
in, in near real time. So just trying to make sense of that. Thank you.
Just one thing to add to that Gib. When we talked about dynamic management at the TRT
meeting, well, we talked about, you know, it's a little easier to open something, to have it, to
have it closed. But then, because of information collected in the months leading up to it, or the
year before, including the year before it, too, to open it, then it would be to dynamically close it
if it's not already a closure in US rulemaking procedures.
OK, Faye Anderson, you are unmuted, and you can ask your question. Faye, are you able to hear
me? We can come back to you, if you're having trouble. You can also type your question into the
questions box and I can read it for you, but we will come back to you. OK, next up, we have
Max. Max, you are unmuted. You can unmute yourself and ask your questions.
Hear me?
Yes.
OK, so, as I'm a New Hampshire commercial lobster pot fisherman, and I'm wondering what
why any state, New Hampshire, lobster pot fishermen has to comply with the take reduction plan
rules because, obviously, we're not under Federal permit. So, I'd like to ask two quick questions
to make sure we're on the same page, and I've not missed something in my wonderment. The first
question, I just wanted to confirm that NOAAs never issued the required Marine Mammal
Protection Act, Section 101 A 5 E permit to allow the incidental taking of an endangered marine
mammal. I.E a right whale and the other whales meaning not even issuing a permit for a single
entanglement they can't do under the MMPA. Is that true? That NMFS has not issued that permit
and has no intention to which it will.
I won't speak to the intention of the agency, but we have not issued a permit under that.
OK, great, Great. Alright, thank you. Alright. That can just make sure I'm on the same page with
you is that the certification of authorization, that's comes with the take Reduction Plan
regulations where fishermen are supposed to be immune. From any prosecution for a prohibited
taking, which is just an entanglement, not a killing or an injury, does not apply to the right
whales and the other endangered whales in the north-east. So is that true also?
I would have to get information on that from our attorneys.
So, it says: It's not really specific to the information in our DEIS and our proposed rule. If you
want to keep your questions to those. I'd appreciate that.

829

No. I am keeping it to that, because the whole point of the rule, TRP rule is who you're going to
affect. That's the whole point of the reduction. Who can you affect with these Take Reduction
Plan measures? And so, my point is, now, I'll make my point since I know those two issues are, I
was right correct on the observation, is that because, New Hampshire fishermen do not have
immunity under the MMPA, which are the Which for right whales and specifically, and these
other endangered whales we don't get the benefit of the bargain. And the take reduction plan
can't possibly apply to us, because that I would be asking you about. And then the other thing is
that Because you haven't, NOAA, has not issued, Erika, I'm sure you are interested in this
question. And because NOAA was not issued that required permit, which was that issue was
cited in the federal lawsuit in Washington, that it can't even issue these take reduction plan
requirements. Because you allow entanglements to occur. And if you're allowing entanglements,
you're violating the Endangered Species Act. So my I as a fisherman am caught in a rock, and a
hard place. If I comply with the Take Reduction Plan regulations. I'm going to be violating this
Endangered Species Act, and go to jail for that. And, so, ultimately, what I'm trying to ask here
is, is that the real root to safety for a fishermen, so that if I entangle a whale, under take reduction
plan that says I will entangle whales. Shouldn't I be getting an incidental take permit under
Section 10 of the Endangered Species Act? Now I've tried to do this. I'm still trying, but NOAA
resists. they just apparently have never issued that. But the only way I can see protecting myself
and my fellow fishermen from when we entangle whales not to go to jail or not to be fined or
whatever because we're violating the prohibitions, is to go the Incidental Take Permit route but I
don't think that's even going to work. Because since you can't issue intent and incidental take
statement, that would allow us,
I'm going to ask you to wrap this up. This sounds a lot more like a comment than a question and?
Litigate mitigation on the poll. So, You don't have to do that, I understand. Your question.
Don't cut me off. That's why I'm suing you, you just don't listen to anybody. Just fishermen
Then you, please. Thank you. Thanks, Max. We would love to, not necessarily love to, but we
anticipate getting those as comments. And we've recorded your comments today as well.
OK, we have Next, we have a question from Gib on State Management Components. Gib. You
can unmute yourself and ask your question.
Yeah, First off, thank you for answering my questions. I've been reading these documents for
two weeks and watched these presentations a couple of times. And I appreciate you making this
makes sense for me.
Can you make this presentation for us next week Gib?
I think this is my fourth time through, so, yeah. Getting pretty close now. So, my question is that
it seems that the plan and the proposed rule rely on two states, Maine and Massachusetts, to take
regulatory action in their states. Is there any when or means for the Federal government to
compel the states to finish those processes? I'm just wondering what effect, delay or heel
dragging in those processes will have on the risk reduction, and the ability to meet the goals?

830

So, thanks for that question. First, the states are actually a lot more agile than the Feds are, as
you know. Um, Massachusetts is working on rulemaking that they may have finalized for state
waters. By the end of February or, you know, early this year, Maine has already implemented
gear marking measures for all Maine permanent vessels. So, they're way ahead of us on gear
marking, state specific gear marking modifications, um, we are likely to mirror states regs, as we
identify them, or as they are implemented. So, if they haven't been done by the states yet, but
they're in our proposed rule, will be implementing them through our rulemaking, or will be
mirroring them if they have already implemented them, so that they are also in our rulemaking.
With a couple of exceptions, we won't be implementing measures within Maine exempt waters.
Which is much of but not all Maine State waters. And we are. We don't really have an easy
ability to implement the, the, the dynamic closure extension that Massachusetts is proposing.
So not exactly sure how that will end up being in our measures, but, you know, it will be
reflected somewhere in our measures. But. I think, you know, in the case of both those states,
they have done things already ahead of us. And, you know, every year, I think, for the past 4 or 5
years, Massachusetts has extended closures when whales have remained in the area.
So I think we can have some confidence that they'll continue to do that.
It was the Maine exempt waters that I was most concerned about. And, uh, yeah, just making
sure that that element gets finished.
Yeah. I mean, they know. I think Maine is motivated to not have us regulate their exempt waters,
and that motivation will ensure that they'll do that as well. Not necessarily sure, but pretty good
prediction that they're probably likely to do that. And so far, they have, you know, as I said,
they're ahead of us on the state specific gearmarking.
OK, Faye, we're going to come back to you. You're unmuted.
Oh, can you hear me?
Yes. Thank you.
How good. It says, under the Mass State Waters that the under the traps per trawl, there's 1 to 2
traps per trawl. Then you go on to say, no single's on vessels longer than 29 feet permits after
1/1/2020. So, is that saying that you can fish singles if your boat is bigger than that? As long as
your permit, you held it before 1/1/20?
So I'll try to answer that. That is a state that was in the state proposal that is not in our proposed
rule. So that's not something that would be regulated by the Federal Proposed Rule. It's
something that the State of Massachusetts is proposing. So I don't actually know how they would
implement that. That might be something that's in the state's rulemaking that will be occurring,
you know, early this this year.
OK, And does that also the States ruling that we are closed, the outer cape area in the state
waters are also closed through May if there are more than three whales present.

831

So the state didn't actually propose a trigger for opening. That was an interpretation we made in
their actual proposal. They indicated that they would close, extend the mass restricted area in
state waters. If whales remain in the area, they do survey the outer cape. And I think in at least
one year, in the last four, they did close portions of the outer cape because whales remained in
the area. So it would be a continuation of that. Or perhaps we would be, it might be that the
default. But what we're proposing is that the default would be closed, that they could open it
early if they determine the whales have Left. But, you know, again, as that's likely the State is
likely to implement that before our rule is final, and so we would be mirroring or in some way
supporting implementation of that in state waters:
OK, Thank you.
Are there any more questions? Colleen, there are, at this time, no more questions in the queue. If
people have more questions, we can always come back.
So I think we received some public comments already tonight within the questions session, but if
people are interested in Commenting, it's 803, We could probably take comments for 10 to 15
minutes. If you are interested in commenting, please type “comment” in the question box. Let us
know. Can we see if there's anyone on the phone that has a question or a comment on a phone
only? I don't think we've done that yet tonight.
I don't see anybody who is phone-only, Yeah, OK. But if somebody is having difficulty
happening to them, well, I don't know. I guess we wouldn’t know. I don't think there's anybody
who's just on, who's just on the phone.
So if anyone has a comment, you can type “comment” in the comment box.
Questions? Comments? Colleen I am seeing none, but we can leave the line open a couple more
minutes.
OK, I'd like to, again, thank everybody for joining us tonight, and thanks a lot to lot of take
reduction Team members who've joined us, and our regular visitors. You know where to find us.
Our information is on, was presented tonight, and contact information, and it's also on the
Atlantic Large Whale Take Reduction Plan webpage, which you can see the address here,
honestly, if you do a Google search for us, you'll find us that way, as well.
So, one last question on gearmarking. Question: Comment: Marin excuse me, I'm sorry coming
to you.
Yeah, that's OK. Hey, Colleen. And I just had a quick question. It might be more of a comment
if you can't address it, But I know part of the purpose of this proposed ruling is to increase the
gear marking to better identify the areas that need more risk reduction. And at what point do you
think that will be achieved. So that you guys can stop assigning the 50% assumption from
unknown incidents and entanglement.

832

I can't answer the question. In probably, I think, 60% of the entanglements over the last five
years or so, There has been no gear retrieved. So even if either, in many cases, there's no gear
remaining on the whale, but there's signs of acute entanglement-caused injuries. But in some
cases, there is gear, But, you know, the Disentanglement team has a lot to worry about, their own
lives, the whale’s life. They don't, they're not always able to bring gear in. So really, it's been
about 60% of the time we have had no line in hand, which means that the other 40%, it's a pretty
small sample size. And it, while, you know, if we find a mark, we can identify the general
vicinity of where a take occurred, it doesn't really give us a lot of information about the 60%
with no gear and the undocumented mortalities that occur. So you know, when will we have
enough information? It's really hard to know. I can't give you a prediction on that.
Yeah, no I'm, a proponent of the increased gear marking I always have been, because I think part
of this is, identifying those areas so that we can better direct our resources and the reduction
measures for it. So, it's but it's one of the hard things where, there's only three markings on it on
your, each state is trying to defend itself. But, um, you know, there's still the US. Canadian issue,
that would be, helpful to identify.
Canada does have pretty extensive gear marking now. So that might increase our understanding
of when it's coming from Canada. Um, so they, they have increased their gear marking
substantially. I think almost all of their, I think all the snow crab vessel the snow crab lines are
supposed to be marked and I think that most if not all of their lobster lines are now marked
Yeah. That's good. That's a good step forward, and thank you.
Yeah, that is.
There are no questions or comments in the box.
OK, thanks, everybody, for joining us tonight. We have two more meetings next week, focused,
primarily towards Maine. For information sessions. And then join us, as well, in February, If you
want to provide comments through these meetings, again, you don't have to come to meetings to
provide comments. You can provide comments through the regulations dot gov portal, through
midnight, March first. Thanks, everyone, for joining us. Appreciate it! And thanks, NOAA staff
for helping me out tonight. I appreciate it goodnight, everybody!

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Information Session 3
Southern Maine, Tuesday, January 19, 2021, 6:30-8:30 pm
You know, you kind of made it sound like the gear might move off to better fishing grounds
somewhere else. But if you're restricted to the zone that you are able to fish and you shut off the
furthest section of that zone, away from shore during a period of the year where that's where
people want to be, then it would seem that guys would line right up along that area.
That's a really good question. I would have to check with a modeler, to check with them to see if
that's something that he put into the model. I know it's come up in discussion, and I don't know
what the final result was. I can try to check on that.
All right. Thank you. I appreciate it because it's just Yeah, I understand that, you know, that
other, if you look at relocation from other closures that are currently happening
The curtain effect might not really be a big deal, but this closure would be very different from
anything that you guys have done before in that, you know, you can't simply just slide anywhere
you want within the area.
Yeah. I really appreciate that comment and if it's not in there now, we'll try to make sure it is for
the final.
All right. Thank you very much.
If we can have more information about the relocation that fishermen would like to do in that
area. That will also help to estimate the costs for the fuel changes and landing changes. So we
would strongly encourage fishermen and friends to provide us comments about those
assumptions.
Thank you.
OK, Amy, you are unmuted, and you can unmute yourself and ask your question.
OK, Can you hear me Sorry.
Yes.
OK Um, I'm curious knowing that climate change is leading to a lot of distribution shifts and you
know we've seen that in the past 10 years, is this proposed rule going to be able to consider
future distribution shifts in thinking about closures If they should be shifted to new areas or um,
or expanded or I just wonder if it can accommodate that sort of information that will be coming
in, since the preferred alternative seems to rely on that a lot more than the non-preferred
alternative.
I'll take a shot at that. I mean, as I said earlier, our ability to close areas is not very agile. But this
is, you know, it is one of the most valuable thing that the Mass Restricted Area closure is

834

one of the most valuable things we've done, the team has done. And that that area has gotten
increased use since that area was closed by Right Whales, there are more right whales there than
there were originally estimated. Um, other areas like the Great South Channel are not getting
much right whale use right now, compared to how they used to. And it's one of the reasons we
have these larger area-wide permanent measures in weak rope and in Trawling Up to Reduce the
Amount of rope. It's because we know that there can be shifts, and so we want to have
precautionary measures and risk reduction measures across the whole area, and not just rely on
the closed areas. There are multiple reasons, though, for example, for the offshore Maine closed
area and one of them is, it's hard for us to predict what whales are going to do. They seem to be
continuing to use area as, as you've told us, areas that they've always gone to there, At least
visiting those areas. They may not be staying as long, and there may not be as many of them
visiting. But, there's, they still seem to still be going back to areas where they were aggregating.
And we don't know for sure how they're going to be doing that in the future, but one thing that
we do have some predictions about is that that lobster are moving offshore. And that it's a good
possibility that effort will move offshore. There is a lot of effort in, in Federal waters offshore of
Maine that could continue to move offshore. There is increased capacity in the fleet, although we
don't have evidence that they've moved off so far, but 5 or 10 years from now if they didn't move
offshore and that area continued to be visited by right whales, That is something that would be
much more difficult to regulate at that point and to get ahead. So we did try to at least anticipate
fishery potential for fisheries shifts which might be a little more predictable today than
anticipating where the whales will shift. But. Again, that's the reason we looked for, area-wide
Precautionary Measures. Does that answer your question, Amy?
Yes, it sort of answers my question. I guess the other question I have is, just thinking about,
down the road. Um, it seems like this proposed rule is sort of a, it's somewhat static and it's um, I
just wonder, is there a way to phase in more broader restrictions? That, uh, we know in the
ultimately that maybe if ropeless or fully-formed weak ropes are what might be the best for the
whales. And if that can be proven to be effective for fishermen to do their to do their jobs, can it
be, is there an opportunity to consider phasing in additional measures in the years ahead?
Without going through a whole rulemaking process?
I think it would be difficult for us to act to do the NEPA and other analyzes required before we
have some of that information. So I think it is more likely to be something that we would have to
do through a rulemaking process. Because under NEPA we have to be able to analyze economic
impacts, analyze, affect, you know, as well as we can, analyze the risk reduction. Um, those that
requires an ability to describe what those impacts are. You know, phasing something in based on
the possibility that we will have feasible ropeless technology that can be broadly used. Where we
have surface marking and guessing what the cost of that will be in five years. It's, it's hard to do.
It's hard to do it without doing it as a new rule making. We are some of the things that we are
doing in this, like, changing all of our closed areas to buoy lineless areas would allow some of
that to be implemented quickly, at least in those areas and as an alternative to closures. Hmm.
So, I know that's not a very satisfactory answer.
OK, and moving on, Annie. You should be able to unmute yourself and ask your question.
Annie, are you with us? Think your audio is off. Try unmuting yourself now.

835

There we go, OK. So this is Annie with the Maine Lobster Dealers Association in South
Portland, Maine. So my question is, Does the model account for vessels outside of the closure
that would be crowded and catch less when vessels inside to have to move out into the areas that
are already in use?
I think for now, for the economic analysis now, we haven't accounted for the vessels outside.
That's a really good comment. We should take a look at that. Also, we hear we need to more data
about the vessel fishing around the closed area. So, what we can do now is we can have
assumptions of also, like, uh, catch reduction at some rate 5, 5, to 10% of the catch reduction
rate for vessels. But at the end, the catch reduction rate as fishermen adapt to that the rate won't
be the same for every year. It should be at a decreasing rate, also when the areas close, the
lobster within the area could have be like higher quality and they are also spillover effect to that
in the long term. I think it will be like, it will reach a point that fishermen can be at the scene,
it just seems as though, Sorry.
Go ahead.
It just seems that your the Economic Impact Study focuses so much on costs of actual
adjustments of more focused on gear and changes along those lines rather than actual impact to
individual fishermen from the perspective of the change and the impact on their: on their
individual harvest and on the impact to the supply chain itself.
Yeah.
Rather than really paying attention to the individual impacts that fishermen are going to feel on
the water and the impact that the supply chain is going to have to bear.
For this rulemaking we only consider the impact on the commercial fishery, I don't think we are
including the impact to the supply chain, right? Colleen?
I think it I don't think it did. I think that that's a really good comment. And that's something we
can work with Burton and others with, particularly if, as part of your comments, you can submit
or direct us to some data as well.
Also, for the impact on individual vessels. Because the matter is each vessel, a different area,
they have very different situation. So it's hard to estimate but we do have a general number of the
economic impacts on the individual vessel OK.
Some of the information in the IEC line model is constrained by the way the permitting works
within zones or within state and federal waters and things like that. So some of the data feeding
into the model assumptions does have those constraints in it. I don't think that well, I'm not sure
that that any model or the economic assessment looked at impacts to the fishermen that were
being moved out of the area. Something we need to add to that analysis.

836

I think one challenge that you're going to run into in doing this is that, you know, you're not
going to have the data to estimate the impact because, indeed, there is no data. But it should be
considered and added to the error of your estimates and the assumptions that you're making.
Right. That's why we will like to require 100% VTR data in, like, (indecipherable) water, that
will help. Because VTR data that they have location information that will help our estimates to
be more accurate, we can have, as you said, we can. We can have information about fishermen in
different areas. So we can have more like specific estimates.
Thank you.
Thank you.
Thank you. OK, Colleen, I think that we have gotten to the end of the questions so far that have
been in the queue. Does anybody have any questions they'd like to get into the queue?
Is there anyone on the phone that would be able to type it into the question box that we can make
sure we've heard from?
I'm not seeing any.
Yes. So, next slide is very similar. If I think a lot of what we heard tonight, some excellent
questions, and also some good initial comments on things for us, to look at further, analyze, find
information, and we're hoping that you will send us, some of you will send us some kind of
granular information that we can use to support the analyzes, and maybe qualitative information
to improve the DEIS. But if you're ready to actually provide public comments tonight, again,
we'll have meetings in February, to take public comment, was a much shorter presentation from
us, much more time devoted to accepting comments. But if you are interested in providing
comments tonight, you can type comments in the question box now, to get in the queue.
And, similar to what we just did, we can, we will unmute you, and may have to ask you to
unmute yourself as well. Um, so, if anyone has any comments, type in “comment” into the
question box.
No comments yet. But we do have another question. Alysia, you should be able to unmute
yourself and ask your question.
Thank you. So my question relates to what seems to be a situation where you're somewhat
relying on state measures to be implemented and enforced in state waters in order to get to the
level of risk reduction that you're seeking. I'm wondering why you wouldn't want to just focus on
what, you know, you can do in Federal waters and try to get the highest level of risk reduction in
Federal waters?
We, under the Marine Mammal Protection Act, we can regulate to the beach. We don't have to
confine our measures to federal waters. Um, there are things that states can do with more agility
that we can do. For instance, the State of Massachusetts has an ability to keep their state waters
closed into May without having to go through the kind of federal protracted rulemaking we go

837

through. So, that state measure is something that they would implement. Um, the state of Maine
has asked us to allow them to continue to exempt the exemption area from the federal
regulations. But, they have already taken steps to implement measures, for instance, particularly
the gear marking measures, which they've already gotten in place well ahead of us, so they, it's
clear that they're going to follow through on their measures when we were talking to the take and
then additionally, the Atlantic states marine fisheries commission regulates the fishery in the
state waters and we support their regulations by following through with consistent measures in
Federal waters and they put in place a lot of gear, restrictions, trap reductions, that are, that are
still going into place. They're being phased in over time. So there, compared to the 2017
baseline, they've reduced traps and With trawling up measures, there will be reduction in line
numbers associated with the trap reduction. The TRT, when we were looking at the effort
reduction I mean, the risk reduction measures, the TRT endorsed that concept, accepting ongoing
and state risk reduction measures towards our 60% goal and that's why we're doing it that way:
they're considering it towards a 60% goal. We're implementing much of it through the federal
regs. In some cases we're mirroring what the states are already doing, and in other cases the state
will be doing the rulemaking or the Atlantic States Marine Fisheries Commission.
Thank you for clarifying that. one more follow up question. So, how does enforcement of the
proposed measure's work? How is that going to happen? Is it going to happen through federal
and state enforcement? Coordination going to be going on? How does that work to ensure that
the measures that will eventually be adopted or indeed enforced?
Yeah. We think that's a good question. And it's a question with our existing regs as well as any
proposed regs. And we do have, particularly in New England, we have great partnerships in our,
in between our enforcement agencies. Especially with the state of Maine, the State of Maine
doesn't just enforce the state waters. They do go out. I think, at least through 12 miles, further,
offshore you, go, the harder it is to enforce. But we do have good partnerships and collaboration
with the states. Those are done through their call JEA agreements. We provide some financial
support to this.
It looks like we have lost Colleen.
Oh, no. I was hanging on her every word there.
I, we, if, when, if, and when we get her back, I will have her pickup where she left off in talking
about the financial part unless Kristy or Kate, would either one of you like to jump in? OK, well,
we will pick right back up. When Colleen, OK, yes, we have Christie, who is on the phone.
Then, she's going to type it in chat, OK, excellent, we will get that answer to you.
Thank you so much.
No problem. Jack, I see that you have a comment. And I'm going to come right back to you. I
had, one more enforcement question I'd like to get to. So Ira. You can go ahead and ask your
question.
Can you hear me? All? right?

838

Yes.
My question is, as they were talking about enforcement, which one of the things I was trying
to type both for the question was asked. You say you have partnerships and relationships, which
I understand you do. What are the capabilities of those relationships? Anything that I can see,
you Maine has some amount of abilities to enforce rules and regulations. But I see that sliding
quite well in the other states and especially offshore. Is this something that one segment of the
fisheries is going to bear the brunt of enforcement while other parts of the fisheries conduct
business as usual?
I'm sorry. I was, I lost my Wi-Fi for a minute. I missed at least half of that question. You repeat
that?
Yes. Listening to the enforcement question, it was along the lines of what I was asking you, say
you have partnerships and whatever, which I know I realize you do. Uh, and I'm wondering, So,
what's the capabilities of those partnerships? I got a good idea of what Maine’s Capability is.
Don't really have a great idea what Massachusetts, New Hampshire have and especially Area
three. Is this something that one area, one state is going to bear the brunt of enforcement while
others continue to do business as usual? I mean, if we're going to go through something like this,
it seems to me it's got to be fair across the board.
Well, yeah, I agree with you. This requires anticipated enforcement across the board. We do
have those joint enforcement agreements with the other New England states not just Maine
generally, Maine does patrol a larger area, and in some years, Mane gets more of the funding
support to do that. I think New Hampshire and Massachusetts, Rhode Island, they do enforce
within state waters. I'm not sure that they have that offshore capability. Some of that offshore
effort is covered by our law enforcement in conjunction with the Coast Guard rather than with
the States. So, that's another effort going on in Federal Waters. As you said, LMA three, that's
the hardest area to enforce. And that is the pilot study that I was talking about using ROVs there.
They're developing new technologies to improve enforcement offshore. And again, that offshore
enforcement was a problem. It's a problem with our existing measures, Not just the proposed
measures. We don't want to make it worse. And an Office of Law enforcement and Coast Guard,
they're looking at ways to make it better offshore, um, better than what we've been able to do in
recent years. Maine does do a lot more. But Maine also does have a lot more of the effort. So it
may be in proportion to the amount of fishing that goes on.
Yeah. Kind of. Aye. I don't know. I could. Without, I understand what you're saying in
proportion. If there's areas, there's relatively little to no enforcement, the proportion, there's no,
it doesn't. Doesn't match up.
Yeah. Yeah.
And I'm not trying to shove something off on other areas, but, uh, you know, if we're responsible
for doing something a certain way, then it can only be as effective as all of us together. Not just
certain areas,

839

I agree, among the most aggressive people asking us to get additional enforcement. It's that
offshore LMA three fleet, know, they want us out there, improving enforcement, too. So it's
more about how hard it is enforce out there. And that's something we do have to improve and
that we are working on.
Even with a ROV, they still need the capability to haul the gear.
Right. That's been a big challenge, right? Haul and reset if the gear is legal,
OK, Jack, I'm coming to unmute you. Thank you for your patience. You should be able to
unmute yourself.
Yeah, can you hear me?
Yes,
Thank you. I needed my wife's help. So just quick comments tonight. I'll probably have more
tomorrow. But. The first thing on the, the closed area, or I don't, I do not fish out there. I'm not
sure that I know anybody that does, But I agree with comments earlier that the perimeter of that
area will be a wall of traps during that closed season. And, and the one thing that people haven't
brought up, that I will bring up is, once that is open, that there will be a gold rush mentality to get
into that area. So, unless your timing is perfect, that might, it might not be the greatest thing for
Whales. Um, so, other than that, I know. I apologize it Chao is that your first name is Chao how
You pronounce it.
Yep, yep.
OK, you've mentioned 20 minutes to put the gear markings in as an estimate or your estimate, it
took me, I spent most of the summer doing this year in Maine. And I estimate at least an hour per
line.
So, yeah, I'm just telling you, it takes a lot longer than you think For a lot of reasons and it, you
know, I don't need to get into here, but its, it's time consuming. That's a minor point, but I just
thought I'd bring it up.
Very helpful. Yeah.
The third thing, um, I was just going to, say, give a shout out to Zach. Well, I know pretty well,
and I, can't agree with him more about the trawling up. The numbers of traps being possible
detriment to whales, I can see them, You know, a pair traps, three traps, they can probably swim
free but when you're talking about 15, 25, 45 traps? I don't think they're going to get through
that. So I'm not sure why we're even talking about trawling up, and I'll leave it to that here
tonight.
Thank you.

840

Yep.
Kara, any other public comments in the queue?
It does not look like it.
Well, I'd like to thank everyone for joining us tonight. This was really, I think, our best, best
night, so far of really great questions and really thoughtful comments. And I really appreciate
you participating. I know life is really busy for everyone right now, and I appreciate that you
took the time to help us try to implement the documents.
Yeah, Colleen, we have 1, 1, last one.
I take that all back.
Hi. Ira the line is open for you.
Jack just got me thinking about another comment around that cold area because it is in my back
door. A lot of guys I know fish that area and there's a lot of guys fishing either side of that area.
As you know, in Maine, especially, there's a lot of traditional fishing areas of the fish,
traditionally by the same groups, township's areas, what have you, Uh, you'll be creating
something there that's going to work. It's going to work against the way life has been for a long
time, well forever, as far as people entering and exiting that area. You've also encouraged, uh,
talking about encouraging ropeless fishing there. And if you go in there with ropeless fishing the
way it is today, it's going to be an absolute nightmare. And it will be you might just as well call it
a dumping ground, if you do it. If you use that for an incentive to stop for people to go in and
fish, when it's closed, if that actually happens, I'm totally against that area, especially the way it's
drawn out. There's, I. Guess I have other thoughts around closed areas, but. First one being that
close areas aren't a good thing for us, probably, in the usage of our ocean, the way it is right now.
And if we had to go to that, then there's, I think there's other ways to do it.
Thank you.
Thank you.
Appreciate that.
OK, we have 1 last 1, I'm going to put up a slide, and the LMA one proposed area, and,
Jonathan, I'm going to unmute you. You are unmuted, I'm going to go put that slide up.
I will also mention that we will be adding this to our fact sheets, so you'll be able to download
this in the future.
OK, and there's no question associated. Just wanted to see it. Thank you, Marissa.

841

So that fact sheet can be found on the Take Reduction Plan website. If you, actually, if you, if
you just Google the Atlantic Large Take Reduction Plan Proposed Rule, it'll, it'll take you to the
website, I believe, and this fact sheet is one of the documents on there.
Marissa, we will be updating it with this image, is that correct?
We will. I don't know exactly when. I’ll have to hear back on that from our comms team.
My guess is within 24 hours, they've been getting information out about, as fast as we can
produce, some of them are on tonight, and I appreciate their help.
OK, I think we have one last question. Alicia, back to you.
Thank you and I hope I am not keeping everybody too late this evening. Just the last thing, of
course, dynamic closures are something that I'm very interested in and I'm. I know that you're
saying that perhaps the NEPA process might be somewhat of a barrier to creating those. I
wonder if it might be possible to create a categorical exemption under NEPA, and maybe that's a
question for attorneys there, but to allow for a quick creation of a dynamic closure, just an idea.
I don't exactly remember the requirements for categorical exemptions, but I believe that there are
generally, uh, related to a lack of on the lack of impacts beyond things that have already been
considered and analyzed. Or the lack of impacts altogether. So I not I mean that's something that
we can pursue and talk to our NEPA experts and our attorneys about. But I'm not sure it would
apply to this type of dynamic closure option. Let's look into that.
Thank you. Thank you for considering it, and thanks again for all the work you're doing. Much
appreciate it.
OK, Colleen, I think we're at the bottom of the queue.
OK, again, thanks, everybody, for joining us. This was our best, the most people that joined us
and some of the best input that we've gotten. And we really do appreciate it, especially in a busy
and fairly dramatic week, potentially, really appreciate it, and perhaps see some of you
tomorrow. So goodnight. Goodnight everybody.

842

Information Session 4
Northern Maine, Wednesday, January 20, 2021, 6:30-8:30 pm
First, 2021, either in writing or through public hearings that we'll be holding in February.
After collecting comments, we'll analyze an as needed, update the analysis, and our
environmental impact statement. Along with information from public comments, we'll consider
any new data that has come in since the DEIS was written, including new stock assessment
information, or newly published papers. We'll consider the updated information and complete the
final environmental impact statement, and that will be available, followed by a 30 day cooling
off period, which is a requirement of the National Environmental Policy Act. So, comments we
received and the analyzes will also inform the final rule that will be completed and filed 30 days
after the final environmental impact statements published. Note that we anticipate as usual there
will be a delayed effective date for modifications to gear configuration and gear marking so that
fishermen will be given time to modify their gear. Paralleling this Marine Mammal Protection
Act process, there is an ongoing Endangered Species Act, action a Section seven consultation.
On a number of federally managed fisheries. Last Friday the agency released a draft biological
opinion. The address, the Web address for the information bulletin on that draft biological
opinion is listed here. On that webpage you can find the opinion, a conservation framework, and
an e-mail address where you can send questions or input. The deadline for providing input is
February 19th. Note that there's a court order deadline to complete that Endangered Species Act
consultation and to finalize the biological opinion by May 31, 2021. As noted in the draft opinion
and in the Conservation framework, the consultation and the resulting biological opinion will be
considering the impact of the fisheries as it would be modified by the final rule. Next slide,
please. Again, the 60 day public comment period runs through midnight, March first, 2021, we
will be holding remote public meetings to provide the opportunity to provide comments. This is
our last, information Presentation Meeting. And, in February, we will be holding four public
hearings where our presentations will be very brief, and the bulk of the time will be devoted to
collecting public comments. You don't have to attend a meeting to provide comments, Written
comments are welcome, and can be submitted through WWW dot regulations dot gov, search for
the rule and the draft environmental impact statement on that website by using the identification
number shown in this slide, and in the proposed rule, and the draft environmental impact
statement. When you are at the rule, click on comment, now you submit your comments. The
proposed rule, the draft environmental impact statement, the list of public meetings, including
the links to get you into the meetings and other resource materials, can be found on the Take
Reduction Plan Website, detailed on this slide. Fisheries dot NOAA dot gov
backslash ALWTRP, If you have any questions, you can always send me an e-mail at the e-mail
address identified here. And as a reminder, attendance at meetings isn't necessary to provide
written comments, you send those through regs regulations dot gov. I want to thank the many
collaborators and particularly the take reduction team members. There are a few on the phone
tonight and particularly the fishermen that participate on the take reduction teams. Meetings are
just not a natural environment for them, and they worked really hard with us over the last few
years, And a number of meetings, and I'd also like to thank all of you for any comments you
provide on this rulemaking effort. Next slide, please. So, we are going to now kick off the
question and answer session, we will be taking questions specific to clarifying things in the
proposed rule. And in the draft environmental impact statement. Please remember that we will be
recording the question session, including information submitted in the question box. And we will

843

start recording, in a few minutes. Type “question” in the question box to convey that you would
like to get in line, to ask a question and the slide number, if you remember where, which side that
is on. And if you've already done this, you don't have to do that again. You can change your
mind at any time by saying “pass”, when you're called on. Or by typing “take me off the question
list” to the question box. And as we've mentioned earlier, you, Kara will unmute you, but you
may also need to unmute yourself when you, your turn, is up at the queue. And, as always, please
be respectful and direct questions to the presenters. And with that, I think we can start taking
questions, Kara.
Yes, hi, everyone. I know that there are some people who are having issues typing into the
questions box, You can also e-mail me. It's Kara, K A R A, dot S H E R V A N I C K.At NOAA
dot gov. I put it into the chat box, and hoping it comes up. So, if you would like to get in the
queue, and you are unable to enter that into the questions box, send us an e-mail, or if you know
someone else who's on tonight, they can also get you in a queue. Thank you for bearing with our
technical difficulties tonight. I promise it worked all the other evenings. Um, so with that, I think
we're going to go to our first question. Julie Eatan, I'm going to unmute you. I see you have
multiple questions. If you will just ask one question, let our presenters respond and then ask your
second question. You are unmuted, you should be able to unmute yourself and ask your first
question.
Hi, Thank you very much for taking my question. I would like to know my first question is how
many of these entanglements have been found to be involved with Maine Lobster gear? or have
ah how many right whales have been seen in Maine waters in the last 10 years? Thank you.
Thanks for that question. I don't have the sightings data from Maine waters at this time. Um, we
can see if we can find that for you. We don't have a formal sighting network in Maine and
compared to some of the other New England states, there's not as many whale watch operations
out of Maine, I do think Zach Kleiber's on here tonight if he asks the question. Later, he can also
maybe let us know what he knows about sightings data in Maine. And we don't have any
documented right whale entanglements, known to be in Maine gear. If you'll remember what I
said earlier, we actually only know the set location of thirteen out of fourteen hundred
entanglement incidents that have been investigated by New England Aquarium scientists. We
almost never, what that means is we almost never know the location of the original
entanglement. What we know generally is the location of first sightings of documented entangled
right whales. And as I mentioned earlier, we know that right whales can take gear hundreds of
miles, and can be entangled for many months before they're even first sighted That answers your
question?
Thank you very much for your answer. Thank you, very much, it does. My second question
would be, what diameter of rope would be considered weak rope?
That's another really good question. Unfortunately, it's not. Uh, as, as diameter, there can be very
low diameter line that's engineered to be very strong. There can also be large diameter lines that
can be engineered to be weak. So, we can't really implement these regulations just by, by
requiring a certain diameter of rope. It has to be either engineered to be weak. So rope that's
made to be weak and demonstrated to break at 1700 pounds or less Or, or weak insertions need

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to be intentionally placed within the line every 40 feet to be considered equivalent to weak rope.
Um, so weak insertion for instance, the weak sleeves, that the sleeves that are used by some of
the Massachusetts fishermen are inserted at every 40 feet. Does that answer your question?
OK, so, to follow, to follow up on that question, I'm an inshore fishermen in Maine. I write about
as does my husband. We fished single traps, we are in the exempted area. Ah we do, of course
the weak Buoy deal. Um, if you are requiring me to put weak links in my rope, I fish all 5/16
rope because I don't need rope bigger than that. How am I supposed to know or any other
fishermen supposed to know what's considered weak rope that would qualify as rope that we can
install to make the requirement that you're asking us to do?
So, good question and first of all, we're not in our federal rulemaking. We're not going to be
regulating Maine exempt waters. However, Maine is proposing to require a weak rope either
weak rope or a weak insertion, 50% down your buoy line in the exemption area. So one weak
insertion, 50% down. Again, that can be done with weak rope. And there, there is 5/16 rope That
is engineered to be weak. We're going to be, we have started working with gear manufacturers
and we're asking them, when they're, when they're creating the rope that's breaks at 1700lb or
less. We're asking them to leave in one of the three strands, as an alternating color. So, that
would be one way that someone purchasing it, or an enforcement officer looking at it, can tell
that it that it was engineered to be a weak breaking rope. But again, in in exempt waters, this
rulemaking won't be regulating you on that. the regulation, to include one weak insert would be
done by the State of Maine.
OK, thank you very much.
You're welcome.
OK, next we're going to Dustin Delano. I'm coming to unmute you. And I see you have multiple
questions. If you'll just ask one, Let the presenters respond and then ask your second one. I can
see you're unmuted, but I can't quite hear you yet.
OK, am I all good?
Yes, I can hear you now.
Um, I guess, I'm curious how the number of boats included in the closure were determined to be
45. It seems like it's much higher.
Right, So we got this question last night, too. So first of all, we get the number 40. This number
45 is the number of vessels in a month. This is the highest number of amounts during October to
January through the month of January. So there might be there 100 or 150 different vessels fish
through the whole restricted period. But from the industrial, industrial economics, research on
the VTR data shows in January, that's the most vessel throughout that area, it's 45. So also, we
all know the VTR data in Maine federal waters limited, because only 10% of vessels are required
to submit VTR, right? So for the next step, we'll double check this number by using multiple
years of data, like, 10 years, because I know, or the vessels, they don't do not overlaps

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throughout the year. So maybe we can use 10, 15 years of data, like, from 2010 to 2000 to 20 20,
to see how many vessels actually showed up in that area. We also welcome fishermen to submit
comments to us to reveal the actual number in that area. So, does that answer your question?
Yes, I think so. I guess I'm also curious, too, how. Yeah. You know, the economics were
figured? that seems like a very, very low number, too. You know, the 100 and something to 300
and something thousand.
Right, because, yeah, only 45 vessel fish there. Oh. This number, the biggest cause for this
restricted area. it's, uh, cost of assumption of landing reduction in this area. So first of all, we
have to calculate, that's the total landings from the vessel in that area. We use the catch per trap
data. We calculate that first. Using VTR data, we can then we estimate estimated the number of
traps per vessel. Then we get the total number of catch per month for each vessel In that area,
then we assumed 5%, to 10 percent reduction from relocation.
So why would you assume a five to 10% reduction? I mean, I fish all my gear in that area right
now, if I was fishing somewhere else, those lobster would be caught up sooner. There was
another 45 which is actually, It's definitely more than 45 but if we were all fishing in a different
area, you're going to catch the lobsters up sooner. That is if you can even go to a different area, I
mean, those spots are all, they’re all taken. So, Or you stay up, you know, up, inside longer, and
you catch those up, sooner, or, while you're waiting for the area to open you know, or, you might
not even be making any money, leaving your trap somewhere else.
So, yeah. You're more than welcome to submit all the comments to our e-mail and we will
consider that. So, this, all these analysis we’ve done here, It's A Draft Economic Environmental
Impact Statement. So we're asking for comments here, and to finalize this research and this
analysis and to get to the FEIS. And until then you have you have the chance to comment. and
after the FEIS you still have the chance to comment, we will incorporate it all the comments into
our final analysis. So the assumption here we get is from the previous research including like a
dynamic paper and our communication with fishermen. And our lobster biologists I know this is
very, very general assumption and it varies from boats to boats and vary from area to area. But,
for this analysis, we, so, the, the assumption here, is of 5 to 10 percent. So, if fisherman friends,
you have more to say about this number, you can provide your estimation and your, you're like
evidence or proof of your estimation, we can incorporate that into our final analysis. Thank you.
OK. Thank you.
Awesome. And, Dustin, you had one question earlier on about the LMA one, the length of the
LMA1 closure. Do you still want to ask that one?
I think I saw it answered that in another slide that basically goes into February, and, and I think
it's set a soft date. Is that right?
So, the preferred is from October to the end of January and the non-preferred to the end of
February.

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OK, and in did that have a soft date for opening, or?
I don't think, I mean.
Non preferred, alternative does have a soft open.
OK. All right, thank you.
Thank you. OK, I'm going to go to the phone. Christian Porter, I'm going to come unmute you.
You should be able to unmute yourself.
Can you hear me now?
Yes.
Yeah. So, my question was on conservation equivalencies. Zones in the state of Maine, did their
own equivalencies to see if they could change the change to be able to suit, you know, each
individual zone, are those being considered to be added into this proposed rule?
Hi, Chris. And it's Colleen. Thanks for that question. We actually haven't yet received the list of
potential conservation equivalencies. But we anticipate that Maine will be providing them with
their comments. And I did sit in on at least one zone meeting, just to listen in on what kinds of
things are being discussed. And, everything I heard was within the scope of the proposed rule
that we propose, so, You know, we are we do have to get 60% risk reduction. But it looked like
they were equivalent, they would get the same amount of risk reduction is what's being proposed,
and they are within the scope of what's been proposed, I've heard mostly alternative risk
reduction, or alternative trawling up measures, and things like that. So, we can be able to take a
lot of those, perhaps all of them, again, I haven't seen the list, But that is something that could be
incorporated into the final rule.
Great, Thank you.
OK, Jacob Thompson, you are next. You should be able to unmute yourself.
OK, I just had a question about when you when you were talking about the 45 guys and that
would have to get relocated. Did you account for the loss of catch for everyone else? That they're
going to go and set their traps by not just, I mean, they're not going to catch as much as they
want but when they go and set their traps in a different area, it's got to reduce every fisherman
around there’s catch to sell. Um, I think that number's kind of low.
Yes, I agree with you. We get the same comment last night. We haven't considered this in our
DEIS we will consider it in the final draft. Thank you for your comments.
OK also, just one more thing. In Maine, we have, we have zones, so you can't just take all your
traps and go wherever you want and you have to keep 51% in your home zone, is that gone into
any of the calculations that you like in Massachusetts, you could take in LMA. You could take

847

all 800 of your traps and you could go right to the Canadian border, but I’m in Vinalhaven. I
have to keep 51% of my traps in zone C, which if that area is closed, I could take some into 49
percent in Zone B, but I can't the other 51%, I have to bring back north. I can't just take all 800
trap's into, you know, another area, so I was just curious if that was any thought given?
Right. For the economic analysis, We haven't done that detail, but for the risk reduction, maybe
Marisa or Colleen, you have some thoughts on that.
It's more of an economic question, not a risk reduction because I mean, like when the
Massachusetts zones close, they can bring , (indecipherable) traps and go set them down in
caches or somewhere where it's open. But for a Maine person, we can't just move our traps like
they can to relocate as easy.
So for now our assumption is fishermen staying within their own zone then move that closer to
shore, that’s all we have now.
OK, That's something you should probably look into.
Thank you.
OK, Next, I'm going to go back to the phone. I'm not sure if you have a question, but Harriot
Train. I'm going to come unmute you. Just in case. You're unmuted, you should be able to
unmute yourself. If you don't have a question, that's OK, I just want to make sure.
I don't have a question. I just didn't have the option to ask a question
OK, thank you. OK, Gregory Simmins, I'm coming to you, I see you have two questions and
please just ask the first one. Let the presenters respond, and then ask your second one, You
should be able to unmute yourself.
Can you hear me?
Yes.
It's actually his wife, Amy Simmons, I just signed in under him.
Hello, welcome.
Thank you. I guess I'm wondering who, when we have to do all the gear changes, and there was
suggestions that there'll be ropeless gear. Is that going to be something that is going to be paid
for, or is that something that's going to have to be covered by lobsterman themselves, and was
that factored into everything that they're looking into?
Hi. This is Colleen, I'll take this one, or will give it a try, and the measures that we're proposing
and would primarily be costs to fishermen that I'm talking about gearrmarking and the restricted
areas moving out of restricted areas there. There is some support was provided by Congress, they

848

re-appropriated funds, and they moved it to provide some support, aye. And some of that is being
used really, primarily to work at finding weak insertions that can work so that fishermen don't
have to replace their entire lines or, and getting gear specialists to help fishermen modify their
gear according to the measures. So, those are funds that went to the States. It might be that
Congress will appropriate more funds in past years. They've done things like buy bought back
gear, and that that might happen as we move forward with the new Congress. We don't know
regarding weak. I mean, regarding ropeless systems, right now, ropeless systems as you
indicated or you know, inferred or they're pretty expensive. And the ropeless research that's
going on right now in other areas, that is being supported by multiple partners. They are doing
things like there's a cache of gear that the Northeast Science Center has out of Woods Hole, and
they're lending the ropeless systems. So that people can improve how they're working in or under
commercial fishing conditions. They don't have enough gear though to outfit the fishery, they
just have some gear you really more for the purpose of accelerating, um, the, the evolution of this
gear so that it's more usable by fishermen and honestly they are trying to develop it so that it's
less expensive. I do think that even the environmental organizations that are hoping, that large
areas can be ropeless fished in the future. They also believe that, if this is ever going to happen,
it's going to require a lot of government support. So that's not funding that's currently available.
There we are getting a support to from the government so that NMFS can help do the
experimentation. But we don't have the kinds of funds that would be needed to transform large
portions of the fishery to ropeless gear at this time.
OK. And I guess my second question would be, you know, my husband makes our livelihood
pretty much in the months that will be closed down. So, will there be supplementing funding? I
know like, Canada gets funding from their government that when they have shutdowns. Is that's
something that's being looked at. For these lobstermen that are going to be losing so much
money and that, you know, that's where we make our money, that we get to survive on for the
year, And without that, you know, it's kind of a scary thought.
Yeah, I mean, at this and, again, NMFS has, we have not gotten that money from Congress,
Congress is the one that appropriates funds, it's not something that the agency can do. Um, so, I
really, I'm not sure. I mean, I know that the funds that they, that were, we, they were taken from,
from one program, and they were put into an effort to send some funds to state to help them with
this transition from these new rules, And I don't know if that will happen again. That's not
something that our agency can make happen, um,
OK.
You know, in the past, I think the State of Maine, for instance, has been pretty successful at
working with their legislators to try and get support for things like that.
All right, Well, thank you.
Welcome.
OK, Eben Wilson. You should, if you're unmuted, you should be able to ask your question.

849

Yes, Hi, I have two questions. First one is, Zone E Trawling up, we're currently a 600 traps zone
we have been. So we're obviously 200 traps less than all the other zones, and I think part of this
question may have already been answered. And I think our zone council submitted outside of 20
miles outside of 12 miles, if we go to 20 trap trawls, um, and in this area, I was hoping that
maybe that was something that was going to go through because most guys have less than a 40
no smaller than 40 foot boats, that fish outside of 12 down at about 18 to 20 miles. So basically if
we had to go to 25, guys would just shift up inside, and whatever, Whatever, vertical line
reduction you thought you were going to get. Inside of 12, you would actually increase your
vertical line, because guys are being hanging out up inside. So I think that's another thing that I
look at, with the restricted area, is that you're going to restrict lines in one area, but you're going
to double them in other areas. I don't know how that math works, If you can help me, I'd, I'd
appreciate it.
OK, I'll, I'll try answering this one. This is Colleen again. So it sounds like Your Zone has come
up with a conservation equivalency. That's within the scope of things that were considered in the
rule and then and the draft environmental impact statement and so on, if that's submitted with the
state and we analyze that and it has a conservation equivalency. It sounds like the kind of thing
we probably could include in the final rule we just haven't received that list yet from the state. As
far as your other question goes and Marisa and or Burton who are both on the phone might be
able to help me answer this. But your other question was, have we considered? Or how is it that
moving the lines into another area reduces the risk? And Marisa sort of described that the
assessment is where the lines and right whales co-occur, There is more risk, and if lines our
moved to another area where right whales are less likely to occur. Then than that, there's a
reduction in the risk. So Marisa or Burton, I don't know if you want to add to that.
So that I can, if there's kind of a second part to my question on one of your slides, where you're
talking about co-occurrence, And I'm looking at the Maine proposed restricted area, which is
solely in Area one A, If you look at the co-occurrence on a slide, that has both red and blue in
that area. Um, it seems to be relatively, there's a higher co-occurrence inside area 1A versus Area
three, but it's basically split down the middle. If you look at the pink colored boxes, there's a lot
more in that area three. So, why? Why wasn't the area 1 Restricted area split between the Area
three and Area one.
Burton, can I ask you to have some input on? This is, I think, had to do with the size of some of
the cells in the co-occurrence model, compared to the way it was smoothed in the decision
support tool model, perhaps.
Um, concerning the why was closed area only on the LMA one side, we did run scenarios, where
we extended it across the border into LMA three. So, we have those scenarios, and that analysis
run. We have the results available for that. It's that to the resolution of data that we have, we can't
tell that there's a large amount of gear on the LMA three side. So I think that that's why we assess
that, but then didn't carry it through to the end. To address the earlier question about relocating
gear. And changing trawl lengths, that is actually calculated and accounted for inside the
decision support tool. So it assumes that if gear gets moved from one location to the next, that it
assumes the local gear configuration. So if you move traps from a 25 trap trawl area to a 15 trap

850

trawl area, then those traps are assumed to be configured in 15 trap trawls and the lines are
counted accordingly.
Coming out of the restricted area, guys aren't going to go back to a 15 trap trawl area because
they're doing that to get away from those areas. So, you're going to go from 25 traps trawls to 25
trap trawls, because they're only going to move it as far as they need to get out of their restricted
area. So, you're essentially doubling the lines outside of your restricted area.
That would be true if they're moving, moving them to a place where people are not fishing. I
mean, if they're moved to a location where the local, the local gear configuration is different, and
it's assumed that that gear is going to assume that configuration currently. And if that's an
incorrect assumption, then we can look at addressing that in the model.
Yeah.
Yep, OK. Yeah. There's just so much fishable, there's only so much fishable bottom that people
aren't going to move to where there's actually something to catch. So that means that if you're
coming out of the restricted area, you're going to be going to somewhere, which you can just
kind of shelter or fish until the restricted area opens. Again, so you're not going to reconfigure
your gear offshore. So, you're going to be doubling the lines, vertical lines, and gear density in
areas, just outside of that area. It's, that's, that's what's going to happen. It's not an assumption,
and that's what will happen, so I, your logic doesn't either. I'm not understanding it correctly or it
doesn't make sense. The way that is because no one's going to reconfigure 25 trap trawls
offshore.
OK, I think perhaps I was misunderstanding your question. So I think, your concern is the
increase in line density, in the areas outside of the closure. Not that They're changing
configurations that need to be accounted for.
Exactly.
So in this case, that the if you sort of look at the maps here, you can see that that modeled whale
density Is it in these areas there Are whales in areas adjacent to it There are not whales.
And so under that circumstance, recognizing the gear it gets moved outside of that area means
the gears moved to a location where there may be a high line density as a result, there is
presumed to be a low whale presence, which is where the benefit comes from.
OK, so the fact that Area three has a high, high whale or co-occurrence baseline, but has no, has
less gear density, means that that's why you didn't split the line. Split the area three, area, one
line with. with, with the proposed closure restricted area, because there's just no gear there?
To a certain degree. Yes. And it's really difficult, because we don't have high resolution data on
the distribution of gear. It's not reported.
Sure.

851

So, if we have VTR data, then we can make some assumptions around that. But otherwise, we
often just have, you know, you're in this zone outside of 12 miles. We don't know exactly where
that gear is, so the only thing we can do is assume it's spread homogeneously over that area, OK,
there's a, there's a data limitation there that allows us to do this better.
OK, so, but the co-occurrence data that you have is that acoustic data?
This co-occurrence would be from aerial surveys.
OK, so here's the whale distribution.
Yeah, OK. But when were the last acoustic surveys done, that, you could use for co-occurrence
data?
Colleen do you want to step in on acoustic?
I mean the last the last we, right now. Well, Burton, you can let me know if Jason has figured out
a way to add acoustic data to the whale data model. But as far as a recent acoustic data for the
area, the in the last, um, the last ROV, what do they call those the gliders that go through And are
moving through areas, trying to detect whales The last one that I saw that detected a right whale
was January in 2019, I think that they, the, there might be another one in that area in the general
vicinity in the Gulf of Maine. Now, I haven't been, I haven't been checking the tracks on that.
There is also work being done between our Science Center and the state of Maine with acoustics.
They're like acoustic traps that are set, but they don't relay the information. They have to be
taken out, and the data are uploaded somewhere. And then they're placed back in. And, and the
data are analyzed. And I know that they have established those. And someone is actually
currently analyzing the data now. So we may have those data soon, but I don't have those right
now. Those I believe are from sometime in the last 6 or nine months,
OK? But the plane flights are something that's recent, that's been in the last couple of years?
Right. The way this, they're, they're getting ready to modify how they do their aerial surveys, but
the way they've been done in recent years is really been focused on trying to get us good
population estimates and to do that, they need to recapture the whale's they need to have. They
need to see the whales frequently. So they've been concentrating the flights on where there are
abundant whales so they can get the most identifications done in every flight. As a result, the
broader surveys they used to do haven't been being done, though, They have sent some surveys
into that area. I'm not sure what the sightings have been for that area. I know that they haven't
triggered. they haven't had the kind of aggregations that would trigger voluntary vessel speed
reductions, in recent months, at least.
Yeah, I guess I was just trying to get at the point of where, where, you know how the cooccurrence data, what the age of it is, and the frequency of those flights. You know, as you say
or you know acoustic or whatever you know in that area. I mean, I know the one. I think it was
WHOI did the one acoustic glider in 2019. But I think that was the first one that had been done
in a decade. You know, I think that's where I kind of step off a little bit on with, you know,

852

looking at a restricted area, is that we're looking at data that's been, you know, we have one
baseline for, for 10 years. and we know how much things have changed in the Gulf And so, look
at displacing that many fishermen, out of a, you know, in a restricted area during the most
profitable months I guess I would like to have a little bit more recent data and would feel more
comfortable with that rather than taking a shot in the dark in a way. That's the way it feels to me,
at a restricted area. I think that some, I think it's, just don't think it's fair.
And we can, we can record that as a comment. But know, that you're not the only one who's
concerned, including some of the scientists on the take reduction team, that we need more data.
But we really can't wait till we have all the data to do it. However, the other thing you mentioned
that's right is, yeah. The whales have shifted a lot in their distribution since 2010. But although
they've shifted a lot, they still seem to be visiting their previous places that they visited, Not as
many whales are using in the Gulf of Maine, and in some places, like the Bay of Fundy, they
don't visit for a long, they poke their noses in and then they leave out, leave, you know, right
away. So that this was an important area at one time and we don't have a lot of recent data to
know that it still is, doesn't let us know that they're not still going there. I do think, you know that
Maine has been working pretty aggressively to try and get more information. And NMFS has as
well, trying to increase the use of acoustic data, because we can't get flights there. But the
acoustic data can give us all kind of a longer survey than we can do by setting flights up every
day. So, you know, point taken we need more data. I'm yeah, I'm afraid point with the speed with
which the population is declining. We can't wait till we have all the answers.
Sure. I mean, I understand that. I think that's one of the frustrating pieces about all of this is the
fact that we're doing this, you know, without recent or, you know, there's some good data.
There's some bad data. I'm not, I'm not denying the fact that they're, you know, not still in the
Gulf of Maine, but I know what I see every day. And every other fishermen, I talked to sees
every day and it's not, you know, we're not seeing them, It’s not a reason to not do something but
it's also when you're looking at, you know, my bills don't stop every day. So at the end of the
day, you know, I want to make sure that what we do actually works for whales and works for us.
All right. Yeah, thanks,
I'm all set, thank you.
Thank you. OK, I'm going to go to Nicholas Morely. Hmm, this lost you in my list. OK, you're
unmuted, you should be able to ask your question. I see that you're unmuted, but we can't quite
hear you yet.
Can you hear me now?
Yes.
My question is, now, with all the state markings, what if in like, 7 or 8 years or even, like, 2 or 3?
What if there's no like entanglements, like from the State of Maine. Is some of this stuff going to
be able to change, or?

853

I'll try this one as well. This is Colleen again. And no, we did mention there aren't that many
whales that we're seeing that have gear still on them. So when there's so few incidents, and few
have gear on them, not seeing a mark isn't the only data that we would be able to use to know
that we can change the measures. But, there are a lot of other things we'll be looking at, You
know, the more data we have on, whale distribution, as, as Maine, goes to 100% reporting. The
more data we have on whether lines have been reduced from the trawling up, or where the effort
actually is, the, possibly, the more we'll be able to, right scale the measures, or modify them. It
does take up a couple of years for us to modify measures. And we do need a lot of information to
do that. Our, our plan is to be trying to monitor as well as we can, including the whales and the
fishery, and bringing that to the take reduction team annually. Uh, you know, while we're trying
to figure out whether this is working, whether we need, whether we can move some of the
measures in, some places remaining more measures. So that's something where we'll be
continuing to look at what the take reduction team, probably through at least annual monitoring
meetings. So again, it wouldn't only be the lack of gearmark found it would have to include a lot
of other information too.
Thank you.
Andrew Hallinan, you are next. OK, you are unmuted.
OK, my question is, for the LMA one Zone, the Closure Zone, is there any amount of
conservation equivalency that Zones in Maine could do to fish that zone?
Marisa, you had looked a little bit at this last night, and, and about 10% of the risk reduction, um,
in this 60 something percent. That the decision support tool estimated was from the LMA one
closure.
It was 10.8% across the entire north-east.
Right. So, we would have to find, you know, about that level of risk reduction across the region
in order to, know, that we wouldn't need the LMA one closure area.
OK. And also, on one of your last slides, you asked for comments about the weak point at the
buoy. I, from a fisherman, myself, I don't think it's necessary if you're going to. And if you're
going to implement other weak points with the tide boiling and stuff like that, buoys are going to
be lost anyway, so you might as well, um, save what gear you can. And also, in the economic
factor, I think things that should be considered is if you're going to make fishermen relocate in
terms of north and south and not out of their zone, like Jacob Thompson talked about, I think
Territory, guys, Cutting each other off should be considered. Trawls with one end when you're
fishing 25 trap trawls with one end on them, The amount of gear lost from that should be
considered. And also, in Zone E of Maine, the LMA one zone, a lot of guys, I personally don't
fish it, but a lot of other guys do. So, I feel like I should talk on their behalf to go.
Their lost income from that. I think that should also be considered, whether it has to be looking
at slips or whatnot. I think all that should be considered when you're talking about economic
consequences, when you're shutting down zones like that.

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Thank you, we were recording those comments. Appreciate that.
That's, that's all I have.
Thank you. We had a question from someone who's unable to speak. The question is. I would
like, Here we are. I want to know if there is a fisher-friendly version of the data presented in the
DEIS and presentation?
Um hmm. The presentation, to some extent, was created to be accessible. I think from the
comments that and questions that we're getting from fishermen, they're understanding it. Pretty
dang. Well. There is also a 5 or 6 page summary of the measures in a, you know, an in more
accessible format that's on our website that I don't think that has the analyzes summarized. But, it
does have the measure summarized. But, but this presentation, one very similar to it, is posted as
a slide deck, we can post this one, as well as a slide deck. And it does, I think, present the data in
a fairly accessible form.
OK, thank you, see Jack Merrill, coming to you. You should be able to unmute yourself.
Hello.
Hi. Yes. We can hear you.
OK. Thanks. Yeah. Hello, again. I had some things on my mind when this conversation started,
but a couple other things have come up in the meantime. So my first comment is, if you want to
track whales, use drones, Um, That's all I have to say on that. It's new technology, I guess, but
that's the way to do it. Um, and then last night, I pointed out that the parameters of the closed
area will be, will become a wall of traps. And after it's open, there'll be a gold mine mentality
into the zone. So I think a couple of guys had sort of brought up that point tonight. The
parameters of, if any closed areas, are going to be, you know, littered with traps. So what I really
wanted to bring up tonight, and I think Christian is, has talked about it a little bit. And other guys
have too, equivalency possibilities. And that's one of your questions. Um, and that's extremely
important, too, to us in Maine, because you're going to relocate a lot of people anyway. But if
you're requiring guys, to fish 8 traps in an area where now they fish three as a way two end lines,
versus four traps with one end line. There are some small differences and there are some large
differences in those two configurations, it's the same amount of end lines, but two fours, I want
to point out, will be further apart then end lines on a trawl of eight. So, I don't know if that's
something you've considered. It's also be a little more rope, because in an eight than a two force
because you've got to connect the two, so there's more rope in the water as well. Um, so, that's
one thing I wanted to bring up. Then I think, I call it the Elephant in the room, both in the State
of Maine and in federal waters. Lower Trap limits, Can you consider them as a way to reduce
vertical lines?
Colleen here, um, first of all, the, the one buoy on the longer line is something that we can
probably consider as a conservation equivalency, as you said. It would, it would result in the
same number of end lines, it would probably have reduced economic impact, potentially. If
those, um, those sets could be a little farther apart, they'd be less catch loss, potentially. So that's

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something that we can try and figure out. As you move farther offshore, it might be harder to do.
But I'll you know I'll be in contact with the ASMFC, because it would requires changing the
lobster rules as well. So I can work with them and figure out how best to do that. Um, so that is
something that would be within the Uh, the scope of what we propose, so it would be something
that we could include as a conservation equivalency if I could figure that out. The second part
about reducing the number of traps. I know the State of Maine did a lot of scoping with that as a
possibility. I was also on a lobster/whale working group. I think Burton, you may have
participated with us on that as well. Where we, ASMFC, it was for ASMFC and they were
looking into whether or not they could propose an amendment that would, um, try for line
reduction through trap reductions. And it was pretty complicated and, in part because Maine has
a different level of data collected. So, um, you know, understanding how to do that across
different states that have different levels of fishing history known for fishermen was really
complicated. The whole fishery management regime trying to do is complicated. And in the end,
that group was not able to propose an amendment to the ASFMC. So it was considered, and I
know, it was considered at the, at the multi-state level, through the Atlantic States Marine
fisheries commission and it was considered at the at the state level, through Maine DMR
scoping.
Yeah, it's been an ongoing conversation in Maine for about 100 years now. Actually, there's an
old video of the Korea Co-op in the 19 thirties that shows fishermen, debating trap limits back
then aye. But I think the, you know, the dangers of trawling up, especially for smaller boats,
older fishermen. And the displacement of boats from the areas where they would normally fish
by these rules that you proposed right now. Um, the dangers far outweigh, you know what giving
up, some traps would be, So.
Yeah
And I'm not going to get into it tonight, but I know there are economic benefits to trap reduction
as well, and it's worked all around the world. But, yeah. Anyway.
I agree with you quite a bit. And, with herring where it is, right now. There's benefits to be, um, I
know if that was proposed as a conservation equivalency, that would be something that would be
pretty easy for us to include in the Final Rule. Halving the number of lines by halving the
number of traps would be pretty effective.
Yeah, because you know, if I had to reduce my traps, and I think I speak in a general term,
You're not going to start. You know, where you fish singles now you're not going to suddenly
put pairs. If you have less traps, any. So, anyway. Yeah, I appreciate that. Thank you.
Thank you for your comments, OK.
OK, we are? Going to Kent. Oh. Maybe we've lost Kent. I will come back to Kent. Gregory
Simmonds, I am coming. Maybe not Gregory, either. OK, let me, we will come back to this to
John Tripp. You should be able to unmute yourself. I can see that you're unmuted, but we can't
hear you yet. OK, John, we're going to come back to you. David Tarr. You should be able to
unmute yourself

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Can you hear me?
Yes.
OK, my question, I guess I have a couple of questions, but primarily that, that restricted area that
you're talking about, um, the model that came up with that, I mean, I think it's miraculous that it
does just follow the, The area one, and area three lines right along and that, it's fine on one side,
not on the other. I'd have a lot more faith in that model if it made a box that somehow crossed
those magic lines we have out on the ocean, I'm wondering if it would be possible As you say,
there's not much gear outside. Area one, in the area three box, maybe the guys could shift some
gear over there, Just have some sort of an exemption for that time so they can fish outside a little
further if they want to, to alleviate some of the gear stress from it being moved east, west, or, or
north, give them a south option. And I'm also wondering, I don't believe that data, the data you're
using, has much to do with aerial surveys, even in the last five years. But I would love to see, or
have, Maine Lobstermen Association, or Downeast Lobstermen’s Association or the State of
Maine have that data that you're using to plug into that model. To, at least give us some faith
that, that, that, that isn't, just, uh, a number pulled miraculously out of the air, It just, it just
doesn't pass the straight face test, I guess. And then I have a second question after that, you are
trying to answer that one?
Oh, sorry. The whale data that were used that were available to us in early 2020 when this is
being drafted are from a model created a whale habitat density model, was originally created for
the Navy, and it was created down at Duke. And it actually used survey data from a couple of
decades so it wasn't just the most recent years. And I believe at the time we were using it was
data through 2016 and 2017. That model has been updated in 2010 and on has been broken out.
So we are trying to update the decision support tool to include that newer period of time that's
more relevant. I think and Burton, could you speak to the availability of the decision support tool
for other people to try and use it to model alternatives? I think that there are future plans for
making it available, and it's available in a form right now. I think Maine DMR has used in the
past, is that right?
Yes, that's correct. So two things there. There's, so what the decision support tool uses is actually
output from this whale habitat model. So Duke University is taking the raw whale sightings data
and using that to produce a model where projects, where whales are at. And then that then gives
us a complete map that we can then connect with gear densities and other things in the decision
support tool to look at co-occurrence numbers and such. So there's the data that Duke is using to
produce their whale habitat model. Then there's that model results, which are being used in this
analysis to look at locations that we would consider that show up as being areas of concern. The
output for the Duke model that we're using as an input for the Decision Support Tool has been
supplied to Maine DMR and staff of Maine DMR and we've had some back and forth and
discussions on what the whale habitat model looks like. And they've done some interesting and
clever further analysis on that. That was an earlier version when the newer version came out that
was based on only the most recent years. We were we're really looking closely to see if that
spatial distribution changed. And what's come with the most recent data is not a suggestion that
the spatial distribution of change, but simply that the number of whales in the Gulf of Maine has

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gone down as a result. It doesn't seem to suggest that they're using a different spatial area portion
of Maine. And I've just been able to get a hold of the final version of the updated habitat model,
and I will be sending that the state of Maine, um, most anytime. There's a report that goes with
the model that at least shows the raw data that went into that, And we can make sure that Maine
DMR gets a copy of that as well.
OK, one of the other, I guess I still have two questions they're quick ones though. So, one, is this,
all these slides? Are we going to have this accessible somewhere where we can look at this later
on and study it, because as they were flashing through and people were talking, it really wasn't a
chance to digest it. And I'm just wondering if I can have a hard copy of it, if I want to print it off
myself.
Hi, Yes, there is a version available on the website, and I will post that into the chat, that does
not have the Maine specific slides in it but we can work to get this version available as well. But
I will put what is currently available right now on the chat.
Could you just say what the website is, and I'll just write it down.
Yes, it's fisheries dot NOAA dot gov. backslash ALWTRP, it's on the screen for reference to,
and when you go to that website, it should be, at the top, it is current action, and then it says
More Information, and it's one of the links listed. The more information.
OK, and the last thing, I didn't see, a slide go by that, that showed a map of what the exemption
area was. But, I'd like to be able to pass that along what, where that exemption line is, do you
have a map that shows that?
The, the restricted area?
No. No. The exemption line, you're talking about three trap. You know, three traps outside the
exemption line I just would like to see where that exemption line is.
You can see it in either one of these maps. It's in red here, and then the next map, though. It'll be
all the area in gray. In the next slide so, all the area in gray, you can see that line along there is
the exemption line.
So, all of that area could still have pairs and single some, pretty much anything as long as they
have the weak link and marked upright.
Yes, there will be no trawling up in those areas.
OK, they've answered my questions, Thank you.
OK, thank you, let's see. John Tripp. Let me, you should be able to unmute yourself. Yup.
Can you hear me?

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Yes.
In the last webinar, I believe it was stated that the proposal achieved 64% risk reduction, but the
LMA one closure, providing 10.8% risk reduction. Is it possible to achieve the 60% reduction of
the closure area where split with area three and possibly stretched if necessary? I know Eban
Wilson asked a similar question earlier, but I didn't know if you guys were able to run the
numbers to still achieve 60% by, possibly making the area smaller for us, sharing the burden
with Area three.
Colleen here, and, um, Burton, add to what I say if I don't provide enough information or Marisa.
But when we were developing these areas, we were also following the instruction of getting risk
reduction that was equivalent across states and jurisdictions. And so, LMA three proposed, or the
Atlantic offshore guys is since don't have a state representative them. They identified one weak
end and 45 trap trawls, as well as ongoing, There was ongoing and there's some imminent, trap
reductions going on in LMA three, and with that combination LMA3 achieved pretty dang close
to the 60% risk reduction. Then, the mass of the Maine LMA one, Measures did not, did not
reach 60%. And that was one of the reasons when we were writing those scenarios that included
that closure area as an area to protect whales where there is relatively high co-occurrence for the
Maine LMA1 area. We ran a number of other scenarios, including ones where it overlapped into
three and had other closed areas within or restricted areas within LMA1 Did not include all
alternatives. Burton what am I missing, anything? Or Marisa?
No, I think that's correct. You know that the key is that this closure area is what we would have
considered last when everything else that had been proposed failed to reach 60%. So, and that
was trying to get this minimum number, basically, by jurisdiction.
Does the, we get no credit. For the fact that we actually have enforcement in area one and Maine
state waters versus zero enforcement in Area three?
No, I mean that. That would be part of the baseline since it's not much change since 20 17, We,
we are, NMFS, NOAA Office of Law Enforcement and the Coast Guard are working on
improving the LMA three Enforcement. Um, so, hopefully, it will be improved compared to 20
17 over time, But, right, that wasn't something that we included as risk reduction credit.
While you can know that a lot of the science is based on assumptions, but you can assume that
the state of Maine is going to do their job with enforcing the risk reduction measures that we
have to take. And the same assumption could be made that there, there's going to be zero
enforcement of any risk reduction in Area three. So, considering there's zero enforcement out
there now.
Will include to that as a comment, you know, agreed that we do need a lot more risk reduction in
area three. That's something that, there are some pilots going on now, but it needs to be
wholesale. one thing proposed by the Atlantic States Marine Fisheries Commission that's likely
to occur within the next few years is vessel monitoring in federal waters. And if it can't be done
and all federal waters right off, if it is, the kind of thing that would probably be started, in an

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area three, and then when there's more capacity moved into other federal waters. So, that would
help, that would help us with enforcement.
Thank you.
Welcome, thank you.
OK, Ira Miller, I'm coming to you. I see you have two accounts, So I'm going to try one, and let's
see if this is the correct one. Can you unmute yourself? How about now, oh, I see you're
unmuted.
Can you hear me?
Yes.
Uh, lot of the things I've talked about have already been touched upon. Certainly will
enforcement, that was something I'd discuss last night. Just start off with that. So basically,
Unfortunately, this is going to turn to somewhat of a fight between the sectors because we're all
fighting for our existence. That being said, you're depending on the honor system. Basically,
New Hampshire, Massachusetts and area three, seems how Maine, has the only enforcement. Or
realistically, they're the only ones that can enforce anything out there. So, great big gap right
there to begin with. As John just talked about, lengthening the line if it comes to a closed area, I
understand why you're saying by co-occurrence model, but it appears to me looking at that cooccurrence model run further the south-west along that line, there's quite a bit of co-occurrence,
but you stopped it short of that. It seems to me, that could be narrowed up quite a lot. And it
really should be a shared, a shared area. So if it was narrowed up a lot and lengthened. It seems
to me that even though it's unpalatable, anyway, that that would make it a little bit better. Jack
Merrill brought up the possibility of trap reductions. I'd like to also talk about the possibility
although this is uh, very little benefit to it, but you're trying to achieve something that’s fair
across the board. Uh, you know, winter time closure, possibly in state waters, things like that. It’s
not that I’m in favor of that stuff, but you're trying to get where it's giving people across the
board of a fair chance to get things. I think you need to work those somehow into your
calculations. I think people need to understand, if they have, for instance, a trap reduction, or
what's what, I don't think that the best way to do it, as I think you, guys, do economic analysis,
you should be throwing an economic analysis into that. How much change does it mean if there's
a trap reduction, for instance, , 200 traps or something like that? What's it mean across the board
for everybody else? What how are they going to have to change the way they fish?
My point being that is, it stands right now. We can all fish, we're all fishing right now. Old,
young, everybody, everybody, is still able to make a living. We go to these types of things.
You're going to impact some people, and you're going to make it extremely tough on them to
make a living in the area that I fish. You move into triples a quarter mile outside the Islands. And
I can tell you that I can fish, you'll be fishing triples in about some spots, probably about 6 or 8
fathoms of water, not very doable on hard bottom. So, I'm just wondering, I know this stuff is
fast-tracked, but I think in the process as much information as you can on alternate scenarios,
because it's pretty hard to make choices when you don't know what the impacts will be. At least
you could maybe shine some light on it. I’m all set for now.

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Hmm, We've taken that down, particularly as a comment. It would be hard for us to greatly
modify the final rule with, with measures that we hadn't considered or didn't include in the
analyzes, it's outside the scope of, of what's being considered, it is the kind of thing that we could
potentially do through another proposed rule. But, as you indicated, this is somewhat on a fast
track, partly based on litigation, greatly, based on the rapid decline in this whale population that's
dropped by, oh, buy a quarter in just a couple of years. So we don't have a lot more years to take
action. We, we looked at a lot of scenarios. The States did a lot of scoping as well. Some of the
things being proposed tonight were not being proposed. By fishermen, when scoping of what's
going on, or at least it didn't make it to us. But we'll, know, we'll start, will, as comments, come
in when you sent, submit these as comments, and we've taken them as comments tonight as well.
We will see where there is room for us to consider it within the analyzes and for the final rule.
But some of it's quite outside the scope of what is in the proposed rule. So, if it would, if we
changed it to this level, it would have to go out as another proposed rule, and that might be hard
to do the time that we have.
When you spoke about, somebody brought this up, I believe, before, last night, And you spoke
about proposed changes to the rules, how fast we could change things. Uh, just like to have you
speak to that one more time and I'm wondering if there's things that the fishing fleet can do that
would help you be more responsive in in making changes to things. if we're implementing this
stuff, you know, that reacts to data, as it comes in a more timely way, it allows us to fish the way
that we need to fish.
So I think that came up last night when people asked us when we're putting closed area or
restricted areas in place if the whales shifted. How quickly can we modify the restricted areas?
And I think, I said it usually takes us about two years to do something through a new rulemaking.
I mean, this, this rulemaking is an example of that, We, you know, we got proposals from the
states early in, late in 20 19, early in 20 20, and now it's early 2021 as we're proposing the rule.
We're hoping to have it in place, um, you know, probably by the end of the summer or something
like that. Um. Um, so that's almost two years right there. And really, the TRT made their
proposal in April 2019. So we're almost up to 2, 2 years from when the TRT proposed their
framework measures. I think that a lot of the things that held things up, you know, we did a lot of
scoping. The states did a lot of scoping so, between April 2019. And early, 2020, a lot of that
was because of the amount of scoping that was done by the states and by NOAA fisheries. And
then the other place it got held up was when the rule went into review for because it was
considered significant and went into review in the Office of Management and Budget, which is a
branch at the White House. And that review period was a lot longer than we anticipated. So,
those, Some of those are scoping, doing a lot of scoping is important. But, um, So, you know, it
doesn't necessarily need to be nine months long. Maybe that's something that could be shortened
next time. It's always hard for us to know how long something is going to be in review inside the
Beltway. And that's not something we control. And that's a hard thing for anyone to predict. So
it's just not a very agile process.
Right. Is there just a question for you? I know that you're always clambering, Seems like for
more information, all Federal vessels were to report, trip reports, maybe even the possibility of
electronic monitors if that was implemented in the Federal waters. How, was there any chance

861

that that could implement that could impact that process, speed it up, whatever, To be more
responsive to what's actually happening on the water?
I mean, I don't know if it would speed up the rulemaking, but the next rulemaking we do would
be much better informed. And I think that it would probably improve, improve the measures and
our ability to track the effectiveness of the measures. For instance, right now, we're proposing
trawling up, It's hard for us to tell how much trawling up works. Unless we have 100% vessel
trip reporting. And we can compare the number of lines being fished today with the number of
lines being fished a year after the new measures are in place. So, um, so there are a lot of things
that would be improved with that kind of reporting. I don't know that it would ensure we could
do rulemaking in less than a couple of years.
Yeah, I mean, that's a benefit. I would hope that might come from that. I do have to do regular
reporting. And, you know, it is I'm not sure that it's always finer scale that would that would
really make a lot of difference. I mean, there is I think it could be improved, I guess, is what I'm
trying to say.
Yeah. I agree. And I think Maine is also doing a lot of really targeted research that would also
improve our ability to assess the area's better. For instance, the work that they're doing with the
sound traps, to try and get more acoustic data, because there's not a lot of survey data for Maine
waters. So yes, the more data we have, a bit, the better the measures would be, the more effective
they'll be, and I can't guarantee it will come out faster, but, but it could, Measures that are better
and more tailored and better supported often get less held up in review. So, that is the kind of
thing that could make it faster.
Understood. Thank you.
Thank you.
OK, Zach, I'm coming to you and second. OK, you're unmuted, you'll be able to ask your
question.
OK, thank you, my question has to do with slide 17. And before I ask the question, I just want to
say, I'm with Blue Planet strategies out of Bar Harbor, Maine, but I grew up in Eastport in a
fishing family. And then I became a whale watch naturalist for 30 years with thousands of trips
off the coast of Maine. So I want to say thank you to all the fishermen on this call for all that you
have done. And all that you continue to do too: look for solutions and find a way forward. I
actually believe that the conservation community has a lot more in common with fishermen than
different, including climate change, water quality, maintaining forage fish, um, ship strikes on
whales. All those things are common cause for us. My question is with regard to the cooccurrence, if we look at the map for baseline co-occurrence on the left, there's a, there's a large
area of red around Jeffrey's Ledge down around the New Hampshire, Maine border. And then
also up between Eastport and Grand Manan. Just trying to understand if there were alternatives
for closures where other areas are highlighted in red. Um, not that I'm trying to push more
closures onto everybody but just trying to understand what, why, weren't alternatives given were
considered for closures in those areas or how. How were those considered different? Thank you.

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We, we ran a lot of scenarios actually, by we, I mean, Marisa and Burton ran hundreds of
scenarios, including I don't know about that That small area off Grand Manan, but I know that
I'm fairly certain we ran a few that included Jeffreys Ledge. And I don't remember why in the
end those weren't in the preferred. Marisa and Burton, can you remember? I mean, I know this is
about a year and a half ago, or a year ago, and hundreds of runs.
It's hard to remember all of the details, and this is something so when you're selecting measures
for our preferred alternative, we were primarily using the decision support tool. And so this
could have something to do with how we were approaching that and what is in the decision
support tool versus what is in our co-occurrance model. So we didn't get these maps until kind of
the end of the process, when we are doing our final biological analysis. And I think, when we ran
things on the decision support tool, maybe, I don't think they were highlighted as major hotspots
as much as the other area. Burton can may remember a little bit more about that. But I don't
think, when we ran them through the decision support tool we had the same results as this map
is showing. So, it's something that we might want to go back to and look at.
Yeah. I agree with what Marisa said. That one spot near the mouth of the Bay of Fundy did show
up. It's sort of overemphasized because the value gets extrapolated out to a larger block in this
case. So it showed up as a potential hotspot. But it was an extremely small one that didn't last
across multiple months. And so creating a seasonal closure that was of a short time period in a
very small area, I think that the people in law enforcement and others said the logistics of
implementing something small, over a short period of time, that it had added up to relatively
small benefit is not preferred the one over Jeffreys Ledge. I'd have to go back and look. I think
that there was also a fairly brief period, maybe only one month or so that it showed up as a
hotspot, but we'd have to look at that and see why it was at that and didn't make our final cut.
OK, thank you.
It's important to note that the modeling that we do happens on a monthly basis and we're looking
at, sort of, one map out of one month for this.
Thanks. That's right. That's a good point Burton. That was a sample of a month versus the 12
months.
OK, the account of Nicholas Morely, I am coming to unmute you, you should be able to unmute
yourself and ask your question.
I just got one more quick question. The state of Maine is proposing like a test, offshore wind
turbine field. And it's right smack in the heart of like the closed area, cause like, when you
compare the map for the closure and the wind turbines, right, in the exact same spot. So how can
they have like, enough data to say it won't change anything like agriculturally. But you guys
have enough evidence to shut it down all fishing because there's so many whales in that area, I
just don't understand how they can like contradict each other so much.

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Yeah. We've had similar questions about this, Off of Rhode Island, where they're struggling with
some wind development conflicts as well. And it is really outside the scope of our actions. We
are so specific to the take reduction process under the Marine Mammal Protection Act. Often, if
our, It's also different federal agency. If they come to us for data, for tools, this is a kind of thing
we could offer them. They could run the model as well. But as far as I know, we have not gotten
involved in the, my, our team, the people who are here today have not been involved in their
assessment and in their data sourcing. I can reach out to the folks that worked for NOAA
fisheries that work with the wind energy companies and find out where they're getting their
information and whether or not they are interested in using some of the information we have.
The basic data, on whale distribution is coming almost all of us are using that Duke model that
Burton described because that is currently the best available. But I don't know if that group hasn't
yet used that. I can check into that to make sure they are using it.
All right.
OK, Colleen we have just a couple more questions. Jacob Thompson, you are next, you should
be able to unmute yourself and ask your question.
Yes. I, I just wanted to know how come you guys didn't really stress that the whale migration
pattern has changed as much? And climate change? I mean, everyone talks about it on TV all the
time. Obviously, the warmer it gets, the whale's will be going further north, so, how come that
wasn't talked about as much?
Yeah. Thanks, Jacob. That, that's a good question. And, um, know, honestly, we had, a slide in,
in there, where we showed the trajectory of the population. And when we were presenting that,
sort of a longer version. It's in the recorded version that's on our website, even, which is an even
longer version of the presentation from tonight. We do point. We do state the problems. The
whales are having the reason the population is declining is in, in large part or declining, faster, is
in large part. Because since 20 11, they shifted their distribution. As you said, they're spending
probably less time in the Gulf of Maine, except in, you know, they're visiting some places fewer
of them are, are staying residential in there. There are more of them in Cape Cod Bay, and
sometime in the 20 low teens, a bunch of them went to other areas where there are no permanent
protective measures in place, particularly the Gulf of Saint Lawrence in 20 17, about 12 of those
mortalities that occurred that year, occurred in the Gulf of saint Lawrence because the shippers
weren't looking for them. And the fishermen didn't have measures in place. So, those mortalities
that shifted distribution, which may also have reduced the whales fitness and did reduce or the
calving interval between when the moms were having calves increased, the number of calves
being born a year decreased. So, climate change contributed a lot to that shift, that increased the
speed with which this population has been declining in the last since 20 10 or 20 11. And I didn't
mention tonight because we were trying to give a more targeted presentation of what we're doing
versus all the many reasons for the challenge that the population has declined. Doesn't really
explain why there's been an increase in entanglement, certainly some of that's Canada, and we do
account for that, and how we apportion the undocumented takes. It takes where we don't know
where they occur. We assume half of those are occurring in Canada. We don't blame those all on
US. Fisheries as may have been done in the past. And you know, the smaller the population gets
regardless, what causes it, the more important to them mortalities and serious injuries is. And So

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it doesn't really reduce our need to continue to reduce the amount of human caused mortality in
the population. You're right, we didn't get into it tonight, and it's partly because we we're trying
to have a targeted, slightly shorter presentation.
one more question, but she might not be I'll answer but. Was there a reduce this year in the ship
strikes because cruise ships aren't going around because of covid 19 or is there? I mean, is there
any correlation to that because I've heard different stories about, you know, that a lot of cruise
ships, they go to eat bacteria that comes in the shipping lanes or whatever, and they get hit by a
lot of cruise ships. Is there any data from a lot from 20 20 that shows no less ship strikes, are: Is
it not available yet?
I don't, we don't have that analyzed right now. I don't think we did have two vessels strikes in
US waters, both small whales, calves from last year's counts um, and one of those I believe, was
a smaller vessel. And the other one, we don't know but so that is actually probably possibly even
an increase in US waters to have two in a year. I do think it is the case that there were fewer
vessels strikes in Canada this year and I believe the year before as well. Few of them that were
documented at least. And I don't know that, that has anything. I mean, there's so much shipping,
going through the Gulf Saint. Lawrence is the primary shipping lane into the Great Lakes, and
into the side of Canada. So I don't know that that has anything to do with cruise ships. I do
remember hearing about that theory. I don't know that I've seen that that theory was proved that
whales are changing their distribution because of the waste being dumped off of cruise ships. I'm
not sure that that was very convincing to me and to some other, to folks who are scientists and
study some of this. Um, so I would say, we don't have any evidence of that. In there, if anything,
there's been a slight uptick. Oh. But within the range of vessel strikes in US waters, there was a
reduction in Canadian waters, but I don't think anyone would be able to show that had anything
to do with cruise ship traffic.
OK, thank you.
OK, Dustin, Delano? It should be able to unmute yourself and ask.
I just have a question on implementation, When do you expect that these rules will be
implemented?
So, that's a good question, and I can't, I can't say for sure. I will say that the will be getting, you
know, finishing the comment period March first, I suspect, you know, 75% of the comments will
come in, Um, March first before midnight. And so, we'll be aggregating those and considering
you can, adding to the information that's in our Environmental Impact Statements. And, you
know, doing the analysis at all takes a lot of time, as we finalize the rule and finalize
environmental impact statements, so probably a couple of months to do that, a couple of months
in review. And, you know, we hope to at least have a firm idea before the end of May, at least an
internal final draft before the end of May. That can be good, can go into the biological opinion.
That needs to be done by the end of May, because of the litigation deadline. And when it is
finalized, and when it is published as a final rule, which hopefully would be shortly after May or
early in the summer, we would have a delayed effective date for any of those gear modifications.
And in the past, those have been anywhere from, you know, four months and up. I think in some

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years, it was almost a year because of the extent of the gear modifications required. So, you
know, we'd probably be looking at a few months delayed actual implementation to give
fishermen, an opportunity, you know, some time to make the modifications. So it wouldn't be
effective immediately upon publication of the final rule.
OK, thanks.
OK, two more, Julie Eaton, you should be able to unmute yourself and ask your question.
Hi. My question is, I'd like to know if you guys have thought about or what actions you're
planning to take, um, to protect the right whales, from ship strikes. The reason I ask this is if
you're asking the Maine lobstermen to give up extremely productive bottom, that feed our
families by this closure area. It appears to me that ships coming into Maine to offload cargo, will
have to transit this closure area. So what you're expecting us to do should also affect the ships
coming in. I'd like to hear your comments on this, please. Thank you.
Thanks. And this is Colleen again. So this action that we're taking is under the Marine Mammal
Protection Act, take reduction requirements. So, it is very specific as you've noted to commercial
fisheries and ship vessel traffic is outside the scope of what this team works on, but the agency
under the Endangered Species Act does work on vessel strike measures. And those measures are
definitely due for modifications. I believe that probably within the next year will be people will
be out scoping on, the analysis that had been done recently for the purpose of determining
whether or not the rules that are in place right now, might need to be changed. So when they're
doing that, I'll make sure that they include in their outreach that they get to, I think it's Maine, I
think it'll be the whole coast, Maine through Florida. And there are measures in place and a
number of places, particularly near ports, near some of the larger ports. There are vessel speed
restricted areas that are seasonal, it's restricted when right whales are seasonally anticipated to
be in the area. But as we've all been discussing over the last few minutes, Right Whales
Distribution, have changed a lot. So some of those areas should probably be revisited and
considered for modifications. But that is outside the scope of what we are talking about.
Thank you very much, I appreciate it.
Thank you so much. OK, Oh. OK, we have 1 last 1, Colleen. And Eben Wilson, I'm coming to
you. You are unmuted, you'll be able to ask your question now.
Yeah. Yes. I just had one last question about enforcement in Area three and the difficulties that
Maine and New Hampshire have had. And I believe, Massachusetts, as well, about enforcement
in those areas, And it pertains mostly just to police unions and being able to access vessel vessels
and, you know, the ability to be able to haul gear out there because they haven't been, and a lot of
it pertains to 24-hour payment of wardens, and, and just the ability to be out there.
Thanks for that. I hadn't heard about the police union component of the difficulty enforcing in
the offshore. I know NOAA Fisheries provides joint enforcement agreements, so we provide
some funding support to enforce, to help with the enforcement of the rules in state waters. And I
know Maine extends out well beyond state waters. But I was under the I understood that the

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offshore enforcement was done by our Office of Law Enforcement, but relying heavily on the
US. Coast Guard. And I know that a couple of years ago, they looked into trying to haul gear
they looked at like buoy tender is in some of the large vessels because it's they don't have
capacity on most of the coast guard cutters and vessels like that to haul gear. And even more
importantly, they don't have the skill to reset gear. They're not commercial fishermen, and they're
not operating off of commercial fishing boats. So hauling gear, finding out its legal all they can
do is take it in and they can probably only take one offshore, set in at a time. So it would also be
pretty time consuming. So they have looked into that. They've also looked into the possibility of
leasing a fishing vessel and a crew to help them do it. Um but would be pretty expensive. And
also, not a lot of fishermen really want to enforce against other fishermen. And then they have
considered getting a vessel capable of doing it. You know, they talked, I know with Maine and
others about that. The cost of maintaining the vessel between trips, the, you know, the 365 day
maintenance. And everything else was pretty prohibitive, I think in the end. And partly for those
reasons, they're starting to look instead at, you know, the underwater version of someone
suggesting we monitor whales with drones. So they're looking at ROV’s to do enforcement work
and their preliminary efforts have been pretty positive. They've been able to see, weak insertions
on buoy lines, I think they'd been able to count pots on bottom on the trawls on the bottom and
things like that. Um. So their hope, I think, is that, as technology advances, they're going to be
able to do more of this. And as I indicated, Atlantic States Marine Fisheries Commission has
proposed that that NMFS require 100% vessel monitoring on the federal vessels, which I believe
will be coming online shortly, 100% trip reporting. That will be coming online in Federal and in
Maine Waters will also give us a lot more data and also help us direct enforcement efforts. So
there are a lot of things going on to improve enforcement, in LMA three. They're not in place
right now in any wholesale way. That's true. And that's been true for a long time that there hasn't
been enough enforcement, but I hadn't heard about a police union component to that. I don't
know much about that.
OK, yeah, I'm, maybe I'm off base for that, but I think the hard part. for me is the fact that, you
know, area One we have, you know, we have Maine Marine Patrol and they've done a decent job
at being able to manage all of area one, A and area three has been largely unmanaged to this
point and I, the last thing that I want to do is to be able to try to pit one against the other. But the
point is, is that there are people that are pushing up against area one, area, three line and, you
know, we are we are being assessed at those marks in some way. You know, one side of the line
to the other, and it's, it's very difficult. And, you know, we, we need just to see because we're
looking at a closure in our area, to you know, to see that the balance fairly and I just, I just want
to make sure that it's all being looked at.
I appreciate that. And I don't think it is really pinning a sector against another because among the
main people, of the primary people who are coming to us and complaining about the lack of
enforcement and enforceability offshore are the LMA three fishermen. So, there, the fishermen
out there are also concerned about the lack of enforcement.
I'm sure they are
working on it, but we're not there yet.

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I’m sure they are. Thank you.
Thank you.
OK, Colleen. I think we did it. That's it for this evening.
Oh, yeah, I think it's so late that we're probably not going to have a comment session, But, we
did really allow comments in with the questions tonight, which is one of the reasons, perhaps.
The question session went fairly long. So, I hope that doesn't disappoint everyone. We will be
having more public meetings in February, specifically for the purpose of collecting public
comment. And also, looking at the slide that's up right now, or going onto our website, You can
get information on how to provide us with those comments as written comments. And I really
appreciate everyone's input tonight, really, some very sharp questions, some very thoughtful
comments and input. And, you know, you're, you're identifying a lot of places where we still
have a lot of work to do, and I really appreciate that input. And thanks to all the NOAA folks
who have been helping support the webinar tonight. And the TRT folks who are online,
appreciate everybody's help and perhaps talk to you all in February. Goodnight everybody.

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Public Hearing 1
Rhode Island, Southern Massachusetts and LMA3, Tuesday, February 16, 2021, 6:30-8:30 pm
During our informational sessions, for example, we got some great input that has caused us to
revisit some of our economic analyzes, and may help us better understand and compare
economic impacts. We hope to get more of that kind of input tonight and throughout our public
comment period. Feedback suggesting we analyze the data differently, identifying new data
sources, or explaining how the policy would positively or negatively affect your specific
situation, will help us improve the final rule and the final environmental impact statement. These
types of specifics are a little more useful than a simple Statement of Support, or opposition to a
proposed rule and the environmental impact analysis. Also, we realize that NOAA fisheries
currently has a number of other documents out for public feedback, including a report evaluating
current vessel strike measures and the Biological Opinion that's on the batched fisheries that was
mentioned earlier. These actions have separate feedback, processes, and fall outside of the scope
of the documents we're discussing tonight, particularly given the size of our audience, we'd like
you to please restrict your comments to the documents we're discussing tonight, within the scope
of tonight's meeting.
Additionally, throughout the preamble and the rule of the rule and the Draft Environmental
Impact Statement (DEIS), there are some places where we called out requests to reviewers
specific requests, and I'm giving a handful of examples here. one is we would like comments
regarding some of our assumptions on the time, and the associated costs related to the proposed
gearmarking on the within the draft environmental impact statement. For the first time our cost
estimates assume that fishermen remark their gear every year when they're doing maintenance.
Therefore, the estimated cost in our analyzes are higher than previous gearmarking estimates. In
addition to assuming annual remarking, we estimated that the gear marking portion of the annual
line maintenance takes an additional 20 minutes per rope. And we'd like fishermen's input on
how much time it takes them to mark each buoy line. Are we close? are we underestimating any
specifics would be welcome. Another issue we asked for comments on Maine proposed to reduce
the number of Buoy lines by either trawling up or by allowing a single buoy line on a longer
multiple trap trawl. Both approaches would provide equal line reduction, so they are within the
scope of the analysis. But in the proposed rule, we only provide the trawling up option. We're
asking reviewers, especially fishermen, to comment on whether we should include both options
in the final rule. In the past, offshore trawls with multiple traps in a single buoy were allowed as
an option within the Take Reduction Plan. But it was rescinded because fishermen indicated they
wouldn't use that option because of gear conflict concerns.
The DEIS also analyzes a couple of options related to the weak links that we'd like some input
on, and this is specifically talking about the weak link at the buoy or in the Surface system. The
weak link already required, We propose some options. A fisherman be allowed to choose the
keep the weak link at the buoy or to put them at the base of the Surface system or multiple
Surface system lines meet the main buoy rope. We also would like input on whether or not, at
Surface System Weak link is required. If there are weak insertions or a weak buoy line below,
Some take reduction members suggested that the buoy could actually provide resistance. So if a
whale got entangled and broke free due to a lower weak insertion in the buoy line, the resistance
of the buoy itself could pull the line away from the whale and possibly help the whale shed the
gear. Finally, we're working with New England states to test weak rope and weak insertions, and

869

are continuing to invite ideas for fishermen to help us develop a list of options. Within the
proposed regulations and consistent with the way that we currently regulate the weak links at the
buoy.
We will identify the performance specification of the weak inserted rope, so we'll say it needs a
break at 1700lbs or less. It needs to be able to be described and duplicated, and it needs to be
able to be recognized by enforcement. And we may would probably include the location and the
number of inserts. The regional administrator every year can approve weak insertions as they are
demonstrated to meet these standards. And that allows this list to be adaptable, to grow as
fishermen, learn more and bring us new ideas. At this time there are a few that we'll be adding on
the list. There are a number still being tested in Maine and in Massachusetts as well, and we are
really welcoming ideas from fishermen. Both Maine and Massachusetts have hired gear
specialists that are working with fishermen to gather ideas and test them as and NMFS also has a
couple of gear specialists, Rob Martin and John Higgins, who are doing this work as well. So,
this work continues, we hope to have a list out well before the final rule.
But also at any time, if you have ideas, please get them to us and we will get them tested. And if
they work, we'll be adding them to the list. We're hoping to have variety so that we can meet the
conditions across the region. I do have one example here and that's been weak sleeve currently
used by some Massachusetts fishermen. That has been proven to break at 1700lbs. And some
fishermen have been using this in Massachusetts for the last couple of years. And we're also
currently waiting on shipment of weak rope in larger diameters from India actually, that will be
testing within the next few weeks. OK, next slide, please.
So, I wanted to quickly go over the next steps. As we are tonight, we're accepting comments on
the proposed rule and the draft environmental impact statement, the comment periods ends,
March 1 2021. Comments can be accepted either in writing or tonight in these public hearings.
After we get the comments, will be analyzing those, and, as needed, we'll be updating the
analyzes in our environmental impact statement. And along with that information, we'll be
looking at any new data that's come in, since we drafted the environmental impact statement,
including new stock assessment information, as well as published papers. All that updated
information will be considered to complete the final environmental impact statement. Your
comments and the analysis will also inform the Final Rule, the final environmental impact
statement. We hope to get that out this summer and a month after that comes out. We'll publish
the final rule again, hopefully the summer of 2021. We anticipate that as usual, there'll be
delayed effective date for modifications to gear configuration and gear marking requirements so
that fishermen will have time to modify the gear. Paralleling this process is an ongoing
Endangered Species Act section seven consultation, and a number of federally managed
fisheries. This is outside the scope of tonight's meeting. But I'm mentioning it because many of
you know the agency released a draft biological opinion, and is accepting feedback on that until
February 19th. The address for the information bulletin is listed here on this slide. You can get
more information, including the draft Opinion, the conservation framework, and an e-mail
address for questions or feedback. We have inserted that e-mail address today in the answers, in
the question box. Note that there is a court order deadline to complete ESA consultation and to
finalize the biological opinion of May 20, May 31st, 2021. As noted in the draft biological
Opinion and the Conservation framework, the consultation and the opinion are likely to consider

870

the impact of the fisheries as they will be modified in the final rule. So that's the relationship to
what we're doing today. The opinion is outside the scope of what we're discussing. But it, but
what we're doing will influence the biological opinion. Next slide, please.
So we would now like to begin the public comment portion of our public hearing. If you have
not already, please type comment in the question box to get in line. If you change your mind, if
or if you wrote comment and you have changed your mind, you can type or say, pass when we
call your name in the queue. If you're joining by phone only, there'll be a time set aside to take
comments for those unable to see the slides and get in the queue. You must have entered your
audio pin in order for us to unmute you to allow you to participate that way. For those of you that
want to give your comments in writing, rather than speaking tonight, please see the blue box. On
the bottom of this slide. Written comments will be accepted through March 1, 2021, following
the directions listed in this text box.
If you've commented already, and you can't find your comment posted on regulations dot gov,
please have patience with us. We have gotten over 15,000 comments about 260 or so of those are
individual comments. We're not going to post every duplicative comment. We will tally those in
that that's important to us. But we're only posting the individual comments. And when we have
the full tallying, we'll also post the tally of each of the Dupe's. But as we're going through them
to determine whether or not their individual comments, it takes us quite a bit of time. And then
after we know they’re individual, we are posting them. So I apologize. If you've posted in, you
can't see it, You can, you can e-mail me to bring that to my attention, or, or if you're patient, it
should get up within a couple of days when receiving them. Again, check the website on the
bottom of this slide to get copies of all the documents, to get our recording with, more details,
then, tonight's presentation, and to get details on additional public hearings tomorrow. And next
week. For commenting tonight, we're going to call on each commenter, and we'll try to let you
know who's up next in the queue. Remember that we're recording this public hearing. And, as
always, please be respectful and direct comments at us, the presenters. And when you’re called
them, you'll be unmuted, and then you'll need to unmute yourself for the recording. If you can
remember to please state your name before you comment. Tonight, we're limiting comments to
three minutes. You'll be muted after three minutes. If you've already provided public comment
but wish to give more, you'll be placed at the end of the queue so that everybody tonight has an
opportunity to speak. But if we have time at the end, we will circle back to the ones at the end of
the queue. With that, I'm going to turn the mic over to Kara, who's going to help us run through
the comments.
Hello. Yes. Give me one second. Colleen, we do have a couple questions coming in. So I don't
know. I'm going to just intersperse those in through the comments.
Why don't we take questions for about 10 minutes, and then turn it over to comments?
OK. Peter, I'm coming to unmute you. Peter Broder I've unmuted you, you can unmute your
question. I know you also have a comment or we're just going to do questions right now and I'll
come back to you for comments.
Yeah, I just wanted to make clear that the model that we used at the TRT in 2019 remains the
same as the numbers are concerned as far as risk reduction is concerned. Have they changed

871

Any? Or are we still following up on that? And the proposals that are made today are they based
on what that decision was for the risk reduction, according to the model in 19, or has anything
changed Colleen?
Thanks, Peter, and I wish I could see you in person. Thanks for all your help as an original team
member, I believe.
Yes. Thank you.
Currently an alternate, but one of our originals really appreciate it. So, there happen. So the draft
Environmental Impact statement was drafted last year. Last spring using decision support tool,
very similar to what was used at the October 2018 meeting. It did go through CIE review, I'm
sorry, That was the October 2019 meeting. Sorry, April 2019 meeting, I'm getting my meetings
mixed up. It went through CIE review, so it had some updates in late 2019, but it's very similar,
and they improved the threat model, and also, well, that was the primary change that came after
the CIE review.
Um, so they didn't cause any of the numbers that we achieved, by what we proposed at that
meeting, to go down. Like, we did come up with a 60% reduction in our area. Those numbers
didn't change from that time going forward?
So we analyze a lot of that in, I think it's chapter five of the environmental impact statement,
Marisa, correct me if I'm wrong we, we talked about how we considered what the TRT gave us
and analyzed it. And there were other things that we considered, including some of the
information that came from the scoping Um, there were things done very simply at that meeting
that that didn't entirely pan out when we put, I should let Marisa explain this, but when we put
the model together, for instance, when you reduce the risk by changing, how strong the line is,
and then reduce the number of lines, You know, it compounds, but it's not as additive as it
appeared to be in the April 2019 meeting.
Thank you.
But if we're following a, similar tool with a similar concept for the final environmental impact,
statement, will be probably using updated whale data, that we have now, that lets us split the data
before and after 2010, And it allows us to use one whale model for the entire region. That was
not available prior to drafting the environmental impact statement.
Thank you for your answer.
Thanks Peter.
OK, David, Nettie. Oh, I, you'll have yourself, I just unmuted you.
Oh, thank you. My question was, how was the 1700lb line break threshold determined, does it
take into account juvenile whales and whale calves? Thank you.

872

So, it sounds like you may be familiar with the work that Amy Knowlton and other Scientists did
out of the New England Aquarium. Um, where, um, they determine that it somewhere around
1700lbs or less is where they're not seeing serious injuries on right whales. It is not 100%
effective. It's a precautionary approach rather than a full avoidance of injury, and that is
primarily or that is partly because it isn't as effective on calves and young juveniles. So, in
applying risk reduction measure, when we're doing the risk reduction assessment, that there's a
weak line does not get 100% risk reduction. As a result. As a result of that fact. That it's not
100%.
So, what other line strengths were looked at?
We didn't propose anything less, since, I mean anything less than 1700 would be allowed. We
didn't propose that. Part of that is because 1700 is also line strength that appears, to, reflect the
actual forces needed to pull gear to pull the gear for a large portion of the fishery. Particularly if
they're not hanging a lot of pots in the water at any one time. So, it was considered to be an
operationally feasible line strength for a lot of the fishery and safe to some extent for whales.
Some 70% safe for whales.
So it can be less than 1700 is that we are saying? It is permitted to be less. It can't be more than
1700, correct?
Yes.
OK, so sorry. I misunderstood. So, thank you very much.
OK.
I think we have time for one more question for now and John Swap. Forgive my pronunciation,
you should be able to unmute yourself and ask your question.
Ok. My question was anything any consideration given after the last meeting to trawling up? I
fish by myself in area two and a 25 pot trawl on my boat, is going to be, On a good, flat, calm
day, it's going to be burdensome. On a on a rough day with an open stern It's going to be
dangerous and it's going to prevent me, also from moving more than one trawl at a time when we
moved to stay on the lobster's. So I'm curious as to what we can how we can work around it or
what can be done.
Do you fish out of Rhode Island?
Yeah, out of Point Judith.
Yeah. I know. We talked to Scott O, and I and I know he is asking about whether or not we can
consider as a conservation equivalency full weak line instead of trawling up. And that's
something that. So that's something we can add. So, so I would like to take your question as a
comment, because you've provided us with some good detail there and, and I believe we will be
getting other comments, requesting that we consider it as a conservation equivalency. Because

873

we've looked at weak insertion and full weak line as an option, I believe that would fall within
the scope of the analysis and the proposed rule, And that probably is something that we can
consider towards the final rule.
We've been in touch very recently, you know, with Scott O, and he's, he's aware of what would,
you know, talking about this. There's a number of men in the fleet now that are I'm the young
guy at 67. And, uh, you know, it's going to have a bad impact. People our age having to go to 25
pot trawls.
Oh, well I think that weak line as an equivalent, because I don't think we're talking about a whole
lot of vessels out of Rhode Island and Southern New England already had a bad hit, given the
lobster fishery there. But, um, I think proposing that as an alternative, if we demonstrate
equivalent or better risk reduction and providing us with the kind of details you're discussing,
that, the age of the participants, vessel sizes, the lack of deck space to move multiple trawls,
that's all good, granular information. That's exactly the kind of information we're hoping to get
from the public comments.
Thank you. one more question, if I could, could ask it.
You got the mic.
OK. When you when we talk weak insertions or the whole line being weak, we've used a number
10 braid, that supposedly breaks somewhere 1700, 1650. We've been using it for years. And
don't have any problems with it, but what I'm curious about is some places I fish. I am just on the
edge at 12 miles outside the 12 miles. And my ends are in 180 feet of water. So I'm, I'm curious
as to any thought been given to situations like that, too. I'm not trying to cherry pick my
situation, but it, you know, you can be well within 12 miles of land and be hauling pots up from
200 feet if you're fishing in a hole. So, can we throw that into the mix?
I mean, if you have another risk reduction measure for using in deeper waters, it would be great.
Let us know in your comments. We do assume that Well, first of all, the line that you're using,
that I think some Rhode Island guys are using the top of their gear. Um, that that is one of the. So
as I understand it, it's between 5/16 and ⅜ inch It's been tested in Maine, and it does break at
1700 or less fairly predictably and very predictably. And so, but it's not a three strands. And not
every fisherman is going to want to use it, but Rhode Islanders seem to like it. If you use that
down to the chafing gear at the maybe lowest 25%, then that is what we would consider to be
probably reasonable if that's not something that can be done in the holes. I think that that's where
trawling up might need to be considered.
OK, thank you.
OK, OK, we were able to come back to some questions. Can you see my screen, OK? Excellent,
OK, so we're going to try this. We'll see if it works. There's a timer on the screen and I'm going
to try to keep sort of who's up next in giving public comment on the screen and we'll see how
this works. Thank you guys for being my guinea pigs. As Colleen said, we're going to be muting
you at three minutes. Please keep your comments to the proposed rule. I put into the chat, the e-

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mails, and the deadlines for the Batched BiOp comments and the vessel speed restriction
comments as well. So, Brennan Strong, I know you had a couple comments. I just want to make
sure that I'm going to come to you and make sure that you did not want to give public comment
this time. You're unmuted, you can unmute yourself. I can see that you're unmuted, but I cannot
hear you. We can come back to you. I will keep you on the list. Rachel Thompson. You are
unmuted and you should be able to unmute yourself
OK, can y'all hear me?
Yes.
Awesome. Thank you so much. I'll get right to it. My name is Rachel Thompson. Thank you for
the opportunity to share comments with you on the proposed new rules for the US American
Lobster and Jonah crab fishery to reduce the risk these fisheries pose to North Atlantic right
Whales, the world's most endangered large whale species. My first experience with this
magnificent species was while I was pursuing my Marine biology degree at the University of
Rhode Island. As an undergraduate research assistant, I worked in doctor Robert Kenney's lab at
the URI Graduate School of Oceanography, cross referencing, right whale sighting records in
the right whale photo identification catalog, managed by the New England Aquarium and the
Northern Atlantic Right Whale Consortium, one of the world's most successful collaborative
long term studies of an endangered whale species. 10 years later And I now find myself in a
position to advocate for the right whale, on behalf of coastal Georgia residents and visitors.
Today I'm presenting comments as the Executive Director for the Glynn Environmental
Coalition located in Brunswick, Georgia. We're a Georgia coastal advocacy organization whose
mission is to ensure a clean environment and healthy economy for citizens of coastal Georgia.
We work to navigate complicated task of protecting and preserving our environment and species
that call them home while working to not hinder or stunt economic sustainability. The proposed
measures are based on outdated information that will not protect right whales in the short term or
long term. You stated: your risk reduction goal was between 60 and 80%, but the 64% falls too
close to the lowest level of risk reduction and should be aiming for a minimum of at least 70%, If
not closer to 80, Stronger protections must be developed to save right whales from extinction.
Gear modifications that are proposed are economically burdensome to the industry and have not
been proven to be effective in reducing entanglement. The proposed rule relies on the use of
ineffective gear and modifications called weak rope to reduce risk, but weak rope has not been
thoroughly evaluated and has not been proven to reduce risk. New technologies called ropeless
or buoy less, fishing are an opportunity for lobster and crab fishermen to continue operating in
areas where right whales are present without further endangering these mammals. NOAA
fisheries must continue to test and foster a market for ropeless technologies by creating
incentives for fishermen to try them. Measures will not be implemented for at least another year,
and the right whale cannot sustain more deaths. While we wait for fishing gear changes on the
water, while stronger rules are developed and implemented, NOAA fisheries must use its
emergency authority to put vertical buoy line closures in place. I thought we had five minutes
today, so I'm just going to stop there. But I thank you for letting me share some of that with you
and we will also be submitting written comments for consideration as well. So, thank you so
much.

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OK, and do keep your place and if we have time at the end, you can finish providing comments
Thank you.
OK, Peter. Lost my place. OK, Peter, you should be able to unmute yourself and give your
comment.
OK, fine, thank you. I want to address primarily the trawl up. Many of the lobster boats in the 20
to 30 foot size find themselves working their gear alone. And taking advantage of that 5 to 7
months, loiter wins to follow the lobster as they migrate to deeper water. Many of us have open
stern boats that Don't require us to lift the traps off the deck, thank God anymore, to set them in
(undecipherable) hauling. Having said this, if we must extend the number of traps we end up
spending quite a bit of time at the stern of the boat like Jay referred to a second ago. Stacking the
traps, this reduces safety of the operation, especially since there is no one to throw that life ring
to us, if we fall off. Some days, the boats are a bit livelier than others. So now, if we are safety
minded, and then we stop at 12 miles and let the lobsters go, and so goes 2 to 3 months of
profitable fishing because we can't follow them. Even though the federal Permit allows us to
continue as we have for years, therefore I am against trawling up above 15 traps from my
operation. Of course we could make an exemption for age as Maine and Mass have for certain
instances or perhaps by boat size. Whatever is done we must keep a fair degree of efficiency, and
most importantly safety in the lobster fishery. A full weak line would be a good asset to go with,
as Jay said previously. Also, I wanted to say, I do support the contrivance every time I see Dan’s
face when I say contrivance or weaker up and down lines at 1700lbs, I support the code. Color
coding change, thank goodness, took a long time to get here. I don't spend that much time
because I spray paint, as many people do. And I've been on the phone with a few of the
manufacturers of the 1700lb breaking top line that we put on having them put in a silver tracer in
the length of the line. So that would help in identification as well. And just as a last little bit, I
don't support any closed areas. Thank you for allowing me to speak.
Thanks Peter and boy, did you demonstrate how to hit three minutes. Nice.
Thank you.
Up next is David Dowe. I've unmuted you, you can go ahead and make your comment.
My name is David Dowe. You hear me?
Yes, David. Thanks.
OK. I'm a retired Marine scientists from the fisheries lab in Woods Hole and the grass roots,
environmental activists living on Cape Cod. I submitted written comments and both MMPA,
Risk Reduction Plan, and the biological opinion. So I was going to mention that the thing that
initiated my comments was a Woods Hole Oceanographic institution ocean encounter program in
saving North Atlantic Right whales. One of the things I described was the grit, that they have to
develop ropeless fishing gear for lobsters. This involves both people in the industry, fishermen,
scientists, NGOS, and I would feel that would be a good case study for NMFS support with

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further grants. Because this grant was provided by SeaWorld and Busch Gardens and there was a
private funded endeavor. The first thing I wanted to say about the biological opinion, was that we
need to have an adaptive environmental management approach. And they were very vague about
what kind of adaptive management they were going to use to develop a conservation frameworks
that should be fleshed out. In regard to Atlantic large whale take reduction Teams management
plan. We feel that they should conduct a cumulative environmental impact assessment which will
allow people to examine the factors influencing the calving rate of female North Atlantic right
Whales, and the effect of sublethal stresses from a variety of factors not just ship strikes and
entanglements in Lobster pot and Jonah crab gear. This might include climate change, ocean
noise, competing human activities, such as naval training, offshore windfarms. And also various
things that are associated with the essential fish habitat. Species change, as species and their prey
change, their positions in space and time has to be accommodated. Thank you.
Thanks, David. Also nice job getting in under three.
OK. Up next is Matthew. Be unmuted and able to make your comment now.
OK, can you all hear me?
Yes.
Oh, OK, well. Hello everyone. My name is Matt. Um, I've been listening to you guys, And, first
of all, I would like to say, I would like to give all of you my blessings on what you guys have
been doing. Um? And I was, I was wondering how I can help.
Sir. So joining in, public comment is a good way for us to get input from you tonight Or in
writing.
OK, and I'm sorry. This is just, this is my first time doing this, so on. I'm getting used to
everything.
That's great.
I definitely, I definitely think that we should, we should do everything that we can to make sure
that, um, that these, that these whales don't get caught in, the nets, the fishing nets. I think one of
the things that we should do is to, I think we should just keep the nets in one location. So you
know, we don't. Where we should keep them away from where the whales are going to be so,
that we don't, we shouldn't have to worry about that about, you know, where we should we
should just keep the net's, they're like away from them.
Great. Thank you.
You're welcome.
Thank you.

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Appreciate it.
OK, Deborah, Ashton? You should be able to unmute yourself. Deborah Ashton, can you hear
me? She has written in an extensive comment indicating her mic isn't working.
Oh, perfect. And so she'll go to regs dot gov, but we also will be recording the information in the
question box, so we'll be capturing that as well, Deborah, thank you.
Thank you, Colleen. I missed that, and that's OK. Next step, Patrick. I've unmuted you. You
should be able to unmute yourself.
Can you hear me?
Yes.
Thanks for this opportunity to comment. And Colleen and Marisa, your introduction of this as
usual has been very helpful and informative. My name is Patrick and I'm with the International
Fund for Animal Welfare or IFAW and we've been pleased to be working with lobsterman for
some years on the challenge of protecting right whales and protecting their livelihoods. Um, and
it's not the focus of our work this evening, but a powerful reminder over the weekend with a calf
mortality that of the wide variety of threats that these animals face, including, um, vessels, not
just Lobster and crab gear. That said, our view, and we've participated closely, as you know, in
the TRT process, and in a variety of different efforts aimed at the objectives that NOAA and
NMFS share here. Um, our concern is that the proposed rule is not the solution needed to save
right whales from extinction. Nor is it a solution that offers comfort, confidence, and continued
prospects for our continued livelihood by Lobstermen. And those are reconciling those things is
obviously a real challenge. But one that is not going to be achieved by using data that is, is not
real time. That is essentially already out of date by the time of the most recent in person, TRT
meeting. And is not real-time data. Second, as was already noted by an earlier speaker, going for
this sort of lowest rung on the ladder, a 64% risk reduction in the face of continuing right whale
mortality from various sources, including entanglement. Which we know as historically in recent
years, been the main threat, shooting for 64%, doesn't, um, meaningfully or sufficiently reduce
risk and in fact leads arguably to a more uncertain and risky environment both for right whales
and for folks making their living on the water in terms of, you know, likely needing to move to
more aggressive measures over time. And this is not the time to shoot for the lowest risk
reduction target. Third has, as is also, I think, already been mentioned, and acknowledged, in
fact.
Hi Patrick, I'm sorry to cut you off, Your three minutes is up. Please remember where you were,
and then we'll put your name back at the end. And we can come back to you if there's time at the
end.
I hope everyone waits. it'll be worth it.
Thank you. Yeah.

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So you were on third. Just remember.
Brian, We are coming to you. You should be able to unmute yourself.
Yes. We are unmuted. We are couple of quick comments. Just first and foremost on the list there.
You know, that area I represent in Area 2 we are against the ropeless fishery. Just kind of wanted
to get that on the record right off the bat. Um, also comments on the upcoming wind farm
projects that are all approximately going to take up 37% of our area two lobster grounds. And it
appears that the G and G work that has been going on is coming to a completion inside of area
Two. The next step In the process, once finances are established for these wind farms, is got to
be the construction variance. And I feel the group should be paying a lot of attention to the extra
amount of large vessels in the working environment that they're going to be in. They're supposed
to be under stringent laws and rules and have observers on the boats through the last couple of
seasons while they're doing their G and G work. And I know they're not supposed to work at
night and we know we witnessed them in transiting of our areas. Plenty of nighttime work still
continuing. I hope that this does get enforced. I know that, you know, they got handed an
exemption against the whales for the, you know, a whale exemption permit, But it should be
higher enforced. For a quick comment, back to slide 13. I had not yet heard of the green marks
on what would be what you labeled as a Federal, up and down line, or a Federal vertical line, The
six inch green mark at the top, that was nothing that I had heard discussed as of yet and
wondering how new that was in the presentation. Um, as far as the trawling up in area two and a
lot of the fishermen that I do represent and speak for that may not be on here right now are of age
and do fish by themselves, a large percentage of our fleet does. And I am quite compassionate to
the smaller trawls that they need to fish safely by themselves. But, just wondering if these rules
could end up being boat specific, instead of full weak lines, or full weak, Vertical lines, if we
could, uh, try to implement boats specific regulations, whereas my larger boat or a full weak
vertical line might not work for me. I could possibly handle the larger trawls outside of 12 miles.
So wondering, again, you know, if it could be boat specific on the enforcement level. Um, I also
heard a request for a quick comment on the vertical lines. It takes at least 20 minutes on land to
modify a line with markings. With the additional markings, it might take a little bit longer. I
know. I know. You would ask for comment on that, depending on what our ropes come out of
my three minutes, depending on what our ropes come out at from new manufacturers. That 20
minutes could be a lot on fully permanent vessel. Roll my name to the end again, one more time,
if possible, please. And if there's time, I'll come back and finish my comments. Thank you.
Great, Thank you. Robert Mcclean, I'm coming to you. You should be able to unmute yourself
now. Hi, Robert, can you hear me, Robert McClean? We will come back to you. OK, next step,
Greg M. OK, I've unmuted you, you should be able to unmute yourself.
Yep. Greg M. Thank you for the opportunity to comment. Like Brian said, I don't believe I've
seen the green mark in addition for Federal waters. I'm for the fact that we're parsing out the
different colors for the different states. But, you know, we're being asked to do a lot in terms of
marking and adding the green mark for Federal waters versus the State waters mark is starting to
get probably a little more complicated than it's actually going to be followed. We have to have
enforcement for this, And it may make compliance a little more difficult. I'd also like to suggest
there's a line, called #10 Neocorp braided ropes that I believe could work instead of some of the

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weak line that's being suggested or these weak contrivances. So I'd like to put that in there. In
terms of the time it takes, to do the markings. It takes it takes a long time the line is seaweeded it
up at the end of the year in the spring everything's wet when you're doing this work. So, you
have to let the rope dry out before you can start to work with it and do these markings. So, 20
minutes per trawl is, is definitely not out of the question, especially with the additional marking
requirements that we have to do. In terms of the trawl lengths, I'm very sympathetic to guys like
Peter and J, they fish, a long, long time in this area and safety is a real issue. Fortunately, for
Rhode Island, we have moved up to bigger boats and trawled up, whereas Maine has not, but it's
still going to be an issue. So finding some sort of equivalency, like, full weak lines for guys that
want to take advantage of that is probably preferable. And it may solve a lot of safety issues,
operational issues, for guys like that. Also, I was pleased to hear that somebody finally has
mentioned, an environmental advocate, has mentioned concern over windfarms. So a lot of this
is based on co-occurrence of end lines and right whales, but If you look at the co-occurrence of,
Right, whales and wind farms, they actually coincide with a lot of these closed areas. So a lot of
this work that we're going to be putting in, may be for nothing in the end, when these wind farms
come in and the additional noise and killing their food source all affects them. And their
migratory route, If they have to go an additional 500 miles skipping this area because of this
massive 1400 square mile wind farm development, they're going to be emaciated, you know,
female reproductive issues are going to be exacerbated and things like that. Also, ropeless. I
think, has a lot of issues. And we're a long way from away from that. Massachusetts is doing a
study right now that's intended to be very comprehensive. And I'm thankful for that. It's going to
take into account the opinions and operational factors of fishermen. And I'm looking forward to
that before we just get told that we need to jump to that. Thank you for the time.
Whoop, all right good timing. Robert, OK, you're up next again, if you're on up on your
computer, on the right hand side,
I see it. I found it. Appreciate it.
Excellent.
And this is a brand new format and that's actually one of the points I wanted to make, Kara if I'm
pronouncing your name wrong, which is that this is an issue a number of people, will not get into
the weeds like myself here on this. Cannot access due to due to some issues with, you know, it's
being commonly available. But I just want to say, I can't get in the weeds too much I knew was
proposed rule to be what I can do speak from the heart. Ocean swimmer. Studied past PADI
Dive Master. OK, I've already made the first week. We got to make this more available.
Particularly, if we aren't interested in comments to just want to listen. It's not about only 100 or
so people here to I urge all. Here, to look up the book, Blue Mind, two words, Blue Mind. It's
about the cognitive emotional benefits of being near in or underwater by a very smart and
seedling accent or marine biologist by the name of Wallace Chain. And he's having a Blue Mind
reading club daily now to beginning of April. We have got to get emotion into this conversation
and cut out a micro picking up the rules. We have an endangered species here. And where it's a
red line. And we're not addressing this really accurately, a film that I just researched online,
recently stated by the name of Entangled, an hour and a half film has a Someone protesting a
NOAA hearing saying this is ridiculous It's like having the fox guard the hen house. We've got to

880

get real about our connection to the ocean and how much it is intrinsic to our lives. Not just
physically. But all those who live off the ocean, it's a global thing. But we've got to be real about
how important it is not to let animals die on our watch. And we've got to stop cherry picking this.
And it goes on both sides fishermen, NOAA. Division of Marine Fisheries Massachusetts. OK
Third. Can we get real about ocean conservation and averting the tragedy of the commons?
Creating more MPAs and let's face it marine sanctuaries. Our ocean protected laws had been
gutted by the past administration. So we've got to get real on this to quote the Cousteau’s, we
protect what we love. So we're working backwards. We love what we understand and we
understand only what we are taught and strive to learn. So we got to strive to learn how can
NOAA how can you, how can the fishermen who are ecologically conscious and understand this
teach us about the beauty and the fragility of our oceans. The beauty and the fragility of the right
whale family. Thank you very much.
Thank you.
That's it.
OK, Thank you for those comments and, and, Robert, We've tried really hard to make it
accessible, but I would be open, if you'd like. I can put my e-mail in the chat to talk to a little bit
more about people who don't find this accessible so that we can make it more accessible. And,
before I go to the next person, who's, who's able to type into the chatbox, I would like to go to
anybody who might be joining us through the phone. Um. Colleen, though, we, they can't
unmute themselves if they're joining us through the phone. If you are joining us through the
phone and do not have the ability to type in the chat box, please send me an e-mail. My e-mail is
Kara K a R A dot. Sure, vanoc, S H, E R V As in Victor, A N I see Kay At NOAA NOAA dot
gov, it's K A R A, dot, S H E R, V As in Victor, A N I C K at NOAA dot gov and I will be able
to get you in to the queue that way. We will talk more about that Colleen, how to do that next
time. Um, OK Quinn, I'm coming to you. You should be able to unmute yourself. Quinn, can you
hear me? Quinn Josefine O'Connor. OK, we'll come back to you, Sarah, Austin. You should be
able to unmute yourself.
Hi, everyone. Can you hear me?
Yes.
Thank you for this opportunity. My name is Sarah Austin, and I'm attending these meetings in
order to show my support for a plan that will expedite the implementation of ropeless fishing
gear in order to prevent further deaths to right whales and other marine life, with less than 360
remaining right whales in existence. This discussion is critical, and I'm encouraged to see NOAA
addressing it. While alternative solutions exist, such as weaker links and seasonal closures, these
implementations are not appropriate for all fisheries and will not prevent entanglements and the
death of smaller whales, calves, and turtles. Ropeless fishing has been tested, and it has the
potential to reduce and even eliminate entanglements to prevent further marine life death. I
would like to see support for more permit programs that will allow ropeless fishing technology to
be used more widely in fishing areas. Right whales are on the brink of extinction, but with the

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right actions, NOAA can intervene while we still have the chance. Thank you for holding this
meeting and allowing us to voice our comments.
Thank you. Alright, Quinn, I'm coming back to you. OK, you should be able to unmute yourself,
excellent! Hey Quinn we can't hear you. In the Audio section, you just make sure that, if you're
on your computer, if you click the little drop-down arrow next to Microphone Array, make sure
that's the. Whether you're using your headphones or your computer, you should see several
options there.
OK, can you hear me now?
Yes, perfect.
OK, thanks. Sorry about that. So, my name is Quinn O'Connor. I am a senior at Boston College.
And for the past year, I've been paying attention to the decline of the North Atlantic right Whale
population. So right Whales are in a steep decline, as there's only about 366 remaining in the
world. And only one quarter of that number are females that are able to give birth. We know
from scientific reports and data that entanglement in fishing gear is the leading cause of death for
right whales. In fact, scientists estimate the 85% of right whales bear scars from entanglements,
and over half have been entangled more than once in their lifetimes. This past year, I have read
about at least three entangled right whales. I can't imagine the stress and pain, each one of them
experienced, while trying to swim up, to breathe, or eat, and being unable to do so. I can't
imagine being so stressed, unable to travel freely, because I have hundreds of pounds of fishing
line and traps wrapped around my body. I can't imagine drowning and suffocating, because I am
entangled in fishing rope. I can't imagine this, yet This is the fate that we have set up for right
whales. If we don't change our actions fast, we're going to lose the species' forever. We need to
change current fishing practices. Ropeless gear can prevent right whale entanglements, while
keeping fishermen on the water. Prioritizing safer gear in the water is what will change the fate
of the right whales and fishermen for the better, Please implement a ropeless gear permit
program. So we can make our oceans and seas safe for fishermen and save North Atlantic right
Whales once and for all. Thank you.
Thank you. Paige. You should be able to unmute yourself. I can see that you're unmuted, but I
can't hear you. You also might need to check your audio settings and make sure your microphone
and speakers match up with that of your device. And well, we will come back to you after the
next person. Jenna Stevens. You should be able to unmute yourself. Oh, yes,
Hi. Thank you so much for the opportunity to speak tonight, and thank you all for the work that
you do and for taking the time to listen to us all. My name is Jenna Stevens. I'm the environment
Florida research and policy center state director. Environment Florida Research and Policy
Center is a statewide non-profit dedicated to protecting our air, water, and open spaces. And I'm
here tonight on behalf of our membership to urge you to do everything you can to save our
critically endangered North Atlantic Right Whales, as others have referenced for the last decade.
The number of Right Whales has consistently declined. And today, only about 366 remain in our
oceans. From sea to shining sea, the United States possesses an incredible legacy of natural
beauty from Ice Capped Mountains, Plains where Bison Roam, and, of course, our oceans, where

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sea turtles, dolphins, and whales swim, nurse and play. And our laws or reflect our collective
value of the beautiful wildlife and wild places that surround us. In particular, the Marine
Mammal Protection Act and the Endangered Species Act some of the world's strongest
environmental legislative frameworks prioritize actions that prevent extinction and keep our
wildlife safe and healthy. We are concerned that, as written, the proposed rule just does not live
up to these bedrock environmental laws as it fails to protect right whales from one of the top
causes of death, fishing gear entanglements. So I urge you to formulate a stronger final rule,
taking into consideration the following factors: that the draft rule is based on outdated, outdated
scientific data, as other speakers have referenced. Additionally, that the proposed seasonal
habitat closures in the rule will not do enough to prevent right whale entanglement in fishing
gear. And then that weak rope, another major tool used in the rule is not a proven effective
solution to preventing fatal or seriously damaging entanglement events. We would urge that,
NOAA should take emergency action now. The agency should close certain areas to the use of
vertical buoy lines immediately. While a stronger package of rules is developed using updated
science, We envision that that package would include a plan that closes right whale habitat
towards this toward fishing and start to create a path towards the eventual broad scale
implementation of ropeless fishing industry. Although the 15 right whale calves born this winter
represent some hope for the species. We have already lost two and the number of calves born is
still much lower than the number required to prevent the species from extinction. And since most
deaths are caused by fishing gear entanglements and vessel strikes, human activity is driving this
extinction. Losing the right whales because we failed to act boldly enough would be an
unacceptable loss. And so I urge you to uphold our legacy of environmental protection and do
everything you can to save the North Atlantic right whales. And thank you again for the time this
evening.
Aye, thank you, Jenna. OK. Paige is offline for now. So, she comes back on, Michael Foley. I
see that you have both a comment and a question. Let's stick to your comment right now, and
then we'll circle back around on questions. You should be able to unmute yourself.
Hello?
Hi. Yep, we can hear you.
OK. Seasonal Migration of Whales, I am a Lobstermen. I have no objection to that. Figuring out
when the whales are coming through Area two. And if it's not a profitable time for lobstermen,
uh, I don't have any problem with seasonal closures. As long as it's when I think it's going to be.
Um, I'd just like to comment that I've been lobstering in Area 2 since 1991. That's almost 31
years, and I've never been entangled with a right whale. I fish 15/16 line and I also would like to
know some more about the reduction of lobster gear. We've had a 50% reduction in lobster gear.
So there's a lot less lines in the water that they're used to being. Like. The other fellow was
saying, Keeping up with it, You know, the information on real to date information on how many
lines are actually out there. Let's see. Oh, as far as the trawl lengths. Um, yeah, I understand that
some guys are worried about longer trawls. I noticed most of the time outside 12 miles, most of
the boats are bigger. So if there's an exemption for the guys with smaller boats to keep it safe for
them, That's fine. But I don't object to, the longer trawls either. And I'm just checking my notes.
That's about it. Thank you.

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Awesome thank you so much. OK, Paige, I see you're back online. Oh, yep, OK. You should be
able to unmute yourself.
Can you hear me now?
Yes.
Oh, great. So I'm Paige McLaughlin, I am an art teacher, in Colorado. I live very far from the
ocean, but I'm in love with the ocean. And one thing that worries me is that I'm going to die
before I even get to see a right whale in the wild. And my husband works in geospatial industry.
He has been working on trying to save the Vaquita, which is the endangered porpoise in the Gulf
of Mexico. And that porpoise, they believe is now extinct. There was about 20 left in the wild
and they've been unable to find them. Now, they have a different problem with fishing because
the fishing is illegal, but the Mexican government has never really done anything to stop it. And
I don't know anything about the fishing industry or fishing lines. And it concerns me when I hear
these comments about the wind farms that could possibly be also endangering the whales. That's
I think that's awful. So I'm a proponent of clean energy, but not if it's going to kill the last of our
whales. So, I just wanted to go, on record, saying that whatever it takes to save these whales
needs to be done, because once they're gone, they're not coming back. And the more species we
lose out of our oceans. The more we as humans, lose our humanity. So I don't know how much
time I have left, but I think that's about the end of my comment.
Thank you, and thank you for joining us all the way from Colorado. I just muted myself. OK.
Rachel, Patrick and Brian, you guys are going to get an opportunity to finish up your comments.
So, Rachel, I'm coming to you, if you are still online. Don't think Rachel is still here. Let’s go to
Patrick. Alright, Patrick, you should be able to unmute yourself, you are on number three.
Yeah, and again, there are only 4. Number 3 had to do with weak rope. Which makes for weak
policy, I think. And we ourselves, have been champions of incremental gains toward
conservation, including some more care in Massachusetts with the Massachusetts Lobstermen
Association on ground line more than a decade ago. So you know, to the extent that there's
content conservation contribution in these measures that's to be welcomed, but to continue to
cling to vertical lines and sort of wish for the best in terms of juveniles, calves and not go after
Solutions that address entanglement itself, um, seems consistent with the sort of low bar in terms
of risk reduction. Um, and the blunt instrument of closures being applied rather than some
innovative, fresh thinking and bold action in a different direction with respect to that. Finally,
number four is ropeless fishing, and as a number of other people with varying degrees of
familiarity with the lobster and fishing industry have noted ropeless fishing does seem to hold
some promise. I don't say that as an advocate. I say that as a student learning from Lobstermen
who are using it, and there's obviously some shifts in the way that fisheries are managed. That's
not a small thing, there's, there's, a learning curve upfront for lobstermen, who were engaging in
that technology, increasingly, that can be taught by others in an offshore and inshore
environment, who've had positive experience with the gear. The rhetoric is very welcome in the
proposed rule that there might eventually be a situation down the road in which there is access to
closures, otherwise closed areas for lobsterman, that needs to be strengthened. And I think the,

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the effort reframed, not going back to the drawing board, but reframed a bit. And the measures in
terms of aggressively supporting solutions that offer the opportunity for saving right whales and
lobstermen livelihoods. Like, ropeless gear need to be more than a rhetorical flourish in the final
rule. We stand ready and we will continue to work with stakeholders across the spectrum and our
hard-working government officials. And thanks, again, for the opportunity to comment. This
evening. Will, will be submitted comments in writing as well. Thank you.
Thank you. Brian. I'm coming to you, Brian. It's almost like I'm running around the room with a
microphone. As I scroll through the list of people, Brian, you should be able to unmute yourself.
Yep. We're all good, we're unmuted. Sorry. Sorry to make you run down to Southern Rhode
Island. Um, just, unfortunately, some of that's going to come across more of the question, then
that actually a comment. The implementation dates, and when they got, when they go in. I'm not
sure if we're going to try and specifically stay on permit renewal times for implementation dates,
or if we were going to go with seasons, you know, with a calendar year of January first, February
first. You know, we're a slower season for the fishermen, just wasn't sure about that. And with a
conservation equivalency with the: with the weak 1700 pound vertical line all the way to the first
trap. Um, I know we've done some line work. Where maybe we extend, you extend the endline
off the first trap, so you can have a stronger rope to get your gear up off the bottom And begin
hauling your trawl. But a 1700lb vertical line, right, to the ground line. Would that not be
required at this point in time then to have weak links installed in it? Could it maintain just the,
the buoy weak link that we're currently using? So, kind of comment kind of question. And again,
you know, the fishermen I hear a lot of comments. You know, there's, there's not a single
lobsterman that leaves port in the entire north-east region. Certainly not in Southern New
England, also that we're having the discussions with tonight Area three, southern Massachusetts
area 2 Rhode Island. None of us leave the dock with the intentions of a whale entanglement or
trying to kill a whale. You just kind of want that on the public record currently. Right now we
are the low hanging fruit, that can get targeted and managed very easily. The ship strikes Need
much more attention than they are given. I know they're well-funded group, and have very good
policy setters, and good representation for speakers. But it's just as important that the ship strikes
get taken into factoration, along with the wind farm work. Again, like I mentioned earlier. So
that was about it. That was my list. Kind of scrambled. I had a couple of different articles in
there, or numbers, in there written, but that sums it up for my comments. I appreciate you
coming back. Thank you.
Thank you, Brian. If I could, answer, just two of those questions. We can't tell you, Well, our
DEIS we wrote last spring and it ended up getting caught a really long time inside the beltway in
a review process that we don't control. And so not having control, I can't tell you when our final
rule will be published, we'll do our best to get it done this summer and published this summer.
And depending on when it's published, there will be a multi month time period that will allow
fishermen time to pull and reconfigure their gear, remark their gear. If it can coincide with
wintertime or our normal maintenance time, we will probably consider that. But again, it
depends on when it is actually finalized, so I can't really tell you when. My expectation is that it
would be certainly, well, hopefully by at least early, gear configuration changes early in the new
year. Um, something like a closure. We would want to give, you know, a month's notice for that
to give people time to get their gear out of the water, but to modify gear takes longer. We know

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that it takes sometimes buying new gear that that needs to get out on the shelves and things like
that. So we're going to have to consider all that when we determine what the delay is an
implementation. That depends on our final date. So I can't really tell you that. As far as weak and
weak line, if you're using a fully weak line like that, braided rope that is used by some Rhode
Island fishermen, now, down to your chafing line at about 75%. You wouldn't need a weak line
and weak insertions need either weak line or weak insertions. And to be considered a fully weak
line you need you need weak insertions at something like 40 to 60 foot intervals on your buoy
line. OK, so I think the next commenter.
OK, awesome. Lise, I'm coming to you, You should be able to unmute yourself. Lise, if you can
hear me, you are up next, You'll need to unmute yourself.
Oh, there we go!
Awesome.
Sorry about that. I don't know much about lobstering and in the deep sea fishing. But the closest
I got to fishing was my father, who was a trout fishermen and my partner who was a trout fish
fishermen of probably over 40 years. But my father, who was a biology teacher in Dearborn,
Michigan, he did help save the Jordan Valley. Jordan River Valley, watershed, in his retirement.
So, I know things are possible and that's why I'm on this call. I got a last-minute text today,
which I appreciate was totally unexpected but I'm so glad I sat in tonight and it was very edifying
and I'm glad to participate for whatever it's worth. I'm not a scientist and I'm not very well
versed. I just know about the right Whale situation. So I'll just be brief and I'll say this; I agree
with and applaud all the efforts by NOAA and various groups to create awareness of the right
whale extinction crisis and the horrible existence they live due to human fishing gear, ship strikes
and infrastructure such as wind farms. I support sustainable solutions that keep the species from
extinction. That also includes fishing and livelihoods, but the Whale's must be emphasized. And
this is because, in the end, our society will be defined not only by what we create, but by what
we refuse to destroy. And that was spoken by John Sahil, the late President and CEO of the
Nature Conservancy in 19 99 through 2000. Thank you for letting me comment. I hope this has a
positive effect on the situation.
Thank you. John.
Colleen, you mentioned earlier, and I wasn't able to latch onto it, but I want to comment that
comment and comment on it, that when we start using weak rope, which we already are, when it
becomes in the final rule, there will be a specific color scheme to that. Is it something that we
can get approved? Um, you know, tracers in it so that when were boarded by enforcement
officers of the Coast Guard at sea, we have a tangible thing to hand to them saying, Here we are
in compliance. So, I feel really strongly about that being part of this situation now.
So, we are trying to determine, working with enforcement as well, how enforcement can
recognize a weak rope or a three braided ropes. We're talking to the gear manufacturers, you
know, three strand rope, about putting an alternating color in to show that it was intentionally
created to break at 1700lbs or less. Um, you're using a weak rope that I know that our gear guys

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can recognize that specific rope. It's kind of unique in the fishery that the one that the Rhode
Island fishermen are using. We have not brought, We haven't taken that one, to enforcement.
Peter suggested putting a silver trace or gray tracer to indicate that it's Rhode Island line, and I
think that's a great idea if the gear manufacturers able to do that. That's something that should be
in the proposed rule, because that's not the gear marking that we have in place. But we would
prefer in our well, we would prefer a gear mark that goes throughout the line. So top 75%
marked with a gray tracer would be a good recommend, Another good cut. You know, it doesn't
reduce risk, but it gives us more detailed information than the gear marking that we're currently
requiring.
Well, it's just a situation where the kid, that's, I say kid young Coast Guard person that's on your
boat may have come from you know, growing corn. In the middle of the country, you know his
family's farm and has no idea about Rope. Um, so if it's, if it's tangible, you know there's an
orange and green whatever color is decided upon, but that we can have the manufacturers put
into that. Weak rope to signify it, signify that it's weak, you know, it would make things a lot
easier for everybody involved.
Yeah and I will tell you we have a gear specialist that has gotten a call at four in the morning
from Coast Guard Board and boarding a boat and asking a question about Lobster Gear. Um, so,
when they don't know, they do reach out to our gear specialists and us but this will also be
accompanied by outreach that includes enforcement, you know, at the at the docks when we're
doing the outreach.
Thank you.
Thank you.
OK, at this time, I just want to let anybody who's on the phone who might not be able to chat into
the chat box my e-mail. if you want to get in line to ask a question or give a public comment,
please send me an e-mail. My e-mail is K A R A, dot, S, H, E R, V as in Victor, A N I C K at
NOAA dot gov. Colleen, at this time, we don't have anybody else wants to give public comment.
We do have two questions. We can take those now. They were from earlier on, so Robert
Randle: are you still on? Hey Robert! If you can hear me, you should be able to unmute yourself.
Thank you very much Kara. Um I'm also in Brunswick Georgia, as well as Rachel Thompson,
founding member of the Glen Environmental Coalition down here and I have a question for you
though that's related to the fact that we're where the right whales do their calving and right in the
middle of their calving grounds down here we have the Kingsbay Trident nuclear submarine
base. I'm wondering if you know if anyone has done any research on the inter-relationship
between sonar, contamination, and entanglement. Do we know whether or not the ability of the
whales to see fishing vessels or possible entanglement threats is impacted in any way?
By their Exposure to Sonar. Does the entanglement increase or decrease after Navy, use of sonar
in training exercises or in wargames? Do you know if anybody is looking at this?
So I'm not the best person to answer this question partly because I'm not in the south-east. I know
that there has been work done on the impacts of naval operations on marine mammals. I think it

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is more often concentrated on toothed whale. Well, first of all, they're not. They're generally
restricted from doing their operations. When, you know When right whales are around. And I
don't know that they do any right there at that base, but I'm not familiar with that base and what
they're doing right now. However, the Naval operations have impacted a number of toothed
whales and some of the deep diving toothed whales. And those whales do more echo locating in
order to eat and to find their way around. The baleen whales do less echolocating, they still need
to keep their ears in good shape to survive. So I'm not saying they wouldn't be hurt by some of
those ships testing and other naval operations. But, um, right now, usually that then the Navy
would be required to consult on those under the Endangered Species Act, and they, I believe,
would be dissuaded from doing anything like that in the breeding area when the right whales are
down there and I can check with my colleagues in the south-east to make sure that's true Or to
verify that, that's how they're still doing it.
Thank you, Colleen.
Thank you, Robert. OK, last step for this evening, it's a question from Michael. I actually think
you potentially asked this question in your comment, and it might have been answered, but I just
want to come to you to make sure.
Yeah. I was just wondering, what time of year the right whales are coming through Area two.
Area two is a tough one, that's a relatively new area for them, we have had. So, we have a
program called dynamic management area. We do voluntary speed reduction requests when we
know, when, we have seen whales or detected them acoustically in an area. And in Area two,
over the last few years, there is very commonly within area two speed reduction request out
Right whales, seem to be using that area of many months. It's a little bit different. Each year.
They're shifting around It appears to be available Copepods are spilling out of the Bay. Um
know, they're there in the same months that that the proposed area closure there. Also there in
other months during in the year. And you know that the discussion of Right Whale migration, it's
not like gray whales that go north and south on the California coast. It's more like if they need to
breed, they go down to Georgia and Florida where there's lot less food. So, the so, the cows are
there, they have their calves there and they're accompanied by a few maybe future moms and a
few males, but if they don't need to go down there, they can stay where the food is and they're
going to be where the food is as much to do the ecosystem changes and climate change,
including a shift to Canada. But one of the areas in US waters where there is still food is that area
in LMA2 south of the islands. And it is not, not necessarily year round, every year, not
necessarily every month, every year, but much of the year. There were right whales in that area.
Thank you.
OK, Colleen, I think unless anybody has any last-minute questions that they would like to give,
we are just about out. I'll take this opportunity to remind folks that at regulations dot gov, using
the docket number, which is highlighted on the screen, it's NOAA dash NMFS dash 2020 dash
0031. You can search by the docket number, and that's how you can provide written public
comment.

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If there aren't any questions, I'd just like to thank everyone for joining us tonight, and for your
comments tonight, or any written comments that you send, as well. I entirely agree. This is not
the most accessible way for everybody. I wish we could also meet in person, I think in the future,
we might do a combination of online, and in person when we're all allowed to be in person
together. We have tried, as Kara pointed out, or mentioned earlier, we have tried to be as
accessible as possible. There is a lot of material on our website, including information on how
you can engage. There is, again, a lengthy recorded overview of the documents. And the
documents themselves can be found there. There's also a seven, or eight page summary of what
would be in the proposed rule, so please do take a look at that. And, I appreciate everyone's
participation tonight. Thanks, everybody.
Thank you. Thank you, everyone for joining.

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Public Hearing 2
Massachusetts (Outer Cape and LMA1) and New Hampshire (LMA1), Wednesday, February 17,
2021, 6:30-8:30 pm
If you want to provide comments tonight, as Kara’s already said, please type “comment” into the
questions box. And if you change your mind at any time, you can say pass when we call your
name, or you can write pass into the queue. If you're joining by phone only, we will ask you to email Kara Shervanick so she can unmute your phone and allow you to participate, and Kara will
provide you with her e-mail address shortly. For those of you that want to give your comments in
writing, rather than speaking tonight, please see the blue box at the bottom of the slide. Written
comments will be accepted through March first. Following the directions listed in this text box,
we've already received nearly 15,000 comments, including primarily comments generated
through environmental organization campaigns that are somewhat duplicative, but also including
at least 260 individual comments. If you've commented and can't find your comments posted yet,
please have patience, we'll tally duplicates but we're only posting one of each of the duplicate emails. And it takes us some time to go through all the mailings to identify which ones are
individual comments and to post those. So we are sometimes a day or two behind. Again, check
our website, the address given at the bottom of the slide, to get copies of all the documents. To
get details on additional public hearing opportunities next week, and to get another opportunity
to see these directions for how to provide public comments. To comment tonight, we're going to
call on each Commenter, based on your indication of the comment box that you're interested in
commenting. And we'll try to let you know who's up next in the queue. Remember, we are
recording this public hearing, and, as always, please be respectful, direct comments at us the
presenters. When you're called on, you'll be unmuted, and then you'll need to unmute yourself so
that we can hear you. For the recording if you can remember to please state your name before
your comment, comments will be limited to three minutes. You'll be muted after three minutes.
And if there's time at the end, we will be able to go down the queue and give people a second
opportunity to complete their comments. If you've already provided comments, but have an
entirely another comment you want to add, you can also be placed at the end of the queue. That
way, we can give as many individuals an opportunity to speak tonight as possible, with that, I'm
going to turn the mic over to Kara to help us run through the comments.
Hello. Yes, so give me one second and I'll put the comment slide up. But on deck we have Eric
Anderson, Christa Early, and Glenn Carol, so be prepared. OK, awesome, as Colleen said, we're
going to be limiting comments tonight to three minutes. I'll try to keep an updated list of who's
coming up to just give you an idea. Here on the screen, we're going to intersperse some questions
in-between the comments. I know some of you have both questions and comments. We're going
to start with comments, and then we can come back to you and take your questions. So, up first,
we have Eric Anderson. When I unmute you, you may also have to unmute yourself. And Erik
Anderson might play a little bit of phone chicken because I see you've joined from several
devices. So I'm going to start with one of them. You're unmuted, you should be able to.
Yes, I think I am I unmuted
Yes, you are. I can hear you

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Thank you very much and thank you for this opportunity. I'd, I've also submitted, you know, I've
submitted some questions and I'm not sure which way to start here, some of them are clarity
issues, clarity issues with regards to how the proposed rules of written are written.
Ok why don’t we start with those. Let's start with your clarifying questions.
Yeah, I, it was, it was any insertions, there is a insertion opportunity for a three foot, um, two
loop two tuck insertion. It is, it probably has the probability of being very popular in New
Hampshire. But there, we understand, when we question, why is written as being a length of
three feet, is it 3, 4 is a three foot loop, or is it A, is it three feet from the second tuck? um, it's
kind of a technical thing. And I just do want to say that it was a surprise to us. I represent the
New Hampshire Commercial fishermen's Association. We have a lot of fishermen in a trip
switching over now. It was. It was unknown to us. The potential implementation of these
regulations will going to be all the way out to 2022 they started to complain like guys that are
switching over the gear now without a lot of clarity. And what they can use for insertions are
don't know if there is, if they're making these, these corrections in compliance with the Final
Rule. So it's, it's caused a little bit disruption in the fact that people are trying to and to enter this
process and comply, but they have very they have, There's some confusion in the direction that
they're proceeding to know if it's the right direction or not. There's a lot there is some ambiguity
in the way the rules are written.
So, Eric, if I could take a shot at answering that, and thanks for joining us tonight. Um, I think
there is some confusing to some confusion because Massachusetts is implementing state
regulations on a much faster timeline. There'll be finalized soon and that might be sweeping
some New Hampshire fishermen along with them. But we do not yet have a final list of approved
weak insertions. And the what our regulations is going to do is it's going to, um, identify the
specifications that have to be met, not necessarily the list of approved regulation or approved
insertions or, as Bob Glenn likes to call them Contrivances. So, you know, one insertion example
that we know is working and would be acceptable is the sleeve that's used by some of the South
Shore lobster fisherman that they that they invented. And the line that I described that some of
the Rhode Island boats are using. I am not sure if the I know that we had some knots early on. In
Maine DMR’s testing that looked good and more popular, we're not certain I don't have the list
of knots that have passed the 10 test, um, average breaking strength, Yet, we're still working on
developing that list. So I actually think that it might be best to tell the New Hampshire fisherman
that they're probably not going to need to do this right away, although, we would love weak
insertions to be in place earlier if that's possible. But I am concerned that they might be using
insertions, that aren't going to be on the final list. We're not sure yet. When we do have a list,
we'll be preparing a lot of outreach, documentation, including videos, we hope, as well as
illustrations So that each insertion that's approved will have some clear documentation of what is
meant and that will help both enforcement and help fishermen when they're modifying their gear.
Yeah, that's appreciated, but I had to modify the at least, a newsletter or a news broadcast, to say,
to these people that are very anxiously trying to participate, say, stop, and that's kind of a tough
thing to do. It's always more often that it's hard to engage people. You have people I'm trying to
engage right now, and it's almost wise to tell them to stop.

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Wait, since you have, since you have them engaged. I mean, in a way, their field testing before
they have to, we would love to hear about how it's going if they've already done it. And we also
would love to make sure that we've tested the configuration that they're using. So I can have our
gear specialists get in touch with you. So we can get an example of what's currently popular in
New Hampshire, and we can work with Maine DMR to get that tested and see if we can get that
added to the approved list.
Could I add while it is Fresh in my mind? The 0 to 3, 3 miles. The insertion is 1. 3 to 12 is 2. 12
and beyond is one. Why is it? What is the rationale? And in reducing the insertions from 12 to 12
to greater than only one insertion seems like there would be more, but especially since two
insertions at 3 to 12.
That's an excellent question. And the more insertions and the lower they go on the line. The more
protective they are to whales and the closer they come to being assessed as a weak rope. So the
more conservation benefit is credited to them in the decision support tool. The configurations
that were proposed initially, I think, that was in Maine DMR's proposal and it was based on.
Actually, measured forces on line's at various depths and with various sized trawls and it. And so
it includes, you know, those depths and number of insertions that they felt was most likely to be
operationally feasible without parting more lines than fishermen were, felt safe, parting so due to
reduced gear loss for safety reasons. That was proposed by the State of Maine. We did consider
it in the decision support tool and with all the other measures that are in there for the region, we
determined that we were getting at least a 60% risk reduction target. But as you're pointing out
more insertions and insertions that go deeper would get a greater conservation benefit.
Thank you. I do have a couple more comments, but I've taken up. I'll go to the end of the queue
again. So, let somebody else take a shot. Thank you.
Thank you for those questions, Eric. Next up, we have Christa Early
Can you guys hear me?
Yes, Christa, we can hear you.
Perfect, OK. So my name is Krista Early, and I'm an advocate with environment North Carolina.
We're a state based non-profit dedicated to protecting our air, water, and open spaces. I'm
testifying today because North Carolina has a special relationship with one of the impacted
species, critically endangered North Atlantic right whales. Each year, expectant mothers migrate
south to their calving ground, which extends from the coast of Cape Fear North Carolina to
Southern Florida. This winter, we celebrated, as our scientists have spotted right whale calves off
our coast. But we've also grieved as two of the calves have been found washed ashore on our
beaches in North Carolina. For a species whose protection has continuously declined over the
last decade to less than 370 whales. These deaths are especially heartbreaking. from our North
Carolina Beaches and Ocean where these right whales swim to our mountains and plains we’re
blessed with an incredible legacy of natural beauty. Our legal framework featuring cornerstone,
Environmental laws like the Marine Mammal Protection Act and the Endangered Species Act
prioritize actions that prevent extinct extinction and keep our wildlife safe and healthy. As

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written the proposed rule violates these bed rock environmental laws as it fails to protect right
whales from one of their top causes of death, fishing, gear entanglement. I urge you to formulate
a much stronger final rule keeping in mind the following consideration. The draft rule is based
on an outdated population data. We need to use the most date most recent data available.
Additionally, the proposed seasonal habitat closures and the rule will not do enough to prevent
right whale entanglement in fishing gear. The proposed closures to vertical lines are too small
and too short in duration. The third point is weak rope. Another major tool used in the rule is not
a proven, effective solution to preventing fatal or seriously damaging entanglement events.
NOAA was petitioned twice, once by the conservation law firm, Foundation, and others, and one
by the Pew Charitable Organization for Emergency Action in recent months to create closures.
As the proposal recommended, NOAA should take emergency action now. The agency should
close certain areas to the use a vertical buoy lines immediately, while a better package of rules is
developed for are using updated science. We envision that this package would include a plan that
closes certain right whale habitat toward fishing and starts to create a path for the eventual broad
scale implementation of ropeless fishing industry. Today, I urge you to uphold our legacy of
environmental protection and do everything you can to save our North Atlantic right whales.
Thank you, Krista. Glenn Carroll, you are up next.
Can you hear me?
Yes, Thank you.
My name is Glenn Carroll. I'm coordinator of Nuclear Watch South, and we're an environmental
group in Georgia. And I'm appreciative of the scope of the EIS and to that, I would say, what a
tall order, NOAA has such a big habitat, and such a dire situation. As you know, we lost one of
our precious calves this week in Florida, um, to the scope. It is baffling how you describe very,
um, well, how dangerous noise is to these creatures, and yet then decide that it has no impact.
Um, and I'm frankly, I'm not positive how that intersects with the fishing gear as much as I think
of how it intersects with the ship strikes, which are more the hazard in our region. I thank you for
posting the link to that rule. Thank you very much. I want to share with you, we didn't know that
the whales had habitat in Georgia until NOAA had already permitted the US Navy to build a
massive submarine site and when a baby whale showed up on an island, there was a study and
we found out for the first time in the mid-eighties. Right whales were visiting Georgia. We did
not know that. It became our state mammal, Georgia's State Marine Mammal, is the North
Atlantic right whale. And to my knowledge, NOAA has never analyzed the impacts of the U S
Navy activities on the Whale. We, have not had hearing in Georgia since the original EIS in 19
79, which led to the permit for the king's base submarine base. So I'm here to appeal that we do
be on NOAA’s mind as important, habitat concerned citizens. And for hearings, I thank you for
doing the strongest measures you can. We've already made deep changes in our attitude toward
the whales, and now it's the time to do that before it's too late. Thank you.
Thank you. OK, Max R, were e coming to you. Yeah.
Hi, can you hear me?

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Yes.
All right. Hi, my name is Max, and I'm a senior at Saint Anselm College in New Hampshire, two
years ago. While attending a Right Whale event at the Massachusetts State House, I learned of
the devastating reality that the North Atlantic right whale population faces. Right whales are in a
steep decline, as there are only about 366 remaining in the world. Additionally, only one quarter
of that number are females that are able to give birth. Since I started following this situation in
20 19. The numbers have not only plummeted. But there has also been very little progress
towards solving entanglements, the leading cause of death for right whales. It seems that every
few months there is a report of a new Entangled whale off our coast. Just last month, there was a
severely entangled right whale found off the coast of Georgia with blue fishing line trailing
behind it. The photos are horrifically gruesome to see. And this poor whale has probably been
trailing this gear around wrapped around its tail for months on end. When do we say enough is
enough? Right now, there is more at stake here than just the safety of the whale's. We also need
to consider the men and women who make their living on the water. The facts suggest the facts
all suggest that the widespread implementation of ropeless fishing gear is a necessary step in
preventing a huge amount of needless right whale deaths while also ensuring the safety of the
fishing industry. The transition to ropeless gear is less of a matter of if. But a matter of when, if
our government does not properly lead and aid in the transition, to ropeless fishing gear in 20 21,
fishermen may ultimately be pushed out of pushed out by further closure of New England
waters. And right whales may continue to die off a tradition, a transition to ropeless and a federal
funding program is needed now. We don't have time to waste. Thank you.
Thank you. All right, at this time, if there's anybody who is joining us by phone and has entered
their audio pin, but cannot see this screen, or does not have a chat box, I'm going to say my email. If you will just send me an e-mail, then I can find you and unmute you. My e-mail address
is K a R A, dot, S, H, E R, V as in Victor, a N I C, K. At NOAA dot gov, K, A R A, dot, S, H, E
R, V As in Victor, a N I C, K at NOAA dot gov and I'll also put that in the chat in case you know
someone who's joined by phone but isn't able to use the questions box. Sheridan, I'm coming to
you next. I've unmuted you, you should be able to unmute yourself. Sheridan, O’Connor, can
you hear me? OK, no fear, we're going to come back to you. Colleen, we're going to take a
couple questions now. Stuart Jones coming to you now. You should be able to unmute yourself
Stuart Jones, and ask your question.
Yeah. Can you hear me OK?
Yes.
Yeah, I was just curious if there was any talk of the increase in the reduction by doing a buyback
program, like you did with the Groundfish know a federal permit or a lobster license buyback to
reduce the end lines. You Obviously, know, like in the state of Maine we have 800 trap limit so
every endline out of water would probably add to their reduction and hopefully in the long term
would increase that.
So that's a great question. Um, we did meet with the Atlantic States Marine Fisheries
Commission they had a group that was whale. A whale/lobster working group that discussed a

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number of possible ways to reduce the number of end lines through fishery management options.
And I'm not positive that this specific one came up. But that's the kind of thing that we would
consider doing if we had the funding to support that. It didn't get into rulemaking in the end. It
didn't have a lot of support, and it was very complicated. Particularly in Maine, it's difficult
because past buyback programs like in the ground fish fishery are based on fishing histories.
And because of the size of the fishery in Maine, the reporting has been at about 10% of the
fishing fishermen, fishing of the participating fishermen. Not 100%. So, we don't have as
accurate histories in Maine as we have in some of the other states, where they have 100%
reporting, particularly Massachusetts, where they have a detailed reporting. So, at this time, that's
not that's something that's being done. I do think that and maybe Chao could have input. I think
the Social Science branch at this north-east Science Center is looking at potential economic
futures or social science choices that could lead towards less rope and buyback might be one of
the things that they're considering. That's an ongoing study, so it's, you know, it's a year or so
from being produced, I think. Chao I'm not sure if you're familiar with that work.
Well, thank you. Sheridan O’Conner. I'm going to come back um, Sheridan O’Connor if you can
hear me. Oh yes I can see that you're unmuted. Can you hear me? We're not able to hear you.
You might try to find your audio settings and make sure that your microphone is, is either your
computer, if you're using your computer, or if it’s your headphones if you're using your
headphones. Well, we're closer were closer, Sheridan. I'll come back to you next, OK. All right.
Brian Sharp, I'm coming to you. I see you have a question and a comment. So you. Just let me
know which you are going to start with. You should be able to unmute yourself.
There we go, thank you Kara. I can start with the clarifying question first, if that's OK. In the
economic analysis, for when considering the costs and gear conversion you mentioned in the
presentation is going to be about $2 million, Does that? I apologize if I looked through and I
could not find this in the document, but it may be there, Does that take into account the
replacement savings of cure current gear that's increasing the end of its life span? The kind of
depreciation cost?
We do, we, all the costs now are extra-long, so it does not include, like the normal use of the
gear, if they need their gear annually right, or the ropes So we, we also do distribute the cost. So,
our assumed, like life span of some ropes are like six years. We have, like, cost added to each
year. The extra cost to they're like normal use of the ropes and other gear.
To clarify, are you mean that each in each year, you assume one sixth of the line is being
replaced with new line?
Yes.
Brian, does that answer your question?
Yeah, thank you.
OK. Awesome. Are you ready to give you a comment now?

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Yeah, absolutely.
OK. Awesome.
Good evening. My name is Brian Sharp, I direct the Marine Mammal Rescue and Research team
for the International Fund for Animal Welfare. Like to begin by thanking Colleen, and the
NOAA team for holding these meetings and allowing me the opportunity. And all of us to
provide comment tonight. one of my responsibilities at all is to be their representative on the
Take reduction team, and then reviewing the proposed rule. There are three areas that I'd like to
briefly address number, one, the risk reduction goal itself. When the team met back in April 2019
in Providence, it was believed that 60% would be the best that we can hope for, and that that
would be enough since said April meeting there have been 13, known right whale deaths and
likely others proving this situation is even worse that we really realized, at the time, with the
hindsight of almost two years of additional data and continued decline of the population, this risk
reduction goal, 64%. That really does need to be increased to 80%. To ensure that the deaths and
serious injuries do not push the species past an irrecoverable tipping point. The second is a
1700lb breaking strength of weak ropes should only be viewed as an interim step, not the
Solution. Weak ropes do not remove the vertical lines from the water column and therefore, does
not reduce the risk of the entanglement itself. We know that weak ropes will not protect calves or
juveniles from lethal entanglements. Of all. You know, the study that was done showed sub
adults and adults. It also does not protect adult whales with chronic entanglements from the longterm health impacts of those entanglements. And then, finally, the transition to ropeless; we urge
the agency to increase the incentives and assistance to fishers transition to ropeless fishing.
While we recognize that progress has occurred with the inclusion of ropeless in some areas of the
plan, more needs to be done and fishers need to have a streamlined permitting process that
allows them to thrive on ensuring the survival of the species. So again I want to thank you for the
opportunity to comment, and we'll be providing more comprehensive written comments. Thank
you.
Thank you. Sheridan, we're going to come back to you OK. Let's try again. I think we're close.
All right, I've unmuted you. You unmuted you. OK, you're unmuted. Can you hear me? We're
not able to hear you at this time. I see that you, why don't you try in your audio, the audio bar,
click phone Call, then use the numbers. It gives you to dial in, making sure to enter your audio
pin, then we'll come back to you. OK, let's see who's next on my list, Elizabeth Clemmie. You're
unmuted.
OK, I'm all set?
Yes.
OK, so basically, I will be submitting comments that are a lot more detailed on the specifics and
the science, if you want to call it that. But my basic comment tonight is, I've just been involved
as a lay person, and a concerned citizen, my entire adult life. I'm 61 years old. Um, and it's the
same rhetoric that's been going on for 20 years. I get the plight of the lobstermen and the
fisherman but we have whale's that are not going to be here, potentially in five years, they can't
come back. That's the, that's the prediction. We have technology that does amazing things all

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over the world, out of space, on the ocean floor, why we cannot subsidized government. But with
the government, with our tax dollars, cannot subsidize these fishermen, so they can afford to use
ropeless gear. Immediately, this has been talked about in the ropeless gear has been talked about
for 20 years. It just seems like it's just a lot of rhetoric, It keeps going on and on and nothing
happens and the whale's keep dying and we just have less and less of them. And we keep having
hearings and we keep meeting. And we keep talking about how we're going to save them. And
we're not so I I've read through a lot of this. I'll be more detailed in my, in my comments when I
write in, but my we're just not doing the job. And these meetings aren't helping and nothing's
getting accomplished except we're losing whales. So it's all very disappointing to me. Um, it's all
very frustrating and for a lot of other people. And I don't think the fishermen need to suffer I
think we can subsidize I think the government can subsidize and create and subsidize what they
need to get started to stop being a problem for the whales. You also have ship strikes. I think we
can do a much better job at monitoring where whales are and so that so they can avoid ship
strikes. And I guess that's pretty much my comment.
Awesome, Thank you so much. OK Sheridan, I have a really good feeling about this.
Can you hear me?
Yes!
OK, great. Hi, my name is Sheridan O'Connor and I'm currently a vet student at Virginia Tech. I
attended BC for undergrad Boston College, where I was lucky enough to spend time by the
water, visit the New England Aquarium, and where I really solidified my dream of becoming a
veterinarian. I've learned about different animal species, but my favorite are the different Whale
species that inhabit our oceans and seas. We studied many over the course of vet school so far.
But the one near and dear to my heart, definitely the North Atlantic right whale, because it
desperately needs our help. Right whales are critically endangered. And soon could reach the
point of no return from extinction. Scientists estimate that in five years, right whales could be
functionally extinct, which means they could die off in our near future if we do not act fast and
take swift conservation measures now. I have poured over the data from venerable scientists,
marine biologists, and veterinarians. That show 86.1% of right whales have been entangled, at
least one, and more than half of them entangled twice. Some right whales had been entangled in
fishing lines as many as eight times over the course of their lives. We cannot keep letting this
happen. We cannot fail right whales and have them continually become entangled in fishing
gear, new technology, to prevent entanglement, ropeless gear, or pop up gear to prevent right
whale entanglement, while still allowing fishermen to continue to harvest. There do not need to
be closures up and down the Eastern seaboard. If we start to implement ropeless gear now, this
gear is safe, it works. And it can help save both fishermen and whales. As a vet student, a
biologist and as a human who cares about how our actions today have great consequences in the
future. I'm asking you to please create a ropeless gear permit program now so we can get gear in
the water before. it's too late. We owe it to the North Atlantic. Right Whales to do all we can.
And this is the strongest start. Thank you.
Thank you.

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OK, next is Nina. It should be unmuted.
Yes. Thank you very much for this opportunity to make a comment on this very important issue.
I appreciate all of the information that has been developed thus far this evening regarding the
North Atlantic, right whale. I represent the coastal black women's ocean memory and
conservation Collective in the state of Georgia. As you all have so eloquently stated that
Georgia, as one of the southeastern states, where these North Atlantic, these beautiful creatures
calve each year. I also represent the faith community. This is a part of a larger question about
the, biodiversity of life, but the vitality of this species. That is on the brink of extinction is deeply
troublesome to us all. I believe one of your persons on the call attendees on the call this evening
mentioned the King's Bay Naval Base in which the, whales have calved in this area for many
decades now. I had the opportunity earlier today to read your DEIS and some parts of it was a
very troubling regarding large whales, that anthropogenic noise can impact whales both
physiologically and behaviorally. Physiologically, noise causes a stress response in the North
Atlantic, right whale, over an extended period of time, physiological stress can impact marine
mammal health by altering metabolism and energy stores. Decreasing immunity and impacting
reproduction, noise can also impact behavior, including initiation of avoidance behavior in large
whales, changing communication patterns that can reduce mating opportunities, and interrupting
feeding behavior. The physiological impact of these behavioral changes is unclear but could
impact nutritional health and reproductive success. Small populations with limited home ranges,
may be more vulnerable to the physiological impact of noise. Given this information, impacts of
noise on large whales is likely to be low, negative, to negative. I find this conclusion and this,
this very small paragraph to just be incomprehensible and I just don't understand it. However,
given that the Naval base is here, we know that the testing, the submarine testing that is done
here on the Coast it does impact the whales. And I just implore you all to make a better decision
in terms of the vitality and regeneration of the North Atlantic right whales. Thank you.
Thank you. OK. We'll take a question at this time, Marin. Marin, you should be able to ask your
question now.
Yep. So those are the question, my husband's lobsterman. So in terms of the insertion points for
the different, you know, three miles, and then what does it, I don't have in front of me that slide,
six, and then out to 12, you have it ideally, with 50% in state waters although that will be
different for Massachusetts, and then 25%, 50%, And then 35% outside, 12 miles. But I just
wondered how strict the enforcement was, and I want to say that I am supportive of those
measures, but in terms of picking up, you know, 6 to 8 trawls, and moving them from one spot to
another. And you've got all that rope on deck. And you've got two blue lines per trawl, and now
you're trying to measure out you know, 600 feet for the 25% mark. That 50% mark, and then
even deeper for that 35% mark. I'm just curious what enforcement will look for that, because you
don't want to make it too burdensome on these guys, but that's a lot of rope. And you've got 160
traps on board, and you're trying to offload them And you don't actually know where you're
going to go. Know, you get out there, and you look at all the effort, so you can pick your spot.
Um, so you know they have to It sounds easier than it is, but they're going to take out the sleeves
or the weak rope points and then they have you know navigate back to that that marker. So how
strict will enforcement be for these guys to give them a little leeway on that stuff?

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So We don't have our enforcement plan completed yet, but I am if it's not operationally feasible,
it's not going to be effective. This was developed partly because the feeling was that as fishermen
move back and forth they could connect lengtheners using weak insertion points. I mean, we're
not going to be measuring to feet or to inches, certainly. And maybe not to specific feet but I do
think that we're going to want it to be defensively at those places. Right now, there's a pilot study
being done by our enforcement program. And While piloting, they've already made some cases
using ROV’s to do underwater enforcement rather than hauling gear, and I suspect that that's one
of the ways they're going to try and enforce this aspect as well. Um so you know I'll work with
the gear specialists that we have and have them work with fishermen to figure out how to make
this as easy to implement as possible and include that direction in our outreach materials. But,
you know it's us, the measures are being assessed with those insertion points and if that gets
eroded it's going to erode the effectiveness of the measure's further. So, um, you know, we need
to be as close as possible and, you know, Marin we'd love comments from you, your husband,
other fishermen, on how they could try to do it. I do think that there are some places like we have
heard from a couple of fishermen from Rhode Island that want to use weak rope because they
don't want to have to worry about measurements. And they just want to use weak rope
throughout or weak rope in their top half or third of their line. So, which would be easier for
everyone to not have to put an insertions. But insertions allow fishermen to fish without
replacing their entire blue line. So, there's some savings in that as well. Um, one of the reasons I
think that 10 fathoms insertions were suggested as an option at some of our scoping meetings
was that it's a fairly common lengthener apparently in some segments of the fishery. So, the
states every 60 foot insertion requirement is similar to that. And, you know, we do have some
fishermen without weak insertions being required. They're already fishing with them now, at
every 40 foot. In Massachusetts, well just a handful, or maybe just two. But, um, no, they're able
to do it moving back and forth. So, I think it's doable. Love your input and your comments on,
you know, help us guide you, on how to do it, in a way that's operationally feasible.
Yeah, Can I, can I ask a follow up to that? So if he puts in just more weak insertion points to
kind of cover himself, will you know they say anything to the 25% and 50%. if he's got maybe
three within the top, 50% you know, and then he uses that as because he may use different
toppers with different add ons because he tends to fish deeper. So if he has, sorry toddler.
That’s a comment we like.
He's actually got a baby shark costume on right now.
If I wasn't seen it, so if you, but if he is able to put in more, weak insertion points, then that may
help cover him. Or you know, instead of the 25 and 50% Or is that 25 a magic number? If he's
got something? Above and below it and then as 50%, you know, if there's some flexibility, there
might be easier for him to move gear. Just because not like you said not that not everybody has
the add ons at 60 feet. I know he does not, but I know a lot of other guys do.
So the lowest point is important because whales are using the entire water column. And so if a
whale intersects the rope below the weak insertion, there is no risk reduction as far as we would
know. So the lowest point is probably going to be important. But I think you bring up a good
point and when we finalize the rule, I think we would say, you know, at least, one at 25%, but it

899

can be more and more is, is more is more risk reduction. Um. So it could, we can try and figure
out how to write that to allow for more than one above but we still would probably stick with the
lowest insertion as a requirement.
Yeah, no, I agree with it. Like I said, I'm in favor of this and just, know, especially this time of
year they're out there, he’s only fishing, maybe 2 or 3 days a week picking weather and is
moving gear like crazy to, you know, chase what he can for the price. Yeah, that's 200 Traps on
board and maxes out 'because he's only got two days to fish And all of a sudden is dealing with
trying to re rig buoy lines with all that, You know, thousands of feet on board, so. It's just finding
that balance of how to make this best work with whatever flexibility you can offer them. I guess.
This is the point which sounds like you guys are doing so I appreciate that.
Yeah. And if you send written comments with specifics, you know, with input from him and
other fishermen, on specifics on how to how to write it that way, that's exactly the kind of input
we're looking for.
OK, I appreciate that. Thank you Colleen
Thank you.
So, thank you. OK, Eric Anderson, coming back to you to give, I believe you asked questions in
the beginning, but did not have the opportunity to give your public comment. So, if you would
like to, let me find the right one, if you'd like to give your public comment now. Oh, Yep. Can't
Hear you.
Can you hear me?
Yes.
Thank you. A couple of things. You, you asked for comments on the weak link. Whether it's still
appropriate or not. It's hard to it's hard to speak for the whole community, but at least they've
been in practice for such a long time that it's not a new, it's not, it's not a new requirement. So,
and we think that it has, it has it has a benefit in a multitude of ways. So, we probably want us to
stay, say that, to keep them included, again, I represent the New Hampshire Commercial
Fisheries Association and trying to, we're trying to get this, this thing resolved. There is one
provision in there for the state waters in New Hampshire might be small, but it's still an
important thing, five trap trawls were required to reduce down to one buoy line. Um, normally
they had two. If anything is to be considered to reach and reduce it down to four traps, one buoy
line. Um, These guys have used to buoy Lines, eliminating one, creates a lot of confusion
operationally in knowing where the gear is and because two buoy lines always marked the both
ends of the gear, if they have to go to one, we would like to see shorter trawls, um, be reduced to
shorter trawls four trap trawls vs. five, it's a small matter, but it's a big matter for some of these
fishermen here. Um, I know you are able to respond to the variety of comments that have, um,
uh, promoted ropeless fishing gear. And they seem to come from, with no offense. The
comments are legitimate, but they come from an aspect of the commenters that don't have a lot
of experience in the fishery. Ropeless gear is just not as easily implemented. As saying some

900

words, it has some very, it's expensive. It has some operational difficulties that would upset the
fishery, and cause more damage, or more, more of a chaotic condition as the fishery tries to
promulgate itself. Um, that needs to be overcome. There is some technical aspects of it that have
been accomplished but there's some operational aspects of it that have a long way to go before it
can have some feasibility. And I think that has to be expressed from the industry or people that
work with the gear. You just can't say this, a just have ropeless fishing gear in. It has the ability
to solve some things. It has the ability to create tremendous problems in other aspects that have
been discussed within the TRT. So I just want to get that that point for us. Anything else? Thank
you very much for this time.
Thank you. Does anybody, I don't have any e-mails. Does anybody have any more public
comment they would like to give? They're saying questions. Does anybody know any good jokes
while we wait?
Kara did you get any e-mails for people on phones?
I did, I did not. Let me just double-check though. No. Nothing in my inbox.
So it looks like we can probably wrap this up tonight.
Just a couple of things. One second.
One more scan? While we're scanning, I'd like to thank the take reduction team members that are
on the phone tonight, including some of our original team members. I think there's about 15 team
members and alternates on and, um, a, this has been a really, it's the most busy and most active
of all the take reduction teams. They work really hard and it's a really hard job trying to come to
consensus across such a large group of stakeholders. So I really appreciate their participation and
their joining on the call tonight, as well. So maybe everyone's going to be sending their
comments in writing, which would be great.
Colleen, I do have one comment somebody made. I will let them speak. Rain, You're unmuted,
you can make your comment now.
Can you hear me?
Yes.
Yes.
Hello. I was just, you know, I've been following along with all of the webinars that you have had
and you've put out and it's been going on for months. This has been going on and there hasn't
been any real significant change. And I listened to the fishermen and they're trying but I feel like
their Interests would be better served if the whole industry was shut down until they could figure
out a way they could agree to get back out on the water in a safe fashion. I live on Nantucket,
we're picking up fishing gear along. Every beach along every massive tangles of them. There has
to be a better way.

901

Thanks, Rain.
OK, Colleen we have one more in the queue. OK, Jim, you should be able to unmute yourself.
Hey, Jim, can you hear me?
Is that better now?
Yes, I can hear you.
I lost that screen for a moment. Yeah, I've got two comments I'd like to make. And some are
relative to the last 2 that you had on. I've been a commercial fisherman for 32 years. And the last
25, I've served as either a representative or an advocate for the fishing industry. Including terms
on a New England Fishery Management Council, I would like to caution you. And the people
who are trying to help the right whales. That is not as easy as what it may seem. one of the
questions had to do with enforcement. Enforcement at sea is basically relative to what's written
on the paper. You have a lot of young coastguard men. Trying to enforce these regulations with
probably not much of an understanding of what it takes to write these regulations so that they're
enforceable and fair and workable. You want these to work for the whale but you need them to
work for the fishermen as well. So the people that think that you can shut down a fishery,
consider shutting down your own occupation while you fix a problem. It's not that easy. Let me
say that I've never been a lobstermen, I've always been a commercial mobile gear guy. And there
are several problems that come in with the mobile gear and the fixed gear. And that's being able
to identify where that gear is. So, we don't have gear mishaps where we tow up their gear, tear up
the gear, and we're both at a loss. At some point, you need to identify where this gear is being
fished. Ropeless gear will not make that possible for the mobile fleet. There's been discussions
about how one lobsterman can identify another one's area. I have yet to hear someone say, How
does the mobile gear or, even someone with a trawl gear, touch trawl gear, Gillnets, In other
words, identify these areas if they're not part of that program. When, when you have the
unidentified areas or lost gear, and they’re towed up by a mobile gear fishermen. I'm not sure if
this rule still applies, but I believe it does. If I was to take up someone's mobile gear with
ropeless gear at a tremendous cost, I can't even return it to him. I have to throw it back overboard
and leave it where I found it. There's a lot more to this than what meets the eye. So while we're
trying to save the whale, we do not want to lose the fishermen and I thank you.
Thank you. OK, we have 1 last 1, I believe, and I check my e-mail while we're on the last one,
Joel, Erickson. Joel, you're unmuted.
Hello. Can you hear me?
Yes.
Great. Thank you. I'm pretty new to this whole situation with the right whales. And I was
listening to the meeting last night, and tonight. And I'm wondering if any consideration has been
given to trying some method. Somehow, letting the right whales themselves know of the
presence of ropes in the water column. Where they're visually or probably more acoustically with

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some sort of pinger or something attached to the line to just basically say, hey, danger. There's a
something in the water that you can't see, but you can swim into and get entangled with and stay
away and swim around us. Um, you know. It seems that there's sort of an assumption that the
right whales may not be as intelligent as, as they may be and we really don't know. Um, and I'm
wondering if there's been any research or any thought given to that, you know, allowing them to
sort of see the lines or know about the lines. Similar, for instance, to signs on a freeway or a
highway that alerts drivers to you know, upcoming invisible danger. Um, so that they don't
because those lines are pretty thin, you know. They can't see them and they just swim into them.
So if there's some way that we could communicate to them, hey danger, stay away, swim around
us. Because the lines to them, the lines just must appear randomly and sort of Ah. Yeah. They're
in their normal course of Migration. And, you know, if, if we could somehow shift the burden
and rely upon their intelligence, maybe we could shift the burden away from the humans and the
fishermen, um, to allow them to know of the danger and avoid it. Thank you. This has been
really great, really, educational. And I really appreciate all the effort that's gone into this. Thank
you.
OK, and I can actually take a shot at answering your question a little bit. New England Aquarium
has done some studies that indicate that, right whales may be able to see red line, at least near the
surface column and that's one of the reasons some fishermen in Massachusetts try using a red
line. We don't really have enough information to know, for sure. And we don't know how far
down in the water column, color would be visible to the right whales. Sound does not work with
baleen whales. We do use pingers on gillnets, to alert Harbor Porpoise, that the nets are there, it
makes the nets visible to the porpoise, or alert them that there's something there, But sound
doesn't work as well on baleen whales we have trouble using sound, even trying to herd whales
When they're up in dangerous locations, the baleen whales themselves, they react unpredictably
to sound if at all, a feeding right whale probably wouldn't react at all. And, I mean, you have
heard some people talk about a calf, that was struck, um, recently off of Florida, right whales are
not on, you know, periodically, hit by vessels. And the vessels are making noise and the whales,
if they're reacting to the noise, might be coming up under the vessel. They're not reacting in a
way that lets them avoid being hit. We have seen a couple of videos of right whales encountering
line, not necessarily getting entangled. Recently, a crab pot, a right whale, in the South, came
along a crab pot and it almost circled there, their eyes, you know, not looking frontwards like
ours they're sort of looking to the side and down which is where their food would be. And it sort
of circled that pot or that line, as if it was trying to figure out what the heck did I just bump into.
And that kind of behavior, if it actually gets entangled, and then starts thrashing, is probably
what would create what creates these complicated entanglements. So at this point, from what we
do know and have observed, they're not able to detect and avoid, on their own.
Thank you.
OK, Colleen, I, There's nothing left in my e-mail. We have one more person with someone who
has commented previously, that had another comment, And I think that's probably the last one.
Let's see. Hi Rain,
Hi, Thank you for letting me speak again, and thank you for all the hard work that you're doing
and, to the fishing community. I'm not cold and heartless. You know, and I don't remember the

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gentleman's name. That said like, if my industry was in trouble and being regulated like this, how
would I react? But my response to that is, like, any other industry that was causing so much harm
would have been shut down long ago. You know, like, we know the migratory paths of the right
whale, we know where they are. But yet, we're still killing them. Like, it's just, it's unacceptable.
Like, we just have to do more. And I know the fishing community are really ingenuitive people.
Like, if we leave it up to them, to maybe figure out a way they can get back safely out onto the
water, we might have new technologies that, none of the scientists could have come up with.
You know? Because, we're not fishermen, and I think it should be shut down, shut down until
they can come back out safely. What, 366 whales left? We don't have time to do this anymore.
Thank you. That's all I have to say.
OK, let me just check on my list of things Colleen you're on mute.
I was just saying I don't see anyone in the queue at this point.
Erik Anderson has one more comment.
OK, and I would like to say please remember direct your comments to us and not at each other.
I'd appreciate that. That was one of our operating protocols. And I let that slip a couple of times.
So, um. Eric?
Eric I might need to come unmute you, hold on one second. OK, you're unmuted.
Yes I am? All right. Thank you. I think I've thoroughly worn out my welcome and, you know,
with comments, but thank you for the final opportunity. I just want to say that, you know, this
has been a as far as a TRT, it's been a long, long journey to try and come up with some solutions
here, and I think there is a prospect of them. This, this plan has to have a chance to work, and in
a way that works for both um, interests here. But I know whether the complete knowledge of
everybody that's listening in is, unless our Canadian counterparts, come to the table with the
same sincerity as we have this, we're going to have some problems. It upsets this community or
our domestic fishing community to see that they're putting in such a variety of effort are sincere
effort to try and, you know, take this issue on and in come to resolution with it. When we see that
there's probably been a lack of response from the Canadian, um, government to take it on as
seriously as we have. There is just far, far more, the majority of the mortality and serious injury
that has recently taking place in use. It's caused the device or the downfall of that part of the right
whale population is taking place in Canada. And until that is also addressed, anything that we do
here is not is it is not for not, it will always help. But if it's not equally taken under consideration,
we're not going to have the progress that people expect out of this. And, um, that just has to be
recognized. These whales don't understand domestic boundaries or international boundaries, and,
um, would just hope that the Canadian government could come to the table with equal sincerity
on this issue, or there's going to be a lot more frustration. Thank you.
Thank you.
OK, Joel, uh nope, Yes, Joel Cohan. So I've unmuted. You yell. You'll have to unmute yourself.

904

Yes. Oh,
OK.
OK, hi. I'm Joe Cohen. I'm from Florida, I'm a wildlife photographer. And my comment is
basically I get to watch the moms come down and give birth with their calves and I get to take
pictures of them. And I really can't stand to watch any more come down with scarring all over
them. The majority of the Whale's I've seen over the last three years all have scarring all over
them. It's from the ropes and gear being entangled around them. It's really hard to stomach it.
And so, yeah. I want I want something to change, I don't want to hurt the fishermen. I understand
that it's a livelihood. It's uh, it's a tough thing. I do believe ropeless, I've gotten into this a lot
recently. The last year I spent the summer and the fall, trialing ropeless gear with commercial
fishermen and a few different states that so much. I just I want to want to get involved with this
and ropeless gear does work for sure. It. It has potential to solve many issues. Of course, it's not
an absolute perfect system yet. It's not completely done, but it certainly has great potential and
the trials, I did it. It absolutely works. And, and from my perspective, there's even a chance that
there's a financial part of this that the fisheries side has or the fishers side hasn't realized and that
is that you may not lose as much gear. There's a possibility where you won't lose as much gear
where people won't mess with your gear as much. Um, so, I know there's a lot of concern about
ropeless and all that, but I do believe it's, it's very close and, and should be very, strongly
considered. So, also, as far as some of the other concerns, the Canadian thing, you know, we
have to lead by doing the right thing. We can't worry about other, You know, if we do the right
thing, other people will follow other countries and follow, So. Yeah, that's, that's most of my
comment. It's, I can't stomach watching. Another whale come down here with scarring. And
knowing that 86% of the population has been entangled, and 50% of that has been entangled
more than more than once. And that the female population is 85 or less and that they're not
reproducing at the same rates they used to because they're not as healthy. So, there's all these
things. It's just, it's so, it's very hard and maybe I'm over my three minutes, but anyway, yeah,
thank you. And that's my comment.
You could not see the timer that was going, but you left 3 seconds on the table. So, nice job
staying under three minutes.
OK, Pete, Peter. You should be able to unmute yourself, Peter, and make your comment. Well,
Peter, OK, I see you're unmuted, but I can't hear you.
Hi is this all right now?
Yes. I can hear you now.
It is part question. Having listened to this, I'm a member of the Marine mammals on Nantucket
Island. And my question is this more of a I'm just wondering how much will be available. I mean
I have an opinion a feeling that there shouldn't be anything available to the fishermen and we
should really get into the tech of this ropeless technology. We don't have any more time with the
whales, that's moved. But we also don't have any I don't think we're you guys have a lot of
responsibility. We can't leave the fishermen hanging either and I think that's the bigger fear. So

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you definitely have to, you know, work that out. But bottom line is that we don't need any more
of this entanglement. And I think that the ropeless will work. There are situations. The fishermen
will report and what will happen is after they report, they're going to want to make some
changes, and we have to make sure that our subsidy will change with them so they can improve
the ropeless, so it's not a negative thing anymore. It becomes much larger, positive. So, and I
think generally, the group our group out here, agrees with this. But there are other officers that
may want to talk, and they would add to that. And thank you for what you do. Thank you for if
you all lived for five years through the government. Thanks for still being here at the end. And
have a good night.
Thank you for that comment, Peter. OK, up next we have Tessa. Tessa Brown. Tessa, you, I’ve
unmuted you. You can just unmute yourself.
I just had a question sort of, for other people listening, or because I'm more of a stakeholder in
this, about what sort of development you guys have, or data you have with the ropeless fishing so
far at the point were at. Because so many people are asking questions and want that to come into
play so much sooner. Where we're sort of not even at that point, and have other regulations that
have already been put forth. But just sort of what hurdles and status the ropeless fishing data is at
this point?
I'll, I'll try this one Tessa, so we don't have our ropeless gear specialists on with us today, as far
as I know. But we have NOAA, First of all, we don't appropriate funds. So I can't develop
subsidies by myself or through rulemaking. That's done by Congress. Congress has appropriated
over a million dollars a year, the last two years for us to engage in ropeless research. And there's
also been a lot of private funds and NGO's developing funds, some of whom are on the phone
with us now or listening in now. And this is a partnership between NOAA, fishermen, I would
say fishermen are more or less lead and many of these projects. I believe there are about 14
fishermen participating right now in New England. And I know there is another project going on
in the south-east their offshore, their near shore there, inshore their fishing in various habitats.
NOAA has developed gear cache or a gear library and can lend gear out to fishermen. There are
a number of organizations that are developing this equipment, which is most commonly, it's
remotely uh, the fisherman goes to where their gear is. And they remotely release the buoy. So it
comes to the surface and then they can pull up the gear. The buoy doesn't persist. The buoy line
doesn't persist in the water column. It is retrieved with an acoustic retrieval system. They are also
working on an ability to mark. For vessels, at the surface mark, where the gear is, down below
the space, to Jim Candles point, that a really big problem is gear conflict if mobile If other
mariners, mobile gear users and others don't know, the gear is down there, it can cause a lot of
problems including safety concerns when there's a gear conflict. Recently, the people doing
research at NOAA and others are reaching out to the mobile gear fleet to get them involved in
the research to improve the ability to detect the gear from the surface. So that work is being
done. It's advanced a lot in the last couple of years and particularly over the last year, as
fishermen have been more engaged in doing it, it is still a requirement that they get an exempted
fishing permit. And we're working on making that easier by doing the environmental assessment
work for them, if they follow certain conditions under their permit, they won't have to go through
the whole NEPA compliance and ESA compliance. Those would be conditions that would
prevent, um, prevent risk from the efforts that they're that they're taking. So, it is progressing

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very quickly, it is, it has attracted a lot of public and private funding, you know, Congress, the,
the, the Congressional representatives, particularly in New England, particularly Massachusetts,
have been very supportive of this. And they have funded some gear research. There's now some
social science research being done. And the State of Massachusetts has just initiated a study
where they'll be working with fishermen to consider attitudes and all of all kinds of social
science and other information to determine how to make ropeless more operationally feasible
and more acceptable across the industry. So, it's, it's developing, um, there are still problems.
There are, there, there are still problems under certain fishing conditions. So it's, I would say it's
not fully baked. Operationally yet, but, um, it is something that's progressing and it's progressing
fairly quickly, with the input of fishermen. This is not something that can be done without
fishermen participating.
No, I agree, and I think it's sort of important to have, like, you're saying, the Mobile Gear, people
involved. Because I know it's, like, has a direct impact on lobsterman, and people that are going
to have to consider taking this on, but it's really the whole entire fishery. And people that are
involved that it's going to affect just as much, that might not have, right now, any clue of what's
going on, or how it might impact them. But I think it would be important to get more
stakeholders involved in what's actually going on and how the implementation would actually
take place.
Thanks for the question.
Thank you, Tessa. OK, Colleen, I don't have any e-mails. There's nobody left in the questions or
comment queue. So, I think, um, for folks who are still with us, I put up on the slide, the
instructions for providing written comment. As Colleen mentioned, you know, we sort of
specific details on how we can make this rule better, We'd love to get that in written comment as
well. All of your comments that you've given tonight have been captured, and thank you for
attending.
Yes, thank you very much, everybody, for attending. We have two more public hearings next
week. There was one question about whether or not this webinar will be available. I don't think
we'll be posting this entire audio webinar. We are recording this primarily to make sure we get
all the public comments. But there is a longer presentation on our website at the address shown
here at Fisheries dot NOAA dot gov backslash ALW TRP, where you can also find the
documents and these directions for commenting as well. Thanks very much, everybody. Have a
good night.
Sorry. I was just trying to put the link in the chat, and it started playing.
Goodnight all.

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Public Hearing 3
Southern Maine, Tuesday, February 23, 2021, 6:30-8:30 pm
As Kara has already said, If you're interested in providing public comments tonight, please, type
“comment” into the question box to get in the queue. Um. We will call your name in somewhat
in order. If you change your mind and no longer want to comment, you can type “Pass”, or you
can say Pass when we call your name in the queue. If, if you're joining by phone only, Kara will
be letting you know how you can also provide comments. We'll call on each commenter, will try
to let you know who's up next in the queue. And please remember, we are recording this public
hearing. As always, We'd like you to be respectful and direct your comments at us, the
presenters, and not at each other. When you're called on, you'll be unmuted, and then you'll need
to unmute yourself. Comments will be limited to three minutes. You'll be muted after three
minutes because of the large crowd. If you've already provided comment but want to give
another comment, or if we had to cut you off, we will place you at the end of the queue, and if
there's time, at the end of the night, you might get enough at another opportunity to provide your
comments. If you do not want to come back at the end tonight, or if we can't get to, because of
the number of people here tonight, please do submit your comments in writing. We do want all
your comments. And at this point, I'm going to, shortly, I'm going to turn the mic over to Kara to
help us run through the comment queue. I understand Commissioner Kelleher is with us tonight,
and he would like to thank you all for attending and open public comment session with
comments of his own Kara?
Yes, hi. Commissioner Kelliher I am going to unmute you. Give me one second. I've unmuted
you. You should be able to unmute yourself.
Great. Thank you. Can you hear me?
Yes.
Great. Thank you. For the record. my name is Patrick Kelliher, I’m the Commissioner to the
Maine department Marine resources. And I'm here tonight also speaking on behalf of Governor
Mills directly related to our deep concerns in the direction we seem to be going with protection
of North Atlantic Right whales. The lobster Fishery is the most single. The most valuable single
species fishery in the country. In Maine it comprises one point five billion in economic activity
and touches thousands and thousands of families. While we understand and even support some
additional levels of protection being put in place for north Atlantic right whales, it seems the
agency is moving in the direction of species protection with no care about collateral damage. I
know we're here to focus on the proposal, but I do have to say that the BiOp itself has the
potential to drastically change the Maine Lobster fishery and worse, has the potential to see it
close. I just also want to just raise the fact for the record. It's a very troubling that the biological
opinion hinges on the Canadian Government. For the National Marine Fisheries Service to move
forward with implementation. Excuse me. The national marine fisheries service needs to move
forward the implementation of the marine mammal protection fishing court rules and finally puts
a meaningful pressure on Canada to implement measures that are comparable to the significant
measures already put in place by the United States. The focus more specifically on the rule as it
pertains to conservation equivalency to trawling up Keystone, part of the Department's proposal

908

in conservation equivalencies, And it seems to have been somewhat ignored by the service. one
area in particular was that a trawl with two end lines is equivalent to a trawl with half the traps
and one endline. Again, this type of flexibility is paramount. And we need that type of flexibility
in order for the safety. It's interesting that the agency is cited fishermen safety and gear conflict
for a reason for not implementing this type of equivalency, ironically, it's the reason that it is
needed. Specifically to the closed area, I’d like the first point out, the fact that your decision
support tool indicates the only one closure, if, if to be implemented, will become the most
important conservation area to right whales along the coast. But it doesn't say, however, is the
support supporting that it supports the findings. When DMR mapped out the right whale,
detections against the boundaries of the closure. Always 70%, 73% of the detections were
outside the area. I can see I've got 10 seconds left Colleen, and I don't know if I'm going to get
some leeway from the state perspective here on that timeframe, um, the agency continues to feel
Excuse me, Maine DMR would also like to reiterate, as we did, during the hearing, some of the
phased closures, gear will just move outside of the boundary and you need it really need to take a
look at that about the kind of the collateral damage It could be. It could be more harmful to the
right whales, not to mention gear conflicts. Um, the state is really willing to work with the
agency on a trigger mechanism as it pertains to the closed areas. We have some ideas and
thoughts on that, and we will make sure that we address those directly if you are looking for
comments. The preferred alternatives, for the sake of expediency will state that there are areas
that you have accepted to the Maine plan when we submitted over a year ago. We do appreciate
that. We'd like to speak directly to the issue, of weak point. So, you know, we support the
configurations. We will be submitting and believe that the agency must strongly consider weak
points. They're very practical, given the diverse conditions along the coast. Weak points are a
common thread throughout the zone specific conservation equivalencies that we will be
submitting as part of our written proposals. And again, I want to stress that a one size fits all does
not, does not work along on the coast of Maine. Quickly, I want to thank you for the issue, the
recognition of the gear marking work we've done. It’s troubling though that the economic impact
from the DEIS did not include any the cost associated with that we've done directly and in
anticipation of the rule. So we would ask for that to be corrected. Also, I would, I implore you to
take the time to listen to the industry about implementation days. That is a critical factor here and
we need to make sure that anything that is done is done with the idea of the operation of the
industry in mind. And changing mid-stream will be very difficult. Specifically, I'd want to
comment about Ropeless. Based on the proposed rule, and especially the BiOp the agency is
attempting to move the US lobster fishery in the direction of ropeless. Maine DMR intends to
continue working with, NOAA on the development of this technology, but we all need to work
within the operational realities, and acknowledge that this technology is years away from use at
any meaningful scale. Need to deal with these real challenges before the technology can be
reliable tool to protect whales. Gear laid down on the bottom, without end lines, must still be,
quote, seen by mobile gear fleet. And others within the fixed gear fleet and ropeless gear must
also be able to be retrieved, inspected, and reset by law enforcement agencies who enforce the
lobster regulations. Let's not drive this issue of ropeless just to try to deal with the right whale
issue when we also have to clearly manage sustainably the lobster resource. In closing I just want
to reiterate a one size fits all managing approach will not work in Maine. it's difficult for Maine
fishermen to see themselves as part of the problem when we have not seen any entangled right
whales for more than a decade. It's time for the agency to finally recognize Maine’s risk to right
Whales is very low compared to other areas. The agency knows this yet, based on your proposed

909

rule, compared to the BiOp, the economic harm, is far and away, greater domain, than in any
other jurisdiction. Well, thank you very much, Colleen and staff, for the time this evening, we
will be submitting, written, detailed comments, prior to the deadline. Thank you to the
indulgence on the extra time.
Thank you Commissioner Kelliher. At this time, we're going to move on to comments from the
public. If we have time at the end, we will get to questions but that's only if time allows
depending on how many people are in the queue. So I see that people do have questions and we
are getting them in the questions box. Just know that we may not get to them. OK, up next is Bill
Mcqueeney. I've unmuted you, Bill, so you'll just need to unmute yourself.
Can you hear me, Kara?
Yes. I can.
Thank you. My name is Bill Mcqueeney and I live in Brooksville, Maine. I have been a
volunteer, right whale scientists for more than 20 years. For the past 16 years, I have directed a
school club called the Calvineers that studies the North Atlantic, right Whale. Each calvineer has
submitted a comment letter to you. Tonight, I speak for another group I am part of. And it's
called Mainers Guarding Right Whales. Mainers Guarding Right Whales Is Formed. Was formed
by a group of concerned Maine citizens wishing to ensure the recovery of the critically
endangered right whale. Mainers Guarding right whales supports both short term and long term
initiatives to reduce the impact of the Maine lobster industry on the recovery of the North
Atlantic right Whale. In the short term, we support the implementation of weak insertions
throughout the entire vertical lines. We also support time area closures that reduce the risk of
entanglements, substantially. Therefore, we support Alternative three of the proposed rule with a
50% reduction of vertical lines in Federal waters. And the three closures, Georges basin, LMA
one, and Massachusetts south to the islands where a year round closure, makes sense. Finally, we
support weak rope insertions, be included, every 40 feet in all end lines, in all areas Maine
fishermen used, which is the way they were designed, tested and currently are being used. 1 or
two weak insertions in an end line will not reduce the risk of serious entanglement. In the long
term, Mainers Guarding right whales supports the reduction of gear in the water both through
sustainable effort reduction and ultimately the complete conversion of the industry to Ropeless
fishing. We also support the Maine Lobster fishery regaining its Maine Stewardship Council
certification by adopting the innovations just noted. The Maine fishing industry have proved
themselves to be incredibly resourceful and had tremendous success as stewards of the lobster
resource. Over the last 10 years, 682 whale entanglements were documented on the East Coast in
US waters that includes at least 25 serious or lethal and entanglements of right whales. A recent
study has concluded that, for every documented right whale death, there are almost three more
deaths not documented. Most likely, they are actually 2 or 3 times more right whales killed each
year in the United States waters than we know. We believe this is both a moral and humane issue
that the fishing industry needs to take responsibility for and work to change. Some fishermen are
already working to change and help solve the problem. Mainers Guarding right whales, looks
forward to the day where, fishermen could fish without harming right whales And the right
whales can thrive in their natural environment. We believe both scenarios are necessary and
possible.

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Thank you. Next, Cindy. OK, Cindy, it looks like you're unmuted.
Hi. My name is Cindy Dawn. I am the wife and mother of three fishermen and a daughter that
has a retail lobster business. We will be terribly impacted along with all the other men, women,
and children in the industry. And future fishermen, my grandsons are planning on growing up as
lobstermen as well. Is there any concern for human casualty you are creating? Is this small
number of whales' more important than humans? The Maine lobstermen have always been
conservation-minded dating back to the late 18 hundreds. We have repeatedly been told to and
complied with, painting ropes, which requires months to do and then they asked us to do it again
and again, changing colors and how many spots they want painted. It has been very difficult,
watching my sons and husbands bring all their gear in to comply with these requests over and
over. They also changed ropes, biodegradable bends, put in weak links over and over You have
asked them to modify their gear and they did it. Are you taking into consideration the loss of
income when you pull all of our gear out of the water for repeatedly for God knows how long it
takes. These men do not catch whales. Why are you after them? So intensely with all that has
gone on in the past couple of years. I have watched many, many fishermen's whose families
depend on them to become depressed and unable to handle all that you throw at them. It brings
me to tears just talking about it. What is wrong with a society that cares more about a pod of
whales that are doomed to extinction due to inbreeding then a whole band of fishermen that are
struggling and have no way to feed their families. These men and women, all and all of the big
companies, wholesale companies, boat builders, trap builders, and many, many other companies
depend, dependent on the industry are hurting both financially and emotionally. I think it is time
for you to consider the loss of humans rather than whales. I am sorry, but the children in the
State of Maine deserve your consideration of them. Their fathers are ready to jump off a bridge
and who will care for their families. I am sick and tired of the very men and women who go out
in the cold and risk their lives every day to never be considered in this formula. These men and
women are hard-working Americans that deserve the right to lobster in peace. This industry has
coexisted with Nature Forever. Leave them alone. They are participating in the most sustainable
fishery in the world. They have historically fished these waters. The American Indians have had
their fishing industry protected as should these men and women. It is time to stop this nonsense
and think about human casualties and in closing, I just want to bring up that the ropeless fishing
is never going to work. How are they going to know where everybody's gear or they don't tell
each other where they're fishing. That's a very private thing in their industry And weak links
you're going to end up with more rope in the water tangling up whales than you ever thought of.
Thank you for your time and consideration.
Thank you for your comment. Up next is Sarah Stewart.
Hi.
Hi. Um. I feel very much for people who are having to change their lives because they are
fishermen or related to fishing in this industry. And I can really appreciate how hard that is. Both
personally and well in a bunch of ways. But I also do want to speak up for I have a place in
Maine. I'm also in Massachusetts. And I love whales as do a whole group of people who I go
watching doing Whale watching with. And really, I'm holding the perspective of that. Whales are

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incredibly precious to our planet, and that human beings do have the extraordinary capacity as a
group to grow and change. And I'm a therapist by profession, so I know how difficult it is for
individuals to have to grow and change. But in fact, we can shift into doing different things if we
have to. And the extinction of these incredible mammals who can't actually speak up for
themselves would be forever and an enormous human loss like the many other extinctions that
we cause. Unless we change our ways. So I want to support all being done for the right whales as
much as possible. And, um, and I actually would support whatever is most going to protect them
and trust that human beings will find a way to sort this out over time. Because we are intrepid
and are able to do that. And that's all I have to say. Thank you.
Thank you. Up next we have Maya. Made this joke the other night, but it's not imagine that I'm
running around a crowded auditorium with a microphone. That's, that's me finding you guys in
the attendees list, So it might take me a second, so just bear with me. Maya, you should be able
to unmute yourself.
Can you hear me?
Yes.
OK, great. My name is Maya and I'm an Oceans Intern with Environment America. We are a
nationwide network of state based non-profits dedicated to protecting our air, water, and open
spaces. We have a chapter in Maine called Environment Maine. I'm testing, I'm testifying at
today's hearing, because I like many environment America members love our oceans and wants
to do everything we can to keep our ocean wildlife safe, and healthy. When I was a child, one of
my most memorable experiences was going on a SCUBA diving trip in the ocean. Only a small
distance from off shore. The amount of life was astounding, filled with sea stars, and colorful
small fish, The bountiful life held underneath the surface is one of my favorite aspects about the
ocean. And this memory always comes to mind and people ask why I care so much about
protecting the life, the ocean holds. North Atlantic right Whales, which swim right off the Maine
Coast are one of these animals that call our oceans home. Tragically, this species only numbers
at less than 360 whales. If we don't create strong policies to protect them, this species could
vanish from our ocean forever. We want to create a healthy future for our oceans, where future
generations can continue to wonder at all the treasures our oceans hold. as I did when I was little.
We have to start by standing up for our most vulnerable species, like the North Atlantic right
Whales, as written in the proposed rule fail fails to give right whales the protections they need, as
it doesn't do enough to prevent one of their top causes of death. I urge you to formulate a much
stronger rule, keeping in mind the following considerations. one, the draft rule is based on
outdated population data. To best protect the species, you must use the best available science,
and this means using updated population counts. Two, additionally, the proposed seasonal
habitat closures in the rule will not do enough to prevent right, right whale entanglement in
fishing gear. The proposed closures to vertical buoy lines are too small and too short and
durations. Three, weak rope, another major tool used in the rule is not a proven effective solution
to preventing fatal or seriously damaging entanglement events. Organizations, including Pew and
the Conservation Law Foundation, have recently petitioned NOAA to take emergency action.
And we at Environment America echo those words. The agency should close certain areas to the
use of vertical buoy lines immediately until a better set of rules is proposed using the best

912

available science. We think this set of rules should include larger and longer plan closures for
right whale habitats that prohibit commercial fishing. We also would like to see this rule take
concrete steps towards creating a pathway for the eventual widespread adoption of ropeless
fishing gear. I urge you to do everything you can to save our right whales. We can't let the
species disappear on our watch. Thank you.
Thank you. What's next is. Brennan strong, Brennan, you should be able to unmute yourself.
Yeah. Can you hear me?
Yes.
Hey, thank you, everyone, For your time and consideration tonight. My name is Brennan Strong,
Lobstermen Entrepreneur and Nature lover from Yarmouth, Maine. Can we please have a serious
discussion about pausing the new vertical line, process, immediately, in light of Maine,
Department of Marine Resources, comments? On the biological opinion, the Department of
Marine Resources Comments prove beyond a doubt that the biological opinion is both inaccurate
and incomplete. In the meantime, NOAA and NMFS need to do a study specifically on the
decline in ocean going vessels in 20 20, due to covid 19 and the positive effect that had on the
population of the North Atlantic right whale. The CDC issued a no sail order for cruise ships in
20 20. Almost all Maine lobsterman, however, deployed a normal number of traps. Two right
whales died in 20 20, neither from entanglement. How can I willingly sacrifice my operation to
accept deadly regulation changes, when there's no proof that the regulation changes will help
right whales? NOAA own suggestions in their Vessel Speed report plus other evidence backed
vessel regulation, suggestions should be fast, tracked immediately to protect whales from vessel
strikes. The North Atlantic right Whale deserves 100% compliance on vessels, speed, and route
regulations. NOAA has the power to demand 100% compliance. Current compliance is far below
that. We cannot have a legitimate discussion about new risk reduction regulations for fishermen,
when it has been proven by the Department of Marine Resources in their comments that the risk
assessment calculations are flawed. How can you propose a closed area without giving State and
area specific gear marking a few years to create legitimate data? Any closed areas at all will
cause extreme financial stress as well as gear conflicts for fishermen. What is the latest data on
whale's being able to see? Potentially red or orange end lines. Has that been studied? I watch
healthy whales, porpoises and seals navigate dense vertical lines every day with ease. They are
very intelligent creatures. What is the optimum line scope to avoid entanglements? What is the
most whale safe way to use a tide buoy? It sounds like you are unsure if buoy breakaways even
work. How can this be when we have been using them for years with positive results? Why are
some of these more common sense solutions being skipped over in pursuit of ropeless gear that
will never work? Ropeless gear would be a disaster for everyone. The cost alone would put me
and most others out of business, as well as it being unenforceable for marine patrol. Why are
there no offers from our government to pay for whale safe endlines and buoys? We truly want
the whales and all sea life to prosper. And I mean that, but we also need our coastal communities
to prosper too. Thank you.
Thank you. Brennan.

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Next up we have, Erica, Fuller. Erica?
Thanks, Kara. Can you hear me?
Yes.
Thank you, I'm Erica Fuller and I represent the Conservation Law Foundation. I also serve as an
alternate on the take reduction team. Starting in 20 17, scientists unanimously agreed that right
whales are dying at unsustainable rates and that immediate action to address entanglements and
ship strikes is necessary in both the US and Canada. For several reasons, CLF cannot support this
proposal, or the deeply flawed framework that presumes to take another 10 years to comply with
the Marine Mammal Protection Act. It is destined for failure and it needs to be redone. First, the
risk reduction target of 60% needs to be revised. It is based on outdated population estimates,
outdated mortality estimates, and then outdated PBR zero point nine. Using NMFS’s own data
and methodology in the DEIS, new population estimates, the current PBR and estimated annual
deaths in this gear including undocumented deaths. Risk must be reduced by more than 80%,
given that no alternatives in the DEIS achieve such reductions, additional and more protective
alternatives need to be identified. Second, the rule relies far too heavily on weak rope and weak
insertions. Weak rope does not prevent entanglements. It does not reduce sublethal impacts. It
does not protect the most vulnerable animals, and it is not a viable option in the offshore fishery.
It is unfair to ask fishermen to invest in gear modifications now that they will later be told, we're
never enough to save the species. Third it’s not clear that the seasonal closures proposal would
result in the risk reduction predicted. Some segments of the industry will be unable to remove
their gear and will ultimately redirect this effort somewhere else. The proposed rule does not
appear to analyze this redirected effort or the associated risks. Fourth, the efficacy of any new
rule requires a well-established monitoring and enforcement plan which this proposal currently
lacks. As part of this rule, NMFS should require 100% harvester reporting. And vessel tracking
systems on all federally permitted boats. NMFS should also significantly increase its aerial
survey effort in order to better understand, right whale, location and behavior. We appreciate that
this rule incentivizes ropeless fishing, but acknowledge the need for additional input from
industry before this technology is commercially operational. We urge NMFS to prioritize this
transition and seek additional funding from Congress immediately. In the meantime, for those
areas that pose the highest risk outside of the closures, NMFS should require a single vertical
buoy line on all trawls, CLF, urges the agency to revise this proposal. Implement the emergency
measures requested in our MMPA petition submitted with partners on December second, 2020.
Expedite the rulemaking requested in our vessels strike petition submitted on August 6, 2020,
and aggressively engage in open and transparent process with Canada to ensure that appropriate
risk reduction measures are implemented bilaterally. Thank you.
Thank you. Eben? You should be able to unmute yourself.
Yeah. Hello, This is Eben I’m a Monk fishermen, Ground fishermen and Lobstermen out of
Kennebunkport and Portland, Maine. Um, I guess I am opposed to running ropeless buoys and
whatnot. I feel like the whales have been safe from us for many of years, and I've been able to
fish around them with Gillnets, as well as lobster traps and not had any issues ever. Never have I
ever had a whale entanglement And that I feel like that $15,000 a buoy is kind of ridiculous and

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absolutely unacceptable to expect small boat fishermen to be able to afford. At 1 buoy for
$15,000 like a lot of guys, they're string of gear cost, them than 60,000 So four buoys, a lot of
guys run, triples, doubles, singles fish up inside. I don't really see where that would work out all
too well unless the government was to pay for it and I don't see how the government could ever
cough up that kind of money, and a lot of the buoys are really, really heavy. I am actually
working with a group of people to try to, I was working on an EFP to get into closed areas, to
fish monkfish gear. And it was, that is $15,000 a buoy. I don't see how the Maine lobstermen can
afford that. And it'll drive all the small boats out. I am now 1 of 12 ground fishermen left because
of what national marine fisheries has done with the PTMS program. That was an absolute failure.
It drove all the small boats out of the fishery and is now 12 small boat gillnetters left in the northeast. That is a very small number, it is very sad it came to that. All it is a big boat fishery now.
Uh I. Don't want to see that happen to lobstering, and price guys right out of it, end up like
deadliest catch where those 15 boats own all the quota and all big boats. It should be for a young
people that want to work hard and make a buck. They should have the opportunity to be able to
do it and having really expensive gear will price, all of the young people out of it. It is absolutely
unacceptable. That's all I have to say. Thank you very much.
Thank you. Madison Lynch, coming to you next, You should be able to unmute yourself.
Hi, can you hear me?
Yes.
OK, great, yeah. So my name is Maddie, and I'm a college student from Dartmouth. And over
the past few years, I've spent a lot of time studying right whales and all the different threats
facing the population. So if things continue the way they're going, right whales will become
extinct. NOAA’s own scientists recognize that right whales are dying at a rate that's very
concerning and attempts to blame, to ship this blame to Canada. It does nothing to help the
whales. Really, the fact is that their entire migration path is cluttered with millions of vertical
lines and that does include the Gulf of Maine. So I understand that Maine lobstermen and have
been working to modify their gear over the past few years in an effort to save the whales. But we
need to keep moving forward. There are solutions that can benefit both right whales and the
fishing industry. And most importantly, ropeless fishing gear is that option. So NOAA scientists
have been studying ropeless gear for over 20 years. And we need to act now to move ropeless
gear forward. The proposed rule change, needs to fast track permits for ropeless gear and also
provide a funding mechanism so that this technology can be widely accessible to fishermen.
Thank you.
Thank you, Gib Brogan coming to you next. Just Sang the ABC song in my head to get to the
Gs. You're unmuted, you can make your comment.
I'm unmuted there. There I am. Good Evening. My name's Gib Brogan. I'm a campaign manager
at Oceana. Oceana is the largest international conservation organization solely focused on
protecting the world's oceans. With one point two million members around the world and over
340,000 members in the US Atlantic seaboard, We appreciate the opportunity to comment on the
risk reduction rule that's proposed by the agency. The rule as currently proposed is inadequate

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for the job. First off, it aims at a target. That is outdated. The 60 to 80% reduction is based on
outdated information, and needs to be updated with current estimates and current information
and then revised based on that target. The tools that are proposed are also inadequate. Time area
management is a good first step, but needs to be expanded to include both seasonal closures in
known aggregation areas and the authority of the fishery service to react with dynamic
management to respond to unexpected aggregations of right whales. The primary weakness of
this proposal is the reliance on weak rope. Weak rope, as discussed in the EIS, relies on two
scientific papers, both of them are theoretical. And both of them are focused on adult right
whales. The weak rope. If in fact it does work as proposed, will only protect adults, provides
very little protection for juveniles and calves, and doesn't reduce takes under the ESA, will only
reduce, in theory, reduce the lethality of the takes. Finally, the range of alternatives that are
included in the EIS is incomplete and inappropriately rejects a number of proposals and ideas
that were put forth during stakeholder scoping process. The agency should revise the EIS and
properly analyze and consider those alternatives. Going forward, what should the agency do
here? The agency needs to significantly improve the document and strengthen the conservation
measures that are included in this to provide a clear path to protection of right whales from this
known risk. If the agency doesn't approve or improve the proposed rule at this time to offer this
protection, we suggest that the agency revoke this rule and go back to the drawing board and put
interim rules in place that will offer immediate protection. Not in that 10 year timeframe. But this
summer, right whales don't have time to wait. Oceana, Thanks you, for the opportunity to
comment, will be submitting written comments before the deadline. Thanks very much.
Thank you. Matt, Gilly, you are up. Next. You are unmuted. You should be able to unmute
yourself.
Hello. My name's Matt Gilly, Lobster Boat Captain up in Harpswell Maine, and I just wanted to
start off and reiterate what Brennan said Earlier, he hit a lot of major points that I was going to
hit, so I'm going to try not to repeat anything. Um, I think one thing that I've heard so far is both
parties, whether we're fisherman or on the environmental, the environmental side. We all agree
on one thing, and that is that the data is flawed, in what direction that remains to be seen. But,
when you have two groups, that, both are telling you the data is flawed. It might be time to look
and say maybe the data is wrong, or even your own data says that if we remove all end lines out
of the water, the population of whales is still going to plummet. So I guess, why are we taking
these efforts? It's not going to help, even if we removed everything. I was at a NOAA meeting
early or late last week, where it was said that NOAA has difficulty enforcing vessel speed.
Because of the transit between state and federal waters and everything like that. I find it ironic
that they have a difficult time enforcing vessel speed because of where the vessel may be, but
they can seem to enforce regulations on us. Ah. Who's going to tell my family when I don't come
home that the reason I didn't come home is to save a whale that nobody's ever seen? There's been
no risk assessment done on the risk that the fishermen are taking it. It's all about a whale that
none of us have ever seen by. No means do. We want to injure this whale when we would love to
see it flourish. But this is a whale that nobody, I know has ever seen. And I'm going to end with,
I guess, a rhetorical question. Is there anything that any of us fishermen could say that would
change anyone's mind or is this just merely a process that is being done because that’s the legal
way it has to be done? I’ve gone through this before. It's rare that anything happens. I feel like
I'm wasting my breath. Thank you.

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Thank you, Matt. Next step is CT Harry.
Can you hear me Kara?
Yes, I can.
Great, thank you. Um, my name is CT Harry. I represent the International Fund for Animal
Welfare. I'm a Marine campaigner. I’d like to start off by thanking Colleen and the NOAA team
for, for holding these meetings and allowing me the opportunity to provide comments tonight on
an extremely complex problem. But, one that I feel has an answer, I'm an alternative member to
take Reduction Team. with IFAW and reviewing this proposed rule. I think there's three areas
that I'd like to briefly address. We've heard it tonight, The risk reduction goal. back in April of
2019, it was believed that approximately 60% would be the best that we could hope for. That
would be enough for risk reduction. Well there has been 13 deaths since that time period and the
situation is even worse than we realize. With the hindsight of almost two years of additional data
and continued decline of the population, of the population, that risk reduction needs to be
increased to 80% to ensure that the deaths and serious injuries do not push the species, past, an
Irrecoverable tipping point. Second regarding, uh, 1700lb breaking strength, breaking strength
line. Weak rope. Weak ropes, are an interim solution. And they're an interim step at best. Weak
ropes do not do not remove the vertical lines from the water column and therefore do not reduce
the risk of entanglement. We know that weak ropes will not protect calves or juveniles from
lethal entanglements. It does not protect adults with chronic entanglements, from the long term
health impacts. The burden of proof shouldn't be a dead carcass. It should also be the sub lethal
effects of entanglement. And if weak ropes are used, the entanglement threat is still there. And
finally, regarding ropeless, we urge the agency to increase incentives. And assistance to
fisherman to transition to this technology, moving forward. We recognize that this process has
occurred with the inclusion of ropeless in some areas and particularly some of the closed areas.
But more needs to be done particularly over for a streamlined permitting process that allows
fishermen to use 21st century technology to harness their innovation. And for them to be part of
this solution of removing the of the removing, the vertical line threat and saving the species.
This is the solution. This is a solution that can keep fishermen on the water and keep right whales
alive. My colleagues at IFAW and our partners, including leaders in the fishing community, are
resolved that the right whale cannot go extinct on our watch. State and federal officials and
regulators should reflect that same resolve. I think more reflection and attention is needed to
improve this proposed rule. We Welcome. We would be submitting further comment in written
form later on, and thank you again for chance to speak.
Thank you CT. Star Scott. I've unmuted you. You'll also need to unmute yourself.
Thank you. Can you hear me?
Yes.
Great. Thanks so much for this opportunity to speak with you today, and thanks for having this
hearing. I just wanted to say that fewer. So I work at a I'm a scientist and wildlife biologist, and I

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work at an R one research institution. I'm in Georgia. Fewer than 375 right whales currently exist
on the entire planet. And since 2017, at least 46 right whales have died because of boat strikes
and entanglement in fishing rope. So most right whales migrate over a thousand miles each year,
traveling from their feeding grounds off of Canada and New England to the warm shallow
coastal waters of South Carolina, Georgia, and Florida’s coast. So right whales first give birth at
an average, age of about 9 or 10, and they have a gestation period of almost a whole year. And
what this means is it impacts to right whale populations take a long time to recover from. We
have to be very mindful when we're, when we're determining what to do here. So I know,
according to NOAA the proposed changes are going to reduce, right whales encounters with
fishing rope in gear by 60%. I wanted to request that NOAA recalculate the risk reduction with
up to date data, and publish a rule that achieves a minimum of 80% risk reduction. So I want to
support what's going to most protect right whales, knowing that humans are resilient and will
adapt. So right whales have a right to live. I have a deep compassion for the fishermen and
lobstermen and the families impacted by these efforts. I do feel that we need to find solutions,
which will work for both whales and people. The fishermen and the lobstermen don't own the
right whales. They don't own the oceans and they don't get to make decisions for an entire future,
for the future of an entire species. So scientists should be making these decisions. And I would
humbly request that you don't show favor to industry or state agencies, such as not even having
to adhere to communication standards and time limits of this very hearing. Preference should be
given to right whales. They don't have social safety nets, people do. They don't have voices, but
we do, and the loss of a species, the loss of biodiversity not only impacts those of us who love
whales. It impacts the entire planet by creating an ecosystem imbalance, and would also
contribute to climate change which impacts communities all over the planet, especially
marginalized and minority communities. So according to an analysis by the International
Monetary Fund, whales provide the critical ecosystem service sequestering carbon in the ocean,
and this service is estimated to be worth millions of dollars per whale. I know a lot goes into this.
I just want to thank all of you for your time, and consideration, and Thank you very much.
Thank you. Dustin Delano. You should be able to unmute yourself.
All right, thanks. Good evening, my name is Dustin. Lobster fisherman from Friendship ME.
First of all, I'm commenting to urge you to accept the conservation equivalencies provided to you
by the Maine Department of Marine Resources. It would give each zone the flexibility to comply
with the percentage of risk reduction in their own abilities. Second, I’m urging knots being
available source for weak rope links rather than sleeves and whatnot. Third, national marine
fisheries has drastically underestimated the amount of fishermen actively fishing in the LMA one
closure. I do not support closures in the Gulf of Maine. There a slippery slope. And as we can see
from Massachusetts, they get larger, and they stay closed for longer. Fourth, fishermen need an
appropriate timeline for gear reconfiguration. I urge you to implement the new regulation
between seasons or the downtime in fishing. fifth, I want to emphasize that environmentalists'
know nothing about fishing. They know nothing about our lives, about our communities and
what we strive to take care of every day. They do not have the right to tell us how to fish and
they do not have the right to think that they are better people than us. Fourth, the future for all
Lobsterman is at stake. Maine Lobstermen have created themselves one of the most sustainable
fisheries in the world. We have coexisted with marine mammals for decades and the health of the
ocean ecosystem is one of the most important things to us all. Maine lobstermen are real people.

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As some commenters have inaccurately stated we can't just do something different. Our entire
life savings are tied up in this industry along with the blood, sweat, and tears associated. There is
no way all Maine lobstermen can accomplish having a ropeless fishery which would appear to be
the 10 year goal. 90% of us will have to find something else to do. If that's the case, who will
buy our mortgaged boats, our homes our wharves our trucks? who will help us feed our families
and help send kids to college, will there be a buyout for fishermen if the livelihoods are
destroyed by their own government? Before government interference based off bias, inaccurate
information and false right whale counts, fishermen wouldn't need help but if our government is
going to destroy us. We're at least owed a way out if we can't survive. Thank you.
Thank you. Renee, Renee. You should be able to unmute yourself.
Thank you. Just because these mammals do not look like us, just because they do not need
opposable thumbs just because they have evolved to live seamlessly and harmoniously in their
environments such that they don't need buildings for shelter or infrastructure for transportation.
Does not mean that they are not otherwise just like us. They have complex and immense
feelings, love, fear, compassion, sadness, the sense of loss of a loved one. With this in mind, I
want to appeal to your sense of right and wrong. Your morals and ethics. if these proposed
measures would not be enough for humans, they are not enough for whales. If doing too little
would feel wrong to you. In the case of saving humans, it should feel wrong to you in this case of
right whales. So, please do what is right.
Thank you. Next, we have William Clayton. Hello, William you are unmuted can you hear me? I
can see you are unmuted.
OK, can you hear me now?
Yes, I can.
So I just swapped to a Chromebook I'm getting used to it. My name is, Will Clayton I'm a
sternmen for my father-in-law on a family owned island called Green Island here in Maine. I'd
like to start saying with the Onset of covid and the reduction in shipping traffic. And near
complete stoppage of cruise lines, it has proved undoubtedly what the precipitating factor in right
whale deaths are. And that's ship strikes. Can you please explain to all Maine fishermen and
families how you continually push the theory of entanglement deaths while not having the gusto
to rail against shipping and the cruise lines? I referenced RW, SAS, which is NOAA’s own,
personally, developed right Whale sighting advisory system. And I always look at that constantly
to see where the migratory patterns develop. In fact, I keep it on my cell phone at all times to
show people. And year after year, you can clearly see once again through NOAAs own
application, that the right whales do not come close to the coast of Maine. How on Earth you
continue to push lobster line entanglement when the real cause is as blatant as the propeller
marks on a whales back. We are sick, think of, continually bending over backwards to
incorporate time consuming and costly, quote unquote upgrades to the gear. Now we can fully
understand why the real cause is not being addressed. It's big money. It's politics. We get it. You
referenced it today when you said just how many thousands of comments came in from
conservation groups and a few from fishermen. We get that it's an uphill battle for your agencies

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to fight them, But someone needs to step up and they need to do so now, If you continue down
the same path and bleed us all dry, and lobster fishing is gone, you will still have ship strikes
being the cause of right whale deaths. Will everybody fight them at that point? And I got to say,
in closing, I find it ironic that every single previous commenter tonight, that was part of a
conservation, didn't mention cruise lines, shipping, nor did they mention Whale watch agencies. I
find it extremely ironic that there's a love affair with an entity which is whale watching that
actually takes money from patrons and goes out multiple times a day on multiple vessel's owned
by multiple companies to find and harass whales. When Lobsterman do everything they can to
stay away from them, including the right whales, which we don't ever see anyway. So, where are
the hearts of the conservation agencies, when are they going to rail against shipping, cruise lines,
and whale watch agencies, thank you, everybody for your time tonight.
Thank you Jarod Bray, you're up next I’ve unmuted you, you can go ahead and unmute yourself.
Can you hear me?
Yes.
OK, I'll try to make this short and sweet. So really what it needs to come down to is, we really
need to start tracking the whale's. I know people have brought it up plenty of times, but it's really
frustrating that I think we can all get on that page. You know, lobstermen, scientists,
environmentalists, I think we just need real data. Not educated guesses, it's I mean, we just put a
rover on Mars. Why can't we tag a whale? I just, I don't know why we haven't gotten to that point
yet. Getting off that, I was curious to why we ended up with a October to January Closure. That
impacts a rough guess would be 75 to 80% of, you know, our lobster season out in that area.
Realistically, a spring closure would be a lot easier on us. And I would assume that whales
migrating, coming and going, that would pose the same risk? I’m not really sure. But that would
that would really help out the fishermen, if there was a closure, if we could move it into the
spring fishery, I believe. Also, I'd like to say that if ropeless was implemented, I don't believe
there would be any change in whale deaths at all. Because realistically, we're not a big enough
threat that's been said a lot of times. And I know, I know scientists and environmentalists really
don't want to believe that. And I don't know how to make them see that. That's the truth, but it's,
you know, it's hard for them. In other states, You know, reading the report isn't really the same
thing as being on the boat, and seeing it with your own eyes. They're just aren't right whales
around in our area, I'm I fished in that closed area. for 5 to 10 years. I've literally never seen a
right whale. So, you know, lack of understanding, shouldn't lead to policy making is, you know,
it's just very frustrating on our end. But the other part is, the whale population has increased in
the last 20 years, if I'm not mistaken. And our fishery has stayed the same. So it just, it doesn't
seem to make sense to all the blame should fall on to us, or really any of the blame actually. But
thank you for allowing me to make a comment, Have a good night.
Thank you Jarod. Douglas Mcclennan? Oh, yes you were just unmuted. There you go.
Can you hear me?
Yes I can.

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My name is Douglas, I’m commercial fisherman from Spruce Head Maine. I'd just like to go on
the record as agreeing about everything that Pat said. And a lot of everything else the fisherman
said against this modification for us. And I would even go on to say, I agree with most of the
environmental groups that have spoken tonight that the data is outdated. It's just not good data
that we're getting regulated by, not going to spend a lot of time here I didn't prepare a speech,
like a lot of these people did. I just was listening to all the opposition to the fisherman, and I
figured I ought to just get my word and say something. So, basically, what Pat said and what
Dustin said. What Will said, What Jarod said is how I feel, you'll find that if you could question,
lobstermen on the coast of Maine We all pretty much have the same outlook on this. We never
see these whales. You could get rid of us. The whales are still going to be killed by ship strikes.
Their own model that they use is flawed. It even shows if you took every endline out of the
water, the whales are still going to decline. So I don't think we're at a problem. I guess that's all I
got to say. Thank you for letting me speak.
Thank you. Zach Klyver, you are. Next. You just unmuted, you just muted yourself again. I can
see you're unmuted, Zach, but I can't hear you if you're speaking.
You hear me now?
Yes, I can.
OK, thank you. I'm Zach with Blue Planet Strategies. I grew up in a Maine fishing family in East
Port and fell in love with the ocean and became a whale watch Naturalist, and did that for 30
years from Bar Harbor. I've been on over 3000 trips, in the Gulf of Maine, I saw on those trips
dozens of times. Right whales on one trip in August. We saw seven right whales on a trip. I've
also helped in leading winter surveys for Right Whales in 2010, 11. We did a number of them
out off the Coast of Maine. And Jordan Basin. And we saw a 35 right whales on one trip. I've
also over my career encountered dozens of whales, entangled, humpback, finback, and minke.
And I've spent many necropsies and seen whales those whale species entangled in Maine lobster
gear. And those were the most of those entanglements I just mentioned were: Maine gear. Um, I
want to say that on page 10 of the DEIS The numbers of known entanglements during the time
period between 2010 and 2018 in the waters between Canada and the US are given. And over
that nine year period. The document points out There's 267 minke whale entanglements 264
Humpbacks 89 right whales and 62 finbacks For a total of 682 entanglements. That's an average
of 75 whales per year, and it points to the crisis situation that we're in and that we've been in for
a long time. So I do not support any of the trawling up provisions in this DEIS Because they add
more traps in weight to each endline. And I believe they make them more lethal. I hope the
agency will conduct additional analysis of the risks to pose to whales from adding more weight
to the trawls. I do support Alternative three, um, to reduce endlines by 50% per month. For 15
years, there's been a serious discussion among fishermen and I have a lot of really great lobster
fisherman friends that I value. Some of my best friends are lobster fisherman and I've heard the
discussions about Trap reductions and about entry into the fishery. There are numerous studies
that show that reducing effort will not equal necessarily or poor proportional reduction in catch.
The research that Carl Wilson conducted showed around Monhegan in the closed area that when
you went from 800 traps to 600, 600 caught almost as much as the 800. And there's been

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research done in Nova Scotia, the Myerson/Moore paper that showed that with 300 traps the
fishermen had very high catch rates. That trap reduction will also dramatically reduce costs, and
fuel, bait, wear and tear on the boats and gear. Additional conservation risk is still needed, so I
support Alternative three provisions for closures and weak rope with these caveats. I support the
three Area closures and the one.
So, sorry to interrupt you. Your three minutes is up but we can put you at the end of the list and
if there's time, we can circle back to you.
OK, Thank you.
Thank you so much for your comment. Gina, I'm coming to you. Next. You should be able to
unmute yourself.
I think I just did that. Can you hear me?
Yes. We can.
Hi. Hi. Good evening. Thank you for giving me a moment to support some of the comments that
we've already heard. My name is Gina, Gary. I've already submitted written comments to the
website. However, I did want to weigh in this evening specifically, um, and note, many of the
comments made by the fishermen here in Maine, I reside in Portland, Maine. I'm the State
Director for Animal Wellness Action, and I'd like to support the comments made by my friend
and colleague, Zach Klyver, who just spoke before me. Also, the, the emphasis placed on
updating data by Erica Fuller at Conservation Law, Gib from Oceana, as mister Scott from
IFAW And to all of the fishermen, I will I just want you to know, I was pulling up traps at the
age of 11 with my brother in Massachusetts Bay. So, I do understand the need to maintain their
fisheries and healthy fisheries. So I want to reference my comments of the August ninth, 2019
scoping hearing that you held in South Portland, Maine, in which I commented on. As one of our
scientists did this evening from Georgia, the importance of the whales presence, all of the
whales, all species of whales to the Gulf of Maine, to the health of their fisheries in the long term
health of their families in the fishing industry here in the great state of Maine. And I know that
all of the fishermen want to make sure that these animals are looked after, but Zach is, right. The
truth is 83% of the right whale population show, entanglement scars and that's been documented.
So that's not a false approach. We do at animal wellness action support a revision to your
rulemaking effort to increase what we find the level of reduction of risk, to from 60 to 80%. We
do support further research. And we do support in terms of the use of weak rope. But we do
support. We do not support the trawling up of additional traps as a danger to the fishermen. And
we do support, um, bilateral work from the Congress and appropriate funding vehicles for these
fishermen. And their families to make whatever changes they need to make to come into
compliance with protecting. Um, all of the whales in the Gulf of Maine, all of whom are
currently listed by Maine statute as endangered species here in their own state. So, with that, I
will say thank you for the time to speak with you this evening. I do really want to also add that,
as Canada has done, could we consider funding a funding vehicle for observation of whale
migration and population patterns in the Gulf of Maine? And bring that up to speed with what
Canada has already been doing. Thank you.

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Thank you, Caroline Coburn, you're next, you should be able to unmute yourself.
Hi, my name is Caroline. I grew up in Portland, Maine, and I'm currently a senior at Boston
College. Some of my favorite memories of home include sitting by the water and visiting the
lobster shack. I've even had the pleasure of learning how to lobster on a commercial fishing boat.
I'm studying to become an elementary school teacher, and worry that my students will not have
the chance to ever know the majesty of the North Atlantic, right whale. North Atlantic right
whales are one of the most endangered species on the planet. And if we don't act fast, they could
be extinct in my lifetime. What's worse is that the young children I want to teach may only ever
see a right whale in a history book because they could be extinct fast. That disturbs me, how can
we let a beautiful species die off when we know that there are stronger solutions out there to save
them, the modifications in your plan don't do enough to help save young right whales and calves.
The new generation of whales desperately needed to bring the population away from the brink of
extinction. Weak rope and links are not a long term solution, but ropeless gear is. Ropeless gear
devices have been created specifically to prevent marine life entanglements for mammals like the
North Atlantic Right Whale. ropeless gear is real. And it works. Period. Fishermen are using it
on the West Coast, in South Africa and in the UK and Australia. Why can't we be doing the same
thing over here? Ropeless gear will help us save the livelihood of the men and women in our
coastal communities that harvest lobster while also ensuring right whales can remain safe and
most importantly alive. NOAA, please implement, implement ropeless gear in your plan to save
right whales. Thank you.
Thank you, Hayden. Hayden Brewer. You are unmuted, you should be able to make your
comment.
My name is Hayden Brewer, Can you? Can everyone hear me?
Yes, we can hear you.
Um, one thing that I'm going to comment on that I have not heard so far. I came in a little late, so
I don't know if it's been talked about. My question is we are focusing on Lobstermen, but there is
something that is going to very in the near future, going into Maines waters, and that is the wind
turbines that are going to be out at sea, and unlike the breakaway lines that we already have on
our lobster traps, I'm also a 9th generation Lobstermen for the record, um, unlike the Breakaway
lines that they have. I don't believe that lines on the wind turbines are going to have breakaway
lines, because then, that wind turbine is going to go away or the power line that brings the power
back to the mainland is going to go away and that renders it useless. So while Lobstermen are
being looked at and I hope the cruise ships will be looked at after all that my other lobsterman
friends have pointed out. I think that the wind turbine should be looked at as well, because they
are going to be lines heavily placed in the water. And that's what I have to say.
Thank you so much, David. Not going to pronounce your last name, I have a hard one to that if it
makes you feel any better.

923

Don't try. It took my classes until third grade were able to. I want to point out that my
background is my 53rd year, lobstering. Prior to that, I was in pre-med. I did four years on my
doctorate, Marine bacteriology, and taught chemistry for 13 years. So, my background is
scientific but this is my 53rd year lobstering. And I raised a family of three daughters doing it.
What I've seen and don't think that I'm not a part to it, Tree hugging, granola, eater, I love nature.
I love the water. I sympathize with everybody that's spoken tonight. But what we have to look at
here is data. What I see and reading and reading the publication that you put out, NOAA put out,
it's quite evident that there is no empirical data that supports what we're asking fisherman to do.
And until we get that empirical data, we're not going to have any direction. We're not going to,
we're not going to know where we're going. So I strongly urge to regroup, get some data on
where these whales are, what they're doing, don't impose, rules and regulations on fishermen that
are not going to be impacted by the whale's presence. Only subject these areas where the whales
are known to be, but it's obvious that we don't know where they all are and when they’re going to
be there. So you have to go back, regroup, and then come up with another program. Breakaways
not the answer. Well, we're not going to get into it. But anyhow, you need your data. And it's
very important that you put it all together and then we come up with a brand-new program. So I
sympathize with everyone, all sides. So, thank you for your time and we'll go from there.
Thank you. Chris Smith. I'm coming to you. I'm not sure if you have a comment, but I just want
to make sure.
Yeah, can you hear me?
Yes, I can hear you.
OK, thank you, so my name is Chris Smith, I’m a 30 year old 30 year Lobsterman from
Monhegan Island. And I would really urge NOAA to listen to the comments by Commissioner
Kelliher with Maine DMR There is no one size fits all solution. Um, I'll also echo what David
just said, the data is flawed here. Folks. It's very, very flawed it uses data from, you know, a
decade ago. And I really would hope that some credence would be given to the fact that we've
had very few entanglements this year. And it's been said, many times tonight, that the lack of
cruise ships in the Gulf of Maine this year have a big part in that. And I really would hope that
that gets looked at closely. And I would also encourage NOAA to really step up surveillance of
where the right whales are that seems to be also flawed. So I know there's others that want to
talk, so I'll sign off, And I thank you for your time tonight.
Thank you, Chris. Jack. You should be able to unmute yourself.
Yeah, can you hear me?
Yes.
Alright, so, I'm a 19 year old lobstermen out of Yarmouth Maine. I would just like to comment
that this these, when you're making these trawl regulations, you have to come into account a lot
of people. My age who come into this industry We don't can't afford a 40, 45 foot boat, you
know, even a 35 foot boat. I was just fishing out of a 22 foot Eastern. And I was, and I had to

924

fish inshore, which was good out of that size boat, but if I were to upgrade to something like 25
or 35, but that wouldn't be big enough for me to fish. Fish off by you know 3-6 mile, so there has
to be a way for, for lobstermen like me to be able to get into this industry. Now, I'm lucky
enough that I was able to make enough money beforehand to get in, get into this and get a bigger
boat. But a lot of people are not, a lot of people, are going into this. They don't have they don't
have a financial backing that I do. They don't have when they try to go into this. They don't they
just can't afford that big boat And as a result they are forced to only the fish in the summer and
it's hard to make money if you only fish in the summer. So you got to keep that in account as
well for the financial costs for the younger fishermen, for the rules. Thank you.
Thank you so much. OK Troy plumber. You're unmuted.
There we go, I think I'm unmuted now, I’m a lobstermen, from Boothbay Harbor just going to
run through a quick list. A few things here. Where a right whale isn't there zero risk imposing
restrictions where a whale isn't makes no sense it has no benefit to a whale, And only affects
fishermen. Canada's been flying flights, spot whales. It seems like to me, the tagging whales are
spotting whales is the best way to both protect whales. Allow our fishery to continue. It's been
awhile. But I seem to remember in a meeting a long time ago, that 90% or more of the rope taken
off the Entangled Whales has been large rope 6-7/16 or larger. You don't know where Maine
fishermen fish. You don't know how we fish. We haven't been doing 100% reporting. And that's
probably hurt us in the long run. A lot of this is just guesses. I've heard the population in this
meeting at the beginning, NMFS was talking about around 400 whales. Some of the eco groups
are saying around 365 whales. It seems like a lot of this data. It just seems to be incomplete, and
there's just not enough data out there. We sit there and watch the PR from the media Against Us.
They show a picture of an entangled whale and we're looking at it, it's like inch thick rope. with
these Massive Polly balls, nothing that you know, Maine near shore fishermen use. And we
know that, the public doesn't, I'm not sure these eco groups do, I'm not sure NMFS does because
there's no concrete data on how Maine fishermen, fish and where they fish. The population of
these right whales was somewhere around 250 you know years ago. Some around 2000 and it
rebounded all the way up to 500 whales. While our industry was moving right along with a lot
less restrictions than we have now. Apparently, there's a lot of other fact factors affecting these
whales. I'm not sure if a whale gets bumped on the head by a ship's, more likely, or not to swim
into a rope and get entangled. And in the end, the NMFS and the agency has no accountability. If
you're wrong, this round and the whales keep going down, you can say, Well, we didn't do
enough, and you can do more. We have everything to lose. And in the Eco groups, non-profits,
and the federal government, you have nothing to lose, you know, just keep regulating, see what
happens, keep, keep finding out. We're sitting here, paying the cost, means very beginning of this
meeting, and I think it'd be interesting to talk about it more, the idea that our 600lb Breakaways
on our buoys may actually be hindering the Whale's ability to snap the rope if they are entangled
in it, because there's less drag against it. That was pretty interesting, we've been buying these
600lb links now for years, and we're just throwing out there casually to know, maybe that wasn't
right, know, if it wasn't right, are we going to get our money back and all the 600lb links and all
the buoys we’ve lost because of the 600lb links. Of course, not. It's just incomplete data,
incomplete idea of the picture. And really whales need to be tracked or spotted because it's
completely pointless to regulate somewhere where there isn't a right whale because there's not
going to help the right whale. It makes no sense at all. So that's about all I got to say tonight.

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Thank you for your comment, OK, Chris MacIntyre. You're next. You are unmuted, you should
be able to unmute yourself.
Hey, can you hear me?
Yes.
Hi, my name's Chris MacIntyre, federally and State permitted Lobstermen from Harpswell
Maine, I'd like to comment tonight against the use of the LMA one closure mainly do, because of
the lack of data around the usage of the area. I know that, you know, what's helpful to you guys
is, you know, specific data around, you know, from fishermen who do use the area I do not. So I
can't provide you with that. But what's obvious to me and it should be obvious to you, is that the
financial cost of that proposed closure is laughable. It's. And, NOAA should wait until, you
know, there's better data about usage of the area by lobsterman and by whales, before
considering such a closure. Um, and when it comes to ropeless fishing being allowed within the
closed area, I mean, you're, you're proposing something that's against the law. You know fishing,
fixed gear, without end lines is illegal. It's illegal for very good reasons. You're proposing
something and without answering any of the questions around how would mobile gear fleet be
able to fish around the fixed gear? How would other fixed gear fishermen be able to fish around
the fixed gear? How would NOAA, Coast Guard, the State of Maine anybody be able to enforce
any of the regulations around the lobster fishery if they can't find or haul the gear to check for
compliance? The, the big push towards ropeless fishing makes absolutely no sense because
NOAA’s own model used in the biological opinion shows that even if you take all the fixed gear
rope fisheries out of the water, the right whale population is still going to decline. So there's no
doubt that you know the question. What can we do to save right Whales is an important question.
But the answer of destroying the lobster fishery to do it it's just completely backwards, you
know, why do we need to go to all ropeless fishing? If even if we go to all ropeless fishing, the
whales are still going to decline, it shows the models. If run with us not taking any more risk
reduction currently shows only a difference of five breeding females over the next 50 years. So I
mean, that proves that we do not interact with these whales in a way that will determine whether
the species survives or doesn't survive. I'd also like to comment that NOAA should take the
conservation equivalencies that will be provided by the Maine DMR into consideration in order
for individuals' areas of the coast of Maine to be able to comply with the risk reduction targets.
Thank you very much.
Thank you. Joshua. Just got to get to the J’s. I know, Josh, that you are back online. You should
be able to unmute yourself.
Can you hear me?
Yes, I can.
My name is Josh I fish out of Spruce Head. I'd just like to start off by saying that none of us
fisherman are interested in harming any whales and we, we have complied with everything that's
been thrown our way. We, I mean, there's, there's a lot of questions with, with what's going on.

926

And. and one of the big issues like Jarod had Explained is about tracking whales. Um, like he
said, if we can land a rover on Mars, we should be able to track the whale's. That's something
that I realize that some of the conservationists have said. It's been very difficult to do that
because the trackers won't stick in the whales. Um, that's, I mean, we can, we can track
everything else, it just seems impossible that we couldn't track the whales. Also, in regards to
Zac Klyver speaking, and he has seen all these right whales and seeing them entangled, and he
knows it was Maine fishing gear. Last year was the first year that Maine specifically had their
own marking system. So, if that was other than last year, how would it be known that it was
Maine fishing gear? Um, the number of documented deaths for vs. births and undocumented, that
goes hand in hand. They don't know how many actually died, but you don't know how many
actually, have been born. There's just so many questions. And as everybody has stated, that the
data is flawed. There needs to be more research done before anything can effectively be done.
Um, there's just too many questions. And especially for Maine where, I mean, nobody that I have
heard of has ever seen a Right Whale. It's going to affect far too many people For, as other
people have said, something that that's never existed. Never, never been, Never been an issue
before that we've seen. Also, as far as the shipping industry, if we're going to have all these
regulations put on us, how I realize that they are a huge part of import export or cruise ships. It
just doesn't seem fair that that something that size is not going to be affected. Like, we are, we,
we may be something smaller, but we are big, big part of the north-east. And it's just, it's tragic
that that they're above all the other regulations that we're going to deal with. I think that's all I've
got for tonight. Thank you very much.
Thank you. John Tripp.
Can you hear me?
Yes.
Thank you, my name is John Tripp. I'm a fisherman in the Mid Coast. Um, I would just like to
speak against the LMA one closure. I do not believe that establishing a closure based on
assumptions of congregations in the future is an acceptable management tool.
I feel like it'll cause a gold rush mentality. You guys seem to think that only 45 guys might fish
over there out there right now but If you put in a closure, I think you need to worry about when it
reopens having 90 guys in there and just the fact that you'll have gear stacked up outside of the
closure waiting to get in. Um, and I'm also worried that what may start as a three month closure
could turn into a dynamic closure, dynamic area management didn't work in the past and I don't
think without tracking the whale's and, uh, tracking the boat's and it will work in the future.
Another big fear is that it could turn into a permanent closure. I believe management should be
based on facts and hard evidence. I agree with what Jared said, whales need to be tagged and
tracked. And that information needs to be available to The fishermen on a live basis. We need to
know where they are. Um, I have no issue in doing things that will actually help save a species,
my issue comes with guess and check management. I urge you to listen to the fishing
organizations, in particular, the MLA, which I am a board member of. The MLAs worked
tirelessly on this and I believe they have the best input. I echo Dustin and Jared’s comments they
hit the nail on the head, same with Troy. And I would I would also urge you to consider the
conservation equivalencies from the Maine DMR. Thank you.

927

Thank you. Ryder, we're coming to you. Next. You're unmuted.
OK. My name is Ryder Noyse, and not this really matters much, But I actually went to the
University of Maine and I minored in environmental studies. So you know, I do understand
where everyone's coming from as far as, you know, saving the right whales and can strongly say
that every fisherman agrees with that. We’re not out here in the middle of the ocean trying to
endanger these whales or hurt them or anything of that precedent. That being said, we rarely
come into contact with these whales to begin with. And it's really difficult for me as a fisherman
to support these rules, regulations being put in place that are designed to save whales, I
understand, However, they're not designed to save fishermen. I guess what I'm getting at is if
we're doing you know 20 trap and 30 trap trawls, even the trawl increase, that's a danger to every
person on the boat. You're adding more rope. You're adding more traps. You're putting guys in
situations that they don't need to be in necessarily and at what cost? The other one I wanted to
mention was as far as an area being closed, I'd like to know how DMR would even be able to
enforce the fishing, as has been stated before. Um, it doesn't really seem to me like that's
something that's even possible for them to maintain. It was also stated, I believe that there would
also just be a wall around that closed area. Um, the other one that also was mentioned earlier and
I'm going to mention that again is the windmills, there's windmills being put out. That's the
whole goal coming out here There's, you know, the efficiency Maine That's just going to create
issues. If you're worried about 600lb breakaway, imagine three inch chain, also agreeing with
David from earlier, we need more accurate data. We need to find what the direct correlation is to
the right whales deaths. There's plenty of graphs and plots out there that are available. And it
shouldn't be that difficult to find the correlation coefficient or Value R Seems to me that there is
no direct correlation from lobster fishery to right whale deaths. And it does seem like it more not
just, but more so leans towards ship strikes. Um, we all do care about the ocean, and all the
creatures that inhabit it. We treat the ocean as if it were our home, mainly because it is. We treat
it with respect, we take care of it, and we maintain. So anyways, that's all I've got. Thank you
very much.
Thank you. Ira Miller?
Hello! Can you hear me?
Yes. I can.
I'd just like to start by saying that fishermen were the stewards of this ocean for 100s years long
before it was cool. They were the environmentalists out there. That doesn't mean all, most
fishermen. Uh, we all have impacts. I don't think that the impacts are anywhere near understood
on this species. There's a lot of knee jerk science going on has been brought up. I like David's
comments to that. I think, really the crux of the problem. You don't have good data. We're be
persecuted by that because we can be, Uh, this wouldn't fly. I don't think in a lot of situations, it's
only, because we don't have something to refute it. Our job is going out on the ocean, making a
living. We're not lawyers, we're not, paper writers were not academia. So were taking time out of
our day to try and fight a battle that's way out of our league. Um. I Like Commissioner Kelliher’s
comments, I think they were to the point I think a lot of the fishermen, Troy Plumber was

928

definitely to the point where a lot of others I think tagging needs to happen or tracking. You
Know, there's ways to prosecute this fishery. I've been fishing out all over the Gulf of Maine for
over 50 years. And I can tell you right now, that ropeless fishing, no matter what these people
speaking to it think, they don't live in our world. They don't understand. They're making
comments, being very uneducated. They don't understand what it takes to accomplish that in our
area of the world. Yes. It goes on in some other areas of the world, West Coast of Australia or
something like that, where there's a minimum number of fishermen. If they think that that's going
to take place in our area without having a massive impact, they'd be wrong, they are way off
base. I think enforcement is going to be a problem. You have area closures that don't make sense.
Uh, I think that Jarod’s point transiting animals back and forth through there a Spring closure, if
you got to, have a closure, which I don't support at all, doesn't make sense. I think that, you
know, the gear marking estimate times was way under done. You know, the cost involved to the
fishermen. I think a lot of these people, a lot of these environmental groups instead of working
with us to try and make things better, all they've done is try and pit us against each other. And,
uh, they haven't made a situation that we could actually work together on a solution. Haven't
come to the industry that I've ever seen and I’ve been pretty involved. come to the industry
offering much in the way of solutions. Anyway. Thank you for allowing me to comment. Have a
good night.
Thank you, Ira.
Judith Howard. I'm not sure if you have a comment, but I just wanted to double check. You
should be able to unmute yourself. Judith Howard, Not sure if you can hear me.
I can hear you. I didn't really have a comment. I wrote you a bunch of questions, but, um, so I
guess my one comment listening as a, as an open minded listeners, how different the data are
interpreted and I think our job as scientists, is to find out what the true data are. That's what
worries me right now.
Thank you OK, Cindy Donnell Coming back to you, you're unmuted.
I find it interesting that the conservationist that have spoken tonight are going back to years
previous for the whale entanglements, previous to all the trap modifications that have been made
over the past 10 years. And the past 10 years have been very successful. And the fishermen are
not getting any credit for the whales that have not been entangled in the past 10 years in the Gulf
of Maine because of their gear modifications, perhaps, who knows what it was. But it's been very
successful that we haven't entangled any and that Canada has entangled whales, and they are not
doing even what we're doing. And nobody does anything about that. And we're asked to do more.
And they are the ones catching the whales, it makes no sense. And Then, you know. They talked
about that whale down South, that was killed the baby whale that was a ship strike. I mean, it had
nothing to do with gear. And I just don't understand why they've not caught up with us in the
Northeastern United States. And Canada has started a program of following the whales, why
aren't we doing that? There they are talking about if the whales come into a certain area, closing
it, we don't even talk about that. Now, we're just going to close an area, just a random area that
the whales may not even be and it makes absolutely no sense. My husband has been a fisherman
for over 45 years. And my sons are both fishermen and none of them and none of the fishermen

929

in York, have ever seen a right whale. So they're out there every day. They're out there today. I
mean, you conservationists aren’t out in the water and the guy that said that he saw the
entanglements. He was going back, years ago, Before, we had the gear modifications and the
teacher that talked about the kids, you know, not being able to see the whales, the right whales
someday. Well, it's darn good possibility with the number of whales that are left that they
probably aren't going to be here, reality is they're not going to be here and they're going to be
talking about them like they talk about dinosaurs. I mean, it's sad, but we get along without
dinosaurs. We talk about them all the time. And Troy, I like what Troy said, is correct about
Canada, you know, they're, they're doing some things right and they're doing some things wrong
and maybe we ought to take the things that they are doing that are right and track the whales.
that's all I have to say.
Thank you, Cindy. Zach, I'm coming to you to give you time to finish up your comment.
OK, thank you Kara. Yes, I will say a few follow up comments. To the question about risk.
Whether right whales are in Maine waters we, we collected all right, whale sightings and we
have over 100 from whale watching trips in the 30 year period. And the majority of those
sightings I think 85 to 90% or more are in 300 feet of water or more. So, out 15 to 20 miles
offshore. That's what we found. So that's where co-occurrence is. I sit in on the take reduction
team when I had a chance to speak, last meeting two years ago. And I think that's where we get
our greatest conservation effort. Um, also, I wanted to say that we looked at the sighting data
from Mount Desert Rock, the Lighthouse tower data, there was a long term watch by Allied
whale researchers counting whales from Mount Desert Rock, which, I think most of you know, is
25 miles off the coast of Maine. And in a 18 year period between 1976-92 there were 59 days
when right whales were seen. So if we add that all together, that's a 50 year set of sighting data.
Right Whales are in Maine waters and I'm not surprised that a lot of fishermen haven't seen
them. If you're working, I've worked on boats, your head down. But right Whales dive, they
spent 10 or 20 minutes underwater, they come up with good distance away. They're not, they're
not the easiest, whale to see. Um, but fishermen have reported them to us. Many times. We had a
trip on July fifth, 1991 that I remember vividly, where a couple of fishing boats off of Jones port
reported five right whales when we got there. It was five right whales. I do want to say that I
support the EFP proposal for ropeless and allowing testing and I and I heard the comments
tonight and I'm really surprised that so many are full of fear and concern about ropeless. No. No.
None of us that are working in this area to develop it, want to put a technology on your boat that
doesn't work, that's not, That isn't subsidized and supported by Federal funding. We aren't, we
don't want you to pay for all of it, the transition. We want it, it has to work on every level. But
just like the comment was made about the rover going to Mars, we use technology to solve
human problems Here. We have an opportunity to have a win-win solution. The fishermen could
be the heroes of the whales. And we're trying to develop it, so, So just come with me, or let me
come with you, and you can see, and I hope that you'll keep an open mind. Thank you.
Thank you, we have two last commenters, and just a reminder, please direct your comments at
the presenters at us. Eben. Eben do you have another comment, Or was the entry into new to the
questions?
I do have another comment. Ah.

930

It's quite hard to hear.
This is about the windmills and a lot of the scientists are in favor of the windmills I do want it be
known that 5 thousand whales have been killed, for the green energy. Because of the windmills
are wiping out the sonar, these scientists all for it, they will shut us down. They will successfully
kill the last right whales. What is happening over 220 decibels loud and the brain can only
tolerate 150 before it kills us. So the whale Doesn't know, left right up from down and end up
beaching. So this energy that All these centers are all about that are so for saving the planet. In
which you're going to have these floating mills off of Maine with floating, cable, it is inches
thick, it's going to be hanging in between each windmill, that is absolutely 100% against
everything that they want to save the whales. A great big cable drooping in between miles
becomes a wall that whales will not cross from the sounds. Also, the clanging of the chains
and multiple, 7 to 12 anchors of huge Chain. Nowhere whale safe. So I want it to be known.
They’d be the death of the whales by being clean energy, that is 6x more expensive. Or else, it's
saying clean energy. That'll do OK.
Thank you. OK, and last up Douglas, you should be able to unmute. You are unmuted.
Yeah I just wanted to point out that what everybody has said earlier from the fishing side of this
of what Zach was just saying all the data that he gave us is 30 years old. He just said, he saw all
these right Whales around Mount Desert, we all know Mount Desert is a hotspot for whales. He's
given 30 year old data. Every scientific thing I read now, is about how the Gulf of Maine is
warming faster than any ocean on the planet. With that said, the copepods, the right whales Feed
on just do not come in the Gulf of Maine, anymore. So I just wanted to point out the kind of data
that were living with on this side, is from people Like him saying, all this stuff about all these
right whales being seen is 30 year old information. That's all I had to say. Thank you.
Thank you. Colleen?
Yeah, I'd like to thank everyone for coming tonight. It's nearly nine o'clock. Thanks for all of
you. Quite a few of you who stuck with us all night. Um, this is a public hearing session. We
really were interested in getting public comments, And that's what we prioritized tonight. But if
you have questions that can also be turned into comments, please include those in comments that
you can submit in writing in our in our final documents. In our final rule, we will be responding
to comments, and a lot of those questions would be answered there, or well, and or incorporated
into the final documents. So, thanks, everyone, for your interest tonight. I'd like to thank
Commissioner Kelliher for joining us and for his comments tonight. As well as I saw a number
of take reduction team members and alternates on thank you as well and everyone else. And I
really appreciate the number of fishermen who spoke up tonight. We were concerned that our
remote meeting would make it harder for us to provide access for you. And your active
participation is really appreciated. So, thank you, everybody. Goodnight.

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Public Hearing 4
Northern Maine, Wednesday, February 24, 2021, 6:30-8:30 pm
The of the meeting. If you have not already, but want to provide comments tonight, please go
ahead and type “comment” into the questions box. We've already got quite a queue going. If you
change your mind, you can type or say, Pass when we call your name in the queue. We'll call on
each commenter and we'll try to let you know who's up next in the queue by showing the next
few names. Remember, we are recording this public hearing. As always, we ask you to please be
respectful, and please direct your comments to us, the presenters, and not to each other. When
you're called on, you will be unmuted, and then you'll need to unmute yourself for the recording
tonight. Please state your name before your comment. Comments will be limited to three
minutes, given the size of our audience tonight. You will be muted after three minutes if you've
already provided comments. But wish to give another one tonight. So if you've come up, we
called your name. You provided comments, you don't finish, or you wish to give another
comment, you'll be placed at the end of the queue to give everyone an opportunity to speak. If
there is still time at the end of the night, you may get that other opportunity to complete
comments. If not, please provide your additional comments to us in writing. This is a public
hearing. We want to maximize the opportunity for you to provide comments. If we wrap
comments up very early tonight, we may have time to answer clarifying questions. If we don't,
you can please send in questions as comments. As written comments, we are required to respond
to comments, and the answers will be in the documents in the preamble to the rule. In a minute,
I'm going to turn the mic over to Kara to help us run through the comment queue, But I'd like to
welcome and thank the many state representatives and staff from Senators King and Collins
offices tonight that we've seen in the queue tonight. I'd like to thank as well, a special thanks to
Representative Golden, who's on tonight as well for joining us. Commissioner Kelliher is also
with us. And we're going to start out introducing allowing him to introduce representative
Golden and inviting Representative Golden to make some remarks tonight. So with that, I'm
going to turn the mic over to Kara to unmute as needed.
Yes, Commissioner Kelleher, you should be able to unmute yourself and Congressman Golden,
I'm going to unmute you, as well, So you'll be able to unmute yourself when the time comes.
OK, thank you Kara, and thank you, Colleen, and your staff, for, again, hosting another meeting.
As you said, it's too bad, I think we probably would have filled the Civic Center tonight. So, but I
am very pleased to see the number of participants. I want to thank all the staff that are here from
all of the Congressional offices, Collins, King and Congresswoman Pingree's office. And I'm
very pleased to now introduce Congressmen, Jared Golden. Jarod has been very active in these
discussions. And we appreciate him taking the time this evening to address the agency. So,
Congressman, the floor is yours.
Thank you, You hear me all right?
Yeah.
Very well.

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Thank you for that. I appreciate it very much And I also want to thank everyone who joined
tonight as well as all the folks that are presenting and everyone at NOAA I do appreciate the
opportunity. I did want to start by acknowledging to the folks on the line tonight that the
delegation has sent a letter just today to the President, to the President, the United States, to
President Biden asking him to pay attention to what's going on here, as we did with the last
administration. And I think that the delegation is United, continuing to push to represent the
lobster community in Maine, But I'm not going to read the letter I'll spare you all that. But I did
think it was worth repeating a couple of key points, which I know you're all familiar with. I
know the folks at NOAA recognize the importance of this fishery to the state of Maine and to the
country really financially. It's incredibly important to these communities. It's everything. I also
wanted to point out, I know, you know, as well how hard they have strived through many years
now to work with you on risk reduction related to right whales. Quickly, I'll go through it.
Implementing weak links in 97, gear marking in 2002. Sinking ground lines in 2009 reduced
vertical lines in 2014. Working with you most recently on trying to come up with a plan working
with Maine DMR and NOAA on further potential rope reductions. I think that this community
has bent over backwards. But at the same time, I think they have some really valid questions of
NOAA about the evidence that is out there that they are, in fact, part of the problem because they
very strongly and passionately believe that they are not and the data seems to back that up. It
seems very problematic from their perspective, from my perspective and from the entire
congressional delegations. As NOAA has pointed out, out of 10, right whale entanglements in
US Lobster Gear from 1997 through 2017, 8 occurred before 2009. I'm sure we can tie that to the
move to go to sinking ground Lines. Made a big difference. In addition, the other two involve
gear from another state successfully removed, neither of which cause serious injury or mortality
to a whale. It has been since 2002 since there was a right whale serious injury or mortality
attributed to the Gulf of Maine or Georges Bank Lobster fishery. One of the points we made to
the president was that this fishing community, these families. And really the state I think,
deserves an understanding of how what they're being asked to do in regards to further regulations
is going to have any positive impact upon the whales whatsoever. If NOAA had data showing
that this fishery was at fault for serious injury and mortality, you surely would have presented it
in court. Uh, you know, We have, we have a common set of data here to look at, in regards to
what's happening, to right whales in the Gulf of Maine, you know, I guess what I would ask
tonight is, do you have documentation? Do you have some kind of set of best practices? What
evidence are you, are you using to inform the regulations that you've proposed, and how can you
show us the kind of agency, you know, best practices for how this is going to make a difference?
If any? one thing we pointed out was that the draft, BiOps projections said even if all 10 federal
fisheries that you covered were completely shut down, the North Atlantic right Whale population
would still decline at the same rate as it would under the 98% risk reduction is currently pending
finalization. I think this raises big questions about whether or not this is really going to have the
desired effect. And the outcome for the right whales but it is going to come at a very high cost
for these fishing communities. So now I think it's important that they have the opportunity to
provide feedback and be heard but also I think they need to hear an explanation about what
impact this is going to have. On the right whale population. I'm sure you're going to hear a lot of
testimony tonight about how hard of an impact it's going to have on them and on their ability to
make a living, very concerning, and I'm sure you don't want to move forward with regulations
that the data wouldn't back up. I know that's not why you do your jobs. I know that certainly you
can point to laws like the Endangered Species Act but would you move forward with these

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regulations, absent lawsuits, and in some ways, it looks given the lack of data that there's a
problem that's being solved here, it looks like this is regulation of the fishery by nongovernmental organizations through a strategy of lawsuits. Oh, And it's just that is not the spirit
of the law as far as, as far as I can see it. You know, this fishery wants to be helpful. They want
to make a difference. But they don't want to be regulated out of work, especially when they
suspect they're going to sit back and see that it won't actually have any positive outcome for this
whale population. We continue to see the focus of the problem up and up in Canada, as you've
heard repeatedly, I guess with that I would turn it back over to you so that the community can
weigh in on and I'm sure that they've got a lot to say and plenty for you to learn, but I suspect
you've heard a lot of it are already. So we're looking for a proactive and productive working
relationship as we have here and hopefully the best outcome for these lobster communities, as
well as for the whales.
Thank you very much.
Yeah, thank you, Congressman. And I appreciate, again, and appreciate your support and the
support of Senator Collins, Senator King, Senator Pingree on this important matter. I'll go right
into my comments, and knowing the knowing the large crowd, I will try to keep them brief and
try to also help focus some comments from the industry here tonight. And for the record, my
name is Patrick Kelliher, I'm the Commissioner at the Maine Department of Marine Resources.
I'd like to highlight a few of the comments from the Department. First around conservation
equivalencies, Trawling up. A key part of DMR's proposal is trawl length equivalencies,
whereby a trawl with two end lines is equivalent to a trawl, with half the traps, and only one
endline. This type of flexibility is paramount. A one size fits all approach in the State of Maine
will not work. Our coast is too large, and it has too much geographic and oceanographic diversity
to make it work. DMR will also be recommending the inclusion of conservation equivalency
proposals that have been developed by our zone councils. Throughout 2020, the Zone councils
worked with the department to develop conservation equivalencies that would work better for
their individual zones. The proposed closed area, the Agency Decision Support tool indicates the
LMA one closure if it was to be implemented, would become the most important conservation
area to right whales along the coast. There is very little data supporting this finding when DMR
mapped out the right whale detections from the Acoustical gliders mentioned in the DEIS against
the boundaries of the closure, 73% of the detections were outside of that area. If the agency
continues to feel that that area must be defined and in some way used for management in the
protection of right whales, we strongly urge you to consider a trigger approach. With the trigger
approach, the agency must also avoid creating a scenario where actions by a fisherman licensed
outside of Maine would trigger a closure that would only impact Maine fishermen.
Implementation date. And again, I would ask you to take the time to listen closely to the industry
members as it pertains to the implementation date. We think a reasonable timeline based on the
operational reality of the fishery will be needed. Ropeless fishing. Based on the proposed rule,
and especially the biological opinion, the agency is attempting to move the US lobster fishery, in
the direction of ropeless fishing. Maine DMR will continue to work with NOAA on the
development of this technology. But we must need to work within the operational realities and
acknowledge that technology is years away from this use at a meaningful scale. Gear laid out on
the bottom, without end lines, must still be, quote seen, by mobile gear, fleets, and others within
the fixed gear fleet. Ropeless gear must also be retrieved, inspected and reset by law enforcement

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agencies to enforce lobster regulations, not just whales rules. Again in your race to protect right
whales we must also manage sustainably manage the lobster fishery. Our next comments are
directed to the industry itself. I would ask the industry tonight please focus your comments on
some key areas that's very important for the for the National Marine Fisheries Service folks to
hear these comments. They are looking for feedback on whether you support trawl length
equivalencies, like the ones who included in Maine’s proposals and the zone. And the zone
conservation equivalency proposals that were created by the industry. They also need to know
the LMA one closure, how it would impact you, particularly the economic impacts, and where
you would move your gear. And please also comment on the time it takes to mark your gear, as
well as how long it takes to implement these measures and the best time of year to do it. It's very
important that they hear from you tonight on those matters. In closing, I would like to highlight
the Maine lobster fishery is the most valuable single species in the country. In Maine it
comprises over one point five billion dollars in economic activity. And touches thousands and
thousands of families. In the background of this proposed rule is a draft biological opinion. That
could very well be very devastating to this fishery and to the people who depend on it. We look
forward to trying to work with this agency and navigate through this very difficult time. Thank
you for your time. And as stated yesterday, the department will be submitting very detailed
comments on the proposed rule. Thank you very much.
Thanks. Commissioner Kelliher.
Thank you. OK, so now, as you can see on the screen, and people who have been put in the
queue so far, there are there are more, but as we go through the queue, I'll add them on. At the
end, the timer on the screen is three minutes. We ask that you keep your comments to three
minutes. I will let you know when you're over time. And as Colleen mentioned, we may be able
to come back to you at the end, but there are quite a few people in the queue tonight. So, as I call
on you, I will unmute you, and you will also need to unmute yourself. So to start us off for
tonight is Micheala. Yes. You are unmuted. Michaela, I can see that you're unmuted, but I can't
hear you. You'll need to make sure your audio settings OK. We can come back to you. Oh,
thanks. Thank you. OK, next up, we have Shayne Mcfarland. Shayne, you should be able to
unmute yourself. OK, Jim, O'Connell coming to you. OK, Jim, you should be able to unmute
yourself.
One second. Hang on.
I can hear you.
OK. I'm looking for my name. There it is, Hi. Can you hear me?
Yes. I can hear you.
My question. So how did you get 411 that's the amount of whales that you think are out there,
minus the 47 of the ones who had died. In that period of time, and 14, a serious injury decided to
call dead. So that comes. That means about 366 whales, is what you're saying, is out there. But
how did you get the number 411 to start with? And why does F, the one that looks like a
mountain, that, that shows the 411, Why does that graph go down, suddenly, in 2010, at the peak

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of a baby boom, from 481 to 411. That means, while the whale's, we're actually increasing, you
guys were killing off 27 per year on paper. That is the whole crux of this. I'm afraid the whole
thing is based on a terrible graph. Error. We're not going into extinction. We that. only for three
years, did we lose a population And that was 2017, 18, and 19. The rest of the time we're
gaining, and apparently, according to the math, we should be, we should be looking at 702
whales, not 366. So it seems like you're rationalizing a whole bunch of ways of cutting down on
the population, and none of it is needed. We would, we should go to status quo. We're on the,
we're in the beginning of a baby boom right now. The were came out of the boom from 2010.
The females are ready to give birth now. And they're starting to go for quite a while. Because
200 whales of sudden pop up, around 2000 to 2010, I mean, in 2010, there was 20 whales. Then
the follow, 2011 was another 20. Meanwhile, you, guys, just subtract 27 whales per year on
paper. It's just doesn't make any sense. There's so much more to look at here. Like the whales.
The Whale's that there was seven unknown whales found in Canada, in the Gulf of saint
Lawrence, there was 33 deaths, That's 21%, we don't know out there. For forever, we haven't
been able to count all the whales. And they're not marked and not registered. And they weren't in
so bad shape, you couldn't identify him. These were kind of fresh whales, just see killed by a
ship. And that was their guidance, whole fruit and critical, is the explosion in saint Lawrence.
Approach per year, tips per year? That it's been fixed. We're on the way up. We're into the
second baby. Boom. It's going to be a boom. Boom. Didn't mean I'm exponential, it seems. So
that's where I'd say just leave everything don’t make these lobstermen paint all these ropes, that's
a heck of a job. They don't even know how to paint. Probably can't hold the paintbrush. I'm
sorry. I'm getting carried away. There's so much more, uh, that we don't know about these
whales. Why haven't we seen these 10%? Where are they hanging out? I would suggest that you,
next time you see an unknown Whale, to actually put a tag on and track a couple of them. Just a
couple of me not going to harm the whole thing. And satellite for, do, are they going, why
haven't you gotten them.
Hi Jim Thank you so much for your comment.
OK, thank you for listening.
Thank you. Hey, John Emerson. You are unmuted.
OK, Thank you. I have a very short comment. And it is as follows, I don't have confidence in the
low number of right whales being used as the premise for adopting more strict measures such as
more traps on a line, more weak links, closures. And perhaps most troubling of all to me,
adopting ropeless fishing. I do think more work needs to be going into identifying the number of
whales and having that be accurate. And in addition to that, the collisions with the ships from
what I can tell, are doing way more damage to the whales than ropes from, especially from
Maine fishermen. So, that's my comment. Thank you.
Thank you. Bill McWeeney, coming to you, you're unmuted.
You hear me, Kara?
Yes, I can, Bill.

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OK, my name is Bill McWeeney I live and work on the Blue Hill Peninsula. Contrary to what
some people think entanglements have continued to happen in US Waters. three, right whale
entanglements have been found in US. Waters Just since October. As usual, no gear was
retrieved, nor were any of the whales disentangled. two are presumed dead, and one is probably
dying. As I speak, 86% of right whales have been entangled, and 60% have been entangled more
than once. There have been more than 1500 documented entanglements of right whales and only
16 of them have been traced back to the source. That means 99% of entanglement will not be
traced back to the point of origin. It is not so easy to find a smoking gun, like King Fisher in
2004 that actually had Maine gear on him. By the way, Kingfishers Flipper was wrapped with
rope so bad, his flipper turned white. That was just, before, he was last seen in 20 15. He suffered
for over a decade with that entanglement. With 87% of the pot trap gear on the East Coast of the
United States, it is extremely likely that Maine Lobster gear is responsible for many of the 1500
entanglements of unknown origin. Some people, miss interpreted the 1700lb breaking strength
research. I heard people saying last night that weak ropes will not help young and juvenile right
whales. That these weak ropes will entangle those whales. This is a direct contradiction to the
research that was done showing that no young or juvenile right whales were caught in ropes with
a breaking strength of less than 1700lb. That is why the Recommendation for weak ropes is
1700lb and those ropes let young whales get free. There's been a lot of talk about ropeless
fishing. This current rule does not rely on ropeless fishing to reduce risk. That is something for
the future. If fishermen think they're going to be forced to use ropeless in the near future. They
are not. The current rule uses weak ropes and line number reductions. And closures to lower risk.
Finally, I agree that fishermen should not have to trawl up any more than they are doing. It is
dangerous, fishermen and regulators should look closely at the research done showing the trap
reduction will not hurt the bottom line when fishing and the Gulf of Maine lobsters. There are
three peer reviewed papers showing that less traps in a given area will catch just about as many
lobsters as the full complement of traps. Thank you.
Thank you, Bill. OK, Jason, Joyce, coming to you. You should be able to unmute yourself Jason.
OK, Yeah, just came off can you hear me fine?
Yes I can.
Yep. OK, Jason Joyce Lobster fishermen of Swans Island Um, my family goes back here over
200 years fishing in this area. Um, I appreciate what Jared Golden said. I appreciate the well
thought comments that the Congressional delegation has put forth. I appreciate Commissioner
Kelleher’s comments on some of the things I'll try to hit on. I made a note here, obviously, at
first, they said, Not to just have a gripe session. I don't want anybody to say, Would you like to
have some cheese with that wine? But in my opinion, ropeless will not work. The technology is
not there, so I don't even, really want to talk about it because that will put us completely out of
business. I don't feel like there's enough data to support this plan or the closures. If the data
supported the closures in zones C, D, and E, then the proposed windfarm by the Governor should
not be allowed to be introduced near that area. Because if it was, it would likely change the
whale's migration pattern. The negative effects of this plan on Maine’s economy and my Island's
economy will be catastrophic. We have 370 year round residents. If, as I look at, not just this

937

year’s plan, but the extended plan for 10 years, what the reductions are going to be, it will make
us into a seasonal community and my family has been here since 1806. It doesn't make any
sense. We are small boat fishery as well. So the trawling up is difficult. If we have to do it, we
will, I, I do support Zone B's Request. To be able to split the trawls so they can have one end
line. Lot of the boats are smaller where they've traditionally fish. If they have to go in with two
lines, it's very difficult. And some guys fish by themselves. This is going to be very difficult on
them because they're going to have to come up with some crew. We don't have that many people
on the island. So, I'd have to dig up somebody. one thing I'd like to mention, I'm good friends
with the fellow down in Chatham Masters name is Billy Chaparralus, he worked tagging great
whites when they first showed up 6, eight years ago down in Massachusetts. And he was telling
me when they watch the tagging of those great whites, they end up down off of that. I think it's
south of Carolina’s maybe off of the Florida coast where the right whale birthing areas and his
theory is a great whites are down there for cheap meal. And I've never heard that studied to
check if that's where maybe some of these low birth rates come from, but I think that's a
possibility. He's a fisherman. And he has worked on a lot of these projects, and he studies it. And
that is his theory for the low birth rate, low birthing success because the great whites are down
there having a snack. Other than that, I appreciate the time to speak out and again, I agree with
that the Commissioners comments as well as Jared Golden and our Congressional delegation.
Thank you.
Thank you, Jason. Gina, you are next. OK, Gina, you should be able to unmute yourself.
Can you hear me?
Yes, I can.
Hi, good evening. My name is Gina Gary. Thank you very much to for the opportunity to speak
with you this evening. I wanted to add some comments to what I had to say last night. I'm in
Portland, Maine. I am the Maine State Director for Animal Wellness action. And although I have
spent my entire life on the New England Coast and understand the delicate balance of healthy
fisheries and environmental obstacles in particular, those related to driving the potential
extinction of a keystone species such as the North Atlantic right Whale. I'm going to leave
specific comment on the gear, and the recommendations surrounding gear to the experts and the
fishermen that you have on the line tonight. But I will say that we believe at animal wellness
action and the Center for Humane Economy that resolving the fisherman's dilemma and the
lobstering industry's dilemma in terms of their wish to also protect the marine mammals in their
waters and saving the North Atlantic right whale. That those propositions are not mutually
exclusive. But we do have no time to waste with less than 85 breeding females, and in excess of
80% of the population documented with scars and injuries from entanglement from fishing gear.
So, more needs to be done, and while the rule proposal is a good first step, it does not go far
enough. I will say that what we support, Well, sorry. What we do not support is the trawling up
proposal, as has been mentioned, as it increases the risk of lethal threat to whales and increases
the risk to the fishermen. We do request and support longer and larger feeding habitat closures
through the northeastern fisheries, especially in the Gulf of Maine. And we do support an
increase to the proposed risk reduction measures from 60% to 80% given the updated numbers
on the population counts. We'd also like to add that Commerce needs to create financial

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incentives around this proposal for fisheries to offset the anytime off the water to our local
fishermen and any reduce catches that evolve from being off the water to their practices. And
also to cover the cost of any gear changes. And we also recommend further that this proposal
consider creating a funding mechanism for a state-of-the-art tracking monitoring system. As
Canada has done using drones with live feeds, accessible to the fishermen, 24/7 on the location
of feeding whale pods and to substantiate the necessity of the closures that are proposed in
summary with so few animals left in our waters. We need to get this right the first time, and I
appreciate your consideration. And we at Animal Wellness action and the Center for Humane
Economy, hope you will amend your rule to consider the request. Thank you.
Thank you, Gina. Hey Jack, Merrill. Coming to you. OK, Jack, you should be able to unmute
yourself. Yep you’re unmuted.
I’m on?
Yes, I can hear you.
I've got a degree in Marine biology, and I've done oceanographic work, but I chose, Instead a 45
year old year career as a Lobstermen. After spending the last month researching the scientific
data, there's clearly a disconnect between what it says and what NMFS is proposing, even a
further disconnect between what the data and what environmental corporations are alleging. The
fact is that no, right whale death or serious injury event has been attributed to Maine lobster gear
ever. The fact is, there is only one documented entanglement in Maine gear in the last 20 years.
And that whale was disentangled 9 years ago. I sent NMFS 20 reasons I found fault with the bio
opinion. And here's a few of those. It assumes mortality and serious injury of unknown origin
occurs equally in the US and Canadian waters while acknowledging that the overwhelming
number of entanglements and ships strikes have been happening in Canadian waters in recent
years. It assumes no future reduction in mortality and significant injury from ship strikes or
entanglements in Canadian waters, despite the most recent evidence to the contrary. It
acknowledges that entanglement rates have been markedly less since 2010, but fails to recognize
the importance of the significant gear reconfiguration. It fails to evaluate the importance of the
most significant threats, disease, toxins, pollutants, and the overriding factor of global warming.
It fails to evaluate pollutions effects on feed health, birth rate, and survival. The absorption of
plastic by all levels of sea life, for example. It acknowledges, but fails to calculate the drop in
surveillance and the parallel relationship to less whales seen and counted. It fails to recognize the
importance of co-occurrence information, which shows a change in right whale travel patterns,
taking them to the outer boundaries of Maine’s possible, lobster efforts. It gives very little
recognition to scarring caused by ship strikes, natural scarring caused by the attack from other
marine animals or their own attempts to rid themselves of predator sea lice. It fails to
acknowledge that while attempting to calculate minimum population numbers and incorporating
the unusual losses from 2015 through 2018, the right whale population has increased over the
last 40 years by 56% when most other animal species have significantly declined. It fails to
consider that since serious known entanglements in US Lobster Gear remain Minimal, or Nonexistent, Other factors must be the primary causes of population threats. And three final
comments: Trawling up is dangerous for both Whales and humans. Random seasonal closed
areas, is a bad scenario for both whales and humans. Conditions, right whales are now facing are

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changing rapidly. We're looking at a no analog future predicting right whale populations one
year ahead is hard enough, but making 10 to 50 year projections impossible. Everyone seems to
be ignoring 2020, was on all accounts a good year for right whales. Thank you.
Thank you. OK, Karen. All right. OK, Karen. You're unmuted.
Hi. Thank you for this opportunity. I've attended all three of the previous sessions on right
whales. I'm an ordinary citizen living in Florida. And I'm an advocate for the environment and all
creatures living in it. While, I'm not unsympathetic with the plight of the people whose incomes
depend on fishing, lobstering, crabbing, shipping and cruising. I'd like to send out a reminder that
there are alternatives as unpleasant as they might seem for some. If jobs are impacted, or even
end, there are other options. In contrast, if right whales are killed off, or if their numbers
dwindled to the point of no return. That's it. It's over. There are no second chances. Whales are
an important part of the ecosystem that we all depend on for life. Scientific data shows that they
even affect climate, without whales, all life would be negatively impacted. There are complaints
that data is old and more research is needed. But no more research is needed to demonstrate that
right whales are in extreme danger of extinction, and that there is a dire emergency. Now,
According to the Marine Mammal Commission, which is part of the US government, there used
to be a minimum of 10,000 right whales. Some who work at sea say that whales aren't where
they work, they never see them. Well, maybe they never see them because they're almost all
dead. So as the situation of the right whale is urgent, I urge that every measure possible will be
taken to save the species and prevent the suffering of whales who are victims of human activity,
fishing, crabbing, lobstering, shipping, and cruising. Thank you.
Thank you. OK, Russel, Wray. OK, you should be unmuted.
Yep. Can you hear me?
Yes, Russel I can hear you.
Good evening, I’m Russel Wray and I'm providing comments for Citizens Opposing Active
Sonar Threats or COAST. The proposed rule states alternative 2 was selected as the preferred
alternative quote. With extensive input from fishing industry stakeholders who will be directly
affected by the measures unquote. COAST acknowledges fishermen in their communities will be
affected. Firmly believes that state and federal government must financially assist them in
making any required changes. This statement and the proposed rule on the whole implies others
will not be affected, which is far from the truth, especially seen as some measures proposed,
most likely will not prevent right whales To be injured and killed at rates exceeding your PBR.
Thus moving a species closer to extinction. This negatively affects the ecological community in
which the right whale plays a vital role like the whales themselves, these community members
are also stakeholders. The draft EIS did not properly consider ecological impacts. In addition, a
great many people care about the well-being of our oceans, whales, in particular, for some they
are a source of awe and wonder and mystery. I'm one of those people having been totally
fascinated by whales and dolphins as a young kid. To this day as a professional artist, their
beauty inspires much of my work. So while we may not be directly affected economically, we
are stakeholders all the same who are directly impacted by the inadequacy of the proposed

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protections. News of the whales' impending extinction has caused people across the globe to
show sadness, anxiety, depression, and anger. Given the fact we are already facing multiple
environmental disasters. Looming extinction of this iconic animal further drains people's hopes
for the future, no doubt hitting young people, particularly hard. NMFS gave these widespread,
direct effects. Little consideration and No, real wait. A few lines included in Draft EIS were lip
service and nothing more, this heavy bias on the part of NMFS decision makers in favor of those
economic interests. It's not fair or justified. Any final rule must consider and give due weight, All
impacted stakeholders not just those affected economically, the protective measures must be
made effective in the real world, not just on paper. Thank you.
Thank you. OK, Katherine Deuel
Can you hear me?
Yes, I can.
OK, Great. This is Katherine Deuel with the Pew Charitable Trusts. Pew agrees with others that
the proposed rule is fatally flawed and needs to be significantly revised. The data and analysis
used to develop the risk reduction target is based on an outdated understanding of both
documented and undocumented deaths and serious injuries. NOAA has also failed to apportion
PBR for right whales between US and Canada and between entanglement and ship strikes, even
though there is ample scientific basis for doing so. If this were done, it would clearly show that
NOAA needs to bring the level of mortality and serious injury in this fishery to effectively zero.
Unfortunately, the situation for right whales has only gotten worse during the three years it has
taken NOAA to develop these proposed rules. NOAA should take immediate action and
implement several temporary closures to vertical lines, while working to revise and propose a
new set of alternatives. We'll have more details in our written comment, but I wanted to make a
few more key points tonight. First, I want to emphasize that public comment from all
stakeholders, similar to what Russell just mentioned, should be considered, including those who
sign onto group letters that are submitted into the online portal. Many Americans across the
country have weighed in on this issue already because they don't want whale species to go
extinct. And they care deeply about the status of an endangered whale. Even if most of them will
never get to see a right whale in person, please ensure all comments are counted no matter how
they are submitted. Next, on ropeless Gear Pew's glad to see that NOAA has proposed allowing
ropeless fishing in areas that would be closed to vertical lines. But NOAA can and should do
more to advance ropeless gear beyond these areas and work to solve the legitimate economic
technical and logistical issues with ropeless that are being raised by the fishing industry. These
issues are not impossible to solve. People are working towards solutions already, and the issues
can be overcome within the next year or two if all stakeholders work together and keep an open
mind.
NOAA should keep ropeless moving forward, by demonstrating leadership and tackling
challenges and providing funding opportunities. Finally, it has been mentioned by different
stakeholders. And I agree that NOAA should more fully explore the concept of dynamic
management. Closing some areas to vertical lines when right whales are spotted, and then reopening if there are no additional sightings. NOAA has not recently analyzed or explored
dynamic management and should consider that there have been advances in technology since this

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system was last used in the US 15 years ago. And NOAA can look to similar programs in
Canada. Just last week, Canada announced their plans for 2021 to once again, use real-time
detections to close areas. to vertical lines when right whales are present and then re-open them if
no whales are detected again. The US should follow suit. The decline of the right whale
population requires all options to be on the table. And unfortunately, this proposed rule only
offers a narrow set of measures that will not do enough to reduce risk of entanglement in US
waters. Thank you for the opportunity to comment tonight.
Thank you. Michaela Morris, You should be able to unmute yourself.
Great. Are you able to hear me?
Yes. I can hear you.
Great. Thank you Also, like everyone else, has said for the opportunity to speak tonight, my
name is Michaela Morris and I'm an Oceans associate with Environment America Research and
Policy Center. We are a nationwide non-profit that works to protect clean air, water, and open
spaces. We are fortunate in the United States, and that the United States has a rich natural legacy.
oceans, where whales dolphins, and sea turtles thrive, forests where families hike together like I
grew up doing I’m from New Hampshire. And mountain ranges that stretch into the distance,
right whales are a part of this natural legacy of natural beauty. And in sharing that future
generations are able to experience the beauty of our wildlife and wild places, starts with standing
up for our most vulnerable species like these whales. A framework of strong environmental
protection laws, like the National Environmental Policy Act, Marine Mammal Protection Act,
and the Endangered Species Act, codify this set of values. It is in this spirit today that I testify
tonight with grave concern for the future of our north Atlantic right whale. Scientists estimate
that we can lose less than one right whale per year, but since 20 17, we have had over 30
documented, right whales deaths most caused by human activity. And as we all know,
Entanglement in Fishing gear accounts for at least eight of these deaths, and has caused at least
13 more serious injury. At Environment America, we believe that the current draft of the risk
reduction rule to modify the Atlantic large whale take reduction plan, as proposed by the agency,
does not uphold the American legacy of environmental protection and will not do enough to
protect right whales from one of their top threats. I will submit more comments through the
portal, officially from our organization, but I would like say a couple of key points. First, I
encourage the agency to formulate a much stronger rule, taking into account the input of all
stakeholders, like Katherine and Russel, just mentioned. I'll also say that we need more and
longer habitat closures. To truly save the species, we need to dramatically reduce the amount of
vertical lines in the water. And the proposed closures are too short in duration and not large
enough to protect these whales. Looking in the long term, we also believe that ropeless fishing
gear is the best path forward. We know the best way to prevent entanglement is by removing
vertical lines from the water and in the long term. This means ropeless fishing gear and forging
a path for the widespread adoption of such technology. NOAA Fisheries must continue efforts to
test, and foster a market for ropeless technologies. Um, NOAA was petitioned. Actually, I'm not
going to. Finally, we encourage the agency to rewrite the rule according to updated right whale
population data. The risk reduction measures in place aimed at achieving a significant sufficient
level of risk reduction to prevent seriously damaging and fatal fishing equipment, entanglement

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so that the population, can avoid extinction are based upon an outdated right whale population
estimate. Today, I urge you ultimately to uphold our legacy of environmental protection and do
everything you can to save the North Atlantic right whales. Thank you.
Thank you. Robert Simmons, I’m coming to you next. I'm not sure which one to unmute, so, you
should be able to, unmute yourself. Robert, Simmons, you should be able to unmute yourself, if
you can hear me. Oh, I'm so sorry. Yes, you did. I apologize. Yes, thank you. Thank you for that
reminder. OK, Christian Porter, I'm coming to you next. Sorry The list is so long. Imagine me
running around the auditorium, bringing you a mic OK, I'm in the K’s now, Kristin Porter. There
you are, OK, you're unmuted.
Can you hear me?
Yes, I can.
OK, thank you. My name is Kristin Porter and I'm president of the Maine Lobstermen’s
Association. I'm here tonight just to give a few comments from the association, but we will be
submitting lengthy written testimony. So I'm going to be here too long. But I just wanted to say
that this plan has to be based on sound science, lobstermen want to do our share, but we can't
prevent whales from dying in Canada. Just a few facts from National Marine Fisheries Service
data. From 2016 to 2019, 39% of the right, right whales serious, injury and death, we're in
Canadian fishing gear, and that was 0% from US fishing gear. And because there was so much
prevalent gear, there was, there was a, a person testifying earlier said that 90% of the gear was
unknown, that rate went down to 61%, because there was so much Canadian gear on from that
time period. So, and 10 of the deaths are in Canada in 2019. So, but yet the US fishery is
supposed to take 50% of the unknowns. Which means that we are, we're at 60% risk reduction.
And that just doesn't pass the straight face test. And MLA has been saying that since day one of
this process. And we continue to say that, um, your data shows that right whales are rare in
Maine, and it seems it seems pointless. For us to be doing all of this with no sound data, there are
thousands of families and dozens of communities that are being affected by this. Please consider
the cost of these regulations compared to the little real benefit it has to the right whales. And I
also want to comment on a couple of things as a fisherman, that I do support the trawl up
equivalencies. If you think about if you have a 20 trap trawl rate requirement. And so that would
be two lines for 20 traps, But if you, if somebody wanted to fish 15 traps with a single end, they
wouldn't be able to do that. And that would be a lot less lines in the water. So just. And so just so
it could be a chance to have less lines in the water by those equivalencies. And also, I support the
conservation equivalencies because Maine is such a big state and the zones are so different. that
as long as they meet, that the threshold for the, for the 60% or whatever percent that we have to
use. I support those. So thank you.
Thank you. OK, Brian Tripp, you are up. next. You should be able to unmute yourself. I can see
that you're unmuted, but I can't hear you yet. If you have headphones in, then just make sure on
your audio settings that then your microphone and speaker settings match whatever device you're
using. We're going to, we're going to go to Jacob, and then we'll come back to you. So, you'll be
up next. OK, Jacob Thompson, coming to you next. OK, Jacob, you should be able to unmute
yourself.

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Yes. Can you hear me now?
Yes. I can hear you.
OK. I just had a few things. We've heard from a lot of people that are paid employees of nonprofits. And you have to realize that a lot of the fishermen aren't comfortable commenting on
these forums. So that kind of goes by that but also you guys have a whale sighting app on the iphone iPad. And I don't see where in January there have been any whales in that area one closure
that you guys are talking about. And it also seems pretty convenient that it follows the Area three
line. When, I mean, obviously, whales don't know where these arbitrary lines that you guys draw
on the water are. And all these people that don't know anything about fishing are talking about
this ropeless, ropeless fishing, I would like to see them have to do their jobs with no internet,
That would be comparable of us doing our jobs with No rope in the water. Maybe that would get
them thinking about how hard, uh, of a job that would be, too, for us to do. Also, Since we
started doing all of our things that you've mandated. We've gone from 200 to less than 300
whales to over 500 whales before climate change in feed sources. And God knows what changed
to make all the whales die in the last 4 or 5 years. And the last thing I'll speak on is I am in favor
of the conservation equivalencies. Some boats in Maine are 30 feet, some boats are 50 feet. You
can't have a one size fits all rule. And with the area one closure, I think there if it has to go
through. there should be some kind of a mechanism. But we shouldn't be lumped in with the all
area one fishermen, because down in Massachusetts, obviously they've had a closed area for
years. So they obviously have a problem. So it shouldn't be if so many whales are entangled in
area one that we get closed out, it should be just in the zone around where they are, which I know
will be hard since you don't fly any planes or know where any of the whales really are. Then, the
last thing was about the how we didn't get any credit on how much money we spent for the gear
marking because that was the big, big time suck for me last year, that probably cost me a lot of
money that you guys didn't include. And I know my three minutes is up, so thank you.
Thank. You, Jacob. Thank you so much for your comment. OK, Brian, I'm going to come back
to you. Oh, OK, we're going to come back to Brian. After that, he looks like he’s fixing audio,
OK? Max Strahan I'm coming to you next. OK, Max, you should be able to unmute yourself.
All right. Can you hear me?
Yes, I can.
All right, so my name is Richard Maximus Strahan, I’m with Whale Safe USA. And I'm the
whale guy. I started I am the responsible for most of this stuff going on. I'm a scientist and also a
commercial fisherman in New Hampshire and Massachusetts, a green fisherman. The problem
here started when Congress handed the right whales and all endangered marine wildlife over to
NOAA. NOAA is corrupt and has had corruption and fraud since day one, because all NOAA
wants to do is support the small, insignificant, commercial fishing community in New England in
the north-east. We have 350 million Americans want right whales to survive, but it has this
forum today shows. We only have a handful. A teeny percentage of people who actually want to
kill the right whales off so that they can make their cheap profit of destroying ocean wildlife.

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Instead of having real jobs, they make things like farmers do, instead of just ripping off the ocean
for all its biomass? All of this is actually illegal that NOAA’s brigade is spent most of its time
trying to evade the Endangered species act enforcement, and it's done that till this day. The
Atlantic large whale take reduction plan, as it's now operate is completely illegal. NOAA can't
make that negligible impact determination required under the Act. And it's formed this Atlantic
Take Reduction Team of commercial fisherman in their support WINGO or get your supporting
whale interested NGO's, despite the fact that they can't allow a single take of any northern right
whale or any other endangered whale in mass in the New England area. And despite that, they're
going forward with this plan. And they ignore the number one alternative they should have put in
the plan, which is to ban all vertical buoy, ropes. But because they're controlled by the
commercial fishing industry, they ignore this obvious thing that would stop the killing the
whales. They claim the right whales are going extinct even if they stop fishing because they don't
want to recognize after decades of driving the whale population down, just like the codfish. The
right whales are so few in number. They can't bounce back if they wanted to. And that's the
problem. Right whales are gone. They're extinctions inevitable, and it's caused by NOAA And
now as a green fishermen, the problem is we need to fire all these lobster pot fisherman and open
up the fisheries to green fishermen who can't even get a permit now and go fishing. And that's
what is going to be decided in the Federal courts in Washington and in Massachusetts and
Maine, because state federal judges or rule states have to get incidental take permits under the
ESA that Marine Protection Act Regulations do not work, are invalid and illegal. And I
personally well not obey these regulations because they're in violation of the Endangered Species
Act and killing whales. CLF and other WNGOs have only backed up now, NOAA and prevented
the protection of these whales, and if there's one agent in the world that's responsible for their
extinction would be the Conservation Law Foundation, which told the federal judge after reordered.
Hey, Brian, have you oh no Don't worry. We're going to keep you on the list and come back to
when your audio is connected again. OK, Richard Howeland. I am coming to you, Richard.
I'm going to just jump in, while Kara’s looking.
Yeah, yeah, I'm right here. Can you hear me?
Yes, OK, hold on one second, Richard, and I'll come back.
Sorry Richard, we won’t start the timer until I’m done. Colleen again. I want to remind everyone,
Max was directing most of those comments at us, and so we did let him finish. But we, yes, we
do ask that people be respectful and do please direct comments at us, and we will limit folks to
three minutes. If we had heard foul language or any kind of threats or anything like that, We
certainly would have cut him off. So, thank you for the chats in the question boxes.
Great. Can you hear me?
Yes, I can hear you.

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OK great, I'm Richard Howland and I'm a lobster fisherman from Little Cranberry Island. I
guess, I'd like to offer the previous speaker an opportunity to come on the boat with me. and
actually see the operation I'm running and see the modifications I've made to protect whales. You
know, We really I think we probably have more in common than then we Don't, but he sounded
pretty negative. That's too bad for him, but I've heard a lot of people on this call thanking the
politicians and the government officials. I want to thank the lobster fisherman for being on here.
We're actually the ones that have something to lose, the politicians, the scientists. And the
government officials are still going to have a job after this is over. I really understand this
process pretty well. I've been involved in the industry for a number of years. I've always been
willing to compromise, but I'm actually starting to question, is this really about saving the
whales. Or is this about the environmental groups that are pushing a radical agenda to have
something to hold up to their donors so they can say, look, we put lobstermen out of business,
could be saving whales, please donate money. When the honest truth is, after you guys have cut
us back by 98% by the year 2030, similar to what representative Golden said, ships are going to
continue to strike whales and kill them. And all you're going to have left is it decimated coastal
economy on the coast of Maine, a coast of full of hard-working, honest guys. That just want to
earn a living, have never hurt whales in the first place. Please think about that. What is this all
about, and what will this actually accomplish? Thank you.
Thank you. OK, we're going to go to Barry. All right, Barry, you're unmuted.
Hi Barry had to step away, so this is Gretchen Catlin his wife, I'm speaking on his behalf.
OK When he gets back we can put him back on the list as well, but.
OK thank you. So Barry has been a lobstermen since he was eight years old, he's never seen a
North Atlantic, right Whale in the Gulf of Maine, he was also in the merchant Marines for over
eight years and has been in every ocean except the Antarctic. during that time. He’d only seen
right whales on the East Coast of Florida. While he was on a 700 foot break bulk shifts doing 19
knots, and the vessel never slowed down, through that pod of whales in the wintering grounds.
So that's a concern that we have is regarding the ships. And the negative impact they're having
on the whales, down, off the coast of Florida. The amount of shipping traffic in the Gulf of
Maine has been reduced. But we encourage further reduction, of the nautical speeds for the
shipping vessels to help protect the whales. Thirdly the economic impact of closing Area one
would not only put Barry out of business, but it would put several other lobstermen out of
business without sound data to support these measures. So we encourage further research to be
conducted before we implement, further changes that will negatively impact all of the
lobsterman, not only in Maine, but Massachusetts, New Hampshire, as well. Thank you.
Thank you. OK, Darren Turner, Brian. I will come back to you, we are so close. Darren Turner,
you're next. I'm not sure which account. You should be able to unmute.
Hi can you hear me?
Yes. I can hear you.

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OK I’m a fishermen, Maine fishermen, lobster fisherman, and other fisheries. I've had 25 years
on the water. I love all ocean life. Um, but while I'm fishing, I've never seen a right whale or an
Entangled Whale of any species. With that said, I'm focusing on science here. The ocean is really
big. And it's really big for fine-tuned science, that we're trying to achieve. With all due respect,
very intelligent people doing the best they can with, with what resources they have but, science is
repeatable and peer reviewed, and it just seems like there's a lot of holes in it. I just ask that, we
put data before agenda, and if we don't have the data, that's solid, and we really are going down
the wrong road. Um, moving forward with questionable data, it ruins the National Marine
Fisheries Service’s credibility, that's just the road that we're all heading down. With that said, I
just disagree with the whole proposal based on the premise of the, of the of the holes in the data.
So, but specifically, the 1700lb breakaway will cause me to lose extensive amounts of gear, I
fish, weigh up in the Bay of Fundy. And the tides are enormous, and we have tangles in.
Anytime there's a storm that blows through, and we get a big sea, we have our gear our trawls
tangled together. And, I am telling you it is heavy when you try to pick them up and untangle
them, and the breakaways are going to cause us to lose a large amount of gear and there's going
to be huge costs, not just the gear lost. Um, and if you lose a couple of trawls right during the
run, we have like 5, 6 week season where we make most of our money if you lose trawls you're
losing a huge amount of your income percentage, so the costs will be enormous, not to mention,
It's going to leave a mess on bottom. So, that's all I have to say. Thank you.
Thank you. OK, Brian, I think we're there. Brian, you should be able to unmute yourself. I can
see that you're unmuted, but we can't hear you yet. OK, we'll come back to you, I promise. We
will not give up tonight, OK, Matt Gilley, you're next.
OK, Can you hear me?
Yes.
Alright. I spoke last night and I'm a lobstermen I'll try to keep it short. I'm not very good speaker.
I spent most of my time on a boat not most my time, speaking to different groups, like a lot of
the people that have spoken before me. one thing I will comment on is I think the whole way that
this has been done with the Zoom meetings is unfair to fishermen. We have an industry we're
averaging 58 years old. A lot of these guys don't understand how to use the technology that has
come out within the last year or two. We've just started using since the pandemic began. And we
have environmentalist who this is. Their whole job is to go to Zoom meetings and make
presentations and stuff like that. As lobstermen our job is to lobster. We don't understand how a
lot of this works and we're doing, the best we can to make an effort to make our voice heard.
Following that up, the few points I do have is I want to reiterate something I heard last night last
year is a prime example that we're not the problem. There was no reduction in effort or by the
lobstering community in Maine, and the only thing that's stopped happening during the pandemic
with cruise ship, the amount of right whales that were hit last year, and killed were two, none
were entangled, so that right there shows that we're not the problem. It is the shipping industry
56% of deaths NOAA themselves has contributed to the shipping industry. So, even if you take
all of our line out of the water, the population is still going to decline. Last year, I was at one of
these meetings, and a ship came into Portsmouth. With a whale draped over its bow. We're not
the problem. Furthermore, ropeless fishing, It isn't feasible financially, safety-wise or anything.

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Let's say we sent out a string and my crew get snagged in the rope in the string goes over. What
do I do to haul him back, I can grab the rope now and throw it in the hull, and get my crew back
but if its ropeless what buoy do I grab to pull my crew back? You're asking me to put my life.
My crews life, Anybody else, life at risk for a whale that we've never seen? Let's just call this
what this is. And this is just a way to get us out the way so they can put the windfarms out there.
You have to follow the money. The money is coming from the environmentalists groups,
funneling into a wind farm. And they can't put their wind farm in If our gear is there. This is a
direct way to get us out of the way. So they can put windmills in. And windmills have been
shown to cause whale deaths between the electrical signal that they omit and the sound from
them spinning, they screw up their sonar and the whales beach themselves. We are not the
problem, and Max Strahan can go back to the street. I’ll end it on that.
OK, Tyler, well, Brian, let's come back to you real quick. OK, Brian. You should be able to
unmute yourself. Brian If you wouldn't mind calling our Help desk number. I've put the number
in a private chat to you. We should be able to figure this out for you. OK, Tyler Bemis and
coming to you next. OK, Tyler, you should be able to unmute yourself.
Can you hear me?
Yes.
Alright, I'd like to thank everybody on this meeting for letting me speak. I'd like to start off by
saying I agree with Commissioner Kelliher and Jared Golden and I thank them for speaking as
well. I'm a lobstermen from Matinicus Maine and I fish in Area one as well as inside the three
Mile line. And I disagree with just having a one size fit all plan just because, where we fish, the
majority of boats are under 35 feet and you can't, not going to be able to fish trawls and stuff
with these small boats. And another thing with putting more traps on one line with, uh, with
weaker rope is you're going to have more gear, parted, you're going to have more snarl ups with
the gear that's in there because guys aren't used to setting that many traps in an area. On one line.
So with a weaker rope, you're going to have risk of parting with your hands in there. It can rip
you overboard, you know you lose limbs, rip you overboard, cause a lot of damage and I just
don't agree with that at all. Also, with that, you're going to have a lot more ghost gear. You're
going to have a lot more rope in the water column. And, you're going to have seabed pollution
from the ghost gear rope, et cetera, which isn't good for anything. And then with more rope,
when you fishback ghost gear, you're more likely to part and lose more, which is just a revolving
door. And it's the same deal with that, add, more traps, to a trawl line. You know, and with that,
it's increases the size of the boat that you're going to need. And a lot of guys, then, they can't
make that financial burden. So, it's pretty much just going to force them out of area one, which I
don't think is fair at all. And then the zone closure For area one that you guys are talking about
from October till January, I don't think that very just either, just because that's during their
southern migration. And that's when the whales are the strongest. I think that if there was to be
an Area one closure it should be during the spring migration when the calves are the weakest.
That way they'll have a free path to get up there which I don't think that there should be a closure
without some satellite surveillance or flyovers, which there are none in Maine right now. If they
were flyovers and stuff and you to pinpoint where they were close down that one area and then
you could leave the rest of the area one open, until they're no longer there. But we don't do any

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of that. Instead, we're just going to blanket everything over and just say, Yeah, you guys are
screwed, and, uh, we're going to just close you down which is, which is crazy, because from
October until January is our most profitable time of the year. Thank you. That's all I got.
Thank you. Julie Rabinowitz you are next you should be yep, you're unmuted, can you hear me?
Yes. Good evening. Julie Rabinowitz with Maine people before politics I live in Falmouth,
Maine. And we echo the comments made tonight that the prior forms made by Maine's lobster
industry, have had a tremendous positive effect in the rebound of the right whale population up
to the 2017 mortality event. However, the data surrounding the recent decline in the right whale
population does not support these new regulations to the lobster fishery in the Gulf of Maine. We
continue to see mortality is tied to ship strikes. Many in Canadian waters, which these
regulations do not prevent 2020’s decline in shipping due to the Pandemic correlated with a
sharp decline in ship Strike, right whale deaths in the North Atlantic. A study published in June
2019 into Journal Diseases of Aquatic organisms, reviewed all 70 right whale deaths from 2003
to 2018. Entanglement was identified as the cause of death in 22 cases, of which 14 involved
Canadian snow crab fishing gear. one involved US gear and the remainder were unidentified
since the period of that study. Here are the facts. The 2019 deaths in Canadian waters were either
ship strikes or undetermined. The single 20 19 death in US. Waters was an entanglement off the
coast of New York. that whale snake eyes had been seen gear free in the Gulf of saint Lawrence
on July 16th, just a few weeks earlier than the entanglement when he was seen entangled in the
Gulf of saint Lawrence on August six. Excuse me. The deaths in 20 20 were in the Mid and
South Atlantic. Both calves, one killed by a vessel strike, and the other was determined to have
died during or shortly after birth. The sole death this year is a calf from a ship strike off the coast
of Florida. We should save these whales, however, the regulations under discussion tonight
would not have saved a single one of them and long after the rules are in effect. Right whales
will continue to die in Canadian waters and by ship strikes. Reducing risk on a computer model
is not the same as saving whales. Regulating Maine’s lobstermen do not stop deaths by ship
strikes in Canadian Waters, Studies also indicate ocean noise. such as that from ships or energy
generation could be a significant source of whales stress possibly causing both increased ship
strikes and fewer calves. Maine’s lobster fishery is unfairly bearing the brunt of the risk
reduction yet NOAA continues to grant right whales Incidental take authorizations for offshore
wind turbine development, which pose a significant risk to right whales and other marine
mammals, because of the interference with the sonar and may be it may also be affecting the
birth birth rates. Before implementing regulations. We ask NOAA to further investigate the
dangers posed right whales and other endangered marine mammals by the incidental take
authorizations and the development of wind energy in the region under discussion. Thank you.
Thank you. OK, we have Rebecca Johns, next, I’ve unmuted you. You should be able to unmute
yourself.
Thank you. Can you hear me?
Yes, I can.

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Thanks. So I guess I'm one of the few people on the call who has seen a right whale, which is,
which is one of my obviously many, many, many years ago, I came here from the UK. Must be
23 years ago, I drove down to the Sagamore Bridge because a friend called me and said a right
whale was coming through the canal, went down and watched a right whale swim through the
canal and under more underneath the second one bridge got a photograph of it. But clearly, I'm
one of a really small percentage of people on the planet. With that, I'm a marine biologist,
originally by training. Had a different career since, and I now live and work on the coast. And in
Maine there is a, and I, I haven't got prepared. I'm not reading a prepared statement. I've been
listening to what has happened tonight. Big believer in multi stakeholder groups. And there is
huge expertise in the take reduction team. And you've done amazing work over many decades
now. But it's really clear that the work of the team has been completely overtaken by the speed of
the decline in the population. And we can talk about 20 whales up, 20, whales down in the
population. Data. But we're talking about a small, a small potential percentage, and a really,
really small population. We're talking in a way, we're looking at a classic running to catch up in
the situation facing our proposals on science. But the nature of a good science is that results of
peer reviewed publications. We just can't keep up with the speed of the situation that we're
dealing with were nickel and diming the population estimates. Uh, and we really need to be, if
we're going to work with this narrow a margin for the survival of a species, we absolutely have
to be working with the latest population estimates, and it doesn't seem to me that we are. on top
of that. In terms of last year's numbers, the latest numbers were just not, our margin is not big
enough to be making the plans that we're making. With the estimates that we have, So, I would
really, really encourage the team to work with absolutely the latest. If we're going on the latest
data, if we're going to work with such small margins of error in terms of survival of the species,
the, the second piece is about the ropeless gear. My, my neighbors are lobstermen, wonderful,
wonderful people that I live and work alongside. But it's clear, if you, if you talk to my
neighbors, and, to, the kids in the elementary schools, along the coast here, that the only
sustainable, long-term future for the marine environment is ropeless gear if we want to
everything to survive. And we need a pathway to that. And it's not that we need everybody to
switch overnight. But we need an ability to have some piloting and some granting and financing
programs and none of that can happen without permitting scale. Thank you very much for your
time.
Thank you, Rebecca. Virginia, Olson, you are up next.
Hi, thank you. I wanted to thank Commissioner Kelliher, and Senator Golden. I agree with them
completely. Um, a few things I wanted to point out: I think that it is vital that NOAA looks at
Maine’s conservation equivalency on our zone proposals. That's what our trawl lines are very
important to our zones. The Closure and LMA one. I think that it is very important that to have
any sort of closure that NOAA has got to be able to show some sort of data that has is showing
that we have whales in some sort of seasonal aggression across multiple years in LMA one in
Zone C, D, and E, for this Closure to be an effect because we don't have whales there. And
having a closure on LMA one would hurt us considerably, ropeless fishing. It's not ready. It
would not be good to put ropeless fishing in any capacity in LMA one for a seasonal closure, or
in a future. Looking at a fishery at 98% risk reduction to a ropeless fishery. I think that is a very
scary future for Maine. And we need better science. If we're looking to save whales, we can go
on a satellite and look at my eight foot skiff on the dock, but we cannot tell where a whale is, the

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size of my house. I think that it's not feasible. We need to be able to tell where the whales are, to
be able to save whales. If that's where we're going, then let's let Max be a hero again, maybe he
can fix that for us. And I think that's all I have right now. Thank you for the time.
Thank you. OK, Jan. I'm coming to you, lots of Js on here tonight, OK Jan, you should be able to
unmute yourself.
Yes, hello. So first of all, I'd just like to say how much I respect, lobsterman and their lifestyle. I
just have a comment, and kind of a question: The density of lobster traps in some offshore areas
are so dense. It's hard to negotiate a boat through the maze. No less the skill a whale would have
to master to do so. So I'm, I'm just wondering if NMS has considered limiting the amount of gear
in given areas And maintaining wide unhindered corridors for whale-safe travel. That's my
question. Thank you so much, everybody. Goodnight.
Thank you. OK, next we have John. OK, John.
Do you hear me OK?
Yes. I can hear you.
Great. Thank you. Thank you very much. My name is John Drouin and I’m a lobster fishermen,
Cutler Maine. I've been lobster fishing for 42 years. Cutler is in the mouth of the Bay of Fundy
and we'll bring that up in a minute here. I have a couple comments and questions about your
data. And then I'll have a couple comments about your proposed rules. Looking at your marine
mammals Stock assessment, which was written dated April of 2020. You folks state that there
are 270 whales that were in 1990. And there were 481 in 2011. And currently, your estimates are
that there's 428.
And yet, this is out of your report. And yet at the beginning of the presentation, Colleen states
that there are below 400 whales. I've seen other people report, since these webinars are taking
place, numbers of like 366, It baffles me the inaccurate data that you're basing people's
livelihoods on and communities in. Anyways, it also continues on in your report that's in from
1990 to 2017 447 calves were born into the population all while you're claiming a decline. To me
that shows that we existed with the whales and a lot while they were rebounding. What happened
in 2011 is The Gulf of Maine warmed, the food sources had shifted again, I fish in the mouth of
the Bay of Fundy and I've never seen a right whale even though that's where the Right whales
summer for decades. They don't come through the Grand Manan channel. They go around the
other way. Um, what took place in 2017? Oh, back to 2011. So climate change, and the food
source shifted. So now, whales are stressed, they have no feed. And that's what, in my opinion,
attributed to the low birth rates. In 2017, what took place up in the Gulf of saint Lawrence? Oh,
that's right. Whale showed up there now because they found feed So they're now feeding. And in
the last year, the birth rates have gone back up, um, doesn't seem to me that the problem with
things were with the Maine fishery. According to your proposed plan. I support no closures
anywhere in the Gulf of Maine, along the Maine coast. The trawling Up scenario that Maine has
provided for you. We feel will work for most. It doesn't work for everybody, but nothing does. If
we're trying to work and trying to help, to save something that, again, we're not the problem of,
we will do our part . Give time for the gear markings to work. We've only implemented them last
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year, this is the second year. As with any regulation, you need to give time to work. The weak
links, again in the Bay of Fundy. They do not work. And I also fish in the gray zone, which is
disputed Waters with Canada. I would be put out of business sooner than the BiOp is suggesting
because Canadians will sit on top of us and we have no way of retrieving our gear. Thank you.
Thank you. OK, let me go. Michael Myers. You should be able to unmute yourself now,
Michael.
Hello?
Hi.
I'm Michael Myers. I've been lobstering out of Tenants Harbor and the surrounding area as a kid
my whole life. Ah, this whole right whale thing is, it's really got a bunch of us in, shaken us up.
I’ve been fishing my whole life, I've. I've traveled pretty much every inch of the, oh, this ocean
on the East Coast between Georges Bank to Massachusetts. And I mean, I've never seen a right
whale, I've been lobstering my whole life as a child, my grandfather was a lobstermen. we're,
we've been we've always advocated for wildlife, we're, you know, we're not, we're not this.
We’re not a whale fleet out there trying to rid the ocean of these creatures, because we think
they're there just as beautiful, domestic, as anyone does. And we've gone through great lengths. I
think we've proven it with our efforts to just, you know, to, to keep up with you, guys. And not
only keep up with you, but do stuff on our own to, to implement, you know, on our own. You
know, our own regulations. And in order to keep the resource alive that's what it's all about. We
want to keep it alive for everybody, not just for us. And we want to keep whales alive. We want
to keep the ocean alive. And that's what we're there for. We were not there, too So, I don't
approve of the traps and I don't approve of the closures. Um, I think, it all needs to go to the data
and the Science. And I think if this is what you guys are implementing on us, this is a big hit. I
mean, we've took hit after hit after hit. This is, I mean, this is, this is really food out of our
mouths, our families mouths, not only our families, I mean it, trickles all the way all the way
down the line. Car salesman's, auto insurance. I mean, it's not just us, its everybody I mean, we're
all going to pay for it if this is, if this is the way life is really going to be. So I think we've done
enough, I think, but if we can't back this up with science, then I think this is a raw deal, And I
don't think we're think we're getting this **** end of it. I don't really have much more to say.
And I hope, I hope everybody can see it through. You know, if you can prove the science that
we're killing whales, I think, you know. We will. we will gladly go out of our way to change
anything we can. But I don't think the science will prove that it's the Maine fisherman. Or any
fishermen harm at that mount so that I will leave my time. Thank you.
Hi. Thank you. OK, Julie Eaton. Julie you should be able to unmute yourself.
Can you hear me?
Yes, I can hear you.
Can you hear me?

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Yes.
Oh, yeah. Hi, my name is Julie. I'm a Maine lobstermen I've been fishing for 37 years. And I
have over 10,000 hours commercially diving underwater. I've never seen a right whale. As a
matter of fact, I've never seen any kind of whale. Maine lobstermen want to protect all marine
mammals. We don't just fish, because it's what we do to feed our families. But rather, it's who we
are. It's our calling. Most fishermen, in Maine live in small coastal communities or islands with
no other job opportunities. We don't have a Wal-Mart, a McDonalds, or even traffic lights.
Communities, our schools, and our way of life will die without the support of the Maine
Lobstering industry. We've worked hard to protect our ocean and our fishery. We have a
sustainable fishery. Maine should never be lumped in together with states that have actual whale
issues. The copepods, which are the preferred food source for the right whales, is no longer in
Maine water due to climate change, right whales do not come to Maine on vacation. Please
address the issue where it exists. Blaming Maine lobstermen for the decline in right whales is
comparable to blaming Mexico for the polar bear decline. They just don't have them and neither
do we. NOAA has stated. It doesn't fly over Maine looking for whales. Why is that? Because
there are no right whales are not here. We welcome NOAA to start flying over our waters,
please. We'd like to have some proof. If you intend on closing an area, give us documentation
that that area actually is a problem. We're willing to do whatever we can to save these animals.
They are amazing majestic creatures. But if they're not in our waters, we can't do that. I want to
thank Jared Golden and our commissioner and I entire federal delegation for going to bat for us. I
think that if you're going to close an area. Why isn't it in area three? Why does it have to be all in
Maine when Maine isn't a problem? I guess I guess I have to say I'm very concerned about the
safety of our fishermen, ah, Who already take huge risks, fishing offshore and uh, I'm very
concerned about increased trawl lengths and at what cost, if the whales aren’t here, It's not going
to save anybody but could really cost our fishermen, their lives and their lives that has to be of
value too. Thank you.
Thank you. OK Hannah. You should be able to unmute yourself, Hannah.
OK, Can you hear me now?
Yes. I can hear you.
OK, great. Thank you. My name is Hannah McGowan. I am a Native Mainer. I'm not a
fisherman. I have done some work, documenting the lives and work of our fishermen here in the
state. I'm a photographer. I wanted to speak mainly about two things and it feels like we're
looking to implement a lot of really massive changes here based on incomplete data that
ultimately is pointing to entanglement happening elsewhere. Um, now, my first big point here, as
we're talking about all of this stuff, really casual casually, We keep saying implementing
measures and just throwing all this, really great environmentalist, talk around, but like, let's talk,
like we're real people who aren't just paid by environmental agencies. I want to urge every single
one of you listening tonight, to consider that the actual implementation will be done by real
people, like Real Mainers who every day, get up before the Sun comes up, and they risk their
lives to feed their families. And ultimately, they feed all of us. You know surf and turf doesn't
happen without these guys. These guys feed us, giving over, the human element of all of that is a

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huge error. We need to not villainize our fishermen. They are some of our best conservationists
And they care so much about our oceans and our marine life being on the water as not just a job.
I mean, the time I've spent with, all of these fishermen, its who they are. It's the blood their
blood. It's their heritage, it's everything about who they are, and, skipping over that, in my
opinion, a massive error. Then, regarding trawling up, how do we really expect our fishermen to
trawl up? I've been on mostly small boats, and it would be extremely dangerous. Also, you need
to think about our older fisherman. Our older population, I mean, I spent time at Virginia Max
Oliver down in Spruce Head All and Miss Virginia as 100 years old, and her son. Is elderly as
well, sorry Max! They could not safely trawl up. They absolutely could not do that. They not
only do not have the deckhands to be able to handle that but their boat is small. I know several
other fishermen who will also have small boats, and that would be really dangerous. This is
something that we need to not forget about. We shouldn't be imposing costly and under
researched regulations on these guys, their jobs are dangerous enough as it is. And, you know, if
you think about what I'm saying here and you think, Oh she's just waxing poetic about fishing
because she's a Mainer and she’s a photographer and blah, blah blah. Call up a lobstermen and
go Out for a haul for a day. It's grueling. And we really need to respect that when we start
making them bear the brunt of all of these changes. Um, yeah, I just really want you guys to
think about the human element of that these guys care about our oceans and We need to care
about them, too. Thank you.
Thank you. OK, Brian, let's give it a go. You should be able to unmute yourself. Oh, I'm sorry, I
muted you. OK, try again.
Am I really unmuted now?
Yes!
Haha, that's crazy. All right,
Thank you for hanging in there with us.
Yeah, well, thank you. Alright, I'm not I'm not paid to speak to anybody. Pretty much keep to
myself like most fisherman. I go to work. And I come home and I live in a small world and I'm
an old fashioned type person. So bear with me. My name is Brian Tripp I’m a lobstermen and I
live in Sedgwick Maine, I fish offshore area one year round and I've done that for the past three
years. Before that I fished inshore for nine years I've got a 38 foot boat. It's a pretty, pretty small
38 foot boat, actually the way it's rigged. I employ a single stern man, and our, our boat, I say
ours, because he's just as much a part of the operation as I am, our boat earns a modest income,
and that provides for 4 adults and 8 children all under the age of 12. Maine’s fishing fleet is, is
diverse. And I think that needs to be taken into account, and I appreciate Commissioner Keliliher
bringing that up because that's what makes Maine special. We're all different and there's a place
here for everybody. I went to Prince Edward Island with Maine Lobstermen’s Association. I saw
how they operate. It's just a cookie cutter fishery. They're all the same size boats. They only have
enough berths for the number of permits. There's no room for anybody to be any different.
Everything's 45 feet long, 15 feet wide. And it's got to fit in in a certain box. What makes Maine
special is is my wife fishes a 20 foot boat. She fishes 180 traps, not that that matters to anybody.

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But that's what fits her. I've got an eight year old and an 11 year old. They both fish out of a flat
bottom skiff and, and they certainly aren't going to trawl up and neither is my wife, but, but I fish
10 trap trawls right now. I don't fish anchors because it's just Matt and I and we're not going to
lug 75lb anchors down to the stern. It's just not how we're going to work. We fish a single end
line, and we do that, basically, just voluntarily, It works best for us, because there's less rope on
the platform in this. We can turn and set them back quicker, and we can get home to our families
quicker. We fish. Like I said, 10 trap trawls single ends we haul 440 a day. We leave at
Whatever, four, 4:15 every morning. When we get back. It's usually after 5 or 6 o’clock, if
things don't go well. So, I just think it's important to take into account who we are, real people,
and what we actually go through, and what we do. I think single endline equivalency is important
trawl equivalencies. I think gearmarking it's way more time consuming than you give it credit for
because I have to change that, endline out that takes a lot longer throughout the day. And closed
areas create a gear curtain, which is way more dangerous for whales that we obviously don't
want to harm. Thank you, I know my time's up, and I appreciate you guys all waiting, working
with me to be able to hear what I had to say.
Thank you, Brian. That was really helpful and, and anything like that, if you'd like to type that
into the chat, if you have anything else to say, type it in the chat, we can come back to you or
submit it as a written comment. That was really helpful. OK, next we have Dwight. Dwight?
Can you hear me?
Yes.
Very good. Thank you, guys for having this meeting tonight. And all the fishermen that have
come on tonight to share their thoughts and questions and comments. Not so much of a fan of the
environmentalists that have come on with their some derogatory. I could care less about that. It's
not their industry that's at jeopardy. My first comment and question would be what other industry
has had a 60 to 80% reduction and made out, OK? oh, you said, Colleen, that we had to be
resilient to change, 80% of anything in a reduction is quite a change. And you'd have to be
nothing but resilient in order to change and adapt to that. So I'd be curious to know if, if, maybe
you could even answer it, if there's time left. What other industry has had that type of reduction?
Even 60% reduction and not had a monumental effect on really their way of living. Everyone on,
probably this meeting tonight is established with a financial burden based on an income that
they've generated. Even myself, I make X amount a year. I base my bills off that you dropped
that reduction to 60 to 80%, that's less income. Now, someone said that if you take the, everyone
fishes 600 traps, well, yes, you're going to be close to the same amount of pounds per year.
Maybe you'll have more pounds per trap. But that does not mean that the price is going to be
there for us. So that, I mean, you guys say, OK, let's reduce that but you don't control the price.
Actually matter of fact and I'm sure you all know this is that there's big businesses buying up
waterfront properties that are selling these lobsters premium brands. one of them that's another
factor fishermen have to fight with is the price of a lobster. pretty soon that's going to be
controlled and dictated just like this type of the end of the industry is. My other comment and
question is, we talked about the gear marking up and down the state of the coast and in Canada,
what's to say? And who's to say that those other states don't throw some purple tracer on their
rope down the line up in Canada? There's nothing saying that. And I'm sure that they're not going

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to comply with that, They're going to throw every color on that rope. But it seems to me, if I was
them, I would too. It looked like Maine did it and Massachusetts as well. I mean, what's And you
guys can say, well, that's the job of Maine Marine Patrol. And I think that you're exactly right,
but I got to be honest, the turnaround on Maine Marine Patrol is incredible. And, I think it's
because of the low pay and the what, not that has to do with it. And I know my time's running
short, but please don't shut me off. Um, I've always been feeling like this has been an argument
going on for several years. Why is it that we still don't have a solution to the problem? but we
just keep chipping away at this block? It seems as though all the money that these environmental
groups and NOAA and whoever else has had, invested in this time and energy would have had
the solution that would have compromised this whole problem so that we wouldn't even be
having this meeting. And the last thing I have to say is if and when as our good buddy Max said,
the whales are going to die, does that mean our fishery can go back to what it was before? Or is it
going to just be reduced and restricted again even more even if the whales aren't there? So I'm
just, those are my comments. And those are my questions is what other industry has had that
reduction. And survived? that the whales aren't the only ones that are going to, fishermen are the
stewards of the sea. We love all that. We're out there, because we love the ocean and everything
that's in it. And I am a resilient person. I'm Young. I can go through some change. I, I feel like
there's already Been. It's going to happen.
Thank you, Dwight OK, Krista Tripp.
Hi. Can you hear me?
Yes, I can hear you.
Hi, my name is Krista Tripp. I am a Lobster woman. Out of Maine. I am third generation. Um,
and I, um, finally, just got my Lobstering captain's license, just five years ago. I was on the
waiting list for 12 years, and I grew up fishing. I grew up going fishing with my dad. My uncle,
my brother, I've been on several different boats. And I have never, in my life ever seen a whale
offshore and definitely not inside fishing. Where I fish is within the three mile line. And there is
just, it is, is just baffling to me that we are all having to do these gear modifications. I could
understand the offshore fishery you know Area one having to do some of these regulations with
weak links and their ropes. But for me, who have just gotten into the fishery, all of my ropes are
old ropes that I fish. I have all of my grandfather's gear and I have traps that break all the time
when I'm hauling my gear because I've tried to keep costs down in order to be able to get into
this fishery. So for me, to put weak links in already old gear is going to be extremely cost. It's
costly to me, because I'm going to have to buy all new rope. And last year, in just doing the gear
marking, I mean, it took me a month to go through all of the gear that I already had. This is going
to take me months, and it is going to cost me tens of thousands of dollars and is, I'm going to
make nothing this year, and I mean, I can't even fathom the thought of trawling up. I'm going to
have to hire another crewmember it's going to be extremely dangerous for, for me to put more
traps on my very small boat. And I just, I am just completely baffled that this is happening right
now. My dad was on the Atlantic Take Reduction Team when it first started to come out years
ago, because we care so much about the ocean, the marine creatures, the whales and we have
done everything in our power. And since we've put gear model modified our gear since then,
years ago, I mean, I think the last whale death in Maine was seven years ago. And I mean, we

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haven't even heard of an entanglement in our area for, for, for many years. So I don't know why
Maine is being bundled up with Canada and with the ship strikes that have killed the whales.
Because we're definitely not the ones to blame. And you guys are going to be just cutting a
lifeline to Maine’s economy, our fishery, um, my time is up so I'll end it there. Thank you for
letting me speak.
Thank you Krista. OK, Blake,
I’m going to jump in while we’re waiting. Thank you, Krista saying the three minutes, and sorry,
that we sometimes have to cut people off on a breath, but it is late, and there are still at least
three more people who are interested in speaking tonight. Thank you.
OK, Blake, You are not connected to audio. So, if you are using your computer, you'll get, you're
going to want to, under audio settings, either choose computer or off, or use phone for audio. If
you're on your phone, you're going to want to connect to your audio, and won't be able to unmute
you, if you are not connected to audio, so I'll keep you on the oh, OK. Excellent. Can you hear
me Blake? I believe that you have not entered your audio pin.
NOAA?
Excellent! Yes Blake, I can hear you.
Hello There.
Yes.
My name's Blake Alley. I'm 37 years old. I fish out of Steuben. So in Washington County, the
poorest, most uneducated county in our great state of Maine. I just wanted to say a couple of
things and I'll answer your, actual questions at the end of it here but I mean it's pretty obvious
everybody. I'm not going to keep going over what's already been said but it's pretty obvious that
there's a line in the sand here, there's two sides being taken and both saying facts saying what we
think is right up X or whatever. one of us has to be right. one of us has to be wrong. So if all the
data, a lack of data, no news is good news kind of thing. There's zero whale deaths. How can
who is the one collecting the data? How are they coming up with these numbers? Who's
supposed to be the? The actual one. Who's like the official data? I mean I would almost think it
would be like the National Oceanic Atmospheric Administration. I mean, you guys should have
this data. I mean, you guys are the ones paid hundreds of millions, Probably billions. I don't even
know what your budget is, to find all this stuff out. And here we are, where we border another
country. We're putting these regulations in, Canada, Doesn't have to do the same things we do,
They're going to have a whole nother set of rules, They're not all packaged together. I mean, this
is complete insanity. And I'm glad that everybody's getting involved in everything, but at the end
of the day, this is a total manipulation of the Endangered Species Act. People are worried about
dangerous trawls endangering species. I call it completely dangerous at one man with little man
syndrome, can completely control a group of people? I mean, it doesn't even, How can you
manipulate the law and you favor that way? That's what these Congressmen should be looking
at. And everybody else, we can, obviously, it's going to be economic. We know what's going to

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happen at all bad things that are going to come with it. But isn't that insane that one man can,
basically, with zero data, no facts whatsoever, completely wipe out an industry? It doesn't make
any sense. It's a complete failure of our laws and our government to let it happen. I mean, where
does it end? So, I don't know, I wasn't going to say anything, but my buddy, Max just has a way
to motivate people. Everybody's awful mad at him, but I feel bad for the poor bugger. Somebody
really needs to give them a hug. I don't like you got enough money you get. But anyway, so, and
to actually comment real quick on things that you wanted to actually comment, I disagree with
every regulation, the trawling up, everybody should be able to fish just as we’re fishing, its’ not a
problem, we cannot find a solution. When there is no problem, there cannot be a reduction to
zero, we can artificially inseminate Whales and get negative numbers. It doesn't work that way.
Were at zero, we can't get any less. So I can't speak for Canada, I can't speak for Area 3. The
state of Maine, that’s where we're at. Thanks everybody for listening. Please write your opinions.
Write where you can.
Thank you OK, Joel Cohen, I'm coming to you. OK, Joel, you should be able to unmute.
OK, hi, can you hear me?
Yes.
OK, thank you for letting me speak. Yeah, my name is Joel Cohen And I am in Florida. I have
no, like chips in this game. I'm not a commercial fisherman, I'm not a government official. I'm
not an environmental person. As far as with a group, I'm a wildlife photographer. Now, I was the
automotive parts distributor for the majority of my life, so I kind of have a unique perspective on
this. And the last speaker, I agree, we have two sides that, that, there's not much budging going
on. So I want to give my perspective real quick. I'm not paid by anyone, I'm a volunteer to go
out. I do, I do have a lot of experience. Because I watch the moms come down here to Florida in
my backyard. I've lived on the beach for 34 years or five years and 34 years. I'm on the B, I'm
not a commercial fishermen, but I fish and I surf, and I'm on the beaches and I've seen plenty of
right whales. Because they all come down here. The reproductive mothers come down here to
give birth, and because I'm a photographer, I like to take pictures of them and I've volunteered
with groups to go out and, and, uh, help monitor them. I'm not a scientist, but I take pictures. I
look at the whales, and I see these white marks down their body or all around their tail and I
asked the people, what does this? Those are scars, OK, That's interesting. I also see a lot of
Manatees in Florida and almost eight out of ten Manatees have propeller scars down their back.
And when I see a right whale, it's I see both propeller scars and entanglement scars. And it does
bother me very much to say that the entanglement issue is not happening or that. It's mostly boat
strikes is just patently false. I mean, I see it with my own eyes through my own pictures. I can
see the scars on these whales. Real fast story of my last seven days. I did get to see the calf that
was run over by a vessel. We I also saw the pictures of the mom that was also hit by that same
vessel. And then a few days later, I was on a boat with researchers as a photographer volunteer,
using my own time, my own money, my own gear, because I love being out on the ocean just
like you guys, the fishers. And I watched a whale named Cottontail, who's 11 year old male, 11
year old, boy whale. It was down here in Florida now. Who just swam past my house and we
went out on a boat and I got to get close to cottontail and see how horrible how horrible
condition. His body is in. Extremely emaciated that there's a rope wrapped around it, is through

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his jaw, wrapped around his head, and seems to be hanging straight down with something very
heavy. Pulling down them and I just, I can't stomach to see that anymore. Real fast, please don't
cut me off I have one more comment Real quick comment. On the entanglement deaths versus
ship strike death's, ship strike death is many times more obvious, Especially when they wash up
with the ship when the ship come in or when they just wash up next morning just like this calf
did. Entanglements are much more difficult to see them, because they get entangled as they.
They swim. They get entangled, and they slowly die. Like, is what's happening to cottontail right
now that, whale to me, has days left? So anyway, I applaud the measure to allow fishers to get a
exempted permit to try ropeless and to get fishing with it. I got to fish with it all last summer
with commercial,
I’m so sorry Joel Thank you so much for your comments. Thank you. Well, if you can put your
name back in the queue we can we can come back to you. But thank you so much. OK,
Genevieve! Yeah. OK Genevieve. You should be able to unmute yourself.
Thank you. I'm Representative Genevieve McDonald, Lobstermen out of Stonington Maine and
a member of the Maine House of Representatives. As fishermen we take great pride in our
heritage and our relationship with the sea. Few people are fortunate to have an intimate
connection with the changes of the seasons, the weather, and the tides. We're stewards of the sea
and depend on a vibrant and thriving marine ecosystem for our success. The current regulatory
argument over North Atlantic right whale protections is not between lobstermen and whales. The
question is how to move forward with regulations that will best protect the struggling species and
the fishery. Reducing vertical lines in areas of the Gulf of Maine where North Atlantic right
whales are visiting less frequently. And for shorter durations, due to the shift of their primary
platonic food source, is not an effective solution To protect the right whales. We need bynational policy. And research collaborations focused on learning the North Atlantic Right
Whales Adaptive Migration patterns, based on oceanographic conditions that best support their
primary prey. Reducing the potential of a right whale being entangled based on where they were
instead of where they are, will not save any whales, but will inflict grave damage on the Maine
lobster fishery and the coastal communities that depend on it. Instead of dedicating resources to
crafting effective regulations that would help protect right whales. The National Oceanic and
Atmospheric Administration is demanding arbitrary restrictions that will benefit neither right
whales nor Maine Lobstermen. These regulations would check a box in Washington DC. and
temporarily appease the special interest groups who neither understand nor care about what
lobster means to the people of Maine. It's hard to draw a direct line between these developing
rules and actual remedy or relief for right whales. There's time for us to demand peer reviewed
science, dedicated resources and effective, rather than arbitrary regulations. The value of the
people who contribute to one of Maine’s most iconic industries. And I will be submitting written
comments, as well. Thank you.
Thank you Representative McDonald. OK, Gabe Shadis, you are next. Ok Gabe?
Yes, hello.
Hi.

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Hi, just a quick analogy, kind of from the perspective of what most of the fishermen in Maine
here, view this as. So you're on a Boeing 747 max, It is doomed to crash. So, what's the solution?
The solution is to lower the speed limit on the turnpike. Um, really, there are so many entities
involved in this. And it looks like this is the weakest member. And the easiest really with the
least defense to defend itself against what really appears to be an effort to, you know knock this
fishery down a peg. You've got the Department of Defense, doing sonar testing. You've got the
shipping industry. And I know people are arguing about ship strikes versus entanglements
whatnot. It's all bad. Whales in Maine, If there are whale's passing through the Gulf of Maine,
certainly in the last decade, they've seem to fare pretty well. In this day of, like, everybody's got
their own set of facts, it's a, it's a pretty hard thing to defend. Um, you know, and you've got,
you've got powers to be with the money making the choices. Um, anyway, it's not just the Maine
Lobster and it's not just the coastal communities. It's the state of Maine. It's New England as a
whole. Um, this is going to have impact far, far, reaching. I guess that's about all I have to say.
Thank you for listening.
Thank you, Gabe. OK, Corey. You should be able to unmute yourself.
You're asking an awful lot, can you hear me?
Yes, I can.
OK, actually, my name's Matt Samuels I'm using Corey’s iPad. I’m a fishermen, out of Rockport
Maine. And couple of things I just wanted to throw in everybody has pretty much answered
everything: Um, I think a young lady put an important point out earlier, and the whole human
element of this. Fishing really isn't what we do. It's really who we are. And that's really different
from most other jobs. Whoever was saying that earlier, there are scientists, they go home. They
get to go do what they do. We go home, We go to sleep. We dream about fishing, we think about
fishing. it's in our blood. It is what we do. My daughters has been on my boat since they were
toddlers and fish. Now they're fishing, commercially on their own, it's a big deal. The next would
be it's really important. if we haven't learned anything over the last few years, facts matter. We
talk about it all the time. And this is a great example of that. All the facts that we have, all the
data that we have, shows that the whales are not being impacted by our fishing gear. And I guess
I'm really kind of stunned as to why as soon as we say that there's just a silence. Um, that should
really end the discussion. We should then be doing whatever it takes to be able to prove where
the whales are, what they're doing, where they're eating. And, you know, maybe we should be
putting the same amount of effort to regulate shipping, the cruise ships, the wind power industry.
It seems kind of silly to be putting the most draconian measures, the group least, responsible for
the whale interaction. Uh, hopefully, that's it. I'm going to mute myself again. Thanks a lot, bye.
Thank you. Let's take Jennifer Johnson. OK, Jennifer, You should be able to unmute yourself.
Awesome. Can you hear me?
Yes. I can hear you.

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Awesome. Hi. My name is Jennifer. I'm a trained anthropologist with a background in,
Environmental Science. I teach high school history right here in Maine, as well as climate policy,
and on top of that, I'm also a photographer working with fishermen off the coast of Maine. I'm
typically considered the hippie teacher, the granola crunching, sort of environmentalist, but, um,
I really take issue with the proposed regulation for a few reasons. I've been using this as a case
study in my environmental policy class, and I've had to pause because, I have students with
unanswered questions, and the biggest one has been, Why is this being based off data that doesn't
seem to support the policy? And I have had to stop talking about crafting policy and switch gears
to talk more about lobbyists and politics. It's really difficult to help my students understand the
way this is happening when I myself am baffled. I guess that's my first point. My second issue is
that I worry about the future for these students, a worry about the lack of jobs for young people
in Maine as of right now, and how our young people are leaving the state already. It would seem
we continue to narrow down options for the future of our state. I don't need to restate the data
issue, everyone else has spoken to, but I need to speak for the coming generations of young
people in Maine. Our economy based on tourism is already suffering seriously. And when you
rip out the fishing industry, the whole thing, Crumbles. And I could explain the chain of jobs and
economics that's been off this industry, but we already know. And lastly, I just want to say that
good, solid Policy is based on excellent data, as well as an analysis of environment economy,
and the human element. It would seem as though this policy is either not based on those things,
or it's not doing a good job of presenting whatever data does exist. I would ask that if you have
crafted this regulation, that you can stand behind, that you present it in a way that is more easily
digestible, and to the point and explanatory, I suggest that if this regulation is inevitable, it's
accompanied by funding for fishermen to be able to pivot more easily while continuing to
support Maine, economy. And I will be writing this all out, and thank you for your time.
Thank you. OK, Lee Watkinson, you are next. Lee.
Kara, thanks, Appreciate your hard work tonight and shout out to Brian Tripp for holding on. and
that was the hour and a half of, uh, good for him. I wouldn't have done it, but I've listened to
some of the data And I've looked at NOAA’s website and compiled some figures. And some of
the stats kind of, uh, I don't know, they alarm me, I guess, because when you look at what went
on, when I was a, I was a senior in high school, in 98. And my father encouraged me to go to
college, because he was worried about the initial right whale rules, and to see that we've grown
the population by almost 50% since then. Um, since I've come back home to fish for last, you
know, 20 years on my own as a captain, and probably since the age of five, it's a little, it's a little
hard to take for me just to say that we're the problem where we've actually grown that population
that much. I mean, if you compare every other whale that's in the Gulf of Maine, that are living
in the same environmental conditions that that the right whales are in, I mean, the Humpbacks
have grown from the Endangered Species List to over 35,000. The pilot whales have grown 71%,
up to almost 40,000 whales. And the blue whales, you know, they're at 308 in 1995 to 402 that
gives you 31%. So the right whales are actually doing better than the blue whales. And you
know, it's hard for me to sit here. And you know, I've listened to the environmentalists, and I get
it were the first persons on the scene when there's an Entangled Whale which it does happen. I
don't deny that. But we're the ones that take care of the ocean. Um, the Stock Assessment Data
on NOAA webpage alone, I don’t get how we dropped from 408 to 366, So quick, I guess the
2019 one was 422. But we just had a birth in the Canary Islands, which is off Europe. two years

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ago we had a whale, a male whale documented there. So that is the population migrating back to
Europe is the loss of whales that you guys aren't documenting because of that?. I mean, it just, it
causes alarm for me. I went to college for education in math mathematics, because you can't lie
about math and the numbers that you guys are presenting. Just kind of worry me, I mean, how,
how are the whales shifting back to Europe. And how do we have births going over there from
North Atlantic, Right whales. And you're, you're, you're saying that the population here is
shifting that you've subtracted 90 whales. I just don't get the math. I think the current fishery that
we're doing now, it's where we're working together to grow. I mean, any species that you're
growing by 50% over 30 years isn't a negative thing. Are there ways that we could tweak it? Yes.
But we should get a pat on the back that we're trying. I just want to say that, thanks.
Thank you, Lee. OK, Michael Stone, next. You should be able to unmute yourself.
Hear me?
Yes.
All right, first. First, I would like to thank you for the chance to speak tonight. I'd also like to
thank Jared Golden, Commissioner Kelliher, for their support and comments tonight. My name is
Michael Stone. I'm a commercial lobster license holder and a student at Maine Maritime
Academy. Lobstering is my passion. But I went to school because policies like this make the
industry uncertain. I'm sorry if I repeat some, I’ve been doing my homework, and listening to
this webinar. In my short time, in the merchant marine industry, I've heard of more whale deaths
from ship strikes than from fishermen. A training ship, which only sails for three months a year,
if that, has killed more whales than anyone I know in the lobstering industry. My second
question is I want to ask why we the small business owners who are fighting with each other
most of the time, are subjects, to spend our money on speculative, speculative, tactics, why can't
the costs that we will be subjected to in this policy will be put into research specimens? Would
this not be the most logical approach? Thank you for your time.
Thank you, OK? Zach Klyver You're up Next?
Can you hear me?
Yes Zach I can hear you.
OK. Thank you for the opportunity to speak. I believe fishermen are marine mammals. They
spend half their life on the ocean. Conservation and fishermen have common cause in protecting
the oceans. We have way more in common with fishermen and I grew up in a fishing family. So
I consider myself in love with fishermen and with the with protecting the oceans. I want to thank
all my great fishermen friends that are on this call tonight and say I look forward to working with
you. I believe this isn't fishermen versus whales or a win lose situation. There is a win-win
option and fishermen are going to solve this. Last night I presented 160 right whale sightings of
between 1 to 7 whales from Whale Watch tours and from sighting data at Mount Desert Rock
since 19 76 up to the present. I was on 30 or 40 of those tours that saw right whales off the coast
of Maine. The vast majority of those sightings are offshore in 300 feet of water or more and 15 to

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25 miles offshore. Now, that's important. That's where the co-occurrence is happening primarily.
And secondly, this also points to the fact that we have 50 years of right whales showing up off
the coast of Maine. Even this past year in 2020, 2 were photographed from whale watching tours
from Bar Harbor at a very limited season. And right whales were also photographed, off of
Eastport, and Frenchboro, and there was a report from Skutik that was very detailed. There are
absolutely right whales in Maine Waters, they've been here for a long time. And they will
continue to come through here. This is their habitat. For that reason, I presently support trap
reductions offshore to reduce risk. I believe less traps can catch more lobster or a lot of lobster
and reduce fuel bait and boat wear. For now, I think that's our best alternative to reduce risk. I
support increased surveys, acoustic, boats and planes that I hope NOAA will invest more, and I
hope the State of Maine will invest more in that. I support evolving the fishery to overcome all
entanglements of whales not just right whales. I have personally seen dozens of whales entangled
in Maine lobster gear. That's why I'm but I'm involved in developing ropeless fishing gear to
allow fishermen and whales to both win in the long run. We can do it. We can do it in the next
10, 20, 30 years. Whatever it is, we can do it. We do know that from the DEIS there, there's 700
entanglements reported in nine years in that document: 89 of those were right whales. That's
from Canada, to Florida. That's 75 whales per year. That's a crisis. These are the animals that are
entangled, 75 a year. They're scared. They're in pain. And we can't say that we don't have
culpability. The lobster and crab industry is 93% of line
Hey Zach I’m so sorry. Your three minutes is up.
OK, thank you very much.
Thank you, Zach. OK?
Hey guys can you hear me alright? Thanks for giving me a chance to speak. My name is Julie
Albert.
It just sounds very faint.
I just wanted to put out some clarifying remarks that a lot of people have reported. As far as
differences in the populations sizes that are out there and people are referencing or whales just drop
off paper and aren’t accounted for anymore. I want to make sure people understand that sometime
models change from year to year. But helps us with what he size of the population is. The north
Atlantic right whale Consortium puts out a report card with multiple numbers in it from best case
scenarios to worst case scenarios. Its available to everybody on Consortium website. I highly suggest
everybody that thinks the data is flawed, or inconsistent, or does not exist, to go look at those reports.
For those people who say they've been on the water a lot and don't see whales, and I don't mean for
this comment to sound snarky, but I’m guessing you're not on the water 24/7 so I’m just wondering
how many of you considered that maybe the whales go by when you're not out there or at night when
you can’t see. A right whale was discovered off of Georgia in December trailing a trap and
entanglements do happen and for those animals that we never see again, never rescue, and never
recover gear from, there is no way to prove what kind of gear it is. So even though we can’t prove
how much Maine gear specifically is on the whales, there's also no way to prove it's not Maine gear.
So I want to make sure people understand that as well. If anyone has questions I want to refer you to

963

the right whale report cards on the Right Whale Consortium website that are put out annually. That’s
where the information is.

Thank you, Julie. I think you're done. You sound it. OK, so, we have three last comments,
People who, um, just need a little bit more time and want to wrap up. You'll be given 90 seconds
Oh, Oh, boy. You'll be given nanana seconds just singing to us. Oh, oh. Oh, oh. Excellent. The
night is young, OK, Ooh! Michael Myers. I'm coming back to you. Oh, boy. Oh, boy. OK,
Michael.
Mike stepped away for a minute, but my name is Noah Mank and I'm from Midcoast Maine,
Saint George. I've had the pleasure of fishing on many boats over the years in the Mid Coast
region as long as from as well as from here to Portsmouth, New Bedford. Um. And I've seen a
lot of whales I'm not going to say I'm, I'm not a Scientist of whales by any means. But I'm pretty
well versed in in what whales are which the Humpbacks, finbacks and stuff like that. And I've
never specifically seen a right whale. To answer the lady before, I don't know that the whales
they could be there when I'm not there. But I spend just about 24/7 on the water, and I know
quite a few other people who do, and I've never heard them talk about right whales either. So.
Ah. It's a sensitive subject for everyone, no doubt. It's the question I really have about the
regulations and the proposals is that, uh, those are all fine for operations that are up and running.
And stuff like that. But I, you know, I just had my second daughter, I delivered her in my house,
in the town in which I have grown up in, and I fish in, and I sterned in for 15 plus years. I'm also
just getting my Maine state license for myself to go out. How does someone, like my daughters
or anyone's children, for that matter, how does the future expect to have a chance to thrive? Not
every one of them is going to be born with a captain for a father or mother, and I was always
under the impression part of the beauty and the tradition of this business in this lifestyle was to
hand it down to someone else, to hand it to another generation. That's part of the beauty of
growing up in Maine is that that's what we do here. Even if you're not a fisherman. You know,
people are third generation farmers. Um, so, I think you would, honestly, if these things are to go
through, for me to just actually weigh in on it, I think you would actually be destroying a way of
life. And it would be really unfortunate. So, I don't support closures. I don't support any of it.
Thank you.
Thank you, Did you say your name was Noelle?
Noah N O, AH, Like the guy who built the boat.
Awesome, thank you so much, Noah. OK Dwight, you'll be able to unmute yourself.
I'm all set here. It's late. Thank you.
OK Thank you Dwight. OK Joel give me one second.
OK. Can you hear me?
Yes.

964

Yeah. My name's Joel Cohen and I mentioned before Wildlife photographer from Florida
photograph the whales, at least, eight out of ten of the whales I've seen each year are show
entanglement scars. But anyway, I wanted to comment on the regulation about allowing ropeless
with the exempted fishing permits. So if that passes, I applaud that very much. I know other
states didn't really include that. So I think that's great. I think it's a great opportunity for the
fishers to get their hands on this stuff and get it. See that it really does work. I spent last year last
summer and the fall with commercial fishers in Florida, Georgia, North Carolina, on the water
with them active fishing side-by-side. We use six different manufacturers, gear, and different
alterations of there of each one. It absolutely works. I don't agree with the claims of it being once
it's adapted, I don't believe it's going to be making it less safe. There's definitely concerns and
things to work out, like the overboard concern. But that's, uh, that that can be easily solved in the
technology. So anyway, the ropeless gear I believe, has been pushed on the fishermen and there's
been articles written that give it an incorrect assessment in everyone's eyes. I am really hope that
some guys that are really doing is the Maine fishers can use this stuff and play with it and see
that it's not, as some of those Articles, claim it does work and I also argue that there's a financial
case for fishermen because there's a very good chance you'll lose less gear.
And my time is up.
Your time is up. Yes. Thank you.
No one wants to hear from you.
Oh. So, sorry. Please keep yourselves muted unless I've called on you. OK, Jack Merrill Coming
to you next. OK, Jack.
OK, thanks. Yes. So I wanted to respond to Julie's comment about not being not knowing where
the entanglements come from. You can definitely tell where they come from, by the rope that's
taken, off of them. And I had the opportunity years ago to be at a meeting with TRT meeting.
And we had a pile of rope on the floor, hotel in Massachusetts. It was a huge pile of rope, it was
taken off whales that were entangled, not right whales, necessarily, but whales. We were asked if
any of it looked like our gear where we fished, and I was, did not anticipate that opportunity. But
I was pleasantly surprised that absolutely none of it even remotely resembled Maine gear. It was
much larger, and I don't know where it came from, I can't say, but it was much larger than
anything we fish. So you can identify that. I also want to urge NOAA and environmental groups,
or anybody else that concerned, to seriously consider the use of drones for surveillance. Canada
just invested in a drone. They have, it's unbelievable, the technology they have. I'm pretty sure
we can track right whales with drones. Um, so, and my final comment is, to you guys, please pay
attention to the data, because it's not the Gulf of Maine, that's the problem. Thank you.
Thank you. OK, we have two last comments, Sam Rosen, you should be able to unmute
yourself? Sam, let me send you a unmute request. OK? OK, Brian. OK, Brian, you should be
able to unmute yourself.
Yeah, I am. Can you hear me?
Yes, I can hear you.

965

It's was so good The first time I couldn't help but come back. The ropeless thing it's easy to say
that that would work great when you aren't a fisherman in the Gulf of Maine. We have so much
gear and so much tide. And the bottom is jagged. It's not like Florida. Those people that believe
that this is a solution they need to come and see for themselves. We are not stupid. Maine
fishermen know what works. We have had to adapt for hundreds of years and we simply do what
works. It's a financial thing. It's how to keep it. I have $80,000 in lobster traps. If you think I'm
going to throw $80,000 overboard without a way to get it back, you're crazy. That's all I have to
say.
Thank you, Brian. OK, OK, Sam, I'll come back to you. Really quickly give me one second. try
one more time. Ok Sam you're unmuted.
Can you hear me?
Yes, I can hear you,
Yeah. I just wanted to say, I'm a lobstermen in Maine, fish offshore. Lot of things I could talk
about. But I just wanted to specifically address the ropeless fishing. I've actually fished in
Australia, New Zealand at high school and in New South Wales, and I've seen ropeless in action.
And I can say the technology is not to a point where we could use it. It's not even close. There
are a number of reasons why I say that. First, they're fishing single traps or pairs and they're only
fishing about 50 to 200 traps and their price per kilos, like 100 to upwards of that per kilo. So,
there it's a lot more valuable fishery. And there, we would have to contend with lines of gear. I
mean, trawls that are actually covering more area than just a single point. So, the gear conflict
between our gear and then, mobile, gear, like, like, Drags and whatnot. They'd have to be able to
see our gear and avoid it. And in order to see it, or, sorry, in order to avoid it, they'd be able to
see it long in advance. I mean, upwards of probably a mile or something like that if they're
towing or dragging in deep water. And I don't, I don't really know what technology, where the
technology is at right now, but I know it's quite a ways from being able to avoid our gear a mile
in advance, so, that’s all I have to say.
Thank you, everyone, for your participation this evening.
I just quickly wanted to show you guys, again, maybe what slide can you see?
We can see the written comments slide.
You can see that, comments, Excellent.
That's right.
OK, so just a reminder, and if you guys have any comments after this evening, you can go to
regulations dot gov, It will be a blue page like this. You'll be able to search by the docket
number, which is NOAA Dash NMFS dash 2020 dash 0031. It'll come up with a list of
documents. Under the Proposed Rule, you should see a comment button, and if you click

966

Comment, you'll be able to type or attach any written comments that you might have. So if you
have any anything else you'd like to tell us after this evening, you can submit written comments.
Everything that you have typed to us and said to us tonight was recorded as a comment, as well.
Colleen I think that's it.
Yeah, people are leaving quickly, but I'd like to thank the last 150 hanging around, that that's a
marathon meeting over three hours. I'd like to thank all the NOAA staff that helped and Marissa,
great job tonight presenting. And I'd really like to shout out Kara today and our other calls.
Today was like, you know, like running, like, landing planes. She was looking at so many
screens at once. So thanks, Kara. You made it pretty smooth and I appreciate the help. And
thanks everyone, especially all the TRT members that were on and all the fishermen and others
that commented tonight really appreciate it. Hopefully next time we'll see you in person.
Thank you all. And I will just leave this slide up as people and in case they would like to write
anything down. Have a great evening.

967

Appendix 7.4: Form Letters
Form Letter A
Total matches 70-100%: 22,933
***Right whales are intelligent, sentient beings that have a right to an ocean not overrun with lethal hazards of ship
hulls and propeller blades ready to kill any whale unfortunate enough to collide with them. These intelligent,
sentient animals have inhabited the Atlantic for vastly longer than humans have exercised their covetous jurisdiction
over it.There is no amount of cost avoidance or convenience for the shipping and groundfish industries that can
justify the gross violation of the rights of whales to existence, to not suffer torturous deaths at human hands, or
justify industry's reappropriation of their oceans. The North Atlantic Right Whales are out of time and out of space
in their struggle to stay biologically and demographically ahead of the human assault upon their bodies and their
homes. These precious animals desperately need expansive, robust, legally enforceable shields against fishing rope
ensnarement, reckless shipping vessel strikes, and the acoustic warfare of seismic oil exploration. The striking and
killing of whales with ships and fishing gear, even if ostensibly accidental, is a cruel and heinous fate to which to
subject our fellow mammals. NOAA must enforce their right to exist through, regardless of self-serving industry
complaints with no moral merit.*** The North Atlantic right whale is critically endangered and needs immediate
help to recover. It is NOAA Fisheries legal responsibility under the Endangered Species Act and the Marine
Mammal Protection Act to protect this species from injury and death in U.S. waters. The greatest threat to right
whales in U.S. waters is entanglement in commercial fishing gear. NOAA Fisheries estimates that entanglement risk
from lobster and crab fisheries needs to be reduced by 60% to 80%. The calculations in the Draft Environmental
Impact Statement showing how NOAA Fisheries proposes to achieve that risk reduction rely on an old stock
assessment using 2016 population estimates, whereas the most recent population estimates indicate that the North
Atlantic right whale has further declined to about 366 animals. So there is no question that a risk reduction target of
at least 80%which accounts for unseen whale mortalitiesis required. The alternative measures that NOAA Fisheries
released would achieve only 60-69% risk reduction. Further, these risk reduction measures rely on an ineffective
gear modification called weak rope that has not proved to reduce serious injury and death in whales. It is not worth
the economic burden on the industry to change to this rope if there is no proven conservation benefit. In addition, the
closures outlined in the proposed rule are too small and too short in duration. Specifically, the closure south of
Nantucket and Marthas Vineyard should be year-round, because right whales have been present nearly every month
of the year in that area for the past several years. NOAA Fisheries proposed rule simply does not do enough to save
the right whale from extinction. On the most optimistic timeline, the measures included in the final rule to reduce
risk to whales would not be in effect on the water until 2022 or later. While this rule is revised, finalized, and
implemented, NOAA Fisheries must immediately implement emergency action designating a year-round closure
south of Marthas Vineyard and Nantucket and in three areas in the Gulf of Maine that would be closed seasonally to
vertical buoy lines in the American lobster and Jonah crab fisheries. Targeted vertical buoy line closures where right
whales interact with this heavy, lethal fishing gear are the fastest and most effective management tools to prevent
unlawful deaths and extinction of the North Atlantic right whale. Closures in offshore areas would also minimize the
impact on fishermen, because the majority of lobster fishing occurs closer to shore. North Atlantic right whales can
recover if NOAA Fisheries takes swift, effective action to protect them from the vertical buoy lines that entangle and
kill them. The proposed rule must be revised, and the final rule must meet the level of risk reduction required by the
most recent scientific information. In the meantime, NOAA Fisheries must immediately implement closures to
lobster and crab fishing with vertical buoy lines in the areas where right whales concentrate, and help prevent the
extinction of this iconic animal.

Form Letter B
Total matches 70-100%: 12,622
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from

994

extinction. With only about 360 individuals remaining, the right whale is one of the world's most critically
endangered whales. The species has suffered a 25% population loss in less than a decade. Fishing gear
entanglements are the leading cause of skyrocketing rates of right whale deaths and serious injuries and are also
preventing them from reproducing, pushing calving rates to historic lows. National Marine Fisheries Service
officials have acknowledged for years that the right whale's situation is dire and that more needs to be done. More
right whales are being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule
must do more to protect right whales by expanding the proposed closures and fast-tracking the transition to requiring
"ropeless" fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close
important right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species
from extinction. The Democratic Party platform should support: Animal Rights, Defending the Affordable Care Act,
Ending Citizens United, Ending Marijuana Prohibition, Giving Greater Visibility to Pro-Life Democrats, Gun
Control, Net Neutrality, Raising the Minimum Wage to $15 an Hour, Responding to the Scientific Consensus on
Global Warming, and a Sustainable Energy Policy. Democrats for Life of America, 10521 Judicial Drive, #200,
Fairfax, VA 22030, (703) 424-6663 Thank you for considering my perspective. Vasu Murti [email protected]
30 Villanova Lane Oakland, California 94611

Form Letter C
Total matches 70-100%: 9,360
North Atlantic right whales are dying solely due to human activities. Without bold action, I fear these whales may
go extinct in my lifetime. The National Marine Fisheries Service has the opportunity to make the necessary changes
to save this species. I am glad to see steps are being outlined to promote the protection and survival of right whales
but, unfortunately, the proposed steps are based on outdated science. I urge NMFS to redraft these regulations using
the most up-to-date population estimates of North Atlantic right whales in order to develop an accurate risk
reduction plan. I also urge NMFS to aim to reduce risk to right whales by at least 80 percent, as recommended by
the US Marine Mammal Commission, rather than the less effective risk reduction outlined in the current proposal. In
the interim, NMFS should immediately implement temporary emergency regulations to protect right whales. I
strongly encourage NMFS to further invest in developing ropeless technology as quickly and responsibly as
possible, while establishing a plan to assist commercial trap fisheries in a transition to whale-safe gear. This rule
relies too heavily on a costly and inadequate transition to weaker rope, which has not been proven to protect younger
whales and does not reduce the long-term health effects of chronic entanglements on whales. In October 2020, it
was estimated that fewer than 360 right wales remain. Although right wales received protection from whaling in
1935, the population has struggled to recover since then. They face growing modern-day threats from fishing gear
entanglements, vessel strikes, habitat loss, and pollution. Thus, the need for NMFS to redraft, strengthen, and
improve the Atlantic Large Whale Take Reduction Plan is critical to the whales' survival and recovery. Thank you
for the opportunity to comment on enhanced protections for the North Atlantic right whale. It is my hope that my
suggestions will be considered in this process and that NMFS will prioritize right whale protections.

Form Letter D
Total matches 70-100%: 7,822
Please accept these comments on the proposed modifications to the Atlantic Large Whale Take Reduction Plan as
published in the Federal Register. As NOAA has recognized, entanglement in outmoded fishing gear is the leading
cause of death for North Atlantic right whales. 85% of right whales have become entangled at least once as they
navigate through more than one million buoy ropes attached to fishing gear on the East Coast of the United States.
Where there is rope, there is real and imminent risk to right whales. Time is running out. According to NOAA’s
most recent estimate, fewer than 370 right whales remain. The proposed rule modifications do not represent a
serious, science and technology-based effort to save this species from extinction. If NOAA is going to change the
rules protecting right whales, the new rules should reflect the most recent population estimate produced by the
Agency’s own scientist, not data consider obsolete by NOAA itself. Proposals to reduce entanglement risks to right

995

whales must promote and accelerate the permitting process for ropeless fishing gear. This 21st century technology,
pioneered by New England lobstermen, reduces entanglement risk to right whales while maintaining fishermen’s
access to otherwise closed areas. The NOAA-preferred option of reduced breaking strength or weak rope is a shortterm policy option that offers no protection to right whale calves or juveniles from potentially lethal entanglements.
We cannot state strongly enough our outrage that these magnficient mammals are being killed as collateral for
profiteering greed, and treating the deaths with a shrug of the shoulder. We urge you to strengthen the proposed rule
changes to ensure they are based on the best available science and technology and to accelerate the adoption of
ropeless fishing, a win-win solution for endangered whales, fishermen and coastal economies. Otherwise, the use of
any ropes, nets, or any other type of fishing gear that "may" entangle any species should be completely banned with
fines and incarceration upon conviction to be large enough to create compliance incentives. Thank you.

Form Letter E
Total matches 70-100%: 552
My name is Mara Lyn Leverett, and I am a resident of New York, but was born in Georgia, where my family has
lived for generations. I was born the same year that the Endangered Species Act passed and the year after the Marine
Mammal Protection act was passed. The right whale is my home state's Marine mammal. and right whales' calfing
area are off the coast of Georgia where I spent every summer. I appreciate that the National Oceanic and
Atmospheric Administration (NOAA) has given the public an opportunity to comment on the new regulations
regarding the lobster and crab fisheries. I encourage the agency to take every step possible to protect the North
Atlantic right whales and enact stricter regulations than what are currently proposed, especially after reading about
the death of the right whale known as Cottontail's death by entanglement off the coast of South Carolina today. With
fewer than 375 North Atlantic right whales in the Atlantic, NOAA must act quickly to implement emergency
closures to restrict the use of vertical buoys in high-risk areas while the agency finalizes the proposed regulations.
The North Atlantic right whale population is at a tipping point, and without emergency action, they will suffer
irreversible harm before new regulations can even be implemented. NOAA must rely on the best and most up-todate data available to determine the final regulations and aim for a minimum of an 80% risk reduction. The unusual
mortality events that have resulted in 46 known deaths since 2017 must be considered in NOAA's calculated risk
reduction, but NOAA must also account for unknown deaths, which the latest science shows is significant. The
weak rope equipment suggested as an alternative in the proposed rule has not been proven to effectively reduce
harm to right whales. In fact, many fishermen have stated that they will use more rope if the weak rope requirement
is implemented, overall increasing the likelihood of entanglements. Ropeless gear should be encouraged and as
technology is improved, required, instead of weak rope. Finally, the rules should extend the duration of closures in
high-risk areas where historical observation documents that right whales are present year-round. Thank you for your
consideration of these comments.

Form Letter F
Total matches 70-100%: 62
North Atlantic right whales are dying solely due to human activities. Without bold action, I fear these whales may
go extinct in my lifetime. The National Marine Fisheries Service has the opportunity to make the necessary changes
to save this species. I am glad to see steps are being outlined to promote the protection and survival of right whales
but, unfortunately, the proposed steps are based on outdated science. I urge NMFS to redraft these regulations using
the most up-to-date population estimates of North Atlantic right whales in order to develop an accurate risk
reduction plan. I also urge NMFS to aim to reduce risk to right whales by at least 80 percent, as recommended by
the US Marine Mammal Commission, rather than the less effective risk reduction outlined in the current proposal. In
the interim, NMFS should immediately implement temporary emergency regulations to protect right whales. I
strongly encourage NMFS to further invest in developing ropeless technology as quickly and responsibly as
possible, while establishing a plan to assist commercial trap fisheries in a transition to whale-safe gear. This rule
relies too heavily on a costly and inadequate transition to weaker rope, which has not been proven to protect younger

996

whales and does not reduce the long-term health effects of chronic entanglements on whales. It is cruel and
inhumane and against God's wishes for us to be so gluttonous & selfish re: life that He created. We humans take and
take and destroy and destroy and take until there is no more - every living thing deserves to live, and to live well .
We humans have trawlers that scoop up everything in their nets' path - WE don't require that much seafood, but the
seafood and waters do. Zoos are bad enough in that the only way many kinds of life are able to still live from
extinction. Tell me, where could whales live if not in the oceans. Only about 2 aquariums are large enough for 2-3
whales, and even then, it's as bad for the whales as it is for goldfish in a bowl. They deserve better!!! Thank you for
the opportunity to comment on enhanced protections for the North Atlantic right whale. It is my hope that my
suggestions will be considered in this process and that NMFS will prioritize right whale protections.

Form Letter G
Total matches 70-100%: 46
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from
extinction. With only about 360 individuals remaining, the right whale is one of the world's most critically
endangered whales. The species has suffered a 25% population loss in less than a decade. Fishing gear
entanglements are the leading cause of skyrocketing rates of right whale deaths and serious injuries and are also
preventing them from reproducing, pushing calving rates to historic lows. National Marine Fisheries Service
officials have acknowledged for years that the right whale's situation is dire and that more needs to be done. More
right whales are being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule
must do more to protect right whales by expanding the proposed closures and fast-tracking the transition to requiring
"ropeless" fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close
important right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species
from extinction. In closing I'd like to share my poem on what's happening to right whales, in hopes that it will lead
to this necessary measure to protect them. RIGHT WHALE Bound up in plastic floats and ropes, it washes ashore,
unrecognizable, an enormous garbage heap feathery baleen ripped and bedraggled beside its body, hardened wounds
on its skin like craters edges, moon rocks. Its sightless eyes accuse us. Can I avenge this mauled being which can
live a hundred years, span a thousand miles? I recognize my kindred. By mourning. By framing it for others to see.
(c) Lisa Fleck Pleas

Form Letter H
Total matches 70-100%: 40
Thank you. I am writing to comment on the proposed modifications to the Atlantic Large Whale Take Reduction
Plan as published in the Federal Register. As NOAA knows, entanglement in outmoded fishing gear is the leading
cause of death for North Atlantic right whales, and fewer than 400 of these whales remain in the world. Fortunately,
there is a perfect fix for this, to save this species! Ropeless gear technology. Ropeless gear is the long-term solution
to reduce entanglements of right whales and other marine life, while keeping fishermen working and on the water.
And these rules could be put in place now. Nearly the entire existing population of right whales, 85%, have become
entangled at least once as they navigate through more than one million buoy ropes attached to fishing gear on the
East Coast of the United States. Ridiculous and wasteful! We know, our best marine research scientists know, that
where there is rope, there is real and imminent risk to right whales. And time is running out. According to NOAA’s
own most recent estimate, fewer than 370 right whales remain. Please save this species from extinction. If NOAA is
going to change the rules protecting right whales, the new rules should reflect the most recent population estimate
produced by the Agency’s own scientist, not data consider obsolete by NOAA itself. Proposals to reduce
entanglement risks to right whales must promote and accelerate the permitting process for ropeless fishing gear. This
21st century technology -- pioneered by New England lobstermen, no less (and they should know what is feasible,
what will work for fishing AND whales) -- reduces entanglement risk to right whales while maintaining fishermen’s
access to otherwise closed areas. The NOAA-preferred option of reduced breaking strength or weak rope is a short-

997

term policy option that offers no protection to right whale calves or juveniles from potentially lethal entanglements.
In closing, my family and I urge you: Strengthen the proposed rule changes to ensure they are based on the best
available science and technology and to accelerate the adoption of ropeless fishing, a win-win solution for
endangered whales, fishermen and coastal economies. Thank you for making this fortuitous and effective solution
happen now. Fishermen and scientists know what to do, and so do federal regulators. Let's make it happen now.

Form Letter I
Total matches 70-100%: 32
Dear NOAA Fisheries: I am writing in reference to Docket No. 201221-0351 - the rulemaking process to protect
critically endangered North Atlantic right whales. The North Atlantic right whale is Georgia’s state marine mammal.
Our coast is one of the few known calving grounds and each winter, calving North Atlantic right whales make their
annual journey from New England and the Canadian Maritimes to give birth and rear young here. Since 1981, when
they were first spotted along our coast, each calving season has been met with anticipation by right whale
supporters. Successful reproduction is a challenge for the North Atlantic right whale. Female right whales reach
reproductive maturity at around 10 years of age. Historically, the species can give birth to only one calf every three
to five years, yet trauma from entanglement has increased this interval to nearly 10 years. With an estimated
population of fewer than 100 breeding females, every birth is a cause for celebration and, unless action is taken by
your agency, this species will be lost forever. The National Marine Fisheries Service (NMFS) released new data on
October 26, 2020 indicating that the population estimates, and mortality and serious injury rates are worse than
previously thought. Given the low population numbers (including fewer than 94 breeding females remaining), it is
essential that we work together to protect every North Atlantic right whale in order to avoid extinction for this
endangered species. Based on the expert opinions of scientists, trusted non-governmental organizations and
conservation groups, I don’t believe NOAA Fisheries’ proposal to reduce the serious injury and mortality of right
whales can move the lobster and crab fisheries into compliance with the Marine Mammal Protection Act (MMPA)
and the Endangered Species Act (ESA). NOAA Fisheries’ proposed measures aim to achieve only 60-69% risk
reduction, but they must recalculate the potential biological removal (PBR) level using updated data and publish a
final rule that achieves a minimum of an 80% risk reduction. We have a biological, legal, and moral responsibility to
curtail human-caused deaths of this species. The U.S. federal government is required to protect these animals in our
waters, under the MMPA and the ESA. Please strengthen the proposed North Atlantic right whale take reduction
plan and consider emergency action. Thanks for your consideration and efforts to preserve this symbol of our state,
our ecosystem and biological diversity. Sincerely,

Form Letter J
Total matches 70-100%: 31
The North Atlantic right whale is critically endangered and needs immediate help to recover. As we already know,
NOAA Fisheries legal responsibility is to protect this species from injury and death in U.S. waters. The greatest
threat to right whales in U.S. waters is entanglement in commercial fishing gear. NOAA Fisheries estimates that
entanglement risk from lobster and crab fisheries needs to be reduced by 60% to 80%. The calculations in the Draft
Environmental Impact Statement showing how NOAA Fisheries proposes to achieve that risk reduction rely on an
old stock assessment using 2016 population estimates, whereas the most recent population estimates indicate that the
North Atlantic right whale has further declined to about 366 animals. So there is no question that a risk reduction
target of at least 80%which accounts for unseen whale mortalitiesis required. The alternative measures that NOAA
Fisheries released would achieve only 60-69% risk reduction. Further, these risk reduction measures rely on an
ineffective gear modification called weak rope that has not proved to reduce serious injury and death in whales. It is
not worth the economic burden on the industry to change to this rope if there is no proven conservation benefit. In
addition, the closures outlined in the proposed rule are too small and too short in duration. Specifically, the closure
south of Nantucket and Marthas Vineyard should be year-round, because right whales have been present nearly

998

every month of the year in that area for the past several years. NOAA Fisheries proposed rule simply does not do
enough to save the right whale from extinction. On the most optimistic timeline, the measures included in the final
rule to reduce risk to whales would not be in effect on the water until 2022 or later. While this rule is revised,
finalized, and implemented, NOAA Fisheries must immediately implement emergency action designating a yearround closure south of Marthas Vineyard and Nantucket and in three areas in the Gulf of Maine that would be closed
seasonally to vertical buoy lines in the American lobster and Jonah crab fisheries. Targeted vertical buoy line
closures where right whales interact with this heavy, lethal fishing gear are the fastest and most effective
management tools to prevent unlawful deaths and extinction of the North Atlantic right whale. Closures in offshore
areas would also minimize the impact on fishermen, because the majority of lobster fishing occurs closer to shore.
North Atlantic right whales can recover if NOAA Fisheries takes swift, effective action to protect them from the
vertical buoy lines that entangle and kill them. The proposed rule must be revised, and the final rule must meet the
level of risk reduction required by the most recent scientific information. None of this is intended to curtail the
fishing industry. Rather, overall environmental and economic futures depend on a renewed sense of cooperation
between humanity and nature. Small adjustments based on positivity can create ripples and ultimately tides of
positivity ... just as negativity has been so contagious along the way to the crossroads in history reached here.

Form Letter K
Total matches 70-100%: 21
National Oceanic and Atmospheric Administration (NOAA), The current National Marine Fisheries Services
proposed rule to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this
species from extinction. There are only about 360 individuals remaining. The right whale is one of the world's most
critically endangered whales. The species has had a 25% population loss in less than ten years. Fishing net/gear
entanglements are the leading cause of increasing rates of right whale deaths and serious injuries. This type of
fishing equipment and use are also preventing right whales from reproducing, causing calving rates to spiral to
historic lows. Thankfully, National Marine Fisheries Service officials have acknowledged for years that the right
whale's situation is dire and that more needs to be done. And, more must be done now. Unfortunately, more right
whales are being harmed and killed by fishing gear entanglements as we wait for needed action. The recently
proposed rule must do more to protect the lives of and reproduction of right whales by expanding the proposed
closures and fast-tracking the transition to requiring "ropeless" fishing gear. The Fisheries Service has the statutory
authority to enact emergency regulations to close important right whale habitat to fishing with static vertical buoy
lines. Please use that power, now, to save this species from extinction. Thank you. Judy Lukasiewicz
[email protected] 701 Happy Valley Rd. Santa Cruz, California 95065

Form Letter L
Total matches 70-100%: 17
I write to you as a taxpayer who cares deeply about the extinction crisis and believes that it must be treated as the
emergency that it is. I am writing to comment on the proposed modifications to the Atlantic Large Whale Take
Reduction Plan as published in the Federal Register - a plan that is clearly inadequate. As NOAA has recognized,
entanglement in outmoded fishing gear is the leading cause of death for North Atlantic right whales. 85% of right
whales have become entangled at least once as they navigate through more than one million buoy ropes attached to
fishing gear on the East Coast of the United States. Where there is rope, there is real and imminent risk to right
whales. This situation never should have been allowed to happen in the first place and it has to be remedied fast. We
are talking about extinction of a endangered species. This is an emergency. According to NOAA’s most recent
estimate, fewer than 370 right whales remain. The proposed rule modifications do not represent a serious, science
and technology-based effort to save this species from extinction. Whatever the intention, they look like a plan to
kick addressing this lethal fishing gear down the road, at which point it will be too late. NOAA should deal with this
issue realistically now. Its new rules should reflect the most recent population estimate produced by the Agency’s
own scientist, not data considered obsolete by NOAA itself. Proposals to reduce entanglement risks to right whales

999

must promote and accelerate the permitting process for ropeless fishing gear. This 21st century technology,
pioneered by New England lobstermen, reduces entanglement risk to right whales while maintaining fishermen’s
access to otherwise closed areas. The NOAA-preferred option of reduced breaking strength or weak rope is a shortterm policy option that offers no protection to right whale calves or juveniles from potentially lethal entanglements.
It is a diversion from what will actually work best. If right whales are to survive, we cannot afford to lose any right
whale calves. I urge you to strengthen the proposed rule changes to ensure they are based on the best available
science and technology and to accelerate the adoption of ropeless fishing, a win-win solution for endangered whales,
fishermen and coastal economies. Again, we are in an extinction crisis. Right whales are a species at extreme risk. It
is incumbent upon NOAA to take action immediately and to do it in a way that will actually work. Thank you.

Form Letter M
Total matches 70-100%: 17
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from
extinction. With only about 360 individuals remaining, the right whale is one of the world's most critically
endangered whales. The species has suffered a 25% population loss in less than a decade. Fishing gear
entanglements are the leading cause of skyrocketing rates of right whale deaths and serious injuries and are also
preventing them from reproducing, pushing calving rates to historic lows. National Marine Fisheries Service
officials have acknowledged for years that the right whale's situation is dire and that more needs to be done. More
right whales are being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule
must do more to protect right whales by expanding the proposed closures and fast-tracking the transition to requiring
"ropeless" fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close
important right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species
from extinction. The whales are also disturbed by all the darn ships. There should be a place they could be safe.
Here where I live, people take out whale watching ships. It's like they have no idea that the whales did not come out
to be seen but they are trying to eat. Every time these fools do that it makes me unhappy. We're losing our orcas
because of people/dam interface and your losing the right whales because of fishermen whining about making a
living and being unwilling to change their behavior. I hope you can save the poor damn whales, they don't deserve
the way they are being treated. Most of the living things left don't de

Form Letter N
Total matches 70-100%: 15
Dear NOAA Fisheries, My name is Daryn Clevesy and I currently reside in Portsmouth, NH. I have grown up in NH
my entire life and have always been drawn to nature, both the mountains and the sea. My love for nature only grew
as I did, leading me to earn a Bachelor's degree in Environmental Conservation and Sustainability from the
University of New Hampshire. Today I am lucky to be working at the Seacoast Science Center (SSC) located inside
the beautiful Odiorne Point State Park where I work everyday to educate the public about our World's Ocean
importance, and what we can do to help protect the oceans themselves, as well as the many species that depend on it.
Thats why Im writing to you today about our North Atlantic right whales. Im asking you to do everything you can to
save this critically endangered species from extinction. While your proposed rule is a step in the right direction, it
does not go far enough. I urge NOAA Fisheries to consider the following in formulating the final draft of the rule:
Weak rope will not do enough: modifications to fishing gear, called weak rope, are intended to reduce risk of
entanglement. But weak rope has not been thoroughly evaluated and has not been proven to reduce risk. We need
more, and longer, habitat closures: to truly save the species, we need to dramatically reduce the amount of vertical
lines in the water, for a longer period of time. The proposed closures are not long enough or large enough to protect
these whales. Ropeless fishing gear is the best path forward: NOAA Fisheries must continue efforts to test and foster

1000

a market for ropeless technologies by creating incentives for fishermen to try them. Right whales are majestic, social
creatures that are a critical part of the ecosystem. We are their greatest threat, and only hope We have to act now to
save them. Please do everything you can to prevent their extinction. Sincerely, Daryn Clevesy

Form Letter O
Total matches 70-100%: 13
Dear NOAA Fisheries: We are writing in reference to Docket No. 201221-0351 - the rulemaking process to protect
critically endangered North Atlantic right whales. The North Atlantic right whale is Georgia’s state marine mammal.
Our coast is one of the few known calving grounds and each winter, calving North Atlantic right whales make their
annual journey from New England and the Canadian Maritimes to give birth and rear young here. Since 1981, when
they were first spotted along our coast, each calving season has been met with anticipation by right whale
supporters. Successful reproduction is a challenge for the North Atlantic right whale. Female right whales reach
reproductive maturity at around 10 years of age. Historically, the species can give birth to only one calf every three
to five years, yet trauma from entanglement has increased this interval to nearly 10 years. With an estimated
population of fewer than 100 breeding females, every birth is a cause for celebration and, unless action is taken by
your agency, this species will be lost forever. The National Marine Fisheries Service (NMFS) released new data on
October 26, 2020 indicating that the population estimates, and mortality and serious injury rates are worse than
previously thought. Given the low population numbers (including fewer than 94 breeding females remaining), it is
essential that we work together to protect every North Atlantic right whale in order to avoid extinction for this
endangered species. Based on the expert opinions of scientists, trusted non-governmental organizations and
conservation groups, we don’t believe NOAA Fisheries’ proposal to reduce the serious injury and mortality of right
whales can move the lobster and crab fisheries into compliance with the Marine Mammal Protection Act (MMPA)
and the Endangered Species Act (ESA). NOAA Fisheries’ proposed measures aim to achieve only 60-69% risk
reduction, but they must recalculate the potential biological removal (PBR) level using updated data and publish a
final rule that achieves a minimum of an 80% risk reduction. PARK CANNON REPRESENTATIVE DISTRICT 58
931 MONROE DRIVE SUITE 102, NUMBER 460 ATLANTA, GA 30308 [email protected]
House of Representatives COVERDELL LEGISLATIVE OFFICE BUILDING, ROOM 512 ATLANTA,
GEORGIA 30334 (404) 656-7859 (O) (404)656-5605 (FAX) STANDING COMMITTEES: ETHICS CODE
REVISION HUMAN RELATIONS & AGING INSURANCE SMALL BUSINESS DEVELOPMENT CREATIVE
ARTS & ENTERTAINMENT WORKING GROUP We have a biological, legal, and moral responsibility to curtail
human-caused deaths of this species. The U.S. federal government is required to protect these animals in our waters,
under the MMPA and the ESA. Please strengthen the proposed North Atlantic right whale take reduction plan and
consider emergency action. Thanks for your consideration and efforts to preserve this symbol of our state, our
ecosystem and biological diversity. Sincerely, Representative Park Cannon Georgia House of Representatives, Dist.
58

Form Letter P
Total matches 70-100%: 12
Dear NOAA Fisheries: As a non-profit environmental law center, Midwest Environmental Advocates works to
defend public rights, protect natural resources, and ensure transparency and accountability in government. That is
why today we write with concern for the North Atlantic right whale. Right whales, which exist in Atlantic coastal
waters off the eastern United States and Canada, are critically endangered with fewer than 360 left on Earth. Since
2017, 47 known right whale deaths have been documented – including the tragic death of a newborn calf in St.
Augustine this month. Sadly, right whales are not dying of natural causes – they are hit by moving vessels or
entangled in commercial fishing lines that connect lobster and crab traps on the seafloor to buoys at the water’s
surface. The greatest threat to right whales in U.S. waters is entanglement in commercial fishing gear. Once
entangled in vertical buoy lines, whales may drown or drag and swim with attached gear for long distances,
ultimately resulting in fatigue, compromised feeding ability, or severe injuries that lead to reduced reproductive

1001

success and long, protracted deaths. Scientists estimate that 85% of right whales have been entangled at least once,
and over 50% of right whales have been entangled multiple times. We believe there is a biological, legal, and moral
responsibility to end these human-caused deaths and keep the right whale from extinction. In fact, the U.S. federal
government is required to protect these animals in our waters, under the Marine Mammal Protection Act (MMPA)
and the Endangered Species Act (ESA). While we appreciate the agency’s work on new rules for the U.S. American
lobster and Jonah crab fishery, to reduce the risk this fishery poses to endangered North Atlantic right whales, the
rule must be reworked and strengthened to save right whales from extinction. As it is proposed, the rule 1) uses
outdated data to calculate risk reduction to whales, 2) proposes fishing technology which has not been proven to
help, Regarding: Docket No. 201221-0351 – The Taking of Marine Mammals Incidental to Commercial Fishing
Operations Page 2 of 3 and 3) does not go far enough in its recommendation for closures. NOAA Fisheries estimates
that entanglement risk from lobster and crab fisheries needs to be reduced by 60% to 80% for the right whale to
survive extinction. Unfortunately, the calculations in the Draft Environmental Impact Statement showing how you
achieve that risk reduction relies on 2016 population estimates of 412 whales, whereas the most recent population
estimates indicate that the North Atlantic right whale has declined to about 366 animals. So there is no question that
a risk reduction target of at least 80% which accounts for all whale mortalities is required. The latest preliminary
data suggests the average annual right whale mortality is approximately 24 whales per year – meaning the risk of
entanglement needs to be reduced to near zero for the population to survive The proposed rule relies on the use of
ineffective gear modifications, called “weak rope” (or “weak inserts”) to reduce risk, but weak rope has not been
thoroughly evaluated or shown to reduce risk. Though intended to help entangled whales break free, this new style
of rope does not prevent entanglements, has not been proven to sufficiently reduce serious injury and death in
whales, and is especially risky for younger, smaller right whales. In addition, many fishermen say that if forced to
use weak rope, they will add rope to their buoy lines for hauling traps, thus potentially increasing the risk of
entanglement. It is not worth the economic burden on the industry to change to this rope if there is no proven
conservation benefit. Closures and “ropeless” technologies are a step in the right direction but the rule doesn’t go far
enough in either regard. The proposed closures to vertical buoy lines are too small, and too short in duration. The
closure south of Nantucket and Martha’s Vineyard, in the most conservative alternative (3a) may be an appropriate
size but is far too short in time at February through April. This should be a year-round closure as right whales have
been seen almost every month of the year here for the last several years. Closures should be based on the best
available science which includes recent and historical sightings, acoustic data, and prey data. As proposed by the
rule, new and existing closures will allow for the use of ropeless fishing with special permits. NOAA Fisheries must
continue the effort to test and foster a market for ropeless technologies by creating incentives for fishermen to try
them. The technologies are a promising practice that can prevent extinction of the right whale and meet the needs of
the fishing industry and its employees. Overall, the use of ropeless technologies in new and existing closed areas is a
good idea. Because measures will not be implemented for at least another year, and the right whale cannot sustain
more deaths while we wait for stronger rules to to be developed, NOAA Fisheries must use its emergency authority
to put vertical buoy line closures in place in areas where large numbers of right whales and harmful fishing gear coexist in Southern New England and offshore in the Gulf of Maine. Regarding: Docket No. 201221-0351 – The
Taking of Marine Mammals Incidental to Commercial Fishing Operations Page 3 of 3 The North Atlantic right
whale is critically endangered, dangerously close to the tipping point for extinction, but their population can rebound
if we lower human-caused deaths. If we don’t act now, it would mark the first human-caused extinction of a large
whale. This would be tragic for right whales and detrimental to the ocean ecosystem, to the lobster and crab
fisheries, and to people who care about the health of our oceans and marine wildlife. Sincerely,

Form Letter Q
Total matches 70-100%: 11

1002

Your plan is inadequate. You can do better that this. North Atlantic right whales can recover if NOAA Fisheries
takes swift, effective action to protect them from the vertical buoy lines that entangle and kill them. The proposed
rule must be revised, and the final rule must meet the level of risk reduction required by the most recent scientific
information. In the meantime, NOAA Fisheries must immediately implement closures to lobster and crab fishing
with vertical buoy lines in the areas where right whales concentrate, and help prevent the extinction of this iconic
animal.

Form Letter R
Total matches 70-100%: 10
Dear NOAA Fisheries, My name is Michael Paige and I am from Newburyport, MA. I walk the beach every day.
Every day the beach is littered with lobster traps and rope. We can't allow these marine mammals to be decimated
by thousands of lines where they swim. Thats why Im writing to you today about our North Atlantic right whales.
Im asking you to do everything you can to save this critically endangered species from extinction. While your
proposed rule is a step in the right direction, it does not go far enough. I urge NOAA Fisheries to consider the
following in formulating the final draft of the rule: Weak rope will not do enough: modifications to fishing gear,
called weak rope, are intended to reduce risk of entanglement. But weak rope has not been thoroughly evaluated and
has not been proven to reduce risk. We need more, and longer, habitat closures: to truly save the species, we need to
dramatically reduce the amount of vertical lines in the water, for a longer period of time. The proposed closures are
not long enough or large enough to protect these whales. Ropeless fishing gear is the best path forward: NOAA
Fisheries must continue efforts to test and foster a market for ropeless technologies by creating incentives for
fishermen to try them. Right whales are majestic, social creatures that are a critical part of the ecosystem. We are
their greatest threat, and only hope We have to act now to save them. Please do everything you can to prevent their
extinction. Sincerely, Michael Paige

Form Letter S
Total matches 70-100%: 10
National Oceanic and Atmospheric Administration (NOAA), It is not any humans place to drive any species into
extinction! AND in Nature: every species play a vital role, be it small or large. Think of Nature as a puzzle; all
pieces are needed for the full picture. The National Marine Fisheries Services proposed rule to address North
Atlantic right whale entanglements in fishing gear ***does not go far enough to save this species from
extinction.*** With only about 360 individuals remaining(!), the right whale is one of the world's most critically
endangered whales. The species has suffered a 25% population loss in less than a decade. Fishing gear
entanglements are the leading cause of skyrocketing rates of right whale deaths and serious injuries and are also
preventing them from reproducing, pushing calving rates to historic lows. SO STOP THEM. National Marine
Fisheries Service officials have acknowledged -'for years-' that the right whale's situation is dire and that more needs
to be done. Still more right whales are being harmed and killed by fishing gear entanglements while we wait for
action.... The proposed rule must do more to protect right whales by: 1) expanding the proposed closures and 2) fasttracking the transition to requiring "ropeless" fishing gear. The Fisheries Service has the statutory authority to enact
--emergency regulations-- to close i

Form Letter T
Total matches 70-100%: 8
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from
extinction. With only about 360 individuals remaining, the right whale is one of the world's most critically
endangered whales. The species has suffered a 25% population loss in less than a decade. Fishing gear
entanglements are the leading cause of skyrocketing rates of right whale deaths and serious injuries and are also

1003

preventing them from reproducing, pushing calving rates to historic lows. National Marine Fisheries Service
officials have acknowledged for years that the right whale's situation is dire and that more needs to be done. More
right whales are being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule
must do more to protect right whales by expanding the proposed closures and fast-tracking the transition to requiring
"ropeless" fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close
important right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species
from extinction. Thank you for considering my perspective. Colette Flake-Bunz [email protected] 8412 35th Avenue, Apt 2A, Apt.2A Jackson Heights, New York 11372

Form Letter U
Total matches 70-100%: 6
North Atlantic right whales are dying solely due to human activities. Without bold action, I fear these whales may
go extinct in my lifetime. The National Marine Fisheries Service has the opportunity to make the necessary changes
to save this species. I am glad to see steps are being outlined to promote the protection and survival of right whales
but, unfortunately, the proposed steps are based on outdated science. I urge NMFS to redraft these regulations using
the most up-to-date population estimates of North Atlantic right whales in order to develop an accurate risk
reduction plan. I also urge NMFS to aim to reduce risk to right whales by at least 80 percent, as recommended by
the US Marine Mammal Commission, rather than the less effective risk reduction outlined in the current proposal. In
the interim, NMFS should immediately implement temporary emergency regulations to protect right whales. I
strongly encourage NMFS to further invest in developing ropeless technology as quickly and responsibly as
possible, while establishing a plan to assist commercial trap fisheries in a transition to whale-safe gear. This rule
relies too heavily on a costly and inadequate transition to weaker rope, which has not been proven to protect younger
whales and does not reduce the long-term health effects of chronic entanglements on whales. I strongly support full
protection for the critically endangered North Atlantic right whales, which are cherished gentle giants who traverse
the busy waters of the US East Coast. Many of these docile creatures wear the painful evidence of fishing gear
entanglements and ship strikes which is a reminder of the dangers they face. Eighty-five percent of North Atlantic
right whales bear scars from being entangled in gear at least once in their lives, while over half bear scars from
being entangled at least twice. Right whales nearly went extinct due to commercial whaling but were able to slowly
recover after whaling on them ceased. Now, they are once again in serious jeopardy of extinction due to human
actions. I thank the NMFS for consideration of my letter and strongly urge the NMFS to please institute emergency
protective measures and regulations to ensure the survival of the critically endangered North American right whale
species. Please prioritize the enforcement of these protective measures. Thank you for the opportunity to comment
on enhanced protections for the North Atlantic right whale. It is my hope that my suggestions will be considered in
this process and that NMFS will prioritize right whale protections.

Form Letter V
Total matches 70-100%: 6
Dear NOAA Fisheries: As a Florida resident, I have spent my life energizing and inspiring the community around
me to value diverse ecosystems, because they are fundamental to the health and wellbeing of us all, human and nonhuman; because they help us redefine our relationships upon socially just and ecologically sustainable terms; and
because I believe we need to work collaboratively to conserve, restore and protect Florida’s precious waters for our
children and theirs, for generations to come. That is why I write today with deep concern for the survival of the
North Atlantic right whale. Right whales, which exist in Atlantic coastal waters off the eastern United State and
Canada, are critically endangered with fewer than 360 left on Earth. Since 2017, 47 known right whale deaths have
been documented – including the tragic death of a new born calf in St. Augustine this month. Sadly, right whales are
not dying of natural causes – they are dying because of unsustainable fishing practices, ship strikes, and the impacts
of a changing climate. The greatest threat to right whales in U.S. waters is entanglement in commercial fishing gear.
Once entangled in vertical buoy lines, whales may drown or drag and swim with attached gear for long distances,

1004

ultimately resulting in fatigue, compromised feeding ability, or severe injuries that lead to reduced reproductive
success and long, protracted deaths. Scientists estimate that 85% of right whales have been entangled at least once,
and over 50% of right whales have been entangled multiple times. NOAA Fisheries estimates that entanglement risk
from lobster and crab fisheries needs to be reduced by 60% to 80% for the right whale to survive extinction.
Unfortunately, the calculations in the Draft Environmental Impact Statement showing how you achieve that risk
reduction relies on 2016 population estimates of 412 whales, whereas the most recent population estimates indicate
that the North Atlantic right whale has declined to about 366 animals. So there is no question that a risk reduction
target of at least 80% which accounts for all whale mortalities is required. The latest preliminary data suggests the
average annual right whale mortality is approximately 24 whales per year – meaning the risk of entanglement needs
to be reduced to near zero for the population to survive The proposed rule relies on the use of ineffective gear
modifications, called “weak rope” (or “weak inserts”) to reduce risk, but weak rope has not been thoroughly
evaluated or shown to reduce risk. Though intended to help entangled whales break free, this new style of rope does
not prevent entanglements, has not been proven to sufficiently reduce serious injury and death in whales, and is
especially risky for younger, smaller right whales. In addition, many fishermen say that if forced to use weak rope,
they will add rope to their buoy lines for hauling traps, thus potentially increasing the risk of entanglement. It is not
worth the economic burden on the industry to change to this rope if there is no proven conservation benefit. Closures
and “ropeless” technologies are a step in the right direction but the rule doesn’t go far enough in either regard. The
proposed closures to vertical buoy lines are too small, and too short in duration. The closure south of Nantucket and
Martha’s Vineyard, in the most conservative alternative (3a) may be an appropriate size but is far too short in time at
February through April. This should be a year-round closure as right whales have been seen almost every month of
the year here for the last several years. Closures should be based on the best available science which includes recent
and historical sightings, acoustic data, and prey data. As proposed by the rule, new and existing closures will allow
for the use of ropeless fishing with special permits. NOAA Fisheries must continue the effort to test and foster a
market for ropeless technologies by creating incentives for fishermen to try them. Overall, the use of ropeless
technologies in new and existing closed areas is a good idea. Because measures will not be implemented for at least
another year, and the right whale cannot sustain more deaths while we wait for stronger rules to be developed,
NOAA Fisheries must use its emergency authority to put vertical buoy line closures in place in areas where large
numbers of right whales and harmful fishing gear co-exist in Southern New England and offshore in the Gulf of
Maine. The North Atlantic right whale is critically endangered and dangerously close to the tipping point for
extinction, but their population can rebound if we lower human-caused deaths. Unless we act now, it would mark the
first human-caused extinction of a large whale. This would be tragic for right whales and detrimental to the ocean
ecosystem, to the lobster and crab fisheries, and to people who care about the health of our oceans and marine
wildlife. Sincerely, John Moran

Form Letter W
Total matches 70-100%: 6
It is NOAA Fisheries legal responsibility under the Endangered Species Act and the Marine Mammal Protection Act
to protect the North Atlantic right whate from injury and death in U.S. waters. The greatest threat to right whales in
U.S. waters is entanglement in commercial fishing gear. The most recent population estimates indicate that the
North Atlantic right whale has further declined from the 2016 population estimates to about 366 animals. So there is
no question that a risk reduction target of at least 80%which accounts for unseen whale mortalitiesis required. The
alternative measures that NOAA Fisheries released would achieve only 60-69% risk reduction. The ineffective gear
modification called weak rope has not proved to reduce serious injury and death in whales. It is not worth the
economic burden on the industry to change to this rope if there is no proven conservation benefit. NOAA Fisheries
must immediately implement emergency action designating a year-round closure south of Marthas Vineyard and
Nantucket and in three areas in the Gulf of Maine that would be closed seasonally to vertical buoy lines in the
American lobster and Jonah crab fisheries. Targeted vertical buoy line closures where right whales interact with this

1005

heavy, lethal fishing gear are the fastest and most effective management tools to prevent unlawful deaths and
extinction of the North Atlantic right whale. Closures in offshore areas would also minimize the impact on
fishermen, because the majority of lobster fishing occurs closer to shore. North Atlantic right whales can recover if
NOAA Fisheries takes swift, effective action to protect them from the vertical buoy lines that entangle and kill them.
The proposed rule must be revised, and the final rule must meet the level of risk reduction required by the most
recent scientific information. In the meantime, NOAA Fisheries must immediately implement closures to lobster and
crab fishing with vertical buoy lines in the areas where right whales concentrate, and help prevent the extinction of
this iconic animal.

Form Letter X
Total matches 70-100%: 6
Lobstermen are fully in support of protecting the Right Whales but the proposed measures go too far and this could
put many Lobsterman out of business. The regulations should be reviewed further before they are mandated as these
fishing restrictions will end up seriously harming the lobster industry.

Form Letter Y
Total matches 70-100%: 6
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear is not sufficient to save this endangered species
from extinction. It is estimated that there are about 360 individuals remaining. The North Atlantic right whale is one
of the world's most critically endangered whale species. The species has suffered a 25% population loss in less than
a decade, with fishing gear entanglements as the leading cause of death and serious injuries. The steep population
decline and low population density are also preventing them from reproducing, pushing calving rates to historic
lows. National Marine Fisheries Service officials have acknowledged for years that the right whale's situation is a
policy priority with extinction looming. The proposed rule must do more to protect right whales by expanding the
proposed closures and fast-tracking the transition to requiring "ropeless" fishing gear. The Fisheries Service has the
statutory authority to enact emergency regulations to close important right whale habitat to fishing with static
vertical buoy lines. Please use that power to save this species from extinction. Thank you for considering my
perspective. Madeline Piscetta [email protected] 2366 Osage Trail Wadsworth, Ohio 44281-8474

Form Letter Z
Total matches 70-100%: 5
The North Atlantic right whale is critically endangered and needs immediate help to recover. It is NOAA Fisheries
legal responsibility under the Endangered Species Act and the Marine Mammal Protection Act to protect this species
from injury and death in U.S. waters. The greatest threat to right whales in U.S. waters is entanglement in
commercial fishing gear.

Form Letter ZA
Total matches 70-100%: 5
As per the following statement from the Turtle Island Restoration Network: "Lobster and crab are caught with
vertical buoy lines in areas where right whales concentrate. Because vertical lines run from the trap up to the surface
buoy, traps and pots can entangle marine animals including endangered North Atlantic right whales, humpback
whales, fin whales, and grey whales. The effects of entanglement can range from no permanent injury to serious
injury and death. If the traps are weighted down, entangled whales, dolphins, and sea turtles can drown if they
cannot reach the surface to breathe. NOAA Fisheries estimates that entanglement risk from lobster and crab fisheries
needs to be reduced by 60% to 80%. The calculations in the Draft Environmental Impact Statement showing how
NOAA Fisheries proposes to achieve that risk reduction rely on an old stock assessment using 2016 population

1006

estimates, whereas the most recent population estimates indicate that the North Atlantic right whale has further
declined to about 366 animals. So there is no question that a risk reduction target of at least 80%which accounts for
unseen whale mortalitiesis required. The alternative measures that NOAA Fisheries released would achieve only 6069% risk reduction. North Atlantic right whales can recover if NOAA Fisheries takes swift, effective action to
protect them from the vertical buoy lines that entangle and kill them. The proposed rule must be revised, and the
final rule must meet the level of risk reduction required by the most recent scientific information." I support any
revisions that will help in the recovery of the North Atlantic Right Whales. Our world is losing way too may species
that keep it in balance and we absolutely must take bold steps in protecting wildlife and marine species.

Form Letter ZB
Total matches 70-100%: 5
The North Atlantic right whale is critically endangered and needs immediate help to recover. The greatest threat to
right whales in U.S. waters is entanglement in commercial fishing gear. NOAA Fisheries estimates that
entanglement risk from lobster and crab fisheries needs to be reduced by 60% to 80%. There is no question that a
risk reduction target of at least 80%which accounts for unseen whale mortalitiesis required. The alternative
measures that NOAA Fisheries released would achieve only 60-69% risk reduction. On the most optimistic timeline,
the measures included in the final rule to reduce risk to whales would not be in effect on the water until 2022 or
later. While this rule is revised, finalized, and implemented, NOAA Fisheries must immediately implement
emergency action designating a year-round closure south of Marthas Vineyard and Nantucket and in three areas in
the Gulf of Maine that would be closed seasonally to vertical buoy lines in the American lobster and Jonah crab
fisheries. Targeted vertical buoy line closures where right whales interact with this heavy, lethal fishing gear are the
fastest and most effective management tools to prevent unlawful deaths and extinction of the North Atlantic right
whale. Closures in offshore areas would also minimize the impact on fishermen, because the majority of lobster
fishing occurs closer to shore. The proposed rule must be revised, and the final rule must meet the level of risk
reduction required by the most recent scientific information. NOAA Fisheries must immediately implement closures
to lobster and crab fishing with vertical buoy lines in the areas where right whales concentrate, and help prevent the
extinction of this iconic animal.

Form Letter ZC
Total matches 70-100%: 5
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from
extinction. Fishing gear entanglements are the leading cause of skyrocketing rates of right whale deaths and serious
injuries and are also preventing them from reproducing, pushing calving rates to historic lows. The proposed rule
must do more to protect right whales by expanding the proposed closures and fast-tracking the transition to requiring
"ropeless" fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close
important right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species
from extinction. Thank you for considering my perspective. Tim Barrington [email protected] 344 N
5th St, APT 6 San Jose, California 95112-5237

Form Letter ZD
Total matches 70-100%: 5
I am commenting on the proposed modifications to the Atlantic Large Whale Take Reduction Plan as published in
the Federal Register. As NOAA is aware, the leading cause of death for North Atlantic right whales is getting
entangled in old fishing gear. The vast majority of right whales (85%) have become entangled in gear at least once
as they attempt to swim through over a million buoy ropes attached to fishing gear on the U.S. East Coast. These
ropes are real risk to right whales. As a result, the right whales are practically extinct. According to NOAA’s most

1007

recent estimate, fewer than 370 right whales remain. The proposed rule modifications won't solve the problem and
are not science and technology-based. If NOAA is going to change the rules protecting right whales, those rules
should based on the most recent population estimate produced by the Agency’s own scientists, not obsolete data.
Proposals to reduce entanglement risks to right whales must promote and speed-up the permitting process for
ropeless fishing gear. This latest technology, pioneered by New England lobstermen, reduces entanglement risk to
right whales while maintaining fishermen’s access to otherwise closed areas. The NOAA-preferred option of
reduced breaking strength or weak rope can still kill young right whales that get tangled. I urge you to strengthen the
proposed rule changes based on the latest science, and to accelerate the use of ropeless fishing - a win-win for
endangered whales, fishermen and coastal economies. Thank you

Form Letter ZE
Total matches 70-100%: 5
I wish to comment on the proposed modifications to the Atlantic Large Whale Take Reduction Plan shown in the
Federal Register. As NOAA has recognized, entanglement in outmoded fishing gear is the leading cause of death for
North Atlantic right whales. Where there is rope, there is real and imminent risk to right whales. Leveraging ropeless
fishing texhnology is the best way forward. Time is running out. According to NOAA’s most recent estimate, fewer
than 370 right whales remain. The proposed rule modifications do not represent a serious, science and technologybased effort to save this species from extinction. If NOAA is going to change the rules protecting right whales, the
new rules should reflect the most recent population estimate produced by the Agency’s own scientist, not data
consider obsolete by NOAA itself. Proposals to reduce entanglement risks to right whales must promote and
accelerate the permitting process for ropeless fishing gear. This 21st century technology, pioneered by New England
lobstermen, reduces entanglement risk to right whales while maintaining fishermen’s access to otherwise closed
areas. The NOAA-preferred option of reduced breaking strength or weak rope is a short-term policy option that
offers no protection to right whale calves or juveniles from potentially lethal entanglements. Please strengthen the
proposed rule changes to ensure they are based on the best available science and technology and to accelerate the
adoption of ropeless fishing, a win-win solution for endangered whales, fishermen and coastal economies. Thank
you.

Form Letter ZF
Total matches 70-100%: 5
North Atlantic right whales are dying solely due to human activities. Without bold action, I fear these whales may
go extinct in my lifetime. The National Marine Fisheries Service has the opportunity to make the necessary changes
to save this species. I am glad to see steps are being outlined to promote the protection and survival of right whales
but, unfortunately, the proposed steps are based on outdated science. I urge NMFS to redraft these regulations using
the most up-to-date population estimates of North Atlantic right whales in order to develop an accurate risk
reduction plan. I also urge NMFS to aim to reduce risk to right whales by at least 80 percent, as recommended by
the US Marine Mammal Commission, rather than the less effective risk reduction outlined in the current proposal. In
the interim, NMFS should immediately implement temporary emergency regulations to protect right whales. I
strongly encourage NMFS to further invest in developing ropeless technology as quickly and responsibly as
possible, while establishing a plan to assist commercial trap fisheries in a transition to whale-safe gear. This rule
relies too heavily on a costly and inadequate transition to weaker rope, which has not been proven to protect younger
whales and does not reduce the long-term health effects of chronic entanglements on whales. I can absolutely
appreciate the time and effort that would have to be put into a transition to ropeless technology and an updated risk
reduction plan, but the reality is that we, as human beings with a significant impact on the environment, have a
moral responsibility to protect wild animal life. I sincerely and wholeheartedly plead that we take these small steps
towards taking a greater responsibility for our place in the world around us. I love animals, but loving animals is not
my job or my passion in life. I personally believe that humans have emerged as one of the most intelligent and
impactful species through the natural process of evolution, and there's no reason why we can't take pride in that

1008

position. I say this to be clear that I speak from a position of concern but not a position of bias. Ultimately, any
position of power comes with responsibility, and taking care of animal species that share the world with us is simply
right, especially when such simple measures would go such a long way. Thank you for the opportunity to comment
on enhanced protections for the North Atlantic right whale. It is my hope that my suggestions will be considered in
this process and that NMFS will prioritize right whale protections.

Form Letter ZG
Total matches 70-100%: 5
The Georgia Conservancy is pleased to provide comments for the rulemaking related to the NMFS Large Whale
Take Reduction Plan Regulations ("proposed rule"). The members of our organization, along with residents across
the state of Georgia, have a strong interest in the North Atlantic right whale (Eubalaena glacialis) ("right whale"),
which spends part of each year off of our shores. Founded in 1967, the Georgia Conservancy is one of Georgia's
oldest nonprofit conservation organizations. Working to protect our coast for more than 50 years, the Georgia
Conservancy is a statewide conservation organization whose goal is to develop practical solutions for protecting
Georgia's environment. We establish policy decisions under a vision statement that seeks to cultivate a Georgia
where people and the environment thrive. In the 1980’s, Georgia Conservancy staff played a role in discovering the
thenunknown calving grounds off our shore. Since that time, this iconic animal has played a role in the
organization's conservation outreach and advocacy. Right whales are critically endangered, but their population can
rebound if we lower human-caused deaths using updated science and fishing technologies. Currently, conservation
of the right whale is of principal concern now that the species' apparent recovery seems to have stalled. The National
Marine Fisheries Service (NMFS) has proposed rules to amend the regulations to reduce serious injury to North
Atlantic right whales in the northeast commercial lobster and crab trap/pot fisheries. The most recent stock
assessments during the regulation development have shown that the species is declining more rapidly than initially
anticipated. The numerous right whale deaths since 2017 have rendered the measures in the proposed rule to be "too
little, too late." However, Georgia Conservancy supports updated regulations that build off of three primary
elements of the proposed rules (closures, gear, and technology). COASTAL OFFICE 428 Bull Street, Suite 210
Savannah, GA 31401 tel 912.447.5910 fax 912.447.0704 coastal@gaconservancyorg georgiaconservancy.org.
PRESIDENT Katherine Moore* BOARD CHAIR Mark S. Berry, Douglasville* BOARD OF TRUSTEES Felicia
Adkins, Canton Brent Beatty, Atlanta Hardie Davis Jr., Hephzibah Richard S. Downey, Atlanta Patrice T. Francis,
Atlanta* Stephen Green, Savannah Virginia Harman, Cave Spring* Peter Hartman, Atlanta Holden Hayes,
Savannah Byron Kirkpatrick, Atlanta* Mike LaFerle, Marietta Leslie D. Mattingly, St, Simons* Tim McKinley,
Atlanta Chris Miller, LaGrange Robert Morris, Tybee Island PJ Newcomb, Decatur Amanda Brown Olmstead,
Atlanta Russ Pennington, Brookhaven* Steven E. Pohl, Atlanta* Stacy Shailendra, Atlanta* W. Michael Stubbs,
Macon Charles Thomas, Mableton* Malon Wickham, Columbus* ADVISORY COUNCIL Claire L. Arnold,
Atlanta Braye Boardman, Augusta Joel Cowan, Peachtree City Ann Q. Curry, Atlanta C. Edward Dobbs, Atlanta
Amir Farokhi, Atlanta Elliott Levitas, Atlanta J. Lacey Lewis, Atlanta Hank Linginfelter, St. Simons Clay C. Long,
Atlanta Joe Montgomery, Rome Marci Collier Overstreet, Atlanta Laura Turner Seydel, Atlanta Ron Shipman,
Macon Jim Timmons, Atlanta *Executive Committee Member These updates should reflect recent developments
that could shift the recovery trajectory, namely. • Expanded and improved fishery monitoring to account for
interactions between fishing gear and right whales • Additional measures provided for fisheries that must close due
to the presence of whales and • Interim emergency management measures including vertical line reductions,
seasonal closures, and ropeless fishing areas We realize that these proposed regulations create significant economic
impacts on fishermen and their communities. Though the restrictions will impact fisheries, we anticipate that they
will create areas off of Georgia's shores that can be used for right whale protection. Opportunities, which build on
and support NOAA regulatory changes: Investing in longer-term adaptations (technology and fishery practices) that
take effective action over the years will once more place the right whale on a trajectory to becoming a truly viable
population. Hopefully, this combination will encourage a future where local fisheries prosper while protecting our
stock of whales from entanglement. We want to emphasize that these measures will minimize conflicts across the

1009

range (northern and in southeastern waters too): Equipment adaptation and incentives across the range: "Ropeless
(or buoyless) fishing" adaptations carry the promise to improve fishing and protect whales. These systems allow
fishers to continue operating in areas where right whales are present without further endangering these marine
mammals. We advocate for NOAA Fisheries to continue to test and foster a market for ropeless technologies by
creating incentives for their use. Additional funding and scientific inquiry: Improvements in stock assessment and
support for science related to right whale conservation are very much needed. We hope for additional funding from
legislation such as the proposed "Scientific Assistance for Very Endangered North Atlantic Right Whales Act of
2019" (S.2453), also known as the SAVE Right Whales Act. This bill seeks to establish "a grant program to promote
collaboration between states, nongovernmental organizations, and members of the fishing and shipping industries to
reduce human impacts on right whales and promote the recovery of the population." Another bill, titled the Right
Whale Protection Act, goes a long way to furthering much needed NOAA research, stock assessments, and gear
adaptation. The bipartisan Senate bill, which former Senator Johnny Isakson of Georgia co-signed, was introduced
in September 2019 and would authorize up to $5 million annually from 2019 - 2029 to projects that promote or
contribute to the wild population's sustainability and recovery. The SAVE Right Whales Act also encourages North
Atlantic right whale recovery efforts between the United States and Canadian governments. We see a perilous need
for a spirit of cooperative action that furthers right whale conservation. To that end, we would like to see agency
support for speeding up the adaptation of new technologies and added funding that will lead to a reduction in
human/right whale conflicts. The Georgia Conservancy has been involved with North Atlantic right whale
conservation issues for nearly 40 years. Stewardship of our iconic state marine mammal is a legacy for the Georgia
Conservancy and thus provides a policy lens through which we view our advocacy, research, and outreach.
Specifically, the proposed rulemaking is directed to New England fisheries; however, notable changes in
Southeastern US fisheries may be made to reduce rope entanglements as well. By way of example, the Georgia
Conservancy seeks to support the early, promising work being done in Georgia to adapt ropeless gear in the black
sea bass fishery. With less than 400 right whales left and deaths occurring at a rate that far exceeds the sustainable
level, there is an imperative to approve strong regulatory changes and to do more across the entire migration rangenorth and southeast. Further protective measures will need to be implemented across the whole range, from the
Southeastern shores to New England and Canadian waters. As they stand now, the proposed regulations do not meet
the threshold of strength needed to support this critical species. If there is no significant revision to the Proposed
Risk Reduction Rule by NMFS, the Georgia Conservancy recommends that it be withdrawn and updated and
emergency measures put in place. We look for an informed and comprehensive implementation of these measures.

Form Letter ZH
Total matches 70-100%: 4
Dear NOAA Fisheries, My name is Deb Wills, and I am from Oakland, CA. I have fundamental concerns about the
decline in biodiversity. While no longer pursued for its oil, meat and bones, North Atlantic right whales continue to
be the victim of ship strikes and entanglement in fishing gear, which can result in protracted, painful deaths.This
whale population is declining so quickly that they may be functionally extinct by 2040, in not before, if more isn't
done to protect them. Thats why Im writing to you today about our North Atlantic right whales. Im asking you to do
everything you can to save this critically endangered species. While your proposed rule changes are a step in the
right direction, it does not go far enough. I urge NOAA Fisheries to consider the following in formulating the final
draft of the rule: 1. Weak rope will not do enough: modifications to fishing gear, called weak rope, are intended to
reduce risk of entanglement. But weak rope has not been thoroughly evaluated and has not been proven to reduce
risk. 2. We need more, and longer, habitat closures: to truly save the species, we need to dramatically reduce the
amount of vertical lines in the water. Additionally the proposed closures are too short in duration and not large
enough to protect these whales, so some areas need to be enlarged, and some areas need to be protectef ro longer
periods of time, possibly year-round in some cases. 3. Ropeless fishing gear is the best path forward: NOAA
Fisheries must continue efforts to test and foster a market for ropeless technologies by creating incentives for

1010

fishermen to try them. Right whales are majestic, maternal creatures that live in our own local oceans. Its up to us to
save them. Please do everything you can to prevent their extinction.

Form Letter ZI
Total matches 70-100%: 4
The North Atlantic right whale is critically endangered and needs immediate help to recover. It is NOAA Fisheries
legal responsibility under the Endangered Species Act and the Marine Mammal Protection Act to protect this species
from injury and death in U.S. waters. The greatest threat to right whales in U.S. waters is entanglement in
commercial fishing gear. NOAA Fisheries estimates that entanglement risk from lobster and crab fisheries needs to
be reduced by 60% to 80%. The calculations in the Draft Environmental Impact Statement showing how NOAA
Fisheries proposes to achieve that risk reduction rely on an old stock assessment using 2016 population estimates,
whereas the most recent population estimates indicate that the North Atlantic right whale has further declined to
about 366 animals. So there is no question that a risk reduction target of at least 80%which accounts for unseen
whale mortalitiesis required. The alternative measures that NOAA Fisheries released would achieve only 60-69%
risk reduction. North Atlantic right whales can recover if NOAA Fisheries takes swift, effective action to protect
them from the vertical buoy lines that entangle and kill them. The proposed rule must be revised, and the final rule
must meet the level of risk reduction required by the most recent scientific information. In the meantime, NOAA
Fisheries must immediately implement closures to lobster and crab fishing with vertical buoy lines in the areas
where right whales concentrate, and help prevent the extinction of this iconic animal.

Form Letter ZJ
Total matches 70-100%: 4
This is a test Form Letter, please ignore

Form Letter ZK
Total matches 70-100%: 4
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear is inadequate to save this species from
extinction. With only about 360 individuals remaining, the right whale is one of the world's most critically
endangered whales. The right whale population has declined 25% in less than a decade. The leading cause of
skyrocketing rates of right whale deaths and serious injuries is fishing gear entanglements, which are also preventing
reproduction, pushing calving rates to historic lows. More right whales are being harmed and killed by fishing gear
entanglements every day. The proposed rule must do more to protect right whales by expanding the proposed
closures and fast-tracking the transition to requiring "ropeless" fishing gear. The Fisheries Service has the statutory
authority to enact emergency regulations to close important right whale habitat to fishing with static vertical buoy
lines. Please use that power to save this species from extinction. Thank you for considering my perspective. Patricia
Harlow [email protected] 624 Erlen Road Plymouth Meeting, Pennsylvania 19462

Form Letter ZL
Total matches 70-100%: 4
National Oceanic and Atmospheric Administration (NOAA), Can we please make the changes we need to make an
order to protect the north Atlantic right whale? I think so. It will be a terrible thing if this whale becomes extinct
under our watch. The National Marine Fisheries Services proposed rule to address North Atlantic right whale
entanglements in fishing gear does not go far enough to save this species from extinction. More right whales are
being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule must do more to
protect right whales by expanding the proposed closures and fast-tracking the transition to requiring "ropeless"
fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close important

1011

right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species from
extinction. Thank you for considering my perspective. Rose Latino [email protected] 133 East 2nd St Brooklyn
, New York 11218

Form Letter ZM
Total matches 70-100%: 4
I am writing to comment on the proposed modifications to the Atlantic Large Whale Take Reduction Plan as
published in the Federal Register. As NOAA has recognized, entanglement in outmoded fishing gear is the leading
cause of death for North Atlantic right whales. 85% of right whales have become entangled at least once as they
navigate through more than one million buoy ropes attached to fishing gear on the East Coast of the United States.
Where there is rope, there is real and imminent risk to right whales. Proposals to reduce entanglement risks to right
whales must promote and accelerate the permitting process for ropeless fishing gear. This 21st century technology,
pioneered by New England lobstermen, reduces entanglement risk to right whales while maintaining fishermen’s
access to otherwise closed areas. The NOAA-preferred option of reduced breaking strength or weak rope is a shortterm policy option that offers no protection to right whale calves or juveniles from potentially lethal entanglements.
I urge you to strengthen the proposed rule changes to ensure they are based on the best available science and
technology and to accelerate the adoption of ropeless fishing, a win-win solution for endangered whales, fishermen
and coastal economies. Thank you.

Form Letter ZN
Total matches 70-100%: 4
North Atlantic right whales are on the brink of extinction. Current population studies estimate that there are fewer
than 366 living whales, with only 82 reproductively active females. Entanglement in commercial fishing gear is the
leading cause of serious injury and death for this iconic species. The law requires NOAA Fisheries to make new
rules to protect endangered North Atlantic right whales in U.S. waters. After years of delay, the agency finally
released a proposed rule to reduce entanglement risk, but its risk reduction measures are based on outdated science
and do not go far enough to save right whales from extinction. Also, on the most optimistic timeline, measures
included in the final rule to reduce risk to whales would not be in effect on the water until 2022 or later, and the right
whale population cannot sustain more deaths in the interim. NOAA Fisheries officials must take emergency action
and create immediate fishing closures in areas where right whales are most prevalent while the agency develops
stronger protections for the long term.

Form Letter ZO
Total matches 70-100%: 4
CENTER FOR A SUSTAINABLE COAST 221 Mallery Street, Suite B Saint Simons Island, Georgia 31522 Voice:
912.506.5088 REVISED Draft We share the concerns of millions who are witnessing the alarming decline of marine
mammals pushing them to the brink of extinction, including the Right Whale. The population of these magnificent
animals has plummeted, making them extremely vulnerable to further risks, including offshore fishing that is the
cause for most fatalities, in combination with ship-strikes. According to marine scientists, since 2017, 45 right-whale
deaths have been documented, and many more are suspected. Because injuries and deaths are often caused by
entanglement with vertical buoy lines, rules governing related offshore fisheries activities are extremely important.
We are advised that some 85% of right whales have been entangled at least once, and an alarming 50% or more have
been entangled repeatedly. As currently drafted, marine biologists advise that unacceptable risks would be
propagated despite efforts intended to reduce hazards to right whales and other marine mammals. The proposed
requirements are based on obsolete information, leaving right whales needlessly vulnerable to further fatalities and
suffering. Moreover, in the interim period of at least a year prior to these new measures being implemented, the right
whale population remains dangerously exposed to continued destruction. Due to the dire predicament of near

1012

extinction and such unacceptable hazards, we strongly urge NOAA Fisheries to adopt added protection of the right
whale, using the agency’s lawful emergency authority to impose restrictions suspending the use of vertical buoy
lines in zones where large numbers of right whales are known to have been entangled. Fisheries experts advise that
new technologies, called rope-free (or buoy-free) fishing are an opportunity for lobster and crab fishermen to
continue operating in areas where right whales are present without further endangering these marine mammals. To
develop these alternatives, NOAA Fisheries must continue efforts to test and foster a market for rope-free
technologies, including the creation of incentives for fishermen to try them. Accordingly, rope-free testing in closure
areas should be authorized under carefully monitored and evaluated conditions, using “exempted” fishing permits.
We have a biological, legal, and moral responsibility to end these cruel and avoidable human-caused deaths. Under
the Marine Mammal Protection Act (MMPA) and the Endangered Species Act (ESA), the U.S. federal government
is required to protect these animals in our nation’s waters. We implore you to take our comments to heart by
adopting the most protective approach possible to prevent extinction of the right whale.

Form Letter ZP
Total matches 70-100%: 4
I am writing to comment on the proposed modifications to the Atlantic Large Whale Take Reduction Plan as
published in the Federal Register. As NOAA has recognized, entanglement in outmoded fishing gear is the leading
cause of death for North Atlantic right whales. 85% of right whales have become entangled at least once as they
navigate through more than one million buoy ropes attached to fishing gear on the East Coast of the United States.
Where there is rope, there is real and imminent risk to right whales. Time is running out. According to NOAA’s
most recent estimate, fewer than 370 right whales remain. The proposed rule modifications do not represent a
serious, science and technology-based effort to save this species from extinction. If NOAA is going to change the
rules protecting right whales, the new rules should reflect the most recent population estimate produced by the
Agency’s own scientist, not data consider obsolete by NOAA itself. Proposals to reduce entanglement risks to right
whales must promote and accelerate the permitting process for ropeless fishing gear. This 21st century technology,
pioneered by New England lobstermen, reduces entanglement risk to right whales while maintaining fishermen’s
access to otherwise closed areas. The NOAA-preferred option of reduced breaking strength or weak rope is a shortterm policy option that offers no protection to right whale calves or juveniles from potentially lethal entanglements.
I urge you to strengthen the proposed rule changes to ensure they are based on the best available science and
technology and to accelerate the adoption of ropeless fishing, a win-win solution for endangered whales, fishermen
and coastal economies. I have been advocating this same issue for these creatures for 40 years. Enough talk and
review just take action. I am exhausted by the tedious continuation of debate that goes no where. We are loosing this
battle. The North Atlantic Right Whales are loosing this battle and we keep meeting, discussing, debating to no
avail. We have equipment roaming planets beyond countless miles from this planet and yet somehow we can't get
fishermen the equipment they need to maintain their livelihood while keeping whales from entanglement or monitor
whales right here on this planet to keep them safe from ship strikes. Just how incompetent are we. or more
accurately just how much don't we care? Get this done-rope less gear totally subsidized by government for
immediate implementation and increase monitoring to avoid ship strikes immediately. We are out of time. The
North Atlantic Right Whale is out of time. How ironic #3920-Cottontail has just died after months and months of
suffering with entangled line. Thank you. Elizabeth Clemmey 175 Essex Street Mansfield Ma 02048

Form Letter ZQ
Total matches 70-100%: 3
Please protect the whales!

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Form Letter ZR
Total matches 70-100%: 3
Time is running out to save the right whales. NOAA’s own scientists estimate only 366 remain. We must act now to
save them from extinction. The main threat to the survival of this species is entanglement in fishing gear up and
down the East coast, and recent proposed rule changes are supposed to reduce this threat. Some of these rule
changes might help, but they do not do enough to save right whales from extinction. And whales are not the only
ones threatened. NOAA’s proposals close more areas to fishing but fail to provide support and fast-track permitting
for rope-less fishing gear, a win-win solution that reduces entanglement while fishermen continue to make a living.
Ropeless gear technology is the only long-term solution to reduce entanglements while keeping fishermen on the
water. NOAA should include a fast-track permitting process to ensure ropeless is legal. Let’s get as much rope out
of the water as we can and give the North Atlantic right whale a fighting chance. Thank you for your consideration.

Form Letter ZS
Total matches 70-100%: 3
North Atlantic right whales are among the most endangered animals on the planetand without strong, evidencebased protections, the species will continue to decline. And so my family and I urge the NIAA to create immediate
fishing closures in areas where right whales are most prevalent, while the agency develops stronger protections in
the long term.

Form Letter ZT
Total matches 70-100%: 3
NOAA Fisheries 1315 East-West Highway Silver Spring, MD 20910 RE: Docket No. 201221-0351 - the rulemaking
process to protect critically endangered North Atlantic right whales. Dear NOAA Fisheries: Successful reproduction
is a challenge for the North Atlantic right whale. Female right whales reach reproductive maturity at around 10 years
of age. Historically, the species can give birth to only one calf every three to five years, yet trauma from
entanglement has increased this interval to nearly 10 years. With an estimated population of fewer than 100 breeding
females, every birth is a cause for celebration and, unless action is taken by your agency, this species will be lost
forever. The National Marine Fisheries Service (NMFS) released new data on October 26, 2020 indicating that the
population estimates, and mortality and serious injury rates are worse than previously thought. Given the low
population numbers (including fewer than 94 breeding females remaining), it is essential that we work together to
protect every North Atlantic right whale in order to avoid extinction for this endangered species. Based on the expert
opinions of scientists, trusted non-governmental organizations and conservation groups, I don’t believe NOAA
Fisheries’ proposal to reduce the serious injury and mortality of right whales can move the lobster and crab fisheries
into compliance with the Marine Mammal Protection Act (MMPA) and the Endangered Species Act (ESA). NOAA
Fisheries’ proposed measures aim to achieve only 60-69% risk reduction, but they must recalculate the potential
biological removal (PBR) level using updated data and publish a final rule that achieves a minimum of an 80% risk
reduction. We have a biological, legal, and moral responsibility to curtail human-caused deaths of this species. The
U.S. federal government is required to protect these animals in our waters, under the MMPA and the ESA. Please
strengthen the proposed North Atlantic right whale take reduction plan and consider emergency action. Thanks for
your consideration and efforts to preserve our ecosystem and biological diversity for future generations. Sincerely,
Representative Rachel Hunt North Carolina House District 103 [email protected]

Form Letter ZU
Total matches 70-100%: 3
My name is Brennan Strong and I have already shared a lot of my thoughts with you and others regarding the new
BiOp and regulations for right whales. I wanted to share a few more genuine suggestions while you are still
accepting comments. Instead of more U.S. fishing industry regulation, we all need a lot more research. The only new

1014

U.S. trap/pot regulation I support is increased gear marking with state and area specific colors and that all gear
buoys everywhere have at least the same marking requirements as Maine (license number unique to that
fisherman/gear owner). Beyond this, anymore regulation is not backed by enough credible research to justify
immediate implementation. I can say this with absolute certainty for Maine, I can not speak specifically for other
states. I heard the testimony of a Man at a recent public hearing, who was at an ALWTRT meeting and saw a pile of
fishing gear pulled off a whale and immediately could tell none of it was from Maine. Please re - direct all effort to
increased research and whale disentanglement efforts. We need whale disentanglement teams that are as fearless and
tenacious as they are intelligent, willing to do whatever it takes whenever needed to disentangle whales safely. I
applaud those who have led the way with these brave rescues. You have my contact so I would happy to be trained
on how to help, as well as many others I know. We should be conducting a world-class study on what specific gear
configurations and locations are causing entanglements, and during what times of the year. We need both public and
private, state and federal, U.S. and Canadian scientists, engineers, ocean goers, and fishermen for an all hands on
deck effort to get to the bottom of this serious issue. As well as the gear studies, we need to do much better with
tracking right whales. I appreciate and congratulate the work that has been done so far, but it is time to build on our
successes, and turn away from the scary path we appear to be going down. If you do not make serious and timely
changes to your plans, I will go out of business in 10 years or less. The job I’ve loved and pursued for over half of
my 22 years on earth will be illegal to do practically, safely, or efficiently. I will have to sell my boat and gear which
will be rendered worthless, and try to fit in somewhere in the world that I don’t belong. As far as vessel strikes go,
the U.S. and Canada need immediate world-class research and regulations to reach 0 vessel strike injuries/deaths.
Again utilizing both public and private, state and federal, U.S. and Canadian scientists, engineers, ocean goers, and
fishermen. This research needs to include a specific study on how the complete shutdown of cruise ships and
reduction in freight ships in 2020 positively effected the right whale population. Remembering that during this time
the U.S trap/pot fishery still deployed almost 100% of our gear. Personally, I actually doubled gear and production
from 2019 to 2020. Most vessel speed and route information can be easily tracked with AIS, so 100% enforcement
and compliance is very realistic. Frankly the fact that we don’t yet have 100% enforcement and compliance for the
current vessel speed/route rule is a failure. I see 10 knots is the number, but that is twice the speed of a right whale.
Our dynamic management areas need to be accurate, enforced, and continually updated and moved if necessary to
provide the best whale protections possible. Ship noise interferes with right whale communication. I truly care
deeply about the whales , all sea life, our way of life, and coastal communities, I hope and pray everyone else
involved in this process does too. If there is any way I can be of help in making things work for everyone, please
don’t hesitate to contact me.

Form Letter ZV
Total matches 70-100%: 3
The North Atlantic right whale is critically endangered and needs immediate help to recover. It is NOAA Fisheries
legal responsibility under the Endangered Species Act and the Marine Mammal Protection Act to protect this species
from injury and death in U.S. waters. The greatest threat to right whales in U.S. waters is entanglement in
commercial fishing gear. NOAA Fisheries estimates that entanglement risk from lobster and crab fisheries needs to
be reduced by 60% to 80%. The calculations in the Draft Environmental Impact Statement showing how NOAA
Fisheries proposes to achieve that risk reduction rely on an old stock assessment using 2016 population estimates,
whereas the most recent population estimates indicate that the North Atlantic right whale has further declined to
about 366 animals. So there is no question that a risk reduction target of at least 80%which accounts for unseen
whale mortalitiesis required. The alternative measures that NOAA Fisheries released would achieve only 60-69%
risk reduction. Further, these risk reduction measures rely on an ineffective gear modification called weak rope that
has not proved to reduce serious injury and death in whales. It is not worth the economic burden on the industry to
change to this rope if there is no proven conservation benefit. In addition, the closures outlined in the proposed rule
are too small and too short in duration. Specifically, the closure south of Nantucket and Marthas Vineyard should be
year-round, because right whales have been present nearly every month of the year in that area for the past several

1015

years. NOAA Fisheries proposed rule simply does not do enough to save the right whale from extinction.
OVERWHELMINGLY, the American people want to PROTECT THE ENVIRONMENT and PROTECT
ENDANGERED SPECIES such as the right whale. I IMPLORE YOU TO TAKE IMMEDIATE STRONG
ACTIONS to protect the right whale. NOAA Fisheries must take IMMEDIATE EMERGENCY ACTION to
PERMANENTLY CLOSE the areas south of Marthas Vineyard and Nantucket and in three areas in the Gulf of
Maine. Fisheries for lobster and Jonah crab hurt right whales with their lines, etc. NOAA Fisheries must
immediately implement closures to lobster and crab fishing with vertical buoy lines in the areas where right whales
concentrate, and help prevent the extinction of this iconic animal.

Form Letter ZW
Total matches 70-100%: 3
The North Atlantic right whale is critically endangered and needs immediate help to recover. It is NOAA Fisheries
legal responsibility under the Endangered Species Act and the Marine Mammal Protection Act to protect this species
from injury and death in U.S. waters. The greatest threat to right whales in U.S. waters is entanglement in
commercial fishing gear. North Atlantic right whales can recover if NOAA Fisheries takes swift, effective action to
protect them from the vertical buoy lines that entangle and kill them. The proposed rule must be revised, and the
final rule must meet the level of risk reduction required by the most recent scientific information. In the meantime,
NOAA Fisheries must immediately implement closures to lobster and crab fishing with vertical buoy lines in the
areas where right whales concentrate, and help prevent the extinction of this iconic animal.

Form Letter ZX
Total matches 70-100%: 3
National Oceanic and Atmospheric Administration (NOAA), The National Marine Fisheries Services proposed rule
to address North Atlantic right whale entanglements in fishing gear does not go far enough to save this species from
extinction. Only about 360 individual whales remain, which means the right whale is one of the world's most
critically endangered whales. The population has declined by 25% in only ten years. Fishing gear entanglements
have proven to be the leading cause of skyrocketing rates of right whale deaths and are also preventing them from
reproducing. National Marine Fisheries Service officials have acknowledged for years that the right whale's situation
is dire and that more needs to be done. Right whales are continuing to be harmed and killed by fishing gear
entanglements while we wait for action. In order to protect the right whales, we must expand proposed closures and
require "ropeless" fishing gear much quicker than the proposed rule outlines. The Fisheries Service has the statutory
authority to enact emergency regulations to close important right whale habitat to fishing with static vertical buoy
lines. Please use that power to save this species from extinction. Thank you for considering my perspective. Heather
Maresh Heather Maresh [email protected] 3245 Curtis St Denver, Colorado 80205

Form Letter ZY
Total matches 70-100%: 3
National Oceanic and Atmospheric Administration (NOAA), National Marine Fisheries Service officials have
acknowledged for years that the right whale's situation is dire and that more needs to be done. More right whales are
being harmed and killed by fishing gear entanglements while we wait for action. The proposed rule must do more to
protect right whales by expanding the proposed closures and fast-tracking the transition to requiring "ropeless"
fishing gear. The Fisheries Service has the statutory authority to enact emergency regulations to close important
right whale habitat to fishing with static vertical buoy lines. Please use that power to save this species from
extinction. Thank you for considering my perspective. kathy knapik [email protected] 797 Iroquois Trail
Macedonia, Ohio 44056

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Form Letter ZZ
Total matches 70-100%: 3
I support limiting the number of buoys, it would help reduce the chances of whales becoming entangled, the ocean
should not be an obstacle course for whales and other marine life to swim through.

Form Letter ZZA
Total matches 70-100%: 3
Everyone wants to save the right whales. INCLUDING the Lobster man. We have done everything possible at this
point to coexist modifying our gear, even though we are NOT the problem! All of these so called “entanglements”
have been proven they are not American lobster gear. One thing that CAN NOT happen is ROPELESS fishing!
Ropeless is not real and will not work! Ropeless technology will never be able to combat with the north Atlantic
Ocean and the elements along with impossible avoidance of gear conflict not being able to mark our gear from the
surface! We have more safe regulations now then ever INCLUDING closures when the whales are even in our
waters! The lobsterman have eliminated every factor of harming these whales possible. Ropeless needs to be
forgotten, it’s not needed with the precautions we have now taken and is a impractical fantasy that would miserably
fail and ruin the lobstering industry.

Form Letter ZZB
Total matches 70-100%: 3
I am writing to comment on the proposed modifications to the Atlantic Large Whale Take Reduction Plan as
published in the Federal Register. And to simply say that I urge you to strengthen the proposed rule changes to
ensure they are based on the best available science and technology and to accelerate the adoption of ropeless fishing
gear, a win-win solution for endangered whales, fishermen and coastal economies. Thank you.

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Appendix 7.5 Comment Submission List

Received Date
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021

Original Document ID
NOAA-NMFS-2020-0031-DRAFT-0019
NOAA-NMFS-2020-0031-DRAFT-0020
NOAA-NMFS-2020-0031-DRAFT-0021
NOAA-NMFS-2020-0031-DRAFT-0022
NOAA-NMFS-2020-0031-DRAFT-0023
NOAA-NMFS-2020-0031-DRAFT-0024
NOAA-NMFS-2020-0031-DRAFT-0025
NOAA-NMFS-2020-0031-DRAFT-0026
NOAA-NMFS-2020-0031-DRAFT-0027
NOAA-NMFS-2020-0031-DRAFT-0028
NOAA-NMFS-2020-0031-DRAFT-0029
NOAA-NMFS-2020-0031-DRAFT-0030
NOAA-NMFS-2020-0031-DRAFT-0031
NOAA-NMFS-2020-0031-DRAFT-0032
NOAA-NMFS-2020-0031-DRAFT-0033
NOAA-NMFS-2020-0031-DRAFT-0034
NOAA-NMFS-2020-0031-DRAFT-0035
NOAA-NMFS-2020-0031-DRAFT-0036
NOAA-NMFS-2020-0031-DRAFT-0037
NOAA-NMFS-2020-0031-DRAFT-0038
NOAA-NMFS-2020-0031-DRAFT-0039
NOAA-NMFS-2020-0031-DRAFT-0040
NOAA-NMFS-2020-0031-DRAFT-0041
NOAA-NMFS-2020-0031-DRAFT-0042
NOAA-NMFS-2020-0031-DRAFT-0043
NOAA-NMFS-2020-0031-DRAFT-0044
NOAA-NMFS-2020-0031-DRAFT-0045
NOAA-NMFS-2020-0031-DRAFT-0046
NOAA-NMFS-2020-0031-DRAFT-0047
NOAA-NMFS-2020-0031-DRAFT-0048
NOAA-NMFS-2020-0031-DRAFT-0049
NOAA-NMFS-2020-0031-DRAFT-0050
NOAA-NMFS-2020-0031-DRAFT-0051
NOAA-NMFS-2020-0031-DRAFT-0052
NOAA-NMFS-2020-0031-DRAFT-0053
NOAA-NMFS-2020-0031-DRAFT-0054
NOAA-NMFS-2020-0031-DRAFT-0055
NOAA-NMFS-2020-0031-DRAFT-0056
NOAA-NMFS-2020-0031-DRAFT-0057
NOAA-NMFS-2020-0031-DRAFT-0058

Title
Comment from Lee Winslow
Comment from Jana Doak
Comment from Carole Arbour
Comment from Jean Hanson
Comment from Patrick Hartnett
Comment from Sharon Morrison
Comment from Karen Sinclair
Comment from Lisa Krieger
Comment from Diane Watson
Comment from Lillian Nordin
Comment from Riley Canada
Comment from Laurel Gress
Comment from Carolyn O'Shea
Comment from Christy Spear
Comment from Fiona Nolan
Comment from Karyn Morales
Comment from Lillyam Barberi
Comment from Franceline Malone
Comment from Tracy Butler-Oberste
Comment from Michael Utley
Comment from Galina Krichmar
Comment from Christen King
Comment from Simone Sello
Comment from Christine Sell
Comment from Deborah Perrero
Comment from Bob Gaskins
Comment from Diane Kraft
Comment from Mason GRIFFITH
Comment from B. Lemonik
Comment from Elizabeth Jackson
Comment from Lindsay Haukebo
Comment from Bob Davis
Comment from Lorraine Martinez
Comment from Jay Levine
Comment from Stephen Courim
Comment from Cindy Blue
Comment from Laurie Toner
Comment from David Lavender
Comment from Eleanor Weisman
Comment from WIlliam Drake

Received Date
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
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01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021

Original Document ID
NOAA-NMFS-2020-0031-DRAFT-5022
NOAA-NMFS-2020-0031-DRAFT-5023
NOAA-NMFS-2020-0031-DRAFT-5024
NOAA-NMFS-2020-0031-DRAFT-5025
NOAA-NMFS-2020-0031-DRAFT-5026
NOAA-NMFS-2020-0031-DRAFT-5027
NOAA-NMFS-2020-0031-DRAFT-5028
NOAA-NMFS-2020-0031-DRAFT-5029
NOAA-NMFS-2020-0031-DRAFT-5030
NOAA-NMFS-2020-0031-DRAFT-5031
NOAA-NMFS-2020-0031-DRAFT-5032
NOAA-NMFS-2020-0031-DRAFT-5033
NOAA-NMFS-2020-0031-DRAFT-5034
NOAA-NMFS-2020-0031-DRAFT-5035
NOAA-NMFS-2020-0031-DRAFT-5036
NOAA-NMFS-2020-0031-DRAFT-5037
NOAA-NMFS-2020-0031-DRAFT-5038
NOAA-NMFS-2020-0031-DRAFT-5039
NOAA-NMFS-2020-0031-DRAFT-5040
NOAA-NMFS-2020-0031-DRAFT-5041
NOAA-NMFS-2020-0031-DRAFT-5042
NOAA-NMFS-2020-0031-DRAFT-5043
NOAA-NMFS-2020-0031-DRAFT-5044
NOAA-NMFS-2020-0031-DRAFT-5045
NOAA-NMFS-2020-0031-DRAFT-5046
NOAA-NMFS-2020-0031-DRAFT-5048
NOAA-NMFS-2020-0031-DRAFT-5049
NOAA-NMFS-2020-0031-DRAFT-5051
NOAA-NMFS-2020-0031-DRAFT-5052
NOAA-NMFS-2020-0031-DRAFT-5053
NOAA-NMFS-2020-0031-DRAFT-5054
NOAA-NMFS-2020-0031-DRAFT-5055
NOAA-NMFS-2020-0031-DRAFT-5056
NOAA-NMFS-2020-0031-DRAFT-5057
NOAA-NMFS-2020-0031-DRAFT-5058
NOAA-NMFS-2020-0031-DRAFT-5059
NOAA-NMFS-2020-0031-DRAFT-5060
NOAA-NMFS-2020-0031-DRAFT-5061
NOAA-NMFS-2020-0031-DRAFT-5062
NOAA-NMFS-2020-0031-DRAFT-5063

Title
Comment from Loretta Tiefen
Comment from Laren Kessler
Comment from Peggy Yeargain
Comment from Stephen Silva
Comment from Joe Cundari
Comment from Stevee Malamas
Comment from Lorna Wood
Comment from Leah Wilson
Comment from Danielle Wilson
Comment from Sasha Gibbons
Comment from Holly Zersen
Comment from Trina White
Comment from Fred Quaderer
Comment from Fred Brodsky
Comment from Kelsey McCathie
Comment from Marceline Gearry
Comment from Stephani Ellenwood
Comment from Annette bailey
Comment from Carrie Watson
Comment from Debbie Bonnet
Comment from Erica Stanojevic
Comment from Michelle Barbour
Comment from ALEXANDRA DiGiacomo
Comment from Nancy Bland
Comment from Matthew Cloner
Comment from Susan Severino
Comment from Stephen Badger
Comment from Caleb Pollack
Comment from Linda Savage
Comment from Michael Martin
Comment from Kathy Gruber
Comment from Teresa Iovino
Comment from jean pulee
Comment from Cheryl Fergeson
Comment from Nancy Rittenhouse
Comment from JACKIE EDMONDSON
Comment from Kelly Henderson
Comment from J N
Comment from Theodora Boura
Comment from Denee Scribner

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0059
NOAA-NMFS-2020-0031-DRAFT-0060
NOAA-NMFS-2020-0031-DRAFT-0061
NOAA-NMFS-2020-0031-DRAFT-0062
NOAA-NMFS-2020-0031-DRAFT-0063
NOAA-NMFS-2020-0031-DRAFT-0064
NOAA-NMFS-2020-0031-DRAFT-0065
NOAA-NMFS-2020-0031-DRAFT-0066
NOAA-NMFS-2020-0031-DRAFT-0067
NOAA-NMFS-2020-0031-DRAFT-0068
NOAA-NMFS-2020-0031-DRAFT-0069
NOAA-NMFS-2020-0031-DRAFT-0070
NOAA-NMFS-2020-0031-DRAFT-0071
NOAA-NMFS-2020-0031-DRAFT-0072
NOAA-NMFS-2020-0031-DRAFT-0073
NOAA-NMFS-2020-0031-DRAFT-0074
NOAA-NMFS-2020-0031-DRAFT-0075
NOAA-NMFS-2020-0031-DRAFT-0076
NOAA-NMFS-2020-0031-DRAFT-0077
NOAA-NMFS-2020-0031-DRAFT-0078
NOAA-NMFS-2020-0031-DRAFT-0079
NOAA-NMFS-2020-0031-DRAFT-0080
NOAA-NMFS-2020-0031-DRAFT-0081
NOAA-NMFS-2020-0031-DRAFT-0082
NOAA-NMFS-2020-0031-DRAFT-0083
NOAA-NMFS-2020-0031-DRAFT-0084
NOAA-NMFS-2020-0031-DRAFT-0085
NOAA-NMFS-2020-0031-DRAFT-0086
NOAA-NMFS-2020-0031-DRAFT-0087
NOAA-NMFS-2020-0031-DRAFT-0088
NOAA-NMFS-2020-0031-DRAFT-0089
NOAA-NMFS-2020-0031-DRAFT-0090
NOAA-NMFS-2020-0031-DRAFT-0091
NOAA-NMFS-2020-0031-DRAFT-0092
NOAA-NMFS-2020-0031-DRAFT-0093
NOAA-NMFS-2020-0031-DRAFT-0094
NOAA-NMFS-2020-0031-DRAFT-0095
NOAA-NMFS-2020-0031-DRAFT-0096
NOAA-NMFS-2020-0031-DRAFT-0097
NOAA-NMFS-2020-0031-DRAFT-0098
NOAA-NMFS-2020-0031-DRAFT-0099

Comment from Mary Curro
Comment from terr badger
Comment from Janet Hofmann
Comment from Lisa Goldman
Comment from Maryann Kauffman
Comment from Lisa bass
Comment from Scott Messick
Comment from Donna Ingenito
Comment from N Coyle
Comment from Lisa Jefko
Comment from Ann Thryft
Comment from Kathryn Johanessen
Comment from Charlotte Smith
Comment from Paul Breeden
Comment from Ann Luft
Comment from John McMillan
Comment from brenda evans
Comment from Sheila Enright
Comment from Blair MIller
Comment from Vivian Newman
Comment from Bonnie Zotos
Comment from Aimee LaLonde-Norman
Comment from Hilma Crowfoot
Comment from Leo Shapiro
Comment from Susan McRae
Comment from Lisa Dian
Comment from Kristine Winnicki
Comment from Ronald Sverdlove
Comment from Angelika Altum
Comment from Shana Gerwens
Comment from Kathy Franz
Comment from Copley Smoak
Comment from Jerry Lee
Comment from DONALD PREISTER
Comment from Connor Hansell
Comment from Jan Leath
Comment from Kathleen Medina
Comment from Jeanette McDonald
Comment from Jed Aicher
Comment from Sofia Gutierrez
Comment from Paula ihne

01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
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01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021

NOAA-NMFS-2020-0031-DRAFT-5064
NOAA-NMFS-2020-0031-DRAFT-5065
NOAA-NMFS-2020-0031-DRAFT-5066
NOAA-NMFS-2020-0031-DRAFT-5067
NOAA-NMFS-2020-0031-DRAFT-5068
NOAA-NMFS-2020-0031-DRAFT-5069
NOAA-NMFS-2020-0031-DRAFT-5070
NOAA-NMFS-2020-0031-DRAFT-5071
NOAA-NMFS-2020-0031-DRAFT-5072
NOAA-NMFS-2020-0031-DRAFT-5073
NOAA-NMFS-2020-0031-DRAFT-5074
NOAA-NMFS-2020-0031-DRAFT-5075
NOAA-NMFS-2020-0031-DRAFT-5076
NOAA-NMFS-2020-0031-DRAFT-5077
NOAA-NMFS-2020-0031-DRAFT-5078
NOAA-NMFS-2020-0031-DRAFT-5079
NOAA-NMFS-2020-0031-DRAFT-5080
NOAA-NMFS-2020-0031-DRAFT-5081
NOAA-NMFS-2020-0031-DRAFT-5082
NOAA-NMFS-2020-0031-DRAFT-5083
NOAA-NMFS-2020-0031-DRAFT-5084
NOAA-NMFS-2020-0031-DRAFT-5085
NOAA-NMFS-2020-0031-DRAFT-5086
NOAA-NMFS-2020-0031-DRAFT-5087
NOAA-NMFS-2020-0031-DRAFT-5088
NOAA-NMFS-2020-0031-DRAFT-5089
NOAA-NMFS-2020-0031-DRAFT-5090
NOAA-NMFS-2020-0031-DRAFT-5091
NOAA-NMFS-2020-0031-DRAFT-5092
NOAA-NMFS-2020-0031-DRAFT-5093
NOAA-NMFS-2020-0031-DRAFT-5094
NOAA-NMFS-2020-0031-DRAFT-5095
NOAA-NMFS-2020-0031-DRAFT-5096
NOAA-NMFS-2020-0031-DRAFT-5097
NOAA-NMFS-2020-0031-DRAFT-5098
NOAA-NMFS-2020-0031-DRAFT-5099
NOAA-NMFS-2020-0031-DRAFT-5100
NOAA-NMFS-2020-0031-DRAFT-5101
NOAA-NMFS-2020-0031-DRAFT-5102
NOAA-NMFS-2020-0031-DRAFT-5103
NOAA-NMFS-2020-0031-DRAFT-5104

Comment from Janice Hughes
Comment from jan scott
Comment from F Bean
Comment from Kimberly Seater
Comment from A. Todd
Comment from Craig Zimmerman
Comment from Nancy McLean
Comment from Alan Mickey
Comment from Elizabeth Grainger
Comment from Patricia Ferguson
Comment from Nagisa VanVliet
Comment from Katherine Ransier
Comment from Michael Newport
Comment from Kathy Moseley
Comment from Tim Moore
Comment from Dyan Draper
Comment from Sarah Ksiazek
Comment from Danielle Stanley
Comment from Sherry Elliott
Comment from Betty Ramsey
Comment from Sheila Stevens
Comment from Tanya Baccarat
Comment from Jessica Grubbs
Comment from Joline Barth
Comment from Claire Jackson
Comment from jean appleton
Comment from Sue Simmons
Comment from Heidi Shorey
Comment from Patrick McLaughlin
Comment from gaby morales
Comment from Don Faia
Comment from Tom Sunlake
Comment from Patty Buttliere
Comment from Eleanor Lesh
Comment from Steph Vesey
Comment from Shanna Brandow
Comment from Elisabeth Price
Comment from Phyllis Chavez
Comment from Josh Heffron
Comment from Josh Heffron
Comment from Josh Heffron

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0100
NOAA-NMFS-2020-0031-DRAFT-0101
NOAA-NMFS-2020-0031-DRAFT-0102
NOAA-NMFS-2020-0031-DRAFT-0103
NOAA-NMFS-2020-0031-DRAFT-0104
NOAA-NMFS-2020-0031-DRAFT-0105
NOAA-NMFS-2020-0031-DRAFT-0106
NOAA-NMFS-2020-0031-DRAFT-0107
NOAA-NMFS-2020-0031-DRAFT-0108
NOAA-NMFS-2020-0031-DRAFT-0109
NOAA-NMFS-2020-0031-DRAFT-0110
NOAA-NMFS-2020-0031-DRAFT-0111
NOAA-NMFS-2020-0031-DRAFT-0112
NOAA-NMFS-2020-0031-DRAFT-0113
NOAA-NMFS-2020-0031-DRAFT-0114
NOAA-NMFS-2020-0031-DRAFT-0115
NOAA-NMFS-2020-0031-DRAFT-0116
NOAA-NMFS-2020-0031-DRAFT-0117
NOAA-NMFS-2020-0031-DRAFT-0118
NOAA-NMFS-2020-0031-DRAFT-0119
NOAA-NMFS-2020-0031-DRAFT-0120
NOAA-NMFS-2020-0031-DRAFT-0121
NOAA-NMFS-2020-0031-DRAFT-0122
NOAA-NMFS-2020-0031-DRAFT-0123
NOAA-NMFS-2020-0031-DRAFT-0124
NOAA-NMFS-2020-0031-DRAFT-0125
NOAA-NMFS-2020-0031-DRAFT-0126
NOAA-NMFS-2020-0031-DRAFT-0127
NOAA-NMFS-2020-0031-DRAFT-0128
NOAA-NMFS-2020-0031-DRAFT-0129
NOAA-NMFS-2020-0031-DRAFT-0130
NOAA-NMFS-2020-0031-DRAFT-0131
NOAA-NMFS-2020-0031-DRAFT-0132
NOAA-NMFS-2020-0031-DRAFT-0133
NOAA-NMFS-2020-0031-DRAFT-0134
NOAA-NMFS-2020-0031-DRAFT-0135
NOAA-NMFS-2020-0031-DRAFT-0136
NOAA-NMFS-2020-0031-DRAFT-0137
NOAA-NMFS-2020-0031-DRAFT-0138
NOAA-NMFS-2020-0031-DRAFT-0139
NOAA-NMFS-2020-0031-DRAFT-0140

Comment from Macaire Grambauer
Comment from Gretchen Roberts
Comment from Alice Moore
Comment from Sharon Latta
Comment from Peter Sigmann
Comment from Gary Dunn
Comment from Robert Moscato
Comment from Ken Bowman
Comment from Thomas Oglin
Comment from Michael Bankston
Comment from John Cecil
Comment from Jerry Cleveland
Comment from Desiree Nagyfy
Comment from Doherty Joanne
Comment from Clifford Phillips
Comment from Susan P.
Comment from Jane Broendel
Comment from Marla Bottesch
Comment from Valrie Horne
Comment from mardy weinstein
Comment from Michael Klausing
Comment from Sandra Middour
Comment from Bianca Molgora
Comment from Kathy Keating
Comment from Dixie Mullineaux
Comment from Barry Goldfarb
Comment from Janis Todd
Comment from Elaine Eudy
Comment from Naomi Zurcher
Comment from Meryl Alexander
Comment from Diane Kuc
Comment from James Helmers
Comment from Ellis Woodward
Comment from Mary Baker
Comment from Jaimee Stransky
Comment from Robert Hillenbrand
Comment from Carol Storthz
Comment from Carol Shelton
Comment from Michele Ochsner
Comment from Maureen Gwynn
Comment from Barry Grimecy

01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/19/2021
01/19/2021
01/19/2021
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01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021

NOAA-NMFS-2020-0031-DRAFT-5105
NOAA-NMFS-2020-0031-DRAFT-5106
NOAA-NMFS-2020-0031-DRAFT-5107
NOAA-NMFS-2020-0031-DRAFT-5108
NOAA-NMFS-2020-0031-DRAFT-5109
NOAA-NMFS-2020-0031-DRAFT-5110
NOAA-NMFS-2020-0031-DRAFT-5111
NOAA-NMFS-2020-0031-DRAFT-5112
NOAA-NMFS-2020-0031-DRAFT-5113
NOAA-NMFS-2020-0031-DRAFT-5114
NOAA-NMFS-2020-0031-DRAFT-5115
NOAA-NMFS-2020-0031-DRAFT-5116
NOAA-NMFS-2020-0031-DRAFT-5117
NOAA-NMFS-2020-0031-DRAFT-5118
NOAA-NMFS-2020-0031-DRAFT-5119
NOAA-NMFS-2020-0031-DRAFT-5120
NOAA-NMFS-2020-0031-DRAFT-5121
NOAA-NMFS-2020-0031-DRAFT-5122
NOAA-NMFS-2020-0031-DRAFT-5123
NOAA-NMFS-2020-0031-DRAFT-5124
NOAA-NMFS-2020-0031-DRAFT-5125
NOAA-NMFS-2020-0031-DRAFT-5126
NOAA-NMFS-2020-0031-DRAFT-5127
NOAA-NMFS-2020-0031-DRAFT-5128
NOAA-NMFS-2020-0031-DRAFT-5129
NOAA-NMFS-2020-0031-DRAFT-5130
NOAA-NMFS-2020-0031-DRAFT-5131
NOAA-NMFS-2020-0031-DRAFT-5135
NOAA-NMFS-2020-0031-DRAFT-5137
NOAA-NMFS-2020-0031-DRAFT-5138
NOAA-NMFS-2020-0031-DRAFT-5139
NOAA-NMFS-2020-0031-DRAFT-5140
NOAA-NMFS-2020-0031-DRAFT-5141
NOAA-NMFS-2020-0031-DRAFT-5142
NOAA-NMFS-2020-0031-DRAFT-5143
NOAA-NMFS-2020-0031-DRAFT-5144
NOAA-NMFS-2020-0031-DRAFT-5145
NOAA-NMFS-2020-0031-DRAFT-5146
NOAA-NMFS-2020-0031-DRAFT-5147
NOAA-NMFS-2020-0031-DRAFT-5148
NOAA-NMFS-2020-0031-DRAFT-5149

Comment from Josh Heffron
Comment from Josh Heffron
Comment from Kate Gualtieri
Comment from Donna McGhee
Comment from Cynthia Brooks-Fetty
Comment from Janine Vinton
Comment from Marilyn Garrett
Comment from Marilyn Garrett
Comment from Eva Papoutsi
Comment from Robyn Lauren
Comment from Donald Evans
Comment from Patrice Wallace
Comment from Amanda Yoder
Comment from Sandra Hoover
Comment from Renae McKeon
Comment from Roberta Swanson
Comment from Carol Downey
Comment from t mullarkey
Comment from Doug Sleight
Comment from Carol Voeller
Comment from Patricia Duran
Comment from Barbara Peterson
Comment from Tom Rolofson
Comment from Jean Ross
Comment from David White
Comment from Paula Eppler
Comment from Tina King
Comment from Alexis Khalil
Comment from Eileen McCloskey
Comment from Keyla Cruz
Comment from Kata Heffron
Comment from Shelby McIntosh
Comment from Ben Wishnie-Edwards
Comment from Maddie Lynch
Comment from Nick Marshall
Comment from Alanna Kelly
Comment from Barb Kruse
Comment from Denise Griffin
Comment from Yvette fernandez
Comment from Kimberly Phillips
Comment from Melissa Evask

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0141
NOAA-NMFS-2020-0031-DRAFT-0142
NOAA-NMFS-2020-0031-DRAFT-0143
NOAA-NMFS-2020-0031-DRAFT-0144
NOAA-NMFS-2020-0031-DRAFT-0145
NOAA-NMFS-2020-0031-DRAFT-0146
NOAA-NMFS-2020-0031-DRAFT-0147
NOAA-NMFS-2020-0031-DRAFT-0148
NOAA-NMFS-2020-0031-DRAFT-0149
NOAA-NMFS-2020-0031-DRAFT-0150
NOAA-NMFS-2020-0031-DRAFT-0151
NOAA-NMFS-2020-0031-DRAFT-0152
NOAA-NMFS-2020-0031-DRAFT-0153
NOAA-NMFS-2020-0031-DRAFT-0154
NOAA-NMFS-2020-0031-DRAFT-0155
NOAA-NMFS-2020-0031-DRAFT-0156
NOAA-NMFS-2020-0031-DRAFT-0157
NOAA-NMFS-2020-0031-DRAFT-0158
NOAA-NMFS-2020-0031-DRAFT-0159
NOAA-NMFS-2020-0031-DRAFT-0160
NOAA-NMFS-2020-0031-DRAFT-0161
NOAA-NMFS-2020-0031-DRAFT-0162
NOAA-NMFS-2020-0031-DRAFT-0163
NOAA-NMFS-2020-0031-DRAFT-0164
NOAA-NMFS-2020-0031-DRAFT-0165
NOAA-NMFS-2020-0031-DRAFT-0166
NOAA-NMFS-2020-0031-DRAFT-0167
NOAA-NMFS-2020-0031-DRAFT-0168
NOAA-NMFS-2020-0031-DRAFT-0169
NOAA-NMFS-2020-0031-DRAFT-0170
NOAA-NMFS-2020-0031-DRAFT-0171
NOAA-NMFS-2020-0031-DRAFT-0172
NOAA-NMFS-2020-0031-DRAFT-0173
NOAA-NMFS-2020-0031-DRAFT-0174
NOAA-NMFS-2020-0031-DRAFT-0175
NOAA-NMFS-2020-0031-DRAFT-0176
NOAA-NMFS-2020-0031-DRAFT-0177
NOAA-NMFS-2020-0031-DRAFT-0178
NOAA-NMFS-2020-0031-DRAFT-0179
NOAA-NMFS-2020-0031-DRAFT-0180
NOAA-NMFS-2020-0031-DRAFT-0181

Comment from Sherri CONSTABLE
Comment from Deborah Crosset
Comment from Jaimee Stransky
Comment from WENDY FOSSA
Comment from Karen Stimson
Comment from Katherine Hutchins
Comment from Charles Hensel
Comment from Theresa Waldspurger
Comment from Laurie Thompson
Comment from David Friend
Comment from Brenda Nieland
Comment from Peter Gradoni
Comment from Nicky Edelman
Comment from David Clapper
Comment from Barbara OConnor
Comment from Karen Lavee-Myers
Comment from Dawn Franklin
Comment from Thomas Artin
Comment from Denise Rossi
Comment from Sue Rosenbach
Comment from Karen Wolf
Comment from Deborah Pfeiffer-Traum
Comment from Kimberly Derwent
Comment from peter travers
Comment from Charles Favorite
Comment from Nancy Juskowich
Comment from janet maker
Comment from John Green
Comment from Manda Mckay
Comment from Katherine Hoak
Comment from Eva Havas
Comment from Cathy Barton
Comment from Jonathan Rettmann
Comment from Janet Glaspie
Comment from Sandra Varvel
Comment from Mona Spangler
Comment from Vincent Da Forno
Comment from Tracy Snell
Comment from Bennie Scott
Comment from Gary Miller
Comment from Pamela Kane

01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
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01/20/2021
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01/21/2021
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01/21/2021
01/21/2021
01/21/2021
01/21/2021
01/21/2021
01/21/2021
01/21/2021
01/21/2021

NOAA-NMFS-2020-0031-DRAFT-5150
NOAA-NMFS-2020-0031-DRAFT-5151
NOAA-NMFS-2020-0031-DRAFT-5152
NOAA-NMFS-2020-0031-DRAFT-5153
NOAA-NMFS-2020-0031-DRAFT-5154
NOAA-NMFS-2020-0031-DRAFT-5155
NOAA-NMFS-2020-0031-DRAFT-5156
NOAA-NMFS-2020-0031-DRAFT-5158
NOAA-NMFS-2020-0031-DRAFT-5159
NOAA-NMFS-2020-0031-DRAFT-5161
NOAA-NMFS-2020-0031-DRAFT-5162
NOAA-NMFS-2020-0031-DRAFT-5163
NOAA-NMFS-2020-0031-DRAFT-5164
NOAA-NMFS-2020-0031-DRAFT-5166
NOAA-NMFS-2020-0031-DRAFT-5167
NOAA-NMFS-2020-0031-DRAFT-5168
NOAA-NMFS-2020-0031-DRAFT-5170
NOAA-NMFS-2020-0031-DRAFT-5171
NOAA-NMFS-2020-0031-DRAFT-5173
NOAA-NMFS-2020-0031-DRAFT-5174
NOAA-NMFS-2020-0031-DRAFT-5177
NOAA-NMFS-2020-0031-DRAFT-5179
NOAA-NMFS-2020-0031-DRAFT-5180
NOAA-NMFS-2020-0031-DRAFT-5181
NOAA-NMFS-2020-0031-DRAFT-5183
NOAA-NMFS-2020-0031-DRAFT-5184
NOAA-NMFS-2020-0031-DRAFT-5185
NOAA-NMFS-2020-0031-DRAFT-5186
NOAA-NMFS-2020-0031-DRAFT-5187
NOAA-NMFS-2020-0031-DRAFT-5188
NOAA-NMFS-2020-0031-DRAFT-5189
NOAA-NMFS-2020-0031-DRAFT-5190
NOAA-NMFS-2020-0031-DRAFT-5191
NOAA-NMFS-2020-0031-DRAFT-5192
NOAA-NMFS-2020-0031-DRAFT-5193
NOAA-NMFS-2020-0031-DRAFT-5197
NOAA-NMFS-2020-0031-DRAFT-5199
NOAA-NMFS-2020-0031-DRAFT-5200
NOAA-NMFS-2020-0031-DRAFT-5201
NOAA-NMFS-2020-0031-DRAFT-5202
NOAA-NMFS-2020-0031-DRAFT-5204

Comment from Deborah Lipman
Comment from Kathy Hunter
Comment from Don Wattenbarger
Comment from Kelly Luna
Comment from Mary Ovecoglu
Comment from jackie demarais
Comment from Anne Girard
Comment from Ally Jones
Comment from Haley Hughes
Comment from Gary Brooker
Comment from Nikki Doyle
Comment from Teresa McCartney
Comment from Gabriella Frey
Comment from Susan Diaz
Comment from Pat Lawson
Comment from Vicki Matheny
Comment from Maryn Jones
Comment from Leo Lieber
Comment from Greg Zupansic
Comment from Beverly Conroy
Comment from Mary Smith
Comment from Dawn Cumings
Comment from sandra Rakestraw
Comment from Holly Hope
Comment from Ed Atkins
Comment from Patty Teubner
Comment from Stephanie Garofalo
Comment from Dawn Dowdy
Comment from Lynette Rynders
Comment from Sheila Cowden
Comment from Ellen Desruisseaux
Comment from William Schoene
Comment from Patricia Morris
Comment from Karen Duda
Comment from Jennifer Books
Comment from Jackson Oberlink
Comment from Haley Clinton
Comment from Susan Mathison
Comment from Nicole Gallo
Comment from lingjie zhou
Comment from Lauren Kofsky

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NOAA-NMFS-2020-0031-DRAFT-0182
NOAA-NMFS-2020-0031-DRAFT-0183
NOAA-NMFS-2020-0031-DRAFT-0184
NOAA-NMFS-2020-0031-DRAFT-0185
NOAA-NMFS-2020-0031-DRAFT-0186
NOAA-NMFS-2020-0031-DRAFT-0187
NOAA-NMFS-2020-0031-DRAFT-0188
NOAA-NMFS-2020-0031-DRAFT-0189
NOAA-NMFS-2020-0031-DRAFT-0190
NOAA-NMFS-2020-0031-DRAFT-0191
NOAA-NMFS-2020-0031-DRAFT-0192
NOAA-NMFS-2020-0031-DRAFT-0193
NOAA-NMFS-2020-0031-DRAFT-0194
NOAA-NMFS-2020-0031-DRAFT-0195
NOAA-NMFS-2020-0031-DRAFT-0196
NOAA-NMFS-2020-0031-DRAFT-0197
NOAA-NMFS-2020-0031-DRAFT-0198
NOAA-NMFS-2020-0031-DRAFT-0199
NOAA-NMFS-2020-0031-DRAFT-0200
NOAA-NMFS-2020-0031-DRAFT-0201
NOAA-NMFS-2020-0031-DRAFT-0202
NOAA-NMFS-2020-0031-DRAFT-0203
NOAA-NMFS-2020-0031-DRAFT-0204
NOAA-NMFS-2020-0031-DRAFT-0205
NOAA-NMFS-2020-0031-DRAFT-0206
NOAA-NMFS-2020-0031-DRAFT-0207
NOAA-NMFS-2020-0031-DRAFT-0208
NOAA-NMFS-2020-0031-DRAFT-0209
NOAA-NMFS-2020-0031-DRAFT-0210
NOAA-NMFS-2020-0031-DRAFT-0211
NOAA-NMFS-2020-0031-DRAFT-0212
NOAA-NMFS-2020-0031-DRAFT-0213
NOAA-NMFS-2020-0031-DRAFT-0214
NOAA-NMFS-2020-0031-DRAFT-0215
NOAA-NMFS-2020-0031-DRAFT-0216
NOAA-NMFS-2020-0031-DRAFT-0217
NOAA-NMFS-2020-0031-DRAFT-0218
NOAA-NMFS-2020-0031-DRAFT-0219
NOAA-NMFS-2020-0031-DRAFT-0220
NOAA-NMFS-2020-0031-DRAFT-0221
NOAA-NMFS-2020-0031-DRAFT-0222

Comment from David Cleveland
Comment from Denise Day
Comment from Blaine Converse
Comment from Gary Barton
Comment from Robert Carr
Comment from Eric Ross
Comment from Cynthia Opderbeck
Comment from Janice Thompson
Comment from Ivalee Wilson
Comment from Cori Ellison
Comment from Martin Judd
Comment from rob fursich
Comment from Matthew Herrin
Comment from Leigh Begalske
Comment from Melissa Heithaus
Comment from Carlos Mata
Comment from Lauren Tartaglia
Comment from Jeffrey LaGasse
Comment from Jake Shirmer
Comment from Becky Keenan
Comment from Ruth Craig
Comment from Amy Armstrong
Comment from Deanna Homer
Comment from Caroline Richardson
Comment from JAN DALLESSANDRO
Comment from Lisa Stimpson
Comment from Nancy Kilgore
Comment from chrisine harker
Comment from Joyce Schwartz
Comment from Janice Le Blanc
Comment from Johnny Hall
Comment from John Chase
Comment from Gene DeJoannis
Comment from Cathy Becker
Comment from Jennifer Waldo
Comment from Jane Schnee
Comment from Robert Findlay
Comment from Bechi Currier
Comment from Janet Lindsey-Hays
Comment from Shelley Vereen
Comment from P Pak

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01/22/2021

NOAA-NMFS-2020-0031-DRAFT-5206
NOAA-NMFS-2020-0031-DRAFT-5207
NOAA-NMFS-2020-0031-DRAFT-5208
NOAA-NMFS-2020-0031-DRAFT-5209
NOAA-NMFS-2020-0031-DRAFT-5210
NOAA-NMFS-2020-0031-DRAFT-5211
NOAA-NMFS-2020-0031-DRAFT-5212
NOAA-NMFS-2020-0031-DRAFT-5213
NOAA-NMFS-2020-0031-DRAFT-5214
NOAA-NMFS-2020-0031-DRAFT-5215
NOAA-NMFS-2020-0031-DRAFT-5216
NOAA-NMFS-2020-0031-DRAFT-5217
NOAA-NMFS-2020-0031-DRAFT-5218
NOAA-NMFS-2020-0031-DRAFT-5219
NOAA-NMFS-2020-0031-DRAFT-5220
NOAA-NMFS-2020-0031-DRAFT-5221
NOAA-NMFS-2020-0031-DRAFT-5222
NOAA-NMFS-2020-0031-DRAFT-5223
NOAA-NMFS-2020-0031-DRAFT-5224
NOAA-NMFS-2020-0031-DRAFT-5225
NOAA-NMFS-2020-0031-DRAFT-5226
NOAA-NMFS-2020-0031-DRAFT-5227
NOAA-NMFS-2020-0031-DRAFT-5228
NOAA-NMFS-2020-0031-DRAFT-5229
NOAA-NMFS-2020-0031-DRAFT-5230
NOAA-NMFS-2020-0031-DRAFT-5231
NOAA-NMFS-2020-0031-DRAFT-5232
NOAA-NMFS-2020-0031-DRAFT-5233
NOAA-NMFS-2020-0031-DRAFT-5234
NOAA-NMFS-2020-0031-DRAFT-5235
NOAA-NMFS-2020-0031-DRAFT-5236
NOAA-NMFS-2020-0031-DRAFT-5237
NOAA-NMFS-2020-0031-DRAFT-5238
NOAA-NMFS-2020-0031-DRAFT-5239
NOAA-NMFS-2020-0031-DRAFT-5240
NOAA-NMFS-2020-0031-DRAFT-5241
NOAA-NMFS-2020-0031-DRAFT-5242
NOAA-NMFS-2020-0031-DRAFT-5243
NOAA-NMFS-2020-0031-DRAFT-5244
NOAA-NMFS-2020-0031-DRAFT-5245
NOAA-NMFS-2020-0031-DRAFT-5246

Comment from Caro Fett
Comment from Mark Whitlock
Comment from Jennifer Mechling
Comment from Astra Kalodukas
Comment from Barbara Bryan
Comment from Barrie Conger
Comment from Joseph Hill
Comment from Karen Shapiro
Comment from Paul Chidester
Comment from Bryan Brooks
Comment from Holly Binns
Comment from Michaela Davis
Comment from RHODA STAFF
Comment from David Paquette
Comment from Vicki Smith
Comment from Traci Hamilton
Comment from Christine B.
Comment from Flora Cagno
Comment from Elinor Dankner
Comment from Kathi Proper
Comment from Melissa Prescott
Comment from Lisa Dean
Comment from Lynn Young
Comment from Olga Gonzalez
Comment from Jane Gerardi
Comment from Michael Ewanus
Comment from Carol glazet
Comment from Kirk Litkowiec
Comment from Beverly Eadie
Comment from Jenifer Johnson
Comment from Andy Lynn
Comment from Thomas Sanders
Comment from Emily English
Comment from Stephan Sacco
Comment from Lisa Stone-Mutti
Comment from Arnette Sherman
Comment from Nancy Murrah
Comment from John Silvia
Comment from Carole Albertson
Comment from Susan LoFurno
Comment from Freddy Hernandez

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01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0223
NOAA-NMFS-2020-0031-DRAFT-0224
NOAA-NMFS-2020-0031-DRAFT-0225
NOAA-NMFS-2020-0031-DRAFT-0226
NOAA-NMFS-2020-0031-DRAFT-0227
NOAA-NMFS-2020-0031-DRAFT-0228
NOAA-NMFS-2020-0031-DRAFT-0229
NOAA-NMFS-2020-0031-DRAFT-0230
NOAA-NMFS-2020-0031-DRAFT-0231
NOAA-NMFS-2020-0031-DRAFT-0232
NOAA-NMFS-2020-0031-DRAFT-0233
NOAA-NMFS-2020-0031-DRAFT-0234
NOAA-NMFS-2020-0031-DRAFT-0235
NOAA-NMFS-2020-0031-DRAFT-0236
NOAA-NMFS-2020-0031-DRAFT-0237
NOAA-NMFS-2020-0031-DRAFT-0238
NOAA-NMFS-2020-0031-DRAFT-0239
NOAA-NMFS-2020-0031-DRAFT-0240
NOAA-NMFS-2020-0031-DRAFT-0241
NOAA-NMFS-2020-0031-DRAFT-0242
NOAA-NMFS-2020-0031-DRAFT-0243
NOAA-NMFS-2020-0031-DRAFT-0244
NOAA-NMFS-2020-0031-DRAFT-0245
NOAA-NMFS-2020-0031-DRAFT-0246
NOAA-NMFS-2020-0031-DRAFT-0247
NOAA-NMFS-2020-0031-DRAFT-0248
NOAA-NMFS-2020-0031-DRAFT-0249
NOAA-NMFS-2020-0031-DRAFT-0250
NOAA-NMFS-2020-0031-DRAFT-0251
NOAA-NMFS-2020-0031-DRAFT-0252
NOAA-NMFS-2020-0031-DRAFT-0253
NOAA-NMFS-2020-0031-DRAFT-0254
NOAA-NMFS-2020-0031-DRAFT-0255
NOAA-NMFS-2020-0031-DRAFT-0256
NOAA-NMFS-2020-0031-DRAFT-0257
NOAA-NMFS-2020-0031-DRAFT-0258
NOAA-NMFS-2020-0031-DRAFT-0259
NOAA-NMFS-2020-0031-DRAFT-0260
NOAA-NMFS-2020-0031-DRAFT-0261
NOAA-NMFS-2020-0031-DRAFT-0262
NOAA-NMFS-2020-0031-DRAFT-0263

Comment from Gustaf Sarkkinen
Comment from Catherine Crow
Comment from Greg Singleton
Comment from Leonard Epstein
Comment from M Lopez
Comment from Mary Southard
Comment from Naomi Dunlap
Comment from Jane White
Comment from eric naji
Comment from Steve Donoso
Comment from Monica Graff
Comment from Robert Durych
Comment from Stacie Malone
Comment from Gabby Johnson
Comment from Ann Wiseman
Comment from Annette Mello
Comment from Mary Dickson
Comment from Sandra Hoppmann
Comment from Jeanine Greene
Comment from Mark Gotvald
Comment from Lisa Mistretta
Comment from Norma Kline
Comment from Weslie Phillips
Comment from Jeanine Fair
Comment from bert corley
Comment from craig figtree
Comment from Julia Hart
Comment from SERENA NYIKES
Comment from Mayelly Moreno
Comment from Robert Frank
Comment from William Shattuck
Comment from Chris van hook
Comment from Ed Young
Comment from Rochelle Gravance
Comment from Patricia Heiden
Comment from Diane Eisenhower
Comment from steve lucas
Comment from Judy Trohkimoinen
Comment from Angela Knable
Comment from Debra Miller
Comment from Suzanne parodi

01/22/2021
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NOAA-NMFS-2020-0031-DRAFT-5247
NOAA-NMFS-2020-0031-DRAFT-5248
NOAA-NMFS-2020-0031-DRAFT-5249
NOAA-NMFS-2020-0031-DRAFT-5250
NOAA-NMFS-2020-0031-DRAFT-5251
NOAA-NMFS-2020-0031-DRAFT-5252
NOAA-NMFS-2020-0031-DRAFT-5253
NOAA-NMFS-2020-0031-DRAFT-5254
NOAA-NMFS-2020-0031-DRAFT-5255
NOAA-NMFS-2020-0031-DRAFT-5256
NOAA-NMFS-2020-0031-DRAFT-5257
NOAA-NMFS-2020-0031-DRAFT-5258
NOAA-NMFS-2020-0031-DRAFT-5259
NOAA-NMFS-2020-0031-DRAFT-5260
NOAA-NMFS-2020-0031-DRAFT-5261
NOAA-NMFS-2020-0031-DRAFT-5262
NOAA-NMFS-2020-0031-DRAFT-5263
NOAA-NMFS-2020-0031-DRAFT-5264
NOAA-NMFS-2020-0031-DRAFT-5265
NOAA-NMFS-2020-0031-DRAFT-5266
NOAA-NMFS-2020-0031-DRAFT-5267
NOAA-NMFS-2020-0031-DRAFT-5268
NOAA-NMFS-2020-0031-DRAFT-5269
NOAA-NMFS-2020-0031-DRAFT-5270
NOAA-NMFS-2020-0031-DRAFT-5271
NOAA-NMFS-2020-0031-DRAFT-5272
NOAA-NMFS-2020-0031-DRAFT-5273
NOAA-NMFS-2020-0031-DRAFT-5274
NOAA-NMFS-2020-0031-DRAFT-5275
NOAA-NMFS-2020-0031-DRAFT-5276
NOAA-NMFS-2020-0031-DRAFT-5277
NOAA-NMFS-2020-0031-DRAFT-5278
NOAA-NMFS-2020-0031-DRAFT-5279
NOAA-NMFS-2020-0031-DRAFT-5280
NOAA-NMFS-2020-0031-DRAFT-5281
NOAA-NMFS-2020-0031-DRAFT-5282
NOAA-NMFS-2020-0031-DRAFT-5284
NOAA-NMFS-2020-0031-DRAFT-5285
NOAA-NMFS-2020-0031-DRAFT-5286
NOAA-NMFS-2020-0031-DRAFT-5287
NOAA-NMFS-2020-0031-DRAFT-5288

Comment from Sharon DeLuca
Comment from Barbara Rogers
Comment from Alan McPherson
Comment from Janis Wilder
Comment from Anna Stunkel
Comment from Nancy Fahey
Comment from Jo Jones
Comment from Ruth Tranquillo
Comment from Kyle McAdam
Comment from Dennis Tabella
Comment from Jeremy Brock
Comment from George Neste
Comment from Maryanne Adams
Comment from Kris Sagar
Comment from Jill waldon
Comment from Andrea Holle
Comment from Eric Schwartz
Comment from Pamela Wade
Comment from Leslie Irving
Comment from David Dresser
Comment from Ronald Baltrunas
Comment from Natalie Kissel
Comment from susan mchugh
Comment from Marcia Morton
Comment from Emily Dugan
Comment from Christel Marvin
Comment from Linda Giere
Comment from DANIEL WAITE
Comment from Faith Thibodeau
Comment from Monja Lacasse
Comment from Waver Broers
Comment from Marsha Chastain
Comment from Dameta Robinson
Comment from Patrick Lee
Comment from Natasha Saravanja
Comment from Donald Gropman
Comment from Dianne Joyce
Comment from Steven Boyle
Comment from Twaina Forster
Comment from Carlotta Christy
Comment from kristine cervini

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0264
NOAA-NMFS-2020-0031-DRAFT-0265
NOAA-NMFS-2020-0031-DRAFT-0266
NOAA-NMFS-2020-0031-DRAFT-0267
NOAA-NMFS-2020-0031-DRAFT-0268
NOAA-NMFS-2020-0031-DRAFT-0269
NOAA-NMFS-2020-0031-DRAFT-0270
NOAA-NMFS-2020-0031-DRAFT-0271
NOAA-NMFS-2020-0031-DRAFT-0272
NOAA-NMFS-2020-0031-DRAFT-0273
NOAA-NMFS-2020-0031-DRAFT-0274
NOAA-NMFS-2020-0031-DRAFT-0275
NOAA-NMFS-2020-0031-DRAFT-0276
NOAA-NMFS-2020-0031-DRAFT-0277
NOAA-NMFS-2020-0031-DRAFT-0278
NOAA-NMFS-2020-0031-DRAFT-0279
NOAA-NMFS-2020-0031-DRAFT-0280
NOAA-NMFS-2020-0031-DRAFT-0281
NOAA-NMFS-2020-0031-DRAFT-0282
NOAA-NMFS-2020-0031-DRAFT-0283
NOAA-NMFS-2020-0031-DRAFT-0284
NOAA-NMFS-2020-0031-DRAFT-0285
NOAA-NMFS-2020-0031-DRAFT-0286
NOAA-NMFS-2020-0031-DRAFT-0287
NOAA-NMFS-2020-0031-DRAFT-0288
NOAA-NMFS-2020-0031-DRAFT-0289
NOAA-NMFS-2020-0031-DRAFT-0290
NOAA-NMFS-2020-0031-DRAFT-0291
NOAA-NMFS-2020-0031-DRAFT-0292
NOAA-NMFS-2020-0031-DRAFT-0293
NOAA-NMFS-2020-0031-DRAFT-0294
NOAA-NMFS-2020-0031-DRAFT-0295
NOAA-NMFS-2020-0031-DRAFT-0296
NOAA-NMFS-2020-0031-DRAFT-0297
NOAA-NMFS-2020-0031-DRAFT-0298
NOAA-NMFS-2020-0031-DRAFT-0299
NOAA-NMFS-2020-0031-DRAFT-0300
NOAA-NMFS-2020-0031-DRAFT-0301
NOAA-NMFS-2020-0031-DRAFT-0302
NOAA-NMFS-2020-0031-DRAFT-0303
NOAA-NMFS-2020-0031-DRAFT-0304

Comment from JOHN PRYBYLSKI
Comment from nadine vergilia
Comment from Sandra McPherson
Comment from Robert Weinberg
Comment from Judith Waite
Comment from Anita Gryska
Comment from Robin Coleman
Comment from Jackie Pomies
Comment from Kathy Spera
Comment from Daniel O'Brien
Comment from Martha Siegel
Comment from Elke Baitis
Comment from Nancy Gregory
Comment from Michael Sarabia
Comment from ROXANE DOW
Comment from michael morris
Comment from John Sutherland
Comment from Michaela Batstone
Comment from vicki jenkins
Comment from Judith Levinton
Comment from Marion Subjenski
Comment from Dayna Cooper
Comment from Hector Bertin
Comment from William Odonnell
Comment from Michael Johan
Comment from Michael Golembeski
Comment from Betsy McGill
Comment from Robert Jehn
Comment from Ann Barnes
Comment from Julie Levine
Comment from Rob Jenkin
Comment from Robert Greenbaum
Comment from Gregory Barton
Comment from Janet Carmichael
Comment from Beth Freeman
Comment from Leslie Leslie
Comment from David Haskins
Comment from alena Jorgensen
Comment from Claudia Sabine
Comment from Shatoiya De La Tour
Comment from Faith Franck

01/22/2021
01/22/2021
01/22/2021
01/22/2021
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01/22/2021
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01/22/2021
01/22/2021
01/22/2021
01/22/2021

NOAA-NMFS-2020-0031-DRAFT-5289
NOAA-NMFS-2020-0031-DRAFT-5290
NOAA-NMFS-2020-0031-DRAFT-5291
NOAA-NMFS-2020-0031-DRAFT-5292
NOAA-NMFS-2020-0031-DRAFT-5293
NOAA-NMFS-2020-0031-DRAFT-5294
NOAA-NMFS-2020-0031-DRAFT-5295
NOAA-NMFS-2020-0031-DRAFT-5297
NOAA-NMFS-2020-0031-DRAFT-5298
NOAA-NMFS-2020-0031-DRAFT-5299
NOAA-NMFS-2020-0031-DRAFT-5300
NOAA-NMFS-2020-0031-DRAFT-5301
NOAA-NMFS-2020-0031-DRAFT-5302
NOAA-NMFS-2020-0031-DRAFT-5303
NOAA-NMFS-2020-0031-DRAFT-5304
NOAA-NMFS-2020-0031-DRAFT-5305
NOAA-NMFS-2020-0031-DRAFT-5306
NOAA-NMFS-2020-0031-DRAFT-5307
NOAA-NMFS-2020-0031-DRAFT-5308
NOAA-NMFS-2020-0031-DRAFT-5309
NOAA-NMFS-2020-0031-DRAFT-5310
NOAA-NMFS-2020-0031-DRAFT-5311
NOAA-NMFS-2020-0031-DRAFT-5312
NOAA-NMFS-2020-0031-DRAFT-5313
NOAA-NMFS-2020-0031-DRAFT-5314
NOAA-NMFS-2020-0031-DRAFT-5316
NOAA-NMFS-2020-0031-DRAFT-5317
NOAA-NMFS-2020-0031-DRAFT-5318
NOAA-NMFS-2020-0031-DRAFT-5319
NOAA-NMFS-2020-0031-DRAFT-5320
NOAA-NMFS-2020-0031-DRAFT-5321
NOAA-NMFS-2020-0031-DRAFT-5322
NOAA-NMFS-2020-0031-DRAFT-5323
NOAA-NMFS-2020-0031-DRAFT-5324
NOAA-NMFS-2020-0031-DRAFT-5325
NOAA-NMFS-2020-0031-DRAFT-5326
NOAA-NMFS-2020-0031-DRAFT-5327
NOAA-NMFS-2020-0031-DRAFT-5328
NOAA-NMFS-2020-0031-DRAFT-5329
NOAA-NMFS-2020-0031-DRAFT-5330
NOAA-NMFS-2020-0031-DRAFT-5331

Comment from Keith Orschell
Comment from Suzanne Orschell
Comment from Lara Post
Comment from Richard Stern
Comment from Liz s.
Comment from Lauren Bond
Comment from Kathleen Frederiksen
Comment from Stephanie Benson
Comment from Barry Goldfarb
Comment from Dennis DiTullio
Comment from Dorothy Neff
Comment from tara wheeler
Comment from cynthia molinero
Comment from Kerry Hodges
Comment from Kerry Hodges
Comment from alice becker
Comment from Mike Vanlandingham
Comment from Keith Croes
Comment from Jane McNulty
Comment from Madeline Wright
Comment from Janel Compton
Comment from Sherron Bull
Comment from Richard Stern
Comment from Will Morel
Comment from Liliana Silvano
Comment from Tom Benton
Comment from Alan Linn
Comment from Gary Thaler
Comment from Alissa Sollitto
Comment from Aaron Beer
Comment from Amy Biggs
Comment from Jeffrey Ward
Comment from Lauren Kupp
Comment from Anita Dranetz
Comment from Alice Moore
Comment from April Gilbert
Comment from Lucie Laberge
Comment from Ashley Ouellette
Comment from AIXA KENDRICK
Comment from Andra Heide
Comment from Amanda Cox

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01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0305
NOAA-NMFS-2020-0031-DRAFT-0306
NOAA-NMFS-2020-0031-DRAFT-0307
NOAA-NMFS-2020-0031-DRAFT-0308
NOAA-NMFS-2020-0031-DRAFT-0309
NOAA-NMFS-2020-0031-DRAFT-0310
NOAA-NMFS-2020-0031-DRAFT-0311
NOAA-NMFS-2020-0031-DRAFT-0312
NOAA-NMFS-2020-0031-DRAFT-0313
NOAA-NMFS-2020-0031-DRAFT-0314
NOAA-NMFS-2020-0031-DRAFT-0315
NOAA-NMFS-2020-0031-DRAFT-0316
NOAA-NMFS-2020-0031-DRAFT-0317
NOAA-NMFS-2020-0031-DRAFT-0318
NOAA-NMFS-2020-0031-DRAFT-0319
NOAA-NMFS-2020-0031-DRAFT-0320
NOAA-NMFS-2020-0031-DRAFT-0321
NOAA-NMFS-2020-0031-DRAFT-0322
NOAA-NMFS-2020-0031-DRAFT-0323
NOAA-NMFS-2020-0031-DRAFT-0324
NOAA-NMFS-2020-0031-DRAFT-0325
NOAA-NMFS-2020-0031-DRAFT-0326
NOAA-NMFS-2020-0031-DRAFT-0327
NOAA-NMFS-2020-0031-DRAFT-0328
NOAA-NMFS-2020-0031-DRAFT-0329
NOAA-NMFS-2020-0031-DRAFT-0330
NOAA-NMFS-2020-0031-DRAFT-0331
NOAA-NMFS-2020-0031-DRAFT-0332
NOAA-NMFS-2020-0031-DRAFT-0333
NOAA-NMFS-2020-0031-DRAFT-0334
NOAA-NMFS-2020-0031-DRAFT-0335
NOAA-NMFS-2020-0031-DRAFT-0336
NOAA-NMFS-2020-0031-DRAFT-0337
NOAA-NMFS-2020-0031-DRAFT-0338
NOAA-NMFS-2020-0031-DRAFT-0339
NOAA-NMFS-2020-0031-DRAFT-0340
NOAA-NMFS-2020-0031-DRAFT-0341
NOAA-NMFS-2020-0031-DRAFT-0342
NOAA-NMFS-2020-0031-DRAFT-0343
NOAA-NMFS-2020-0031-DRAFT-0344
NOAA-NMFS-2020-0031-DRAFT-0345

Comment from Bruce Krawisz
Comment from Jeffrey Colledge
Comment from Michael Light
Comment from melody alexander
Comment from Lesley Lillywhite
Comment from Elizabeth Sima
Comment from Sherman. Baylin
Comment from Lee White
Comment from Gina Norman
Comment from Gregory Marks
Comment from joan peaslee
Comment from Peggy Herlihy
Comment from mike butkiewicz
Comment from Kicab Castaneda-Mendez
Comment from Diane Faircloth
Comment from Sarah Wiedel
Comment from Amy Hansen
Comment from kathleen king
Comment from Margo Margolis
Comment from j M
Comment from Robyn DeCiccio
Comment from John Sailer
Comment from Rebecca Canright
Comment from Beverly Hoff
Comment from Mark Canright
Comment from Mike Chyba
Comment from Jane Alexander
Comment from Eva Marks-Curatolo
Comment from Yvonne Grams
Comment from Joseph Azzarello
Comment from marion irwin
Comment from Sue Koehler
Comment from Susan O'Rourke
Comment from Randall Griswold
Comment from Nancy Ashley
Comment from Cynthia Sherman-Jones
Comment from A.L. Steiner
Comment from David Grimm
Comment from Rachel Gullett
Comment from Susan Kepner
Comment from Catherine Clifton

01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/22/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021

NOAA-NMFS-2020-0031-DRAFT-5332
NOAA-NMFS-2020-0031-DRAFT-5333
NOAA-NMFS-2020-0031-DRAFT-5334
NOAA-NMFS-2020-0031-DRAFT-5335
NOAA-NMFS-2020-0031-DRAFT-5336
NOAA-NMFS-2020-0031-DRAFT-5337
NOAA-NMFS-2020-0031-DRAFT-5338
NOAA-NMFS-2020-0031-DRAFT-5339
NOAA-NMFS-2020-0031-DRAFT-5340
NOAA-NMFS-2020-0031-DRAFT-5341
NOAA-NMFS-2020-0031-DRAFT-5342
NOAA-NMFS-2020-0031-DRAFT-5343
NOAA-NMFS-2020-0031-DRAFT-5345
NOAA-NMFS-2020-0031-DRAFT-5346
NOAA-NMFS-2020-0031-DRAFT-5348
NOAA-NMFS-2020-0031-DRAFT-5349
NOAA-NMFS-2020-0031-DRAFT-5350
NOAA-NMFS-2020-0031-DRAFT-5352
NOAA-NMFS-2020-0031-DRAFT-5353
NOAA-NMFS-2020-0031-DRAFT-5354
NOAA-NMFS-2020-0031-DRAFT-5355
NOAA-NMFS-2020-0031-DRAFT-5356
NOAA-NMFS-2020-0031-DRAFT-5357
NOAA-NMFS-2020-0031-DRAFT-5358
NOAA-NMFS-2020-0031-DRAFT-5359
NOAA-NMFS-2020-0031-DRAFT-5360
NOAA-NMFS-2020-0031-DRAFT-5361
NOAA-NMFS-2020-0031-DRAFT-5362
NOAA-NMFS-2020-0031-DRAFT-5363
NOAA-NMFS-2020-0031-DRAFT-5365
NOAA-NMFS-2020-0031-DRAFT-5366
NOAA-NMFS-2020-0031-DRAFT-5367
NOAA-NMFS-2020-0031-DRAFT-5368
NOAA-NMFS-2020-0031-DRAFT-5369
NOAA-NMFS-2020-0031-DRAFT-5370
NOAA-NMFS-2020-0031-DRAFT-5371
NOAA-NMFS-2020-0031-DRAFT-5372
NOAA-NMFS-2020-0031-DRAFT-5373
NOAA-NMFS-2020-0031-DRAFT-5374
NOAA-NMFS-2020-0031-DRAFT-5375
NOAA-NMFS-2020-0031-DRAFT-5376

Comment from Ardis Johnston
Comment from Denise Griffin
Comment from Mary Wilson
Comment from Alea Chevalier
Comment from Angela Leventis
Comment from Alexa Wall
Comment from Anthony Celaya
Comment from Allison Matteodo
Comment from Elaine Eudy
Comment from ALVERA PRITCHARD
Comment from J.A. Perry
Comment from Ivan Flow
Comment from John Hardy
Comment from Suzanne Shaffer
Comment from Edward Handley
Comment from Todd Monson
Comment from Jennifer Schally
Comment from Judith Ferrell
Comment from Linda Olson
Comment from Bill O'Brien
Comment from Mary more
Comment from Joan Anderson
Comment from Mary Breitlow
Comment from Kathleen Rogers
Comment from Heidi Lorenz
Comment from Nancy Hall
Comment from Darren Frale
Comment from Thomas Zatolokin
Comment from Phillip Woolever
Comment from Jerry Banks
Comment from Joanne Conti
Comment from Bruno Jones
Comment from Joseph Wenzel
Comment from Amanda Griffin
Comment from Amber Trophy
Comment from diana banducci
Comment from Carol Knight Watson
Comment from Amelia Linder
Comment from amy foster
Comment from Amy Freeman
Comment from Andrea Ferguson

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0346
NOAA-NMFS-2020-0031-DRAFT-0347
NOAA-NMFS-2020-0031-DRAFT-0348
NOAA-NMFS-2020-0031-DRAFT-0349
NOAA-NMFS-2020-0031-DRAFT-0350
NOAA-NMFS-2020-0031-DRAFT-0351
NOAA-NMFS-2020-0031-DRAFT-0352
NOAA-NMFS-2020-0031-DRAFT-0353
NOAA-NMFS-2020-0031-DRAFT-0354
NOAA-NMFS-2020-0031-DRAFT-0355
NOAA-NMFS-2020-0031-DRAFT-0356
NOAA-NMFS-2020-0031-DRAFT-0357
NOAA-NMFS-2020-0031-DRAFT-0358
NOAA-NMFS-2020-0031-DRAFT-0359
NOAA-NMFS-2020-0031-DRAFT-0360
NOAA-NMFS-2020-0031-DRAFT-0361
NOAA-NMFS-2020-0031-DRAFT-0362
NOAA-NMFS-2020-0031-DRAFT-0363
NOAA-NMFS-2020-0031-DRAFT-0364
NOAA-NMFS-2020-0031-DRAFT-0365
NOAA-NMFS-2020-0031-DRAFT-0366
NOAA-NMFS-2020-0031-DRAFT-0367
NOAA-NMFS-2020-0031-DRAFT-0368
NOAA-NMFS-2020-0031-DRAFT-0369
NOAA-NMFS-2020-0031-DRAFT-0370
NOAA-NMFS-2020-0031-DRAFT-0371
NOAA-NMFS-2020-0031-DRAFT-0372
NOAA-NMFS-2020-0031-DRAFT-0373
NOAA-NMFS-2020-0031-DRAFT-0374
NOAA-NMFS-2020-0031-DRAFT-0375
NOAA-NMFS-2020-0031-DRAFT-0376
NOAA-NMFS-2020-0031-DRAFT-0377
NOAA-NMFS-2020-0031-DRAFT-0378
NOAA-NMFS-2020-0031-DRAFT-0379
NOAA-NMFS-2020-0031-DRAFT-0380
NOAA-NMFS-2020-0031-DRAFT-0381
NOAA-NMFS-2020-0031-DRAFT-0382
NOAA-NMFS-2020-0031-DRAFT-0383
NOAA-NMFS-2020-0031-DRAFT-0384
NOAA-NMFS-2020-0031-DRAFT-0385
NOAA-NMFS-2020-0031-DRAFT-0386

Comment from lodiza Lepore
Comment from Marianne Hines
Comment from John Everett
Comment from HENRY MILLER
Comment from Polly Taylor
Comment from Louise Rickard
Comment from m. baca
Comment from Billie Anderson
Comment from Susan Hathcock
Comment from Ann Wright
Comment from Wayne Toven
Comment from Aaron Turkewitz
Comment from Holly Koppenhaver
Comment from Ron Season
Comment from JAMES LOVICH
Comment from Valerie Apel
Comment from Ramona Krause
Comment from Raymond Arent
Comment from Adrienne Mintzer
Comment from Michael Smith
Comment from C. Keating
Comment from daniel volpatti
Comment from Dennis Dougherty
Comment from Jeffery Biss
Comment from Kathy Ralph
Comment from Marie Zwicker
Comment from Jean Saja
Comment from Michael Hlis
Comment from Patricia Rossi
Comment from catherine cosman
Comment from M S
Comment from Annie Dawid
Comment from Dennis Guiney
Comment from Jurissah Naive
Comment from Mary Bristow
Comment from A Sid
Comment from Sharon Fors
Comment from David Worley
Comment from Todd Fletcher
Comment from Molly Karpin
Comment from Peter Dooley

01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
01/23/2021
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01/23/2021
01/23/2021
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01/23/2021
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01/23/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021

NOAA-NMFS-2020-0031-DRAFT-5377
NOAA-NMFS-2020-0031-DRAFT-5378
NOAA-NMFS-2020-0031-DRAFT-5379
NOAA-NMFS-2020-0031-DRAFT-5380
NOAA-NMFS-2020-0031-DRAFT-5381
NOAA-NMFS-2020-0031-DRAFT-5382
NOAA-NMFS-2020-0031-DRAFT-5383
NOAA-NMFS-2020-0031-DRAFT-5384
NOAA-NMFS-2020-0031-DRAFT-5385
NOAA-NMFS-2020-0031-DRAFT-5386
NOAA-NMFS-2020-0031-DRAFT-5387
NOAA-NMFS-2020-0031-DRAFT-5388
NOAA-NMFS-2020-0031-DRAFT-5389
NOAA-NMFS-2020-0031-DRAFT-5390
NOAA-NMFS-2020-0031-DRAFT-5391
NOAA-NMFS-2020-0031-DRAFT-5394
NOAA-NMFS-2020-0031-DRAFT-5395
NOAA-NMFS-2020-0031-DRAFT-5396
NOAA-NMFS-2020-0031-DRAFT-5397
NOAA-NMFS-2020-0031-DRAFT-5399
NOAA-NMFS-2020-0031-DRAFT-5400
NOAA-NMFS-2020-0031-DRAFT-5401
NOAA-NMFS-2020-0031-DRAFT-5403
NOAA-NMFS-2020-0031-DRAFT-5404
NOAA-NMFS-2020-0031-DRAFT-5405
NOAA-NMFS-2020-0031-DRAFT-5406
NOAA-NMFS-2020-0031-DRAFT-5407
NOAA-NMFS-2020-0031-DRAFT-5408
NOAA-NMFS-2020-0031-DRAFT-5409
NOAA-NMFS-2020-0031-DRAFT-5410
NOAA-NMFS-2020-0031-DRAFT-5411
NOAA-NMFS-2020-0031-DRAFT-5413
NOAA-NMFS-2020-0031-DRAFT-5414
NOAA-NMFS-2020-0031-DRAFT-5415
NOAA-NMFS-2020-0031-DRAFT-5416
NOAA-NMFS-2020-0031-DRAFT-5417
NOAA-NMFS-2020-0031-DRAFT-5419
NOAA-NMFS-2020-0031-DRAFT-5420
NOAA-NMFS-2020-0031-DRAFT-5421
NOAA-NMFS-2020-0031-DRAFT-5422
NOAA-NMFS-2020-0031-DRAFT-5423

Comment from Andrew Scott
Comment from Gail Helland
Comment from Marguerite Lovett
Comment from Anna Lukaszewicz
Comment from april doyle
Comment from Anjali Athavale
Comment from Stan Dunayer
Comment from Ann Braman
Comment from James Jeffrey
Comment from Becky Savoie
Comment from Richard Peterson
Comment from Erica Munn
Comment from Lisa Burton
Comment from Michael Henderson
Comment from Linda MacLeman
Comment from Jim Tschudy
Comment from Thomas Bennett
Comment from Valerie Hildebrand
Comment from Emily Keuthen
Comment from DK Bolen
Comment from shane yellin
Comment from susan bullen
Comment from Donna Yong
Comment from Janis Kinslow
Comment from Laura Dodge
Comment from Laura Troll
Comment from Daniel Shively
Comment from Marilyn Platt
Comment from Jeremy Baptist
Comment from Heidi Handsaker
Comment from Patricia Espinosa
Comment from Helen Faller
Comment from Barbara Carthy
Comment from Holly Roe
Comment from LJ Uchno
Comment from Scott Maclowry
Comment from Lisa Willenbrock
Comment from Allison Argo
Comment from Amy Henry
Comment from arlene butters
Comment from Andrea Taylor

01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0387
NOAA-NMFS-2020-0031-DRAFT-0388
NOAA-NMFS-2020-0031-DRAFT-0389
NOAA-NMFS-2020-0031-DRAFT-0390
NOAA-NMFS-2020-0031-DRAFT-0391
NOAA-NMFS-2020-0031-DRAFT-0392
NOAA-NMFS-2020-0031-DRAFT-0393
NOAA-NMFS-2020-0031-DRAFT-0394
NOAA-NMFS-2020-0031-DRAFT-0395
NOAA-NMFS-2020-0031-DRAFT-0396
NOAA-NMFS-2020-0031-DRAFT-0397
NOAA-NMFS-2020-0031-DRAFT-0398
NOAA-NMFS-2020-0031-DRAFT-0399
NOAA-NMFS-2020-0031-DRAFT-0400
NOAA-NMFS-2020-0031-DRAFT-0401
NOAA-NMFS-2020-0031-DRAFT-0402
NOAA-NMFS-2020-0031-DRAFT-0403
NOAA-NMFS-2020-0031-DRAFT-0404
NOAA-NMFS-2020-0031-DRAFT-0405
NOAA-NMFS-2020-0031-DRAFT-0406
NOAA-NMFS-2020-0031-DRAFT-0407
NOAA-NMFS-2020-0031-DRAFT-0408
NOAA-NMFS-2020-0031-DRAFT-0409
NOAA-NMFS-2020-0031-DRAFT-0410
NOAA-NMFS-2020-0031-DRAFT-0411
NOAA-NMFS-2020-0031-DRAFT-0412
NOAA-NMFS-2020-0031-DRAFT-0413
NOAA-NMFS-2020-0031-DRAFT-0414
NOAA-NMFS-2020-0031-DRAFT-0415
NOAA-NMFS-2020-0031-DRAFT-0416
NOAA-NMFS-2020-0031-DRAFT-0417
NOAA-NMFS-2020-0031-DRAFT-0418
NOAA-NMFS-2020-0031-DRAFT-0419
NOAA-NMFS-2020-0031-DRAFT-0420
NOAA-NMFS-2020-0031-DRAFT-0421
NOAA-NMFS-2020-0031-DRAFT-0422
NOAA-NMFS-2020-0031-DRAFT-0423
NOAA-NMFS-2020-0031-DRAFT-0424
NOAA-NMFS-2020-0031-DRAFT-0425
NOAA-NMFS-2020-0031-DRAFT-0426
NOAA-NMFS-2020-0031-DRAFT-0427

Comment from Scott Barlow
Comment from Liz Field
Comment from Arlene Taylor
Comment from Michael Bondoc
Comment from Susan Berry
Comment from Phillip Hope
Comment from Mel Apodaca
Comment from Pippa Pearthree
Comment from Daniel Goldberg
Comment from Jerry Curow
Comment from Helen Stuehler
Comment from Karen Wathen
Comment from Rebecca McDonough
Comment from Shannon Marshall
Comment from Caitlin Lang
Comment from Willam Ridgeway
Comment from Diane Verna
Comment from Marc Imlay
Comment from Glenis Ramirez
Comment from B.J. Herbison
Comment from Christine Angeles
Comment from Moraima Suarez
Comment from Caroline Kern
Comment from Barbara Stenross
Comment from Douglas McCormick
Comment from Anne brown
Comment from Mariam Andalibi
Comment from Chris Loo
Comment from Nile Arena
Comment from David Haskins
Comment from Gail Donath
Comment from Andrea Wilson
Comment from Bruce Hallett
Comment from Timothy Castine
Comment from Susan Bortolussi
Comment from Ava Sneddon
Comment from Andy Lynn
Comment from Kurt Schwarz
Comment from Martha Perlmutter
Comment from Richard Stehlik
Comment from Grace Hepler

01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021

NOAA-NMFS-2020-0031-DRAFT-5424
NOAA-NMFS-2020-0031-DRAFT-5425
NOAA-NMFS-2020-0031-DRAFT-5426
NOAA-NMFS-2020-0031-DRAFT-5427
NOAA-NMFS-2020-0031-DRAFT-5428
NOAA-NMFS-2020-0031-DRAFT-5429
NOAA-NMFS-2020-0031-DRAFT-5430
NOAA-NMFS-2020-0031-DRAFT-5431
NOAA-NMFS-2020-0031-DRAFT-5432
NOAA-NMFS-2020-0031-DRAFT-5433
NOAA-NMFS-2020-0031-DRAFT-5434
NOAA-NMFS-2020-0031-DRAFT-5435
NOAA-NMFS-2020-0031-DRAFT-5436
NOAA-NMFS-2020-0031-DRAFT-5437
NOAA-NMFS-2020-0031-DRAFT-5438
NOAA-NMFS-2020-0031-DRAFT-5439
NOAA-NMFS-2020-0031-DRAFT-5440
NOAA-NMFS-2020-0031-DRAFT-5441
NOAA-NMFS-2020-0031-DRAFT-5442
NOAA-NMFS-2020-0031-DRAFT-5443
NOAA-NMFS-2020-0031-DRAFT-5444
NOAA-NMFS-2020-0031-DRAFT-5445
NOAA-NMFS-2020-0031-DRAFT-5446
NOAA-NMFS-2020-0031-DRAFT-5447
NOAA-NMFS-2020-0031-DRAFT-5448
NOAA-NMFS-2020-0031-DRAFT-5449
NOAA-NMFS-2020-0031-DRAFT-5450
NOAA-NMFS-2020-0031-DRAFT-5451
NOAA-NMFS-2020-0031-DRAFT-5452
NOAA-NMFS-2020-0031-DRAFT-5453
NOAA-NMFS-2020-0031-DRAFT-5454
NOAA-NMFS-2020-0031-DRAFT-5455
NOAA-NMFS-2020-0031-DRAFT-5456
NOAA-NMFS-2020-0031-DRAFT-5457
NOAA-NMFS-2020-0031-DRAFT-5458
NOAA-NMFS-2020-0031-DRAFT-5459
NOAA-NMFS-2020-0031-DRAFT-5460
NOAA-NMFS-2020-0031-DRAFT-5461
NOAA-NMFS-2020-0031-DRAFT-5462
NOAA-NMFS-2020-0031-DRAFT-5463
NOAA-NMFS-2020-0031-DRAFT-5464

Comment from Julie Buxton
Comment from Bobbi Mcclelland
Comment from Alex Weiland
Comment from Kelly Walker
Comment from Barbara Baker
Comment from Barbara Struss
Comment from Barbara Cetrone
Comment from Barbara Helms
Comment from Elizabeth Cruise
Comment from Barry De Jasu
Comment from Ben Martin
Comment from John Rossi
Comment from Becky Sillasen
Comment from Joy Sakelson
Comment from Diana Reale
Comment from Beth Alvernaz
Comment from Elizabeth Werner
Comment from Betsy McGill
Comment from Wayne Kessler
Comment from Beverly Simone
Comment from Beverly Rice
Comment from Larry Ryan
Comment from Tom Benton
Comment from Alan Linn
Comment from Jane Bisson
Comment from Bryon Sundberg
Comment from Bahareh Kianpourian
Comment from Bryan Kirshon
Comment from Barb Morrison
Comment from Wolfgang Burger
Comment from Blithe Hogan
Comment from Pam Koller
Comment from David Davidson
Comment from Andrew Pudzianowski
Comment from Lee Dalton
Comment from Daniel Mink
Comment from Andrew Pudzianowski
Comment from Nancy-liane Burger
Comment from Brock Cordeiro
Comment from Bob Roach
Comment from Robert Schicker

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0428
NOAA-NMFS-2020-0031-DRAFT-0429
NOAA-NMFS-2020-0031-DRAFT-0430
NOAA-NMFS-2020-0031-DRAFT-0431
NOAA-NMFS-2020-0031-DRAFT-0432
NOAA-NMFS-2020-0031-DRAFT-0433
NOAA-NMFS-2020-0031-DRAFT-0434
NOAA-NMFS-2020-0031-DRAFT-0435
NOAA-NMFS-2020-0031-DRAFT-0436
NOAA-NMFS-2020-0031-DRAFT-0437
NOAA-NMFS-2020-0031-DRAFT-0438
NOAA-NMFS-2020-0031-DRAFT-0439
NOAA-NMFS-2020-0031-DRAFT-0440
NOAA-NMFS-2020-0031-DRAFT-0441
NOAA-NMFS-2020-0031-DRAFT-0442
NOAA-NMFS-2020-0031-DRAFT-0443
NOAA-NMFS-2020-0031-DRAFT-0444
NOAA-NMFS-2020-0031-DRAFT-0445
NOAA-NMFS-2020-0031-DRAFT-0446
NOAA-NMFS-2020-0031-DRAFT-0447
NOAA-NMFS-2020-0031-DRAFT-0448
NOAA-NMFS-2020-0031-DRAFT-0449
NOAA-NMFS-2020-0031-DRAFT-0450
NOAA-NMFS-2020-0031-DRAFT-0451
NOAA-NMFS-2020-0031-DRAFT-0452
NOAA-NMFS-2020-0031-DRAFT-0453
NOAA-NMFS-2020-0031-DRAFT-0454
NOAA-NMFS-2020-0031-DRAFT-0455
NOAA-NMFS-2020-0031-DRAFT-0456
NOAA-NMFS-2020-0031-DRAFT-0457
NOAA-NMFS-2020-0031-DRAFT-0458
NOAA-NMFS-2020-0031-DRAFT-0459
NOAA-NMFS-2020-0031-DRAFT-0460
NOAA-NMFS-2020-0031-DRAFT-0461
NOAA-NMFS-2020-0031-DRAFT-0462
NOAA-NMFS-2020-0031-DRAFT-0463
NOAA-NMFS-2020-0031-DRAFT-0464
NOAA-NMFS-2020-0031-DRAFT-0465
NOAA-NMFS-2020-0031-DRAFT-0466
NOAA-NMFS-2020-0031-DRAFT-0467
NOAA-NMFS-2020-0031-DRAFT-0468

Comment from Marj Waite
Comment from Monja Lacasse
Comment from Jerry Davis
Comment from John Benschoter
Comment from Logan Johnson
Comment from Sallie Donkin
Comment from Berte Rosin
Comment from A Diamond
Comment from Claire Gadbois
Comment from Janet Heinle
Comment from nancy sowersby
Comment from Stephen roll
Comment from Sundae Shields
Comment from Don Waller
Comment from Margot Wiener
Comment from Etta Robin
Comment from Barbara Kienzle
Comment from C. Cook
Comment from Cate Swan
Comment from Beatrice Broughton
Comment from Susan Williams
Comment from Mary McGaughey
Comment from Jackie Ramirez
Comment from Daniel Sude
Comment from Deedi dayan
Comment from Michael Lewandowski
Comment from SBS Challinor
Comment from Jamie Greer
Comment from Sheila Tran
Comment from Deanne Romano
Comment from Harry Knapp
Comment from irene kubosh
Comment from sara villanyi
Comment from Bret Smith
Comment from Cara Anderson
Comment from Barry Mowday
Comment from Michael Raymond
Comment from Jean Allgood
Comment from sonja franz
Comment from Victoria Brandon
Comment from Karen Hughes

01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
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01/24/2021
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01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021

NOAA-NMFS-2020-0031-DRAFT-5465
NOAA-NMFS-2020-0031-DRAFT-5466
NOAA-NMFS-2020-0031-DRAFT-5467
NOAA-NMFS-2020-0031-DRAFT-5468
NOAA-NMFS-2020-0031-DRAFT-5469
NOAA-NMFS-2020-0031-DRAFT-5470
NOAA-NMFS-2020-0031-DRAFT-5471
NOAA-NMFS-2020-0031-DRAFT-5472
NOAA-NMFS-2020-0031-DRAFT-5473
NOAA-NMFS-2020-0031-DRAFT-5474
NOAA-NMFS-2020-0031-DRAFT-5475
NOAA-NMFS-2020-0031-DRAFT-5476
NOAA-NMFS-2020-0031-DRAFT-5477
NOAA-NMFS-2020-0031-DRAFT-5478
NOAA-NMFS-2020-0031-DRAFT-5479
NOAA-NMFS-2020-0031-DRAFT-5480
NOAA-NMFS-2020-0031-DRAFT-5481
NOAA-NMFS-2020-0031-DRAFT-5482
NOAA-NMFS-2020-0031-DRAFT-5483
NOAA-NMFS-2020-0031-DRAFT-5484
NOAA-NMFS-2020-0031-DRAFT-5485
NOAA-NMFS-2020-0031-DRAFT-5486
NOAA-NMFS-2020-0031-DRAFT-5487
NOAA-NMFS-2020-0031-DRAFT-5488
NOAA-NMFS-2020-0031-DRAFT-5489
NOAA-NMFS-2020-0031-DRAFT-5490
NOAA-NMFS-2020-0031-DRAFT-5491
NOAA-NMFS-2020-0031-DRAFT-5492
NOAA-NMFS-2020-0031-DRAFT-5493
NOAA-NMFS-2020-0031-DRAFT-5494
NOAA-NMFS-2020-0031-DRAFT-5495
NOAA-NMFS-2020-0031-DRAFT-5496
NOAA-NMFS-2020-0031-DRAFT-5497
NOAA-NMFS-2020-0031-DRAFT-5498
NOAA-NMFS-2020-0031-DRAFT-5499
NOAA-NMFS-2020-0031-DRAFT-5500
NOAA-NMFS-2020-0031-DRAFT-5501
NOAA-NMFS-2020-0031-DRAFT-5502
NOAA-NMFS-2020-0031-DRAFT-5503
NOAA-NMFS-2020-0031-DRAFT-5504
NOAA-NMFS-2020-0031-DRAFT-5505

Comment from Janet Robinson
Comment from Ryan Rosenthal
Comment from Bonnie Barfield
Comment from Elizabeth Jones
Comment from Bernard Rafferty
Comment from Nancy and Breslin
Comment from Brooke Kane
Comment from Brooke Dyer-Bennet
Comment from Arthur Schurr
Comment from John Burridge
Comment from Lisa Hurley
Comment from Cathy Martin
Comment from Caitlin Stewart
Comment from Annie Laurie
Comment from Barbara Bradley
Comment from Cara McCormick
Comment from Flavio Cardoso
Comment from Carol Berkeley
Comment from Carol Ramo
Comment from Caryl Speck
Comment from Peter McCormick
Comment from Catherine Kroeger
Comment from margo roy
Comment from Cathie Mestemaker-Harris
Comment from Pam Patterson
Comment from June Elliott-Cattell
Comment from Craig Downer
Comment from Claire Goldthwaite
Comment from Catherine McNamara
Comment from Carole Smith
Comment from Kathy Chakoutis
Comment from Karen Rome
Comment from Eric Naji
Comment from Tracy Strickland
Comment from Christopher Miller
Comment from chris burson
Comment from Christine Roane
Comment from Christine Koehler
Comment from Christopher Tumolo
Comment from Cecyl Ivie
Comment from Christopher Hughes

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0469
NOAA-NMFS-2020-0031-DRAFT-0470
NOAA-NMFS-2020-0031-DRAFT-0471
NOAA-NMFS-2020-0031-DRAFT-0472
NOAA-NMFS-2020-0031-DRAFT-0473
NOAA-NMFS-2020-0031-DRAFT-0474
NOAA-NMFS-2020-0031-DRAFT-0475
NOAA-NMFS-2020-0031-DRAFT-0476
NOAA-NMFS-2020-0031-DRAFT-0477
NOAA-NMFS-2020-0031-DRAFT-0478
NOAA-NMFS-2020-0031-DRAFT-0479
NOAA-NMFS-2020-0031-DRAFT-0480
NOAA-NMFS-2020-0031-DRAFT-0481
NOAA-NMFS-2020-0031-DRAFT-0482
NOAA-NMFS-2020-0031-DRAFT-0483
NOAA-NMFS-2020-0031-DRAFT-0484
NOAA-NMFS-2020-0031-DRAFT-0485
NOAA-NMFS-2020-0031-DRAFT-0486
NOAA-NMFS-2020-0031-DRAFT-0487
NOAA-NMFS-2020-0031-DRAFT-0488
NOAA-NMFS-2020-0031-DRAFT-0489
NOAA-NMFS-2020-0031-DRAFT-0490
NOAA-NMFS-2020-0031-DRAFT-0491
NOAA-NMFS-2020-0031-DRAFT-0492
NOAA-NMFS-2020-0031-DRAFT-0493
NOAA-NMFS-2020-0031-DRAFT-0494
NOAA-NMFS-2020-0031-DRAFT-0495
NOAA-NMFS-2020-0031-DRAFT-0496
NOAA-NMFS-2020-0031-DRAFT-0497
NOAA-NMFS-2020-0031-DRAFT-0498
NOAA-NMFS-2020-0031-DRAFT-0499
NOAA-NMFS-2020-0031-DRAFT-0500
NOAA-NMFS-2020-0031-DRAFT-0501
NOAA-NMFS-2020-0031-DRAFT-0502
NOAA-NMFS-2020-0031-DRAFT-0503
NOAA-NMFS-2020-0031-DRAFT-0504
NOAA-NMFS-2020-0031-DRAFT-0505
NOAA-NMFS-2020-0031-DRAFT-0506
NOAA-NMFS-2020-0031-DRAFT-0507
NOAA-NMFS-2020-0031-DRAFT-0508
NOAA-NMFS-2020-0031-DRAFT-0509

Comment from Thomas Filip
Comment from Glenn Novak
Comment from Stephen Evans
Comment from Dirk Reed
Comment from Carrie Staton
Comment from Maria Dabrowski
Comment from James Cooper
Comment from Oceanah D'amore
Comment from rona rosen
Comment from Chris Buelow
Comment from Tim Fleischer
Comment from Dena Hernandez-Kosche
Comment from Jack Balch
Comment from Bob Moyer
Comment from Merrilee Morgan
Comment from charles Rinear
Comment from Jazmine Harvey
Comment from David Holingue
Comment from Debbie Friesen
Comment from Gary Mazzotti
Comment from Elloie Jeter
Comment from Lauri Moon
Comment from Silvana Depetris
Comment from Lynn Killam
Comment from Heather Schlichter
Comment from Traver Cowles
Comment from maureen rogers
Comment from Michelle McKenney
Comment from Bob Hagele
Comment from Elizabeth Waldron
Comment from Lisa Whipple
Comment from Marcella Hammond
Comment from Tracy Drake
Comment from Stephanie Smedley
Comment from Julie Sacco
Comment from Melissa K
Comment from Jackie Creager
Comment from Helen Morgan
Comment from Mark Crane
Comment from David Moore
Comment from Sharon McNamare

01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
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01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021

NOAA-NMFS-2020-0031-DRAFT-5506
NOAA-NMFS-2020-0031-DRAFT-5507
NOAA-NMFS-2020-0031-DRAFT-5508
NOAA-NMFS-2020-0031-DRAFT-5509
NOAA-NMFS-2020-0031-DRAFT-5510
NOAA-NMFS-2020-0031-DRAFT-5511
NOAA-NMFS-2020-0031-DRAFT-5512
NOAA-NMFS-2020-0031-DRAFT-5513
NOAA-NMFS-2020-0031-DRAFT-5514
NOAA-NMFS-2020-0031-DRAFT-5515
NOAA-NMFS-2020-0031-DRAFT-5516
NOAA-NMFS-2020-0031-DRAFT-5517
NOAA-NMFS-2020-0031-DRAFT-5518
NOAA-NMFS-2020-0031-DRAFT-5519
NOAA-NMFS-2020-0031-DRAFT-5520
NOAA-NMFS-2020-0031-DRAFT-5521
NOAA-NMFS-2020-0031-DRAFT-5522
NOAA-NMFS-2020-0031-DRAFT-5523
NOAA-NMFS-2020-0031-DRAFT-5524
NOAA-NMFS-2020-0031-DRAFT-5525
NOAA-NMFS-2020-0031-DRAFT-5526
NOAA-NMFS-2020-0031-DRAFT-5527
NOAA-NMFS-2020-0031-DRAFT-5528
NOAA-NMFS-2020-0031-DRAFT-5529
NOAA-NMFS-2020-0031-DRAFT-5530
NOAA-NMFS-2020-0031-DRAFT-5531
NOAA-NMFS-2020-0031-DRAFT-5532
NOAA-NMFS-2020-0031-DRAFT-5533
NOAA-NMFS-2020-0031-DRAFT-5534
NOAA-NMFS-2020-0031-DRAFT-5535
NOAA-NMFS-2020-0031-DRAFT-5536
NOAA-NMFS-2020-0031-DRAFT-5537
NOAA-NMFS-2020-0031-DRAFT-5538
NOAA-NMFS-2020-0031-DRAFT-5539
NOAA-NMFS-2020-0031-DRAFT-5540
NOAA-NMFS-2020-0031-DRAFT-5541
NOAA-NMFS-2020-0031-DRAFT-5542
NOAA-NMFS-2020-0031-DRAFT-5543
NOAA-NMFS-2020-0031-DRAFT-5544
NOAA-NMFS-2020-0031-DRAFT-5545
NOAA-NMFS-2020-0031-DRAFT-5546

Comment from Colleen Carroll
Comment from Clare Goslant
Comment from Claudia Leff
Comment from Cora Luce
Comment from Christina Williams
Comment from Chris Marx
Comment from Cindy McEwen
Comment from Caryl Sawyer
Comment from Casey Cochran
Comment from James Huychison
Comment from Rebecca Straw
Comment from Lasha Wells
Comment from Colleen Cleary
Comment from Connie Hershman
Comment from Steven Cook
Comment from Bobbie Daniels
Comment from Fred Coppotelli
Comment from Elise Hanley
Comment from Susan Courtney
Comment from Chas Griffin
Comment from Cricket Blanton
Comment from Cristina Carata
Comment from Carrie Cannon
Comment from Freya Harris
Comment from Dwight Caldararo
Comment from Jamie Long
Comment from danny james
Comment from Daniel Weinberger
Comment from Douglas &Elvira Rivalsi
Comment from Lily Beaumont
Comment from Tracey Mangus
Comment from David Levinson
Comment from Dawn Matta
Comment from Daniel Belachew
Comment from Deborah Coble
Comment from Dorian Charles
Comment from Debra DeFurio
Comment from DIANA MCNAIR
Comment from Debi Combs
Comment from Jerusalem Wise
Comment from Debra Lancia

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0510
NOAA-NMFS-2020-0031-DRAFT-0511
NOAA-NMFS-2020-0031-DRAFT-0512
NOAA-NMFS-2020-0031-DRAFT-0513
NOAA-NMFS-2020-0031-DRAFT-0514
NOAA-NMFS-2020-0031-DRAFT-0515
NOAA-NMFS-2020-0031-DRAFT-0516
NOAA-NMFS-2020-0031-DRAFT-0517
NOAA-NMFS-2020-0031-DRAFT-0518
NOAA-NMFS-2020-0031-DRAFT-0519
NOAA-NMFS-2020-0031-DRAFT-0520
NOAA-NMFS-2020-0031-DRAFT-0521
NOAA-NMFS-2020-0031-DRAFT-0522
NOAA-NMFS-2020-0031-DRAFT-0523
NOAA-NMFS-2020-0031-DRAFT-0524
NOAA-NMFS-2020-0031-DRAFT-0525
NOAA-NMFS-2020-0031-DRAFT-0526
NOAA-NMFS-2020-0031-DRAFT-0527
NOAA-NMFS-2020-0031-DRAFT-0528
NOAA-NMFS-2020-0031-DRAFT-0529
NOAA-NMFS-2020-0031-DRAFT-0530
NOAA-NMFS-2020-0031-DRAFT-0531
NOAA-NMFS-2020-0031-DRAFT-0532
NOAA-NMFS-2020-0031-DRAFT-0533
NOAA-NMFS-2020-0031-DRAFT-0534
NOAA-NMFS-2020-0031-DRAFT-0535
NOAA-NMFS-2020-0031-DRAFT-0536
NOAA-NMFS-2020-0031-DRAFT-0537
NOAA-NMFS-2020-0031-DRAFT-0538
NOAA-NMFS-2020-0031-DRAFT-0539
NOAA-NMFS-2020-0031-DRAFT-0540
NOAA-NMFS-2020-0031-DRAFT-0541
NOAA-NMFS-2020-0031-DRAFT-0542
NOAA-NMFS-2020-0031-DRAFT-0543
NOAA-NMFS-2020-0031-DRAFT-0544
NOAA-NMFS-2020-0031-DRAFT-0545
NOAA-NMFS-2020-0031-DRAFT-0546
NOAA-NMFS-2020-0031-DRAFT-0547
NOAA-NMFS-2020-0031-DRAFT-0548
NOAA-NMFS-2020-0031-DRAFT-0549
NOAA-NMFS-2020-0031-DRAFT-0550

Comment from Walt Mintkeski
Comment from Ronald Shenberger
Comment from Katherine Werner
Comment from Tim Duda
Comment from Matthew Roth
Comment from Maurice Samuels
Comment from Richard Spotts
Comment from Michael Lawrence
Comment from Radha Singh
Comment from Lisa Hughes
Comment from Cheryl Arvio
Comment from Lisha Doucet
Comment from Wanda Frostick
Comment from Rob Puc
Comment from Noell Jackson
Comment from Marguerite Juliusson
Comment from Val Silver
Comment from Beth Hawes
Comment from April Woolley
Comment from Leann Huber
Comment from Carol Modrell
Comment from Lionel Friedberg
Comment from claudia bourks
Comment from Judy Folus
Comment from Jean Bevsek
Comment from Martin Tripp
Comment from Judy McDonald
Comment from Myra Toth
Comment from Katherine Bohn
Comment from Chad Evans
Comment from Steve Jones
Comment from Mina Bornn
Comment from Suzanne Keiffer
Comment from Charles Bolick
Comment from Aneleh Noslede
Comment from Kimberly Vaz
Comment from Bonnie Thompson
Comment from Anne Robison
Comment from Sally Wise
Comment from Richard Clough
Comment from chris lewis

01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
01/24/2021
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01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021

NOAA-NMFS-2020-0031-DRAFT-5547
NOAA-NMFS-2020-0031-DRAFT-5548
NOAA-NMFS-2020-0031-DRAFT-5549
NOAA-NMFS-2020-0031-DRAFT-5550
NOAA-NMFS-2020-0031-DRAFT-5551
NOAA-NMFS-2020-0031-DRAFT-5552
NOAA-NMFS-2020-0031-DRAFT-5553
NOAA-NMFS-2020-0031-DRAFT-5554
NOAA-NMFS-2020-0031-DRAFT-5555
NOAA-NMFS-2020-0031-DRAFT-5556
NOAA-NMFS-2020-0031-DRAFT-5557
NOAA-NMFS-2020-0031-DRAFT-5558
NOAA-NMFS-2020-0031-DRAFT-5559
NOAA-NMFS-2020-0031-DRAFT-5560
NOAA-NMFS-2020-0031-DRAFT-5561
NOAA-NMFS-2020-0031-DRAFT-5562
NOAA-NMFS-2020-0031-DRAFT-5563
NOAA-NMFS-2020-0031-DRAFT-5564
NOAA-NMFS-2020-0031-DRAFT-5565
NOAA-NMFS-2020-0031-DRAFT-5566
NOAA-NMFS-2020-0031-DRAFT-5567
NOAA-NMFS-2020-0031-DRAFT-5568
NOAA-NMFS-2020-0031-DRAFT-5569
NOAA-NMFS-2020-0031-DRAFT-5570
NOAA-NMFS-2020-0031-DRAFT-5571
NOAA-NMFS-2020-0031-DRAFT-5572
NOAA-NMFS-2020-0031-DRAFT-5573
NOAA-NMFS-2020-0031-DRAFT-5574
NOAA-NMFS-2020-0031-DRAFT-5575
NOAA-NMFS-2020-0031-DRAFT-5576
NOAA-NMFS-2020-0031-DRAFT-5577
NOAA-NMFS-2020-0031-DRAFT-5578
NOAA-NMFS-2020-0031-DRAFT-5579
NOAA-NMFS-2020-0031-DRAFT-5581
NOAA-NMFS-2020-0031-DRAFT-5582
NOAA-NMFS-2020-0031-DRAFT-5584
NOAA-NMFS-2020-0031-DRAFT-5585
NOAA-NMFS-2020-0031-DRAFT-5586
NOAA-NMFS-2020-0031-DRAFT-5587
NOAA-NMFS-2020-0031-DRAFT-5588
NOAA-NMFS-2020-0031-DRAFT-5589

Comment from Deborah Fexis
Comment from Debra Miller
Comment from Debra Cahill
Comment from Dominique Edmondson
Comment from Donna Mastracchio
Comment from Barbara Delgado
Comment from Dennis Carrig
Comment from Derin Parker
Comment from Dennis Rogers
Comment from Diane Sacchetti
Comment from danielle hipworth
Comment from Diane Clark
Comment from Ms Wildes
Comment from Richard George
Comment from Dimitri Lefever
Comment from dina schmidt
Comment from Tana Naftzinger
Comment from Pete Fairley
Comment from Alice Gard
Comment from David Erickson
Comment from Diane Lesser
Comment from dawn kenyon
Comment from Donna Bender
Comment from Diane Narron
Comment from Dobi Dobroslawa
Comment from Paul Siegel
Comment from Carole McAuliffe
Comment from MaryAnna Foskett
Comment from S Mullins
Comment from Diane Balin
Comment from Matthew Perry
Comment from Jill Brothers
Comment from Laurel Temple
Comment from LEANNE MACIAS
Comment from Nadia Herrera
Comment from Donna Austin
Comment from Donna Leavitt
Comment from doug krause
Comment from Deborah Perrero
Comment from Bea Shemberg
Comment from David Meade

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0551
NOAA-NMFS-2020-0031-DRAFT-0552
NOAA-NMFS-2020-0031-DRAFT-0553
NOAA-NMFS-2020-0031-DRAFT-0554
NOAA-NMFS-2020-0031-DRAFT-0555
NOAA-NMFS-2020-0031-DRAFT-0556
NOAA-NMFS-2020-0031-DRAFT-0557
NOAA-NMFS-2020-0031-DRAFT-0558
NOAA-NMFS-2020-0031-DRAFT-0559
NOAA-NMFS-2020-0031-DRAFT-0560
NOAA-NMFS-2020-0031-DRAFT-0561
NOAA-NMFS-2020-0031-DRAFT-0562
NOAA-NMFS-2020-0031-DRAFT-0563
NOAA-NMFS-2020-0031-DRAFT-0564
NOAA-NMFS-2020-0031-DRAFT-0565
NOAA-NMFS-2020-0031-DRAFT-0566
NOAA-NMFS-2020-0031-DRAFT-0567
NOAA-NMFS-2020-0031-DRAFT-0568
NOAA-NMFS-2020-0031-DRAFT-0569
NOAA-NMFS-2020-0031-DRAFT-0570
NOAA-NMFS-2020-0031-DRAFT-0571
NOAA-NMFS-2020-0031-DRAFT-0572
NOAA-NMFS-2020-0031-DRAFT-0573
NOAA-NMFS-2020-0031-DRAFT-0574
NOAA-NMFS-2020-0031-DRAFT-0575
NOAA-NMFS-2020-0031-DRAFT-0576
NOAA-NMFS-2020-0031-DRAFT-0577
NOAA-NMFS-2020-0031-DRAFT-0578
NOAA-NMFS-2020-0031-DRAFT-0579
NOAA-NMFS-2020-0031-DRAFT-0580
NOAA-NMFS-2020-0031-DRAFT-0581
NOAA-NMFS-2020-0031-DRAFT-0582
NOAA-NMFS-2020-0031-DRAFT-0583
NOAA-NMFS-2020-0031-DRAFT-0584
NOAA-NMFS-2020-0031-DRAFT-0585
NOAA-NMFS-2020-0031-DRAFT-0586
NOAA-NMFS-2020-0031-DRAFT-0587
NOAA-NMFS-2020-0031-DRAFT-0588
NOAA-NMFS-2020-0031-DRAFT-0589
NOAA-NMFS-2020-0031-DRAFT-0590
NOAA-NMFS-2020-0031-DRAFT-0591

Comment from Ron Baker
Comment from Selene Seltzer
Comment from Max Salt
Comment from Kristin dubovsky
Comment from Patricia Dishman
Comment from Carlos Acosta
Comment from Andrea Albu
Comment from Wendie Lash
Comment from John Lynch
Comment from Gary Hull
Comment from Jackie Lunz
Comment from Sissi Asperti
Comment from Nancy Breslin
Comment from Rochelle Cohen
Comment from Virginia Carton
Comment from Robert Vasiluth
Comment from Elana Eli
Comment from David Sarricks
Comment from Lucille Thibodeau
Comment from Bill Holt
Comment from Theresa Johnson
Comment from Pati Jio
Comment from Lisa Hoch
Comment from Maria Mutter
Comment from Debra Brooks
Comment from Mark Hammond
Comment from Bryan Smith
Comment from Peter O'Hara
Comment from steven rule
Comment from Walt Luerken
Comment from Shannon Jacobs
Comment from Daniel Kurz
Comment from tj bolduc
Comment from Stephen Pittman
Comment from La Standridge
Comment from Carol Whitehurst
Comment from Louis Fischer
Comment from Susanne Groenendaal
Comment from Stephanie Huntington
Comment from Marnie Gaede
Comment from Kelly Grogan

01/25/2021
01/25/2021
01/25/2021
01/25/2021
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01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021

NOAA-NMFS-2020-0031-DRAFT-5590
NOAA-NMFS-2020-0031-DRAFT-5591
NOAA-NMFS-2020-0031-DRAFT-5592
NOAA-NMFS-2020-0031-DRAFT-5593
NOAA-NMFS-2020-0031-DRAFT-5594
NOAA-NMFS-2020-0031-DRAFT-5595
NOAA-NMFS-2020-0031-DRAFT-5596
NOAA-NMFS-2020-0031-DRAFT-5597
NOAA-NMFS-2020-0031-DRAFT-5598
NOAA-NMFS-2020-0031-DRAFT-5599
NOAA-NMFS-2020-0031-DRAFT-5600
NOAA-NMFS-2020-0031-DRAFT-5601
NOAA-NMFS-2020-0031-DRAFT-5603
NOAA-NMFS-2020-0031-DRAFT-5604
NOAA-NMFS-2020-0031-DRAFT-5605
NOAA-NMFS-2020-0031-DRAFT-5606
NOAA-NMFS-2020-0031-DRAFT-5607
NOAA-NMFS-2020-0031-DRAFT-5608
NOAA-NMFS-2020-0031-DRAFT-5609
NOAA-NMFS-2020-0031-DRAFT-5610
NOAA-NMFS-2020-0031-DRAFT-5611
NOAA-NMFS-2020-0031-DRAFT-5612
NOAA-NMFS-2020-0031-DRAFT-5613
NOAA-NMFS-2020-0031-DRAFT-5614
NOAA-NMFS-2020-0031-DRAFT-5615
NOAA-NMFS-2020-0031-DRAFT-5616
NOAA-NMFS-2020-0031-DRAFT-5617
NOAA-NMFS-2020-0031-DRAFT-5618
NOAA-NMFS-2020-0031-DRAFT-5619
NOAA-NMFS-2020-0031-DRAFT-5620
NOAA-NMFS-2020-0031-DRAFT-5621
NOAA-NMFS-2020-0031-DRAFT-5622
NOAA-NMFS-2020-0031-DRAFT-5623
NOAA-NMFS-2020-0031-DRAFT-5624
NOAA-NMFS-2020-0031-DRAFT-5625
NOAA-NMFS-2020-0031-DRAFT-5626
NOAA-NMFS-2020-0031-DRAFT-5627
NOAA-NMFS-2020-0031-DRAFT-5628
NOAA-NMFS-2020-0031-DRAFT-5629
NOAA-NMFS-2020-0031-DRAFT-5630
NOAA-NMFS-2020-0031-DRAFT-5631

Comment from Dietlinde Wolf
Comment from Elizabeth Ashby
Comment from Eva Landeo
Comment from Elizabeth Cherubin
Comment from Eric Griffith
Comment from Ellie McGuire
Comment from Elizabeth Jonach
Comment from Eric Fournier
Comment from eileen juric
Comment from Liz Fuekd
Comment from elaine sloan
Comment from Elana Rose
Comment from Louis Fischer
Comment from Elizabeth Watts
Comment from elizabeth mcmahon
Comment from Ellen Callahan
Comment from Kristen Elmes
Comment from Elaine Longo
Comment from Shelia Ellis
Comment from Judith Embry
Comment from Elizabeth Melo
Comment from Zoe Nelson
Comment from Bonnie Jerro
Comment from Mimi Gertler
Comment from Emily Sagovac
Comment from Emily Dickinson-Adams
Comment from E. Neal
Comment from Arlene Macintosh
Comment from Marty Cowden
Comment from Et Naji
Comment from Tom Anderson
Comment from Liz Garratt
Comment from Elizabeth Garratt
Comment from Evangeline Soter
Comment from Karen Estel
Comment from Evelyn Coltman
Comment from ellen wertheim
Comment from Evangeline Tarver
Comment from Patrick Beaudry
Comment from Jane Fallis
Comment from Fanny Whitman

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0592
NOAA-NMFS-2020-0031-DRAFT-0593
NOAA-NMFS-2020-0031-DRAFT-0594
NOAA-NMFS-2020-0031-DRAFT-0595
NOAA-NMFS-2020-0031-DRAFT-0596
NOAA-NMFS-2020-0031-DRAFT-0597
NOAA-NMFS-2020-0031-DRAFT-0598
NOAA-NMFS-2020-0031-DRAFT-0599
NOAA-NMFS-2020-0031-DRAFT-0600
NOAA-NMFS-2020-0031-DRAFT-0601
NOAA-NMFS-2020-0031-DRAFT-0602
NOAA-NMFS-2020-0031-DRAFT-0603
NOAA-NMFS-2020-0031-DRAFT-0604
NOAA-NMFS-2020-0031-DRAFT-0605
NOAA-NMFS-2020-0031-DRAFT-0606
NOAA-NMFS-2020-0031-DRAFT-0607
NOAA-NMFS-2020-0031-DRAFT-0608
NOAA-NMFS-2020-0031-DRAFT-0609
NOAA-NMFS-2020-0031-DRAFT-0610
NOAA-NMFS-2020-0031-DRAFT-0611
NOAA-NMFS-2020-0031-DRAFT-0612
NOAA-NMFS-2020-0031-DRAFT-0613
NOAA-NMFS-2020-0031-DRAFT-0614
NOAA-NMFS-2020-0031-DRAFT-0615
NOAA-NMFS-2020-0031-DRAFT-0616
NOAA-NMFS-2020-0031-DRAFT-0617
NOAA-NMFS-2020-0031-DRAFT-0618
NOAA-NMFS-2020-0031-DRAFT-0619
NOAA-NMFS-2020-0031-DRAFT-0620
NOAA-NMFS-2020-0031-DRAFT-0621
NOAA-NMFS-2020-0031-DRAFT-0622
NOAA-NMFS-2020-0031-DRAFT-0623
NOAA-NMFS-2020-0031-DRAFT-0624
NOAA-NMFS-2020-0031-DRAFT-0625
NOAA-NMFS-2020-0031-DRAFT-0626
NOAA-NMFS-2020-0031-DRAFT-0627
NOAA-NMFS-2020-0031-DRAFT-0628
NOAA-NMFS-2020-0031-DRAFT-0629
NOAA-NMFS-2020-0031-DRAFT-0630
NOAA-NMFS-2020-0031-DRAFT-0631
NOAA-NMFS-2020-0031-DRAFT-0632

Comment from terese rule
Comment from Clyde Willson
Comment from Joanne Marcus
Comment from Reuben Wade
Comment from David Jones
Comment from Alan Bromborsky
Comment from Peter Bailey
Comment from Gail Ohara
Comment from Steven Rule
Comment from CARL LUHRING
Comment from Judith Beltz
Comment from J.L. Evans
Comment from Cheryl Berkey
Comment from a w
Comment from Eric Lane
Comment from Cynthia McKeen
Comment from Drew Pelton
Comment from Fran Seldin
Comment from Patricia Lauer
Comment from Marianne Bentley
Comment from Dirk Kortz
Comment from Robert Tinsley
Comment from William Gordon
Comment from Barbara Rogers
Comment from Diane Arnal
Comment from Sharon Mora
Comment from Andrew Cross
Comment from Tobe Martin
Comment from Joan Mccoy
Comment from Tonia Howe
Comment from Patrick Lynch
Comment from Mark Messing
Comment from Tracey Katsouros
Comment from Vincent Rusch
Comment from Dacia Murphy
Comment from donna roddvik
Comment from johanna bensalel
Comment from Philip Louie
Comment from anaundda elijah
Comment from MARK SONDERSKOV
Comment from Bruce Hlodnicki

01/25/2021
01/25/2021
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01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021

NOAA-NMFS-2020-0031-DRAFT-5632
NOAA-NMFS-2020-0031-DRAFT-5633
NOAA-NMFS-2020-0031-DRAFT-5634
NOAA-NMFS-2020-0031-DRAFT-5635
NOAA-NMFS-2020-0031-DRAFT-5636
NOAA-NMFS-2020-0031-DRAFT-5637
NOAA-NMFS-2020-0031-DRAFT-5638
NOAA-NMFS-2020-0031-DRAFT-5639
NOAA-NMFS-2020-0031-DRAFT-5640
NOAA-NMFS-2020-0031-DRAFT-5641
NOAA-NMFS-2020-0031-DRAFT-5642
NOAA-NMFS-2020-0031-DRAFT-5643
NOAA-NMFS-2020-0031-DRAFT-5644
NOAA-NMFS-2020-0031-DRAFT-5645
NOAA-NMFS-2020-0031-DRAFT-5646
NOAA-NMFS-2020-0031-DRAFT-5647
NOAA-NMFS-2020-0031-DRAFT-5648
NOAA-NMFS-2020-0031-DRAFT-5649
NOAA-NMFS-2020-0031-DRAFT-5650
NOAA-NMFS-2020-0031-DRAFT-5651
NOAA-NMFS-2020-0031-DRAFT-5652
NOAA-NMFS-2020-0031-DRAFT-5653
NOAA-NMFS-2020-0031-DRAFT-5654
NOAA-NMFS-2020-0031-DRAFT-5655
NOAA-NMFS-2020-0031-DRAFT-5656
NOAA-NMFS-2020-0031-DRAFT-5657
NOAA-NMFS-2020-0031-DRAFT-5658
NOAA-NMFS-2020-0031-DRAFT-5659
NOAA-NMFS-2020-0031-DRAFT-5660
NOAA-NMFS-2020-0031-DRAFT-5661
NOAA-NMFS-2020-0031-DRAFT-5662
NOAA-NMFS-2020-0031-DRAFT-5663
NOAA-NMFS-2020-0031-DRAFT-5664
NOAA-NMFS-2020-0031-DRAFT-5665
NOAA-NMFS-2020-0031-DRAFT-5666
NOAA-NMFS-2020-0031-DRAFT-5667
NOAA-NMFS-2020-0031-DRAFT-5668
NOAA-NMFS-2020-0031-DRAFT-5669
NOAA-NMFS-2020-0031-DRAFT-5670
NOAA-NMFS-2020-0031-DRAFT-5671
NOAA-NMFS-2020-0031-DRAFT-5672

Comment from Richard Rizzo
Comment from Karen Lyons kalmenson
Comment from fay forman
Comment from Frances Crocco
Comment from Susan Lowe
Comment from Sonja Plumb
Comment from Fiayo Agbaje
Comment from Edith Kelman
Comment from scott finamore
Comment from ANNE-MARIE FITZGERALD
Comment from Devon Taylor
Comment from Kathy Flocco-McMaster
Comment from Richard Lasseter
Comment from Sharon Fors
Comment from Karin Francis
Comment from Frank Repensek
Comment from Donald Williams
Comment from Gail Flanders
Comment from Gail Richardson
Comment from Debbie McCarthy
Comment from kristin gallanosa
Comment from Gary Thaler
Comment from Melissa Gaskins
Comment from Theresa DeLuca
Comment from George Bilyeu
Comment from Gudrun Dennis
Comment from Annie McCann
Comment from Kenneth Ruby
Comment from Eugene Brusin
Comment from Geneine Payne
Comment from Georgeta Burca
Comment from Janice Le Blanc
Comment from gilbert hall
Comment from Gina Benevento
Comment from Gina Henrichon
Comment from Gilda Levinson
Comment from Gloria Shen
Comment from Elsy Shallman
Comment from Heide Coppotelli
Comment from Amanda Gordon
Comment from Gerry Quintero

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0633
NOAA-NMFS-2020-0031-DRAFT-0634
NOAA-NMFS-2020-0031-DRAFT-0635
NOAA-NMFS-2020-0031-DRAFT-0636
NOAA-NMFS-2020-0031-DRAFT-0637
NOAA-NMFS-2020-0031-DRAFT-0638
NOAA-NMFS-2020-0031-DRAFT-0639
NOAA-NMFS-2020-0031-DRAFT-0640
NOAA-NMFS-2020-0031-DRAFT-0641
NOAA-NMFS-2020-0031-DRAFT-0642
NOAA-NMFS-2020-0031-DRAFT-0643
NOAA-NMFS-2020-0031-DRAFT-0644
NOAA-NMFS-2020-0031-DRAFT-0645
NOAA-NMFS-2020-0031-DRAFT-0646
NOAA-NMFS-2020-0031-DRAFT-0647
NOAA-NMFS-2020-0031-DRAFT-0648
NOAA-NMFS-2020-0031-DRAFT-0649
NOAA-NMFS-2020-0031-DRAFT-0650
NOAA-NMFS-2020-0031-DRAFT-0651
NOAA-NMFS-2020-0031-DRAFT-0652
NOAA-NMFS-2020-0031-DRAFT-0653
NOAA-NMFS-2020-0031-DRAFT-0654
NOAA-NMFS-2020-0031-DRAFT-0655
NOAA-NMFS-2020-0031-DRAFT-0656
NOAA-NMFS-2020-0031-DRAFT-0657
NOAA-NMFS-2020-0031-DRAFT-0658
NOAA-NMFS-2020-0031-DRAFT-0659
NOAA-NMFS-2020-0031-DRAFT-0660
NOAA-NMFS-2020-0031-DRAFT-0661
NOAA-NMFS-2020-0031-DRAFT-0662
NOAA-NMFS-2020-0031-DRAFT-0663
NOAA-NMFS-2020-0031-DRAFT-0664
NOAA-NMFS-2020-0031-DRAFT-0665
NOAA-NMFS-2020-0031-DRAFT-0666
NOAA-NMFS-2020-0031-DRAFT-0667
NOAA-NMFS-2020-0031-DRAFT-0668
NOAA-NMFS-2020-0031-DRAFT-0669
NOAA-NMFS-2020-0031-DRAFT-0670
NOAA-NMFS-2020-0031-DRAFT-0671
NOAA-NMFS-2020-0031-DRAFT-0672
NOAA-NMFS-2020-0031-DRAFT-0673

Comment from Linda Wasserman
Comment from Catherine Quinlog
Comment from Norman Peters
Comment from Jessica Jakubanis
Comment from Deborah Williamson
Comment from Kathleen Houda
Comment from Judith Radovsky
Comment from Michael Tomlinson
Comment from Janet Hellweg
Comment from Heather Cross
Comment from Dorothy Knudson
Comment from Annie Eicher
Comment from Steven Verinis
Comment from Sherri Williams
Comment from Donna Renninger
Comment from Tina Wilson
Comment from Patrick Mitchell
Comment from Barbara Gerhart
Comment from Virginia Breza
Comment from Patricia Palermo
Comment from Branstetter Kevin
Comment from Mark Gowan
Comment from Alyson Winters
Comment from Bridget Wyatt
Comment from Charlie Bergstedt
Comment from Nanette cook
Comment from Kathleen Gallagher
Comment from Jill Mulato
Comment from Jill Alibrandi
Comment from Lorelei Edrosa
Comment from James van Maanen
Comment from Sabrina Sarne
Comment from Chris Moore
Comment from George Schneider
Comment from Jennifer Finley
Comment from Brian Gorra
Comment from Lois White
Comment from Thomas Hart
Comment from Valerie Conrad
Comment from Teresa Mays
Comment from Helen Navaline

01/25/2021
01/25/2021
01/25/2021
01/25/2021
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01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021

NOAA-NMFS-2020-0031-DRAFT-5673
NOAA-NMFS-2020-0031-DRAFT-5674
NOAA-NMFS-2020-0031-DRAFT-5675
NOAA-NMFS-2020-0031-DRAFT-5676
NOAA-NMFS-2020-0031-DRAFT-5677
NOAA-NMFS-2020-0031-DRAFT-5678
NOAA-NMFS-2020-0031-DRAFT-5679
NOAA-NMFS-2020-0031-DRAFT-5680
NOAA-NMFS-2020-0031-DRAFT-5681
NOAA-NMFS-2020-0031-DRAFT-5682
NOAA-NMFS-2020-0031-DRAFT-5683
NOAA-NMFS-2020-0031-DRAFT-5684
NOAA-NMFS-2020-0031-DRAFT-5685
NOAA-NMFS-2020-0031-DRAFT-5688
NOAA-NMFS-2020-0031-DRAFT-5689
NOAA-NMFS-2020-0031-DRAFT-5690
NOAA-NMFS-2020-0031-DRAFT-5692
NOAA-NMFS-2020-0031-DRAFT-5693
NOAA-NMFS-2020-0031-DRAFT-5694
NOAA-NMFS-2020-0031-DRAFT-5695
NOAA-NMFS-2020-0031-DRAFT-5696
NOAA-NMFS-2020-0031-DRAFT-5698
NOAA-NMFS-2020-0031-DRAFT-5699
NOAA-NMFS-2020-0031-DRAFT-5700
NOAA-NMFS-2020-0031-DRAFT-5701
NOAA-NMFS-2020-0031-DRAFT-5702
NOAA-NMFS-2020-0031-DRAFT-5703
NOAA-NMFS-2020-0031-DRAFT-5704
NOAA-NMFS-2020-0031-DRAFT-5705
NOAA-NMFS-2020-0031-DRAFT-5706
NOAA-NMFS-2020-0031-DRAFT-5707
NOAA-NMFS-2020-0031-DRAFT-5708
NOAA-NMFS-2020-0031-DRAFT-5709
NOAA-NMFS-2020-0031-DRAFT-5710
NOAA-NMFS-2020-0031-DRAFT-5711
NOAA-NMFS-2020-0031-DRAFT-5712
NOAA-NMFS-2020-0031-DRAFT-5713
NOAA-NMFS-2020-0031-DRAFT-5714
NOAA-NMFS-2020-0031-DRAFT-5715
NOAA-NMFS-2020-0031-DRAFT-5716
NOAA-NMFS-2020-0031-DRAFT-5717

Comment from Graham Joy
Comment from Joan Tokarz
Comment from Gregory Esteve
Comment from Greg Gazzana
Comment from George Stradtman
Comment from Greg Strauss
Comment from Christine Norman
Comment from J Grause
Comment from Gregory Esteve
Comment from Hilary Aquino
Comment from H. Rosenberg
Comment from Hamilton Regen
Comment from Bailey Salerno
Comment from Elizabeth Fahy
Comment from Malia Libby
Comment from Catherine DeGraw
Comment from Karen Burton
Comment from Jane Miller
Comment from Pamella Neely
Comment from Deborah Walden
Comment from Sian McDonald
Comment from Cindy Tucker
Comment from Lynne Hughes
Comment from Sandy DAmbrosio
Comment from Heather Marx-Zavattero
Comment from Helen Reynolds
Comment from Karol Hickman
Comment from Hilary McGregor
Comment from willie hinze
Comment from Howard Chezar
Comment from Holly Bevagna
Comment from Sherry Holt
Comment from Susan Porter
Comment from HENRY MILLER
Comment from Lisa Barth
Comment from B. R. Lemonik
Comment from Lorraine Whispell-Gonzalez
Comment from Janice Banks
Comment from John Leonard
Comment from Jaxob Pendlebury
Comment from J.A. McSwain

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0674
NOAA-NMFS-2020-0031-DRAFT-0675
NOAA-NMFS-2020-0031-DRAFT-0676
NOAA-NMFS-2020-0031-DRAFT-0677
NOAA-NMFS-2020-0031-DRAFT-0678
NOAA-NMFS-2020-0031-DRAFT-0679
NOAA-NMFS-2020-0031-DRAFT-0680
NOAA-NMFS-2020-0031-DRAFT-0681
NOAA-NMFS-2020-0031-DRAFT-0682
NOAA-NMFS-2020-0031-DRAFT-0683
NOAA-NMFS-2020-0031-DRAFT-0684
NOAA-NMFS-2020-0031-DRAFT-0685
NOAA-NMFS-2020-0031-DRAFT-0686
NOAA-NMFS-2020-0031-DRAFT-0687
NOAA-NMFS-2020-0031-DRAFT-0688
NOAA-NMFS-2020-0031-DRAFT-0689
NOAA-NMFS-2020-0031-DRAFT-0690
NOAA-NMFS-2020-0031-DRAFT-0691
NOAA-NMFS-2020-0031-DRAFT-0692
NOAA-NMFS-2020-0031-DRAFT-0693
NOAA-NMFS-2020-0031-DRAFT-0694
NOAA-NMFS-2020-0031-DRAFT-0695
NOAA-NMFS-2020-0031-DRAFT-0696
NOAA-NMFS-2020-0031-DRAFT-0697
NOAA-NMFS-2020-0031-DRAFT-0698
NOAA-NMFS-2020-0031-DRAFT-0699
NOAA-NMFS-2020-0031-DRAFT-0700
NOAA-NMFS-2020-0031-DRAFT-0701
NOAA-NMFS-2020-0031-DRAFT-0702
NOAA-NMFS-2020-0031-DRAFT-0703
NOAA-NMFS-2020-0031-DRAFT-0704
NOAA-NMFS-2020-0031-DRAFT-0705
NOAA-NMFS-2020-0031-DRAFT-0706
NOAA-NMFS-2020-0031-DRAFT-0707
NOAA-NMFS-2020-0031-DRAFT-0708
NOAA-NMFS-2020-0031-DRAFT-0709
NOAA-NMFS-2020-0031-DRAFT-0710
NOAA-NMFS-2020-0031-DRAFT-0711
NOAA-NMFS-2020-0031-DRAFT-0712
NOAA-NMFS-2020-0031-DRAFT-0713
NOAA-NMFS-2020-0031-DRAFT-0714

Comment from Carolyn Johnson
Comment from Jean Zanow
Comment from Tonya Michel
Comment from Michael Freedman
Comment from Maryam faresh
Comment from Heather Denney
Comment from Paul Bickmore
Comment from Kelly Brannigan
Comment from Hunter Klapperich
Comment from Gary LaMaster
Comment from Katharine Odell
Comment from Todd Milligan
Comment from Barbara Beierl
Comment from Thomas Bailey
Comment from Roxy Gray
Comment from Peter Farris
Comment from Gerald Brookman
Comment from Linda Horn
Comment from Vicki Witte
Comment from Patti Barnes
Comment from Charlotte Reichert
Comment from Nancy Loftin
Comment from Patrick Senkel
Comment from Anatole Olczak
Comment from Rachel Cox
Comment from Claudia Martins
Comment from Katherine simon
Comment from denise malcher
Comment from Nancy Johnson
Comment from Cari Brookbanks
Comment from Ellen Fleishman
Comment from Constance Franklin
Comment from Christopher Tumolo
Comment from Lin Provost
Comment from Michele Osland
Comment from Gloria Picchetti
Comment from Ralph Guay
Comment from L. Adams
Comment from Deborah Spencer
Comment from Ken Bosch
Comment from Robert Nesbit

01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/25/2021
01/26/2021
01/26/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5718
NOAA-NMFS-2020-0031-DRAFT-5719
NOAA-NMFS-2020-0031-DRAFT-5720
NOAA-NMFS-2020-0031-DRAFT-5721
NOAA-NMFS-2020-0031-DRAFT-5722
NOAA-NMFS-2020-0031-DRAFT-5723
NOAA-NMFS-2020-0031-DRAFT-5724
NOAA-NMFS-2020-0031-DRAFT-5725
NOAA-NMFS-2020-0031-DRAFT-5726
NOAA-NMFS-2020-0031-DRAFT-5727
NOAA-NMFS-2020-0031-DRAFT-5728
NOAA-NMFS-2020-0031-DRAFT-5729
NOAA-NMFS-2020-0031-DRAFT-5730
NOAA-NMFS-2020-0031-DRAFT-5731
NOAA-NMFS-2020-0031-DRAFT-5733
NOAA-NMFS-2020-0031-DRAFT-5734
NOAA-NMFS-2020-0031-DRAFT-5739
NOAA-NMFS-2020-0031-DRAFT-5740
NOAA-NMFS-2020-0031-DRAFT-5741
NOAA-NMFS-2020-0031-DRAFT-5742
NOAA-NMFS-2020-0031-DRAFT-5743
NOAA-NMFS-2020-0031-DRAFT-5744
NOAA-NMFS-2020-0031-DRAFT-5745
NOAA-NMFS-2020-0031-DRAFT-5746
NOAA-NMFS-2020-0031-DRAFT-5747
NOAA-NMFS-2020-0031-DRAFT-5748
NOAA-NMFS-2020-0031-DRAFT-5749
NOAA-NMFS-2020-0031-DRAFT-5750
NOAA-NMFS-2020-0031-DRAFT-5751
NOAA-NMFS-2020-0031-DRAFT-5752
NOAA-NMFS-2020-0031-DRAFT-5753
NOAA-NMFS-2020-0031-DRAFT-5754
NOAA-NMFS-2020-0031-DRAFT-5755
NOAA-NMFS-2020-0031-DRAFT-5756
NOAA-NMFS-2020-0031-DRAFT-5757
NOAA-NMFS-2020-0031-DRAFT-5758
NOAA-NMFS-2020-0031-DRAFT-5759
NOAA-NMFS-2020-0031-DRAFT-5760
NOAA-NMFS-2020-0031-DRAFT-5761
NOAA-NMFS-2020-0031-DRAFT-5762
NOAA-NMFS-2020-0031-DRAFT-5763

Comment from James Mejuto
Comment from Jamie Thomas
Comment from Jan Axelrod RN
Comment from Jane Alexander
Comment from Janell Copello
Comment from Jan Emerson
Comment from Janine Vinton
Comment from Jared Cornelia
Comment from Jasmina Georgovska
Comment from Jay Rose
Comment from Jayne Arrowood
Comment from Dennis DiTullio
Comment from Dr John Brooks
Comment from Dionne Toye
Comment from Barbara MacDonald
Comment from Tina Thacker
Comment from Michael Evans
Comment from Adrienne Kellogg
Comment from Danika Hyssong
Comment from patricia field
Comment from Cynthia Ballard
Comment from Ester Fuchs
Comment from Joseph Leedy
Comment from Marilyn Hawrylik
Comment from Margaret Carter
Comment from lana gurney
Comment from steve Lucas
Comment from steve lucas
Comment from JULIEN JEGOU
Comment from VIRGINIA BARBER
Comment from Sarah Meyers
Comment from Julia Hartman
Comment from Carl Oerke
Comment from Patricia Soteropoulos
Comment from John slupski
Comment from Dorothea Leicher
Comment from sandra hazzard
Comment from Adam D'Onofrio
Comment from Dawn Lutsky
Comment from Jessica Weber
Comment from Ann Heinrich

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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0715
NOAA-NMFS-2020-0031-DRAFT-0716
NOAA-NMFS-2020-0031-DRAFT-0717
NOAA-NMFS-2020-0031-DRAFT-0718
NOAA-NMFS-2020-0031-DRAFT-0719
NOAA-NMFS-2020-0031-DRAFT-0720
NOAA-NMFS-2020-0031-DRAFT-0721
NOAA-NMFS-2020-0031-DRAFT-0722
NOAA-NMFS-2020-0031-DRAFT-0723
NOAA-NMFS-2020-0031-DRAFT-0724
NOAA-NMFS-2020-0031-DRAFT-0725
NOAA-NMFS-2020-0031-DRAFT-0726
NOAA-NMFS-2020-0031-DRAFT-0727
NOAA-NMFS-2020-0031-DRAFT-0728
NOAA-NMFS-2020-0031-DRAFT-0729
NOAA-NMFS-2020-0031-DRAFT-0730
NOAA-NMFS-2020-0031-DRAFT-0731
NOAA-NMFS-2020-0031-DRAFT-0732
NOAA-NMFS-2020-0031-DRAFT-0733
NOAA-NMFS-2020-0031-DRAFT-0734
NOAA-NMFS-2020-0031-DRAFT-0735
NOAA-NMFS-2020-0031-DRAFT-0736
NOAA-NMFS-2020-0031-DRAFT-0737
NOAA-NMFS-2020-0031-DRAFT-0738
NOAA-NMFS-2020-0031-DRAFT-0739
NOAA-NMFS-2020-0031-DRAFT-0740
NOAA-NMFS-2020-0031-DRAFT-0741
NOAA-NMFS-2020-0031-DRAFT-0742
NOAA-NMFS-2020-0031-DRAFT-0743
NOAA-NMFS-2020-0031-DRAFT-0744
NOAA-NMFS-2020-0031-DRAFT-0745
NOAA-NMFS-2020-0031-DRAFT-0746
NOAA-NMFS-2020-0031-DRAFT-0747
NOAA-NMFS-2020-0031-DRAFT-0748
NOAA-NMFS-2020-0031-DRAFT-0749
NOAA-NMFS-2020-0031-DRAFT-0750
NOAA-NMFS-2020-0031-DRAFT-0751
NOAA-NMFS-2020-0031-DRAFT-0752
NOAA-NMFS-2020-0031-DRAFT-0753
NOAA-NMFS-2020-0031-DRAFT-0754
NOAA-NMFS-2020-0031-DRAFT-0755

Comment from Kathleen Roche
Comment from Nathaniel Hammerli
Comment from Harriett Pooler
Comment from Ellen Homsey
Comment from Annie Caton
Comment from Ann Downey
Comment from Sherri Nourse
Comment from Amanda collins
Comment from Timothy Gaudin
Comment from Sherry Macias
Comment from Cathy Wootan
Comment from Gloria Morrison
Comment from Corinna Hasbach
Comment from Michele Vaillancourt
Comment from Eric Steinberg
Comment from Adriana Bernstein
Comment from Mark Trumbull
Comment from Dennis Ledden
Comment from Shirley Jackson
Comment from Lara Kramer-Smith
Comment from James Moss
Comment from Jessie Kilguss
Comment from Judith Anderson
Comment from Jon Olson
Comment from Joe Buhowsky
Comment from Robin Kory
Comment from Laura Wilder
Comment from Vincent Geiger
Comment from Brad Walrod
Comment from M Sambuchino
Comment from MARGARET OROURKE
Comment from Margaret Blakley
Comment from Sandra Speicher
Comment from Ralph Anderson
Comment from Rachel Morr
Comment from James Talbot
Comment from Michelle Mehlhorn
Comment from Georgia Locker
Comment from Chuck Jesse
Comment from Howard Petlack
Comment from George Baschiera

01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5764
NOAA-NMFS-2020-0031-DRAFT-5765
NOAA-NMFS-2020-0031-DRAFT-5766
NOAA-NMFS-2020-0031-DRAFT-5767
NOAA-NMFS-2020-0031-DRAFT-5768
NOAA-NMFS-2020-0031-DRAFT-5769
NOAA-NMFS-2020-0031-DRAFT-5770
NOAA-NMFS-2020-0031-DRAFT-5771
NOAA-NMFS-2020-0031-DRAFT-5772
NOAA-NMFS-2020-0031-DRAFT-5773
NOAA-NMFS-2020-0031-DRAFT-5774
NOAA-NMFS-2020-0031-DRAFT-5775
NOAA-NMFS-2020-0031-DRAFT-5776
NOAA-NMFS-2020-0031-DRAFT-5777
NOAA-NMFS-2020-0031-DRAFT-5778
NOAA-NMFS-2020-0031-DRAFT-5779
NOAA-NMFS-2020-0031-DRAFT-5780
NOAA-NMFS-2020-0031-DRAFT-5781
NOAA-NMFS-2020-0031-DRAFT-5782
NOAA-NMFS-2020-0031-DRAFT-5783
NOAA-NMFS-2020-0031-DRAFT-5784
NOAA-NMFS-2020-0031-DRAFT-5785
NOAA-NMFS-2020-0031-DRAFT-5786
NOAA-NMFS-2020-0031-DRAFT-5787
NOAA-NMFS-2020-0031-DRAFT-5788
NOAA-NMFS-2020-0031-DRAFT-5789
NOAA-NMFS-2020-0031-DRAFT-5790
NOAA-NMFS-2020-0031-DRAFT-5791
NOAA-NMFS-2020-0031-DRAFT-5792
NOAA-NMFS-2020-0031-DRAFT-5793
NOAA-NMFS-2020-0031-DRAFT-5794
NOAA-NMFS-2020-0031-DRAFT-5795
NOAA-NMFS-2020-0031-DRAFT-5796
NOAA-NMFS-2020-0031-DRAFT-5797
NOAA-NMFS-2020-0031-DRAFT-5798
NOAA-NMFS-2020-0031-DRAFT-5799
NOAA-NMFS-2020-0031-DRAFT-5800
NOAA-NMFS-2020-0031-DRAFT-5801
NOAA-NMFS-2020-0031-DRAFT-5802
NOAA-NMFS-2020-0031-DRAFT-5803
NOAA-NMFS-2020-0031-DRAFT-5804

Comment from Wendy Daniel
Comment from Susan Crawford
Comment from Tim Walsh
Comment from Joanne Robrahn
Comment from M Stanley
Comment from Melvin Hoot
Comment from Jt Hyland
Comment from Richard Crosland
Comment from Karen Paul
Comment from Donna Franklin
Comment from Gwendolyn Sky
Comment from Theodore Steck
Comment from Joseph Gordon
Comment from Art Shervs
Comment from Marilyn Guterman
Comment from RAV FREIDEL
Comment from Mills Tandy
Comment from Maureen Swiss
Comment from Virginia Freeland
Comment from Catherine Bushueff
Comment from Michael Nelson
Comment from Christina Jackson
Comment from Mark Porter
Comment from James Togashi
Comment from Irene Radsack
Comment from Robert Thomson
Comment from Theodore Brazeau
Comment from Richard Ruscitto
Comment from Elena Colicelli
Comment from Marian Simmons
Comment from Heather Holly
Comment from Patricia Risso
Comment from Christine Joslyn
Comment from Shari Peto
Comment from Mary Fudeman
Comment from Brian Amos
Comment from marilyn brock
Comment from Ellen Smith
Comment from Jeffrey Teas
Comment from Karen Osgood
Comment from Phyllis Erwin

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0756
NOAA-NMFS-2020-0031-DRAFT-0757
NOAA-NMFS-2020-0031-DRAFT-0758
NOAA-NMFS-2020-0031-DRAFT-0759
NOAA-NMFS-2020-0031-DRAFT-0760
NOAA-NMFS-2020-0031-DRAFT-0761
NOAA-NMFS-2020-0031-DRAFT-0762
NOAA-NMFS-2020-0031-DRAFT-0763
NOAA-NMFS-2020-0031-DRAFT-0764
NOAA-NMFS-2020-0031-DRAFT-0765
NOAA-NMFS-2020-0031-DRAFT-0766
NOAA-NMFS-2020-0031-DRAFT-0767
NOAA-NMFS-2020-0031-DRAFT-0768
NOAA-NMFS-2020-0031-DRAFT-0769
NOAA-NMFS-2020-0031-DRAFT-0770
NOAA-NMFS-2020-0031-DRAFT-0771
NOAA-NMFS-2020-0031-DRAFT-0772
NOAA-NMFS-2020-0031-DRAFT-0773
NOAA-NMFS-2020-0031-DRAFT-0774
NOAA-NMFS-2020-0031-DRAFT-0775
NOAA-NMFS-2020-0031-DRAFT-0776
NOAA-NMFS-2020-0031-DRAFT-0777
NOAA-NMFS-2020-0031-DRAFT-0778
NOAA-NMFS-2020-0031-DRAFT-0779
NOAA-NMFS-2020-0031-DRAFT-0780
NOAA-NMFS-2020-0031-DRAFT-0781
NOAA-NMFS-2020-0031-DRAFT-0782
NOAA-NMFS-2020-0031-DRAFT-0783
NOAA-NMFS-2020-0031-DRAFT-0784
NOAA-NMFS-2020-0031-DRAFT-0785
NOAA-NMFS-2020-0031-DRAFT-0786
NOAA-NMFS-2020-0031-DRAFT-0787
NOAA-NMFS-2020-0031-DRAFT-0788
NOAA-NMFS-2020-0031-DRAFT-0789
NOAA-NMFS-2020-0031-DRAFT-0790
NOAA-NMFS-2020-0031-DRAFT-0791
NOAA-NMFS-2020-0031-DRAFT-0792
NOAA-NMFS-2020-0031-DRAFT-0793
NOAA-NMFS-2020-0031-DRAFT-0794
NOAA-NMFS-2020-0031-DRAFT-0795
NOAA-NMFS-2020-0031-DRAFT-0796

Comment from Bruce Blum
Comment from Donna Mulvey
Comment from Daniel Figueroa
Comment from Celia O'Kelley
Comment from Susan Thompson
Comment from robin wright
Comment from Judy White
Comment from Wendy Brown
Comment from Fay Lupacchini
Comment from Kathleen Lewis
Comment from Jennifer Abernathy
Comment from David Landskron
Comment from Michael Sixtus
Comment from Elena Mavros
Comment from Susan Bradshaw
Comment from Bob P.
Comment from Joseph Corbett
Comment from Patricia Kromer-Parsons
Comment from Barbara Giorgio
Comment from Susan Turney
Comment from J.M. Hiatt
Comment from margaret donovan
Comment from Terry Gunning
Comment from Anne Aylor
Comment from Danette Haley
Comment from Lynn arnheim
Comment from Rich Panter
Comment from Robert Rivera
Comment from Pamela Esser
Comment from Lynn Lang
Comment from GAIL SORENSEN
Comment from Louis Rodemann
Comment from John charbonneau
Comment from Sandra Dal Cais
Comment from Richard Reichmann
Comment from ed sobey
Comment from Sally Jennings
Comment from Dawson Pan
Comment from Dorothy Hatch
Comment from Dana Linder
Comment from Terry Carlin

01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5805
NOAA-NMFS-2020-0031-DRAFT-5806
NOAA-NMFS-2020-0031-DRAFT-5807
NOAA-NMFS-2020-0031-DRAFT-5808
NOAA-NMFS-2020-0031-DRAFT-5809
NOAA-NMFS-2020-0031-DRAFT-5810
NOAA-NMFS-2020-0031-DRAFT-5811
NOAA-NMFS-2020-0031-DRAFT-5812
NOAA-NMFS-2020-0031-DRAFT-5813
NOAA-NMFS-2020-0031-DRAFT-5814
NOAA-NMFS-2020-0031-DRAFT-5815
NOAA-NMFS-2020-0031-DRAFT-5816
NOAA-NMFS-2020-0031-DRAFT-5817
NOAA-NMFS-2020-0031-DRAFT-5818
NOAA-NMFS-2020-0031-DRAFT-5819
NOAA-NMFS-2020-0031-DRAFT-5820
NOAA-NMFS-2020-0031-DRAFT-5821
NOAA-NMFS-2020-0031-DRAFT-5822
NOAA-NMFS-2020-0031-DRAFT-5823
NOAA-NMFS-2020-0031-DRAFT-5824
NOAA-NMFS-2020-0031-DRAFT-5825
NOAA-NMFS-2020-0031-DRAFT-5827
NOAA-NMFS-2020-0031-DRAFT-5828
NOAA-NMFS-2020-0031-DRAFT-5829
NOAA-NMFS-2020-0031-DRAFT-5830
NOAA-NMFS-2020-0031-DRAFT-5831
NOAA-NMFS-2020-0031-DRAFT-5832
NOAA-NMFS-2020-0031-DRAFT-5833
NOAA-NMFS-2020-0031-DRAFT-5834
NOAA-NMFS-2020-0031-DRAFT-5835
NOAA-NMFS-2020-0031-DRAFT-5836
NOAA-NMFS-2020-0031-DRAFT-5837
NOAA-NMFS-2020-0031-DRAFT-5838
NOAA-NMFS-2020-0031-DRAFT-5839
NOAA-NMFS-2020-0031-DRAFT-5840
NOAA-NMFS-2020-0031-DRAFT-5841
NOAA-NMFS-2020-0031-DRAFT-5842
NOAA-NMFS-2020-0031-DRAFT-5843
NOAA-NMFS-2020-0031-DRAFT-5844
NOAA-NMFS-2020-0031-DRAFT-5845
NOAA-NMFS-2020-0031-DRAFT-5846

Comment from Paula Morgan
Comment from Amanda Reid
Comment from Meghan Tracy
Comment from Stephen Samuels
Comment from Alan Coulter
Comment from Bethanne Portala
Comment from Mariko wheeler
Comment from Ruth Fernandez
Comment from Lakota Crowchild
Comment from John Moellers
Comment from allison alberts
Comment from Margie Hancock
Comment from Elizabeth Flanigan
Comment from Carole Klumb
Comment from Cammy Colton
Comment from Ann Miller
Comment from B.J. Herbison
Comment from mattie goodwin
Comment from Eric Abrams
Comment from Brenda Cumpston
Comment from Peggy Jakopak
Comment from Sarah Lerda
Comment from Scott Gibson
Comment from Peggy Patti
Comment from Chad Armknecht
Comment from Sandra Materi
Comment from Frederick Glazier
Comment from Judith Foran
Comment from Vicki Perizzolo
Comment from randy sailer
Comment from Deirdre Morris
Comment from Laurie LaGoe
Comment from heidi Ahlstrand
Comment from William Shearer
Comment from Gian Morresi
Comment from Steve Kline
Comment from Ron Season
Comment from Kimberly Vaz
Comment from Tracey Kleber
Comment from Siobhan Miura
Comment from Wendy Connelly

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0797
NOAA-NMFS-2020-0031-DRAFT-0798
NOAA-NMFS-2020-0031-DRAFT-0799
NOAA-NMFS-2020-0031-DRAFT-0800
NOAA-NMFS-2020-0031-DRAFT-0801
NOAA-NMFS-2020-0031-DRAFT-0802
NOAA-NMFS-2020-0031-DRAFT-0803
NOAA-NMFS-2020-0031-DRAFT-0804
NOAA-NMFS-2020-0031-DRAFT-0805
NOAA-NMFS-2020-0031-DRAFT-0806
NOAA-NMFS-2020-0031-DRAFT-0807
NOAA-NMFS-2020-0031-DRAFT-0808
NOAA-NMFS-2020-0031-DRAFT-0809
NOAA-NMFS-2020-0031-DRAFT-0810
NOAA-NMFS-2020-0031-DRAFT-0811
NOAA-NMFS-2020-0031-DRAFT-0812
NOAA-NMFS-2020-0031-DRAFT-0813
NOAA-NMFS-2020-0031-DRAFT-0814
NOAA-NMFS-2020-0031-DRAFT-0815
NOAA-NMFS-2020-0031-DRAFT-0816
NOAA-NMFS-2020-0031-DRAFT-0817
NOAA-NMFS-2020-0031-DRAFT-0818
NOAA-NMFS-2020-0031-DRAFT-0819
NOAA-NMFS-2020-0031-DRAFT-0820
NOAA-NMFS-2020-0031-DRAFT-0821
NOAA-NMFS-2020-0031-DRAFT-0822
NOAA-NMFS-2020-0031-DRAFT-0823
NOAA-NMFS-2020-0031-DRAFT-0824
NOAA-NMFS-2020-0031-DRAFT-0825
NOAA-NMFS-2020-0031-DRAFT-0826
NOAA-NMFS-2020-0031-DRAFT-0827
NOAA-NMFS-2020-0031-DRAFT-0828
NOAA-NMFS-2020-0031-DRAFT-0829
NOAA-NMFS-2020-0031-DRAFT-0830
NOAA-NMFS-2020-0031-DRAFT-0831
NOAA-NMFS-2020-0031-DRAFT-0832
NOAA-NMFS-2020-0031-DRAFT-0833
NOAA-NMFS-2020-0031-DRAFT-0834
NOAA-NMFS-2020-0031-DRAFT-0835
NOAA-NMFS-2020-0031-DRAFT-0836
NOAA-NMFS-2020-0031-DRAFT-0837

Comment from William Hayden
Comment from Carol Becker
Comment from Javier Flores
Comment from Jill Wittenbrader
Comment from Mary Levan
Comment from Robin Robinson
Comment from Marsha Jarvis
Comment from Thadeus Dziekonski
Comment from Lindy Von Dohlen
Comment from Mary Whitehead
Comment from Ann breslauer
Comment from Gina Paige
Comment from Kevin Bannon
Comment from Ann Sinica
Comment from Randi Byron
Comment from Pete Sinica
Comment from Judith Ackerman
Comment from Rick Larsen
Comment from Lynn Ryan
Comment from Juliette Skurka
Comment from Leslie Michetti
Comment from Sandra Naidich
Comment from Susan Rambo
Comment from John Teevan
Comment from Alice Markey
Comment from Robert Rivera
Comment from John Renfrew
Comment from Tami Strong
Comment from Sheila Spencer
Comment from Karen Peterson
Comment from Marcy Wasinski
Comment from M Hodgson
Comment from Jay Brasher
Comment from oliver smith
Comment from Janet Rafferty
Comment from Theodore Burger
Comment from Sherry Toy
Comment from George Flores
Comment from Sandra Materi
Comment from Alan Gonzalez
Comment from Lisa Annecone

01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5847
NOAA-NMFS-2020-0031-DRAFT-5848
NOAA-NMFS-2020-0031-DRAFT-5849
NOAA-NMFS-2020-0031-DRAFT-5850
NOAA-NMFS-2020-0031-DRAFT-5851
NOAA-NMFS-2020-0031-DRAFT-5852
NOAA-NMFS-2020-0031-DRAFT-5853
NOAA-NMFS-2020-0031-DRAFT-5854
NOAA-NMFS-2020-0031-DRAFT-5855
NOAA-NMFS-2020-0031-DRAFT-5856
NOAA-NMFS-2020-0031-DRAFT-5857
NOAA-NMFS-2020-0031-DRAFT-5858
NOAA-NMFS-2020-0031-DRAFT-5859
NOAA-NMFS-2020-0031-DRAFT-5860
NOAA-NMFS-2020-0031-DRAFT-5861
NOAA-NMFS-2020-0031-DRAFT-5862
NOAA-NMFS-2020-0031-DRAFT-5863
NOAA-NMFS-2020-0031-DRAFT-5864
NOAA-NMFS-2020-0031-DRAFT-5865
NOAA-NMFS-2020-0031-DRAFT-5866
NOAA-NMFS-2020-0031-DRAFT-5867
NOAA-NMFS-2020-0031-DRAFT-5868
NOAA-NMFS-2020-0031-DRAFT-5869
NOAA-NMFS-2020-0031-DRAFT-5870
NOAA-NMFS-2020-0031-DRAFT-5871
NOAA-NMFS-2020-0031-DRAFT-5872
NOAA-NMFS-2020-0031-DRAFT-5873
NOAA-NMFS-2020-0031-DRAFT-5874
NOAA-NMFS-2020-0031-DRAFT-5875
NOAA-NMFS-2020-0031-DRAFT-5876
NOAA-NMFS-2020-0031-DRAFT-5877
NOAA-NMFS-2020-0031-DRAFT-5878
NOAA-NMFS-2020-0031-DRAFT-5879
NOAA-NMFS-2020-0031-DRAFT-5880
NOAA-NMFS-2020-0031-DRAFT-5881
NOAA-NMFS-2020-0031-DRAFT-5882
NOAA-NMFS-2020-0031-DRAFT-5883
NOAA-NMFS-2020-0031-DRAFT-5884
NOAA-NMFS-2020-0031-DRAFT-5885
NOAA-NMFS-2020-0031-DRAFT-5886
NOAA-NMFS-2020-0031-DRAFT-5887

Comment from stephen jones
Comment from Robert Feaser
Comment from Kelley Charnas
Comment from Mary Brende
Comment from Shatoiya De La Tour
Comment from Bruce Kiesel
Comment from Christine Fraser
Comment from chad plumly
Comment from Sasha Kirby
Comment from Sue Wood
Comment from Steven Fenster
Comment from Robert Schuessler
Comment from Simon Buzzard
Comment from Dana Ashton
Comment from Tim Durnell
Comment from Thomas Bailey
Comment from Ruth Brennan
Comment from William Ryerson
Comment from James Ropicki
Comment from Greg Campbell
Comment from Howard McCoy
Comment from Virginia Caraco
Comment from Catherine White
Comment from Barb Crumpacker
Comment from Della Oberst
Comment from Ann Wiseman
Comment from BARBARA MATHEWS
Comment from Adrianna Aylard
Comment from Sandra Breakfield
Comment from Anna Kauffman
Comment from Nancy Howard
Comment from Malcolm Groome
Comment from Eithne Clarke
Comment from Jenna Manheimer
Comment from Jamila Garrecht
Comment from Julie Anderson
Comment from don dicken
Comment from Kelly Paquette
Comment from Lisa Tam
Comment from Copley Smoak
Comment from Sherry Beck

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0838
NOAA-NMFS-2020-0031-DRAFT-0839
NOAA-NMFS-2020-0031-DRAFT-0840
NOAA-NMFS-2020-0031-DRAFT-0841
NOAA-NMFS-2020-0031-DRAFT-0842
NOAA-NMFS-2020-0031-DRAFT-0843
NOAA-NMFS-2020-0031-DRAFT-0844
NOAA-NMFS-2020-0031-DRAFT-0845
NOAA-NMFS-2020-0031-DRAFT-0846
NOAA-NMFS-2020-0031-DRAFT-0847
NOAA-NMFS-2020-0031-DRAFT-0848
NOAA-NMFS-2020-0031-DRAFT-0849
NOAA-NMFS-2020-0031-DRAFT-0850
NOAA-NMFS-2020-0031-DRAFT-0851
NOAA-NMFS-2020-0031-DRAFT-0852
NOAA-NMFS-2020-0031-DRAFT-0853
NOAA-NMFS-2020-0031-DRAFT-0854
NOAA-NMFS-2020-0031-DRAFT-0855
NOAA-NMFS-2020-0031-DRAFT-0856
NOAA-NMFS-2020-0031-DRAFT-0857
NOAA-NMFS-2020-0031-DRAFT-0858
NOAA-NMFS-2020-0031-DRAFT-0859
NOAA-NMFS-2020-0031-DRAFT-0860
NOAA-NMFS-2020-0031-DRAFT-0861
NOAA-NMFS-2020-0031-DRAFT-0862
NOAA-NMFS-2020-0031-DRAFT-0863
NOAA-NMFS-2020-0031-DRAFT-0864
NOAA-NMFS-2020-0031-DRAFT-0865
NOAA-NMFS-2020-0031-DRAFT-0866
NOAA-NMFS-2020-0031-DRAFT-0867
NOAA-NMFS-2020-0031-DRAFT-0868
NOAA-NMFS-2020-0031-DRAFT-0869
NOAA-NMFS-2020-0031-DRAFT-0870
NOAA-NMFS-2020-0031-DRAFT-0871
NOAA-NMFS-2020-0031-DRAFT-0872
NOAA-NMFS-2020-0031-DRAFT-0873
NOAA-NMFS-2020-0031-DRAFT-0874
NOAA-NMFS-2020-0031-DRAFT-0875
NOAA-NMFS-2020-0031-DRAFT-0876
NOAA-NMFS-2020-0031-DRAFT-0877
NOAA-NMFS-2020-0031-DRAFT-0878

Comment from Deimile Mockus
Comment from Rochelle Foran
Comment from Todd Powers
Comment from Sue Janssen
Comment from Adam Trauger
Comment from Patty Hatcher
Comment from Mark Waltzer
Comment from JL Angell
Comment from mary ruliffson
Comment from Christie Ruppel
Comment from Sabine Williams
Comment from Jesse Reyes
Comment from Cheryl Walker
Comment from Tracey Bonner
Comment from Janice Zelazo
Comment from Joan Baseman
Comment from Sheila Erlbaum
Comment from Gerolynn Laukevicz
Comment from jeff hansen
Comment from Sharon Baker
Comment from Lorrie Ogren
Comment from Terry Vollmer
Comment from Brian TRUAX
Comment from Thalia Ayoub
Comment from David Sickles
Comment from Sherlene Evans
Comment from Ed Zych
Comment from tim storer
Comment from Rhonda Bast
Comment from Jan Salas
Comment from Susan O'Connor
Comment from Lois Shelton
Comment from Lorenz Steininger
Comment from B. Bergeron
Comment from Elizabeth Bible
Comment from Ron Mittan
Comment from Peggie Vincent
Comment from Paula Beall
Comment from Richard Weiss
Comment from Libba Miller
Comment from Shelley Driskell

01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5888
NOAA-NMFS-2020-0031-DRAFT-5889
NOAA-NMFS-2020-0031-DRAFT-5890
NOAA-NMFS-2020-0031-DRAFT-5891
NOAA-NMFS-2020-0031-DRAFT-5892
NOAA-NMFS-2020-0031-DRAFT-5893
NOAA-NMFS-2020-0031-DRAFT-5894
NOAA-NMFS-2020-0031-DRAFT-5895
NOAA-NMFS-2020-0031-DRAFT-5896
NOAA-NMFS-2020-0031-DRAFT-5897
NOAA-NMFS-2020-0031-DRAFT-5898
NOAA-NMFS-2020-0031-DRAFT-5899
NOAA-NMFS-2020-0031-DRAFT-5900
NOAA-NMFS-2020-0031-DRAFT-5901
NOAA-NMFS-2020-0031-DRAFT-5902
NOAA-NMFS-2020-0031-DRAFT-5903
NOAA-NMFS-2020-0031-DRAFT-5904
NOAA-NMFS-2020-0031-DRAFT-5905
NOAA-NMFS-2020-0031-DRAFT-5906
NOAA-NMFS-2020-0031-DRAFT-5907
NOAA-NMFS-2020-0031-DRAFT-5908
NOAA-NMFS-2020-0031-DRAFT-5909
NOAA-NMFS-2020-0031-DRAFT-5910
NOAA-NMFS-2020-0031-DRAFT-5911
NOAA-NMFS-2020-0031-DRAFT-5912
NOAA-NMFS-2020-0031-DRAFT-5913
NOAA-NMFS-2020-0031-DRAFT-5914
NOAA-NMFS-2020-0031-DRAFT-5915
NOAA-NMFS-2020-0031-DRAFT-5916
NOAA-NMFS-2020-0031-DRAFT-5917
NOAA-NMFS-2020-0031-DRAFT-5918
NOAA-NMFS-2020-0031-DRAFT-5919
NOAA-NMFS-2020-0031-DRAFT-5920
NOAA-NMFS-2020-0031-DRAFT-5921
NOAA-NMFS-2020-0031-DRAFT-5922
NOAA-NMFS-2020-0031-DRAFT-5923
NOAA-NMFS-2020-0031-DRAFT-5924
NOAA-NMFS-2020-0031-DRAFT-5925
NOAA-NMFS-2020-0031-DRAFT-5926
NOAA-NMFS-2020-0031-DRAFT-5927
NOAA-NMFS-2020-0031-DRAFT-5928

Comment from Bob Ramlow
Comment from Sherry Beck
Comment from Bennie Scott
Comment from Jean Tabin
Comment from John Ray
Comment from Priscilla Newcomer
Comment from Danielle Graham
Comment from Jeff Garmon
Comment from Vicki Sarnecki
Comment from Susan Allen
Comment from Janet Draper
Comment from Mr Bowman
Comment from Barbara Stenross
Comment from Chris Hazynski
Comment from Elsie Maio
Comment from Steven Adams
Comment from Kathleen Hynes
Comment from Carol Wiley
Comment from Sara Rabbani
Comment from Sam Eaton
Comment from Marilyn Siddiqi
Comment from Jerry Kahn
Comment from Theresa DuBois
Comment from George Jackman
Comment from deborah cady
Comment from Diana Duncan
Comment from Catherine Ayoub
Comment from Dave Fischer
Comment from Mike Rapoza
Comment from Jeri Romero
Comment from Kathy Nelson
Comment from Doug Thompson
Comment from Carol Gibson-Kish
Comment from Caitlin Lang
Comment from Stephanie Green
Comment from Nike Stevens
Comment from Sean Russell
Comment from Julie Hagen
Comment from Judith Zufi
Comment from M S
Comment from rob fursich

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0879
NOAA-NMFS-2020-0031-DRAFT-0880
NOAA-NMFS-2020-0031-DRAFT-0881
NOAA-NMFS-2020-0031-DRAFT-0882
NOAA-NMFS-2020-0031-DRAFT-0883
NOAA-NMFS-2020-0031-DRAFT-0884
NOAA-NMFS-2020-0031-DRAFT-0885
NOAA-NMFS-2020-0031-DRAFT-0886
NOAA-NMFS-2020-0031-DRAFT-0887
NOAA-NMFS-2020-0031-DRAFT-0888
NOAA-NMFS-2020-0031-DRAFT-0889
NOAA-NMFS-2020-0031-DRAFT-0890
NOAA-NMFS-2020-0031-DRAFT-0891
NOAA-NMFS-2020-0031-DRAFT-0892
NOAA-NMFS-2020-0031-DRAFT-0893
NOAA-NMFS-2020-0031-DRAFT-0894
NOAA-NMFS-2020-0031-DRAFT-0895
NOAA-NMFS-2020-0031-DRAFT-0896
NOAA-NMFS-2020-0031-DRAFT-0897
NOAA-NMFS-2020-0031-DRAFT-0898
NOAA-NMFS-2020-0031-DRAFT-0899
NOAA-NMFS-2020-0031-DRAFT-0900
NOAA-NMFS-2020-0031-DRAFT-0901
NOAA-NMFS-2020-0031-DRAFT-0902
NOAA-NMFS-2020-0031-DRAFT-0903
NOAA-NMFS-2020-0031-DRAFT-0904
NOAA-NMFS-2020-0031-DRAFT-0905
NOAA-NMFS-2020-0031-DRAFT-0906
NOAA-NMFS-2020-0031-DRAFT-0907
NOAA-NMFS-2020-0031-DRAFT-0908
NOAA-NMFS-2020-0031-DRAFT-0909
NOAA-NMFS-2020-0031-DRAFT-0910
NOAA-NMFS-2020-0031-DRAFT-0911
NOAA-NMFS-2020-0031-DRAFT-0912
NOAA-NMFS-2020-0031-DRAFT-0913
NOAA-NMFS-2020-0031-DRAFT-0914
NOAA-NMFS-2020-0031-DRAFT-0915
NOAA-NMFS-2020-0031-DRAFT-0916
NOAA-NMFS-2020-0031-DRAFT-0917
NOAA-NMFS-2020-0031-DRAFT-0918
NOAA-NMFS-2020-0031-DRAFT-0919

Comment from pam zimmerman
Comment from Laurie Leland
Comment from Margaret Eschbach
Comment from George Gavaras
Comment from Betty Sabo
Comment from Guy Zahller
Comment from Robert Ortiz
Comment from Chuck Graver
Comment from Misty Jackson
Comment from Larry Caudill
Comment from jim Barber
Comment from Lorraine Gray
Comment from Nina Davis
Comment from Karen Hodges
Comment from Katie Morgan
Comment from Sherry Byers
Comment from Gail Ohara
Comment from Elizabeth Way
Comment from Pattie Meade
Comment from Kate Harder
Comment from Brianna Knickerbocker
Comment from David Balan
Comment from Mary Ellis
Comment from Silvia Noell
Comment from William Welkowitz
Comment from Natalia Laisure
Comment from Nicola Nicolai
Comment from Lore Weber
Comment from Teresa Edmonds
Comment from Beth Levin
Comment from Janice Parker
Comment from Katrin Winterer
Comment from Ester Fuchs
Comment from Michael Halloran
Comment from Michael Secino
Comment from Darlene Baker
Comment from Dorothy Labi
Comment from Kathleen Ruiz
Comment from Sarah Lee
Comment from Marguerite Barragan
Comment from Brandon Perras

01/27/2021
01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5929
NOAA-NMFS-2020-0031-DRAFT-5930
NOAA-NMFS-2020-0031-DRAFT-5931
NOAA-NMFS-2020-0031-DRAFT-5932
NOAA-NMFS-2020-0031-DRAFT-5933
NOAA-NMFS-2020-0031-DRAFT-5934
NOAA-NMFS-2020-0031-DRAFT-5935
NOAA-NMFS-2020-0031-DRAFT-5936
NOAA-NMFS-2020-0031-DRAFT-5937
NOAA-NMFS-2020-0031-DRAFT-5938
NOAA-NMFS-2020-0031-DRAFT-5939
NOAA-NMFS-2020-0031-DRAFT-5940
NOAA-NMFS-2020-0031-DRAFT-5941
NOAA-NMFS-2020-0031-DRAFT-5942
NOAA-NMFS-2020-0031-DRAFT-5943
NOAA-NMFS-2020-0031-DRAFT-5944
NOAA-NMFS-2020-0031-DRAFT-5945
NOAA-NMFS-2020-0031-DRAFT-5946
NOAA-NMFS-2020-0031-DRAFT-5947
NOAA-NMFS-2020-0031-DRAFT-5948
NOAA-NMFS-2020-0031-DRAFT-5949
NOAA-NMFS-2020-0031-DRAFT-5950
NOAA-NMFS-2020-0031-DRAFT-5951
NOAA-NMFS-2020-0031-DRAFT-5952
NOAA-NMFS-2020-0031-DRAFT-5953
NOAA-NMFS-2020-0031-DRAFT-5954
NOAA-NMFS-2020-0031-DRAFT-5955
NOAA-NMFS-2020-0031-DRAFT-5956
NOAA-NMFS-2020-0031-DRAFT-5957
NOAA-NMFS-2020-0031-DRAFT-5958
NOAA-NMFS-2020-0031-DRAFT-5960
NOAA-NMFS-2020-0031-DRAFT-5961
NOAA-NMFS-2020-0031-DRAFT-5962
NOAA-NMFS-2020-0031-DRAFT-5963
NOAA-NMFS-2020-0031-DRAFT-5964
NOAA-NMFS-2020-0031-DRAFT-5965
NOAA-NMFS-2020-0031-DRAFT-5966
NOAA-NMFS-2020-0031-DRAFT-5967
NOAA-NMFS-2020-0031-DRAFT-5968
NOAA-NMFS-2020-0031-DRAFT-5969
NOAA-NMFS-2020-0031-DRAFT-5970

Comment from Myrna Castaline
Comment from Donna Butler
Comment from JEFFERY BLANTON
Comment from Edward Sullivan
Comment from Patrick Doyle
Comment from Michelle Sewald
Comment from Denise Anderson
Comment from Kelly Melnyk
Comment from Maile Anthopoulos
Comment from Stephen Dutschke
Comment from Dorothea Cappadona
Comment from Carole Dadurka
Comment from Elizabeth Kawazoe
Comment from robert gordon
Comment from David Frederick
Comment from Wandis Wilcox
Comment from Wayne Steffes
Comment from Lauren Griffin
Comment from Lorie Obal
Comment from Armand Gammarino
Comment from James Hadcroft
Comment from Tonya Rose
Comment from Michael Renfrow
Comment from Anne Robison
Comment from Juanita Bittle
Comment from Nancy Juskowich
Comment from Larry Orzechowski
Comment from Ellen Kinney
Comment from John Laing
Comment from misha cohen
Comment from Jeffery Garcia
Comment from Joseph Spurgas
Comment from Annalee Pineda
Comment from Liza Connelly
Comment from T Thompson
Comment from Marc Anderson
Comment from Dorian Charles
Comment from Barbara Baird
Comment from Jahna Schadt
Comment from Sheila Silan
Comment from Eva Klein

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0920
NOAA-NMFS-2020-0031-DRAFT-0921
NOAA-NMFS-2020-0031-DRAFT-0922
NOAA-NMFS-2020-0031-DRAFT-0923
NOAA-NMFS-2020-0031-DRAFT-0924
NOAA-NMFS-2020-0031-DRAFT-0925
NOAA-NMFS-2020-0031-DRAFT-0926
NOAA-NMFS-2020-0031-DRAFT-0927
NOAA-NMFS-2020-0031-DRAFT-0928
NOAA-NMFS-2020-0031-DRAFT-0929
NOAA-NMFS-2020-0031-DRAFT-0930
NOAA-NMFS-2020-0031-DRAFT-0931
NOAA-NMFS-2020-0031-DRAFT-0932
NOAA-NMFS-2020-0031-DRAFT-0933
NOAA-NMFS-2020-0031-DRAFT-0934
NOAA-NMFS-2020-0031-DRAFT-0935
NOAA-NMFS-2020-0031-DRAFT-0936
NOAA-NMFS-2020-0031-DRAFT-0937
NOAA-NMFS-2020-0031-DRAFT-0938
NOAA-NMFS-2020-0031-DRAFT-0939
NOAA-NMFS-2020-0031-DRAFT-0940
NOAA-NMFS-2020-0031-DRAFT-0941
NOAA-NMFS-2020-0031-DRAFT-0942
NOAA-NMFS-2020-0031-DRAFT-0943
NOAA-NMFS-2020-0031-DRAFT-0944
NOAA-NMFS-2020-0031-DRAFT-0945
NOAA-NMFS-2020-0031-DRAFT-0946
NOAA-NMFS-2020-0031-DRAFT-0947
NOAA-NMFS-2020-0031-DRAFT-0948
NOAA-NMFS-2020-0031-DRAFT-0949
NOAA-NMFS-2020-0031-DRAFT-0950
NOAA-NMFS-2020-0031-DRAFT-0951
NOAA-NMFS-2020-0031-DRAFT-0952
NOAA-NMFS-2020-0031-DRAFT-0953
NOAA-NMFS-2020-0031-DRAFT-0954
NOAA-NMFS-2020-0031-DRAFT-0955
NOAA-NMFS-2020-0031-DRAFT-0956
NOAA-NMFS-2020-0031-DRAFT-0957
NOAA-NMFS-2020-0031-DRAFT-0958
NOAA-NMFS-2020-0031-DRAFT-0959
NOAA-NMFS-2020-0031-DRAFT-0960

Comment from Mark Hollinrake
Comment from Brian Moscatello
Comment from Virginia Kingery
Comment from Bryan Daniel
Comment from Sally Woodard
Comment from nancy siebert
Comment from Cynthia Haritatos
Comment from Morgan Cormia
Comment from Maria Williamson
Comment from Julie Tyler
Comment from Cynthia Hicks
Comment from Lucia Pasqualini
Comment from janet maker
Comment from Vicki Ferguson
Comment from Sue Jarrard
Comment from Matt Buckmaster
Comment from Kerry Witmer
Comment from Jan Hamilton-Sherwonit
Comment from John Massman
Comment from Manon Roberge
Comment from Kathy Ruopp
Comment from Daniel Figueroa
Comment from Rebecca Tucker
Comment from Steve Sheehy
Comment from Carol Dearborn
Comment from Christi DeMark
Comment from Lynda Means
Comment from Kimm Carter
Comment from LAURA ARIAS
Comment from Nan Matthews
Comment from Ralf Schuetz
Comment from Lisa Phinney
Comment from Janet Bindas
Comment from S. Chapek
Comment from Jamie Shields
Comment from Janet Carlisle
Comment from Art Bogie
Comment from Emanuel Falcone
Comment from Lyn Pegg
Comment from Susan Bassett
Comment from Randolph Schoedler

01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-5971
NOAA-NMFS-2020-0031-DRAFT-5972
NOAA-NMFS-2020-0031-DRAFT-5973
NOAA-NMFS-2020-0031-DRAFT-5974
NOAA-NMFS-2020-0031-DRAFT-5975
NOAA-NMFS-2020-0031-DRAFT-5976
NOAA-NMFS-2020-0031-DRAFT-5977
NOAA-NMFS-2020-0031-DRAFT-5978
NOAA-NMFS-2020-0031-DRAFT-5979
NOAA-NMFS-2020-0031-DRAFT-5980
NOAA-NMFS-2020-0031-DRAFT-5981
NOAA-NMFS-2020-0031-DRAFT-5982
NOAA-NMFS-2020-0031-DRAFT-5983
NOAA-NMFS-2020-0031-DRAFT-5984
NOAA-NMFS-2020-0031-DRAFT-5985
NOAA-NMFS-2020-0031-DRAFT-5986
NOAA-NMFS-2020-0031-DRAFT-5987
NOAA-NMFS-2020-0031-DRAFT-5988
NOAA-NMFS-2020-0031-DRAFT-5989
NOAA-NMFS-2020-0031-DRAFT-5990
NOAA-NMFS-2020-0031-DRAFT-5991
NOAA-NMFS-2020-0031-DRAFT-5992
NOAA-NMFS-2020-0031-DRAFT-5993
NOAA-NMFS-2020-0031-DRAFT-5994
NOAA-NMFS-2020-0031-DRAFT-5995
NOAA-NMFS-2020-0031-DRAFT-5996
NOAA-NMFS-2020-0031-DRAFT-5997
NOAA-NMFS-2020-0031-DRAFT-5998
NOAA-NMFS-2020-0031-DRAFT-5999
NOAA-NMFS-2020-0031-DRAFT-6000
NOAA-NMFS-2020-0031-DRAFT-6001
NOAA-NMFS-2020-0031-DRAFT-6002
NOAA-NMFS-2020-0031-DRAFT-6003
NOAA-NMFS-2020-0031-DRAFT-6004
NOAA-NMFS-2020-0031-DRAFT-6005
NOAA-NMFS-2020-0031-DRAFT-6006
NOAA-NMFS-2020-0031-DRAFT-6007
NOAA-NMFS-2020-0031-DRAFT-6008
NOAA-NMFS-2020-0031-DRAFT-6009
NOAA-NMFS-2020-0031-DRAFT-6010
NOAA-NMFS-2020-0031-DRAFT-6011

Comment from Sherry Griffin
Comment from Guy Nguyen
Comment from Jeffery Morton
Comment from Elaine Berg
Comment from Theresa Campbell
Comment from Harriet Rose
Comment from J.B. Johnson-Allen
Comment from MS Tomasello
Comment from Gordon Parker
Comment from Brandt Amlie
Comment from Anthony Donnici
Comment from Mathew Vipond
Comment from CHARLES RYBURN
Comment from Robert Keiser
Comment from Benita Musleve
Comment from Sandra Marquez-Hall
Comment from Peggy Lyle
Comment from David Crouch
Comment from Michael Graves
Comment from Dianne Alpern
Comment from gayle richardson
Comment from Jason LaBerge
Comment from Michael Stricker
Comment from William Anderson
Comment from Lorraine Lowry
Comment from Erin Foley-Collins
Comment from Kristen Lowry
Comment from Kurt Cruger
Comment from Heather Grunwald
Comment from Carolyn Pettis
Comment from Janice McLaughlin
Comment from Charlene Kerchevall
Comment from Sandra Uribe
Comment from Rob Seltzer
Comment from Linda Deschaine
Comment from Marilyn Dempsey
Comment from Katie McCracken
Comment from Kristyn MacPhail
Comment from Lynne Reynolds
Comment from Sean Ring
Comment from Katherine Nolan

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-0961
NOAA-NMFS-2020-0031-DRAFT-0962
NOAA-NMFS-2020-0031-DRAFT-0963
NOAA-NMFS-2020-0031-DRAFT-0964
NOAA-NMFS-2020-0031-DRAFT-0965
NOAA-NMFS-2020-0031-DRAFT-0966
NOAA-NMFS-2020-0031-DRAFT-0967
NOAA-NMFS-2020-0031-DRAFT-0968
NOAA-NMFS-2020-0031-DRAFT-0969
NOAA-NMFS-2020-0031-DRAFT-0970
NOAA-NMFS-2020-0031-DRAFT-0971
NOAA-NMFS-2020-0031-DRAFT-0972
NOAA-NMFS-2020-0031-DRAFT-0973
NOAA-NMFS-2020-0031-DRAFT-0974
NOAA-NMFS-2020-0031-DRAFT-0975
NOAA-NMFS-2020-0031-DRAFT-0976
NOAA-NMFS-2020-0031-DRAFT-0977
NOAA-NMFS-2020-0031-DRAFT-0978
NOAA-NMFS-2020-0031-DRAFT-0979
NOAA-NMFS-2020-0031-DRAFT-0980
NOAA-NMFS-2020-0031-DRAFT-0981
NOAA-NMFS-2020-0031-DRAFT-0982
NOAA-NMFS-2020-0031-DRAFT-0983
NOAA-NMFS-2020-0031-DRAFT-0984
NOAA-NMFS-2020-0031-DRAFT-0985
NOAA-NMFS-2020-0031-DRAFT-0986
NOAA-NMFS-2020-0031-DRAFT-0987
NOAA-NMFS-2020-0031-DRAFT-0988
NOAA-NMFS-2020-0031-DRAFT-0989
NOAA-NMFS-2020-0031-DRAFT-0990
NOAA-NMFS-2020-0031-DRAFT-0991
NOAA-NMFS-2020-0031-DRAFT-0992
NOAA-NMFS-2020-0031-DRAFT-0993
NOAA-NMFS-2020-0031-DRAFT-0994
NOAA-NMFS-2020-0031-DRAFT-0995
NOAA-NMFS-2020-0031-DRAFT-0996
NOAA-NMFS-2020-0031-DRAFT-0997
NOAA-NMFS-2020-0031-DRAFT-0998
NOAA-NMFS-2020-0031-DRAFT-0999
NOAA-NMFS-2020-0031-DRAFT-1000
NOAA-NMFS-2020-0031-DRAFT-1001

Comment from Piero Soligo
Comment from Jessica Taylor
Comment from Marianne White
Comment from Judith Hansell
Comment from Ronald Warren
Comment from Anett Young
Comment from Marcella Crane
Comment from Thom Sherman
Comment from Steven Kennie
Comment from Laura Belgiorno
Comment from Donita Sparks
Comment from Beth Drewelow
Comment from Elizabeth Bettenhausen
Comment from Dennis Kreiner
Comment from Delia Gerhard
Comment from steve simmons
Comment from C Moses
Comment from Dameon Hansen
Comment from Dawn Kosec
Comment from L. Sinclair
Comment from Timothy Frock
Comment from Pamela Jarvis
Comment from Nina Yates
Comment from Diane Weinstein
Comment from Don Bentley
Comment from Holly Putman
Comment from Dalyn Ortega
Comment from Jim Leske
Comment from Barbra Raymond
Comment from Jenifer Johnson
Comment from Alan Schenck
Comment from Richard Han
Comment from Margaret Phillips
Comment from Andrew Karen
Comment from Patty Bachner
Comment from Vikki Dannecker
Comment from Martina Strbuncelj
Comment from Chris Grill
Comment from Bill Wood
Comment from Larry Lewis
Comment from Sandra Marquez-Hall

01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-6012
NOAA-NMFS-2020-0031-DRAFT-6013
NOAA-NMFS-2020-0031-DRAFT-6014
NOAA-NMFS-2020-0031-DRAFT-6015
NOAA-NMFS-2020-0031-DRAFT-6016
NOAA-NMFS-2020-0031-DRAFT-6017
NOAA-NMFS-2020-0031-DRAFT-6018
NOAA-NMFS-2020-0031-DRAFT-6019
NOAA-NMFS-2020-0031-DRAFT-6020
NOAA-NMFS-2020-0031-DRAFT-6021
NOAA-NMFS-2020-0031-DRAFT-6022
NOAA-NMFS-2020-0031-DRAFT-6023
NOAA-NMFS-2020-0031-DRAFT-6024
NOAA-NMFS-2020-0031-DRAFT-6025
NOAA-NMFS-2020-0031-DRAFT-6026
NOAA-NMFS-2020-0031-DRAFT-6027
NOAA-NMFS-2020-0031-DRAFT-6028
NOAA-NMFS-2020-0031-DRAFT-6029
NOAA-NMFS-2020-0031-DRAFT-6030
NOAA-NMFS-2020-0031-DRAFT-6031
NOAA-NMFS-2020-0031-DRAFT-6032
NOAA-NMFS-2020-0031-DRAFT-6033
NOAA-NMFS-2020-0031-DRAFT-6034
NOAA-NMFS-2020-0031-DRAFT-6035
NOAA-NMFS-2020-0031-DRAFT-6036
NOAA-NMFS-2020-0031-DRAFT-6037
NOAA-NMFS-2020-0031-DRAFT-6038
NOAA-NMFS-2020-0031-DRAFT-6039
NOAA-NMFS-2020-0031-DRAFT-6040
NOAA-NMFS-2020-0031-DRAFT-6041
NOAA-NMFS-2020-0031-DRAFT-6042
NOAA-NMFS-2020-0031-DRAFT-6043
NOAA-NMFS-2020-0031-DRAFT-6044
NOAA-NMFS-2020-0031-DRAFT-6045
NOAA-NMFS-2020-0031-DRAFT-6046
NOAA-NMFS-2020-0031-DRAFT-6047
NOAA-NMFS-2020-0031-DRAFT-6048
NOAA-NMFS-2020-0031-DRAFT-6049
NOAA-NMFS-2020-0031-DRAFT-6050
NOAA-NMFS-2020-0031-DRAFT-6051
NOAA-NMFS-2020-0031-DRAFT-6052

Comment from Richard Peterson
Comment from Philip Louie
Comment from Richard Jones
Comment from Richard Alley
Comment from gayle richardson
Comment from Paul Toomey
Comment from Christine Hayes
Comment from John Gieser
Comment from Diane Loughbom
Comment from freddy sall
Comment from Heather Hanly
Comment from Lourdes Guzman
Comment from Carolyn Abreu
Comment from Amy Holt
Comment from Patti Jahsman
Comment from Jay Falconer
Comment from Howard Fernandez
Comment from Nora Coyle
Comment from John Beck
Comment from Nicole Gillespy
Comment from Vanessa Diserio
Comment from pam doran
Comment from ANDREW YOUNG
Comment from M .
Comment from Mary Naby
Comment from Hugh Smith
Comment from George Grace
Comment from Barbara Fernandez
Comment from Mary Pelletier
Comment from Isabel Cervera
Comment from Christina Huggins
Comment from saul schreier
Comment from Bill Harmon
Comment from Katherine Skirvin
Comment from john naylor
Comment from Carmen Lee
Comment from Sally Evans
Comment from Jeanie Kilgour
Comment from Norm Seelbinder
Comment from Rebecca Holzer
Comment from Susana Soares

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1002
NOAA-NMFS-2020-0031-DRAFT-1003
NOAA-NMFS-2020-0031-DRAFT-1004
NOAA-NMFS-2020-0031-DRAFT-1005
NOAA-NMFS-2020-0031-DRAFT-1006
NOAA-NMFS-2020-0031-DRAFT-1007
NOAA-NMFS-2020-0031-DRAFT-1008
NOAA-NMFS-2020-0031-DRAFT-1009
NOAA-NMFS-2020-0031-DRAFT-1010
NOAA-NMFS-2020-0031-DRAFT-1011
NOAA-NMFS-2020-0031-DRAFT-1012
NOAA-NMFS-2020-0031-DRAFT-1013
NOAA-NMFS-2020-0031-DRAFT-1014
NOAA-NMFS-2020-0031-DRAFT-1015
NOAA-NMFS-2020-0031-DRAFT-1016
NOAA-NMFS-2020-0031-DRAFT-1017
NOAA-NMFS-2020-0031-DRAFT-1018
NOAA-NMFS-2020-0031-DRAFT-1019
NOAA-NMFS-2020-0031-DRAFT-1020
NOAA-NMFS-2020-0031-DRAFT-1021
NOAA-NMFS-2020-0031-DRAFT-1022
NOAA-NMFS-2020-0031-DRAFT-1023
NOAA-NMFS-2020-0031-DRAFT-1024
NOAA-NMFS-2020-0031-DRAFT-1025
NOAA-NMFS-2020-0031-DRAFT-1026
NOAA-NMFS-2020-0031-DRAFT-1027
NOAA-NMFS-2020-0031-DRAFT-1028
NOAA-NMFS-2020-0031-DRAFT-1029
NOAA-NMFS-2020-0031-DRAFT-1030
NOAA-NMFS-2020-0031-DRAFT-1031
NOAA-NMFS-2020-0031-DRAFT-1032
NOAA-NMFS-2020-0031-DRAFT-1033
NOAA-NMFS-2020-0031-DRAFT-1034
NOAA-NMFS-2020-0031-DRAFT-1035
NOAA-NMFS-2020-0031-DRAFT-1036
NOAA-NMFS-2020-0031-DRAFT-1037
NOAA-NMFS-2020-0031-DRAFT-1038
NOAA-NMFS-2020-0031-DRAFT-1039
NOAA-NMFS-2020-0031-DRAFT-1040
NOAA-NMFS-2020-0031-DRAFT-1041
NOAA-NMFS-2020-0031-DRAFT-1042

Comment from Pat Rose
Comment from Veronica Bourassa
Comment from Jennifer Andrews
Comment from Diane loughbom
Comment from jonette bronson
Comment from amy pick
Comment from Jennifer Adams
Comment from Mary Guard
Comment from Brigitte Jenkins
Comment from Robert Clemens
Comment from Ron De Stefano
Comment from Norman Sandel
Comment from Charles Casper
Comment from Carola Tschiemer
Comment from Rick Priebe
Comment from Pat Ellison
Comment from Sue Farro
Comment from Michael Hoover
Comment from April Jacob
Comment from Nancy Goldberg
Comment from les roberts
Comment from david bradbury
Comment from Liz Kauffman
Comment from Ursula Cohrs
Comment from Ted Clark
Comment from Shawn Hall
Comment from Madhu Ashtakala
Comment from A. Zamudio
Comment from JOHN STEYH
Comment from Steven Korson
Comment from Ronnie Bolling
Comment from Susan Ancona
Comment from SUSAN BABBITT
Comment from Thomas Struhsaker
Comment from Jeannie perry
Comment from Eddie Pittmon
Comment from Victoria Brandon
Comment from Mary Collier
Comment from Norman Traum
Comment from Vivian Dowell
Comment from Laurel Kornfeld

01/27/2021
01/27/2021
01/27/2021
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01/27/2021
01/27/2021
01/27/2021

NOAA-NMFS-2020-0031-DRAFT-6053
NOAA-NMFS-2020-0031-DRAFT-6054
NOAA-NMFS-2020-0031-DRAFT-6055
NOAA-NMFS-2020-0031-DRAFT-6056
NOAA-NMFS-2020-0031-DRAFT-6057
NOAA-NMFS-2020-0031-DRAFT-6058
NOAA-NMFS-2020-0031-DRAFT-6059
NOAA-NMFS-2020-0031-DRAFT-6060
NOAA-NMFS-2020-0031-DRAFT-6061
NOAA-NMFS-2020-0031-DRAFT-6062
NOAA-NMFS-2020-0031-DRAFT-6063
NOAA-NMFS-2020-0031-DRAFT-6064
NOAA-NMFS-2020-0031-DRAFT-6065
NOAA-NMFS-2020-0031-DRAFT-6066
NOAA-NMFS-2020-0031-DRAFT-6067
NOAA-NMFS-2020-0031-DRAFT-6068
NOAA-NMFS-2020-0031-DRAFT-6069
NOAA-NMFS-2020-0031-DRAFT-6070
NOAA-NMFS-2020-0031-DRAFT-6071
NOAA-NMFS-2020-0031-DRAFT-6072
NOAA-NMFS-2020-0031-DRAFT-6073
NOAA-NMFS-2020-0031-DRAFT-6074
NOAA-NMFS-2020-0031-DRAFT-6075
NOAA-NMFS-2020-0031-DRAFT-6076
NOAA-NMFS-2020-0031-DRAFT-6077
NOAA-NMFS-2020-0031-DRAFT-6078
NOAA-NMFS-2020-0031-DRAFT-6079
NOAA-NMFS-2020-0031-DRAFT-6080
NOAA-NMFS-2020-0031-DRAFT-6081
NOAA-NMFS-2020-0031-DRAFT-6082
NOAA-NMFS-2020-0031-DRAFT-6083
NOAA-NMFS-2020-0031-DRAFT-6084
NOAA-NMFS-2020-0031-DRAFT-6085
NOAA-NMFS-2020-0031-DRAFT-6086
NOAA-NMFS-2020-0031-DRAFT-6087
NOAA-NMFS-2020-0031-DRAFT-6088
NOAA-NMFS-2020-0031-DRAFT-6089
NOAA-NMFS-2020-0031-DRAFT-6090
NOAA-NMFS-2020-0031-DRAFT-6091
NOAA-NMFS-2020-0031-DRAFT-6092
NOAA-NMFS-2020-0031-DRAFT-6093

Comment from Jayson Minio
Comment from Merry Guben
Comment from Diane Weinstein
Comment from Steve Tardif
Comment from Peter Kasabian
Comment from Sarah Lee
Comment from Jerry Lee
Comment from Barbara Campbell
Comment from Pam Beattie
Comment from susan ditzler
Comment from Gerald Scharf
Comment from Ellen Goodman
Comment from Elizabeth Sundquist
Comment from Kristin Nam
Comment from Denise Hosta
Comment from Jill B.
Comment from Sandra Joos
Comment from Janet Duran
Comment from virginia sheheen
Comment from Eric Lane
Comment from Donovan McCall
Comment from Raven Vergara
Comment from Dell Goldsmith
Comment from Kyrsten Bellen
Comment from Hope Maruzo
Comment from Carmela Micheli
Comment from Freddy Luke
Comment from Lourdes Lopez
Comment from Judith Embry
Comment from Patricia Snowden
Comment from Kraig Schweiss
Comment from Paul Fields
Comment from Greg Holt
Comment from Teri Koslen
Comment from Cynthia Upp
Comment from William Visscher
Comment from Nancy Frakes
Comment from Allen Hindin
Comment from Nicholas Bridgett
Comment from J. Moreira
Comment from Francesca Gallo

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1043
NOAA-NMFS-2020-0031-DRAFT-1044
NOAA-NMFS-2020-0031-DRAFT-1045
NOAA-NMFS-2020-0031-DRAFT-1046
NOAA-NMFS-2020-0031-DRAFT-1047
NOAA-NMFS-2020-0031-DRAFT-1048
NOAA-NMFS-2020-0031-DRAFT-1049
NOAA-NMFS-2020-0031-DRAFT-1050
NOAA-NMFS-2020-0031-DRAFT-1051
NOAA-NMFS-2020-0031-DRAFT-1052
NOAA-NMFS-2020-0031-DRAFT-1053
NOAA-NMFS-2020-0031-DRAFT-1054
NOAA-NMFS-2020-0031-DRAFT-1055
NOAA-NMFS-2020-0031-DRAFT-1056
NOAA-NMFS-2020-0031-DRAFT-1057
NOAA-NMFS-2020-0031-DRAFT-1058
NOAA-NMFS-2020-0031-DRAFT-1059
NOAA-NMFS-2020-0031-DRAFT-1060
NOAA-NMFS-2020-0031-DRAFT-1061
NOAA-NMFS-2020-0031-DRAFT-1062
NOAA-NMFS-2020-0031-DRAFT-1063
NOAA-NMFS-2020-0031-DRAFT-1064
NOAA-NMFS-2020-0031-DRAFT-1065
NOAA-NMFS-2020-0031-DRAFT-1066
NOAA-NMFS-2020-0031-DRAFT-1067
NOAA-NMFS-2020-0031-DRAFT-1068
NOAA-NMFS-2020-0031-DRAFT-1069
NOAA-NMFS-2020-0031-DRAFT-1070
NOAA-NMFS-2020-0031-DRAFT-1071
NOAA-NMFS-2020-0031-DRAFT-1072
NOAA-NMFS-2020-0031-DRAFT-1073
NOAA-NMFS-2020-0031-DRAFT-1074
NOAA-NMFS-2020-0031-DRAFT-1075
NOAA-NMFS-2020-0031-DRAFT-1076
NOAA-NMFS-2020-0031-DRAFT-1077
NOAA-NMFS-2020-0031-DRAFT-1078
NOAA-NMFS-2020-0031-DRAFT-1079
NOAA-NMFS-2020-0031-DRAFT-1080
NOAA-NMFS-2020-0031-DRAFT-1081
NOAA-NMFS-2020-0031-DRAFT-1082
NOAA-NMFS-2020-0031-DRAFT-1083

Comment from Frances Blythe
Comment from Donna Varcoe
Comment from Joe Roy
Comment from Cyndee Newick
Comment from Claire Goldthwaite
Comment from Donald Hill
Comment from Lois White
Comment from Erin Quist
Comment from bruce raymond
Comment from Linda Mitchell
Comment from Therese Hall
Comment from Gabriella Turek
Comment from Karen Quay
Comment from g clemson
Comment from Dawn Hendry
Comment from John McPeek
Comment from Robert Souza
Comment from Marney Reed
Comment from Tom Beatini
Comment from Kerby Miller
Comment from David Middleton
Comment from Elizabeth Slikas
Comment from Jordan Briskin
Comment from Henry Kimbell
Comment from Kenneth Yates
Comment from Jessica Cresseveur
Comment from DANIEL WAITE
Comment from William McWha
Comment from Lisa-May Reynolds
Comment from Stephen Fitch
Comment from Mary OConnor
Comment from Richard Klene
Comment from Doug Harder
Comment from Jaszmene Smith
Comment from Kathleen Kiselewich
Comment from Carole Trickett
Comment from Morgan Lazenby
Comment from Daphne Figueroa
Comment from mark youd
Comment from Roberta Parrish
Comment from Meghan Lempa

01/27/2021
01/27/2021
01/27/2021
01/27/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
01/28/2021
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01/28/2021
01/28/2021
01/28/2021
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01/28/2021
01/28/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021

NOAA-NMFS-2020-0031-DRAFT-6094
NOAA-NMFS-2020-0031-DRAFT-6095
NOAA-NMFS-2020-0031-DRAFT-6096
NOAA-NMFS-2020-0031-DRAFT-6097
NOAA-NMFS-2020-0031-DRAFT-6098
NOAA-NMFS-2020-0031-DRAFT-6099
NOAA-NMFS-2020-0031-DRAFT-6100
NOAA-NMFS-2020-0031-DRAFT-6101
NOAA-NMFS-2020-0031-DRAFT-6102
NOAA-NMFS-2020-0031-DRAFT-6103
NOAA-NMFS-2020-0031-DRAFT-6104
NOAA-NMFS-2020-0031-DRAFT-6105
NOAA-NMFS-2020-0031-DRAFT-6106
NOAA-NMFS-2020-0031-DRAFT-6107
NOAA-NMFS-2020-0031-DRAFT-6108
NOAA-NMFS-2020-0031-DRAFT-6109
NOAA-NMFS-2020-0031-DRAFT-6110
NOAA-NMFS-2020-0031-DRAFT-6111
NOAA-NMFS-2020-0031-DRAFT-6112
NOAA-NMFS-2020-0031-DRAFT-6113
NOAA-NMFS-2020-0031-DRAFT-6114
NOAA-NMFS-2020-0031-DRAFT-6115
NOAA-NMFS-2020-0031-DRAFT-6116
NOAA-NMFS-2020-0031-DRAFT-6117
NOAA-NMFS-2020-0031-DRAFT-6118
NOAA-NMFS-2020-0031-DRAFT-6119
NOAA-NMFS-2020-0031-DRAFT-6120
NOAA-NMFS-2020-0031-DRAFT-6122
NOAA-NMFS-2020-0031-DRAFT-6126
NOAA-NMFS-2020-0031-DRAFT-6128
NOAA-NMFS-2020-0031-DRAFT-6130
NOAA-NMFS-2020-0031-DRAFT-6131
NOAA-NMFS-2020-0031-DRAFT-6132
NOAA-NMFS-2020-0031-DRAFT-6133
NOAA-NMFS-2020-0031-DRAFT-6134
NOAA-NMFS-2020-0031-DRAFT-6135
NOAA-NMFS-2020-0031-DRAFT-6136
NOAA-NMFS-2020-0031-DRAFT-6137
NOAA-NMFS-2020-0031-DRAFT-6138
NOAA-NMFS-2020-0031-DRAFT-6140
NOAA-NMFS-2020-0031-DRAFT-6141

Comment from Michelle Bienick
Comment from Jen Holtz
Comment from Karen Felts
Comment from Ady Larsen
Comment from Myra Toth
Comment from Debbie Thorn
Comment from Tamaira Patton
Comment from Jessie Osborne
Comment from Josefina Lopez
Comment from JOE EARNSHAW
Comment from Bonnie Faith-Smith
Comment from Radha Shenoy
Comment from Susan Babbitt
Comment from Gladys Gonzalez
Comment from Martha Seibert
Comment from Anna Hornick
Comment from Devon Kendall
Comment from Maria Miranda
Comment from Kris Gata
Comment from Irene de Forges
Comment from Kathy Popoff
Comment from Romy Overstreet
Comment from Anthony Patricco
Comment from Anthony Patricco
Comment from Joy Marzolf
Comment from Richard Cullerton
Comment from Linda Gertig
Comment from Holloway, Saundra
Comment from Pool, Joan
Comment from Anonymous
Comment from Vanja Hathcock
Comment from Valerie Brown
Comment from Angela OHare
Comment from Judith Anderson
Comment from Timothy Gaudin
Comment from Victor Heinrich
Comment from Lyda Stillwell
Comment from Riley Canada
Comment from Gordon Abrams
Comment from Richard Detar
Comment from kathy haverkamp

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1084
NOAA-NMFS-2020-0031-DRAFT-1085
NOAA-NMFS-2020-0031-DRAFT-1086
NOAA-NMFS-2020-0031-DRAFT-1087
NOAA-NMFS-2020-0031-DRAFT-1088
NOAA-NMFS-2020-0031-DRAFT-1089
NOAA-NMFS-2020-0031-DRAFT-1090
NOAA-NMFS-2020-0031-DRAFT-1091
NOAA-NMFS-2020-0031-DRAFT-1092
NOAA-NMFS-2020-0031-DRAFT-1093
NOAA-NMFS-2020-0031-DRAFT-1094
NOAA-NMFS-2020-0031-DRAFT-1095
NOAA-NMFS-2020-0031-DRAFT-1096
NOAA-NMFS-2020-0031-DRAFT-1097
NOAA-NMFS-2020-0031-DRAFT-1098
NOAA-NMFS-2020-0031-DRAFT-1099
NOAA-NMFS-2020-0031-DRAFT-1100
NOAA-NMFS-2020-0031-DRAFT-1101
NOAA-NMFS-2020-0031-DRAFT-1102
NOAA-NMFS-2020-0031-DRAFT-1103
NOAA-NMFS-2020-0031-DRAFT-1104
NOAA-NMFS-2020-0031-DRAFT-1105
NOAA-NMFS-2020-0031-DRAFT-1106
NOAA-NMFS-2020-0031-DRAFT-1107
NOAA-NMFS-2020-0031-DRAFT-1108
NOAA-NMFS-2020-0031-DRAFT-1109
NOAA-NMFS-2020-0031-DRAFT-1110
NOAA-NMFS-2020-0031-DRAFT-1111
NOAA-NMFS-2020-0031-DRAFT-1112
NOAA-NMFS-2020-0031-DRAFT-1113
NOAA-NMFS-2020-0031-DRAFT-1114
NOAA-NMFS-2020-0031-DRAFT-1115
NOAA-NMFS-2020-0031-DRAFT-1116
NOAA-NMFS-2020-0031-DRAFT-1117
NOAA-NMFS-2020-0031-DRAFT-1118
NOAA-NMFS-2020-0031-DRAFT-1119
NOAA-NMFS-2020-0031-DRAFT-1120
NOAA-NMFS-2020-0031-DRAFT-1121
NOAA-NMFS-2020-0031-DRAFT-1122
NOAA-NMFS-2020-0031-DRAFT-1123
NOAA-NMFS-2020-0031-DRAFT-1124

Comment from James Robertson
Comment from Emily Van Alyne
Comment from Ra Szumal
Comment from Jan Bargen
Comment from Mary OConnor
Comment from PATRICIA EVERLY
Comment from David Dragon
Comment from Patricia Mctigue
Comment from Robert Wallace
Comment from Harry Blumenthal
Comment from Linda Fowler
Comment from Jill Mossor
Comment from Roger Hollander
Comment from Robert Giambruno
Comment from Kate Skolnick
Comment from Babs Marchand
Comment from lyn mont
Comment from Brett Schultz
Comment from Joseph McCullough
Comment from Michael McCartin
Comment from Ian Shelley
Comment from Joe Racine
Comment from Tim Durnell
Comment from erin znidar
Comment from Charles Patterson
Comment from Michael Orloff
Comment from Maia Van Pelt
Comment from Jini Fisher
Comment from Barbara MacAlpine
Comment from Patricia Lenzen
Comment from Peter Klosterman
Comment from Michael King
Comment from ANNE RETTENMAIR
Comment from Mitch M
Comment from susan ellis
Comment from Susan Lee
Comment from Gavin Kramer
Comment from Brian McKee
Comment from Kathy Kosinski
Comment from Mark Molloy
Comment from Victoria Cross

01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
01/29/2021
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01/29/2021
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01/30/2021
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01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021

NOAA-NMFS-2020-0031-DRAFT-6142
NOAA-NMFS-2020-0031-DRAFT-6143
NOAA-NMFS-2020-0031-DRAFT-6144
NOAA-NMFS-2020-0031-DRAFT-6145
NOAA-NMFS-2020-0031-DRAFT-6146
NOAA-NMFS-2020-0031-DRAFT-6147
NOAA-NMFS-2020-0031-DRAFT-6148
NOAA-NMFS-2020-0031-DRAFT-6149
NOAA-NMFS-2020-0031-DRAFT-6150
NOAA-NMFS-2020-0031-DRAFT-6151
NOAA-NMFS-2020-0031-DRAFT-6152
NOAA-NMFS-2020-0031-DRAFT-6153
NOAA-NMFS-2020-0031-DRAFT-6154
NOAA-NMFS-2020-0031-DRAFT-6156
NOAA-NMFS-2020-0031-DRAFT-6157
NOAA-NMFS-2020-0031-DRAFT-6158
NOAA-NMFS-2020-0031-DRAFT-6159
NOAA-NMFS-2020-0031-DRAFT-6160
NOAA-NMFS-2020-0031-DRAFT-6161
NOAA-NMFS-2020-0031-DRAFT-6162
NOAA-NMFS-2020-0031-DRAFT-6163
NOAA-NMFS-2020-0031-DRAFT-6164
NOAA-NMFS-2020-0031-DRAFT-6165
NOAA-NMFS-2020-0031-DRAFT-6166
NOAA-NMFS-2020-0031-DRAFT-6167
NOAA-NMFS-2020-0031-DRAFT-6168
NOAA-NMFS-2020-0031-DRAFT-6169
NOAA-NMFS-2020-0031-DRAFT-6170
NOAA-NMFS-2020-0031-DRAFT-6171
NOAA-NMFS-2020-0031-DRAFT-6172
NOAA-NMFS-2020-0031-DRAFT-6173
NOAA-NMFS-2020-0031-DRAFT-6174
NOAA-NMFS-2020-0031-DRAFT-6175
NOAA-NMFS-2020-0031-DRAFT-6176
NOAA-NMFS-2020-0031-DRAFT-6177
NOAA-NMFS-2020-0031-DRAFT-6178
NOAA-NMFS-2020-0031-DRAFT-6180
NOAA-NMFS-2020-0031-DRAFT-6181
NOAA-NMFS-2020-0031-DRAFT-6182
NOAA-NMFS-2020-0031-DRAFT-6183
NOAA-NMFS-2020-0031-DRAFT-6184

Comment from Shannon Powers
Comment from Erin kiesow
Comment from Caitlin Walsh
Comment from Tina Bailey
Comment from Petra Hays
Comment from Jamaka Petzak
Comment from Linda Claycomb
Comment from Barbara Hart
Comment from m p
Comment from Andrea Schneider
Comment from Annie Laurie
Comment from June Summers
Comment from Lilly Dakouris
Comment from Kymberly Escobar
Comment from Aaron Kornbluth
Comment from Bobby Hayden
Comment from Haley Marino
Comment from William Nusbaum
Comment from Sharyn Magee
Comment from Bonnie Thompson
Comment from Cheryl Albert
Comment from Deborah Iannizzotto
Comment from Sharon greenrod
Comment from Lynda Nesbitt
Comment from Eileen Levin
Comment from Natasha Varner
Comment from John Thompson
Comment from francis mastri
Comment from Christine King
Comment from Kerry Heck
Comment from Jody Tatum
Comment from Barbara Sorgeler
Comment from Nancy Rogers
Comment from Lura irish
Comment from Randall Sorscher
Comment from Curtis Barnett
Comment from Mary Carrick
Comment from Amy Roberts
Comment from Madison Hoover
Comment from Diana Bohn
Comment from Kathleen O'Connell

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1125
NOAA-NMFS-2020-0031-DRAFT-1126
NOAA-NMFS-2020-0031-DRAFT-1127
NOAA-NMFS-2020-0031-DRAFT-1128
NOAA-NMFS-2020-0031-DRAFT-1129
NOAA-NMFS-2020-0031-DRAFT-1130
NOAA-NMFS-2020-0031-DRAFT-1131
NOAA-NMFS-2020-0031-DRAFT-1132
NOAA-NMFS-2020-0031-DRAFT-1133
NOAA-NMFS-2020-0031-DRAFT-1134
NOAA-NMFS-2020-0031-DRAFT-1135
NOAA-NMFS-2020-0031-DRAFT-1136
NOAA-NMFS-2020-0031-DRAFT-1137
NOAA-NMFS-2020-0031-DRAFT-1138
NOAA-NMFS-2020-0031-DRAFT-1139
NOAA-NMFS-2020-0031-DRAFT-1140
NOAA-NMFS-2020-0031-DRAFT-1141
NOAA-NMFS-2020-0031-DRAFT-1142
NOAA-NMFS-2020-0031-DRAFT-1143
NOAA-NMFS-2020-0031-DRAFT-1144
NOAA-NMFS-2020-0031-DRAFT-1145
NOAA-NMFS-2020-0031-DRAFT-1146
NOAA-NMFS-2020-0031-DRAFT-1147
NOAA-NMFS-2020-0031-DRAFT-1148
NOAA-NMFS-2020-0031-DRAFT-1149
NOAA-NMFS-2020-0031-DRAFT-1150
NOAA-NMFS-2020-0031-DRAFT-1151
NOAA-NMFS-2020-0031-DRAFT-1152
NOAA-NMFS-2020-0031-DRAFT-1153
NOAA-NMFS-2020-0031-DRAFT-1154
NOAA-NMFS-2020-0031-DRAFT-1155
NOAA-NMFS-2020-0031-DRAFT-1156
NOAA-NMFS-2020-0031-DRAFT-1157
NOAA-NMFS-2020-0031-DRAFT-1158
NOAA-NMFS-2020-0031-DRAFT-1159
NOAA-NMFS-2020-0031-DRAFT-1160
NOAA-NMFS-2020-0031-DRAFT-1161
NOAA-NMFS-2020-0031-DRAFT-1162
NOAA-NMFS-2020-0031-DRAFT-1163
NOAA-NMFS-2020-0031-DRAFT-1164
NOAA-NMFS-2020-0031-DRAFT-1165

Comment from sunday kraushaar
Comment from Linda Klein
Comment from Beverly Bradshaw
Comment from Joseph Gulas
Comment from Hal Glidden
Comment from Nicole Bickel
Comment from jacqueline knable
Comment from Amy Cyr
Comment from Tori Herbst
Comment from Terri Blake
Comment from barbara levedahl
Comment from Deb Lincoln
Comment from sheila draughon
Comment from Wilcox Kenneth
Comment from June Balish
Comment from Elizabeth Luebbers
Comment from Patricia Gashlin
Comment from R. Mandelblatt
Comment from Rebecca Frank
Comment from Robert Johnson
Comment from Joe Balsamo
Comment from Jo K.
Comment from John Kim
Comment from Dolores Saenz
Comment from Renee Grant
Comment from diane cote
Comment from Elizabeth Hoffman
Comment from David Randall
Comment from Shirley Sutter
Comment from Carol Patton
Comment from Gordon Cook
Comment from Leticia Garcia
Comment from Thomas Hamilton
Comment from Georgeann ventola
Comment from Jenny Reeves
Comment from Wendy Pratt
Comment from Donald Greenberg
Comment from Janet Harwell
Comment from Linda Tonnesen
Comment from Tristan Sophia
Comment from Dana Sanchez

01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/30/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
01/31/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021

NOAA-NMFS-2020-0031-DRAFT-6185
NOAA-NMFS-2020-0031-DRAFT-6186
NOAA-NMFS-2020-0031-DRAFT-6187
NOAA-NMFS-2020-0031-DRAFT-6188
NOAA-NMFS-2020-0031-DRAFT-6189
NOAA-NMFS-2020-0031-DRAFT-6190
NOAA-NMFS-2020-0031-DRAFT-6191
NOAA-NMFS-2020-0031-DRAFT-6192
NOAA-NMFS-2020-0031-DRAFT-6193
NOAA-NMFS-2020-0031-DRAFT-6194
NOAA-NMFS-2020-0031-DRAFT-6195
NOAA-NMFS-2020-0031-DRAFT-6196
NOAA-NMFS-2020-0031-DRAFT-6197
NOAA-NMFS-2020-0031-DRAFT-6198
NOAA-NMFS-2020-0031-DRAFT-6199
NOAA-NMFS-2020-0031-DRAFT-6201
NOAA-NMFS-2020-0031-DRAFT-6202
NOAA-NMFS-2020-0031-DRAFT-6203
NOAA-NMFS-2020-0031-DRAFT-6204
NOAA-NMFS-2020-0031-DRAFT-6205
NOAA-NMFS-2020-0031-DRAFT-6206
NOAA-NMFS-2020-0031-DRAFT-6207
NOAA-NMFS-2020-0031-DRAFT-6208
NOAA-NMFS-2020-0031-DRAFT-6209
NOAA-NMFS-2020-0031-DRAFT-6210
NOAA-NMFS-2020-0031-DRAFT-6211
NOAA-NMFS-2020-0031-DRAFT-6213
NOAA-NMFS-2020-0031-DRAFT-6214
NOAA-NMFS-2020-0031-DRAFT-6215
NOAA-NMFS-2020-0031-DRAFT-6216
NOAA-NMFS-2020-0031-DRAFT-6217
NOAA-NMFS-2020-0031-DRAFT-6218
NOAA-NMFS-2020-0031-DRAFT-6219
NOAA-NMFS-2020-0031-DRAFT-6220
NOAA-NMFS-2020-0031-DRAFT-6221
NOAA-NMFS-2020-0031-DRAFT-6222
NOAA-NMFS-2020-0031-DRAFT-6223
NOAA-NMFS-2020-0031-DRAFT-6224
NOAA-NMFS-2020-0031-DRAFT-6225
NOAA-NMFS-2020-0031-DRAFT-6226
NOAA-NMFS-2020-0031-DRAFT-6227

Comment from Denise Lytle
Comment from Astrid Jarvis
Comment from Otto Salm
Comment from Melissa Bishop
Comment from Warren Kerrigan
Comment from Nicholas Sherman
Comment from Ryan Orgera
Comment from Todd Monson
Comment from Mary Sanders
Comment from julie peppard
Comment from Paul Spiers
Comment from Kerry Heck
Comment from Karen Barnes
Comment from Karen Barnes
Comment from Cristina Smith
Comment from Steven Steele
Comment from Anne Kreider
Comment from John Paone
Comment from Jean Tabin
Comment from Paul Bickmore
Comment from Judy Kading
Comment from Eric Griffith
Comment from Anna Camarata
Comment from Susan Gerry
Comment from Molly duffy
Comment from Rosalyn Rohloff
Comment from eric pash
Comment from Colleen Robson
Comment from Robert Hartford
Comment from Jean Bakowycz
Comment from Cohn Nancy
Comment from Judi Travis
Comment from Alice Felix
Comment from Robert Park
Comment from Kris Aaron
Comment from Kelly Carlson
Comment from Cynthia Allen
Comment from Anonymous Anonymous
Comment from Edward Flanagan
Comment from Nicole Byrd
Comment from Aimee Schmidt

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1166
NOAA-NMFS-2020-0031-DRAFT-1167
NOAA-NMFS-2020-0031-DRAFT-1168
NOAA-NMFS-2020-0031-DRAFT-1169
NOAA-NMFS-2020-0031-DRAFT-1170
NOAA-NMFS-2020-0031-DRAFT-1171
NOAA-NMFS-2020-0031-DRAFT-1172
NOAA-NMFS-2020-0031-DRAFT-1173
NOAA-NMFS-2020-0031-DRAFT-1174
NOAA-NMFS-2020-0031-DRAFT-1175
NOAA-NMFS-2020-0031-DRAFT-1176
NOAA-NMFS-2020-0031-DRAFT-1177
NOAA-NMFS-2020-0031-DRAFT-1178
NOAA-NMFS-2020-0031-DRAFT-1179
NOAA-NMFS-2020-0031-DRAFT-1180
NOAA-NMFS-2020-0031-DRAFT-1181
NOAA-NMFS-2020-0031-DRAFT-1182
NOAA-NMFS-2020-0031-DRAFT-1183
NOAA-NMFS-2020-0031-DRAFT-1184
NOAA-NMFS-2020-0031-DRAFT-1185
NOAA-NMFS-2020-0031-DRAFT-1186
NOAA-NMFS-2020-0031-DRAFT-1187
NOAA-NMFS-2020-0031-DRAFT-1188
NOAA-NMFS-2020-0031-DRAFT-1189
NOAA-NMFS-2020-0031-DRAFT-1190
NOAA-NMFS-2020-0031-DRAFT-1191
NOAA-NMFS-2020-0031-DRAFT-1192
NOAA-NMFS-2020-0031-DRAFT-1193
NOAA-NMFS-2020-0031-DRAFT-1194
NOAA-NMFS-2020-0031-DRAFT-1195
NOAA-NMFS-2020-0031-DRAFT-1196
NOAA-NMFS-2020-0031-DRAFT-1197
NOAA-NMFS-2020-0031-DRAFT-1198
NOAA-NMFS-2020-0031-DRAFT-1199
NOAA-NMFS-2020-0031-DRAFT-1200
NOAA-NMFS-2020-0031-DRAFT-1201
NOAA-NMFS-2020-0031-DRAFT-1202
NOAA-NMFS-2020-0031-DRAFT-1203
NOAA-NMFS-2020-0031-DRAFT-1204
NOAA-NMFS-2020-0031-DRAFT-1205
NOAA-NMFS-2020-0031-DRAFT-1206

Comment from Kay Sundstrom
Comment from Cathy Reynolds
Comment from Kelly Hibbert
Comment from Michelle MacKenzie
Comment from Robert Anderson
Comment from Carlene Deits-Lebehn
Comment from Angela Ramirez
Comment from Sarah Gray
Comment from Chad Johnson
Comment from doug krause
Comment from David Rockwell
Comment from steve schatvet
Comment from Alice LeTourneau
Comment from Jan Siemucha
Comment from Angelika Pfutzner
Comment from Elaine Preston
Comment from Marilyn Guterman
Comment from JULIANNA BENEFIELD
Comment from pat lukensmeyer
Comment from Becky Hixson
Comment from Ruth Curiale
Comment from alicia jackson
Comment from Glenna Harris
Comment from Patricia Poock
Comment from Elaine Benjamin
Comment from Dawn Reed
Comment from Judith Glixon
Comment from Kenneth Wright
Comment from Robbi Courtaway
Comment from Rick Edmondson
Comment from Michael Violante
Comment from Alan Foster
Comment from Jeffrey Ward
Comment from Marilyn Koff
Comment from Joseph White
Comment from Frank Blake
Comment from Michele Temple
Comment from Tara Gonzales
Comment from Mana Iluna
Comment from Linda Moorehead
Comment from Dan Racz

02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/01/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6228
NOAA-NMFS-2020-0031-DRAFT-6229
NOAA-NMFS-2020-0031-DRAFT-6230
NOAA-NMFS-2020-0031-DRAFT-6231
NOAA-NMFS-2020-0031-DRAFT-6232
NOAA-NMFS-2020-0031-DRAFT-6233
NOAA-NMFS-2020-0031-DRAFT-6234
NOAA-NMFS-2020-0031-DRAFT-6235
NOAA-NMFS-2020-0031-DRAFT-6236
NOAA-NMFS-2020-0031-DRAFT-6237
NOAA-NMFS-2020-0031-DRAFT-6239
NOAA-NMFS-2020-0031-DRAFT-6240
NOAA-NMFS-2020-0031-DRAFT-6241
NOAA-NMFS-2020-0031-DRAFT-6242
NOAA-NMFS-2020-0031-DRAFT-6243
NOAA-NMFS-2020-0031-DRAFT-6244
NOAA-NMFS-2020-0031-DRAFT-6245
NOAA-NMFS-2020-0031-DRAFT-6246
NOAA-NMFS-2020-0031-DRAFT-6247
NOAA-NMFS-2020-0031-DRAFT-6248
NOAA-NMFS-2020-0031-DRAFT-6249
NOAA-NMFS-2020-0031-DRAFT-6250
NOAA-NMFS-2020-0031-DRAFT-6251
NOAA-NMFS-2020-0031-DRAFT-6252
NOAA-NMFS-2020-0031-DRAFT-6253
NOAA-NMFS-2020-0031-DRAFT-6254
NOAA-NMFS-2020-0031-DRAFT-6255
NOAA-NMFS-2020-0031-DRAFT-6256
NOAA-NMFS-2020-0031-DRAFT-6257
NOAA-NMFS-2020-0031-DRAFT-6258
NOAA-NMFS-2020-0031-DRAFT-6259
NOAA-NMFS-2020-0031-DRAFT-6260
NOAA-NMFS-2020-0031-DRAFT-6261
NOAA-NMFS-2020-0031-DRAFT-6262
NOAA-NMFS-2020-0031-DRAFT-6263
NOAA-NMFS-2020-0031-DRAFT-6264
NOAA-NMFS-2020-0031-DRAFT-6266
NOAA-NMFS-2020-0031-DRAFT-6267
NOAA-NMFS-2020-0031-DRAFT-6268
NOAA-NMFS-2020-0031-DRAFT-6269
NOAA-NMFS-2020-0031-DRAFT-6270

Comment from Gretchen holtz
Comment from Saula Siegel
Comment from Deb Schneider-Murphy
Comment from Lisa Selby
Comment from A D
Comment from Lisa Salazar
Comment from Ann Phelan
Comment from Kathleen O'Connell
Comment from Hyde Post
Comment from Sean Harper
Comment from MP Atha
Comment from Dayanara De Oca
Comment from Donna Hunt
Comment from Liz Ernst
Comment from jennifer thompson
Comment from Jeffrey Albertson
Comment from Linda Waine
Comment from Lizbeth Simpson
Comment from Roy Taylor
Comment from michelle lang
Comment from Gayle Edelman-Tolchin
Comment from Paige RN
Comment from SUSAN RATKIEWICH
Comment from Douglas Robinson
Comment from Melody Masi
Comment from Lauren Schoenleber
Comment from Morgan Boots
Comment from Ilya Speranza
Comment from Silvana Camera
Comment from Caleb Pollack
Comment from Carla Korrick
Comment from Margaret Raynolds
Comment from Ronald Thuemler
Comment from Ellen Weisbecker
Comment from Lynne Morrissey
Comment from Marcos Minosso
Comment from Maureen Schiener
Comment from Lashes Wells
Comment from Lynn Young
Comment from Cathy Weisbecker
Comment from Bekki Bearheart

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1207
NOAA-NMFS-2020-0031-DRAFT-1208
NOAA-NMFS-2020-0031-DRAFT-1209
NOAA-NMFS-2020-0031-DRAFT-1210
NOAA-NMFS-2020-0031-DRAFT-1211
NOAA-NMFS-2020-0031-DRAFT-1212
NOAA-NMFS-2020-0031-DRAFT-1213
NOAA-NMFS-2020-0031-DRAFT-1214
NOAA-NMFS-2020-0031-DRAFT-1215
NOAA-NMFS-2020-0031-DRAFT-1216
NOAA-NMFS-2020-0031-DRAFT-1217
NOAA-NMFS-2020-0031-DRAFT-1218
NOAA-NMFS-2020-0031-DRAFT-1219
NOAA-NMFS-2020-0031-DRAFT-1220
NOAA-NMFS-2020-0031-DRAFT-1221
NOAA-NMFS-2020-0031-DRAFT-1222
NOAA-NMFS-2020-0031-DRAFT-1223
NOAA-NMFS-2020-0031-DRAFT-1224
NOAA-NMFS-2020-0031-DRAFT-1225
NOAA-NMFS-2020-0031-DRAFT-1226
NOAA-NMFS-2020-0031-DRAFT-1227
NOAA-NMFS-2020-0031-DRAFT-1228
NOAA-NMFS-2020-0031-DRAFT-1229
NOAA-NMFS-2020-0031-DRAFT-1230
NOAA-NMFS-2020-0031-DRAFT-1231
NOAA-NMFS-2020-0031-DRAFT-1232
NOAA-NMFS-2020-0031-DRAFT-1233
NOAA-NMFS-2020-0031-DRAFT-1234
NOAA-NMFS-2020-0031-DRAFT-1235
NOAA-NMFS-2020-0031-DRAFT-1236
NOAA-NMFS-2020-0031-DRAFT-1237
NOAA-NMFS-2020-0031-DRAFT-1238
NOAA-NMFS-2020-0031-DRAFT-1239
NOAA-NMFS-2020-0031-DRAFT-1240
NOAA-NMFS-2020-0031-DRAFT-1241
NOAA-NMFS-2020-0031-DRAFT-1242
NOAA-NMFS-2020-0031-DRAFT-1243
NOAA-NMFS-2020-0031-DRAFT-1244
NOAA-NMFS-2020-0031-DRAFT-1245
NOAA-NMFS-2020-0031-DRAFT-1246
NOAA-NMFS-2020-0031-DRAFT-1247

Comment from Kermit Cuff
Comment from Claire Bush
Comment from Sandy Stuhaan
Comment from Maria Yepes
Comment from Ann Myers
Comment from S. Barnhart
Comment from Chris Frost
Comment from Carol g
Comment from Barbara Sorgeler
Comment from Ruth Steenwyk
Comment from Lori Bryan
Comment from sherrri hodges
Comment from Carol Sears
Comment from Jeff Levicke
Comment from ina pillar
Comment from Sheila Silan
Comment from Alan Peterson
Comment from Tansy Woods
Comment from Jack Dunham
Comment from Kenneth Krehn
Comment from Terrence Pyle
Comment from tami mccready
Comment from Sharon Wushensky
Comment from Edward Temple
Comment from Gary Wrasse
Comment from S Dragieff
Comment from Scott Cecile
Comment from Tom Wendel
Comment from Melissa Ambrose
Comment from ina pillar
Comment from Bridgett Heinly
Comment from Sara Miller
Comment from Cynthia Sampson
Comment from Eileen Patch
Comment from Thinh Ngo
Comment from Mimi Abers
Comment from Michael Kenny
Comment from Peter Tafuri
Comment from Kathleen Clark
Comment from Karen Witty
Comment from George Marsh

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6273
NOAA-NMFS-2020-0031-DRAFT-6274
NOAA-NMFS-2020-0031-DRAFT-6275
NOAA-NMFS-2020-0031-DRAFT-6276
NOAA-NMFS-2020-0031-DRAFT-6277
NOAA-NMFS-2020-0031-DRAFT-6278
NOAA-NMFS-2020-0031-DRAFT-6279
NOAA-NMFS-2020-0031-DRAFT-6280
NOAA-NMFS-2020-0031-DRAFT-6281
NOAA-NMFS-2020-0031-DRAFT-6282
NOAA-NMFS-2020-0031-DRAFT-6283
NOAA-NMFS-2020-0031-DRAFT-6284
NOAA-NMFS-2020-0031-DRAFT-6285
NOAA-NMFS-2020-0031-DRAFT-6286
NOAA-NMFS-2020-0031-DRAFT-6287
NOAA-NMFS-2020-0031-DRAFT-6288
NOAA-NMFS-2020-0031-DRAFT-6289
NOAA-NMFS-2020-0031-DRAFT-6290
NOAA-NMFS-2020-0031-DRAFT-6291
NOAA-NMFS-2020-0031-DRAFT-6292
NOAA-NMFS-2020-0031-DRAFT-6293
NOAA-NMFS-2020-0031-DRAFT-6294
NOAA-NMFS-2020-0031-DRAFT-6295
NOAA-NMFS-2020-0031-DRAFT-6296
NOAA-NMFS-2020-0031-DRAFT-6297
NOAA-NMFS-2020-0031-DRAFT-6298
NOAA-NMFS-2020-0031-DRAFT-6299
NOAA-NMFS-2020-0031-DRAFT-6300
NOAA-NMFS-2020-0031-DRAFT-6301
NOAA-NMFS-2020-0031-DRAFT-6302
NOAA-NMFS-2020-0031-DRAFT-6303
NOAA-NMFS-2020-0031-DRAFT-6304
NOAA-NMFS-2020-0031-DRAFT-6305
NOAA-NMFS-2020-0031-DRAFT-6306
NOAA-NMFS-2020-0031-DRAFT-6307
NOAA-NMFS-2020-0031-DRAFT-6308
NOAA-NMFS-2020-0031-DRAFT-6309
NOAA-NMFS-2020-0031-DRAFT-6310
NOAA-NMFS-2020-0031-DRAFT-6311
NOAA-NMFS-2020-0031-DRAFT-6312
NOAA-NMFS-2020-0031-DRAFT-6313

Comment from Doreen Testani
Comment from Cindy Falabella
Comment from cheryl kathan
Comment from Brian Gingras
Comment from Carol glazer
Comment from Robert Davis
Comment from Barbara Rogers
Comment from Mary Winter
Comment from Lisa Jasay
Comment from Kyle McAdam
Comment from Jo Jones
Comment from Jenny Gray
Comment from Susan Lupo
Comment from Anona Stetson
Comment from Carol Hagarty
Comment from Martha Bowen
Comment from Ruth Tranquillo
Comment from Julie Sabella
Comment from Jo White
Comment from Phyllis Huang
Comment from Laura Martin
Comment from Jack longo
Comment from Barrie Conger
Comment from Polly McClendon
Comment from Jeffrey Freilich
Comment from PETER HEWITT
Comment from Mary Dunlap
Comment from Deborah Charlow
Comment from Jacqueline Daly
Comment from Jim Norris
Comment from Susan Tomaselli
Comment from Patricia Vincent
Comment from Corinne Case
Comment from Sara Warner
Comment from Anna Jacus
Comment from Giana Gelsey
Comment from patricia Eaton
Comment from David Kay
Comment from Jenifer Johnson
Comment from Holly Crawford
Comment from Rena Maalouf

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1248
NOAA-NMFS-2020-0031-DRAFT-1249
NOAA-NMFS-2020-0031-DRAFT-1250
NOAA-NMFS-2020-0031-DRAFT-1251
NOAA-NMFS-2020-0031-DRAFT-1252
NOAA-NMFS-2020-0031-DRAFT-1253
NOAA-NMFS-2020-0031-DRAFT-1254
NOAA-NMFS-2020-0031-DRAFT-1255
NOAA-NMFS-2020-0031-DRAFT-1256
NOAA-NMFS-2020-0031-DRAFT-1257
NOAA-NMFS-2020-0031-DRAFT-1258
NOAA-NMFS-2020-0031-DRAFT-1259
NOAA-NMFS-2020-0031-DRAFT-1260
NOAA-NMFS-2020-0031-DRAFT-1261
NOAA-NMFS-2020-0031-DRAFT-1262
NOAA-NMFS-2020-0031-DRAFT-1263
NOAA-NMFS-2020-0031-DRAFT-1264
NOAA-NMFS-2020-0031-DRAFT-1265
NOAA-NMFS-2020-0031-DRAFT-1266
NOAA-NMFS-2020-0031-DRAFT-1267
NOAA-NMFS-2020-0031-DRAFT-1268
NOAA-NMFS-2020-0031-DRAFT-1269
NOAA-NMFS-2020-0031-DRAFT-1270
NOAA-NMFS-2020-0031-DRAFT-1271
NOAA-NMFS-2020-0031-DRAFT-1272
NOAA-NMFS-2020-0031-DRAFT-1273
NOAA-NMFS-2020-0031-DRAFT-1274
NOAA-NMFS-2020-0031-DRAFT-1275
NOAA-NMFS-2020-0031-DRAFT-1276
NOAA-NMFS-2020-0031-DRAFT-1277
NOAA-NMFS-2020-0031-DRAFT-1278
NOAA-NMFS-2020-0031-DRAFT-1279
NOAA-NMFS-2020-0031-DRAFT-1280
NOAA-NMFS-2020-0031-DRAFT-1281
NOAA-NMFS-2020-0031-DRAFT-1282
NOAA-NMFS-2020-0031-DRAFT-1283
NOAA-NMFS-2020-0031-DRAFT-1284
NOAA-NMFS-2020-0031-DRAFT-1285
NOAA-NMFS-2020-0031-DRAFT-1286
NOAA-NMFS-2020-0031-DRAFT-1287
NOAA-NMFS-2020-0031-DRAFT-1288

Comment from Alastair Green
Comment from Dianna Holland
Comment from Lance Kammerud
Comment from Victoria Randall
Comment from Magdalena Czech
Comment from Tracy Marotta
Comment from Lisa Acher
Comment from J Anderson
Comment from Peter Kukla
Comment from Sylvia Duncan
Comment from Sharron Coontz
Comment from Jeff fromberg
Comment from Linda Rea
Comment from Amelia Boyer
Comment from tess Fraad
Comment from Terry Bulla
Comment from Valeria Mola
Comment from Mary Keil
Comment from Virginia Caraco
Comment from John Cox
Comment from Jill Singer
Comment from Marc Fleisher
Comment from Martha Swartz
Comment from Andrew Lenz
Comment from Pat Dufau
Comment from JILL KOTCH
Comment from Steven Fenster
Comment from Lillian Yamamoto
Comment from Reg Jones
Comment from Peggy Alpert
Comment from Tim Ryan
Comment from Daniel Wilkinson
Comment from Don Thomsen
Comment from Blair Kangley
Comment from Annie McMahon
Comment from Mary Carroll
Comment from Mark Caso
Comment from Ellen Kabat
Comment from Greg Brown
Comment from Cathleen Burns
Comment from Carolyn Haupt

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6314
NOAA-NMFS-2020-0031-DRAFT-6315
NOAA-NMFS-2020-0031-DRAFT-6316
NOAA-NMFS-2020-0031-DRAFT-6317
NOAA-NMFS-2020-0031-DRAFT-6318
NOAA-NMFS-2020-0031-DRAFT-6319
NOAA-NMFS-2020-0031-DRAFT-6320
NOAA-NMFS-2020-0031-DRAFT-6321
NOAA-NMFS-2020-0031-DRAFT-6322
NOAA-NMFS-2020-0031-DRAFT-6323
NOAA-NMFS-2020-0031-DRAFT-6324
NOAA-NMFS-2020-0031-DRAFT-6325
NOAA-NMFS-2020-0031-DRAFT-6326
NOAA-NMFS-2020-0031-DRAFT-6327
NOAA-NMFS-2020-0031-DRAFT-6328
NOAA-NMFS-2020-0031-DRAFT-6329
NOAA-NMFS-2020-0031-DRAFT-6330
NOAA-NMFS-2020-0031-DRAFT-6331
NOAA-NMFS-2020-0031-DRAFT-6332
NOAA-NMFS-2020-0031-DRAFT-6333
NOAA-NMFS-2020-0031-DRAFT-6334
NOAA-NMFS-2020-0031-DRAFT-6335
NOAA-NMFS-2020-0031-DRAFT-6336
NOAA-NMFS-2020-0031-DRAFT-6337
NOAA-NMFS-2020-0031-DRAFT-6338
NOAA-NMFS-2020-0031-DRAFT-6339
NOAA-NMFS-2020-0031-DRAFT-6340
NOAA-NMFS-2020-0031-DRAFT-6341
NOAA-NMFS-2020-0031-DRAFT-6342
NOAA-NMFS-2020-0031-DRAFT-6343
NOAA-NMFS-2020-0031-DRAFT-6344
NOAA-NMFS-2020-0031-DRAFT-6345
NOAA-NMFS-2020-0031-DRAFT-6346
NOAA-NMFS-2020-0031-DRAFT-6347
NOAA-NMFS-2020-0031-DRAFT-6348
NOAA-NMFS-2020-0031-DRAFT-6349
NOAA-NMFS-2020-0031-DRAFT-6350
NOAA-NMFS-2020-0031-DRAFT-6351
NOAA-NMFS-2020-0031-DRAFT-6352
NOAA-NMFS-2020-0031-DRAFT-6353
NOAA-NMFS-2020-0031-DRAFT-6354

Comment from Terry Bulla
Comment from Constance Graham
Comment from Rachel Vandinter
Comment from Kari Dennis
Comment from Michelle Billings
Comment from Jilliana DeVenuto
Comment from Donna Rudy
Comment from michael bcoian
Comment from Rick Spates
Comment from Suzan Woychuk
Comment from Joanna Craig
Comment from Kam Baker
Comment from Deborah Schafer
Comment from Paul Brendel
Comment from Carol Komstock
Comment from lee derus
Comment from Jerry Mastriano
Comment from Susan Cerniglia
Comment from Deborah Kyle
Comment from Barbara Jannicelli
Comment from Aaron Caye
Comment from Karen Ryckman
Comment from Lisa Jacobson
Comment from Doug Roaten
Comment from Bette McNally
Comment from Lisa Toth
Comment from Fredette Hallstead
Comment from Melissa Barnard
Comment from Ralph Montilio
Comment from Mary Rush
Comment from Rosemary Heydt
Comment from Susan Wheatley
Comment from Charlene Naper
Comment from Dennis Mayo
Comment from Elizabeth McSweeney
Comment from Dianne Holmes
Comment from Eric Schwartz
Comment from ellen roth
Comment from Betsy Lundell
Comment from Nancy Harris
Comment from Daniel OBrien

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1289
NOAA-NMFS-2020-0031-DRAFT-1290
NOAA-NMFS-2020-0031-DRAFT-1291
NOAA-NMFS-2020-0031-DRAFT-1292
NOAA-NMFS-2020-0031-DRAFT-1293
NOAA-NMFS-2020-0031-DRAFT-1294
NOAA-NMFS-2020-0031-DRAFT-1295
NOAA-NMFS-2020-0031-DRAFT-1296
NOAA-NMFS-2020-0031-DRAFT-1297
NOAA-NMFS-2020-0031-DRAFT-1298
NOAA-NMFS-2020-0031-DRAFT-1299
NOAA-NMFS-2020-0031-DRAFT-1300
NOAA-NMFS-2020-0031-DRAFT-1301
NOAA-NMFS-2020-0031-DRAFT-1302
NOAA-NMFS-2020-0031-DRAFT-1303
NOAA-NMFS-2020-0031-DRAFT-1304
NOAA-NMFS-2020-0031-DRAFT-1305
NOAA-NMFS-2020-0031-DRAFT-1306
NOAA-NMFS-2020-0031-DRAFT-1307
NOAA-NMFS-2020-0031-DRAFT-1308
NOAA-NMFS-2020-0031-DRAFT-1309
NOAA-NMFS-2020-0031-DRAFT-1310
NOAA-NMFS-2020-0031-DRAFT-1311
NOAA-NMFS-2020-0031-DRAFT-1312
NOAA-NMFS-2020-0031-DRAFT-1313
NOAA-NMFS-2020-0031-DRAFT-1314
NOAA-NMFS-2020-0031-DRAFT-1315
NOAA-NMFS-2020-0031-DRAFT-1316
NOAA-NMFS-2020-0031-DRAFT-1317
NOAA-NMFS-2020-0031-DRAFT-1318
NOAA-NMFS-2020-0031-DRAFT-1319
NOAA-NMFS-2020-0031-DRAFT-1320
NOAA-NMFS-2020-0031-DRAFT-1321
NOAA-NMFS-2020-0031-DRAFT-1322
NOAA-NMFS-2020-0031-DRAFT-1323
NOAA-NMFS-2020-0031-DRAFT-1324
NOAA-NMFS-2020-0031-DRAFT-1325
NOAA-NMFS-2020-0031-DRAFT-1326
NOAA-NMFS-2020-0031-DRAFT-1327
NOAA-NMFS-2020-0031-DRAFT-1328
NOAA-NMFS-2020-0031-DRAFT-1329

Comment from Dona Ward
Comment from Loisann Sciarrillo
Comment from Patricia Stock
Comment from Kathleen Mcwhorter
Comment from Rosemary Hewett
Comment from Janet Tice
Comment from Michael Bond
Comment from John Weston
Comment from Suanne Williams-Lindgren
Comment from Ingrid Rochester
Comment from Juanita Garcia
Comment from John Dervin
Comment from Nancy Carl
Comment from Richard DeGroot
Comment from Jack Sobel
Comment from Byron Dale
Comment from Valory Mitchell
Comment from kimble darlington
Comment from Gary Cooper
Comment from Deborah Doolittle
Comment from Debbie Bonnet
Comment from simona podskubkova
Comment from Andrea Fenwick
Comment from Craig Kaspark
Comment from Stephanie clark
Comment from George Gatcomb
Comment from Elaine Russell
Comment from Malcolm Glass
Comment from Hope Schnee
Comment from Janet Wheeler
Comment from David Whiteman
Comment from John Borland
Comment from Jody Goldstein
Comment from Becky Monger
Comment from Robin Morton
Comment from Michael Brooke
Comment from James Duncan
Comment from sandy draus
Comment from Doreen McCammon
Comment from Randy Davis
Comment from Soretta Rodack

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6355
NOAA-NMFS-2020-0031-DRAFT-6356
NOAA-NMFS-2020-0031-DRAFT-6357
NOAA-NMFS-2020-0031-DRAFT-6358
NOAA-NMFS-2020-0031-DRAFT-6359
NOAA-NMFS-2020-0031-DRAFT-6360
NOAA-NMFS-2020-0031-DRAFT-6361
NOAA-NMFS-2020-0031-DRAFT-6362
NOAA-NMFS-2020-0031-DRAFT-6363
NOAA-NMFS-2020-0031-DRAFT-6364
NOAA-NMFS-2020-0031-DRAFT-6365
NOAA-NMFS-2020-0031-DRAFT-6366
NOAA-NMFS-2020-0031-DRAFT-6367
NOAA-NMFS-2020-0031-DRAFT-6368
NOAA-NMFS-2020-0031-DRAFT-6369
NOAA-NMFS-2020-0031-DRAFT-6370
NOAA-NMFS-2020-0031-DRAFT-6371
NOAA-NMFS-2020-0031-DRAFT-6372
NOAA-NMFS-2020-0031-DRAFT-6373
NOAA-NMFS-2020-0031-DRAFT-6374
NOAA-NMFS-2020-0031-DRAFT-6375
NOAA-NMFS-2020-0031-DRAFT-6376
NOAA-NMFS-2020-0031-DRAFT-6377
NOAA-NMFS-2020-0031-DRAFT-6378
NOAA-NMFS-2020-0031-DRAFT-6379
NOAA-NMFS-2020-0031-DRAFT-6380
NOAA-NMFS-2020-0031-DRAFT-6381
NOAA-NMFS-2020-0031-DRAFT-6382
NOAA-NMFS-2020-0031-DRAFT-6383
NOAA-NMFS-2020-0031-DRAFT-6384
NOAA-NMFS-2020-0031-DRAFT-6385
NOAA-NMFS-2020-0031-DRAFT-6386
NOAA-NMFS-2020-0031-DRAFT-6387
NOAA-NMFS-2020-0031-DRAFT-6388
NOAA-NMFS-2020-0031-DRAFT-6389
NOAA-NMFS-2020-0031-DRAFT-6390
NOAA-NMFS-2020-0031-DRAFT-6391
NOAA-NMFS-2020-0031-DRAFT-6392
NOAA-NMFS-2020-0031-DRAFT-6393
NOAA-NMFS-2020-0031-DRAFT-6394
NOAA-NMFS-2020-0031-DRAFT-6395

Comment from Lilian Napoles
Comment from Kathryn Holy
Comment from Carol Gay
Comment from Therese Eby
Comment from Trudy Jones
Comment from Nancy Vinson
Comment from Winnie Riester
Comment from Jimmy Fleming
Comment from Karen Guilliams
Comment from John Neumeister
Comment from So Allen
Comment from Sonny Griffin
Comment from Maureen Dunn
Comment from Benjamin Sinwell
Comment from Jamie Thomas
Comment from Christel Gezels
Comment from Glenn Hufnagel
Comment from Edrie Irvine
Comment from Hilary markoe
Comment from B Royer
Comment from Christine Doering
Comment from Theresa Scharff
Comment from Glenna Waterman
Comment from Marca Leigh
Comment from Sara Hubner
Comment from Waver Broers
Comment from Peter Walker
Comment from Andrew Henry
Comment from Paige RN
Comment from Caryl Speck
Comment from Chris Davenport
Comment from Barbara Abraham
Comment from Emily Dugan
Comment from Christine Mcalpine
Comment from Kathy Rutkowski
Comment from Margaret Divona
Comment from lynn pax
Comment from Margaret Marinari
Comment from Katherine Cregger-Marshall
Comment from Melanie Viola
Comment from Catherine Kowalczyk

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1330
NOAA-NMFS-2020-0031-DRAFT-1331
NOAA-NMFS-2020-0031-DRAFT-1332
NOAA-NMFS-2020-0031-DRAFT-1333
NOAA-NMFS-2020-0031-DRAFT-1334
NOAA-NMFS-2020-0031-DRAFT-1335
NOAA-NMFS-2020-0031-DRAFT-1336
NOAA-NMFS-2020-0031-DRAFT-1337
NOAA-NMFS-2020-0031-DRAFT-1338
NOAA-NMFS-2020-0031-DRAFT-1339
NOAA-NMFS-2020-0031-DRAFT-1340
NOAA-NMFS-2020-0031-DRAFT-1341
NOAA-NMFS-2020-0031-DRAFT-1342
NOAA-NMFS-2020-0031-DRAFT-1343
NOAA-NMFS-2020-0031-DRAFT-1344
NOAA-NMFS-2020-0031-DRAFT-1345
NOAA-NMFS-2020-0031-DRAFT-1346
NOAA-NMFS-2020-0031-DRAFT-1347
NOAA-NMFS-2020-0031-DRAFT-1348
NOAA-NMFS-2020-0031-DRAFT-1349
NOAA-NMFS-2020-0031-DRAFT-1350
NOAA-NMFS-2020-0031-DRAFT-1351
NOAA-NMFS-2020-0031-DRAFT-1352
NOAA-NMFS-2020-0031-DRAFT-1353
NOAA-NMFS-2020-0031-DRAFT-1354
NOAA-NMFS-2020-0031-DRAFT-1355
NOAA-NMFS-2020-0031-DRAFT-1356
NOAA-NMFS-2020-0031-DRAFT-1357
NOAA-NMFS-2020-0031-DRAFT-1358
NOAA-NMFS-2020-0031-DRAFT-1359
NOAA-NMFS-2020-0031-DRAFT-1360
NOAA-NMFS-2020-0031-DRAFT-1361
NOAA-NMFS-2020-0031-DRAFT-1362
NOAA-NMFS-2020-0031-DRAFT-1363
NOAA-NMFS-2020-0031-DRAFT-1364
NOAA-NMFS-2020-0031-DRAFT-1365
NOAA-NMFS-2020-0031-DRAFT-1366
NOAA-NMFS-2020-0031-DRAFT-1367
NOAA-NMFS-2020-0031-DRAFT-1368
NOAA-NMFS-2020-0031-DRAFT-1369
NOAA-NMFS-2020-0031-DRAFT-1370

Comment from Nancy McLaughlin
Comment from Mary McMahon
Comment from David Gussman
Comment from william mittig
Comment from Kim Westlake
Comment from Linda Andrade
Comment from Linda Bruce
Comment from Mary Stanton
Comment from Laurie Merline
Comment from Dennis Clark
Comment from Andrew Jackson
Comment from Deborah Collodel
Comment from Sandra Joos
Comment from Marlene Miller
Comment from e wait
Comment from Kevin Brown
Comment from Susi Higgins
Comment from don dicken
Comment from Ann Williams
Comment from Walter Bock
Comment from Richard Perkowski
Comment from Bruce HIGGINS
Comment from Anne Wolfenbarger
Comment from Patti Eckert
Comment from Kat Davis
Comment from Marie Dopico
Comment from Joan Johnson
Comment from Eileen Prefontaine
Comment from David Allara
Comment from Gary Overby
Comment from Melva Meyer
Comment from Sandra Kuschel
Comment from Robert Schuessler
Comment from Alana Willroth
Comment from John Provencher
Comment from Sue Ochs
Comment from Ileana Clavijo
Comment from Carroll Abshier
Comment from Nancy Coulombe
Comment from Flora Martinez
Comment from Thomas Gardner

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6396
NOAA-NMFS-2020-0031-DRAFT-6397
NOAA-NMFS-2020-0031-DRAFT-6398
NOAA-NMFS-2020-0031-DRAFT-6399
NOAA-NMFS-2020-0031-DRAFT-6400
NOAA-NMFS-2020-0031-DRAFT-6401
NOAA-NMFS-2020-0031-DRAFT-6402
NOAA-NMFS-2020-0031-DRAFT-6403
NOAA-NMFS-2020-0031-DRAFT-6404
NOAA-NMFS-2020-0031-DRAFT-6405
NOAA-NMFS-2020-0031-DRAFT-6406
NOAA-NMFS-2020-0031-DRAFT-6407
NOAA-NMFS-2020-0031-DRAFT-6408
NOAA-NMFS-2020-0031-DRAFT-6409
NOAA-NMFS-2020-0031-DRAFT-6410
NOAA-NMFS-2020-0031-DRAFT-6411
NOAA-NMFS-2020-0031-DRAFT-6412
NOAA-NMFS-2020-0031-DRAFT-6413
NOAA-NMFS-2020-0031-DRAFT-6414
NOAA-NMFS-2020-0031-DRAFT-6415
NOAA-NMFS-2020-0031-DRAFT-6416
NOAA-NMFS-2020-0031-DRAFT-6417
NOAA-NMFS-2020-0031-DRAFT-6418
NOAA-NMFS-2020-0031-DRAFT-6419
NOAA-NMFS-2020-0031-DRAFT-6421
NOAA-NMFS-2020-0031-DRAFT-6422
NOAA-NMFS-2020-0031-DRAFT-6423
NOAA-NMFS-2020-0031-DRAFT-6424
NOAA-NMFS-2020-0031-DRAFT-6425
NOAA-NMFS-2020-0031-DRAFT-6426
NOAA-NMFS-2020-0031-DRAFT-6427
NOAA-NMFS-2020-0031-DRAFT-6428
NOAA-NMFS-2020-0031-DRAFT-6429
NOAA-NMFS-2020-0031-DRAFT-6430
NOAA-NMFS-2020-0031-DRAFT-6431
NOAA-NMFS-2020-0031-DRAFT-6432
NOAA-NMFS-2020-0031-DRAFT-6433
NOAA-NMFS-2020-0031-DRAFT-6434
NOAA-NMFS-2020-0031-DRAFT-6435
NOAA-NMFS-2020-0031-DRAFT-6436
NOAA-NMFS-2020-0031-DRAFT-6437

Comment from Carl Hoffmeister
Comment from David Bache
Comment from Jessica Basi
Comment from Kelly Fiske
Comment from Karen Fain
Comment from Kelly Luna
Comment from Grace Agnew
Comment from William Ralston
Comment from Paula Nowicki
Comment from Donna Mckenney
Comment from Victori Rubietta
Comment from Jackie Cheek
Comment from Virginia LeBlanc
Comment from Catharine Erwin
Comment from Sallie Donkin
Comment from loretta pegg
Comment from Nataliia Dusanovska
Comment from Suzanne zeliff
Comment from Lisa Carlotta
Comment from Carol Prunhuber
Comment from Susan Willson
Comment from Carol Davenport
Comment from Carol Davenport
Comment from Robyn Sharpe
Comment from Eric Brooker
Comment from Angela Brancati
Comment from Patt Hunt
Comment from Cathie Rivera
Comment from Eileen Snitzer
Comment from Candace Dorsey
Comment from Sonia Bagdoian
Comment from Sonya Putlack
Comment from Mini B
Comment from Mr. Dunbar
Comment from John Arnaldi
Comment from Linda Janney
Comment from Betty Cloninger
Comment from Sara Leonard
Comment from Sherry Thompson
Comment from Cara R
Comment from Peter Willwerth

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1371
NOAA-NMFS-2020-0031-DRAFT-1372
NOAA-NMFS-2020-0031-DRAFT-1373
NOAA-NMFS-2020-0031-DRAFT-1374
NOAA-NMFS-2020-0031-DRAFT-1375
NOAA-NMFS-2020-0031-DRAFT-1376
NOAA-NMFS-2020-0031-DRAFT-1377
NOAA-NMFS-2020-0031-DRAFT-1378
NOAA-NMFS-2020-0031-DRAFT-1379
NOAA-NMFS-2020-0031-DRAFT-1380
NOAA-NMFS-2020-0031-DRAFT-1381
NOAA-NMFS-2020-0031-DRAFT-1382
NOAA-NMFS-2020-0031-DRAFT-1383
NOAA-NMFS-2020-0031-DRAFT-1384
NOAA-NMFS-2020-0031-DRAFT-1385
NOAA-NMFS-2020-0031-DRAFT-1386
NOAA-NMFS-2020-0031-DRAFT-1387
NOAA-NMFS-2020-0031-DRAFT-1388
NOAA-NMFS-2020-0031-DRAFT-1389
NOAA-NMFS-2020-0031-DRAFT-1390
NOAA-NMFS-2020-0031-DRAFT-1391
NOAA-NMFS-2020-0031-DRAFT-1392
NOAA-NMFS-2020-0031-DRAFT-1393
NOAA-NMFS-2020-0031-DRAFT-1394
NOAA-NMFS-2020-0031-DRAFT-1395
NOAA-NMFS-2020-0031-DRAFT-1396
NOAA-NMFS-2020-0031-DRAFT-1397
NOAA-NMFS-2020-0031-DRAFT-1398
NOAA-NMFS-2020-0031-DRAFT-1399
NOAA-NMFS-2020-0031-DRAFT-1400
NOAA-NMFS-2020-0031-DRAFT-1401
NOAA-NMFS-2020-0031-DRAFT-1402
NOAA-NMFS-2020-0031-DRAFT-1403
NOAA-NMFS-2020-0031-DRAFT-1404
NOAA-NMFS-2020-0031-DRAFT-1405
NOAA-NMFS-2020-0031-DRAFT-1406
NOAA-NMFS-2020-0031-DRAFT-1407
NOAA-NMFS-2020-0031-DRAFT-1408
NOAA-NMFS-2020-0031-DRAFT-1409
NOAA-NMFS-2020-0031-DRAFT-1410
NOAA-NMFS-2020-0031-DRAFT-1411

Comment from June Picard
Comment from Sarah Hearon
Comment from Anthony Albert
Comment from David Kuether
Comment from Jeannine Lish
Comment from Wendy Wittl
Comment from Margaret Richardson
Comment from Peter Evans
Comment from Walter Bishop
Comment from John Brennan
Comment from Phyllis Annett
Comment from Roslynn Budoff
Comment from Sam Butler
Comment from Donna Brown
Comment from Terri Coppersmith
Comment from Colleen Kelly
Comment from Tracy Troth
Comment from Renee Thomas
Comment from Jennifer Reed
Comment from Jacquelyn Scioscia
Comment from Wendy Bowman
Comment from Steve Disch
Comment from Bjorn Mollersten
Comment from Donna Polson
Comment from Thi TonOlshaskie
Comment from Kelly Allison
Comment from Macey Mott
Comment from A. Hart
Comment from Allan Chen
Comment from Russell Weisz
Comment from Claudia Devinney
Comment from Amy Roberts
Comment from Kathleen Hutchins
Comment from Sam Garbi
Comment from Alison Zyla
Comment from Andrea Lynch
Comment from susan kalan
Comment from Ann Allen
Comment from Barbara Bonfield
Comment from Michael Oblander
Comment from Noel-Anne Brennan

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6438
NOAA-NMFS-2020-0031-DRAFT-6439
NOAA-NMFS-2020-0031-DRAFT-6440
NOAA-NMFS-2020-0031-DRAFT-6441
NOAA-NMFS-2020-0031-DRAFT-6442
NOAA-NMFS-2020-0031-DRAFT-6443
NOAA-NMFS-2020-0031-DRAFT-6444
NOAA-NMFS-2020-0031-DRAFT-6445
NOAA-NMFS-2020-0031-DRAFT-6446
NOAA-NMFS-2020-0031-DRAFT-6447
NOAA-NMFS-2020-0031-DRAFT-6448
NOAA-NMFS-2020-0031-DRAFT-6449
NOAA-NMFS-2020-0031-DRAFT-6450
NOAA-NMFS-2020-0031-DRAFT-6451
NOAA-NMFS-2020-0031-DRAFT-6452
NOAA-NMFS-2020-0031-DRAFT-6453
NOAA-NMFS-2020-0031-DRAFT-6454
NOAA-NMFS-2020-0031-DRAFT-6455
NOAA-NMFS-2020-0031-DRAFT-6456
NOAA-NMFS-2020-0031-DRAFT-6457
NOAA-NMFS-2020-0031-DRAFT-6458
NOAA-NMFS-2020-0031-DRAFT-6459
NOAA-NMFS-2020-0031-DRAFT-6461
NOAA-NMFS-2020-0031-DRAFT-6462
NOAA-NMFS-2020-0031-DRAFT-6463
NOAA-NMFS-2020-0031-DRAFT-6464
NOAA-NMFS-2020-0031-DRAFT-6465
NOAA-NMFS-2020-0031-DRAFT-6466
NOAA-NMFS-2020-0031-DRAFT-6467
NOAA-NMFS-2020-0031-DRAFT-6468
NOAA-NMFS-2020-0031-DRAFT-6469
NOAA-NMFS-2020-0031-DRAFT-6470
NOAA-NMFS-2020-0031-DRAFT-6471
NOAA-NMFS-2020-0031-DRAFT-6472
NOAA-NMFS-2020-0031-DRAFT-6473
NOAA-NMFS-2020-0031-DRAFT-6474
NOAA-NMFS-2020-0031-DRAFT-6475
NOAA-NMFS-2020-0031-DRAFT-6476
NOAA-NMFS-2020-0031-DRAFT-6478
NOAA-NMFS-2020-0031-DRAFT-6480
NOAA-NMFS-2020-0031-DRAFT-6481

Comment from Jon Warcup
Comment from Dawn Corby
Comment from Kathleen Vadnais
Comment from Louise Perret
Comment from Gayle Edelman-Tolchin
Comment from Helen Prokopchuk
Comment from Elka Zwick
Comment from Mari Passananti
Comment from Brenda Roy
Comment from Debora Hojda
Comment from Karen Shepp
Comment from Jacqueline Semit
Comment from Joan Wuischpard
Comment from Linda Campbell
Comment from Patricia Evans
Comment from TJ Murphy
Comment from MARK OFFERMAN
Comment from Richard Blauman
Comment from Sharon Hammon
Comment from Kathleen Jonas
Comment from David Jenkins
Comment from Jennifer Fraley
Comment from Kari King
Comment from Carol Batchelder
Comment from Cindy Carter
Comment from Carol Pulley
Comment from Tammy Evans
Comment from Pamela Rogers
Comment from Thomas Artin
Comment from Mark Relano
Comment from Nancy Fahey
Comment from Jacqueline McGrath-Curtis
Comment from Deb Bowen
Comment from Julie Spry
Comment from Sheila Brenes
Comment from Melissa Mullinax
Comment from Melody Wilkes
Comment from Christine Hilton
Comment from J. Lee
Comment from Elizabeth Cruickshank
Comment from Mercedes Caraco

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1412
NOAA-NMFS-2020-0031-DRAFT-1413
NOAA-NMFS-2020-0031-DRAFT-1414
NOAA-NMFS-2020-0031-DRAFT-1415
NOAA-NMFS-2020-0031-DRAFT-1416
NOAA-NMFS-2020-0031-DRAFT-1417
NOAA-NMFS-2020-0031-DRAFT-1418
NOAA-NMFS-2020-0031-DRAFT-1419
NOAA-NMFS-2020-0031-DRAFT-1420
NOAA-NMFS-2020-0031-DRAFT-1421
NOAA-NMFS-2020-0031-DRAFT-1422
NOAA-NMFS-2020-0031-DRAFT-1423
NOAA-NMFS-2020-0031-DRAFT-1424
NOAA-NMFS-2020-0031-DRAFT-1425
NOAA-NMFS-2020-0031-DRAFT-1426
NOAA-NMFS-2020-0031-DRAFT-1427
NOAA-NMFS-2020-0031-DRAFT-1428
NOAA-NMFS-2020-0031-DRAFT-1429
NOAA-NMFS-2020-0031-DRAFT-1430
NOAA-NMFS-2020-0031-DRAFT-1431
NOAA-NMFS-2020-0031-DRAFT-1432
NOAA-NMFS-2020-0031-DRAFT-1433
NOAA-NMFS-2020-0031-DRAFT-1434
NOAA-NMFS-2020-0031-DRAFT-1435
NOAA-NMFS-2020-0031-DRAFT-1436
NOAA-NMFS-2020-0031-DRAFT-1437
NOAA-NMFS-2020-0031-DRAFT-1438
NOAA-NMFS-2020-0031-DRAFT-1439
NOAA-NMFS-2020-0031-DRAFT-1440
NOAA-NMFS-2020-0031-DRAFT-1441
NOAA-NMFS-2020-0031-DRAFT-1442
NOAA-NMFS-2020-0031-DRAFT-1443
NOAA-NMFS-2020-0031-DRAFT-1444
NOAA-NMFS-2020-0031-DRAFT-1445
NOAA-NMFS-2020-0031-DRAFT-1446
NOAA-NMFS-2020-0031-DRAFT-1447
NOAA-NMFS-2020-0031-DRAFT-1448
NOAA-NMFS-2020-0031-DRAFT-1449
NOAA-NMFS-2020-0031-DRAFT-1450
NOAA-NMFS-2020-0031-DRAFT-1451
NOAA-NMFS-2020-0031-DRAFT-1452

Comment from vana spear
Comment from Randi Gustafsson
Comment from Dave Baine
Comment from Rosanne Tedesco
Comment from JOHN CERVANTES
Comment from Susan Dobbelaere
Comment from Robert Bruce
Comment from Maryann Wardach
Comment from Diane Klump
Comment from Bettie Reina
Comment from L. Wilkinson
Comment from Cheri Mattina
Comment from Nancy Bauer
Comment from Jill McManus
Comment from Ty Webster
Comment from Sherry Monie
Comment from Beverly Bradshaw
Comment from Darren Mitton
Comment from Susan Deemer
Comment from Joan Loney
Comment from s l
Comment from Jamie Klem
Comment from s l
Comment from Donna Brown
Comment from Diana Crispi
Comment from Darla kravetz
Comment from Beverly Bradshaw
Comment from PAMELA SMITH
Comment from Laurel Watson
Comment from Joanna Behrens
Comment from Rita Collins
Comment from Mary Gershanoff
Comment from CHAR HERSH
Comment from Nicola Giorgio
Comment from Michelle Barbour
Comment from Liz Tymkiw
Comment from MELISSA HUEBNER
Comment from Beverly Bradshaw
Comment from Barb Crumpacker
Comment from Francine Lipka
Comment from Dorothy Brooks

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
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02/02/2021
02/02/2021
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02/02/2021
02/02/2021
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02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6482
NOAA-NMFS-2020-0031-DRAFT-6483
NOAA-NMFS-2020-0031-DRAFT-6484
NOAA-NMFS-2020-0031-DRAFT-6485
NOAA-NMFS-2020-0031-DRAFT-6486
NOAA-NMFS-2020-0031-DRAFT-6487
NOAA-NMFS-2020-0031-DRAFT-6488
NOAA-NMFS-2020-0031-DRAFT-6489
NOAA-NMFS-2020-0031-DRAFT-6490
NOAA-NMFS-2020-0031-DRAFT-6491
NOAA-NMFS-2020-0031-DRAFT-6492
NOAA-NMFS-2020-0031-DRAFT-6493
NOAA-NMFS-2020-0031-DRAFT-6494
NOAA-NMFS-2020-0031-DRAFT-6495
NOAA-NMFS-2020-0031-DRAFT-6496
NOAA-NMFS-2020-0031-DRAFT-6497
NOAA-NMFS-2020-0031-DRAFT-6498
NOAA-NMFS-2020-0031-DRAFT-6499
NOAA-NMFS-2020-0031-DRAFT-6500
NOAA-NMFS-2020-0031-DRAFT-6501
NOAA-NMFS-2020-0031-DRAFT-6502
NOAA-NMFS-2020-0031-DRAFT-6503
NOAA-NMFS-2020-0031-DRAFT-6504
NOAA-NMFS-2020-0031-DRAFT-6505
NOAA-NMFS-2020-0031-DRAFT-6506
NOAA-NMFS-2020-0031-DRAFT-6507
NOAA-NMFS-2020-0031-DRAFT-6508
NOAA-NMFS-2020-0031-DRAFT-6509
NOAA-NMFS-2020-0031-DRAFT-6510
NOAA-NMFS-2020-0031-DRAFT-6511
NOAA-NMFS-2020-0031-DRAFT-6512
NOAA-NMFS-2020-0031-DRAFT-6513
NOAA-NMFS-2020-0031-DRAFT-6514
NOAA-NMFS-2020-0031-DRAFT-6515
NOAA-NMFS-2020-0031-DRAFT-6516
NOAA-NMFS-2020-0031-DRAFT-6517
NOAA-NMFS-2020-0031-DRAFT-6518
NOAA-NMFS-2020-0031-DRAFT-6519
NOAA-NMFS-2020-0031-DRAFT-6520
NOAA-NMFS-2020-0031-DRAFT-6521
NOAA-NMFS-2020-0031-DRAFT-6522

Comment from Pamela Dugan
Comment from Holly Ducharme
Comment from Michele Osland
Comment from Alia MacStay
Comment from Edward Roberts
Comment from Pamela Harper
Comment from Janet Smith
Comment from Rebeca Bennett
Comment from Brenda Guilford
Comment from Mary Parish
Comment from Marca Leigh
Comment from Nancy Woolley
Comment from Lesley Staples
Comment from Ada O.
Comment from Chere High
Comment from Min Luetschwager
Comment from Cynthia Brown
Comment from Michelle Atkins
Comment from Will walkthedog
Comment from Mariza Cerff
Comment from Sagar Patel
Comment from Diane Walls
Comment from Karen Rosa
Comment from Alyce Phillips
Comment from Debi Winegar
Comment from Dedra Routh
Comment from Doreen Tetreault
Comment from D hodges
Comment from Jamie Thomas
Comment from Becky Botts
Comment from Nancy Pearl
Comment from Holly Denham
Comment from Tammy Zier
Comment from Mitchell London
Comment from Shanti Copeland
Comment from Lisa Randall
Comment from Lisa Lajoie
Comment from Pam Giardino
Comment from Sagar Patel
Comment from Ramirez Mary
Comment from Jennifer Day

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1453
NOAA-NMFS-2020-0031-DRAFT-1454
NOAA-NMFS-2020-0031-DRAFT-1455
NOAA-NMFS-2020-0031-DRAFT-1456
NOAA-NMFS-2020-0031-DRAFT-1457
NOAA-NMFS-2020-0031-DRAFT-1458
NOAA-NMFS-2020-0031-DRAFT-1459
NOAA-NMFS-2020-0031-DRAFT-1460
NOAA-NMFS-2020-0031-DRAFT-1461
NOAA-NMFS-2020-0031-DRAFT-1462
NOAA-NMFS-2020-0031-DRAFT-1463
NOAA-NMFS-2020-0031-DRAFT-1464
NOAA-NMFS-2020-0031-DRAFT-1465
NOAA-NMFS-2020-0031-DRAFT-1466
NOAA-NMFS-2020-0031-DRAFT-1467
NOAA-NMFS-2020-0031-DRAFT-1468
NOAA-NMFS-2020-0031-DRAFT-1469
NOAA-NMFS-2020-0031-DRAFT-1470
NOAA-NMFS-2020-0031-DRAFT-1471
NOAA-NMFS-2020-0031-DRAFT-1472
NOAA-NMFS-2020-0031-DRAFT-1473
NOAA-NMFS-2020-0031-DRAFT-1474
NOAA-NMFS-2020-0031-DRAFT-1475
NOAA-NMFS-2020-0031-DRAFT-1476
NOAA-NMFS-2020-0031-DRAFT-1477
NOAA-NMFS-2020-0031-DRAFT-1478
NOAA-NMFS-2020-0031-DRAFT-1479
NOAA-NMFS-2020-0031-DRAFT-1480
NOAA-NMFS-2020-0031-DRAFT-1481
NOAA-NMFS-2020-0031-DRAFT-1482
NOAA-NMFS-2020-0031-DRAFT-1483
NOAA-NMFS-2020-0031-DRAFT-1484
NOAA-NMFS-2020-0031-DRAFT-1485
NOAA-NMFS-2020-0031-DRAFT-1486
NOAA-NMFS-2020-0031-DRAFT-1487
NOAA-NMFS-2020-0031-DRAFT-1488
NOAA-NMFS-2020-0031-DRAFT-1489
NOAA-NMFS-2020-0031-DRAFT-1490
NOAA-NMFS-2020-0031-DRAFT-1491
NOAA-NMFS-2020-0031-DRAFT-1492
NOAA-NMFS-2020-0031-DRAFT-1493

Comment from Nina Wouk
Comment from Beverly Bradshaw
Comment from Penelope Andrews
Comment from Arthur Miller
Comment from Diana Hall
Comment from Marina Mooney
Comment from Diana Rowell
Comment from James Lin
Comment from Christopher Tobias
Comment from Eric Crouch
Comment from Carol Devoss
Comment from Chris Jones
Comment from Paul Lima
Comment from DAVID KASTELINE
Comment from Gida Naser
Comment from kathleen casson
Comment from O Lewis
Comment from Ashley partridge
Comment from Sandra Franz
Comment from nico mcafee
Comment from David Cencula
Comment from Barbara Whyman
Comment from Patricia Lewis
Comment from Michael Anderson
Comment from Nancy Miller
Comment from ERIC JARMAN
Comment from James Vallejos
Comment from Maureen Schiener
Comment from Abigail Gindele
Comment from Doris Luther
Comment from Holly Windle
Comment from Meha Kamdar
Comment from Rachel Sorensen
Comment from Nancy Burke
Comment from Lynne Teplin
Comment from George Klipfel
Comment from Amy Zink
Comment from Jessica wardlaw
Comment from Ben Ruwe
Comment from Rebecca Weinberg
Comment from Geoffrey Symcox

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021

NOAA-NMFS-2020-0031-DRAFT-6523
NOAA-NMFS-2020-0031-DRAFT-6524
NOAA-NMFS-2020-0031-DRAFT-6526
NOAA-NMFS-2020-0031-DRAFT-6527
NOAA-NMFS-2020-0031-DRAFT-6528
NOAA-NMFS-2020-0031-DRAFT-6529
NOAA-NMFS-2020-0031-DRAFT-6530
NOAA-NMFS-2020-0031-DRAFT-6531
NOAA-NMFS-2020-0031-DRAFT-6532
NOAA-NMFS-2020-0031-DRAFT-6533
NOAA-NMFS-2020-0031-DRAFT-6534
NOAA-NMFS-2020-0031-DRAFT-6535
NOAA-NMFS-2020-0031-DRAFT-6536
NOAA-NMFS-2020-0031-DRAFT-6537
NOAA-NMFS-2020-0031-DRAFT-6538
NOAA-NMFS-2020-0031-DRAFT-6539
NOAA-NMFS-2020-0031-DRAFT-6540
NOAA-NMFS-2020-0031-DRAFT-6541
NOAA-NMFS-2020-0031-DRAFT-6542
NOAA-NMFS-2020-0031-DRAFT-6543
NOAA-NMFS-2020-0031-DRAFT-6544
NOAA-NMFS-2020-0031-DRAFT-6545
NOAA-NMFS-2020-0031-DRAFT-6546
NOAA-NMFS-2020-0031-DRAFT-6547
NOAA-NMFS-2020-0031-DRAFT-6548
NOAA-NMFS-2020-0031-DRAFT-6549
NOAA-NMFS-2020-0031-DRAFT-6550
NOAA-NMFS-2020-0031-DRAFT-6551
NOAA-NMFS-2020-0031-DRAFT-6552
NOAA-NMFS-2020-0031-DRAFT-6553
NOAA-NMFS-2020-0031-DRAFT-6554
NOAA-NMFS-2020-0031-DRAFT-6555
NOAA-NMFS-2020-0031-DRAFT-6556
NOAA-NMFS-2020-0031-DRAFT-6557
NOAA-NMFS-2020-0031-DRAFT-6558
NOAA-NMFS-2020-0031-DRAFT-6559
NOAA-NMFS-2020-0031-DRAFT-6560
NOAA-NMFS-2020-0031-DRAFT-6561
NOAA-NMFS-2020-0031-DRAFT-6562
NOAA-NMFS-2020-0031-DRAFT-6563
NOAA-NMFS-2020-0031-DRAFT-6564

Comment from Heidi Allen
Comment from Jennifer Sellers
Comment from Aileen Scurato
Comment from Nancy Weber
Comment from Lou Indy
Comment from GLoria Cefalo
Comment from Suzanne Cavallo
Comment from Cyndy Young
Comment from Corinne Chapman
Comment from Linda Phelan
Comment from Debora Moon
Comment from Margaret RICHARDS
Comment from Linda Bean
Comment from Patricia Cunningham
Comment from JoAnna Chapin
Comment from Jo Blackstone
Comment from Anne Hawkinson
Comment from Susan Garvey
Comment from Margaret Marinari
Comment from Joan Seguin
Comment from Cynthia Tribuzio
Comment from Susan Barry
Comment from Vilem Helesic
Comment from Susan Jordan
Comment from Karen Eskelin
Comment from Jayson Gold-Pambianchi
Comment from Faustina Smith
Comment from Rebecca Lambery
Comment from Daniel OBrien
Comment from Jenifer Johnson
Comment from Andrea Chait
Comment from Julie G
Comment from Aoife Barrington-Haber
Comment from Linda Knowles
Comment from Lenore Cunningham
Comment from Lisa larue
Comment from Courtney Sloane
Comment from Patty Downs
Comment from Laura Walker
Comment from Christine Chmielewski
Comment from Abbie Fuksman

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1494
NOAA-NMFS-2020-0031-DRAFT-1495
NOAA-NMFS-2020-0031-DRAFT-1496
NOAA-NMFS-2020-0031-DRAFT-1497
NOAA-NMFS-2020-0031-DRAFT-1498
NOAA-NMFS-2020-0031-DRAFT-1499
NOAA-NMFS-2020-0031-DRAFT-1500
NOAA-NMFS-2020-0031-DRAFT-1501
NOAA-NMFS-2020-0031-DRAFT-1502
NOAA-NMFS-2020-0031-DRAFT-1503
NOAA-NMFS-2020-0031-DRAFT-1504
NOAA-NMFS-2020-0031-DRAFT-1505
NOAA-NMFS-2020-0031-DRAFT-1506
NOAA-NMFS-2020-0031-DRAFT-1507
NOAA-NMFS-2020-0031-DRAFT-1508
NOAA-NMFS-2020-0031-DRAFT-1509
NOAA-NMFS-2020-0031-DRAFT-1510
NOAA-NMFS-2020-0031-DRAFT-1511
NOAA-NMFS-2020-0031-DRAFT-1512
NOAA-NMFS-2020-0031-DRAFT-1513
NOAA-NMFS-2020-0031-DRAFT-1514
NOAA-NMFS-2020-0031-DRAFT-1515
NOAA-NMFS-2020-0031-DRAFT-1516
NOAA-NMFS-2020-0031-DRAFT-1517
NOAA-NMFS-2020-0031-DRAFT-1518
NOAA-NMFS-2020-0031-DRAFT-1519
NOAA-NMFS-2020-0031-DRAFT-1520
NOAA-NMFS-2020-0031-DRAFT-1521
NOAA-NMFS-2020-0031-DRAFT-1522
NOAA-NMFS-2020-0031-DRAFT-1523
NOAA-NMFS-2020-0031-DRAFT-1524
NOAA-NMFS-2020-0031-DRAFT-1525
NOAA-NMFS-2020-0031-DRAFT-1526
NOAA-NMFS-2020-0031-DRAFT-1527
NOAA-NMFS-2020-0031-DRAFT-1528
NOAA-NMFS-2020-0031-DRAFT-1529
NOAA-NMFS-2020-0031-DRAFT-1530
NOAA-NMFS-2020-0031-DRAFT-1531
NOAA-NMFS-2020-0031-DRAFT-1532
NOAA-NMFS-2020-0031-DRAFT-1533
NOAA-NMFS-2020-0031-DRAFT-1534

Comment from Cody Dolnick
Comment from Diane de groot
Comment from Elizabeth Mahony
Comment from Catherine Nelson
Comment from Linda Laddin
Comment from Sabine Lang
Comment from Charlie Gedi
Comment from Roger May
Comment from Scott Emsley
Comment from Simmons Buntin
Comment from Justin Chernow
Comment from Max Burg
Comment from Andrea Pellicani
Comment from Inna Gergel
Comment from Suba Gunawardana
Comment from Christine Harris
Comment from Patricia DeLuca
Comment from Scott Bishop
Comment from Denise Clarke
Comment from Stephanie Fairchild
Comment from stacey murrow
Comment from Bruce Nowak
Comment from Don Thompson
Comment from Pam Little
Comment from Mike Kelly
Comment from Sharon Hobrock
Comment from Katherine Nelson
Comment from Louis Drinkwater
Comment from Bob Steininger
Comment from LuAnn Yocky
Comment from marilyn evenson
Comment from Erin McCarty
Comment from Sheila Martin
Comment from David Wassilak
Comment from Kerry Dearborn
Comment from Bridget Koch-Timothy
Comment from Shawana Sienko
Comment from N. Dumser
Comment from Jacob Listerud
Comment from Nancy Schuhrke
Comment from Allison Mielniczuk

02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
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02/03/2021
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02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6565
NOAA-NMFS-2020-0031-DRAFT-6566
NOAA-NMFS-2020-0031-DRAFT-6567
NOAA-NMFS-2020-0031-DRAFT-6568
NOAA-NMFS-2020-0031-DRAFT-6569
NOAA-NMFS-2020-0031-DRAFT-6570
NOAA-NMFS-2020-0031-DRAFT-6571
NOAA-NMFS-2020-0031-DRAFT-6572
NOAA-NMFS-2020-0031-DRAFT-6573
NOAA-NMFS-2020-0031-DRAFT-6574
NOAA-NMFS-2020-0031-DRAFT-6575
NOAA-NMFS-2020-0031-DRAFT-6576
NOAA-NMFS-2020-0031-DRAFT-6577
NOAA-NMFS-2020-0031-DRAFT-6578
NOAA-NMFS-2020-0031-DRAFT-6579
NOAA-NMFS-2020-0031-DRAFT-6580
NOAA-NMFS-2020-0031-DRAFT-6581
NOAA-NMFS-2020-0031-DRAFT-6582
NOAA-NMFS-2020-0031-DRAFT-6583
NOAA-NMFS-2020-0031-DRAFT-6584
NOAA-NMFS-2020-0031-DRAFT-6585
NOAA-NMFS-2020-0031-DRAFT-6586
NOAA-NMFS-2020-0031-DRAFT-6587
NOAA-NMFS-2020-0031-DRAFT-6588
NOAA-NMFS-2020-0031-DRAFT-6589
NOAA-NMFS-2020-0031-DRAFT-6590
NOAA-NMFS-2020-0031-DRAFT-6591
NOAA-NMFS-2020-0031-DRAFT-6592
NOAA-NMFS-2020-0031-DRAFT-6593
NOAA-NMFS-2020-0031-DRAFT-6594
NOAA-NMFS-2020-0031-DRAFT-6595
NOAA-NMFS-2020-0031-DRAFT-6596
NOAA-NMFS-2020-0031-DRAFT-6597
NOAA-NMFS-2020-0031-DRAFT-6598
NOAA-NMFS-2020-0031-DRAFT-6599
NOAA-NMFS-2020-0031-DRAFT-6600
NOAA-NMFS-2020-0031-DRAFT-6601
NOAA-NMFS-2020-0031-DRAFT-6602
NOAA-NMFS-2020-0031-DRAFT-6603
NOAA-NMFS-2020-0031-DRAFT-6604
NOAA-NMFS-2020-0031-DRAFT-6605

Comment from Olga Copson
Comment from lea c
Comment from Karen Wagner
Comment from Janis Lenderman
Comment from Aurora Madrigal
Comment from Bitgitte Carlsen
Comment from Alfred Walker
Comment from Tammy Bonnema
Comment from Gail Larkin
Comment from Catherine Fiek
Comment from Tiffany Schiff
Comment from Janice Douglas
Comment from Carolyn Kepley
Comment from Sue Stanton
Comment from Nora de Gillespie
Comment from Lori Bryant
Comment from Lorraine Avallone
Comment from Virginia Snyder
Comment from Marca Leigh
Comment from Lisa Nance
Comment from Liesa Berkson
Comment from Lisa Fink
Comment from Julie Walsh
Comment from Mary Peterson
Comment from Lillian Swindell
Comment from Deborah Farmer
Comment from Richard Hallstead
Comment from Annette Luffman-Johnson
Comment from Jeri England
Comment from Frank Montilli
Comment from Patrick Boyce
Comment from Vicki Karlsson
Comment from Erolyn Green
Comment from Brenda Henness
Comment from Donna Peronace
Comment from Christine Doering
Comment from Carolyn Borden
Comment from Debra Raymond
Comment from Nalan Williams
Comment from Kat Elliott
Comment from ED. Cubero

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1535
NOAA-NMFS-2020-0031-DRAFT-1536
NOAA-NMFS-2020-0031-DRAFT-1537
NOAA-NMFS-2020-0031-DRAFT-1538
NOAA-NMFS-2020-0031-DRAFT-1539
NOAA-NMFS-2020-0031-DRAFT-1540
NOAA-NMFS-2020-0031-DRAFT-1541
NOAA-NMFS-2020-0031-DRAFT-1542
NOAA-NMFS-2020-0031-DRAFT-1543
NOAA-NMFS-2020-0031-DRAFT-1544
NOAA-NMFS-2020-0031-DRAFT-1545
NOAA-NMFS-2020-0031-DRAFT-1546
NOAA-NMFS-2020-0031-DRAFT-1547
NOAA-NMFS-2020-0031-DRAFT-1548
NOAA-NMFS-2020-0031-DRAFT-1549
NOAA-NMFS-2020-0031-DRAFT-1550
NOAA-NMFS-2020-0031-DRAFT-1551
NOAA-NMFS-2020-0031-DRAFT-1552
NOAA-NMFS-2020-0031-DRAFT-1553
NOAA-NMFS-2020-0031-DRAFT-1554
NOAA-NMFS-2020-0031-DRAFT-1555
NOAA-NMFS-2020-0031-DRAFT-1556
NOAA-NMFS-2020-0031-DRAFT-1557
NOAA-NMFS-2020-0031-DRAFT-1558
NOAA-NMFS-2020-0031-DRAFT-1559
NOAA-NMFS-2020-0031-DRAFT-1560
NOAA-NMFS-2020-0031-DRAFT-1561
NOAA-NMFS-2020-0031-DRAFT-1562
NOAA-NMFS-2020-0031-DRAFT-1563
NOAA-NMFS-2020-0031-DRAFT-1564
NOAA-NMFS-2020-0031-DRAFT-1565
NOAA-NMFS-2020-0031-DRAFT-1566
NOAA-NMFS-2020-0031-DRAFT-1567
NOAA-NMFS-2020-0031-DRAFT-1568
NOAA-NMFS-2020-0031-DRAFT-1569
NOAA-NMFS-2020-0031-DRAFT-1570
NOAA-NMFS-2020-0031-DRAFT-1571
NOAA-NMFS-2020-0031-DRAFT-1572
NOAA-NMFS-2020-0031-DRAFT-1573
NOAA-NMFS-2020-0031-DRAFT-1574
NOAA-NMFS-2020-0031-DRAFT-1575

Comment from David Berry
Comment from Richard Coreno
Comment from Len Carella
Comment from April Tackett
Comment from Pamela Johnson
Comment from M Sanders
Comment from Cheryl Detar
Comment from Lisa Wegman
Comment from Kirsten Wolner
Comment from Sandra Sweetwood
Comment from Rod Garner
Comment from Merry Moore
Comment from Kelly Choi
Comment from Douglas Cooke
Comment from Max Barack
Comment from Michelle Yarber
Comment from Diane Pierce
Comment from Laurie Brinkle
Comment from Karen Emanuel
Comment from Karen Emanuel
Comment from Mark Weinberger
Comment from Shauna Sparlin
Comment from Teri Yazdi
Comment from Kathleen Hynes
Comment from Anita Wisch
Comment from Tony Segura
Comment from Louise McNulty
Comment from Bobby Vaughn
Comment from Pierina Provenzano
Comment from Toby Blauwasser
Comment from Carol Pucak
Comment from Barb Morrison
Comment from Mary Urbanovich
Comment from DALE ZALE
Comment from Gary Wattles
Comment from Larry Forrest
Comment from Mark Reback
Comment from Greg Campbell
Comment from Judy Fairless
Comment from Andrew Mramor
Comment from Janice Higgins

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6606
NOAA-NMFS-2020-0031-DRAFT-6607
NOAA-NMFS-2020-0031-DRAFT-6608
NOAA-NMFS-2020-0031-DRAFT-6609
NOAA-NMFS-2020-0031-DRAFT-6610
NOAA-NMFS-2020-0031-DRAFT-6611
NOAA-NMFS-2020-0031-DRAFT-6612
NOAA-NMFS-2020-0031-DRAFT-6613
NOAA-NMFS-2020-0031-DRAFT-6614
NOAA-NMFS-2020-0031-DRAFT-6615
NOAA-NMFS-2020-0031-DRAFT-6616
NOAA-NMFS-2020-0031-DRAFT-6617
NOAA-NMFS-2020-0031-DRAFT-6618
NOAA-NMFS-2020-0031-DRAFT-6619
NOAA-NMFS-2020-0031-DRAFT-6621
NOAA-NMFS-2020-0031-DRAFT-6622
NOAA-NMFS-2020-0031-DRAFT-6623
NOAA-NMFS-2020-0031-DRAFT-6624
NOAA-NMFS-2020-0031-DRAFT-6625
NOAA-NMFS-2020-0031-DRAFT-6626
NOAA-NMFS-2020-0031-DRAFT-6627
NOAA-NMFS-2020-0031-DRAFT-6628
NOAA-NMFS-2020-0031-DRAFT-6629
NOAA-NMFS-2020-0031-DRAFT-6630
NOAA-NMFS-2020-0031-DRAFT-6631
NOAA-NMFS-2020-0031-DRAFT-6632
NOAA-NMFS-2020-0031-DRAFT-6633
NOAA-NMFS-2020-0031-DRAFT-6634
NOAA-NMFS-2020-0031-DRAFT-6635
NOAA-NMFS-2020-0031-DRAFT-6636
NOAA-NMFS-2020-0031-DRAFT-6637
NOAA-NMFS-2020-0031-DRAFT-6638
NOAA-NMFS-2020-0031-DRAFT-6639
NOAA-NMFS-2020-0031-DRAFT-6640
NOAA-NMFS-2020-0031-DRAFT-6641
NOAA-NMFS-2020-0031-DRAFT-6642
NOAA-NMFS-2020-0031-DRAFT-6643
NOAA-NMFS-2020-0031-DRAFT-6644
NOAA-NMFS-2020-0031-DRAFT-6645
NOAA-NMFS-2020-0031-DRAFT-6646
NOAA-NMFS-2020-0031-DRAFT-6647

Comment from annette yates
Comment from Sandra Critelli
Comment from Linda Knowles
Comment from H S
Comment from Denise Millet
Comment from Merilyn Phillips
Comment from Paul Saint
Comment from Renata Entley
Comment from Valerie Cranmer
Comment from Rachael Riccobene
Comment from Leona Will
Comment from Susaan straus
Comment from Jennifer Rabren
Comment from John Tribuna
Comment from Laura Dally
Comment from Cheryl Dorchinsky
Comment from Ava Coleman
Comment from Cynthia West
Comment from Joanne Spry
Comment from Corinne Chapman
Comment from Cynthia Charvala
Comment from Leslee Duncan
Comment from MARILYN EGAN
Comment from Pam Parisi
Comment from Lisa Celli
Comment from El Apodaca
Comment from Teri Smyth
Comment from Bill Groves
Comment from AMANDA STONEBANK
Comment from Mary Dunlap
Comment from Elaine Eudy
Comment from Mark Lavonn
Comment from Colonel Meyer
Comment from Shirley Drought
Comment from Carolee Spero
Comment from James Stockwell
Comment from sheila fetterhoff
Comment from Penny f
Comment from Celeste VeZolles
Comment from Bailey McKay
Comment from Elly Ross

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1576
NOAA-NMFS-2020-0031-DRAFT-1577
NOAA-NMFS-2020-0031-DRAFT-1578
NOAA-NMFS-2020-0031-DRAFT-1579
NOAA-NMFS-2020-0031-DRAFT-1580
NOAA-NMFS-2020-0031-DRAFT-1581
NOAA-NMFS-2020-0031-DRAFT-1582
NOAA-NMFS-2020-0031-DRAFT-1583
NOAA-NMFS-2020-0031-DRAFT-1584
NOAA-NMFS-2020-0031-DRAFT-1585
NOAA-NMFS-2020-0031-DRAFT-1586
NOAA-NMFS-2020-0031-DRAFT-1587
NOAA-NMFS-2020-0031-DRAFT-1588
NOAA-NMFS-2020-0031-DRAFT-1589
NOAA-NMFS-2020-0031-DRAFT-1590
NOAA-NMFS-2020-0031-DRAFT-1591
NOAA-NMFS-2020-0031-DRAFT-1592
NOAA-NMFS-2020-0031-DRAFT-1593
NOAA-NMFS-2020-0031-DRAFT-1594
NOAA-NMFS-2020-0031-DRAFT-1595
NOAA-NMFS-2020-0031-DRAFT-1596
NOAA-NMFS-2020-0031-DRAFT-1597
NOAA-NMFS-2020-0031-DRAFT-1598
NOAA-NMFS-2020-0031-DRAFT-1599
NOAA-NMFS-2020-0031-DRAFT-1600
NOAA-NMFS-2020-0031-DRAFT-1601
NOAA-NMFS-2020-0031-DRAFT-1602
NOAA-NMFS-2020-0031-DRAFT-1603
NOAA-NMFS-2020-0031-DRAFT-1604
NOAA-NMFS-2020-0031-DRAFT-1605
NOAA-NMFS-2020-0031-DRAFT-1606
NOAA-NMFS-2020-0031-DRAFT-1607
NOAA-NMFS-2020-0031-DRAFT-1608
NOAA-NMFS-2020-0031-DRAFT-1609
NOAA-NMFS-2020-0031-DRAFT-1610
NOAA-NMFS-2020-0031-DRAFT-1611
NOAA-NMFS-2020-0031-DRAFT-1612
NOAA-NMFS-2020-0031-DRAFT-1613
NOAA-NMFS-2020-0031-DRAFT-1614
NOAA-NMFS-2020-0031-DRAFT-1615
NOAA-NMFS-2020-0031-DRAFT-1616

Comment from Teri Vlasak
Comment from Marilyn Hawthorn
Comment from Michael Martin
Comment from William Crist
Comment from Mary Rose
Comment from Herbert Lord
Comment from sharon byers
Comment from Dinah Bear
Comment from Jeanne Held-Warmkessel
Comment from Susan Fladager
Comment from Greg Onsel
Comment from Jody Turner
Comment from Sherry Dunn
Comment from Patricia Chelmecki
Comment from John Wiles
Comment from Pat Petro
Comment from CHRISTINA CROSBY
Comment from Gayle Spencer
Comment from Julia Fleeman
Comment from Gary Landgrebe
Comment from John Bertaina
Comment from Sharon Orser
Comment from Charles Brumleve
Comment from Gail Koza
Comment from Pat Randow
Comment from Kimberly Brandimarte
Comment from Kathy Chakoutis
Comment from Adele Dawson
Comment from Robert Clark
Comment from Becki Leigh
Comment from Karolyn Beebe
Comment from Marvin Guymon
Comment from Barbara Keller
Comment from Stephen Andersen
Comment from ah ho
Comment from Michele Wise
Comment from Kristi Wilson
Comment from joyce kolasa
Comment from Charlene Woodcock
Comment from Glenn Schuetz
Comment from Kathy Gosselin

02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6648
NOAA-NMFS-2020-0031-DRAFT-6649
NOAA-NMFS-2020-0031-DRAFT-6650
NOAA-NMFS-2020-0031-DRAFT-6651
NOAA-NMFS-2020-0031-DRAFT-6652
NOAA-NMFS-2020-0031-DRAFT-6653
NOAA-NMFS-2020-0031-DRAFT-6654
NOAA-NMFS-2020-0031-DRAFT-6655
NOAA-NMFS-2020-0031-DRAFT-6656
NOAA-NMFS-2020-0031-DRAFT-6657
NOAA-NMFS-2020-0031-DRAFT-6658
NOAA-NMFS-2020-0031-DRAFT-6659
NOAA-NMFS-2020-0031-DRAFT-6660
NOAA-NMFS-2020-0031-DRAFT-6661
NOAA-NMFS-2020-0031-DRAFT-6662
NOAA-NMFS-2020-0031-DRAFT-6663
NOAA-NMFS-2020-0031-DRAFT-6664
NOAA-NMFS-2020-0031-DRAFT-6665
NOAA-NMFS-2020-0031-DRAFT-6666
NOAA-NMFS-2020-0031-DRAFT-6667
NOAA-NMFS-2020-0031-DRAFT-6668
NOAA-NMFS-2020-0031-DRAFT-6669
NOAA-NMFS-2020-0031-DRAFT-6670
NOAA-NMFS-2020-0031-DRAFT-6671
NOAA-NMFS-2020-0031-DRAFT-6672
NOAA-NMFS-2020-0031-DRAFT-6673
NOAA-NMFS-2020-0031-DRAFT-6674
NOAA-NMFS-2020-0031-DRAFT-6675
NOAA-NMFS-2020-0031-DRAFT-6676
NOAA-NMFS-2020-0031-DRAFT-6677
NOAA-NMFS-2020-0031-DRAFT-6678
NOAA-NMFS-2020-0031-DRAFT-6679
NOAA-NMFS-2020-0031-DRAFT-6680
NOAA-NMFS-2020-0031-DRAFT-6681
NOAA-NMFS-2020-0031-DRAFT-6682
NOAA-NMFS-2020-0031-DRAFT-6683
NOAA-NMFS-2020-0031-DRAFT-6684
NOAA-NMFS-2020-0031-DRAFT-6685
NOAA-NMFS-2020-0031-DRAFT-6686
NOAA-NMFS-2020-0031-DRAFT-6687
NOAA-NMFS-2020-0031-DRAFT-6688

Comment from Summer Mitchell
Comment from Robert Abbatecola
Comment from Teri Smyth
Comment from Nataliia Dusanovska
Comment from Laurie Mcgrath
Comment from Stephanie peacock
Comment from Jessica Stewart
Comment from Cheryl Williams
Comment from Stphanie Maughan
Comment from Billie Jones
Comment from Liza ZANDONELLA
Comment from Nancy Hendrickson
Comment from Robyn Sharpe
Comment from Carol Tomusiak
Comment from debbie stapleton
Comment from Carolyn Black
Comment from Jeane Casey
Comment from Andrea Snyder
Comment from Deb Kozak
Comment from Dawn Ramsey
Comment from Reba Smith
Comment from James Kerr
Comment from Bridget Snedden
Comment from Elena Fernandez
Comment from Barbara Howerton
Comment from Cynthia Pierce
Comment from Brenda Cooke
Comment from Martha Ross
Comment from Earl Gallup
Comment from Roy Fouts
Comment from Sagar Patel
Comment from Michael Gitcho
Comment from Colonel Meyer
Comment from Patricia Tillman
Comment from Mary Laughlin
Comment from Robin Ramp
Comment from Jill Ewbank
Comment from Antonio Kelley
Comment from Thes Surrey
Comment from Terri David
Comment from Carol Modrell

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1617
NOAA-NMFS-2020-0031-DRAFT-1618
NOAA-NMFS-2020-0031-DRAFT-1619
NOAA-NMFS-2020-0031-DRAFT-1620
NOAA-NMFS-2020-0031-DRAFT-1621
NOAA-NMFS-2020-0031-DRAFT-1622
NOAA-NMFS-2020-0031-DRAFT-1623
NOAA-NMFS-2020-0031-DRAFT-1624
NOAA-NMFS-2020-0031-DRAFT-1625
NOAA-NMFS-2020-0031-DRAFT-1626
NOAA-NMFS-2020-0031-DRAFT-1627
NOAA-NMFS-2020-0031-DRAFT-1628
NOAA-NMFS-2020-0031-DRAFT-1629
NOAA-NMFS-2020-0031-DRAFT-1630
NOAA-NMFS-2020-0031-DRAFT-1631
NOAA-NMFS-2020-0031-DRAFT-1632
NOAA-NMFS-2020-0031-DRAFT-1633
NOAA-NMFS-2020-0031-DRAFT-1634
NOAA-NMFS-2020-0031-DRAFT-1635
NOAA-NMFS-2020-0031-DRAFT-1636
NOAA-NMFS-2020-0031-DRAFT-1637
NOAA-NMFS-2020-0031-DRAFT-1638
NOAA-NMFS-2020-0031-DRAFT-1639
NOAA-NMFS-2020-0031-DRAFT-1640
NOAA-NMFS-2020-0031-DRAFT-1641
NOAA-NMFS-2020-0031-DRAFT-1642
NOAA-NMFS-2020-0031-DRAFT-1643
NOAA-NMFS-2020-0031-DRAFT-1644
NOAA-NMFS-2020-0031-DRAFT-1645
NOAA-NMFS-2020-0031-DRAFT-1646
NOAA-NMFS-2020-0031-DRAFT-1647
NOAA-NMFS-2020-0031-DRAFT-1648
NOAA-NMFS-2020-0031-DRAFT-1649
NOAA-NMFS-2020-0031-DRAFT-1650
NOAA-NMFS-2020-0031-DRAFT-1651
NOAA-NMFS-2020-0031-DRAFT-1652
NOAA-NMFS-2020-0031-DRAFT-1653
NOAA-NMFS-2020-0031-DRAFT-1654
NOAA-NMFS-2020-0031-DRAFT-1655
NOAA-NMFS-2020-0031-DRAFT-1656
NOAA-NMFS-2020-0031-DRAFT-1657

Comment from Janet Witzeman
Comment from Haven Knight
Comment from Betsey Porter
Comment from Barbara Swyden
Comment from Lynn Skibinski
Comment from Brenda Miller
Comment from Margith maughan
Comment from Daniel Weber
Comment from Andrea Alquati
Comment from fran malsheimer
Comment from Monica Trujillo
Comment from Lisbett Christensen
Comment from Jennifer Spring
Comment from Terry Dailey
Comment from Steven Kline
Comment from Rachel Henba
Comment from Sherman Lewis
Comment from Guen Han
Comment from Stacy Gounaris
Comment from Jean King
Comment from Philomena Easley
Comment from Susan Dickerson
Comment from Lynn konieczny
Comment from Katherine Skirvin
Comment from Michele Horenstein
Comment from Michael Smith
Comment from Cynthia Enlow
Comment from Barry Stover
Comment from Joan Peter
Comment from Elizabeth Saltz
Comment from Kimberly Morrill
Comment from Michelle Allison
Comment from SALLY SPELBRING
Comment from Larisa Long
Comment from k. paro
Comment from Arthur Alfreds
Comment from Linda Olson
Comment from Janet Almond
Comment from Janet Cook
Comment from YING COOPER
Comment from Anita Wisch

02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6689
NOAA-NMFS-2020-0031-DRAFT-6690
NOAA-NMFS-2020-0031-DRAFT-6691
NOAA-NMFS-2020-0031-DRAFT-6692
NOAA-NMFS-2020-0031-DRAFT-6693
NOAA-NMFS-2020-0031-DRAFT-6694
NOAA-NMFS-2020-0031-DRAFT-6695
NOAA-NMFS-2020-0031-DRAFT-6696
NOAA-NMFS-2020-0031-DRAFT-6697
NOAA-NMFS-2020-0031-DRAFT-6698
NOAA-NMFS-2020-0031-DRAFT-6699
NOAA-NMFS-2020-0031-DRAFT-6700
NOAA-NMFS-2020-0031-DRAFT-6701
NOAA-NMFS-2020-0031-DRAFT-6702
NOAA-NMFS-2020-0031-DRAFT-6703
NOAA-NMFS-2020-0031-DRAFT-6704
NOAA-NMFS-2020-0031-DRAFT-6705
NOAA-NMFS-2020-0031-DRAFT-6706
NOAA-NMFS-2020-0031-DRAFT-6707
NOAA-NMFS-2020-0031-DRAFT-6708
NOAA-NMFS-2020-0031-DRAFT-6709
NOAA-NMFS-2020-0031-DRAFT-6710
NOAA-NMFS-2020-0031-DRAFT-6711
NOAA-NMFS-2020-0031-DRAFT-6712
NOAA-NMFS-2020-0031-DRAFT-6713
NOAA-NMFS-2020-0031-DRAFT-6714
NOAA-NMFS-2020-0031-DRAFT-6715
NOAA-NMFS-2020-0031-DRAFT-6716
NOAA-NMFS-2020-0031-DRAFT-6717
NOAA-NMFS-2020-0031-DRAFT-6718
NOAA-NMFS-2020-0031-DRAFT-6719
NOAA-NMFS-2020-0031-DRAFT-6720
NOAA-NMFS-2020-0031-DRAFT-6721
NOAA-NMFS-2020-0031-DRAFT-6722
NOAA-NMFS-2020-0031-DRAFT-6723
NOAA-NMFS-2020-0031-DRAFT-6724
NOAA-NMFS-2020-0031-DRAFT-6725
NOAA-NMFS-2020-0031-DRAFT-6726
NOAA-NMFS-2020-0031-DRAFT-6727
NOAA-NMFS-2020-0031-DRAFT-6729
NOAA-NMFS-2020-0031-DRAFT-6730

Comment from paula horton
Comment from Laura Alleman
Comment from Adrienne Hochberg
Comment from Patricia Burke
Comment from Alison Thompson
Comment from Lisa Fink
Comment from Joyce Conlon
Comment from Carolyn Moy
Comment from David Satz
Comment from Maria Hackman
Comment from Wendy Stevens
Comment from Amy Wolfcale
Comment from Sonnia Alfonso
Comment from Catherine Krug
Comment from Jennifer Benoit
Comment from Loretta Murray
Comment from Christina Dupuy
Comment from Mariza Cerff
Comment from Elizabeth Hartrick
Comment from Lillian Swindell
Comment from Wendy Wieser
Comment from Sandy Horne
Comment from Jennifer Prozonic
Comment from Graydon Tunstall
Comment from Cole Hague
Comment from Francine Levine
Comment from John Kosiorek
Comment from Linda Teachey
Comment from Alina Szostak
Comment from Janette Mejia
Comment from Jim Plaisted
Comment from Patricia Bechtold
Comment from Debora Hojda
Comment from Jackie Cheek
Comment from Elena Alfandari
Comment from Cristle Leavitt
Comment from Phyllis Morris
Comment from Leslie Burby
Comment from illisa kelman
Comment from audrey stansbury
Comment from Evelyn Asting

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1658
NOAA-NMFS-2020-0031-DRAFT-1659
NOAA-NMFS-2020-0031-DRAFT-1660
NOAA-NMFS-2020-0031-DRAFT-1661
NOAA-NMFS-2020-0031-DRAFT-1662
NOAA-NMFS-2020-0031-DRAFT-1663
NOAA-NMFS-2020-0031-DRAFT-1664
NOAA-NMFS-2020-0031-DRAFT-1665
NOAA-NMFS-2020-0031-DRAFT-1666
NOAA-NMFS-2020-0031-DRAFT-1667
NOAA-NMFS-2020-0031-DRAFT-1668
NOAA-NMFS-2020-0031-DRAFT-1669
NOAA-NMFS-2020-0031-DRAFT-1670
NOAA-NMFS-2020-0031-DRAFT-1671
NOAA-NMFS-2020-0031-DRAFT-1672
NOAA-NMFS-2020-0031-DRAFT-1673
NOAA-NMFS-2020-0031-DRAFT-1674
NOAA-NMFS-2020-0031-DRAFT-1675
NOAA-NMFS-2020-0031-DRAFT-1676
NOAA-NMFS-2020-0031-DRAFT-1677
NOAA-NMFS-2020-0031-DRAFT-1678
NOAA-NMFS-2020-0031-DRAFT-1679
NOAA-NMFS-2020-0031-DRAFT-1680
NOAA-NMFS-2020-0031-DRAFT-1681
NOAA-NMFS-2020-0031-DRAFT-1682
NOAA-NMFS-2020-0031-DRAFT-1683
NOAA-NMFS-2020-0031-DRAFT-1684
NOAA-NMFS-2020-0031-DRAFT-1685
NOAA-NMFS-2020-0031-DRAFT-1686
NOAA-NMFS-2020-0031-DRAFT-1687
NOAA-NMFS-2020-0031-DRAFT-1688
NOAA-NMFS-2020-0031-DRAFT-1689
NOAA-NMFS-2020-0031-DRAFT-1690
NOAA-NMFS-2020-0031-DRAFT-1691
NOAA-NMFS-2020-0031-DRAFT-1692
NOAA-NMFS-2020-0031-DRAFT-1693
NOAA-NMFS-2020-0031-DRAFT-1694
NOAA-NMFS-2020-0031-DRAFT-1695
NOAA-NMFS-2020-0031-DRAFT-1696
NOAA-NMFS-2020-0031-DRAFT-1697
NOAA-NMFS-2020-0031-DRAFT-1698

Comment from Alex King
Comment from Mara Wiley
Comment from Liz Kochis
Comment from Jody Lewis
Comment from Cynthia Upp
Comment from Tim Speece
Comment from Norm Hansen
Comment from Dmit lan
Comment from Jason Chinn
Comment from Anita Wisch
Comment from Nancy Humphrey
Comment from J. Woodworth
Comment from Mariko Kahn
Comment from Stuart Mork
Comment from Thomas Dawley
Comment from Scott Sinclair
Comment from Hurd Hess
Comment from Robin Slate
Comment from Hilda Gilman
Comment from Deborah Richards
Comment from Anne Kelly
Comment from Bill O'Brien
Comment from Judith Casino
Comment from Barbara Gregory
Comment from David Larson
Comment from Sarah Sloane
Comment from Brent Tucker
Comment from Debra Greenberg
Comment from Jenny Sowell
Comment from Joette Borzik
Comment from Ruthie Bernaert
Comment from William Hayes
Comment from Vicki Sarnecki
Comment from Jana Perinchief
Comment from Eilene Janke
Comment from Rob Roberto
Comment from Maria Clair-Howard
Comment from Glen Weissman
Comment from Joan LaCasse
Comment from Richard Smith
Comment from Christy Dunn

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6731
NOAA-NMFS-2020-0031-DRAFT-6732
NOAA-NMFS-2020-0031-DRAFT-6733
NOAA-NMFS-2020-0031-DRAFT-6734
NOAA-NMFS-2020-0031-DRAFT-6735
NOAA-NMFS-2020-0031-DRAFT-6736
NOAA-NMFS-2020-0031-DRAFT-6737
NOAA-NMFS-2020-0031-DRAFT-6738
NOAA-NMFS-2020-0031-DRAFT-6739
NOAA-NMFS-2020-0031-DRAFT-6740
NOAA-NMFS-2020-0031-DRAFT-6741
NOAA-NMFS-2020-0031-DRAFT-6742
NOAA-NMFS-2020-0031-DRAFT-6743
NOAA-NMFS-2020-0031-DRAFT-6744
NOAA-NMFS-2020-0031-DRAFT-6745
NOAA-NMFS-2020-0031-DRAFT-6746
NOAA-NMFS-2020-0031-DRAFT-6747
NOAA-NMFS-2020-0031-DRAFT-6748
NOAA-NMFS-2020-0031-DRAFT-6749
NOAA-NMFS-2020-0031-DRAFT-6750
NOAA-NMFS-2020-0031-DRAFT-6751
NOAA-NMFS-2020-0031-DRAFT-6752
NOAA-NMFS-2020-0031-DRAFT-6753
NOAA-NMFS-2020-0031-DRAFT-6755
NOAA-NMFS-2020-0031-DRAFT-6756
NOAA-NMFS-2020-0031-DRAFT-6757
NOAA-NMFS-2020-0031-DRAFT-6758
NOAA-NMFS-2020-0031-DRAFT-6759
NOAA-NMFS-2020-0031-DRAFT-6760
NOAA-NMFS-2020-0031-DRAFT-6761
NOAA-NMFS-2020-0031-DRAFT-6762
NOAA-NMFS-2020-0031-DRAFT-6763
NOAA-NMFS-2020-0031-DRAFT-6764
NOAA-NMFS-2020-0031-DRAFT-6765
NOAA-NMFS-2020-0031-DRAFT-6766
NOAA-NMFS-2020-0031-DRAFT-6767
NOAA-NMFS-2020-0031-DRAFT-6768
NOAA-NMFS-2020-0031-DRAFT-6769
NOAA-NMFS-2020-0031-DRAFT-6770
NOAA-NMFS-2020-0031-DRAFT-6771
NOAA-NMFS-2020-0031-DRAFT-6772

Comment from Kay Campbell
Comment from Janet Phillips
Comment from Maritza Bosch
Comment from Barbara Avakian
Comment from Gayle Edelman-Tolchin
Comment from Ericka Shimkonis
Comment from gail cavanaugh
Comment from Michele Reardon
Comment from Marie Zwicker
Comment from Alex Manley
Comment from Arnette Sherman
Comment from Constance Lalena
Comment from Elizabeth Haskell
Comment from Lisa Jacobson
Comment from VIRGINIA ELLIOTT
Comment from Alice Soler
Comment from Marlen Cruz
Comment from Catherine Marie
Comment from Stphanie Maughan
Comment from Linda Janney
Comment from Christine Chromiak
Comment from Janet Allison
Comment from Jane White
Comment from Meredith Goswami
Comment from Ruth Slates
Comment from Susan VanPelt
Comment from Diana Alourdas
Comment from Mary Bennett
Comment from Sherry Erdmann
Comment from Charles Jones
Comment from E MacNabb
Comment from Barbara Howard
Comment from Linda Rankl
Comment from Sharon Shohfi
Comment from Margo Santoro
Comment from john pace
Comment from Alicia Quintero
Comment from Nanci nugent
Comment from Martha Jaquith
Comment from Fanny Whitman
Comment from Elizabeth Kuch

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01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1699
NOAA-NMFS-2020-0031-DRAFT-1700
NOAA-NMFS-2020-0031-DRAFT-1701
NOAA-NMFS-2020-0031-DRAFT-1702
NOAA-NMFS-2020-0031-DRAFT-1703
NOAA-NMFS-2020-0031-DRAFT-1704
NOAA-NMFS-2020-0031-DRAFT-1705
NOAA-NMFS-2020-0031-DRAFT-1706
NOAA-NMFS-2020-0031-DRAFT-1707
NOAA-NMFS-2020-0031-DRAFT-1708
NOAA-NMFS-2020-0031-DRAFT-1709
NOAA-NMFS-2020-0031-DRAFT-1710
NOAA-NMFS-2020-0031-DRAFT-1711
NOAA-NMFS-2020-0031-DRAFT-1712
NOAA-NMFS-2020-0031-DRAFT-1713
NOAA-NMFS-2020-0031-DRAFT-1714
NOAA-NMFS-2020-0031-DRAFT-1715
NOAA-NMFS-2020-0031-DRAFT-1716
NOAA-NMFS-2020-0031-DRAFT-1717
NOAA-NMFS-2020-0031-DRAFT-1718
NOAA-NMFS-2020-0031-DRAFT-1719
NOAA-NMFS-2020-0031-DRAFT-1720
NOAA-NMFS-2020-0031-DRAFT-1721
NOAA-NMFS-2020-0031-DRAFT-1722
NOAA-NMFS-2020-0031-DRAFT-1723
NOAA-NMFS-2020-0031-DRAFT-1724
NOAA-NMFS-2020-0031-DRAFT-1725
NOAA-NMFS-2020-0031-DRAFT-1726
NOAA-NMFS-2020-0031-DRAFT-1727
NOAA-NMFS-2020-0031-DRAFT-1728
NOAA-NMFS-2020-0031-DRAFT-1729
NOAA-NMFS-2020-0031-DRAFT-1730
NOAA-NMFS-2020-0031-DRAFT-1731
NOAA-NMFS-2020-0031-DRAFT-1732
NOAA-NMFS-2020-0031-DRAFT-1733
NOAA-NMFS-2020-0031-DRAFT-1734
NOAA-NMFS-2020-0031-DRAFT-1735
NOAA-NMFS-2020-0031-DRAFT-1736
NOAA-NMFS-2020-0031-DRAFT-1737
NOAA-NMFS-2020-0031-DRAFT-1738
NOAA-NMFS-2020-0031-DRAFT-1739

Comment from Joanna Behrens
Comment from Mike Souza
Comment from Lou Sanderson
Comment from Margaret Shekell
Comment from Nancy Boyce
Comment from Laurie Cooper
Comment from Paul Ghenoiu
Comment from Bridgette Jessen
Comment from Frank Rouse
Comment from I. Engle
Comment from Carol Gordon
Comment from Theodore Snyder
Comment from Quentin Fischer
Comment from Catherine George
Comment from Bernadette Payne
Comment from gary ehatt
Comment from Julie Wade
Comment from Yvonne Quilenderino
Comment from Linda Rudman
Comment from Mary Lester
Comment from Caro Anderson
Comment from Kellie Miller
Comment from David Miller
Comment from Scott Crockett
Comment from Amber Sumrall
Comment from Andrea Zajac
Comment from Bash Judy
Comment from Judy Cassada
Comment from Amanda OBrien
Comment from Kevin McAlister
Comment from Aimee Miller
Comment from Shelley Aanerud
Comment from Anita Dauberman
Comment from Patricia Keoughan
Comment from Karen Hall
Comment from G.Dale Mathey
Comment from Joyce Greenberg
Comment from Stephanie Buresh
Comment from Sue Holtz
Comment from Stephen Dutschke
Comment from Tina Bartlett

02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6773
NOAA-NMFS-2020-0031-DRAFT-6774
NOAA-NMFS-2020-0031-DRAFT-6775
NOAA-NMFS-2020-0031-DRAFT-6776
NOAA-NMFS-2020-0031-DRAFT-6777
NOAA-NMFS-2020-0031-DRAFT-6778
NOAA-NMFS-2020-0031-DRAFT-6779
NOAA-NMFS-2020-0031-DRAFT-6780
NOAA-NMFS-2020-0031-DRAFT-6781
NOAA-NMFS-2020-0031-DRAFT-6782
NOAA-NMFS-2020-0031-DRAFT-6783
NOAA-NMFS-2020-0031-DRAFT-6784
NOAA-NMFS-2020-0031-DRAFT-6785
NOAA-NMFS-2020-0031-DRAFT-6786
NOAA-NMFS-2020-0031-DRAFT-6787
NOAA-NMFS-2020-0031-DRAFT-6788
NOAA-NMFS-2020-0031-DRAFT-6790
NOAA-NMFS-2020-0031-DRAFT-6791
NOAA-NMFS-2020-0031-DRAFT-6792
NOAA-NMFS-2020-0031-DRAFT-6793
NOAA-NMFS-2020-0031-DRAFT-6794
NOAA-NMFS-2020-0031-DRAFT-6795
NOAA-NMFS-2020-0031-DRAFT-6796
NOAA-NMFS-2020-0031-DRAFT-6797
NOAA-NMFS-2020-0031-DRAFT-6798
NOAA-NMFS-2020-0031-DRAFT-6799
NOAA-NMFS-2020-0031-DRAFT-6800
NOAA-NMFS-2020-0031-DRAFT-6801
NOAA-NMFS-2020-0031-DRAFT-6802
NOAA-NMFS-2020-0031-DRAFT-6803
NOAA-NMFS-2020-0031-DRAFT-6804
NOAA-NMFS-2020-0031-DRAFT-6805
NOAA-NMFS-2020-0031-DRAFT-6806
NOAA-NMFS-2020-0031-DRAFT-6807
NOAA-NMFS-2020-0031-DRAFT-6808
NOAA-NMFS-2020-0031-DRAFT-6810
NOAA-NMFS-2020-0031-DRAFT-6811
NOAA-NMFS-2020-0031-DRAFT-6812
NOAA-NMFS-2020-0031-DRAFT-6813
NOAA-NMFS-2020-0031-DRAFT-6814
NOAA-NMFS-2020-0031-DRAFT-6815

Comment from Laura Staples
Comment from Debra VanEerd
Comment from Carolyn Machado
Comment from Evie Brewer
Comment from b hinson
Comment from Rosemary Hansbury
Comment from Lisa rose
Comment from Kimberly Perry
Comment from Marilyn Shup
Comment from Paige RN
Comment from Phil Cavallini
Comment from Leslie Niquette
Comment from Midian VonThorne
Comment from Lois Sprague
Comment from Deborah Kittle
Comment from Kenneth Glover
Comment from Karen Hyslop
Comment from Linda Hinson
Comment from Dianne Sorrell
Comment from Donna Eagan
Comment from Susan Aarons
Comment from Bethanie Petitpas
Comment from Amy Halstead
Comment from Thom Carling
Comment from Tom Warhol
Comment from Virginia LeBlanc
Comment from Kim Stoecklein
Comment from Marguerite Abramo
Comment from Meredith Cody
Comment from Katherine Mayers
Comment from Susan King
Comment from Al Santella
Comment from Valerie Collins
Comment from Mary Bangs
Comment from Glo Webel
Comment from Liz piercey
Comment from Melody Barnes
Comment from Francis Matula
Comment from Susan Dillon
Comment from Joanie Steinhaus
Comment from Sallie Becker

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1740
NOAA-NMFS-2020-0031-DRAFT-1741
NOAA-NMFS-2020-0031-DRAFT-1742
NOAA-NMFS-2020-0031-DRAFT-1743
NOAA-NMFS-2020-0031-DRAFT-1744
NOAA-NMFS-2020-0031-DRAFT-1745
NOAA-NMFS-2020-0031-DRAFT-1746
NOAA-NMFS-2020-0031-DRAFT-1747
NOAA-NMFS-2020-0031-DRAFT-1748
NOAA-NMFS-2020-0031-DRAFT-1749
NOAA-NMFS-2020-0031-DRAFT-1750
NOAA-NMFS-2020-0031-DRAFT-1751
NOAA-NMFS-2020-0031-DRAFT-1752
NOAA-NMFS-2020-0031-DRAFT-1753
NOAA-NMFS-2020-0031-DRAFT-1754
NOAA-NMFS-2020-0031-DRAFT-1755
NOAA-NMFS-2020-0031-DRAFT-1756
NOAA-NMFS-2020-0031-DRAFT-1757
NOAA-NMFS-2020-0031-DRAFT-1758
NOAA-NMFS-2020-0031-DRAFT-1759
NOAA-NMFS-2020-0031-DRAFT-1760
NOAA-NMFS-2020-0031-DRAFT-1761
NOAA-NMFS-2020-0031-DRAFT-1762
NOAA-NMFS-2020-0031-DRAFT-1763
NOAA-NMFS-2020-0031-DRAFT-1764
NOAA-NMFS-2020-0031-DRAFT-1765
NOAA-NMFS-2020-0031-DRAFT-1766
NOAA-NMFS-2020-0031-DRAFT-1767
NOAA-NMFS-2020-0031-DRAFT-1768
NOAA-NMFS-2020-0031-DRAFT-1769
NOAA-NMFS-2020-0031-DRAFT-1770
NOAA-NMFS-2020-0031-DRAFT-1771
NOAA-NMFS-2020-0031-DRAFT-1772
NOAA-NMFS-2020-0031-DRAFT-1773
NOAA-NMFS-2020-0031-DRAFT-1774
NOAA-NMFS-2020-0031-DRAFT-1775
NOAA-NMFS-2020-0031-DRAFT-1776
NOAA-NMFS-2020-0031-DRAFT-1777
NOAA-NMFS-2020-0031-DRAFT-1778
NOAA-NMFS-2020-0031-DRAFT-1779
NOAA-NMFS-2020-0031-DRAFT-1780

Comment from Laura Long
Comment from Maureen O'Shea
Comment from Cathy Thornburn
Comment from Irene Duffy
Comment from Vinit Allen
Comment from Harold Quinn
Comment from Anna Schwadron
Comment from Karen Freeman
Comment from Linda Rudman
Comment from Pete Childs
Comment from Barbara Stevenson
Comment from Michael Burmester
Comment from elizabeth sexton
Comment from Marilyn Livote
Comment from Rebecca Sundberg
Comment from Sarah Straus
Comment from James Hickey
Comment from William Sarovec
Comment from Krista Dana
Comment from Janice Beyer
Comment from GEORGE ERCEG
Comment from Paul Vesper
Comment from Amie Corrado-Babe
Comment from Debra Hunter
Comment from John Clair
Comment from cathy crum
Comment from Dennis Hough
Comment from Julie Goodwin
Comment from Vivian J
Comment from Amanda Dewey
Comment from Daniel Solano
Comment from Bob Hannigan
Comment from Andi Shotwell
Comment from Marjorie Rathbone
Comment from Mark Ashley
Comment from Hal Trufan
Comment from Rudy Ramp
Comment from Anita Wisch
Comment from Suzanne Kunstman
Comment from Michelle Sewald
Comment from Christina Beliveau

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6816
NOAA-NMFS-2020-0031-DRAFT-6817
NOAA-NMFS-2020-0031-DRAFT-6818
NOAA-NMFS-2020-0031-DRAFT-6819
NOAA-NMFS-2020-0031-DRAFT-6820
NOAA-NMFS-2020-0031-DRAFT-6821
NOAA-NMFS-2020-0031-DRAFT-6822
NOAA-NMFS-2020-0031-DRAFT-6823
NOAA-NMFS-2020-0031-DRAFT-6824
NOAA-NMFS-2020-0031-DRAFT-6825
NOAA-NMFS-2020-0031-DRAFT-6826
NOAA-NMFS-2020-0031-DRAFT-6827
NOAA-NMFS-2020-0031-DRAFT-6828
NOAA-NMFS-2020-0031-DRAFT-6829
NOAA-NMFS-2020-0031-DRAFT-6832
NOAA-NMFS-2020-0031-DRAFT-6834
NOAA-NMFS-2020-0031-DRAFT-6835
NOAA-NMFS-2020-0031-DRAFT-6836
NOAA-NMFS-2020-0031-DRAFT-6837
NOAA-NMFS-2020-0031-DRAFT-6838
NOAA-NMFS-2020-0031-DRAFT-6839
NOAA-NMFS-2020-0031-DRAFT-6840
NOAA-NMFS-2020-0031-DRAFT-6841
NOAA-NMFS-2020-0031-DRAFT-6843
NOAA-NMFS-2020-0031-DRAFT-6844
NOAA-NMFS-2020-0031-DRAFT-6845
NOAA-NMFS-2020-0031-DRAFT-6846
NOAA-NMFS-2020-0031-DRAFT-6847
NOAA-NMFS-2020-0031-DRAFT-6850
NOAA-NMFS-2020-0031-DRAFT-6852
NOAA-NMFS-2020-0031-DRAFT-6853
NOAA-NMFS-2020-0031-DRAFT-6854
NOAA-NMFS-2020-0031-DRAFT-6856
NOAA-NMFS-2020-0031-DRAFT-6858
NOAA-NMFS-2020-0031-DRAFT-6860
NOAA-NMFS-2020-0031-DRAFT-6861
NOAA-NMFS-2020-0031-DRAFT-6862
NOAA-NMFS-2020-0031-DRAFT-6864
NOAA-NMFS-2020-0031-DRAFT-6865
NOAA-NMFS-2020-0031-DRAFT-6870
NOAA-NMFS-2020-0031-DRAFT-6872

Comment from David Ringle
Comment from REGAN EBERT
Comment from Sherry Monie
Comment from Jennifer Tulo
Comment from Robin Vincent
Comment from Anne Watts
Comment from Anonymous Anonymous
Comment from James Pentelow
Comment from Lynn Walker
Comment from Linda Townill
Comment from Andria Ganley
Comment from Elizabeth Seltzer
Comment from Michael Lee
Comment from Dick Merrill
Comment from Michelle Ramauro
Comment from Michael Kolb
Comment from Yvonne Lang
Comment from Jack Bedford
Comment from Kathi Cooley
Comment from Tami Schreurs
Comment from Carol Becker
Comment from Charles Oliveri
Comment from Anne Barker
Comment from Darlene Baker
Comment from Nicole Berkheimer
Comment from Carole Speck
Comment from Kathy Nix
Comment from Nick Flaig
Comment from Ken Kurtz
Comment from Gudrun Dennis
Comment from Matthew Humphrey
Comment from Felicia Lewis
Comment from Brittany Chang
Comment from Pilar Quintana
Comment from Jill Alibrandi
Comment from Carol Devoss
Comment from Annie Dawid
Comment from Lionel Ca
Comment from Kim Duncan
Comment from Karen Shapiro
Comment from Susan LoFurno

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1781
NOAA-NMFS-2020-0031-DRAFT-1782
NOAA-NMFS-2020-0031-DRAFT-1783
NOAA-NMFS-2020-0031-DRAFT-1784
NOAA-NMFS-2020-0031-DRAFT-1785
NOAA-NMFS-2020-0031-DRAFT-1786
NOAA-NMFS-2020-0031-DRAFT-1787
NOAA-NMFS-2020-0031-DRAFT-1788
NOAA-NMFS-2020-0031-DRAFT-1789
NOAA-NMFS-2020-0031-DRAFT-1790
NOAA-NMFS-2020-0031-DRAFT-1791
NOAA-NMFS-2020-0031-DRAFT-1792
NOAA-NMFS-2020-0031-DRAFT-1793
NOAA-NMFS-2020-0031-DRAFT-1794
NOAA-NMFS-2020-0031-DRAFT-1795
NOAA-NMFS-2020-0031-DRAFT-1796
NOAA-NMFS-2020-0031-DRAFT-1797
NOAA-NMFS-2020-0031-DRAFT-1798
NOAA-NMFS-2020-0031-DRAFT-1799
NOAA-NMFS-2020-0031-DRAFT-1800
NOAA-NMFS-2020-0031-DRAFT-1801
NOAA-NMFS-2020-0031-DRAFT-1802
NOAA-NMFS-2020-0031-DRAFT-1803
NOAA-NMFS-2020-0031-DRAFT-1804
NOAA-NMFS-2020-0031-DRAFT-1805
NOAA-NMFS-2020-0031-DRAFT-1806
NOAA-NMFS-2020-0031-DRAFT-1807
NOAA-NMFS-2020-0031-DRAFT-1808
NOAA-NMFS-2020-0031-DRAFT-1809
NOAA-NMFS-2020-0031-DRAFT-1810
NOAA-NMFS-2020-0031-DRAFT-1811
NOAA-NMFS-2020-0031-DRAFT-1812
NOAA-NMFS-2020-0031-DRAFT-1813
NOAA-NMFS-2020-0031-DRAFT-1814
NOAA-NMFS-2020-0031-DRAFT-1815
NOAA-NMFS-2020-0031-DRAFT-1816
NOAA-NMFS-2020-0031-DRAFT-1817
NOAA-NMFS-2020-0031-DRAFT-1818
NOAA-NMFS-2020-0031-DRAFT-1819
NOAA-NMFS-2020-0031-DRAFT-1820
NOAA-NMFS-2020-0031-DRAFT-1821

Comment from Paul Skarvinko
Comment from Jacomina Newman
Comment from Russell Jones
Comment from Gail Sullivan
Comment from Patrick Grady
Comment from sara hopewell
Comment from Danielle Miele
Comment from Dawn Skok
Comment from Carol Hill
Comment from Seth Silverman
Comment from Milt Weisman
Comment from Richard Decker
Comment from Lorraine Moore
Comment from Steven Lowenthal
Comment from BRUCE Revesz
Comment from Christine Sepulveda
Comment from Michele Hondo
Comment from jon mocey-hanton
Comment from Barbara Tillman
Comment from Neil Shargel
Comment from anthony tedesco
Comment from Christine Reeder
Comment from H Lee
Comment from mark semet
Comment from Carol Prost
Comment from Tina Messamore
Comment from Mike Inganamort
Comment from Edward Spevak
Comment from Misti Reif
Comment from Donna Wolz
Comment from Douglas Estes
Comment from Vincent Messineo
Comment from Allen Gibas
Comment from Karen Redd
Comment from Amy Young
Comment from Heather Schraeder
Comment from Petra Hays
Comment from Tina Cook
Comment from Andrea Whitson
Comment from John Long
Comment from Daniel DuBoise

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6873
NOAA-NMFS-2020-0031-DRAFT-6875
NOAA-NMFS-2020-0031-DRAFT-6876
NOAA-NMFS-2020-0031-DRAFT-6877
NOAA-NMFS-2020-0031-DRAFT-6878
NOAA-NMFS-2020-0031-DRAFT-6879
NOAA-NMFS-2020-0031-DRAFT-6880
NOAA-NMFS-2020-0031-DRAFT-6881
NOAA-NMFS-2020-0031-DRAFT-6883
NOAA-NMFS-2020-0031-DRAFT-6884
NOAA-NMFS-2020-0031-DRAFT-6885
NOAA-NMFS-2020-0031-DRAFT-6886
NOAA-NMFS-2020-0031-DRAFT-6887
NOAA-NMFS-2020-0031-DRAFT-6888
NOAA-NMFS-2020-0031-DRAFT-6889
NOAA-NMFS-2020-0031-DRAFT-6890
NOAA-NMFS-2020-0031-DRAFT-6891
NOAA-NMFS-2020-0031-DRAFT-6892
NOAA-NMFS-2020-0031-DRAFT-6893
NOAA-NMFS-2020-0031-DRAFT-6896
NOAA-NMFS-2020-0031-DRAFT-6897
NOAA-NMFS-2020-0031-DRAFT-6898
NOAA-NMFS-2020-0031-DRAFT-6899
NOAA-NMFS-2020-0031-DRAFT-6900
NOAA-NMFS-2020-0031-DRAFT-6901
NOAA-NMFS-2020-0031-DRAFT-6902
NOAA-NMFS-2020-0031-DRAFT-6904
NOAA-NMFS-2020-0031-DRAFT-6906
NOAA-NMFS-2020-0031-DRAFT-6907
NOAA-NMFS-2020-0031-DRAFT-6908
NOAA-NMFS-2020-0031-DRAFT-6909
NOAA-NMFS-2020-0031-DRAFT-6910
NOAA-NMFS-2020-0031-DRAFT-6911
NOAA-NMFS-2020-0031-DRAFT-6912
NOAA-NMFS-2020-0031-DRAFT-6915
NOAA-NMFS-2020-0031-DRAFT-6916
NOAA-NMFS-2020-0031-DRAFT-6917
NOAA-NMFS-2020-0031-DRAFT-6918
NOAA-NMFS-2020-0031-DRAFT-6919
NOAA-NMFS-2020-0031-DRAFT-6920
NOAA-NMFS-2020-0031-DRAFT-6921

Comment from Vincent Rusch
Comment from Warwick Hansell
Comment from Dorothea Swint
Comment from Susan Yarnell
Comment from Caryn Graves
Comment from Shakil hamid
Comment from gianluca barbuto
Comment from John Gambriel
Comment from Thomas Guaraldi
Comment from Mary louise Whitlow
Comment from Thomas Steele
Comment from Anonymous Anonymous
Comment from Martha Waltman
Comment from Susan Berzac
Comment from David Burns
Comment from Lisa Mazzola
Comment from Ricardo Filipe
Comment from Robert Ortiz
Comment from Nicholas Pierotti
Comment from Shawn Hall
Comment from Arnold Schildhaus
Comment from Anonymous Anonymous
Comment from Joan Glasser
Comment from Carol E. Hoke
Comment from Linda Janney
Comment from Maryann Piccione
Comment from Timothy Mullen
Comment from Vicky Brandt
Comment from Dan Silver
Comment from Lozz Starseed
Comment from Michael Haskell
Comment from Jrg Gaiser
Comment from Vic Bostock
Comment from Alicia Walker
Comment from Tracy Callow
Comment from Pamylle Greinke
Comment from Mary Shabbott
Comment from Deborah Richerson
Comment from John Carlson
Comment from Douglas Schantz
Comment from Diane Demee-Benoit

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01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1822
NOAA-NMFS-2020-0031-DRAFT-1823
NOAA-NMFS-2020-0031-DRAFT-1824
NOAA-NMFS-2020-0031-DRAFT-1825
NOAA-NMFS-2020-0031-DRAFT-1826
NOAA-NMFS-2020-0031-DRAFT-1827
NOAA-NMFS-2020-0031-DRAFT-1828
NOAA-NMFS-2020-0031-DRAFT-1829
NOAA-NMFS-2020-0031-DRAFT-1830
NOAA-NMFS-2020-0031-DRAFT-1831
NOAA-NMFS-2020-0031-DRAFT-1832
NOAA-NMFS-2020-0031-DRAFT-1833
NOAA-NMFS-2020-0031-DRAFT-1834
NOAA-NMFS-2020-0031-DRAFT-1835
NOAA-NMFS-2020-0031-DRAFT-1836
NOAA-NMFS-2020-0031-DRAFT-1837
NOAA-NMFS-2020-0031-DRAFT-1838
NOAA-NMFS-2020-0031-DRAFT-1839
NOAA-NMFS-2020-0031-DRAFT-1840
NOAA-NMFS-2020-0031-DRAFT-1841
NOAA-NMFS-2020-0031-DRAFT-1842
NOAA-NMFS-2020-0031-DRAFT-1843
NOAA-NMFS-2020-0031-DRAFT-1844
NOAA-NMFS-2020-0031-DRAFT-1845
NOAA-NMFS-2020-0031-DRAFT-1846
NOAA-NMFS-2020-0031-DRAFT-1847
NOAA-NMFS-2020-0031-DRAFT-1848
NOAA-NMFS-2020-0031-DRAFT-1849
NOAA-NMFS-2020-0031-DRAFT-1850
NOAA-NMFS-2020-0031-DRAFT-1851
NOAA-NMFS-2020-0031-DRAFT-1852
NOAA-NMFS-2020-0031-DRAFT-1853
NOAA-NMFS-2020-0031-DRAFT-1854
NOAA-NMFS-2020-0031-DRAFT-1855
NOAA-NMFS-2020-0031-DRAFT-1856
NOAA-NMFS-2020-0031-DRAFT-1857
NOAA-NMFS-2020-0031-DRAFT-1858
NOAA-NMFS-2020-0031-DRAFT-1859
NOAA-NMFS-2020-0031-DRAFT-1860
NOAA-NMFS-2020-0031-DRAFT-1861
NOAA-NMFS-2020-0031-DRAFT-1862

Comment from Karin Kozie
Comment from Karol Klein
Comment from Brenda Haig
Comment from chantal Herron
Comment from Sarah Rowe
Comment from Laurie Spraga
Comment from Heidi Jarratt
Comment from Anne Mitchell
Comment from Wendy Wells
Comment from Marlene Testaguzza
Comment from Setsuko Furuike
Comment from Timothy Hopwood
Comment from Lily Caron
Comment from Eric Voorhies
Comment from Victoria Silver
Comment from Alana Crow
Comment from Mitchell Stargrove
Comment from Briana Purcell
Comment from Gary Holcomb
Comment from Maria Magana
Comment from Suzy Juncker
Comment from Robin Steeves
Comment from Tyson Peterson
Comment from Amber Manske
Comment from Carol King
Comment from Debbi Weiler
Comment from meg Titus
Comment from Neal Steiner
Comment from Joan Heilman
Comment from Krystal FletcherBurroughs
Comment from Ronald Bogin
Comment from Tiffany Spahn
Comment from Maureen Sullivan
Comment from Mathew Vipond
Comment from Malcolm Groome
Comment from Shawn Troxell
Comment from Carol Easton
Comment from Elvi Bjorkquist
Comment from Nicole Olivier
Comment from Michae Gertz
Comment from Pauline Bedford

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6924
NOAA-NMFS-2020-0031-DRAFT-6925
NOAA-NMFS-2020-0031-DRAFT-6928
NOAA-NMFS-2020-0031-DRAFT-6931
NOAA-NMFS-2020-0031-DRAFT-6932
NOAA-NMFS-2020-0031-DRAFT-6934
NOAA-NMFS-2020-0031-DRAFT-6935
NOAA-NMFS-2020-0031-DRAFT-6936
NOAA-NMFS-2020-0031-DRAFT-6937
NOAA-NMFS-2020-0031-DRAFT-6938
NOAA-NMFS-2020-0031-DRAFT-6940
NOAA-NMFS-2020-0031-DRAFT-6941
NOAA-NMFS-2020-0031-DRAFT-6942
NOAA-NMFS-2020-0031-DRAFT-6943
NOAA-NMFS-2020-0031-DRAFT-6944
NOAA-NMFS-2020-0031-DRAFT-6946
NOAA-NMFS-2020-0031-DRAFT-6947
NOAA-NMFS-2020-0031-DRAFT-6948
NOAA-NMFS-2020-0031-DRAFT-6950
NOAA-NMFS-2020-0031-DRAFT-6951
NOAA-NMFS-2020-0031-DRAFT-6952
NOAA-NMFS-2020-0031-DRAFT-6953
NOAA-NMFS-2020-0031-DRAFT-6956
NOAA-NMFS-2020-0031-DRAFT-6957
NOAA-NMFS-2020-0031-DRAFT-6958
NOAA-NMFS-2020-0031-DRAFT-6959
NOAA-NMFS-2020-0031-DRAFT-6960
NOAA-NMFS-2020-0031-DRAFT-6962
NOAA-NMFS-2020-0031-DRAFT-6963
NOAA-NMFS-2020-0031-DRAFT-6965
NOAA-NMFS-2020-0031-DRAFT-6966
NOAA-NMFS-2020-0031-DRAFT-6967
NOAA-NMFS-2020-0031-DRAFT-6968
NOAA-NMFS-2020-0031-DRAFT-6970
NOAA-NMFS-2020-0031-DRAFT-6971
NOAA-NMFS-2020-0031-DRAFT-6972
NOAA-NMFS-2020-0031-DRAFT-6973
NOAA-NMFS-2020-0031-DRAFT-6974
NOAA-NMFS-2020-0031-DRAFT-6975
NOAA-NMFS-2020-0031-DRAFT-6977
NOAA-NMFS-2020-0031-DRAFT-6978

Comment from Suzanne Koelega
Comment from Alicia Salazar
Comment from D Schoech
Comment from Ruth Darden
Comment from Eliza Fragkopoulou
Comment from Mark Reback
Comment from Shannon Clare
Comment from Doris Potter
Comment from Meryl Pinque
Comment from James Seramba
Comment from Bonnie Barfield
Comment from Sally Sheck
Comment from Tracy Marotta
Comment from Elisabeth Celentano
Comment from Anonymous Anonymous
Comment from Diane Gentile
Comment from Julie Donoho
Comment from Marilyn Logan
Comment from Leona Johnson
Comment from Alicia Edmunds
Comment from Catherine Chambers
Comment from Louise Slattery
Comment from Stacey Bradley
Comment from Daryl Lucas
Comment from Barbara Chichester
Comment from Carin Sappelli
Comment from Heide Coppotelli
Comment from Gillian Miller
Comment from Eric Edwards
Comment from James Klein
Comment from Anonymous Anonymous
Comment from Kathryn Johanessen
Comment from Bernadette Andaloro
Comment from W. G.
Comment from Linda Penrose
Comment from Jonathan Warner
Comment from John Crowley
Comment from roy fuller
Comment from Anonymous Anonymous
Comment from Carlos Acosta
Comment from Anja Landon

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1863
NOAA-NMFS-2020-0031-DRAFT-1864
NOAA-NMFS-2020-0031-DRAFT-1865
NOAA-NMFS-2020-0031-DRAFT-1866
NOAA-NMFS-2020-0031-DRAFT-1867
NOAA-NMFS-2020-0031-DRAFT-1868
NOAA-NMFS-2020-0031-DRAFT-1869
NOAA-NMFS-2020-0031-DRAFT-1870
NOAA-NMFS-2020-0031-DRAFT-1871
NOAA-NMFS-2020-0031-DRAFT-1872
NOAA-NMFS-2020-0031-DRAFT-1873
NOAA-NMFS-2020-0031-DRAFT-1874
NOAA-NMFS-2020-0031-DRAFT-1875
NOAA-NMFS-2020-0031-DRAFT-1876
NOAA-NMFS-2020-0031-DRAFT-1877
NOAA-NMFS-2020-0031-DRAFT-1878
NOAA-NMFS-2020-0031-DRAFT-1879
NOAA-NMFS-2020-0031-DRAFT-1880
NOAA-NMFS-2020-0031-DRAFT-1881
NOAA-NMFS-2020-0031-DRAFT-1882
NOAA-NMFS-2020-0031-DRAFT-1883
NOAA-NMFS-2020-0031-DRAFT-1884
NOAA-NMFS-2020-0031-DRAFT-1885
NOAA-NMFS-2020-0031-DRAFT-1886
NOAA-NMFS-2020-0031-DRAFT-1887
NOAA-NMFS-2020-0031-DRAFT-1888
NOAA-NMFS-2020-0031-DRAFT-1889
NOAA-NMFS-2020-0031-DRAFT-1890
NOAA-NMFS-2020-0031-DRAFT-1891
NOAA-NMFS-2020-0031-DRAFT-1892
NOAA-NMFS-2020-0031-DRAFT-1893
NOAA-NMFS-2020-0031-DRAFT-1894
NOAA-NMFS-2020-0031-DRAFT-1895
NOAA-NMFS-2020-0031-DRAFT-1896
NOAA-NMFS-2020-0031-DRAFT-1897
NOAA-NMFS-2020-0031-DRAFT-1898
NOAA-NMFS-2020-0031-DRAFT-1899
NOAA-NMFS-2020-0031-DRAFT-1900
NOAA-NMFS-2020-0031-DRAFT-1901
NOAA-NMFS-2020-0031-DRAFT-1902
NOAA-NMFS-2020-0031-DRAFT-1903

Comment from Stephen Bartlett-R
Comment from cathyelizabeth levin
Comment from Earl Grove
Comment from Susan Sellers
Comment from Stefanie Kaku
Comment from timothy villalobos
Comment from Joshua Angelus
Comment from Stephen Edinger
Comment from Pat Button
Comment from Catherine France
Comment from Cherine Bauer
Comment from Steve Hanloon
Comment from Rosina Inlender
Comment from Julie Nolon
Comment from Robert Uebel
Comment from Diana Glixman
Comment from Joseph Boone
Comment from Rita Pesini
Comment from Gerard Corsini
Comment from gm whiting
Comment from Susan Reid
Comment from Johnny Pflugrad
Comment from Scott Coahran
Comment from Mary Parodi
Comment from Cheryl Spinelli
Comment from Mark Johnsen
Comment from Fernando Robles
Comment from Andy Tomsky
Comment from Michael Martin
Comment from Joseph Pluta
Comment from Joseph Nowak
Comment from Judy Shively
Comment from Christopher Moyer
Comment from James Ashcraft
Comment from Julie Geveshausen
Comment from Stephen Anderson
Comment from Jon Hager
Comment from Martina Porras
Comment from Connor Hansell
Comment from Frances Whiteside
Comment from Judy Greenfield

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6979
NOAA-NMFS-2020-0031-DRAFT-6980
NOAA-NMFS-2020-0031-DRAFT-6981
NOAA-NMFS-2020-0031-DRAFT-6982
NOAA-NMFS-2020-0031-DRAFT-6983
NOAA-NMFS-2020-0031-DRAFT-6984
NOAA-NMFS-2020-0031-DRAFT-6985
NOAA-NMFS-2020-0031-DRAFT-6986
NOAA-NMFS-2020-0031-DRAFT-6988
NOAA-NMFS-2020-0031-DRAFT-6990
NOAA-NMFS-2020-0031-DRAFT-6992
NOAA-NMFS-2020-0031-DRAFT-6994
NOAA-NMFS-2020-0031-DRAFT-6995
NOAA-NMFS-2020-0031-DRAFT-6996
NOAA-NMFS-2020-0031-DRAFT-6997
NOAA-NMFS-2020-0031-DRAFT-6998
NOAA-NMFS-2020-0031-DRAFT-6999
NOAA-NMFS-2020-0031-DRAFT-7001
NOAA-NMFS-2020-0031-DRAFT-7002
NOAA-NMFS-2020-0031-DRAFT-7004
NOAA-NMFS-2020-0031-DRAFT-7006
NOAA-NMFS-2020-0031-DRAFT-7007
NOAA-NMFS-2020-0031-DRAFT-7008
NOAA-NMFS-2020-0031-DRAFT-7009
NOAA-NMFS-2020-0031-DRAFT-7011
NOAA-NMFS-2020-0031-DRAFT-7012
NOAA-NMFS-2020-0031-DRAFT-7013
NOAA-NMFS-2020-0031-DRAFT-7015
NOAA-NMFS-2020-0031-DRAFT-7016
NOAA-NMFS-2020-0031-DRAFT-7018
NOAA-NMFS-2020-0031-DRAFT-7019
NOAA-NMFS-2020-0031-DRAFT-7020
NOAA-NMFS-2020-0031-DRAFT-7021
NOAA-NMFS-2020-0031-DRAFT-7022
NOAA-NMFS-2020-0031-DRAFT-7023
NOAA-NMFS-2020-0031-DRAFT-7025
NOAA-NMFS-2020-0031-DRAFT-7026
NOAA-NMFS-2020-0031-DRAFT-7027
NOAA-NMFS-2020-0031-DRAFT-7028
NOAA-NMFS-2020-0031-DRAFT-7029
NOAA-NMFS-2020-0031-DRAFT-7030

Comment from Dave and Rita Cross
Comment from MariaGrazia Sanguin
Comment from Antonella Nielsen
Comment from Andrew Arneson
Comment from Virginia Oliva
Comment from Anike Evdemon
Comment from Ken Goldsmith
Comment from Holly Crawford
Comment from Manisha Das Sangma
Comment from Denise Giroux
Comment from Elena De Fanis
Comment from Graham Brace
Comment from Joanne Reynolds
Comment from Len Jacobs
Comment from Claudia Wornum
Comment from Jim Brunton
Comment from Jaclyn Gerakios
Comment from Anne Mitchell
Comment from Kathy Aub
Comment from Jessica Weber
Comment from Lindsay Mugglestone
Comment from Mimi Gertler
Comment from Marlene Zamora
Comment from Joann Gilkes
Comment from G. Saffren
Comment from louis gauci
Comment from Rosemary Pasquarello
Comment from Jay Rice
Comment from Eryn Cook
Comment from Erika Miller
Comment from dawn sartori
Comment from Alex Bucciarelli
Comment from Beverly McPherson
Comment from Jason Nichols
Comment from Lisa Shaffer
Comment from Massimiliano Urso
Comment from Cynthia & Barry Marks
Comment from Dana Doliber
Comment from Carole McAuliffe
Comment from Jared Cornelia
Comment from David Ross

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-1904
NOAA-NMFS-2020-0031-DRAFT-1905
NOAA-NMFS-2020-0031-DRAFT-1906
NOAA-NMFS-2020-0031-DRAFT-1907
NOAA-NMFS-2020-0031-DRAFT-1908
NOAA-NMFS-2020-0031-DRAFT-1909
NOAA-NMFS-2020-0031-DRAFT-1910
NOAA-NMFS-2020-0031-DRAFT-1911
NOAA-NMFS-2020-0031-DRAFT-1912
NOAA-NMFS-2020-0031-DRAFT-1913
NOAA-NMFS-2020-0031-DRAFT-1914
NOAA-NMFS-2020-0031-DRAFT-1915
NOAA-NMFS-2020-0031-DRAFT-1916
NOAA-NMFS-2020-0031-DRAFT-1917
NOAA-NMFS-2020-0031-DRAFT-1918
NOAA-NMFS-2020-0031-DRAFT-1919
NOAA-NMFS-2020-0031-DRAFT-1920
NOAA-NMFS-2020-0031-DRAFT-1921
NOAA-NMFS-2020-0031-DRAFT-1922
NOAA-NMFS-2020-0031-DRAFT-1923
NOAA-NMFS-2020-0031-DRAFT-1924
NOAA-NMFS-2020-0031-DRAFT-1925
NOAA-NMFS-2020-0031-DRAFT-1926
NOAA-NMFS-2020-0031-DRAFT-1927
NOAA-NMFS-2020-0031-DRAFT-1928
NOAA-NMFS-2020-0031-DRAFT-1929
NOAA-NMFS-2020-0031-DRAFT-1930
NOAA-NMFS-2020-0031-DRAFT-1931
NOAA-NMFS-2020-0031-DRAFT-1932
NOAA-NMFS-2020-0031-DRAFT-1933
NOAA-NMFS-2020-0031-DRAFT-1934
NOAA-NMFS-2020-0031-DRAFT-1935
NOAA-NMFS-2020-0031-DRAFT-1936
NOAA-NMFS-2020-0031-DRAFT-1937
NOAA-NMFS-2020-0031-DRAFT-1938
NOAA-NMFS-2020-0031-DRAFT-1939
NOAA-NMFS-2020-0031-DRAFT-1940
NOAA-NMFS-2020-0031-DRAFT-1941
NOAA-NMFS-2020-0031-DRAFT-1942
NOAA-NMFS-2020-0031-DRAFT-1943
NOAA-NMFS-2020-0031-DRAFT-1944

Comment from Debbie Schlinger
Comment from Sharyn Magee
Comment from Yvonne Fisher
Comment from Meredith Needham
Comment from Kevin Hines
Comment from Gary Bender
Comment from Andrew Reilly
Comment from Mike Abler
Comment from Debra Vitola
Comment from Cathy Bledsoe
Comment from Carleton Vickers
Comment from Jill Turco
Comment from Ellen DeMarco
Comment from Mary Germain
Comment from Margaret Rogers
Comment from Rosiris Paniagua
Comment from Gloria Diggle
Comment from Tara Warfield
Comment from Joel Jensen
Comment from Judith Embry
Comment from kristin carstarphen
Comment from Deborah Childers
Comment from Wally Sykes
Comment from LM Drucker
Comment from Pamela Cubberly
Comment from Rich Speer
Comment from Chemen Ochoa
Comment from Richard Beal
Comment from Alicia Liang
Comment from Dr Smith
Comment from Daniel Gonzales
Comment from Tina Overland
Comment from Ralph Lopez
Comment from JL Charrier
Comment from Julie O'Donnell
Comment from Douglas Kinney
Comment from Julie Hawkins
Comment from Debra Harris
Comment from Wandis Wilcox
Comment from Joshua Asel
Comment from Susan Schneeberger

02/03/2021
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02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7033
NOAA-NMFS-2020-0031-DRAFT-7034
NOAA-NMFS-2020-0031-DRAFT-7035
NOAA-NMFS-2020-0031-DRAFT-7036
NOAA-NMFS-2020-0031-DRAFT-7038
NOAA-NMFS-2020-0031-DRAFT-7039
NOAA-NMFS-2020-0031-DRAFT-7040
NOAA-NMFS-2020-0031-DRAFT-7041
NOAA-NMFS-2020-0031-DRAFT-7044
NOAA-NMFS-2020-0031-DRAFT-7045
NOAA-NMFS-2020-0031-DRAFT-7046
NOAA-NMFS-2020-0031-DRAFT-7047
NOAA-NMFS-2020-0031-DRAFT-7048
NOAA-NMFS-2020-0031-DRAFT-7049
NOAA-NMFS-2020-0031-DRAFT-7050
NOAA-NMFS-2020-0031-DRAFT-7051
NOAA-NMFS-2020-0031-DRAFT-7052
NOAA-NMFS-2020-0031-DRAFT-7054
NOAA-NMFS-2020-0031-DRAFT-7055
NOAA-NMFS-2020-0031-DRAFT-7056
NOAA-NMFS-2020-0031-DRAFT-7057
NOAA-NMFS-2020-0031-DRAFT-7058
NOAA-NMFS-2020-0031-DRAFT-7059
NOAA-NMFS-2020-0031-DRAFT-7061
NOAA-NMFS-2020-0031-DRAFT-7064
NOAA-NMFS-2020-0031-DRAFT-7065
NOAA-NMFS-2020-0031-DRAFT-7066
NOAA-NMFS-2020-0031-DRAFT-7067
NOAA-NMFS-2020-0031-DRAFT-7068
NOAA-NMFS-2020-0031-DRAFT-7069
NOAA-NMFS-2020-0031-DRAFT-7070
NOAA-NMFS-2020-0031-DRAFT-7071
NOAA-NMFS-2020-0031-DRAFT-7072
NOAA-NMFS-2020-0031-DRAFT-7073
NOAA-NMFS-2020-0031-DRAFT-7074
NOAA-NMFS-2020-0031-DRAFT-7075
NOAA-NMFS-2020-0031-DRAFT-7076
NOAA-NMFS-2020-0031-DRAFT-7079
NOAA-NMFS-2020-0031-DRAFT-7080
NOAA-NMFS-2020-0031-DRAFT-7081
NOAA-NMFS-2020-0031-DRAFT-7082

Comment from Jeanne Grifo
Comment from Paula Cummings
Comment from Andrew Barsom
Comment from Donna Hays
Comment from Zanne Piard
Comment from Michel Collin
Comment from Bill Ruh
Comment from Elizabeth Leitao
Comment from Patricia Blackwell-Marchant
Comment from Amber Davidson
Comment from Neal Steiner
Comment from Sam Roe
Comment from Larry Trout
Comment from Norman Baker
Comment from Dr Stefan Petersen
Comment from Desdra Dawning
Comment from Chere High
Comment from Barbara Walker
Comment from Abigail Gindele
Comment from Anonymous Anonymous
Comment from Portland Coates
Comment from Anita Youabian
Comment from Alison T.
Comment from Terri Faircloth
Comment from Bronwen Evans
Comment from Marsha Halper
Comment from L Mathews
Comment from Jamie Fairchild
Comment from Sheila Desmond
Comment from Dan Esposito
Comment from Jon Berges
Comment from Stacy Parker
Comment from Boaz Shacham
Comment from Marta Dawes
Comment from Douglas McAlinden
Comment from Marilyn Quindo
Comment from susan hendrickson
Comment from SUSAN WALAJTYS
Comment from Susan Esposito
Comment from Lorenz Steininger
Comment from Gail Kieler

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NOAA-NMFS-2020-0031-DRAFT-1945
NOAA-NMFS-2020-0031-DRAFT-1946
NOAA-NMFS-2020-0031-DRAFT-1947
NOAA-NMFS-2020-0031-DRAFT-1948
NOAA-NMFS-2020-0031-DRAFT-1949
NOAA-NMFS-2020-0031-DRAFT-1950
NOAA-NMFS-2020-0031-DRAFT-1951
NOAA-NMFS-2020-0031-DRAFT-1952
NOAA-NMFS-2020-0031-DRAFT-1953
NOAA-NMFS-2020-0031-DRAFT-1954
NOAA-NMFS-2020-0031-DRAFT-1955
NOAA-NMFS-2020-0031-DRAFT-1956
NOAA-NMFS-2020-0031-DRAFT-1957
NOAA-NMFS-2020-0031-DRAFT-1958
NOAA-NMFS-2020-0031-DRAFT-1959
NOAA-NMFS-2020-0031-DRAFT-1960
NOAA-NMFS-2020-0031-DRAFT-1961
NOAA-NMFS-2020-0031-DRAFT-1962
NOAA-NMFS-2020-0031-DRAFT-1963
NOAA-NMFS-2020-0031-DRAFT-1964
NOAA-NMFS-2020-0031-DRAFT-1965
NOAA-NMFS-2020-0031-DRAFT-1966
NOAA-NMFS-2020-0031-DRAFT-1967
NOAA-NMFS-2020-0031-DRAFT-1968
NOAA-NMFS-2020-0031-DRAFT-1969
NOAA-NMFS-2020-0031-DRAFT-1970
NOAA-NMFS-2020-0031-DRAFT-1971
NOAA-NMFS-2020-0031-DRAFT-1972
NOAA-NMFS-2020-0031-DRAFT-1973
NOAA-NMFS-2020-0031-DRAFT-1974
NOAA-NMFS-2020-0031-DRAFT-1975
NOAA-NMFS-2020-0031-DRAFT-1976
NOAA-NMFS-2020-0031-DRAFT-1977
NOAA-NMFS-2020-0031-DRAFT-1978
NOAA-NMFS-2020-0031-DRAFT-1979
NOAA-NMFS-2020-0031-DRAFT-1980
NOAA-NMFS-2020-0031-DRAFT-1981
NOAA-NMFS-2020-0031-DRAFT-1982
NOAA-NMFS-2020-0031-DRAFT-1983
NOAA-NMFS-2020-0031-DRAFT-1984
NOAA-NMFS-2020-0031-DRAFT-1985

Comment from Dan Silver
Comment from Amy Anderson
Comment from Nikki Martin
Comment from Rhoda Herrold
Comment from Cynthia Bernett
Comment from Jane Montonen
Comment from Pamela Lyngen
Comment from Warren Pope
Comment from Gloria Boyd
Comment from Gail Wing
Comment from Constantine Bogios
Comment from Steven Lamers
Comment from Erin Foley-Collins
Comment from Barbara Brett
Comment from Elizabeth Merz
Comment from Fred Akers
Comment from Diane Barbera
Comment from Patrick Eggleston
Comment from Daniel Cole
Comment from Karen Anderson
Comment from Nancy Harter
Comment from Steve Zimet
Comment from Steven Christian
Comment from Chantal Eldridge
Comment from Douglas Koch
Comment from Judy Kowalczyk
Comment from Mary Al-Tukhaim
Comment from Angela Steinberg
Comment from Leslie Kuhn
Comment from james hicks
Comment from Gail Atkins
Comment from Larry Weingart
Comment from Allison Matthews
Comment from Federico Casagran
Comment from Jean Cameron
Comment from Edward Dillon
Comment from Cynthia McMath
Comment from Denise Romesburg
Comment from Cindy Grimes
Comment from Sally Webb
Comment from Jamie Le

02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7083
NOAA-NMFS-2020-0031-DRAFT-7085
NOAA-NMFS-2020-0031-DRAFT-7086
NOAA-NMFS-2020-0031-DRAFT-7087
NOAA-NMFS-2020-0031-DRAFT-7088
NOAA-NMFS-2020-0031-DRAFT-7089
NOAA-NMFS-2020-0031-DRAFT-7090
NOAA-NMFS-2020-0031-DRAFT-7091
NOAA-NMFS-2020-0031-DRAFT-7092
NOAA-NMFS-2020-0031-DRAFT-7093
NOAA-NMFS-2020-0031-DRAFT-7094
NOAA-NMFS-2020-0031-DRAFT-7096
NOAA-NMFS-2020-0031-DRAFT-7097
NOAA-NMFS-2020-0031-DRAFT-7098
NOAA-NMFS-2020-0031-DRAFT-7099
NOAA-NMFS-2020-0031-DRAFT-7100
NOAA-NMFS-2020-0031-DRAFT-7101
NOAA-NMFS-2020-0031-DRAFT-7102
NOAA-NMFS-2020-0031-DRAFT-7103
NOAA-NMFS-2020-0031-DRAFT-7104
NOAA-NMFS-2020-0031-DRAFT-7105
NOAA-NMFS-2020-0031-DRAFT-7106
NOAA-NMFS-2020-0031-DRAFT-7107
NOAA-NMFS-2020-0031-DRAFT-7108
NOAA-NMFS-2020-0031-DRAFT-7110
NOAA-NMFS-2020-0031-DRAFT-7111
NOAA-NMFS-2020-0031-DRAFT-7112
NOAA-NMFS-2020-0031-DRAFT-7114
NOAA-NMFS-2020-0031-DRAFT-7115
NOAA-NMFS-2020-0031-DRAFT-7116
NOAA-NMFS-2020-0031-DRAFT-7117
NOAA-NMFS-2020-0031-DRAFT-7118
NOAA-NMFS-2020-0031-DRAFT-7119
NOAA-NMFS-2020-0031-DRAFT-7120
NOAA-NMFS-2020-0031-DRAFT-7121
NOAA-NMFS-2020-0031-DRAFT-7122
NOAA-NMFS-2020-0031-DRAFT-7123
NOAA-NMFS-2020-0031-DRAFT-7124
NOAA-NMFS-2020-0031-DRAFT-7125
NOAA-NMFS-2020-0031-DRAFT-7126
NOAA-NMFS-2020-0031-DRAFT-7127

Comment from Ramona Jackson
Comment from Martin Archer
Comment from Barbara Bennigson
Comment from Jeffery Garcia
Comment from Deborah Reiter
Comment from Kristi Buchanan
Comment from Cynthia Fry
Comment from Anonymous Anonymous
Comment from Jerald Vinikoff
Comment from Marjorie Angelo
Comment from Harriet Downie
Comment from Mark Klugiewicz
Comment from Karen Villarreal
Comment from Anonymous Anonymous
Comment from Maddox Pellegrino
Comment from Natalia Sousa
Comment from George Milkowski
Comment from Evi Skidmore
Comment from Rebecca Ruiz
Comment from Brenda Jaenicke
Comment from Jenny Sherman
Comment from Ann Nevans
Comment from Cathy Barton
Comment from Brian Gingras
Comment from Russell F Wells, PhD
Comment from Donna D'Fini
Comment from mari elvi
Comment from Krista Dana
Comment from Beverly Odom
Comment from sandy kavoyianni
Comment from Gary Bettega
Comment from Nicholas Williams
Comment from Marce Walsh
Comment from Dorothea Stephan
Comment from Patricia Vineski
Comment from Heather McHugh
Comment from Carol Edwards
Comment from Susan Brandes
Comment from Carol Collins
Comment from Janet Forbes
Comment from Mike Kelly

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NOAA-NMFS-2020-0031-DRAFT-1986
NOAA-NMFS-2020-0031-DRAFT-1987
NOAA-NMFS-2020-0031-DRAFT-1988
NOAA-NMFS-2020-0031-DRAFT-1989
NOAA-NMFS-2020-0031-DRAFT-1990
NOAA-NMFS-2020-0031-DRAFT-1991
NOAA-NMFS-2020-0031-DRAFT-1992
NOAA-NMFS-2020-0031-DRAFT-1993
NOAA-NMFS-2020-0031-DRAFT-1994
NOAA-NMFS-2020-0031-DRAFT-1995
NOAA-NMFS-2020-0031-DRAFT-1996
NOAA-NMFS-2020-0031-DRAFT-1997
NOAA-NMFS-2020-0031-DRAFT-1998
NOAA-NMFS-2020-0031-DRAFT-1999
NOAA-NMFS-2020-0031-DRAFT-2000
NOAA-NMFS-2020-0031-DRAFT-2001
NOAA-NMFS-2020-0031-DRAFT-2002
NOAA-NMFS-2020-0031-DRAFT-2003
NOAA-NMFS-2020-0031-DRAFT-2004
NOAA-NMFS-2020-0031-DRAFT-2005
NOAA-NMFS-2020-0031-DRAFT-2006
NOAA-NMFS-2020-0031-DRAFT-2007
NOAA-NMFS-2020-0031-DRAFT-2008
NOAA-NMFS-2020-0031-DRAFT-2009
NOAA-NMFS-2020-0031-DRAFT-2010
NOAA-NMFS-2020-0031-DRAFT-2011
NOAA-NMFS-2020-0031-DRAFT-2012
NOAA-NMFS-2020-0031-DRAFT-2013
NOAA-NMFS-2020-0031-DRAFT-2014
NOAA-NMFS-2020-0031-DRAFT-2015
NOAA-NMFS-2020-0031-DRAFT-2016
NOAA-NMFS-2020-0031-DRAFT-2017
NOAA-NMFS-2020-0031-DRAFT-2018
NOAA-NMFS-2020-0031-DRAFT-2019
NOAA-NMFS-2020-0031-DRAFT-2020
NOAA-NMFS-2020-0031-DRAFT-2021
NOAA-NMFS-2020-0031-DRAFT-2022
NOAA-NMFS-2020-0031-DRAFT-2023
NOAA-NMFS-2020-0031-DRAFT-2024
NOAA-NMFS-2020-0031-DRAFT-2025
NOAA-NMFS-2020-0031-DRAFT-2026

Comment from Anjali Athavale
Comment from don smith
Comment from Mike Kelly
Comment from Joan Miller
Comment from Rudy Zeller
Comment from Laraine Lebron
Comment from Michael Reppy
Comment from Michele Roberts
Comment from Maria Botello
Comment from April Hosty
Comment from SAMUEL POPAILO
Comment from Steve Thunberg
Comment from Eliot Kaplan
Comment from Don Pew
Comment from Thomas Klusaritz
Comment from Dennis Manning
Comment from John Christopher
Comment from Cindy Charnetski
Comment from Tami Oleson
Comment from Jean Rodriguez
Comment from Jennifer Robins
Comment from Clayton Jones
Comment from Robert Reed
Comment from ADAM BERNSTEIN
Comment from Elaine Berg
Comment from Susan Walker
Comment from Gregory Hubbard
Comment from Jennifer Tulo
Comment from Janet Monfredini
Comment from Jon Krueger
Comment from Penelope Ward
Comment from Marc Anderson
Comment from Dave Searles
Comment from Edward Sullivan
Comment from Christopher Feehan
Comment from Kerrie Shisila
Comment from Angela Grattan
Comment from Barbara Chaffin
Comment from Tracey B
Comment from Greg Nicholas
Comment from Terry Hill

02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7128
NOAA-NMFS-2020-0031-DRAFT-7129
NOAA-NMFS-2020-0031-DRAFT-7130
NOAA-NMFS-2020-0031-DRAFT-7131
NOAA-NMFS-2020-0031-DRAFT-7132
NOAA-NMFS-2020-0031-DRAFT-7133
NOAA-NMFS-2020-0031-DRAFT-7134
NOAA-NMFS-2020-0031-DRAFT-7135
NOAA-NMFS-2020-0031-DRAFT-7136
NOAA-NMFS-2020-0031-DRAFT-7137
NOAA-NMFS-2020-0031-DRAFT-7138
NOAA-NMFS-2020-0031-DRAFT-7139
NOAA-NMFS-2020-0031-DRAFT-7140
NOAA-NMFS-2020-0031-DRAFT-7141
NOAA-NMFS-2020-0031-DRAFT-7142
NOAA-NMFS-2020-0031-DRAFT-7143
NOAA-NMFS-2020-0031-DRAFT-7145
NOAA-NMFS-2020-0031-DRAFT-7147
NOAA-NMFS-2020-0031-DRAFT-7149
NOAA-NMFS-2020-0031-DRAFT-7150
NOAA-NMFS-2020-0031-DRAFT-7151
NOAA-NMFS-2020-0031-DRAFT-7153
NOAA-NMFS-2020-0031-DRAFT-7154
NOAA-NMFS-2020-0031-DRAFT-7155
NOAA-NMFS-2020-0031-DRAFT-7157
NOAA-NMFS-2020-0031-DRAFT-7158
NOAA-NMFS-2020-0031-DRAFT-7159
NOAA-NMFS-2020-0031-DRAFT-7160
NOAA-NMFS-2020-0031-DRAFT-7161
NOAA-NMFS-2020-0031-DRAFT-7162
NOAA-NMFS-2020-0031-DRAFT-7164
NOAA-NMFS-2020-0031-DRAFT-7165
NOAA-NMFS-2020-0031-DRAFT-7166
NOAA-NMFS-2020-0031-DRAFT-7167
NOAA-NMFS-2020-0031-DRAFT-7168
NOAA-NMFS-2020-0031-DRAFT-7170
NOAA-NMFS-2020-0031-DRAFT-7172
NOAA-NMFS-2020-0031-DRAFT-7173
NOAA-NMFS-2020-0031-DRAFT-7174
NOAA-NMFS-2020-0031-DRAFT-7175
NOAA-NMFS-2020-0031-DRAFT-7176

Comment from Angela Slawinski
Comment from Linda Fighera
Comment from Susan Sloan
Comment from Deanna Horton
Comment from marina sagardua
Comment from Ellen Easum
Comment from dan horton
Comment from Danya Kuperstein
Comment from Paul Russell
Comment from Charles Fox
Comment from Richard Rothstein
Comment from Laurel Collins
Comment from Lura Messier
Comment from Anna White
Comment from Linda Van Jahnke
Comment from Kathryn Law
Comment from Ariana Marchena
Comment from Stefan Taylor
Comment from Maggie Topalian
Comment from Kelly Connolly
Comment from Maureen saldi
Comment from Antje Miller
Comment from David Boyer
Comment from Robin Costello
Comment from John Bailey
Comment from Sandy Moynihan
Comment from Claire Thibault
Comment from Sue McNally
Comment from Susan Hodgson
Comment from jeanne hobert
Comment from V irginia Matney
Comment from Enid Cardinal
Comment from Steve Marshall
Comment from Darleen Baker
Comment from Virginia Callan
Comment from Dawn Albanese
Comment from Gregory Esteve
Comment from Marilyn Hanson
Comment from Kurt Cruger
Comment from Sue Horwood
Comment from Alan Bedard

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2027
NOAA-NMFS-2020-0031-DRAFT-2028
NOAA-NMFS-2020-0031-DRAFT-2029
NOAA-NMFS-2020-0031-DRAFT-2030
NOAA-NMFS-2020-0031-DRAFT-2031
NOAA-NMFS-2020-0031-DRAFT-2032
NOAA-NMFS-2020-0031-DRAFT-2033
NOAA-NMFS-2020-0031-DRAFT-2034
NOAA-NMFS-2020-0031-DRAFT-2035
NOAA-NMFS-2020-0031-DRAFT-2036
NOAA-NMFS-2020-0031-DRAFT-2037
NOAA-NMFS-2020-0031-DRAFT-2038
NOAA-NMFS-2020-0031-DRAFT-2039
NOAA-NMFS-2020-0031-DRAFT-2040
NOAA-NMFS-2020-0031-DRAFT-2041
NOAA-NMFS-2020-0031-DRAFT-2042
NOAA-NMFS-2020-0031-DRAFT-2043
NOAA-NMFS-2020-0031-DRAFT-2044
NOAA-NMFS-2020-0031-DRAFT-2045
NOAA-NMFS-2020-0031-DRAFT-2046
NOAA-NMFS-2020-0031-DRAFT-2047
NOAA-NMFS-2020-0031-DRAFT-2048
NOAA-NMFS-2020-0031-DRAFT-2049
NOAA-NMFS-2020-0031-DRAFT-2050
NOAA-NMFS-2020-0031-DRAFT-2051
NOAA-NMFS-2020-0031-DRAFT-2052
NOAA-NMFS-2020-0031-DRAFT-2053
NOAA-NMFS-2020-0031-DRAFT-2054
NOAA-NMFS-2020-0031-DRAFT-2055
NOAA-NMFS-2020-0031-DRAFT-2056
NOAA-NMFS-2020-0031-DRAFT-2057
NOAA-NMFS-2020-0031-DRAFT-2058
NOAA-NMFS-2020-0031-DRAFT-2059
NOAA-NMFS-2020-0031-DRAFT-2060
NOAA-NMFS-2020-0031-DRAFT-2061
NOAA-NMFS-2020-0031-DRAFT-2062
NOAA-NMFS-2020-0031-DRAFT-2063
NOAA-NMFS-2020-0031-DRAFT-2064
NOAA-NMFS-2020-0031-DRAFT-2065
NOAA-NMFS-2020-0031-DRAFT-2066
NOAA-NMFS-2020-0031-DRAFT-2067

Comment from Kat Howren
Comment from Laura Weiss
Comment from Gail Roberts
Comment from Norman Baker
Comment from Mary Thornton
Comment from pablo Voitzuk
Comment from Chris Phoenix
Comment from Mary Thornton
Comment from Robin Martin
Comment from Nancy Gregory
Comment from JULIEN JEGOU
Comment from gabriele hollnd
Comment from Marilyn Montgomery
Comment from D Rader
Comment from Nawal Tamimi
Comment from Valerie Sanderson
Comment from RAUL DEL SOLAR
Comment from Mary True
Comment from Gerald Orcholski
Comment from Jared Cornelia
Comment from Har Canto
Comment from James Donahue
Comment from Shelby Hood
Comment from Marilyn Davis
Comment from Wilma Davison
Comment from Stepheny McGraw
Comment from Karl Kernehan
Comment from Rheama Koonce
Comment from ethan zachadnyk
Comment from Cyndi Clough
Comment from Jesse Mallory
Comment from Marilyn H
Comment from Kathryn Giesler
Comment from James Murphey
Comment from Manny Correa
Comment from Alexandra Grossi
Comment from Gloria Skouge
Comment from April Oros
Comment from Kim Brower
Comment from EILEEN MASSEY
Comment from Marla feierabend

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7177
NOAA-NMFS-2020-0031-DRAFT-7178
NOAA-NMFS-2020-0031-DRAFT-7179
NOAA-NMFS-2020-0031-DRAFT-7180
NOAA-NMFS-2020-0031-DRAFT-7181
NOAA-NMFS-2020-0031-DRAFT-7182
NOAA-NMFS-2020-0031-DRAFT-7183
NOAA-NMFS-2020-0031-DRAFT-7184
NOAA-NMFS-2020-0031-DRAFT-7185
NOAA-NMFS-2020-0031-DRAFT-7186
NOAA-NMFS-2020-0031-DRAFT-7187
NOAA-NMFS-2020-0031-DRAFT-7188
NOAA-NMFS-2020-0031-DRAFT-7189
NOAA-NMFS-2020-0031-DRAFT-7190
NOAA-NMFS-2020-0031-DRAFT-7191
NOAA-NMFS-2020-0031-DRAFT-7192
NOAA-NMFS-2020-0031-DRAFT-7193
NOAA-NMFS-2020-0031-DRAFT-7194
NOAA-NMFS-2020-0031-DRAFT-7195
NOAA-NMFS-2020-0031-DRAFT-7198
NOAA-NMFS-2020-0031-DRAFT-7199
NOAA-NMFS-2020-0031-DRAFT-7200
NOAA-NMFS-2020-0031-DRAFT-7201
NOAA-NMFS-2020-0031-DRAFT-7202
NOAA-NMFS-2020-0031-DRAFT-7203
NOAA-NMFS-2020-0031-DRAFT-7204
NOAA-NMFS-2020-0031-DRAFT-7205
NOAA-NMFS-2020-0031-DRAFT-7206
NOAA-NMFS-2020-0031-DRAFT-7207
NOAA-NMFS-2020-0031-DRAFT-7208
NOAA-NMFS-2020-0031-DRAFT-7209
NOAA-NMFS-2020-0031-DRAFT-7210
NOAA-NMFS-2020-0031-DRAFT-7211
NOAA-NMFS-2020-0031-DRAFT-7213
NOAA-NMFS-2020-0031-DRAFT-7214
NOAA-NMFS-2020-0031-DRAFT-7215
NOAA-NMFS-2020-0031-DRAFT-7216
NOAA-NMFS-2020-0031-DRAFT-7217
NOAA-NMFS-2020-0031-DRAFT-7218
NOAA-NMFS-2020-0031-DRAFT-7219
NOAA-NMFS-2020-0031-DRAFT-7220

Comment from Anne Armstrong
Comment from Judith Spell
Comment from Silvia Pasqualato
Comment from Gary Beckerman
Comment from Joan How
Comment from Kia Hendrix
Comment from Camille Gilbert
Comment from Liz piercey
Comment from Jim Chapman
Comment from Christine Trinidad
Comment from Mary Finelli
Comment from Carly Clements Owens
Comment from Anonymous Anonymous
Comment from Sarai Feria
Comment from Billie Jo
Comment from Namita Dalal
Comment from Anonymous Anonymous
Comment from Jenifer Johnson
Comment from Kate Crowley
Comment from Hollis Blinn
Comment from francis mastri
Comment from Kris Pagenkopf
Comment from Anonymous Anonymous
Comment from Larry Arnold
Comment from Claudia Gruetter
Comment from Rayline Dean
Comment from P Nunez
Comment from Tim Hubbard
Comment from Fred Granlund
Comment from Stephanie Townsend
Comment from Allen Leslie
Comment from Jessica Langford
Comment from Michelle Waters
Comment from thalia lubin
Comment from Chris Clarke
Comment from Richard Van Aken
Comment from Cindy Childers
Comment from Lawrence Thompson
Comment from Scott Species
Comment from Roxanne Dinkines
Comment from Glenna Waterman

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2068
NOAA-NMFS-2020-0031-DRAFT-2069
NOAA-NMFS-2020-0031-DRAFT-2070
NOAA-NMFS-2020-0031-DRAFT-2071
NOAA-NMFS-2020-0031-DRAFT-2072
NOAA-NMFS-2020-0031-DRAFT-2073
NOAA-NMFS-2020-0031-DRAFT-2074
NOAA-NMFS-2020-0031-DRAFT-2075
NOAA-NMFS-2020-0031-DRAFT-2076
NOAA-NMFS-2020-0031-DRAFT-2077
NOAA-NMFS-2020-0031-DRAFT-2078
NOAA-NMFS-2020-0031-DRAFT-2079
NOAA-NMFS-2020-0031-DRAFT-2080
NOAA-NMFS-2020-0031-DRAFT-2081
NOAA-NMFS-2020-0031-DRAFT-2082
NOAA-NMFS-2020-0031-DRAFT-2083
NOAA-NMFS-2020-0031-DRAFT-2084
NOAA-NMFS-2020-0031-DRAFT-2085
NOAA-NMFS-2020-0031-DRAFT-2086
NOAA-NMFS-2020-0031-DRAFT-2087
NOAA-NMFS-2020-0031-DRAFT-2088
NOAA-NMFS-2020-0031-DRAFT-2089
NOAA-NMFS-2020-0031-DRAFT-2090
NOAA-NMFS-2020-0031-DRAFT-2091
NOAA-NMFS-2020-0031-DRAFT-2092
NOAA-NMFS-2020-0031-DRAFT-2093
NOAA-NMFS-2020-0031-DRAFT-2094
NOAA-NMFS-2020-0031-DRAFT-2095
NOAA-NMFS-2020-0031-DRAFT-2096
NOAA-NMFS-2020-0031-DRAFT-2097
NOAA-NMFS-2020-0031-DRAFT-2098
NOAA-NMFS-2020-0031-DRAFT-2099
NOAA-NMFS-2020-0031-DRAFT-2100
NOAA-NMFS-2020-0031-DRAFT-2101
NOAA-NMFS-2020-0031-DRAFT-2102
NOAA-NMFS-2020-0031-DRAFT-2103
NOAA-NMFS-2020-0031-DRAFT-2104
NOAA-NMFS-2020-0031-DRAFT-2105
NOAA-NMFS-2020-0031-DRAFT-2106
NOAA-NMFS-2020-0031-DRAFT-2107
NOAA-NMFS-2020-0031-DRAFT-2108

Comment from Karen Taatjes
Comment from DoRi Miles
Comment from Ben Earle
Comment from Jason Steadmon
Comment from Pam Woodard
Comment from Carlos Arnold
Comment from John Mora
Comment from Richard Pavek
Comment from Carol Fletcher
Comment from patricia holbrook
Comment from Jocelyn Weight
Comment from Catherine Ream
Comment from Harold Hubbard
Comment from Tim Porter
Comment from Renee DeMartin
Comment from Dena Schwimmer
Comment from Terry Bergeron
Comment from Maxine Goodyear
Comment from Richard Smith
Comment from Pat Bryan
Comment from Thomas Peel
Comment from Kathleen Grossman
Comment from Belinda Dodd
Comment from John Laing
Comment from John Essman
Comment from Sandra Breakfield
Comment from Theresa Campbell
Comment from Karen Naifeh
Comment from Piers Strailey
Comment from Teresia LaFleur
Comment from Lacey Chaffee
Comment from Bill Butler
Comment from quinten putnam
Comment from Lisa LeBlanc
Comment from Michael Wherley
Comment from Megan Wright
Comment from Cindy Jackson
Comment from Gill Fahrenwald
Comment from Paula Shafransky
Comment from Rose Riker
Comment from Sean Craig

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7221
NOAA-NMFS-2020-0031-DRAFT-7222
NOAA-NMFS-2020-0031-DRAFT-7223
NOAA-NMFS-2020-0031-DRAFT-7224
NOAA-NMFS-2020-0031-DRAFT-7226
NOAA-NMFS-2020-0031-DRAFT-7227
NOAA-NMFS-2020-0031-DRAFT-7228
NOAA-NMFS-2020-0031-DRAFT-7229
NOAA-NMFS-2020-0031-DRAFT-7230
NOAA-NMFS-2020-0031-DRAFT-7232
NOAA-NMFS-2020-0031-DRAFT-7234
NOAA-NMFS-2020-0031-DRAFT-7236
NOAA-NMFS-2020-0031-DRAFT-7237
NOAA-NMFS-2020-0031-DRAFT-7238
NOAA-NMFS-2020-0031-DRAFT-7239
NOAA-NMFS-2020-0031-DRAFT-7240
NOAA-NMFS-2020-0031-DRAFT-7241
NOAA-NMFS-2020-0031-DRAFT-7242
NOAA-NMFS-2020-0031-DRAFT-7243
NOAA-NMFS-2020-0031-DRAFT-7244
NOAA-NMFS-2020-0031-DRAFT-7245
NOAA-NMFS-2020-0031-DRAFT-7246
NOAA-NMFS-2020-0031-DRAFT-7247
NOAA-NMFS-2020-0031-DRAFT-7248
NOAA-NMFS-2020-0031-DRAFT-7249
NOAA-NMFS-2020-0031-DRAFT-7250
NOAA-NMFS-2020-0031-DRAFT-7251
NOAA-NMFS-2020-0031-DRAFT-7252
NOAA-NMFS-2020-0031-DRAFT-7253
NOAA-NMFS-2020-0031-DRAFT-7254
NOAA-NMFS-2020-0031-DRAFT-7256
NOAA-NMFS-2020-0031-DRAFT-7257
NOAA-NMFS-2020-0031-DRAFT-7259
NOAA-NMFS-2020-0031-DRAFT-7260
NOAA-NMFS-2020-0031-DRAFT-7261
NOAA-NMFS-2020-0031-DRAFT-7262
NOAA-NMFS-2020-0031-DRAFT-7263
NOAA-NMFS-2020-0031-DRAFT-7264
NOAA-NMFS-2020-0031-DRAFT-7265
NOAA-NMFS-2020-0031-DRAFT-7267
NOAA-NMFS-2020-0031-DRAFT-7268

Comment from Nancy Pearlman
Comment from Rosiris Paniagua
Comment from Stephanie Jones
Comment from Luisa Schillo
Comment from Christa Rounsavall
Comment from erin white
Comment from Rob Rondanini
Comment from Marie Dickenson
Comment from Bill Both
Comment from Barry Sprince
Comment from Kellen Dunn
Comment from Jean Chagnon
Comment from jesper knutson
Comment from Anita Wisch
Comment from Melissa Polick
Comment from elsa knutson
Comment from elsa knutson
Comment from Roy Richards
Comment from Rebeca Bennett
Comment from kane haugen
Comment from Anita Wisch
Comment from kellen clarke
Comment from palle kemper
Comment from Larson Sven
Comment from elsa knutson
Comment from Mary Gill
Comment from Jon Povill
Comment from Rosemary Pasquarello
Comment from Sullie LeFrancois
Comment from Kimberly Perry
Comment from Maria Shepard
Comment from Darilynn McCoy
Comment from Matthew Erickson
Comment from Scott W
Comment from Laura Berry
Comment from Annerose Albus
Comment from Stephanie Trasoff
Comment from Michaela Davis
Comment from Sharon Intilli
Comment from Olga Gonzalez
Comment from Tamila Tupikina

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2109
NOAA-NMFS-2020-0031-DRAFT-2110
NOAA-NMFS-2020-0031-DRAFT-2111
NOAA-NMFS-2020-0031-DRAFT-2112
NOAA-NMFS-2020-0031-DRAFT-2113
NOAA-NMFS-2020-0031-DRAFT-2114
NOAA-NMFS-2020-0031-DRAFT-2115
NOAA-NMFS-2020-0031-DRAFT-2116
NOAA-NMFS-2020-0031-DRAFT-2117
NOAA-NMFS-2020-0031-DRAFT-2118
NOAA-NMFS-2020-0031-DRAFT-2119
NOAA-NMFS-2020-0031-DRAFT-2120
NOAA-NMFS-2020-0031-DRAFT-2121
NOAA-NMFS-2020-0031-DRAFT-2122
NOAA-NMFS-2020-0031-DRAFT-2123
NOAA-NMFS-2020-0031-DRAFT-2124
NOAA-NMFS-2020-0031-DRAFT-2125
NOAA-NMFS-2020-0031-DRAFT-2126
NOAA-NMFS-2020-0031-DRAFT-2127
NOAA-NMFS-2020-0031-DRAFT-2128
NOAA-NMFS-2020-0031-DRAFT-2129
NOAA-NMFS-2020-0031-DRAFT-2130
NOAA-NMFS-2020-0031-DRAFT-2131
NOAA-NMFS-2020-0031-DRAFT-2132
NOAA-NMFS-2020-0031-DRAFT-2133
NOAA-NMFS-2020-0031-DRAFT-2134
NOAA-NMFS-2020-0031-DRAFT-2135
NOAA-NMFS-2020-0031-DRAFT-2136
NOAA-NMFS-2020-0031-DRAFT-2137
NOAA-NMFS-2020-0031-DRAFT-2138
NOAA-NMFS-2020-0031-DRAFT-2139
NOAA-NMFS-2020-0031-DRAFT-2140
NOAA-NMFS-2020-0031-DRAFT-2141
NOAA-NMFS-2020-0031-DRAFT-2142
NOAA-NMFS-2020-0031-DRAFT-2143
NOAA-NMFS-2020-0031-DRAFT-2144
NOAA-NMFS-2020-0031-DRAFT-2145
NOAA-NMFS-2020-0031-DRAFT-2146
NOAA-NMFS-2020-0031-DRAFT-2147
NOAA-NMFS-2020-0031-DRAFT-2148
NOAA-NMFS-2020-0031-DRAFT-2149

Comment from Linda Schmidt
Comment from Abigail Fanestil
Comment from Kurt Cruger
Comment from Sheri Minix
Comment from B Sitkin
Comment from Linda Perrigoue
Comment from Juliann Pinto
Comment from Stewart Wiggers
Comment from Leslie Valentine
Comment from WILLIAM O'HARE
Comment from Gemma Peckinpah
Comment from jim hite
Comment from Gabriel Amaro
Comment from Anne Legene
Comment from Danielle Shannon
Comment from MICHAEL SCHUMM
Comment from Roger Ellis
Comment from Bryn HammarstromRN
Comment from Janine Nordquist
Comment from Mike Souza
Comment from Dennis Sweeney
Comment from Nicolas Duon
Comment from Karina Andreasen
Comment from Matthew Janusauskas
Comment from Doug Helliesen
Comment from Marianne Salamone
Comment from Laura Stevens
Comment from E. Neal
Comment from Michael Stricker
Comment from Jocelyn Stowell
Comment from Linda Bolduan
Comment from Bruce Triplett
Comment from Brian Christian
Comment from Terry Derchia
Comment from Vic Bostock
Comment from Denise Couey
Comment from Christa Neuber
Comment from Ingrid Eichenbaum
Comment from Robin Finley
Comment from Taryn Geer
Comment from Martin Rickman

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7269
NOAA-NMFS-2020-0031-DRAFT-7270
NOAA-NMFS-2020-0031-DRAFT-7271
NOAA-NMFS-2020-0031-DRAFT-7272
NOAA-NMFS-2020-0031-DRAFT-7273
NOAA-NMFS-2020-0031-DRAFT-7274
NOAA-NMFS-2020-0031-DRAFT-7275
NOAA-NMFS-2020-0031-DRAFT-7276
NOAA-NMFS-2020-0031-DRAFT-7277
NOAA-NMFS-2020-0031-DRAFT-7279
NOAA-NMFS-2020-0031-DRAFT-7281
NOAA-NMFS-2020-0031-DRAFT-7282
NOAA-NMFS-2020-0031-DRAFT-7283
NOAA-NMFS-2020-0031-DRAFT-7284
NOAA-NMFS-2020-0031-DRAFT-7285
NOAA-NMFS-2020-0031-DRAFT-7286
NOAA-NMFS-2020-0031-DRAFT-7287
NOAA-NMFS-2020-0031-DRAFT-7288
NOAA-NMFS-2020-0031-DRAFT-7289
NOAA-NMFS-2020-0031-DRAFT-7291
NOAA-NMFS-2020-0031-DRAFT-7293
NOAA-NMFS-2020-0031-DRAFT-7294
NOAA-NMFS-2020-0031-DRAFT-7295
NOAA-NMFS-2020-0031-DRAFT-7296
NOAA-NMFS-2020-0031-DRAFT-7297
NOAA-NMFS-2020-0031-DRAFT-7298
NOAA-NMFS-2020-0031-DRAFT-7299
NOAA-NMFS-2020-0031-DRAFT-7300
NOAA-NMFS-2020-0031-DRAFT-7301
NOAA-NMFS-2020-0031-DRAFT-7302
NOAA-NMFS-2020-0031-DRAFT-7303
NOAA-NMFS-2020-0031-DRAFT-7304
NOAA-NMFS-2020-0031-DRAFT-7305
NOAA-NMFS-2020-0031-DRAFT-7306
NOAA-NMFS-2020-0031-DRAFT-7307
NOAA-NMFS-2020-0031-DRAFT-7308
NOAA-NMFS-2020-0031-DRAFT-7309
NOAA-NMFS-2020-0031-DRAFT-7310
NOAA-NMFS-2020-0031-DRAFT-7311
NOAA-NMFS-2020-0031-DRAFT-7312
NOAA-NMFS-2020-0031-DRAFT-7313

Comment from xavier petit
Comment from Betsy Nordenholz
Comment from Nancy Gregory
Comment from Teresa C C Farrajota
Comment from Debi Griepsma
Comment from Lynne Russert
Comment from Judith Anshin
Comment from Marilyn Mangione
Comment from Paul M
Comment from Edna Mullen
Comment from Deanne Hart
Comment from Lowell Harrison
Comment from John Doneman
Comment from Kathleen Neely
Comment from Laurie Tabor
Comment from Jennifer Hagens
Comment from Marie Wakefield
Comment from Victoria Dickey
Comment from Jillian Fiedor
Comment from Nancy Yarosis
Comment from Ronald Silver
Comment from freddie williams
Comment from Margaret Silver
Comment from Steve Aydelott
Comment from Diane Zinni
Comment from Margaret Maloney
Comment from Pamela Emery
Comment from Thomas Artin
Comment from Jo Jones
Comment from Antoinette Penkala
Comment from James Riggs
Comment from Sandra Girouard
Comment from Christie Hartmann
Comment from Jennifer Wells
Comment from Barbara Becker
Comment from Samuel McIntyre
Comment from Kelly Carlson
Comment from Brandy Garnett
Comment from Ted Odom
Comment from Ruth Howard
Comment from Meredith Russo

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01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2150
NOAA-NMFS-2020-0031-DRAFT-2151
NOAA-NMFS-2020-0031-DRAFT-2152
NOAA-NMFS-2020-0031-DRAFT-2153
NOAA-NMFS-2020-0031-DRAFT-2154
NOAA-NMFS-2020-0031-DRAFT-2155
NOAA-NMFS-2020-0031-DRAFT-2156
NOAA-NMFS-2020-0031-DRAFT-2157
NOAA-NMFS-2020-0031-DRAFT-2158
NOAA-NMFS-2020-0031-DRAFT-2159
NOAA-NMFS-2020-0031-DRAFT-2160
NOAA-NMFS-2020-0031-DRAFT-2161
NOAA-NMFS-2020-0031-DRAFT-2162
NOAA-NMFS-2020-0031-DRAFT-2163
NOAA-NMFS-2020-0031-DRAFT-2164
NOAA-NMFS-2020-0031-DRAFT-2165
NOAA-NMFS-2020-0031-DRAFT-2166
NOAA-NMFS-2020-0031-DRAFT-2167
NOAA-NMFS-2020-0031-DRAFT-2168
NOAA-NMFS-2020-0031-DRAFT-2169
NOAA-NMFS-2020-0031-DRAFT-2170
NOAA-NMFS-2020-0031-DRAFT-2171
NOAA-NMFS-2020-0031-DRAFT-2172
NOAA-NMFS-2020-0031-DRAFT-2173
NOAA-NMFS-2020-0031-DRAFT-2174
NOAA-NMFS-2020-0031-DRAFT-2175
NOAA-NMFS-2020-0031-DRAFT-2176
NOAA-NMFS-2020-0031-DRAFT-2177
NOAA-NMFS-2020-0031-DRAFT-2178
NOAA-NMFS-2020-0031-DRAFT-2179
NOAA-NMFS-2020-0031-DRAFT-2180
NOAA-NMFS-2020-0031-DRAFT-2181
NOAA-NMFS-2020-0031-DRAFT-2182
NOAA-NMFS-2020-0031-DRAFT-2183
NOAA-NMFS-2020-0031-DRAFT-2184
NOAA-NMFS-2020-0031-DRAFT-2185
NOAA-NMFS-2020-0031-DRAFT-2186
NOAA-NMFS-2020-0031-DRAFT-2187
NOAA-NMFS-2020-0031-DRAFT-2188
NOAA-NMFS-2020-0031-DRAFT-2189
NOAA-NMFS-2020-0031-DRAFT-2190

Comment from SUSAN GALANTE
Comment from Becky Calhoun
Comment from Edward Wardwell
Comment from Steven Barlow
Comment from John Kosiorek
Comment from Patricia Baker
Comment from Gary Cantara
Comment from Kathleen Lee
Comment from Bob Rankin
Comment from Paul Pfau
Comment from Linda Williams
Comment from Kim Beeler
Comment from Kathleen Fullerton
Comment from Peter Hennessy
Comment from Bonnie MacRaith
Comment from Barbara Glassheim
Comment from David Ross
Comment from Rae Furcha
Comment from Romula Navarro
Comment from James McBride
Comment from Rumeysa Kusdogan
Comment from Kristine Riccardi
Comment from William Barnes
Comment from Eithne Clarke
Comment from Pamela Miller
Comment from Gary Green
Comment from Juanita Hull
Comment from Dave Roehm
Comment from Lucy Wu
Comment from Hilary Simonetti
Comment from Perry Matlock
Comment from Sarah Ralph
Comment from Debora Michel
Comment from Carol Collins
Comment from Lindsay Mugglestone
Comment from April Schmitt
Comment from Josh Schafer
Comment from Stephanie Aguilar
Comment from Margery Barlow
Comment from Wendy childress
Comment from Heidi Klee

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7314
NOAA-NMFS-2020-0031-DRAFT-7315
NOAA-NMFS-2020-0031-DRAFT-7316
NOAA-NMFS-2020-0031-DRAFT-7317
NOAA-NMFS-2020-0031-DRAFT-7318
NOAA-NMFS-2020-0031-DRAFT-7319
NOAA-NMFS-2020-0031-DRAFT-7320
NOAA-NMFS-2020-0031-DRAFT-7321
NOAA-NMFS-2020-0031-DRAFT-7322
NOAA-NMFS-2020-0031-DRAFT-7323
NOAA-NMFS-2020-0031-DRAFT-7324
NOAA-NMFS-2020-0031-DRAFT-7325
NOAA-NMFS-2020-0031-DRAFT-7327
NOAA-NMFS-2020-0031-DRAFT-7329
NOAA-NMFS-2020-0031-DRAFT-7330
NOAA-NMFS-2020-0031-DRAFT-7331
NOAA-NMFS-2020-0031-DRAFT-7333
NOAA-NMFS-2020-0031-DRAFT-7334
NOAA-NMFS-2020-0031-DRAFT-7335
NOAA-NMFS-2020-0031-DRAFT-7337
NOAA-NMFS-2020-0031-DRAFT-7338
NOAA-NMFS-2020-0031-DRAFT-7339
NOAA-NMFS-2020-0031-DRAFT-7340
NOAA-NMFS-2020-0031-DRAFT-7341
NOAA-NMFS-2020-0031-DRAFT-7342
NOAA-NMFS-2020-0031-DRAFT-7343
NOAA-NMFS-2020-0031-DRAFT-7344
NOAA-NMFS-2020-0031-DRAFT-7345
NOAA-NMFS-2020-0031-DRAFT-7346
NOAA-NMFS-2020-0031-DRAFT-7347
NOAA-NMFS-2020-0031-DRAFT-7348
NOAA-NMFS-2020-0031-DRAFT-7349
NOAA-NMFS-2020-0031-DRAFT-7350
NOAA-NMFS-2020-0031-DRAFT-7351
NOAA-NMFS-2020-0031-DRAFT-7352
NOAA-NMFS-2020-0031-DRAFT-7354
NOAA-NMFS-2020-0031-DRAFT-7356
NOAA-NMFS-2020-0031-DRAFT-7357
NOAA-NMFS-2020-0031-DRAFT-7358
NOAA-NMFS-2020-0031-DRAFT-7359
NOAA-NMFS-2020-0031-DRAFT-7360

Comment from Nancy Smith
Comment from Steven Sugarman
Comment from Dianne Douglas
Comment from Suzanne Leichtling
Comment from John Squire
Comment from Maria Schultz
Comment from Julie Sanford
Comment from Michelle Palladine
Comment from Pamela Guyon
Comment from Tylar-Ann Bender
Comment from Julie Henry
Comment from A. Todd
Comment from Cameron McElroy
Comment from Jack Hough
Comment from Bonnie Horeski
Comment from Jared Brenner
Comment from Barbara Ramirez
Comment from Richard Baker
Comment from Catherine Beauchamp
Comment from Tajeer Robinson
Comment from Rickey Buttery
Comment from Taffy Williams
Comment from Rick Brown
Comment from Candace Park
Comment from Gabrielle Gaffney
Comment from Robert Schicker
Comment from Michal Lynch
Comment from Karen Kravcov Malcolm
Comment from Brian Gingras
Comment from Lisa Chicoine
Comment from Jennifer Valentine
Comment from Bobbi Lempert
Comment from Valerie Frederick
Comment from Laura Blanchette
Comment from Rochelle Mons-Larson
Comment from Kelley Price
Comment from Ken Gibb
Comment from Holly Marczak
Comment from Wilfred Robin
Comment from Anna Drummond
Comment from Olga Abella

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2191
NOAA-NMFS-2020-0031-DRAFT-2192
NOAA-NMFS-2020-0031-DRAFT-2193
NOAA-NMFS-2020-0031-DRAFT-2194
NOAA-NMFS-2020-0031-DRAFT-2195
NOAA-NMFS-2020-0031-DRAFT-2196
NOAA-NMFS-2020-0031-DRAFT-2197
NOAA-NMFS-2020-0031-DRAFT-2198
NOAA-NMFS-2020-0031-DRAFT-2199
NOAA-NMFS-2020-0031-DRAFT-2200
NOAA-NMFS-2020-0031-DRAFT-2201
NOAA-NMFS-2020-0031-DRAFT-2202
NOAA-NMFS-2020-0031-DRAFT-2203
NOAA-NMFS-2020-0031-DRAFT-2204
NOAA-NMFS-2020-0031-DRAFT-2205
NOAA-NMFS-2020-0031-DRAFT-2206
NOAA-NMFS-2020-0031-DRAFT-2207
NOAA-NMFS-2020-0031-DRAFT-2208
NOAA-NMFS-2020-0031-DRAFT-2209
NOAA-NMFS-2020-0031-DRAFT-2210
NOAA-NMFS-2020-0031-DRAFT-2211
NOAA-NMFS-2020-0031-DRAFT-2212
NOAA-NMFS-2020-0031-DRAFT-2213
NOAA-NMFS-2020-0031-DRAFT-2214
NOAA-NMFS-2020-0031-DRAFT-2215
NOAA-NMFS-2020-0031-DRAFT-2216
NOAA-NMFS-2020-0031-DRAFT-2217
NOAA-NMFS-2020-0031-DRAFT-2218
NOAA-NMFS-2020-0031-DRAFT-2219
NOAA-NMFS-2020-0031-DRAFT-2220
NOAA-NMFS-2020-0031-DRAFT-2221
NOAA-NMFS-2020-0031-DRAFT-2222
NOAA-NMFS-2020-0031-DRAFT-2223
NOAA-NMFS-2020-0031-DRAFT-2224
NOAA-NMFS-2020-0031-DRAFT-2225
NOAA-NMFS-2020-0031-DRAFT-2226
NOAA-NMFS-2020-0031-DRAFT-2227
NOAA-NMFS-2020-0031-DRAFT-2228
NOAA-NMFS-2020-0031-DRAFT-2229
NOAA-NMFS-2020-0031-DRAFT-2230
NOAA-NMFS-2020-0031-DRAFT-2231

Comment from Bonnie New
Comment from Melvin Hughes
Comment from Jeffrey Fernandez
Comment from Nina Berry
Comment from Gretchen Dickson
Comment from thomas lux
Comment from Jeffery McConaughy
Comment from Christopher Michaels
Comment from Kathleen Wong
Comment from Randyl Rupar
Comment from Brian Dunn
Comment from Valerie Holland
Comment from Peter Smith
Comment from Connie Rogers
Comment from Christopher Sechow
Comment from Nick Byrne
Comment from Frances Heath
Comment from Robert Meyer
Comment from John Sonin
Comment from Tara Spires
Comment from Shirley Midyette
Comment from Mary Sims
Comment from Christie Vaughn
Comment from Susan Wechsler
Comment from James Moran
Comment from Rosalie McMenamin
Comment from robert manchester
Comment from Sally Maish
Comment from Jason Gibson
Comment from Robert Applebaum
Comment from Marci Cochran
Comment from Christopher Michaels
Comment from Pepper Gamroth
Comment from Miranda Young
Comment from Bert Lustig
Comment from Carolyn Yee
Comment from LISA O'RRELL
Comment from James Bullock
Comment from Eileen Donnelly
Comment from Max Parron
Comment from Regan Ebert

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
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02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7361
NOAA-NMFS-2020-0031-DRAFT-7363
NOAA-NMFS-2020-0031-DRAFT-7364
NOAA-NMFS-2020-0031-DRAFT-7365
NOAA-NMFS-2020-0031-DRAFT-7366
NOAA-NMFS-2020-0031-DRAFT-7367
NOAA-NMFS-2020-0031-DRAFT-7368
NOAA-NMFS-2020-0031-DRAFT-7369
NOAA-NMFS-2020-0031-DRAFT-7372
NOAA-NMFS-2020-0031-DRAFT-7373
NOAA-NMFS-2020-0031-DRAFT-7376
NOAA-NMFS-2020-0031-DRAFT-7377
NOAA-NMFS-2020-0031-DRAFT-7378
NOAA-NMFS-2020-0031-DRAFT-7379
NOAA-NMFS-2020-0031-DRAFT-7380
NOAA-NMFS-2020-0031-DRAFT-7382
NOAA-NMFS-2020-0031-DRAFT-7383
NOAA-NMFS-2020-0031-DRAFT-7384
NOAA-NMFS-2020-0031-DRAFT-7385
NOAA-NMFS-2020-0031-DRAFT-7386
NOAA-NMFS-2020-0031-DRAFT-7387
NOAA-NMFS-2020-0031-DRAFT-7388
NOAA-NMFS-2020-0031-DRAFT-7389
NOAA-NMFS-2020-0031-DRAFT-7390
NOAA-NMFS-2020-0031-DRAFT-7391
NOAA-NMFS-2020-0031-DRAFT-7392
NOAA-NMFS-2020-0031-DRAFT-7393
NOAA-NMFS-2020-0031-DRAFT-7394
NOAA-NMFS-2020-0031-DRAFT-7395
NOAA-NMFS-2020-0031-DRAFT-7396
NOAA-NMFS-2020-0031-DRAFT-7397
NOAA-NMFS-2020-0031-DRAFT-7398
NOAA-NMFS-2020-0031-DRAFT-7399
NOAA-NMFS-2020-0031-DRAFT-7400
NOAA-NMFS-2020-0031-DRAFT-7401
NOAA-NMFS-2020-0031-DRAFT-7402
NOAA-NMFS-2020-0031-DRAFT-7403
NOAA-NMFS-2020-0031-DRAFT-7404
NOAA-NMFS-2020-0031-DRAFT-7405
NOAA-NMFS-2020-0031-DRAFT-7406
NOAA-NMFS-2020-0031-DRAFT-7407

Comment from Anne Kobayashi
Comment from Gina LoBiondo
Comment from Gail Sikorski
Comment from Patty Shuttleworth
Comment from Rebecca McDonough
Comment from Heidi Erdmann
Comment from Carol Hayes
Comment from Jacob Raitt
Comment from Pamela Forshay
Comment from Chris Grill
Comment from John Jacobs
Comment from Mary Lightner
Comment from JOHN DEFOREST
Comment from Teresa Morris
Comment from Page Williams
Comment from Chris Davenport
Comment from Peter Wood
Comment from Emily Scrivener
Comment from Leslie irving
Comment from Antonia Pavlovich
Comment from Jan Hansen
Comment from Maria Lorek
Comment from Jackie Tryggeseth
Comment from Celeste Watt
Comment from Michael J Kunkel
Comment from Kim Brightman
Comment from Susan Goldin
Comment from Ilya Speranza
Comment from Nina Garvey
Comment from Fay Payton
Comment from Mary Venos
Comment from Steve Overton
Comment from Jaromir Guzinski
Comment from Anonymous Anonymous
Comment from Pam Nelson
Comment from Callie Riley
Comment from Nancy Nachman
Comment from mark glasser
Comment from Rebecca Holzer
Comment from Robin Bradley
Comment from Debra Rehn

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2232
NOAA-NMFS-2020-0031-DRAFT-2233
NOAA-NMFS-2020-0031-DRAFT-2234
NOAA-NMFS-2020-0031-DRAFT-2235
NOAA-NMFS-2020-0031-DRAFT-2236
NOAA-NMFS-2020-0031-DRAFT-2237
NOAA-NMFS-2020-0031-DRAFT-2238
NOAA-NMFS-2020-0031-DRAFT-2239
NOAA-NMFS-2020-0031-DRAFT-2240
NOAA-NMFS-2020-0031-DRAFT-2241
NOAA-NMFS-2020-0031-DRAFT-2242
NOAA-NMFS-2020-0031-DRAFT-2243
NOAA-NMFS-2020-0031-DRAFT-2244
NOAA-NMFS-2020-0031-DRAFT-2245
NOAA-NMFS-2020-0031-DRAFT-2246
NOAA-NMFS-2020-0031-DRAFT-2247
NOAA-NMFS-2020-0031-DRAFT-2248
NOAA-NMFS-2020-0031-DRAFT-2249
NOAA-NMFS-2020-0031-DRAFT-2250
NOAA-NMFS-2020-0031-DRAFT-2251
NOAA-NMFS-2020-0031-DRAFT-2252
NOAA-NMFS-2020-0031-DRAFT-2253
NOAA-NMFS-2020-0031-DRAFT-2254
NOAA-NMFS-2020-0031-DRAFT-2255
NOAA-NMFS-2020-0031-DRAFT-2256
NOAA-NMFS-2020-0031-DRAFT-2257
NOAA-NMFS-2020-0031-DRAFT-2258
NOAA-NMFS-2020-0031-DRAFT-2259
NOAA-NMFS-2020-0031-DRAFT-2260
NOAA-NMFS-2020-0031-DRAFT-2261
NOAA-NMFS-2020-0031-DRAFT-2262
NOAA-NMFS-2020-0031-DRAFT-2263
NOAA-NMFS-2020-0031-DRAFT-2264
NOAA-NMFS-2020-0031-DRAFT-2265
NOAA-NMFS-2020-0031-DRAFT-2266
NOAA-NMFS-2020-0031-DRAFT-2267
NOAA-NMFS-2020-0031-DRAFT-2268
NOAA-NMFS-2020-0031-DRAFT-2269
NOAA-NMFS-2020-0031-DRAFT-2270
NOAA-NMFS-2020-0031-DRAFT-2271
NOAA-NMFS-2020-0031-DRAFT-2272

Comment from Deborah Gandolfo
Comment from Meredith Kent-Berman
Comment from Myra Dewhurst
Comment from Abigail Rome
Comment from Alan Canfield
Comment from D. Deloff
Comment from Nolen Scott
Comment from Thomas Humphrey
Comment from Lisa Isley
Comment from Lori Nell
Comment from Helene Whitson
Comment from ANDREW HOFFMAN
Comment from Karen Powers
Comment from Deb Giannetti
Comment from Cynthia Walton
Comment from Margaret Tyska
Comment from NORA MANCHESTER
Comment from Deja Morlan
Comment from Jonathan Hancock
Comment from Ben Basin
Comment from Cathy McDow
Comment from James Walker
Comment from Matthew Meier
Comment from Linda Addis
Comment from Tami Phelps
Comment from Elizabeth smith
Comment from Carol Long
Comment from Jill Hein
Comment from Michael Henderson
Comment from Tania Roa
Comment from AA Lloyd
Comment from Eric Edwards
Comment from Dawn-Marie Staccia
Comment from Deidra Smith
Comment from s klof
Comment from Mary Baier
Comment from Sylvia Lewis-Gunning
Comment from Janet Draper
Comment from Pamela Finnegan
Comment from Michelle Benes
Comment from Deborah Fobes

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7408
NOAA-NMFS-2020-0031-DRAFT-7409
NOAA-NMFS-2020-0031-DRAFT-7410
NOAA-NMFS-2020-0031-DRAFT-7411
NOAA-NMFS-2020-0031-DRAFT-7412
NOAA-NMFS-2020-0031-DRAFT-7413
NOAA-NMFS-2020-0031-DRAFT-7414
NOAA-NMFS-2020-0031-DRAFT-7415
NOAA-NMFS-2020-0031-DRAFT-7416
NOAA-NMFS-2020-0031-DRAFT-7417
NOAA-NMFS-2020-0031-DRAFT-7419
NOAA-NMFS-2020-0031-DRAFT-7420
NOAA-NMFS-2020-0031-DRAFT-7421
NOAA-NMFS-2020-0031-DRAFT-7422
NOAA-NMFS-2020-0031-DRAFT-7423
NOAA-NMFS-2020-0031-DRAFT-7424
NOAA-NMFS-2020-0031-DRAFT-7425
NOAA-NMFS-2020-0031-DRAFT-7426
NOAA-NMFS-2020-0031-DRAFT-7427
NOAA-NMFS-2020-0031-DRAFT-7428
NOAA-NMFS-2020-0031-DRAFT-7429
NOAA-NMFS-2020-0031-DRAFT-7430
NOAA-NMFS-2020-0031-DRAFT-7431
NOAA-NMFS-2020-0031-DRAFT-7432
NOAA-NMFS-2020-0031-DRAFT-7433
NOAA-NMFS-2020-0031-DRAFT-7434
NOAA-NMFS-2020-0031-DRAFT-7435
NOAA-NMFS-2020-0031-DRAFT-7436
NOAA-NMFS-2020-0031-DRAFT-7437
NOAA-NMFS-2020-0031-DRAFT-7438
NOAA-NMFS-2020-0031-DRAFT-7439
NOAA-NMFS-2020-0031-DRAFT-7440
NOAA-NMFS-2020-0031-DRAFT-7441
NOAA-NMFS-2020-0031-DRAFT-7442
NOAA-NMFS-2020-0031-DRAFT-7443
NOAA-NMFS-2020-0031-DRAFT-7444
NOAA-NMFS-2020-0031-DRAFT-7445
NOAA-NMFS-2020-0031-DRAFT-7446
NOAA-NMFS-2020-0031-DRAFT-7447
NOAA-NMFS-2020-0031-DRAFT-7448
NOAA-NMFS-2020-0031-DRAFT-7449

Comment from Nicole Shaffer
Comment from Daniel Taroli
Comment from Daniel Taroli
Comment from steve lucas
Comment from wendy weiner
Comment from Tanja Rieger
Comment from pamela VITALE
Comment from Rob Seltzer
Comment from Jacqueline Eckert
Comment from Judith Gottesman
Comment from Elizabeth Jacobowitz
Comment from Debbie Collins
Comment from Linda Loving
Comment from Christine Costello
Comment from David de la Mora
Comment from David R Wilcox
Comment from Paola De Fanis
Comment from Patricia Radder
Comment from Elena De Fanis
Comment from Terry Vaccaro
Comment from Stewart Cooper
Comment from Chris Martin
Comment from Mary Simmons
Comment from gloria decker
Comment from Renee Haines
Comment from Kristen Allbritton
Comment from Maryann Barulich
Comment from Kari Percival
Comment from Brigitte Smith
Comment from Sandy Dalcais
Comment from Ewa Gio
Comment from Marcey Lachance
Comment from Jennifer Kelly
Comment from Joan Lipp
Comment from Reece Johnson
Comment from Kathie Hegert
Comment from Kerri McGoldrick
Comment from Wally Baldwin
Comment from Tammy Hollifield
Comment from Holly Langer
Comment from Holly Cook

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2273
NOAA-NMFS-2020-0031-DRAFT-2274
NOAA-NMFS-2020-0031-DRAFT-2275
NOAA-NMFS-2020-0031-DRAFT-2276
NOAA-NMFS-2020-0031-DRAFT-2277
NOAA-NMFS-2020-0031-DRAFT-2278
NOAA-NMFS-2020-0031-DRAFT-2279
NOAA-NMFS-2020-0031-DRAFT-2280
NOAA-NMFS-2020-0031-DRAFT-2281
NOAA-NMFS-2020-0031-DRAFT-2282
NOAA-NMFS-2020-0031-DRAFT-2283
NOAA-NMFS-2020-0031-DRAFT-2284
NOAA-NMFS-2020-0031-DRAFT-2285
NOAA-NMFS-2020-0031-DRAFT-2286
NOAA-NMFS-2020-0031-DRAFT-2287
NOAA-NMFS-2020-0031-DRAFT-2288
NOAA-NMFS-2020-0031-DRAFT-2289
NOAA-NMFS-2020-0031-DRAFT-2290
NOAA-NMFS-2020-0031-DRAFT-2291
NOAA-NMFS-2020-0031-DRAFT-2292
NOAA-NMFS-2020-0031-DRAFT-2293
NOAA-NMFS-2020-0031-DRAFT-2294
NOAA-NMFS-2020-0031-DRAFT-2295
NOAA-NMFS-2020-0031-DRAFT-2296
NOAA-NMFS-2020-0031-DRAFT-2297
NOAA-NMFS-2020-0031-DRAFT-2298
NOAA-NMFS-2020-0031-DRAFT-2299
NOAA-NMFS-2020-0031-DRAFT-2300
NOAA-NMFS-2020-0031-DRAFT-2301
NOAA-NMFS-2020-0031-DRAFT-2302
NOAA-NMFS-2020-0031-DRAFT-2303
NOAA-NMFS-2020-0031-DRAFT-2304
NOAA-NMFS-2020-0031-DRAFT-2305
NOAA-NMFS-2020-0031-DRAFT-2306
NOAA-NMFS-2020-0031-DRAFT-2307
NOAA-NMFS-2020-0031-DRAFT-2308
NOAA-NMFS-2020-0031-DRAFT-2309
NOAA-NMFS-2020-0031-DRAFT-2310
NOAA-NMFS-2020-0031-DRAFT-2311
NOAA-NMFS-2020-0031-DRAFT-2312
NOAA-NMFS-2020-0031-DRAFT-2313

Comment from Leon Cheong
Comment from Susan Berzac
Comment from Francine Traniello
Comment from Diana Boom
Comment from Diann Rose
Comment from Nicole Durden-Mundy
Comment from Dennis Heinzig
Comment from Michele Anthony
Comment from Gary Gover
Comment from Jordan Longever
Comment from Michael Weaver
Comment from Joseph Cota
Comment from Renee Estelle
Comment from Mark Redmond
Comment from Lois Hoot
Comment from Norbert Mietus
Comment from Llll d
Comment from jeremy fryberger
Comment from Thomas Talbot
Comment from Joan Bonnington
Comment from Jason LaBerge
Comment from Linda Bridges
Comment from Jeff Freels
Comment from Karen Baka
Comment from Larry Karns
Comment from Mary Baker
Comment from Rikki Eriksen
Comment from Ramsay Kieffer
Comment from Norda Gromoll
Comment from Scott Kennedy
Comment from Lenore Humphrey
Comment from Christina Viljoen
Comment from Matthew Gray
Comment from Michelle Rice
Comment from Steven Iszauk
Comment from James Hadcroft
Comment from Marie Young
Comment from Donald Rosenberger
Comment from Nancy Hendrickson
Comment from Marian Cooley
Comment from Emery Goff

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7450
NOAA-NMFS-2020-0031-DRAFT-7451
NOAA-NMFS-2020-0031-DRAFT-7452
NOAA-NMFS-2020-0031-DRAFT-7454
NOAA-NMFS-2020-0031-DRAFT-7455
NOAA-NMFS-2020-0031-DRAFT-7457
NOAA-NMFS-2020-0031-DRAFT-7458
NOAA-NMFS-2020-0031-DRAFT-7459
NOAA-NMFS-2020-0031-DRAFT-7460
NOAA-NMFS-2020-0031-DRAFT-7461
NOAA-NMFS-2020-0031-DRAFT-7462
NOAA-NMFS-2020-0031-DRAFT-7463
NOAA-NMFS-2020-0031-DRAFT-7464
NOAA-NMFS-2020-0031-DRAFT-7465
NOAA-NMFS-2020-0031-DRAFT-7466
NOAA-NMFS-2020-0031-DRAFT-7467
NOAA-NMFS-2020-0031-DRAFT-7468
NOAA-NMFS-2020-0031-DRAFT-7469
NOAA-NMFS-2020-0031-DRAFT-7470
NOAA-NMFS-2020-0031-DRAFT-7471
NOAA-NMFS-2020-0031-DRAFT-7472
NOAA-NMFS-2020-0031-DRAFT-7473
NOAA-NMFS-2020-0031-DRAFT-7474
NOAA-NMFS-2020-0031-DRAFT-7475
NOAA-NMFS-2020-0031-DRAFT-7476
NOAA-NMFS-2020-0031-DRAFT-7477
NOAA-NMFS-2020-0031-DRAFT-7478
NOAA-NMFS-2020-0031-DRAFT-7479
NOAA-NMFS-2020-0031-DRAFT-7480
NOAA-NMFS-2020-0031-DRAFT-7481
NOAA-NMFS-2020-0031-DRAFT-7482
NOAA-NMFS-2020-0031-DRAFT-7483
NOAA-NMFS-2020-0031-DRAFT-7484
NOAA-NMFS-2020-0031-DRAFT-7485
NOAA-NMFS-2020-0031-DRAFT-7486
NOAA-NMFS-2020-0031-DRAFT-7487
NOAA-NMFS-2020-0031-DRAFT-7488
NOAA-NMFS-2020-0031-DRAFT-7489
NOAA-NMFS-2020-0031-DRAFT-7490
NOAA-NMFS-2020-0031-DRAFT-7491
NOAA-NMFS-2020-0031-DRAFT-7492

Comment from Waver Broers
Comment from Jaedra Luke
Comment from Donata Maluzenska
Comment from Beverly Nowling
Comment from Laura Walker
Comment from Ann Malyon
Comment from Joan Shapiro
Comment from Sue Hall
Comment from JEAN Katsaros
Comment from Lowell Harrison
Comment from Lisa Deckert
Comment from Dorothy Perry
Comment from Marie Val
Comment from Betty Mosley
Comment from Debbie Lapierre
Comment from Monina Martini
Comment from Alene Graham
Comment from Janet Neihart
Comment from Rosalind Andrews
Comment from Teresia LaFleur
Comment from Kelly Reymers
Comment from Fran Crilley
Comment from Christine Chaplik
Comment from O Lewis
Comment from Carolyn Black
Comment from MARINA ARDOVINO
Comment from Ruliffson Mary
Comment from Lenore Nieters
Comment from Albert Koehler
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Terry Pitt
Comment from Michelle Hayward
Comment from Glen Anderson
Comment from Mary Oconnell

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2314
NOAA-NMFS-2020-0031-DRAFT-2315
NOAA-NMFS-2020-0031-DRAFT-2316
NOAA-NMFS-2020-0031-DRAFT-2317
NOAA-NMFS-2020-0031-DRAFT-2318
NOAA-NMFS-2020-0031-DRAFT-2319
NOAA-NMFS-2020-0031-DRAFT-2320
NOAA-NMFS-2020-0031-DRAFT-2321
NOAA-NMFS-2020-0031-DRAFT-2322
NOAA-NMFS-2020-0031-DRAFT-2323
NOAA-NMFS-2020-0031-DRAFT-2324
NOAA-NMFS-2020-0031-DRAFT-2325
NOAA-NMFS-2020-0031-DRAFT-2326
NOAA-NMFS-2020-0031-DRAFT-2327
NOAA-NMFS-2020-0031-DRAFT-2328
NOAA-NMFS-2020-0031-DRAFT-2329
NOAA-NMFS-2020-0031-DRAFT-2330
NOAA-NMFS-2020-0031-DRAFT-2331
NOAA-NMFS-2020-0031-DRAFT-2332
NOAA-NMFS-2020-0031-DRAFT-2333
NOAA-NMFS-2020-0031-DRAFT-2334
NOAA-NMFS-2020-0031-DRAFT-2335
NOAA-NMFS-2020-0031-DRAFT-2336
NOAA-NMFS-2020-0031-DRAFT-2337
NOAA-NMFS-2020-0031-DRAFT-2338
NOAA-NMFS-2020-0031-DRAFT-2339
NOAA-NMFS-2020-0031-DRAFT-2340
NOAA-NMFS-2020-0031-DRAFT-2341
NOAA-NMFS-2020-0031-DRAFT-2342
NOAA-NMFS-2020-0031-DRAFT-2343
NOAA-NMFS-2020-0031-DRAFT-2344
NOAA-NMFS-2020-0031-DRAFT-2345
NOAA-NMFS-2020-0031-DRAFT-2346
NOAA-NMFS-2020-0031-DRAFT-2347
NOAA-NMFS-2020-0031-DRAFT-2348
NOAA-NMFS-2020-0031-DRAFT-2349
NOAA-NMFS-2020-0031-DRAFT-2350
NOAA-NMFS-2020-0031-DRAFT-2351
NOAA-NMFS-2020-0031-DRAFT-2352
NOAA-NMFS-2020-0031-DRAFT-2353
NOAA-NMFS-2020-0031-DRAFT-2354

Comment from Mary Ramirez
Comment from Paul Ward
Comment from Susan Siniard
Comment from Mina Bish
Comment from Myrna Torrie
Comment from AnnaLea Elliott
Comment from Ali Van Zee
Comment from Pam Doran
Comment from Gary Moore
Comment from Kathleen Bates
Comment from Stuart Weiss
Comment from Tony Wise
Comment from Karla Devine
Comment from Lori Moog
Comment from Shea Nace
Comment from Angie Mackey
Comment from michael page
Comment from Laura Silverman
Comment from Tyler Miranda
Comment from juli van brown
Comment from andrew kaplan
Comment from Amelia Linder
Comment from Dennis Toll
Comment from Samuel Aley
Comment from Pam koller
Comment from Corinne Monk
Comment from Thomas Kuspiel
Comment from Jamie Shultz
Comment from David Smith
Comment from Sgt. Palloc
Comment from Brian Scott
Comment from Cheryl Scher
Comment from Cynthia Slomin
Comment from Barbara Mintz
Comment from Joan Sitomer
Comment from Catherine Williams
Comment from Kenneth Fisher
Comment from Georgia Shankel
Comment from Mr Racine
Comment from Meg Brown
Comment from Judith Melvin

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7493
NOAA-NMFS-2020-0031-DRAFT-7494
NOAA-NMFS-2020-0031-DRAFT-7495
NOAA-NMFS-2020-0031-DRAFT-7497
NOAA-NMFS-2020-0031-DRAFT-7498
NOAA-NMFS-2020-0031-DRAFT-7499
NOAA-NMFS-2020-0031-DRAFT-7500
NOAA-NMFS-2020-0031-DRAFT-7501
NOAA-NMFS-2020-0031-DRAFT-7502
NOAA-NMFS-2020-0031-DRAFT-7503
NOAA-NMFS-2020-0031-DRAFT-7504
NOAA-NMFS-2020-0031-DRAFT-7505
NOAA-NMFS-2020-0031-DRAFT-7506
NOAA-NMFS-2020-0031-DRAFT-7507
NOAA-NMFS-2020-0031-DRAFT-7508
NOAA-NMFS-2020-0031-DRAFT-7509
NOAA-NMFS-2020-0031-DRAFT-7510
NOAA-NMFS-2020-0031-DRAFT-7511
NOAA-NMFS-2020-0031-DRAFT-7512
NOAA-NMFS-2020-0031-DRAFT-7513
NOAA-NMFS-2020-0031-DRAFT-7514
NOAA-NMFS-2020-0031-DRAFT-7515
NOAA-NMFS-2020-0031-DRAFT-7516
NOAA-NMFS-2020-0031-DRAFT-7517
NOAA-NMFS-2020-0031-DRAFT-7518
NOAA-NMFS-2020-0031-DRAFT-7519
NOAA-NMFS-2020-0031-DRAFT-7520
NOAA-NMFS-2020-0031-DRAFT-7521
NOAA-NMFS-2020-0031-DRAFT-7522
NOAA-NMFS-2020-0031-DRAFT-7523
NOAA-NMFS-2020-0031-DRAFT-7524
NOAA-NMFS-2020-0031-DRAFT-7525
NOAA-NMFS-2020-0031-DRAFT-7526
NOAA-NMFS-2020-0031-DRAFT-7527
NOAA-NMFS-2020-0031-DRAFT-7528
NOAA-NMFS-2020-0031-DRAFT-7529
NOAA-NMFS-2020-0031-DRAFT-7530
NOAA-NMFS-2020-0031-DRAFT-7532
NOAA-NMFS-2020-0031-DRAFT-7533
NOAA-NMFS-2020-0031-DRAFT-7534
NOAA-NMFS-2020-0031-DRAFT-7535

Comment from David Laramie
Comment from Simone Williams
Comment from Elaine Beal
Comment from Cathy Reid
Comment from Susan Cerniglia
Comment from Paul and Katherine
Malchiodi
Comment from Lisa Hughes
Comment from DEVIN McCORMICK
Comment from Regina Marone
Comment from Judy Schmidtke
Comment from Patricia Towers
Comment from Nina Monasevitch
Comment from MUHAMMAD ZIKRIN B.
ZAIDI
Comment from Doug Helliesen
Comment from Sandra Rodriguez
Comment from Michael Dover
Comment from Xiomara Aguabella
Comment from Sherry Watkins
Comment from Lisa Knapp
Comment from Sarah Tackett
Comment from Kirk Keel
Comment from Becky Nordlum
Comment from Diane Summerville
Comment from Matt Brzezinski
Comment from Maureen Porcelli
Comment from Diane Gangemi
Comment from Terry Pitt
Comment from R. Miles Mendenhall
Comment from Sandra Girouard
Comment from Leslie Cullis
Comment from Maureen Mooney
Comment from Elizabeth Kramer
Comment from Ray Rodney
Comment from Michelle Hagan
Comment from Jen Kopack
Comment from Pat Bryan
Comment from Staci Sherwood
Comment from Sarah Provost
Comment from Carolyn Taylor
Comment from Katie Clifford
Comment from Leslie Kriebel

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2355
NOAA-NMFS-2020-0031-DRAFT-2356
NOAA-NMFS-2020-0031-DRAFT-2357
NOAA-NMFS-2020-0031-DRAFT-2358
NOAA-NMFS-2020-0031-DRAFT-2359
NOAA-NMFS-2020-0031-DRAFT-2360
NOAA-NMFS-2020-0031-DRAFT-2361
NOAA-NMFS-2020-0031-DRAFT-2362
NOAA-NMFS-2020-0031-DRAFT-2363
NOAA-NMFS-2020-0031-DRAFT-2364
NOAA-NMFS-2020-0031-DRAFT-2365
NOAA-NMFS-2020-0031-DRAFT-2366
NOAA-NMFS-2020-0031-DRAFT-2367
NOAA-NMFS-2020-0031-DRAFT-2368
NOAA-NMFS-2020-0031-DRAFT-2369
NOAA-NMFS-2020-0031-DRAFT-2370
NOAA-NMFS-2020-0031-DRAFT-2371
NOAA-NMFS-2020-0031-DRAFT-2372
NOAA-NMFS-2020-0031-DRAFT-2373
NOAA-NMFS-2020-0031-DRAFT-2374
NOAA-NMFS-2020-0031-DRAFT-2375
NOAA-NMFS-2020-0031-DRAFT-2376
NOAA-NMFS-2020-0031-DRAFT-2377
NOAA-NMFS-2020-0031-DRAFT-2378
NOAA-NMFS-2020-0031-DRAFT-2379
NOAA-NMFS-2020-0031-DRAFT-2380
NOAA-NMFS-2020-0031-DRAFT-2381
NOAA-NMFS-2020-0031-DRAFT-2382
NOAA-NMFS-2020-0031-DRAFT-2383
NOAA-NMFS-2020-0031-DRAFT-2384
NOAA-NMFS-2020-0031-DRAFT-2385
NOAA-NMFS-2020-0031-DRAFT-2386
NOAA-NMFS-2020-0031-DRAFT-2387
NOAA-NMFS-2020-0031-DRAFT-2388
NOAA-NMFS-2020-0031-DRAFT-2389
NOAA-NMFS-2020-0031-DRAFT-2390
NOAA-NMFS-2020-0031-DRAFT-2391
NOAA-NMFS-2020-0031-DRAFT-2392
NOAA-NMFS-2020-0031-DRAFT-2393
NOAA-NMFS-2020-0031-DRAFT-2394
NOAA-NMFS-2020-0031-DRAFT-2395

Comment from Rosemary Lojo
Comment from Kirk Rhoads
Comment from Jon Singleton
Comment from Emily Alpert
Comment from Linda Just
Comment from Donna Hart
Comment from Rhoda Levine
Comment from Donald Williams
Comment from Lisa Deville
Comment from Margaret Newhart
Comment from Hylin White
Comment from John Cairns
Comment from Peter Cutting
Comment from Ruth Steger
Comment from Angela Hayes
Comment from Niki Wise
Comment from Carol Kuelper
Comment from William Roberson
Comment from Bruce Ross
Comment from Danielle Pyevich
Comment from Ruth Driscoll-Lovejoy
Comment from Mina Bish
Comment from T C
Comment from Lynn Gazik
Comment from Lora Leland
Comment from Tobey Thatcher
Comment from Mark Feldman
Comment from James Dawson
Comment from Edye Calderon
Comment from Lynn Costa
Comment from Patricia Gehring
Comment from Steve Prince
Comment from Donna Bender
Comment from Richard Tregidgo
Comment from John Merriman
Comment from Patricia Gehring
Comment from Kathleen Eaton
Comment from Karen Thomas
Comment from Christine Drea
Comment from Marc Silverman
Comment from Marci Robinson

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7536
NOAA-NMFS-2020-0031-DRAFT-7537
NOAA-NMFS-2020-0031-DRAFT-7538
NOAA-NMFS-2020-0031-DRAFT-7539
NOAA-NMFS-2020-0031-DRAFT-7540
NOAA-NMFS-2020-0031-DRAFT-7541
NOAA-NMFS-2020-0031-DRAFT-7542
NOAA-NMFS-2020-0031-DRAFT-7543
NOAA-NMFS-2020-0031-DRAFT-7544
NOAA-NMFS-2020-0031-DRAFT-7545
NOAA-NMFS-2020-0031-DRAFT-7546
NOAA-NMFS-2020-0031-DRAFT-7547
NOAA-NMFS-2020-0031-DRAFT-7548
NOAA-NMFS-2020-0031-DRAFT-7549
NOAA-NMFS-2020-0031-DRAFT-7550
NOAA-NMFS-2020-0031-DRAFT-7551
NOAA-NMFS-2020-0031-DRAFT-7552
NOAA-NMFS-2020-0031-DRAFT-7553
NOAA-NMFS-2020-0031-DRAFT-7555
NOAA-NMFS-2020-0031-DRAFT-7556
NOAA-NMFS-2020-0031-DRAFT-7557
NOAA-NMFS-2020-0031-DRAFT-7558
NOAA-NMFS-2020-0031-DRAFT-7559
NOAA-NMFS-2020-0031-DRAFT-7560
NOAA-NMFS-2020-0031-DRAFT-7561
NOAA-NMFS-2020-0031-DRAFT-7562
NOAA-NMFS-2020-0031-DRAFT-7563
NOAA-NMFS-2020-0031-DRAFT-7564
NOAA-NMFS-2020-0031-DRAFT-7565
NOAA-NMFS-2020-0031-DRAFT-7566
NOAA-NMFS-2020-0031-DRAFT-7568
NOAA-NMFS-2020-0031-DRAFT-7569
NOAA-NMFS-2020-0031-DRAFT-7570
NOAA-NMFS-2020-0031-DRAFT-7571
NOAA-NMFS-2020-0031-DRAFT-7572
NOAA-NMFS-2020-0031-DRAFT-7573
NOAA-NMFS-2020-0031-DRAFT-7574
NOAA-NMFS-2020-0031-DRAFT-7575
NOAA-NMFS-2020-0031-DRAFT-7576
NOAA-NMFS-2020-0031-DRAFT-7578
NOAA-NMFS-2020-0031-DRAFT-7579

Comment from Grace Agnew
Comment from Elisa Townshend
Comment from Erica Johanson
Comment from Phyllis Huang
Comment from Cheryl Fergeson
Comment from Laurie Dalke
Comment from Cindy Berezny
Comment from Mary Irving
Comment from Sheila Daniel
Comment from Sue Amell
Comment from Lisa Klepek
Comment from Wanda Crawford
Comment from Bev Griffiths
Comment from Donald Walden
Comment from Russell Weisz
Comment from Barbara Green
Comment from Ruth Quinones
Comment from Tracy Templin
Comment from Carrie Swank
Comment from Maura Pichette
Comment from Laura Chariton
Comment from John Barger
Comment from Sarika Arora
Comment from Lisa Fink
Comment from claudia roberson
Comment from Judith Spell
Comment from Donna Cox
Comment from Tamara Little
Comment from Kimberly Dwyer
Comment from Mariza Cerff
Comment from Karen Parra
Comment from Elana Auerbach
Comment from Rena Mcvey
Comment from Kelly Milan
Comment from Jillian Fiedor
Comment from Michael Adler
Comment from Diane George
Comment from Marianne Alfano
Comment from Rosamund Downing
Comment from David Seifert
Comment from Phyllis Stowe

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2396
NOAA-NMFS-2020-0031-DRAFT-2397
NOAA-NMFS-2020-0031-DRAFT-2398
NOAA-NMFS-2020-0031-DRAFT-2399
NOAA-NMFS-2020-0031-DRAFT-2400
NOAA-NMFS-2020-0031-DRAFT-2401
NOAA-NMFS-2020-0031-DRAFT-2402
NOAA-NMFS-2020-0031-DRAFT-2403
NOAA-NMFS-2020-0031-DRAFT-2404
NOAA-NMFS-2020-0031-DRAFT-2405
NOAA-NMFS-2020-0031-DRAFT-2406
NOAA-NMFS-2020-0031-DRAFT-2407
NOAA-NMFS-2020-0031-DRAFT-2408
NOAA-NMFS-2020-0031-DRAFT-2409
NOAA-NMFS-2020-0031-DRAFT-2410
NOAA-NMFS-2020-0031-DRAFT-2411
NOAA-NMFS-2020-0031-DRAFT-2412
NOAA-NMFS-2020-0031-DRAFT-2413
NOAA-NMFS-2020-0031-DRAFT-2414
NOAA-NMFS-2020-0031-DRAFT-2415
NOAA-NMFS-2020-0031-DRAFT-2416
NOAA-NMFS-2020-0031-DRAFT-2417
NOAA-NMFS-2020-0031-DRAFT-2418
NOAA-NMFS-2020-0031-DRAFT-2419
NOAA-NMFS-2020-0031-DRAFT-2420
NOAA-NMFS-2020-0031-DRAFT-2421
NOAA-NMFS-2020-0031-DRAFT-2422
NOAA-NMFS-2020-0031-DRAFT-2423
NOAA-NMFS-2020-0031-DRAFT-2424
NOAA-NMFS-2020-0031-DRAFT-2425
NOAA-NMFS-2020-0031-DRAFT-2426
NOAA-NMFS-2020-0031-DRAFT-2427
NOAA-NMFS-2020-0031-DRAFT-2428
NOAA-NMFS-2020-0031-DRAFT-2429
NOAA-NMFS-2020-0031-DRAFT-2430
NOAA-NMFS-2020-0031-DRAFT-2431
NOAA-NMFS-2020-0031-DRAFT-2432
NOAA-NMFS-2020-0031-DRAFT-2433
NOAA-NMFS-2020-0031-DRAFT-2434
NOAA-NMFS-2020-0031-DRAFT-2435
NOAA-NMFS-2020-0031-DRAFT-2436

Comment from Faith Herschler
Comment from Susan Mantee
Comment from Pat Wolff
Comment from Patricia Cole
Comment from Don Swall
Comment from Donna Thelander
Comment from William Grant
Comment from Irina Kurland
Comment from Kelli Gilbert
Comment from Michael Garitty
Comment from Diane Ensign
Comment from Jackie Bocchino
Comment from Frederick Blosser
Comment from ROBERT NERGER
Comment from Craig Kleber
Comment from Brian Florian
Comment from Thomas VanMatre
Comment from Ana Herold
Comment from Gerald Kretmar
Comment from KELLY BARRIOS
Comment from Elisabeth Youngclaus
Comment from Donn Carroll
Comment from Andrelene Babbitt
Comment from Margaret Keene
Comment from Caroline Gakenheimer
Comment from kym harris
Comment from Tara Strand
Comment from Susan Alexander
Comment from Lee Bunyard
Comment from Sandra Thompson
Comment from Benton Elliott
Comment from Dara Errichetti
Comment from Janeene Porcher
Comment from jai parekh
Comment from Maria Morales
Comment from Perry Gx
Comment from Lisa G
Comment from Emily Danielson
Comment from Kelley Price
Comment from Andrew Rowlas
Comment from Pamela Vasquez

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7580
NOAA-NMFS-2020-0031-DRAFT-7581
NOAA-NMFS-2020-0031-DRAFT-7582
NOAA-NMFS-2020-0031-DRAFT-7583
NOAA-NMFS-2020-0031-DRAFT-7584
NOAA-NMFS-2020-0031-DRAFT-7586
NOAA-NMFS-2020-0031-DRAFT-7587
NOAA-NMFS-2020-0031-DRAFT-7588
NOAA-NMFS-2020-0031-DRAFT-7589
NOAA-NMFS-2020-0031-DRAFT-7590
NOAA-NMFS-2020-0031-DRAFT-7591
NOAA-NMFS-2020-0031-DRAFT-7592
NOAA-NMFS-2020-0031-DRAFT-7593
NOAA-NMFS-2020-0031-DRAFT-7594
NOAA-NMFS-2020-0031-DRAFT-7595
NOAA-NMFS-2020-0031-DRAFT-7596
NOAA-NMFS-2020-0031-DRAFT-7597
NOAA-NMFS-2020-0031-DRAFT-7598
NOAA-NMFS-2020-0031-DRAFT-7599
NOAA-NMFS-2020-0031-DRAFT-7600
NOAA-NMFS-2020-0031-DRAFT-7601
NOAA-NMFS-2020-0031-DRAFT-7602
NOAA-NMFS-2020-0031-DRAFT-7603
NOAA-NMFS-2020-0031-DRAFT-7604
NOAA-NMFS-2020-0031-DRAFT-7605
NOAA-NMFS-2020-0031-DRAFT-7606
NOAA-NMFS-2020-0031-DRAFT-7607
NOAA-NMFS-2020-0031-DRAFT-7608
NOAA-NMFS-2020-0031-DRAFT-7609
NOAA-NMFS-2020-0031-DRAFT-7610
NOAA-NMFS-2020-0031-DRAFT-7611
NOAA-NMFS-2020-0031-DRAFT-7612
NOAA-NMFS-2020-0031-DRAFT-7613
NOAA-NMFS-2020-0031-DRAFT-7614
NOAA-NMFS-2020-0031-DRAFT-7615
NOAA-NMFS-2020-0031-DRAFT-7616
NOAA-NMFS-2020-0031-DRAFT-7617
NOAA-NMFS-2020-0031-DRAFT-7618
NOAA-NMFS-2020-0031-DRAFT-7619
NOAA-NMFS-2020-0031-DRAFT-7620
NOAA-NMFS-2020-0031-DRAFT-7621

Comment from Steven Nelson
Comment from Sandy Tabin
Comment from Yvonne Townsley
Comment from Eric Brooker
Comment from Joanne Martinez
Comment from April Chenevert
Comment from Sarah Stewart
Comment from Jenna Fallaw
Comment from Mary Stewart
Comment from Diana Stewart
Comment from Rachel Wolf
Comment from Chris Stewart
Comment from Jean Huffman
Comment from Zachary Butler
Comment from Chris Kiefer
Comment from Lisa Celli
Comment from Adina Parsley
Comment from Mark Stowe
Comment from Gay Goden
Comment from Bernadette Chambers
Comment from Best Painter
Comment from Donna Coutant
Comment from Claire Prevost
Comment from Pat Gibson
Comment from James Fitzgerald
Comment from Paula Brookshire
Comment from Cathy Lazarewicz
Comment from Teresa Variano
Comment from Alida Margolin
Comment from Anthony Mehle
Comment from Hon.+Tiffany Snyder++Ret +CO+Mayor
Comment
from Hon.+Tiffany Snyder++Ret +CO+Mayor
Comment from Melody Barnes
Comment from Graydon Tunstall
Comment from Michele Wojnar
Comment from Susan Allen
Comment from Dominique Matthews
Comment from Carol Pratt
Comment from Karen Slote
Comment from virginia sheheen
Comment from Barbara Schrier

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2437
NOAA-NMFS-2020-0031-DRAFT-2438
NOAA-NMFS-2020-0031-DRAFT-2439
NOAA-NMFS-2020-0031-DRAFT-2440
NOAA-NMFS-2020-0031-DRAFT-2441
NOAA-NMFS-2020-0031-DRAFT-2442
NOAA-NMFS-2020-0031-DRAFT-2443
NOAA-NMFS-2020-0031-DRAFT-2444
NOAA-NMFS-2020-0031-DRAFT-2445
NOAA-NMFS-2020-0031-DRAFT-2446
NOAA-NMFS-2020-0031-DRAFT-2447
NOAA-NMFS-2020-0031-DRAFT-2448
NOAA-NMFS-2020-0031-DRAFT-2449
NOAA-NMFS-2020-0031-DRAFT-2450
NOAA-NMFS-2020-0031-DRAFT-2451
NOAA-NMFS-2020-0031-DRAFT-2452
NOAA-NMFS-2020-0031-DRAFT-2453
NOAA-NMFS-2020-0031-DRAFT-2454
NOAA-NMFS-2020-0031-DRAFT-2455
NOAA-NMFS-2020-0031-DRAFT-2456
NOAA-NMFS-2020-0031-DRAFT-2457
NOAA-NMFS-2020-0031-DRAFT-2458
NOAA-NMFS-2020-0031-DRAFT-2459
NOAA-NMFS-2020-0031-DRAFT-2460
NOAA-NMFS-2020-0031-DRAFT-2461
NOAA-NMFS-2020-0031-DRAFT-2462
NOAA-NMFS-2020-0031-DRAFT-2463
NOAA-NMFS-2020-0031-DRAFT-2464
NOAA-NMFS-2020-0031-DRAFT-2465
NOAA-NMFS-2020-0031-DRAFT-2466
NOAA-NMFS-2020-0031-DRAFT-2467
NOAA-NMFS-2020-0031-DRAFT-2468
NOAA-NMFS-2020-0031-DRAFT-2469
NOAA-NMFS-2020-0031-DRAFT-2470
NOAA-NMFS-2020-0031-DRAFT-2471
NOAA-NMFS-2020-0031-DRAFT-2472
NOAA-NMFS-2020-0031-DRAFT-2473
NOAA-NMFS-2020-0031-DRAFT-2474
NOAA-NMFS-2020-0031-DRAFT-2475
NOAA-NMFS-2020-0031-DRAFT-2476
NOAA-NMFS-2020-0031-DRAFT-2477

Comment from Corinne Case
Comment from Jim Geear
Comment from Melinda Encinas
Comment from Vic DeAngelo
Comment from T Hruska
Comment from John Brown
Comment from Arlene Dreste
Comment from Ed Schmitt
Comment from Tracey Mangus
Comment from Robert Cassinelli
Comment from Rochelle Douglas-Holt
Comment from Deborah Reiter
Comment from Ernesto Marquez
Comment from Theresa Baroni
Comment from James Marsden
Comment from Mary Wood
Comment from Mary Harte
Comment from Dan Perdios
Comment from Vanassa Lundheim
Comment from TRAVIS JENNINGS
Comment from Rebecca Augustin
Comment from Lisa Krausz
Comment from Alfred Mancini
Comment from Andrea Jordan
Comment from brandon gregg
Comment from Colleen Lobel
Comment from Kara Lau
Comment from Glenn Hufnagel
Comment from Pat Parran
Comment from Shannon Milhaupt
Comment from Natalie Blasco
Comment from Joei Fischer
Comment from Nadya Schmeder
Comment from Michael Clarke
Comment from Stephanie Fox
Comment from Rebecca Kimsey
Comment from Carol Stevens
Comment from Anna Simle
Comment from Paula Lozar
Comment from Marilyn Thompson
Comment from Christine Viramontes

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7622
NOAA-NMFS-2020-0031-DRAFT-7623
NOAA-NMFS-2020-0031-DRAFT-7624
NOAA-NMFS-2020-0031-DRAFT-7625
NOAA-NMFS-2020-0031-DRAFT-7626
NOAA-NMFS-2020-0031-DRAFT-7627
NOAA-NMFS-2020-0031-DRAFT-7628
NOAA-NMFS-2020-0031-DRAFT-7629
NOAA-NMFS-2020-0031-DRAFT-7630
NOAA-NMFS-2020-0031-DRAFT-7631
NOAA-NMFS-2020-0031-DRAFT-7632
NOAA-NMFS-2020-0031-DRAFT-7633
NOAA-NMFS-2020-0031-DRAFT-7634
NOAA-NMFS-2020-0031-DRAFT-7635
NOAA-NMFS-2020-0031-DRAFT-7636
NOAA-NMFS-2020-0031-DRAFT-7637
NOAA-NMFS-2020-0031-DRAFT-7638
NOAA-NMFS-2020-0031-DRAFT-7640
NOAA-NMFS-2020-0031-DRAFT-7641
NOAA-NMFS-2020-0031-DRAFT-7642
NOAA-NMFS-2020-0031-DRAFT-7643
NOAA-NMFS-2020-0031-DRAFT-7644
NOAA-NMFS-2020-0031-DRAFT-7645
NOAA-NMFS-2020-0031-DRAFT-7646
NOAA-NMFS-2020-0031-DRAFT-7647
NOAA-NMFS-2020-0031-DRAFT-7648
NOAA-NMFS-2020-0031-DRAFT-7649
NOAA-NMFS-2020-0031-DRAFT-7650
NOAA-NMFS-2020-0031-DRAFT-7651
NOAA-NMFS-2020-0031-DRAFT-7652
NOAA-NMFS-2020-0031-DRAFT-7653
NOAA-NMFS-2020-0031-DRAFT-7654
NOAA-NMFS-2020-0031-DRAFT-7655
NOAA-NMFS-2020-0031-DRAFT-7656
NOAA-NMFS-2020-0031-DRAFT-7657
NOAA-NMFS-2020-0031-DRAFT-7658
NOAA-NMFS-2020-0031-DRAFT-7659
NOAA-NMFS-2020-0031-DRAFT-7660
NOAA-NMFS-2020-0031-DRAFT-7661
NOAA-NMFS-2020-0031-DRAFT-7662
NOAA-NMFS-2020-0031-DRAFT-7663

Comment from Rebekah Laros
Comment from Rhonda Pulliam
Comment from Gary Clontz
Comment from Jennifer Adams
Comment from Diane Leonard
Comment from Nancy Irvine
Comment from Chris Bufano
Comment from James Dawson
Comment from Linda Phelan
Comment from Tara Ducharme
Comment from M n
Comment from Gretchen Witt
Comment from Lora Hamrock
Comment from Liz Davis
Comment from Sophia Vassilakidis
Comment from Elisa Plauche
Comment from Allison Bergeron
Comment from Darlene Marturano
Comment from Saran K.
Comment from Adriana Nunez
Comment from Ron Mittan
Comment from phyllis free
Comment from Patti Barnes
Comment from Michael Braude
Comment from Sally Brainerd
Comment from Grisell Garcia
Comment from Mary More
Comment from Francine Cohen
Comment from Grisell Garcia
Comment from Olga Botcharova
Comment from Leslie Richardson
Comment from Christina Ripoll
Comment from Adam Pastula
Comment from Maria Shepard
Comment from Alison Newcomb
Comment from Barbara Fernandez
Comment from Terry Bulla
Comment from Rosemary Wyman
Comment from Caroline Sweeney
Comment from Anonymous Anonymous
Comment from Gary Goetz

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2478
NOAA-NMFS-2020-0031-DRAFT-2479
NOAA-NMFS-2020-0031-DRAFT-2480
NOAA-NMFS-2020-0031-DRAFT-2481
NOAA-NMFS-2020-0031-DRAFT-2482
NOAA-NMFS-2020-0031-DRAFT-2483
NOAA-NMFS-2020-0031-DRAFT-2484
NOAA-NMFS-2020-0031-DRAFT-2485
NOAA-NMFS-2020-0031-DRAFT-2486
NOAA-NMFS-2020-0031-DRAFT-2487
NOAA-NMFS-2020-0031-DRAFT-2488
NOAA-NMFS-2020-0031-DRAFT-2489
NOAA-NMFS-2020-0031-DRAFT-2490
NOAA-NMFS-2020-0031-DRAFT-2491
NOAA-NMFS-2020-0031-DRAFT-2492
NOAA-NMFS-2020-0031-DRAFT-2493
NOAA-NMFS-2020-0031-DRAFT-2494
NOAA-NMFS-2020-0031-DRAFT-2495
NOAA-NMFS-2020-0031-DRAFT-2496
NOAA-NMFS-2020-0031-DRAFT-2497
NOAA-NMFS-2020-0031-DRAFT-2498
NOAA-NMFS-2020-0031-DRAFT-2499
NOAA-NMFS-2020-0031-DRAFT-2500
NOAA-NMFS-2020-0031-DRAFT-2501
NOAA-NMFS-2020-0031-DRAFT-2502
NOAA-NMFS-2020-0031-DRAFT-2503
NOAA-NMFS-2020-0031-DRAFT-2504
NOAA-NMFS-2020-0031-DRAFT-2505
NOAA-NMFS-2020-0031-DRAFT-2506
NOAA-NMFS-2020-0031-DRAFT-2507
NOAA-NMFS-2020-0031-DRAFT-2508
NOAA-NMFS-2020-0031-DRAFT-2509
NOAA-NMFS-2020-0031-DRAFT-2510
NOAA-NMFS-2020-0031-DRAFT-2511
NOAA-NMFS-2020-0031-DRAFT-2512
NOAA-NMFS-2020-0031-DRAFT-2513
NOAA-NMFS-2020-0031-DRAFT-2514
NOAA-NMFS-2020-0031-DRAFT-2515
NOAA-NMFS-2020-0031-DRAFT-2516
NOAA-NMFS-2020-0031-DRAFT-2517
NOAA-NMFS-2020-0031-DRAFT-2518

Comment from Donald Mackay
Comment from Jane Bidinian
Comment from Danika Bevirt
Comment from Lupe Torre
Comment from Lynne Weiske
Comment from Rayline Dean
Comment from Howard McCoy
Comment from p perron
Comment from Nancy Consolloy
Comment from Omar Siddique
Comment from Taryn Braband
Comment from Arline Fass
Comment from Daphne Lake
Comment from Sean O'Dell
Comment from Jo Feldman
Comment from Carmen Nichols
Comment from Amy Mower
Comment from Patricia Walker
Comment from James Holbrook
Comment from Jones Jan
Comment from Donald Taylor
Comment from Priscilla Newcomer
Comment from Paul Schmalzer
Comment from jeannette gavin
Comment from Devon Benton
Comment from Lisa Lashaway
Comment from Stephen Babb
Comment from Pamela Marshall
Comment from Jennifer Scott
Comment from Thomas Windberg
Comment from Ralph Palmer
Comment from Patricia Foschi
Comment from Tom Creswell
Comment from Kay Corum
Comment from ronald smith
Comment from Elizabeth Taylor
Comment from David Kelley
Comment from Tom Hohn
Comment from Rebecca Thomas
Comment from Robert Waller
Comment from Alix Bowman

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
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02/03/2021
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02/03/2021
02/03/2021
02/03/2021
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02/03/2021
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02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7664
NOAA-NMFS-2020-0031-DRAFT-7665
NOAA-NMFS-2020-0031-DRAFT-7666
NOAA-NMFS-2020-0031-DRAFT-7667
NOAA-NMFS-2020-0031-DRAFT-7668
NOAA-NMFS-2020-0031-DRAFT-7669
NOAA-NMFS-2020-0031-DRAFT-7670
NOAA-NMFS-2020-0031-DRAFT-7671
NOAA-NMFS-2020-0031-DRAFT-7672
NOAA-NMFS-2020-0031-DRAFT-7673
NOAA-NMFS-2020-0031-DRAFT-7674
NOAA-NMFS-2020-0031-DRAFT-7675
NOAA-NMFS-2020-0031-DRAFT-7676
NOAA-NMFS-2020-0031-DRAFT-7677
NOAA-NMFS-2020-0031-DRAFT-7679
NOAA-NMFS-2020-0031-DRAFT-7680
NOAA-NMFS-2020-0031-DRAFT-7682
NOAA-NMFS-2020-0031-DRAFT-7683
NOAA-NMFS-2020-0031-DRAFT-7684
NOAA-NMFS-2020-0031-DRAFT-7685
NOAA-NMFS-2020-0031-DRAFT-7686
NOAA-NMFS-2020-0031-DRAFT-7687
NOAA-NMFS-2020-0031-DRAFT-7688
NOAA-NMFS-2020-0031-DRAFT-7689
NOAA-NMFS-2020-0031-DRAFT-7690
NOAA-NMFS-2020-0031-DRAFT-7691
NOAA-NMFS-2020-0031-DRAFT-7692
NOAA-NMFS-2020-0031-DRAFT-7693
NOAA-NMFS-2020-0031-DRAFT-7694
NOAA-NMFS-2020-0031-DRAFT-7695
NOAA-NMFS-2020-0031-DRAFT-7696
NOAA-NMFS-2020-0031-DRAFT-7697
NOAA-NMFS-2020-0031-DRAFT-7699
NOAA-NMFS-2020-0031-DRAFT-7700
NOAA-NMFS-2020-0031-DRAFT-7701
NOAA-NMFS-2020-0031-DRAFT-7702
NOAA-NMFS-2020-0031-DRAFT-7703
NOAA-NMFS-2020-0031-DRAFT-7704
NOAA-NMFS-2020-0031-DRAFT-7705
NOAA-NMFS-2020-0031-DRAFT-7706
NOAA-NMFS-2020-0031-DRAFT-7707

Comment from Richard Meyer
Comment from Tom Hiney
Comment from Deborah Kieffer
Comment from Lisa Frascone
Comment from Elizabeth Cruickshank
Comment from Lawrence Abbott
Comment from JILL ALIBRANDI
Comment from Darci Halloran
Comment from Denise Llerena
Comment from Mike Lanka
Comment from Joyce Grajczyk
Comment from Stacy Ortiz
Comment from Gina Dargento
Comment from Janice santos
Comment from Frances Baty
Comment from Cindy Letourneau
Comment from joseph tippett
Comment from Michelle Gage
Comment from Samantha Solomon
Comment from Carol Younes
Comment from Colleen Wade
Comment from DM Warner
Comment from Samantha Turetsky
Comment from Ada O.
Comment from Maryann Barulich
Comment from Angelica Kash
Comment from Lou Baxter
Comment from Shani Schulman
Comment from Holly Marczak
Comment from Phyllis Perna
Comment from The Rev Dr Edward Kern
Comment from Judy Acosta
Comment from Annette Tchelka
Comment from Gavin Bornholtz
Comment from Joan Walker
Comment from Donna Donnelly
Comment from Joanne Tinsley
Comment from Brian Gingras
Comment from Jamie Thomas
Comment from Mark Giese
Comment from Mary Peterson

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2519
NOAA-NMFS-2020-0031-DRAFT-2520
NOAA-NMFS-2020-0031-DRAFT-2521
NOAA-NMFS-2020-0031-DRAFT-2522
NOAA-NMFS-2020-0031-DRAFT-2523
NOAA-NMFS-2020-0031-DRAFT-2524
NOAA-NMFS-2020-0031-DRAFT-2525
NOAA-NMFS-2020-0031-DRAFT-2526
NOAA-NMFS-2020-0031-DRAFT-2527
NOAA-NMFS-2020-0031-DRAFT-2528
NOAA-NMFS-2020-0031-DRAFT-2529
NOAA-NMFS-2020-0031-DRAFT-2530
NOAA-NMFS-2020-0031-DRAFT-2531
NOAA-NMFS-2020-0031-DRAFT-2532
NOAA-NMFS-2020-0031-DRAFT-2533
NOAA-NMFS-2020-0031-DRAFT-2534
NOAA-NMFS-2020-0031-DRAFT-2535
NOAA-NMFS-2020-0031-DRAFT-2536
NOAA-NMFS-2020-0031-DRAFT-2537
NOAA-NMFS-2020-0031-DRAFT-2538
NOAA-NMFS-2020-0031-DRAFT-2539
NOAA-NMFS-2020-0031-DRAFT-2540
NOAA-NMFS-2020-0031-DRAFT-2541
NOAA-NMFS-2020-0031-DRAFT-2542
NOAA-NMFS-2020-0031-DRAFT-2543
NOAA-NMFS-2020-0031-DRAFT-2544
NOAA-NMFS-2020-0031-DRAFT-2545
NOAA-NMFS-2020-0031-DRAFT-2546
NOAA-NMFS-2020-0031-DRAFT-2547
NOAA-NMFS-2020-0031-DRAFT-2548
NOAA-NMFS-2020-0031-DRAFT-2549
NOAA-NMFS-2020-0031-DRAFT-2550
NOAA-NMFS-2020-0031-DRAFT-2551
NOAA-NMFS-2020-0031-DRAFT-2552
NOAA-NMFS-2020-0031-DRAFT-2553
NOAA-NMFS-2020-0031-DRAFT-2554
NOAA-NMFS-2020-0031-DRAFT-2555
NOAA-NMFS-2020-0031-DRAFT-2556
NOAA-NMFS-2020-0031-DRAFT-2557
NOAA-NMFS-2020-0031-DRAFT-2558
NOAA-NMFS-2020-0031-DRAFT-2559

Comment from Jahna Schadt
Comment from Christina Nillo
Comment from Julia Dalton
Comment from Mary Easton
Comment from Jewell Batway
Comment from Jamie Green
Comment from Jane Luu
Comment from Marcia Godich
Comment from Lisa Critchlow
Comment from Steve Wilson
Comment from Lori Surmay
Comment from M D
Comment from Karen Duckwall
Comment from Jim Stone
Comment from George Grant
Comment from Erica Runge
Comment from Selina Harris
Comment from David Henderson
Comment from Donna Lenhart
Comment from Gregory Garnant
Comment from STAFFORD KRAMER
Comment from Nick Brannan
Comment from Sondra Boes
Comment from Tamara Abashian
Comment from Gloria Muszynski
Comment from Ann Collins
Comment from Marian Blue
Comment from Wayne Steffes
Comment from adam joe
Comment from Phillip Mixon
Comment from Felicia Saunders
Comment from Elizabeth Ashby
Comment from Elaine Edell
Comment from Hillary Ostrow
Comment from Camille McPhee
Comment from D. Barcilon
Comment from Teresa Lyman
Comment from Bob Merlin
Comment from Cynthia McFall
Comment from Jaime Grimwood
Comment from Joseph Flasch

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7708
NOAA-NMFS-2020-0031-DRAFT-7709
NOAA-NMFS-2020-0031-DRAFT-7710
NOAA-NMFS-2020-0031-DRAFT-7711
NOAA-NMFS-2020-0031-DRAFT-7712
NOAA-NMFS-2020-0031-DRAFT-7713
NOAA-NMFS-2020-0031-DRAFT-7714
NOAA-NMFS-2020-0031-DRAFT-7715
NOAA-NMFS-2020-0031-DRAFT-7716
NOAA-NMFS-2020-0031-DRAFT-7717
NOAA-NMFS-2020-0031-DRAFT-7718
NOAA-NMFS-2020-0031-DRAFT-7719
NOAA-NMFS-2020-0031-DRAFT-7720
NOAA-NMFS-2020-0031-DRAFT-7721
NOAA-NMFS-2020-0031-DRAFT-7723
NOAA-NMFS-2020-0031-DRAFT-7724
NOAA-NMFS-2020-0031-DRAFT-7726
NOAA-NMFS-2020-0031-DRAFT-7727
NOAA-NMFS-2020-0031-DRAFT-7728
NOAA-NMFS-2020-0031-DRAFT-7729
NOAA-NMFS-2020-0031-DRAFT-7730
NOAA-NMFS-2020-0031-DRAFT-7732
NOAA-NMFS-2020-0031-DRAFT-7733
NOAA-NMFS-2020-0031-DRAFT-7734
NOAA-NMFS-2020-0031-DRAFT-7735
NOAA-NMFS-2020-0031-DRAFT-7736
NOAA-NMFS-2020-0031-DRAFT-7737
NOAA-NMFS-2020-0031-DRAFT-7738
NOAA-NMFS-2020-0031-DRAFT-7739
NOAA-NMFS-2020-0031-DRAFT-7740
NOAA-NMFS-2020-0031-DRAFT-7741
NOAA-NMFS-2020-0031-DRAFT-7742
NOAA-NMFS-2020-0031-DRAFT-7743
NOAA-NMFS-2020-0031-DRAFT-7744
NOAA-NMFS-2020-0031-DRAFT-7745
NOAA-NMFS-2020-0031-DRAFT-7746
NOAA-NMFS-2020-0031-DRAFT-7747
NOAA-NMFS-2020-0031-DRAFT-7748
NOAA-NMFS-2020-0031-DRAFT-7749
NOAA-NMFS-2020-0031-DRAFT-7750
NOAA-NMFS-2020-0031-DRAFT-7751

Comment from Stefanie Hedrick
Comment from jesse williams
Comment from Joann Koch
Comment from Kathryn Baker
Comment from Sherri Foschini
Comment from Carin Baer
Comment from Monique cote
Comment from Bradford Smith
Comment from David Miranda
Comment from Brenda Guilford
Comment from Laurie Storm
Comment from Caryl Speck
Comment from Wendy Enos
Comment from Catherine Kowalczyk.
Comment from Philip Shook
Comment from Mary Metts
Comment from Ralph Mazzacane
Comment from Dani L
Comment from Audrey Tillinghast
Comment from Karen McGreevy
Comment from Leo Kucewicz
Comment from Sandra reeves
Comment from Joseph Quirk
Comment from Emily Willoughby
Comment from Shellee Davis
Comment from Katlynn Griffin
Comment from Cynthia Watt
Comment from Shani Schulman
Comment from Susan Pawlowski
Comment from Tracey Aquino
Comment from Karen Burroughs
Comment from George Danner
Comment from Holly Cox
Comment from Glenda Macemore
Comment from Kristi Mattiello
Comment from Jacqueline Shaw
Comment from Melissa Berger
Comment from Michelle Duby
Comment from Krista Reynolds
Comment from Megan Holden
Comment from Karen Parry

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01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2560
NOAA-NMFS-2020-0031-DRAFT-2561
NOAA-NMFS-2020-0031-DRAFT-2562
NOAA-NMFS-2020-0031-DRAFT-2563
NOAA-NMFS-2020-0031-DRAFT-2564
NOAA-NMFS-2020-0031-DRAFT-2565
NOAA-NMFS-2020-0031-DRAFT-2566
NOAA-NMFS-2020-0031-DRAFT-2567
NOAA-NMFS-2020-0031-DRAFT-2568
NOAA-NMFS-2020-0031-DRAFT-2569
NOAA-NMFS-2020-0031-DRAFT-2570
NOAA-NMFS-2020-0031-DRAFT-2571
NOAA-NMFS-2020-0031-DRAFT-2572
NOAA-NMFS-2020-0031-DRAFT-2573
NOAA-NMFS-2020-0031-DRAFT-2574
NOAA-NMFS-2020-0031-DRAFT-2575
NOAA-NMFS-2020-0031-DRAFT-2576
NOAA-NMFS-2020-0031-DRAFT-2577
NOAA-NMFS-2020-0031-DRAFT-2578
NOAA-NMFS-2020-0031-DRAFT-2579
NOAA-NMFS-2020-0031-DRAFT-2580
NOAA-NMFS-2020-0031-DRAFT-2581
NOAA-NMFS-2020-0031-DRAFT-2582
NOAA-NMFS-2020-0031-DRAFT-2583
NOAA-NMFS-2020-0031-DRAFT-2584
NOAA-NMFS-2020-0031-DRAFT-2585
NOAA-NMFS-2020-0031-DRAFT-2586
NOAA-NMFS-2020-0031-DRAFT-2587
NOAA-NMFS-2020-0031-DRAFT-2588
NOAA-NMFS-2020-0031-DRAFT-2589
NOAA-NMFS-2020-0031-DRAFT-2590
NOAA-NMFS-2020-0031-DRAFT-2591
NOAA-NMFS-2020-0031-DRAFT-2592
NOAA-NMFS-2020-0031-DRAFT-2593
NOAA-NMFS-2020-0031-DRAFT-2594
NOAA-NMFS-2020-0031-DRAFT-2595
NOAA-NMFS-2020-0031-DRAFT-2596
NOAA-NMFS-2020-0031-DRAFT-2597
NOAA-NMFS-2020-0031-DRAFT-2598
NOAA-NMFS-2020-0031-DRAFT-2599
NOAA-NMFS-2020-0031-DRAFT-2600

Comment from Jane Ball
Comment from neil illiano
Comment from Kara Gallant
Comment from Susan Lindell
Comment from Debra Bruegge
Comment from Sharon McCarthy
Comment from Neil Puckett
Comment from Heather Walker-Dale
Comment from Marcus Straub
Comment from Katherine Patterson
Comment from Michael Hill
Comment from Marilyn Olson
Comment from Randy Harrison
Comment from Louise Friedenson
Comment from Kathleen Espamer
Comment from Toni Moore
Comment from Laurel Przybylski
Comment from Renee Kermeen
Comment from Anne Van Alstyne
Comment from Michelle Buerger
Comment from Carolynn Griffith
Comment from Mary Puckett
Comment from Brenda Boudreaux
Comment from Lorilie Morey
Comment from Robin Parish
Comment from Kimberly Wade
Comment from Quinn Abrams
Comment from Paul Hunrichs
Comment from Natalie Youngberg
Comment from Edward Butler
Comment from Sarah Bauman
Comment from C M
Comment from Heidi Ananthakrishnan
Comment from James Miles
Comment from Theresa Sullivan
Comment from Linda Szurley
Comment from Anne Gregory
Comment from Helen Haggins
Comment from Kathryn Christian
Comment from Terry Vaccaro
Comment from Steven Collins

02/03/2021
02/03/2021
02/03/2021
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02/04/2021
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02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7752
NOAA-NMFS-2020-0031-DRAFT-7753
NOAA-NMFS-2020-0031-DRAFT-7754
NOAA-NMFS-2020-0031-DRAFT-7755
NOAA-NMFS-2020-0031-DRAFT-7756
NOAA-NMFS-2020-0031-DRAFT-7757
NOAA-NMFS-2020-0031-DRAFT-7758
NOAA-NMFS-2020-0031-DRAFT-7759
NOAA-NMFS-2020-0031-DRAFT-7760
NOAA-NMFS-2020-0031-DRAFT-7761
NOAA-NMFS-2020-0031-DRAFT-7762
NOAA-NMFS-2020-0031-DRAFT-7763
NOAA-NMFS-2020-0031-DRAFT-7764
NOAA-NMFS-2020-0031-DRAFT-7765
NOAA-NMFS-2020-0031-DRAFT-7766
NOAA-NMFS-2020-0031-DRAFT-7767
NOAA-NMFS-2020-0031-DRAFT-7768
NOAA-NMFS-2020-0031-DRAFT-7769
NOAA-NMFS-2020-0031-DRAFT-7770
NOAA-NMFS-2020-0031-DRAFT-7771
NOAA-NMFS-2020-0031-DRAFT-7772
NOAA-NMFS-2020-0031-DRAFT-7773
NOAA-NMFS-2020-0031-DRAFT-7774
NOAA-NMFS-2020-0031-DRAFT-7775
NOAA-NMFS-2020-0031-DRAFT-7776
NOAA-NMFS-2020-0031-DRAFT-7777
NOAA-NMFS-2020-0031-DRAFT-7778
NOAA-NMFS-2020-0031-DRAFT-7779
NOAA-NMFS-2020-0031-DRAFT-7780
NOAA-NMFS-2020-0031-DRAFT-7781
NOAA-NMFS-2020-0031-DRAFT-7782
NOAA-NMFS-2020-0031-DRAFT-7783
NOAA-NMFS-2020-0031-DRAFT-7784
NOAA-NMFS-2020-0031-DRAFT-7785
NOAA-NMFS-2020-0031-DRAFT-7786
NOAA-NMFS-2020-0031-DRAFT-7788
NOAA-NMFS-2020-0031-DRAFT-7789
NOAA-NMFS-2020-0031-DRAFT-7790
NOAA-NMFS-2020-0031-DRAFT-7791
NOAA-NMFS-2020-0031-DRAFT-7792
NOAA-NMFS-2020-0031-DRAFT-7793

Comment from Diane-michele petrillo
Comment from Kimberly Carlson
Comment from David Walker
Comment from Alexandre Haudeville
Comment from JoanLee Stassi
Comment from Marilyn Garrett
Comment from Linda Jones
Comment from Kerry Dockery
Comment from Armando A. Garcia
Comment from Wendy kneeland
Comment from Shaun Levin
Comment from Melanie Barberio
Comment from Joe Kissel
Comment from Anita Coca
Comment from Ken Scott
Comment from kristine cervini
Comment from Deborah Shea
Comment from Anonymous Anonymous
Comment from G. Sikes
Comment from Paul Bolden
Comment from Marion Albu
Comment from Amy Bombard
Comment from Susan Goldin
Comment from Carmen Harbuck
Comment from Ann Oliver
Comment from Grard COUCHOUD
Comment from Brian Gingras
Comment from Janet Garrison
Comment from Jesse Gennarelli
Comment from Debby Williams
Comment from Anonymous Anonymous
Comment from Barbara Guinn
Comment from Julie Scaramella
Comment from Laurie Muscat
Comment from Diane Moore
Comment from Mari Dominguez
Comment from Belinda Ford
Comment from Kristin Betz
Comment from Henry Atterbury
Comment from Ramona Kyall
Comment from Beth Carr

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2601
NOAA-NMFS-2020-0031-DRAFT-2602
NOAA-NMFS-2020-0031-DRAFT-2603
NOAA-NMFS-2020-0031-DRAFT-2604
NOAA-NMFS-2020-0031-DRAFT-2605
NOAA-NMFS-2020-0031-DRAFT-2606
NOAA-NMFS-2020-0031-DRAFT-2607
NOAA-NMFS-2020-0031-DRAFT-2608
NOAA-NMFS-2020-0031-DRAFT-2609
NOAA-NMFS-2020-0031-DRAFT-2610
NOAA-NMFS-2020-0031-DRAFT-2611
NOAA-NMFS-2020-0031-DRAFT-2612
NOAA-NMFS-2020-0031-DRAFT-2613
NOAA-NMFS-2020-0031-DRAFT-2614
NOAA-NMFS-2020-0031-DRAFT-2615
NOAA-NMFS-2020-0031-DRAFT-2616
NOAA-NMFS-2020-0031-DRAFT-2617
NOAA-NMFS-2020-0031-DRAFT-2618
NOAA-NMFS-2020-0031-DRAFT-2619
NOAA-NMFS-2020-0031-DRAFT-2620
NOAA-NMFS-2020-0031-DRAFT-2621
NOAA-NMFS-2020-0031-DRAFT-2622
NOAA-NMFS-2020-0031-DRAFT-2623
NOAA-NMFS-2020-0031-DRAFT-2624
NOAA-NMFS-2020-0031-DRAFT-2625
NOAA-NMFS-2020-0031-DRAFT-2626
NOAA-NMFS-2020-0031-DRAFT-2627
NOAA-NMFS-2020-0031-DRAFT-2628
NOAA-NMFS-2020-0031-DRAFT-2629
NOAA-NMFS-2020-0031-DRAFT-2630
NOAA-NMFS-2020-0031-DRAFT-2631
NOAA-NMFS-2020-0031-DRAFT-2632
NOAA-NMFS-2020-0031-DRAFT-2633
NOAA-NMFS-2020-0031-DRAFT-2634
NOAA-NMFS-2020-0031-DRAFT-2635
NOAA-NMFS-2020-0031-DRAFT-2636
NOAA-NMFS-2020-0031-DRAFT-2637
NOAA-NMFS-2020-0031-DRAFT-2638
NOAA-NMFS-2020-0031-DRAFT-2639
NOAA-NMFS-2020-0031-DRAFT-2640
NOAA-NMFS-2020-0031-DRAFT-2641

Comment from Mary Green
Comment from Angel Moreno
Comment from Kate Kenner
Comment from Wolfgang burger
Comment from Terry Vaccaro
Comment from Nathan Hall
Comment from James Roberts
Comment from Paul Lapidus
Comment from Kellen Dunn
Comment from Candice Hoz
Comment from MAddalena Bearzi
Comment from Taylor Justason
Comment from Nancy-liane burger
Comment from Tony Gray
Comment from Chris Nolasco
Comment from Bradley Holmes
Comment from Candace Slivinski
Comment from Nancy Stamm
Comment from Ben Grego
Comment from Becky Lippmann
Comment from Sharen Oxman
Comment from David Abalos
Comment from Ruby Grad
Comment from Cathy Clucas
Comment from Rick Romito
Comment from Ajay Dave
Comment from Barbara Hoch
Comment from Eli Celli
Comment from Marilee Meyer
Comment from Christine Hayes
Comment from Anita Laskaris
Comment from Tom Harris
Comment from Sandi Aden
Comment from E.P. P.
Comment from Dianne Douglas
Comment from Betty Ware
Comment from Erika Sirabian
Comment from Jean Wiant
Comment from Iris Carman
Comment from Jeffery Trotta
Comment from Linda Waine

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
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02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7794
NOAA-NMFS-2020-0031-DRAFT-7796
NOAA-NMFS-2020-0031-DRAFT-7797
NOAA-NMFS-2020-0031-DRAFT-7798
NOAA-NMFS-2020-0031-DRAFT-7799
NOAA-NMFS-2020-0031-DRAFT-7800
NOAA-NMFS-2020-0031-DRAFT-7801
NOAA-NMFS-2020-0031-DRAFT-7802
NOAA-NMFS-2020-0031-DRAFT-7803
NOAA-NMFS-2020-0031-DRAFT-7804
NOAA-NMFS-2020-0031-DRAFT-7805
NOAA-NMFS-2020-0031-DRAFT-7806
NOAA-NMFS-2020-0031-DRAFT-7807
NOAA-NMFS-2020-0031-DRAFT-7808
NOAA-NMFS-2020-0031-DRAFT-7810
NOAA-NMFS-2020-0031-DRAFT-7811
NOAA-NMFS-2020-0031-DRAFT-7812
NOAA-NMFS-2020-0031-DRAFT-7813
NOAA-NMFS-2020-0031-DRAFT-7814
NOAA-NMFS-2020-0031-DRAFT-7815
NOAA-NMFS-2020-0031-DRAFT-7816
NOAA-NMFS-2020-0031-DRAFT-7817
NOAA-NMFS-2020-0031-DRAFT-7818
NOAA-NMFS-2020-0031-DRAFT-7819
NOAA-NMFS-2020-0031-DRAFT-7820
NOAA-NMFS-2020-0031-DRAFT-7821
NOAA-NMFS-2020-0031-DRAFT-7822
NOAA-NMFS-2020-0031-DRAFT-7823
NOAA-NMFS-2020-0031-DRAFT-7824
NOAA-NMFS-2020-0031-DRAFT-7825
NOAA-NMFS-2020-0031-DRAFT-7826
NOAA-NMFS-2020-0031-DRAFT-7827
NOAA-NMFS-2020-0031-DRAFT-7828
NOAA-NMFS-2020-0031-DRAFT-7829
NOAA-NMFS-2020-0031-DRAFT-7830
NOAA-NMFS-2020-0031-DRAFT-7831
NOAA-NMFS-2020-0031-DRAFT-7833
NOAA-NMFS-2020-0031-DRAFT-7834
NOAA-NMFS-2020-0031-DRAFT-7836
NOAA-NMFS-2020-0031-DRAFT-7837
NOAA-NMFS-2020-0031-DRAFT-7838

Comment from Jean Naples
Comment from Geneiva Allen
Comment from Dwain Wider
Comment from Jennifer Kopczynski
Comment from Jeremy Benjamin
Comment from Maryellen Redish
Comment from Virgene Link-New
Comment from Brian Boyle
Comment from Martha Wilson
Comment from Andy Henry
Comment from Lanka Dupont
Comment from Christine Donovan
Comment from Pietro Poggi
Comment from Silvia Bertano
Comment from Jessica Osburg
Comment from Claudine Farro
Comment from Harmony Van Eaton
Comment from emma Williams
Comment from David Holloway
Comment from Vivien Smith
Comment from Lila Brtko
Comment from Yannis Karaouzas
Comment from Tessa Thomas
Comment from Bonnie Stucker
Comment from Nicholas Lenchner
Comment from Christine Doering
Comment from John James
Comment from Jorge De Cecco
Comment from Karen Berger
Comment from Gerald Bowman
Comment from Robert Piller
Comment from Geoff Niswander
Comment from Nancy Beaverrs
Comment from Chip Fontaine
Comment from Linda Satter
Comment from Daria Walton
Comment from Zlata Filipenko
Comment from AMANDA STONEBANK
Comment from Jean Yermes
Comment from Maja L
Comment from Colonel Meyer

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2642
NOAA-NMFS-2020-0031-DRAFT-2643
NOAA-NMFS-2020-0031-DRAFT-2644
NOAA-NMFS-2020-0031-DRAFT-2645
NOAA-NMFS-2020-0031-DRAFT-2646
NOAA-NMFS-2020-0031-DRAFT-2647
NOAA-NMFS-2020-0031-DRAFT-2648
NOAA-NMFS-2020-0031-DRAFT-2649
NOAA-NMFS-2020-0031-DRAFT-2650
NOAA-NMFS-2020-0031-DRAFT-2651
NOAA-NMFS-2020-0031-DRAFT-2652
NOAA-NMFS-2020-0031-DRAFT-2653
NOAA-NMFS-2020-0031-DRAFT-2654
NOAA-NMFS-2020-0031-DRAFT-2655
NOAA-NMFS-2020-0031-DRAFT-2656
NOAA-NMFS-2020-0031-DRAFT-2657
NOAA-NMFS-2020-0031-DRAFT-2658
NOAA-NMFS-2020-0031-DRAFT-2659
NOAA-NMFS-2020-0031-DRAFT-2660
NOAA-NMFS-2020-0031-DRAFT-2661
NOAA-NMFS-2020-0031-DRAFT-2662
NOAA-NMFS-2020-0031-DRAFT-2663
NOAA-NMFS-2020-0031-DRAFT-2664
NOAA-NMFS-2020-0031-DRAFT-2665
NOAA-NMFS-2020-0031-DRAFT-2666
NOAA-NMFS-2020-0031-DRAFT-2667
NOAA-NMFS-2020-0031-DRAFT-2668
NOAA-NMFS-2020-0031-DRAFT-2669
NOAA-NMFS-2020-0031-DRAFT-2670
NOAA-NMFS-2020-0031-DRAFT-2671
NOAA-NMFS-2020-0031-DRAFT-2672
NOAA-NMFS-2020-0031-DRAFT-2673
NOAA-NMFS-2020-0031-DRAFT-2674
NOAA-NMFS-2020-0031-DRAFT-2675
NOAA-NMFS-2020-0031-DRAFT-2676
NOAA-NMFS-2020-0031-DRAFT-2677
NOAA-NMFS-2020-0031-DRAFT-2678
NOAA-NMFS-2020-0031-DRAFT-2679
NOAA-NMFS-2020-0031-DRAFT-2680
NOAA-NMFS-2020-0031-DRAFT-2681
NOAA-NMFS-2020-0031-DRAFT-2682

Comment from Tamara Cain
Comment from Will Sage
Comment from Roseanne Belsito
Comment from Joan Murray
Comment from Karen Hauser
Comment from Carol Guffey
Comment from Carol Rahbari
Comment from Deborah Payne
Comment from Richard Klett
Comment from Craig Warren
Comment from Christine Trela
Comment from judy pizarro
Comment from Robert Neuzil
Comment from Julie Beer
Comment from Geoffrey Ogden
Comment from Richard Evans
Comment from Patti Fink
Comment from Donna Crossman
Comment from Karen Bonnell
Comment from Carolyn Dickson
Comment from John Weber
Comment from Elizabeth Sanders
Comment from mark wenzel
Comment from Anthony Celaya
Comment from Deanna Horton
Comment from Chris Silcox
Comment from Jill Madsen
Comment from dan horton
Comment from Kyrie Elesion
Comment from Kellee Anderson
Comment from Laura Ray
Comment from Leslie Burpo
Comment from John Markham
Comment from Robert Stark
Comment from Ann McDermott
Comment from Barbara Scheinman
Comment from Christine Koehler
Comment from Emily Pitner
Comment from Kiley Newton
Comment from Susan Campanini
Comment from Harry Knox

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7839
NOAA-NMFS-2020-0031-DRAFT-7840
NOAA-NMFS-2020-0031-DRAFT-7841
NOAA-NMFS-2020-0031-DRAFT-7842
NOAA-NMFS-2020-0031-DRAFT-7843
NOAA-NMFS-2020-0031-DRAFT-7844
NOAA-NMFS-2020-0031-DRAFT-7845
NOAA-NMFS-2020-0031-DRAFT-7846
NOAA-NMFS-2020-0031-DRAFT-7847
NOAA-NMFS-2020-0031-DRAFT-7849
NOAA-NMFS-2020-0031-DRAFT-7850
NOAA-NMFS-2020-0031-DRAFT-7851
NOAA-NMFS-2020-0031-DRAFT-7852
NOAA-NMFS-2020-0031-DRAFT-7853
NOAA-NMFS-2020-0031-DRAFT-7854
NOAA-NMFS-2020-0031-DRAFT-7855
NOAA-NMFS-2020-0031-DRAFT-7856
NOAA-NMFS-2020-0031-DRAFT-7857
NOAA-NMFS-2020-0031-DRAFT-7858
NOAA-NMFS-2020-0031-DRAFT-7859
NOAA-NMFS-2020-0031-DRAFT-7861
NOAA-NMFS-2020-0031-DRAFT-7862
NOAA-NMFS-2020-0031-DRAFT-7863
NOAA-NMFS-2020-0031-DRAFT-7864
NOAA-NMFS-2020-0031-DRAFT-7865
NOAA-NMFS-2020-0031-DRAFT-7867
NOAA-NMFS-2020-0031-DRAFT-7868
NOAA-NMFS-2020-0031-DRAFT-7869
NOAA-NMFS-2020-0031-DRAFT-7870
NOAA-NMFS-2020-0031-DRAFT-7871
NOAA-NMFS-2020-0031-DRAFT-7872
NOAA-NMFS-2020-0031-DRAFT-7873
NOAA-NMFS-2020-0031-DRAFT-7874
NOAA-NMFS-2020-0031-DRAFT-7875
NOAA-NMFS-2020-0031-DRAFT-7876
NOAA-NMFS-2020-0031-DRAFT-7877
NOAA-NMFS-2020-0031-DRAFT-7878
NOAA-NMFS-2020-0031-DRAFT-7879
NOAA-NMFS-2020-0031-DRAFT-7880
NOAA-NMFS-2020-0031-DRAFT-7881
NOAA-NMFS-2020-0031-DRAFT-7882

Comment from Cheryl Metzger
Comment from Laurie Miller
Comment from Cathy Sikes
Comment from Marjatta Heinonen
Comment from Kristin Walsh
Comment from Jimmy Fleming
Comment from Laurie Siederman
Comment from Ainga Dobbelaere
Comment from Debbie Sorrell
Comment from Deanne O'Donnell
Comment from Mark Vargo
Comment from DeDe O'Donnell
Comment from Pam Hepfer
Comment from Julie Motl
Comment from Karen James
Comment from Alice Morris
Comment from Laura Grove
Comment from Arifa Isabel
Comment from Nancy Neumann
Comment from Deb DeRosa
Comment from Larry Swain
Comment from Tamara Quartin
Comment from Janet Delaney
Comment from Adriauna Diaz
Comment from Linda Wetrhus
Comment from Kenneth Anderson
Comment from Thomas Sanders
Comment from Donna Vassallo
Comment from Arlene Macintosh
Comment from Mai Hermann
Comment from Krystal krause
Comment from Carmen Sucre
Comment from Lou Indy
Comment from Vicki Keehner
Comment from Mario Merlonghi
Comment from TRISH GEIDEL
Comment from Debi Holt
Comment from Carole Arbour
Comment from Andrew Esterman
Comment from Nancy Diaz
Comment from Colonel Meyer

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2683
NOAA-NMFS-2020-0031-DRAFT-2684
NOAA-NMFS-2020-0031-DRAFT-2685
NOAA-NMFS-2020-0031-DRAFT-2686
NOAA-NMFS-2020-0031-DRAFT-2687
NOAA-NMFS-2020-0031-DRAFT-2688
NOAA-NMFS-2020-0031-DRAFT-2689
NOAA-NMFS-2020-0031-DRAFT-2690
NOAA-NMFS-2020-0031-DRAFT-2691
NOAA-NMFS-2020-0031-DRAFT-2692
NOAA-NMFS-2020-0031-DRAFT-2693
NOAA-NMFS-2020-0031-DRAFT-2694
NOAA-NMFS-2020-0031-DRAFT-2695
NOAA-NMFS-2020-0031-DRAFT-2696
NOAA-NMFS-2020-0031-DRAFT-2697
NOAA-NMFS-2020-0031-DRAFT-2698
NOAA-NMFS-2020-0031-DRAFT-2699
NOAA-NMFS-2020-0031-DRAFT-2700
NOAA-NMFS-2020-0031-DRAFT-2701
NOAA-NMFS-2020-0031-DRAFT-2702
NOAA-NMFS-2020-0031-DRAFT-2703
NOAA-NMFS-2020-0031-DRAFT-2704
NOAA-NMFS-2020-0031-DRAFT-2705
NOAA-NMFS-2020-0031-DRAFT-2706
NOAA-NMFS-2020-0031-DRAFT-2707
NOAA-NMFS-2020-0031-DRAFT-2708
NOAA-NMFS-2020-0031-DRAFT-2709
NOAA-NMFS-2020-0031-DRAFT-2710
NOAA-NMFS-2020-0031-DRAFT-2711
NOAA-NMFS-2020-0031-DRAFT-2712
NOAA-NMFS-2020-0031-DRAFT-2713
NOAA-NMFS-2020-0031-DRAFT-2714
NOAA-NMFS-2020-0031-DRAFT-2715
NOAA-NMFS-2020-0031-DRAFT-2716
NOAA-NMFS-2020-0031-DRAFT-2717
NOAA-NMFS-2020-0031-DRAFT-2718
NOAA-NMFS-2020-0031-DRAFT-2719
NOAA-NMFS-2020-0031-DRAFT-2720
NOAA-NMFS-2020-0031-DRAFT-2721
NOAA-NMFS-2020-0031-DRAFT-2722
NOAA-NMFS-2020-0031-DRAFT-2723

Comment from Carol Masuda
Comment from Nancy Lewis
Comment from Meaghan Leavitt
Comment from Isabel Cervera
Comment from David Bernstein
Comment from P.P. Soucek
Comment from Sharon Kaylen
Comment from Leda Zimmerman
Comment from Mary Buckley
Comment from Irene Mills
Comment from Eric Arroyo
Comment from RJ Cooper
Comment from christine etapa
Comment from John Ballo
Comment from Lauren Linda
Comment from Alan Miller
Comment from Laura Guttridge
Comment from Lawrence Plummer
Comment from MARLENE SMITH
Comment from Raymond Valinoti
Comment from David Anderson
Comment from Hilary Harris
Comment from Jessica Baskett
Comment from Marianne Lazarus
Comment from Marcia Liotard
Comment from stacey francis
Comment from Gary Raymond
Comment from Lorna McCaslin
Comment from Sherry Vatter
Comment from Kathy Bouvier
Comment from Rozalind Smith
Comment from Jennifer Taylor
Comment from JEAN ROHRER
Comment from Janice McLaughlin
Comment from Charlene Kerchevall
Comment from Donald Dobesh
Comment from Dave Frank
Comment from Maura Schaeffer
Comment from Kelli Lent
Comment from marilyn gockowski
Comment from Ben Badger

02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7883
NOAA-NMFS-2020-0031-DRAFT-7884
NOAA-NMFS-2020-0031-DRAFT-7885
NOAA-NMFS-2020-0031-DRAFT-7886
NOAA-NMFS-2020-0031-DRAFT-7887
NOAA-NMFS-2020-0031-DRAFT-7888
NOAA-NMFS-2020-0031-DRAFT-7889
NOAA-NMFS-2020-0031-DRAFT-7890
NOAA-NMFS-2020-0031-DRAFT-7891
NOAA-NMFS-2020-0031-DRAFT-7892
NOAA-NMFS-2020-0031-DRAFT-7893
NOAA-NMFS-2020-0031-DRAFT-7894
NOAA-NMFS-2020-0031-DRAFT-7895
NOAA-NMFS-2020-0031-DRAFT-7896
NOAA-NMFS-2020-0031-DRAFT-7897
NOAA-NMFS-2020-0031-DRAFT-7898
NOAA-NMFS-2020-0031-DRAFT-7899
NOAA-NMFS-2020-0031-DRAFT-7900
NOAA-NMFS-2020-0031-DRAFT-7901
NOAA-NMFS-2020-0031-DRAFT-7902
NOAA-NMFS-2020-0031-DRAFT-7903
NOAA-NMFS-2020-0031-DRAFT-7904
NOAA-NMFS-2020-0031-DRAFT-7905
NOAA-NMFS-2020-0031-DRAFT-7906
NOAA-NMFS-2020-0031-DRAFT-7907
NOAA-NMFS-2020-0031-DRAFT-7908
NOAA-NMFS-2020-0031-DRAFT-7909
NOAA-NMFS-2020-0031-DRAFT-7910
NOAA-NMFS-2020-0031-DRAFT-7911
NOAA-NMFS-2020-0031-DRAFT-7912
NOAA-NMFS-2020-0031-DRAFT-7913
NOAA-NMFS-2020-0031-DRAFT-7914
NOAA-NMFS-2020-0031-DRAFT-7915
NOAA-NMFS-2020-0031-DRAFT-7916
NOAA-NMFS-2020-0031-DRAFT-7917
NOAA-NMFS-2020-0031-DRAFT-7918
NOAA-NMFS-2020-0031-DRAFT-7919
NOAA-NMFS-2020-0031-DRAFT-7920
NOAA-NMFS-2020-0031-DRAFT-7921
NOAA-NMFS-2020-0031-DRAFT-7922
NOAA-NMFS-2020-0031-DRAFT-7923

Comment from Cynthia Karst
Comment from Susan Marchini
Comment from Tammy More
Comment from Cynthia Simpson
Comment from Mary Flaherty
Comment from debbie andrews
Comment from Nina Perino
Comment from Anonymous Anonymous
Comment from kathy korff
Comment from Jeff Cook
Comment from Lisa Harnett
Comment from Sue Bush
Comment from Stephanie Miehe
Comment from Deborahk Filion
Comment from Laura Withers
Comment from Monica Levine
Comment from Adelino Carreira
Comment from Karen Gleason
Comment from Janet Marthers
Comment from Cecilia Wolff
Comment from Fanny Whitman
Comment from Craig Fritz
Comment from Carol Berkowicz
Comment from Amber Owens
Comment from Jen Marks
Comment from Rachel Gardiner
Comment from Wendy Armstrong
Comment from Bill Morelli
Comment from Louise Frontiero
Comment from ADRIANA Mathews
Comment from Katie Campbell
Comment from Susan Meyerholz
Comment from Brenda Stepp
Comment from Cindy Page
Comment from Annette bailey
Comment from Debra Jamieson
Comment from Linda Montanaro
Comment from Joanne Minton
Comment from Caroline Trickey
Comment from Paul Needles
Comment from Jason Colon

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2724
NOAA-NMFS-2020-0031-DRAFT-2725
NOAA-NMFS-2020-0031-DRAFT-2726
NOAA-NMFS-2020-0031-DRAFT-2727
NOAA-NMFS-2020-0031-DRAFT-2728
NOAA-NMFS-2020-0031-DRAFT-2729
NOAA-NMFS-2020-0031-DRAFT-2730
NOAA-NMFS-2020-0031-DRAFT-2731
NOAA-NMFS-2020-0031-DRAFT-2732
NOAA-NMFS-2020-0031-DRAFT-2733
NOAA-NMFS-2020-0031-DRAFT-2734
NOAA-NMFS-2020-0031-DRAFT-2735
NOAA-NMFS-2020-0031-DRAFT-2736
NOAA-NMFS-2020-0031-DRAFT-2737
NOAA-NMFS-2020-0031-DRAFT-2738
NOAA-NMFS-2020-0031-DRAFT-2739
NOAA-NMFS-2020-0031-DRAFT-2740
NOAA-NMFS-2020-0031-DRAFT-2741
NOAA-NMFS-2020-0031-DRAFT-2742
NOAA-NMFS-2020-0031-DRAFT-2743
NOAA-NMFS-2020-0031-DRAFT-2744
NOAA-NMFS-2020-0031-DRAFT-2745
NOAA-NMFS-2020-0031-DRAFT-2746
NOAA-NMFS-2020-0031-DRAFT-2747
NOAA-NMFS-2020-0031-DRAFT-2748
NOAA-NMFS-2020-0031-DRAFT-2749
NOAA-NMFS-2020-0031-DRAFT-2750
NOAA-NMFS-2020-0031-DRAFT-2751
NOAA-NMFS-2020-0031-DRAFT-2752
NOAA-NMFS-2020-0031-DRAFT-2753
NOAA-NMFS-2020-0031-DRAFT-2754
NOAA-NMFS-2020-0031-DRAFT-2755
NOAA-NMFS-2020-0031-DRAFT-2756
NOAA-NMFS-2020-0031-DRAFT-2757
NOAA-NMFS-2020-0031-DRAFT-2758
NOAA-NMFS-2020-0031-DRAFT-2759
NOAA-NMFS-2020-0031-DRAFT-2760
NOAA-NMFS-2020-0031-DRAFT-2761
NOAA-NMFS-2020-0031-DRAFT-2762
NOAA-NMFS-2020-0031-DRAFT-2763
NOAA-NMFS-2020-0031-DRAFT-2764

Comment from Marc Westler
Comment from Bill Leikam
Comment from Laura Vera
Comment from Shiela Cockshott
Comment from Kay Reinfried
Comment from Karen Milstein
Comment from Lourdes Guzman
Comment from Maureen Verwiel
Comment from Philip Englert
Comment from Ellen Dryer
Comment from michael newman
Comment from Peter Hodum
Comment from Surya-Patricia Hood
Comment from Karen Pecsok
Comment from Jane poklemba
Comment from Peter Townsend
Comment from Dr Plotkin
Comment from Wiliam Pogue
Comment from David G
Comment from Shela Hadley
Comment from Paula Summers
Comment from Mary Maher
Comment from Darcy Bergh
Comment from Christopher Evans
Comment from cara busch
Comment from Charles Looney
Comment from David schoenberg
Comment from Phil Fitzgerald
Comment from Laura Phelan
Comment from Robert Johnson
Comment from Thomas Boswell
Comment from Claudia Richner
Comment from Joy Zadaca
Comment from Judith Julian
Comment from Rita Glasscock
Comment from Tracey Fried-Kasofsky
Comment from Darby Stone
Comment from BERNARD HARTWIG
Comment from Shelley Billik
Comment from Jennifer Will
Comment from Will Richardson

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
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02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7924
NOAA-NMFS-2020-0031-DRAFT-7925
NOAA-NMFS-2020-0031-DRAFT-7926
NOAA-NMFS-2020-0031-DRAFT-7927
NOAA-NMFS-2020-0031-DRAFT-7928
NOAA-NMFS-2020-0031-DRAFT-7929
NOAA-NMFS-2020-0031-DRAFT-7930
NOAA-NMFS-2020-0031-DRAFT-7931
NOAA-NMFS-2020-0031-DRAFT-7932
NOAA-NMFS-2020-0031-DRAFT-7933
NOAA-NMFS-2020-0031-DRAFT-7934
NOAA-NMFS-2020-0031-DRAFT-7935
NOAA-NMFS-2020-0031-DRAFT-7936
NOAA-NMFS-2020-0031-DRAFT-7937
NOAA-NMFS-2020-0031-DRAFT-7939
NOAA-NMFS-2020-0031-DRAFT-7940
NOAA-NMFS-2020-0031-DRAFT-7941
NOAA-NMFS-2020-0031-DRAFT-7942
NOAA-NMFS-2020-0031-DRAFT-7943
NOAA-NMFS-2020-0031-DRAFT-7944
NOAA-NMFS-2020-0031-DRAFT-7945
NOAA-NMFS-2020-0031-DRAFT-7946
NOAA-NMFS-2020-0031-DRAFT-7947
NOAA-NMFS-2020-0031-DRAFT-7948
NOAA-NMFS-2020-0031-DRAFT-7949
NOAA-NMFS-2020-0031-DRAFT-7950
NOAA-NMFS-2020-0031-DRAFT-7951
NOAA-NMFS-2020-0031-DRAFT-7952
NOAA-NMFS-2020-0031-DRAFT-7953
NOAA-NMFS-2020-0031-DRAFT-7954
NOAA-NMFS-2020-0031-DRAFT-7955
NOAA-NMFS-2020-0031-DRAFT-7956
NOAA-NMFS-2020-0031-DRAFT-7957
NOAA-NMFS-2020-0031-DRAFT-7958
NOAA-NMFS-2020-0031-DRAFT-7959
NOAA-NMFS-2020-0031-DRAFT-7960
NOAA-NMFS-2020-0031-DRAFT-7961
NOAA-NMFS-2020-0031-DRAFT-7962
NOAA-NMFS-2020-0031-DRAFT-7963
NOAA-NMFS-2020-0031-DRAFT-7964
NOAA-NMFS-2020-0031-DRAFT-7965

Comment from Anneke Corbett
Comment from Katherine Mayers
Comment from Maria Clara Leito
Comment from jeanne hobert
Comment from Joy Marzolf
Comment from Doreen Jefferson
Comment from Joyce Ferony
Comment from Trish stevens
Comment from Crystal Rector
Comment from Nicola Nicolai
Comment from Elysia Rohr
Comment from Vickie Dinardi
Comment from Jane White
Comment from Deborah Klein
Comment from Rachel Vandinter
Comment from Jason Chin
Comment from Winona Boalt
Comment from Patrick Lynch
Comment from Sheryl Becker
Comment from Michael Gitcho
Comment from Geraldine Osorio
Comment from Steve Miller
Comment from Janet Steggerda
Comment from Patricia Grace
Comment from Linda Burdwell
Comment from Will Kern
Comment from Ann Crea
Comment from Dorothy Marshall
Comment from David Rye
Comment from Gregory Brown
Comment from Ainslie Gilligan
Comment from Eric Adler
Comment from Debora Hojda
Comment from Suzanne Dean
Comment from Margaret McGinnis
Comment from Vivi Huges
Comment from Andrea Bianchi
Comment from Sheryl Rogers
Comment from Frances Copppola
Comment from Beverly Dodson
Comment from lee derus

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2765
NOAA-NMFS-2020-0031-DRAFT-2766
NOAA-NMFS-2020-0031-DRAFT-2767
NOAA-NMFS-2020-0031-DRAFT-2768
NOAA-NMFS-2020-0031-DRAFT-2769
NOAA-NMFS-2020-0031-DRAFT-2770
NOAA-NMFS-2020-0031-DRAFT-2771
NOAA-NMFS-2020-0031-DRAFT-2772
NOAA-NMFS-2020-0031-DRAFT-2773
NOAA-NMFS-2020-0031-DRAFT-2774
NOAA-NMFS-2020-0031-DRAFT-2775
NOAA-NMFS-2020-0031-DRAFT-2776
NOAA-NMFS-2020-0031-DRAFT-2777
NOAA-NMFS-2020-0031-DRAFT-2778
NOAA-NMFS-2020-0031-DRAFT-2779
NOAA-NMFS-2020-0031-DRAFT-2780
NOAA-NMFS-2020-0031-DRAFT-2781
NOAA-NMFS-2020-0031-DRAFT-2782
NOAA-NMFS-2020-0031-DRAFT-2783
NOAA-NMFS-2020-0031-DRAFT-2784
NOAA-NMFS-2020-0031-DRAFT-2785
NOAA-NMFS-2020-0031-DRAFT-2786
NOAA-NMFS-2020-0031-DRAFT-2787
NOAA-NMFS-2020-0031-DRAFT-2788
NOAA-NMFS-2020-0031-DRAFT-2789
NOAA-NMFS-2020-0031-DRAFT-2790
NOAA-NMFS-2020-0031-DRAFT-2791
NOAA-NMFS-2020-0031-DRAFT-2792
NOAA-NMFS-2020-0031-DRAFT-2793
NOAA-NMFS-2020-0031-DRAFT-2794
NOAA-NMFS-2020-0031-DRAFT-2795
NOAA-NMFS-2020-0031-DRAFT-2796
NOAA-NMFS-2020-0031-DRAFT-2797
NOAA-NMFS-2020-0031-DRAFT-2798
NOAA-NMFS-2020-0031-DRAFT-2799
NOAA-NMFS-2020-0031-DRAFT-2800
NOAA-NMFS-2020-0031-DRAFT-2801
NOAA-NMFS-2020-0031-DRAFT-2802
NOAA-NMFS-2020-0031-DRAFT-2803
NOAA-NMFS-2020-0031-DRAFT-2804
NOAA-NMFS-2020-0031-DRAFT-2805

Comment from MarySue Baker
Comment from Margaret Neumann
Comment from Stephan Silen
Comment from Tim Eaton
Comment from Roderic Stephens
Comment from John Eckler
Comment from Lisa Caver
Comment from Linda Freeman
Comment from Gregory Penchoen
Comment from jack Stockslager
Comment from Adrian Smith
Comment from Mary Johnson
Comment from Ann Cohen
Comment from betty winholtz
Comment from Patricia BlackwellMarchant
Comment from James Henriksen
Comment from Linda Muntner
Comment from Maria Bustamante
Comment from Lynn Funkhouser
Comment from Sandra Barros
Comment from Robert Newman
Comment from Quida Jacobs
Comment from Cynthia Coley
Comment from marina sagardua
Comment from Angie Williams
Comment from Rob Ruggiero
Comment from Geraldine Battistessa
Comment from Marie Weis
Comment from Tracy Foster
Comment from Medora Van Denburgh
Comment from Gregory Ortiz
Comment from Julie Richards
Comment from Nilah MacDonald
Comment from Beverly Solomon
Comment from Avie Hern
Comment from Tammy Bullock
Comment from Malisa Harding-DeOchoa
Comment from Rachel Resnikoff
Comment from Ken Martin
Comment from Charlotte Jones
Comment from Delaine Spilsbury

02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7966
NOAA-NMFS-2020-0031-DRAFT-7967
NOAA-NMFS-2020-0031-DRAFT-7968
NOAA-NMFS-2020-0031-DRAFT-7969
NOAA-NMFS-2020-0031-DRAFT-7970
NOAA-NMFS-2020-0031-DRAFT-7971
NOAA-NMFS-2020-0031-DRAFT-7972
NOAA-NMFS-2020-0031-DRAFT-7973
NOAA-NMFS-2020-0031-DRAFT-7974
NOAA-NMFS-2020-0031-DRAFT-7975
NOAA-NMFS-2020-0031-DRAFT-7976
NOAA-NMFS-2020-0031-DRAFT-7977
NOAA-NMFS-2020-0031-DRAFT-7978
NOAA-NMFS-2020-0031-DRAFT-7979
NOAA-NMFS-2020-0031-DRAFT-7980
NOAA-NMFS-2020-0031-DRAFT-7981
NOAA-NMFS-2020-0031-DRAFT-7982
NOAA-NMFS-2020-0031-DRAFT-7984
NOAA-NMFS-2020-0031-DRAFT-7985
NOAA-NMFS-2020-0031-DRAFT-7986
NOAA-NMFS-2020-0031-DRAFT-7987
NOAA-NMFS-2020-0031-DRAFT-7988
NOAA-NMFS-2020-0031-DRAFT-7989
NOAA-NMFS-2020-0031-DRAFT-7990
NOAA-NMFS-2020-0031-DRAFT-7991
NOAA-NMFS-2020-0031-DRAFT-7992
NOAA-NMFS-2020-0031-DRAFT-7993
NOAA-NMFS-2020-0031-DRAFT-7994
NOAA-NMFS-2020-0031-DRAFT-7995
NOAA-NMFS-2020-0031-DRAFT-7996
NOAA-NMFS-2020-0031-DRAFT-7997
NOAA-NMFS-2020-0031-DRAFT-7998
NOAA-NMFS-2020-0031-DRAFT-7999
NOAA-NMFS-2020-0031-DRAFT-8000
NOAA-NMFS-2020-0031-DRAFT-8001
NOAA-NMFS-2020-0031-DRAFT-8002
NOAA-NMFS-2020-0031-DRAFT-8003
NOAA-NMFS-2020-0031-DRAFT-8004
NOAA-NMFS-2020-0031-DRAFT-8005
NOAA-NMFS-2020-0031-DRAFT-8006
NOAA-NMFS-2020-0031-DRAFT-8007

Comment from Claire Bush
Comment from Amanda Perry
Comment from Martha Ferris
Comment from Trevor Southlea
Comment from Rita Droste
Comment from Pasquale Vairo
Comment from wanda farmer
Comment from Maryke Petruzzi
Comment from Carolyn Machado
Comment from James Zipp
Comment from Candace Park
Comment from Emily S Buttermore
Comment from Kezia Snyder
Comment from Marie Cox
Comment from April Hamilton
Comment from Eileen Gregoire
Comment from Martha Burton
Comment from Rachael Riccobene
Comment from Lee Alton
Comment from Linda Stanley
Comment from Kelly Burgess
Comment from Shel Anderson
Comment from Dianna BRYZICKI
Comment from Michelle Hartsoe
Comment from Nancy Pearl
Comment from Ronnie Bolling
Comment from Nan Beatty
Comment from Margaret Walden
Comment from Michelle Hur
Comment from Dawna Nelson
Comment from Mark Fiske
Comment from Michelle Peters
Comment from Karla Benoit
Comment from Nancy Rittenhouse
Comment from Janeen Walsh
Comment from Alisa Rhodes
Comment from Merrily Locke
Comment from Rachel Parnell
Comment from Manuela Gattasse
Comment from Alicia Quintero
Comment from Regina Lippert

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01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2806
NOAA-NMFS-2020-0031-DRAFT-2807
NOAA-NMFS-2020-0031-DRAFT-2808
NOAA-NMFS-2020-0031-DRAFT-2809
NOAA-NMFS-2020-0031-DRAFT-2810
NOAA-NMFS-2020-0031-DRAFT-2811
NOAA-NMFS-2020-0031-DRAFT-2812
NOAA-NMFS-2020-0031-DRAFT-2813
NOAA-NMFS-2020-0031-DRAFT-2814
NOAA-NMFS-2020-0031-DRAFT-2815
NOAA-NMFS-2020-0031-DRAFT-2816
NOAA-NMFS-2020-0031-DRAFT-2817
NOAA-NMFS-2020-0031-DRAFT-2818
NOAA-NMFS-2020-0031-DRAFT-2819
NOAA-NMFS-2020-0031-DRAFT-2820
NOAA-NMFS-2020-0031-DRAFT-2821
NOAA-NMFS-2020-0031-DRAFT-2822
NOAA-NMFS-2020-0031-DRAFT-2823
NOAA-NMFS-2020-0031-DRAFT-2824
NOAA-NMFS-2020-0031-DRAFT-2825
NOAA-NMFS-2020-0031-DRAFT-2826
NOAA-NMFS-2020-0031-DRAFT-2827
NOAA-NMFS-2020-0031-DRAFT-2828
NOAA-NMFS-2020-0031-DRAFT-2829
NOAA-NMFS-2020-0031-DRAFT-2830
NOAA-NMFS-2020-0031-DRAFT-2831
NOAA-NMFS-2020-0031-DRAFT-2832
NOAA-NMFS-2020-0031-DRAFT-2833
NOAA-NMFS-2020-0031-DRAFT-2834
NOAA-NMFS-2020-0031-DRAFT-2835
NOAA-NMFS-2020-0031-DRAFT-2836
NOAA-NMFS-2020-0031-DRAFT-2837
NOAA-NMFS-2020-0031-DRAFT-2838
NOAA-NMFS-2020-0031-DRAFT-2839
NOAA-NMFS-2020-0031-DRAFT-2840
NOAA-NMFS-2020-0031-DRAFT-2841
NOAA-NMFS-2020-0031-DRAFT-2842
NOAA-NMFS-2020-0031-DRAFT-2843
NOAA-NMFS-2020-0031-DRAFT-2844
NOAA-NMFS-2020-0031-DRAFT-2845
NOAA-NMFS-2020-0031-DRAFT-2846

Comment from Thomas Durst
Comment from Laura Comstock
Comment from Nina French
Comment from kate nyne
Comment from John Livingston
Comment from Richard Zimmermann
Comment from Cohn Nancy
Comment from casee maxfield
Comment from Lisa Norman
Comment from S. Jordan
Comment from John Gieser
Comment from Gracie King
Comment from Wendy Diamond
Comment from MARY EMERICH
Comment from Anjanette Caron
Comment from Fay Payton
Comment from WALTER EMERICH
Comment from Suzanne Barns
Comment from Jason LaBerge
Comment from Mark Koritz
Comment from Kathi Ridgway
Comment from Sally Madigan
Comment from Marvin Cohnen
Comment from Nancy Ellingham
Comment from Edward McDowell
Comment from Cheryl Albert
Comment from Aliaa Abdel-Gawad
Comment from Elizabeth Melo
Comment from Debbie Stinehart
Comment from Elizabeth Gilson
Comment from Nancy Smith
Comment from Graciela Huth
Comment from David Hall
Comment from Jane Aukshunas
Comment from Kim Frazier
Comment from Kathleen McCann
Comment from Gerard Gaudin
Comment from Kathleen Wilson
Comment from Lizzie Vierra
Comment from Karen OBrien
Comment from Joel Stoup

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-8008
NOAA-NMFS-2020-0031-DRAFT-8009
NOAA-NMFS-2020-0031-DRAFT-8010
NOAA-NMFS-2020-0031-DRAFT-8011
NOAA-NMFS-2020-0031-DRAFT-8012
NOAA-NMFS-2020-0031-DRAFT-8013
NOAA-NMFS-2020-0031-DRAFT-8014
NOAA-NMFS-2020-0031-DRAFT-8015
NOAA-NMFS-2020-0031-DRAFT-8016
NOAA-NMFS-2020-0031-DRAFT-8017
NOAA-NMFS-2020-0031-DRAFT-8018
NOAA-NMFS-2020-0031-DRAFT-8019
NOAA-NMFS-2020-0031-DRAFT-8020
NOAA-NMFS-2020-0031-DRAFT-8021
NOAA-NMFS-2020-0031-DRAFT-8022
NOAA-NMFS-2020-0031-DRAFT-8023
NOAA-NMFS-2020-0031-DRAFT-8024
NOAA-NMFS-2020-0031-DRAFT-8025
NOAA-NMFS-2020-0031-DRAFT-8026
NOAA-NMFS-2020-0031-DRAFT-8027
NOAA-NMFS-2020-0031-DRAFT-8028
NOAA-NMFS-2020-0031-DRAFT-8029
NOAA-NMFS-2020-0031-DRAFT-8030
NOAA-NMFS-2020-0031-DRAFT-8032
NOAA-NMFS-2020-0031-DRAFT-8033
NOAA-NMFS-2020-0031-DRAFT-8034
NOAA-NMFS-2020-0031-DRAFT-8035
NOAA-NMFS-2020-0031-DRAFT-8036
NOAA-NMFS-2020-0031-DRAFT-8037
NOAA-NMFS-2020-0031-DRAFT-8038
NOAA-NMFS-2020-0031-DRAFT-8039
NOAA-NMFS-2020-0031-DRAFT-8040
NOAA-NMFS-2020-0031-DRAFT-8041
NOAA-NMFS-2020-0031-DRAFT-8042
NOAA-NMFS-2020-0031-DRAFT-8043
NOAA-NMFS-2020-0031-DRAFT-8044
NOAA-NMFS-2020-0031-DRAFT-8045
NOAA-NMFS-2020-0031-DRAFT-8046
NOAA-NMFS-2020-0031-DRAFT-8047
NOAA-NMFS-2020-0031-DRAFT-8048
NOAA-NMFS-2020-0031-DRAFT-8049

Comment from sean harper
Comment from shirley mills
Comment from Jamie Brennan
Comment from Maryellen Marek
Comment from Linda Bean
Comment from Cherie Granger
Comment from Jean Chagnon
Comment from Jean Chagnon
Comment from Rabbi Dr. Adele Plotkin
Comment from lin farley
Comment from Leslie Valentine
Comment from Catherine Kowalczyk.
Comment from Tammy Underwood
Comment from Nicole Olson
Comment from Terrie Williams
Comment from Paul Johnson
Comment from Samantha DeBellis
Comment from Wanda Zubr
Comment from Janet Potts
Comment from Peggy Coquet
Comment from Debbie Hiller
Comment from Jillian Walaski
Comment from Maria Velasquez
Comment from Jacquelyn Barnes
Comment from Martin Silver
Comment from Sagar Patel
Comment from Manuela Locke
Comment from Susan Walajtys
Comment from Pat kosky
Comment from Teri Smyth
Comment from Lori Beth Kidd
Comment from Alberto Meotti
Comment from Monique McNaughton
Comment from Deb Hall
Comment from Linda Smith
Comment from Martha Stewart
Comment from Susan Querze
Comment from Esther Curry
Comment from Larry Smith
Comment from Janet Weltzin
Comment from JOHN BREIBY

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2847
NOAA-NMFS-2020-0031-DRAFT-2848
NOAA-NMFS-2020-0031-DRAFT-2849
NOAA-NMFS-2020-0031-DRAFT-2850
NOAA-NMFS-2020-0031-DRAFT-2851
NOAA-NMFS-2020-0031-DRAFT-2852
NOAA-NMFS-2020-0031-DRAFT-2853
NOAA-NMFS-2020-0031-DRAFT-2854
NOAA-NMFS-2020-0031-DRAFT-2855
NOAA-NMFS-2020-0031-DRAFT-2856
NOAA-NMFS-2020-0031-DRAFT-2857
NOAA-NMFS-2020-0031-DRAFT-2858
NOAA-NMFS-2020-0031-DRAFT-2859
NOAA-NMFS-2020-0031-DRAFT-2860
NOAA-NMFS-2020-0031-DRAFT-2861
NOAA-NMFS-2020-0031-DRAFT-2862
NOAA-NMFS-2020-0031-DRAFT-2863
NOAA-NMFS-2020-0031-DRAFT-2864
NOAA-NMFS-2020-0031-DRAFT-2865
NOAA-NMFS-2020-0031-DRAFT-2866
NOAA-NMFS-2020-0031-DRAFT-2867
NOAA-NMFS-2020-0031-DRAFT-2868
NOAA-NMFS-2020-0031-DRAFT-2869
NOAA-NMFS-2020-0031-DRAFT-2870
NOAA-NMFS-2020-0031-DRAFT-2871
NOAA-NMFS-2020-0031-DRAFT-2872
NOAA-NMFS-2020-0031-DRAFT-2873
NOAA-NMFS-2020-0031-DRAFT-2874
NOAA-NMFS-2020-0031-DRAFT-2875
NOAA-NMFS-2020-0031-DRAFT-2876
NOAA-NMFS-2020-0031-DRAFT-2877
NOAA-NMFS-2020-0031-DRAFT-2878
NOAA-NMFS-2020-0031-DRAFT-2879
NOAA-NMFS-2020-0031-DRAFT-2880
NOAA-NMFS-2020-0031-DRAFT-2881
NOAA-NMFS-2020-0031-DRAFT-2882
NOAA-NMFS-2020-0031-DRAFT-2883
NOAA-NMFS-2020-0031-DRAFT-2884
NOAA-NMFS-2020-0031-DRAFT-2885
NOAA-NMFS-2020-0031-DRAFT-2886
NOAA-NMFS-2020-0031-DRAFT-2887

Comment from Kevin Kimmel
Comment from Gerald Alberts
Comment from Carol Fly
Comment from Nancy Martin
Comment from Anne Steward
Comment from Rhonda Berger
Comment from Norm Wilmes
Comment from Margo Salone
Comment from Kristine Jorgensen
Comment from Harley Armentrout
Comment from Stephanie Christoff
Comment from Dat Tran
Comment from Karin Boixo
Comment from Darlene Noesen
Comment from barbara poland
Comment from Barry Horney
Comment from Jacqueline Eliopoulos
Comment from Richard Crosland
Comment from Beverly Thomas
Comment from Carlene Moscatt
Comment from Ron McGill
Comment from Pam Moore
Comment from Louise Rangel
Comment from Kaylene Schultz
Comment from DANIEL D
Comment from Mavis Belisle
Comment from Irene Roos
Comment from Claudia Martinez
Comment from LINDA SULLIVAN
Comment from Art Van Kampen
Comment from Carson Martin
Comment from Ryan O'Neill
Comment from Debra Wilks
Comment from Sharyn Dreyer
Comment from Pamela Lanagan
Comment from Sarah Sheets
Comment from Lisa Pezzella
Comment from Robert Hyer
Comment from Jack West
Comment from Delores Stachura
Comment from Sharon Ponsford

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-8050
NOAA-NMFS-2020-0031-DRAFT-8051
NOAA-NMFS-2020-0031-DRAFT-8052
NOAA-NMFS-2020-0031-DRAFT-8053
NOAA-NMFS-2020-0031-DRAFT-8054
NOAA-NMFS-2020-0031-DRAFT-8055
NOAA-NMFS-2020-0031-DRAFT-8056
NOAA-NMFS-2020-0031-DRAFT-8057
NOAA-NMFS-2020-0031-DRAFT-8058
NOAA-NMFS-2020-0031-DRAFT-8059
NOAA-NMFS-2020-0031-DRAFT-8060
NOAA-NMFS-2020-0031-DRAFT-8061
NOAA-NMFS-2020-0031-DRAFT-8062
NOAA-NMFS-2020-0031-DRAFT-8063
NOAA-NMFS-2020-0031-DRAFT-8064
NOAA-NMFS-2020-0031-DRAFT-8065
NOAA-NMFS-2020-0031-DRAFT-8066
NOAA-NMFS-2020-0031-DRAFT-8067
NOAA-NMFS-2020-0031-DRAFT-8068
NOAA-NMFS-2020-0031-DRAFT-8069
NOAA-NMFS-2020-0031-DRAFT-8070
NOAA-NMFS-2020-0031-DRAFT-8071
NOAA-NMFS-2020-0031-DRAFT-8072
NOAA-NMFS-2020-0031-DRAFT-8074
NOAA-NMFS-2020-0031-DRAFT-8075
NOAA-NMFS-2020-0031-DRAFT-8076
NOAA-NMFS-2020-0031-DRAFT-8078
NOAA-NMFS-2020-0031-DRAFT-8079
NOAA-NMFS-2020-0031-DRAFT-8080
NOAA-NMFS-2020-0031-DRAFT-8081
NOAA-NMFS-2020-0031-DRAFT-8082
NOAA-NMFS-2020-0031-DRAFT-8084
NOAA-NMFS-2020-0031-DRAFT-8085
NOAA-NMFS-2020-0031-DRAFT-8086
NOAA-NMFS-2020-0031-DRAFT-8087
NOAA-NMFS-2020-0031-DRAFT-8088
NOAA-NMFS-2020-0031-DRAFT-8089
NOAA-NMFS-2020-0031-DRAFT-8090
NOAA-NMFS-2020-0031-DRAFT-8092
NOAA-NMFS-2020-0031-DRAFT-8093
NOAA-NMFS-2020-0031-DRAFT-8094

Comment from Annette bailey
Comment from Sarah Eaton
Comment from Flvio Mendona
Comment from Sara Leonard
Comment from Liz piercey
Comment from Katherine Napolitano
Comment from Liliana Valera
Comment from Sue thornton
Comment from Tena Fleming
Comment from Susan Goldin
Comment from Jeff Martin
Comment from Pamela Edwards
Comment from Anonymous Anonymous
Comment from Susan VanDerzee
Comment from Ilya Speranza
Comment from Constance Merwin
Comment from Scott C. Walker
Comment from Craig Rhoads
Comment from Pamela Taranto
Comment from Jacqueline Nardi
Comment from Renee Ruggeri
Comment from Chris OBrien
Comment from Mikki Lewis
Comment from Marty Murray
Comment from Elaine Eudy
Comment from Margaret Raynolds
Comment from Eve Botelho
Comment from Teresa Morris
Comment from Carrie Davis
Comment from Perry Carter
Comment from Linda Jennings
Comment from Tammy Zier
Comment from nancie Rodriguez
Comment from Lisa Goetz
Comment from Pamela Holmes
Comment from Marilyn Leisz
Comment from Ron Dennis
Comment from Mary Dosch
Comment from Holly Crawford
Comment from Kathleen Healey
Comment from Kathleen Healey

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2888
NOAA-NMFS-2020-0031-DRAFT-2889
NOAA-NMFS-2020-0031-DRAFT-2890
NOAA-NMFS-2020-0031-DRAFT-2891
NOAA-NMFS-2020-0031-DRAFT-2892
NOAA-NMFS-2020-0031-DRAFT-2893
NOAA-NMFS-2020-0031-DRAFT-2894
NOAA-NMFS-2020-0031-DRAFT-2895
NOAA-NMFS-2020-0031-DRAFT-2896
NOAA-NMFS-2020-0031-DRAFT-2897
NOAA-NMFS-2020-0031-DRAFT-2898
NOAA-NMFS-2020-0031-DRAFT-2899
NOAA-NMFS-2020-0031-DRAFT-2900
NOAA-NMFS-2020-0031-DRAFT-2901
NOAA-NMFS-2020-0031-DRAFT-2902
NOAA-NMFS-2020-0031-DRAFT-2903
NOAA-NMFS-2020-0031-DRAFT-2904
NOAA-NMFS-2020-0031-DRAFT-2905
NOAA-NMFS-2020-0031-DRAFT-2906
NOAA-NMFS-2020-0031-DRAFT-2907
NOAA-NMFS-2020-0031-DRAFT-2908
NOAA-NMFS-2020-0031-DRAFT-2909
NOAA-NMFS-2020-0031-DRAFT-2910
NOAA-NMFS-2020-0031-DRAFT-2911
NOAA-NMFS-2020-0031-DRAFT-2912
NOAA-NMFS-2020-0031-DRAFT-2913
NOAA-NMFS-2020-0031-DRAFT-2914
NOAA-NMFS-2020-0031-DRAFT-2915
NOAA-NMFS-2020-0031-DRAFT-2916
NOAA-NMFS-2020-0031-DRAFT-2917
NOAA-NMFS-2020-0031-DRAFT-2918
NOAA-NMFS-2020-0031-DRAFT-2919
NOAA-NMFS-2020-0031-DRAFT-2920
NOAA-NMFS-2020-0031-DRAFT-2921
NOAA-NMFS-2020-0031-DRAFT-2922
NOAA-NMFS-2020-0031-DRAFT-2923
NOAA-NMFS-2020-0031-DRAFT-2924
NOAA-NMFS-2020-0031-DRAFT-2925
NOAA-NMFS-2020-0031-DRAFT-2926
NOAA-NMFS-2020-0031-DRAFT-2927
NOAA-NMFS-2020-0031-DRAFT-2928

Comment from Roberta Glaze
Comment from Ann Bein
Comment from Kate McQueen
Comment from Dan Weprin
Comment from uly silkey
Comment from John Felton
Comment from Tiffany Ehnes
Comment from Pat Dingleberry
Comment from freya christensen
Comment from Bruce Taub
Comment from Janet Murr
Comment from Nalei Kahakalau
Comment from Cynthia Kishinchand
Comment from John Fuhrer
Comment from Gabrielle Swanberg
Comment from Bryan Johns
Comment from Cynthia Smith
Comment from Jan Rydeen
Comment from Noah Hall
Comment from Rodney Whisenhunt
Comment from Don Nardone
Comment from Nicole Weber
Comment from valerie clark
Comment from Elaine Becker
Comment from Crystal Mitchell
Comment from Christine Johnson
Comment from Melissa Hastings
Comment from Sandra MOREY
Comment from karyn barry
Comment from Susan Petersen
Comment from Regina Brooks
Comment from Keith Kellogg
Comment from Robin Reinhart
Comment from Felicia Chase
Comment from Patrick Felix
Comment from Ken Epstein
Comment from Jarrett Cloud
Comment from Lisa Johnson
Comment from lisa Jacobson
Comment from kathy hart
Comment from Jack McCall

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-8095
NOAA-NMFS-2020-0031-DRAFT-8096
NOAA-NMFS-2020-0031-DRAFT-8097
NOAA-NMFS-2020-0031-DRAFT-8098
NOAA-NMFS-2020-0031-DRAFT-8099
NOAA-NMFS-2020-0031-DRAFT-8100
NOAA-NMFS-2020-0031-DRAFT-8101
NOAA-NMFS-2020-0031-DRAFT-8102
NOAA-NMFS-2020-0031-DRAFT-8103
NOAA-NMFS-2020-0031-DRAFT-8104
NOAA-NMFS-2020-0031-DRAFT-8105
NOAA-NMFS-2020-0031-DRAFT-8106
NOAA-NMFS-2020-0031-DRAFT-8107
NOAA-NMFS-2020-0031-DRAFT-8108
NOAA-NMFS-2020-0031-DRAFT-8109
NOAA-NMFS-2020-0031-DRAFT-8110
NOAA-NMFS-2020-0031-DRAFT-8111
NOAA-NMFS-2020-0031-DRAFT-8112
NOAA-NMFS-2020-0031-DRAFT-8113
NOAA-NMFS-2020-0031-DRAFT-8114
NOAA-NMFS-2020-0031-DRAFT-8115
NOAA-NMFS-2020-0031-DRAFT-8116
NOAA-NMFS-2020-0031-DRAFT-8117
NOAA-NMFS-2020-0031-DRAFT-8118
NOAA-NMFS-2020-0031-DRAFT-8119
NOAA-NMFS-2020-0031-DRAFT-8120
NOAA-NMFS-2020-0031-DRAFT-8121
NOAA-NMFS-2020-0031-DRAFT-8122
NOAA-NMFS-2020-0031-DRAFT-8123
NOAA-NMFS-2020-0031-DRAFT-8124
NOAA-NMFS-2020-0031-DRAFT-8125
NOAA-NMFS-2020-0031-DRAFT-8126
NOAA-NMFS-2020-0031-DRAFT-8127
NOAA-NMFS-2020-0031-DRAFT-8128
NOAA-NMFS-2020-0031-DRAFT-8129
NOAA-NMFS-2020-0031-DRAFT-8130
NOAA-NMFS-2020-0031-DRAFT-8131
NOAA-NMFS-2020-0031-DRAFT-8132
NOAA-NMFS-2020-0031-DRAFT-8134
NOAA-NMFS-2020-0031-DRAFT-8135
NOAA-NMFS-2020-0031-DRAFT-8136

Comment from Jacqueline Ellis
Comment from Susan Emery
Comment from Melody Sweet
Comment from Ronald Fuller
Comment from Christine Hilton
Comment from Lynn Langford
Comment from Pat Sherrer
Comment from Tracy Fisk
Comment from TreatPeopleAs
TheyTreatAnimals
Comment from Margaret witt
Comment from kurt dahlke
Comment from Tara McQuade
Comment from Christi Tarallo
Comment from Donna Abear
Comment from Cynthia Holt
Comment from Becky Phillips
Comment from Susan Watts
Comment from Donna Crail-Rugotzke
Comment from Bonnie Harvell
Comment from Mary Afifi
Comment from John Kastner
Comment from Josie Smith
Comment from Debbie Bybee
Comment from Carol B
Comment from Donald Garlit
Comment from Margaret Millman
Comment from Kathie Kingett
Comment from Shannon R
Comment from Terri Robinson
Comment from Patricia Shaskin
Comment from Barb Purdie
Comment from Jacquelyn Barnes
Comment from Arthur Kopelman
Comment from Barbara Doucet
Comment from Suzanne Grill
Comment from Anthony Barris
Comment from russell smith
Comment from Tracey Gilmore
Comment from Sarah Sheehan
Comment from Bettyjane Gibney
Comment from Margaret Matheus

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2929
NOAA-NMFS-2020-0031-DRAFT-2930
NOAA-NMFS-2020-0031-DRAFT-2931
NOAA-NMFS-2020-0031-DRAFT-2932
NOAA-NMFS-2020-0031-DRAFT-2933
NOAA-NMFS-2020-0031-DRAFT-2934
NOAA-NMFS-2020-0031-DRAFT-2935
NOAA-NMFS-2020-0031-DRAFT-2936
NOAA-NMFS-2020-0031-DRAFT-2937
NOAA-NMFS-2020-0031-DRAFT-2938
NOAA-NMFS-2020-0031-DRAFT-2939
NOAA-NMFS-2020-0031-DRAFT-2940
NOAA-NMFS-2020-0031-DRAFT-2941
NOAA-NMFS-2020-0031-DRAFT-2942
NOAA-NMFS-2020-0031-DRAFT-2943
NOAA-NMFS-2020-0031-DRAFT-2944
NOAA-NMFS-2020-0031-DRAFT-2945
NOAA-NMFS-2020-0031-DRAFT-2946
NOAA-NMFS-2020-0031-DRAFT-2947
NOAA-NMFS-2020-0031-DRAFT-2948
NOAA-NMFS-2020-0031-DRAFT-2949
NOAA-NMFS-2020-0031-DRAFT-2950
NOAA-NMFS-2020-0031-DRAFT-2951
NOAA-NMFS-2020-0031-DRAFT-2952
NOAA-NMFS-2020-0031-DRAFT-2953
NOAA-NMFS-2020-0031-DRAFT-2954
NOAA-NMFS-2020-0031-DRAFT-2955
NOAA-NMFS-2020-0031-DRAFT-2956
NOAA-NMFS-2020-0031-DRAFT-2957
NOAA-NMFS-2020-0031-DRAFT-2958
NOAA-NMFS-2020-0031-DRAFT-2959
NOAA-NMFS-2020-0031-DRAFT-2960
NOAA-NMFS-2020-0031-DRAFT-2961
NOAA-NMFS-2020-0031-DRAFT-2962
NOAA-NMFS-2020-0031-DRAFT-2963
NOAA-NMFS-2020-0031-DRAFT-2964
NOAA-NMFS-2020-0031-DRAFT-2965
NOAA-NMFS-2020-0031-DRAFT-2966
NOAA-NMFS-2020-0031-DRAFT-2967
NOAA-NMFS-2020-0031-DRAFT-2968
NOAA-NMFS-2020-0031-DRAFT-2969

Comment from Spencer Adams
Comment from Maria Balicka
Comment from Maureen McCool
Comment from Tammera Hinshaw
Comment from kay bushnell
Comment from Dan Larson
Comment from Debra Swartz
Comment from Joyce Harrington
Comment from Denise Hosta
Comment from Kat Klahn
Comment from Sidney Goldstein
Comment from Rosemary Seifert-Graf
Comment from Heather Collins
Comment from Susanne Press
Comment from Kelley Quattruccci
Comment from Donna Frye
Comment from Jennifer Salhus
Comment from ROBERTA SEBASTIAN
Comment from Susan Cox
Comment from karen stickney
Comment from Mari McShane
Comment from LAURIE HARDIES
Comment from John Petrak
Comment from Laura Zerr
Comment from Pat Magrath
Comment from Trish Dobereiner
Comment from Gary Droeger
Comment from Linda Herron
Comment from Wendy Garbart
Comment from Laurie Stoker
Comment from Arlene Macintosh
Comment from Kathleen MalanThompson
Comment from Shari Johnson
Comment from Rita Gagliani
Comment from Arden Green
Comment from Michelle Davis
Comment from Michael Tomczyszyn
Comment from Georgeanne Samuelson
Comment from Tracey Aquino
Comment from Bobbi Segal
Comment from Susan Termini

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-8137
NOAA-NMFS-2020-0031-DRAFT-8138
NOAA-NMFS-2020-0031-DRAFT-8139
NOAA-NMFS-2020-0031-DRAFT-8140
NOAA-NMFS-2020-0031-DRAFT-8141
NOAA-NMFS-2020-0031-DRAFT-8142
NOAA-NMFS-2020-0031-DRAFT-8143
NOAA-NMFS-2020-0031-DRAFT-8144
NOAA-NMFS-2020-0031-DRAFT-8145
NOAA-NMFS-2020-0031-DRAFT-8146
NOAA-NMFS-2020-0031-DRAFT-8147
NOAA-NMFS-2020-0031-DRAFT-8148
NOAA-NMFS-2020-0031-DRAFT-8149
NOAA-NMFS-2020-0031-DRAFT-8150
NOAA-NMFS-2020-0031-DRAFT-8152
NOAA-NMFS-2020-0031-DRAFT-8153
NOAA-NMFS-2020-0031-DRAFT-8154
NOAA-NMFS-2020-0031-DRAFT-8155
NOAA-NMFS-2020-0031-DRAFT-8156
NOAA-NMFS-2020-0031-DRAFT-8157
NOAA-NMFS-2020-0031-DRAFT-8158
NOAA-NMFS-2020-0031-DRAFT-8159
NOAA-NMFS-2020-0031-DRAFT-8160
NOAA-NMFS-2020-0031-DRAFT-8161
NOAA-NMFS-2020-0031-DRAFT-8162
NOAA-NMFS-2020-0031-DRAFT-8163
NOAA-NMFS-2020-0031-DRAFT-8164
NOAA-NMFS-2020-0031-DRAFT-8165
NOAA-NMFS-2020-0031-DRAFT-8166
NOAA-NMFS-2020-0031-DRAFT-8167
NOAA-NMFS-2020-0031-DRAFT-8169
NOAA-NMFS-2020-0031-DRAFT-8170
NOAA-NMFS-2020-0031-DRAFT-8171
NOAA-NMFS-2020-0031-DRAFT-8172
NOAA-NMFS-2020-0031-DRAFT-8173
NOAA-NMFS-2020-0031-DRAFT-8174
NOAA-NMFS-2020-0031-DRAFT-8175
NOAA-NMFS-2020-0031-DRAFT-8176
NOAA-NMFS-2020-0031-DRAFT-8177
NOAA-NMFS-2020-0031-DRAFT-8178
NOAA-NMFS-2020-0031-DRAFT-8179

Comment from Tim Eaton
Comment from Cindy Childers
Comment from Diane Kent
Comment from Darlene Banach
Comment from Cindy Beck
Comment from Wendy Lukowitz
Comment from Sam Right
Comment from Gloria Cerreta
Comment from Carol Long
Comment from Anonymous Anonymous
Comment from Mary Lewis
Comment from Shelly Skidmore
Comment from Noreen Guregian
Comment from karen Moulder
Comment from Peter Jones
Comment from Andrew Werthmann
Comment from jose de Arteaga
Comment from Mary Wylie
Comment from Jaedra Luke
Comment from Kathleen Arnold
Comment from Brad Bowers
Comment from Susan Gottfried
Comment from Georgia Arbo
Comment from christine morgan
Comment from Chris Tonkinson
Comment from Donald Chambers
Comment from Annette Luffman-Johnson
Comment from Robin Ladouceur
Comment from Mary Metzger
Comment from Maryann Staron
Comment from Sandra Couch
Comment from Susan Stone
Comment from Jose Duran
Comment from Lindsay Byrne
Comment from Terrie Tannehill
Comment from Rita Ryder
Comment from Mike Rigoli
Comment from Sammy Low
Comment from Sharon Philipson
Comment from Deborah Santone
Comment from Mark Cohen

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-2970
NOAA-NMFS-2020-0031-DRAFT-2971
NOAA-NMFS-2020-0031-DRAFT-2972
NOAA-NMFS-2020-0031-DRAFT-2973
NOAA-NMFS-2020-0031-DRAFT-2974
NOAA-NMFS-2020-0031-DRAFT-2975
NOAA-NMFS-2020-0031-DRAFT-2976
NOAA-NMFS-2020-0031-DRAFT-2977
NOAA-NMFS-2020-0031-DRAFT-2978
NOAA-NMFS-2020-0031-DRAFT-2979
NOAA-NMFS-2020-0031-DRAFT-2980
NOAA-NMFS-2020-0031-DRAFT-2981
NOAA-NMFS-2020-0031-DRAFT-2982
NOAA-NMFS-2020-0031-DRAFT-2983
NOAA-NMFS-2020-0031-DRAFT-2984
NOAA-NMFS-2020-0031-DRAFT-2985
NOAA-NMFS-2020-0031-DRAFT-2986
NOAA-NMFS-2020-0031-DRAFT-2987
NOAA-NMFS-2020-0031-DRAFT-2988
NOAA-NMFS-2020-0031-DRAFT-2989
NOAA-NMFS-2020-0031-DRAFT-2990
NOAA-NMFS-2020-0031-DRAFT-2991
NOAA-NMFS-2020-0031-DRAFT-2992
NOAA-NMFS-2020-0031-DRAFT-2993
NOAA-NMFS-2020-0031-DRAFT-2994
NOAA-NMFS-2020-0031-DRAFT-2995
NOAA-NMFS-2020-0031-DRAFT-2996
NOAA-NMFS-2020-0031-DRAFT-2997
NOAA-NMFS-2020-0031-DRAFT-2998
NOAA-NMFS-2020-0031-DRAFT-2999
NOAA-NMFS-2020-0031-DRAFT-3000
NOAA-NMFS-2020-0031-DRAFT-3001
NOAA-NMFS-2020-0031-DRAFT-3002
NOAA-NMFS-2020-0031-DRAFT-3003
NOAA-NMFS-2020-0031-DRAFT-3004
NOAA-NMFS-2020-0031-DRAFT-3005
NOAA-NMFS-2020-0031-DRAFT-3006
NOAA-NMFS-2020-0031-DRAFT-3007
NOAA-NMFS-2020-0031-DRAFT-3008
NOAA-NMFS-2020-0031-DRAFT-3009
NOAA-NMFS-2020-0031-DRAFT-3010

Comment from Dianne Hurst
Comment from Michele Coakley
Comment from Georgia Mattingly
Comment from steve mcmahon
Comment from KENNY BONNIE
Comment from Mr. Morningstar
Comment from Connie Trea
Comment from Sue Hayden
Comment from Lynn Merle
Comment from Elizabeth Johnson
Comment from Melissa Miller
Comment from Jo Harvey
Comment from Elizabeth Watts
Comment from Dorothea King
Comment from Gene Majewski
Comment from Krista Taylor
Comment from Yola Hesser
Comment from Maryrose Cimino
Comment from Harry Freiberg
Comment from Margo Vanderhill
Comment from Davis Wolf
Comment from Pat MacRae
Comment from Jan Letson
Comment from Sandy Zelasko
Comment from Jared Collins
Comment from Gabrielle Peak
Comment from SHARON KOESTER
Comment from Michael Stuart
Comment from Frank Seewester
Comment from N. Kaluza
Comment from Linda Ross
Comment from Dorothy Russell
Comment from Marni Holmes
Comment from Nora Lewis
Comment from Tina Ann
Comment from Steven Keena
Comment from David Soares
Comment from Joann Sonenstein
Comment from Gary Goetz
Comment from Mary Wylie
Comment from Robert Flath

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/04/2021
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02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-8180
NOAA-NMFS-2020-0031-DRAFT-8181
NOAA-NMFS-2020-0031-DRAFT-8182
NOAA-NMFS-2020-0031-DRAFT-8183
NOAA-NMFS-2020-0031-DRAFT-8184
NOAA-NMFS-2020-0031-DRAFT-8185
NOAA-NMFS-2020-0031-DRAFT-8186
NOAA-NMFS-2020-0031-DRAFT-8187
NOAA-NMFS-2020-0031-DRAFT-8188
NOAA-NMFS-2020-0031-DRAFT-8189
NOAA-NMFS-2020-0031-DRAFT-8190
NOAA-NMFS-2020-0031-DRAFT-8191
NOAA-NMFS-2020-0031-DRAFT-8192
NOAA-NMFS-2020-0031-DRAFT-8193
NOAA-NMFS-2020-0031-DRAFT-8194
NOAA-NMFS-2020-0031-DRAFT-8195
NOAA-NMFS-2020-0031-DRAFT-8196
NOAA-NMFS-2020-0031-DRAFT-8197
NOAA-NMFS-2020-0031-DRAFT-8198
NOAA-NMFS-2020-0031-DRAFT-8199
NOAA-NMFS-2020-0031-DRAFT-8200
NOAA-NMFS-2020-0031-DRAFT-8201
NOAA-NMFS-2020-0031-DRAFT-8202
NOAA-NMFS-2020-0031-DRAFT-8203
NOAA-NMFS-2020-0031-DRAFT-8204
NOAA-NMFS-2020-0031-DRAFT-8205
NOAA-NMFS-2020-0031-DRAFT-8206
NOAA-NMFS-2020-0031-DRAFT-8207
NOAA-NMFS-2020-0031-DRAFT-8209
NOAA-NMFS-2020-0031-DRAFT-8210
NOAA-NMFS-2020-0031-DRAFT-8211
NOAA-NMFS-2020-0031-DRAFT-8212
NOAA-NMFS-2020-0031-DRAFT-8213
NOAA-NMFS-2020-0031-DRAFT-8214
NOAA-NMFS-2020-0031-DRAFT-8215
NOAA-NMFS-2020-0031-DRAFT-8216
NOAA-NMFS-2020-0031-DRAFT-8217
NOAA-NMFS-2020-0031-DRAFT-8218
NOAA-NMFS-2020-0031-DRAFT-8219
NOAA-NMFS-2020-0031-DRAFT-8220
NOAA-NMFS-2020-0031-DRAFT-8221

Comment from DR. BOB WALLING
Comment from Sandra McKinney
Comment from Susan Wolfgram
Comment from Robbie Hacha
Comment from Sharilyn Kading
Comment from Charlie Johnson
Comment from Emily Anderson
Comment from Kathleen Tuttle
Comment from Barbara Kass
Comment from Laura Herndon
Comment from Bernard Rafferty
Comment from Johanna Cox
Comment from Ellen McCann
Comment from Steven Collins
Comment from Mera Kenney
Comment from David Ellringer
Comment from Loren Wieland
Comment from Anonymous Anonymous
Comment from Holly Powell
Comment from JUANITA MOCARSKI
Comment from Michelle Wallhagen
Comment from Louis Vega
Comment from Anastasia Vishnevsky
Comment from Haven Knight
Comment from Sophie Zyla
Comment from Rebecca Lamoreaux
Comment from Jennifer Hayes
Comment from Kelly House
Comment from Olivia Busuttil Cashman
Comment from Robbie Hacha
Comment from Jennifer Cason
Comment from Joseph Molotsky
Comment from MItchell Dormont
Comment from Nancy Hanson
Comment from leslie spoon
Comment from Michael Olenjack
Comment from Peter Maguire
Comment from Andy Becker
Comment from Kim OSteen
Comment from Maisie Devine
Comment from Nancy Horvath

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3011
NOAA-NMFS-2020-0031-DRAFT-3012
NOAA-NMFS-2020-0031-DRAFT-3013
NOAA-NMFS-2020-0031-DRAFT-3014
NOAA-NMFS-2020-0031-DRAFT-3015
NOAA-NMFS-2020-0031-DRAFT-3016
NOAA-NMFS-2020-0031-DRAFT-3017
NOAA-NMFS-2020-0031-DRAFT-3018
NOAA-NMFS-2020-0031-DRAFT-3019
NOAA-NMFS-2020-0031-DRAFT-3020
NOAA-NMFS-2020-0031-DRAFT-3021
NOAA-NMFS-2020-0031-DRAFT-3022
NOAA-NMFS-2020-0031-DRAFT-3023
NOAA-NMFS-2020-0031-DRAFT-3024
NOAA-NMFS-2020-0031-DRAFT-3025
NOAA-NMFS-2020-0031-DRAFT-3026
NOAA-NMFS-2020-0031-DRAFT-3027
NOAA-NMFS-2020-0031-DRAFT-3028
NOAA-NMFS-2020-0031-DRAFT-3029
NOAA-NMFS-2020-0031-DRAFT-3030
NOAA-NMFS-2020-0031-DRAFT-3031
NOAA-NMFS-2020-0031-DRAFT-3032
NOAA-NMFS-2020-0031-DRAFT-3033
NOAA-NMFS-2020-0031-DRAFT-3034
NOAA-NMFS-2020-0031-DRAFT-3035
NOAA-NMFS-2020-0031-DRAFT-3036
NOAA-NMFS-2020-0031-DRAFT-3037
NOAA-NMFS-2020-0031-DRAFT-3038
NOAA-NMFS-2020-0031-DRAFT-3039
NOAA-NMFS-2020-0031-DRAFT-3040
NOAA-NMFS-2020-0031-DRAFT-3041
NOAA-NMFS-2020-0031-DRAFT-3042
NOAA-NMFS-2020-0031-DRAFT-3043
NOAA-NMFS-2020-0031-DRAFT-3044
NOAA-NMFS-2020-0031-DRAFT-3045
NOAA-NMFS-2020-0031-DRAFT-3046
NOAA-NMFS-2020-0031-DRAFT-3047
NOAA-NMFS-2020-0031-DRAFT-3048
NOAA-NMFS-2020-0031-DRAFT-3049
NOAA-NMFS-2020-0031-DRAFT-3050
NOAA-NMFS-2020-0031-DRAFT-3051

Comment from James Ed.D.
Comment from Rachel Wolf
Comment from Frank Ostlinger
Comment from Nancy Sidebotham
Comment from Jennifer Otto
Comment from George Walther
Comment from Phyllis Komesor
Comment from Irene Svete
Comment from Annette Dekanich
Comment from pamela guyon
Comment from Martin Evans
Comment from Michael Renfrow
Comment from Anissa Gage
Comment from Melinda Campos
Comment from Rhenda Price
Comment from Brad Yoho
Comment from Jane schmit
Comment from Michael Miller
Comment from Jay Wolff
Comment from Kaitlyn Peeler
Comment from Mary Wolney
Comment from K. Keiser
Comment from Susan Worden
Comment from Marlena Lange
Comment from Richard Henshaw
Comment from S Tyroler
Comment from Sally Brown
Comment from Darrell Clarke
Comment from Margaret Lohr
Comment from Sue Michelson
Comment from Lorraine Johnson
Comment from laura raforth
Comment from Susan Preston
Comment from Dennis McGee
Comment from Michele Rose
Comment from Laura Pakaln
Comment from Sonia Wilson
Comment from Terri Henry
Comment from Leonard Meyer
Comment from Susan Gresens
Comment from Mary Decker

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
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02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8222
NOAA-NMFS-2020-0031-DRAFT-8223
NOAA-NMFS-2020-0031-DRAFT-8224
NOAA-NMFS-2020-0031-DRAFT-8225
NOAA-NMFS-2020-0031-DRAFT-8226
NOAA-NMFS-2020-0031-DRAFT-8227
NOAA-NMFS-2020-0031-DRAFT-8228
NOAA-NMFS-2020-0031-DRAFT-8229
NOAA-NMFS-2020-0031-DRAFT-8230
NOAA-NMFS-2020-0031-DRAFT-8231
NOAA-NMFS-2020-0031-DRAFT-8232
NOAA-NMFS-2020-0031-DRAFT-8233
NOAA-NMFS-2020-0031-DRAFT-8234
NOAA-NMFS-2020-0031-DRAFT-8235
NOAA-NMFS-2020-0031-DRAFT-8236
NOAA-NMFS-2020-0031-DRAFT-8237
NOAA-NMFS-2020-0031-DRAFT-8238
NOAA-NMFS-2020-0031-DRAFT-8239
NOAA-NMFS-2020-0031-DRAFT-8240
NOAA-NMFS-2020-0031-DRAFT-8241
NOAA-NMFS-2020-0031-DRAFT-8242
NOAA-NMFS-2020-0031-DRAFT-8243
NOAA-NMFS-2020-0031-DRAFT-8244
NOAA-NMFS-2020-0031-DRAFT-8245
NOAA-NMFS-2020-0031-DRAFT-8247
NOAA-NMFS-2020-0031-DRAFT-8248
NOAA-NMFS-2020-0031-DRAFT-8249
NOAA-NMFS-2020-0031-DRAFT-8250
NOAA-NMFS-2020-0031-DRAFT-8251
NOAA-NMFS-2020-0031-DRAFT-8253
NOAA-NMFS-2020-0031-DRAFT-8254
NOAA-NMFS-2020-0031-DRAFT-8255
NOAA-NMFS-2020-0031-DRAFT-8256
NOAA-NMFS-2020-0031-DRAFT-8257
NOAA-NMFS-2020-0031-DRAFT-8258
NOAA-NMFS-2020-0031-DRAFT-8259
NOAA-NMFS-2020-0031-DRAFT-8260
NOAA-NMFS-2020-0031-DRAFT-8261
NOAA-NMFS-2020-0031-DRAFT-8262
NOAA-NMFS-2020-0031-DRAFT-8263
NOAA-NMFS-2020-0031-DRAFT-8264

Comment from Christine Zane-Ott
Comment from Angela Marte
Comment from Chris Buske
Comment from Laurel Yost
Comment from Peter Rosenbaum
Comment from Grant Fujii
Comment from Joshua Skolnick
Comment from Dana Palka
Comment from susanne moh
Comment from Christopher Greffin
Comment from Erika Boka
Comment from Susan OBrien
Comment from Subathra Sudarsan
Comment from Melissa Warfield
Comment from Shani Schulman
Comment from Eric Spiegel
Comment from Brenda Psaras
Comment from Linda Knowles
Comment from L Gols
Comment from Carmen Harbuck
Comment from Robert Hensman
Comment from Caroll Franklin
Comment from Anna Stein
Comment from Ann Russell
Comment from Judy Remington
Comment from Rochelle Crunk
Comment from Michelle Wood
Comment from Joan Miller
Comment from Jan Shimp
Comment from Barbara Jannicelli
Comment from Ya Hui Shih
Comment from Evelyn Scimone
Comment from Cynthia Smith
Comment from Donna LaMotte
Comment from Ken Brown
Comment from Ken Brown
Comment from Ken Brown
Comment from Helene Fanara
Comment from Conall Chambers
Comment from angela torres
Comment from Maria Searles

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3052
NOAA-NMFS-2020-0031-DRAFT-3053
NOAA-NMFS-2020-0031-DRAFT-3054
NOAA-NMFS-2020-0031-DRAFT-3055
NOAA-NMFS-2020-0031-DRAFT-3056
NOAA-NMFS-2020-0031-DRAFT-3057
NOAA-NMFS-2020-0031-DRAFT-3058
NOAA-NMFS-2020-0031-DRAFT-3059
NOAA-NMFS-2020-0031-DRAFT-3060
NOAA-NMFS-2020-0031-DRAFT-3061
NOAA-NMFS-2020-0031-DRAFT-3062
NOAA-NMFS-2020-0031-DRAFT-3063
NOAA-NMFS-2020-0031-DRAFT-3064
NOAA-NMFS-2020-0031-DRAFT-3065
NOAA-NMFS-2020-0031-DRAFT-3066
NOAA-NMFS-2020-0031-DRAFT-3067
NOAA-NMFS-2020-0031-DRAFT-3068
NOAA-NMFS-2020-0031-DRAFT-3069
NOAA-NMFS-2020-0031-DRAFT-3070
NOAA-NMFS-2020-0031-DRAFT-3071
NOAA-NMFS-2020-0031-DRAFT-3072
NOAA-NMFS-2020-0031-DRAFT-3073
NOAA-NMFS-2020-0031-DRAFT-3074
NOAA-NMFS-2020-0031-DRAFT-3075
NOAA-NMFS-2020-0031-DRAFT-3076
NOAA-NMFS-2020-0031-DRAFT-3077
NOAA-NMFS-2020-0031-DRAFT-3078
NOAA-NMFS-2020-0031-DRAFT-3079
NOAA-NMFS-2020-0031-DRAFT-3080
NOAA-NMFS-2020-0031-DRAFT-3081
NOAA-NMFS-2020-0031-DRAFT-3082
NOAA-NMFS-2020-0031-DRAFT-3083
NOAA-NMFS-2020-0031-DRAFT-3084
NOAA-NMFS-2020-0031-DRAFT-3085
NOAA-NMFS-2020-0031-DRAFT-3086
NOAA-NMFS-2020-0031-DRAFT-3087
NOAA-NMFS-2020-0031-DRAFT-3088
NOAA-NMFS-2020-0031-DRAFT-3089
NOAA-NMFS-2020-0031-DRAFT-3090
NOAA-NMFS-2020-0031-DRAFT-3091
NOAA-NMFS-2020-0031-DRAFT-3092

Comment from Richard Worth
Comment from Gina Johansen
Comment from Janet Howe
Comment from Ed Fiedler
Comment from Joan Hughes
Comment from Robert Kessler
Comment from Scott Carr
Comment from susanne berntsson
Comment from Judy Savard
Comment from Maria Aragon
Comment from Tina Brenza
Comment from Lesley Meyer
Comment from J.A. Perry
Comment from Andrea Kaufman
Comment from MS Martin
Comment from robin mater
Comment from T Hibben
Comment from Shannon Markley
Comment from Gail Frost
Comment from Deon Bell
Comment from kathleen fernandez
Comment from Eric Tauer
Comment from Dana Palka
Comment from Sara Burgess
Comment from carolyn massey
Comment from Arielle Verinis
Comment from Joyce Davis
Comment from Gayla Cremin
Comment from Nancy Harlow
Comment from Race Margery
Comment from chris anctil
Comment from Tami Lukachy
Comment from Candace Rocha
Comment from Kathy Abby
Comment from Katherine Wright
Comment from Jamie Owens
Comment from Wade McCallum
Comment from Charlotte Pisoni
Comment from Cynthia Pirie
Comment from Jim Howard
Comment from carolyn massey

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8265
NOAA-NMFS-2020-0031-DRAFT-8266
NOAA-NMFS-2020-0031-DRAFT-8267
NOAA-NMFS-2020-0031-DRAFT-8268
NOAA-NMFS-2020-0031-DRAFT-8269
NOAA-NMFS-2020-0031-DRAFT-8270
NOAA-NMFS-2020-0031-DRAFT-8271
NOAA-NMFS-2020-0031-DRAFT-8272
NOAA-NMFS-2020-0031-DRAFT-8273
NOAA-NMFS-2020-0031-DRAFT-8274
NOAA-NMFS-2020-0031-DRAFT-8275
NOAA-NMFS-2020-0031-DRAFT-8276
NOAA-NMFS-2020-0031-DRAFT-8277
NOAA-NMFS-2020-0031-DRAFT-8278
NOAA-NMFS-2020-0031-DRAFT-8279
NOAA-NMFS-2020-0031-DRAFT-8280
NOAA-NMFS-2020-0031-DRAFT-8281
NOAA-NMFS-2020-0031-DRAFT-8282
NOAA-NMFS-2020-0031-DRAFT-8283
NOAA-NMFS-2020-0031-DRAFT-8284
NOAA-NMFS-2020-0031-DRAFT-8285
NOAA-NMFS-2020-0031-DRAFT-8286
NOAA-NMFS-2020-0031-DRAFT-8287
NOAA-NMFS-2020-0031-DRAFT-8288
NOAA-NMFS-2020-0031-DRAFT-8289
NOAA-NMFS-2020-0031-DRAFT-8290
NOAA-NMFS-2020-0031-DRAFT-8291
NOAA-NMFS-2020-0031-DRAFT-8292
NOAA-NMFS-2020-0031-DRAFT-8293
NOAA-NMFS-2020-0031-DRAFT-8294
NOAA-NMFS-2020-0031-DRAFT-8296
NOAA-NMFS-2020-0031-DRAFT-8299
NOAA-NMFS-2020-0031-DRAFT-8301
NOAA-NMFS-2020-0031-DRAFT-8302
NOAA-NMFS-2020-0031-DRAFT-8305
NOAA-NMFS-2020-0031-DRAFT-8306
NOAA-NMFS-2020-0031-DRAFT-8307
NOAA-NMFS-2020-0031-DRAFT-8308
NOAA-NMFS-2020-0031-DRAFT-8309
NOAA-NMFS-2020-0031-DRAFT-8311
NOAA-NMFS-2020-0031-DRAFT-8312

Comment from Aileen Scuratok
Comment from Julie Becker
Comment from Linda Tesser
Comment from Tina Blankenship
Comment from Charlotte Webb
Comment from Morgan Smith
Comment from Linda Chesky
Comment from Laura Hensley
Comment from Brenda Guilford
Comment from Nancy Vinson
Comment from Amy Roberts
Comment from Ray Hester
Comment from Pamela Check
Comment from Leslee Duncan
Comment from Crystal Strauch
Comment from Deborah Mangan
Comment from Krys McConville
Comment from Thomas Sanders
Comment from Jeanette Briscoe
Comment from Louis Lodyga
Comment from Linda Hendrickson
Comment from Sharon Jones
Comment from Jacqueline Rojas
Comment from Mary Neiderhiser
Comment from Shelly Skidmore
Comment from Shamus lol
Comment from Glenna Waterman
Comment from Elina Krki
Comment from Marilyn mckinstry
Comment from Holly DesVergnes
Comment from Maria Shepard
Comment from Robert Fisher
Comment from Maryann Collins
Comment from Kristen Soothill
Comment from John McClendon
Comment from Cary Bennett
Comment from Megan Wood
Comment from Monica Depaul
Comment from Kevin Hughes
Comment from Sonja Lowenfish
Comment from Tanya Manning

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3093
NOAA-NMFS-2020-0031-DRAFT-3094
NOAA-NMFS-2020-0031-DRAFT-3095
NOAA-NMFS-2020-0031-DRAFT-3096
NOAA-NMFS-2020-0031-DRAFT-3097
NOAA-NMFS-2020-0031-DRAFT-3098
NOAA-NMFS-2020-0031-DRAFT-3099
NOAA-NMFS-2020-0031-DRAFT-3100
NOAA-NMFS-2020-0031-DRAFT-3101
NOAA-NMFS-2020-0031-DRAFT-3102
NOAA-NMFS-2020-0031-DRAFT-3103
NOAA-NMFS-2020-0031-DRAFT-3104
NOAA-NMFS-2020-0031-DRAFT-3105
NOAA-NMFS-2020-0031-DRAFT-3106
NOAA-NMFS-2020-0031-DRAFT-3107
NOAA-NMFS-2020-0031-DRAFT-3108
NOAA-NMFS-2020-0031-DRAFT-3109
NOAA-NMFS-2020-0031-DRAFT-3110
NOAA-NMFS-2020-0031-DRAFT-3111
NOAA-NMFS-2020-0031-DRAFT-3112
NOAA-NMFS-2020-0031-DRAFT-3113
NOAA-NMFS-2020-0031-DRAFT-3114
NOAA-NMFS-2020-0031-DRAFT-3115
NOAA-NMFS-2020-0031-DRAFT-3116
NOAA-NMFS-2020-0031-DRAFT-3117
NOAA-NMFS-2020-0031-DRAFT-3118
NOAA-NMFS-2020-0031-DRAFT-3119
NOAA-NMFS-2020-0031-DRAFT-3120
NOAA-NMFS-2020-0031-DRAFT-3121
NOAA-NMFS-2020-0031-DRAFT-3122
NOAA-NMFS-2020-0031-DRAFT-3123
NOAA-NMFS-2020-0031-DRAFT-3124
NOAA-NMFS-2020-0031-DRAFT-3125
NOAA-NMFS-2020-0031-DRAFT-3126
NOAA-NMFS-2020-0031-DRAFT-3127
NOAA-NMFS-2020-0031-DRAFT-3128
NOAA-NMFS-2020-0031-DRAFT-3129
NOAA-NMFS-2020-0031-DRAFT-3130
NOAA-NMFS-2020-0031-DRAFT-3131
NOAA-NMFS-2020-0031-DRAFT-3132
NOAA-NMFS-2020-0031-DRAFT-3133

Comment from Taylor Surratt
Comment from Debra Gley
Comment from Mark Chudzik
Comment from Chris Law
Comment from Charlotte Pisoni
Comment from Silvia Hall
Comment from Roberta Schear
Comment from Jillian Unger
Comment from jo crane
Comment from Eyad Buhaissi
Comment from STACIE CHARLEBOIS
Comment from Patricia Carlton
Comment from Roseann Santangelo
Comment from Ronald Jacob
Comment from Ellen Dexter
Comment from Carol Robinson
Comment from Chris Jasinski
Comment from Nina Kornstein
Comment from Alan CITRON
Comment from Leah LeFebvre
Comment from Marsha Byrne
Comment from s. cook
Comment from Dona LaSchiava
Comment from Joshua Wang
Comment from Daniel Rebson
Comment from allie palmer
Comment from Carol Patterson
Comment from Brenda Thompson
Comment from Vincent Vandenbosch
Comment from Sarah Salter
Comment from Jim Abbondante
Comment from Robert Mammon
Comment from kelvin hobson
Comment from Diane Craig
Comment from Lori Williams
Comment from Jeannie Roberts
Comment from Laurence Margolis
Comment from Linda Pawloski
Comment from Kenneth Large
Comment from ROBIN HUDSON
Comment from Gary Binderim

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
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02/05/2021
02/05/2021
02/05/2021
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02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8313
NOAA-NMFS-2020-0031-DRAFT-8314
NOAA-NMFS-2020-0031-DRAFT-8315
NOAA-NMFS-2020-0031-DRAFT-8316
NOAA-NMFS-2020-0031-DRAFT-8317
NOAA-NMFS-2020-0031-DRAFT-8318
NOAA-NMFS-2020-0031-DRAFT-8319
NOAA-NMFS-2020-0031-DRAFT-8320
NOAA-NMFS-2020-0031-DRAFT-8321
NOAA-NMFS-2020-0031-DRAFT-8322
NOAA-NMFS-2020-0031-DRAFT-8323
NOAA-NMFS-2020-0031-DRAFT-8324
NOAA-NMFS-2020-0031-DRAFT-8325
NOAA-NMFS-2020-0031-DRAFT-8326
NOAA-NMFS-2020-0031-DRAFT-8327
NOAA-NMFS-2020-0031-DRAFT-8328
NOAA-NMFS-2020-0031-DRAFT-8329
NOAA-NMFS-2020-0031-DRAFT-8330
NOAA-NMFS-2020-0031-DRAFT-8331
NOAA-NMFS-2020-0031-DRAFT-8332
NOAA-NMFS-2020-0031-DRAFT-8333
NOAA-NMFS-2020-0031-DRAFT-8334
NOAA-NMFS-2020-0031-DRAFT-8335
NOAA-NMFS-2020-0031-DRAFT-8336
NOAA-NMFS-2020-0031-DRAFT-8337
NOAA-NMFS-2020-0031-DRAFT-8338
NOAA-NMFS-2020-0031-DRAFT-8339
NOAA-NMFS-2020-0031-DRAFT-8340
NOAA-NMFS-2020-0031-DRAFT-8341
NOAA-NMFS-2020-0031-DRAFT-8342
NOAA-NMFS-2020-0031-DRAFT-8343
NOAA-NMFS-2020-0031-DRAFT-8345
NOAA-NMFS-2020-0031-DRAFT-8346
NOAA-NMFS-2020-0031-DRAFT-8347
NOAA-NMFS-2020-0031-DRAFT-8348
NOAA-NMFS-2020-0031-DRAFT-8349
NOAA-NMFS-2020-0031-DRAFT-8350
NOAA-NMFS-2020-0031-DRAFT-8351
NOAA-NMFS-2020-0031-DRAFT-8352
NOAA-NMFS-2020-0031-DRAFT-8353
NOAA-NMFS-2020-0031-DRAFT-8354

Comment from Jane Gerardi
Comment from Carmen Dominguez
Comment from William Morris
Comment from Kelly Langlois
Comment from Linda Phelan
Comment from Lillian Pintado
Comment from Debora Hojda
Comment from Susan Kuehnling
Comment from JULIA SHIELDS
Comment from Gayle Edelman-Tolchin
Comment from Gloria Navan
Comment from Cynthia Allen
Comment from Liz piercey
Comment from Donald Lubowicki
Comment from Jennifer teffer
Comment from Jacqueline semit
Comment from Julie Guido
Comment from Virginia Deary
Comment from Va Boyle
Comment from Orva M Gullett
Comment from Thomas Sanders
Comment from Teri-Lynn Colgan
Comment from Robin Bornstein
Comment from KAREN SMITH
Comment from Sharon Bender
Comment from Terry Porter-Fahey
Comment from Nan Beatty
Comment from Judy Weller
Comment from Amy Halstead
Comment from Karen McHugh
Comment from Mark Lotito
Comment from Joyce Shovah
Comment from Oganedba Craig
Comment from Kathy Sorrentino
Comment from Donna D'Fini
Comment from Nicole Cayer
Comment from Kiran Athavale
Comment from Teiju Lahti
Comment from Marie Zwicker
Comment from Loren Ficca
Comment from April Chenevert

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3134
NOAA-NMFS-2020-0031-DRAFT-3135
NOAA-NMFS-2020-0031-DRAFT-3136
NOAA-NMFS-2020-0031-DRAFT-3137
NOAA-NMFS-2020-0031-DRAFT-3138
NOAA-NMFS-2020-0031-DRAFT-3139
NOAA-NMFS-2020-0031-DRAFT-3140
NOAA-NMFS-2020-0031-DRAFT-3141
NOAA-NMFS-2020-0031-DRAFT-3142
NOAA-NMFS-2020-0031-DRAFT-3143
NOAA-NMFS-2020-0031-DRAFT-3144
NOAA-NMFS-2020-0031-DRAFT-3145
NOAA-NMFS-2020-0031-DRAFT-3146
NOAA-NMFS-2020-0031-DRAFT-3147
NOAA-NMFS-2020-0031-DRAFT-3148
NOAA-NMFS-2020-0031-DRAFT-3149
NOAA-NMFS-2020-0031-DRAFT-3150
NOAA-NMFS-2020-0031-DRAFT-3151
NOAA-NMFS-2020-0031-DRAFT-3152
NOAA-NMFS-2020-0031-DRAFT-3153
NOAA-NMFS-2020-0031-DRAFT-3154
NOAA-NMFS-2020-0031-DRAFT-3155
NOAA-NMFS-2020-0031-DRAFT-3156
NOAA-NMFS-2020-0031-DRAFT-3157
NOAA-NMFS-2020-0031-DRAFT-3158
NOAA-NMFS-2020-0031-DRAFT-3159
NOAA-NMFS-2020-0031-DRAFT-3160
NOAA-NMFS-2020-0031-DRAFT-3161
NOAA-NMFS-2020-0031-DRAFT-3162
NOAA-NMFS-2020-0031-DRAFT-3163
NOAA-NMFS-2020-0031-DRAFT-3164
NOAA-NMFS-2020-0031-DRAFT-3165
NOAA-NMFS-2020-0031-DRAFT-3166
NOAA-NMFS-2020-0031-DRAFT-3167
NOAA-NMFS-2020-0031-DRAFT-3168
NOAA-NMFS-2020-0031-DRAFT-3169
NOAA-NMFS-2020-0031-DRAFT-3170
NOAA-NMFS-2020-0031-DRAFT-3171
NOAA-NMFS-2020-0031-DRAFT-3172
NOAA-NMFS-2020-0031-DRAFT-3173
NOAA-NMFS-2020-0031-DRAFT-3174

Comment from Victoria Rodoyianni
Comment from Marie Veek
Comment from Lisa Kingsley
Comment from Gary Naake
Comment from Barbara Schwartz
Comment from Margaret Jimenez
Comment from Susan Lea
Comment from Robert Haslag
Comment from Beth Darlington
Comment from Nicholas Marton
Comment from Steve Shapiro
Comment from Darleen Brown
Comment from Marilyn Dempsey
Comment from Patricia Stead
Comment from Fred Martin
Comment from Annette Long-Stinnett
Comment from Sherron Bull
Comment from Mary Tilden
Comment from Brooks Obr
Comment from Joseph Gordon
Comment from Lonne Gordon
Comment from Roger Lebow
Comment from Dan Matthews
Comment from Denise Bunge
Comment from Diane Rohn
Comment from Ruth Yurchuck
Comment from Katey Buster
Comment from Margaret Wessels
Comment from eileen Juric
Comment from Nancy LaRoche
Comment from Mary Foley
Comment from Ian Dogole
Comment from Patricia Luck
Comment from Pat Vassilakidis
Comment from Allison Jones
Comment from Laura Prestridge
Comment from James Thoman
Comment from Robert Arvidson
Comment from Joy Strasser
Comment from David Scott
Comment from john schaechter

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8355
NOAA-NMFS-2020-0031-DRAFT-8356
NOAA-NMFS-2020-0031-DRAFT-8357
NOAA-NMFS-2020-0031-DRAFT-8358
NOAA-NMFS-2020-0031-DRAFT-8359
NOAA-NMFS-2020-0031-DRAFT-8360
NOAA-NMFS-2020-0031-DRAFT-8361
NOAA-NMFS-2020-0031-DRAFT-8362
NOAA-NMFS-2020-0031-DRAFT-8363
NOAA-NMFS-2020-0031-DRAFT-8364
NOAA-NMFS-2020-0031-DRAFT-8365
NOAA-NMFS-2020-0031-DRAFT-8366
NOAA-NMFS-2020-0031-DRAFT-8367
NOAA-NMFS-2020-0031-DRAFT-8368
NOAA-NMFS-2020-0031-DRAFT-8369
NOAA-NMFS-2020-0031-DRAFT-8370
NOAA-NMFS-2020-0031-DRAFT-8371
NOAA-NMFS-2020-0031-DRAFT-8372
NOAA-NMFS-2020-0031-DRAFT-8373
NOAA-NMFS-2020-0031-DRAFT-8374
NOAA-NMFS-2020-0031-DRAFT-8375
NOAA-NMFS-2020-0031-DRAFT-8376
NOAA-NMFS-2020-0031-DRAFT-8377
NOAA-NMFS-2020-0031-DRAFT-8378
NOAA-NMFS-2020-0031-DRAFT-8379
NOAA-NMFS-2020-0031-DRAFT-8380
NOAA-NMFS-2020-0031-DRAFT-8381
NOAA-NMFS-2020-0031-DRAFT-8382
NOAA-NMFS-2020-0031-DRAFT-8383
NOAA-NMFS-2020-0031-DRAFT-8384
NOAA-NMFS-2020-0031-DRAFT-8385
NOAA-NMFS-2020-0031-DRAFT-8386
NOAA-NMFS-2020-0031-DRAFT-8387
NOAA-NMFS-2020-0031-DRAFT-8388
NOAA-NMFS-2020-0031-DRAFT-8389
NOAA-NMFS-2020-0031-DRAFT-8391
NOAA-NMFS-2020-0031-DRAFT-8392
NOAA-NMFS-2020-0031-DRAFT-8393
NOAA-NMFS-2020-0031-DRAFT-8394
NOAA-NMFS-2020-0031-DRAFT-8395
NOAA-NMFS-2020-0031-DRAFT-8396

Comment from Robin Wellborn
Comment from Carolyn MULLEN
Comment from Margaret Divona
Comment from Tami Schraufnagel
Comment from Michelle Hofmann
Comment from Kelli Brannon
Comment from Laurie LaGoe
Comment from Jeremy Gragert
Comment from Jill Mulato
Comment from Christy Valsente
Comment from Lisa Saad
Comment from Megan Wood
Comment from Susan Goldin
Comment from Karen Quay
Comment from Laurie Muscat
Comment from Francene Kilichowski
Comment from Lora Lopes
Comment from April Rogers
Comment from Barbara Snyder
Comment from Althea Mosa
Comment from Joyce Duarte
Comment from Lark whiteside
Comment from Katherine Goree
Comment from Donna Bradley
Comment from Aurelia Pozas
Comment from John Reaves
Comment from Theresa Henderson
Comment from Maureen Andresen
Comment from Susan Sebanc
Comment from Cindy Berezny
Comment from Audrey Yingling
Comment from Laraine Reedy
Comment from Katrina Hall
Comment from Susan Karneckis
Comment from Jacqueline McGrath-Curtis
Comment from john heidecker
Comment from JULIA SHIELDS
Comment from Susie Bolser
Comment from Carol Conrad
Comment from Janet Kinahan
Comment from Lucy Koitsch

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3175
NOAA-NMFS-2020-0031-DRAFT-3176
NOAA-NMFS-2020-0031-DRAFT-3177
NOAA-NMFS-2020-0031-DRAFT-3178
NOAA-NMFS-2020-0031-DRAFT-3179
NOAA-NMFS-2020-0031-DRAFT-3180
NOAA-NMFS-2020-0031-DRAFT-3181
NOAA-NMFS-2020-0031-DRAFT-3182
NOAA-NMFS-2020-0031-DRAFT-3183
NOAA-NMFS-2020-0031-DRAFT-3184
NOAA-NMFS-2020-0031-DRAFT-3185
NOAA-NMFS-2020-0031-DRAFT-3186
NOAA-NMFS-2020-0031-DRAFT-3187
NOAA-NMFS-2020-0031-DRAFT-3188
NOAA-NMFS-2020-0031-DRAFT-3189
NOAA-NMFS-2020-0031-DRAFT-3190
NOAA-NMFS-2020-0031-DRAFT-3191
NOAA-NMFS-2020-0031-DRAFT-3192
NOAA-NMFS-2020-0031-DRAFT-3193
NOAA-NMFS-2020-0031-DRAFT-3194
NOAA-NMFS-2020-0031-DRAFT-3195
NOAA-NMFS-2020-0031-DRAFT-3196
NOAA-NMFS-2020-0031-DRAFT-3197
NOAA-NMFS-2020-0031-DRAFT-3198
NOAA-NMFS-2020-0031-DRAFT-3199
NOAA-NMFS-2020-0031-DRAFT-3200
NOAA-NMFS-2020-0031-DRAFT-3201
NOAA-NMFS-2020-0031-DRAFT-3202
NOAA-NMFS-2020-0031-DRAFT-3203
NOAA-NMFS-2020-0031-DRAFT-3204
NOAA-NMFS-2020-0031-DRAFT-3205
NOAA-NMFS-2020-0031-DRAFT-3206
NOAA-NMFS-2020-0031-DRAFT-3207
NOAA-NMFS-2020-0031-DRAFT-3208
NOAA-NMFS-2020-0031-DRAFT-3209
NOAA-NMFS-2020-0031-DRAFT-3210
NOAA-NMFS-2020-0031-DRAFT-3211
NOAA-NMFS-2020-0031-DRAFT-3212
NOAA-NMFS-2020-0031-DRAFT-3213
NOAA-NMFS-2020-0031-DRAFT-3214
NOAA-NMFS-2020-0031-DRAFT-3215

Comment from Nicole Mikals
Comment from Brandie Deal
Comment from Carla Hervert
Comment from Carla Holmes
Comment from Margaret Raynolds
Comment from Gretchen Dysart
Comment from lynn matarelli
Comment from David Koeller
Comment from Denise Lenardson
Comment from Susan Porter
Comment from Elinore Evans
Comment from Katrina Child
Comment from Guillermo Valencia
Comment from Barbara Charles
Comment from Kathie Takush
Comment from Margo Clark
Comment from Nena Cook
Comment from Gordon Foster
Comment from Susie Lopez
Comment from Betty Hart
Comment from Mollie Smith
Comment from Robin Brown
Comment from Deirdre Newsom
Comment from Elizabeth Pomper
Comment from Sidne Baglini
Comment from John Catherine
Comment from Colleen Bergh
Comment from Suzanne a'Becket
Comment from Kathryn Young
Comment from Eric Hensgen
Comment from angelo. sturino
Comment from Martha Bushnell
Comment from Cara Schmidt
Comment from Susan Lynch
Comment from Nicole Everling
Comment from Tim Hezzey
Comment from Michelle Mondragon
Comment from Elliot Daniels
Comment from Cara Schmidt
Comment from Ryan Schrader
Comment from Ari Meyer

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8397
NOAA-NMFS-2020-0031-DRAFT-8398
NOAA-NMFS-2020-0031-DRAFT-8399
NOAA-NMFS-2020-0031-DRAFT-8400
NOAA-NMFS-2020-0031-DRAFT-8401
NOAA-NMFS-2020-0031-DRAFT-8402
NOAA-NMFS-2020-0031-DRAFT-8404
NOAA-NMFS-2020-0031-DRAFT-8405
NOAA-NMFS-2020-0031-DRAFT-8406
NOAA-NMFS-2020-0031-DRAFT-8407
NOAA-NMFS-2020-0031-DRAFT-8408
NOAA-NMFS-2020-0031-DRAFT-8409
NOAA-NMFS-2020-0031-DRAFT-8410
NOAA-NMFS-2020-0031-DRAFT-8411
NOAA-NMFS-2020-0031-DRAFT-8412
NOAA-NMFS-2020-0031-DRAFT-8413
NOAA-NMFS-2020-0031-DRAFT-8414
NOAA-NMFS-2020-0031-DRAFT-8415
NOAA-NMFS-2020-0031-DRAFT-8416
NOAA-NMFS-2020-0031-DRAFT-8417
NOAA-NMFS-2020-0031-DRAFT-8418
NOAA-NMFS-2020-0031-DRAFT-8419
NOAA-NMFS-2020-0031-DRAFT-8420
NOAA-NMFS-2020-0031-DRAFT-8421
NOAA-NMFS-2020-0031-DRAFT-8422
NOAA-NMFS-2020-0031-DRAFT-8423
NOAA-NMFS-2020-0031-DRAFT-8424
NOAA-NMFS-2020-0031-DRAFT-8425
NOAA-NMFS-2020-0031-DRAFT-8426
NOAA-NMFS-2020-0031-DRAFT-8427
NOAA-NMFS-2020-0031-DRAFT-8428
NOAA-NMFS-2020-0031-DRAFT-8429
NOAA-NMFS-2020-0031-DRAFT-8430
NOAA-NMFS-2020-0031-DRAFT-8431
NOAA-NMFS-2020-0031-DRAFT-8432
NOAA-NMFS-2020-0031-DRAFT-8433
NOAA-NMFS-2020-0031-DRAFT-8434
NOAA-NMFS-2020-0031-DRAFT-8435
NOAA-NMFS-2020-0031-DRAFT-8436
NOAA-NMFS-2020-0031-DRAFT-8437
NOAA-NMFS-2020-0031-DRAFT-8438

Comment from Karen McGreevy
Comment from Anett Berindan
Comment from kimberly dunbar
Comment from Glenna Waterman
Comment from kimberly dunbar
Comment from Virginia LeBlanc
Comment from Peter Helmuth
Comment from Harry and Jill Brownfield
Comment from Carole Arbour
Comment from Melody Barnes
Comment from Susan Borzenski
Comment from KAREN SMITH
Comment from Elisabeth Carroll
Comment from Patti Barnes
Comment from Julia Varbalow
Comment from Scott Powers
Comment from Carol Walters
Comment from PAULA MERRIS
Comment from Lydia Coates
Comment from Kim Begay
Comment from Sally Sorensen
Comment from Mary Mascelli
Comment from Ruth Arnone
Comment from Georgia Braithwaite
Comment from Michele LaViolette
Comment from Silvana Garcia
Comment from Lee Schondorf
Comment from Ron Dennis
Comment from Chris Martin
Comment from Rhonda Pulliam
Comment from Natalie Rakowski
Comment from Catherine Black
Comment from Shelia Tussey
Comment from Janis Keller
Comment from Monica Maes
Comment from Kathryn Baker
Comment from Kathryn Baker
Comment from Elizabeth Christensen
Comment from Myles Davis
Comment from Stephen Bellows
Comment from Carol Downey

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3216
NOAA-NMFS-2020-0031-DRAFT-3217
NOAA-NMFS-2020-0031-DRAFT-3218
NOAA-NMFS-2020-0031-DRAFT-3219
NOAA-NMFS-2020-0031-DRAFT-3220
NOAA-NMFS-2020-0031-DRAFT-3221
NOAA-NMFS-2020-0031-DRAFT-3222
NOAA-NMFS-2020-0031-DRAFT-3223
NOAA-NMFS-2020-0031-DRAFT-3224
NOAA-NMFS-2020-0031-DRAFT-3225
NOAA-NMFS-2020-0031-DRAFT-3226
NOAA-NMFS-2020-0031-DRAFT-3227
NOAA-NMFS-2020-0031-DRAFT-3228
NOAA-NMFS-2020-0031-DRAFT-3229
NOAA-NMFS-2020-0031-DRAFT-3230
NOAA-NMFS-2020-0031-DRAFT-3231
NOAA-NMFS-2020-0031-DRAFT-3232
NOAA-NMFS-2020-0031-DRAFT-3233
NOAA-NMFS-2020-0031-DRAFT-3234
NOAA-NMFS-2020-0031-DRAFT-3235
NOAA-NMFS-2020-0031-DRAFT-3236
NOAA-NMFS-2020-0031-DRAFT-3237
NOAA-NMFS-2020-0031-DRAFT-3238
NOAA-NMFS-2020-0031-DRAFT-3239
NOAA-NMFS-2020-0031-DRAFT-3240
NOAA-NMFS-2020-0031-DRAFT-3241
NOAA-NMFS-2020-0031-DRAFT-3242
NOAA-NMFS-2020-0031-DRAFT-3243
NOAA-NMFS-2020-0031-DRAFT-3244
NOAA-NMFS-2020-0031-DRAFT-3245
NOAA-NMFS-2020-0031-DRAFT-3246
NOAA-NMFS-2020-0031-DRAFT-3247
NOAA-NMFS-2020-0031-DRAFT-3248
NOAA-NMFS-2020-0031-DRAFT-3249
NOAA-NMFS-2020-0031-DRAFT-3250
NOAA-NMFS-2020-0031-DRAFT-3251
NOAA-NMFS-2020-0031-DRAFT-3252
NOAA-NMFS-2020-0031-DRAFT-3253
NOAA-NMFS-2020-0031-DRAFT-3254
NOAA-NMFS-2020-0031-DRAFT-3255
NOAA-NMFS-2020-0031-DRAFT-3256

Comment from Paul Eisenberg
Comment from Jackie Tryggeseth
Comment from Leslie Calambro
Comment from Kathleen Colwill
Comment from Zsanine Alexander
Comment from MS MARSH
Comment from Allen Wheeland
Comment from Monique Edwards
Comment from C Emerson
Comment from KATHY SCHAEFFER
Comment from Sandi Cornez
Comment from Sharon Lozon
Comment from Kelly Bauer
Comment from Barbara Tacker
Comment from Gary Gilardi
Comment from Tami Hillman
Comment from Garry Kramchak
Comment from James Bodsberg
Comment from Donald Beaver
Comment from Emilie Marlinghaus
Comment from Ray Pingle
Comment from David Hammond
Comment from Gerard Zimney
Comment from Marcine McBride
Comment from Veronica Rosing
Comment from Lenore Nieters
Comment from Joseph Stark
Comment from Stephen Markel
Comment from Patsy Hillebrecht
Comment from James French
Comment from Randy HAMMER
Comment from Leslie Harper
Comment from Dorinda DeGroff
Comment from James Taylor
Comment from Marie Long
Comment from Gale Oppenberg
Comment from Sharon Rodrigues
Comment from Thomas Armstrong
Comment from ellen friedman
Comment from Patricia Duran
Comment from Karen Donaldson

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8439
NOAA-NMFS-2020-0031-DRAFT-8440
NOAA-NMFS-2020-0031-DRAFT-8441
NOAA-NMFS-2020-0031-DRAFT-8442
NOAA-NMFS-2020-0031-DRAFT-8444
NOAA-NMFS-2020-0031-DRAFT-8445
NOAA-NMFS-2020-0031-DRAFT-8446
NOAA-NMFS-2020-0031-DRAFT-8447
NOAA-NMFS-2020-0031-DRAFT-8448
NOAA-NMFS-2020-0031-DRAFT-8449
NOAA-NMFS-2020-0031-DRAFT-8450
NOAA-NMFS-2020-0031-DRAFT-8451
NOAA-NMFS-2020-0031-DRAFT-8452
NOAA-NMFS-2020-0031-DRAFT-8453
NOAA-NMFS-2020-0031-DRAFT-8454
NOAA-NMFS-2020-0031-DRAFT-8455
NOAA-NMFS-2020-0031-DRAFT-8456
NOAA-NMFS-2020-0031-DRAFT-8457
NOAA-NMFS-2020-0031-DRAFT-8458
NOAA-NMFS-2020-0031-DRAFT-8459
NOAA-NMFS-2020-0031-DRAFT-8460
NOAA-NMFS-2020-0031-DRAFT-8461
NOAA-NMFS-2020-0031-DRAFT-8462
NOAA-NMFS-2020-0031-DRAFT-8463
NOAA-NMFS-2020-0031-DRAFT-8465
NOAA-NMFS-2020-0031-DRAFT-8466
NOAA-NMFS-2020-0031-DRAFT-8467
NOAA-NMFS-2020-0031-DRAFT-8468
NOAA-NMFS-2020-0031-DRAFT-8469
NOAA-NMFS-2020-0031-DRAFT-8470
NOAA-NMFS-2020-0031-DRAFT-8471
NOAA-NMFS-2020-0031-DRAFT-8472
NOAA-NMFS-2020-0031-DRAFT-8473
NOAA-NMFS-2020-0031-DRAFT-8474
NOAA-NMFS-2020-0031-DRAFT-8475
NOAA-NMFS-2020-0031-DRAFT-8476
NOAA-NMFS-2020-0031-DRAFT-8477
NOAA-NMFS-2020-0031-DRAFT-8478
NOAA-NMFS-2020-0031-DRAFT-8479
NOAA-NMFS-2020-0031-DRAFT-8480
NOAA-NMFS-2020-0031-DRAFT-8482

Comment from Carol Downey
Comment from Lisa Saad
Comment from Desiree Mitchell
Comment from Lidia Lucaciu
Comment from Robin Pandorf
Comment from Carmen Sucre
Comment from Frank Tucciarone
Comment from Ellaine Janicki
Comment from Mary Johannsen
Comment from Doreen Tetreault
Comment from Glo Webel
Comment from Pauline DeMairo
Comment from Debbie Retherford
Comment from Karen Legg
Comment from Maria Hornbuckle
Comment from Patti Packer
Comment from Patti Packer
Comment from Beverly Alba
Comment from SHERRY WEILAND
Comment from Ray Nelson
Comment from Stewart Hutchings
Comment from Filomena Mascolo
Comment from Brian Baltin
Comment from Sherry Erdmann
Comment from Daniel OBrien
Comment from Marcela Jurado
Comment from Debora Hojda
Comment from Susan Kuehnling
Comment from Diana Vargas
Comment from Mark Fiske
Comment from April Mc
Comment from Lynda Wright
Comment from Lynda Wright
Comment from Elaine Eudy
Comment from Caryl Speck
Comment from Sallie Donkin
Comment from Susan Barry
Comment from Jeff Thayer
Comment from Susan Tomaselli
Comment from Donna Cox
Comment from Cindy Childers

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3257
NOAA-NMFS-2020-0031-DRAFT-3258
NOAA-NMFS-2020-0031-DRAFT-3259
NOAA-NMFS-2020-0031-DRAFT-3260
NOAA-NMFS-2020-0031-DRAFT-3261
NOAA-NMFS-2020-0031-DRAFT-3262
NOAA-NMFS-2020-0031-DRAFT-3263
NOAA-NMFS-2020-0031-DRAFT-3264
NOAA-NMFS-2020-0031-DRAFT-3265
NOAA-NMFS-2020-0031-DRAFT-3266
NOAA-NMFS-2020-0031-DRAFT-3267
NOAA-NMFS-2020-0031-DRAFT-3268
NOAA-NMFS-2020-0031-DRAFT-3269
NOAA-NMFS-2020-0031-DRAFT-3270
NOAA-NMFS-2020-0031-DRAFT-3271
NOAA-NMFS-2020-0031-DRAFT-3272
NOAA-NMFS-2020-0031-DRAFT-3273
NOAA-NMFS-2020-0031-DRAFT-3274
NOAA-NMFS-2020-0031-DRAFT-3275
NOAA-NMFS-2020-0031-DRAFT-3276
NOAA-NMFS-2020-0031-DRAFT-3277
NOAA-NMFS-2020-0031-DRAFT-3278
NOAA-NMFS-2020-0031-DRAFT-3279
NOAA-NMFS-2020-0031-DRAFT-3280
NOAA-NMFS-2020-0031-DRAFT-3281
NOAA-NMFS-2020-0031-DRAFT-3282
NOAA-NMFS-2020-0031-DRAFT-3283
NOAA-NMFS-2020-0031-DRAFT-3284
NOAA-NMFS-2020-0031-DRAFT-3285
NOAA-NMFS-2020-0031-DRAFT-3286
NOAA-NMFS-2020-0031-DRAFT-3287
NOAA-NMFS-2020-0031-DRAFT-3288
NOAA-NMFS-2020-0031-DRAFT-3289
NOAA-NMFS-2020-0031-DRAFT-3290
NOAA-NMFS-2020-0031-DRAFT-3291
NOAA-NMFS-2020-0031-DRAFT-3292
NOAA-NMFS-2020-0031-DRAFT-3293
NOAA-NMFS-2020-0031-DRAFT-3294
NOAA-NMFS-2020-0031-DRAFT-3295
NOAA-NMFS-2020-0031-DRAFT-3296
NOAA-NMFS-2020-0031-DRAFT-3297

Comment from Glenn Carson
Comment from Jesse Nartker
Comment from Catherine Dubarr
Comment from Richard Koda
Comment from Arlene Wolf
Comment from Matthew Schaut
Comment from Sue Honey
Comment from Rachael marie
Comment from Margaret Wells
Comment from graciela ramirez
Comment from Dawn Longo
Comment from Richard Crandall
Comment from Jenn Watabayashi
Comment from Nancy Roberts-Moneir
Comment from Vinnedge Lawrence
Comment from Marjorie Angelo
Comment from Lenore Reeves
Comment from Arthur Rosenberg
Comment from Paul Blackburn
Comment from Deborah Haws
Comment from K R
Comment from Mitchell Dormont
Comment from John Paladin
Comment from Sheridan NEIMARK
Comment from Kathy Alcott
Comment from Sara Turbeville
Comment from Virginia Baksa
Comment from Scott Swanson
Comment from Barbara Wood
Comment from John Foley
Comment from Barb Fitzgerald
Comment from Michelle Dugan
Comment from Diane Knight
Comment from Kara Howard
Comment from ms dewitt
Comment from Mary DeCraemer
Comment from Jessica Rollins
Comment from Cedra Spragett
Comment from Kyle McAdam
Comment from Margi Mulligan
Comment from Marie Wakefield

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021

NOAA-NMFS-2020-0031-DRAFT-8483
NOAA-NMFS-2020-0031-DRAFT-8484
NOAA-NMFS-2020-0031-DRAFT-8485
NOAA-NMFS-2020-0031-DRAFT-8486
NOAA-NMFS-2020-0031-DRAFT-8487
NOAA-NMFS-2020-0031-DRAFT-8488
NOAA-NMFS-2020-0031-DRAFT-8489
NOAA-NMFS-2020-0031-DRAFT-8490
NOAA-NMFS-2020-0031-DRAFT-8491
NOAA-NMFS-2020-0031-DRAFT-8492
NOAA-NMFS-2020-0031-DRAFT-8493
NOAA-NMFS-2020-0031-DRAFT-8494
NOAA-NMFS-2020-0031-DRAFT-8495
NOAA-NMFS-2020-0031-DRAFT-8496
NOAA-NMFS-2020-0031-DRAFT-8497
NOAA-NMFS-2020-0031-DRAFT-8498
NOAA-NMFS-2020-0031-DRAFT-8499
NOAA-NMFS-2020-0031-DRAFT-8500
NOAA-NMFS-2020-0031-DRAFT-8501
NOAA-NMFS-2020-0031-DRAFT-8502
NOAA-NMFS-2020-0031-DRAFT-8503
NOAA-NMFS-2020-0031-DRAFT-8504
NOAA-NMFS-2020-0031-DRAFT-8505
NOAA-NMFS-2020-0031-DRAFT-8506
NOAA-NMFS-2020-0031-DRAFT-8507
NOAA-NMFS-2020-0031-DRAFT-8508
NOAA-NMFS-2020-0031-DRAFT-8509
NOAA-NMFS-2020-0031-DRAFT-8510
NOAA-NMFS-2020-0031-DRAFT-8511
NOAA-NMFS-2020-0031-DRAFT-8512
NOAA-NMFS-2020-0031-DRAFT-8513
NOAA-NMFS-2020-0031-DRAFT-8514
NOAA-NMFS-2020-0031-DRAFT-8515
NOAA-NMFS-2020-0031-DRAFT-8516
NOAA-NMFS-2020-0031-DRAFT-8517
NOAA-NMFS-2020-0031-DRAFT-8518
NOAA-NMFS-2020-0031-DRAFT-8519
NOAA-NMFS-2020-0031-DRAFT-8520
NOAA-NMFS-2020-0031-DRAFT-8521
NOAA-NMFS-2020-0031-DRAFT-8522
NOAA-NMFS-2020-0031-DRAFT-8523

Comment from S Reed
Comment from Lidia Lucaciu
Comment from Katie McDougall
Comment from GAYLE HAVENS
Comment from Lorraine Avallone
Comment from Sharon Szews
Comment from Jeanne Moskal
Comment from Lisa Jacobson
Comment from JULIA SHIELDS
Comment from Matt Fountain
Comment from Jerry Banks
Comment from Karen Waltman
Comment from John Nader
Comment from Janet kern
Comment from Dimitra Arneson
Comment from Danielle Colucci
Comment from Susan Querze
Comment from Drew Martin
Comment from Sarika Arora
Comment from H S
Comment from Mel Paulson
Comment from Laura Sherman
Comment from Jill Herbers
Comment from Evelyn Mirabella
Comment from Doyle Jorgensen
Comment from Catherine Korman
Comment from Lynn Killam
Comment from Lisa Niebling
Comment from Sheila Millard
Comment from Merryl Goldman
Comment from Dorothy Kochka
Comment from Leslee Duncan
Comment from Judy Cox
Comment from Larry Oconner
Comment from Thomas Artin
Comment from Mary DeGannett
Comment from Kelley Quattruccci
Comment from Michael Smith
Comment from Maureen joubert
Comment from Nancy Moore
Comment from Jean Robinson

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3298
NOAA-NMFS-2020-0031-DRAFT-3299
NOAA-NMFS-2020-0031-DRAFT-3300
NOAA-NMFS-2020-0031-DRAFT-3301
NOAA-NMFS-2020-0031-DRAFT-3302
NOAA-NMFS-2020-0031-DRAFT-3303
NOAA-NMFS-2020-0031-DRAFT-3304
NOAA-NMFS-2020-0031-DRAFT-3305
NOAA-NMFS-2020-0031-DRAFT-3306
NOAA-NMFS-2020-0031-DRAFT-3307
NOAA-NMFS-2020-0031-DRAFT-3308
NOAA-NMFS-2020-0031-DRAFT-3309
NOAA-NMFS-2020-0031-DRAFT-3310
NOAA-NMFS-2020-0031-DRAFT-3311
NOAA-NMFS-2020-0031-DRAFT-3312
NOAA-NMFS-2020-0031-DRAFT-3313
NOAA-NMFS-2020-0031-DRAFT-3314
NOAA-NMFS-2020-0031-DRAFT-3315
NOAA-NMFS-2020-0031-DRAFT-3316
NOAA-NMFS-2020-0031-DRAFT-3317
NOAA-NMFS-2020-0031-DRAFT-3318
NOAA-NMFS-2020-0031-DRAFT-3319
NOAA-NMFS-2020-0031-DRAFT-3320
NOAA-NMFS-2020-0031-DRAFT-3321
NOAA-NMFS-2020-0031-DRAFT-3322
NOAA-NMFS-2020-0031-DRAFT-3323
NOAA-NMFS-2020-0031-DRAFT-3324
NOAA-NMFS-2020-0031-DRAFT-3325
NOAA-NMFS-2020-0031-DRAFT-3326
NOAA-NMFS-2020-0031-DRAFT-3327
NOAA-NMFS-2020-0031-DRAFT-3328
NOAA-NMFS-2020-0031-DRAFT-3329
NOAA-NMFS-2020-0031-DRAFT-3330
NOAA-NMFS-2020-0031-DRAFT-3331
NOAA-NMFS-2020-0031-DRAFT-3332
NOAA-NMFS-2020-0031-DRAFT-3333
NOAA-NMFS-2020-0031-DRAFT-3334
NOAA-NMFS-2020-0031-DRAFT-3335
NOAA-NMFS-2020-0031-DRAFT-3336
NOAA-NMFS-2020-0031-DRAFT-3337
NOAA-NMFS-2020-0031-DRAFT-3338

Comment from Sally Lunn
Comment from Wicki Van De Veer
Comment from Debra Bruce
Comment from Richard Gillaspie
Comment from Diane Klenner
Comment from David Judd
Comment from Johnny Pflugrad
Comment from Sheila Ward
Comment from Sarah Gavison
Comment from Linda Smyth
Comment from Marlene Dick
Comment from Kevin O'Brien
Comment from Terrance Stodolka
Comment from David Bailey
Comment from Cindy Page
Comment from Camie Rodgers
Comment from Morgaen Hansen
Comment from Aggie Beletsky
Comment from Deborah Gessaman
Comment from M Leszczynski
Comment from Joanne McGrath
Comment from Mary Leon
Comment from richard acosta
Comment from Thomas Josephi
Comment from Marco de la Rosa
Comment from Anneliese White
Comment from Laura Kiholm
Comment from Jeff Reynolds
Comment from Jody Kim-Eng
Comment from Teresa Phillips
Comment from David Burnett
Comment from Lori Knight-Whitehouse
Comment from Linda Hansen
Comment from Raymond Bissonnette
Comment from Barbara Brukner
Comment from Vianney Ventura
Comment from Ruth Reagel
Comment from Stephen Zettel
Comment from Spyros Braoudakis
Comment from Carol Siewert
Comment from David Christiansen

02/05/2021
02/05/2021
02/05/2021
02/05/2021
02/05/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8524
NOAA-NMFS-2020-0031-DRAFT-8525
NOAA-NMFS-2020-0031-DRAFT-8526
NOAA-NMFS-2020-0031-DRAFT-8527
NOAA-NMFS-2020-0031-DRAFT-8528
NOAA-NMFS-2020-0031-DRAFT-8529
NOAA-NMFS-2020-0031-DRAFT-8530
NOAA-NMFS-2020-0031-DRAFT-8531
NOAA-NMFS-2020-0031-DRAFT-8533
NOAA-NMFS-2020-0031-DRAFT-8534
NOAA-NMFS-2020-0031-DRAFT-8535
NOAA-NMFS-2020-0031-DRAFT-8536
NOAA-NMFS-2020-0031-DRAFT-8537
NOAA-NMFS-2020-0031-DRAFT-8538
NOAA-NMFS-2020-0031-DRAFT-8539
NOAA-NMFS-2020-0031-DRAFT-8540
NOAA-NMFS-2020-0031-DRAFT-8541
NOAA-NMFS-2020-0031-DRAFT-8542
NOAA-NMFS-2020-0031-DRAFT-8543
NOAA-NMFS-2020-0031-DRAFT-8544
NOAA-NMFS-2020-0031-DRAFT-8545
NOAA-NMFS-2020-0031-DRAFT-8546
NOAA-NMFS-2020-0031-DRAFT-8547
NOAA-NMFS-2020-0031-DRAFT-8548
NOAA-NMFS-2020-0031-DRAFT-8549
NOAA-NMFS-2020-0031-DRAFT-8550
NOAA-NMFS-2020-0031-DRAFT-8551
NOAA-NMFS-2020-0031-DRAFT-8552
NOAA-NMFS-2020-0031-DRAFT-8553
NOAA-NMFS-2020-0031-DRAFT-8554
NOAA-NMFS-2020-0031-DRAFT-8555
NOAA-NMFS-2020-0031-DRAFT-8556
NOAA-NMFS-2020-0031-DRAFT-8557
NOAA-NMFS-2020-0031-DRAFT-8558
NOAA-NMFS-2020-0031-DRAFT-8559
NOAA-NMFS-2020-0031-DRAFT-8560
NOAA-NMFS-2020-0031-DRAFT-8561
NOAA-NMFS-2020-0031-DRAFT-8562
NOAA-NMFS-2020-0031-DRAFT-8563
NOAA-NMFS-2020-0031-DRAFT-8564
NOAA-NMFS-2020-0031-DRAFT-8565

Comment from Teri Smyth
Comment from Michelle Hyllested
Comment from Lisa Perry
Comment from Martha Samuel
Comment from Deborah Wilson
Comment from Dora Ponce
Comment from Theresa Sanders
Comment from Mary Coughlan
Comment from Anita Garrison
Comment from Charlene Cordero
Comment from Anna Surban
Comment from Karen Parry
Comment from DK Bolen
Comment from Lara Robinson
Comment from Barbara Fernandez
Comment from Mark Taylor
Comment from Paula Currier
Comment from Rita Taylor
Comment from Miriam Leiseroff
Comment from Joan Miller
Comment from Michael Scuderi
Comment from Miriam Berkley
Comment from Bonnie Baumann
Comment from Laura T
Comment from Martha Eberle
Comment from Sylvia Mrozewski
Comment from Melanie Osment
Comment from Sylvia Mrozewski
Comment from Cynthia Robinson
Comment from Iseti Reis
Comment from Mary Palenza
Comment from kate larsen
Comment from Lisa Goldberg
Comment from Reisa Gould-Donath
Comment from Linda Knowles
Comment from Carol Faber
Comment from Kyle Stevenson
Comment from John Gaunt
Comment from Laura Hahn
Comment from Jackie Rogers
Comment from kristine cervini

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3339
NOAA-NMFS-2020-0031-DRAFT-3340
NOAA-NMFS-2020-0031-DRAFT-3341
NOAA-NMFS-2020-0031-DRAFT-3342
NOAA-NMFS-2020-0031-DRAFT-3343
NOAA-NMFS-2020-0031-DRAFT-3344
NOAA-NMFS-2020-0031-DRAFT-3345
NOAA-NMFS-2020-0031-DRAFT-3346
NOAA-NMFS-2020-0031-DRAFT-3347
NOAA-NMFS-2020-0031-DRAFT-3348
NOAA-NMFS-2020-0031-DRAFT-3349
NOAA-NMFS-2020-0031-DRAFT-3350
NOAA-NMFS-2020-0031-DRAFT-3351
NOAA-NMFS-2020-0031-DRAFT-3352
NOAA-NMFS-2020-0031-DRAFT-3353
NOAA-NMFS-2020-0031-DRAFT-3354
NOAA-NMFS-2020-0031-DRAFT-3355
NOAA-NMFS-2020-0031-DRAFT-3356
NOAA-NMFS-2020-0031-DRAFT-3357
NOAA-NMFS-2020-0031-DRAFT-3358
NOAA-NMFS-2020-0031-DRAFT-3359
NOAA-NMFS-2020-0031-DRAFT-3360
NOAA-NMFS-2020-0031-DRAFT-3361
NOAA-NMFS-2020-0031-DRAFT-3362
NOAA-NMFS-2020-0031-DRAFT-3363
NOAA-NMFS-2020-0031-DRAFT-3364
NOAA-NMFS-2020-0031-DRAFT-3365
NOAA-NMFS-2020-0031-DRAFT-3366
NOAA-NMFS-2020-0031-DRAFT-3367
NOAA-NMFS-2020-0031-DRAFT-3368
NOAA-NMFS-2020-0031-DRAFT-3369
NOAA-NMFS-2020-0031-DRAFT-3370
NOAA-NMFS-2020-0031-DRAFT-3371
NOAA-NMFS-2020-0031-DRAFT-3372
NOAA-NMFS-2020-0031-DRAFT-3373
NOAA-NMFS-2020-0031-DRAFT-3374
NOAA-NMFS-2020-0031-DRAFT-3375
NOAA-NMFS-2020-0031-DRAFT-3376
NOAA-NMFS-2020-0031-DRAFT-3377
NOAA-NMFS-2020-0031-DRAFT-3378
NOAA-NMFS-2020-0031-DRAFT-3379

Comment from Betti Jones
Comment from Rosemarie SantiEsteban
Comment from Tracy Templin
Comment from Margaret Doherty
Comment from Lois Dunn
Comment from Joel Scharf
Comment from Robin Gotfrid
Comment from Carol Tao
Comment from Carol Rue
Comment from Anthony Flores
Comment from Bruce Aird
Comment from Carol scoti
Comment from Mary Black
Comment from Torunn Sivesind
Comment from Carla Williams
Comment from faye santos
Comment from Roger Schmidt
Comment from Rebecca Redford
Comment from Dennis Vieira
Comment from Madeline Wright
Comment from Sue Torgersen
Comment from TOM PEACE
Comment from J. Passty
Comment from Sherrill Faunce
Comment from Michael Kolassa
Comment from Phyllis Jollie
Comment from Kenneth Bierman
Comment from Susan Linden
Comment from Lana Grom
Comment from Lily Mejia
Comment from CAROL THOMAS
Comment from JOHN MAYBURY
Comment from Debra Floyd
Comment from Patrick Gallagher
Comment from JoEllen Rudolph
Comment from CHARLENE DONOVAN
Comment from Anna Lukaszewicz
Comment from Nina Monasevitch
Comment from Sharon McCluskey
Comment from Margaret DeArdo
Comment from Stephen Dickstein

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8566
NOAA-NMFS-2020-0031-DRAFT-8567
NOAA-NMFS-2020-0031-DRAFT-8568
NOAA-NMFS-2020-0031-DRAFT-8569
NOAA-NMFS-2020-0031-DRAFT-8570
NOAA-NMFS-2020-0031-DRAFT-8571
NOAA-NMFS-2020-0031-DRAFT-8572
NOAA-NMFS-2020-0031-DRAFT-8573
NOAA-NMFS-2020-0031-DRAFT-8574
NOAA-NMFS-2020-0031-DRAFT-8575
NOAA-NMFS-2020-0031-DRAFT-8576
NOAA-NMFS-2020-0031-DRAFT-8577
NOAA-NMFS-2020-0031-DRAFT-8578
NOAA-NMFS-2020-0031-DRAFT-8579
NOAA-NMFS-2020-0031-DRAFT-8580
NOAA-NMFS-2020-0031-DRAFT-8581
NOAA-NMFS-2020-0031-DRAFT-8582
NOAA-NMFS-2020-0031-DRAFT-8583
NOAA-NMFS-2020-0031-DRAFT-8584
NOAA-NMFS-2020-0031-DRAFT-8585
NOAA-NMFS-2020-0031-DRAFT-8586
NOAA-NMFS-2020-0031-DRAFT-8587
NOAA-NMFS-2020-0031-DRAFT-8588
NOAA-NMFS-2020-0031-DRAFT-8589
NOAA-NMFS-2020-0031-DRAFT-8590
NOAA-NMFS-2020-0031-DRAFT-8591
NOAA-NMFS-2020-0031-DRAFT-8592
NOAA-NMFS-2020-0031-DRAFT-8593
NOAA-NMFS-2020-0031-DRAFT-8594
NOAA-NMFS-2020-0031-DRAFT-8595
NOAA-NMFS-2020-0031-DRAFT-8596
NOAA-NMFS-2020-0031-DRAFT-8597
NOAA-NMFS-2020-0031-DRAFT-8598
NOAA-NMFS-2020-0031-DRAFT-8599
NOAA-NMFS-2020-0031-DRAFT-8600
NOAA-NMFS-2020-0031-DRAFT-8601
NOAA-NMFS-2020-0031-DRAFT-8603
NOAA-NMFS-2020-0031-DRAFT-8604
NOAA-NMFS-2020-0031-DRAFT-8605
NOAA-NMFS-2020-0031-DRAFT-8606
NOAA-NMFS-2020-0031-DRAFT-8607

Comment from Diane Lynch
Comment from elizabeth gray
Comment from Janis Wilder
Comment from Kkm H
Comment from Anonymous Anonymous
Comment from Henry Atterbury
Comment from Janell Curtis
Comment from Kim Gates
Comment from Annette Luffman-Johnson
Comment from Lori Wiles
Comment from Rita Taylor
Comment from Christine Piekarski
Comment from Terri David
Comment from Jacqui Lipschitz
Comment from Jerry Melton
Comment from Mark Lavonn
Comment from Daniel Padilla
Comment from Francie Fillatti
Comment from Maria Lorek
Comment from Leonard Rosenblum
Comment from Lisa Zafar
Comment from Nancy Perreault
Comment from Linda Givens
Comment from Debra Smith
Comment from Karen Holland
Comment from Elizabeth Castigliego
Comment from Kars Sprague
Comment from Pam Ayres
Comment from Marcelo carvalho
Comment from Grisell Garcia
Comment from Frances Gangitano
Comment from Tammy Pelletier
Comment from Jillian Lucchini
Comment from Jaye Clayton
Comment from Matt Borland
Comment from Karen Heap
Comment from Judith Mosso
Comment from Paula Scott
Comment from Alyssa Ducharme
Comment from Martina Doshan
Comment from Lidia Lucaciu

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3380
NOAA-NMFS-2020-0031-DRAFT-3381
NOAA-NMFS-2020-0031-DRAFT-3382
NOAA-NMFS-2020-0031-DRAFT-3383
NOAA-NMFS-2020-0031-DRAFT-3384
NOAA-NMFS-2020-0031-DRAFT-3385
NOAA-NMFS-2020-0031-DRAFT-3386
NOAA-NMFS-2020-0031-DRAFT-3387
NOAA-NMFS-2020-0031-DRAFT-3388
NOAA-NMFS-2020-0031-DRAFT-3389
NOAA-NMFS-2020-0031-DRAFT-3390
NOAA-NMFS-2020-0031-DRAFT-3391
NOAA-NMFS-2020-0031-DRAFT-3392
NOAA-NMFS-2020-0031-DRAFT-3393
NOAA-NMFS-2020-0031-DRAFT-3394
NOAA-NMFS-2020-0031-DRAFT-3395
NOAA-NMFS-2020-0031-DRAFT-3396
NOAA-NMFS-2020-0031-DRAFT-3397
NOAA-NMFS-2020-0031-DRAFT-3398
NOAA-NMFS-2020-0031-DRAFT-3399
NOAA-NMFS-2020-0031-DRAFT-3400
NOAA-NMFS-2020-0031-DRAFT-3401
NOAA-NMFS-2020-0031-DRAFT-3402
NOAA-NMFS-2020-0031-DRAFT-3403
NOAA-NMFS-2020-0031-DRAFT-3404
NOAA-NMFS-2020-0031-DRAFT-3405
NOAA-NMFS-2020-0031-DRAFT-3406
NOAA-NMFS-2020-0031-DRAFT-3407
NOAA-NMFS-2020-0031-DRAFT-3408
NOAA-NMFS-2020-0031-DRAFT-3409
NOAA-NMFS-2020-0031-DRAFT-3410
NOAA-NMFS-2020-0031-DRAFT-3411
NOAA-NMFS-2020-0031-DRAFT-3412
NOAA-NMFS-2020-0031-DRAFT-3413
NOAA-NMFS-2020-0031-DRAFT-3414
NOAA-NMFS-2020-0031-DRAFT-3415
NOAA-NMFS-2020-0031-DRAFT-3416
NOAA-NMFS-2020-0031-DRAFT-3417
NOAA-NMFS-2020-0031-DRAFT-3418
NOAA-NMFS-2020-0031-DRAFT-3419
NOAA-NMFS-2020-0031-DRAFT-3420

Comment from Kris Head
Comment from Kathy OBrien
Comment from Brian Yu
Comment from Leslie Hardyman
Comment from Lori Kegler
Comment from Robert Mutascio
Comment from Nancy Newton
Comment from Susan Weinstein
Comment from Patricia Christianson
Comment from Christopher Calise
Comment from j g
Comment from Helene Devin
Comment from Clifford Spencer
Comment from TONI Stark
Comment from Derek Benedict
Comment from Julia Austbo
Comment from Slowomir Przybysz
Comment from Mary Leitch
Comment from Tyra Pellerin
Comment from Valerie Sotere
Comment from Stacy Duarte
Comment from Bruce DeNunzio
Comment from Laura Taylor
Comment from Vincent Vially
Comment from Tammy Luppino
Comment from Lucy Valenti
Comment from Casey Cochran
Comment from Eileen Hennessy
Comment from Dave Cross
Comment from Valerie Bergeron
Comment from James Deshotels
Comment from Catherine DeGraw
Comment from Dana Sklar
Comment from Elaine CIARDELLO
Comment from Nagender Kaushik
Comment from michael rifkind
Comment from Melissa Williams
Comment from Natalie Malec
Comment from Mari Heart
Comment from Robert Schicker
Comment from Maia de Raat

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8608
NOAA-NMFS-2020-0031-DRAFT-8609
NOAA-NMFS-2020-0031-DRAFT-8610
NOAA-NMFS-2020-0031-DRAFT-8612
NOAA-NMFS-2020-0031-DRAFT-8613
NOAA-NMFS-2020-0031-DRAFT-8614
NOAA-NMFS-2020-0031-DRAFT-8615
NOAA-NMFS-2020-0031-DRAFT-8617
NOAA-NMFS-2020-0031-DRAFT-8618
NOAA-NMFS-2020-0031-DRAFT-8619
NOAA-NMFS-2020-0031-DRAFT-8620
NOAA-NMFS-2020-0031-DRAFT-8621
NOAA-NMFS-2020-0031-DRAFT-8622
NOAA-NMFS-2020-0031-DRAFT-8623
NOAA-NMFS-2020-0031-DRAFT-8624
NOAA-NMFS-2020-0031-DRAFT-8625
NOAA-NMFS-2020-0031-DRAFT-8626
NOAA-NMFS-2020-0031-DRAFT-8627
NOAA-NMFS-2020-0031-DRAFT-8628
NOAA-NMFS-2020-0031-DRAFT-8629
NOAA-NMFS-2020-0031-DRAFT-8630
NOAA-NMFS-2020-0031-DRAFT-8631
NOAA-NMFS-2020-0031-DRAFT-8632
NOAA-NMFS-2020-0031-DRAFT-8633
NOAA-NMFS-2020-0031-DRAFT-8634
NOAA-NMFS-2020-0031-DRAFT-8635
NOAA-NMFS-2020-0031-DRAFT-8636
NOAA-NMFS-2020-0031-DRAFT-8637
NOAA-NMFS-2020-0031-DRAFT-8638
NOAA-NMFS-2020-0031-DRAFT-8639
NOAA-NMFS-2020-0031-DRAFT-8640
NOAA-NMFS-2020-0031-DRAFT-8641
NOAA-NMFS-2020-0031-DRAFT-8642
NOAA-NMFS-2020-0031-DRAFT-8643
NOAA-NMFS-2020-0031-DRAFT-8644
NOAA-NMFS-2020-0031-DRAFT-8645
NOAA-NMFS-2020-0031-DRAFT-8646
NOAA-NMFS-2020-0031-DRAFT-8647
NOAA-NMFS-2020-0031-DRAFT-8648
NOAA-NMFS-2020-0031-DRAFT-8649
NOAA-NMFS-2020-0031-DRAFT-8650

Comment from Jean Riehl
Comment from Anne Miranda
Comment from Jeri Ryan
Comment from Maureen Christensen
Comment from Andy Lynn
Comment from Valerie Martin
Comment from Susan KIVER
Comment from Tracy Torres
Comment from Sharon Fithian
Comment from rosa guilhermina lomba
guedes
Comment from sheila fetterhoff
Comment from Julie Houle
Comment from Kathleen Neely
Comment from Jessica Lee
Comment from Marsha Lanigan
Comment from Sonnia Alfonso
Comment from John Gauthier
Comment from Sonnia Alfonso
Comment from Amy Poe
Comment from Mary Hayes
Comment from jo strohbehn
Comment from Paul Constantino
Comment from Caroline Haines
Comment from Victori Rubietta
Comment from Catherine Kowalczyk.
Comment from Mary Yontz
Comment from Jacqueline Nardi
Comment from Susan carey
Comment from Paul Meyer
Comment from Diana Alourdas
Comment from Craig Carney
Comment from Ali Marlow
Comment from Diane Eisenhower
Comment from Barbara Denslow
Comment from Jacquelyn Barnes
Comment from Stephen Gilbert
Comment from Rose Barton
Comment from Carol Pulley
Comment from Mary Poulos
Comment from Heather Staub
Comment from Sharon Killay

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3421
NOAA-NMFS-2020-0031-DRAFT-3422
NOAA-NMFS-2020-0031-DRAFT-3423
NOAA-NMFS-2020-0031-DRAFT-3424
NOAA-NMFS-2020-0031-DRAFT-3425
NOAA-NMFS-2020-0031-DRAFT-3426
NOAA-NMFS-2020-0031-DRAFT-3427
NOAA-NMFS-2020-0031-DRAFT-3428
NOAA-NMFS-2020-0031-DRAFT-3429
NOAA-NMFS-2020-0031-DRAFT-3430
NOAA-NMFS-2020-0031-DRAFT-3431
NOAA-NMFS-2020-0031-DRAFT-3432
NOAA-NMFS-2020-0031-DRAFT-3433
NOAA-NMFS-2020-0031-DRAFT-3434
NOAA-NMFS-2020-0031-DRAFT-3435
NOAA-NMFS-2020-0031-DRAFT-3436
NOAA-NMFS-2020-0031-DRAFT-3437
NOAA-NMFS-2020-0031-DRAFT-3438
NOAA-NMFS-2020-0031-DRAFT-3439
NOAA-NMFS-2020-0031-DRAFT-3440
NOAA-NMFS-2020-0031-DRAFT-3441
NOAA-NMFS-2020-0031-DRAFT-3442
NOAA-NMFS-2020-0031-DRAFT-3443
NOAA-NMFS-2020-0031-DRAFT-3444
NOAA-NMFS-2020-0031-DRAFT-3445
NOAA-NMFS-2020-0031-DRAFT-3446
NOAA-NMFS-2020-0031-DRAFT-3447
NOAA-NMFS-2020-0031-DRAFT-3448
NOAA-NMFS-2020-0031-DRAFT-3449
NOAA-NMFS-2020-0031-DRAFT-3450
NOAA-NMFS-2020-0031-DRAFT-3451
NOAA-NMFS-2020-0031-DRAFT-3452
NOAA-NMFS-2020-0031-DRAFT-3453
NOAA-NMFS-2020-0031-DRAFT-3454
NOAA-NMFS-2020-0031-DRAFT-3455
NOAA-NMFS-2020-0031-DRAFT-3456
NOAA-NMFS-2020-0031-DRAFT-3457
NOAA-NMFS-2020-0031-DRAFT-3458
NOAA-NMFS-2020-0031-DRAFT-3459
NOAA-NMFS-2020-0031-DRAFT-3460
NOAA-NMFS-2020-0031-DRAFT-3461

Comment from Alice Polesky
Comment from Diana Wilkinson
Comment from Mary Tarallo
Comment from Lea Boyle
Comment from Jennifer Brandon
Comment from David Fiedler
Comment from Jody Mahnken
Comment from Maegan Squibb
Comment from Barbara Arlen
Comment from Shannon Soltysiak
Comment from Bo Svensson
Comment from Gudrun Dennis
Comment from Ellen Atkinson
Comment from Kristine Metzner
Comment from Helen Weber
Comment from Susanne Murray
Comment from Wally Bubelis
Comment from Erica Johanson
Comment from Ken Reeves
Comment from Mark Sarnacki
Comment from Carol Yerden
Comment from Jackie Griffeth
Comment from C Tracy
Comment from Dorothy Savage
Comment from Liz Erpelding-Garratt
Comment from Lea Faulks
Comment from Irene Carr
Comment from Kathleen Hall
Comment from Sherrill Futrell
Comment from Wendi Myers
Comment from Dave Nuetzel
Comment from Thomas Guaraldi
Comment from Dennis O'Brien
Comment from Bryan Bennett
Comment from Russell Fowler
Comment from Susan Haywood
Comment from Pat Bowers
Comment from Mary McCauley
Comment from Hilary McGregor
Comment from Rebecca Harper
Comment from Cheryl Shushan

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8651
NOAA-NMFS-2020-0031-DRAFT-8652
NOAA-NMFS-2020-0031-DRAFT-8653
NOAA-NMFS-2020-0031-DRAFT-8654
NOAA-NMFS-2020-0031-DRAFT-8655
NOAA-NMFS-2020-0031-DRAFT-8656
NOAA-NMFS-2020-0031-DRAFT-8657
NOAA-NMFS-2020-0031-DRAFT-8658
NOAA-NMFS-2020-0031-DRAFT-8659
NOAA-NMFS-2020-0031-DRAFT-8660
NOAA-NMFS-2020-0031-DRAFT-8661
NOAA-NMFS-2020-0031-DRAFT-8662
NOAA-NMFS-2020-0031-DRAFT-8663
NOAA-NMFS-2020-0031-DRAFT-8664
NOAA-NMFS-2020-0031-DRAFT-8665
NOAA-NMFS-2020-0031-DRAFT-8666
NOAA-NMFS-2020-0031-DRAFT-8667
NOAA-NMFS-2020-0031-DRAFT-8668
NOAA-NMFS-2020-0031-DRAFT-8669
NOAA-NMFS-2020-0031-DRAFT-8670
NOAA-NMFS-2020-0031-DRAFT-8671
NOAA-NMFS-2020-0031-DRAFT-8672
NOAA-NMFS-2020-0031-DRAFT-8673
NOAA-NMFS-2020-0031-DRAFT-8674
NOAA-NMFS-2020-0031-DRAFT-8675
NOAA-NMFS-2020-0031-DRAFT-8676
NOAA-NMFS-2020-0031-DRAFT-8677
NOAA-NMFS-2020-0031-DRAFT-8678
NOAA-NMFS-2020-0031-DRAFT-8679
NOAA-NMFS-2020-0031-DRAFT-8680
NOAA-NMFS-2020-0031-DRAFT-8681
NOAA-NMFS-2020-0031-DRAFT-8682
NOAA-NMFS-2020-0031-DRAFT-8683
NOAA-NMFS-2020-0031-DRAFT-8684
NOAA-NMFS-2020-0031-DRAFT-8686
NOAA-NMFS-2020-0031-DRAFT-8687
NOAA-NMFS-2020-0031-DRAFT-8688
NOAA-NMFS-2020-0031-DRAFT-8689
NOAA-NMFS-2020-0031-DRAFT-8690
NOAA-NMFS-2020-0031-DRAFT-8691
NOAA-NMFS-2020-0031-DRAFT-8692

Comment from Ellen Jackson
Comment from Rachael Pappano
Comment from Sharla Godfrey
Comment from Danielle Amodeo
Comment from Laura Staples
Comment from David. Murphy
Comment from Deborah Radwan
Comment from Rebecca michalski
Comment from Carol-Ann Dearnaley
Comment from Maria Morley
Comment from Maria Englebrecht
Comment from James Scotto
Comment from Rebecca Zamora
Comment from Brenda Campbell
Comment from Shelley King
Comment from Ann Byrnes
Comment from Susan Purdie
Comment from Bev Austin
Comment from Gregory Zark
Comment from Andrew Magel
Comment from Phyl Morello
Comment from Iseti Reis
Comment from Copley Smoak
Comment from Anna Jasiukiewicz
Comment from Judy Hanlon
Comment from Jane White
Comment from Josephine Colon
Comment from Jackie Tutko
Comment from Henry Clement
Comment from Mary Murphy
Comment from Margaret Gallagher
Comment from Anna Kendall
Comment from Donna Thomas
Comment from Sara Fontani
Comment from Tammie Hunt
Comment from Debra Zapata
Comment from Marie Pirkle
Comment from Janine Dalton
Comment from John Fitzgerald
Comment from Susan Goldin
Comment from Kimberly Baldridge

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3462
NOAA-NMFS-2020-0031-DRAFT-3463
NOAA-NMFS-2020-0031-DRAFT-3464
NOAA-NMFS-2020-0031-DRAFT-3465
NOAA-NMFS-2020-0031-DRAFT-3466
NOAA-NMFS-2020-0031-DRAFT-3467
NOAA-NMFS-2020-0031-DRAFT-3468
NOAA-NMFS-2020-0031-DRAFT-3469
NOAA-NMFS-2020-0031-DRAFT-3470
NOAA-NMFS-2020-0031-DRAFT-3471
NOAA-NMFS-2020-0031-DRAFT-3472
NOAA-NMFS-2020-0031-DRAFT-3473
NOAA-NMFS-2020-0031-DRAFT-3474
NOAA-NMFS-2020-0031-DRAFT-3475
NOAA-NMFS-2020-0031-DRAFT-3476
NOAA-NMFS-2020-0031-DRAFT-3477
NOAA-NMFS-2020-0031-DRAFT-3478
NOAA-NMFS-2020-0031-DRAFT-3479
NOAA-NMFS-2020-0031-DRAFT-3480
NOAA-NMFS-2020-0031-DRAFT-3481
NOAA-NMFS-2020-0031-DRAFT-3482
NOAA-NMFS-2020-0031-DRAFT-3483
NOAA-NMFS-2020-0031-DRAFT-3484
NOAA-NMFS-2020-0031-DRAFT-3485
NOAA-NMFS-2020-0031-DRAFT-3486
NOAA-NMFS-2020-0031-DRAFT-3487
NOAA-NMFS-2020-0031-DRAFT-3488
NOAA-NMFS-2020-0031-DRAFT-3489
NOAA-NMFS-2020-0031-DRAFT-3490
NOAA-NMFS-2020-0031-DRAFT-3491
NOAA-NMFS-2020-0031-DRAFT-3492
NOAA-NMFS-2020-0031-DRAFT-3493
NOAA-NMFS-2020-0031-DRAFT-3494
NOAA-NMFS-2020-0031-DRAFT-3495
NOAA-NMFS-2020-0031-DRAFT-3496
NOAA-NMFS-2020-0031-DRAFT-3497
NOAA-NMFS-2020-0031-DRAFT-3498
NOAA-NMFS-2020-0031-DRAFT-3499
NOAA-NMFS-2020-0031-DRAFT-3500
NOAA-NMFS-2020-0031-DRAFT-3501
NOAA-NMFS-2020-0031-DRAFT-3502

Comment from Anthony Arn
Comment from Tons Calderone
Comment from Pat Copenhaver
Comment from Elizabeth Rosenthal
Comment from Kenneth Lapointe
Comment from Lisa Manthey
Comment from L Nelson
Comment from Kellie Smith
Comment from Michelle Profant
Comment from Jessica Paolini
Comment from Marilyn Trybus
Comment from John Re
Comment from Jaye Duncan
Comment from Teresa Pitts
Comment from Dennis Kaplan
Comment from Estella Edwards
Comment from Wanda Graff
Comment from Teresa Pitts
Comment from Donna Smith
Comment from Bradford Renee
Comment from Robert Wilkerson
Comment from Donna Cohen
Comment from Nika Kollar
Comment from Janice Bailey
Comment from John Schmittauer
Comment from Patricia Nazzaro
Comment from Shirley Schue
Comment from Janice Wilfing
Comment from Diane Nowak
Comment from Susan Burns
Comment from Laura Hahn
Comment from Mike Vanlandingham
Comment from Diane Pitzel
Comment from Ruth Galindo
Comment from Karen Berger
Comment from Chris Dacus
Comment from Ellen Leonard
Comment from Matt Brzezinski
Comment from Janet Pielke
Comment from Mark Smith
Comment from Tracy Leinbaugh

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8693
NOAA-NMFS-2020-0031-DRAFT-8694
NOAA-NMFS-2020-0031-DRAFT-8695
NOAA-NMFS-2020-0031-DRAFT-8696
NOAA-NMFS-2020-0031-DRAFT-8697
NOAA-NMFS-2020-0031-DRAFT-8698
NOAA-NMFS-2020-0031-DRAFT-8699
NOAA-NMFS-2020-0031-DRAFT-8700
NOAA-NMFS-2020-0031-DRAFT-8701
NOAA-NMFS-2020-0031-DRAFT-8703
NOAA-NMFS-2020-0031-DRAFT-8704
NOAA-NMFS-2020-0031-DRAFT-8705
NOAA-NMFS-2020-0031-DRAFT-8706
NOAA-NMFS-2020-0031-DRAFT-8707
NOAA-NMFS-2020-0031-DRAFT-8708
NOAA-NMFS-2020-0031-DRAFT-8709
NOAA-NMFS-2020-0031-DRAFT-8710
NOAA-NMFS-2020-0031-DRAFT-8711
NOAA-NMFS-2020-0031-DRAFT-8712
NOAA-NMFS-2020-0031-DRAFT-8713
NOAA-NMFS-2020-0031-DRAFT-8714
NOAA-NMFS-2020-0031-DRAFT-8715
NOAA-NMFS-2020-0031-DRAFT-8716
NOAA-NMFS-2020-0031-DRAFT-8717
NOAA-NMFS-2020-0031-DRAFT-8719
NOAA-NMFS-2020-0031-DRAFT-8720
NOAA-NMFS-2020-0031-DRAFT-8721
NOAA-NMFS-2020-0031-DRAFT-8722
NOAA-NMFS-2020-0031-DRAFT-8723
NOAA-NMFS-2020-0031-DRAFT-8724
NOAA-NMFS-2020-0031-DRAFT-8725
NOAA-NMFS-2020-0031-DRAFT-8726
NOAA-NMFS-2020-0031-DRAFT-8727
NOAA-NMFS-2020-0031-DRAFT-8728
NOAA-NMFS-2020-0031-DRAFT-8729
NOAA-NMFS-2020-0031-DRAFT-8730
NOAA-NMFS-2020-0031-DRAFT-8731
NOAA-NMFS-2020-0031-DRAFT-8732
NOAA-NMFS-2020-0031-DRAFT-8733
NOAA-NMFS-2020-0031-DRAFT-8734
NOAA-NMFS-2020-0031-DRAFT-8735

Comment from denice cornell
Comment from Suzanne Ecklund
Comment from lin farley
Comment from John Pope
Comment from Brie Bortmess
Comment from Susan Aarons
Comment from Angela Conneally
Comment from Carolyn Stewart
Comment from Mary mccarthy
Comment from lea c
Comment from Sue Hanson
Comment from Maryke Petruzzi
Comment from Jym Dyer
Comment from Allen Leslie
Comment from Linda Biller
Comment from Grace Montalbano
Comment from Ann Russell
Comment from Sarah Skvir
Comment from Mirta Abreu
Comment from Elizabeth Wulfson
Comment from Jane Parker
Comment from Lisa McKillop
Comment from Alese Tait
Comment from Robert Katkus
Comment from Carlos Sio
Comment from Susan Borzenski
Comment from Kylie Wilson
Comment from JP Caviston
Comment from Peter Thompson
Comment from Harriett Jones
Comment from Susan Goldin
Comment from Nancy Irvin
Comment from William Anderson
Comment from Kenneth Hollman
Comment from Pamela Roberts
Comment from Deborah Johnston
Comment from Courtney Coarsey
Comment from Timothy Burnham
Comment from Michael Gold
Comment from Maria Campos
Comment from April Lang

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3503
NOAA-NMFS-2020-0031-DRAFT-3504
NOAA-NMFS-2020-0031-DRAFT-3505
NOAA-NMFS-2020-0031-DRAFT-3506
NOAA-NMFS-2020-0031-DRAFT-3507
NOAA-NMFS-2020-0031-DRAFT-3508
NOAA-NMFS-2020-0031-DRAFT-3509
NOAA-NMFS-2020-0031-DRAFT-3510
NOAA-NMFS-2020-0031-DRAFT-3511
NOAA-NMFS-2020-0031-DRAFT-3512
NOAA-NMFS-2020-0031-DRAFT-3513
NOAA-NMFS-2020-0031-DRAFT-3514
NOAA-NMFS-2020-0031-DRAFT-3515
NOAA-NMFS-2020-0031-DRAFT-3516
NOAA-NMFS-2020-0031-DRAFT-3517
NOAA-NMFS-2020-0031-DRAFT-3518
NOAA-NMFS-2020-0031-DRAFT-3519
NOAA-NMFS-2020-0031-DRAFT-3520
NOAA-NMFS-2020-0031-DRAFT-3521
NOAA-NMFS-2020-0031-DRAFT-3522
NOAA-NMFS-2020-0031-DRAFT-3523
NOAA-NMFS-2020-0031-DRAFT-3524
NOAA-NMFS-2020-0031-DRAFT-3525
NOAA-NMFS-2020-0031-DRAFT-3526
NOAA-NMFS-2020-0031-DRAFT-3527
NOAA-NMFS-2020-0031-DRAFT-3528
NOAA-NMFS-2020-0031-DRAFT-3529
NOAA-NMFS-2020-0031-DRAFT-3530
NOAA-NMFS-2020-0031-DRAFT-3531
NOAA-NMFS-2020-0031-DRAFT-3532
NOAA-NMFS-2020-0031-DRAFT-3533
NOAA-NMFS-2020-0031-DRAFT-3534
NOAA-NMFS-2020-0031-DRAFT-3535
NOAA-NMFS-2020-0031-DRAFT-3536
NOAA-NMFS-2020-0031-DRAFT-3537
NOAA-NMFS-2020-0031-DRAFT-3538
NOAA-NMFS-2020-0031-DRAFT-3539
NOAA-NMFS-2020-0031-DRAFT-3540
NOAA-NMFS-2020-0031-DRAFT-3541
NOAA-NMFS-2020-0031-DRAFT-3542
NOAA-NMFS-2020-0031-DRAFT-3543

Comment from Brian Yanke
Comment from Mark Galbraith
Comment from Ellen Jahos
Comment from Audrey Morgan
Comment from Dave Ruud
Comment from Patty Du
Comment from Aaeron Robb
Comment from Alan Carter
Comment from Judy Rhee
Comment from John Joadwine
Comment from Loretta Olsen
Comment from Shabaka Moore
Comment from Martha Carrington
Comment from Alicia Salazar
Comment from Donald Beduhn
Comment from Rachel Berg
Comment from V A
Comment from Gina LoBiondo
Comment from Jeffrey Lindquist
Comment from Jeffrey Lindquist
Comment from Jeffrey Lindquist
Comment from Jeffrey Lindquist
Comment from Catherine CarneyFeldman
Comment from Elizabeth Davis
Comment from Watson Gooch
Comment from Sharon Kocher
Comment from Peggy Mondada
Comment from Leslie Smith
Comment from Shelley Abbate
Comment from Joan Tokarz
Comment from Savannah Hawkins
Comment from William Black
Comment from Val Basom
Comment from Maggie Davidson
Comment from Heidi Bixby
Comment from Vicki Bruno
Comment from Carl Estes
Comment from Carol Ruth
Comment from Robert Banning
Comment from Marlene Todd
Comment from Alice West

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
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02/06/2021
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02/06/2021
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02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8736
NOAA-NMFS-2020-0031-DRAFT-8737
NOAA-NMFS-2020-0031-DRAFT-8738
NOAA-NMFS-2020-0031-DRAFT-8739
NOAA-NMFS-2020-0031-DRAFT-8740
NOAA-NMFS-2020-0031-DRAFT-8741
NOAA-NMFS-2020-0031-DRAFT-8742
NOAA-NMFS-2020-0031-DRAFT-8743
NOAA-NMFS-2020-0031-DRAFT-8744
NOAA-NMFS-2020-0031-DRAFT-8745
NOAA-NMFS-2020-0031-DRAFT-8746
NOAA-NMFS-2020-0031-DRAFT-8747
NOAA-NMFS-2020-0031-DRAFT-8748
NOAA-NMFS-2020-0031-DRAFT-8749
NOAA-NMFS-2020-0031-DRAFT-8750
NOAA-NMFS-2020-0031-DRAFT-8751
NOAA-NMFS-2020-0031-DRAFT-8752
NOAA-NMFS-2020-0031-DRAFT-8753
NOAA-NMFS-2020-0031-DRAFT-8754
NOAA-NMFS-2020-0031-DRAFT-8755
NOAA-NMFS-2020-0031-DRAFT-8756
NOAA-NMFS-2020-0031-DRAFT-8757
NOAA-NMFS-2020-0031-DRAFT-8758
NOAA-NMFS-2020-0031-DRAFT-8759
NOAA-NMFS-2020-0031-DRAFT-8760
NOAA-NMFS-2020-0031-DRAFT-8761
NOAA-NMFS-2020-0031-DRAFT-8762
NOAA-NMFS-2020-0031-DRAFT-8763
NOAA-NMFS-2020-0031-DRAFT-8764
NOAA-NMFS-2020-0031-DRAFT-8765
NOAA-NMFS-2020-0031-DRAFT-8766
NOAA-NMFS-2020-0031-DRAFT-8767
NOAA-NMFS-2020-0031-DRAFT-8768
NOAA-NMFS-2020-0031-DRAFT-8769
NOAA-NMFS-2020-0031-DRAFT-8770
NOAA-NMFS-2020-0031-DRAFT-8771
NOAA-NMFS-2020-0031-DRAFT-8773
NOAA-NMFS-2020-0031-DRAFT-8774
NOAA-NMFS-2020-0031-DRAFT-8775
NOAA-NMFS-2020-0031-DRAFT-8776
NOAA-NMFS-2020-0031-DRAFT-8777

Comment from Michael Haskell
Comment from Paul Needles
Comment from Lois Hoot
Comment from Elaine Maitz
Comment from Ryan Walde
Comment from Dennis Rogers
Comment from Rose Barton
Comment from D Lanter
Comment from M n
Comment from Jeane Casey
Comment from Denise Lytle
Comment from Nikki Doukas
Comment from Ericka Shimkonis
Comment from Jon Russell
Comment from Kelly Peterson
Comment from Cheryl Whitehurst
Comment from Jean Yermes
Comment from Lidia Lucaciu
Comment from Mari m
Comment from Laurel Nakanishi
Comment from Rahul Iyer
Comment from Deb Delsole
Comment from Patti Miller
Comment from Wendy Klish
Comment from Ilya Speranza
Comment from Anne Haynes
Comment from Terrie Phenicie
Comment from Steven Phenicie
Comment from Alese Tait
Comment from Donna Cox
Comment from Marnee Reilly
Comment from Marnee Reilly
Comment from Christine becker
Comment from Jill Clark
Comment from Kathleen Johnson
Comment from Betsy Japp
Comment from Claire McDonald
Comment from Ann Oliver
Comment from Julia Fuller
Comment from L. Rodriguez
Comment from Catherine Kowalczyk.

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3544
NOAA-NMFS-2020-0031-DRAFT-3545
NOAA-NMFS-2020-0031-DRAFT-3546
NOAA-NMFS-2020-0031-DRAFT-3547
NOAA-NMFS-2020-0031-DRAFT-3548
NOAA-NMFS-2020-0031-DRAFT-3549
NOAA-NMFS-2020-0031-DRAFT-3550
NOAA-NMFS-2020-0031-DRAFT-3551
NOAA-NMFS-2020-0031-DRAFT-3552
NOAA-NMFS-2020-0031-DRAFT-3553
NOAA-NMFS-2020-0031-DRAFT-3554
NOAA-NMFS-2020-0031-DRAFT-3555
NOAA-NMFS-2020-0031-DRAFT-3556
NOAA-NMFS-2020-0031-DRAFT-3557
NOAA-NMFS-2020-0031-DRAFT-3558
NOAA-NMFS-2020-0031-DRAFT-3559
NOAA-NMFS-2020-0031-DRAFT-3560
NOAA-NMFS-2020-0031-DRAFT-3561
NOAA-NMFS-2020-0031-DRAFT-3562
NOAA-NMFS-2020-0031-DRAFT-3563
NOAA-NMFS-2020-0031-DRAFT-3564
NOAA-NMFS-2020-0031-DRAFT-3565
NOAA-NMFS-2020-0031-DRAFT-3566
NOAA-NMFS-2020-0031-DRAFT-3567
NOAA-NMFS-2020-0031-DRAFT-3568
NOAA-NMFS-2020-0031-DRAFT-3569
NOAA-NMFS-2020-0031-DRAFT-3570
NOAA-NMFS-2020-0031-DRAFT-3571
NOAA-NMFS-2020-0031-DRAFT-3572
NOAA-NMFS-2020-0031-DRAFT-3573
NOAA-NMFS-2020-0031-DRAFT-3574
NOAA-NMFS-2020-0031-DRAFT-3575
NOAA-NMFS-2020-0031-DRAFT-3576
NOAA-NMFS-2020-0031-DRAFT-3577
NOAA-NMFS-2020-0031-DRAFT-3578
NOAA-NMFS-2020-0031-DRAFT-3579
NOAA-NMFS-2020-0031-DRAFT-3580
NOAA-NMFS-2020-0031-DRAFT-3581
NOAA-NMFS-2020-0031-DRAFT-3582
NOAA-NMFS-2020-0031-DRAFT-3583
NOAA-NMFS-2020-0031-DRAFT-3584

Comment from Barbara Burke
Comment from Nick Jenkins
Comment from Kay Johnson
Comment from Glen Holstein
Comment from Georgia Carver
Comment from Lydia Garvey
Comment from michael waters
Comment from David Boyer
Comment from sabine greger
Comment from Alice Steijn
Comment from KAREN OSTEEN
Comment from Donna O'Berry
Comment from John Haines
Comment from Janice Banks
Comment from Judith Anderson
Comment from Todd Heiler
Comment from Joseph Porporino
Comment from Jane Krawisz
Comment from DB Falk
Comment from Daniel Stopfer
Comment from Cynthia chrystal
Comment from susan mufson
Comment from Joy Sullivan
Comment from terrence ward
Comment from Bob Stevens
Comment from Steven Bal
Comment from Annemarie Prairie
Comment from Rachel Gonzalez
Comment from Nancy Woolley
Comment from jaci Wilkins
Comment from Gail Balser
Comment from Susan Lowe
Comment from LISA MILLER
Comment from MIchele Johnson
Comment from Eugenia Ahern
Comment from Ana Jacques
Comment from Joy Lesperance
Comment from Donna Sherman
Comment from Virginia Van Andel
Comment from Holly Graves
Comment from Diane Weyer

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
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02/06/2021
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02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021

NOAA-NMFS-2020-0031-DRAFT-8778
NOAA-NMFS-2020-0031-DRAFT-8779
NOAA-NMFS-2020-0031-DRAFT-8780
NOAA-NMFS-2020-0031-DRAFT-8781
NOAA-NMFS-2020-0031-DRAFT-8782
NOAA-NMFS-2020-0031-DRAFT-8783
NOAA-NMFS-2020-0031-DRAFT-8784
NOAA-NMFS-2020-0031-DRAFT-8785
NOAA-NMFS-2020-0031-DRAFT-8786
NOAA-NMFS-2020-0031-DRAFT-8787
NOAA-NMFS-2020-0031-DRAFT-8788
NOAA-NMFS-2020-0031-DRAFT-8789
NOAA-NMFS-2020-0031-DRAFT-8790
NOAA-NMFS-2020-0031-DRAFT-8791
NOAA-NMFS-2020-0031-DRAFT-8792
NOAA-NMFS-2020-0031-DRAFT-8793
NOAA-NMFS-2020-0031-DRAFT-8794
NOAA-NMFS-2020-0031-DRAFT-8795
NOAA-NMFS-2020-0031-DRAFT-8796
NOAA-NMFS-2020-0031-DRAFT-8797
NOAA-NMFS-2020-0031-DRAFT-8798
NOAA-NMFS-2020-0031-DRAFT-8799
NOAA-NMFS-2020-0031-DRAFT-8800
NOAA-NMFS-2020-0031-DRAFT-8801
NOAA-NMFS-2020-0031-DRAFT-8802
NOAA-NMFS-2020-0031-DRAFT-8803
NOAA-NMFS-2020-0031-DRAFT-8804
NOAA-NMFS-2020-0031-DRAFT-8806
NOAA-NMFS-2020-0031-DRAFT-8807
NOAA-NMFS-2020-0031-DRAFT-8808
NOAA-NMFS-2020-0031-DRAFT-8810
NOAA-NMFS-2020-0031-DRAFT-8811
NOAA-NMFS-2020-0031-DRAFT-8812
NOAA-NMFS-2020-0031-DRAFT-8813
NOAA-NMFS-2020-0031-DRAFT-8814
NOAA-NMFS-2020-0031-DRAFT-8815
NOAA-NMFS-2020-0031-DRAFT-8816
NOAA-NMFS-2020-0031-DRAFT-8817
NOAA-NMFS-2020-0031-DRAFT-8818
NOAA-NMFS-2020-0031-DRAFT-8820
NOAA-NMFS-2020-0031-DRAFT-8821

Comment from Gayle Logan
Comment from Kelly Milan
Comment from Sara Hewson
Comment from Patricia Audrain
Comment from Julie Brinkman
Comment from Heidi Rabinowitz
Comment from Kelly Murphy-Kennerson
Comment from Kathrine Jones
Comment from Kelley cathcart
Comment from Margaret Horn
Comment from Kat Bowley
Comment from Margaret Vernon
Comment from Tracy Gourville
Comment from Kristen Chamberlain
Comment from Pamela Decker
Comment from Jo Hunter
Comment from Denise Corbitt-Coppola
Comment from Marion Saragosa
Comment from Liz Newlands
Comment from Margaret Raynolds
Comment from Donna McCready
Comment from Carol Tomusiak
Comment from Richard Fehr
Comment from Nancy Djemant
Comment from Cindy Childers
Comment from Elizabeth Hartrick
Comment from Veronica Carroll
Comment from Laurie DePinto
Comment from Carly Monnin
Comment from Jean Ross
Comment from William Houghton
Comment from Jocelyn Stowell
Comment from Jaye Clayton
Comment from Jeremy Benjamin
Comment from Luciana Jabrieh
Comment from Jane Packard
Comment from Ed Perry
Comment from Vicki Powers
Comment from Carrie Loper
Comment from Sarika Arora
Comment from Alexis Mekalonis

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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3585
NOAA-NMFS-2020-0031-DRAFT-3586
NOAA-NMFS-2020-0031-DRAFT-3587
NOAA-NMFS-2020-0031-DRAFT-3588
NOAA-NMFS-2020-0031-DRAFT-3589
NOAA-NMFS-2020-0031-DRAFT-3590
NOAA-NMFS-2020-0031-DRAFT-3591
NOAA-NMFS-2020-0031-DRAFT-3592
NOAA-NMFS-2020-0031-DRAFT-3593
NOAA-NMFS-2020-0031-DRAFT-3594
NOAA-NMFS-2020-0031-DRAFT-3595
NOAA-NMFS-2020-0031-DRAFT-3596
NOAA-NMFS-2020-0031-DRAFT-3597
NOAA-NMFS-2020-0031-DRAFT-3598
NOAA-NMFS-2020-0031-DRAFT-3599
NOAA-NMFS-2020-0031-DRAFT-3600
NOAA-NMFS-2020-0031-DRAFT-3601
NOAA-NMFS-2020-0031-DRAFT-3602
NOAA-NMFS-2020-0031-DRAFT-3603
NOAA-NMFS-2020-0031-DRAFT-3604
NOAA-NMFS-2020-0031-DRAFT-3605
NOAA-NMFS-2020-0031-DRAFT-3606
NOAA-NMFS-2020-0031-DRAFT-3607
NOAA-NMFS-2020-0031-DRAFT-3608
NOAA-NMFS-2020-0031-DRAFT-3609
NOAA-NMFS-2020-0031-DRAFT-3610
NOAA-NMFS-2020-0031-DRAFT-3611
NOAA-NMFS-2020-0031-DRAFT-3612
NOAA-NMFS-2020-0031-DRAFT-3613
NOAA-NMFS-2020-0031-DRAFT-3614
NOAA-NMFS-2020-0031-DRAFT-3615
NOAA-NMFS-2020-0031-DRAFT-3616
NOAA-NMFS-2020-0031-DRAFT-3617
NOAA-NMFS-2020-0031-DRAFT-3618
NOAA-NMFS-2020-0031-DRAFT-3619
NOAA-NMFS-2020-0031-DRAFT-3620
NOAA-NMFS-2020-0031-DRAFT-3621
NOAA-NMFS-2020-0031-DRAFT-3622
NOAA-NMFS-2020-0031-DRAFT-3623
NOAA-NMFS-2020-0031-DRAFT-3624
NOAA-NMFS-2020-0031-DRAFT-3625

Comment from James Smock
Comment from Elizabeth Milliken
Comment from Pamela Raup-Kounovsky
Comment from Carol Walker
Comment from Marlin Henderson
Comment from Holly Perez
Comment from L Kifer
Comment from Kenneth Honig
Comment from David Wellman
Comment from Cheryl Cusella
Comment from Melissa Doss
Comment from Sharon Nicodemus
Comment from William George
Comment from steve kent
Comment from Linda McKillip
Comment from Pam Westerheide
Comment from Ron McCullough
Comment from Susan Kilgore
Comment from David Elfin
Comment from Ally Benoit
Comment from Sholey Argani
Comment from Robert Beggs
Comment from Todd Heiler
Comment from CARA AMMON
Comment from CARA AMMON
Comment from joie winnick
Comment from David Dzikowski
Comment from Andy Sayles
Comment from Lisa Walthers
Comment from Deborah Coble
Comment from Catherine Loudis
Comment from Marilyn Pierson
Comment from Jake Elfenbein
Comment from lynne Jeffries
Comment from Ronni Emilio
Comment from Jean Schwinberg
Comment from Daniel Tayrien
Comment from Jennifer Greenidge
Comment from Mary Erickson
Comment from Christian Richer
Comment from Meredith Goswami

02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
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02/07/2021
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02/07/2021
02/07/2021
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02/07/2021
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02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-8822
NOAA-NMFS-2020-0031-DRAFT-8823
NOAA-NMFS-2020-0031-DRAFT-8824
NOAA-NMFS-2020-0031-DRAFT-8825
NOAA-NMFS-2020-0031-DRAFT-8826
NOAA-NMFS-2020-0031-DRAFT-8827
NOAA-NMFS-2020-0031-DRAFT-8828
NOAA-NMFS-2020-0031-DRAFT-8829
NOAA-NMFS-2020-0031-DRAFT-8830
NOAA-NMFS-2020-0031-DRAFT-8831
NOAA-NMFS-2020-0031-DRAFT-8832
NOAA-NMFS-2020-0031-DRAFT-8833
NOAA-NMFS-2020-0031-DRAFT-8834
NOAA-NMFS-2020-0031-DRAFT-8835
NOAA-NMFS-2020-0031-DRAFT-8836
NOAA-NMFS-2020-0031-DRAFT-8837
NOAA-NMFS-2020-0031-DRAFT-8838
NOAA-NMFS-2020-0031-DRAFT-8839
NOAA-NMFS-2020-0031-DRAFT-8840
NOAA-NMFS-2020-0031-DRAFT-8841
NOAA-NMFS-2020-0031-DRAFT-8842
NOAA-NMFS-2020-0031-DRAFT-8843
NOAA-NMFS-2020-0031-DRAFT-8844
NOAA-NMFS-2020-0031-DRAFT-8845
NOAA-NMFS-2020-0031-DRAFT-8846
NOAA-NMFS-2020-0031-DRAFT-8847
NOAA-NMFS-2020-0031-DRAFT-8848
NOAA-NMFS-2020-0031-DRAFT-8849
NOAA-NMFS-2020-0031-DRAFT-8850
NOAA-NMFS-2020-0031-DRAFT-8851
NOAA-NMFS-2020-0031-DRAFT-8852
NOAA-NMFS-2020-0031-DRAFT-8853
NOAA-NMFS-2020-0031-DRAFT-8854
NOAA-NMFS-2020-0031-DRAFT-8855
NOAA-NMFS-2020-0031-DRAFT-8856
NOAA-NMFS-2020-0031-DRAFT-8857
NOAA-NMFS-2020-0031-DRAFT-8858
NOAA-NMFS-2020-0031-DRAFT-8859
NOAA-NMFS-2020-0031-DRAFT-8860
NOAA-NMFS-2020-0031-DRAFT-8861
NOAA-NMFS-2020-0031-DRAFT-8862

Comment from Vicki Bacila
Comment from Julie Tj
Comment from Reisa Gould-Donath
Comment from Kathleen Neely
Comment from Kay Brathol-Hostvet
Comment from Linda Knowles
Comment from Cindy Grimes
Comment from Alan Keith
Comment from Jill Pearson
Comment from Pamela VourosCallahan
Comment from Michelle Mitchell
Comment from Jayson Gold-Pambianchi
Comment from Sandy Todd
Comment from Cynthia Robinson
Comment from Peggy Waltz
Comment from Christine Renaye
Comment from D. Gragam
Comment from Christine Donovan
Comment from Robin Hoffman
Comment from Carlos g
Comment from Jana Kiscenko
Comment from Cheryl Snyder
Comment from Glenda Loucks
Comment from Christie Garbin
Comment from Richard Fehr
Comment from David Bazinet
Comment from AD Hall
Comment from Julia Freund
Comment from Juanita Jordan
Comment from Janice Ferrier
Comment from Robert Frank
Comment from Alison Werther
Comment from Jane Laberee
Comment from Esther hernandez
Comment from Mary McCarthy
Comment from Heather Blacha
Comment from Karen Austin
Comment from Bethany Clark
Comment from Natalia Arcila
Comment from Janice Bretti
Comment from Janice Bretti

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3626
NOAA-NMFS-2020-0031-DRAFT-3627
NOAA-NMFS-2020-0031-DRAFT-3628
NOAA-NMFS-2020-0031-DRAFT-3629
NOAA-NMFS-2020-0031-DRAFT-3630
NOAA-NMFS-2020-0031-DRAFT-3631
NOAA-NMFS-2020-0031-DRAFT-3632
NOAA-NMFS-2020-0031-DRAFT-3633
NOAA-NMFS-2020-0031-DRAFT-3634
NOAA-NMFS-2020-0031-DRAFT-3635
NOAA-NMFS-2020-0031-DRAFT-3636
NOAA-NMFS-2020-0031-DRAFT-3637
NOAA-NMFS-2020-0031-DRAFT-3638
NOAA-NMFS-2020-0031-DRAFT-3639
NOAA-NMFS-2020-0031-DRAFT-3640
NOAA-NMFS-2020-0031-DRAFT-3641
NOAA-NMFS-2020-0031-DRAFT-3642
NOAA-NMFS-2020-0031-DRAFT-3643
NOAA-NMFS-2020-0031-DRAFT-3644
NOAA-NMFS-2020-0031-DRAFT-3645
NOAA-NMFS-2020-0031-DRAFT-3646
NOAA-NMFS-2020-0031-DRAFT-3647
NOAA-NMFS-2020-0031-DRAFT-3648
NOAA-NMFS-2020-0031-DRAFT-3649
NOAA-NMFS-2020-0031-DRAFT-3650
NOAA-NMFS-2020-0031-DRAFT-3651
NOAA-NMFS-2020-0031-DRAFT-3652
NOAA-NMFS-2020-0031-DRAFT-3653
NOAA-NMFS-2020-0031-DRAFT-3654
NOAA-NMFS-2020-0031-DRAFT-3655
NOAA-NMFS-2020-0031-DRAFT-3656
NOAA-NMFS-2020-0031-DRAFT-3657
NOAA-NMFS-2020-0031-DRAFT-3658
NOAA-NMFS-2020-0031-DRAFT-3659
NOAA-NMFS-2020-0031-DRAFT-3660
NOAA-NMFS-2020-0031-DRAFT-3661
NOAA-NMFS-2020-0031-DRAFT-3662
NOAA-NMFS-2020-0031-DRAFT-3663
NOAA-NMFS-2020-0031-DRAFT-3664
NOAA-NMFS-2020-0031-DRAFT-3665
NOAA-NMFS-2020-0031-DRAFT-3666

Comment from Gail Markus
Comment from Sally Nelson
Comment from Jessica Koran
Comment from Jane Wilken
Comment from Rich Moser
Comment from Rachel Krucoff
Comment from Ann Debolt
Comment from Anthony Jammal
Comment from cynthia edwards
Comment from M Strimbu
Comment from Stefan Ciosici
Comment from Janet Parkins
Comment from Edie Bruce
Comment from Omar Siddique
Comment from Peter DiSpigno
Comment from Jessica Wardlaw
Comment from Danny Goodman
Comment from Anna Schofield
Comment from Suzi Goller
Comment from Steven nasta
Comment from Kenneth Balmes
Comment from Linda Granato
Comment from Alex Harris
Comment from Charlie Speno
Comment from Ruth Bauer
Comment from michael klein
Comment from Valeri Fornagiel
Comment from Michael Friedman
Comment from T Meyer
Comment from David Grant
Comment from Kristin Campbell
Comment from Jorgen Ramstead
Comment from Pam Evans
Comment from Heather Walters
Comment from James Roberts
Comment from Joshua Seff
Comment from Baylee Markwell
Comment from William Maynard
Comment from Linda Prostko
Comment from Tommy Hendrix
Comment from Tonya Stiffler

02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
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02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-8863
NOAA-NMFS-2020-0031-DRAFT-8864
NOAA-NMFS-2020-0031-DRAFT-8866
NOAA-NMFS-2020-0031-DRAFT-8867
NOAA-NMFS-2020-0031-DRAFT-8868
NOAA-NMFS-2020-0031-DRAFT-8869
NOAA-NMFS-2020-0031-DRAFT-8870
NOAA-NMFS-2020-0031-DRAFT-8871
NOAA-NMFS-2020-0031-DRAFT-8872
NOAA-NMFS-2020-0031-DRAFT-8873
NOAA-NMFS-2020-0031-DRAFT-8874
NOAA-NMFS-2020-0031-DRAFT-8875
NOAA-NMFS-2020-0031-DRAFT-8876
NOAA-NMFS-2020-0031-DRAFT-8877
NOAA-NMFS-2020-0031-DRAFT-8878
NOAA-NMFS-2020-0031-DRAFT-8879
NOAA-NMFS-2020-0031-DRAFT-8880
NOAA-NMFS-2020-0031-DRAFT-8881
NOAA-NMFS-2020-0031-DRAFT-8882
NOAA-NMFS-2020-0031-DRAFT-8883
NOAA-NMFS-2020-0031-DRAFT-8884
NOAA-NMFS-2020-0031-DRAFT-8885
NOAA-NMFS-2020-0031-DRAFT-8886
NOAA-NMFS-2020-0031-DRAFT-8887
NOAA-NMFS-2020-0031-DRAFT-8888
NOAA-NMFS-2020-0031-DRAFT-8889
NOAA-NMFS-2020-0031-DRAFT-8890
NOAA-NMFS-2020-0031-DRAFT-8891
NOAA-NMFS-2020-0031-DRAFT-8892
NOAA-NMFS-2020-0031-DRAFT-8893
NOAA-NMFS-2020-0031-DRAFT-8895
NOAA-NMFS-2020-0031-DRAFT-8896
NOAA-NMFS-2020-0031-DRAFT-8897
NOAA-NMFS-2020-0031-DRAFT-8898
NOAA-NMFS-2020-0031-DRAFT-8899
NOAA-NMFS-2020-0031-DRAFT-8900
NOAA-NMFS-2020-0031-DRAFT-8901
NOAA-NMFS-2020-0031-DRAFT-8902
NOAA-NMFS-2020-0031-DRAFT-8903
NOAA-NMFS-2020-0031-DRAFT-8905
NOAA-NMFS-2020-0031-DRAFT-8907

Comment from Sara Quaglia
Comment from John Kosiorek
Comment from Sonia D
Comment from Kathleen Neely
Comment from Caroline connor
Comment from Maria Hackman
Comment from Christine Doering
Comment from Joy Marzolf
Comment from Sharon Szews
Comment from Cheryl Johnson
Comment from Carolyn Heamer
Comment from Jill Jones
Comment from Al Santella
Comment from Kimberly Betts
Comment from Christine McPherson
Comment from Florie Castroman
Comment from Melodie OBrien
Comment from Peter Valente
Comment from Susan Querze
Comment from Robert Hensman
Comment from Stacie MacRae
Comment from Martha Turlington
Comment from Kerry Daw
Comment from Gail Zwerman
Comment from Alejandra Sanchez
Comment from Denise Nunez
Comment from Robyn Bolton
Comment from Michael Wood
Comment from Joan Boyce
Comment from Toben Cherry
Comment from Carla Christianson
Comment from Joney Anderson
Comment from Candace Temple
Comment from Katherine Mayers
Comment from KM Eichhof
Comment from Michelle Hagan
Comment from Eva Squires
Comment from Elisa Broad
Comment from stephen koury
Comment from Marilyn Leisz
Comment from Stephanie Townsend

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3667
NOAA-NMFS-2020-0031-DRAFT-3668
NOAA-NMFS-2020-0031-DRAFT-3669
NOAA-NMFS-2020-0031-DRAFT-3670
NOAA-NMFS-2020-0031-DRAFT-3671
NOAA-NMFS-2020-0031-DRAFT-3672
NOAA-NMFS-2020-0031-DRAFT-3673
NOAA-NMFS-2020-0031-DRAFT-3674
NOAA-NMFS-2020-0031-DRAFT-3675
NOAA-NMFS-2020-0031-DRAFT-3676
NOAA-NMFS-2020-0031-DRAFT-3677
NOAA-NMFS-2020-0031-DRAFT-3678
NOAA-NMFS-2020-0031-DRAFT-3679
NOAA-NMFS-2020-0031-DRAFT-3680
NOAA-NMFS-2020-0031-DRAFT-3681
NOAA-NMFS-2020-0031-DRAFT-3682
NOAA-NMFS-2020-0031-DRAFT-3683
NOAA-NMFS-2020-0031-DRAFT-3684
NOAA-NMFS-2020-0031-DRAFT-3685
NOAA-NMFS-2020-0031-DRAFT-3686
NOAA-NMFS-2020-0031-DRAFT-3687
NOAA-NMFS-2020-0031-DRAFT-3688
NOAA-NMFS-2020-0031-DRAFT-3689
NOAA-NMFS-2020-0031-DRAFT-3690
NOAA-NMFS-2020-0031-DRAFT-3691
NOAA-NMFS-2020-0031-DRAFT-3692
NOAA-NMFS-2020-0031-DRAFT-3693
NOAA-NMFS-2020-0031-DRAFT-3694
NOAA-NMFS-2020-0031-DRAFT-3695
NOAA-NMFS-2020-0031-DRAFT-3696
NOAA-NMFS-2020-0031-DRAFT-3697
NOAA-NMFS-2020-0031-DRAFT-3698
NOAA-NMFS-2020-0031-DRAFT-3699
NOAA-NMFS-2020-0031-DRAFT-3700
NOAA-NMFS-2020-0031-DRAFT-3701
NOAA-NMFS-2020-0031-DRAFT-3702
NOAA-NMFS-2020-0031-DRAFT-3703
NOAA-NMFS-2020-0031-DRAFT-3704
NOAA-NMFS-2020-0031-DRAFT-3705
NOAA-NMFS-2020-0031-DRAFT-3706
NOAA-NMFS-2020-0031-DRAFT-3707

Comment from Richard Fehr
Comment from Samuel Riccillo
Comment from Wendy Frado
Comment from jeffrey miller
Comment from Carlene Reuscher
Comment from Charlotte Feck
Comment from Leslie Lethridge
Comment from Thomas Trenchard
Comment from Joe LeBlanc
Comment from karen kindel
Comment from Jorge De Cecco
Comment from Beverly Mitchell
Comment from Dennis Morley
Comment from Linda Anderson
Comment from Philip Rampi
Comment from Amanda McCoy
Comment from scott finamore
Comment from s. kaehn
Comment from Cheryl Eames
Comment from Hugh Curtler
Comment from Jonathan Skurnik
Comment from Eleanor Dubois
Comment from M Gutierrez
Comment from Larry D
Comment from Mary Graffagnino
Comment from David Hermanns
Comment from James Patton
Comment from Marilyn Rock
Comment from Bob Brucker
Comment from Kenneth Miller
Comment from Roger Podewell
Comment from Jalil Badran
Comment from Jean Kammer
Comment from Karen Burroughs
Comment from Joann Ramos
Comment from Edward Rengers
Comment from Mark Blandford
Comment from lisa watson
Comment from Marianne Shaw
Comment from Joyce Rohr
Comment from Danielle Leonetti

02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
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02/07/2021
02/07/2021
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02/07/2021
02/07/2021
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02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-8908
NOAA-NMFS-2020-0031-DRAFT-8909
NOAA-NMFS-2020-0031-DRAFT-8910
NOAA-NMFS-2020-0031-DRAFT-8911
NOAA-NMFS-2020-0031-DRAFT-8912
NOAA-NMFS-2020-0031-DRAFT-8913
NOAA-NMFS-2020-0031-DRAFT-8914
NOAA-NMFS-2020-0031-DRAFT-8915
NOAA-NMFS-2020-0031-DRAFT-8916
NOAA-NMFS-2020-0031-DRAFT-8917
NOAA-NMFS-2020-0031-DRAFT-8918
NOAA-NMFS-2020-0031-DRAFT-8919
NOAA-NMFS-2020-0031-DRAFT-8920
NOAA-NMFS-2020-0031-DRAFT-8921
NOAA-NMFS-2020-0031-DRAFT-8922
NOAA-NMFS-2020-0031-DRAFT-8923
NOAA-NMFS-2020-0031-DRAFT-8924
NOAA-NMFS-2020-0031-DRAFT-8925
NOAA-NMFS-2020-0031-DRAFT-8926
NOAA-NMFS-2020-0031-DRAFT-8927
NOAA-NMFS-2020-0031-DRAFT-8928
NOAA-NMFS-2020-0031-DRAFT-8929
NOAA-NMFS-2020-0031-DRAFT-8930
NOAA-NMFS-2020-0031-DRAFT-8931
NOAA-NMFS-2020-0031-DRAFT-8932
NOAA-NMFS-2020-0031-DRAFT-8933
NOAA-NMFS-2020-0031-DRAFT-8934
NOAA-NMFS-2020-0031-DRAFT-8935
NOAA-NMFS-2020-0031-DRAFT-8936
NOAA-NMFS-2020-0031-DRAFT-8937
NOAA-NMFS-2020-0031-DRAFT-8938
NOAA-NMFS-2020-0031-DRAFT-8939
NOAA-NMFS-2020-0031-DRAFT-8940
NOAA-NMFS-2020-0031-DRAFT-8941
NOAA-NMFS-2020-0031-DRAFT-8942
NOAA-NMFS-2020-0031-DRAFT-8943
NOAA-NMFS-2020-0031-DRAFT-8944
NOAA-NMFS-2020-0031-DRAFT-8945
NOAA-NMFS-2020-0031-DRAFT-8946
NOAA-NMFS-2020-0031-DRAFT-8947
NOAA-NMFS-2020-0031-DRAFT-8948

Comment from Jamie MacLaren
Comment from Glenda Macemore
Comment from Robert Hite
Comment from D Fine
Comment from Terrie Williams
Comment from Alana Mawson
Comment from Neil Joslin
Comment from Elizabeth Moch
Comment from Mitzi Combs
Comment from Gina Henrichon
Comment from Allen Wiener
Comment from Marcos Minosso
Comment from Connie Nelson
Comment from Amanda Gordon
Comment from Benjamin Fields
Comment from Barbara Lang
Comment from Ivan Flow
Comment from Karen Swan
Comment from Catherine Black
Comment from P. Kee
Comment from Debi Holt
Comment from Judith u
Comment from jeanne lussier
Comment from Ann Sheffield
Comment from Fran Crilley
Comment from Jan Shimp
Comment from Ken Anderson
Comment from Kelly Thomas
Comment from Karen Burke
Comment from Shirley Mogensen
Comment from Sylvia Mrozewski
Comment from Kathleen Drescher
Comment from Rhiannon Barrett
Comment from Claire Campbell
Comment from Julie Spry
Comment from Janis Wilder
Comment from Kuldeep Singh
Comment from Janis Wilder
Comment from Carolyn Hendrick
Comment from Mari Mennel-Bell
Comment from Thomas Mayer

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3708
NOAA-NMFS-2020-0031-DRAFT-3709
NOAA-NMFS-2020-0031-DRAFT-3710
NOAA-NMFS-2020-0031-DRAFT-3711
NOAA-NMFS-2020-0031-DRAFT-3712
NOAA-NMFS-2020-0031-DRAFT-3713
NOAA-NMFS-2020-0031-DRAFT-3714
NOAA-NMFS-2020-0031-DRAFT-3715
NOAA-NMFS-2020-0031-DRAFT-3716
NOAA-NMFS-2020-0031-DRAFT-3717
NOAA-NMFS-2020-0031-DRAFT-3718
NOAA-NMFS-2020-0031-DRAFT-3719
NOAA-NMFS-2020-0031-DRAFT-3720
NOAA-NMFS-2020-0031-DRAFT-3721
NOAA-NMFS-2020-0031-DRAFT-3722
NOAA-NMFS-2020-0031-DRAFT-3723
NOAA-NMFS-2020-0031-DRAFT-3724
NOAA-NMFS-2020-0031-DRAFT-3725
NOAA-NMFS-2020-0031-DRAFT-3726
NOAA-NMFS-2020-0031-DRAFT-3727
NOAA-NMFS-2020-0031-DRAFT-3728
NOAA-NMFS-2020-0031-DRAFT-3729
NOAA-NMFS-2020-0031-DRAFT-3730
NOAA-NMFS-2020-0031-DRAFT-3731
NOAA-NMFS-2020-0031-DRAFT-3732
NOAA-NMFS-2020-0031-DRAFT-3733
NOAA-NMFS-2020-0031-DRAFT-3734
NOAA-NMFS-2020-0031-DRAFT-3735
NOAA-NMFS-2020-0031-DRAFT-3736
NOAA-NMFS-2020-0031-DRAFT-3737
NOAA-NMFS-2020-0031-DRAFT-3738
NOAA-NMFS-2020-0031-DRAFT-3739
NOAA-NMFS-2020-0031-DRAFT-3740
NOAA-NMFS-2020-0031-DRAFT-3741
NOAA-NMFS-2020-0031-DRAFT-3742
NOAA-NMFS-2020-0031-DRAFT-3743
NOAA-NMFS-2020-0031-DRAFT-3744
NOAA-NMFS-2020-0031-DRAFT-3745
NOAA-NMFS-2020-0031-DRAFT-3746
NOAA-NMFS-2020-0031-DRAFT-3747
NOAA-NMFS-2020-0031-DRAFT-3748

Comment from Clairone Delaney
Comment from Catherine Miller
Comment from Cassie Alford
Comment from Richard Gilman
Comment from Holley Taylor
Comment from Barbara Sargent
Comment from Teresa gingras
Comment from Perry Chapdelaine
Comment from Rachel Cairns
Comment from Lauren A.
Comment from Deirdre Santaniello
Comment from Stefon Lira
Comment from Joan Kolessar
Comment from Barbara Carew
Comment from Terri Reischl
Comment from Trisha Thomas
Comment from Christine Fergusson
Comment from David Rieckmann
Comment from Julia Skelton
Comment from Christina Babst
Comment from Claire Leavitt
Comment from Nancy Heintz
Comment from Stuart Francis
Comment from Carol Taggart
Comment from James Ropicki
Comment from Laura Fleming
Comment from Genevieve Esson
Comment from Isaac Ehrlich
Comment from Janet uffer
Comment from Alexandra Welsko
Comment from Alan Wojtalik
Comment from Jenni Brodie
Comment from Nathan Van Velson
Comment from Ingrid Wendt
Comment from debra tiritilli
Comment from Cynthia Betts
Comment from Linda Peveto
Comment from Robert Krone
Comment from Catherine Santos
Comment from Winke Self
Comment from Darrin McKeehen

02/07/2021
02/07/2021
02/07/2021
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02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-8949
NOAA-NMFS-2020-0031-DRAFT-8950
NOAA-NMFS-2020-0031-DRAFT-8951
NOAA-NMFS-2020-0031-DRAFT-8952
NOAA-NMFS-2020-0031-DRAFT-8953
NOAA-NMFS-2020-0031-DRAFT-8954
NOAA-NMFS-2020-0031-DRAFT-8955
NOAA-NMFS-2020-0031-DRAFT-8956
NOAA-NMFS-2020-0031-DRAFT-8957
NOAA-NMFS-2020-0031-DRAFT-8958
NOAA-NMFS-2020-0031-DRAFT-8959
NOAA-NMFS-2020-0031-DRAFT-8960
NOAA-NMFS-2020-0031-DRAFT-8962
NOAA-NMFS-2020-0031-DRAFT-8963
NOAA-NMFS-2020-0031-DRAFT-8964
NOAA-NMFS-2020-0031-DRAFT-8965
NOAA-NMFS-2020-0031-DRAFT-8967
NOAA-NMFS-2020-0031-DRAFT-8968
NOAA-NMFS-2020-0031-DRAFT-8969
NOAA-NMFS-2020-0031-DRAFT-8970
NOAA-NMFS-2020-0031-DRAFT-8971
NOAA-NMFS-2020-0031-DRAFT-8972
NOAA-NMFS-2020-0031-DRAFT-8973
NOAA-NMFS-2020-0031-DRAFT-8974
NOAA-NMFS-2020-0031-DRAFT-8975
NOAA-NMFS-2020-0031-DRAFT-8976
NOAA-NMFS-2020-0031-DRAFT-8977
NOAA-NMFS-2020-0031-DRAFT-8978
NOAA-NMFS-2020-0031-DRAFT-8979
NOAA-NMFS-2020-0031-DRAFT-8980
NOAA-NMFS-2020-0031-DRAFT-8981
NOAA-NMFS-2020-0031-DRAFT-8982
NOAA-NMFS-2020-0031-DRAFT-8983
NOAA-NMFS-2020-0031-DRAFT-8984
NOAA-NMFS-2020-0031-DRAFT-8985
NOAA-NMFS-2020-0031-DRAFT-8986
NOAA-NMFS-2020-0031-DRAFT-8989
NOAA-NMFS-2020-0031-DRAFT-8990
NOAA-NMFS-2020-0031-DRAFT-8991
NOAA-NMFS-2020-0031-DRAFT-8992
NOAA-NMFS-2020-0031-DRAFT-8993

Comment from Marcia Wade
Comment from Robert Turski
Comment from michael wright
Comment from Kasia Kaczmarek
Comment from Marion Russell
Comment from Maria Vicareo
Comment from Eric Griffith
Comment from Jeanette Kelly
Comment from Joanna Jessup
Comment from Jamie Wilson
Comment from Steve Christianson
Comment from Ann Lokey
Comment from Joann Gilkes
Comment from Susan Tomaselli
Comment from Joann Gilkes
Comment from Dianne Laplante
Comment from Carol Batchelder
Comment from Sandra Ruiz
Comment from Cindy Childers
Comment from Donald Evans
Comment from Kelly Murphy-Kennerson
Comment from Ilya Speranza
Comment from Renee Carbary
Comment from Rhonda Pulliam
Comment from Shirley Glynn
Comment from lin farley
Comment from Laura Ellenwood
Comment from Aurelio Arredondo
Comment from Magdeline Sahdala
Comment from Angela Lambru
Comment from Jeremy Benjamin
Comment from Toni Seeds
Comment from Felicia Mckoy
Comment from K Baker
Comment from Rena Rouse
Comment from elizabeth gray
Comment from Daniel OBrien
Comment from Lizabeth Southworth
Comment from Marcos Minosso
Comment from McClenny Sherri
Comment from linda prive

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01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3749
NOAA-NMFS-2020-0031-DRAFT-3750
NOAA-NMFS-2020-0031-DRAFT-3751
NOAA-NMFS-2020-0031-DRAFT-3752
NOAA-NMFS-2020-0031-DRAFT-3753
NOAA-NMFS-2020-0031-DRAFT-3754
NOAA-NMFS-2020-0031-DRAFT-3755
NOAA-NMFS-2020-0031-DRAFT-3756
NOAA-NMFS-2020-0031-DRAFT-3757
NOAA-NMFS-2020-0031-DRAFT-3758
NOAA-NMFS-2020-0031-DRAFT-3759
NOAA-NMFS-2020-0031-DRAFT-3760
NOAA-NMFS-2020-0031-DRAFT-3761
NOAA-NMFS-2020-0031-DRAFT-3762
NOAA-NMFS-2020-0031-DRAFT-3763
NOAA-NMFS-2020-0031-DRAFT-3764
NOAA-NMFS-2020-0031-DRAFT-3765
NOAA-NMFS-2020-0031-DRAFT-3766
NOAA-NMFS-2020-0031-DRAFT-3767
NOAA-NMFS-2020-0031-DRAFT-3768
NOAA-NMFS-2020-0031-DRAFT-3769
NOAA-NMFS-2020-0031-DRAFT-3770
NOAA-NMFS-2020-0031-DRAFT-3771
NOAA-NMFS-2020-0031-DRAFT-3772
NOAA-NMFS-2020-0031-DRAFT-3773
NOAA-NMFS-2020-0031-DRAFT-3774
NOAA-NMFS-2020-0031-DRAFT-3775
NOAA-NMFS-2020-0031-DRAFT-3776
NOAA-NMFS-2020-0031-DRAFT-3777
NOAA-NMFS-2020-0031-DRAFT-3778
NOAA-NMFS-2020-0031-DRAFT-3779
NOAA-NMFS-2020-0031-DRAFT-3780
NOAA-NMFS-2020-0031-DRAFT-3781
NOAA-NMFS-2020-0031-DRAFT-3782
NOAA-NMFS-2020-0031-DRAFT-3783
NOAA-NMFS-2020-0031-DRAFT-3784
NOAA-NMFS-2020-0031-DRAFT-3785
NOAA-NMFS-2020-0031-DRAFT-3786
NOAA-NMFS-2020-0031-DRAFT-3787
NOAA-NMFS-2020-0031-DRAFT-3788
NOAA-NMFS-2020-0031-DRAFT-3789

Comment from Kris Knoll
Comment from Barbara Cartwright
Comment from Danielle Schneider
Comment from Debbie Gonzales
Comment from lee jenkinson
Comment from Colleen K
Comment from Georgeta Burca
Comment from DJ Wagner
Comment from Carrie Breen
Comment from Marie Rago
Comment from Irene Franzis
Comment from Steven Tracy
Comment from Pat A
Comment from Linda Rudin
Comment from Dana Bingham
Comment from Kevin Walsh
Comment from WILLIAM HARRIS
Comment from Paul Norup
Comment from Mickey McCarthy
Comment from Reevyn Aronson
Comment from Karl Koessel
Comment from Cynthia Willette
Comment from darrell rolstone
Comment from Kimberly Cleland
Comment from John Marro
Comment from john Labella
Comment from Melda Montgomery
Comment from Heather Kalman
Comment from Dan Hubbard
Comment from Lorraine Markoff
Comment from Jan Wilson
Comment from Dee Carroll
Comment from melissa spengler
Comment from Claudio Henriques
Comment from Heloisa Henriques
Comment from Brian Larson
Comment from Claudio Mattos
Comment from Kimberly Simms
Comment from Heloisa Mattos
Comment from Claudio Simoes
Comment from Freda Ballas

02/07/2021
02/07/2021
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02/07/2021
02/07/2021
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02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-8995
NOAA-NMFS-2020-0031-DRAFT-8996
NOAA-NMFS-2020-0031-DRAFT-8997
NOAA-NMFS-2020-0031-DRAFT-8998
NOAA-NMFS-2020-0031-DRAFT-8999
NOAA-NMFS-2020-0031-DRAFT-9000
NOAA-NMFS-2020-0031-DRAFT-9001
NOAA-NMFS-2020-0031-DRAFT-9002
NOAA-NMFS-2020-0031-DRAFT-9003
NOAA-NMFS-2020-0031-DRAFT-9004
NOAA-NMFS-2020-0031-DRAFT-9005
NOAA-NMFS-2020-0031-DRAFT-9007
NOAA-NMFS-2020-0031-DRAFT-9008
NOAA-NMFS-2020-0031-DRAFT-9009
NOAA-NMFS-2020-0031-DRAFT-9010
NOAA-NMFS-2020-0031-DRAFT-9011
NOAA-NMFS-2020-0031-DRAFT-9012
NOAA-NMFS-2020-0031-DRAFT-9013
NOAA-NMFS-2020-0031-DRAFT-9014
NOAA-NMFS-2020-0031-DRAFT-9015
NOAA-NMFS-2020-0031-DRAFT-9016
NOAA-NMFS-2020-0031-DRAFT-9017
NOAA-NMFS-2020-0031-DRAFT-9018
NOAA-NMFS-2020-0031-DRAFT-9019
NOAA-NMFS-2020-0031-DRAFT-9020
NOAA-NMFS-2020-0031-DRAFT-9021
NOAA-NMFS-2020-0031-DRAFT-9022
NOAA-NMFS-2020-0031-DRAFT-9024
NOAA-NMFS-2020-0031-DRAFT-9025
NOAA-NMFS-2020-0031-DRAFT-9026
NOAA-NMFS-2020-0031-DRAFT-9027
NOAA-NMFS-2020-0031-DRAFT-9028
NOAA-NMFS-2020-0031-DRAFT-9029
NOAA-NMFS-2020-0031-DRAFT-9030
NOAA-NMFS-2020-0031-DRAFT-9031
NOAA-NMFS-2020-0031-DRAFT-9032
NOAA-NMFS-2020-0031-DRAFT-9033
NOAA-NMFS-2020-0031-DRAFT-9034
NOAA-NMFS-2020-0031-DRAFT-9035
NOAA-NMFS-2020-0031-DRAFT-9036
NOAA-NMFS-2020-0031-DRAFT-9037

Comment from Astra Kalodukas
Comment from anthony basso
Comment from Caroline Schnell
Comment from Bill Groves
Comment from Rob Shannon
Comment from Susan Borzenski
Comment from Chris Martin
Comment from William Harrell
Comment from elaine peters
Comment from Larry Oconner
Comment from Marcia Kalman
Comment from Lisa Celli
Comment from Dwain Wider
Comment from Tim Chambo
Comment from Pamela Hannula
Comment from Jim Goulet
Comment from Elaine Eudy
Comment from Marcilyn Crawford
Comment from Kimberly Mays
Comment from Sathya Moodley
Comment from Cherie Mazzenga
Comment from Lynn Thornton
Comment from Aila Sundelin
Comment from May Lattanzio
Comment from Linda Kann
Comment from Carlene McLaughlin
Comment from Renate Hamilton
Comment from Diane Clark
Comment from Cathy McIntee
Comment from Rachael Johnson
Comment from Carol Batchelder
Comment from Catherine Kowalczyk.
Comment from Robert Hutchinson
Comment from Michael Golembeski
Comment from Karen Waltman
Comment from Annette Tchelka
Comment from Jane Gerardi
Comment from Victoria Mackey
Comment from Chey Richmond
Comment from John Ventre
Comment from Steffani Magnus-Redinger

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01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3790
NOAA-NMFS-2020-0031-DRAFT-3791
NOAA-NMFS-2020-0031-DRAFT-3792
NOAA-NMFS-2020-0031-DRAFT-3793
NOAA-NMFS-2020-0031-DRAFT-3794
NOAA-NMFS-2020-0031-DRAFT-3795
NOAA-NMFS-2020-0031-DRAFT-3796
NOAA-NMFS-2020-0031-DRAFT-3797
NOAA-NMFS-2020-0031-DRAFT-3798
NOAA-NMFS-2020-0031-DRAFT-3799
NOAA-NMFS-2020-0031-DRAFT-3800
NOAA-NMFS-2020-0031-DRAFT-3801
NOAA-NMFS-2020-0031-DRAFT-3802
NOAA-NMFS-2020-0031-DRAFT-3803
NOAA-NMFS-2020-0031-DRAFT-3804
NOAA-NMFS-2020-0031-DRAFT-3805
NOAA-NMFS-2020-0031-DRAFT-3806
NOAA-NMFS-2020-0031-DRAFT-3807
NOAA-NMFS-2020-0031-DRAFT-3808
NOAA-NMFS-2020-0031-DRAFT-3809
NOAA-NMFS-2020-0031-DRAFT-3810
NOAA-NMFS-2020-0031-DRAFT-3811
NOAA-NMFS-2020-0031-DRAFT-3812
NOAA-NMFS-2020-0031-DRAFT-3813
NOAA-NMFS-2020-0031-DRAFT-3814
NOAA-NMFS-2020-0031-DRAFT-3815
NOAA-NMFS-2020-0031-DRAFT-3816
NOAA-NMFS-2020-0031-DRAFT-3817
NOAA-NMFS-2020-0031-DRAFT-3818
NOAA-NMFS-2020-0031-DRAFT-3819
NOAA-NMFS-2020-0031-DRAFT-3820
NOAA-NMFS-2020-0031-DRAFT-3821
NOAA-NMFS-2020-0031-DRAFT-3822
NOAA-NMFS-2020-0031-DRAFT-3823
NOAA-NMFS-2020-0031-DRAFT-3824
NOAA-NMFS-2020-0031-DRAFT-3825
NOAA-NMFS-2020-0031-DRAFT-3826
NOAA-NMFS-2020-0031-DRAFT-3827
NOAA-NMFS-2020-0031-DRAFT-3828
NOAA-NMFS-2020-0031-DRAFT-3829
NOAA-NMFS-2020-0031-DRAFT-3830

Comment from Daniel Hunter
Comment from Ann Wasgatt
Comment from Paul West
Comment from Kathy Kuyper
Comment from Diana Spears
Comment from Crystal Hernandez
Comment from Dave King
Comment from Cassandra Tereschak
Comment from Mauria McClay
Comment from Claudia Reed
Comment from Chris Scranton
Comment from Nandita Shah
Comment from Anita Gore
Comment from Peter Kahigian
Comment from Charles Biviano
Comment from Trigg Wright
Comment from Laurence Buckingham
Comment from Pati Tomsits
Comment from Carolyn Kiel
Comment from Tung Vu
Comment from D Muraco
Comment from Mark Grzegorzewski
Comment from adrienne pond
Comment from Pamela Goodman
Comment from Michelle Thomas
Comment from Candice Schellenger
Comment from Sandy Levine
Comment from Marsha Dalton
Comment from stanley sayer
Comment from Jerry Matson
Comment from Elizabeth Adan
Comment from Rita Gentry
Comment from John Moy
Comment from Judy Miller-Lyons
Comment from Eve Oconnor
Comment from Brett O'Sullivan
Comment from Drena LaPointe
Comment from Charlotte Al-Jamal
Comment from Midori Furutate
Comment from JL Burns
Comment from Linley Fray

02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
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02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-9038
NOAA-NMFS-2020-0031-DRAFT-9039
NOAA-NMFS-2020-0031-DRAFT-9040
NOAA-NMFS-2020-0031-DRAFT-9041
NOAA-NMFS-2020-0031-DRAFT-9042
NOAA-NMFS-2020-0031-DRAFT-9043
NOAA-NMFS-2020-0031-DRAFT-9044
NOAA-NMFS-2020-0031-DRAFT-9045
NOAA-NMFS-2020-0031-DRAFT-9046
NOAA-NMFS-2020-0031-DRAFT-9047
NOAA-NMFS-2020-0031-DRAFT-9048
NOAA-NMFS-2020-0031-DRAFT-9049
NOAA-NMFS-2020-0031-DRAFT-9050
NOAA-NMFS-2020-0031-DRAFT-9051
NOAA-NMFS-2020-0031-DRAFT-9052
NOAA-NMFS-2020-0031-DRAFT-9053
NOAA-NMFS-2020-0031-DRAFT-9054
NOAA-NMFS-2020-0031-DRAFT-9055
NOAA-NMFS-2020-0031-DRAFT-9056
NOAA-NMFS-2020-0031-DRAFT-9057
NOAA-NMFS-2020-0031-DRAFT-9058
NOAA-NMFS-2020-0031-DRAFT-9059
NOAA-NMFS-2020-0031-DRAFT-9060
NOAA-NMFS-2020-0031-DRAFT-9061
NOAA-NMFS-2020-0031-DRAFT-9062
NOAA-NMFS-2020-0031-DRAFT-9063
NOAA-NMFS-2020-0031-DRAFT-9064
NOAA-NMFS-2020-0031-DRAFT-9065
NOAA-NMFS-2020-0031-DRAFT-9066
NOAA-NMFS-2020-0031-DRAFT-9067
NOAA-NMFS-2020-0031-DRAFT-9068
NOAA-NMFS-2020-0031-DRAFT-9069
NOAA-NMFS-2020-0031-DRAFT-9070
NOAA-NMFS-2020-0031-DRAFT-9071
NOAA-NMFS-2020-0031-DRAFT-9072
NOAA-NMFS-2020-0031-DRAFT-9073
NOAA-NMFS-2020-0031-DRAFT-9074
NOAA-NMFS-2020-0031-DRAFT-9076
NOAA-NMFS-2020-0031-DRAFT-9077
NOAA-NMFS-2020-0031-DRAFT-9078
NOAA-NMFS-2020-0031-DRAFT-9079

Comment from Sundae Fassig
Comment from Terence Sperringer
Comment from Penny Rand
Comment from Harvey Kaiser
Comment from Susan Magdanz
Comment from Cheryl Shushan
Comment from Susan Magdanz
Comment from Judith Bank
Comment from Kathy Morrison
Comment from Rebecca Keaton
Comment from Steven Sardo
Comment from Sharon doti
Comment from Missy Kendrick
Comment from Traci Wolf
Comment from Joan Clark
Comment from Georgeta Burca
Comment from Robyn Frandemo
Comment from Brian Baltin
Comment from Diane Summerville
Comment from Deborah Schafer
Comment from Janet Benoit
Comment from Debora Hojda
Comment from Dianne Walker
Comment from Patricia Alam
Comment from John Herington
Comment from Anne Kaufmann
Comment from Deborah jackson
Comment from Susan Goldin
Comment from Kathrine Jones
Comment from Ruth Tranquillo
Comment from Dawn Motes
Comment from Cindy Childers
Comment from Susan Stewart
Comment from Ilya Speranza
Comment from Alice Welchert
Comment from Chuck Levin
Comment from Barbara Rosenberg
Comment from Adam Silber
Comment from Marietta Boeck
Comment from Maria Zoltek
Comment from Kristy Barrett

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3831
NOAA-NMFS-2020-0031-DRAFT-3832
NOAA-NMFS-2020-0031-DRAFT-3833
NOAA-NMFS-2020-0031-DRAFT-3834
NOAA-NMFS-2020-0031-DRAFT-3835
NOAA-NMFS-2020-0031-DRAFT-3836
NOAA-NMFS-2020-0031-DRAFT-3837
NOAA-NMFS-2020-0031-DRAFT-3838
NOAA-NMFS-2020-0031-DRAFT-3839
NOAA-NMFS-2020-0031-DRAFT-3840
NOAA-NMFS-2020-0031-DRAFT-3841
NOAA-NMFS-2020-0031-DRAFT-3842
NOAA-NMFS-2020-0031-DRAFT-3843
NOAA-NMFS-2020-0031-DRAFT-3844
NOAA-NMFS-2020-0031-DRAFT-3845
NOAA-NMFS-2020-0031-DRAFT-3846
NOAA-NMFS-2020-0031-DRAFT-3847
NOAA-NMFS-2020-0031-DRAFT-3848
NOAA-NMFS-2020-0031-DRAFT-3849
NOAA-NMFS-2020-0031-DRAFT-3850
NOAA-NMFS-2020-0031-DRAFT-3851
NOAA-NMFS-2020-0031-DRAFT-3852
NOAA-NMFS-2020-0031-DRAFT-3853
NOAA-NMFS-2020-0031-DRAFT-3854
NOAA-NMFS-2020-0031-DRAFT-3855
NOAA-NMFS-2020-0031-DRAFT-3856
NOAA-NMFS-2020-0031-DRAFT-3857
NOAA-NMFS-2020-0031-DRAFT-3858
NOAA-NMFS-2020-0031-DRAFT-3859
NOAA-NMFS-2020-0031-DRAFT-3860
NOAA-NMFS-2020-0031-DRAFT-3861
NOAA-NMFS-2020-0031-DRAFT-3862
NOAA-NMFS-2020-0031-DRAFT-3863
NOAA-NMFS-2020-0031-DRAFT-3864
NOAA-NMFS-2020-0031-DRAFT-3865
NOAA-NMFS-2020-0031-DRAFT-3866
NOAA-NMFS-2020-0031-DRAFT-3867
NOAA-NMFS-2020-0031-DRAFT-3868
NOAA-NMFS-2020-0031-DRAFT-3869
NOAA-NMFS-2020-0031-DRAFT-3870
NOAA-NMFS-2020-0031-DRAFT-3871

Comment from Jim Lindsay
Comment from Sherry Knoppers
Comment from Susan Ferrer
Comment from Jo-Ann Murphy
Comment from Pamela Sieck
Comment from Patricia Dobson
Comment from William Hewes
Comment from Helen Syen
Comment from Lanora Ovino
Comment from Greg Gillis
Comment from Arlene Renshaw
Comment from Ken Goldsmith
Comment from Matthew Genaze
Comment from Ruth Boice
Comment from Annika Swenson
Comment from Julie Kramer
Comment from John Darmody
Comment from Sibyll Gilbert
Comment from Earl Guy
Comment from Megan Anderson
Comment from Eric Nichandros
Comment from Jeff Colton
Comment from Kim Tran
Comment from Sarah Manno
Comment from Janet Brooks
Comment from Dr. Kush
Comment from Donna Harris
Comment from Sharon Levine
Comment from Kathleen Funck
Comment from Yogi Caldwell
Comment from Frank Wilsey
Comment from Jennifer Downing
Comment from Morley Schloss
Comment from John Hoffman
Comment from Mary Shellman
Comment from Greg Goodmacher
Comment from jon kiesling
Comment from lynn hoang
Comment from Gerry Royse
Comment from bernard hochendoner
Comment from Joanne Groshardt

02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/07/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
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02/08/2021
02/08/2021
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02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021

NOAA-NMFS-2020-0031-DRAFT-9080
NOAA-NMFS-2020-0031-DRAFT-9081
NOAA-NMFS-2020-0031-DRAFT-9082
NOAA-NMFS-2020-0031-DRAFT-9083
NOAA-NMFS-2020-0031-DRAFT-9084
NOAA-NMFS-2020-0031-DRAFT-9085
NOAA-NMFS-2020-0031-DRAFT-9086
NOAA-NMFS-2020-0031-DRAFT-9087
NOAA-NMFS-2020-0031-DRAFT-9088
NOAA-NMFS-2020-0031-DRAFT-9089
NOAA-NMFS-2020-0031-DRAFT-9091
NOAA-NMFS-2020-0031-DRAFT-9092
NOAA-NMFS-2020-0031-DRAFT-9093
NOAA-NMFS-2020-0031-DRAFT-9094
NOAA-NMFS-2020-0031-DRAFT-9095
NOAA-NMFS-2020-0031-DRAFT-9096
NOAA-NMFS-2020-0031-DRAFT-9097
NOAA-NMFS-2020-0031-DRAFT-9098
NOAA-NMFS-2020-0031-DRAFT-9099
NOAA-NMFS-2020-0031-DRAFT-9100
NOAA-NMFS-2020-0031-DRAFT-9101
NOAA-NMFS-2020-0031-DRAFT-9102
NOAA-NMFS-2020-0031-DRAFT-9103
NOAA-NMFS-2020-0031-DRAFT-9104
NOAA-NMFS-2020-0031-DRAFT-9105
NOAA-NMFS-2020-0031-DRAFT-9106
NOAA-NMFS-2020-0031-DRAFT-9107
NOAA-NMFS-2020-0031-DRAFT-9108
NOAA-NMFS-2020-0031-DRAFT-9109
NOAA-NMFS-2020-0031-DRAFT-9110
NOAA-NMFS-2020-0031-DRAFT-9111
NOAA-NMFS-2020-0031-DRAFT-9112
NOAA-NMFS-2020-0031-DRAFT-9113
NOAA-NMFS-2020-0031-DRAFT-9114
NOAA-NMFS-2020-0031-DRAFT-9115
NOAA-NMFS-2020-0031-DRAFT-9116
NOAA-NMFS-2020-0031-DRAFT-9117
NOAA-NMFS-2020-0031-DRAFT-9118
NOAA-NMFS-2020-0031-DRAFT-9119
NOAA-NMFS-2020-0031-DRAFT-9120
NOAA-NMFS-2020-0031-DRAFT-9121

Comment from Rebecca Hoeschler
Comment from Robert Emory
Comment from Rhonda Pulliam
Comment from Katherine Hampton
Comment from nadine voelz
Comment from Philip Giglio
Comment from Marilyn Garrett
Comment from Wendy Barnes
Comment from Edy Radovic
Comment from Linda Satter
Comment from Ahmid Muwwakkil
Comment from Linda Knowles
Comment from Carla Lussier
Comment from Katherine Martin
Comment from Amanda Kenny
Comment from Catherine Kowalczyk.
Comment from Conor Corkrum
Comment from Cathy McIntee
Comment from Donna Donnelly
Comment from Theresa Sanders
Comment from Darlene Powell
Comment from stacey malles
Comment from Carin Baer
Comment from Cheryl Strube
Comment from Delia Symons
Comment from cheryl kathan
Comment from cheryl kathan
Comment from Stacey Waldrop
Comment from Rachel Vandinter
Comment from G.O. Young
Comment from Bonnie Stucker
Comment from Cherie Mazzenga
Comment from Jennifer Skerrett
Comment from Sally PERZANOWSKi
Comment from Julia Freund
Comment from LouAnn Yebba
Comment from Kris Sagar
Comment from Tina Blankenship
Comment from Michelle Morrow
Comment from Deborah Vessels
Comment from Sharon Roper

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3872
NOAA-NMFS-2020-0031-DRAFT-3873
NOAA-NMFS-2020-0031-DRAFT-3874
NOAA-NMFS-2020-0031-DRAFT-3875
NOAA-NMFS-2020-0031-DRAFT-3876
NOAA-NMFS-2020-0031-DRAFT-3877
NOAA-NMFS-2020-0031-DRAFT-3878
NOAA-NMFS-2020-0031-DRAFT-3879
NOAA-NMFS-2020-0031-DRAFT-3880
NOAA-NMFS-2020-0031-DRAFT-3881
NOAA-NMFS-2020-0031-DRAFT-3882
NOAA-NMFS-2020-0031-DRAFT-3883
NOAA-NMFS-2020-0031-DRAFT-3884
NOAA-NMFS-2020-0031-DRAFT-3885
NOAA-NMFS-2020-0031-DRAFT-3886
NOAA-NMFS-2020-0031-DRAFT-3887
NOAA-NMFS-2020-0031-DRAFT-3888
NOAA-NMFS-2020-0031-DRAFT-3889
NOAA-NMFS-2020-0031-DRAFT-3890
NOAA-NMFS-2020-0031-DRAFT-3891
NOAA-NMFS-2020-0031-DRAFT-3892
NOAA-NMFS-2020-0031-DRAFT-3893
NOAA-NMFS-2020-0031-DRAFT-3894
NOAA-NMFS-2020-0031-DRAFT-3895
NOAA-NMFS-2020-0031-DRAFT-3896
NOAA-NMFS-2020-0031-DRAFT-3897
NOAA-NMFS-2020-0031-DRAFT-3898
NOAA-NMFS-2020-0031-DRAFT-3899
NOAA-NMFS-2020-0031-DRAFT-3900
NOAA-NMFS-2020-0031-DRAFT-3901
NOAA-NMFS-2020-0031-DRAFT-3902
NOAA-NMFS-2020-0031-DRAFT-3903
NOAA-NMFS-2020-0031-DRAFT-3904
NOAA-NMFS-2020-0031-DRAFT-3905
NOAA-NMFS-2020-0031-DRAFT-3906
NOAA-NMFS-2020-0031-DRAFT-3907
NOAA-NMFS-2020-0031-DRAFT-3908
NOAA-NMFS-2020-0031-DRAFT-3909
NOAA-NMFS-2020-0031-DRAFT-3910
NOAA-NMFS-2020-0031-DRAFT-3911
NOAA-NMFS-2020-0031-DRAFT-3912

Comment from Kevin Ryle
Comment from Elizabeth Ishmael
Comment from Becky Andrews
Comment from Suzanne Meredith
Comment from Bernadette Andaloro
Comment from Mary Lassett-Egbert
Comment from Kathrine Jones
Comment from Roger Kulp
Comment from Marla Jacquinot
Comment from Dave Karrmann
Comment from Sandra Burson
Comment from kathleen kaysinger
Comment from James Kuhn
Comment from Charles Lyon
Comment from Theodore Voth
Comment from Teresa Sem
Comment from Catherine DonnellyHwang
Comment from Stephen Carrillo
Comment from Linda Hilf
Comment from Pat Duncan
Comment from Margaret Petkiewicz
Comment from Jim Petkiewicz
Comment from Emily McDonald
Comment from Krystal Krause
Comment from Rita Carlson
Comment from Duncan Brown
Comment from Pamela Speagle
Comment from Maria Mariorenzi
Comment from Steve Wanninger
Comment from Nicole Poston
Comment from sherrill gary
Comment from Carrie Darling
Comment from Joan Costelow
Comment from Louis Esposito
Comment from Patrizia Gestro
Comment from Tracy kanno
Comment from Shani Schulman
Comment from Marc Beschler
Comment from Ellen Hall
Comment from Liz Szabo
Comment from frank belcastro

02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
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02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021

NOAA-NMFS-2020-0031-DRAFT-9122
NOAA-NMFS-2020-0031-DRAFT-9123
NOAA-NMFS-2020-0031-DRAFT-9124
NOAA-NMFS-2020-0031-DRAFT-9125
NOAA-NMFS-2020-0031-DRAFT-9126
NOAA-NMFS-2020-0031-DRAFT-9127
NOAA-NMFS-2020-0031-DRAFT-9128
NOAA-NMFS-2020-0031-DRAFT-9129
NOAA-NMFS-2020-0031-DRAFT-9130
NOAA-NMFS-2020-0031-DRAFT-9131
NOAA-NMFS-2020-0031-DRAFT-9132
NOAA-NMFS-2020-0031-DRAFT-9133
NOAA-NMFS-2020-0031-DRAFT-9134
NOAA-NMFS-2020-0031-DRAFT-9136
NOAA-NMFS-2020-0031-DRAFT-9137
NOAA-NMFS-2020-0031-DRAFT-9138
NOAA-NMFS-2020-0031-DRAFT-9139
NOAA-NMFS-2020-0031-DRAFT-9140
NOAA-NMFS-2020-0031-DRAFT-9141
NOAA-NMFS-2020-0031-DRAFT-9142
NOAA-NMFS-2020-0031-DRAFT-9143
NOAA-NMFS-2020-0031-DRAFT-9144
NOAA-NMFS-2020-0031-DRAFT-9145
NOAA-NMFS-2020-0031-DRAFT-9147
NOAA-NMFS-2020-0031-DRAFT-9148
NOAA-NMFS-2020-0031-DRAFT-9149
NOAA-NMFS-2020-0031-DRAFT-9150
NOAA-NMFS-2020-0031-DRAFT-9151
NOAA-NMFS-2020-0031-DRAFT-9152
NOAA-NMFS-2020-0031-DRAFT-9153
NOAA-NMFS-2020-0031-DRAFT-9154
NOAA-NMFS-2020-0031-DRAFT-9156
NOAA-NMFS-2020-0031-DRAFT-9158
NOAA-NMFS-2020-0031-DRAFT-9159
NOAA-NMFS-2020-0031-DRAFT-9160
NOAA-NMFS-2020-0031-DRAFT-9161
NOAA-NMFS-2020-0031-DRAFT-9162
NOAA-NMFS-2020-0031-DRAFT-9163
NOAA-NMFS-2020-0031-DRAFT-9164
NOAA-NMFS-2020-0031-DRAFT-9165
NOAA-NMFS-2020-0031-DRAFT-9166

Comment from Chris Lomaka
Comment from Stephanie Abraham
Comment from Ann Alessi
Comment from Christel Gezels
Comment from Nancy Daniels
Comment from Mary Al-Tukhaim
Comment from Rhonda Pulliam
Comment from bonita nicolodi-Ward
Comment from Monica Clark
Comment from Slavka Bilka
Comment from Linda DeMent
Comment from Katherine Maney
Comment from Renate Dahlin
Comment from Gabrielle Ackerman
Comment from Anna Surban
Comment from Elizabeth Alexander
Comment from Kathrine Jones
Comment from INES MONTALVO
Comment from Beth Banas
Comment from John Outland
Comment from Joan James
Comment from Kelly Lyon
Comment from Sophie Herndon
Comment from Mary Reposa
Comment from Carol Fonvielle
Comment from Mariellen Mckeon
Comment from Mary ruliffson
Comment from Michelle Dechristofaro
Comment from Diane George
Comment from Margaret Marshall
Comment from Rhonda Pulliam
Comment from Regina Lippert
Comment from Bonnie Stucker
Comment from Glenna Waterman
Comment from Althea Mosa
Comment from Fiona Lennox
Comment from Tracy Drake
Comment from Richard Meyer
Comment from Jessica Lee
Comment from Sue Ratkiewich
Comment from Rosemary Pasquarello

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01/15/2021
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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3913
NOAA-NMFS-2020-0031-DRAFT-3914
NOAA-NMFS-2020-0031-DRAFT-3915
NOAA-NMFS-2020-0031-DRAFT-3916
NOAA-NMFS-2020-0031-DRAFT-3917
NOAA-NMFS-2020-0031-DRAFT-3918
NOAA-NMFS-2020-0031-DRAFT-3919
NOAA-NMFS-2020-0031-DRAFT-3920
NOAA-NMFS-2020-0031-DRAFT-3921
NOAA-NMFS-2020-0031-DRAFT-3922
NOAA-NMFS-2020-0031-DRAFT-3923
NOAA-NMFS-2020-0031-DRAFT-3924
NOAA-NMFS-2020-0031-DRAFT-3925
NOAA-NMFS-2020-0031-DRAFT-3926
NOAA-NMFS-2020-0031-DRAFT-3927
NOAA-NMFS-2020-0031-DRAFT-3928
NOAA-NMFS-2020-0031-DRAFT-3929
NOAA-NMFS-2020-0031-DRAFT-3930
NOAA-NMFS-2020-0031-DRAFT-3931
NOAA-NMFS-2020-0031-DRAFT-3932
NOAA-NMFS-2020-0031-DRAFT-3933
NOAA-NMFS-2020-0031-DRAFT-3934
NOAA-NMFS-2020-0031-DRAFT-3935
NOAA-NMFS-2020-0031-DRAFT-3936
NOAA-NMFS-2020-0031-DRAFT-3937
NOAA-NMFS-2020-0031-DRAFT-3938
NOAA-NMFS-2020-0031-DRAFT-3939
NOAA-NMFS-2020-0031-DRAFT-3940
NOAA-NMFS-2020-0031-DRAFT-3941
NOAA-NMFS-2020-0031-DRAFT-3942
NOAA-NMFS-2020-0031-DRAFT-3943
NOAA-NMFS-2020-0031-DRAFT-3944
NOAA-NMFS-2020-0031-DRAFT-3945
NOAA-NMFS-2020-0031-DRAFT-3946
NOAA-NMFS-2020-0031-DRAFT-3947
NOAA-NMFS-2020-0031-DRAFT-3948
NOAA-NMFS-2020-0031-DRAFT-3949
NOAA-NMFS-2020-0031-DRAFT-3950
NOAA-NMFS-2020-0031-DRAFT-3951
NOAA-NMFS-2020-0031-DRAFT-3952
NOAA-NMFS-2020-0031-DRAFT-3953

Comment from Christine Stewart
Comment from Gilda Levinson
Comment from Wendy Niemeyer
Comment from Charleen Strelke
Comment from wendy niemeyer
Comment from Stephen Keener
Comment from Georgina Wright
Comment from Eric West
Comment from Bash Dave
Comment from winn wilson
Comment from Doug Bender
Comment from Richard Steiger
Comment from Maureen O'Neal
Comment from Marc Kiefer
Comment from Kara Horstman
Comment from Ronald Clayton
Comment from Janet Pecci
Comment from Dorothy Davies
Comment from Bernadette Bauman
Comment from Joe Marsala
Comment from Patricia Nadreau
Comment from Martha Akers
Comment from Elizabeth Scherbak
Comment from Wanda Russell
Comment from Martha Wallace
Comment from Claire Flewitt
Comment from Richard Mercer
Comment from Judy Dufficy
Comment from Carolyn Young
Comment from Debra Culwell
Comment from Richard Jackson
Comment from Nancy Paskowitz
Comment from Virginia Hitchcock
Comment from Jacqueline Glyde
Comment from Martha Stopa
Comment from Lisa Blanck
Comment from Tina Godlove
Comment from joe weis
Comment from Rita Grolitzer
Comment from J Trosper
Comment from Lorna Holmes

02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
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02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021

NOAA-NMFS-2020-0031-DRAFT-9167
NOAA-NMFS-2020-0031-DRAFT-9168
NOAA-NMFS-2020-0031-DRAFT-9169
NOAA-NMFS-2020-0031-DRAFT-9170
NOAA-NMFS-2020-0031-DRAFT-9171
NOAA-NMFS-2020-0031-DRAFT-9172
NOAA-NMFS-2020-0031-DRAFT-9173
NOAA-NMFS-2020-0031-DRAFT-9174
NOAA-NMFS-2020-0031-DRAFT-9175
NOAA-NMFS-2020-0031-DRAFT-9176
NOAA-NMFS-2020-0031-DRAFT-9177
NOAA-NMFS-2020-0031-DRAFT-9178
NOAA-NMFS-2020-0031-DRAFT-9179
NOAA-NMFS-2020-0031-DRAFT-9180
NOAA-NMFS-2020-0031-DRAFT-9181
NOAA-NMFS-2020-0031-DRAFT-9182
NOAA-NMFS-2020-0031-DRAFT-9183
NOAA-NMFS-2020-0031-DRAFT-9184
NOAA-NMFS-2020-0031-DRAFT-9185
NOAA-NMFS-2020-0031-DRAFT-9186
NOAA-NMFS-2020-0031-DRAFT-9187
NOAA-NMFS-2020-0031-DRAFT-9188
NOAA-NMFS-2020-0031-DRAFT-9189
NOAA-NMFS-2020-0031-DRAFT-9190
NOAA-NMFS-2020-0031-DRAFT-9191
NOAA-NMFS-2020-0031-DRAFT-9192
NOAA-NMFS-2020-0031-DRAFT-9193
NOAA-NMFS-2020-0031-DRAFT-9194
NOAA-NMFS-2020-0031-DRAFT-9195
NOAA-NMFS-2020-0031-DRAFT-9196
NOAA-NMFS-2020-0031-DRAFT-9197
NOAA-NMFS-2020-0031-DRAFT-9198
NOAA-NMFS-2020-0031-DRAFT-9199
NOAA-NMFS-2020-0031-DRAFT-9200
NOAA-NMFS-2020-0031-DRAFT-9201
NOAA-NMFS-2020-0031-DRAFT-9203
NOAA-NMFS-2020-0031-DRAFT-9204
NOAA-NMFS-2020-0031-DRAFT-9205
NOAA-NMFS-2020-0031-DRAFT-9206
NOAA-NMFS-2020-0031-DRAFT-9207
NOAA-NMFS-2020-0031-DRAFT-9208

Comment from Patricia Lohn
Comment from dawn sartori
Comment from Debbie Zarr
Comment from Susan Tjarks
Comment from Kelli Vogltance
Comment from Cindy Lewis
Comment from Rose Collins
Comment from jayne lello
Comment from Susan Armistead
Comment from Lorna Fortune
Comment from Marilyn Leisz
Comment from Janis Wilder
Comment from BECKY HERRON
Comment from Kris Sagar
Comment from Margo Bliss
Comment from Jenna Brooks
Comment from Dolores Zaninelli
Comment from Tim Eaton
Comment from Patricia Nininger
Comment from martha goodman
Comment from Sharon Bender
Comment from Michelle Malaspino
Comment from Arleen Weber
Comment from Christine Morrow
Comment from Donna Morelli
Comment from Ana PEREZ
Comment from Karen Fain
Comment from Sarika Arora
Comment from Sieglinde Seidelman
Comment from Barbara Fernandez
Comment from David Keech
Comment from Suzy Murphy
Comment from Eileen. Quinn
Comment from Charles Young
Comment from Tina Machael
Comment from Regina Coffin
Comment from Christine Carter
Comment from Jayson Gold-Pambianchi
Comment from Hilda Troche
Comment from Denise Henyard
Comment from Heather Rajotte

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01/15/2021
01/15/2021
01/15/2021
01/15/2021
01/15/2021

NOAA-NMFS-2020-0031-DRAFT-3954
NOAA-NMFS-2020-0031-DRAFT-3955
NOAA-NMFS-2020-0031-DRAFT-3956
NOAA-NMFS-2020-0031-DRAFT-3957
NOAA-NMFS-2020-0031-DRAFT-3958
NOAA-NMFS-2020-0031-DRAFT-3959
NOAA-NMFS-2020-0031-DRAFT-3960
NOAA-NMFS-2020-0031-DRAFT-3961
NOAA-NMFS-2020-0031-DRAFT-3962
NOAA-NMFS-2020-0031-DRAFT-3963
NOAA-NMFS-2020-0031-DRAFT-3964
NOAA-NMFS-2020-0031-DRAFT-3965
NOAA-NMFS-2020-0031-DRAFT-3966
NOAA-NMFS-2020-0031-DRAFT-3967
NOAA-NMFS-2020-0031-DRAFT-3968
NOAA-NMFS-2020-0031-DRAFT-3969
NOAA-NMFS-2020-0031-DRAFT-3970
NOAA-NMFS-2020-0031-DRAFT-3971
NOAA-NMFS-2020-0031-DRAFT-3972
NOAA-NMFS-2020-0031-DRAFT-3973
NOAA-NMFS-2020-0031-DRAFT-3974
NOAA-NMFS-2020-0031-DRAFT-3975
NOAA-NMFS-2020-0031-DRAFT-3976
NOAA-NMFS-2020-0031-DRAFT-3977
NOAA-NMFS-2020-0031-DRAFT-3978
NOAA-NMFS-2020-0031-DRAFT-3979
NOAA-NMFS-2020-0031-DRAFT-3980
NOAA-NMFS-2020-0031-DRAFT-3981
NOAA-NMFS-2020-0031-DRAFT-3982
NOAA-NMFS-2020-0031-DRAFT-3983
NOAA-NMFS-2020-0031-DRAFT-3984
NOAA-NMFS-2020-0031-DRAFT-3985
NOAA-NMFS-2020-0031-DRAFT-3986
NOAA-NMFS-2020-0031-DRAFT-3987
NOAA-NMFS-2020-0031-DRAFT-3988
NOAA-NMFS-2020-0031-DRAFT-3989
NOAA-NMFS-2020-0031-DRAFT-3990
NOAA-NMFS-2020-0031-DRAFT-3991
NOAA-NMFS-2020-0031-DRAFT-3992
NOAA-NMFS-2020-0031-DRAFT-3993
NOAA-NMFS-2020-0031-DRAFT-3994

Comment from Lynn Peters
Comment from Mary Roehrig
Comment from Stephanie Linam
Comment from Shari DePauw
Comment from Chanda Farley
Comment from Sara Lazarus
Comment from Karen Lampke
Comment from Gloria Aguirre
Comment from Clara Cracchiolo
Comment from Katherine Blevins
Comment from Judy Alter
Comment from Joanna Hollis
Comment from George Burnash
Comment from Pamela Nowell
Comment from Susie Cassens
Comment from Bonnie Grossman
Comment from Jeffrey White
Comment from Hitomi K
Comment from Cassie Alford
Comment from Clare Halloran
Comment from Katy Dealy
Comment from Cindy Wines
Comment from Janine Morgan
Comment from Shireen Farrahi
Comment from Nancy Brown
Comment from Maryann Foss
Comment from C so
Comment from Cary Appenzeller
Comment from Helen Buckley
Comment from molly mendez
Comment from Jennifer Piche
Comment from Roy Adsit
Comment from Nikisha Ross
Comment from Janet Delaney
Comment from Donna Gensler
Comment from Philip Hult
Comment from Deb Staudt
Comment from Sandra Parciak
Comment from cynthia crawford
Comment from Usha Honeyman
Comment from Samantha Peterson

02/08/2021
02/08/2021
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02/08/2021
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02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021

NOAA-NMFS-2020-0031-DRAFT-9209
NOAA-NMFS-2020-0031-DRAFT-9210
NOAA-NMFS-2020-0031-DRAFT-9211
NOAA-NMFS-2020-0031-DRAFT-9212
NOAA-NMFS-2020-0031-DRAFT-9213
NOAA-NMFS-2020-0031-DRAFT-9214
NOAA-NMFS-2020-0031-DRAFT-9215
NOAA-NMFS-2020-0031-DRAFT-9216
NOAA-NMFS-2020-0031-DRAFT-9218
NOAA-NMFS-2020-0031-DRAFT-9219
NOAA-NMFS-2020-0031-DRAFT-9220
NOAA-NMFS-2020-0031-DRAFT-9221
NOAA-NMFS-2020-0031-DRAFT-9222
NOAA-NMFS-2020-0031-DRAFT-9225
NOAA-NMFS-2020-0031-DRAFT-9226
NOAA-NMFS-2020-0031-DRAFT-9227
NOAA-NMFS-2020-0031-DRAFT-9228
NOAA-NMFS-2020-0031-DRAFT-9229
NOAA-NMFS-2020-0031-DRAFT-9230
NOAA-NMFS-2020-0031-DRAFT-9231
NOAA-NMFS-2020-0031-DRAFT-9232
NOAA-NMFS-2020-0031-DRAFT-9233
NOAA-NMFS-2020-0031-DRAFT-9234
NOAA-NMFS-2020-0031-DRAFT-9235
NOAA-NMFS-2020-0031-DRAFT-9236
NOAA-NMFS-2020-0031-DRAFT-9237
NOAA-NMFS-2020-0031-DRAFT-9238
NOAA-NMFS-2020-0031-DRAFT-9239
NOAA-NMFS-2020-0031-DRAFT-9240
NOAA-NMFS-2020-0031-DRAFT-9241
NOAA-NMFS-2020-0031-DRAFT-9242
NOAA-NMFS-2020-0031-DRAFT-9243
NOAA-NMFS-2020-0031-DRAFT-9244
NOAA-NMFS-2020-0031-DRAFT-9245
NOAA-NMFS-2020-0031-DRAFT-9246
NOAA-NMFS-2020-0031-DRAFT-9247
NOAA-NMFS-2020-0031-DRAFT-9248
NOAA-NMFS-2020-0031-DRAFT-9249
NOAA-NMFS-2020-0031-DRAFT-9250
NOAA-NMFS-2020-0031-DRAFT-9252
NOAA-NMFS-2020-0031-DRAFT-9253

Comment from Anne Katz
Comment from Francene Amari
Comment from Helen Fisher
Comment from Katie DiCarlo
Comment from Pam Parisi
Comment from Karen Bagley
Comment from Laurie Samuels
Comment from Pam Nusb
Comment from Roseanne Davidson
Comment from Debbie Carreira
Comment from Denise Desjardin
Comment from KIMBERLY BALDRIDGE
Comment from Patti Barnes
Comment from Linda Satter
Comment from James Majors
Comment from Ilya Speranza
Comment from Allen Leslie
Comment from Enid Cardinal
Comment from Stephen Lieber
Comment from Jerilyn Duefrene
Comment from Cheryl Grabowski
Comment from Amber Davidson
Comment from Gaia Cole
Comment from Carrie Fundarek
Comment from Lesley Touchton
Comment from Kate Harder
Comment from Kate Harder
Comment from Lin Vasquez
Comment from Julia Stevenson
Comment from Katherine Sevalls
Comment from Luis Matheus
Comment from Janet Leavell
Comment from Gerardo French
Comment from Lynn Sajdak
Comment from Thes Surrey
Comment from Leslie Cullis
Comment from Vicki Satterwhite
Comment from Susan Ford
Comment from Denise Bence
Comment from Sharon Russick
Comment from Ruth Gravel

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-3995
NOAA-NMFS-2020-0031-DRAFT-3996
NOAA-NMFS-2020-0031-DRAFT-3997
NOAA-NMFS-2020-0031-DRAFT-3998
NOAA-NMFS-2020-0031-DRAFT-3999
NOAA-NMFS-2020-0031-DRAFT-4000
NOAA-NMFS-2020-0031-DRAFT-4001
NOAA-NMFS-2020-0031-DRAFT-4002
NOAA-NMFS-2020-0031-DRAFT-4003
NOAA-NMFS-2020-0031-DRAFT-4004
NOAA-NMFS-2020-0031-DRAFT-4005
NOAA-NMFS-2020-0031-DRAFT-4006
NOAA-NMFS-2020-0031-DRAFT-4007
NOAA-NMFS-2020-0031-DRAFT-4008
NOAA-NMFS-2020-0031-DRAFT-4009
NOAA-NMFS-2020-0031-DRAFT-4010
NOAA-NMFS-2020-0031-DRAFT-4011
NOAA-NMFS-2020-0031-DRAFT-4012
NOAA-NMFS-2020-0031-DRAFT-4013
NOAA-NMFS-2020-0031-DRAFT-4014
NOAA-NMFS-2020-0031-DRAFT-4015
NOAA-NMFS-2020-0031-DRAFT-4016
NOAA-NMFS-2020-0031-DRAFT-4017
NOAA-NMFS-2020-0031-DRAFT-4018
NOAA-NMFS-2020-0031-DRAFT-4019
NOAA-NMFS-2020-0031-DRAFT-4020
NOAA-NMFS-2020-0031-DRAFT-4021
NOAA-NMFS-2020-0031-DRAFT-4022
NOAA-NMFS-2020-0031-DRAFT-4023
NOAA-NMFS-2020-0031-DRAFT-4024
NOAA-NMFS-2020-0031-DRAFT-4025
NOAA-NMFS-2020-0031-DRAFT-4026
NOAA-NMFS-2020-0031-DRAFT-4027
NOAA-NMFS-2020-0031-DRAFT-4028
NOAA-NMFS-2020-0031-DRAFT-4029
NOAA-NMFS-2020-0031-DRAFT-4030
NOAA-NMFS-2020-0031-DRAFT-4031
NOAA-NMFS-2020-0031-DRAFT-4032
NOAA-NMFS-2020-0031-DRAFT-4033
NOAA-NMFS-2020-0031-DRAFT-4034
NOAA-NMFS-2020-0031-DRAFT-4035

Comment from Jessica Weber
Comment from Stephanie Colony
Comment from Vickie McClintock
Comment from Marie Hyder
Comment from Joel Perkins
Comment from Gretchen Randolph
Comment from Bob Mooney
Comment from Breana Driscoll
Comment from Darlene Harris
Comment from Walter Barnes
Comment from Christina Warrington
Comment from Mha Khalsa
Comment from Maryann Smale
Comment from Tracy Brophy
Comment from Karen Kuhnle
Comment from Marie Garescher
Comment from CYNTHIA CAMPBELL
Comment from Margaret Davies
Comment from Karen Valentine
Comment from Charles Beeghly
Comment from Joyce Grajczyk
Comment from Ellen Ayalin
Comment from William Bader
Comment from Noel Barnes
Comment from Charlotte Harbeson
Comment from Roth Woods
Comment from Michelle Unger
Comment from Kae Bender
Comment from Merrie Thornburg
Comment from Marilyn Mosley
Comment from Lisa Price
Comment from Bryan Wishik
Comment from Linda Carroll
Comment from Sally Cloud
Comment from Jacqueline Glyde
Comment from JEROME WEBER
Comment from David Philleo
Comment from Eloise Maughan
Comment from Bryan Wyberg
Comment from Nancy Cormia
Comment from Debbie Criswell

02/08/2021
02/08/2021
02/08/2021
02/08/2021
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02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021

NOAA-NMFS-2020-0031-DRAFT-9254
NOAA-NMFS-2020-0031-DRAFT-9255
NOAA-NMFS-2020-0031-DRAFT-9256
NOAA-NMFS-2020-0031-DRAFT-9257
NOAA-NMFS-2020-0031-DRAFT-9258
NOAA-NMFS-2020-0031-DRAFT-9259
NOAA-NMFS-2020-0031-DRAFT-9260
NOAA-NMFS-2020-0031-DRAFT-9261
NOAA-NMFS-2020-0031-DRAFT-9262
NOAA-NMFS-2020-0031-DRAFT-9263
NOAA-NMFS-2020-0031-DRAFT-9264
NOAA-NMFS-2020-0031-DRAFT-9265
NOAA-NMFS-2020-0031-DRAFT-9266
NOAA-NMFS-2020-0031-DRAFT-9267
NOAA-NMFS-2020-0031-DRAFT-9268
NOAA-NMFS-2020-0031-DRAFT-9269
NOAA-NMFS-2020-0031-DRAFT-9270
NOAA-NMFS-2020-0031-DRAFT-9271
NOAA-NMFS-2020-0031-DRAFT-9272
NOAA-NMFS-2020-0031-DRAFT-9273
NOAA-NMFS-2020-0031-DRAFT-9274
NOAA-NMFS-2020-0031-DRAFT-9275
NOAA-NMFS-2020-0031-DRAFT-9276
NOAA-NMFS-2020-0031-DRAFT-9277
NOAA-NMFS-2020-0031-DRAFT-9278
NOAA-NMFS-2020-0031-DRAFT-9279
NOAA-NMFS-2020-0031-DRAFT-9280
NOAA-NMFS-2020-0031-DRAFT-9281
NOAA-NMFS-2020-0031-DRAFT-9282
NOAA-NMFS-2020-0031-DRAFT-9283
NOAA-NMFS-2020-0031-DRAFT-9284
NOAA-NMFS-2020-0031-DRAFT-9285
NOAA-NMFS-2020-0031-DRAFT-9286
NOAA-NMFS-2020-0031-DRAFT-9287
NOAA-NMFS-2020-0031-DRAFT-9288
NOAA-NMFS-2020-0031-DRAFT-9289
NOAA-NMFS-2020-0031-DRAFT-9290
NOAA-NMFS-2020-0031-DRAFT-9291
NOAA-NMFS-2020-0031-DRAFT-9292
NOAA-NMFS-2020-0031-DRAFT-9293
NOAA-NMFS-2020-0031-DRAFT-9294

Comment from Margie Miller
Comment from Sandra Ciavatta
Comment from Nataliia Dusanovska
Comment from Tim Cotter
Comment from Martha Luckett
Comment from Ruth Demeter
Comment from Diane Liptak
Comment from Dorota Kolodziejczyk
Comment from Jesse Haddix
Comment from MaryLou Minerva
Comment from Barbara Lewis
Comment from Harold Osorio
Comment from Patricia Audrain
Comment from Holly Crawford
Comment from Rosemary Carton
Comment from Vickie Britton
Comment from Tamah Lettieri
Comment from Naomi Sikes
Comment from Christine Desser
Comment from Nancy Larson
Comment from Karen Dodge
Comment from Laurie Muscat
Comment from Jeff Keswick
Comment from Susan Barry
Comment from Liza Szarejko
Comment from Elizabeth Hopp
Comment from Terry Bulla
Comment from Steve Jesseph
Comment from Lauren A.
Comment from kate linton
Comment from Marianne Weiss
Comment from Susaan straus
Comment from Bob Bugnacki
Comment from Arthur Trupp
Comment from Pat Morales
Comment from Mary Miller
Comment from Darby Stone
Comment from l lubonty
Comment from Lynn Hervey
Comment from Candice Zollicoffer
Comment from Lisa Niebling

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4036
NOAA-NMFS-2020-0031-DRAFT-4037
NOAA-NMFS-2020-0031-DRAFT-4038
NOAA-NMFS-2020-0031-DRAFT-4039
NOAA-NMFS-2020-0031-DRAFT-4040
NOAA-NMFS-2020-0031-DRAFT-4041
NOAA-NMFS-2020-0031-DRAFT-4042
NOAA-NMFS-2020-0031-DRAFT-4043
NOAA-NMFS-2020-0031-DRAFT-4044
NOAA-NMFS-2020-0031-DRAFT-4045
NOAA-NMFS-2020-0031-DRAFT-4046
NOAA-NMFS-2020-0031-DRAFT-4047
NOAA-NMFS-2020-0031-DRAFT-4048
NOAA-NMFS-2020-0031-DRAFT-4049
NOAA-NMFS-2020-0031-DRAFT-4050
NOAA-NMFS-2020-0031-DRAFT-4051
NOAA-NMFS-2020-0031-DRAFT-4052
NOAA-NMFS-2020-0031-DRAFT-4053
NOAA-NMFS-2020-0031-DRAFT-4054
NOAA-NMFS-2020-0031-DRAFT-4055
NOAA-NMFS-2020-0031-DRAFT-4056
NOAA-NMFS-2020-0031-DRAFT-4057
NOAA-NMFS-2020-0031-DRAFT-4058
NOAA-NMFS-2020-0031-DRAFT-4059
NOAA-NMFS-2020-0031-DRAFT-4060
NOAA-NMFS-2020-0031-DRAFT-4061
NOAA-NMFS-2020-0031-DRAFT-4062
NOAA-NMFS-2020-0031-DRAFT-4063
NOAA-NMFS-2020-0031-DRAFT-4064
NOAA-NMFS-2020-0031-DRAFT-4065
NOAA-NMFS-2020-0031-DRAFT-4066
NOAA-NMFS-2020-0031-DRAFT-4067
NOAA-NMFS-2020-0031-DRAFT-4068
NOAA-NMFS-2020-0031-DRAFT-4069
NOAA-NMFS-2020-0031-DRAFT-4070
NOAA-NMFS-2020-0031-DRAFT-4071
NOAA-NMFS-2020-0031-DRAFT-4072
NOAA-NMFS-2020-0031-DRAFT-4073
NOAA-NMFS-2020-0031-DRAFT-4074
NOAA-NMFS-2020-0031-DRAFT-4075
NOAA-NMFS-2020-0031-DRAFT-4076

Comment from Giancarlo Vacca
Comment from Sg g
Comment from elyette weinstein
Comment from Katherine Schulte
Comment from Karen Ratzlaff
Comment from Brant Kotch
Comment from Michael Zeller
Comment from Stephen Johnston
Comment from Kira Durbin
Comment from Mike Lyman
Comment from Pat Condon
Comment from Elena Nau
Comment from Mick Robinson
Comment from Zora Hocking
Comment from Cindy Lance
Comment from Scott Paling
Comment from Yolanda Ferguson
Comment from Elyse Sternberg
Comment from John Varga
Comment from Martin Marcus
Comment from robert minnick
Comment from Richard Esten
Comment from Fayette Krause
Comment from Lyn Younger
Comment from Vicki Leeds
Comment from Virgene Link-New
Comment from Lorrin Koran
Comment from Edward Macan
Comment from Michael Miller
Comment from Lynn Glasscock
Comment from Tony Jones
Comment from Gerald Meslar
Comment from Neil Fisher
Comment from Jessica Stewart
Comment from Harry Corsover
Comment from alba perea
Comment from Francisco Salazar
Comment from Kristin Green
Comment from Allen Myers
Comment from Karen Jacques
Comment from STEVE SIPOS

02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
02/08/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9295
NOAA-NMFS-2020-0031-DRAFT-9296
NOAA-NMFS-2020-0031-DRAFT-9297
NOAA-NMFS-2020-0031-DRAFT-9298
NOAA-NMFS-2020-0031-DRAFT-9299
NOAA-NMFS-2020-0031-DRAFT-9300
NOAA-NMFS-2020-0031-DRAFT-9301
NOAA-NMFS-2020-0031-DRAFT-9302
NOAA-NMFS-2020-0031-DRAFT-9304
NOAA-NMFS-2020-0031-DRAFT-9305
NOAA-NMFS-2020-0031-DRAFT-9306
NOAA-NMFS-2020-0031-DRAFT-9307
NOAA-NMFS-2020-0031-DRAFT-9308
NOAA-NMFS-2020-0031-DRAFT-9309
NOAA-NMFS-2020-0031-DRAFT-9310
NOAA-NMFS-2020-0031-DRAFT-9311
NOAA-NMFS-2020-0031-DRAFT-9312
NOAA-NMFS-2020-0031-DRAFT-9313
NOAA-NMFS-2020-0031-DRAFT-9314
NOAA-NMFS-2020-0031-DRAFT-9315
NOAA-NMFS-2020-0031-DRAFT-9316
NOAA-NMFS-2020-0031-DRAFT-9317
NOAA-NMFS-2020-0031-DRAFT-9318
NOAA-NMFS-2020-0031-DRAFT-9319
NOAA-NMFS-2020-0031-DRAFT-9320
NOAA-NMFS-2020-0031-DRAFT-9321
NOAA-NMFS-2020-0031-DRAFT-9322
NOAA-NMFS-2020-0031-DRAFT-9323
NOAA-NMFS-2020-0031-DRAFT-9324
NOAA-NMFS-2020-0031-DRAFT-9325
NOAA-NMFS-2020-0031-DRAFT-9326
NOAA-NMFS-2020-0031-DRAFT-9327
NOAA-NMFS-2020-0031-DRAFT-9328
NOAA-NMFS-2020-0031-DRAFT-9330
NOAA-NMFS-2020-0031-DRAFT-9331
NOAA-NMFS-2020-0031-DRAFT-9332
NOAA-NMFS-2020-0031-DRAFT-9333
NOAA-NMFS-2020-0031-DRAFT-9334
NOAA-NMFS-2020-0031-DRAFT-9335
NOAA-NMFS-2020-0031-DRAFT-9337
NOAA-NMFS-2020-0031-DRAFT-9338

Comment from Diana Avila
Comment from vicki Anderson
Comment from Shani Schulman
Comment from Naomi Dunlap
Comment from Christine Doering
Comment from Marilyn Garrett
Comment from Bruce McPherson
Comment from Debby Libolt
Comment from Erik Goldman
Comment from Marcine McBride
Comment from Mark Edwards
Comment from Christa angel
Comment from Michelle Dumar
Comment from Eileen Juric
Comment from Tara Conant
Comment from Kathleen Gowdy
Comment from Beth Carr
Comment from Brian von Helms
Comment from Carol Keiter
Comment from Mike Bartlett
Comment from Barbara Fernandez
Comment from Elizabeth Weiner
Comment from Jennifer DeGrandchamp
Comment from Candis Whitney
Comment from kris berner
Comment from Mary Nowak
Comment from Lisa Weaver
Comment from Melody Barnes
Comment from Ronnie DiComo
Comment from Elaine. Stephens
Comment from Lynda Giuliani
Comment from Joan Thorne
Comment from Tanya Polhill
Comment from Heather Behrens
Comment from Carmine Tocci
Comment from Lynn Ciccone
Comment from Jacquelyn Barnes
Comment from Suzanne Dean
Comment from Karen thomas
Comment from Kerry Heck
Comment from David Kyler

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4077
NOAA-NMFS-2020-0031-DRAFT-4078
NOAA-NMFS-2020-0031-DRAFT-4079
NOAA-NMFS-2020-0031-DRAFT-4080
NOAA-NMFS-2020-0031-DRAFT-4081
NOAA-NMFS-2020-0031-DRAFT-4082
NOAA-NMFS-2020-0031-DRAFT-4083
NOAA-NMFS-2020-0031-DRAFT-4084
NOAA-NMFS-2020-0031-DRAFT-4085
NOAA-NMFS-2020-0031-DRAFT-4086
NOAA-NMFS-2020-0031-DRAFT-4087
NOAA-NMFS-2020-0031-DRAFT-4088
NOAA-NMFS-2020-0031-DRAFT-4089
NOAA-NMFS-2020-0031-DRAFT-4090
NOAA-NMFS-2020-0031-DRAFT-4091
NOAA-NMFS-2020-0031-DRAFT-4092
NOAA-NMFS-2020-0031-DRAFT-4093
NOAA-NMFS-2020-0031-DRAFT-4094
NOAA-NMFS-2020-0031-DRAFT-4095
NOAA-NMFS-2020-0031-DRAFT-4096
NOAA-NMFS-2020-0031-DRAFT-4097
NOAA-NMFS-2020-0031-DRAFT-4098
NOAA-NMFS-2020-0031-DRAFT-4099
NOAA-NMFS-2020-0031-DRAFT-4100
NOAA-NMFS-2020-0031-DRAFT-4101
NOAA-NMFS-2020-0031-DRAFT-4102
NOAA-NMFS-2020-0031-DRAFT-4103
NOAA-NMFS-2020-0031-DRAFT-4104
NOAA-NMFS-2020-0031-DRAFT-4105
NOAA-NMFS-2020-0031-DRAFT-4106
NOAA-NMFS-2020-0031-DRAFT-4107
NOAA-NMFS-2020-0031-DRAFT-4108
NOAA-NMFS-2020-0031-DRAFT-4109
NOAA-NMFS-2020-0031-DRAFT-4110
NOAA-NMFS-2020-0031-DRAFT-4111
NOAA-NMFS-2020-0031-DRAFT-4112
NOAA-NMFS-2020-0031-DRAFT-4113
NOAA-NMFS-2020-0031-DRAFT-4114
NOAA-NMFS-2020-0031-DRAFT-4115
NOAA-NMFS-2020-0031-DRAFT-4116
NOAA-NMFS-2020-0031-DRAFT-4117

Comment from Miriam Neff
Comment from Nancy Faulk
Comment from Justin Philipps
Comment from priscilla martinez
Comment from Alva Pingel
Comment from Mika Gentili-Lloyd
Comment from Julie Falkenberg
Comment from Nancy Fohn
Comment from Mary Creighton
Comment from Frances Recca
Comment from namita dalal
Comment from Mary Kennedy
Comment from Veronica Goode
Comment from Sharon Case
Comment from Dina Hussain
Comment from Donald Paden
Comment from Stu Farnsworth
Comment from susan delles
Comment from Aaron Dukes
Comment from Steven Vogel
Comment from Joseph Roman
Comment from Paula Starin
Comment from Nan Warshaw
Comment from Andrew R.
Comment from Lauren Schiffman
Comment from Diana Kostelecky
Comment from Timmie Smith
Comment from Thomas Esposito
Comment from Dennis Trembly
Comment from J Esposito
Comment from Rick Pearson
Comment from Shoshanah McKnight
Comment from Julia Buck
Comment from Lorraine Barrie
Comment from Philip Ratcliff
Comment from Zoe Kane
Comment from Rhys Atkinson
Comment from Pamela VourosCallahan
Comment from Cat A
Comment from Forest Frasieur
Comment from Heather Stuhlmann

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9339
NOAA-NMFS-2020-0031-DRAFT-9340
NOAA-NMFS-2020-0031-DRAFT-9341
NOAA-NMFS-2020-0031-DRAFT-9342
NOAA-NMFS-2020-0031-DRAFT-9343
NOAA-NMFS-2020-0031-DRAFT-9344
NOAA-NMFS-2020-0031-DRAFT-9345
NOAA-NMFS-2020-0031-DRAFT-9346
NOAA-NMFS-2020-0031-DRAFT-9347
NOAA-NMFS-2020-0031-DRAFT-9348
NOAA-NMFS-2020-0031-DRAFT-9349
NOAA-NMFS-2020-0031-DRAFT-9350
NOAA-NMFS-2020-0031-DRAFT-9351
NOAA-NMFS-2020-0031-DRAFT-9352
NOAA-NMFS-2020-0031-DRAFT-9353
NOAA-NMFS-2020-0031-DRAFT-9354
NOAA-NMFS-2020-0031-DRAFT-9355
NOAA-NMFS-2020-0031-DRAFT-9356
NOAA-NMFS-2020-0031-DRAFT-9357
NOAA-NMFS-2020-0031-DRAFT-9358
NOAA-NMFS-2020-0031-DRAFT-9359
NOAA-NMFS-2020-0031-DRAFT-9360
NOAA-NMFS-2020-0031-DRAFT-9361
NOAA-NMFS-2020-0031-DRAFT-9362
NOAA-NMFS-2020-0031-DRAFT-9363
NOAA-NMFS-2020-0031-DRAFT-9364
NOAA-NMFS-2020-0031-DRAFT-9365
NOAA-NMFS-2020-0031-DRAFT-9366
NOAA-NMFS-2020-0031-DRAFT-9367
NOAA-NMFS-2020-0031-DRAFT-9368
NOAA-NMFS-2020-0031-DRAFT-9369
NOAA-NMFS-2020-0031-DRAFT-9370
NOAA-NMFS-2020-0031-DRAFT-9371
NOAA-NMFS-2020-0031-DRAFT-9372
NOAA-NMFS-2020-0031-DRAFT-9373
NOAA-NMFS-2020-0031-DRAFT-9374
NOAA-NMFS-2020-0031-DRAFT-9375
NOAA-NMFS-2020-0031-DRAFT-9376
NOAA-NMFS-2020-0031-DRAFT-9377
NOAA-NMFS-2020-0031-DRAFT-9378
NOAA-NMFS-2020-0031-DRAFT-9379

Comment from Debbie Lynch
Comment from Maria Zoltek
Comment from Maria Zoltek
Comment from Ken Ferris
Comment from Diamanda Bifshas
Comment from Douglas Henderson
Comment from Teresa Torres
Comment from Mark Lotito
Comment from Norma hanson
Comment from James Porcello
Comment from Laura Brown
Comment from Alejandra Sanchez
Comment from Sharon Levy
Comment from Lillian Swindell
Comment from Ken Schefter
Comment from Susan Ward
Comment from alena Jorgensen
Comment from BERNA NITZBERG
Comment from Gail Ohara
Comment from Neil Prater
Comment from Angelika Pfutzner
Comment from David Ringle
Comment from Nancy Loftin
Comment from Jodi Rodar
Comment from Tim Pokela
Comment from Erica Rose
Comment from William Clifford
Comment from Nicola Giorgio
Comment from James Roberts
Comment from Liam Dineen
Comment from Barbara Gerhart
Comment from Hans Hagedorn
Comment from Holly Crawford
Comment from Adrienne Naylor
Comment from Carol Collins
Comment from Amy Anderson
Comment from Lauren Liuza
Comment from Marcia Kellam
Comment from shirley mccarthy
Comment from Sheila Erlbaum
Comment from Catherine Lambeth

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4118
NOAA-NMFS-2020-0031-DRAFT-4119
NOAA-NMFS-2020-0031-DRAFT-4120
NOAA-NMFS-2020-0031-DRAFT-4121
NOAA-NMFS-2020-0031-DRAFT-4122
NOAA-NMFS-2020-0031-DRAFT-4123
NOAA-NMFS-2020-0031-DRAFT-4124
NOAA-NMFS-2020-0031-DRAFT-4125
NOAA-NMFS-2020-0031-DRAFT-4126
NOAA-NMFS-2020-0031-DRAFT-4127
NOAA-NMFS-2020-0031-DRAFT-4128
NOAA-NMFS-2020-0031-DRAFT-4129
NOAA-NMFS-2020-0031-DRAFT-4130
NOAA-NMFS-2020-0031-DRAFT-4131
NOAA-NMFS-2020-0031-DRAFT-4132
NOAA-NMFS-2020-0031-DRAFT-4133
NOAA-NMFS-2020-0031-DRAFT-4134
NOAA-NMFS-2020-0031-DRAFT-4135
NOAA-NMFS-2020-0031-DRAFT-4136
NOAA-NMFS-2020-0031-DRAFT-4137
NOAA-NMFS-2020-0031-DRAFT-4138
NOAA-NMFS-2020-0031-DRAFT-4139
NOAA-NMFS-2020-0031-DRAFT-4140
NOAA-NMFS-2020-0031-DRAFT-4141
NOAA-NMFS-2020-0031-DRAFT-4142
NOAA-NMFS-2020-0031-DRAFT-4143
NOAA-NMFS-2020-0031-DRAFT-4144
NOAA-NMFS-2020-0031-DRAFT-4145
NOAA-NMFS-2020-0031-DRAFT-4146
NOAA-NMFS-2020-0031-DRAFT-4147
NOAA-NMFS-2020-0031-DRAFT-4148
NOAA-NMFS-2020-0031-DRAFT-4149
NOAA-NMFS-2020-0031-DRAFT-4150
NOAA-NMFS-2020-0031-DRAFT-4151
NOAA-NMFS-2020-0031-DRAFT-4152
NOAA-NMFS-2020-0031-DRAFT-4153
NOAA-NMFS-2020-0031-DRAFT-4154
NOAA-NMFS-2020-0031-DRAFT-4155
NOAA-NMFS-2020-0031-DRAFT-4156
NOAA-NMFS-2020-0031-DRAFT-4157
NOAA-NMFS-2020-0031-DRAFT-4158

Comment from Richard Bartkowicz
Comment from Sarah Peters
Comment from Mari Dominguez
Comment from Sandy Rhein
Comment from Mary Will
Comment from Grace Padelford
Comment from Kathryn Davidson
Comment from Joan Walker
Comment from CARLINA MORA
Comment from Shakayla Thomas
Comment from Cathy Cousins
Comment from Mary Miller
Comment from Ben Rall
Comment from Geralyn Gulseth
Comment from Patrick Soby
Comment from Celeste Watt
Comment from april doyle
Comment from Melissa Warfield
Comment from The Kern
Comment from Robert Meier
Comment from Theodore King
Comment from stewart casey
Comment from Eric Fosburgh
Comment from Ragen Serra
Comment from Patricia Claussen
Comment from Charles Miller
Comment from Patricia Horter
Comment from Tamara Voyles
Comment from Justin Smith
Comment from Ellen Beschler
Comment from Beverly Antonio
Comment from Beverly Menosky
Comment from Tory Ewing
Comment from DALE ANANIA
Comment from Rolf Best
Comment from Beth Carr
Comment from Randy Gerlach
Comment from David Neral
Comment from Stacie Dullmeyer
Comment from Mary Johns
Comment from Dianna MacLeod

02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9380
NOAA-NMFS-2020-0031-DRAFT-9381
NOAA-NMFS-2020-0031-DRAFT-9382
NOAA-NMFS-2020-0031-DRAFT-9383
NOAA-NMFS-2020-0031-DRAFT-9384
NOAA-NMFS-2020-0031-DRAFT-9385
NOAA-NMFS-2020-0031-DRAFT-9386
NOAA-NMFS-2020-0031-DRAFT-9387
NOAA-NMFS-2020-0031-DRAFT-9388
NOAA-NMFS-2020-0031-DRAFT-9389
NOAA-NMFS-2020-0031-DRAFT-9390
NOAA-NMFS-2020-0031-DRAFT-9391
NOAA-NMFS-2020-0031-DRAFT-9392
NOAA-NMFS-2020-0031-DRAFT-9393
NOAA-NMFS-2020-0031-DRAFT-9394
NOAA-NMFS-2020-0031-DRAFT-9395
NOAA-NMFS-2020-0031-DRAFT-9396
NOAA-NMFS-2020-0031-DRAFT-9397
NOAA-NMFS-2020-0031-DRAFT-9398
NOAA-NMFS-2020-0031-DRAFT-9399
NOAA-NMFS-2020-0031-DRAFT-9400
NOAA-NMFS-2020-0031-DRAFT-9401
NOAA-NMFS-2020-0031-DRAFT-9402
NOAA-NMFS-2020-0031-DRAFT-9403
NOAA-NMFS-2020-0031-DRAFT-9404
NOAA-NMFS-2020-0031-DRAFT-9405
NOAA-NMFS-2020-0031-DRAFT-9406
NOAA-NMFS-2020-0031-DRAFT-9407
NOAA-NMFS-2020-0031-DRAFT-9408
NOAA-NMFS-2020-0031-DRAFT-9409
NOAA-NMFS-2020-0031-DRAFT-9410
NOAA-NMFS-2020-0031-DRAFT-9411
NOAA-NMFS-2020-0031-DRAFT-9412
NOAA-NMFS-2020-0031-DRAFT-9413
NOAA-NMFS-2020-0031-DRAFT-9414
NOAA-NMFS-2020-0031-DRAFT-9415
NOAA-NMFS-2020-0031-DRAFT-9416
NOAA-NMFS-2020-0031-DRAFT-9417
NOAA-NMFS-2020-0031-DRAFT-9418
NOAA-NMFS-2020-0031-DRAFT-9419
NOAA-NMFS-2020-0031-DRAFT-9420

Comment from Janine Solano
Comment from Lynne Brimecombe
Comment from Kim Streich
Comment from Jared Howe
Comment from Sherry Macias
Comment from Edward Laurson
Comment from LuAnn Yocky
Comment from Patrick DAnnunzio
Comment from Lori Kuebler
Comment from Karen Christiansen
Comment from John Cipora
Comment from Shannon Foreman
Comment from Robbie White
Comment from Mark Soenksen
Comment from Melissa Sheppard
Comment from Denise Hosta
Comment from ron weiss
Comment from Elaine Eudy
Comment from Kathy Spera
Comment from Joseph Gulas
Comment from James Hickey
Comment from Elihu Cohen
Comment from Kelly schwartz
Comment from David Worley
Comment from Leonard Samford
Comment from Steve Mattan
Comment from Alice LeTourneau
Comment from Elsy Shallman
Comment from Carroll Abshier
Comment from Holly Burgin
Comment from JANINE COMRACK
Comment from Maxine Goodyear
Comment from Deborah Rodell
Comment from Cheryl Trosper
Comment from Krystle Viola
Comment from Leann Huber
Comment from Geoffrey Ogden
Comment from Richard Kite
Comment from Rick Savage
Comment from helen goodspeed
Comment from Joan Baseman

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4159
NOAA-NMFS-2020-0031-DRAFT-4160
NOAA-NMFS-2020-0031-DRAFT-4161
NOAA-NMFS-2020-0031-DRAFT-4162
NOAA-NMFS-2020-0031-DRAFT-4163
NOAA-NMFS-2020-0031-DRAFT-4164
NOAA-NMFS-2020-0031-DRAFT-4165
NOAA-NMFS-2020-0031-DRAFT-4166
NOAA-NMFS-2020-0031-DRAFT-4167
NOAA-NMFS-2020-0031-DRAFT-4168
NOAA-NMFS-2020-0031-DRAFT-4169
NOAA-NMFS-2020-0031-DRAFT-4170
NOAA-NMFS-2020-0031-DRAFT-4171
NOAA-NMFS-2020-0031-DRAFT-4172
NOAA-NMFS-2020-0031-DRAFT-4173
NOAA-NMFS-2020-0031-DRAFT-4174
NOAA-NMFS-2020-0031-DRAFT-4175
NOAA-NMFS-2020-0031-DRAFT-4176
NOAA-NMFS-2020-0031-DRAFT-4177
NOAA-NMFS-2020-0031-DRAFT-4178
NOAA-NMFS-2020-0031-DRAFT-4179
NOAA-NMFS-2020-0031-DRAFT-4180
NOAA-NMFS-2020-0031-DRAFT-4181
NOAA-NMFS-2020-0031-DRAFT-4182
NOAA-NMFS-2020-0031-DRAFT-4183
NOAA-NMFS-2020-0031-DRAFT-4184
NOAA-NMFS-2020-0031-DRAFT-4185
NOAA-NMFS-2020-0031-DRAFT-4186
NOAA-NMFS-2020-0031-DRAFT-4187
NOAA-NMFS-2020-0031-DRAFT-4188
NOAA-NMFS-2020-0031-DRAFT-4189
NOAA-NMFS-2020-0031-DRAFT-4190
NOAA-NMFS-2020-0031-DRAFT-4191
NOAA-NMFS-2020-0031-DRAFT-4192
NOAA-NMFS-2020-0031-DRAFT-4193
NOAA-NMFS-2020-0031-DRAFT-4194
NOAA-NMFS-2020-0031-DRAFT-4195
NOAA-NMFS-2020-0031-DRAFT-4196
NOAA-NMFS-2020-0031-DRAFT-4197
NOAA-NMFS-2020-0031-DRAFT-4198
NOAA-NMFS-2020-0031-DRAFT-4199

Comment from Robert Fingerman
Comment from Kacey Donston
Comment from Maurine Canarsky
Comment from Carol Meehan
Comment from Adolfo Bermeo
Comment from Laura Wheeler
Comment from Dan Morgan
Comment from Marianne Kai
Comment from Christie Sanders
Comment from Sue Halligan
Comment from Jennifer Gilbert
Comment from Bob Miller
Comment from Danielle Wolf
Comment from Satya Vayu
Comment from David Stanley
Comment from Robert Frcek
Comment from Leigh Barrett
Comment from Amelia Jones
Comment from Ira Gerard
Comment from Angel McCarter
Comment from Jane Yater
Comment from Alice Murrell
Comment from Aida Marina
Comment from Cindy Artist
Comment from betsy levy
Comment from Rita Castillo
Comment from Terrell Rodefer
Comment from Tracy Smith
Comment from gregory.a.. clewell
Comment from Shelley Ottenbrite
Comment from Alexandre Kaluzhski
Comment from Bea MacGregor
Comment from Cathy Sikes
Comment from Anne Russell
Comment from Rungruedee Nualchawee
Comment from Ann Kinney
Comment from Kim Wick
Comment from Malcolm Elgut
Comment from mary camardo
Comment from David Meade
Comment from Justina Gruling

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9421
NOAA-NMFS-2020-0031-DRAFT-9422
NOAA-NMFS-2020-0031-DRAFT-9423
NOAA-NMFS-2020-0031-DRAFT-9424
NOAA-NMFS-2020-0031-DRAFT-9425
NOAA-NMFS-2020-0031-DRAFT-9426
NOAA-NMFS-2020-0031-DRAFT-9427
NOAA-NMFS-2020-0031-DRAFT-9428
NOAA-NMFS-2020-0031-DRAFT-9429
NOAA-NMFS-2020-0031-DRAFT-9430
NOAA-NMFS-2020-0031-DRAFT-9431
NOAA-NMFS-2020-0031-DRAFT-9432
NOAA-NMFS-2020-0031-DRAFT-9433
NOAA-NMFS-2020-0031-DRAFT-9434
NOAA-NMFS-2020-0031-DRAFT-9435
NOAA-NMFS-2020-0031-DRAFT-9436
NOAA-NMFS-2020-0031-DRAFT-9437
NOAA-NMFS-2020-0031-DRAFT-9438
NOAA-NMFS-2020-0031-DRAFT-9439
NOAA-NMFS-2020-0031-DRAFT-9440
NOAA-NMFS-2020-0031-DRAFT-9441
NOAA-NMFS-2020-0031-DRAFT-9442
NOAA-NMFS-2020-0031-DRAFT-9443
NOAA-NMFS-2020-0031-DRAFT-9444
NOAA-NMFS-2020-0031-DRAFT-9445
NOAA-NMFS-2020-0031-DRAFT-9446
NOAA-NMFS-2020-0031-DRAFT-9447
NOAA-NMFS-2020-0031-DRAFT-9448
NOAA-NMFS-2020-0031-DRAFT-9449
NOAA-NMFS-2020-0031-DRAFT-9450
NOAA-NMFS-2020-0031-DRAFT-9451
NOAA-NMFS-2020-0031-DRAFT-9452
NOAA-NMFS-2020-0031-DRAFT-9453
NOAA-NMFS-2020-0031-DRAFT-9454
NOAA-NMFS-2020-0031-DRAFT-9455
NOAA-NMFS-2020-0031-DRAFT-9456
NOAA-NMFS-2020-0031-DRAFT-9457
NOAA-NMFS-2020-0031-DRAFT-9458
NOAA-NMFS-2020-0031-DRAFT-9459
NOAA-NMFS-2020-0031-DRAFT-9460
NOAA-NMFS-2020-0031-DRAFT-9461

Comment from donna roddvik
Comment from Clivonne Corbett
Comment from Nicholas Frederick
Comment from Diane Abbysinian
Comment from Theresa Johnson
Comment from Ingrid Rochester
Comment from Melissa Heithaus
Comment from Clivonne Corbett
Comment from Linda Osborn
Comment from Judy bierbaum
Comment from Peter Wood
Comment from Terry Cummings
Comment from Paul Collins
Comment from Jennifer Miller
Comment from Rachel Morr
Comment from Robert Duke
Comment from Valory Mitchell
Comment from Roberta Parrish
Comment from Kathleen Broderick
Comment from Lucinda Tucker
Comment from Julia Hart
Comment from Steve Troyanovich
Comment from John Ziegler
Comment from Jennifer Rogers
Comment from Amber Manske
Comment from Danielle Howley
Comment from Judy Barringer
Comment from Terry Warkentine
Comment from nancy siebert
Comment from Peter Gradoni
Comment from chris lewis
Comment from Anne hammond
Comment from Ellie McGuire
Comment from Star Seastone
Comment from Michael Lombardi
Comment from Greg Schuett
Comment from Julie Sacco
Comment from Daniel Kozminski
Comment from Gerald Kretmar
Comment from A Lindemann
Comment from Carolyn Denton

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01/16/2021
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01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4200
NOAA-NMFS-2020-0031-DRAFT-4201
NOAA-NMFS-2020-0031-DRAFT-4202
NOAA-NMFS-2020-0031-DRAFT-4203
NOAA-NMFS-2020-0031-DRAFT-4204
NOAA-NMFS-2020-0031-DRAFT-4205
NOAA-NMFS-2020-0031-DRAFT-4206
NOAA-NMFS-2020-0031-DRAFT-4207
NOAA-NMFS-2020-0031-DRAFT-4208
NOAA-NMFS-2020-0031-DRAFT-4209
NOAA-NMFS-2020-0031-DRAFT-4210
NOAA-NMFS-2020-0031-DRAFT-4211
NOAA-NMFS-2020-0031-DRAFT-4212
NOAA-NMFS-2020-0031-DRAFT-4213
NOAA-NMFS-2020-0031-DRAFT-4214
NOAA-NMFS-2020-0031-DRAFT-4215
NOAA-NMFS-2020-0031-DRAFT-4216
NOAA-NMFS-2020-0031-DRAFT-4217
NOAA-NMFS-2020-0031-DRAFT-4218
NOAA-NMFS-2020-0031-DRAFT-4219
NOAA-NMFS-2020-0031-DRAFT-4220
NOAA-NMFS-2020-0031-DRAFT-4221
NOAA-NMFS-2020-0031-DRAFT-4222
NOAA-NMFS-2020-0031-DRAFT-4223
NOAA-NMFS-2020-0031-DRAFT-4224
NOAA-NMFS-2020-0031-DRAFT-4225
NOAA-NMFS-2020-0031-DRAFT-4226
NOAA-NMFS-2020-0031-DRAFT-4227
NOAA-NMFS-2020-0031-DRAFT-4228
NOAA-NMFS-2020-0031-DRAFT-4229
NOAA-NMFS-2020-0031-DRAFT-4230
NOAA-NMFS-2020-0031-DRAFT-4231
NOAA-NMFS-2020-0031-DRAFT-4232
NOAA-NMFS-2020-0031-DRAFT-4233
NOAA-NMFS-2020-0031-DRAFT-4234
NOAA-NMFS-2020-0031-DRAFT-4235
NOAA-NMFS-2020-0031-DRAFT-4236
NOAA-NMFS-2020-0031-DRAFT-4237
NOAA-NMFS-2020-0031-DRAFT-4238
NOAA-NMFS-2020-0031-DRAFT-4239
NOAA-NMFS-2020-0031-DRAFT-4240

Comment from Stephen Anderson
Comment from Melissa Barnard
Comment from Kathy Oppenhuizen
Comment from Anne St John-Kodish
Comment from David Rosmer
Comment from Monya Duvall
Comment from George Ruiz
Comment from Diane Sparks
Comment from Guadalupe Yanez
Comment from Matthew VonderHaar
Comment from Kerry White
Comment from joe smith
Comment from Kirk Bails
Comment from Diane Williams
Comment from Heidi Baird
Comment from Sarah Dorst
Comment from Karen Boehler
Comment from Vicky VanValkenburg
Comment from Nancy Freedland
Comment from Rothery Gensel
Comment from Joseph Reel
Comment from Tom Ress
Comment from David Adams
Comment from gertrude robinson
Comment from Becky Lechner
Comment from Monika Seegler
Comment from Andrew Hughes
Comment from Patti Mickelsen
Comment from Jim Noordyk
Comment from Peter Lee
Comment from Oron Bass
Comment from arline lohli
Comment from Virginia Bottorff
Comment from Mary Armstrong
Comment from Neville Bruce
Comment from Brian Ainsley
Comment from Mary Hamilton
Comment from Sara Graziosa
Comment from Deborah Walsh
Comment from Anita Cafferty
Comment from Jimmy Fleming

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9462
NOAA-NMFS-2020-0031-DRAFT-9463
NOAA-NMFS-2020-0031-DRAFT-9464
NOAA-NMFS-2020-0031-DRAFT-9465
NOAA-NMFS-2020-0031-DRAFT-9466
NOAA-NMFS-2020-0031-DRAFT-9467
NOAA-NMFS-2020-0031-DRAFT-9468
NOAA-NMFS-2020-0031-DRAFT-9469
NOAA-NMFS-2020-0031-DRAFT-9470
NOAA-NMFS-2020-0031-DRAFT-9471
NOAA-NMFS-2020-0031-DRAFT-9472
NOAA-NMFS-2020-0031-DRAFT-9473
NOAA-NMFS-2020-0031-DRAFT-9474
NOAA-NMFS-2020-0031-DRAFT-9475
NOAA-NMFS-2020-0031-DRAFT-9476
NOAA-NMFS-2020-0031-DRAFT-9477
NOAA-NMFS-2020-0031-DRAFT-9478
NOAA-NMFS-2020-0031-DRAFT-9479
NOAA-NMFS-2020-0031-DRAFT-9480
NOAA-NMFS-2020-0031-DRAFT-9481
NOAA-NMFS-2020-0031-DRAFT-9482
NOAA-NMFS-2020-0031-DRAFT-9484
NOAA-NMFS-2020-0031-DRAFT-9485
NOAA-NMFS-2020-0031-DRAFT-9486
NOAA-NMFS-2020-0031-DRAFT-9487
NOAA-NMFS-2020-0031-DRAFT-9488
NOAA-NMFS-2020-0031-DRAFT-9489
NOAA-NMFS-2020-0031-DRAFT-9490
NOAA-NMFS-2020-0031-DRAFT-9491
NOAA-NMFS-2020-0031-DRAFT-9492
NOAA-NMFS-2020-0031-DRAFT-9493
NOAA-NMFS-2020-0031-DRAFT-9494
NOAA-NMFS-2020-0031-DRAFT-9495
NOAA-NMFS-2020-0031-DRAFT-9496
NOAA-NMFS-2020-0031-DRAFT-9497
NOAA-NMFS-2020-0031-DRAFT-9498
NOAA-NMFS-2020-0031-DRAFT-9499
NOAA-NMFS-2020-0031-DRAFT-9500
NOAA-NMFS-2020-0031-DRAFT-9501
NOAA-NMFS-2020-0031-DRAFT-9502
NOAA-NMFS-2020-0031-DRAFT-9503

Comment from William Fisk
Comment from Jerry Lee
Comment from Tara Warfield
Comment from julia knaz
Comment from Arthur Schurr
Comment from r tippens
Comment from David Wassilak
Comment from Jennifer Hehle
Comment from Scott Emsley
Comment from Stephen Edinger
Comment from Anca Vlasopolos
Comment from j M
Comment from Mariko Kahn
Comment from Suzanne Claggett
Comment from Linda Anderson
Comment from Janice Higgins
Comment from Ronda O'Bryant
Comment from Corinna Hasbach
Comment from Sally Stroud
Comment from Susan Herman
Comment from Linda Andrade
Comment from Kyle Embler
Comment from jeannie perry
Comment from Larry Denio
Comment from Dominique Edmondson
Comment from Jessica Pate
Comment from Carol Modrell
Comment from Nicola Nicolai
Comment from Linda Bescript
Comment from Elaine Johnson
Comment from Neal Steiner
Comment from Deborah Thelen
Comment from Susan Jordan
Comment from George Jackman
Comment from ed sobey
Comment from Daniel Wilkinson
Comment from Leticia Garcia
Comment from Eileen Fazzini
Comment from Katherine simon
Comment from Mayelly Moreno
Comment from Edythe Quinn

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4241
NOAA-NMFS-2020-0031-DRAFT-4242
NOAA-NMFS-2020-0031-DRAFT-4243
NOAA-NMFS-2020-0031-DRAFT-4244
NOAA-NMFS-2020-0031-DRAFT-4245
NOAA-NMFS-2020-0031-DRAFT-4246
NOAA-NMFS-2020-0031-DRAFT-4247
NOAA-NMFS-2020-0031-DRAFT-4248
NOAA-NMFS-2020-0031-DRAFT-4249
NOAA-NMFS-2020-0031-DRAFT-4250
NOAA-NMFS-2020-0031-DRAFT-4251
NOAA-NMFS-2020-0031-DRAFT-4252
NOAA-NMFS-2020-0031-DRAFT-4253
NOAA-NMFS-2020-0031-DRAFT-4254
NOAA-NMFS-2020-0031-DRAFT-4255
NOAA-NMFS-2020-0031-DRAFT-4256
NOAA-NMFS-2020-0031-DRAFT-4257
NOAA-NMFS-2020-0031-DRAFT-4258
NOAA-NMFS-2020-0031-DRAFT-4259
NOAA-NMFS-2020-0031-DRAFT-4260
NOAA-NMFS-2020-0031-DRAFT-4261
NOAA-NMFS-2020-0031-DRAFT-4262
NOAA-NMFS-2020-0031-DRAFT-4263
NOAA-NMFS-2020-0031-DRAFT-4264
NOAA-NMFS-2020-0031-DRAFT-4265
NOAA-NMFS-2020-0031-DRAFT-4266
NOAA-NMFS-2020-0031-DRAFT-4267
NOAA-NMFS-2020-0031-DRAFT-4268
NOAA-NMFS-2020-0031-DRAFT-4269
NOAA-NMFS-2020-0031-DRAFT-4270
NOAA-NMFS-2020-0031-DRAFT-4271
NOAA-NMFS-2020-0031-DRAFT-4272
NOAA-NMFS-2020-0031-DRAFT-4273
NOAA-NMFS-2020-0031-DRAFT-4274
NOAA-NMFS-2020-0031-DRAFT-4275
NOAA-NMFS-2020-0031-DRAFT-4276
NOAA-NMFS-2020-0031-DRAFT-4277
NOAA-NMFS-2020-0031-DRAFT-4278
NOAA-NMFS-2020-0031-DRAFT-4279
NOAA-NMFS-2020-0031-DRAFT-4280
NOAA-NMFS-2020-0031-DRAFT-4281

Comment from LETICIA HENRIQUEZ
Comment from Lynn Simpson
Comment from Gail Beaudain
Comment from JENNY COLLIER
Comment from Harold Tipping
Comment from jeff bohan
Comment from David George
Comment from Harold Tipping
Comment from Marguerite Winkel
Comment from William Bruno
Comment from Doris Verkamp
Comment from Kathleen obre
Comment from obie hunt
Comment from Joseph DiMaggio
Comment from Jean Farris
Comment from Howard Blaz
Comment from Dale Ryder
Comment from Mindy Kruckenberg
Comment from Lori Ugolik
Comment from Louise Simone
Comment from Sigrid Asmus
Comment from Braxton Worth
Comment from T Hibben
Comment from Pamela Coker
Comment from Susan Harrie
Comment from Freya Harris
Comment from Nate Schmidt
Comment from Harriet Forman
Comment from Tony McCraney
Comment from Andrew Anderson
Comment from John Hammel
Comment from Cindy Hatcher
Comment from Karen Garone
Comment from Yvonne Snyder
Comment from Lou Orr
Comment from Kathleen Mulhall
Comment from Therese MacKenzie
Comment from Lee Carson
Comment from Paul Kerman
Comment from Lisa Hamilton
Comment from Tara Hottenstein

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9504
NOAA-NMFS-2020-0031-DRAFT-9505
NOAA-NMFS-2020-0031-DRAFT-9506
NOAA-NMFS-2020-0031-DRAFT-9507
NOAA-NMFS-2020-0031-DRAFT-9508
NOAA-NMFS-2020-0031-DRAFT-9509
NOAA-NMFS-2020-0031-DRAFT-9510
NOAA-NMFS-2020-0031-DRAFT-9511
NOAA-NMFS-2020-0031-DRAFT-9512
NOAA-NMFS-2020-0031-DRAFT-9513
NOAA-NMFS-2020-0031-DRAFT-9514
NOAA-NMFS-2020-0031-DRAFT-9515
NOAA-NMFS-2020-0031-DRAFT-9516
NOAA-NMFS-2020-0031-DRAFT-9517
NOAA-NMFS-2020-0031-DRAFT-9518
NOAA-NMFS-2020-0031-DRAFT-9519
NOAA-NMFS-2020-0031-DRAFT-9520
NOAA-NMFS-2020-0031-DRAFT-9521
NOAA-NMFS-2020-0031-DRAFT-9522
NOAA-NMFS-2020-0031-DRAFT-9523
NOAA-NMFS-2020-0031-DRAFT-9524
NOAA-NMFS-2020-0031-DRAFT-9525
NOAA-NMFS-2020-0031-DRAFT-9526
NOAA-NMFS-2020-0031-DRAFT-9527
NOAA-NMFS-2020-0031-DRAFT-9528
NOAA-NMFS-2020-0031-DRAFT-9529
NOAA-NMFS-2020-0031-DRAFT-9530
NOAA-NMFS-2020-0031-DRAFT-9531
NOAA-NMFS-2020-0031-DRAFT-9532
NOAA-NMFS-2020-0031-DRAFT-9533
NOAA-NMFS-2020-0031-DRAFT-9534
NOAA-NMFS-2020-0031-DRAFT-9535
NOAA-NMFS-2020-0031-DRAFT-9536
NOAA-NMFS-2020-0031-DRAFT-9537
NOAA-NMFS-2020-0031-DRAFT-9538
NOAA-NMFS-2020-0031-DRAFT-9539
NOAA-NMFS-2020-0031-DRAFT-9540
NOAA-NMFS-2020-0031-DRAFT-9541
NOAA-NMFS-2020-0031-DRAFT-9542
NOAA-NMFS-2020-0031-DRAFT-9543
NOAA-NMFS-2020-0031-DRAFT-9544

Comment from Richard Coreno
Comment from Emily Towell
Comment from Pieter Hull
Comment from JOANNA HEILING
Comment from Pablo Bobe
Comment from Rob Weltner
Comment from Tim Shortell
Comment from Dawson Pan
Comment from Greg Onsel
Comment from Justin Chernow
Comment from Tracey Lall
Comment from Adarsh Ayyar
Comment from Karen Sinclair
Comment from Randy Hernandez
Comment from Candace Russell
Comment from Cody Dolnick
Comment from Robin Covino
Comment from Amber Abascal
Comment from Renee Burgan
Comment from michael zuckerman
Comment from Cynthia Hicks
Comment from Meha Kamdar
Comment from Freda Karpf
Comment from barbara cunningham
Comment from Christian Rocklein
Comment from Debra heatherly
Comment from Peter Ollendorf
Comment from Janet Harwell
Comment from Felicia Lewis
Comment from Bert Barry
Comment from Gene Fox
Comment from Rochelle Foran
Comment from Jonathan Nash
Comment from Gregory Freeman
Comment from James Herther
Comment from Anita Dauberman
Comment from Sarah Dean
Comment from Feli Devlin
Comment from Beth Drewelow
Comment from Leona Klerer
Comment from Laura Aurilio

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01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4282
NOAA-NMFS-2020-0031-DRAFT-4283
NOAA-NMFS-2020-0031-DRAFT-4284
NOAA-NMFS-2020-0031-DRAFT-4285
NOAA-NMFS-2020-0031-DRAFT-4286
NOAA-NMFS-2020-0031-DRAFT-4287
NOAA-NMFS-2020-0031-DRAFT-4288
NOAA-NMFS-2020-0031-DRAFT-4289
NOAA-NMFS-2020-0031-DRAFT-4290
NOAA-NMFS-2020-0031-DRAFT-4291
NOAA-NMFS-2020-0031-DRAFT-4292
NOAA-NMFS-2020-0031-DRAFT-4293
NOAA-NMFS-2020-0031-DRAFT-4294
NOAA-NMFS-2020-0031-DRAFT-4295
NOAA-NMFS-2020-0031-DRAFT-4296
NOAA-NMFS-2020-0031-DRAFT-4297
NOAA-NMFS-2020-0031-DRAFT-4298
NOAA-NMFS-2020-0031-DRAFT-4299
NOAA-NMFS-2020-0031-DRAFT-4300
NOAA-NMFS-2020-0031-DRAFT-4301
NOAA-NMFS-2020-0031-DRAFT-4302
NOAA-NMFS-2020-0031-DRAFT-4303
NOAA-NMFS-2020-0031-DRAFT-4304
NOAA-NMFS-2020-0031-DRAFT-4305
NOAA-NMFS-2020-0031-DRAFT-4306
NOAA-NMFS-2020-0031-DRAFT-4307
NOAA-NMFS-2020-0031-DRAFT-4308
NOAA-NMFS-2020-0031-DRAFT-4309
NOAA-NMFS-2020-0031-DRAFT-4310
NOAA-NMFS-2020-0031-DRAFT-4311
NOAA-NMFS-2020-0031-DRAFT-4312
NOAA-NMFS-2020-0031-DRAFT-4313
NOAA-NMFS-2020-0031-DRAFT-4314
NOAA-NMFS-2020-0031-DRAFT-4315
NOAA-NMFS-2020-0031-DRAFT-4316
NOAA-NMFS-2020-0031-DRAFT-4317
NOAA-NMFS-2020-0031-DRAFT-4318
NOAA-NMFS-2020-0031-DRAFT-4319
NOAA-NMFS-2020-0031-DRAFT-4320
NOAA-NMFS-2020-0031-DRAFT-4321
NOAA-NMFS-2020-0031-DRAFT-4322

Comment from Michele Bazan
Comment from kathryn lynch
Comment from Kristof Haavik
Comment from Nathan Hetrick
Comment from Keyla Cruz
Comment from ROSALIE WIND
Comment from Stacey Holliday
Comment from Diane Doesserich
Comment from Carol Van Vliet
Comment from Jacquelyn Cramer
Comment from Marnee Reilly
Comment from Silva Harr
Comment from Kathryn Kaffer
Comment from Janine long
Comment from Eric Nylen
Comment from Mary Deckman
Comment from Mary Paynter
Comment from Karen Esposito
Comment from jeri ichikawa
Comment from Alicia Thompson
Comment from John Klacik
Comment from Patricia Winkelmayer
Comment from Gwendolyn Torres
Comment from Melissa Harlan
Comment from Gary Thaler
Comment from Donna Pemberton
Comment from Jessica Likens
Comment from Walter Zurko
Comment from Sherilyn Coldwell
Comment from Mary Totty
Comment from Barbara Delgado
Comment from Catharine Crockett
Comment from Michael Moeller
Comment from Margaret McGinnis
Comment from Debasri Roy
Comment from Shirley Schue
Comment from Diane Randgaard
Comment from Joe Day
Comment from Lesley Ross
Comment from Pablo Bobe
Comment from Pamela Sedei-Rodden

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9545
NOAA-NMFS-2020-0031-DRAFT-9546
NOAA-NMFS-2020-0031-DRAFT-9547
NOAA-NMFS-2020-0031-DRAFT-9548
NOAA-NMFS-2020-0031-DRAFT-9549
NOAA-NMFS-2020-0031-DRAFT-9550
NOAA-NMFS-2020-0031-DRAFT-9551
NOAA-NMFS-2020-0031-DRAFT-9552
NOAA-NMFS-2020-0031-DRAFT-9553
NOAA-NMFS-2020-0031-DRAFT-9554
NOAA-NMFS-2020-0031-DRAFT-9555
NOAA-NMFS-2020-0031-DRAFT-9556
NOAA-NMFS-2020-0031-DRAFT-9557
NOAA-NMFS-2020-0031-DRAFT-9558
NOAA-NMFS-2020-0031-DRAFT-9559
NOAA-NMFS-2020-0031-DRAFT-9560
NOAA-NMFS-2020-0031-DRAFT-9561
NOAA-NMFS-2020-0031-DRAFT-9562
NOAA-NMFS-2020-0031-DRAFT-9563
NOAA-NMFS-2020-0031-DRAFT-9564
NOAA-NMFS-2020-0031-DRAFT-9565
NOAA-NMFS-2020-0031-DRAFT-9566
NOAA-NMFS-2020-0031-DRAFT-9567
NOAA-NMFS-2020-0031-DRAFT-9568
NOAA-NMFS-2020-0031-DRAFT-9569
NOAA-NMFS-2020-0031-DRAFT-9570
NOAA-NMFS-2020-0031-DRAFT-9571
NOAA-NMFS-2020-0031-DRAFT-9572
NOAA-NMFS-2020-0031-DRAFT-9573
NOAA-NMFS-2020-0031-DRAFT-9574
NOAA-NMFS-2020-0031-DRAFT-9575
NOAA-NMFS-2020-0031-DRAFT-9576
NOAA-NMFS-2020-0031-DRAFT-9577
NOAA-NMFS-2020-0031-DRAFT-9578
NOAA-NMFS-2020-0031-DRAFT-9579
NOAA-NMFS-2020-0031-DRAFT-9580
NOAA-NMFS-2020-0031-DRAFT-9581
NOAA-NMFS-2020-0031-DRAFT-9582
NOAA-NMFS-2020-0031-DRAFT-9583
NOAA-NMFS-2020-0031-DRAFT-9584
NOAA-NMFS-2020-0031-DRAFT-9585

Comment from John Lynch
Comment from Kevin Rolfes
Comment from Jennifer Terrock
Comment from Julia Larsen
Comment from Christian Tabone
Comment from Terry WOLFE
Comment from Ron Mittan
Comment from Diana Donovan
Comment from Randy Kraege
Comment from Jeff Keswick
Comment from Marc Silverman
Comment from Tamela Donnelly
Comment from Rita Mullis
Comment from Jane Bauman
Comment from Jay Armbruster
Comment from John Chase
Comment from simona podskubka
Comment from Thomas Dawley
Comment from Tim P
Comment from William Grant
Comment from D L
Comment from George Blahun
Comment from Debra Cosentino
Comment from Joyce Gamroth
Comment from Linda Porter
Comment from abigail correia
Comment from Candace Berthrong
Comment from Deena Nick
Comment from carol sardo
Comment from Pamela Colony
Comment from Barbara Rogers
Comment from sandra garcia
Comment from D L
Comment from Norma Kline
Comment from Sandra Speicher
Comment from Warren Pope
Comment from Dara Rider
Comment from Gail Richardson
Comment from Doris Luther
Comment from Elizabeth Luebbers
Comment from Sherry Dunn

01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4323
NOAA-NMFS-2020-0031-DRAFT-4324
NOAA-NMFS-2020-0031-DRAFT-4325
NOAA-NMFS-2020-0031-DRAFT-4326
NOAA-NMFS-2020-0031-DRAFT-4327
NOAA-NMFS-2020-0031-DRAFT-4328
NOAA-NMFS-2020-0031-DRAFT-4329
NOAA-NMFS-2020-0031-DRAFT-4330
NOAA-NMFS-2020-0031-DRAFT-4331
NOAA-NMFS-2020-0031-DRAFT-4332
NOAA-NMFS-2020-0031-DRAFT-4333
NOAA-NMFS-2020-0031-DRAFT-4334
NOAA-NMFS-2020-0031-DRAFT-4335
NOAA-NMFS-2020-0031-DRAFT-4336
NOAA-NMFS-2020-0031-DRAFT-4337
NOAA-NMFS-2020-0031-DRAFT-4338
NOAA-NMFS-2020-0031-DRAFT-4339
NOAA-NMFS-2020-0031-DRAFT-4340
NOAA-NMFS-2020-0031-DRAFT-4341
NOAA-NMFS-2020-0031-DRAFT-4342
NOAA-NMFS-2020-0031-DRAFT-4343
NOAA-NMFS-2020-0031-DRAFT-4344
NOAA-NMFS-2020-0031-DRAFT-4345
NOAA-NMFS-2020-0031-DRAFT-4346
NOAA-NMFS-2020-0031-DRAFT-4347
NOAA-NMFS-2020-0031-DRAFT-4348
NOAA-NMFS-2020-0031-DRAFT-4349
NOAA-NMFS-2020-0031-DRAFT-4350
NOAA-NMFS-2020-0031-DRAFT-4351
NOAA-NMFS-2020-0031-DRAFT-4352
NOAA-NMFS-2020-0031-DRAFT-4353
NOAA-NMFS-2020-0031-DRAFT-4354
NOAA-NMFS-2020-0031-DRAFT-4355
NOAA-NMFS-2020-0031-DRAFT-4356
NOAA-NMFS-2020-0031-DRAFT-4357
NOAA-NMFS-2020-0031-DRAFT-4358
NOAA-NMFS-2020-0031-DRAFT-4359
NOAA-NMFS-2020-0031-DRAFT-4360
NOAA-NMFS-2020-0031-DRAFT-4361
NOAA-NMFS-2020-0031-DRAFT-4362
NOAA-NMFS-2020-0031-DRAFT-4363

Comment from Pat Lemay
Comment from Catherine Milovina
Comment from Marisa Morales
Comment from Linda Cooper
Comment from Richard Ranieri
Comment from Susan Green
Comment from bruce sowden
Comment from Lisa Sons
Comment from Holly Bevagna
Comment from Daniel Scharaldi
Comment from Sharma Gaponoff
Comment from Carl Tyndall
Comment from Mary Nuss
Comment from Peter Monie
Comment from Nezka Pfeifer
Comment from Arielle Crickenberger
Comment from Dorien Zaricor
Comment from Devon Seltzer
Comment from Alan shannon
Comment from John Thayer
Comment from Gary Christensen
Comment from Russell Chiappa
Comment from Jane Crownover
Comment from Anita Capshaw
Comment from Denise Edwards
Comment from Tom Sharkey
Comment from Nick Hood
Comment from janet drew
Comment from Susanna Stone
Comment from Nancy Freyer
Comment from Rebecca Esche
Comment from Barbara Rosenkotter
Comment from Gayle Doukas
Comment from R. Zierikzee
Comment from Debra Hoyt
Comment from Tatiana Mandel
Comment from Paula Wanzer
Comment from Carolyn Hall
Comment from Donna Browne
Comment from C W
Comment from Richard Lombard

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9586
NOAA-NMFS-2020-0031-DRAFT-9587
NOAA-NMFS-2020-0031-DRAFT-9588
NOAA-NMFS-2020-0031-DRAFT-9589
NOAA-NMFS-2020-0031-DRAFT-9590
NOAA-NMFS-2020-0031-DRAFT-9591
NOAA-NMFS-2020-0031-DRAFT-9592
NOAA-NMFS-2020-0031-DRAFT-9593
NOAA-NMFS-2020-0031-DRAFT-9594
NOAA-NMFS-2020-0031-DRAFT-9595
NOAA-NMFS-2020-0031-DRAFT-9596
NOAA-NMFS-2020-0031-DRAFT-9597
NOAA-NMFS-2020-0031-DRAFT-9598
NOAA-NMFS-2020-0031-DRAFT-9599
NOAA-NMFS-2020-0031-DRAFT-9600
NOAA-NMFS-2020-0031-DRAFT-9601
NOAA-NMFS-2020-0031-DRAFT-9602
NOAA-NMFS-2020-0031-DRAFT-9603
NOAA-NMFS-2020-0031-DRAFT-9604
NOAA-NMFS-2020-0031-DRAFT-9605
NOAA-NMFS-2020-0031-DRAFT-9606
NOAA-NMFS-2020-0031-DRAFT-9607
NOAA-NMFS-2020-0031-DRAFT-9608
NOAA-NMFS-2020-0031-DRAFT-9609
NOAA-NMFS-2020-0031-DRAFT-9610
NOAA-NMFS-2020-0031-DRAFT-9611
NOAA-NMFS-2020-0031-DRAFT-9612
NOAA-NMFS-2020-0031-DRAFT-9613
NOAA-NMFS-2020-0031-DRAFT-9614
NOAA-NMFS-2020-0031-DRAFT-9616
NOAA-NMFS-2020-0031-DRAFT-9617
NOAA-NMFS-2020-0031-DRAFT-9618
NOAA-NMFS-2020-0031-DRAFT-9619
NOAA-NMFS-2020-0031-DRAFT-9620
NOAA-NMFS-2020-0031-DRAFT-9621
NOAA-NMFS-2020-0031-DRAFT-9622
NOAA-NMFS-2020-0031-DRAFT-9623
NOAA-NMFS-2020-0031-DRAFT-9624
NOAA-NMFS-2020-0031-DRAFT-9625
NOAA-NMFS-2020-0031-DRAFT-9626
NOAA-NMFS-2020-0031-DRAFT-9627

Comment from Kristina Younger
Comment from Mark Waltzer
Comment from Michael Kenny
Comment from Caroline Kane
Comment from Melanie Vliet
Comment from Lorraine Martinez
Comment from Keyla Cruz
Comment from Terry WOLFE
Comment from Jill Wittenbrader
Comment from Lynn Ricci
Comment from Pippa Pearthree
Comment from Doug Helliesen
Comment from Gabriela Romanow
Comment from Pippa Pearthree
Comment from Catherine Ayoub
Comment from Robin Choate
Comment from Larry Welsh
Comment from Carlos Quiroga-Lassepas
Comment from Tom Beatini
Comment from Colleen Lobel
Comment from Molly Hauck
Comment from Susan Lewis
Comment from JESSICA FIELDEN
Comment from Jenny Nicklin
Comment from william Prokop
Comment from Misty Jackson
Comment from Bill Rosenthal
Comment from Sara Flamm
Comment from Hal Forsen
Comment from Michele Roberts
Comment from Stephanie Smedley
Comment from Brigitte Forster
Comment from Michael bordenave
Comment from sammia panciocco
Comment from Shawn Hall
Comment from Jennifer Emerle-Sifuentes
Comment from Evelyne Williams
Comment from Art Shervs
Comment from jody solow
Comment from Patricia Rossi
Comment from Veronica Michael

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01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4364
NOAA-NMFS-2020-0031-DRAFT-4365
NOAA-NMFS-2020-0031-DRAFT-4366
NOAA-NMFS-2020-0031-DRAFT-4367
NOAA-NMFS-2020-0031-DRAFT-4368
NOAA-NMFS-2020-0031-DRAFT-4369
NOAA-NMFS-2020-0031-DRAFT-4370
NOAA-NMFS-2020-0031-DRAFT-4371
NOAA-NMFS-2020-0031-DRAFT-4372
NOAA-NMFS-2020-0031-DRAFT-4373
NOAA-NMFS-2020-0031-DRAFT-4374
NOAA-NMFS-2020-0031-DRAFT-4375
NOAA-NMFS-2020-0031-DRAFT-4376
NOAA-NMFS-2020-0031-DRAFT-4377
NOAA-NMFS-2020-0031-DRAFT-4378
NOAA-NMFS-2020-0031-DRAFT-4379
NOAA-NMFS-2020-0031-DRAFT-4380
NOAA-NMFS-2020-0031-DRAFT-4381
NOAA-NMFS-2020-0031-DRAFT-4382
NOAA-NMFS-2020-0031-DRAFT-4383
NOAA-NMFS-2020-0031-DRAFT-4384
NOAA-NMFS-2020-0031-DRAFT-4385
NOAA-NMFS-2020-0031-DRAFT-4386
NOAA-NMFS-2020-0031-DRAFT-4387
NOAA-NMFS-2020-0031-DRAFT-4388
NOAA-NMFS-2020-0031-DRAFT-4389
NOAA-NMFS-2020-0031-DRAFT-4390
NOAA-NMFS-2020-0031-DRAFT-4391
NOAA-NMFS-2020-0031-DRAFT-4392
NOAA-NMFS-2020-0031-DRAFT-4393
NOAA-NMFS-2020-0031-DRAFT-4394
NOAA-NMFS-2020-0031-DRAFT-4395
NOAA-NMFS-2020-0031-DRAFT-4396
NOAA-NMFS-2020-0031-DRAFT-4397
NOAA-NMFS-2020-0031-DRAFT-4398
NOAA-NMFS-2020-0031-DRAFT-4399
NOAA-NMFS-2020-0031-DRAFT-4400
NOAA-NMFS-2020-0031-DRAFT-4401
NOAA-NMFS-2020-0031-DRAFT-4402
NOAA-NMFS-2020-0031-DRAFT-4403
NOAA-NMFS-2020-0031-DRAFT-4404

Comment from Donna Held
Comment from Robert Ramirez
Comment from Danial Border
Comment from Samantha Turetsky
Comment from Deborah Nelson
Comment from Joan McGrath
Comment from Lisa Daloia
Comment from Susan Hamann
Comment from Edith Simpson
Comment from Lynne Bemer
Comment from Jennifer Messina
Comment from Frances Rove
Comment from Elizabeth LeFever
Comment from Charles Hassrick
Comment from Jennifer Cunningham
Comment from Alan Linville
Comment from Claudia CMPE
Comment from cay fisher
Comment from Sierra Bright
Comment from Kim nero
Comment from James Gifford
Comment from Larry Musson
Comment from Barbara Addis
Comment from Laura Ramon
Comment from Mary Fleming
Comment from Eowyn Grecco
Comment from Victor Chirel
Comment from Stephanie Brancaforte
Comment from Denice Cornell
Comment from Jenna Carodiskey-Wiebe
Comment from Wendy Worth
Comment from Karen Goozner
Comment from Suzanne Dalton
Comment from Janice Newville
Comment from Andrea Snyder
Comment from Jennifer Spease
Comment from Judith Singsen
Comment from amanda spalt
Comment from Arielle Wolff
Comment from Lisa Knight
Comment from Tammy Ensman

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9628
NOAA-NMFS-2020-0031-DRAFT-9629
NOAA-NMFS-2020-0031-DRAFT-9630
NOAA-NMFS-2020-0031-DRAFT-9631
NOAA-NMFS-2020-0031-DRAFT-9632
NOAA-NMFS-2020-0031-DRAFT-9633
NOAA-NMFS-2020-0031-DRAFT-9634
NOAA-NMFS-2020-0031-DRAFT-9635
NOAA-NMFS-2020-0031-DRAFT-9636
NOAA-NMFS-2020-0031-DRAFT-9637
NOAA-NMFS-2020-0031-DRAFT-9638
NOAA-NMFS-2020-0031-DRAFT-9639
NOAA-NMFS-2020-0031-DRAFT-9640
NOAA-NMFS-2020-0031-DRAFT-9641
NOAA-NMFS-2020-0031-DRAFT-9642
NOAA-NMFS-2020-0031-DRAFT-9643
NOAA-NMFS-2020-0031-DRAFT-9644
NOAA-NMFS-2020-0031-DRAFT-9645
NOAA-NMFS-2020-0031-DRAFT-9646
NOAA-NMFS-2020-0031-DRAFT-9647
NOAA-NMFS-2020-0031-DRAFT-9648
NOAA-NMFS-2020-0031-DRAFT-9649
NOAA-NMFS-2020-0031-DRAFT-9650
NOAA-NMFS-2020-0031-DRAFT-9651
NOAA-NMFS-2020-0031-DRAFT-9652
NOAA-NMFS-2020-0031-DRAFT-9653
NOAA-NMFS-2020-0031-DRAFT-9654
NOAA-NMFS-2020-0031-DRAFT-9655
NOAA-NMFS-2020-0031-DRAFT-9656
NOAA-NMFS-2020-0031-DRAFT-9657
NOAA-NMFS-2020-0031-DRAFT-9658
NOAA-NMFS-2020-0031-DRAFT-9659
NOAA-NMFS-2020-0031-DRAFT-9660
NOAA-NMFS-2020-0031-DRAFT-9661
NOAA-NMFS-2020-0031-DRAFT-9662
NOAA-NMFS-2020-0031-DRAFT-9663
NOAA-NMFS-2020-0031-DRAFT-9664
NOAA-NMFS-2020-0031-DRAFT-9665
NOAA-NMFS-2020-0031-DRAFT-9666
NOAA-NMFS-2020-0031-DRAFT-9667
NOAA-NMFS-2020-0031-DRAFT-9668

Comment from John LaMantia
Comment from Tracy Butler-Oberste
Comment from Howard McNinch
Comment from dk anestos
Comment from Deborah Williamson
Comment from Beatrice Long
Comment from Diana Williams
Comment from Glenn Koehrsen
Comment from steve lucas
Comment from Magda Santiago
Comment from Larry Karns
Comment from Deborah Bishop
Comment from Randall Foreman
Comment from Robert Gibb
Comment from KYLE BATES
Comment from Christen King
Comment from Amanda Gentile
Comment from Lisa Annecone
Comment from Ellen Place
Comment from Douglas Estes
Comment from Sue Bradley
Comment from Susan Ancona
Comment from John Kay
Comment from Chris Frost
Comment from Joanne Kondratieff
Comment from Michael Hall
Comment from GERARD VACHEZ
Comment from Patricia Claytor
Comment from Robert Oberdorf
Comment from Vincent Geiger
Comment from RICHARD KETTYLE
Comment from Mary Follis
Comment from Nile Arena
Comment from Silvia Raum
Comment from Harold Veeder
Comment from JAMES BARBER
Comment from Jane Ball
Comment from Frances Blythe
Comment from Kim Altana
Comment from Tammy bullock
Comment from Heather Schlichter

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4405
NOAA-NMFS-2020-0031-DRAFT-4406
NOAA-NMFS-2020-0031-DRAFT-4407
NOAA-NMFS-2020-0031-DRAFT-4408
NOAA-NMFS-2020-0031-DRAFT-4409
NOAA-NMFS-2020-0031-DRAFT-4410
NOAA-NMFS-2020-0031-DRAFT-4411
NOAA-NMFS-2020-0031-DRAFT-4412
NOAA-NMFS-2020-0031-DRAFT-4413
NOAA-NMFS-2020-0031-DRAFT-4414
NOAA-NMFS-2020-0031-DRAFT-4415
NOAA-NMFS-2020-0031-DRAFT-4416
NOAA-NMFS-2020-0031-DRAFT-4417
NOAA-NMFS-2020-0031-DRAFT-4418
NOAA-NMFS-2020-0031-DRAFT-4419
NOAA-NMFS-2020-0031-DRAFT-4420
NOAA-NMFS-2020-0031-DRAFT-4421
NOAA-NMFS-2020-0031-DRAFT-4422
NOAA-NMFS-2020-0031-DRAFT-4423
NOAA-NMFS-2020-0031-DRAFT-4424
NOAA-NMFS-2020-0031-DRAFT-4425
NOAA-NMFS-2020-0031-DRAFT-4426
NOAA-NMFS-2020-0031-DRAFT-4427
NOAA-NMFS-2020-0031-DRAFT-4428
NOAA-NMFS-2020-0031-DRAFT-4429
NOAA-NMFS-2020-0031-DRAFT-4430
NOAA-NMFS-2020-0031-DRAFT-4431
NOAA-NMFS-2020-0031-DRAFT-4432
NOAA-NMFS-2020-0031-DRAFT-4433
NOAA-NMFS-2020-0031-DRAFT-4434
NOAA-NMFS-2020-0031-DRAFT-4435
NOAA-NMFS-2020-0031-DRAFT-4436
NOAA-NMFS-2020-0031-DRAFT-4437
NOAA-NMFS-2020-0031-DRAFT-4438
NOAA-NMFS-2020-0031-DRAFT-4439
NOAA-NMFS-2020-0031-DRAFT-4440
NOAA-NMFS-2020-0031-DRAFT-4441
NOAA-NMFS-2020-0031-DRAFT-4442
NOAA-NMFS-2020-0031-DRAFT-4443
NOAA-NMFS-2020-0031-DRAFT-4444
NOAA-NMFS-2020-0031-DRAFT-4445

Comment from Gina Carollo
Comment from Daniela Rossi
Comment from Connie George
Comment from Pamela Alvesteffer
Comment from Richard Rheinberger
Comment from Angel Orona
Comment from Katherine Martin
Comment from Paulette Zimmerman
Comment from David Hall
Comment from Joelle Porter
Comment from Stormy Jech
Comment from Christine Perry
Comment from Jeff Seitz
Comment from Peter Ware
Comment from nicole Hoekstra
Comment from David Katz
Comment from David Spaethe
Comment from Robert Chirpin
Comment from Paul Luehrmann
Comment from elizabeth gray
Comment from d robinson
Comment from Kimberly Sheehan
Comment from KC Young
Comment from Philip Kritzman
Comment from Jacob Pendlebury
Comment from Elizabeth Zenker
Comment from Lisa Vaughan
Comment from Frances Meenan
Comment from Anne Clark
Comment from jameson bergen
Comment from Laura Klina
Comment from Cynthia Arneson
Comment from Rosemary Ward
Comment from Dmitry Landa
Comment from Richard Taylor
Comment from Tanya Piker
Comment from Steve Bloom
Comment from Shelley anixter
Comment from Rob Lozon
Comment from Janet Rutigliano
Comment from Brooke Perry

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9669
NOAA-NMFS-2020-0031-DRAFT-9670
NOAA-NMFS-2020-0031-DRAFT-9671
NOAA-NMFS-2020-0031-DRAFT-9672
NOAA-NMFS-2020-0031-DRAFT-9673
NOAA-NMFS-2020-0031-DRAFT-9674
NOAA-NMFS-2020-0031-DRAFT-9675
NOAA-NMFS-2020-0031-DRAFT-9676
NOAA-NMFS-2020-0031-DRAFT-9677
NOAA-NMFS-2020-0031-DRAFT-9678
NOAA-NMFS-2020-0031-DRAFT-9679
NOAA-NMFS-2020-0031-DRAFT-9680
NOAA-NMFS-2020-0031-DRAFT-9681
NOAA-NMFS-2020-0031-DRAFT-9682
NOAA-NMFS-2020-0031-DRAFT-9683
NOAA-NMFS-2020-0031-DRAFT-9684
NOAA-NMFS-2020-0031-DRAFT-9685
NOAA-NMFS-2020-0031-DRAFT-9686
NOAA-NMFS-2020-0031-DRAFT-9687
NOAA-NMFS-2020-0031-DRAFT-9688
NOAA-NMFS-2020-0031-DRAFT-9689
NOAA-NMFS-2020-0031-DRAFT-9690
NOAA-NMFS-2020-0031-DRAFT-9691
NOAA-NMFS-2020-0031-DRAFT-9692
NOAA-NMFS-2020-0031-DRAFT-9693
NOAA-NMFS-2020-0031-DRAFT-9694
NOAA-NMFS-2020-0031-DRAFT-9695
NOAA-NMFS-2020-0031-DRAFT-9696
NOAA-NMFS-2020-0031-DRAFT-9697
NOAA-NMFS-2020-0031-DRAFT-9698
NOAA-NMFS-2020-0031-DRAFT-9699
NOAA-NMFS-2020-0031-DRAFT-9700
NOAA-NMFS-2020-0031-DRAFT-9701
NOAA-NMFS-2020-0031-DRAFT-9702
NOAA-NMFS-2020-0031-DRAFT-9703
NOAA-NMFS-2020-0031-DRAFT-9704
NOAA-NMFS-2020-0031-DRAFT-9705
NOAA-NMFS-2020-0031-DRAFT-9706
NOAA-NMFS-2020-0031-DRAFT-9707
NOAA-NMFS-2020-0031-DRAFT-9708
NOAA-NMFS-2020-0031-DRAFT-9709

Comment from Michael Parsons
Comment from Charles Casper
Comment from patricia winters
Comment from Doreen Mann
Comment from Richard Coreno
Comment from Vicki Word
Comment from David Friedman
Comment from Sophie McCoy
Comment from Michael Hoover
Comment from E Heyman
Comment from Jessica Jakubanis
Comment from Allen Krantz
Comment from Joseph Corbett
Comment from Patricia Michaels
Comment from Victoria Urias
Comment from Mana Iluna
Comment from Marcella Crane
Comment from MarySue Baker
Comment from Jan ebersole
Comment from Peggy Kocoras
Comment from Jan Lowrey
Comment from Barry Medlin
Comment from Susanna Askins
Comment from Jonathan Maller
Comment from Terry Bulla
Comment from Rick Priebe
Comment from Christopher Lord
Comment from Jacqui Skill
Comment from donna adams
Comment from sara rahbar
Comment from Jill Mossor
Comment from Donna Noyes
Comment from Janet Zeh
Comment from Jo Jones
Comment from Barbra Raymond
Comment from Andrea Nutley
Comment from Sally Jennings
Comment from Lisa Patrick
Comment from Joan Pariseau
Comment from Leo Shapiro
Comment from Bret Sher

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4446
NOAA-NMFS-2020-0031-DRAFT-4447
NOAA-NMFS-2020-0031-DRAFT-4448
NOAA-NMFS-2020-0031-DRAFT-4449
NOAA-NMFS-2020-0031-DRAFT-4450
NOAA-NMFS-2020-0031-DRAFT-4451
NOAA-NMFS-2020-0031-DRAFT-4452
NOAA-NMFS-2020-0031-DRAFT-4453
NOAA-NMFS-2020-0031-DRAFT-4454
NOAA-NMFS-2020-0031-DRAFT-4455
NOAA-NMFS-2020-0031-DRAFT-4456
NOAA-NMFS-2020-0031-DRAFT-4457
NOAA-NMFS-2020-0031-DRAFT-4458
NOAA-NMFS-2020-0031-DRAFT-4459
NOAA-NMFS-2020-0031-DRAFT-4460
NOAA-NMFS-2020-0031-DRAFT-4461
NOAA-NMFS-2020-0031-DRAFT-4462
NOAA-NMFS-2020-0031-DRAFT-4463
NOAA-NMFS-2020-0031-DRAFT-4464
NOAA-NMFS-2020-0031-DRAFT-4465
NOAA-NMFS-2020-0031-DRAFT-4466
NOAA-NMFS-2020-0031-DRAFT-4467
NOAA-NMFS-2020-0031-DRAFT-4468
NOAA-NMFS-2020-0031-DRAFT-4469
NOAA-NMFS-2020-0031-DRAFT-4470
NOAA-NMFS-2020-0031-DRAFT-4471
NOAA-NMFS-2020-0031-DRAFT-4472
NOAA-NMFS-2020-0031-DRAFT-4473
NOAA-NMFS-2020-0031-DRAFT-4474
NOAA-NMFS-2020-0031-DRAFT-4475
NOAA-NMFS-2020-0031-DRAFT-4476
NOAA-NMFS-2020-0031-DRAFT-4477
NOAA-NMFS-2020-0031-DRAFT-4478
NOAA-NMFS-2020-0031-DRAFT-4479
NOAA-NMFS-2020-0031-DRAFT-4480
NOAA-NMFS-2020-0031-DRAFT-4481
NOAA-NMFS-2020-0031-DRAFT-4482
NOAA-NMFS-2020-0031-DRAFT-4483
NOAA-NMFS-2020-0031-DRAFT-4484
NOAA-NMFS-2020-0031-DRAFT-4485
NOAA-NMFS-2020-0031-DRAFT-4486

Comment from robert hughes
Comment from Elizabeth Cronin
Comment from Meghan Frost
Comment from Allan Campbell
Comment from Dorothy Dobbyn
Comment from Dixie Nihsen
Comment from Robert Wagner
Comment from Eric Esposito
Comment from Matt Hanes
Comment from Susan Flyer
Comment from Jim Watkins
Comment from Amanda Dickinson
Comment from Donna Buscemi
Comment from Frances gallante
Comment from John Venter
Comment from Glenda Bennett
Comment from Sybil Schlesinger
Comment from ERIC ERICKSON
Comment from Sheila Schally
Comment from Nancy Bukowski
Comment from Julie Levin
Comment from Barbara Meislin
Comment from Cheryl Ritenbaugh
Comment from Lorraine Lowry
Comment from Julie Wilson
Comment from Valerie Farrell
Comment from Gene Ammarell
Comment from Mary Adkins
Comment from Nancy White
Comment from Kendra knight
Comment from Katherine Zywan
Comment from John Delgado
Comment from Robert Strauss
Comment from Nicola Reddwoodd
Comment from Debby Goldman
Comment from Pilar Millhollen
Comment from Ruth Maule
Comment from Kathy Golic
Comment from LindaLee
McEachronTaylor
Comment from Yanisa Anaya
Comment from Sr.Barbara Bartlett

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9710
NOAA-NMFS-2020-0031-DRAFT-9711
NOAA-NMFS-2020-0031-DRAFT-9712
NOAA-NMFS-2020-0031-DRAFT-9713
NOAA-NMFS-2020-0031-DRAFT-9714
NOAA-NMFS-2020-0031-DRAFT-9715
NOAA-NMFS-2020-0031-DRAFT-9716
NOAA-NMFS-2020-0031-DRAFT-9717
NOAA-NMFS-2020-0031-DRAFT-9718
NOAA-NMFS-2020-0031-DRAFT-9719
NOAA-NMFS-2020-0031-DRAFT-9720
NOAA-NMFS-2020-0031-DRAFT-9721
NOAA-NMFS-2020-0031-DRAFT-9722
NOAA-NMFS-2020-0031-DRAFT-9723
NOAA-NMFS-2020-0031-DRAFT-9724
NOAA-NMFS-2020-0031-DRAFT-9725
NOAA-NMFS-2020-0031-DRAFT-9726
NOAA-NMFS-2020-0031-DRAFT-9727
NOAA-NMFS-2020-0031-DRAFT-9728
NOAA-NMFS-2020-0031-DRAFT-9729
NOAA-NMFS-2020-0031-DRAFT-9730
NOAA-NMFS-2020-0031-DRAFT-9731
NOAA-NMFS-2020-0031-DRAFT-9732
NOAA-NMFS-2020-0031-DRAFT-9733
NOAA-NMFS-2020-0031-DRAFT-9734
NOAA-NMFS-2020-0031-DRAFT-9735
NOAA-NMFS-2020-0031-DRAFT-9736
NOAA-NMFS-2020-0031-DRAFT-9737
NOAA-NMFS-2020-0031-DRAFT-9738
NOAA-NMFS-2020-0031-DRAFT-9739
NOAA-NMFS-2020-0031-DRAFT-9740
NOAA-NMFS-2020-0031-DRAFT-9741
NOAA-NMFS-2020-0031-DRAFT-9742
NOAA-NMFS-2020-0031-DRAFT-9743
NOAA-NMFS-2020-0031-DRAFT-9744
NOAA-NMFS-2020-0031-DRAFT-9745
NOAA-NMFS-2020-0031-DRAFT-9746
NOAA-NMFS-2020-0031-DRAFT-9747
NOAA-NMFS-2020-0031-DRAFT-9748
NOAA-NMFS-2020-0031-DRAFT-9749
NOAA-NMFS-2020-0031-DRAFT-9750

Comment from Ian Shelley
Comment from Tanya Roland
Comment from Samuel Popailo
Comment from Robin Coleman
Comment from Betty David
Comment from Robb Mottl
Comment from Carol Dodson
Comment from Jan ebersole
Comment from Daniel Deveau
Comment from Rick Stack
Comment from Sarah Gensler
Comment from Leda Zimmerman
Comment from Jane Luu
Comment from Michael Bondoc
Comment from Mary Smith
Comment from Mary Thiel
Comment from Claudia Devinney
Comment from Linda Addis
Comment from Patrick Maloney
Comment from Sybil Schlesinger
Comment from Vicki Peters
Comment from Carol Easton
Comment from Jean Bevsek
Comment from JANUSZ MAKA
Comment from Sherry Byers
Comment from Gary Miller
Comment from Rick Sutton
Comment from rob fursich
Comment from george Ludwig
Comment from Patrick Quinn
Comment from Edward Bruner
Comment from Sophia McAllister
Comment from Ernesto Marquez
Comment from Susan Montague
Comment from Leilani Rothrock
Comment from DAWNE SANTOPIETRO
Comment from Ronald Silver
Comment from Karynn Merkel
Comment from Charles Dykema
Comment from Karen Freeman
Comment from Jo Daiber

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4487
NOAA-NMFS-2020-0031-DRAFT-4488
NOAA-NMFS-2020-0031-DRAFT-4489
NOAA-NMFS-2020-0031-DRAFT-4490
NOAA-NMFS-2020-0031-DRAFT-4491
NOAA-NMFS-2020-0031-DRAFT-4492
NOAA-NMFS-2020-0031-DRAFT-4493
NOAA-NMFS-2020-0031-DRAFT-4494
NOAA-NMFS-2020-0031-DRAFT-4495
NOAA-NMFS-2020-0031-DRAFT-4496
NOAA-NMFS-2020-0031-DRAFT-4497
NOAA-NMFS-2020-0031-DRAFT-4498
NOAA-NMFS-2020-0031-DRAFT-4499
NOAA-NMFS-2020-0031-DRAFT-4500
NOAA-NMFS-2020-0031-DRAFT-4501
NOAA-NMFS-2020-0031-DRAFT-4502
NOAA-NMFS-2020-0031-DRAFT-4503
NOAA-NMFS-2020-0031-DRAFT-4504
NOAA-NMFS-2020-0031-DRAFT-4505
NOAA-NMFS-2020-0031-DRAFT-4506
NOAA-NMFS-2020-0031-DRAFT-4507
NOAA-NMFS-2020-0031-DRAFT-4508
NOAA-NMFS-2020-0031-DRAFT-4509
NOAA-NMFS-2020-0031-DRAFT-4510
NOAA-NMFS-2020-0031-DRAFT-4511
NOAA-NMFS-2020-0031-DRAFT-4512
NOAA-NMFS-2020-0031-DRAFT-4513
NOAA-NMFS-2020-0031-DRAFT-4514
NOAA-NMFS-2020-0031-DRAFT-4515
NOAA-NMFS-2020-0031-DRAFT-4516
NOAA-NMFS-2020-0031-DRAFT-4517
NOAA-NMFS-2020-0031-DRAFT-4518
NOAA-NMFS-2020-0031-DRAFT-4519
NOAA-NMFS-2020-0031-DRAFT-4520
NOAA-NMFS-2020-0031-DRAFT-4521
NOAA-NMFS-2020-0031-DRAFT-4522
NOAA-NMFS-2020-0031-DRAFT-4523
NOAA-NMFS-2020-0031-DRAFT-4524
NOAA-NMFS-2020-0031-DRAFT-4525
NOAA-NMFS-2020-0031-DRAFT-4526
NOAA-NMFS-2020-0031-DRAFT-4527

Comment from Pascale Macleod
Comment from William Anderson
Comment from Valerie Snyder
Comment from Cheryl Mitchell
Comment from Lexi Loch
Comment from Cynthia Sterle
Comment from Susan Lopez
Comment from Kathleen Carr
Comment from Krystina Boyle
Comment from Bryan Bouma
Comment from Nigel Sawyer
Comment from Shelley Deshotel
Comment from Whitney watters
Comment from David Woolsey
Comment from Tiana Brachel
Comment from Ronald Smith
Comment from Rick Sibson
Comment from Erica Munn
Comment from Linsley Pietsch
Comment from Steve Vicuna
Comment from Cyd Groff
Comment from Nancy Parsons-Borland
Comment from cheryl watters
Comment from William Anderson
Comment from Dipali N
Comment from Marianna Riser
Comment from Tanya Rodriguez
Comment from Gary Dykman
Comment from Kenneth Rowe
Comment from M Millar
Comment from Catherine Macan
Comment from lelia bogard
Comment from Pamela Peck
Comment from Rene Gelsomino
Comment from Paul Fitzpatrick
Comment from DeAnna Baier-Barnes
Comment from Naomi Addit
Comment from Wingate Steitz
Comment from Gabriel Cohen-Glinick
Comment from Robert Hicks
Comment from Kenneth nelson

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9751
NOAA-NMFS-2020-0031-DRAFT-9752
NOAA-NMFS-2020-0031-DRAFT-9753
NOAA-NMFS-2020-0031-DRAFT-9754
NOAA-NMFS-2020-0031-DRAFT-9755
NOAA-NMFS-2020-0031-DRAFT-9756
NOAA-NMFS-2020-0031-DRAFT-9757
NOAA-NMFS-2020-0031-DRAFT-9758
NOAA-NMFS-2020-0031-DRAFT-9759
NOAA-NMFS-2020-0031-DRAFT-9760
NOAA-NMFS-2020-0031-DRAFT-9761
NOAA-NMFS-2020-0031-DRAFT-9762
NOAA-NMFS-2020-0031-DRAFT-9763
NOAA-NMFS-2020-0031-DRAFT-9764
NOAA-NMFS-2020-0031-DRAFT-9765
NOAA-NMFS-2020-0031-DRAFT-9766
NOAA-NMFS-2020-0031-DRAFT-9767
NOAA-NMFS-2020-0031-DRAFT-9768
NOAA-NMFS-2020-0031-DRAFT-9769
NOAA-NMFS-2020-0031-DRAFT-9770
NOAA-NMFS-2020-0031-DRAFT-9771
NOAA-NMFS-2020-0031-DRAFT-9772
NOAA-NMFS-2020-0031-DRAFT-9773
NOAA-NMFS-2020-0031-DRAFT-9774
NOAA-NMFS-2020-0031-DRAFT-9775
NOAA-NMFS-2020-0031-DRAFT-9776
NOAA-NMFS-2020-0031-DRAFT-9777
NOAA-NMFS-2020-0031-DRAFT-9778
NOAA-NMFS-2020-0031-DRAFT-9779
NOAA-NMFS-2020-0031-DRAFT-9780
NOAA-NMFS-2020-0031-DRAFT-9781
NOAA-NMFS-2020-0031-DRAFT-9782
NOAA-NMFS-2020-0031-DRAFT-9783
NOAA-NMFS-2020-0031-DRAFT-9784
NOAA-NMFS-2020-0031-DRAFT-9785
NOAA-NMFS-2020-0031-DRAFT-9786
NOAA-NMFS-2020-0031-DRAFT-9787
NOAA-NMFS-2020-0031-DRAFT-9788
NOAA-NMFS-2020-0031-DRAFT-9789
NOAA-NMFS-2020-0031-DRAFT-9790
NOAA-NMFS-2020-0031-DRAFT-9791

Comment from Lori Esposito
Comment from denise walsh
Comment from William Montgomery
Comment from Mary Shabbott
Comment from Lisa Witham
Comment from Alice Nicholson
Comment from Marilyn Lee
Comment from Steven Christian
Comment from John Bello
Comment from Shirley Midyette
Comment from Joan Conca
Comment from Gretchen Byrne
Comment from Ellen Fleishman
Comment from joyce robinson
Comment from John Beavers
Comment from Beth Brenneman
Comment from Karen Elly
Comment from Mike Brinkley
Comment from Brenda Bull
Comment from Eli Peer
Comment from Susan Boudreau
Comment from pamela Durkalski
Comment from Patti Davis
Comment from Madeleine Arnheim
Comment from Ann Wiseman
Comment from Colonel Meyer
Comment from Richard Smith
Comment from Barbara Jenkinson
Comment from Sally Marone
Comment from Judy Young
Comment from Nancy Martin
Comment from Rolando Rodriquez
Comment from candace l
Comment from Michael Malone
Comment from Takako Ishii-Kiefer
Comment from Janine Nordquist
Comment from Jill Alibrandi
Comment from Linda Gray
Comment from Sheri Cutright
Comment from Marianne Hines
Comment from Pam Hines

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4528
NOAA-NMFS-2020-0031-DRAFT-4529
NOAA-NMFS-2020-0031-DRAFT-4530
NOAA-NMFS-2020-0031-DRAFT-4531
NOAA-NMFS-2020-0031-DRAFT-4532
NOAA-NMFS-2020-0031-DRAFT-4533
NOAA-NMFS-2020-0031-DRAFT-4534
NOAA-NMFS-2020-0031-DRAFT-4535
NOAA-NMFS-2020-0031-DRAFT-4536
NOAA-NMFS-2020-0031-DRAFT-4537
NOAA-NMFS-2020-0031-DRAFT-4538
NOAA-NMFS-2020-0031-DRAFT-4539
NOAA-NMFS-2020-0031-DRAFT-4540
NOAA-NMFS-2020-0031-DRAFT-4541
NOAA-NMFS-2020-0031-DRAFT-4542
NOAA-NMFS-2020-0031-DRAFT-4543
NOAA-NMFS-2020-0031-DRAFT-4544
NOAA-NMFS-2020-0031-DRAFT-4545
NOAA-NMFS-2020-0031-DRAFT-4546
NOAA-NMFS-2020-0031-DRAFT-4547
NOAA-NMFS-2020-0031-DRAFT-4548
NOAA-NMFS-2020-0031-DRAFT-4549
NOAA-NMFS-2020-0031-DRAFT-4550
NOAA-NMFS-2020-0031-DRAFT-4551
NOAA-NMFS-2020-0031-DRAFT-4552
NOAA-NMFS-2020-0031-DRAFT-4553
NOAA-NMFS-2020-0031-DRAFT-4554
NOAA-NMFS-2020-0031-DRAFT-4555
NOAA-NMFS-2020-0031-DRAFT-4556
NOAA-NMFS-2020-0031-DRAFT-4557
NOAA-NMFS-2020-0031-DRAFT-4558
NOAA-NMFS-2020-0031-DRAFT-4559
NOAA-NMFS-2020-0031-DRAFT-4560
NOAA-NMFS-2020-0031-DRAFT-4561
NOAA-NMFS-2020-0031-DRAFT-4562
NOAA-NMFS-2020-0031-DRAFT-4563
NOAA-NMFS-2020-0031-DRAFT-4564
NOAA-NMFS-2020-0031-DRAFT-4565
NOAA-NMFS-2020-0031-DRAFT-4566
NOAA-NMFS-2020-0031-DRAFT-4567
NOAA-NMFS-2020-0031-DRAFT-4568

Comment from Jennie Sabato
Comment from John Savlove
Comment from Daniel Shapiro
Comment from Robert Carnevale
Comment from Barbara Pray
Comment from julie mckeon
Comment from Bruce Vaben
Comment from Katie Clifford
Comment from Ken Lesem
Comment from Julie Griffith
Comment from Cynthia Hart
Comment from Jane Rich
Comment from Zoe Nelson
Comment from Lawrence Thompson
Comment from Catherine Johnson
Comment from Terri Decker
Comment from Marcia Powdermaker
Comment from Gay Arnold
Comment from Brandy Schumacher
Comment from Laura Riley
Comment from Callie Riley
Comment from Carol Saulsbury
Comment from Linda Indyke
Comment from Dorothy Stango
Comment from Lisa Simms
Comment from Bruce Blackwell
Comment from Thomas Knecht
Comment from Keri Merriman
Comment from Gillian Miller
Comment from Janis Sawyer
Comment from Drew Panko
Comment from Tina Doolen
Comment from Chelsea Ducharme
Comment from Sammy Low
Comment from Helen Drwinga
Comment from Janet Callum
Comment from Andrea Neal
Comment from Steven Black
Comment from sarah brown
Comment from david lafond
Comment from Dobi Dobroslawa

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9792
NOAA-NMFS-2020-0031-DRAFT-9793
NOAA-NMFS-2020-0031-DRAFT-9794
NOAA-NMFS-2020-0031-DRAFT-9795
NOAA-NMFS-2020-0031-DRAFT-9796
NOAA-NMFS-2020-0031-DRAFT-9797
NOAA-NMFS-2020-0031-DRAFT-9798
NOAA-NMFS-2020-0031-DRAFT-9799
NOAA-NMFS-2020-0031-DRAFT-9800
NOAA-NMFS-2020-0031-DRAFT-9801
NOAA-NMFS-2020-0031-DRAFT-9802
NOAA-NMFS-2020-0031-DRAFT-9803
NOAA-NMFS-2020-0031-DRAFT-9804
NOAA-NMFS-2020-0031-DRAFT-9805
NOAA-NMFS-2020-0031-DRAFT-9806
NOAA-NMFS-2020-0031-DRAFT-9807
NOAA-NMFS-2020-0031-DRAFT-9808
NOAA-NMFS-2020-0031-DRAFT-9809
NOAA-NMFS-2020-0031-DRAFT-9810
NOAA-NMFS-2020-0031-DRAFT-9811
NOAA-NMFS-2020-0031-DRAFT-9812
NOAA-NMFS-2020-0031-DRAFT-9813
NOAA-NMFS-2020-0031-DRAFT-9814
NOAA-NMFS-2020-0031-DRAFT-9815
NOAA-NMFS-2020-0031-DRAFT-9816
NOAA-NMFS-2020-0031-DRAFT-9817
NOAA-NMFS-2020-0031-DRAFT-9818
NOAA-NMFS-2020-0031-DRAFT-9819
NOAA-NMFS-2020-0031-DRAFT-9820
NOAA-NMFS-2020-0031-DRAFT-9821
NOAA-NMFS-2020-0031-DRAFT-9822
NOAA-NMFS-2020-0031-DRAFT-9823
NOAA-NMFS-2020-0031-DRAFT-9824
NOAA-NMFS-2020-0031-DRAFT-9825
NOAA-NMFS-2020-0031-DRAFT-9826
NOAA-NMFS-2020-0031-DRAFT-9827
NOAA-NMFS-2020-0031-DRAFT-9828
NOAA-NMFS-2020-0031-DRAFT-9829
NOAA-NMFS-2020-0031-DRAFT-9830
NOAA-NMFS-2020-0031-DRAFT-9831
NOAA-NMFS-2020-0031-DRAFT-9832

Comment from Jeanine mielke
Comment from Shawn Alexander
Comment from James Holbrook
Comment from James Holbrook
Comment from Lisa Hood
Comment from Michael Lieberman
Comment from Alice Gard
Comment from robert mitch
Comment from Karen Hughes
Comment from Glenna Harris
Comment from Elaine meqdad
Comment from P.S. Padula
Comment from Anthony Albert
Comment from Janet Dingle
Comment from Karen Collins
Comment from Mark DePalma
Comment from ellen wertheim
Comment from Peggy Alpert
Comment from Abigail Villodas
Comment from Kaitlyn Reisner
Comment from Anita Sallas
Comment from Walt Luerken
Comment from Claudia Cinardo
Comment from Larry Caudill
Comment from Kim Westlake
Comment from Alina Grinshpun
Comment from Marj Waite
Comment from Roel Bergema
Comment from Michael Claps
Comment from Mary Rodarte
Comment from Mary Dickson
Comment from Paul Williams
Comment from Gerolynn Laukevicz
Comment from Lynda Kieffer
Comment from Cheryl Middleton
Comment from Bryan Bell
Comment from Rich Panter
Comment from LouAnn Nichols
Comment from JOANNE BURTON
Comment from Judy Jolin
Comment from Nancy Mclaughlin

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01/16/2021
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01/16/2021
01/16/2021
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01/16/2021
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01/16/2021
01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4569
NOAA-NMFS-2020-0031-DRAFT-4570
NOAA-NMFS-2020-0031-DRAFT-4571
NOAA-NMFS-2020-0031-DRAFT-4572
NOAA-NMFS-2020-0031-DRAFT-4573
NOAA-NMFS-2020-0031-DRAFT-4574
NOAA-NMFS-2020-0031-DRAFT-4575
NOAA-NMFS-2020-0031-DRAFT-4576
NOAA-NMFS-2020-0031-DRAFT-4577
NOAA-NMFS-2020-0031-DRAFT-4578
NOAA-NMFS-2020-0031-DRAFT-4579
NOAA-NMFS-2020-0031-DRAFT-4580
NOAA-NMFS-2020-0031-DRAFT-4581
NOAA-NMFS-2020-0031-DRAFT-4582
NOAA-NMFS-2020-0031-DRAFT-4583
NOAA-NMFS-2020-0031-DRAFT-4584
NOAA-NMFS-2020-0031-DRAFT-4585
NOAA-NMFS-2020-0031-DRAFT-4586
NOAA-NMFS-2020-0031-DRAFT-4587
NOAA-NMFS-2020-0031-DRAFT-4588
NOAA-NMFS-2020-0031-DRAFT-4589
NOAA-NMFS-2020-0031-DRAFT-4590
NOAA-NMFS-2020-0031-DRAFT-4591
NOAA-NMFS-2020-0031-DRAFT-4592
NOAA-NMFS-2020-0031-DRAFT-4593
NOAA-NMFS-2020-0031-DRAFT-4594
NOAA-NMFS-2020-0031-DRAFT-4595
NOAA-NMFS-2020-0031-DRAFT-4596
NOAA-NMFS-2020-0031-DRAFT-4597
NOAA-NMFS-2020-0031-DRAFT-4598
NOAA-NMFS-2020-0031-DRAFT-4599
NOAA-NMFS-2020-0031-DRAFT-4600
NOAA-NMFS-2020-0031-DRAFT-4601
NOAA-NMFS-2020-0031-DRAFT-4602
NOAA-NMFS-2020-0031-DRAFT-4603
NOAA-NMFS-2020-0031-DRAFT-4604
NOAA-NMFS-2020-0031-DRAFT-4605
NOAA-NMFS-2020-0031-DRAFT-4606
NOAA-NMFS-2020-0031-DRAFT-4607
NOAA-NMFS-2020-0031-DRAFT-4608
NOAA-NMFS-2020-0031-DRAFT-4609

Comment from Blake Wu
Comment from Frederique Joly
Comment from Paul Moss
Comment from Amalia Stephens
Comment from Christopher Lepple
Comment from Edward Thornton
Comment from Judy Schultz
Comment from Kathleen Gulbransen
Comment from Stephanie Fox
Comment from Katherine Lux
Comment from Marilyn Carse
Comment from michael quillin
Comment from Ruthann McDermott
Comment from Ruthann McDermott
Comment from Abby Hamilton
Comment from Adina Parsley
Comment from Catherine Milovina
Comment from janet forman
Comment from Alaina Schwartz
Comment from Ruth Schechter
Comment from Helen Cooluris
Comment from Tim Milam
Comment from Yuru Feng
Comment from Kathleen Durkin
Comment from Eric Stiff
Comment from Mark Kidd
Comment from Gail Roach
Comment from Linda Mezieres
Comment from Kay BRainerd
Comment from Noel Emswiler
Comment from Alex Rappaport
Comment from Ruth Swan-Brown
Comment from Chris Beck
Comment from Marjorie Hancock
Comment from C. Bower
Comment from Craig Fulton
Comment from Jeannette Welling
Comment from Alice Lorenz
Comment from SHERRY WEILAND
Comment from Mara Sabinson
Comment from Michael Prete

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9833
NOAA-NMFS-2020-0031-DRAFT-9834
NOAA-NMFS-2020-0031-DRAFT-9835
NOAA-NMFS-2020-0031-DRAFT-9836
NOAA-NMFS-2020-0031-DRAFT-9837
NOAA-NMFS-2020-0031-DRAFT-9838
NOAA-NMFS-2020-0031-DRAFT-9839
NOAA-NMFS-2020-0031-DRAFT-9840
NOAA-NMFS-2020-0031-DRAFT-9841
NOAA-NMFS-2020-0031-DRAFT-9842
NOAA-NMFS-2020-0031-DRAFT-9843
NOAA-NMFS-2020-0031-DRAFT-9844
NOAA-NMFS-2020-0031-DRAFT-9845
NOAA-NMFS-2020-0031-DRAFT-9846
NOAA-NMFS-2020-0031-DRAFT-9847
NOAA-NMFS-2020-0031-DRAFT-9848
NOAA-NMFS-2020-0031-DRAFT-9849
NOAA-NMFS-2020-0031-DRAFT-9850
NOAA-NMFS-2020-0031-DRAFT-9851
NOAA-NMFS-2020-0031-DRAFT-9852
NOAA-NMFS-2020-0031-DRAFT-9853
NOAA-NMFS-2020-0031-DRAFT-9854
NOAA-NMFS-2020-0031-DRAFT-9855
NOAA-NMFS-2020-0031-DRAFT-9856
NOAA-NMFS-2020-0031-DRAFT-9857
NOAA-NMFS-2020-0031-DRAFT-9858
NOAA-NMFS-2020-0031-DRAFT-9859
NOAA-NMFS-2020-0031-DRAFT-9860
NOAA-NMFS-2020-0031-DRAFT-9861
NOAA-NMFS-2020-0031-DRAFT-9862
NOAA-NMFS-2020-0031-DRAFT-9863
NOAA-NMFS-2020-0031-DRAFT-9864
NOAA-NMFS-2020-0031-DRAFT-9865
NOAA-NMFS-2020-0031-DRAFT-9866
NOAA-NMFS-2020-0031-DRAFT-9867
NOAA-NMFS-2020-0031-DRAFT-9868
NOAA-NMFS-2020-0031-DRAFT-9869
NOAA-NMFS-2020-0031-DRAFT-9870
NOAA-NMFS-2020-0031-DRAFT-9871
NOAA-NMFS-2020-0031-DRAFT-9872
NOAA-NMFS-2020-0031-DRAFT-9873

Comment from Marcus Ferreira
Comment from David Balan
Comment from Lozz Starseed
Comment from Catherine Clifton
Comment from Jessica Johnson
Comment from Cindy Porter
Comment from Barbara Manildi
Comment from Guen Han
Comment from Becky Monger
Comment from Christopher Dowling
Comment from Kristen Trusty
Comment from Dawn Foster
Comment from Anita Wisch
Comment from Patti Jahsman
Comment from Kenneth Barter
Comment from Arlene Zuckerman
Comment from Adam DOnofrio
Comment from brigette green
Comment from Michael Hlis
Comment from Gre Prr
Comment from Louise Stark
Comment from Agnes Bahm
Comment from Howard Petlack
Comment from Anita Wisch
Comment from Maggie Shields
Comment from Jessica LoCicero-Walsh
Comment from Charles Patterson
Comment from Krystal Fletcher-Burroughs
Comment from Ralph Guay
Comment from Bill Hoxie
Comment from betsy levy
Comment from robin nadel
Comment from Jim Leske
Comment from Thomas Bailey
Comment from Cindy Fine
Comment from GALO ARGUELLO
Comment from Anita Wisch
Comment from Shelley Driskell
Comment from MILES PATTERSON
Comment from Richard Han
Comment from Sarah Frechette

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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4610
NOAA-NMFS-2020-0031-DRAFT-4611
NOAA-NMFS-2020-0031-DRAFT-4612
NOAA-NMFS-2020-0031-DRAFT-4613
NOAA-NMFS-2020-0031-DRAFT-4614
NOAA-NMFS-2020-0031-DRAFT-4615
NOAA-NMFS-2020-0031-DRAFT-4616
NOAA-NMFS-2020-0031-DRAFT-4617
NOAA-NMFS-2020-0031-DRAFT-4618
NOAA-NMFS-2020-0031-DRAFT-4619
NOAA-NMFS-2020-0031-DRAFT-4620
NOAA-NMFS-2020-0031-DRAFT-4621
NOAA-NMFS-2020-0031-DRAFT-4622
NOAA-NMFS-2020-0031-DRAFT-4623
NOAA-NMFS-2020-0031-DRAFT-4624
NOAA-NMFS-2020-0031-DRAFT-4625
NOAA-NMFS-2020-0031-DRAFT-4626
NOAA-NMFS-2020-0031-DRAFT-4627
NOAA-NMFS-2020-0031-DRAFT-4628
NOAA-NMFS-2020-0031-DRAFT-4629
NOAA-NMFS-2020-0031-DRAFT-4630
NOAA-NMFS-2020-0031-DRAFT-4631
NOAA-NMFS-2020-0031-DRAFT-4632
NOAA-NMFS-2020-0031-DRAFT-4633
NOAA-NMFS-2020-0031-DRAFT-4634
NOAA-NMFS-2020-0031-DRAFT-4635
NOAA-NMFS-2020-0031-DRAFT-4636
NOAA-NMFS-2020-0031-DRAFT-4637
NOAA-NMFS-2020-0031-DRAFT-4638
NOAA-NMFS-2020-0031-DRAFT-4639
NOAA-NMFS-2020-0031-DRAFT-4640
NOAA-NMFS-2020-0031-DRAFT-4641
NOAA-NMFS-2020-0031-DRAFT-4642
NOAA-NMFS-2020-0031-DRAFT-4643
NOAA-NMFS-2020-0031-DRAFT-4644
NOAA-NMFS-2020-0031-DRAFT-4645
NOAA-NMFS-2020-0031-DRAFT-4646
NOAA-NMFS-2020-0031-DRAFT-4647
NOAA-NMFS-2020-0031-DRAFT-4648
NOAA-NMFS-2020-0031-DRAFT-4649
NOAA-NMFS-2020-0031-DRAFT-4650

Comment from Veronica Bassil
Comment from G Y
Comment from Kate Leahy
Comment from Bruno Cilione
Comment from Warren Souders
Comment from Andrew Weaver
Comment from Noah Youngelson
Comment from Susan Villanueva
Comment from Ayesha Vavrek
Comment from Vicki Black
Comment from Hugh Carola
Comment from JoAnne Cohen
Comment from Nicole DiVirgilio
Comment from Jana Kitzinger
Comment from Heidi Welte
Comment from Robert Ferrara
Comment from Stephanie Hammond
Comment from ALVERA PRITCHARD
Comment from William Pickens
Comment from JERI LANGHAM
Comment from Tracie Gabrisko
Comment from Karen Ryan
Comment from Emily Hauer
Comment from Lisa Salazar
Comment from Heath Post
Comment from Rebecca Menin
Comment from Denise Martini
Comment from Christine Lockhart
Comment from Joanne Fetting
Comment from Denise Whitney
Comment from James Daly
Comment from Judith Hansell
Comment from Stephen Greenberg
Comment from Suzanne Kirby
Comment from roberta penn
Comment from Dana Barela
Comment from Stacie Hartman
Comment from Mary Madeco-Smith
Comment from JOHN PETSCO
Comment from Julia Roos
Comment from Barbara Blackwood

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9874
NOAA-NMFS-2020-0031-DRAFT-9875
NOAA-NMFS-2020-0031-DRAFT-9876
NOAA-NMFS-2020-0031-DRAFT-9877
NOAA-NMFS-2020-0031-DRAFT-9878
NOAA-NMFS-2020-0031-DRAFT-9879
NOAA-NMFS-2020-0031-DRAFT-9880
NOAA-NMFS-2020-0031-DRAFT-9881
NOAA-NMFS-2020-0031-DRAFT-9882
NOAA-NMFS-2020-0031-DRAFT-9883
NOAA-NMFS-2020-0031-DRAFT-9884
NOAA-NMFS-2020-0031-DRAFT-9885
NOAA-NMFS-2020-0031-DRAFT-9886
NOAA-NMFS-2020-0031-DRAFT-9887
NOAA-NMFS-2020-0031-DRAFT-9888
NOAA-NMFS-2020-0031-DRAFT-9889
NOAA-NMFS-2020-0031-DRAFT-9890
NOAA-NMFS-2020-0031-DRAFT-9891
NOAA-NMFS-2020-0031-DRAFT-9892
NOAA-NMFS-2020-0031-DRAFT-9893
NOAA-NMFS-2020-0031-DRAFT-9894
NOAA-NMFS-2020-0031-DRAFT-9895
NOAA-NMFS-2020-0031-DRAFT-9896
NOAA-NMFS-2020-0031-DRAFT-9897
NOAA-NMFS-2020-0031-DRAFT-9898
NOAA-NMFS-2020-0031-DRAFT-9899
NOAA-NMFS-2020-0031-DRAFT-9900
NOAA-NMFS-2020-0031-DRAFT-9901
NOAA-NMFS-2020-0031-DRAFT-9902
NOAA-NMFS-2020-0031-DRAFT-9903
NOAA-NMFS-2020-0031-DRAFT-9904
NOAA-NMFS-2020-0031-DRAFT-9905
NOAA-NMFS-2020-0031-DRAFT-9906
NOAA-NMFS-2020-0031-DRAFT-9907
NOAA-NMFS-2020-0031-DRAFT-9908
NOAA-NMFS-2020-0031-DRAFT-9909
NOAA-NMFS-2020-0031-DRAFT-9910
NOAA-NMFS-2020-0031-DRAFT-9911
NOAA-NMFS-2020-0031-DRAFT-9912
NOAA-NMFS-2020-0031-DRAFT-9913
NOAA-NMFS-2020-0031-DRAFT-9914

Comment from Sylvia Vairo
Comment from Anna Aydinyan
Comment from Ray Batch
Comment from sharon byers
Comment from Eugene Brusin
Comment from Carla Behrens
Comment from Adam DOnofrio
Comment from Eva Marks-Curatolo
Comment from Bruce Hallett
Comment from Magdalena Czech
Comment from Sundae Shields
Comment from Cari Brookbanks
Comment from Barb Livingston
Comment from Rainbow Di Benedetto
Comment from Linda Schmidt
Comment from Brianna Knickerbocker
Comment from Michael Tomlinson
Comment from Wendy Friedman
Comment from Paul Riley
Comment from Daniel Heyduk
Comment from Hector Bertin
Comment from Michaelle Dewitt
Comment from Cindy Voss
Comment from Mark Weinberger
Comment from Diana Glixman
Comment from Lin Provost
Comment from Lawrence Crowley
Comment from Robert Stark
Comment from Linda Barnett
Comment from James Hemm
Comment from Michael Halloran
Comment from John Schneider
Comment from Milt Weisman
Comment from Hillary Tiefer
Comment from Gary Schiendelman
Comment from Darla kravetz
Comment from Rich Speer
Comment from Fiona H
Comment from Wendy Wells
Comment from marilynn mitchell
Comment from Merrill Ahrens

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01/16/2021
01/16/2021
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01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021
01/16/2021

NOAA-NMFS-2020-0031-DRAFT-4651
NOAA-NMFS-2020-0031-DRAFT-4652
NOAA-NMFS-2020-0031-DRAFT-4653
NOAA-NMFS-2020-0031-DRAFT-4654
NOAA-NMFS-2020-0031-DRAFT-4655
NOAA-NMFS-2020-0031-DRAFT-4656
NOAA-NMFS-2020-0031-DRAFT-4657
NOAA-NMFS-2020-0031-DRAFT-4658
NOAA-NMFS-2020-0031-DRAFT-4659
NOAA-NMFS-2020-0031-DRAFT-4660
NOAA-NMFS-2020-0031-DRAFT-4661
NOAA-NMFS-2020-0031-DRAFT-4662
NOAA-NMFS-2020-0031-DRAFT-4663
NOAA-NMFS-2020-0031-DRAFT-4664
NOAA-NMFS-2020-0031-DRAFT-4665
NOAA-NMFS-2020-0031-DRAFT-4666
NOAA-NMFS-2020-0031-DRAFT-4667
NOAA-NMFS-2020-0031-DRAFT-4668
NOAA-NMFS-2020-0031-DRAFT-4669
NOAA-NMFS-2020-0031-DRAFT-4670
NOAA-NMFS-2020-0031-DRAFT-4671
NOAA-NMFS-2020-0031-DRAFT-4672
NOAA-NMFS-2020-0031-DRAFT-4673
NOAA-NMFS-2020-0031-DRAFT-4674
NOAA-NMFS-2020-0031-DRAFT-4675
NOAA-NMFS-2020-0031-DRAFT-4676
NOAA-NMFS-2020-0031-DRAFT-4677
NOAA-NMFS-2020-0031-DRAFT-4678
NOAA-NMFS-2020-0031-DRAFT-4679
NOAA-NMFS-2020-0031-DRAFT-4680
NOAA-NMFS-2020-0031-DRAFT-4681
NOAA-NMFS-2020-0031-DRAFT-4682
NOAA-NMFS-2020-0031-DRAFT-4683
NOAA-NMFS-2020-0031-DRAFT-4684
NOAA-NMFS-2020-0031-DRAFT-4685
NOAA-NMFS-2020-0031-DRAFT-4686
NOAA-NMFS-2020-0031-DRAFT-4687
NOAA-NMFS-2020-0031-DRAFT-4688
NOAA-NMFS-2020-0031-DRAFT-4689
NOAA-NMFS-2020-0031-DRAFT-4690
NOAA-NMFS-2020-0031-DRAFT-4691

Comment from Gigi Contreras
Comment from Jen Scibetta
Comment from Terry Friedman
Comment from Jenny Pierucki
Comment from Gatha Pierucki
Comment from Ashley Venanzi
Comment from Cindy Greer
Comment from Nancy Mills
Comment from Kristen Krupicka
Comment from Donna Juzkiw
Comment from Honorable Snyder
Comment from Cassandra Treppeda
Comment from Michelle Shinn
Comment from Doug Dyer
Comment from Robert MacLean
Comment from Kate Sherwood
Comment from Kathryn Lemoine
Comment from Brian Reynolds
Comment from Mark Giese
Comment from Nancy Eichler
Comment from Jeanne Rothwarf
Comment from Roger Carlson
Comment from Nicholas Bridgett
Comment from Shawn Anderson
Comment from Jon Silver
Comment from Terrance Hutchinson
Comment from Tara Verbridge
Comment from Bonnie McGill
Comment from Laurence Skirvin
Comment from Betsy Smith
Comment from Janine Giaime
Comment from Leanne Wolf-Webber
Comment from Mark Giese
Comment from Lee Varian
Comment from William Krause
Comment from Glen Anderson
Comment from Lisa Cubeiro
Comment from Suzann McAlister
Comment from Melinda Allen
Comment from Donna Oliver
Comment from Kristin Logerquist

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9915
NOAA-NMFS-2020-0031-DRAFT-9916
NOAA-NMFS-2020-0031-DRAFT-9917
NOAA-NMFS-2020-0031-DRAFT-9918
NOAA-NMFS-2020-0031-DRAFT-9919
NOAA-NMFS-2020-0031-DRAFT-9920
NOAA-NMFS-2020-0031-DRAFT-9921
NOAA-NMFS-2020-0031-DRAFT-9922
NOAA-NMFS-2020-0031-DRAFT-9923
NOAA-NMFS-2020-0031-DRAFT-9924
NOAA-NMFS-2020-0031-DRAFT-9925
NOAA-NMFS-2020-0031-DRAFT-9926
NOAA-NMFS-2020-0031-DRAFT-9927
NOAA-NMFS-2020-0031-DRAFT-9928
NOAA-NMFS-2020-0031-DRAFT-9929
NOAA-NMFS-2020-0031-DRAFT-9930
NOAA-NMFS-2020-0031-DRAFT-9931
NOAA-NMFS-2020-0031-DRAFT-9932
NOAA-NMFS-2020-0031-DRAFT-9933
NOAA-NMFS-2020-0031-DRAFT-9934
NOAA-NMFS-2020-0031-DRAFT-9935
NOAA-NMFS-2020-0031-DRAFT-9936
NOAA-NMFS-2020-0031-DRAFT-9937
NOAA-NMFS-2020-0031-DRAFT-9938
NOAA-NMFS-2020-0031-DRAFT-9939
NOAA-NMFS-2020-0031-DRAFT-9940
NOAA-NMFS-2020-0031-DRAFT-9941
NOAA-NMFS-2020-0031-DRAFT-9942
NOAA-NMFS-2020-0031-DRAFT-9943
NOAA-NMFS-2020-0031-DRAFT-9944
NOAA-NMFS-2020-0031-DRAFT-9945
NOAA-NMFS-2020-0031-DRAFT-9946
NOAA-NMFS-2020-0031-DRAFT-9947
NOAA-NMFS-2020-0031-DRAFT-9948
NOAA-NMFS-2020-0031-DRAFT-9949
NOAA-NMFS-2020-0031-DRAFT-9950
NOAA-NMFS-2020-0031-DRAFT-9951
NOAA-NMFS-2020-0031-DRAFT-9952
NOAA-NMFS-2020-0031-DRAFT-9953
NOAA-NMFS-2020-0031-DRAFT-9954
NOAA-NMFS-2020-0031-DRAFT-9955

Comment from Clou Herd
Comment from Chris Silcox
Comment from Neal Umphred
Comment from Carol Miller
Comment from Ken Odenheim
Comment from Mary LeVine
Comment from Glenn Gragg
Comment from A Keegan
Comment from Michelle Cobert
Comment from Ashley Carter
Comment from Michelle McCoy
Comment from Robert Rutkowski
Comment from Teresa Edmonds
Comment from Cherie Levinsohn
Comment from Anna Simle
Comment from Dawn Skok
Comment from David Wilen
Comment from JILL KOTCH
Comment from Seth Bright
Comment from Sandra Britton
Comment from Laurie Thompson
Comment from Vicki Macina
Comment from Ann Cockrell
Comment from Ann Cockrell
Comment from Marguerite Barragan
Comment from Candace Bassat
Comment from Ann Cockrell
Comment from linda albarran
Comment from Maryanne Preli
Comment from Desba Silvers
Comment from James Miles
Comment from Peggy Herlihy
Comment from Jeff Levicke
Comment from Cathie Leslie
Comment from Veda White
Comment from Emma Houseman
Comment from Dennis Clark
Comment from Patty Bachner
Comment from Steve Lewis
Comment from Gregory Marks
Comment from juli van brown

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01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4692
NOAA-NMFS-2020-0031-DRAFT-4693
NOAA-NMFS-2020-0031-DRAFT-4694
NOAA-NMFS-2020-0031-DRAFT-4695
NOAA-NMFS-2020-0031-DRAFT-4696
NOAA-NMFS-2020-0031-DRAFT-4697
NOAA-NMFS-2020-0031-DRAFT-4698
NOAA-NMFS-2020-0031-DRAFT-4699
NOAA-NMFS-2020-0031-DRAFT-4700
NOAA-NMFS-2020-0031-DRAFT-4701
NOAA-NMFS-2020-0031-DRAFT-4702
NOAA-NMFS-2020-0031-DRAFT-4703
NOAA-NMFS-2020-0031-DRAFT-4704
NOAA-NMFS-2020-0031-DRAFT-4705
NOAA-NMFS-2020-0031-DRAFT-4706
NOAA-NMFS-2020-0031-DRAFT-4707
NOAA-NMFS-2020-0031-DRAFT-4708
NOAA-NMFS-2020-0031-DRAFT-4709
NOAA-NMFS-2020-0031-DRAFT-4710
NOAA-NMFS-2020-0031-DRAFT-4711
NOAA-NMFS-2020-0031-DRAFT-4712
NOAA-NMFS-2020-0031-DRAFT-4713
NOAA-NMFS-2020-0031-DRAFT-4714
NOAA-NMFS-2020-0031-DRAFT-4715
NOAA-NMFS-2020-0031-DRAFT-4716
NOAA-NMFS-2020-0031-DRAFT-4717
NOAA-NMFS-2020-0031-DRAFT-4718
NOAA-NMFS-2020-0031-DRAFT-4719
NOAA-NMFS-2020-0031-DRAFT-4720
NOAA-NMFS-2020-0031-DRAFT-4721
NOAA-NMFS-2020-0031-DRAFT-4722
NOAA-NMFS-2020-0031-DRAFT-4723
NOAA-NMFS-2020-0031-DRAFT-4724
NOAA-NMFS-2020-0031-DRAFT-4725
NOAA-NMFS-2020-0031-DRAFT-4726
NOAA-NMFS-2020-0031-DRAFT-4727
NOAA-NMFS-2020-0031-DRAFT-4728
NOAA-NMFS-2020-0031-DRAFT-4729
NOAA-NMFS-2020-0031-DRAFT-4730
NOAA-NMFS-2020-0031-DRAFT-4731
NOAA-NMFS-2020-0031-DRAFT-4732

Comment from M. W.
Comment from Lisa Hill
Comment from William Hollingshead
Comment from Dana Wullenwaber
Comment from Barbara Root
Comment from Jane Perkins
Comment from Phyllis Van Leuven
Comment from Randall Mierow
Comment from Tom Csuhta
Comment from Wendy Weldon
Comment from Laurel Wilson
Comment from David Levinson
Comment from Ruby Weeks
Comment from Ellen Jessen
Comment from Sue Johnston
Comment from Brent Miller
Comment from Cheryl Robison
Comment from Maria Jablonska
Comment from Beth Eisenbeis
Comment from Mary Jackson
Comment from Shawn Anderson
Comment from Crystal Hart
Comment from Sandy Nichols
Comment from Susanna Purucker
Comment from Erica Maranowski
Comment from Robert Snyder
Comment from Michelle Jacobsen
Comment from Susan Walker
Comment from Karen chinn
Comment from Gaetane Gonzales
Comment from Patt Bourland
Comment from Rose Quade
Comment from Hank Keeton
Comment from jason husby
Comment from sharon wolfsohn
Comment from Adrian Brock
Comment from Tania Malven
Comment from mary haines
Comment from Keith Ignatowicz
Comment from Tiffany Casler
Comment from Darlene Banach

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9956
NOAA-NMFS-2020-0031-DRAFT-9957
NOAA-NMFS-2020-0031-DRAFT-9958
NOAA-NMFS-2020-0031-DRAFT-9959
NOAA-NMFS-2020-0031-DRAFT-9960
NOAA-NMFS-2020-0031-DRAFT-9961
NOAA-NMFS-2020-0031-DRAFT-9962
NOAA-NMFS-2020-0031-DRAFT-9963
NOAA-NMFS-2020-0031-DRAFT-9964
NOAA-NMFS-2020-0031-DRAFT-9965
NOAA-NMFS-2020-0031-DRAFT-9966
NOAA-NMFS-2020-0031-DRAFT-9967
NOAA-NMFS-2020-0031-DRAFT-9968
NOAA-NMFS-2020-0031-DRAFT-9969
NOAA-NMFS-2020-0031-DRAFT-9970
NOAA-NMFS-2020-0031-DRAFT-9971
NOAA-NMFS-2020-0031-DRAFT-9972
NOAA-NMFS-2020-0031-DRAFT-9973
NOAA-NMFS-2020-0031-DRAFT-9974
NOAA-NMFS-2020-0031-DRAFT-9975
NOAA-NMFS-2020-0031-DRAFT-9976
NOAA-NMFS-2020-0031-DRAFT-9977
NOAA-NMFS-2020-0031-DRAFT-9978
NOAA-NMFS-2020-0031-DRAFT-9979
NOAA-NMFS-2020-0031-DRAFT-9980
NOAA-NMFS-2020-0031-DRAFT-9981
NOAA-NMFS-2020-0031-DRAFT-9982
NOAA-NMFS-2020-0031-DRAFT-9983
NOAA-NMFS-2020-0031-DRAFT-9984
NOAA-NMFS-2020-0031-DRAFT-9985
NOAA-NMFS-2020-0031-DRAFT-9986
NOAA-NMFS-2020-0031-DRAFT-9987
NOAA-NMFS-2020-0031-DRAFT-9988
NOAA-NMFS-2020-0031-DRAFT-9989
NOAA-NMFS-2020-0031-DRAFT-9990
NOAA-NMFS-2020-0031-DRAFT-9991
NOAA-NMFS-2020-0031-DRAFT-9992
NOAA-NMFS-2020-0031-DRAFT-9993
NOAA-NMFS-2020-0031-DRAFT-9994
NOAA-NMFS-2020-0031-DRAFT-9995
NOAA-NMFS-2020-0031-DRAFT-9996

Comment from James Ropicki
Comment from Tiffany Ray
Comment from Gary Mazzotti
Comment from Jeff Garmon
Comment from Theresa Bradbury
Comment from Edward Butler
Comment from Margaret Smith
Comment from Michael Norden
Comment from Brooke Kane
Comment from Diane Kokowski
Comment from Stacia Haley
Comment from mary n
Comment from Karren Crouch
Comment from Thomas Hart
Comment from Kathryn Choudhury
Comment from Kathi Squires
Comment from Betty Sabo
Comment from Kim Peterson
Comment from Esther Weaver
Comment from David Hall
Comment from Alan Schenck
Comment from Ruth Steenwyk
Comment from Anthony Mehle
Comment from Charity Moschopoulos
Comment from Carolyn Marion
Comment from Aliaa Abdel-Gawad
Comment from Cleveland Tom
Comment from Stefanie Guynn
Comment from Richard Tregidgo
Comment from Stacey McDonald
Comment from Nycolle Lfe
Comment from David Clapper
Comment from Melanie Stopyra
Comment from Dena Hernandez-Kosche
Comment from Wayne Ott
Comment from Bianca Molgora
Comment from Renee Woodman
Comment from Robyn DeCiccio
Comment from Charles Hereford
Comment from john hogan
Comment from Katherine Werner

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01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4733
NOAA-NMFS-2020-0031-DRAFT-4734
NOAA-NMFS-2020-0031-DRAFT-4735
NOAA-NMFS-2020-0031-DRAFT-4736
NOAA-NMFS-2020-0031-DRAFT-4737
NOAA-NMFS-2020-0031-DRAFT-4738
NOAA-NMFS-2020-0031-DRAFT-4739
NOAA-NMFS-2020-0031-DRAFT-4740
NOAA-NMFS-2020-0031-DRAFT-4741
NOAA-NMFS-2020-0031-DRAFT-4742
NOAA-NMFS-2020-0031-DRAFT-4743
NOAA-NMFS-2020-0031-DRAFT-4744
NOAA-NMFS-2020-0031-DRAFT-4745
NOAA-NMFS-2020-0031-DRAFT-4746
NOAA-NMFS-2020-0031-DRAFT-4747
NOAA-NMFS-2020-0031-DRAFT-4748
NOAA-NMFS-2020-0031-DRAFT-4749
NOAA-NMFS-2020-0031-DRAFT-4750
NOAA-NMFS-2020-0031-DRAFT-4751
NOAA-NMFS-2020-0031-DRAFT-4752
NOAA-NMFS-2020-0031-DRAFT-4753
NOAA-NMFS-2020-0031-DRAFT-4754
NOAA-NMFS-2020-0031-DRAFT-4755
NOAA-NMFS-2020-0031-DRAFT-4756
NOAA-NMFS-2020-0031-DRAFT-4757
NOAA-NMFS-2020-0031-DRAFT-4758
NOAA-NMFS-2020-0031-DRAFT-4759
NOAA-NMFS-2020-0031-DRAFT-4760
NOAA-NMFS-2020-0031-DRAFT-4761
NOAA-NMFS-2020-0031-DRAFT-4762
NOAA-NMFS-2020-0031-DRAFT-4763
NOAA-NMFS-2020-0031-DRAFT-4764
NOAA-NMFS-2020-0031-DRAFT-4765
NOAA-NMFS-2020-0031-DRAFT-4766
NOAA-NMFS-2020-0031-DRAFT-4767
NOAA-NMFS-2020-0031-DRAFT-4768
NOAA-NMFS-2020-0031-DRAFT-4769
NOAA-NMFS-2020-0031-DRAFT-4770
NOAA-NMFS-2020-0031-DRAFT-4771
NOAA-NMFS-2020-0031-DRAFT-4772
NOAA-NMFS-2020-0031-DRAFT-4773

Comment from Peggie Kirkpatrick
Comment from Arleen Ferrell
Comment from Rebecca Nelson
Comment from Michelle Huskey
Comment from Jeffrey Cody
Comment from D Stirpe
Comment from Sara Fogan
Comment from Colleen Young
Comment from Elke Savala
Comment from Rosalind Bresnahan
Comment from Sudeshna Ghosh
Comment from Claire Brothers
Comment from Elaine Fischer
Comment from ELENA ALLARD
Comment from Tammy Shaw
Comment from Suzanne Valencia
Comment from Frances Bell
Comment from Barry Gurdin
Comment from Lisa Kenion
Comment from Melody Huffman
Comment from Carmel Ammon-Mulloli
Comment from Adrienne Whyte
Comment from Candis Whitney
Comment from Saskia Saint-Sulpice
Comment from Marie pappas
Comment from DAVID BRAVMANN
Comment from LJ Lanfranchi
Comment from Starr Christ
Comment from Christina Alger
Comment from Karin Koff
Comment from Lisa Goodlander
Comment from Diane Clark
Comment from Annick Richardson
Comment from Ivan Russell
Comment from Mary Dorfman
Comment from Margaret Gallagher
Comment from Angela Bellacosa
Comment from Kevin Hughes
Comment from Marsha Schaub
Comment from Keir Novak
Comment from Joy Edwards

02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-9997
NOAA-NMFS-2020-0031-DRAFT-9998
NOAA-NMFS-2020-0031-DRAFT-9999
NOAA-NMFS-2020-0031-DRAFT-10000
NOAA-NMFS-2020-0031-DRAFT-10001
NOAA-NMFS-2020-0031-DRAFT-10002
NOAA-NMFS-2020-0031-DRAFT-10003
NOAA-NMFS-2020-0031-DRAFT-10004
NOAA-NMFS-2020-0031-DRAFT-10005
NOAA-NMFS-2020-0031-DRAFT-10006
NOAA-NMFS-2020-0031-DRAFT-10007
NOAA-NMFS-2020-0031-DRAFT-10008
NOAA-NMFS-2020-0031-DRAFT-10009
NOAA-NMFS-2020-0031-DRAFT-10010
NOAA-NMFS-2020-0031-DRAFT-10011
NOAA-NMFS-2020-0031-DRAFT-10012
NOAA-NMFS-2020-0031-DRAFT-10013
NOAA-NMFS-2020-0031-DRAFT-10014
NOAA-NMFS-2020-0031-DRAFT-10015
NOAA-NMFS-2020-0031-DRAFT-10016
NOAA-NMFS-2020-0031-DRAFT-10017
NOAA-NMFS-2020-0031-DRAFT-10018
NOAA-NMFS-2020-0031-DRAFT-10019
NOAA-NMFS-2020-0031-DRAFT-10020
NOAA-NMFS-2020-0031-DRAFT-10021
NOAA-NMFS-2020-0031-DRAFT-10022
NOAA-NMFS-2020-0031-DRAFT-10023
NOAA-NMFS-2020-0031-DRAFT-10024
NOAA-NMFS-2020-0031-DRAFT-10025
NOAA-NMFS-2020-0031-DRAFT-10026
NOAA-NMFS-2020-0031-DRAFT-10027
NOAA-NMFS-2020-0031-DRAFT-10028
NOAA-NMFS-2020-0031-DRAFT-10029
NOAA-NMFS-2020-0031-DRAFT-10030
NOAA-NMFS-2020-0031-DRAFT-10031
NOAA-NMFS-2020-0031-DRAFT-10032
NOAA-NMFS-2020-0031-DRAFT-10033
NOAA-NMFS-2020-0031-DRAFT-10034
NOAA-NMFS-2020-0031-DRAFT-10035
NOAA-NMFS-2020-0031-DRAFT-10036
NOAA-NMFS-2020-0031-DRAFT-10037

Comment from Herschel Flowers
Comment from Donna Ingenito
Comment from Colleen McKenna
Comment from Lisa Udel
Comment from sharon mora
Comment from Michael Sarabia
Comment from M Hodgson
Comment from Carolyn Haupt
Comment from Kathleen Moraski
Comment from William Roberson
Comment from Edna Gruvman
Comment from Pat Lang
Comment from Lisa Taylor
Comment from Antonio Gonzalez
Comment from Robert Strelke
Comment from Al Dickinson
Comment from David Clapper
Comment from Madison Hoover
Comment from Todd Clark
Comment from Gail Roberts
Comment from Keith Comess
Comment from John Cairns
Comment from Michelle Macy
Comment from Mary Ramirez
Comment from Clifford Provost
Comment from S Arroyo
Comment from Edward Scott
Comment from Mark Caso
Comment from James Viney
Comment from john Naylor
Comment from Geraldine Maslanka
Comment from Glenda Lilling
Comment from Tammy Nogles
Comment from K Krupinski
Comment from David Crawford
Comment from Lisa Taylor
Comment from Steve Graff
Comment from Steven Cook
Comment from Victoria Sanden
Comment from Karen Stansbury
Comment from Tricia Kob

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01/17/2021
01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4774
NOAA-NMFS-2020-0031-DRAFT-4775
NOAA-NMFS-2020-0031-DRAFT-4776
NOAA-NMFS-2020-0031-DRAFT-4777
NOAA-NMFS-2020-0031-DRAFT-4778
NOAA-NMFS-2020-0031-DRAFT-4779
NOAA-NMFS-2020-0031-DRAFT-4780
NOAA-NMFS-2020-0031-DRAFT-4781
NOAA-NMFS-2020-0031-DRAFT-4782
NOAA-NMFS-2020-0031-DRAFT-4783
NOAA-NMFS-2020-0031-DRAFT-4784
NOAA-NMFS-2020-0031-DRAFT-4785
NOAA-NMFS-2020-0031-DRAFT-4786
NOAA-NMFS-2020-0031-DRAFT-4787
NOAA-NMFS-2020-0031-DRAFT-4788
NOAA-NMFS-2020-0031-DRAFT-4789
NOAA-NMFS-2020-0031-DRAFT-4790
NOAA-NMFS-2020-0031-DRAFT-4791
NOAA-NMFS-2020-0031-DRAFT-4792
NOAA-NMFS-2020-0031-DRAFT-4793
NOAA-NMFS-2020-0031-DRAFT-4794
NOAA-NMFS-2020-0031-DRAFT-4795
NOAA-NMFS-2020-0031-DRAFT-4796
NOAA-NMFS-2020-0031-DRAFT-4797
NOAA-NMFS-2020-0031-DRAFT-4798
NOAA-NMFS-2020-0031-DRAFT-4799
NOAA-NMFS-2020-0031-DRAFT-4800
NOAA-NMFS-2020-0031-DRAFT-4801
NOAA-NMFS-2020-0031-DRAFT-4802
NOAA-NMFS-2020-0031-DRAFT-4803
NOAA-NMFS-2020-0031-DRAFT-4804
NOAA-NMFS-2020-0031-DRAFT-4805
NOAA-NMFS-2020-0031-DRAFT-4806
NOAA-NMFS-2020-0031-DRAFT-4807
NOAA-NMFS-2020-0031-DRAFT-4808
NOAA-NMFS-2020-0031-DRAFT-4809
NOAA-NMFS-2020-0031-DRAFT-4810
NOAA-NMFS-2020-0031-DRAFT-4811
NOAA-NMFS-2020-0031-DRAFT-4812
NOAA-NMFS-2020-0031-DRAFT-4813
NOAA-NMFS-2020-0031-DRAFT-4814

Comment from Caroline Duley
Comment from Zoe Sollenberger
Comment from Jennifer Buchanan
Comment from Wallace Farrell
Comment from Cheryl Krucek
Comment from Joseph Webster
Comment from Alyssa Neri
Comment from Martha Clutter
Comment from Sue Schuetz
Comment from Claire dudan
Comment from Joyce Moscowitz
Comment from Marissa Ferraro
Comment from Jane Winn
Comment from Mark Pezzati
Comment from Keith Taylor
Comment from Cindy Risvold
Comment from Daniela Pardo
Comment from Grace Payne
Comment from Jennifer Griffith
Comment from Marilyn Platt
Comment from Margot Lowe
Comment from Nancy Goodwin
Comment from Christie Davis
Comment from rio valencia
Comment from Becca Schwartz
Comment from Susan Hill
Comment from Nelson Molina
Comment from Lindsay Pugh
Comment from Richard LaBudie
Comment from Joyce Bartner
Comment from Sandra Lee
Comment from Jennifer Barbara
Comment from Caroline Miller
Comment from Carol Hults
Comment from Stephani Smith
Comment from Carol DeCrescentis
Comment from Nanci Cox
Comment from Robert Smith
Comment from N. Schneider
Comment from Marie Petrasy
Comment from Arthur Altree

02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10038
NOAA-NMFS-2020-0031-DRAFT-10039
NOAA-NMFS-2020-0031-DRAFT-10040
NOAA-NMFS-2020-0031-DRAFT-10041
NOAA-NMFS-2020-0031-DRAFT-10042
NOAA-NMFS-2020-0031-DRAFT-10043
NOAA-NMFS-2020-0031-DRAFT-10044
NOAA-NMFS-2020-0031-DRAFT-10045
NOAA-NMFS-2020-0031-DRAFT-10046
NOAA-NMFS-2020-0031-DRAFT-10047
NOAA-NMFS-2020-0031-DRAFT-10049
NOAA-NMFS-2020-0031-DRAFT-10050
NOAA-NMFS-2020-0031-DRAFT-10051
NOAA-NMFS-2020-0031-DRAFT-10052
NOAA-NMFS-2020-0031-DRAFT-10053
NOAA-NMFS-2020-0031-DRAFT-10054
NOAA-NMFS-2020-0031-DRAFT-10055
NOAA-NMFS-2020-0031-DRAFT-10056
NOAA-NMFS-2020-0031-DRAFT-10057
NOAA-NMFS-2020-0031-DRAFT-10058
NOAA-NMFS-2020-0031-DRAFT-10059
NOAA-NMFS-2020-0031-DRAFT-10060
NOAA-NMFS-2020-0031-DRAFT-10061
NOAA-NMFS-2020-0031-DRAFT-10062
NOAA-NMFS-2020-0031-DRAFT-10063
NOAA-NMFS-2020-0031-DRAFT-10064
NOAA-NMFS-2020-0031-DRAFT-10065
NOAA-NMFS-2020-0031-DRAFT-10066
NOAA-NMFS-2020-0031-DRAFT-10067
NOAA-NMFS-2020-0031-DRAFT-10068
NOAA-NMFS-2020-0031-DRAFT-10069
NOAA-NMFS-2020-0031-DRAFT-10070
NOAA-NMFS-2020-0031-DRAFT-10071
NOAA-NMFS-2020-0031-DRAFT-10072
NOAA-NMFS-2020-0031-DRAFT-10073
NOAA-NMFS-2020-0031-DRAFT-10074
NOAA-NMFS-2020-0031-DRAFT-10075
NOAA-NMFS-2020-0031-DRAFT-10076
NOAA-NMFS-2020-0031-DRAFT-10077
NOAA-NMFS-2020-0031-DRAFT-10078
NOAA-NMFS-2020-0031-DRAFT-10079

Comment from Mary jones
Comment from Charles Fitze
Comment from Rebecca Martin
Comment from Kellie Miller
Comment from Elaine Larson
Comment from Daniel D.
Comment from Brenda Haig
Comment from Dean Borgeson
Comment from JC Corcoran
Comment from Wendy Ysasi
Comment from Gary Overby
Comment from Jeffery Biss
Comment from Ed Loosli
Comment from Beverly Harris
Comment from Teresa Yrastorza
Comment from Alexandra Grossi
Comment from Katherine Russell
Comment from laura malka
Comment from Christine Taylor
Comment from Trish Tuley
Comment from P McKenna
Comment from mari serrano
Comment from Lisa G
Comment from Allen Gibas
Comment from Greg Campbell
Comment from Edith Alston
Comment from Cori Ellison
Comment from Chad Evans
Comment from STEPHANIE LONG
Comment from John Meserve
Comment from John Provencher
Comment from Ruth Hodum
Comment from Deborah Crump
Comment from Christine Viramontes
Comment from Gail Sullivan
Comment from John Michalik
Comment from Aleasa Crary
Comment from David Lowe
Comment from Katherine Kowalczyk
Comment from Kathlene Henry-Gorman
Comment from Pamela Bolton

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01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4815
NOAA-NMFS-2020-0031-DRAFT-4816
NOAA-NMFS-2020-0031-DRAFT-4817
NOAA-NMFS-2020-0031-DRAFT-4818
NOAA-NMFS-2020-0031-DRAFT-4819
NOAA-NMFS-2020-0031-DRAFT-4820
NOAA-NMFS-2020-0031-DRAFT-4821
NOAA-NMFS-2020-0031-DRAFT-4822
NOAA-NMFS-2020-0031-DRAFT-4823
NOAA-NMFS-2020-0031-DRAFT-4824
NOAA-NMFS-2020-0031-DRAFT-4825
NOAA-NMFS-2020-0031-DRAFT-4826
NOAA-NMFS-2020-0031-DRAFT-4827
NOAA-NMFS-2020-0031-DRAFT-4828
NOAA-NMFS-2020-0031-DRAFT-4829
NOAA-NMFS-2020-0031-DRAFT-4830
NOAA-NMFS-2020-0031-DRAFT-4831
NOAA-NMFS-2020-0031-DRAFT-4832
NOAA-NMFS-2020-0031-DRAFT-4833
NOAA-NMFS-2020-0031-DRAFT-4834
NOAA-NMFS-2020-0031-DRAFT-4835
NOAA-NMFS-2020-0031-DRAFT-4836
NOAA-NMFS-2020-0031-DRAFT-4837
NOAA-NMFS-2020-0031-DRAFT-4838
NOAA-NMFS-2020-0031-DRAFT-4839
NOAA-NMFS-2020-0031-DRAFT-4840
NOAA-NMFS-2020-0031-DRAFT-4841
NOAA-NMFS-2020-0031-DRAFT-4842
NOAA-NMFS-2020-0031-DRAFT-4843
NOAA-NMFS-2020-0031-DRAFT-4844
NOAA-NMFS-2020-0031-DRAFT-4845
NOAA-NMFS-2020-0031-DRAFT-4846
NOAA-NMFS-2020-0031-DRAFT-4847
NOAA-NMFS-2020-0031-DRAFT-4848
NOAA-NMFS-2020-0031-DRAFT-4849
NOAA-NMFS-2020-0031-DRAFT-4850
NOAA-NMFS-2020-0031-DRAFT-4851
NOAA-NMFS-2020-0031-DRAFT-4852
NOAA-NMFS-2020-0031-DRAFT-4853
NOAA-NMFS-2020-0031-DRAFT-4854
NOAA-NMFS-2020-0031-DRAFT-4855

Comment from Barbara Huggins
Comment from MARIETTA MONTAINE
Comment from Donna Barrett
Comment from Nadine Wallace
Comment from Kim Smith
Comment from Joseph Tolerico
Comment from Len Fennessy
Comment from robert cobb
Comment from Lorrie Stillings
Comment from Karen Lund
Comment from Steve Finucane
Comment from Don Parsons
Comment from Debra Haynes
Comment from Jana Ruditis
Comment from Heloisa Henriques
Comment from Claudio Mattos
Comment from Heloisa Mattos
Comment from Debbie Thorn
Comment from Elizabeth Sundquist
Comment from Claudio Simoes
Comment from Joanmarie Angelo
Comment from Wendy Lukowitz
Comment from Nina Grant
Comment from Susan Knutsen
Comment from Sandra Kuschel
Comment from William Gonzalez
Comment from Mary Swilling
Comment from Karen Varney
Comment from Jourdan Reis
Comment from Jude Green
Comment from Nina Garfinkel
Comment from Janice Biederman
Comment from James Morrison
Comment from Charles Emminger
Comment from Kenneth Clucas
Comment from Linda Skisak
Comment from Heather Ruckman
Comment from Susan Lewis
Comment from Phyllis Chavez
Comment from Caroline Finley
Comment from Gordon Seyfarth

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10080
NOAA-NMFS-2020-0031-DRAFT-10081
NOAA-NMFS-2020-0031-DRAFT-10082
NOAA-NMFS-2020-0031-DRAFT-10083
NOAA-NMFS-2020-0031-DRAFT-10084
NOAA-NMFS-2020-0031-DRAFT-10085
NOAA-NMFS-2020-0031-DRAFT-10086
NOAA-NMFS-2020-0031-DRAFT-10087
NOAA-NMFS-2020-0031-DRAFT-10088
NOAA-NMFS-2020-0031-DRAFT-10089
NOAA-NMFS-2020-0031-DRAFT-10090
NOAA-NMFS-2020-0031-DRAFT-10091
NOAA-NMFS-2020-0031-DRAFT-10092
NOAA-NMFS-2020-0031-DRAFT-10093
NOAA-NMFS-2020-0031-DRAFT-10094
NOAA-NMFS-2020-0031-DRAFT-10095
NOAA-NMFS-2020-0031-DRAFT-10096
NOAA-NMFS-2020-0031-DRAFT-10097
NOAA-NMFS-2020-0031-DRAFT-10098
NOAA-NMFS-2020-0031-DRAFT-10099
NOAA-NMFS-2020-0031-DRAFT-10100
NOAA-NMFS-2020-0031-DRAFT-10101
NOAA-NMFS-2020-0031-DRAFT-10102
NOAA-NMFS-2020-0031-DRAFT-10103
NOAA-NMFS-2020-0031-DRAFT-10104
NOAA-NMFS-2020-0031-DRAFT-10105
NOAA-NMFS-2020-0031-DRAFT-10106
NOAA-NMFS-2020-0031-DRAFT-10107
NOAA-NMFS-2020-0031-DRAFT-10109
NOAA-NMFS-2020-0031-DRAFT-10110
NOAA-NMFS-2020-0031-DRAFT-10111
NOAA-NMFS-2020-0031-DRAFT-10112
NOAA-NMFS-2020-0031-DRAFT-10113
NOAA-NMFS-2020-0031-DRAFT-10114
NOAA-NMFS-2020-0031-DRAFT-10115
NOAA-NMFS-2020-0031-DRAFT-10116
NOAA-NMFS-2020-0031-DRAFT-10117
NOAA-NMFS-2020-0031-DRAFT-10118
NOAA-NMFS-2020-0031-DRAFT-10119
NOAA-NMFS-2020-0031-DRAFT-10120
NOAA-NMFS-2020-0031-DRAFT-10121

Comment from claudia Bourks
Comment from Susan Hall
Comment from Rebecca Frank
Comment from Anne Winicki
Comment from Joe McQueeney
Comment from Mark Reback
Comment from Bechi Currier
Comment from Nicholas Williams
Comment from Rebecca Sundberg
Comment from John Wiles
Comment from Peter Burval
Comment from L. Adams
Comment from Becky Daiss
Comment from Albert Gamble
Comment from Michele Vaillancourt
Comment from Michelle Sewald
Comment from Sharyn Magee
Comment from John Flater
Comment from David Allara
Comment from B Van Camp
Comment from Matthew Weaver
Comment from Susan Lackey
Comment from Larry Weingart
Comment from Mary Schmidt
Comment from Debbie Schwer
Comment from Tim Barrington
Comment from Ronnie Bolling
Comment from Judith Glixon
Comment from Barbara Abraham
Comment from Ra Szumal
Comment from Gonzalo Costa
Comment from Donald Barker
Comment from Wendy Bowman
Comment from Harold Brundage
Comment from Eloise Swenson
Comment from Robert DeFerrante
Comment from ROBERT LANDOLT
Comment from Joan Wilce
Comment from Eric Streett
Comment from Mark Davis
Comment from Sheila Martin

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01/17/2021
01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4856
NOAA-NMFS-2020-0031-DRAFT-4857
NOAA-NMFS-2020-0031-DRAFT-4858
NOAA-NMFS-2020-0031-DRAFT-4859
NOAA-NMFS-2020-0031-DRAFT-4860
NOAA-NMFS-2020-0031-DRAFT-4861
NOAA-NMFS-2020-0031-DRAFT-4862
NOAA-NMFS-2020-0031-DRAFT-4863
NOAA-NMFS-2020-0031-DRAFT-4864
NOAA-NMFS-2020-0031-DRAFT-4865
NOAA-NMFS-2020-0031-DRAFT-4866
NOAA-NMFS-2020-0031-DRAFT-4867
NOAA-NMFS-2020-0031-DRAFT-4868
NOAA-NMFS-2020-0031-DRAFT-4869
NOAA-NMFS-2020-0031-DRAFT-4870
NOAA-NMFS-2020-0031-DRAFT-4871
NOAA-NMFS-2020-0031-DRAFT-4872
NOAA-NMFS-2020-0031-DRAFT-4873
NOAA-NMFS-2020-0031-DRAFT-4874
NOAA-NMFS-2020-0031-DRAFT-4875
NOAA-NMFS-2020-0031-DRAFT-4876
NOAA-NMFS-2020-0031-DRAFT-4877
NOAA-NMFS-2020-0031-DRAFT-4878
NOAA-NMFS-2020-0031-DRAFT-4879
NOAA-NMFS-2020-0031-DRAFT-4880
NOAA-NMFS-2020-0031-DRAFT-4881
NOAA-NMFS-2020-0031-DRAFT-4882
NOAA-NMFS-2020-0031-DRAFT-4883
NOAA-NMFS-2020-0031-DRAFT-4884
NOAA-NMFS-2020-0031-DRAFT-4885
NOAA-NMFS-2020-0031-DRAFT-4886
NOAA-NMFS-2020-0031-DRAFT-4887
NOAA-NMFS-2020-0031-DRAFT-4888
NOAA-NMFS-2020-0031-DRAFT-4889
NOAA-NMFS-2020-0031-DRAFT-4890
NOAA-NMFS-2020-0031-DRAFT-4891
NOAA-NMFS-2020-0031-DRAFT-4892
NOAA-NMFS-2020-0031-DRAFT-4893
NOAA-NMFS-2020-0031-DRAFT-4894
NOAA-NMFS-2020-0031-DRAFT-4895
NOAA-NMFS-2020-0031-DRAFT-4896

Comment from Steven Christian
Comment from Kerry Hodges
Comment from Dale Micherone
Comment from Teri Forester
Comment from Marcelo Vazquez
Comment from Malvina Landau-Blake
Comment from Albert Ulrich
Comment from Katharine Molnar
Comment from Taylor Reed
Comment from Rosie Khan
Comment from James Donahue
Comment from warren tadlock
Comment from Ming Ong
Comment from Sara Katz
Comment from R. Peterson
Comment from raymond Wager
Comment from Dave Cross
Comment from Linda Nelson
Comment from Richard McCrary
Comment from Phyllis Arist
Comment from Cathy Sleva
Comment from William Dykoski
Comment from Joan Wickham
Comment from Barbara Winner
Comment from Sally Newman
Comment from Karen Curry
Comment from Elisabeth Carroll
Comment from Daniel Aquino
Comment from Michelle Black
Comment from Reynold Tharp
Comment from Carrie West
Comment from Bill Macartney
Comment from Fermin Morales
Comment from ingeborg glier
Comment from Mary Romanek
Comment from Nicole Hilkovitch
Comment from Scott Prince
Comment from Karen McGuinness
Comment from Ellen Miller
Comment from Nataliia Dusanovska
Comment from John Kirk

02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10122
NOAA-NMFS-2020-0031-DRAFT-10123
NOAA-NMFS-2020-0031-DRAFT-10124
NOAA-NMFS-2020-0031-DRAFT-10125
NOAA-NMFS-2020-0031-DRAFT-10126
NOAA-NMFS-2020-0031-DRAFT-10127
NOAA-NMFS-2020-0031-DRAFT-10128
NOAA-NMFS-2020-0031-DRAFT-10129
NOAA-NMFS-2020-0031-DRAFT-10130
NOAA-NMFS-2020-0031-DRAFT-10131
NOAA-NMFS-2020-0031-DRAFT-10132
NOAA-NMFS-2020-0031-DRAFT-10133
NOAA-NMFS-2020-0031-DRAFT-10134
NOAA-NMFS-2020-0031-DRAFT-10135
NOAA-NMFS-2020-0031-DRAFT-10136
NOAA-NMFS-2020-0031-DRAFT-10137
NOAA-NMFS-2020-0031-DRAFT-10138
NOAA-NMFS-2020-0031-DRAFT-10139
NOAA-NMFS-2020-0031-DRAFT-10140
NOAA-NMFS-2020-0031-DRAFT-10141
NOAA-NMFS-2020-0031-DRAFT-10142
NOAA-NMFS-2020-0031-DRAFT-10143
NOAA-NMFS-2020-0031-DRAFT-10144
NOAA-NMFS-2020-0031-DRAFT-10145
NOAA-NMFS-2020-0031-DRAFT-10146
NOAA-NMFS-2020-0031-DRAFT-10147
NOAA-NMFS-2020-0031-DRAFT-10148
NOAA-NMFS-2020-0031-DRAFT-10149
NOAA-NMFS-2020-0031-DRAFT-10150
NOAA-NMFS-2020-0031-DRAFT-10151
NOAA-NMFS-2020-0031-DRAFT-10152
NOAA-NMFS-2020-0031-DRAFT-10153
NOAA-NMFS-2020-0031-DRAFT-10154
NOAA-NMFS-2020-0031-DRAFT-10155
NOAA-NMFS-2020-0031-DRAFT-10156
NOAA-NMFS-2020-0031-DRAFT-10157
NOAA-NMFS-2020-0031-DRAFT-10158
NOAA-NMFS-2020-0031-DRAFT-10159
NOAA-NMFS-2020-0031-DRAFT-10160
NOAA-NMFS-2020-0031-DRAFT-10161
NOAA-NMFS-2020-0031-DRAFT-10162

Comment from Robert Missimer
Comment from Palmeta Baier
Comment from Judith Ackerman
Comment from Kevin Kimmel
Comment from Benjamin Allen
Comment from Darlene Wolf
Comment from Meredith Needham
Comment from Loren Lugg
Comment from Ramona Mayer
Comment from John Colyer
Comment from Kelly McTigue
Comment from Tina Gorman
Comment from Victoria Wallington
Comment from Victoria Heil
Comment from Glory Arroyos
Comment from Lory Keller
Comment from Vincent Da Forno
Comment from Leanne Friedman
Comment from Gerald Kolbe
Comment from David Kuether
Comment from Rodney Bowen
Comment from Jessica Anderson
Comment from Alan Bromborsky
Comment from Fran Smyth
Comment from Kelly Choi
Comment from Allie Tennant
Comment from Amy Hopkins
Comment from Simone Sello
Comment from Eric Duggan
Comment from Mo Kafka
Comment from Richard Gorringe
Comment from Debora Hojda
Comment from Janet Phillips
Comment from Zinta Konrad
Comment from Dan Silver
Comment from Peter Mark
Comment from Perry Matlock
Comment from Sam Butler
Comment from Nadine Parish
Comment from Rachel Soares
Comment from Robert Robinson

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01/17/2021
01/17/2021
01/17/2021

NOAA-NMFS-2020-0031-DRAFT-4897
NOAA-NMFS-2020-0031-DRAFT-4898
NOAA-NMFS-2020-0031-DRAFT-4899
NOAA-NMFS-2020-0031-DRAFT-4900
NOAA-NMFS-2020-0031-DRAFT-4901
NOAA-NMFS-2020-0031-DRAFT-4902
NOAA-NMFS-2020-0031-DRAFT-4903
NOAA-NMFS-2020-0031-DRAFT-4904
NOAA-NMFS-2020-0031-DRAFT-4905
NOAA-NMFS-2020-0031-DRAFT-4906
NOAA-NMFS-2020-0031-DRAFT-4907
NOAA-NMFS-2020-0031-DRAFT-4908
NOAA-NMFS-2020-0031-DRAFT-4909
NOAA-NMFS-2020-0031-DRAFT-4910
NOAA-NMFS-2020-0031-DRAFT-4911
NOAA-NMFS-2020-0031-DRAFT-4912
NOAA-NMFS-2020-0031-DRAFT-4913
NOAA-NMFS-2020-0031-DRAFT-4914
NOAA-NMFS-2020-0031-DRAFT-4915
NOAA-NMFS-2020-0031-DRAFT-4916
NOAA-NMFS-2020-0031-DRAFT-4917
NOAA-NMFS-2020-0031-DRAFT-4918
NOAA-NMFS-2020-0031-DRAFT-4919
NOAA-NMFS-2020-0031-DRAFT-4920
NOAA-NMFS-2020-0031-DRAFT-4921
NOAA-NMFS-2020-0031-DRAFT-4922
NOAA-NMFS-2020-0031-DRAFT-4923
NOAA-NMFS-2020-0031-DRAFT-4924
NOAA-NMFS-2020-0031-DRAFT-4925
NOAA-NMFS-2020-0031-DRAFT-4926
NOAA-NMFS-2020-0031-DRAFT-4927
NOAA-NMFS-2020-0031-DRAFT-4928
NOAA-NMFS-2020-0031-DRAFT-4929
NOAA-NMFS-2020-0031-DRAFT-4930
NOAA-NMFS-2020-0031-DRAFT-4931
NOAA-NMFS-2020-0031-DRAFT-4932
NOAA-NMFS-2020-0031-DRAFT-4933
NOAA-NMFS-2020-0031-DRAFT-4934
NOAA-NMFS-2020-0031-DRAFT-4935
NOAA-NMFS-2020-0031-DRAFT-4936
NOAA-NMFS-2020-0031-DRAFT-4937

Comment from Robert Glover
Comment from Ming Ong
Comment from Eugene Mariani
Comment from Jan Gates
Comment from Mary DeLavan
Comment from Lori Ricciardi
Comment from Sarah Carr
Comment from Joseph Guilin
Comment from John Kocer
Comment from Jenny North
Comment from Kelley Coleman-Slack
Comment from Kelley Coleman-Slack
Comment from Kim McReavy
Comment from Logan Paul
Comment from CASSIDY BOULAN
Comment from Percy Hicks-Severn
Comment from Heather Davis
Comment from Susan Wright
Comment from Karen Rehm
Comment from Linda Howie
Comment from Laura Colston
Comment from Neil Bleifeld
Comment from John Dunn
Comment from Cori Bishop
Comment from ste ho
Comment from Jan Barshis
Comment from Yvonne Albrecht
Comment from Barbara Greenwood
Comment from Diane Schwarz
Comment from Rhonda Danner
Comment from Adam Pastula
Comment from Ellen Ayalin
Comment from Ana Andrade
Comment from Joy Napier
Comment from Hilary Danehy
Comment from Ellen Walsh
Comment from Jessica Taliaferro
Comment from Laurie Fisher
Comment from Jessica Heiden
Comment from Susan Dameron
Comment from Kate Goetz

02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10163
NOAA-NMFS-2020-0031-DRAFT-10164
NOAA-NMFS-2020-0031-DRAFT-10165
NOAA-NMFS-2020-0031-DRAFT-10166
NOAA-NMFS-2020-0031-DRAFT-10167
NOAA-NMFS-2020-0031-DRAFT-10168
NOAA-NMFS-2020-0031-DRAFT-10169
NOAA-NMFS-2020-0031-DRAFT-10170
NOAA-NMFS-2020-0031-DRAFT-10171
NOAA-NMFS-2020-0031-DRAFT-10172
NOAA-NMFS-2020-0031-DRAFT-10173
NOAA-NMFS-2020-0031-DRAFT-10174
NOAA-NMFS-2020-0031-DRAFT-10175
NOAA-NMFS-2020-0031-DRAFT-10176
NOAA-NMFS-2020-0031-DRAFT-10177
NOAA-NMFS-2020-0031-DRAFT-10178
NOAA-NMFS-2020-0031-DRAFT-10179
NOAA-NMFS-2020-0031-DRAFT-10180
NOAA-NMFS-2020-0031-DRAFT-10181
NOAA-NMFS-2020-0031-DRAFT-10182
NOAA-NMFS-2020-0031-DRAFT-10183
NOAA-NMFS-2020-0031-DRAFT-10184
NOAA-NMFS-2020-0031-DRAFT-10185
NOAA-NMFS-2020-0031-DRAFT-10186
NOAA-NMFS-2020-0031-DRAFT-10187
NOAA-NMFS-2020-0031-DRAFT-10188
NOAA-NMFS-2020-0031-DRAFT-10189
NOAA-NMFS-2020-0031-DRAFT-10190
NOAA-NMFS-2020-0031-DRAFT-10191
NOAA-NMFS-2020-0031-DRAFT-10192
NOAA-NMFS-2020-0031-DRAFT-10193
NOAA-NMFS-2020-0031-DRAFT-10194
NOAA-NMFS-2020-0031-DRAFT-10195
NOAA-NMFS-2020-0031-DRAFT-10196
NOAA-NMFS-2020-0031-DRAFT-10197
NOAA-NMFS-2020-0031-DRAFT-10198
NOAA-NMFS-2020-0031-DRAFT-10199
NOAA-NMFS-2020-0031-DRAFT-10200
NOAA-NMFS-2020-0031-DRAFT-10201
NOAA-NMFS-2020-0031-DRAFT-10202
NOAA-NMFS-2020-0031-DRAFT-10203

Comment from allie palmer
Comment from Abigail Fanestil
Comment from Delores Stachura
Comment from Janice Zelazo
Comment from Jo Chapman
Comment from Ellen Kinney
Comment from Todd Fletcher
Comment from Carlie Doebereiner
Comment from michael morris
Comment from THEODORE Johns
Comment from Mary Stevens
Comment from Georgia Locker
Comment from Kate Solisti
Comment from Caroline Svilla
Comment from Carlene Estacion
Comment from REGAN EBERT
Comment from William Castle
Comment from Jeff Johnston
Comment from Kathy Jost-Keating
Comment from Elvira Johns
Comment from Katherine Bohn
Comment from David Miller
Comment from Jonathan Piper
Comment from Stephen Rosen
Comment from Gina Whitlock
Comment from Michael Herbert
Comment from Antonio Dettori
Comment from Jeanne Stulb
Comment from jolanta wright
Comment from Susan Sellers
Comment from Joan Murtagh
Comment from Sherrie Moore
Comment from Barbara Collins
Comment from Bill Christie
Comment from Judith Murphy
Comment from Shirley Sutter
Comment from Barbara Sullivan
Comment from Dave Baine
Comment from Martin Slater
Comment from Becky Muradian
Comment from Michael Smith

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01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021

NOAA-NMFS-2020-0031-DRAFT-4938
NOAA-NMFS-2020-0031-DRAFT-4939
NOAA-NMFS-2020-0031-DRAFT-4940
NOAA-NMFS-2020-0031-DRAFT-4941
NOAA-NMFS-2020-0031-DRAFT-4942
NOAA-NMFS-2020-0031-DRAFT-4943
NOAA-NMFS-2020-0031-DRAFT-4944
NOAA-NMFS-2020-0031-DRAFT-4945
NOAA-NMFS-2020-0031-DRAFT-4946
NOAA-NMFS-2020-0031-DRAFT-4947
NOAA-NMFS-2020-0031-DRAFT-4948
NOAA-NMFS-2020-0031-DRAFT-4949
NOAA-NMFS-2020-0031-DRAFT-4950
NOAA-NMFS-2020-0031-DRAFT-4951
NOAA-NMFS-2020-0031-DRAFT-4952
NOAA-NMFS-2020-0031-DRAFT-4953
NOAA-NMFS-2020-0031-DRAFT-4954
NOAA-NMFS-2020-0031-DRAFT-4955
NOAA-NMFS-2020-0031-DRAFT-4956
NOAA-NMFS-2020-0031-DRAFT-4957
NOAA-NMFS-2020-0031-DRAFT-4958
NOAA-NMFS-2020-0031-DRAFT-4959
NOAA-NMFS-2020-0031-DRAFT-4960
NOAA-NMFS-2020-0031-DRAFT-4961
NOAA-NMFS-2020-0031-DRAFT-4962
NOAA-NMFS-2020-0031-DRAFT-4963
NOAA-NMFS-2020-0031-DRAFT-4964
NOAA-NMFS-2020-0031-DRAFT-4965
NOAA-NMFS-2020-0031-DRAFT-4966
NOAA-NMFS-2020-0031-DRAFT-4967
NOAA-NMFS-2020-0031-DRAFT-4968
NOAA-NMFS-2020-0031-DRAFT-4969
NOAA-NMFS-2020-0031-DRAFT-4970
NOAA-NMFS-2020-0031-DRAFT-4971
NOAA-NMFS-2020-0031-DRAFT-4973
NOAA-NMFS-2020-0031-DRAFT-4974
NOAA-NMFS-2020-0031-DRAFT-4975
NOAA-NMFS-2020-0031-DRAFT-4976
NOAA-NMFS-2020-0031-DRAFT-4977
NOAA-NMFS-2020-0031-DRAFT-4979
NOAA-NMFS-2020-0031-DRAFT-4980

Comment from Katherine Wiese
Comment from CATHLEEN BREW
Comment from John Moszyk
Comment from Robert Brown
Comment from Joann Mizutani
Comment from Glenda Henning
Comment from Pierre Schlemel
Comment from Danielle Raymond
Comment from Sharon Parshall
Comment from Randall Nerwick
Comment from Theresa Ochoa
Comment from Danielle deConge
Comment from Jeanette Desmond
Comment from Kimberly Rigano
Comment from Stephanie Nunez
Comment from Lisa Allis
Comment from Katie Yu
Comment from Brad Nelson
Comment from Leslie Smith
Comment from Carole Harper
Comment from Irene Sriboonwong
Comment from V Evan
Comment from Steve Hylton
Comment from Susan Harrison
Comment from Nick Barcott
Comment from Rachael Stalker
Comment from Alicia Rues
Comment from Judy Hart
Comment from Torun Almer
Comment from Vicky Gannon
Comment from Melissa Gaskins
Comment from Nigel Lim
Comment from William Hewes
Comment from Joanne Watchie
Comment from Michelle Woods
Comment from Sara Graziosa
Comment from Patricia Pruitt
Comment from Sue Correia
Comment from Berylean Ludwig
Comment from Lantow Susan
Comment from Deborah Coviello

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10204
NOAA-NMFS-2020-0031-DRAFT-10205
NOAA-NMFS-2020-0031-DRAFT-10206
NOAA-NMFS-2020-0031-DRAFT-10207
NOAA-NMFS-2020-0031-DRAFT-10208
NOAA-NMFS-2020-0031-DRAFT-10209
NOAA-NMFS-2020-0031-DRAFT-10210
NOAA-NMFS-2020-0031-DRAFT-10211
NOAA-NMFS-2020-0031-DRAFT-10212
NOAA-NMFS-2020-0031-DRAFT-10213
NOAA-NMFS-2020-0031-DRAFT-10214
NOAA-NMFS-2020-0031-DRAFT-10215
NOAA-NMFS-2020-0031-DRAFT-10216
NOAA-NMFS-2020-0031-DRAFT-10217
NOAA-NMFS-2020-0031-DRAFT-10218
NOAA-NMFS-2020-0031-DRAFT-10219
NOAA-NMFS-2020-0031-DRAFT-10220
NOAA-NMFS-2020-0031-DRAFT-10221
NOAA-NMFS-2020-0031-DRAFT-10222
NOAA-NMFS-2020-0031-DRAFT-10223
NOAA-NMFS-2020-0031-DRAFT-10224
NOAA-NMFS-2020-0031-DRAFT-10225
NOAA-NMFS-2020-0031-DRAFT-10226
NOAA-NMFS-2020-0031-DRAFT-10227
NOAA-NMFS-2020-0031-DRAFT-10228
NOAA-NMFS-2020-0031-DRAFT-10229
NOAA-NMFS-2020-0031-DRAFT-10230
NOAA-NMFS-2020-0031-DRAFT-10231
NOAA-NMFS-2020-0031-DRAFT-10232
NOAA-NMFS-2020-0031-DRAFT-10233
NOAA-NMFS-2020-0031-DRAFT-10234
NOAA-NMFS-2020-0031-DRAFT-10235
NOAA-NMFS-2020-0031-DRAFT-10236
NOAA-NMFS-2020-0031-DRAFT-10237
NOAA-NMFS-2020-0031-DRAFT-10238
NOAA-NMFS-2020-0031-DRAFT-10239
NOAA-NMFS-2020-0031-DRAFT-10240
NOAA-NMFS-2020-0031-DRAFT-10241
NOAA-NMFS-2020-0031-DRAFT-10242
NOAA-NMFS-2020-0031-DRAFT-10243
NOAA-NMFS-2020-0031-DRAFT-10244

Comment from Maryann Barulich
Comment from Robert Heller
Comment from Richard Van Aken
Comment from J E
Comment from John Massman
Comment from Tracy Jones
Comment from Nadia Ronchi
Comment from David Drecktrah
Comment from Cynthia Sherman-Jones
Comment from Harvinderjit Saran
Comment from Sandra Materi
Comment from Tracey Flater
Comment from Jeff Omans
Comment from Nicole Shaffer
Comment from Karen Rivers
Comment from Vickie Wagner
Comment from Richard Stempien
Comment from Heidi Schloss
Comment from Charles Banks
Comment from Nathaniel Hammerli
Comment from Rita Reed
Comment from Dave Berkenbush
Comment from Robert Jehn
Comment from Lynn Raiser
Comment from Bruno Rescigna
Comment from Joel Leitner
Comment from Michael Stella
Comment from Leone de Sousa
Comment from Patrick Kroll
Comment from constance walker
Comment from Barbara Brockell
Comment from Eric Ross
Comment from Ed Young
Comment from Ken Hart
Comment from Race Margery
Comment from Joseph Haemmerle
Comment from Kelly Hibbert
Comment from Nancy Brun
Comment from Amy Stoller
Comment from Terri Resley
Comment from Angie Mackey

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01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021
01/18/2021

NOAA-NMFS-2020-0031-DRAFT-4981
NOAA-NMFS-2020-0031-DRAFT-4982
NOAA-NMFS-2020-0031-DRAFT-4983
NOAA-NMFS-2020-0031-DRAFT-4984
NOAA-NMFS-2020-0031-DRAFT-4985
NOAA-NMFS-2020-0031-DRAFT-4986
NOAA-NMFS-2020-0031-DRAFT-4987
NOAA-NMFS-2020-0031-DRAFT-4988
NOAA-NMFS-2020-0031-DRAFT-4989
NOAA-NMFS-2020-0031-DRAFT-4990
NOAA-NMFS-2020-0031-DRAFT-4991
NOAA-NMFS-2020-0031-DRAFT-4992
NOAA-NMFS-2020-0031-DRAFT-4993
NOAA-NMFS-2020-0031-DRAFT-4994
NOAA-NMFS-2020-0031-DRAFT-4995
NOAA-NMFS-2020-0031-DRAFT-4996
NOAA-NMFS-2020-0031-DRAFT-4997
NOAA-NMFS-2020-0031-DRAFT-4998
NOAA-NMFS-2020-0031-DRAFT-4999
NOAA-NMFS-2020-0031-DRAFT-5000
NOAA-NMFS-2020-0031-DRAFT-5001
NOAA-NMFS-2020-0031-DRAFT-5002
NOAA-NMFS-2020-0031-DRAFT-5003
NOAA-NMFS-2020-0031-DRAFT-5004
NOAA-NMFS-2020-0031-DRAFT-5005
NOAA-NMFS-2020-0031-DRAFT-5006
NOAA-NMFS-2020-0031-DRAFT-5007
NOAA-NMFS-2020-0031-DRAFT-5008
NOAA-NMFS-2020-0031-DRAFT-5009
NOAA-NMFS-2020-0031-DRAFT-5010
NOAA-NMFS-2020-0031-DRAFT-5011
NOAA-NMFS-2020-0031-DRAFT-5012
NOAA-NMFS-2020-0031-DRAFT-5013
NOAA-NMFS-2020-0031-DRAFT-5014
NOAA-NMFS-2020-0031-DRAFT-5015
NOAA-NMFS-2020-0031-DRAFT-5016
NOAA-NMFS-2020-0031-DRAFT-5017
NOAA-NMFS-2020-0031-DRAFT-5018
NOAA-NMFS-2020-0031-DRAFT-5019
NOAA-NMFS-2020-0031-DRAFT-5020
NOAA-NMFS-2020-0031-DRAFT-5021

Comment from Sharon Balzano
Comment from Michelle Trajanovska
Comment from Kristin Huntoon
Comment from Mark Persons
Comment from Shelly Wallace
Comment from Kendra Williams
Comment from Karyn Hyland
Comment from Aaron Kornbluth
Comment from Enzo Barrios
Comment from William leben
Comment from Joyce Coogan
Comment from Lisa McColman
Comment from James Jackson
Comment from Jonathan Tholl
Comment from Lisa Travis
Comment from Terrie Williams
Comment from Diana Patterson
Comment from Cheri Hill
Comment from Peggy Schultz
Comment from Jordan Weiner
Comment from Jennifer Dreher
Comment from Suzanne Carder
Comment from Tamara Reinke
Comment from Greg Skutches
Comment from Laura Rudd
Comment from Twyla Cook
Comment from Pamela Hall
Comment from Janet Bovitz-Sandefur
Comment from Amy Schumacher
Comment from Daniel Solano
Comment from William Klock
Comment from patricia walsh
Comment from Iris Sinai
Comment from Virgil Pauls
Comment from Tanya Glasser
Comment from Koll Ellis
Comment from Sharon Matticola
Comment from Susan Kutz
Comment from John Fleming
Comment from Joanne McMillan
Comment from Lisa Pace

02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10245
NOAA-NMFS-2020-0031-DRAFT-10246
NOAA-NMFS-2020-0031-DRAFT-10247
NOAA-NMFS-2020-0031-DRAFT-10248
NOAA-NMFS-2020-0031-DRAFT-10249
NOAA-NMFS-2020-0031-DRAFT-10250
NOAA-NMFS-2020-0031-DRAFT-10251
NOAA-NMFS-2020-0031-DRAFT-10252
NOAA-NMFS-2020-0031-DRAFT-10253
NOAA-NMFS-2020-0031-DRAFT-10254
NOAA-NMFS-2020-0031-DRAFT-10255
NOAA-NMFS-2020-0031-DRAFT-10256
NOAA-NMFS-2020-0031-DRAFT-10257
NOAA-NMFS-2020-0031-DRAFT-10258
NOAA-NMFS-2020-0031-DRAFT-10259
NOAA-NMFS-2020-0031-DRAFT-10260
NOAA-NMFS-2020-0031-DRAFT-10261
NOAA-NMFS-2020-0031-DRAFT-10262
NOAA-NMFS-2020-0031-DRAFT-10263
NOAA-NMFS-2020-0031-DRAFT-10265
NOAA-NMFS-2020-0031-DRAFT-10266
NOAA-NMFS-2020-0031-DRAFT-10267
NOAA-NMFS-2020-0031-DRAFT-10268
NOAA-NMFS-2020-0031-DRAFT-10269
NOAA-NMFS-2020-0031-DRAFT-10270
NOAA-NMFS-2020-0031-DRAFT-10271
NOAA-NMFS-2020-0031-DRAFT-10272
NOAA-NMFS-2020-0031-DRAFT-10273
NOAA-NMFS-2020-0031-DRAFT-10274
NOAA-NMFS-2020-0031-DRAFT-10275
NOAA-NMFS-2020-0031-DRAFT-10276
NOAA-NMFS-2020-0031-DRAFT-10277
NOAA-NMFS-2020-0031-DRAFT-10278
NOAA-NMFS-2020-0031-DRAFT-10279
NOAA-NMFS-2020-0031-DRAFT-10280
NOAA-NMFS-2020-0031-DRAFT-10281
NOAA-NMFS-2020-0031-DRAFT-10282
NOAA-NMFS-2020-0031-DRAFT-10283
NOAA-NMFS-2020-0031-DRAFT-10284
NOAA-NMFS-2020-0031-DRAFT-10285
NOAA-NMFS-2020-0031-DRAFT-10286

Comment from J P
Comment from Julie Lawell
Comment from Ron McCutcheon
Comment from Larry Needleman
Comment from Sally Tucker
Comment from Bonnie Thompson
Comment from Kevin Branstetter
Comment from Priscilla Wright
Comment from Jordan Briskin
Comment from David Cencula
Comment from Carla Albers
Comment from Beth Thomas
Comment from Kyra Legaroff
Comment from Katherine Mouzourakis
Comment from Lisa Robinson
Comment from Claudia Gray
Comment from Bob Ramlow
Comment from Gary Barton
Comment from Margaret Fish
Comment from Allen Rozelle
Comment from Merlin Wilson
Comment from Debbi Weiler
Comment from Alan Sanborn
Comment from MS Tomasello
Comment from Mary McAuliffe
Comment from Lucia Millella
Comment from Andrew Jackson
Comment from Priscilla Mezrahi
Comment from Setsuko Furuike
Comment from Lily Caron
Comment from Kimberly Derwent
Comment from Elizabeth Scott
Comment from Sally Morrow
Comment from James McBride
Comment from John Young
Comment from Mary Casey
Comment from Carole Smudin
Comment from Monica Graff
Comment from Samuel Durkin
Comment from Norman Race
Comment from Lori White

Received Date
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021

Original Document ID
NOAA-NMFS-2020-0031-DRAFT-10287
NOAA-NMFS-2020-0031-DRAFT-10288
NOAA-NMFS-2020-0031-DRAFT-10289
NOAA-NMFS-2020-0031-DRAFT-10290
NOAA-NMFS-2020-0031-DRAFT-10291
NOAA-NMFS-2020-0031-DRAFT-10292
NOAA-NMFS-2020-0031-DRAFT-10293
NOAA-NMFS-2020-0031-DRAFT-10294
NOAA-NMFS-2020-0031-DRAFT-10295
NOAA-NMFS-2020-0031-DRAFT-10296
NOAA-NMFS-2020-0031-DRAFT-10297
NOAA-NMFS-2020-0031-DRAFT-10298
NOAA-NMFS-2020-0031-DRAFT-10299
NOAA-NMFS-2020-0031-DRAFT-10300
NOAA-NMFS-2020-0031-DRAFT-10301
NOAA-NMFS-2020-0031-DRAFT-10302
NOAA-NMFS-2020-0031-DRAFT-10303
NOAA-NMFS-2020-0031-DRAFT-10304
NOAA-NMFS-2020-0031-DRAFT-10305
NOAA-NMFS-2020-0031-DRAFT-10306
NOAA-NMFS-2020-0031-DRAFT-10307
NOAA-NMFS-2020-0031-DRAFT-10308
NOAA-NMFS-2020-0031-DRAFT-10309
NOAA-NMFS-2020-0031-DRAFT-10310
NOAA-NMFS-2020-0031-DRAFT-10311
NOAA-NMFS-2020-0031-DRAFT-10312
NOAA-NMFS-2020-0031-DRAFT-10313
NOAA-NMFS-2020-0031-DRAFT-10314
NOAA-NMFS-2020-0031-DRAFT-10315
NOAA-NMFS-2020-0031-DRAFT-10316
NOAA-NMFS-2020-0031-DRAFT-10317
NOAA-NMFS-2020-0031-DRAFT-10318
NOAA-NMFS-2020-0031-DRAFT-10319
NOAA-NMFS-2020-0031-DRAFT-10320
NOAA-NMFS-2020-0031-DRAFT-10321
NOAA-NMFS-2020-0031-DRAFT-10322
NOAA-NMFS-2020-0031-DRAFT-10323
NOAA-NMFS-2020-0031-DRAFT-10324
NOAA-NMFS-2020-0031-DRAFT-10325
NOAA-NMFS-2020-0031-DRAFT-10326

Title
Comment from Shannon G
Comment from William Vernon
Comment from Patricia DeLuca
Comment from James Costello
Comment from Alexa McMahan
Comment from Virginia Caraco
Comment from Bonnie Williams
Comment from Straight Wayne
Comment from Lynne Teplin
Comment from Christine Walton
Comment from Lorrie Kazan
Comment from David Friend
Comment from Stepheny McGraw
Comment from Julia French
Comment from Robin Lorentzen
Comment from Shelley Carlisle
Comment from Jane poklemba
Comment from Gary Raymond
Comment from Julius Salinas
Comment from Marilyn Rose
Comment from gary cohen
Comment from David Walsh
Comment from Jan Emerson
Comment from Sharon Parshall
Comment from Marcia Godich
Comment from Jennifer Harrison
Comment from Sheilagh Bergeron
Comment from Anita Youabian
Comment from Tom Cordaro
Comment from Joseph McCullough
Comment from Kelli Gilbert
Comment from Julie Nolon
Comment from Diana Rowell
Comment from Joette Borzik
Comment from Jan Modjeski
Comment from Phil Kneer
Comment from Jesse Mallory
Comment from Jerry Gremling
Comment from Rhodie Jorgenson
Comment from Melanie Cohick

Received Date
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-15438
NOAA-NMFS-2020-0031-DRAFT-15439
NOAA-NMFS-2020-0031-DRAFT-15440
NOAA-NMFS-2020-0031-DRAFT-15441
NOAA-NMFS-2020-0031-DRAFT-15443
NOAA-NMFS-2020-0031-DRAFT-15444
NOAA-NMFS-2020-0031-DRAFT-15445
NOAA-NMFS-2020-0031-DRAFT-15446
NOAA-NMFS-2020-0031-DRAFT-15447
NOAA-NMFS-2020-0031-DRAFT-15448
NOAA-NMFS-2020-0031-DRAFT-15449
NOAA-NMFS-2020-0031-DRAFT-15450
NOAA-NMFS-2020-0031-DRAFT-15451
NOAA-NMFS-2020-0031-DRAFT-15453
NOAA-NMFS-2020-0031-DRAFT-15454
NOAA-NMFS-2020-0031-DRAFT-15455
NOAA-NMFS-2020-0031-DRAFT-15456
NOAA-NMFS-2020-0031-DRAFT-15457
NOAA-NMFS-2020-0031-DRAFT-15458
NOAA-NMFS-2020-0031-DRAFT-15459
NOAA-NMFS-2020-0031-DRAFT-15460
NOAA-NMFS-2020-0031-DRAFT-15461
NOAA-NMFS-2020-0031-DRAFT-15463
NOAA-NMFS-2020-0031-DRAFT-15464
NOAA-NMFS-2020-0031-DRAFT-15465
NOAA-NMFS-2020-0031-DRAFT-15466
NOAA-NMFS-2020-0031-DRAFT-15467
NOAA-NMFS-2020-0031-DRAFT-15468
NOAA-NMFS-2020-0031-DRAFT-15469
NOAA-NMFS-2020-0031-DRAFT-15470
NOAA-NMFS-2020-0031-DRAFT-15471
NOAA-NMFS-2020-0031-DRAFT-15472
NOAA-NMFS-2020-0031-DRAFT-15473
NOAA-NMFS-2020-0031-DRAFT-15474
NOAA-NMFS-2020-0031-DRAFT-15475
NOAA-NMFS-2020-0031-DRAFT-15476
NOAA-NMFS-2020-0031-DRAFT-15477
NOAA-NMFS-2020-0031-DRAFT-15478
NOAA-NMFS-2020-0031-DRAFT-15479
NOAA-NMFS-2020-0031-DRAFT-15480

Title
Comment from kathy hart
Comment from Elena Lamb
Comment from Helene Diamond
Comment from Christine Lytle
Comment from Charleen Ounsworth
Comment from Tanya Piker
Comment from Cheri Mattina
Comment from Fanny Whitman
Comment from Glenn Eklund
Comment from Cindy Curran
Comment from Kelly Walker
Comment from Marci Stathis
Comment from Carole Olson
Comment from Margaret Vernon
Comment from Marlene Wilson
Comment from Carrie Garneau
Comment from meecy carmichael
Comment from Lupe Torre
Comment from Michiele Jones
Comment from Kathi Lombardi
Comment from Krystle Viola
Comment from Sharon Balzano
Comment from Linda Bradley
Comment from Amanda Griffin
Comment from PAMELA ALUND
Comment from Jill Nicholas
Comment from Kim Gannon
Comment from Donna May
Comment from Margaret Vernon
Comment from Jean Kammer
Comment from Cheri Baranowski
Comment from Camilla Comanich
Comment from Brenda Agnew
Comment from Courtney Combs
Comment from James Amling
Comment from Jo Ann Kiva
Comment from Jerry Banks
Comment from Jill Alibrandi
Comment from Loren Wieland
Comment from Richard Reichmann

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NOAA-NMFS-2020-0031-DRAFT-10327
NOAA-NMFS-2020-0031-DRAFT-10328
NOAA-NMFS-2020-0031-DRAFT-10329
NOAA-NMFS-2020-0031-DRAFT-10330
NOAA-NMFS-2020-0031-DRAFT-10331
NOAA-NMFS-2020-0031-DRAFT-10332
NOAA-NMFS-2020-0031-DRAFT-10333
NOAA-NMFS-2020-0031-DRAFT-10334
NOAA-NMFS-2020-0031-DRAFT-10335
NOAA-NMFS-2020-0031-DRAFT-10336
NOAA-NMFS-2020-0031-DRAFT-10337
NOAA-NMFS-2020-0031-DRAFT-10338
NOAA-NMFS-2020-0031-DRAFT-10339
NOAA-NMFS-2020-0031-DRAFT-10340
NOAA-NMFS-2020-0031-DRAFT-10341
NOAA-NMFS-2020-0031-DRAFT-10342
NOAA-NMFS-2020-0031-DRAFT-10343
NOAA-NMFS-2020-0031-DRAFT-10344
NOAA-NMFS-2020-0031-DRAFT-10345
NOAA-NMFS-2020-0031-DRAFT-10346
NOAA-NMFS-2020-0031-DRAFT-10347
NOAA-NMFS-2020-0031-DRAFT-10348
NOAA-NMFS-2020-0031-DRAFT-10349
NOAA-NMFS-2020-0031-DRAFT-10350
NOAA-NMFS-2020-0031-DRAFT-10351
NOAA-NMFS-2020-0031-DRAFT-10352
NOAA-NMFS-2020-0031-DRAFT-10353
NOAA-NMFS-2020-0031-DRAFT-10354
NOAA-NMFS-2020-0031-DRAFT-10355
NOAA-NMFS-2020-0031-DRAFT-10356
NOAA-NMFS-2020-0031-DRAFT-10357
NOAA-NMFS-2020-0031-DRAFT-10358
NOAA-NMFS-2020-0031-DRAFT-10359
NOAA-NMFS-2020-0031-DRAFT-10360
NOAA-NMFS-2020-0031-DRAFT-10361
NOAA-NMFS-2020-0031-DRAFT-10362
NOAA-NMFS-2020-0031-DRAFT-10363
NOAA-NMFS-2020-0031-DRAFT-10364
NOAA-NMFS-2020-0031-DRAFT-10365
NOAA-NMFS-2020-0031-DRAFT-10366
NOAA-NMFS-2020-0031-DRAFT-10367

Comment from Darnell Barsness
Comment from Kathleen Ruiz
Comment from s l
Comment from Janice Kropczynski
Comment from Gary Gover
Comment from LINDA LEONARD
Comment from Stephanie Seymour
Comment from Don Pew
Comment from Eric naji
Comment from William Geoghegan
Comment from Paul Skarvinko
Comment from Bruce Hlodnicki
Comment from Julie Martin
Comment from Robert Posch
Comment from Eileen Prefontaine
Comment from Rebecca McDonough
Comment from Merry Moore
Comment from Ronda Reynolds
Comment from April Parkins
Comment from Andrew Campbell
Comment from Omar Siddique
Comment from Gary Wattles
Comment from Eric naji
Comment from alain guichonnet
Comment from Barbara Gregory
Comment from G. Simmons
Comment from Kate Kenner
Comment from Janet Cools
Comment from Guy Zahller
Comment from dan khann
Comment from Loisann Sciarrillo
Comment from Gloria Uribe
Comment from Cynthia Edney
Comment from Thomas Sarelas
Comment from Elaine Johnson
Comment from Jennifer Will
Comment from Kari Fosse
Comment from Debra Hunter
Comment from Judy McDonald
Comment from Nancy Carl
Comment from Nancy Huntington

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NOAA-NMFS-2020-0031-DRAFT-15481
NOAA-NMFS-2020-0031-DRAFT-15482
NOAA-NMFS-2020-0031-DRAFT-15483
NOAA-NMFS-2020-0031-DRAFT-15484
NOAA-NMFS-2020-0031-DRAFT-15485
NOAA-NMFS-2020-0031-DRAFT-15486
NOAA-NMFS-2020-0031-DRAFT-15487
NOAA-NMFS-2020-0031-DRAFT-15488
NOAA-NMFS-2020-0031-DRAFT-15489
NOAA-NMFS-2020-0031-DRAFT-15490
NOAA-NMFS-2020-0031-DRAFT-15491
NOAA-NMFS-2020-0031-DRAFT-15492
NOAA-NMFS-2020-0031-DRAFT-15493
NOAA-NMFS-2020-0031-DRAFT-15494
NOAA-NMFS-2020-0031-DRAFT-15495
NOAA-NMFS-2020-0031-DRAFT-15496
NOAA-NMFS-2020-0031-DRAFT-15497
NOAA-NMFS-2020-0031-DRAFT-15498
NOAA-NMFS-2020-0031-DRAFT-15499
NOAA-NMFS-2020-0031-DRAFT-15500
NOAA-NMFS-2020-0031-DRAFT-15501
NOAA-NMFS-2020-0031-DRAFT-15502
NOAA-NMFS-2020-0031-DRAFT-15503
NOAA-NMFS-2020-0031-DRAFT-15504
NOAA-NMFS-2020-0031-DRAFT-15505
NOAA-NMFS-2020-0031-DRAFT-15506
NOAA-NMFS-2020-0031-DRAFT-15507
NOAA-NMFS-2020-0031-DRAFT-15508
NOAA-NMFS-2020-0031-DRAFT-15509
NOAA-NMFS-2020-0031-DRAFT-15510
NOAA-NMFS-2020-0031-DRAFT-15511
NOAA-NMFS-2020-0031-DRAFT-15512
NOAA-NMFS-2020-0031-DRAFT-15513
NOAA-NMFS-2020-0031-DRAFT-15514
NOAA-NMFS-2020-0031-DRAFT-15515
NOAA-NMFS-2020-0031-DRAFT-15516
NOAA-NMFS-2020-0031-DRAFT-15517
NOAA-NMFS-2020-0031-DRAFT-15518
NOAA-NMFS-2020-0031-DRAFT-15519
NOAA-NMFS-2020-0031-DRAFT-15520
NOAA-NMFS-2020-0031-DRAFT-15521

Comment from Kristina Younger
Comment from Debra Miller
Comment from Yahm Reichart
Comment from Laurie Carr
Comment from Val Bigelow
Comment from Debra Miller
Comment from Lisa Zato
Comment from Mary Zogzas
Comment from Holly Crawford
Comment from Edward Morgan
Comment from Lucille Greller
Comment from STEPHEN DONNELLY
Comment from Winifred Rossi
Comment from Tiffany J
Comment from Lisa McNany
Comment from Pamela Sierra
Comment from Robert Auger
Comment from Glenn Fain
Comment from Susan Hathcock
Comment from Kim Jones
Comment from Gail Davis
Comment from Penny Pickles
Comment from Gary Plummer
Comment from william crawford
Comment from Cherine Bauer
Comment from Rhoda Levine
Comment from Gail Bell
Comment from Joan Helgeson
Comment from Sally Morrow
Comment from Ronald Pasquarosa
Comment from Marisa Pisani
Comment from RAUL DEL SOLAR
Comment from Carolyn Machado
Comment from Marjorie Holcombe
Comment from Carolina Camarillo
Comment from Noah Ehler
Comment from Mac Norfleet
Comment from Michelle Palladine
Comment from Kristi Parson
Comment from Ryan Baka
Comment from Marelyn Westfall

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NOAA-NMFS-2020-0031-DRAFT-10368
NOAA-NMFS-2020-0031-DRAFT-10369
NOAA-NMFS-2020-0031-DRAFT-10370
NOAA-NMFS-2020-0031-DRAFT-10371
NOAA-NMFS-2020-0031-DRAFT-10372
NOAA-NMFS-2020-0031-DRAFT-10373
NOAA-NMFS-2020-0031-DRAFT-10375
NOAA-NMFS-2020-0031-DRAFT-10376
NOAA-NMFS-2020-0031-DRAFT-10377
NOAA-NMFS-2020-0031-DRAFT-10378
NOAA-NMFS-2020-0031-DRAFT-10379
NOAA-NMFS-2020-0031-DRAFT-10380
NOAA-NMFS-2020-0031-DRAFT-10381
NOAA-NMFS-2020-0031-DRAFT-10382
NOAA-NMFS-2020-0031-DRAFT-10383
NOAA-NMFS-2020-0031-DRAFT-10384
NOAA-NMFS-2020-0031-DRAFT-10385
NOAA-NMFS-2020-0031-DRAFT-10386
NOAA-NMFS-2020-0031-DRAFT-10387
NOAA-NMFS-2020-0031-DRAFT-10388
NOAA-NMFS-2020-0031-DRAFT-10389
NOAA-NMFS-2020-0031-DRAFT-10390
NOAA-NMFS-2020-0031-DRAFT-10391
NOAA-NMFS-2020-0031-DRAFT-10392
NOAA-NMFS-2020-0031-DRAFT-10393
NOAA-NMFS-2020-0031-DRAFT-10394
NOAA-NMFS-2020-0031-DRAFT-10395
NOAA-NMFS-2020-0031-DRAFT-10396
NOAA-NMFS-2020-0031-DRAFT-10397
NOAA-NMFS-2020-0031-DRAFT-10398
NOAA-NMFS-2020-0031-DRAFT-10399
NOAA-NMFS-2020-0031-DRAFT-10400
NOAA-NMFS-2020-0031-DRAFT-10401
NOAA-NMFS-2020-0031-DRAFT-10402
NOAA-NMFS-2020-0031-DRAFT-10403
NOAA-NMFS-2020-0031-DRAFT-10404
NOAA-NMFS-2020-0031-DRAFT-10405
NOAA-NMFS-2020-0031-DRAFT-10406
NOAA-NMFS-2020-0031-DRAFT-10407
NOAA-NMFS-2020-0031-DRAFT-10408
NOAA-NMFS-2020-0031-DRAFT-10409

Comment from Carolyn Yee
Comment from James Cooper
Comment from Beth Merrill
Comment from JoAnn McIntosh
Comment from Sherry Sites
Comment from Arlene Rudin
Comment from Ben Anderson
Comment from sandra rakestraw
Comment from Jason Vinokur
Comment from John Long
Comment from Elana Eli
Comment from Rob Roberto
Comment from Anne Robison
Comment from Beth Palumbo
Comment from Nancy Rupp
Comment from Charles Cassagnol
Comment from Steve Jones
Comment from Alison Zyla
Comment from Sheets Aida
Comment from Liza Connelly
Comment from Leigh Warren
Comment from Donna Alleyne-Chin
Comment from Dennis Villavicencio
Comment from David Berry
Comment from Beverly Nichols
Comment from Lisa Chicoine
Comment from Stephen Howard
Comment from Nancy Boyce
Comment from Darlene Lovernick
Comment from Marc Imlay
Comment from paul potts
Comment from A Sid
Comment from Darcy Brooks
Comment from Gida Naser
Comment from Garrett Hutcheson
Comment from Peter Hodum
Comment from Royal Graves
Comment from Michael Klausing
Comment from Thomas Gardner
Comment from Jane Love
Comment from Rita Buquoi

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NOAA-NMFS-2020-0031-DRAFT-15522
NOAA-NMFS-2020-0031-DRAFT-15524
NOAA-NMFS-2020-0031-DRAFT-15525
NOAA-NMFS-2020-0031-DRAFT-15526
NOAA-NMFS-2020-0031-DRAFT-15527
NOAA-NMFS-2020-0031-DRAFT-15529
NOAA-NMFS-2020-0031-DRAFT-15530
NOAA-NMFS-2020-0031-DRAFT-15531
NOAA-NMFS-2020-0031-DRAFT-15532
NOAA-NMFS-2020-0031-DRAFT-15533
NOAA-NMFS-2020-0031-DRAFT-15534
NOAA-NMFS-2020-0031-DRAFT-15535
NOAA-NMFS-2020-0031-DRAFT-15536
NOAA-NMFS-2020-0031-DRAFT-15537
NOAA-NMFS-2020-0031-DRAFT-15538
NOAA-NMFS-2020-0031-DRAFT-15539
NOAA-NMFS-2020-0031-DRAFT-15540
NOAA-NMFS-2020-0031-DRAFT-15541
NOAA-NMFS-2020-0031-DRAFT-15542
NOAA-NMFS-2020-0031-DRAFT-15543
NOAA-NMFS-2020-0031-DRAFT-15544
NOAA-NMFS-2020-0031-DRAFT-15546
NOAA-NMFS-2020-0031-DRAFT-15547
NOAA-NMFS-2020-0031-DRAFT-15548
NOAA-NMFS-2020-0031-DRAFT-15550
NOAA-NMFS-2020-0031-DRAFT-15551
NOAA-NMFS-2020-0031-DRAFT-15552
NOAA-NMFS-2020-0031-DRAFT-15553
NOAA-NMFS-2020-0031-DRAFT-15554
NOAA-NMFS-2020-0031-DRAFT-15555
NOAA-NMFS-2020-0031-DRAFT-15556
NOAA-NMFS-2020-0031-DRAFT-15557
NOAA-NMFS-2020-0031-DRAFT-15558
NOAA-NMFS-2020-0031-DRAFT-15559
NOAA-NMFS-2020-0031-DRAFT-15560
NOAA-NMFS-2020-0031-DRAFT-15561
NOAA-NMFS-2020-0031-DRAFT-15562
NOAA-NMFS-2020-0031-DRAFT-15563
NOAA-NMFS-2020-0031-DRAFT-15564
NOAA-NMFS-2020-0031-DRAFT-15565
NOAA-NMFS-2020-0031-DRAFT-15566

Comment from K Strong
Comment from James Boerner
Comment from Brian Resh
Comment from Sallie Donkin
Comment from Diane Wildes
Comment from Ashley Lawrence
Comment from Diana Ward
Comment from Catherine Baxter
Comment from Martha Mitchell
Comment from William Ridgeway
Comment from Theresa Walls
Comment from gary zahler
Comment from Sharon Breaman
Comment from Elizabeth Cherubin
Comment from MaryAnna Foskett
Comment from Steve Robey
Comment from Mary Thornton
Comment from Angela Duck
Comment from Lisa Barrera
Comment from Diane Steele Smith
Comment from Kacey Donston
Comment from Mel Vance
Comment from David Newman
Comment from janet maker
Comment from Paul Hill
Comment from Donna Morgan
Comment from Daniel Newmark
Comment from Siegrid Berman
Comment from Marjorie Wilner
Comment from Susan Kelley
Comment from janet maker
Comment from M Shahvali
Comment from Stephanie Anderson
Comment from Louis Grittani
Comment from Emily Ward
Comment from Camille DeRaimo
Comment from Margaret Garr
Comment from Barbara Brueckner
Comment from Ellen North
Comment from Minivere Reznew
Comment from Cliff Long

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NOAA-NMFS-2020-0031-DRAFT-10410
NOAA-NMFS-2020-0031-DRAFT-10411
NOAA-NMFS-2020-0031-DRAFT-10412
NOAA-NMFS-2020-0031-DRAFT-10414
NOAA-NMFS-2020-0031-DRAFT-10415
NOAA-NMFS-2020-0031-DRAFT-10416
NOAA-NMFS-2020-0031-DRAFT-10417
NOAA-NMFS-2020-0031-DRAFT-10418
NOAA-NMFS-2020-0031-DRAFT-10419
NOAA-NMFS-2020-0031-DRAFT-10420
NOAA-NMFS-2020-0031-DRAFT-10421
NOAA-NMFS-2020-0031-DRAFT-10422
NOAA-NMFS-2020-0031-DRAFT-10423
NOAA-NMFS-2020-0031-DRAFT-10424
NOAA-NMFS-2020-0031-DRAFT-10425
NOAA-NMFS-2020-0031-DRAFT-10426
NOAA-NMFS-2020-0031-DRAFT-10427
NOAA-NMFS-2020-0031-DRAFT-10428
NOAA-NMFS-2020-0031-DRAFT-10429
NOAA-NMFS-2020-0031-DRAFT-10430
NOAA-NMFS-2020-0031-DRAFT-10431
NOAA-NMFS-2020-0031-DRAFT-10432
NOAA-NMFS-2020-0031-DRAFT-10433
NOAA-NMFS-2020-0031-DRAFT-10434
NOAA-NMFS-2020-0031-DRAFT-10435
NOAA-NMFS-2020-0031-DRAFT-10436
NOAA-NMFS-2020-0031-DRAFT-10437
NOAA-NMFS-2020-0031-DRAFT-10438
NOAA-NMFS-2020-0031-DRAFT-10439
NOAA-NMFS-2020-0031-DRAFT-10440
NOAA-NMFS-2020-0031-DRAFT-10441
NOAA-NMFS-2020-0031-DRAFT-10442
NOAA-NMFS-2020-0031-DRAFT-10443
NOAA-NMFS-2020-0031-DRAFT-10444
NOAA-NMFS-2020-0031-DRAFT-10445
NOAA-NMFS-2020-0031-DRAFT-10446
NOAA-NMFS-2020-0031-DRAFT-10447
NOAA-NMFS-2020-0031-DRAFT-10448
NOAA-NMFS-2020-0031-DRAFT-10449
NOAA-NMFS-2020-0031-DRAFT-10450
NOAA-NMFS-2020-0031-DRAFT-10451

Comment from Joshua Asel
Comment from Patrick Linehan
Comment from Sherry Sharpnack
Comment from Anne Aylor
Comment from Pam Doran
Comment from Michael Watson
Comment from Janice Parker
Comment from Alana Crow
Comment from John Hathaway
Comment from Nicky Edelman
Comment from Janice Parker
Comment from Lindsay Haukebo
Comment from Jean Stidham
Comment from Kelly Allison
Comment from Edward Cavasian
Comment from Carol Masuda
Comment from Jazmine Harvey
Comment from Christina Viljoen
Comment from JL Charrier
Comment from Andrea Zajac
Comment from Carrie Swank
Comment from Sally Wise
Comment from Ted Haglund
Comment from MeriBeth Koch
Comment from Richard Spotts
Comment from John Cooke
Comment from jon Collins
Comment from Tiffany Buell
Comment from Jamila Viandier
Comment from Hilma Crowfoot
Comment from Holly Putman
Comment from Stephanie Buresh
Comment from Erik Peterson
Comment from Dorene Randall
Comment from Johnny Pflugrad
Comment from Barry Smith
Comment from Marco Protano
Comment from Deborah Stark
Comment from Larry Hannon
Comment from Samantha Colner
Comment from Tim Durnell

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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15567
NOAA-NMFS-2020-0031-DRAFT-15568
NOAA-NMFS-2020-0031-DRAFT-15569
NOAA-NMFS-2020-0031-DRAFT-15570
NOAA-NMFS-2020-0031-DRAFT-15571
NOAA-NMFS-2020-0031-DRAFT-15572
NOAA-NMFS-2020-0031-DRAFT-15573
NOAA-NMFS-2020-0031-DRAFT-15574
NOAA-NMFS-2020-0031-DRAFT-15575
NOAA-NMFS-2020-0031-DRAFT-15576
NOAA-NMFS-2020-0031-DRAFT-15577
NOAA-NMFS-2020-0031-DRAFT-15578
NOAA-NMFS-2020-0031-DRAFT-15579
NOAA-NMFS-2020-0031-DRAFT-15580
NOAA-NMFS-2020-0031-DRAFT-15581
NOAA-NMFS-2020-0031-DRAFT-15582
NOAA-NMFS-2020-0031-DRAFT-15583
NOAA-NMFS-2020-0031-DRAFT-15584
NOAA-NMFS-2020-0031-DRAFT-15585
NOAA-NMFS-2020-0031-DRAFT-15586
NOAA-NMFS-2020-0031-DRAFT-15587
NOAA-NMFS-2020-0031-DRAFT-15588
NOAA-NMFS-2020-0031-DRAFT-15589
NOAA-NMFS-2020-0031-DRAFT-15590
NOAA-NMFS-2020-0031-DRAFT-15591
NOAA-NMFS-2020-0031-DRAFT-15592
NOAA-NMFS-2020-0031-DRAFT-15593
NOAA-NMFS-2020-0031-DRAFT-15594
NOAA-NMFS-2020-0031-DRAFT-15595
NOAA-NMFS-2020-0031-DRAFT-15596
NOAA-NMFS-2020-0031-DRAFT-15597
NOAA-NMFS-2020-0031-DRAFT-15598
NOAA-NMFS-2020-0031-DRAFT-15599
NOAA-NMFS-2020-0031-DRAFT-15600
NOAA-NMFS-2020-0031-DRAFT-15601
NOAA-NMFS-2020-0031-DRAFT-15602
NOAA-NMFS-2020-0031-DRAFT-15603
NOAA-NMFS-2020-0031-DRAFT-15604
NOAA-NMFS-2020-0031-DRAFT-15605
NOAA-NMFS-2020-0031-DRAFT-15606
NOAA-NMFS-2020-0031-DRAFT-15607

Comment from Leilani Rothrock
Comment from Lou Reznew
Comment from Stephen Faes
Comment from Kelley Griffin
Comment from Kory Benedicto
Comment from Jeffrey Tieger
Comment from Rose Marie Wilson
Comment from Mari C
Comment from Patricia Nelson
Comment from Terry Burton
Comment from Michelle Heller
Comment from Hillary Tiefer
Comment from carla ashley
Comment from Lauren Horwitz
Comment from William Shelton
Comment from Jeanette Shutay
Comment from Jodi Rodar
Comment from Debbie Davis
Comment from Hedy Kulka
Comment from Joyce O'Malley
Comment from Elizabeth Enright
Comment from Charlie Mylod
Comment from Karen Mathers
Comment from Al Loewy
Comment from Steve Gruber
Comment from Mary Landrum
Comment from Lidia Lucaciu
Comment from George Bond
Comment from MICHAEL CUSHING
Comment from Lillian Santana
Comment from Meaghan Doherty
Comment from Gail Roberts
Comment from Ronald Warren
Comment from Carolyn Barker
Comment from Abigail Gindele
Comment from Deborah Mackie
Comment from Andrea Zajac
Comment from Eugene Gorrin
Comment from Anne Haflich
Comment from JerriLyn Miller
Comment from Nancy Currah

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10452
NOAA-NMFS-2020-0031-DRAFT-10453
NOAA-NMFS-2020-0031-DRAFT-10454
NOAA-NMFS-2020-0031-DRAFT-10455
NOAA-NMFS-2020-0031-DRAFT-10456
NOAA-NMFS-2020-0031-DRAFT-10457
NOAA-NMFS-2020-0031-DRAFT-10458
NOAA-NMFS-2020-0031-DRAFT-10459
NOAA-NMFS-2020-0031-DRAFT-10460
NOAA-NMFS-2020-0031-DRAFT-10461
NOAA-NMFS-2020-0031-DRAFT-10462
NOAA-NMFS-2020-0031-DRAFT-10463
NOAA-NMFS-2020-0031-DRAFT-10464
NOAA-NMFS-2020-0031-DRAFT-10465
NOAA-NMFS-2020-0031-DRAFT-10466
NOAA-NMFS-2020-0031-DRAFT-10467
NOAA-NMFS-2020-0031-DRAFT-10468
NOAA-NMFS-2020-0031-DRAFT-10469
NOAA-NMFS-2020-0031-DRAFT-10470
NOAA-NMFS-2020-0031-DRAFT-10471
NOAA-NMFS-2020-0031-DRAFT-10472
NOAA-NMFS-2020-0031-DRAFT-10473
NOAA-NMFS-2020-0031-DRAFT-10474
NOAA-NMFS-2020-0031-DRAFT-10475
NOAA-NMFS-2020-0031-DRAFT-10476
NOAA-NMFS-2020-0031-DRAFT-10477
NOAA-NMFS-2020-0031-DRAFT-10479
NOAA-NMFS-2020-0031-DRAFT-10480
NOAA-NMFS-2020-0031-DRAFT-10481
NOAA-NMFS-2020-0031-DRAFT-10482
NOAA-NMFS-2020-0031-DRAFT-10483
NOAA-NMFS-2020-0031-DRAFT-10484
NOAA-NMFS-2020-0031-DRAFT-10485
NOAA-NMFS-2020-0031-DRAFT-10486
NOAA-NMFS-2020-0031-DRAFT-10487
NOAA-NMFS-2020-0031-DRAFT-10488
NOAA-NMFS-2020-0031-DRAFT-10489
NOAA-NMFS-2020-0031-DRAFT-10490
NOAA-NMFS-2020-0031-DRAFT-10491
NOAA-NMFS-2020-0031-DRAFT-10492
NOAA-NMFS-2020-0031-DRAFT-10493

Comment from Beth Hawes
Comment from Robert Rivera
Comment from gina anson
Comment from John Steponaitis
Comment from Kathleen Mireault
Comment from Robert Nobrega
Comment from Ramona Krause
Comment from Mary Kraeszig
Comment from Gretchen Dickson
Comment from Jennifer Corrigan
Comment from Sandra Uribe
Comment from Alina Szostak
Comment from Patricia Richard-Amato
Comment from Marianne Salamone
Comment from Mary Diercks
Comment from Nicole Bickel
Comment from Robert Johnson
Comment from marylen kincer
Comment from Linda Perrigoue
Comment from Lynn Boone
Comment from Joanne Linden
Comment from GS Anson
Comment from Libba Miller
Comment from Russell Weisz
Comment from LISA STIMPSON
Comment from Raymond Valinoti
Comment from Amy Young
Comment from catherine cosman
Comment from Amber Sumrall
Comment from Alana Hendrickson
Comment from Carmel Parr
Comment from Gianna Garcia
Comment from robert Yancey
Comment from Maureen Sullivan
Comment from Len Clark
Comment from kym harris
Comment from Juliana Wells
Comment from Nancy Linder
Comment from Geoffrey Symcox
Comment from Pat Bryan
Comment from Beth Olson

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15608
NOAA-NMFS-2020-0031-DRAFT-15609
NOAA-NMFS-2020-0031-DRAFT-15610
NOAA-NMFS-2020-0031-DRAFT-15611
NOAA-NMFS-2020-0031-DRAFT-15612
NOAA-NMFS-2020-0031-DRAFT-15613
NOAA-NMFS-2020-0031-DRAFT-15614
NOAA-NMFS-2020-0031-DRAFT-15615
NOAA-NMFS-2020-0031-DRAFT-15616
NOAA-NMFS-2020-0031-DRAFT-15617
NOAA-NMFS-2020-0031-DRAFT-15618
NOAA-NMFS-2020-0031-DRAFT-15619
NOAA-NMFS-2020-0031-DRAFT-15620
NOAA-NMFS-2020-0031-DRAFT-15621
NOAA-NMFS-2020-0031-DRAFT-15622
NOAA-NMFS-2020-0031-DRAFT-15623
NOAA-NMFS-2020-0031-DRAFT-15624
NOAA-NMFS-2020-0031-DRAFT-15625
NOAA-NMFS-2020-0031-DRAFT-15626
NOAA-NMFS-2020-0031-DRAFT-15627
NOAA-NMFS-2020-0031-DRAFT-15628
NOAA-NMFS-2020-0031-DRAFT-15629
NOAA-NMFS-2020-0031-DRAFT-15630
NOAA-NMFS-2020-0031-DRAFT-15631
NOAA-NMFS-2020-0031-DRAFT-15632
NOAA-NMFS-2020-0031-DRAFT-15633
NOAA-NMFS-2020-0031-DRAFT-15634
NOAA-NMFS-2020-0031-DRAFT-15635
NOAA-NMFS-2020-0031-DRAFT-15636
NOAA-NMFS-2020-0031-DRAFT-15637
NOAA-NMFS-2020-0031-DRAFT-15638
NOAA-NMFS-2020-0031-DRAFT-15639
NOAA-NMFS-2020-0031-DRAFT-15640
NOAA-NMFS-2020-0031-DRAFT-15641
NOAA-NMFS-2020-0031-DRAFT-15642
NOAA-NMFS-2020-0031-DRAFT-15643
NOAA-NMFS-2020-0031-DRAFT-15644
NOAA-NMFS-2020-0031-DRAFT-15645
NOAA-NMFS-2020-0031-DRAFT-15646
NOAA-NMFS-2020-0031-DRAFT-15647
NOAA-NMFS-2020-0031-DRAFT-15648

Comment from Carolyn Marshall
Comment from VALERY BURKS
Comment from carla ashley
Comment from Anthony Flores
Comment from Karen Beth
Comment from sarah payette
Comment from Lynn Lowin
Comment from Thomas Boughan
Comment from Ellen Jahos
Comment from VIRGINIA MARTIN
Comment from Penny Sundstrom
Comment from Alice Anderson
Comment from Mary Naismith
Comment from Terrence Snyder
Comment from Libia Johnson
Comment from Debbi Meredith
Comment from Delwin Goss
Comment from Lisa Newkirk
Comment from Lynette Ching
Comment from Lisa Fues
Comment from Alex Giron
Comment from Erin Neubauer
Comment from Lirael Armstrong
Comment from Robin Kory
Comment from Lucinda Tucker
Comment from Cassie Wimberly
Comment from Patricia Palermo
Comment from Kathryn Dittemore
Comment from Laura Nicholas
Comment from Kathleen Duffus
Comment from Sheila Malone
Comment from Damira Pullins
Comment from Bobbie Flowers
Comment from Meredith Erickson
Comment from Gary Schneider
Comment from Tina Driscoll
Comment from Alabama Sarah
Comment from stacy parr
Comment from Jennifer Wolff
Comment from Babbie Chapman
Comment from Mary Guiterrez

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10494
NOAA-NMFS-2020-0031-DRAFT-10495
NOAA-NMFS-2020-0031-DRAFT-10496
NOAA-NMFS-2020-0031-DRAFT-10497
NOAA-NMFS-2020-0031-DRAFT-10498
NOAA-NMFS-2020-0031-DRAFT-10499
NOAA-NMFS-2020-0031-DRAFT-10500
NOAA-NMFS-2020-0031-DRAFT-10501
NOAA-NMFS-2020-0031-DRAFT-10502
NOAA-NMFS-2020-0031-DRAFT-10503
NOAA-NMFS-2020-0031-DRAFT-10504
NOAA-NMFS-2020-0031-DRAFT-10505
NOAA-NMFS-2020-0031-DRAFT-10506
NOAA-NMFS-2020-0031-DRAFT-10507
NOAA-NMFS-2020-0031-DRAFT-10508
NOAA-NMFS-2020-0031-DRAFT-10509
NOAA-NMFS-2020-0031-DRAFT-10510
NOAA-NMFS-2020-0031-DRAFT-10511
NOAA-NMFS-2020-0031-DRAFT-10512
NOAA-NMFS-2020-0031-DRAFT-10513
NOAA-NMFS-2020-0031-DRAFT-10514
NOAA-NMFS-2020-0031-DRAFT-10515
NOAA-NMFS-2020-0031-DRAFT-10516
NOAA-NMFS-2020-0031-DRAFT-10517
NOAA-NMFS-2020-0031-DRAFT-10518
NOAA-NMFS-2020-0031-DRAFT-10519
NOAA-NMFS-2020-0031-DRAFT-10520
NOAA-NMFS-2020-0031-DRAFT-10521
NOAA-NMFS-2020-0031-DRAFT-10522
NOAA-NMFS-2020-0031-DRAFT-10523
NOAA-NMFS-2020-0031-DRAFT-10524
NOAA-NMFS-2020-0031-DRAFT-10525
NOAA-NMFS-2020-0031-DRAFT-10526
NOAA-NMFS-2020-0031-DRAFT-10527
NOAA-NMFS-2020-0031-DRAFT-10528
NOAA-NMFS-2020-0031-DRAFT-10529
NOAA-NMFS-2020-0031-DRAFT-10530
NOAA-NMFS-2020-0031-DRAFT-10531
NOAA-NMFS-2020-0031-DRAFT-10532
NOAA-NMFS-2020-0031-DRAFT-10533
NOAA-NMFS-2020-0031-DRAFT-10534

Comment from Katrin Winterer
Comment from James Klein
Comment from Karen Quay
Comment from Stuart Fisk
Comment from Isaiah Plovnick
Comment from Susan Powers
Comment from Steven Iszauk
Comment from Janet Draper
Comment from Wayne Teel
Comment from Teresa Lyman
Comment from Ronald Thompson
Comment from James van Maanen
Comment from stephen armstrong
Comment from Rick Koury
Comment from Glenis Ramirez
Comment from Matthew Vigil
Comment from Amy Henry
Comment from Deirdre Fitzsimmons
Comment from mark wenzel
Comment from William Wilson
Comment from Michael Langlais
Comment from Melinda Abbott
Comment from Robert Jacobson
Comment from Tristan Sophia
Comment from Katherine McLean
Comment from JAMES LOVICH
Comment from Julie Clayman
Comment from Joan Andersson
Comment from Bridgett Heinly
Comment from James Stuhlmacher
Comment from Mel Apodaca
Comment from dagmar mclaughlin
Comment from Laura Weiss
Comment from Annie Bien
Comment from Jan Thomas
Comment from John Davis
Comment from Michael Cushing
Comment from Deimile Mockus
Comment from Gregory Gibson
Comment from Renee Carl
Comment from Carol King

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15649
NOAA-NMFS-2020-0031-DRAFT-15650
NOAA-NMFS-2020-0031-DRAFT-15651
NOAA-NMFS-2020-0031-DRAFT-15652
NOAA-NMFS-2020-0031-DRAFT-15653
NOAA-NMFS-2020-0031-DRAFT-15654
NOAA-NMFS-2020-0031-DRAFT-15655
NOAA-NMFS-2020-0031-DRAFT-15656
NOAA-NMFS-2020-0031-DRAFT-15657
NOAA-NMFS-2020-0031-DRAFT-15658
NOAA-NMFS-2020-0031-DRAFT-15659
NOAA-NMFS-2020-0031-DRAFT-15660
NOAA-NMFS-2020-0031-DRAFT-15661
NOAA-NMFS-2020-0031-DRAFT-15662
NOAA-NMFS-2020-0031-DRAFT-15663
NOAA-NMFS-2020-0031-DRAFT-15664
NOAA-NMFS-2020-0031-DRAFT-15665
NOAA-NMFS-2020-0031-DRAFT-15666
NOAA-NMFS-2020-0031-DRAFT-15667
NOAA-NMFS-2020-0031-DRAFT-15668
NOAA-NMFS-2020-0031-DRAFT-15669
NOAA-NMFS-2020-0031-DRAFT-15670
NOAA-NMFS-2020-0031-DRAFT-15671
NOAA-NMFS-2020-0031-DRAFT-15672
NOAA-NMFS-2020-0031-DRAFT-15673
NOAA-NMFS-2020-0031-DRAFT-15674
NOAA-NMFS-2020-0031-DRAFT-15675
NOAA-NMFS-2020-0031-DRAFT-15676
NOAA-NMFS-2020-0031-DRAFT-15677
NOAA-NMFS-2020-0031-DRAFT-15678
NOAA-NMFS-2020-0031-DRAFT-15679
NOAA-NMFS-2020-0031-DRAFT-15680
NOAA-NMFS-2020-0031-DRAFT-15681
NOAA-NMFS-2020-0031-DRAFT-15682
NOAA-NMFS-2020-0031-DRAFT-15683
NOAA-NMFS-2020-0031-DRAFT-15684
NOAA-NMFS-2020-0031-DRAFT-15685
NOAA-NMFS-2020-0031-DRAFT-15686
NOAA-NMFS-2020-0031-DRAFT-15687
NOAA-NMFS-2020-0031-DRAFT-15688
NOAA-NMFS-2020-0031-DRAFT-15689

Comment from Sharlene Osorio
Comment from Paul Eisenberg
Comment from jacqueline wolfe
Comment from Terry WOLFE
Comment from Rachel Imholte
Comment from Melissa Gaskins
Comment from Jenna Fallaw
Comment from joe weis
Comment from Anna Laidler
Comment from Jenni Brodie
Comment from Luisa Brooks
Comment from Gina Tomaselli
Comment from Karen Rossner
Comment from Laakea Laano
Comment from Steve Downing
Comment from susan delles
Comment from Darlene Saragganondha
Comment from Linda Franklin
Comment from Celeste Anacker
Comment from Jewel Grutman
Comment from Debbie Kelly
Comment from August Neitzel
Comment from Emma Goode DeBlanc
Comment from Donna Blomquist
Comment from Stephen Hemrick
Comment from Ray Cunningham
Comment from Jane Grove
Comment from Kathe Garbrick
Comment from Daniel O'Brien
Comment from Anna Laidler
Comment from Kay S
Comment from Andrew Berkson
Comment from Michael Gresh
Comment from Carrie Swank
Comment from Patricia R Wendell
Comment from Irene Hilgers
Comment from Gudrun Dennis
Comment from Erika Wanenmacher
Comment from Luana Rubin
Comment from Brenda Gamache
Comment from Samantha Averill

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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10535
NOAA-NMFS-2020-0031-DRAFT-10536
NOAA-NMFS-2020-0031-DRAFT-10537
NOAA-NMFS-2020-0031-DRAFT-10538
NOAA-NMFS-2020-0031-DRAFT-10539
NOAA-NMFS-2020-0031-DRAFT-10540
NOAA-NMFS-2020-0031-DRAFT-10541
NOAA-NMFS-2020-0031-DRAFT-10542
NOAA-NMFS-2020-0031-DRAFT-10543
NOAA-NMFS-2020-0031-DRAFT-10544
NOAA-NMFS-2020-0031-DRAFT-10545
NOAA-NMFS-2020-0031-DRAFT-10546
NOAA-NMFS-2020-0031-DRAFT-10547
NOAA-NMFS-2020-0031-DRAFT-10548
NOAA-NMFS-2020-0031-DRAFT-10549
NOAA-NMFS-2020-0031-DRAFT-10550
NOAA-NMFS-2020-0031-DRAFT-10551
NOAA-NMFS-2020-0031-DRAFT-10552
NOAA-NMFS-2020-0031-DRAFT-10553
NOAA-NMFS-2020-0031-DRAFT-10554
NOAA-NMFS-2020-0031-DRAFT-10555
NOAA-NMFS-2020-0031-DRAFT-10556
NOAA-NMFS-2020-0031-DRAFT-10557
NOAA-NMFS-2020-0031-DRAFT-10558
NOAA-NMFS-2020-0031-DRAFT-10559
NOAA-NMFS-2020-0031-DRAFT-10560
NOAA-NMFS-2020-0031-DRAFT-10561
NOAA-NMFS-2020-0031-DRAFT-10562
NOAA-NMFS-2020-0031-DRAFT-10563
NOAA-NMFS-2020-0031-DRAFT-10564
NOAA-NMFS-2020-0031-DRAFT-10565
NOAA-NMFS-2020-0031-DRAFT-10566
NOAA-NMFS-2020-0031-DRAFT-10567
NOAA-NMFS-2020-0031-DRAFT-10568
NOAA-NMFS-2020-0031-DRAFT-10569
NOAA-NMFS-2020-0031-DRAFT-10570
NOAA-NMFS-2020-0031-DRAFT-10571
NOAA-NMFS-2020-0031-DRAFT-10572
NOAA-NMFS-2020-0031-DRAFT-10573
NOAA-NMFS-2020-0031-DRAFT-10574
NOAA-NMFS-2020-0031-DRAFT-10575

Comment from Mary Thibaudeau
Comment from ron landskroner
Comment from Lupe Torre
Comment from Robert Gerosa
Comment from Diane Riley
Comment from timothy villalobos
Comment from Jaszmene Smith
Comment from Tom Hohn
Comment from Catherine Ross
Comment from Kevin Hines
Comment from Cari Chenkin
Comment from Tracy Foster
Comment from Catherine George
Comment from Kerrie Shisila
Comment from Lisa Bemis
Comment from Deirdre Morris
Comment from Dale shuffler
Comment from Darlene Baker
Comment from Gail Yborra
Comment from Elin Defrin
Comment from Dorothy Holtzman
Comment from Janet Monfredini
Comment from Carl Prellwitz
Comment from David States
Comment from Lynn Zipse
Comment from Meredith Hayward
Comment from Kym Waugh
Comment from John Dalla
Comment from Benton Elliott
Comment from Guy Westgaard
Comment from Carol Rahbari
Comment from Dan Pepin
Comment from Terry Bergeron
Comment from Tim Fleischer
Comment from Mike Swensen
Comment from richard camp
Comment from Lodiza LePore
Comment from Bridget Koch-Timothy
Comment from Laura Winters-Duke
Comment from Robin Budry
Comment from Shirley Bensetler

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15690
NOAA-NMFS-2020-0031-DRAFT-15691
NOAA-NMFS-2020-0031-DRAFT-15692
NOAA-NMFS-2020-0031-DRAFT-15693
NOAA-NMFS-2020-0031-DRAFT-15694
NOAA-NMFS-2020-0031-DRAFT-15695
NOAA-NMFS-2020-0031-DRAFT-15696
NOAA-NMFS-2020-0031-DRAFT-15697
NOAA-NMFS-2020-0031-DRAFT-15698
NOAA-NMFS-2020-0031-DRAFT-15699
NOAA-NMFS-2020-0031-DRAFT-15700
NOAA-NMFS-2020-0031-DRAFT-15701
NOAA-NMFS-2020-0031-DRAFT-15702
NOAA-NMFS-2020-0031-DRAFT-15703
NOAA-NMFS-2020-0031-DRAFT-15705
NOAA-NMFS-2020-0031-DRAFT-15706
NOAA-NMFS-2020-0031-DRAFT-15707
NOAA-NMFS-2020-0031-DRAFT-15708
NOAA-NMFS-2020-0031-DRAFT-15709
NOAA-NMFS-2020-0031-DRAFT-15710
NOAA-NMFS-2020-0031-DRAFT-15711
NOAA-NMFS-2020-0031-DRAFT-15712
NOAA-NMFS-2020-0031-DRAFT-15713
NOAA-NMFS-2020-0031-DRAFT-15714
NOAA-NMFS-2020-0031-DRAFT-15715
NOAA-NMFS-2020-0031-DRAFT-15716
NOAA-NMFS-2020-0031-DRAFT-15717
NOAA-NMFS-2020-0031-DRAFT-15718
NOAA-NMFS-2020-0031-DRAFT-15719
NOAA-NMFS-2020-0031-DRAFT-15720
NOAA-NMFS-2020-0031-DRAFT-15721
NOAA-NMFS-2020-0031-DRAFT-15722
NOAA-NMFS-2020-0031-DRAFT-15723
NOAA-NMFS-2020-0031-DRAFT-15724
NOAA-NMFS-2020-0031-DRAFT-15725
NOAA-NMFS-2020-0031-DRAFT-15726
NOAA-NMFS-2020-0031-DRAFT-15727
NOAA-NMFS-2020-0031-DRAFT-15728
NOAA-NMFS-2020-0031-DRAFT-15729
NOAA-NMFS-2020-0031-DRAFT-15730
NOAA-NMFS-2020-0031-DRAFT-15731

Comment from Daniel Rebson
Comment from Susan Hindman
Comment from Martha Burton
Comment from Kristin Lewis
Comment from Samantha Averill
Comment from Robert Nolter
Comment from Michael Nelson
Comment from Patti Wolff
Comment from Sonja Birdsong
Comment from Kim Young
Comment from Lisha Doucet
Comment from Sandy Iwanski
Comment from Kathleen Moraski
Comment from olivia silensky
Comment from Karen Carbone
Comment from John and Robbie Wertin
Comment from Christine MARLER
Comment from Blaise Brockman
Comment from Charles Muehlhof
Comment from Salissa Chavez
Comment from Susan Cole
Comment from Monique Edwards
Comment from Kurt Allen
Comment from D Colfer
Comment from Gail Atkins
Comment from Joan Pradetto
Comment from Glenis Ramirez
Comment from Rachel Asturias
Comment from Sarita Karve
Comment from Kathleen McHendry
Comment from Laurie Ellis
Comment from Kimberly Hurtt
Comment from Brok Burchatz
Comment from Holly Gates Mayer
Comment from Lisa Celli
Comment from Dawn DiBlasi
Comment from Deborah Griffith
Comment from Jo Cole
Comment from Debra Chandler
Comment from Steven Carrell
Comment from Julie Hagen

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10576
NOAA-NMFS-2020-0031-DRAFT-10577
NOAA-NMFS-2020-0031-DRAFT-10578
NOAA-NMFS-2020-0031-DRAFT-10579
NOAA-NMFS-2020-0031-DRAFT-10580
NOAA-NMFS-2020-0031-DRAFT-10581
NOAA-NMFS-2020-0031-DRAFT-10582
NOAA-NMFS-2020-0031-DRAFT-10583
NOAA-NMFS-2020-0031-DRAFT-10584
NOAA-NMFS-2020-0031-DRAFT-10585
NOAA-NMFS-2020-0031-DRAFT-10586
NOAA-NMFS-2020-0031-DRAFT-10587
NOAA-NMFS-2020-0031-DRAFT-10588
NOAA-NMFS-2020-0031-DRAFT-10589
NOAA-NMFS-2020-0031-DRAFT-10590
NOAA-NMFS-2020-0031-DRAFT-10591
NOAA-NMFS-2020-0031-DRAFT-10592
NOAA-NMFS-2020-0031-DRAFT-10593
NOAA-NMFS-2020-0031-DRAFT-10594
NOAA-NMFS-2020-0031-DRAFT-10595
NOAA-NMFS-2020-0031-DRAFT-10596
NOAA-NMFS-2020-0031-DRAFT-10597
NOAA-NMFS-2020-0031-DRAFT-10598
NOAA-NMFS-2020-0031-DRAFT-10599
NOAA-NMFS-2020-0031-DRAFT-10600
NOAA-NMFS-2020-0031-DRAFT-10601
NOAA-NMFS-2020-0031-DRAFT-10602
NOAA-NMFS-2020-0031-DRAFT-10603
NOAA-NMFS-2020-0031-DRAFT-10604
NOAA-NMFS-2020-0031-DRAFT-10605
NOAA-NMFS-2020-0031-DRAFT-10606
NOAA-NMFS-2020-0031-DRAFT-10607
NOAA-NMFS-2020-0031-DRAFT-10608
NOAA-NMFS-2020-0031-DRAFT-10609
NOAA-NMFS-2020-0031-DRAFT-10610
NOAA-NMFS-2020-0031-DRAFT-10611
NOAA-NMFS-2020-0031-DRAFT-10612
NOAA-NMFS-2020-0031-DRAFT-10613
NOAA-NMFS-2020-0031-DRAFT-10614
NOAA-NMFS-2020-0031-DRAFT-10615
NOAA-NMFS-2020-0031-DRAFT-10616

Comment from Kevin Brown
Comment from Vicki S
Comment from Arnold Kaplan
Comment from Dorian Sarris
Comment from Terry Ph.D.
Comment from Kathleen Wong
Comment from Shirley Smithson
Comment from Janie Lucas
Comment from Christine Fletcher
Comment from Ashleigh Britton
Comment from Amy Bushnell
Comment from Kimberly Morse
Comment from Amanda Sweet
Comment from Ron Richter
Comment from Ramona Ponessa
Comment from Karen Wolf
Comment from Catherine Johnson
Comment from Kathy Lee
Comment from David Sweet
Comment from Dennis Waterhouse
Comment from Tim Dressel
Comment from James Ashcraft
Comment from Chris Lykins
Comment from Thomas Keane
Comment from Barry Cutler
Comment from Darrell Schmidt
Comment from Jaremy Lynch
Comment from Robert Sandgrund
Comment from Christopher Evans
Comment from James Murphy
Comment from gina writz
Comment from Margaret Keene
Comment from curt bohlen
Comment from Jane Broendel
Comment from Rebecca Reynolds
Comment from Gary Dunn
Comment from Gary Holcomb
Comment from J.L. Evans
Comment from Joseph Buhowsky
Comment from Nadya Schmeder
Comment from Nevena Georgieva

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15732
NOAA-NMFS-2020-0031-DRAFT-15733
NOAA-NMFS-2020-0031-DRAFT-15734
NOAA-NMFS-2020-0031-DRAFT-15735
NOAA-NMFS-2020-0031-DRAFT-15736
NOAA-NMFS-2020-0031-DRAFT-15737
NOAA-NMFS-2020-0031-DRAFT-15738
NOAA-NMFS-2020-0031-DRAFT-15739
NOAA-NMFS-2020-0031-DRAFT-15740
NOAA-NMFS-2020-0031-DRAFT-15741
NOAA-NMFS-2020-0031-DRAFT-15742
NOAA-NMFS-2020-0031-DRAFT-15743
NOAA-NMFS-2020-0031-DRAFT-15744
NOAA-NMFS-2020-0031-DRAFT-15745
NOAA-NMFS-2020-0031-DRAFT-15746
NOAA-NMFS-2020-0031-DRAFT-15747
NOAA-NMFS-2020-0031-DRAFT-15748
NOAA-NMFS-2020-0031-DRAFT-15749
NOAA-NMFS-2020-0031-DRAFT-15750
NOAA-NMFS-2020-0031-DRAFT-15751
NOAA-NMFS-2020-0031-DRAFT-15752
NOAA-NMFS-2020-0031-DRAFT-15753
NOAA-NMFS-2020-0031-DRAFT-15754
NOAA-NMFS-2020-0031-DRAFT-15755
NOAA-NMFS-2020-0031-DRAFT-15756
NOAA-NMFS-2020-0031-DRAFT-15757
NOAA-NMFS-2020-0031-DRAFT-15758
NOAA-NMFS-2020-0031-DRAFT-15759
NOAA-NMFS-2020-0031-DRAFT-15760
NOAA-NMFS-2020-0031-DRAFT-15761
NOAA-NMFS-2020-0031-DRAFT-15762
NOAA-NMFS-2020-0031-DRAFT-15763
NOAA-NMFS-2020-0031-DRAFT-15764
NOAA-NMFS-2020-0031-DRAFT-15765
NOAA-NMFS-2020-0031-DRAFT-15766
NOAA-NMFS-2020-0031-DRAFT-15767
NOAA-NMFS-2020-0031-DRAFT-15768
NOAA-NMFS-2020-0031-DRAFT-15769
NOAA-NMFS-2020-0031-DRAFT-15770
NOAA-NMFS-2020-0031-DRAFT-15771
NOAA-NMFS-2020-0031-DRAFT-15772

Comment from Robert Fingerman
Comment from Kathy Stark
Comment from Gail Veiby
Comment from Samuel Newman
Comment from Beth Darlington
Comment from Barbara McMahan
Comment from Ned Overton
Comment from Luann Riley
Comment from gabriela Monge
Comment from MaryAnn Stanislowsky
Comment from Irene Mazur
Comment from Abigail Ramirez
Comment from Theresa Skager
Comment from Andrea Lancer
Comment from Nancy Currah
Comment from Maria Cecilia Correia
Comment from Jan Emerson
Comment from Yvonne Minor
Comment from Nikki Nafziger
Comment from Jane Robinson
Comment from Pablo Cortez
Comment from Bill Donaldson
Comment from Lauren Hartung
Comment from Angela Neutzling
Comment from Morgan Lazenby
Comment from Carolyn Rand
Comment from Lori Georges
Comment from Ninon Estinto
Comment from Jennifer Porter
Comment from Steven Bal
Comment from robert garcia
Comment from Debra Ricci
Comment from Cathy Stephens
Comment from Shane Culgan
Comment from Karin Boixo
Comment from Lonny Lachapelle
Comment from Anne Wangman
Comment from Jackie Cole
Comment from Kristi Dolch
Comment from Cindy Murphy
Comment from Arthur Meeder

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10617
NOAA-NMFS-2020-0031-DRAFT-10618
NOAA-NMFS-2020-0031-DRAFT-10619
NOAA-NMFS-2020-0031-DRAFT-10620
NOAA-NMFS-2020-0031-DRAFT-10621
NOAA-NMFS-2020-0031-DRAFT-10622
NOAA-NMFS-2020-0031-DRAFT-10623
NOAA-NMFS-2020-0031-DRAFT-10624
NOAA-NMFS-2020-0031-DRAFT-10625
NOAA-NMFS-2020-0031-DRAFT-10626
NOAA-NMFS-2020-0031-DRAFT-10627
NOAA-NMFS-2020-0031-DRAFT-10628
NOAA-NMFS-2020-0031-DRAFT-10629
NOAA-NMFS-2020-0031-DRAFT-10630
NOAA-NMFS-2020-0031-DRAFT-10631
NOAA-NMFS-2020-0031-DRAFT-10632
NOAA-NMFS-2020-0031-DRAFT-10633
NOAA-NMFS-2020-0031-DRAFT-10634
NOAA-NMFS-2020-0031-DRAFT-10635
NOAA-NMFS-2020-0031-DRAFT-10636
NOAA-NMFS-2020-0031-DRAFT-10637
NOAA-NMFS-2020-0031-DRAFT-10638
NOAA-NMFS-2020-0031-DRAFT-10639
NOAA-NMFS-2020-0031-DRAFT-10640
NOAA-NMFS-2020-0031-DRAFT-10641
NOAA-NMFS-2020-0031-DRAFT-10642
NOAA-NMFS-2020-0031-DRAFT-10643
NOAA-NMFS-2020-0031-DRAFT-10644
NOAA-NMFS-2020-0031-DRAFT-10645
NOAA-NMFS-2020-0031-DRAFT-10646
NOAA-NMFS-2020-0031-DRAFT-10647
NOAA-NMFS-2020-0031-DRAFT-10648
NOAA-NMFS-2020-0031-DRAFT-10649
NOAA-NMFS-2020-0031-DRAFT-10650
NOAA-NMFS-2020-0031-DRAFT-10651
NOAA-NMFS-2020-0031-DRAFT-10652
NOAA-NMFS-2020-0031-DRAFT-10653
NOAA-NMFS-2020-0031-DRAFT-10654
NOAA-NMFS-2020-0031-DRAFT-10655
NOAA-NMFS-2020-0031-DRAFT-10656
NOAA-NMFS-2020-0031-DRAFT-10657

Comment from William Cromwick
Comment from Cyndi Clough
Comment from Margaret Philhower
Comment from p Marks
Comment from Cheryl Carnahan
Comment from Francis Groff
Comment from Mark Coates
Comment from E. Darby
Comment from Monica Wiesener
Comment from Deborah Gandolfo
Comment from Phoenix Giffen
Comment from Richard Pavek
Comment from Christa Neuber
Comment from Kathleen Cridge
Comment from Laurel Tucker
Comment from George Baschiera
Comment from Bob Hannigan
Comment from Robert Auger
Comment from Gloria Morrison
Comment from Irene Bucko
Comment from Evangeline Tarver
Comment from maryan infield
Comment from LAURA ARIAS
Comment from Kathleen Casson
Comment from Sharon Sullivan
Comment from Theresa Deery
Comment from Rebecca Bralek
Comment from Wilcox Kenneth
Comment from Sue Ochs
Comment from Herbert Lord
Comment from Bonnie Elconin
Comment from Cathy Holden
Comment from Patricia Mctigue
Comment from Marilyn Guterman
Comment from Robert English
Comment from Jamie Reifman
Comment from Valerie Charbonneau
Comment from Samantha Gill
Comment from Terry Jess
Comment from lyn mont
Comment from Robert Mitchell

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15773
NOAA-NMFS-2020-0031-DRAFT-15774
NOAA-NMFS-2020-0031-DRAFT-15775
NOAA-NMFS-2020-0031-DRAFT-15776
NOAA-NMFS-2020-0031-DRAFT-15777
NOAA-NMFS-2020-0031-DRAFT-15778
NOAA-NMFS-2020-0031-DRAFT-15779
NOAA-NMFS-2020-0031-DRAFT-15780
NOAA-NMFS-2020-0031-DRAFT-15781
NOAA-NMFS-2020-0031-DRAFT-15782
NOAA-NMFS-2020-0031-DRAFT-15783
NOAA-NMFS-2020-0031-DRAFT-15784
NOAA-NMFS-2020-0031-DRAFT-15785
NOAA-NMFS-2020-0031-DRAFT-15786
NOAA-NMFS-2020-0031-DRAFT-15787
NOAA-NMFS-2020-0031-DRAFT-15788
NOAA-NMFS-2020-0031-DRAFT-15789
NOAA-NMFS-2020-0031-DRAFT-15790
NOAA-NMFS-2020-0031-DRAFT-15791
NOAA-NMFS-2020-0031-DRAFT-15792
NOAA-NMFS-2020-0031-DRAFT-15793
NOAA-NMFS-2020-0031-DRAFT-15794
NOAA-NMFS-2020-0031-DRAFT-15795
NOAA-NMFS-2020-0031-DRAFT-15796
NOAA-NMFS-2020-0031-DRAFT-15797
NOAA-NMFS-2020-0031-DRAFT-15798
NOAA-NMFS-2020-0031-DRAFT-15799
NOAA-NMFS-2020-0031-DRAFT-15800
NOAA-NMFS-2020-0031-DRAFT-15801
NOAA-NMFS-2020-0031-DRAFT-15802
NOAA-NMFS-2020-0031-DRAFT-15803
NOAA-NMFS-2020-0031-DRAFT-15804
NOAA-NMFS-2020-0031-DRAFT-15805
NOAA-NMFS-2020-0031-DRAFT-15806
NOAA-NMFS-2020-0031-DRAFT-15807
NOAA-NMFS-2020-0031-DRAFT-15808
NOAA-NMFS-2020-0031-DRAFT-15809
NOAA-NMFS-2020-0031-DRAFT-15810
NOAA-NMFS-2020-0031-DRAFT-15811
NOAA-NMFS-2020-0031-DRAFT-15812
NOAA-NMFS-2020-0031-DRAFT-15813

Comment from Patti Pimento
Comment from Paula Hensel
Comment from Vanyoska gee
Comment from Marianne Gooding
Comment from Douglas Spring
Comment from Bettie Molenkamp
Comment from Pauletta Borew
Comment from Julia Cranmer
Comment from Sara Fitzsimmons
Comment from Susan Lantow
Comment from Patricia Chambers
Comment from Olivia Bergner
Comment from Flo Fender
Comment from Robert Irwin
Comment from Iwona Stefanska
Comment from Emily Sagovac
Comment from Anne Huibregtse
Comment from Maureen Wasley
Comment from Pat Lang
Comment from Angela Steinberg
Comment from Virginia Mendez
Comment from Jennifer Loch
Comment from Donna Selquist
Comment from Kathryn Kushman
Comment from Kortney Lillestrand
Comment from Laura Benge
Comment from Kim Tharington
Comment from Patricia Savage
Comment from Carol Knight Watson
Comment from Jessica Hollander
Comment from Susan Ford
Comment from Mary Jo Giudice Bowler
Comment from Lauren McCarthy
Comment from Judith Edwards
Comment from Jennifer Pies
Comment from Eva Rohr
Comment from Doris Luther
Comment from Paul Eisenberg
Comment from Jaye Trottier
Comment from Taylor Reed
Comment from michelle mitchell

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10658
NOAA-NMFS-2020-0031-DRAFT-10659
NOAA-NMFS-2020-0031-DRAFT-10660
NOAA-NMFS-2020-0031-DRAFT-10661
NOAA-NMFS-2020-0031-DRAFT-10662
NOAA-NMFS-2020-0031-DRAFT-10663
NOAA-NMFS-2020-0031-DRAFT-10664
NOAA-NMFS-2020-0031-DRAFT-10665
NOAA-NMFS-2020-0031-DRAFT-10666
NOAA-NMFS-2020-0031-DRAFT-10667
NOAA-NMFS-2020-0031-DRAFT-10668
NOAA-NMFS-2020-0031-DRAFT-10669
NOAA-NMFS-2020-0031-DRAFT-10670
NOAA-NMFS-2020-0031-DRAFT-10671
NOAA-NMFS-2020-0031-DRAFT-10672
NOAA-NMFS-2020-0031-DRAFT-10673
NOAA-NMFS-2020-0031-DRAFT-10674
NOAA-NMFS-2020-0031-DRAFT-10675
NOAA-NMFS-2020-0031-DRAFT-10676
NOAA-NMFS-2020-0031-DRAFT-10677
NOAA-NMFS-2020-0031-DRAFT-10678
NOAA-NMFS-2020-0031-DRAFT-10679
NOAA-NMFS-2020-0031-DRAFT-10680
NOAA-NMFS-2020-0031-DRAFT-10681
NOAA-NMFS-2020-0031-DRAFT-10682
NOAA-NMFS-2020-0031-DRAFT-10683
NOAA-NMFS-2020-0031-DRAFT-10684
NOAA-NMFS-2020-0031-DRAFT-10685
NOAA-NMFS-2020-0031-DRAFT-10686
NOAA-NMFS-2020-0031-DRAFT-10687
NOAA-NMFS-2020-0031-DRAFT-10688
NOAA-NMFS-2020-0031-DRAFT-10689
NOAA-NMFS-2020-0031-DRAFT-10690
NOAA-NMFS-2020-0031-DRAFT-10691
NOAA-NMFS-2020-0031-DRAFT-10692
NOAA-NMFS-2020-0031-DRAFT-10693
NOAA-NMFS-2020-0031-DRAFT-10694
NOAA-NMFS-2020-0031-DRAFT-10695
NOAA-NMFS-2020-0031-DRAFT-10696
NOAA-NMFS-2020-0031-DRAFT-10697
NOAA-NMFS-2020-0031-DRAFT-10698

Comment from Linda Hendrix
Comment from Andrews Fortenberry
Comment from Leslie Kuhn
Comment from Margaret Sharp
Comment from Stewart Wilber
Comment from Deborah Crosset
Comment from Shelly Scott
Comment from david bradbury
Comment from nan matthews
Comment from Eleanor Beram
Comment from Cathy Nieman
Comment from Dianna Holland
Comment from Brenda Smith
Comment from John Mora
Comment from marta cramer
Comment from Ted Cheeseman
Comment from MICHAEL SCHUMM
Comment from Patrick Doyle
Comment from Felice Mark
Comment from Blaine Converse
Comment from Scott Kennedy
Comment from Mark Fields
Comment from Christy Dunn
Comment from Laura Long
Comment from Tom Pipal
Comment from Naomi Zurcher
Comment from Michael Balsai
Comment from Olive De Andrade
Comment from sherrri hodges
Comment from Josh e
Comment from Melissa Bryan
Comment from Sarah Hearon
Comment from Walter Bock
Comment from Debbie Schlenoff
Comment from Natalia Laisure
Comment from Marilyn Berling
Comment from Suzanne Kunstman
Comment from Janice Farry-Menke
Comment from Allison Mielniczuk
Comment from Susan Lambert
Comment from Mark van Rossen

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15814
NOAA-NMFS-2020-0031-DRAFT-15815
NOAA-NMFS-2020-0031-DRAFT-15816
NOAA-NMFS-2020-0031-DRAFT-15817
NOAA-NMFS-2020-0031-DRAFT-15818
NOAA-NMFS-2020-0031-DRAFT-15819
NOAA-NMFS-2020-0031-DRAFT-15820
NOAA-NMFS-2020-0031-DRAFT-15821
NOAA-NMFS-2020-0031-DRAFT-15822
NOAA-NMFS-2020-0031-DRAFT-15823
NOAA-NMFS-2020-0031-DRAFT-15824
NOAA-NMFS-2020-0031-DRAFT-15825
NOAA-NMFS-2020-0031-DRAFT-15826
NOAA-NMFS-2020-0031-DRAFT-15827
NOAA-NMFS-2020-0031-DRAFT-15829
NOAA-NMFS-2020-0031-DRAFT-15830
NOAA-NMFS-2020-0031-DRAFT-15831
NOAA-NMFS-2020-0031-DRAFT-15832
NOAA-NMFS-2020-0031-DRAFT-15833
NOAA-NMFS-2020-0031-DRAFT-15834
NOAA-NMFS-2020-0031-DRAFT-15835
NOAA-NMFS-2020-0031-DRAFT-15836
NOAA-NMFS-2020-0031-DRAFT-15837
NOAA-NMFS-2020-0031-DRAFT-15838
NOAA-NMFS-2020-0031-DRAFT-15839
NOAA-NMFS-2020-0031-DRAFT-15840
NOAA-NMFS-2020-0031-DRAFT-15841
NOAA-NMFS-2020-0031-DRAFT-15842
NOAA-NMFS-2020-0031-DRAFT-15843
NOAA-NMFS-2020-0031-DRAFT-15844
NOAA-NMFS-2020-0031-DRAFT-15845
NOAA-NMFS-2020-0031-DRAFT-15846
NOAA-NMFS-2020-0031-DRAFT-15847
NOAA-NMFS-2020-0031-DRAFT-15848
NOAA-NMFS-2020-0031-DRAFT-15849
NOAA-NMFS-2020-0031-DRAFT-15850
NOAA-NMFS-2020-0031-DRAFT-15851
NOAA-NMFS-2020-0031-DRAFT-15852
NOAA-NMFS-2020-0031-DRAFT-15853
NOAA-NMFS-2020-0031-DRAFT-15855
NOAA-NMFS-2020-0031-DRAFT-15856

Comment from Derinda Nilsson
Comment from Carol Haines
Comment from Candice Mahki
Comment from Karen van Es
Comment from Ausra Dwyer
Comment from Susan Benavidez
Comment from Deborah Gandolfo
Comment from Joan Andersson
Comment from Arica Whiteman
Comment from Kristen Bossert
Comment from Lucia DePretto
Comment from Kevin Rodriguez
Comment from Drorit Erickson
Comment from Marilyn Mooshie
Comment from pinkyjain pan
Comment from Ashley Lewis
Comment from Teresa Woods
Comment from Kristin Green
Comment from Paulette Furnia
Comment from Penny Lambrianos
Comment from Lori Fitzgerald
Comment from Robina Smith
Comment from Mary Variola
Comment from Hiroshi Suzuki
Comment from Jennifer Fisher
Comment from Jerry Napom
Comment from Marta Overpeck
McCracken
Comment from Elena Starr
Comment from Gregory Knapik
Comment from Patti Sobecke
Comment from Susan Carter
Comment from Jill Dione
Comment from Frances Saykaly
Comment from Susanne Weil
Comment from Kirk Rhoads
Comment from Carla Durkin
Comment from Jon Martell
Comment from kathy knapik
Comment from Lory Ono
Comment from donna esposito
Comment from Pamela Spears

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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10699
NOAA-NMFS-2020-0031-DRAFT-10700
NOAA-NMFS-2020-0031-DRAFT-10701
NOAA-NMFS-2020-0031-DRAFT-10702
NOAA-NMFS-2020-0031-DRAFT-10703
NOAA-NMFS-2020-0031-DRAFT-10704
NOAA-NMFS-2020-0031-DRAFT-10705
NOAA-NMFS-2020-0031-DRAFT-10706
NOAA-NMFS-2020-0031-DRAFT-10707
NOAA-NMFS-2020-0031-DRAFT-10708
NOAA-NMFS-2020-0031-DRAFT-10709
NOAA-NMFS-2020-0031-DRAFT-10710
NOAA-NMFS-2020-0031-DRAFT-10711
NOAA-NMFS-2020-0031-DRAFT-10712
NOAA-NMFS-2020-0031-DRAFT-10713
NOAA-NMFS-2020-0031-DRAFT-10714
NOAA-NMFS-2020-0031-DRAFT-10715
NOAA-NMFS-2020-0031-DRAFT-10716
NOAA-NMFS-2020-0031-DRAFT-10717
NOAA-NMFS-2020-0031-DRAFT-10718
NOAA-NMFS-2020-0031-DRAFT-10719
NOAA-NMFS-2020-0031-DRAFT-10720
NOAA-NMFS-2020-0031-DRAFT-10721
NOAA-NMFS-2020-0031-DRAFT-10722
NOAA-NMFS-2020-0031-DRAFT-10723
NOAA-NMFS-2020-0031-DRAFT-10724
NOAA-NMFS-2020-0031-DRAFT-10725
NOAA-NMFS-2020-0031-DRAFT-10726
NOAA-NMFS-2020-0031-DRAFT-10727
NOAA-NMFS-2020-0031-DRAFT-10728
NOAA-NMFS-2020-0031-DRAFT-10729
NOAA-NMFS-2020-0031-DRAFT-10730
NOAA-NMFS-2020-0031-DRAFT-10731
NOAA-NMFS-2020-0031-DRAFT-10732
NOAA-NMFS-2020-0031-DRAFT-10733
NOAA-NMFS-2020-0031-DRAFT-10734
NOAA-NMFS-2020-0031-DRAFT-10735
NOAA-NMFS-2020-0031-DRAFT-10736
NOAA-NMFS-2020-0031-DRAFT-10737
NOAA-NMFS-2020-0031-DRAFT-10738
NOAA-NMFS-2020-0031-DRAFT-10739

Comment from Christina Pasillas
Comment from Lourdes Guzman
Comment from Karen Colbourn
Comment from Jennifer Duffy
Comment from Dave Potter
Comment from Kay Allen
Comment from Robin Steeves
Comment from Robert Kolesnik
Comment from Amy Delaney
Comment from David Middleton
Comment from Susan McRae
Comment from riccardo liotta
Comment from Robert Mark
Comment from Samuel Aley
Comment from Hurd Hess
Comment from Michael Barnes
Comment from Mary Epatko
Comment from susan foley
Comment from Michelle Allison
Comment from Beverly Webman
Comment from Jennifer Abernathy
Comment from Wayne Steffes
Comment from L.L. Kauffman
Comment from Teresa Quinn
Comment from Kathy Crist
Comment from Lori Surmay
Comment from Richard Stehlik
Comment from Felena Puentes
Comment from David Ross
Comment from Constance Graham
Comment from Victoria Laird
Comment from Douglas McCormick
Comment from Patrick Craig
Comment from elaine sloan
Comment from Mary Parodi
Comment from Andrew Reilly
Comment from Bonnie Gorman
Comment from Stephanie Green
Comment from Zoe Strassfield
Comment from Lanna Ultican
Comment from elaine sloan

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15857
NOAA-NMFS-2020-0031-DRAFT-15858
NOAA-NMFS-2020-0031-DRAFT-15859
NOAA-NMFS-2020-0031-DRAFT-15860
NOAA-NMFS-2020-0031-DRAFT-15861
NOAA-NMFS-2020-0031-DRAFT-15862
NOAA-NMFS-2020-0031-DRAFT-15863
NOAA-NMFS-2020-0031-DRAFT-15864
NOAA-NMFS-2020-0031-DRAFT-15865
NOAA-NMFS-2020-0031-DRAFT-15866
NOAA-NMFS-2020-0031-DRAFT-15867
NOAA-NMFS-2020-0031-DRAFT-15868
NOAA-NMFS-2020-0031-DRAFT-15869
NOAA-NMFS-2020-0031-DRAFT-15870
NOAA-NMFS-2020-0031-DRAFT-15871
NOAA-NMFS-2020-0031-DRAFT-15872
NOAA-NMFS-2020-0031-DRAFT-15873
NOAA-NMFS-2020-0031-DRAFT-15874
NOAA-NMFS-2020-0031-DRAFT-15875
NOAA-NMFS-2020-0031-DRAFT-15876
NOAA-NMFS-2020-0031-DRAFT-15877
NOAA-NMFS-2020-0031-DRAFT-15878
NOAA-NMFS-2020-0031-DRAFT-15879
NOAA-NMFS-2020-0031-DRAFT-15880
NOAA-NMFS-2020-0031-DRAFT-15881
NOAA-NMFS-2020-0031-DRAFT-15882
NOAA-NMFS-2020-0031-DRAFT-15883
NOAA-NMFS-2020-0031-DRAFT-15885
NOAA-NMFS-2020-0031-DRAFT-15886
NOAA-NMFS-2020-0031-DRAFT-15887
NOAA-NMFS-2020-0031-DRAFT-15888
NOAA-NMFS-2020-0031-DRAFT-15889
NOAA-NMFS-2020-0031-DRAFT-15890
NOAA-NMFS-2020-0031-DRAFT-15891
NOAA-NMFS-2020-0031-DRAFT-15892
NOAA-NMFS-2020-0031-DRAFT-15893
NOAA-NMFS-2020-0031-DRAFT-15894
NOAA-NMFS-2020-0031-DRAFT-15895
NOAA-NMFS-2020-0031-DRAFT-15896
NOAA-NMFS-2020-0031-DRAFT-15897
NOAA-NMFS-2020-0031-DRAFT-15898

Comment from Pamela Noyes
Comment from Donna Myers
Comment from Jo Ann Randolph
Comment from Bronwen Evans
Comment from Barbara Bivona
Comment from Ellen Singer
Comment from Brooke Coln
Comment from Tim Pendergast
Comment from Janeene Porcher
Comment from Randy Harrison
Comment from Barry Flaherty
Comment from Barbara Sondra Levine
Comment from Eric Yurkanin
Comment from Colene Flaherty
Comment from Silvia Rocha
Comment from Caroline Kirsch
Comment from Michelle Billadeau
Comment from Patty Raines
Comment from Christine Badura
Comment from Deborah Gambone
Comment from Joan Roberts
Comment from Denise Carey Costa
Comment from Dean Butts
Comment from Barbara Schallmo
Comment from John Hila
Comment from Lisa Pisano
Comment from Carol Taggart
Comment from Sally Rosenman
Comment from pam zimmerman
Comment from Tracy Pellonari
Comment from Michelle Wilson
Comment from Jacqueline Aikin
Comment from Dave Frank
Comment from Ninette Nielsen
Comment from Linda Williams
Comment from Jennifer Rier
Comment from Jessica Mitchell Shihabi
Comment from Stephanie Stilwell
Comment from Brandi Adams
Comment from Carole Smudin
Comment from Rick Sanchez

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10740
NOAA-NMFS-2020-0031-DRAFT-10741
NOAA-NMFS-2020-0031-DRAFT-10742
NOAA-NMFS-2020-0031-DRAFT-10743
NOAA-NMFS-2020-0031-DRAFT-10744
NOAA-NMFS-2020-0031-DRAFT-10745
NOAA-NMFS-2020-0031-DRAFT-10746
NOAA-NMFS-2020-0031-DRAFT-10747
NOAA-NMFS-2020-0031-DRAFT-10748
NOAA-NMFS-2020-0031-DRAFT-10749
NOAA-NMFS-2020-0031-DRAFT-10750
NOAA-NMFS-2020-0031-DRAFT-10751
NOAA-NMFS-2020-0031-DRAFT-10752
NOAA-NMFS-2020-0031-DRAFT-10753
NOAA-NMFS-2020-0031-DRAFT-10754
NOAA-NMFS-2020-0031-DRAFT-10755
NOAA-NMFS-2020-0031-DRAFT-10756
NOAA-NMFS-2020-0031-DRAFT-10757
NOAA-NMFS-2020-0031-DRAFT-10758
NOAA-NMFS-2020-0031-DRAFT-10759
NOAA-NMFS-2020-0031-DRAFT-10760
NOAA-NMFS-2020-0031-DRAFT-10761
NOAA-NMFS-2020-0031-DRAFT-10762
NOAA-NMFS-2020-0031-DRAFT-10763
NOAA-NMFS-2020-0031-DRAFT-10764
NOAA-NMFS-2020-0031-DRAFT-10765
NOAA-NMFS-2020-0031-DRAFT-10766
NOAA-NMFS-2020-0031-DRAFT-10767
NOAA-NMFS-2020-0031-DRAFT-10768
NOAA-NMFS-2020-0031-DRAFT-10769
NOAA-NMFS-2020-0031-DRAFT-10770
NOAA-NMFS-2020-0031-DRAFT-10771
NOAA-NMFS-2020-0031-DRAFT-10772
NOAA-NMFS-2020-0031-DRAFT-10773
NOAA-NMFS-2020-0031-DRAFT-10774
NOAA-NMFS-2020-0031-DRAFT-10775
NOAA-NMFS-2020-0031-DRAFT-10776
NOAA-NMFS-2020-0031-DRAFT-10777
NOAA-NMFS-2020-0031-DRAFT-10778
NOAA-NMFS-2020-0031-DRAFT-10779
NOAA-NMFS-2020-0031-DRAFT-10780

Comment from RICHARD KETTYLE
Comment from Jini Fisher
Comment from Linda Evinger
Comment from Don Dudan
Comment from lowell abellon
Comment from Zachary Bryson
Comment from laura braggiotti
Comment from Sharon Hobrock
Comment from Nancy Petersen
Comment from Peggy Jakopak
Comment from Gail Atkins
Comment from Tom Nash
Comment from JULANNA BENEFIELD
Comment from Tonya Edgington
Comment from Frank Rouse
Comment from Alexander Koning
Comment from Ellen Kabat
Comment from Stefanie Kaku
Comment from Sandy Stuhaan
Comment from James Small
Comment from Martha McNamee
Comment from John Weber
Comment from Sharon Graham
Comment from William Forbes
Comment from Don Codding
Comment from Alejandra Parapar
Comment from William Barnes
Comment from Peter Hennessy
Comment from Angela Zellner
Comment from Randy Davis
Comment from Gavin Kramer
Comment from Tracy Ouellette
Comment from Andrew Kearney
Comment from Victoria Silver
Comment from Sandra Sweetwood
Comment from Ralph Lopez
Comment from Lillian Santana
Comment from Mary Davenport
Comment from alicia jackson
Comment from John Teevan
Comment from Richard Fehr

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15899
NOAA-NMFS-2020-0031-DRAFT-15900
NOAA-NMFS-2020-0031-DRAFT-15901
NOAA-NMFS-2020-0031-DRAFT-15902
NOAA-NMFS-2020-0031-DRAFT-15903
NOAA-NMFS-2020-0031-DRAFT-15904
NOAA-NMFS-2020-0031-DRAFT-15905
NOAA-NMFS-2020-0031-DRAFT-15906
NOAA-NMFS-2020-0031-DRAFT-15907
NOAA-NMFS-2020-0031-DRAFT-15908
NOAA-NMFS-2020-0031-DRAFT-15909
NOAA-NMFS-2020-0031-DRAFT-15910
NOAA-NMFS-2020-0031-DRAFT-15912
NOAA-NMFS-2020-0031-DRAFT-15913
NOAA-NMFS-2020-0031-DRAFT-15914
NOAA-NMFS-2020-0031-DRAFT-15915
NOAA-NMFS-2020-0031-DRAFT-15916
NOAA-NMFS-2020-0031-DRAFT-15917
NOAA-NMFS-2020-0031-DRAFT-15918
NOAA-NMFS-2020-0031-DRAFT-15919
NOAA-NMFS-2020-0031-DRAFT-15920
NOAA-NMFS-2020-0031-DRAFT-15921
NOAA-NMFS-2020-0031-DRAFT-15922
NOAA-NMFS-2020-0031-DRAFT-15923
NOAA-NMFS-2020-0031-DRAFT-15924
NOAA-NMFS-2020-0031-DRAFT-15925
NOAA-NMFS-2020-0031-DRAFT-15926
NOAA-NMFS-2020-0031-DRAFT-15927
NOAA-NMFS-2020-0031-DRAFT-15928
NOAA-NMFS-2020-0031-DRAFT-15929
NOAA-NMFS-2020-0031-DRAFT-15930
NOAA-NMFS-2020-0031-DRAFT-15931
NOAA-NMFS-2020-0031-DRAFT-15932
NOAA-NMFS-2020-0031-DRAFT-15933
NOAA-NMFS-2020-0031-DRAFT-15934
NOAA-NMFS-2020-0031-DRAFT-15935
NOAA-NMFS-2020-0031-DRAFT-15937
NOAA-NMFS-2020-0031-DRAFT-15938
NOAA-NMFS-2020-0031-DRAFT-15939
NOAA-NMFS-2020-0031-DRAFT-15940
NOAA-NMFS-2020-0031-DRAFT-15941

Comment from JOANN PICHIARELLO
Comment from Shirlene Harris
Comment from Andrea Decker
Comment from Amanda Young
Comment from Joan Rossignol
Comment from Rebecca Gagliano
Comment from Tami Hillman
Comment from Heather Decker
Comment from Mary Barbezat
Comment from Nimia Reyes
Comment from Tracey Dellinger
Comment from WILLIAM DYLEWSKY
Comment from Katusha Colombier
Comment from Maggie Paren
Comment from Tonia Neal
Comment from Rebecca Oberlin
Comment from Dolores Mackenzie
Comment from Patricia Cummings
Comment from Marshall McCorkle
Comment from Lisa Hammermeister
Comment from Jane Ory
Comment from Norma Anthony
Comment from Ryan Hanson
Comment from Elaine Benvenuto
Comment from Larry Grunspan
Comment from Karen Dennen
Comment from Laura DeGrace
Comment from Georgia Brewer
Comment from Caryl McIntire Edwards
Comment from Vicky Miller
Comment from Elizabeth Davis
Comment from James Hartley
Comment from Randi Vincent
Comment from Nancy Juskowich
Comment from Evelyn Missey
Comment from Cara Shea
Comment from Julie Clare
Comment from ann schnaidt
Comment from Mary Cooney
Comment from Mary Flynn
Comment from Eric Edwards

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02/09/2021
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02/09/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10781
NOAA-NMFS-2020-0031-DRAFT-10782
NOAA-NMFS-2020-0031-DRAFT-10783
NOAA-NMFS-2020-0031-DRAFT-10784
NOAA-NMFS-2020-0031-DRAFT-10785
NOAA-NMFS-2020-0031-DRAFT-10786
NOAA-NMFS-2020-0031-DRAFT-10787
NOAA-NMFS-2020-0031-DRAFT-10788
NOAA-NMFS-2020-0031-DRAFT-10789
NOAA-NMFS-2020-0031-DRAFT-10790
NOAA-NMFS-2020-0031-DRAFT-10791
NOAA-NMFS-2020-0031-DRAFT-10792
NOAA-NMFS-2020-0031-DRAFT-10793
NOAA-NMFS-2020-0031-DRAFT-10794
NOAA-NMFS-2020-0031-DRAFT-10795
NOAA-NMFS-2020-0031-DRAFT-10796
NOAA-NMFS-2020-0031-DRAFT-10797
NOAA-NMFS-2020-0031-DRAFT-10798
NOAA-NMFS-2020-0031-DRAFT-10799
NOAA-NMFS-2020-0031-DRAFT-10800
NOAA-NMFS-2020-0031-DRAFT-10801
NOAA-NMFS-2020-0031-DRAFT-10802
NOAA-NMFS-2020-0031-DRAFT-10803
NOAA-NMFS-2020-0031-DRAFT-10804
NOAA-NMFS-2020-0031-DRAFT-10805
NOAA-NMFS-2020-0031-DRAFT-10806
NOAA-NMFS-2020-0031-DRAFT-10807
NOAA-NMFS-2020-0031-DRAFT-10808
NOAA-NMFS-2020-0031-DRAFT-10809
NOAA-NMFS-2020-0031-DRAFT-10810
NOAA-NMFS-2020-0031-DRAFT-10811
NOAA-NMFS-2020-0031-DRAFT-10812
NOAA-NMFS-2020-0031-DRAFT-10813
NOAA-NMFS-2020-0031-DRAFT-10814
NOAA-NMFS-2020-0031-DRAFT-10815
NOAA-NMFS-2020-0031-DRAFT-10816
NOAA-NMFS-2020-0031-DRAFT-10817
NOAA-NMFS-2020-0031-DRAFT-10818
NOAA-NMFS-2020-0031-DRAFT-10819
NOAA-NMFS-2020-0031-DRAFT-10820
NOAA-NMFS-2020-0031-DRAFT-10821

Comment from Maryann Kauffman
Comment from Dennis Hough
Comment from Janice Holkup
Comment from Chemen Ochoa
Comment from Joyce Coombs
Comment from Karl Kernehan
Comment from John Eckler
Comment from Andy Tomsky
Comment from Kathryn Christian
Comment from Jane Gulley
Comment from Nikola zegarac
Comment from Glenn Hufnagel
Comment from Rochelle La Frinere
Comment from Rumeysa Kusdogan
Comment from Macey Mott
Comment from Theodore Snyder
Comment from Elizabeth Walton
Comment from Michelle McKenney
Comment from Michael Freedman
Comment from Mary Gomez
Comment from Susan Catherwood
Comment from Char Hersh
Comment from David Brockett
Comment from Mary Day
Comment from Jeanne Held-Warmkessel
Comment from ROBERT NERGER
Comment from Susanne Richey
Comment from Laraine Turk
Comment from Janis Millu
Comment from Henry Goff
Comment from Steve Gould
Comment from Cherine Bauer
Comment from Mary Curro
Comment from jeremy fryberger
Comment from Cindy Charnetski
Comment from joan peaslee
Comment from Alan Harper
Comment from Christine Gasco
Comment from Maureen Gwynn
Comment from T Thompson
Comment from Amy Kiba

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15942
NOAA-NMFS-2020-0031-DRAFT-15943
NOAA-NMFS-2020-0031-DRAFT-15945
NOAA-NMFS-2020-0031-DRAFT-15946
NOAA-NMFS-2020-0031-DRAFT-15947
NOAA-NMFS-2020-0031-DRAFT-15948
NOAA-NMFS-2020-0031-DRAFT-15949
NOAA-NMFS-2020-0031-DRAFT-15951
NOAA-NMFS-2020-0031-DRAFT-15952
NOAA-NMFS-2020-0031-DRAFT-15953
NOAA-NMFS-2020-0031-DRAFT-15954
NOAA-NMFS-2020-0031-DRAFT-15955
NOAA-NMFS-2020-0031-DRAFT-15956
NOAA-NMFS-2020-0031-DRAFT-15957
NOAA-NMFS-2020-0031-DRAFT-15958
NOAA-NMFS-2020-0031-DRAFT-15959
NOAA-NMFS-2020-0031-DRAFT-15960
NOAA-NMFS-2020-0031-DRAFT-15961
NOAA-NMFS-2020-0031-DRAFT-15962
NOAA-NMFS-2020-0031-DRAFT-15963
NOAA-NMFS-2020-0031-DRAFT-15964
NOAA-NMFS-2020-0031-DRAFT-15965
NOAA-NMFS-2020-0031-DRAFT-15966
NOAA-NMFS-2020-0031-DRAFT-15967
NOAA-NMFS-2020-0031-DRAFT-15968
NOAA-NMFS-2020-0031-DRAFT-15969
NOAA-NMFS-2020-0031-DRAFT-15970
NOAA-NMFS-2020-0031-DRAFT-15971
NOAA-NMFS-2020-0031-DRAFT-15972
NOAA-NMFS-2020-0031-DRAFT-15973
NOAA-NMFS-2020-0031-DRAFT-15974
NOAA-NMFS-2020-0031-DRAFT-15975
NOAA-NMFS-2020-0031-DRAFT-15976
NOAA-NMFS-2020-0031-DRAFT-15977
NOAA-NMFS-2020-0031-DRAFT-15978
NOAA-NMFS-2020-0031-DRAFT-15979
NOAA-NMFS-2020-0031-DRAFT-15980
NOAA-NMFS-2020-0031-DRAFT-15981
NOAA-NMFS-2020-0031-DRAFT-15982
NOAA-NMFS-2020-0031-DRAFT-15983
NOAA-NMFS-2020-0031-DRAFT-15984

Comment from Jena Hammel
Comment from Katherine Hutchins
Comment from Shannon Nall
Comment from David Snutes
Comment from Sheryl Benning
Comment from Peter Townsend
Comment from Peri Doubleday
Comment from Susannah Phillips
Comment from Joe M Rivera
Comment from Victor Castellanos
Comment from Lisa May Reynolds
Comment from Linda Detels
Comment from Penny Mackenzie
Comment from Melissa Cleaver
Comment from Nancy L Reynolds
Comment from Kathleen Lovan
Comment from Charles Ray
Comment from Brittney Rice
Comment from Liz Field
Comment from Lisa Gee
Comment from Marie Ange Berchem
Comment from Sandra Naidich
Comment from Jud Woodard
Comment from Steve Gross
Comment from Kimberly Derwent
Comment from Nancy VARIN
Comment from Brent Tucker
Comment from Joyce McDonnell
Comment from Peter Sayre
Comment from Joanne Adamis
Comment from Tim Midboe
Comment from Donna O'Berry
Comment from Nancy Tucker
Comment from Eric Piccolo
Comment from John Lamb
Comment from Lisa Lundberg
Comment from Carol Murray
Comment from LINDA STARR
Comment from Mary Mallas
Comment from Helen Manchester
Comment from Tina Durakov

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10822
NOAA-NMFS-2020-0031-DRAFT-10823
NOAA-NMFS-2020-0031-DRAFT-10824
NOAA-NMFS-2020-0031-DRAFT-10825
NOAA-NMFS-2020-0031-DRAFT-10826
NOAA-NMFS-2020-0031-DRAFT-10827
NOAA-NMFS-2020-0031-DRAFT-10828
NOAA-NMFS-2020-0031-DRAFT-10829
NOAA-NMFS-2020-0031-DRAFT-10830
NOAA-NMFS-2020-0031-DRAFT-10831
NOAA-NMFS-2020-0031-DRAFT-10832
NOAA-NMFS-2020-0031-DRAFT-10833
NOAA-NMFS-2020-0031-DRAFT-10834
NOAA-NMFS-2020-0031-DRAFT-10835
NOAA-NMFS-2020-0031-DRAFT-10836
NOAA-NMFS-2020-0031-DRAFT-10837
NOAA-NMFS-2020-0031-DRAFT-10838
NOAA-NMFS-2020-0031-DRAFT-10839
NOAA-NMFS-2020-0031-DRAFT-10840
NOAA-NMFS-2020-0031-DRAFT-10841
NOAA-NMFS-2020-0031-DRAFT-10842
NOAA-NMFS-2020-0031-DRAFT-10843
NOAA-NMFS-2020-0031-DRAFT-10844
NOAA-NMFS-2020-0031-DRAFT-10845
NOAA-NMFS-2020-0031-DRAFT-10847
NOAA-NMFS-2020-0031-DRAFT-10848
NOAA-NMFS-2020-0031-DRAFT-10849
NOAA-NMFS-2020-0031-DRAFT-10850
NOAA-NMFS-2020-0031-DRAFT-10851
NOAA-NMFS-2020-0031-DRAFT-10852
NOAA-NMFS-2020-0031-DRAFT-10853
NOAA-NMFS-2020-0031-DRAFT-10854
NOAA-NMFS-2020-0031-DRAFT-10855
NOAA-NMFS-2020-0031-DRAFT-10856
NOAA-NMFS-2020-0031-DRAFT-10857
NOAA-NMFS-2020-0031-DRAFT-10858
NOAA-NMFS-2020-0031-DRAFT-10859
NOAA-NMFS-2020-0031-DRAFT-10860
NOAA-NMFS-2020-0031-DRAFT-10861
NOAA-NMFS-2020-0031-DRAFT-10862
NOAA-NMFS-2020-0031-DRAFT-10863

Comment from Scott Barlow
Comment from Kent Smith
Comment from Roberta Glaze
Comment from Georgeta Burca
Comment from Pamela Emery
Comment from Rev. Costanzo
Comment from Christie Ruppel
Comment from jon mocey-hanton
Comment from Jocelin Newhouse
Comment from Cynthia McFall
Comment from Annapoorne Colangelo
Comment from Jill Robison
Comment from Julie Berberi
Comment from Susan Schneeberger
Comment from Terry Pyle
Comment from Ed Zych
Comment from Gloria Diggle
Comment from Dwight Fellman
Comment from Bradley Colden
Comment from Michael McMahan
Comment from Thaddeus Zajdowicz
Comment from wenda williamson
Comment from Miriam Harlan
Comment from Tom Tripp
Comment from Meredith Kent-Berman
Comment from Brandon W
Comment from Kathleen Lewis
Comment from Evan McDermit
Comment from Diane Loughbom
Comment from Victoria Groshong
Comment from Roger Walter
Comment from Jared Cornelia
Comment from Lou-Anne Amberg
Comment from Prem Mulberry
Comment from Jenna Harris
Comment from Ken Rosen
Comment from robin anderson
Comment from Dennis Ledden
Comment from Katherine Hsu
Comment from Lorenz Steininger
Comment from Joe Racine

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15985
NOAA-NMFS-2020-0031-DRAFT-15986
NOAA-NMFS-2020-0031-DRAFT-15987
NOAA-NMFS-2020-0031-DRAFT-15988
NOAA-NMFS-2020-0031-DRAFT-15989
NOAA-NMFS-2020-0031-DRAFT-15990
NOAA-NMFS-2020-0031-DRAFT-15991
NOAA-NMFS-2020-0031-DRAFT-15992
NOAA-NMFS-2020-0031-DRAFT-15993
NOAA-NMFS-2020-0031-DRAFT-15994
NOAA-NMFS-2020-0031-DRAFT-15995
NOAA-NMFS-2020-0031-DRAFT-15996
NOAA-NMFS-2020-0031-DRAFT-15997
NOAA-NMFS-2020-0031-DRAFT-15998
NOAA-NMFS-2020-0031-DRAFT-15999
NOAA-NMFS-2020-0031-DRAFT-16000
NOAA-NMFS-2020-0031-DRAFT-16001
NOAA-NMFS-2020-0031-DRAFT-16002
NOAA-NMFS-2020-0031-DRAFT-16003
NOAA-NMFS-2020-0031-DRAFT-16004
NOAA-NMFS-2020-0031-DRAFT-16006
NOAA-NMFS-2020-0031-DRAFT-16007
NOAA-NMFS-2020-0031-DRAFT-16008
NOAA-NMFS-2020-0031-DRAFT-16009
NOAA-NMFS-2020-0031-DRAFT-16010
NOAA-NMFS-2020-0031-DRAFT-16013
NOAA-NMFS-2020-0031-DRAFT-16014
NOAA-NMFS-2020-0031-DRAFT-16015
NOAA-NMFS-2020-0031-DRAFT-16016
NOAA-NMFS-2020-0031-DRAFT-16017
NOAA-NMFS-2020-0031-DRAFT-16018
NOAA-NMFS-2020-0031-DRAFT-16019
NOAA-NMFS-2020-0031-DRAFT-16020
NOAA-NMFS-2020-0031-DRAFT-16021
NOAA-NMFS-2020-0031-DRAFT-16022
NOAA-NMFS-2020-0031-DRAFT-16023
NOAA-NMFS-2020-0031-DRAFT-16024
NOAA-NMFS-2020-0031-DRAFT-16025
NOAA-NMFS-2020-0031-DRAFT-16026
NOAA-NMFS-2020-0031-DRAFT-16027
NOAA-NMFS-2020-0031-DRAFT-16028

Comment from Celeste Watt
Comment from steven nasta
Comment from Ann Hansen
Comment from James Richardson
Comment from Nancy Smith
Comment from Lori Williams
Comment from Carolyn King
Comment from Danielle Schultz
Comment from Edward Cowan
Comment from Chris Washington
Comment from Randy Harper
Comment from cameron mansfield
Comment from Dawn Weber
Comment from Stephen Antoniadis
Comment from Anne Goldberg
Comment from Nicole Shaffer
Comment from Stephen Mitchell
Comment from Mary Christy
Comment from Dawn Harrod
Comment from Barbara Carew
Comment from Karla LaVoie
Comment from Lisa Graham
Comment from Carin Pavlinchak
Comment from Trois Moore
Comment from Tricia Kob
Comment from Kevin Mahaffey
Comment from Judy Germain
Comment from Jody Gibson
Comment from Cody Goin
Comment from Arpineh Mehrabi
Comment from Deborah Topley
Comment from Jan Hammond
Comment from Darryl A San Souci
Comment from Elaine Taylor
Comment from David Dougherty
Comment from Judy Pollard
Comment from Karen Hildebrandt
Comment from Bonnie Kenny
Comment from tony lorito
Comment from Sheri Abramson
Comment from Sandra Lynn

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10864
NOAA-NMFS-2020-0031-DRAFT-10865
NOAA-NMFS-2020-0031-DRAFT-10866
NOAA-NMFS-2020-0031-DRAFT-10867
NOAA-NMFS-2020-0031-DRAFT-10868
NOAA-NMFS-2020-0031-DRAFT-10869
NOAA-NMFS-2020-0031-DRAFT-10870
NOAA-NMFS-2020-0031-DRAFT-10871
NOAA-NMFS-2020-0031-DRAFT-10872
NOAA-NMFS-2020-0031-DRAFT-10873
NOAA-NMFS-2020-0031-DRAFT-10874
NOAA-NMFS-2020-0031-DRAFT-10875
NOAA-NMFS-2020-0031-DRAFT-10876
NOAA-NMFS-2020-0031-DRAFT-10877
NOAA-NMFS-2020-0031-DRAFT-10878
NOAA-NMFS-2020-0031-DRAFT-10879
NOAA-NMFS-2020-0031-DRAFT-10880
NOAA-NMFS-2020-0031-DRAFT-10881
NOAA-NMFS-2020-0031-DRAFT-10882
NOAA-NMFS-2020-0031-DRAFT-10883
NOAA-NMFS-2020-0031-DRAFT-10884
NOAA-NMFS-2020-0031-DRAFT-10885
NOAA-NMFS-2020-0031-DRAFT-10886
NOAA-NMFS-2020-0031-DRAFT-10887
NOAA-NMFS-2020-0031-DRAFT-10888
NOAA-NMFS-2020-0031-DRAFT-10889
NOAA-NMFS-2020-0031-DRAFT-10890
NOAA-NMFS-2020-0031-DRAFT-10891
NOAA-NMFS-2020-0031-DRAFT-10892
NOAA-NMFS-2020-0031-DRAFT-10893
NOAA-NMFS-2020-0031-DRAFT-10894
NOAA-NMFS-2020-0031-DRAFT-10895
NOAA-NMFS-2020-0031-DRAFT-10896
NOAA-NMFS-2020-0031-DRAFT-10897
NOAA-NMFS-2020-0031-DRAFT-10898
NOAA-NMFS-2020-0031-DRAFT-10899
NOAA-NMFS-2020-0031-DRAFT-10900
NOAA-NMFS-2020-0031-DRAFT-10901
NOAA-NMFS-2020-0031-DRAFT-10902
NOAA-NMFS-2020-0031-DRAFT-10903
NOAA-NMFS-2020-0031-DRAFT-10904

Comment from Lahela Barcenilla
Comment from Robert Dickinson
Comment from Michelle Wilson
Comment from Gerritt Baker-Smith
Comment from Lauren Meredith
Comment from maureen oshea
Comment from Jennifer Scriven
Comment from Janet Pinneo
Comment from Michelle Wilson
Comment from Adele Dawson
Comment from Connie Hinson
Comment from Paul Lapidus
Comment from paul bosch
Comment from Tracy Anderson
Comment from Karen Good
Comment from Kelley Price
Comment from Betsey Porter
Comment from Krista McKee
Comment from June Picard
Comment from Lisa Whipple
Comment from Carol Kaploe
Comment from Heidi Erdmann
Comment from Louise Rangel
Comment from Genevieve Santalucia
Comment from Kathleen Coffman
Comment from Adrian Schilke
Comment from Thomas Kuspiel
Comment from Jill Turco
Comment from Mark Galbraith
Comment from Jen DeHart
Comment from Jeff Fromberg
Comment from kellyann morander
Comment from Betty Neuenschwander
Comment from Barbara Mintz
Comment from Hugh Ballem
Comment from Joel Gelb
Comment from Scott Grubb
Comment from Megan Wright
Comment from Brian Kirk
Comment from Brenda Hattisburg
Comment from Daniel Polley

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16029
NOAA-NMFS-2020-0031-DRAFT-16030
NOAA-NMFS-2020-0031-DRAFT-16031
NOAA-NMFS-2020-0031-DRAFT-16032
NOAA-NMFS-2020-0031-DRAFT-16033
NOAA-NMFS-2020-0031-DRAFT-16034
NOAA-NMFS-2020-0031-DRAFT-16035
NOAA-NMFS-2020-0031-DRAFT-16036
NOAA-NMFS-2020-0031-DRAFT-16037
NOAA-NMFS-2020-0031-DRAFT-16038
NOAA-NMFS-2020-0031-DRAFT-16039
NOAA-NMFS-2020-0031-DRAFT-16040
NOAA-NMFS-2020-0031-DRAFT-16041
NOAA-NMFS-2020-0031-DRAFT-16042
NOAA-NMFS-2020-0031-DRAFT-16043
NOAA-NMFS-2020-0031-DRAFT-16044
NOAA-NMFS-2020-0031-DRAFT-16045
NOAA-NMFS-2020-0031-DRAFT-16046
NOAA-NMFS-2020-0031-DRAFT-16047
NOAA-NMFS-2020-0031-DRAFT-16048
NOAA-NMFS-2020-0031-DRAFT-16049
NOAA-NMFS-2020-0031-DRAFT-16050
NOAA-NMFS-2020-0031-DRAFT-16051
NOAA-NMFS-2020-0031-DRAFT-16052
NOAA-NMFS-2020-0031-DRAFT-16053
NOAA-NMFS-2020-0031-DRAFT-16054
NOAA-NMFS-2020-0031-DRAFT-16055
NOAA-NMFS-2020-0031-DRAFT-16057
NOAA-NMFS-2020-0031-DRAFT-16058
NOAA-NMFS-2020-0031-DRAFT-16059
NOAA-NMFS-2020-0031-DRAFT-16060
NOAA-NMFS-2020-0031-DRAFT-16061
NOAA-NMFS-2020-0031-DRAFT-16062
NOAA-NMFS-2020-0031-DRAFT-16063
NOAA-NMFS-2020-0031-DRAFT-16064
NOAA-NMFS-2020-0031-DRAFT-16065
NOAA-NMFS-2020-0031-DRAFT-16066
NOAA-NMFS-2020-0031-DRAFT-16067
NOAA-NMFS-2020-0031-DRAFT-16068
NOAA-NMFS-2020-0031-DRAFT-16069
NOAA-NMFS-2020-0031-DRAFT-16070

Comment from Amy Barker
Comment from Cindy Smith
Comment from Risa Mandell
Comment from Laura Altman
Comment from katherine Maynard
Comment from Cristy Murray
Comment from Glenda Staats
Comment from Susan Borys
Comment from Elena Lange
Comment from Robert Oberdorf
Comment from Laura LaRocca
Comment from Pamela Miller
Comment from Maureen Carroll
Friedman
Comment from Janna Gelfand
Comment from juli ingram
Comment from Sharon Hawkinson
Comment from patricia cachopo
Comment from Cynthia Wizeman
Comment from Richard Guier
Comment from Danielle Johnson
Comment from Kathleen Ayres
Comment from Joni LAMB
Comment from Patricia Moguel
Comment from Clarence Sutton
Comment from Norman Dickinson
Comment from ELI HEGEMAN
Comment from Natalia Stadelbauer
Comment from Gail Trammell
Comment from Kathryn Capelli
Comment from Deborah Parker
Comment from Stephen Stales
Comment from LINDA NORRIS
Comment from Liz Dyer
Comment from Katherine simon
Comment from Kate Skolnick
Comment from Dr Kristi Dunn
Comment from Barbara McCane
Comment from Allan Campbell
Comment from LISA STIMPSON
Comment from Alan Gonzalez
Comment from Kristin Gallanosa

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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10905
NOAA-NMFS-2020-0031-DRAFT-10906
NOAA-NMFS-2020-0031-DRAFT-10907
NOAA-NMFS-2020-0031-DRAFT-10908
NOAA-NMFS-2020-0031-DRAFT-10909
NOAA-NMFS-2020-0031-DRAFT-10910
NOAA-NMFS-2020-0031-DRAFT-10911
NOAA-NMFS-2020-0031-DRAFT-10912
NOAA-NMFS-2020-0031-DRAFT-10913
NOAA-NMFS-2020-0031-DRAFT-10914
NOAA-NMFS-2020-0031-DRAFT-10915
NOAA-NMFS-2020-0031-DRAFT-10916
NOAA-NMFS-2020-0031-DRAFT-10917
NOAA-NMFS-2020-0031-DRAFT-10918
NOAA-NMFS-2020-0031-DRAFT-10919
NOAA-NMFS-2020-0031-DRAFT-10920
NOAA-NMFS-2020-0031-DRAFT-10921
NOAA-NMFS-2020-0031-DRAFT-10922
NOAA-NMFS-2020-0031-DRAFT-10923
NOAA-NMFS-2020-0031-DRAFT-10924
NOAA-NMFS-2020-0031-DRAFT-10925
NOAA-NMFS-2020-0031-DRAFT-10926
NOAA-NMFS-2020-0031-DRAFT-10927
NOAA-NMFS-2020-0031-DRAFT-10928
NOAA-NMFS-2020-0031-DRAFT-10929
NOAA-NMFS-2020-0031-DRAFT-10930
NOAA-NMFS-2020-0031-DRAFT-10931
NOAA-NMFS-2020-0031-DRAFT-10932
NOAA-NMFS-2020-0031-DRAFT-10933
NOAA-NMFS-2020-0031-DRAFT-10934
NOAA-NMFS-2020-0031-DRAFT-10935
NOAA-NMFS-2020-0031-DRAFT-10936
NOAA-NMFS-2020-0031-DRAFT-10937
NOAA-NMFS-2020-0031-DRAFT-10938
NOAA-NMFS-2020-0031-DRAFT-10939
NOAA-NMFS-2020-0031-DRAFT-10940
NOAA-NMFS-2020-0031-DRAFT-10941
NOAA-NMFS-2020-0031-DRAFT-10942
NOAA-NMFS-2020-0031-DRAFT-10943
NOAA-NMFS-2020-0031-DRAFT-10944
NOAA-NMFS-2020-0031-DRAFT-10945

Comment from Kim Smith
Comment from Stephen Muser
Comment from Julie Wade
Comment from Lori Bryan
Comment from David Knutzen
Comment from Tamara Wecker
Comment from Michael Nelson
Comment from Harry Blumenthal
Comment from Patricia Blenk
Comment from Ute Baker
Comment from Julie Geveshausen
Comment from Jennifer Wittlinger
Comment from Annette Benton
Comment from Susan McLaughlin
Comment from Mike Chyba
Comment from Ed Schmitt
Comment from robert crenshaw
Comment from Dave Searles
Comment from Emmanuel Ramirez
Comment from Geoffrey McCluskey
Comment from Ann Wright
Comment from Bettemae Johnson
Comment from Megan king
Comment from Karen Peterson
Comment from Wendy Chrisman
Comment from Annette Raible
Comment from Terry Cooper
Comment from Karen DeSalvo
Comment from Patricia Chambers
Comment from Inna Gergel
Comment from Paul Moser
Comment from Barbara Baxter
Comment from Louise Rickard
Comment from Jane Bender
Comment from Yvonne Quilenderino
Comment from ki paul
Comment from Sylvia Lewis-Gunning
Comment from DONETTE ERDMANN
Comment from Sherry Wilmsen
Comment from Nicole Thompson
Comment from Antoinette Daab

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16071
NOAA-NMFS-2020-0031-DRAFT-16072
NOAA-NMFS-2020-0031-DRAFT-16073
NOAA-NMFS-2020-0031-DRAFT-16074
NOAA-NMFS-2020-0031-DRAFT-16075
NOAA-NMFS-2020-0031-DRAFT-16076
NOAA-NMFS-2020-0031-DRAFT-16077
NOAA-NMFS-2020-0031-DRAFT-16078
NOAA-NMFS-2020-0031-DRAFT-16079
NOAA-NMFS-2020-0031-DRAFT-16080
NOAA-NMFS-2020-0031-DRAFT-16081
NOAA-NMFS-2020-0031-DRAFT-16082
NOAA-NMFS-2020-0031-DRAFT-16083
NOAA-NMFS-2020-0031-DRAFT-16084
NOAA-NMFS-2020-0031-DRAFT-16085
NOAA-NMFS-2020-0031-DRAFT-16086
NOAA-NMFS-2020-0031-DRAFT-16087
NOAA-NMFS-2020-0031-DRAFT-16088
NOAA-NMFS-2020-0031-DRAFT-16089
NOAA-NMFS-2020-0031-DRAFT-16090
NOAA-NMFS-2020-0031-DRAFT-16091
NOAA-NMFS-2020-0031-DRAFT-16092
NOAA-NMFS-2020-0031-DRAFT-16093
NOAA-NMFS-2020-0031-DRAFT-16094
NOAA-NMFS-2020-0031-DRAFT-16095
NOAA-NMFS-2020-0031-DRAFT-16096
NOAA-NMFS-2020-0031-DRAFT-16097
NOAA-NMFS-2020-0031-DRAFT-16098
NOAA-NMFS-2020-0031-DRAFT-16099
NOAA-NMFS-2020-0031-DRAFT-16100
NOAA-NMFS-2020-0031-DRAFT-16101
NOAA-NMFS-2020-0031-DRAFT-16102
NOAA-NMFS-2020-0031-DRAFT-16103
NOAA-NMFS-2020-0031-DRAFT-16104
NOAA-NMFS-2020-0031-DRAFT-16105
NOAA-NMFS-2020-0031-DRAFT-16106
NOAA-NMFS-2020-0031-DRAFT-16107
NOAA-NMFS-2020-0031-DRAFT-16108
NOAA-NMFS-2020-0031-DRAFT-16109
NOAA-NMFS-2020-0031-DRAFT-16110
NOAA-NMFS-2020-0031-DRAFT-16111

Comment from June Berkhimer
Comment from David Myers
Comment from June Berkhimer
Comment from David Aronovitch
Comment from Victoria Peyser
Comment from Cliff Atendido
Comment from George Klipfel II
Comment from Tim Oswald
Comment from Laura Baldwin
Comment from Sorinda Meza
Comment from Laura Arias
Comment from sandra steinle
Comment from Cathy Jones
Comment from elizabeth mcmahon
Comment from Tammy Rafter
Comment from Elva Munro
Comment from Scott Neuhaus
Comment from Eleanor Dowson
Comment from Eliana Munk
Comment from Brad Yoho
Comment from Brian Mckee
Comment from Erica Munn
Comment from Angela Greene
Comment from Linda McKillip
Comment from Douglas McCormick
Comment from Rachel Cox
Comment from Glenn Mooney
Comment from Becky Giarratano
Comment from jim strickland
Comment from Cheri Mezzapelle
Comment from Cheryl Conley
Comment from Donna Hart
Comment from Jon Maller
Comment from Melinda Whalen
Comment from Ed Gruver
Comment from Michelle Barbour
Comment from Margaret Gallagher
Comment from Melissa Lawrence
Comment from Penny Richards
Comment from Mary Hullander
Comment from Lecil McGlocklin

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10946
NOAA-NMFS-2020-0031-DRAFT-10947
NOAA-NMFS-2020-0031-DRAFT-10948
NOAA-NMFS-2020-0031-DRAFT-10949
NOAA-NMFS-2020-0031-DRAFT-10950
NOAA-NMFS-2020-0031-DRAFT-10951
NOAA-NMFS-2020-0031-DRAFT-10952
NOAA-NMFS-2020-0031-DRAFT-10953
NOAA-NMFS-2020-0031-DRAFT-10954
NOAA-NMFS-2020-0031-DRAFT-10955
NOAA-NMFS-2020-0031-DRAFT-10956
NOAA-NMFS-2020-0031-DRAFT-10957
NOAA-NMFS-2020-0031-DRAFT-10958
NOAA-NMFS-2020-0031-DRAFT-10959
NOAA-NMFS-2020-0031-DRAFT-10960
NOAA-NMFS-2020-0031-DRAFT-10961
NOAA-NMFS-2020-0031-DRAFT-10962
NOAA-NMFS-2020-0031-DRAFT-10963
NOAA-NMFS-2020-0031-DRAFT-10964
NOAA-NMFS-2020-0031-DRAFT-10965
NOAA-NMFS-2020-0031-DRAFT-10966
NOAA-NMFS-2020-0031-DRAFT-10967
NOAA-NMFS-2020-0031-DRAFT-10968
NOAA-NMFS-2020-0031-DRAFT-10969
NOAA-NMFS-2020-0031-DRAFT-10970
NOAA-NMFS-2020-0031-DRAFT-10971
NOAA-NMFS-2020-0031-DRAFT-10972
NOAA-NMFS-2020-0031-DRAFT-10973
NOAA-NMFS-2020-0031-DRAFT-10974
NOAA-NMFS-2020-0031-DRAFT-10975
NOAA-NMFS-2020-0031-DRAFT-10976
NOAA-NMFS-2020-0031-DRAFT-10977
NOAA-NMFS-2020-0031-DRAFT-10978
NOAA-NMFS-2020-0031-DRAFT-10979
NOAA-NMFS-2020-0031-DRAFT-10980
NOAA-NMFS-2020-0031-DRAFT-10981
NOAA-NMFS-2020-0031-DRAFT-10982
NOAA-NMFS-2020-0031-DRAFT-10983
NOAA-NMFS-2020-0031-DRAFT-10984
NOAA-NMFS-2020-0031-DRAFT-10985
NOAA-NMFS-2020-0031-DRAFT-10986

Comment from Vic Bostock
Comment from Clyde Willson
Comment from Bret Polish
Comment from BARBARA
MACCAMBRIDGE
Comment from Franklin Matias
Comment from Ashley Wilcox
Comment from Anthony Stratton
Comment from Herbert Herschlag
Comment from Lori Girshick
Comment from Martin Henderson
Comment from Dominic melita
Comment from Maria Botello
Comment from Stephen Dutschke
Comment from Howard Lepzelter
Comment from Steven Carpenter
Comment from Kim Brower
Comment from David Sickles
Comment from James McConkey
Comment from Ken Windrum
Comment from Clarice Glandon
Comment from kristin carstarphen
Comment from Bonnie Zotos
Comment from John Laing
Comment from Marilyn Platt
Comment from Sylvia Rogers
Comment from Dan Cappello
Comment from Tracey Fried-Kasofsky
Comment from Michael Crowley
Comment from John Livingston
Comment from Rhonda Berger
Comment from Carol Dearborn
Comment from Mary True
Comment from Max Salt
Comment from Allison Cox
Comment from Eric Lemberg
Comment from Fred Granlund
Comment from Richard Harden
Comment from dANIEL FIGUEROA
Comment from Vicki Sarnecki
Comment from Ben Ruwe
Comment from Llll d

02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16112
NOAA-NMFS-2020-0031-DRAFT-16114
NOAA-NMFS-2020-0031-DRAFT-16115
NOAA-NMFS-2020-0031-DRAFT-16116
NOAA-NMFS-2020-0031-DRAFT-16117
NOAA-NMFS-2020-0031-DRAFT-16118
NOAA-NMFS-2020-0031-DRAFT-16119
NOAA-NMFS-2020-0031-DRAFT-16120
NOAA-NMFS-2020-0031-DRAFT-16121
NOAA-NMFS-2020-0031-DRAFT-16122
NOAA-NMFS-2020-0031-DRAFT-16123
NOAA-NMFS-2020-0031-DRAFT-16124
NOAA-NMFS-2020-0031-DRAFT-16125
NOAA-NMFS-2020-0031-DRAFT-16126
NOAA-NMFS-2020-0031-DRAFT-16127
NOAA-NMFS-2020-0031-DRAFT-16128
NOAA-NMFS-2020-0031-DRAFT-16129
NOAA-NMFS-2020-0031-DRAFT-16130
NOAA-NMFS-2020-0031-DRAFT-16131
NOAA-NMFS-2020-0031-DRAFT-16133
NOAA-NMFS-2020-0031-DRAFT-16134
NOAA-NMFS-2020-0031-DRAFT-16135
NOAA-NMFS-2020-0031-DRAFT-16136
NOAA-NMFS-2020-0031-DRAFT-16137
NOAA-NMFS-2020-0031-DRAFT-16138
NOAA-NMFS-2020-0031-DRAFT-16139
NOAA-NMFS-2020-0031-DRAFT-16140
NOAA-NMFS-2020-0031-DRAFT-16141
NOAA-NMFS-2020-0031-DRAFT-16142
NOAA-NMFS-2020-0031-DRAFT-16143
NOAA-NMFS-2020-0031-DRAFT-16144
NOAA-NMFS-2020-0031-DRAFT-16145
NOAA-NMFS-2020-0031-DRAFT-16146
NOAA-NMFS-2020-0031-DRAFT-16147
NOAA-NMFS-2020-0031-DRAFT-16148
NOAA-NMFS-2020-0031-DRAFT-16149
NOAA-NMFS-2020-0031-DRAFT-16151
NOAA-NMFS-2020-0031-DRAFT-16152
NOAA-NMFS-2020-0031-DRAFT-16153
NOAA-NMFS-2020-0031-DRAFT-16155
NOAA-NMFS-2020-0031-DRAFT-16156

Comment from marilyn evenson
Comment from Natalie Martinez
Comment from Heather aka Heth Drees
Comment from Michelle Cobert
Comment from Karen Mate
Comment from Gail Thompson
Comment from Mal Gaff
Comment from Marlene Phelan
Comment from Kergan Street
Comment from Donna Gabehart
Comment from Clint Stankiewicz
Comment from Liz Szabo
Comment from Jami Dougan
Comment from Michael Lentina
Comment from Michael Nagy
Comment from George Bilyeu
Comment from Karen Redd
Comment from Shubra Sachdev
Comment from Adil Mehta
Comment from Jeff Lowry
Comment from Sheila Grimes
Comment from Michael Malinick
Comment from Lynne Gaudette
Comment from Christine Wrazen
Comment from Celeste Crago
Comment from KELLI VILLIS
Comment from FRED DAVIS
Comment from Joy McMahan
Comment from Gina Giaccardo
Comment from Lynne Jeffries
Comment from Summer Shah
Comment from Joyce Davis
Comment from Lance Polya
Comment from Donna Seeger
Comment from Jacqueline Mills
Comment from Diane St Angelo
Comment from Alfred Papillon
Comment from Donald Davis
Comment from Gail Evans
Comment from Kelly Schwartz
Comment from Kathryn Christian

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02/09/2021
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02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-10987
NOAA-NMFS-2020-0031-DRAFT-10989
NOAA-NMFS-2020-0031-DRAFT-10990
NOAA-NMFS-2020-0031-DRAFT-10991
NOAA-NMFS-2020-0031-DRAFT-10992
NOAA-NMFS-2020-0031-DRAFT-10993
NOAA-NMFS-2020-0031-DRAFT-10994
NOAA-NMFS-2020-0031-DRAFT-10995
NOAA-NMFS-2020-0031-DRAFT-10996
NOAA-NMFS-2020-0031-DRAFT-10997
NOAA-NMFS-2020-0031-DRAFT-10998
NOAA-NMFS-2020-0031-DRAFT-10999
NOAA-NMFS-2020-0031-DRAFT-11000
NOAA-NMFS-2020-0031-DRAFT-11001
NOAA-NMFS-2020-0031-DRAFT-11002
NOAA-NMFS-2020-0031-DRAFT-11003
NOAA-NMFS-2020-0031-DRAFT-11004
NOAA-NMFS-2020-0031-DRAFT-11005
NOAA-NMFS-2020-0031-DRAFT-11006
NOAA-NMFS-2020-0031-DRAFT-11007
NOAA-NMFS-2020-0031-DRAFT-11008
NOAA-NMFS-2020-0031-DRAFT-11009
NOAA-NMFS-2020-0031-DRAFT-11010
NOAA-NMFS-2020-0031-DRAFT-11011
NOAA-NMFS-2020-0031-DRAFT-11012
NOAA-NMFS-2020-0031-DRAFT-11013
NOAA-NMFS-2020-0031-DRAFT-11014
NOAA-NMFS-2020-0031-DRAFT-11015
NOAA-NMFS-2020-0031-DRAFT-11016
NOAA-NMFS-2020-0031-DRAFT-11017
NOAA-NMFS-2020-0031-DRAFT-11018
NOAA-NMFS-2020-0031-DRAFT-11019
NOAA-NMFS-2020-0031-DRAFT-11020
NOAA-NMFS-2020-0031-DRAFT-11021
NOAA-NMFS-2020-0031-DRAFT-11022
NOAA-NMFS-2020-0031-DRAFT-11023
NOAA-NMFS-2020-0031-DRAFT-11024
NOAA-NMFS-2020-0031-DRAFT-11025
NOAA-NMFS-2020-0031-DRAFT-11026
NOAA-NMFS-2020-0031-DRAFT-11027
NOAA-NMFS-2020-0031-DRAFT-11028

Comment from Nancy Moynihan
Comment from Jean Siegel
Comment from Johnny Hall
Comment from Susan Hathcock
Comment from Maryam Rostamian
Comment from Marita Mayer
Comment from Robin Craft
Comment from Suzanne Barns
Comment from Tania Roa
Comment from Robert Sparks
Comment from Lisa Caver
Comment from Rachel Gullett
Comment from Sue Rosenbach
Comment from quinten putnam
Comment from David Spivac
Comment from Russell Rauscher
Comment from Neil Glaser
Comment from Hiett Cooper
Comment from Daniel Figueroa
Comment from Marty Judd
Comment from Yvonne Fedeyko-Kirby
Comment from Jan Jones
Comment from STAFFORD KRAMER
Comment from Bryan Gilbert
Comment from Jennifer Romans
Comment from Deborah Luciano
Comment from Warren Clark
Comment from Ann Becherer
Comment from Yvonne Fedeyko-Kirby
Comment from David Lang
Comment from Cynthia Sampson
Comment from Valerie Conrad
Comment from Bruce Rhoades
Comment from freya christensen
Comment from Pat Ellison
Comment from Reinhard Frenzel
Comment from Ann Joseph
Comment from Lynn Martin
Comment from Connie Carter
Comment from Meghan Lempa
Comment from J Anderson

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16157
NOAA-NMFS-2020-0031-DRAFT-16158
NOAA-NMFS-2020-0031-DRAFT-16159
NOAA-NMFS-2020-0031-DRAFT-16160
NOAA-NMFS-2020-0031-DRAFT-16161
NOAA-NMFS-2020-0031-DRAFT-16162
NOAA-NMFS-2020-0031-DRAFT-16163
NOAA-NMFS-2020-0031-DRAFT-16164
NOAA-NMFS-2020-0031-DRAFT-16165
NOAA-NMFS-2020-0031-DRAFT-16166
NOAA-NMFS-2020-0031-DRAFT-16167
NOAA-NMFS-2020-0031-DRAFT-16168
NOAA-NMFS-2020-0031-DRAFT-16169
NOAA-NMFS-2020-0031-DRAFT-16170
NOAA-NMFS-2020-0031-DRAFT-16171
NOAA-NMFS-2020-0031-DRAFT-16172
NOAA-NMFS-2020-0031-DRAFT-16173
NOAA-NMFS-2020-0031-DRAFT-16174
NOAA-NMFS-2020-0031-DRAFT-16175
NOAA-NMFS-2020-0031-DRAFT-16176
NOAA-NMFS-2020-0031-DRAFT-16177
NOAA-NMFS-2020-0031-DRAFT-16178
NOAA-NMFS-2020-0031-DRAFT-16179
NOAA-NMFS-2020-0031-DRAFT-16180
NOAA-NMFS-2020-0031-DRAFT-16181
NOAA-NMFS-2020-0031-DRAFT-16182
NOAA-NMFS-2020-0031-DRAFT-16183
NOAA-NMFS-2020-0031-DRAFT-16184
NOAA-NMFS-2020-0031-DRAFT-16185
NOAA-NMFS-2020-0031-DRAFT-16186
NOAA-NMFS-2020-0031-DRAFT-16187
NOAA-NMFS-2020-0031-DRAFT-16188
NOAA-NMFS-2020-0031-DRAFT-16189
NOAA-NMFS-2020-0031-DRAFT-16190
NOAA-NMFS-2020-0031-DRAFT-16191
NOAA-NMFS-2020-0031-DRAFT-16192
NOAA-NMFS-2020-0031-DRAFT-16194
NOAA-NMFS-2020-0031-DRAFT-16195
NOAA-NMFS-2020-0031-DRAFT-16196
NOAA-NMFS-2020-0031-DRAFT-16197
NOAA-NMFS-2020-0031-DRAFT-16200

Comment from Darcel Kashmark
Comment from Darleen Morano Brown
Comment from Roy Wilensky
Comment from Susi Higgins
Comment from Raffaella Selvaggio
Comment from Joe Messer
Comment from Martha Auerbach
Comment from Gilda Levinson
Comment from Ronalee Thatcher
Comment from Dawn and Ken Richardson
Comment from Justin Walker
Comment from Barbara Gross
Comment from Penny Dorfman
Comment from Margaret Guilfoy Tyler
Comment from katrina gergely
Comment from Brandi Small
Comment from Rob Roberto
Comment from Brad Bowers
Comment from Peter Syre
Comment from Angela Anonymous
Comment from Cheryl Thomas
Comment from Ann Munoz
Comment from Alta Harrison
Comment from Patricia Baley
Comment from Diane Belmont
Comment from Betty Finley
Comment from Janis Wilder
Comment from Renee Chotiner
Comment from Dan Hornaday
Comment from Pat Rose
Comment from sharon Franco
Comment from Jeffrey Bains
Comment from Dave Pashman
Comment from Juanita Fernandez
Comment from Jayne Vitulli
Comment from Suzanne Middleton
Comment from Lynn Reed
Comment from Janis Wilder
Comment from Aaron Chad Alvarez
Comment from ReNae Nowicki
Comment from Rebecca Hoeschler

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02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11029
NOAA-NMFS-2020-0031-DRAFT-11030
NOAA-NMFS-2020-0031-DRAFT-11031
NOAA-NMFS-2020-0031-DRAFT-11032
NOAA-NMFS-2020-0031-DRAFT-11033
NOAA-NMFS-2020-0031-DRAFT-11034
NOAA-NMFS-2020-0031-DRAFT-11035
NOAA-NMFS-2020-0031-DRAFT-11036
NOAA-NMFS-2020-0031-DRAFT-11037
NOAA-NMFS-2020-0031-DRAFT-11039
NOAA-NMFS-2020-0031-DRAFT-11040
NOAA-NMFS-2020-0031-DRAFT-11041
NOAA-NMFS-2020-0031-DRAFT-11042
NOAA-NMFS-2020-0031-DRAFT-11043
NOAA-NMFS-2020-0031-DRAFT-11044
NOAA-NMFS-2020-0031-DRAFT-11045
NOAA-NMFS-2020-0031-DRAFT-11046
NOAA-NMFS-2020-0031-DRAFT-11047
NOAA-NMFS-2020-0031-DRAFT-11048
NOAA-NMFS-2020-0031-DRAFT-11049
NOAA-NMFS-2020-0031-DRAFT-11050
NOAA-NMFS-2020-0031-DRAFT-11051
NOAA-NMFS-2020-0031-DRAFT-11052
NOAA-NMFS-2020-0031-DRAFT-11053
NOAA-NMFS-2020-0031-DRAFT-11054
NOAA-NMFS-2020-0031-DRAFT-11055
NOAA-NMFS-2020-0031-DRAFT-11056
NOAA-NMFS-2020-0031-DRAFT-11057
NOAA-NMFS-2020-0031-DRAFT-11058
NOAA-NMFS-2020-0031-DRAFT-11059
NOAA-NMFS-2020-0031-DRAFT-11060
NOAA-NMFS-2020-0031-DRAFT-11061
NOAA-NMFS-2020-0031-DRAFT-11062
NOAA-NMFS-2020-0031-DRAFT-11063
NOAA-NMFS-2020-0031-DRAFT-11064
NOAA-NMFS-2020-0031-DRAFT-11065
NOAA-NMFS-2020-0031-DRAFT-11066
NOAA-NMFS-2020-0031-DRAFT-11067
NOAA-NMFS-2020-0031-DRAFT-11068
NOAA-NMFS-2020-0031-DRAFT-11069
NOAA-NMFS-2020-0031-DRAFT-11070

Comment from Ann Williams
Comment from Lois Ruble
Comment from Barbara Miller
Comment from Jesse Kessler
Comment from Peggy Thompson
Comment from Wendy Diamond
Comment from Robert Mize
Comment from Gustaf Sarkkinen
Comment from Jesse Kessler
Comment from Stephen Andersen
Comment from Frances Harriman
Comment from Jeffrey Dix
Comment from Nancy Johnson
Comment from Kim Rutkowski
Comment from Adrienne Pritchard
Comment from Melodie Middlebrooks
Comment from Craig Robinson
Comment from Sandra Cobb
Comment from Alix Bowman
Comment from Ilya Speranza
Comment from Kristi Turner
Comment from Marce Walsh
Comment from Cheryl Vana
Comment from Lester Thompson
Comment from Diana Duffy
Comment from Kirk Rhoads
Comment from Steve Donoso
Comment from Veronica Bourassa
Comment from Thomas Cooney
Comment from Scott Harris
Comment from Pat Marriott
Comment from Mollie Baker
Comment from William Huber
Comment from Harry Heiden
Comment from Marilyn Fuller
Comment from Sandra Varvel
Comment from William Odonnell
Comment from Pam Rensch
Comment from Dave Frank
Comment from Julie Moylan
Comment from Laura Silverman

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16201
NOAA-NMFS-2020-0031-DRAFT-16202
NOAA-NMFS-2020-0031-DRAFT-16203
NOAA-NMFS-2020-0031-DRAFT-16204
NOAA-NMFS-2020-0031-DRAFT-16205
NOAA-NMFS-2020-0031-DRAFT-16206
NOAA-NMFS-2020-0031-DRAFT-16207
NOAA-NMFS-2020-0031-DRAFT-16208
NOAA-NMFS-2020-0031-DRAFT-16209
NOAA-NMFS-2020-0031-DRAFT-16210
NOAA-NMFS-2020-0031-DRAFT-16211
NOAA-NMFS-2020-0031-DRAFT-16212
NOAA-NMFS-2020-0031-DRAFT-16213
NOAA-NMFS-2020-0031-DRAFT-16214
NOAA-NMFS-2020-0031-DRAFT-16215
NOAA-NMFS-2020-0031-DRAFT-16216
NOAA-NMFS-2020-0031-DRAFT-16217
NOAA-NMFS-2020-0031-DRAFT-16218
NOAA-NMFS-2020-0031-DRAFT-16219
NOAA-NMFS-2020-0031-DRAFT-16220
NOAA-NMFS-2020-0031-DRAFT-16221
NOAA-NMFS-2020-0031-DRAFT-16222
NOAA-NMFS-2020-0031-DRAFT-16223
NOAA-NMFS-2020-0031-DRAFT-16224
NOAA-NMFS-2020-0031-DRAFT-16225
NOAA-NMFS-2020-0031-DRAFT-16226
NOAA-NMFS-2020-0031-DRAFT-16227
NOAA-NMFS-2020-0031-DRAFT-16228
NOAA-NMFS-2020-0031-DRAFT-16229
NOAA-NMFS-2020-0031-DRAFT-16230
NOAA-NMFS-2020-0031-DRAFT-16231
NOAA-NMFS-2020-0031-DRAFT-16232
NOAA-NMFS-2020-0031-DRAFT-16233
NOAA-NMFS-2020-0031-DRAFT-16234
NOAA-NMFS-2020-0031-DRAFT-16235
NOAA-NMFS-2020-0031-DRAFT-16236
NOAA-NMFS-2020-0031-DRAFT-16237
NOAA-NMFS-2020-0031-DRAFT-16238
NOAA-NMFS-2020-0031-DRAFT-16239
NOAA-NMFS-2020-0031-DRAFT-16240
NOAA-NMFS-2020-0031-DRAFT-16241

Comment from Steve Reed
Comment from Cynthia Murphy
Comment from yvonne butler
Comment from Martha W D Bushnell
Comment from Patricia Mctigue
Comment from Nancy Klukowski
Comment from barbara steinberg
Comment from Gloria Albert
Comment from Alison Hewitson
Comment from Trigg Wright
Comment from Marie Zwicker
Comment from Clinton Roche
Comment from Kathleen Lee
Comment from Piero Soligo
Comment from Sandra Briggs
Comment from Tony Menechella
Comment from Sharon Fortunak
Comment from Lynn Ricci
Comment from Karen Kawszan
Comment from Kathryn Bienemann
Comment from Danielle Hipworth
Comment from Andrelene Babbitt
Comment from Gerald Brookman
Comment from Thomas Kuehler
Comment from Michele Chernis
Comment from Linda Lokensgard
Comment from Marcy Wasinski
Comment from Tara Egan
Comment from Alan Robert
Comment from David Crawford
Comment from DARRELL DISHMAN
Comment from Maryann Cuddeback
Comment from Kathleen Moore
Comment from Danielle Spitz
Comment from Heather Murphy
Comment from Anne Baker
Comment from Jake Elfenbein
Comment from Amy Johnson
Comment from Marsha Stanek
Comment from Carol Bishop
Comment from Beth Stein

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11071
NOAA-NMFS-2020-0031-DRAFT-11072
NOAA-NMFS-2020-0031-DRAFT-11073
NOAA-NMFS-2020-0031-DRAFT-11074
NOAA-NMFS-2020-0031-DRAFT-11075
NOAA-NMFS-2020-0031-DRAFT-11076
NOAA-NMFS-2020-0031-DRAFT-11078
NOAA-NMFS-2020-0031-DRAFT-11079
NOAA-NMFS-2020-0031-DRAFT-11080
NOAA-NMFS-2020-0031-DRAFT-11081
NOAA-NMFS-2020-0031-DRAFT-11082
NOAA-NMFS-2020-0031-DRAFT-11083
NOAA-NMFS-2020-0031-DRAFT-11084
NOAA-NMFS-2020-0031-DRAFT-11085
NOAA-NMFS-2020-0031-DRAFT-11086
NOAA-NMFS-2020-0031-DRAFT-11087
NOAA-NMFS-2020-0031-DRAFT-11088
NOAA-NMFS-2020-0031-DRAFT-11089
NOAA-NMFS-2020-0031-DRAFT-11090
NOAA-NMFS-2020-0031-DRAFT-11091
NOAA-NMFS-2020-0031-DRAFT-11092
NOAA-NMFS-2020-0031-DRAFT-11093
NOAA-NMFS-2020-0031-DRAFT-11094
NOAA-NMFS-2020-0031-DRAFT-11095
NOAA-NMFS-2020-0031-DRAFT-11096
NOAA-NMFS-2020-0031-DRAFT-11097
NOAA-NMFS-2020-0031-DRAFT-11098
NOAA-NMFS-2020-0031-DRAFT-11099
NOAA-NMFS-2020-0031-DRAFT-11100
NOAA-NMFS-2020-0031-DRAFT-11101
NOAA-NMFS-2020-0031-DRAFT-11102
NOAA-NMFS-2020-0031-DRAFT-11103
NOAA-NMFS-2020-0031-DRAFT-11104
NOAA-NMFS-2020-0031-DRAFT-11105
NOAA-NMFS-2020-0031-DRAFT-11106
NOAA-NMFS-2020-0031-DRAFT-11107
NOAA-NMFS-2020-0031-DRAFT-11108
NOAA-NMFS-2020-0031-DRAFT-11109
NOAA-NMFS-2020-0031-DRAFT-11110
NOAA-NMFS-2020-0031-DRAFT-11111
NOAA-NMFS-2020-0031-DRAFT-11112

Comment from Cindy Borske
Comment from Kim Beeler
Comment from David Stetler
Comment from DAVID KASTELINE
Comment from Nina Wouk
Comment from Arthur Reynolds
Comment from Mark Trumbull
Comment from Jack Schonewolf
Comment from Michelle Rice
Comment from Sheila Spencer
Comment from M D
Comment from Donna Varcoe
Comment from Sallie Donkin
Comment from Roberta Young
Comment from Michele Anthony
Comment from Paul Brooks
Comment from Bonnie MacRaith
Comment from Randy Harrison
Comment from Donald Mackay
Comment from Janet Williams
Comment from Louis Drinkwater
Comment from David Dewenter
Comment from amy pick
Comment from Dennis Sweeney
Comment from Irene Clark
Comment from Lore Weber
Comment from Chris Loo
Comment from Peter Cutting
Comment from Patrick Grady
Comment from bruce hirayama
Comment from Wolfgang burger
Comment from Becky Keenan
Comment from Margaret DeMott
Comment from Renae Beeker
Comment from margo wyse
Comment from Dennis Dougherty
Comment from John Heigl
Comment from Debi Griepsma
Comment from Lilli Ross
Comment from Dan Murray
Comment from daniel volpatti

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16242
NOAA-NMFS-2020-0031-DRAFT-16243
NOAA-NMFS-2020-0031-DRAFT-16244
NOAA-NMFS-2020-0031-DRAFT-16245
NOAA-NMFS-2020-0031-DRAFT-16246
NOAA-NMFS-2020-0031-DRAFT-16247
NOAA-NMFS-2020-0031-DRAFT-16248
NOAA-NMFS-2020-0031-DRAFT-16249
NOAA-NMFS-2020-0031-DRAFT-16250
NOAA-NMFS-2020-0031-DRAFT-16251
NOAA-NMFS-2020-0031-DRAFT-16252
NOAA-NMFS-2020-0031-DRAFT-16253
NOAA-NMFS-2020-0031-DRAFT-16254
NOAA-NMFS-2020-0031-DRAFT-16255
NOAA-NMFS-2020-0031-DRAFT-16256
NOAA-NMFS-2020-0031-DRAFT-16257
NOAA-NMFS-2020-0031-DRAFT-16258
NOAA-NMFS-2020-0031-DRAFT-16259
NOAA-NMFS-2020-0031-DRAFT-16260
NOAA-NMFS-2020-0031-DRAFT-16261
NOAA-NMFS-2020-0031-DRAFT-16262
NOAA-NMFS-2020-0031-DRAFT-16263
NOAA-NMFS-2020-0031-DRAFT-16264
NOAA-NMFS-2020-0031-DRAFT-16265
NOAA-NMFS-2020-0031-DRAFT-16266
NOAA-NMFS-2020-0031-DRAFT-16267
NOAA-NMFS-2020-0031-DRAFT-16268
NOAA-NMFS-2020-0031-DRAFT-16269
NOAA-NMFS-2020-0031-DRAFT-16270
NOAA-NMFS-2020-0031-DRAFT-16271
NOAA-NMFS-2020-0031-DRAFT-16272
NOAA-NMFS-2020-0031-DRAFT-16273
NOAA-NMFS-2020-0031-DRAFT-16274
NOAA-NMFS-2020-0031-DRAFT-16275
NOAA-NMFS-2020-0031-DRAFT-16276
NOAA-NMFS-2020-0031-DRAFT-16277
NOAA-NMFS-2020-0031-DRAFT-16278
NOAA-NMFS-2020-0031-DRAFT-16279
NOAA-NMFS-2020-0031-DRAFT-16280
NOAA-NMFS-2020-0031-DRAFT-16281
NOAA-NMFS-2020-0031-DRAFT-16282

Comment from Randa Bitar
Comment from Jodi Daniels
Comment from Darla Wood
Comment from Randa Nahra
Comment from Carrie Darling
Comment from Tammy Haller
Comment from Thomas Roy
Comment from Veronica Bourassa
Comment from Ashton Still
Comment from George Casner
Comment from Catherine Williams
Comment from Susan Porter
Comment from steven zimmerman
Comment from donna hotes
Comment from Brett Cohen
Comment from Osh Morethstorm
Comment from Amanda Moore
Comment from Katarina Lang
Comment from Michele Cataldo
Comment from Gary Goetz
Comment from ROBERT MAHER
Comment from Thomas Cox
Comment from Jennifer Rozler
Comment from Jane Hersey
Comment from Alice Gard
Comment from Gina Cashier
Comment from Dana Woods
Comment from Stephen Dutschke
Comment from Anne Pinkerton
Comment from Marilyn Alessandra
Comment from Susan Morseth
Comment from Susan Reichel Halverson
Comment from Lawrence Jackson Rosen
Comment from Susan Horty
Comment from Cathy McDow
Comment from Cathy Reynolds
Comment from Suz CERNIGLIA
Comment from Karen Brant
Comment from Jane Van Haaften
Comment from Pamela Sweeney
Comment from Claude English

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11113
NOAA-NMFS-2020-0031-DRAFT-11114
NOAA-NMFS-2020-0031-DRAFT-11115
NOAA-NMFS-2020-0031-DRAFT-11116
NOAA-NMFS-2020-0031-DRAFT-11117
NOAA-NMFS-2020-0031-DRAFT-11118
NOAA-NMFS-2020-0031-DRAFT-11119
NOAA-NMFS-2020-0031-DRAFT-11120
NOAA-NMFS-2020-0031-DRAFT-11121
NOAA-NMFS-2020-0031-DRAFT-11122
NOAA-NMFS-2020-0031-DRAFT-11123
NOAA-NMFS-2020-0031-DRAFT-11124
NOAA-NMFS-2020-0031-DRAFT-11125
NOAA-NMFS-2020-0031-DRAFT-11126
NOAA-NMFS-2020-0031-DRAFT-11127
NOAA-NMFS-2020-0031-DRAFT-11128
NOAA-NMFS-2020-0031-DRAFT-11129
NOAA-NMFS-2020-0031-DRAFT-11130
NOAA-NMFS-2020-0031-DRAFT-11131
NOAA-NMFS-2020-0031-DRAFT-11132
NOAA-NMFS-2020-0031-DRAFT-11133
NOAA-NMFS-2020-0031-DRAFT-11134
NOAA-NMFS-2020-0031-DRAFT-11135
NOAA-NMFS-2020-0031-DRAFT-11136
NOAA-NMFS-2020-0031-DRAFT-11137
NOAA-NMFS-2020-0031-DRAFT-11138
NOAA-NMFS-2020-0031-DRAFT-11139
NOAA-NMFS-2020-0031-DRAFT-11140
NOAA-NMFS-2020-0031-DRAFT-11141
NOAA-NMFS-2020-0031-DRAFT-11142
NOAA-NMFS-2020-0031-DRAFT-11143
NOAA-NMFS-2020-0031-DRAFT-11144
NOAA-NMFS-2020-0031-DRAFT-11145
NOAA-NMFS-2020-0031-DRAFT-11146
NOAA-NMFS-2020-0031-DRAFT-11147
NOAA-NMFS-2020-0031-DRAFT-11148
NOAA-NMFS-2020-0031-DRAFT-11149
NOAA-NMFS-2020-0031-DRAFT-11150
NOAA-NMFS-2020-0031-DRAFT-11151
NOAA-NMFS-2020-0031-DRAFT-11152
NOAA-NMFS-2020-0031-DRAFT-11153

Comment from Raymond Santiago
Comment from Karen Collins-Fleming
Comment from Brian Christian
Comment from melinda armistead
Comment from Nancy burger
Comment from Marilyn Mick
Comment from Summer Buzzell
Comment from Gale Swiontkowski
Comment from James Byers
Comment from Tiffany Coley
Comment from Maxine Bernstein
Comment from Rande Mandelblatt
Comment from Blair Kangley
Comment from Richard Taylor
Comment from Claudia Richner
Comment from Patricia Poock
Comment from THOMAS KLUSARITZ
Comment from Jennifer Andrews
Comment from Lyda Stillwell
Comment from Richard Romito
Comment from Barbara Langan
Comment from Phyllis White
Comment from Nancy Tucker
Comment from Theresa Baroni
Comment from CAROL THOMPSON
Comment from Christina Beliveau
Comment from Bob P.
Comment from Richard Alley
Comment from Carolita McGee
Comment from Earl Poteet
Comment from Cheryl Pokomo
Comment from Gerry Stamper
Comment from Joe Tutt
Comment from Adriana Bernstein
Comment from David Stone
Comment from Rael MD
Comment from Robert Jansen
Comment from Sue McNally
Comment from Julie Krasin
Comment from Jade Madrid
Comment from Diana Maxell

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16283
NOAA-NMFS-2020-0031-DRAFT-16284
NOAA-NMFS-2020-0031-DRAFT-16285
NOAA-NMFS-2020-0031-DRAFT-16286
NOAA-NMFS-2020-0031-DRAFT-16287
NOAA-NMFS-2020-0031-DRAFT-16288
NOAA-NMFS-2020-0031-DRAFT-16289
NOAA-NMFS-2020-0031-DRAFT-16290
NOAA-NMFS-2020-0031-DRAFT-16291
NOAA-NMFS-2020-0031-DRAFT-16292
NOAA-NMFS-2020-0031-DRAFT-16293
NOAA-NMFS-2020-0031-DRAFT-16294
NOAA-NMFS-2020-0031-DRAFT-16295
NOAA-NMFS-2020-0031-DRAFT-16296
NOAA-NMFS-2020-0031-DRAFT-16297
NOAA-NMFS-2020-0031-DRAFT-16298
NOAA-NMFS-2020-0031-DRAFT-16299
NOAA-NMFS-2020-0031-DRAFT-16300
NOAA-NMFS-2020-0031-DRAFT-16301
NOAA-NMFS-2020-0031-DRAFT-16302
NOAA-NMFS-2020-0031-DRAFT-16303
NOAA-NMFS-2020-0031-DRAFT-16304
NOAA-NMFS-2020-0031-DRAFT-16305
NOAA-NMFS-2020-0031-DRAFT-16306
NOAA-NMFS-2020-0031-DRAFT-16307
NOAA-NMFS-2020-0031-DRAFT-16308
NOAA-NMFS-2020-0031-DRAFT-16309
NOAA-NMFS-2020-0031-DRAFT-16310
NOAA-NMFS-2020-0031-DRAFT-16311
NOAA-NMFS-2020-0031-DRAFT-16312
NOAA-NMFS-2020-0031-DRAFT-16313
NOAA-NMFS-2020-0031-DRAFT-16314
NOAA-NMFS-2020-0031-DRAFT-16315
NOAA-NMFS-2020-0031-DRAFT-16316
NOAA-NMFS-2020-0031-DRAFT-16317
NOAA-NMFS-2020-0031-DRAFT-16318
NOAA-NMFS-2020-0031-DRAFT-16319
NOAA-NMFS-2020-0031-DRAFT-16320
NOAA-NMFS-2020-0031-DRAFT-16321
NOAA-NMFS-2020-0031-DRAFT-16322
NOAA-NMFS-2020-0031-DRAFT-16323

Comment from Laura Long
Comment from Rosalie DeVore
Comment from Elizabeth Balvin
Comment from Julie Kirsh
Comment from Sandra Woodall
Comment from Susan Tucker
Comment from Chris Kosta
Comment from Maria Vazquez
Comment from sue carpenter
Comment from Jana Pendragon
Comment from Chris Lewis
Comment from Julie Miro
Comment from Melisa McMannis
Comment from Lisa Nathan
Comment from Tara Mudry
Comment from Lynne Casner
Comment from Keith D'Alessandro
Comment from james hughes
Comment from Dorene Randall
Comment from Laurry Michlin
Comment from Janine Nordquist
Comment from David Stewart
Comment from Gavin Bornholtz
Comment from Michael Flees
Comment from Vivian Sciacca
Comment from Marliene Fuller
Comment from Tracy Weldon
Comment from Susan Shurow
Comment from Adam Udovich
Comment from Dana Ward
Comment from Peggi Martin
Comment from Peter Thoegersen
Comment from J M Harris
Comment from louis koczi
Comment from LeeAllen Meyer
Comment from Pamylle Greinke
Comment from Katherin Balles
Comment from Michael Smith
Comment from Nancy Loftin
Comment from Maureen Porcelli
Comment from LaVaughn Standridge

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11154
NOAA-NMFS-2020-0031-DRAFT-11155
NOAA-NMFS-2020-0031-DRAFT-11156
NOAA-NMFS-2020-0031-DRAFT-11157
NOAA-NMFS-2020-0031-DRAFT-11158
NOAA-NMFS-2020-0031-DRAFT-11159
NOAA-NMFS-2020-0031-DRAFT-11160
NOAA-NMFS-2020-0031-DRAFT-11161
NOAA-NMFS-2020-0031-DRAFT-11162
NOAA-NMFS-2020-0031-DRAFT-11163
NOAA-NMFS-2020-0031-DRAFT-11164
NOAA-NMFS-2020-0031-DRAFT-11165
NOAA-NMFS-2020-0031-DRAFT-11166
NOAA-NMFS-2020-0031-DRAFT-11167
NOAA-NMFS-2020-0031-DRAFT-11169
NOAA-NMFS-2020-0031-DRAFT-11170
NOAA-NMFS-2020-0031-DRAFT-11172
NOAA-NMFS-2020-0031-DRAFT-11173
NOAA-NMFS-2020-0031-DRAFT-11174
NOAA-NMFS-2020-0031-DRAFT-11176
NOAA-NMFS-2020-0031-DRAFT-11177
NOAA-NMFS-2020-0031-DRAFT-11178
NOAA-NMFS-2020-0031-DRAFT-11179
NOAA-NMFS-2020-0031-DRAFT-11180
NOAA-NMFS-2020-0031-DRAFT-11181
NOAA-NMFS-2020-0031-DRAFT-11182
NOAA-NMFS-2020-0031-DRAFT-11183
NOAA-NMFS-2020-0031-DRAFT-11184
NOAA-NMFS-2020-0031-DRAFT-11185
NOAA-NMFS-2020-0031-DRAFT-11186
NOAA-NMFS-2020-0031-DRAFT-11187
NOAA-NMFS-2020-0031-DRAFT-11188
NOAA-NMFS-2020-0031-DRAFT-11189
NOAA-NMFS-2020-0031-DRAFT-11190
NOAA-NMFS-2020-0031-DRAFT-11191
NOAA-NMFS-2020-0031-DRAFT-11192
NOAA-NMFS-2020-0031-DRAFT-11193
NOAA-NMFS-2020-0031-DRAFT-11194
NOAA-NMFS-2020-0031-DRAFT-11195
NOAA-NMFS-2020-0031-DRAFT-11196
NOAA-NMFS-2020-0031-DRAFT-11197

Comment from Donna Sherman
Comment from Karla Hinton
Comment from Michael Martin
Comment from Niki Wise
Comment from Kristen R
Comment from Melissa Cleaver
Comment from Kevin Wiker
Comment from Evelyn Clark
Comment from Tom Wardell
Comment from Bill O'Brien
Comment from Michael Pan
Comment from Howard Whitaker
Comment from Sharon Evans-Ford
Comment from George Schneider
Comment from Christopher Sechow
Comment from Stuart Weiss
Comment from Andrew Bear
Comment from Sandra Franz
Comment from Lorraine Gray
Comment from Ben Earle
Comment from Kristine Winnicki
Comment from Nancy Warlick
Comment from Pattie Meade
Comment from vicki hughes
Comment from ROMULA NAVARRO
Comment from Angie F.
Comment from marilyn evenson
Comment from Suzy Juncker
Comment from A. Albanese
Comment from Autumn-Ray Russell
Comment from Debora Michel
Comment from N M
Comment from Sarah Hafer
Comment from Michael Oblander
Comment from Jonel Stahr
Comment from Katharine Odell
Comment from Kristina Paris
Comment from Eva Thomas
Comment from Linda Rea
Comment from Jaimee Stransky
Comment from Ariel Stouder

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16324
NOAA-NMFS-2020-0031-DRAFT-16325
NOAA-NMFS-2020-0031-DRAFT-16326
NOAA-NMFS-2020-0031-DRAFT-16327
NOAA-NMFS-2020-0031-DRAFT-16328
NOAA-NMFS-2020-0031-DRAFT-16329
NOAA-NMFS-2020-0031-DRAFT-16330
NOAA-NMFS-2020-0031-DRAFT-16331
NOAA-NMFS-2020-0031-DRAFT-16332
NOAA-NMFS-2020-0031-DRAFT-16333
NOAA-NMFS-2020-0031-DRAFT-16334
NOAA-NMFS-2020-0031-DRAFT-16335
NOAA-NMFS-2020-0031-DRAFT-16336
NOAA-NMFS-2020-0031-DRAFT-16337
NOAA-NMFS-2020-0031-DRAFT-16339
NOAA-NMFS-2020-0031-DRAFT-16340
NOAA-NMFS-2020-0031-DRAFT-16341
NOAA-NMFS-2020-0031-DRAFT-16342
NOAA-NMFS-2020-0031-DRAFT-16343
NOAA-NMFS-2020-0031-DRAFT-16344
NOAA-NMFS-2020-0031-DRAFT-16345
NOAA-NMFS-2020-0031-DRAFT-16346
NOAA-NMFS-2020-0031-DRAFT-16347
NOAA-NMFS-2020-0031-DRAFT-16348
NOAA-NMFS-2020-0031-DRAFT-16349
NOAA-NMFS-2020-0031-DRAFT-16350
NOAA-NMFS-2020-0031-DRAFT-16351
NOAA-NMFS-2020-0031-DRAFT-16352
NOAA-NMFS-2020-0031-DRAFT-16353
NOAA-NMFS-2020-0031-DRAFT-16354
NOAA-NMFS-2020-0031-DRAFT-16355
NOAA-NMFS-2020-0031-DRAFT-16356
NOAA-NMFS-2020-0031-DRAFT-16357
NOAA-NMFS-2020-0031-DRAFT-16358
NOAA-NMFS-2020-0031-DRAFT-16359
NOAA-NMFS-2020-0031-DRAFT-16360
NOAA-NMFS-2020-0031-DRAFT-16361
NOAA-NMFS-2020-0031-DRAFT-16362
NOAA-NMFS-2020-0031-DRAFT-16363
NOAA-NMFS-2020-0031-DRAFT-16364
NOAA-NMFS-2020-0031-DRAFT-16365

Comment from Glen Wetzel
Comment from Etienne DiPaolo
Comment from Carole Mathews
Comment from Katie Acomb
Comment from Mary Erickson
Comment from Tara Strand
Comment from Ikuko Hibbs
Comment from Diane Pease
Comment from Rebecca Paulson
Comment from PJ Vasconcellos
Comment from Mary Baker
Comment from Marie Colvin
Comment from Steve & Nancy Gould
Comment from Meredith Priestley
Comment from Dolores Harrison
Comment from Kyle Kinkade
Comment from Don Thompson
Comment from Harriet Levine
Comment from Magdalena Craig
Comment from Cathy Martin
Comment from Anna Marie Soper
O'Rourke
Comment from Marlene Lowery
Comment from Susan Glarum
Comment from Eve Danner Lentz
Comment from wendy howes
Comment from Vianney Ventura
Comment from Kathleen Pearson
Comment from Kirk Rhoads
Comment from Nigel Sawyer
Comment from ann tagawa
Comment from Paula Mahoney
Comment from Wally Bubelis
Comment from Kelly Fiske
Comment from Lisa Zafar
Comment from Susan Schwarz
Comment from Tracey Aquino
Comment from Dona LaSchiava
Comment from Freda Davis
Comment from Kimberly Seger
Comment from Maris Hocking
Comment from BC Shelby

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11198
NOAA-NMFS-2020-0031-DRAFT-11199
NOAA-NMFS-2020-0031-DRAFT-11200
NOAA-NMFS-2020-0031-DRAFT-11201
NOAA-NMFS-2020-0031-DRAFT-11202
NOAA-NMFS-2020-0031-DRAFT-11203
NOAA-NMFS-2020-0031-DRAFT-11204
NOAA-NMFS-2020-0031-DRAFT-11205
NOAA-NMFS-2020-0031-DRAFT-11206
NOAA-NMFS-2020-0031-DRAFT-11207
NOAA-NMFS-2020-0031-DRAFT-11208
NOAA-NMFS-2020-0031-DRAFT-11209
NOAA-NMFS-2020-0031-DRAFT-11210
NOAA-NMFS-2020-0031-DRAFT-11211
NOAA-NMFS-2020-0031-DRAFT-11212
NOAA-NMFS-2020-0031-DRAFT-11213
NOAA-NMFS-2020-0031-DRAFT-11214
NOAA-NMFS-2020-0031-DRAFT-11215
NOAA-NMFS-2020-0031-DRAFT-11216
NOAA-NMFS-2020-0031-DRAFT-11217
NOAA-NMFS-2020-0031-DRAFT-11218
NOAA-NMFS-2020-0031-DRAFT-11219
NOAA-NMFS-2020-0031-DRAFT-11220
NOAA-NMFS-2020-0031-DRAFT-11221
NOAA-NMFS-2020-0031-DRAFT-11222
NOAA-NMFS-2020-0031-DRAFT-11223
NOAA-NMFS-2020-0031-DRAFT-11224
NOAA-NMFS-2020-0031-DRAFT-11225
NOAA-NMFS-2020-0031-DRAFT-11226
NOAA-NMFS-2020-0031-DRAFT-11227
NOAA-NMFS-2020-0031-DRAFT-11228
NOAA-NMFS-2020-0031-DRAFT-11229
NOAA-NMFS-2020-0031-DRAFT-11230
NOAA-NMFS-2020-0031-DRAFT-11231
NOAA-NMFS-2020-0031-DRAFT-11232
NOAA-NMFS-2020-0031-DRAFT-11233
NOAA-NMFS-2020-0031-DRAFT-11234
NOAA-NMFS-2020-0031-DRAFT-11235
NOAA-NMFS-2020-0031-DRAFT-11236
NOAA-NMFS-2020-0031-DRAFT-11237
NOAA-NMFS-2020-0031-DRAFT-11238

Comment from Amber Murphy
Comment from jon longsworth
Comment from Lois Kaufmann
Comment from Shereen Gillette
Comment from Kerby Miller
Comment from Candace Rocha
Comment from Art Van Kampen
Comment from Sue Ervin
Comment from William Hayes
Comment from Shela Hadley
Comment from Tamara Cain
Comment from Dena Schwimmer
Comment from Joseph Razo
Comment from Delia Gerhard
Comment from J Lewis
Comment from Emily Van Alyne
Comment from Barbara Ito
Comment from Melva Meyer
Comment from Mark Gotvald
Comment from A SHOUSE
Comment from KEITH KLEBER
Comment from William George
Comment from Susan Knight
Comment from Christine Angeles
Comment from Ruby Grad
Comment from G.Dale Mathey
Comment from Richard Rutherford
Comment from Clare Wheeler
Comment from Ben Martin
Comment from Desiree Nagyfy
Comment from Kimm Carter
Comment from Tom Wendel
Comment from Gretchen Herrmann
Comment from Arline Fass
Comment from Judy Fore
Comment from William Goldberg
Comment from Karen Redd
Comment from Tracey Katsouros
Comment from Hannah Salvatore
Comment from Mary Landrum
Comment from Barry Goldfarb

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16366
NOAA-NMFS-2020-0031-DRAFT-16367
NOAA-NMFS-2020-0031-DRAFT-16368
NOAA-NMFS-2020-0031-DRAFT-16369
NOAA-NMFS-2020-0031-DRAFT-16370
NOAA-NMFS-2020-0031-DRAFT-16371
NOAA-NMFS-2020-0031-DRAFT-16372
NOAA-NMFS-2020-0031-DRAFT-16373
NOAA-NMFS-2020-0031-DRAFT-16374
NOAA-NMFS-2020-0031-DRAFT-16375
NOAA-NMFS-2020-0031-DRAFT-16376
NOAA-NMFS-2020-0031-DRAFT-16377
NOAA-NMFS-2020-0031-DRAFT-16378
NOAA-NMFS-2020-0031-DRAFT-16379
NOAA-NMFS-2020-0031-DRAFT-16380
NOAA-NMFS-2020-0031-DRAFT-16381
NOAA-NMFS-2020-0031-DRAFT-16382
NOAA-NMFS-2020-0031-DRAFT-16383
NOAA-NMFS-2020-0031-DRAFT-16384
NOAA-NMFS-2020-0031-DRAFT-16385
NOAA-NMFS-2020-0031-DRAFT-16386
NOAA-NMFS-2020-0031-DRAFT-16387
NOAA-NMFS-2020-0031-DRAFT-16388
NOAA-NMFS-2020-0031-DRAFT-16389
NOAA-NMFS-2020-0031-DRAFT-16390
NOAA-NMFS-2020-0031-DRAFT-16391
NOAA-NMFS-2020-0031-DRAFT-16392
NOAA-NMFS-2020-0031-DRAFT-16393
NOAA-NMFS-2020-0031-DRAFT-16394
NOAA-NMFS-2020-0031-DRAFT-16395
NOAA-NMFS-2020-0031-DRAFT-16396
NOAA-NMFS-2020-0031-DRAFT-16397
NOAA-NMFS-2020-0031-DRAFT-16398
NOAA-NMFS-2020-0031-DRAFT-16399
NOAA-NMFS-2020-0031-DRAFT-16400
NOAA-NMFS-2020-0031-DRAFT-16401
NOAA-NMFS-2020-0031-DRAFT-16402
NOAA-NMFS-2020-0031-DRAFT-16403
NOAA-NMFS-2020-0031-DRAFT-16404
NOAA-NMFS-2020-0031-DRAFT-16405
NOAA-NMFS-2020-0031-DRAFT-16406

Comment from Julie Brown
Comment from Julie Turner
Comment from Dixie Mullineaux
Comment from Kathie Moore
Comment from Joanne Oneill
Comment from Miranda Allison Young
Comment from Kathryn Powers
Comment from Karen Doerr
Comment from Kathleen Broniak
Comment from Mary Blue
Comment from JERRY BALABANIAN
Comment from Nora Coyle
Comment from alice bennett
Comment from Carl Stapler
Comment from Frances Recca
Comment from Patti Mickelsen
Comment from Sheena Lonecke
Comment from Sue Seargent
Comment from Midori Furutate
Comment from Mark and Patti McMahan
Comment from Shannon Allsop
Comment from Elise Margulis
Comment from suzanne coughlin
Comment from PATRICIA NARDONE
Comment from Patti Herring
Comment from Randy Blau
Comment from Jennifer Miller
Comment from Rob Rowe
Comment from Deborah Voves
Comment from Ilene Kazak
Comment from Lauren Contino
Comment from Christine Mullie
Comment from Elizabeth Fahy
Comment from Linda Nall
Comment from Linda Buckingham
Comment from Karen Charette
Comment from Nina Arthur
Comment from Stephanie Gutierrez
Comment from Mariko Wheeler
Comment from George Latta M D MBA
Comment from Margaret Christensen

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11239
NOAA-NMFS-2020-0031-DRAFT-11240
NOAA-NMFS-2020-0031-DRAFT-11241
NOAA-NMFS-2020-0031-DRAFT-11242
NOAA-NMFS-2020-0031-DRAFT-11243
NOAA-NMFS-2020-0031-DRAFT-11244
NOAA-NMFS-2020-0031-DRAFT-11245
NOAA-NMFS-2020-0031-DRAFT-11246
NOAA-NMFS-2020-0031-DRAFT-11247
NOAA-NMFS-2020-0031-DRAFT-11248
NOAA-NMFS-2020-0031-DRAFT-11249
NOAA-NMFS-2020-0031-DRAFT-11250
NOAA-NMFS-2020-0031-DRAFT-11251
NOAA-NMFS-2020-0031-DRAFT-11252
NOAA-NMFS-2020-0031-DRAFT-11253
NOAA-NMFS-2020-0031-DRAFT-11254
NOAA-NMFS-2020-0031-DRAFT-11255
NOAA-NMFS-2020-0031-DRAFT-11256
NOAA-NMFS-2020-0031-DRAFT-11257
NOAA-NMFS-2020-0031-DRAFT-11258
NOAA-NMFS-2020-0031-DRAFT-11259
NOAA-NMFS-2020-0031-DRAFT-11260
NOAA-NMFS-2020-0031-DRAFT-11261
NOAA-NMFS-2020-0031-DRAFT-11262
NOAA-NMFS-2020-0031-DRAFT-11263
NOAA-NMFS-2020-0031-DRAFT-11264
NOAA-NMFS-2020-0031-DRAFT-11265
NOAA-NMFS-2020-0031-DRAFT-11266
NOAA-NMFS-2020-0031-DRAFT-11267
NOAA-NMFS-2020-0031-DRAFT-11268
NOAA-NMFS-2020-0031-DRAFT-11269
NOAA-NMFS-2020-0031-DRAFT-11270
NOAA-NMFS-2020-0031-DRAFT-11271
NOAA-NMFS-2020-0031-DRAFT-11272
NOAA-NMFS-2020-0031-DRAFT-11273
NOAA-NMFS-2020-0031-DRAFT-11274
NOAA-NMFS-2020-0031-DRAFT-11275
NOAA-NMFS-2020-0031-DRAFT-11276
NOAA-NMFS-2020-0031-DRAFT-11277
NOAA-NMFS-2020-0031-DRAFT-11278
NOAA-NMFS-2020-0031-DRAFT-11279

Comment from Michael Fine
Comment from William Kenney
Comment from IHerman Hardy
Comment from James Bullock
Comment from Perry Gx
Comment from lauren horwitz
Comment from Ben Flint
Comment from Johanna Miller
Comment from Lionel Friedberg
Comment from Renae Nowicki
Comment from Nancy Schuhrke
Comment from L. Wilkinson
Comment from Diana Lunceford
Comment from Nalei Kahakalau
Comment from Wilson Ross
Comment from Carolyn Hawk
Comment from Barbara Scheinman
Comment from Julie Maisel
Comment from Mal Gaff
Comment from Donalyn Gross
Comment from Richard Zimmermann
Comment from Daphne Lake
Comment from Randal Little
Comment from Christopher Michaels
Comment from Willam Ridgeway
Comment from Karen Rehm
Comment from Tim Duda
Comment from Ed Kraynak
Comment from Marilyn Montgomery
Comment from Elizabeth Werner
Comment from Margaret Weant-Leavitt
Comment from Deborah Stewart
Comment from Steven Cypher
Comment from Deborah Henriksen
Comment from Tim Hanson
Comment from Shane Daly
Comment from Shana Gerwens
Comment from Joelle Porter
Comment from Michele Hondo
Comment from Ed Rosenblum
Comment from Amy Roberts

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16407
NOAA-NMFS-2020-0031-DRAFT-16408
NOAA-NMFS-2020-0031-DRAFT-16409
NOAA-NMFS-2020-0031-DRAFT-16410
NOAA-NMFS-2020-0031-DRAFT-16411
NOAA-NMFS-2020-0031-DRAFT-16412
NOAA-NMFS-2020-0031-DRAFT-16413
NOAA-NMFS-2020-0031-DRAFT-16414
NOAA-NMFS-2020-0031-DRAFT-16415
NOAA-NMFS-2020-0031-DRAFT-16416
NOAA-NMFS-2020-0031-DRAFT-16417
NOAA-NMFS-2020-0031-DRAFT-16418
NOAA-NMFS-2020-0031-DRAFT-16419
NOAA-NMFS-2020-0031-DRAFT-16420
NOAA-NMFS-2020-0031-DRAFT-16421
NOAA-NMFS-2020-0031-DRAFT-16422
NOAA-NMFS-2020-0031-DRAFT-16423
NOAA-NMFS-2020-0031-DRAFT-16424
NOAA-NMFS-2020-0031-DRAFT-16425
NOAA-NMFS-2020-0031-DRAFT-16426
NOAA-NMFS-2020-0031-DRAFT-16427
NOAA-NMFS-2020-0031-DRAFT-16428
NOAA-NMFS-2020-0031-DRAFT-16429
NOAA-NMFS-2020-0031-DRAFT-16430
NOAA-NMFS-2020-0031-DRAFT-16431
NOAA-NMFS-2020-0031-DRAFT-16432
NOAA-NMFS-2020-0031-DRAFT-16433
NOAA-NMFS-2020-0031-DRAFT-16434
NOAA-NMFS-2020-0031-DRAFT-16435
NOAA-NMFS-2020-0031-DRAFT-16436
NOAA-NMFS-2020-0031-DRAFT-16437
NOAA-NMFS-2020-0031-DRAFT-16438
NOAA-NMFS-2020-0031-DRAFT-16439
NOAA-NMFS-2020-0031-DRAFT-16440
NOAA-NMFS-2020-0031-DRAFT-16441
NOAA-NMFS-2020-0031-DRAFT-16442
NOAA-NMFS-2020-0031-DRAFT-16443
NOAA-NMFS-2020-0031-DRAFT-16444
NOAA-NMFS-2020-0031-DRAFT-16445
NOAA-NMFS-2020-0031-DRAFT-16446
NOAA-NMFS-2020-0031-DRAFT-16447

Comment from Juliette F Skurka
Comment from Dianne Croft
Comment from Marianne Bentley
Comment from Steven Strode
Comment from Laurie Blain
Comment from Barbara Coy
Comment from Diana Andrews
Comment from Lynne Teplin
Comment from felipe diaz
Comment from sue mcmullen
Comment from Helen Torosian
Comment from Jaime Alcantara
Comment from Nelson Courser
Comment from Karen Cucci
Comment from Nicola Nicolai
Comment from Sharon Wushensky
Comment from Janice Banks
Comment from Gwen Carlson
Comment from Brenda Nieland
Comment from Trudy Lannon
Comment from Roberta Bech
Comment from Bev Lips
Comment from Lynn Pearson
Comment from Ricky Gitt
Comment from David Hand
Comment from Kathryn Moot
Comment from Ama Latorre
Comment from Thierry Brouzet
Comment from Rob Menti
Comment from Desiree Nagyfy
Comment from Amy Cyr
Comment from Sydney Dunlap
Comment from Alice Savage
Comment from Dan Begay
Comment from Ana Verlaine
Comment from Ryan Persad
Comment from Kathlene Henry Gorman
Comment from Carol Jagiello
Comment from Donna McClure
Comment from Carol Latchana
Comment from Krista Taylor

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11280
NOAA-NMFS-2020-0031-DRAFT-11281
NOAA-NMFS-2020-0031-DRAFT-11282
NOAA-NMFS-2020-0031-DRAFT-11283
NOAA-NMFS-2020-0031-DRAFT-11284
NOAA-NMFS-2020-0031-DRAFT-11285
NOAA-NMFS-2020-0031-DRAFT-11286
NOAA-NMFS-2020-0031-DRAFT-11287
NOAA-NMFS-2020-0031-DRAFT-11288
NOAA-NMFS-2020-0031-DRAFT-11289
NOAA-NMFS-2020-0031-DRAFT-11290
NOAA-NMFS-2020-0031-DRAFT-11291
NOAA-NMFS-2020-0031-DRAFT-11292
NOAA-NMFS-2020-0031-DRAFT-11293
NOAA-NMFS-2020-0031-DRAFT-11294
NOAA-NMFS-2020-0031-DRAFT-11295
NOAA-NMFS-2020-0031-DRAFT-11296
NOAA-NMFS-2020-0031-DRAFT-11297
NOAA-NMFS-2020-0031-DRAFT-11298
NOAA-NMFS-2020-0031-DRAFT-11299
NOAA-NMFS-2020-0031-DRAFT-11300
NOAA-NMFS-2020-0031-DRAFT-11301
NOAA-NMFS-2020-0031-DRAFT-11302
NOAA-NMFS-2020-0031-DRAFT-11303
NOAA-NMFS-2020-0031-DRAFT-11304
NOAA-NMFS-2020-0031-DRAFT-11305
NOAA-NMFS-2020-0031-DRAFT-11306
NOAA-NMFS-2020-0031-DRAFT-11307
NOAA-NMFS-2020-0031-DRAFT-11308
NOAA-NMFS-2020-0031-DRAFT-11309
NOAA-NMFS-2020-0031-DRAFT-11310
NOAA-NMFS-2020-0031-DRAFT-11311
NOAA-NMFS-2020-0031-DRAFT-11312
NOAA-NMFS-2020-0031-DRAFT-11313
NOAA-NMFS-2020-0031-DRAFT-11314
NOAA-NMFS-2020-0031-DRAFT-11315
NOAA-NMFS-2020-0031-DRAFT-11316
NOAA-NMFS-2020-0031-DRAFT-11317
NOAA-NMFS-2020-0031-DRAFT-11318
NOAA-NMFS-2020-0031-DRAFT-11319
NOAA-NMFS-2020-0031-DRAFT-11320

Comment from Bennie Scott
Comment from Pat Heron
Comment from Hilary Rausher
Comment from Sam holm
Comment from C. Brezina
Comment from Mark Hollinrake
Comment from John Lopez
Comment from Brookie Judge
Comment from Alan Miller
Comment from Andy Lynn
Comment from Kelley Jonske
Comment from M. Baca
Comment from Miriam Kurland
Comment from David Kuzmeskus
Comment from Nawal Tamimi
Comment from Lina Downes
Comment from Kathleen Doctor
Comment from Mike peale
Comment from Robert Paterno
Comment from Long Pham
Comment from Mary Holm
Comment from Katherine Hutchins
Comment from Heather Cross
Comment from Boril Iordanov
Comment from N Coyle
Comment from Barbara Ocskai
Comment from S T
Comment from Erik Hvoslef
Comment from Margaret Schiff
Comment from Paula Summers
Comment from Judi Robinson-Kerr
Comment from Susan Grabowski
Comment from James Hadcroft
Comment from Valeria Mola
Comment from Brian Gray
Comment from Harold Robinson
Comment from Lascinda Goetschius
Comment from Richard Guier
Comment from Moriah Barth
Comment from Kathleen Kiselewich
Comment from dawn rutigliano

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16448
NOAA-NMFS-2020-0031-DRAFT-16449
NOAA-NMFS-2020-0031-DRAFT-16450
NOAA-NMFS-2020-0031-DRAFT-16451
NOAA-NMFS-2020-0031-DRAFT-16452
NOAA-NMFS-2020-0031-DRAFT-16453
NOAA-NMFS-2020-0031-DRAFT-16454
NOAA-NMFS-2020-0031-DRAFT-16455
NOAA-NMFS-2020-0031-DRAFT-16456
NOAA-NMFS-2020-0031-DRAFT-16457
NOAA-NMFS-2020-0031-DRAFT-16458
NOAA-NMFS-2020-0031-DRAFT-16459
NOAA-NMFS-2020-0031-DRAFT-16460
NOAA-NMFS-2020-0031-DRAFT-16461
NOAA-NMFS-2020-0031-DRAFT-16462
NOAA-NMFS-2020-0031-DRAFT-16463
NOAA-NMFS-2020-0031-DRAFT-16464
NOAA-NMFS-2020-0031-DRAFT-16465
NOAA-NMFS-2020-0031-DRAFT-16466
NOAA-NMFS-2020-0031-DRAFT-16467
NOAA-NMFS-2020-0031-DRAFT-16468
NOAA-NMFS-2020-0031-DRAFT-16470
NOAA-NMFS-2020-0031-DRAFT-16471
NOAA-NMFS-2020-0031-DRAFT-16472
NOAA-NMFS-2020-0031-DRAFT-16473
NOAA-NMFS-2020-0031-DRAFT-16474
NOAA-NMFS-2020-0031-DRAFT-16475
NOAA-NMFS-2020-0031-DRAFT-16476
NOAA-NMFS-2020-0031-DRAFT-16477
NOAA-NMFS-2020-0031-DRAFT-16478
NOAA-NMFS-2020-0031-DRAFT-16479
NOAA-NMFS-2020-0031-DRAFT-16480
NOAA-NMFS-2020-0031-DRAFT-16481
NOAA-NMFS-2020-0031-DRAFT-16482
NOAA-NMFS-2020-0031-DRAFT-16483
NOAA-NMFS-2020-0031-DRAFT-16484
NOAA-NMFS-2020-0031-DRAFT-16485
NOAA-NMFS-2020-0031-DRAFT-16486
NOAA-NMFS-2020-0031-DRAFT-16487
NOAA-NMFS-2020-0031-DRAFT-16488
NOAA-NMFS-2020-0031-DRAFT-16489

Comment from judy pizarro
Comment from Lisa Shea
Comment from Barbara Johnson
Comment from Laurence Margolis
Comment from Vanesa Cascino
Comment from Peter Kahigian
Comment from Donna Lozano
Comment from Evelyn Bailey
Comment from Beverly Conway
Comment from Sherry Byers
Comment from Nancy Niemeir
Comment from Paula Andersen
Comment from janice greenberg
Comment from Natalia Ilina
Comment from Lance Kammerud
Comment from Barbara Giorgio
Comment from Judy Armstrong
Comment from Dee Buttimer
Comment from Nancy Sharak
Comment from Noreen Michaud
Comment from Pauline Burak
Comment from Wendi Neckameyer
Comment from Daniel Polley
Comment from Priscilla Trudeau
Comment from LESLIE THORP
Comment from Joel Perkins
Comment from Ron Katz
Comment from Linda Alwardt
Comment from James Stratman PhD
Comment from christine reel brander
Comment from Roger Hollander
Comment from Melissa Grondin
Comment from Kathleen Love
Comment from Tim Porter
Comment from Jeannette Ellis
Comment from Mary Johnson
Comment from Betty Sabo
Comment from Frank King
Comment from Tamara Bragg
Comment from Susan Thurairatnam
Comment from Katie Clifford

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02/09/2021
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02/09/2021
02/09/2021
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02/09/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11321
NOAA-NMFS-2020-0031-DRAFT-11322
NOAA-NMFS-2020-0031-DRAFT-11323
NOAA-NMFS-2020-0031-DRAFT-11324
NOAA-NMFS-2020-0031-DRAFT-11325
NOAA-NMFS-2020-0031-DRAFT-11326
NOAA-NMFS-2020-0031-DRAFT-11327
NOAA-NMFS-2020-0031-DRAFT-11328
NOAA-NMFS-2020-0031-DRAFT-11329
NOAA-NMFS-2020-0031-DRAFT-11330
NOAA-NMFS-2020-0031-DRAFT-11331
NOAA-NMFS-2020-0031-DRAFT-11332
NOAA-NMFS-2020-0031-DRAFT-11333
NOAA-NMFS-2020-0031-DRAFT-11334
NOAA-NMFS-2020-0031-DRAFT-11335
NOAA-NMFS-2020-0031-DRAFT-11336
NOAA-NMFS-2020-0031-DRAFT-11337
NOAA-NMFS-2020-0031-DRAFT-11338
NOAA-NMFS-2020-0031-DRAFT-11339
NOAA-NMFS-2020-0031-DRAFT-11340
NOAA-NMFS-2020-0031-DRAFT-11341
NOAA-NMFS-2020-0031-DRAFT-11342
NOAA-NMFS-2020-0031-DRAFT-11343
NOAA-NMFS-2020-0031-DRAFT-11344
NOAA-NMFS-2020-0031-DRAFT-11345
NOAA-NMFS-2020-0031-DRAFT-11346
NOAA-NMFS-2020-0031-DRAFT-11347
NOAA-NMFS-2020-0031-DRAFT-11348
NOAA-NMFS-2020-0031-DRAFT-11349
NOAA-NMFS-2020-0031-DRAFT-11350
NOAA-NMFS-2020-0031-DRAFT-11351
NOAA-NMFS-2020-0031-DRAFT-11352
NOAA-NMFS-2020-0031-DRAFT-11353
NOAA-NMFS-2020-0031-DRAFT-11354
NOAA-NMFS-2020-0031-DRAFT-11355
NOAA-NMFS-2020-0031-DRAFT-11356
NOAA-NMFS-2020-0031-DRAFT-11357
NOAA-NMFS-2020-0031-DRAFT-11358
NOAA-NMFS-2020-0031-DRAFT-11359
NOAA-NMFS-2020-0031-DRAFT-11360
NOAA-NMFS-2020-0031-DRAFT-11361

Comment from Don Thompson
Comment from Priscilla Newcomer
Comment from Rhonda Bast
Comment from John Hitchins
Comment from Carlos Arnold
Comment from Judith Levinton
Comment from Susan Lilley
Comment from Marilyn Watkins
Comment from Sandra Hoppmann
Comment from Marianne Lazarus
Comment from Laurie Spraga
Comment from kathy haverkamp
Comment from Bonnie Smith
Comment from Johann Schumacher
Comment from Lory Ono
Comment from Michele Wise
Comment from Allison Matthews
Comment from Liz Wirtz
Comment from Aron Silberg
Comment from Dave Roehm
Comment from Diane Barbera
Comment from Brian Boortz
Comment from Glenn Gawinowicz
Comment from Jonathan Kennedy
Comment from Jay Denniston
Comment from Sandra Bonham
Comment from Natalia Stadelbauer
Comment from Bryan Wyberg
Comment from Stephanie Larro
Comment from Travis Gomez
Comment from Christine Wrazen
Comment from Susan Sebanc
Comment from Clarence Sutton
Comment from Ricki Walsh
Comment from Paula Wieser
Comment from Sandy Beck
Comment from Jane Schnee
Comment from Greg Elems
Comment from Kathy Kelly
Comment from Lynn Costa
Comment from christy park

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16490
NOAA-NMFS-2020-0031-DRAFT-16491
NOAA-NMFS-2020-0031-DRAFT-16492
NOAA-NMFS-2020-0031-DRAFT-16493
NOAA-NMFS-2020-0031-DRAFT-16494
NOAA-NMFS-2020-0031-DRAFT-16495
NOAA-NMFS-2020-0031-DRAFT-16496
NOAA-NMFS-2020-0031-DRAFT-16497
NOAA-NMFS-2020-0031-DRAFT-16498
NOAA-NMFS-2020-0031-DRAFT-16499
NOAA-NMFS-2020-0031-DRAFT-16500
NOAA-NMFS-2020-0031-DRAFT-16501
NOAA-NMFS-2020-0031-DRAFT-16502
NOAA-NMFS-2020-0031-DRAFT-16503
NOAA-NMFS-2020-0031-DRAFT-16504
NOAA-NMFS-2020-0031-DRAFT-16505
NOAA-NMFS-2020-0031-DRAFT-16506
NOAA-NMFS-2020-0031-DRAFT-16507
NOAA-NMFS-2020-0031-DRAFT-16508
NOAA-NMFS-2020-0031-DRAFT-16509
NOAA-NMFS-2020-0031-DRAFT-16510
NOAA-NMFS-2020-0031-DRAFT-16511
NOAA-NMFS-2020-0031-DRAFT-16512
NOAA-NMFS-2020-0031-DRAFT-16513
NOAA-NMFS-2020-0031-DRAFT-16514
NOAA-NMFS-2020-0031-DRAFT-16515
NOAA-NMFS-2020-0031-DRAFT-16516
NOAA-NMFS-2020-0031-DRAFT-16517
NOAA-NMFS-2020-0031-DRAFT-16518
NOAA-NMFS-2020-0031-DRAFT-16519
NOAA-NMFS-2020-0031-DRAFT-16520
NOAA-NMFS-2020-0031-DRAFT-16521
NOAA-NMFS-2020-0031-DRAFT-16522
NOAA-NMFS-2020-0031-DRAFT-16523
NOAA-NMFS-2020-0031-DRAFT-16524
NOAA-NMFS-2020-0031-DRAFT-16525
NOAA-NMFS-2020-0031-DRAFT-16526
NOAA-NMFS-2020-0031-DRAFT-16527
NOAA-NMFS-2020-0031-DRAFT-16528
NOAA-NMFS-2020-0031-DRAFT-16529
NOAA-NMFS-2020-0031-DRAFT-16530

Comment from Shawna Upole
Comment from Vesna Glavina
Comment from Jon Singleton
Comment from Catherine Goeggel
Comment from Doreen Perry
Comment from Halima Padilla Moyen
Comment from Taryn Braband
Comment from Sarah Wiedel
Comment from John Comella
Comment from Lynn Costa
Comment from Nathalie Camus
Comment from Rosemarie Gonzales
Nielsen
Comment from Gayle Martin
Comment from Rawil Ismail
Comment from Carol Anderson
Comment from Sue DiMoia
Comment from Robin Terry
Comment from Brian Reynolds
Comment from Sheri Carl
Comment from Elise Caplan
Comment from John Comella
Comment from Aggie Shapiro
Comment from Leslie Engelmeier
Comment from Jen Kraemer
Comment from Victoria Childers
Comment from Deb Kilgore
Comment from Teresa Lyman
Comment from Tamara Bragg
Comment from Lynn Bengston
Comment from Joyce Rossel
Comment from Mike Grunblatt
Comment from Cathy Wootan
Comment from Nicholas Huss
Comment from Peggy Bow
Comment from Leonard Epstein
Comment from Herbert Lord
Comment from Catherine Loudis
Comment from Herbert Lord
Comment from Rob Myers
Comment from Daniel Grassi
Comment from Joan Martorano

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11362
NOAA-NMFS-2020-0031-DRAFT-11363
NOAA-NMFS-2020-0031-DRAFT-11364
NOAA-NMFS-2020-0031-DRAFT-11365
NOAA-NMFS-2020-0031-DRAFT-11366
NOAA-NMFS-2020-0031-DRAFT-11367
NOAA-NMFS-2020-0031-DRAFT-11369
NOAA-NMFS-2020-0031-DRAFT-11370
NOAA-NMFS-2020-0031-DRAFT-11371
NOAA-NMFS-2020-0031-DRAFT-11372
NOAA-NMFS-2020-0031-DRAFT-11374
NOAA-NMFS-2020-0031-DRAFT-11375
NOAA-NMFS-2020-0031-DRAFT-11376
NOAA-NMFS-2020-0031-DRAFT-11377
NOAA-NMFS-2020-0031-DRAFT-11378
NOAA-NMFS-2020-0031-DRAFT-11379
NOAA-NMFS-2020-0031-DRAFT-11380
NOAA-NMFS-2020-0031-DRAFT-11381
NOAA-NMFS-2020-0031-DRAFT-11382
NOAA-NMFS-2020-0031-DRAFT-11383
NOAA-NMFS-2020-0031-DRAFT-11384
NOAA-NMFS-2020-0031-DRAFT-11386
NOAA-NMFS-2020-0031-DRAFT-11387
NOAA-NMFS-2020-0031-DRAFT-11388
NOAA-NMFS-2020-0031-DRAFT-11389
NOAA-NMFS-2020-0031-DRAFT-11390
NOAA-NMFS-2020-0031-DRAFT-11391
NOAA-NMFS-2020-0031-DRAFT-11392
NOAA-NMFS-2020-0031-DRAFT-11393
NOAA-NMFS-2020-0031-DRAFT-11394
NOAA-NMFS-2020-0031-DRAFT-11395
NOAA-NMFS-2020-0031-DRAFT-11396
NOAA-NMFS-2020-0031-DRAFT-11397
NOAA-NMFS-2020-0031-DRAFT-11398
NOAA-NMFS-2020-0031-DRAFT-11399
NOAA-NMFS-2020-0031-DRAFT-11400
NOAA-NMFS-2020-0031-DRAFT-11401
NOAA-NMFS-2020-0031-DRAFT-11402
NOAA-NMFS-2020-0031-DRAFT-11403
NOAA-NMFS-2020-0031-DRAFT-11404
NOAA-NMFS-2020-0031-DRAFT-11405

Comment from Mary Maher
Comment from Stephanie Fairchild
Comment from Lena Fransioli
Comment from Linda Seaver
Comment from David Miller
Comment from Justine Shelton
Comment from Joyce Olsen
Comment from Ellen Dryer
Comment from B Sitkin
Comment from Rebecca Welch
Comment from Dawn Ohlsson
Comment from Melvin Hughes
Comment from Bruce Barker
Comment from Andrew Kistler
Comment from Lollie Ragana
Comment from Carole Pappas
Comment from Nadine Larsen
Comment from Marie Weis
Comment from Sarah Rowe
Comment from Kat Noll
Comment from Mark Cosgriff
Comment from Fred Fall
Comment from Duane Choy
Comment from Dan Racz
Comment from Dan Racz
Comment from Sally Webb
Comment from Liz Mahony
Comment from Carol Levy
Comment from Barbara Hatcher
Comment from Dennis Manning
Comment from Marilyn Clark
Comment from Nina Hamilton
Comment from Sara Miller
Comment from Michael Cloud
Comment from Margaret Tyska
Comment from Mary Dahl
Comment from sheila munson
Comment from Joshua Paterno
Comment from Florencia Morales
Comment from George Klipfel
Comment from Vic DeAngelo

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16531
NOAA-NMFS-2020-0031-DRAFT-16532
NOAA-NMFS-2020-0031-DRAFT-16533
NOAA-NMFS-2020-0031-DRAFT-16534
NOAA-NMFS-2020-0031-DRAFT-16535
NOAA-NMFS-2020-0031-DRAFT-16536
NOAA-NMFS-2020-0031-DRAFT-16537
NOAA-NMFS-2020-0031-DRAFT-16538
NOAA-NMFS-2020-0031-DRAFT-16539
NOAA-NMFS-2020-0031-DRAFT-16540
NOAA-NMFS-2020-0031-DRAFT-16541
NOAA-NMFS-2020-0031-DRAFT-16542
NOAA-NMFS-2020-0031-DRAFT-16543
NOAA-NMFS-2020-0031-DRAFT-16544
NOAA-NMFS-2020-0031-DRAFT-16545
NOAA-NMFS-2020-0031-DRAFT-16546
NOAA-NMFS-2020-0031-DRAFT-16547
NOAA-NMFS-2020-0031-DRAFT-16548
NOAA-NMFS-2020-0031-DRAFT-16549
NOAA-NMFS-2020-0031-DRAFT-16550
NOAA-NMFS-2020-0031-DRAFT-16551
NOAA-NMFS-2020-0031-DRAFT-16552
NOAA-NMFS-2020-0031-DRAFT-16553
NOAA-NMFS-2020-0031-DRAFT-16554
NOAA-NMFS-2020-0031-DRAFT-16555
NOAA-NMFS-2020-0031-DRAFT-16556
NOAA-NMFS-2020-0031-DRAFT-16557
NOAA-NMFS-2020-0031-DRAFT-16558
NOAA-NMFS-2020-0031-DRAFT-16559
NOAA-NMFS-2020-0031-DRAFT-16560
NOAA-NMFS-2020-0031-DRAFT-16561
NOAA-NMFS-2020-0031-DRAFT-16562
NOAA-NMFS-2020-0031-DRAFT-16563
NOAA-NMFS-2020-0031-DRAFT-16564
NOAA-NMFS-2020-0031-DRAFT-16565
NOAA-NMFS-2020-0031-DRAFT-16566
NOAA-NMFS-2020-0031-DRAFT-16567
NOAA-NMFS-2020-0031-DRAFT-16568
NOAA-NMFS-2020-0031-DRAFT-16569
NOAA-NMFS-2020-0031-DRAFT-16570
NOAA-NMFS-2020-0031-DRAFT-16571

Comment from Monica Mayes
Comment from Ann VanWagenen
Comment from Erin Ryan
Comment from chris lewis
Comment from Susan Siniard
Comment from Ronald Lemmert
Comment from Adarsh ayyar
Comment from Laurel Starr
Comment from Michael Lockhart
Comment from Sandra Oliver Poore
Comment from Marge Kniola
Comment from Caitlin Tennant
Comment from Morgan Meyers
Comment from Linda Brunner
Comment from Lalit Wadhwa
Comment from Debra Floyd
Comment from Julie Marquez
Comment from Lynn C Lang
Comment from Renata Rollins
Comment from Barbara Kayser
Comment from Bridget Palecek
Comment from Ellen McCann
Comment from Karen Kirschling
Comment from Ken Martin
Comment from Lisa Reich
Comment from Jennifer Rankin
Comment from sonna hosta
Comment from Barbara Ginsberg
Comment from John Monti
Comment from Polly O'Malley
Comment from lisa Jacobson
Comment from Marilyn Filomia Garrett
Comment from Irini Dieringer
Comment from Isaac Ehrlich
Comment from Bruce Cutts
Comment from Kathy Ford
Comment from Linda Serfass
Comment from Robert Ferrara
Comment from Dean Onessimo
Comment from Jess Graffell
Comment from DEVIN McCORMICK

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11406
NOAA-NMFS-2020-0031-DRAFT-11407
NOAA-NMFS-2020-0031-DRAFT-11408
NOAA-NMFS-2020-0031-DRAFT-11409
NOAA-NMFS-2020-0031-DRAFT-11410
NOAA-NMFS-2020-0031-DRAFT-11411
NOAA-NMFS-2020-0031-DRAFT-11412
NOAA-NMFS-2020-0031-DRAFT-11413
NOAA-NMFS-2020-0031-DRAFT-11415
NOAA-NMFS-2020-0031-DRAFT-11416
NOAA-NMFS-2020-0031-DRAFT-11417
NOAA-NMFS-2020-0031-DRAFT-11418
NOAA-NMFS-2020-0031-DRAFT-11419
NOAA-NMFS-2020-0031-DRAFT-11420
NOAA-NMFS-2020-0031-DRAFT-11421
NOAA-NMFS-2020-0031-DRAFT-11422
NOAA-NMFS-2020-0031-DRAFT-11423
NOAA-NMFS-2020-0031-DRAFT-11424
NOAA-NMFS-2020-0031-DRAFT-11425
NOAA-NMFS-2020-0031-DRAFT-11426
NOAA-NMFS-2020-0031-DRAFT-11427
NOAA-NMFS-2020-0031-DRAFT-11428
NOAA-NMFS-2020-0031-DRAFT-11429
NOAA-NMFS-2020-0031-DRAFT-11430
NOAA-NMFS-2020-0031-DRAFT-11431
NOAA-NMFS-2020-0031-DRAFT-11432
NOAA-NMFS-2020-0031-DRAFT-11433
NOAA-NMFS-2020-0031-DRAFT-11434
NOAA-NMFS-2020-0031-DRAFT-11435
NOAA-NMFS-2020-0031-DRAFT-11436
NOAA-NMFS-2020-0031-DRAFT-11437
NOAA-NMFS-2020-0031-DRAFT-11438
NOAA-NMFS-2020-0031-DRAFT-11439
NOAA-NMFS-2020-0031-DRAFT-11440
NOAA-NMFS-2020-0031-DRAFT-11441
NOAA-NMFS-2020-0031-DRAFT-11442
NOAA-NMFS-2020-0031-DRAFT-11443
NOAA-NMFS-2020-0031-DRAFT-11444
NOAA-NMFS-2020-0031-DRAFT-11445
NOAA-NMFS-2020-0031-DRAFT-11446
NOAA-NMFS-2020-0031-DRAFT-11447

Comment from CHARLENE GLASSMAN
Comment from Lloyd Hedger
Comment from Michael Harkins
Comment from Kelly Armour
Comment from Marc Anderson
Comment from Nancy Tucker
Comment from Theresa Morris
Comment from Carol Lake
Comment from Tracey Mangus
Comment from Ronit Corry
Comment from Katie Wood
Comment from Marian Blue
Comment from Eric McLaughlin
Comment from Carol g
Comment from Kathleen Lee
Comment from Terry King
Comment from Marci Cochran
Comment from Erin Neubauer
Comment from Charlene J
Comment from Ann McDermott
Comment from Virginia Stone-Meyer
Comment from Matthew Bergles
Comment from Daniel Hawley
Comment from Harriett Pooler
Comment from Kimberly Vaz
Comment from Gordon Parker
Comment from Peter Broderson
Comment from David Snope
Comment from Norman Traum
Comment from Lisa Goldman
Comment from Rosemarie Paolinelli
Comment from Carol Stevens
Comment from Debra Taylor
Comment from Dan Mohl
Comment from Brenda Miller
Comment from Ada Sneddon
Comment from Robin Kory
Comment from Darren Strain
Comment from Marilyn Davis
Comment from R Weiss
Comment from Laura LaRocca

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16572
NOAA-NMFS-2020-0031-DRAFT-16573
NOAA-NMFS-2020-0031-DRAFT-16574
NOAA-NMFS-2020-0031-DRAFT-16575
NOAA-NMFS-2020-0031-DRAFT-16576
NOAA-NMFS-2020-0031-DRAFT-16577
NOAA-NMFS-2020-0031-DRAFT-16578
NOAA-NMFS-2020-0031-DRAFT-16579
NOAA-NMFS-2020-0031-DRAFT-16580
NOAA-NMFS-2020-0031-DRAFT-16581
NOAA-NMFS-2020-0031-DRAFT-16582
NOAA-NMFS-2020-0031-DRAFT-16583
NOAA-NMFS-2020-0031-DRAFT-16584
NOAA-NMFS-2020-0031-DRAFT-16585
NOAA-NMFS-2020-0031-DRAFT-16586
NOAA-NMFS-2020-0031-DRAFT-16587
NOAA-NMFS-2020-0031-DRAFT-16588
NOAA-NMFS-2020-0031-DRAFT-16589
NOAA-NMFS-2020-0031-DRAFT-16590
NOAA-NMFS-2020-0031-DRAFT-16591
NOAA-NMFS-2020-0031-DRAFT-16592
NOAA-NMFS-2020-0031-DRAFT-16593
NOAA-NMFS-2020-0031-DRAFT-16594
NOAA-NMFS-2020-0031-DRAFT-16595
NOAA-NMFS-2020-0031-DRAFT-16596
NOAA-NMFS-2020-0031-DRAFT-16597
NOAA-NMFS-2020-0031-DRAFT-16598
NOAA-NMFS-2020-0031-DRAFT-16599
NOAA-NMFS-2020-0031-DRAFT-16600
NOAA-NMFS-2020-0031-DRAFT-16601
NOAA-NMFS-2020-0031-DRAFT-16602
NOAA-NMFS-2020-0031-DRAFT-16603
NOAA-NMFS-2020-0031-DRAFT-16604
NOAA-NMFS-2020-0031-DRAFT-16605
NOAA-NMFS-2020-0031-DRAFT-16606
NOAA-NMFS-2020-0031-DRAFT-16607
NOAA-NMFS-2020-0031-DRAFT-16608
NOAA-NMFS-2020-0031-DRAFT-16609
NOAA-NMFS-2020-0031-DRAFT-16610
NOAA-NMFS-2020-0031-DRAFT-16611
NOAA-NMFS-2020-0031-DRAFT-16612

Comment from Joe Piecuch
Comment from Kenneth Fisher
Comment from Monica Bertoia
Comment from holly smallwood
Comment from Debra Jones
Comment from Jared Brenner
Comment from Michael Dearth
Comment from Madeleine Licausi
Comment from Greta Aul
Comment from Krystal Fletcher
Burroughs
Comment from kalina veintimilla
Comment from Marie Raich
Comment from Renae McKeon
Comment from Linley Fray
Comment from Sheila Powers
Comment from Marco Pardi
Comment from lisa fisk
Comment from Nancy Pointer
Comment from Martin Horwitz
Comment from Sharon Hesse
Comment from Wrenn Reed
Comment from Kathy Bradley
Comment from Brenda Harper
Comment from Michael Fine
Comment from Linda Pezzullo
Comment from Probyn Gregory
Comment from Rosanne Anderson
Comment from Nancy Thelot
Comment from Susie Cassens
Comment from Claire Flewitt
Comment from Doreen Gruchawka
Comment from Sarah Stewart
Comment from Maria Mariorenzi
Comment from El Pe
Comment from karen stickney
Comment from Marlene Chomsky
Comment from Tina Wilson
Comment from Ronda Emmrich
Comment from MARY ROJESKI
Comment from Nancy Shulman
Comment from Michelle Macy

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02/09/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11448
NOAA-NMFS-2020-0031-DRAFT-11449
NOAA-NMFS-2020-0031-DRAFT-11450
NOAA-NMFS-2020-0031-DRAFT-11451
NOAA-NMFS-2020-0031-DRAFT-11452
NOAA-NMFS-2020-0031-DRAFT-11453
NOAA-NMFS-2020-0031-DRAFT-11454
NOAA-NMFS-2020-0031-DRAFT-11456
NOAA-NMFS-2020-0031-DRAFT-11457
NOAA-NMFS-2020-0031-DRAFT-11458
NOAA-NMFS-2020-0031-DRAFT-11459
NOAA-NMFS-2020-0031-DRAFT-11460
NOAA-NMFS-2020-0031-DRAFT-11461
NOAA-NMFS-2020-0031-DRAFT-11462
NOAA-NMFS-2020-0031-DRAFT-11463
NOAA-NMFS-2020-0031-DRAFT-11464
NOAA-NMFS-2020-0031-DRAFT-11465
NOAA-NMFS-2020-0031-DRAFT-11466
NOAA-NMFS-2020-0031-DRAFT-11467
NOAA-NMFS-2020-0031-DRAFT-11468
NOAA-NMFS-2020-0031-DRAFT-11469
NOAA-NMFS-2020-0031-DRAFT-11470
NOAA-NMFS-2020-0031-DRAFT-11471
NOAA-NMFS-2020-0031-DRAFT-11472
NOAA-NMFS-2020-0031-DRAFT-11473
NOAA-NMFS-2020-0031-DRAFT-11474
NOAA-NMFS-2020-0031-DRAFT-11475
NOAA-NMFS-2020-0031-DRAFT-11476
NOAA-NMFS-2020-0031-DRAFT-11477
NOAA-NMFS-2020-0031-DRAFT-11478
NOAA-NMFS-2020-0031-DRAFT-11479
NOAA-NMFS-2020-0031-DRAFT-11480
NOAA-NMFS-2020-0031-DRAFT-11481
NOAA-NMFS-2020-0031-DRAFT-11482
NOAA-NMFS-2020-0031-DRAFT-11483
NOAA-NMFS-2020-0031-DRAFT-11484
NOAA-NMFS-2020-0031-DRAFT-11485
NOAA-NMFS-2020-0031-DRAFT-11486
NOAA-NMFS-2020-0031-DRAFT-11487
NOAA-NMFS-2020-0031-DRAFT-11488
NOAA-NMFS-2020-0031-DRAFT-11489

Comment from Lynn Rambo-Jones
Comment from Karen Bond
Comment from Denise Ress
Comment from Gregory Strauss
Comment from Shel Neu
Comment from Patricia Lauer
Comment from Terry Travis
Comment from Blass Jaqui
Comment from Susan Tjarks
Comment from Mark Feldman
Comment from maureen lynch
Comment from Kathy Bradley
Comment from Grace Pan
Comment from Terry Proeger
Comment from Marianne Hoffman
Comment from Norm Doebel
Comment from Zachary Todd
Comment from Juliann Rule
Comment from MonicaL Colgan
Comment from Janet Hellweg
Comment from Tracy Crawford
Comment from John Ota
Comment from Richard Yust
Comment from Gary Moore
Comment from Rudy Ramp
Comment from Sarah ECKBERG-STEVENS
Comment from Laurel Eckert
Comment from Diane Soddy
Comment from Christina Lee
Comment from Robert Cassinelli
Comment from Jessica Motta
Comment from John Wyatt
Comment from Annie McMahon
Comment from Jamie Green
Comment from Jan DAllessandro
Comment from Faith Herschler
Comment from Donna Rader
Comment from Anthony Colangeli
Comment from Faith Kauffmann
Comment from Catherine Williams
Comment from James Davis

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16613
NOAA-NMFS-2020-0031-DRAFT-16614
NOAA-NMFS-2020-0031-DRAFT-16615
NOAA-NMFS-2020-0031-DRAFT-16616
NOAA-NMFS-2020-0031-DRAFT-16617
NOAA-NMFS-2020-0031-DRAFT-16619
NOAA-NMFS-2020-0031-DRAFT-16620
NOAA-NMFS-2020-0031-DRAFT-16621
NOAA-NMFS-2020-0031-DRAFT-16622
NOAA-NMFS-2020-0031-DRAFT-16623
NOAA-NMFS-2020-0031-DRAFT-16624
NOAA-NMFS-2020-0031-DRAFT-16625
NOAA-NMFS-2020-0031-DRAFT-16626
NOAA-NMFS-2020-0031-DRAFT-16627
NOAA-NMFS-2020-0031-DRAFT-16628
NOAA-NMFS-2020-0031-DRAFT-16629
NOAA-NMFS-2020-0031-DRAFT-16630
NOAA-NMFS-2020-0031-DRAFT-16631
NOAA-NMFS-2020-0031-DRAFT-16632
NOAA-NMFS-2020-0031-DRAFT-16633
NOAA-NMFS-2020-0031-DRAFT-16634
NOAA-NMFS-2020-0031-DRAFT-16635
NOAA-NMFS-2020-0031-DRAFT-16636
NOAA-NMFS-2020-0031-DRAFT-16637
NOAA-NMFS-2020-0031-DRAFT-16638
NOAA-NMFS-2020-0031-DRAFT-16639
NOAA-NMFS-2020-0031-DRAFT-16640
NOAA-NMFS-2020-0031-DRAFT-16641
NOAA-NMFS-2020-0031-DRAFT-16642
NOAA-NMFS-2020-0031-DRAFT-16643
NOAA-NMFS-2020-0031-DRAFT-16644
NOAA-NMFS-2020-0031-DRAFT-16645
NOAA-NMFS-2020-0031-DRAFT-16646
NOAA-NMFS-2020-0031-DRAFT-16647
NOAA-NMFS-2020-0031-DRAFT-16648
NOAA-NMFS-2020-0031-DRAFT-16649
NOAA-NMFS-2020-0031-DRAFT-16650
NOAA-NMFS-2020-0031-DRAFT-16651
NOAA-NMFS-2020-0031-DRAFT-16652
NOAA-NMFS-2020-0031-DRAFT-16653
NOAA-NMFS-2020-0031-DRAFT-16654

Comment from Andrea Amar
Comment from Linda Ashman Hicks
Comment from Elizabeth Garratt
Comment from Suzanne Winter
Comment from Albert Fecko
Comment from John Borland
Comment from Joei Fischer
Comment from Dawn Albanese
Comment from Nelson S
Comment from Sylvia L Gutierrez
Comment from David Harris
Comment from Barbara Porter
Comment from Suzanne Estus
Comment from Perry Smith
Comment from Chris witmer
Comment from Leslie Pfost
Comment from Denise Hall
Comment from Cheryl Eames
Comment from Lillian Hyland
Comment from Rickey Buttery
Comment from Elizabeth Chiribi
Comment from Andrew Jackson
Comment from Debra White
Comment from Lynn Forsht
Comment from Maureen Morse
Comment from Mary Leary
Comment from Marilyn Greenberg
Comment from Anna Hamre
Comment from Tammy Luppino
Comment from Christopher Wall
Comment from Mel Apodaca
Comment from Sharon Bunch
Comment from Cindy Dupray
Comment from Susan Palmer
Comment from karen winnubst
Comment from Constantine Bogios
Comment from Jason Bowman
Comment from Keith Kirsch
Comment from Keith Wilkins
Comment from Stephen Sprowls
Comment from Joann Ramos

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11490
NOAA-NMFS-2020-0031-DRAFT-11491
NOAA-NMFS-2020-0031-DRAFT-11492
NOAA-NMFS-2020-0031-DRAFT-11493
NOAA-NMFS-2020-0031-DRAFT-11494
NOAA-NMFS-2020-0031-DRAFT-11495
NOAA-NMFS-2020-0031-DRAFT-11496
NOAA-NMFS-2020-0031-DRAFT-11497
NOAA-NMFS-2020-0031-DRAFT-11498
NOAA-NMFS-2020-0031-DRAFT-11499
NOAA-NMFS-2020-0031-DRAFT-11500
NOAA-NMFS-2020-0031-DRAFT-11501
NOAA-NMFS-2020-0031-DRAFT-11502
NOAA-NMFS-2020-0031-DRAFT-11503
NOAA-NMFS-2020-0031-DRAFT-11504
NOAA-NMFS-2020-0031-DRAFT-11505
NOAA-NMFS-2020-0031-DRAFT-11506
NOAA-NMFS-2020-0031-DRAFT-11507
NOAA-NMFS-2020-0031-DRAFT-11508
NOAA-NMFS-2020-0031-DRAFT-11509
NOAA-NMFS-2020-0031-DRAFT-11510
NOAA-NMFS-2020-0031-DRAFT-11511
NOAA-NMFS-2020-0031-DRAFT-11512
NOAA-NMFS-2020-0031-DRAFT-11513
NOAA-NMFS-2020-0031-DRAFT-11514
NOAA-NMFS-2020-0031-DRAFT-11515
NOAA-NMFS-2020-0031-DRAFT-11516
NOAA-NMFS-2020-0031-DRAFT-11517
NOAA-NMFS-2020-0031-DRAFT-11518
NOAA-NMFS-2020-0031-DRAFT-11519
NOAA-NMFS-2020-0031-DRAFT-11520
NOAA-NMFS-2020-0031-DRAFT-11521
NOAA-NMFS-2020-0031-DRAFT-11522
NOAA-NMFS-2020-0031-DRAFT-11523
NOAA-NMFS-2020-0031-DRAFT-11524
NOAA-NMFS-2020-0031-DRAFT-11525
NOAA-NMFS-2020-0031-DRAFT-11526
NOAA-NMFS-2020-0031-DRAFT-11527
NOAA-NMFS-2020-0031-DRAFT-11528
NOAA-NMFS-2020-0031-DRAFT-11529
NOAA-NMFS-2020-0031-DRAFT-11530

Comment from Diane Weinstein
Comment from Patrick Marooney
Comment from betty winholtz
Comment from Christopher Moyer
Comment from Amanda Gordon
Comment from Robert Ortiz
Comment from Sonia Ness
Comment from Dawn Clarke
Comment from Leland Wiggam
Comment from William Wekselman
Comment from Lillian Swindell
Comment from John Beck
Comment from vicki jenkins
Comment from Joanna Martin
Comment from James Knott
Comment from Patricia ColemanGardella
Comment from Joseph Boone
Comment from Carl Van Dyke
Comment from Allen Altman
Comment from Cynthia Hellmuth
Comment from Lorena Cox
Comment from Sandra Wilson
Comment from Kathy Silvey
Comment from Jackie Ramirez
Comment from Oliver Weltzien
Comment from Shawn Blaesing
Comment from casee maxfield
Comment from Donald Hunt
Comment from Charlie Burns
Comment from JOHN DEISS
Comment from Gary Cantara
Comment from Elizabeth Thorpe
Comment from Gail Donath
Comment from Charlie Burns
Comment from Lorenza Amico
Comment from Tony Segura
Comment from Ralph Collier
Comment from Charlie Burns
Comment from Corinna Hasbach
Comment from Sharen Oxman
Comment from Becky Calhoun

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16655
NOAA-NMFS-2020-0031-DRAFT-16656
NOAA-NMFS-2020-0031-DRAFT-16657
NOAA-NMFS-2020-0031-DRAFT-16658
NOAA-NMFS-2020-0031-DRAFT-16659
NOAA-NMFS-2020-0031-DRAFT-16660
NOAA-NMFS-2020-0031-DRAFT-16661
NOAA-NMFS-2020-0031-DRAFT-16662
NOAA-NMFS-2020-0031-DRAFT-16663
NOAA-NMFS-2020-0031-DRAFT-16664
NOAA-NMFS-2020-0031-DRAFT-16665
NOAA-NMFS-2020-0031-DRAFT-16666
NOAA-NMFS-2020-0031-DRAFT-16667
NOAA-NMFS-2020-0031-DRAFT-16668
NOAA-NMFS-2020-0031-DRAFT-16669
NOAA-NMFS-2020-0031-DRAFT-16670
NOAA-NMFS-2020-0031-DRAFT-16671
NOAA-NMFS-2020-0031-DRAFT-16672
NOAA-NMFS-2020-0031-DRAFT-16673
NOAA-NMFS-2020-0031-DRAFT-16674
NOAA-NMFS-2020-0031-DRAFT-16675
NOAA-NMFS-2020-0031-DRAFT-16676
NOAA-NMFS-2020-0031-DRAFT-16677
NOAA-NMFS-2020-0031-DRAFT-16678
NOAA-NMFS-2020-0031-DRAFT-16679
NOAA-NMFS-2020-0031-DRAFT-16680
NOAA-NMFS-2020-0031-DRAFT-16681
NOAA-NMFS-2020-0031-DRAFT-16682
NOAA-NMFS-2020-0031-DRAFT-16683
NOAA-NMFS-2020-0031-DRAFT-16684
NOAA-NMFS-2020-0031-DRAFT-16685
NOAA-NMFS-2020-0031-DRAFT-16686
NOAA-NMFS-2020-0031-DRAFT-16687
NOAA-NMFS-2020-0031-DRAFT-16688
NOAA-NMFS-2020-0031-DRAFT-16689
NOAA-NMFS-2020-0031-DRAFT-16690
NOAA-NMFS-2020-0031-DRAFT-16691
NOAA-NMFS-2020-0031-DRAFT-16692
NOAA-NMFS-2020-0031-DRAFT-16693
NOAA-NMFS-2020-0031-DRAFT-16694
NOAA-NMFS-2020-0031-DRAFT-16695

Comment from Jerald VandeVoort
Comment from Sharyn Shubert
Comment from Charlie Burns
Comment from Natacha Lascano
Comment from Dawn Kosec
Comment from Mr Lynnward Lacy
Comment from Amber Kuppert
Comment from Susan Preston
Comment from Nadia Burns
Comment from Hilary Zankel
Comment from Debra Spear
Comment from Beverly Menosky
Comment from John Kirchner
Comment from John Lopez
Comment from Lisa Johnson
Comment from Jeanne Faust
Comment from Dana Barela
Comment from P Nunez
Comment from Lorilie Morey
Comment from Arthur Schurr
Comment from Linda duke
Comment from Lois Lommel
Comment from Maria Asteinza
Comment from Gwenn Schemer
Comment from Barb Galordi
Comment from John Joadwine
Comment from Jeannette Allan
Comment from Nancy Heintz
Comment from Marc Lionetti
Comment from Joan Ford
Comment from Christine Fearing
Comment from Andrew Hellinger
Comment from Julia Wziontka
Comment from Sonnta Simon
Comment from Tina Zenko
Comment from Ellyn De Guida
Comment from Debbie McCarthy
Comment from jennifer valentine
Comment from Melinda Tossani
Comment from Traci Moreno
Comment from Karen Parker

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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11531
NOAA-NMFS-2020-0031-DRAFT-11532
NOAA-NMFS-2020-0031-DRAFT-11533
NOAA-NMFS-2020-0031-DRAFT-11535
NOAA-NMFS-2020-0031-DRAFT-11536
NOAA-NMFS-2020-0031-DRAFT-11537
NOAA-NMFS-2020-0031-DRAFT-11538
NOAA-NMFS-2020-0031-DRAFT-11539
NOAA-NMFS-2020-0031-DRAFT-11540
NOAA-NMFS-2020-0031-DRAFT-11541
NOAA-NMFS-2020-0031-DRAFT-11542
NOAA-NMFS-2020-0031-DRAFT-11543
NOAA-NMFS-2020-0031-DRAFT-11544
NOAA-NMFS-2020-0031-DRAFT-11545
NOAA-NMFS-2020-0031-DRAFT-11546
NOAA-NMFS-2020-0031-DRAFT-11547
NOAA-NMFS-2020-0031-DRAFT-11548
NOAA-NMFS-2020-0031-DRAFT-11549
NOAA-NMFS-2020-0031-DRAFT-11550
NOAA-NMFS-2020-0031-DRAFT-11551
NOAA-NMFS-2020-0031-DRAFT-11552
NOAA-NMFS-2020-0031-DRAFT-11553
NOAA-NMFS-2020-0031-DRAFT-11554
NOAA-NMFS-2020-0031-DRAFT-11555
NOAA-NMFS-2020-0031-DRAFT-11556
NOAA-NMFS-2020-0031-DRAFT-11557
NOAA-NMFS-2020-0031-DRAFT-11558
NOAA-NMFS-2020-0031-DRAFT-11559
NOAA-NMFS-2020-0031-DRAFT-11560
NOAA-NMFS-2020-0031-DRAFT-11561
NOAA-NMFS-2020-0031-DRAFT-11562
NOAA-NMFS-2020-0031-DRAFT-11563
NOAA-NMFS-2020-0031-DRAFT-11564
NOAA-NMFS-2020-0031-DRAFT-11565
NOAA-NMFS-2020-0031-DRAFT-11566
NOAA-NMFS-2020-0031-DRAFT-11567
NOAA-NMFS-2020-0031-DRAFT-11568
NOAA-NMFS-2020-0031-DRAFT-11569
NOAA-NMFS-2020-0031-DRAFT-11570
NOAA-NMFS-2020-0031-DRAFT-11571
NOAA-NMFS-2020-0031-DRAFT-11572

Comment from Catherine Palmer
Comment from Ann Collins
Comment from Vance Arquilla
Comment from Jeffrey Meyers
Comment from Deborah cummins
Comment from John Lampson
Comment from Tonia Howe
Comment from Henry Coleman
Comment from Priscilla Martinez
Comment from Debra Elder
Comment from Alice Burns
Comment from Christine Koehler
Comment from Elizabeth Cherubin
Comment from Anne Wolfenbarger
Comment from Angela Celli-Jones
Comment from Margaret Stofsky
Comment from James Neal
Comment from Jan Leath
Comment from Juanita Westberg
Comment from ALEXANDRA DiGiacomo
Comment from Christine FitzGerald
Comment from B.J. Herbison
Comment from Esther Frances
Comment from Cathy Finley
Comment from claire cohen
Comment from Doug Dunkle
Comment from Pamela Miller
Comment from Nonna Noto
Comment from Norda Gromoll
Comment from Sheila Tran
Comment from Gail Battaglia
Comment from Roger Hollander
Comment from Robert Findlay
Comment from Candice Lowery
Comment from Heather Walters
Comment from Cammy Colton
Comment from Lisa Deville
Comment from Claire Nordvik
Comment from Cammy Colton
Comment from Maren Kentfield
Comment from Michelle Yarber

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16697
NOAA-NMFS-2020-0031-DRAFT-16698
NOAA-NMFS-2020-0031-DRAFT-16699
NOAA-NMFS-2020-0031-DRAFT-16700
NOAA-NMFS-2020-0031-DRAFT-16701
NOAA-NMFS-2020-0031-DRAFT-16702
NOAA-NMFS-2020-0031-DRAFT-16703
NOAA-NMFS-2020-0031-DRAFT-16704
NOAA-NMFS-2020-0031-DRAFT-16705
NOAA-NMFS-2020-0031-DRAFT-16706
NOAA-NMFS-2020-0031-DRAFT-16707
NOAA-NMFS-2020-0031-DRAFT-16708
NOAA-NMFS-2020-0031-DRAFT-16709
NOAA-NMFS-2020-0031-DRAFT-16710
NOAA-NMFS-2020-0031-DRAFT-16711
NOAA-NMFS-2020-0031-DRAFT-16712
NOAA-NMFS-2020-0031-DRAFT-16713
NOAA-NMFS-2020-0031-DRAFT-16714
NOAA-NMFS-2020-0031-DRAFT-16715
NOAA-NMFS-2020-0031-DRAFT-16716
NOAA-NMFS-2020-0031-DRAFT-16717
NOAA-NMFS-2020-0031-DRAFT-16718
NOAA-NMFS-2020-0031-DRAFT-16719
NOAA-NMFS-2020-0031-DRAFT-16720
NOAA-NMFS-2020-0031-DRAFT-16721
NOAA-NMFS-2020-0031-DRAFT-16722
NOAA-NMFS-2020-0031-DRAFT-16723
NOAA-NMFS-2020-0031-DRAFT-16724
NOAA-NMFS-2020-0031-DRAFT-16725
NOAA-NMFS-2020-0031-DRAFT-16726
NOAA-NMFS-2020-0031-DRAFT-16727
NOAA-NMFS-2020-0031-DRAFT-16728
NOAA-NMFS-2020-0031-DRAFT-16729
NOAA-NMFS-2020-0031-DRAFT-16730
NOAA-NMFS-2020-0031-DRAFT-16731
NOAA-NMFS-2020-0031-DRAFT-16732
NOAA-NMFS-2020-0031-DRAFT-16733
NOAA-NMFS-2020-0031-DRAFT-16734
NOAA-NMFS-2020-0031-DRAFT-16735
NOAA-NMFS-2020-0031-DRAFT-16736
NOAA-NMFS-2020-0031-DRAFT-16737

Comment from Bianca Tenneriello
Comment from Laura Pakaln
Comment from Gina Ness
Comment from Jan Dougherty
Comment from MICHAEL NEWMAN
Comment from carolyn massey
Comment from Robin Bousquet
Comment from Heather Dunford
Comment from Ginny Johnson
Comment from KATHRYN WATKINS
Comment from Kathy Alcott
Comment from Grayson Torgersen
Comment from Valerie Mccarthy
Comment from Stephan Donovan
Comment from J Moye
Comment from alli cohen
Comment from Irini Dieringer
Comment from Valeri Caprio
Comment from Jessica Rocheleau
Comment from Laura Lyons
Comment from Stephanie C Fox
Comment from James Chittenden
Comment from Brad Krestakos
Comment from William Turner
Comment from denise suskie
Comment from Sarah Bracken
Comment from Anthony Calvelage
Comment from Eileen O'Connell
Comment from Norm Mika
Comment from Mary Ann Clark
Comment from Pamala McKenna
Comment from Felicia Chase
Comment from Kathy Geyer
Comment from Julia Ballard
Comment from Viktoria Cohen
Comment from Cynthia Narkoff
Comment from LYNDA ERICKSON
Comment from M B
Comment from Loren Marks
Comment from Dawn Farr
Comment from Carol Baier

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02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11573
NOAA-NMFS-2020-0031-DRAFT-11574
NOAA-NMFS-2020-0031-DRAFT-11575
NOAA-NMFS-2020-0031-DRAFT-11576
NOAA-NMFS-2020-0031-DRAFT-11577
NOAA-NMFS-2020-0031-DRAFT-11578
NOAA-NMFS-2020-0031-DRAFT-11579
NOAA-NMFS-2020-0031-DRAFT-11580
NOAA-NMFS-2020-0031-DRAFT-11581
NOAA-NMFS-2020-0031-DRAFT-11582
NOAA-NMFS-2020-0031-DRAFT-11583
NOAA-NMFS-2020-0031-DRAFT-11584
NOAA-NMFS-2020-0031-DRAFT-11585
NOAA-NMFS-2020-0031-DRAFT-11586
NOAA-NMFS-2020-0031-DRAFT-11587
NOAA-NMFS-2020-0031-DRAFT-11588
NOAA-NMFS-2020-0031-DRAFT-11589
NOAA-NMFS-2020-0031-DRAFT-11590
NOAA-NMFS-2020-0031-DRAFT-11591
NOAA-NMFS-2020-0031-DRAFT-11592
NOAA-NMFS-2020-0031-DRAFT-11593
NOAA-NMFS-2020-0031-DRAFT-11594
NOAA-NMFS-2020-0031-DRAFT-11595
NOAA-NMFS-2020-0031-DRAFT-11596
NOAA-NMFS-2020-0031-DRAFT-11597
NOAA-NMFS-2020-0031-DRAFT-11598
NOAA-NMFS-2020-0031-DRAFT-11599
NOAA-NMFS-2020-0031-DRAFT-11600
NOAA-NMFS-2020-0031-DRAFT-11601
NOAA-NMFS-2020-0031-DRAFT-11602
NOAA-NMFS-2020-0031-DRAFT-11603
NOAA-NMFS-2020-0031-DRAFT-11604
NOAA-NMFS-2020-0031-DRAFT-11605
NOAA-NMFS-2020-0031-DRAFT-11606
NOAA-NMFS-2020-0031-DRAFT-11607
NOAA-NMFS-2020-0031-DRAFT-11608
NOAA-NMFS-2020-0031-DRAFT-11610
NOAA-NMFS-2020-0031-DRAFT-11611
NOAA-NMFS-2020-0031-DRAFT-11612
NOAA-NMFS-2020-0031-DRAFT-11613
NOAA-NMFS-2020-0031-DRAFT-11614

Comment from thomas lux
Comment from Marlene Campanella
Comment from Richard Smith
Comment from Nancy Breslin
Comment from Bruce Blum
Comment from Rozalind Smith
Comment from gerald kuhn
Comment from Hunter Klapperich
Comment from Vikki Blondin-smith
Comment from Theresa Morris
Comment from Shirley Collins
Comment from Debra Goodrich
Comment from Andrea Jordan
Comment from Charlie Palmgren
Comment from Joan Peter
Comment from Frederick Lucies
Comment from Karen Hauser
Comment from Ellen Gugel
Comment from Hugh Harwell
Comment from Marge Taniwaki
Comment from Cheryl Scher
Comment from Pat Rose
Comment from Laurie Toner
Comment from Tammy Rohatynski
Comment from Liz Dyer
Comment from Patricia Poole
Comment from Judy Shively
Comment from Christopher Brown
Comment from Joey Henson
Comment from Troy Bidwell
Comment from Timothy Schacht
Comment from Kaylene Schultz
Comment from Stephen MacAusland
Comment from Damon Brown
Comment from James Comeau
Comment from Roberta Aber
Comment from Cathy Grassi
Comment from Shauna Boyd
Comment from BARBARA GRAPER
Comment from Mary Keil
Comment from joyce wisdom

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16738
NOAA-NMFS-2020-0031-DRAFT-16739
NOAA-NMFS-2020-0031-DRAFT-16740
NOAA-NMFS-2020-0031-DRAFT-16741
NOAA-NMFS-2020-0031-DRAFT-16742
NOAA-NMFS-2020-0031-DRAFT-16743
NOAA-NMFS-2020-0031-DRAFT-16744
NOAA-NMFS-2020-0031-DRAFT-16745
NOAA-NMFS-2020-0031-DRAFT-16746
NOAA-NMFS-2020-0031-DRAFT-16747
NOAA-NMFS-2020-0031-DRAFT-16748
NOAA-NMFS-2020-0031-DRAFT-16749
NOAA-NMFS-2020-0031-DRAFT-16750
NOAA-NMFS-2020-0031-DRAFT-16751
NOAA-NMFS-2020-0031-DRAFT-16752
NOAA-NMFS-2020-0031-DRAFT-16754
NOAA-NMFS-2020-0031-DRAFT-16755
NOAA-NMFS-2020-0031-DRAFT-16756
NOAA-NMFS-2020-0031-DRAFT-16757
NOAA-NMFS-2020-0031-DRAFT-16758
NOAA-NMFS-2020-0031-DRAFT-16759
NOAA-NMFS-2020-0031-DRAFT-16760
NOAA-NMFS-2020-0031-DRAFT-16761
NOAA-NMFS-2020-0031-DRAFT-16762
NOAA-NMFS-2020-0031-DRAFT-16763
NOAA-NMFS-2020-0031-DRAFT-16764
NOAA-NMFS-2020-0031-DRAFT-16765
NOAA-NMFS-2020-0031-DRAFT-16766
NOAA-NMFS-2020-0031-DRAFT-16767
NOAA-NMFS-2020-0031-DRAFT-16768
NOAA-NMFS-2020-0031-DRAFT-16769
NOAA-NMFS-2020-0031-DRAFT-16770
NOAA-NMFS-2020-0031-DRAFT-16771
NOAA-NMFS-2020-0031-DRAFT-16772
NOAA-NMFS-2020-0031-DRAFT-16773
NOAA-NMFS-2020-0031-DRAFT-16774
NOAA-NMFS-2020-0031-DRAFT-16775
NOAA-NMFS-2020-0031-DRAFT-16776
NOAA-NMFS-2020-0031-DRAFT-16777
NOAA-NMFS-2020-0031-DRAFT-16778
NOAA-NMFS-2020-0031-DRAFT-16779

Comment from alicia jackson
Comment from kathleen fernandez
Comment from Jackie Casano
Comment from Greg Rosas
Comment from Raisa Hebra
Comment from Barbara Schatz
Comment from Debra Cross
Comment from Anna Freed
Comment from Joe R
Comment from Benita J Campbell
Comment from Lynette Belew
Comment from Dori Bailey
Comment from Debra Cross
Comment from Ben Ruwe
Comment from Margaret Tan
Comment from Joy Smiley
Comment from Palmeta Baier
Comment from Mary Presnell
Comment from Palmeta Baier
Comment from Aliaa Abdel Gawad
Comment from Tina Noland
Comment from Sandra Smith
Comment from David Mitchell
Comment from Jane Schnee
Comment from Michelle Redington
Comment from Kerrie Shisila
Comment from Joan Hansen
Comment from Gino Czaster
Comment from Barbara Harper
Comment from Ron Goldberg
Comment from Timothy Hall
Comment from Susan Thornton
Comment from Rhetta Walter
Comment from Sarah ECKBERG STEVENS
Comment from Michael Nush
Comment from John Joadwine
Comment from Roxanne Donohue
Comment from Julia richardson
Comment from Mari Mennel Bell
Comment from Robert Ricewasser
Comment from Ruth Boice

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11616
NOAA-NMFS-2020-0031-DRAFT-11618
NOAA-NMFS-2020-0031-DRAFT-11619
NOAA-NMFS-2020-0031-DRAFT-11620
NOAA-NMFS-2020-0031-DRAFT-11621
NOAA-NMFS-2020-0031-DRAFT-11622
NOAA-NMFS-2020-0031-DRAFT-11623
NOAA-NMFS-2020-0031-DRAFT-11624
NOAA-NMFS-2020-0031-DRAFT-11625
NOAA-NMFS-2020-0031-DRAFT-11626
NOAA-NMFS-2020-0031-DRAFT-11627
NOAA-NMFS-2020-0031-DRAFT-11628
NOAA-NMFS-2020-0031-DRAFT-11629
NOAA-NMFS-2020-0031-DRAFT-11630
NOAA-NMFS-2020-0031-DRAFT-11631
NOAA-NMFS-2020-0031-DRAFT-11633
NOAA-NMFS-2020-0031-DRAFT-11634
NOAA-NMFS-2020-0031-DRAFT-11635
NOAA-NMFS-2020-0031-DRAFT-11636
NOAA-NMFS-2020-0031-DRAFT-11637
NOAA-NMFS-2020-0031-DRAFT-11638
NOAA-NMFS-2020-0031-DRAFT-11639
NOAA-NMFS-2020-0031-DRAFT-11640
NOAA-NMFS-2020-0031-DRAFT-11641
NOAA-NMFS-2020-0031-DRAFT-11642
NOAA-NMFS-2020-0031-DRAFT-11643
NOAA-NMFS-2020-0031-DRAFT-11644
NOAA-NMFS-2020-0031-DRAFT-11645
NOAA-NMFS-2020-0031-DRAFT-11646
NOAA-NMFS-2020-0031-DRAFT-11647
NOAA-NMFS-2020-0031-DRAFT-11648
NOAA-NMFS-2020-0031-DRAFT-11649
NOAA-NMFS-2020-0031-DRAFT-11650
NOAA-NMFS-2020-0031-DRAFT-11651
NOAA-NMFS-2020-0031-DRAFT-11652
NOAA-NMFS-2020-0031-DRAFT-11653
NOAA-NMFS-2020-0031-DRAFT-11654
NOAA-NMFS-2020-0031-DRAFT-11655
NOAA-NMFS-2020-0031-DRAFT-11656
NOAA-NMFS-2020-0031-DRAFT-11657
NOAA-NMFS-2020-0031-DRAFT-11658

Comment from Nancy Ellingham
Comment from Peter Townsend
Comment from David Kelley
Comment from uly silkey
Comment from Gill Fahrenwald
Comment from Michael Daley
Comment from E. Neal
Comment from Kimble Darlington
Comment from Karen Bravo
Comment from Jason LaBerge
Comment from Kathleen Medina
Comment from Adi S
Comment from Richard Shannahan
Comment from Abigail Gindele
Comment from Kathy Ralph
Comment from Gerald McNellis
Comment from Eric Edwards
Comment from Marilyn Thompson
Comment from Susan Reid
Comment from Marilyn Baldo
Comment from Patrece Meza
Comment from Joseph Walseth
Comment from Carmen Wiseman
Comment from Dawn Kosec
Comment from Patricia PERRON
Comment from Marta Dawes
Comment from Denise Brown
Comment from James Courneen
Comment from Darlene Noesen
Comment from Emily Dickinson-Adams
Comment from Rachel Ford
Comment from Vicki Black
Comment from Elaine Russell
Comment from Lisa Mistretta
Comment from Andi Shotwell
Comment from Nancy Walsh
Comment from C.C. Hollis-Franklyn
Comment from Henry Mobley
Comment from Jean Mixter
Comment from Gale Lord
Comment from Lydia Clifton

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16780
NOAA-NMFS-2020-0031-DRAFT-16781
NOAA-NMFS-2020-0031-DRAFT-16782
NOAA-NMFS-2020-0031-DRAFT-16783
NOAA-NMFS-2020-0031-DRAFT-16784
NOAA-NMFS-2020-0031-DRAFT-16785
NOAA-NMFS-2020-0031-DRAFT-16786
NOAA-NMFS-2020-0031-DRAFT-16787
NOAA-NMFS-2020-0031-DRAFT-16788
NOAA-NMFS-2020-0031-DRAFT-16789
NOAA-NMFS-2020-0031-DRAFT-16791
NOAA-NMFS-2020-0031-DRAFT-16792
NOAA-NMFS-2020-0031-DRAFT-16793
NOAA-NMFS-2020-0031-DRAFT-16794
NOAA-NMFS-2020-0031-DRAFT-16795
NOAA-NMFS-2020-0031-DRAFT-16796
NOAA-NMFS-2020-0031-DRAFT-16797
NOAA-NMFS-2020-0031-DRAFT-16798
NOAA-NMFS-2020-0031-DRAFT-16799
NOAA-NMFS-2020-0031-DRAFT-16800
NOAA-NMFS-2020-0031-DRAFT-16801
NOAA-NMFS-2020-0031-DRAFT-16802
NOAA-NMFS-2020-0031-DRAFT-16803
NOAA-NMFS-2020-0031-DRAFT-16804
NOAA-NMFS-2020-0031-DRAFT-16805
NOAA-NMFS-2020-0031-DRAFT-16806
NOAA-NMFS-2020-0031-DRAFT-16807
NOAA-NMFS-2020-0031-DRAFT-16808
NOAA-NMFS-2020-0031-DRAFT-16809
NOAA-NMFS-2020-0031-DRAFT-16810
NOAA-NMFS-2020-0031-DRAFT-16811
NOAA-NMFS-2020-0031-DRAFT-16812
NOAA-NMFS-2020-0031-DRAFT-16813
NOAA-NMFS-2020-0031-DRAFT-16814
NOAA-NMFS-2020-0031-DRAFT-16815
NOAA-NMFS-2020-0031-DRAFT-16816
NOAA-NMFS-2020-0031-DRAFT-16817
NOAA-NMFS-2020-0031-DRAFT-16818
NOAA-NMFS-2020-0031-DRAFT-16819
NOAA-NMFS-2020-0031-DRAFT-16820
NOAA-NMFS-2020-0031-DRAFT-16821

Comment from Beverly Hoff
Comment from jennifer valentine
Comment from Traci Moreno
Comment from Chris Busby
Comment from Bianca Tenneriello
Comment from DAN RATKOWSKI
Comment from Casey Kaemerer
Comment from jon kiesling
Comment from Kathy Bradley
Comment from Luke Metzger
Comment from Claire Chambers
Comment from Deirdre Davis
Comment from Amanda Thompson
Comment from Riley Madden
Comment from Karen Burroughs
Comment from Karen Roland
Comment from Kathleen Mc Mahon
Comment from Patricia Smetanka
Comment from Cheryl Krause
Comment from Charles Nohava
Comment from Bryan Ham
Comment from Diana Lewis
Comment from Pam Gagliardo
Comment from Tisha Bahena
Comment from gerald gushleff
Comment from Seth Coffey
Comment from Brenda Peterson
Comment from Bria Minnis
Comment from Nancy Thelot
Comment from Steven Urquhart
Comment from Leslie Hickcox
Comment from Karyn Sederberg
Comment from Jessica B
Comment from J Grause
Comment from Maggie Topalian
Comment from Amy Carpenter
Comment from Aaron Ucko
Comment from Anne Meadows
Comment from Rochelle Massey
Comment from Melissa Rondilla
Comment from Beverly Eadie

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11659
NOAA-NMFS-2020-0031-DRAFT-11660
NOAA-NMFS-2020-0031-DRAFT-11661
NOAA-NMFS-2020-0031-DRAFT-11662
NOAA-NMFS-2020-0031-DRAFT-11663
NOAA-NMFS-2020-0031-DRAFT-11664
NOAA-NMFS-2020-0031-DRAFT-11665
NOAA-NMFS-2020-0031-DRAFT-11666
NOAA-NMFS-2020-0031-DRAFT-11667
NOAA-NMFS-2020-0031-DRAFT-11668
NOAA-NMFS-2020-0031-DRAFT-11669
NOAA-NMFS-2020-0031-DRAFT-11670
NOAA-NMFS-2020-0031-DRAFT-11671
NOAA-NMFS-2020-0031-DRAFT-11672
NOAA-NMFS-2020-0031-DRAFT-11673
NOAA-NMFS-2020-0031-DRAFT-11674
NOAA-NMFS-2020-0031-DRAFT-11675
NOAA-NMFS-2020-0031-DRAFT-11676
NOAA-NMFS-2020-0031-DRAFT-11677
NOAA-NMFS-2020-0031-DRAFT-11678
NOAA-NMFS-2020-0031-DRAFT-11679
NOAA-NMFS-2020-0031-DRAFT-11680
NOAA-NMFS-2020-0031-DRAFT-11681
NOAA-NMFS-2020-0031-DRAFT-11682
NOAA-NMFS-2020-0031-DRAFT-11683
NOAA-NMFS-2020-0031-DRAFT-11684
NOAA-NMFS-2020-0031-DRAFT-11685
NOAA-NMFS-2020-0031-DRAFT-11686
NOAA-NMFS-2020-0031-DRAFT-11687
NOAA-NMFS-2020-0031-DRAFT-11688
NOAA-NMFS-2020-0031-DRAFT-11689
NOAA-NMFS-2020-0031-DRAFT-11690
NOAA-NMFS-2020-0031-DRAFT-11691
NOAA-NMFS-2020-0031-DRAFT-11692
NOAA-NMFS-2020-0031-DRAFT-11693
NOAA-NMFS-2020-0031-DRAFT-11694
NOAA-NMFS-2020-0031-DRAFT-11695
NOAA-NMFS-2020-0031-DRAFT-11696
NOAA-NMFS-2020-0031-DRAFT-11697
NOAA-NMFS-2020-0031-DRAFT-11698
NOAA-NMFS-2020-0031-DRAFT-11699

Comment from Emanuel Falcone
Comment from Michele Fisk
Comment from Cindy Grimes
Comment from Mark Fiore
Comment from Vito Degrigoli
Comment from Bridget Irons
Comment from Katherine Brock
Comment from Mary Adkins
Comment from Michele Blackwell
Comment from Julie Richards
Comment from Beth Braun
Comment from Michael Tucker
Comment from Sharon Newman
Comment from Louise Zimmer
Comment from Janice Le Blanc
Comment from Gabriel Amaro
Comment from joe karr
Comment from Lisa Hammermeister
Comment from Tara Strand
Comment from Monica Trujillo
Comment from Marcia Rogers
Comment from Elizabeth Garratt
Comment from Earl Grove
Comment from Matthew Janusauskas
Comment from Thomas Brandes
Comment from Jaime Grimwood
Comment from Christopher Tobias
Comment from Gabriel Amaro
Comment from Gregory Penchoen
Comment from Rhoda Levine
Comment from Kristin Lewis
Comment from Paul Marceau
Comment from Karen Orner
Comment from Sgt. Palloc
Comment from Paul Marceau
Comment from Dorothy Labi
Comment from Barbara Dinger
Comment from Judy Peterson
Comment from Marilyn Brown
Comment from Robin Fellner
Comment from Philip Englert

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16822
NOAA-NMFS-2020-0031-DRAFT-16823
NOAA-NMFS-2020-0031-DRAFT-16824
NOAA-NMFS-2020-0031-DRAFT-16825
NOAA-NMFS-2020-0031-DRAFT-16826
NOAA-NMFS-2020-0031-DRAFT-16827
NOAA-NMFS-2020-0031-DRAFT-16828
NOAA-NMFS-2020-0031-DRAFT-16829
NOAA-NMFS-2020-0031-DRAFT-16830
NOAA-NMFS-2020-0031-DRAFT-16831
NOAA-NMFS-2020-0031-DRAFT-16832
NOAA-NMFS-2020-0031-DRAFT-16833
NOAA-NMFS-2020-0031-DRAFT-16834
NOAA-NMFS-2020-0031-DRAFT-16835
NOAA-NMFS-2020-0031-DRAFT-16836
NOAA-NMFS-2020-0031-DRAFT-16837
NOAA-NMFS-2020-0031-DRAFT-16838
NOAA-NMFS-2020-0031-DRAFT-16839
NOAA-NMFS-2020-0031-DRAFT-16840
NOAA-NMFS-2020-0031-DRAFT-16841
NOAA-NMFS-2020-0031-DRAFT-16842
NOAA-NMFS-2020-0031-DRAFT-16843
NOAA-NMFS-2020-0031-DRAFT-16844
NOAA-NMFS-2020-0031-DRAFT-16845
NOAA-NMFS-2020-0031-DRAFT-16846
NOAA-NMFS-2020-0031-DRAFT-16847
NOAA-NMFS-2020-0031-DRAFT-16848
NOAA-NMFS-2020-0031-DRAFT-16849
NOAA-NMFS-2020-0031-DRAFT-16850
NOAA-NMFS-2020-0031-DRAFT-16851
NOAA-NMFS-2020-0031-DRAFT-16852
NOAA-NMFS-2020-0031-DRAFT-16853
NOAA-NMFS-2020-0031-DRAFT-16854
NOAA-NMFS-2020-0031-DRAFT-16855
NOAA-NMFS-2020-0031-DRAFT-16857
NOAA-NMFS-2020-0031-DRAFT-16858
NOAA-NMFS-2020-0031-DRAFT-16859
NOAA-NMFS-2020-0031-DRAFT-16860
NOAA-NMFS-2020-0031-DRAFT-16861
NOAA-NMFS-2020-0031-DRAFT-16862
NOAA-NMFS-2020-0031-DRAFT-16863

Comment from dawn rutigliano
Comment from Sarah Cardinale
Comment from Michelle Daniels
Comment from Wendy Niemeyer
Comment from Izabella Dabrowski
Comment from Roy Coleman
Comment from Karen Guarino Spanton
Comment from Monika Keller
Comment from Elizabeth Javinsky
Comment from Natalia Klimova
Comment from Cece Samp
Comment from Shannon Montoya
Comment from Vernon Weir
Comment from Sam Catron
Comment from Gordon Kanan
Comment from Marcine McBride
Comment from Bill Rubin
Comment from Thomas Kendrick
Comment from Lindalou Dunphy
Comment from Karin Rettig
Comment from Arthur Eldridge
Comment from Suzanne Cook
Comment from Christine Bodner
Comment from Theresa Sivori
Comment from Paula Stevens
Comment from Scott Toland
Comment from Lori Williams Philipsen
Comment from Renee Arnett
Comment from Terry Strauss
Comment from Andrea Lazar
Comment from Yvette LaRosr
Comment from Patricia Rossi
Comment from Joe R
Comment from Clarissa Marsh
Comment from Maureen Wheeler
Comment from Debra Cross
Comment from Michael Norwood
Comment from Stuart Weiss
Comment from Heather Ryan
Comment from Jamie Green
Comment from A Rossner

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11700
NOAA-NMFS-2020-0031-DRAFT-11701
NOAA-NMFS-2020-0031-DRAFT-11702
NOAA-NMFS-2020-0031-DRAFT-11703
NOAA-NMFS-2020-0031-DRAFT-11704
NOAA-NMFS-2020-0031-DRAFT-11705
NOAA-NMFS-2020-0031-DRAFT-11706
NOAA-NMFS-2020-0031-DRAFT-11707
NOAA-NMFS-2020-0031-DRAFT-11708
NOAA-NMFS-2020-0031-DRAFT-11709
NOAA-NMFS-2020-0031-DRAFT-11711
NOAA-NMFS-2020-0031-DRAFT-11712
NOAA-NMFS-2020-0031-DRAFT-11713
NOAA-NMFS-2020-0031-DRAFT-11714
NOAA-NMFS-2020-0031-DRAFT-11715
NOAA-NMFS-2020-0031-DRAFT-11716
NOAA-NMFS-2020-0031-DRAFT-11717
NOAA-NMFS-2020-0031-DRAFT-11718
NOAA-NMFS-2020-0031-DRAFT-11719
NOAA-NMFS-2020-0031-DRAFT-11720
NOAA-NMFS-2020-0031-DRAFT-11721
NOAA-NMFS-2020-0031-DRAFT-11722
NOAA-NMFS-2020-0031-DRAFT-11723
NOAA-NMFS-2020-0031-DRAFT-11724
NOAA-NMFS-2020-0031-DRAFT-11725
NOAA-NMFS-2020-0031-DRAFT-11726
NOAA-NMFS-2020-0031-DRAFT-11727
NOAA-NMFS-2020-0031-DRAFT-11728
NOAA-NMFS-2020-0031-DRAFT-11729
NOAA-NMFS-2020-0031-DRAFT-11730
NOAA-NMFS-2020-0031-DRAFT-11731
NOAA-NMFS-2020-0031-DRAFT-11732
NOAA-NMFS-2020-0031-DRAFT-11733
NOAA-NMFS-2020-0031-DRAFT-11734
NOAA-NMFS-2020-0031-DRAFT-11735
NOAA-NMFS-2020-0031-DRAFT-11736
NOAA-NMFS-2020-0031-DRAFT-11737
NOAA-NMFS-2020-0031-DRAFT-11738
NOAA-NMFS-2020-0031-DRAFT-11739
NOAA-NMFS-2020-0031-DRAFT-11740
NOAA-NMFS-2020-0031-DRAFT-11741

Comment from Judith Deantonellis
Comment from Philip Englert
Comment from Stephen Stales
Comment from WALTER EMERICH
Comment from Will Richardson
Comment from MARY EMERICH
Comment from Bill DOUGLAS
Comment from Karen Shoop
Comment from Mandee Hernandez
Comment from Nikki Martin
Comment from Marie Hutchens
Comment from Susan MacKenzie
Comment from John Knoten
Comment from Brandon Perras
Comment from Joel Vignere
Comment from Cheryl Albert
Comment from Mara Wiley
Comment from Summer Devlin
Comment from Dayna Cooper
Comment from Kathleen Bates
Comment from Pamylle Greinke
Comment from Veronica Schweyen
Comment from Deedi dayan
Comment from Lisa Krausz
Comment from kathleen king
Comment from Arlyn Fernandez
Comment from Mark Jennerjohn
Comment from Robert Stroud
Comment from Christina Davis
Comment from Jeanette Desmond
Comment from Brian Hicks
Comment from Heidi Wollum
Comment from Alexis B
Comment from Claudia Mansfield
Comment from David Anderson
Comment from Ann Brannan
Comment from Nancy Heck
Comment from Debbi Pratt
Comment from Cynthia clement
Comment from Keith Neuner
Comment from Christopher Tumolo

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16864
NOAA-NMFS-2020-0031-DRAFT-16865
NOAA-NMFS-2020-0031-DRAFT-16866
NOAA-NMFS-2020-0031-DRAFT-16867
NOAA-NMFS-2020-0031-DRAFT-16868
NOAA-NMFS-2020-0031-DRAFT-16869
NOAA-NMFS-2020-0031-DRAFT-16870
NOAA-NMFS-2020-0031-DRAFT-16871
NOAA-NMFS-2020-0031-DRAFT-16872
NOAA-NMFS-2020-0031-DRAFT-16873
NOAA-NMFS-2020-0031-DRAFT-16874
NOAA-NMFS-2020-0031-DRAFT-16875
NOAA-NMFS-2020-0031-DRAFT-16876
NOAA-NMFS-2020-0031-DRAFT-16877
NOAA-NMFS-2020-0031-DRAFT-16878
NOAA-NMFS-2020-0031-DRAFT-16879
NOAA-NMFS-2020-0031-DRAFT-16880
NOAA-NMFS-2020-0031-DRAFT-16881
NOAA-NMFS-2020-0031-DRAFT-16882
NOAA-NMFS-2020-0031-DRAFT-16883
NOAA-NMFS-2020-0031-DRAFT-16884
NOAA-NMFS-2020-0031-DRAFT-16885
NOAA-NMFS-2020-0031-DRAFT-16886
NOAA-NMFS-2020-0031-DRAFT-16887
NOAA-NMFS-2020-0031-DRAFT-16888
NOAA-NMFS-2020-0031-DRAFT-16889
NOAA-NMFS-2020-0031-DRAFT-16890
NOAA-NMFS-2020-0031-DRAFT-16891
NOAA-NMFS-2020-0031-DRAFT-16892
NOAA-NMFS-2020-0031-DRAFT-16893
NOAA-NMFS-2020-0031-DRAFT-16894
NOAA-NMFS-2020-0031-DRAFT-16895
NOAA-NMFS-2020-0031-DRAFT-16896
NOAA-NMFS-2020-0031-DRAFT-16897
NOAA-NMFS-2020-0031-DRAFT-16898
NOAA-NMFS-2020-0031-DRAFT-16899
NOAA-NMFS-2020-0031-DRAFT-16900
NOAA-NMFS-2020-0031-DRAFT-16901
NOAA-NMFS-2020-0031-DRAFT-16902
NOAA-NMFS-2020-0031-DRAFT-16903
NOAA-NMFS-2020-0031-DRAFT-16904

Comment from CHELLY GLANCY
Comment from Gigi vento
Comment from Jessie Bacon
Comment from Stacey Dillingham
Comment from Palmeta Baier
Comment from LANE King
Comment from Douglas Sedon
Comment from Pete Sandifer
Comment from Edward Dillon
Comment from Jacob Louviere
Comment from Rebecca Vitale Mandich
Comment from Michael Villanova
Comment from John Armstrong
Comment from ariel spilsbury
Comment from Michelle Yarber
Comment from Pat Knoop
Comment from Florencia Morales
Comment from Diane Weinstein
Comment from Linda Inness
Comment from K Jackson
Comment from Jana Kitzinger
Comment from Margo Margolis
Comment from Marti Schmauss
Comment from Valerie Pitaluga
Comment from Margaret Guyer
Comment from Margaret Wallace
Comment from Jeannie Finlay
Kochanowski
Comment from Anna Sanchez
Comment from Jeannette Allan
Comment from MATT LOPER
Comment from Victoria Holzendorf
Comment from Donna London
Comment from cherie garrett
Comment from Shirley Loftis
Comment from Don Walden
Comment from Marie Elaina Rago
Comment from julia French
Comment from Carol Modrell
Comment from Ruth Cole
Comment from Cornelia Teed
Comment from Moira Landis

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02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11742
NOAA-NMFS-2020-0031-DRAFT-11743
NOAA-NMFS-2020-0031-DRAFT-11744
NOAA-NMFS-2020-0031-DRAFT-11745
NOAA-NMFS-2020-0031-DRAFT-11746
NOAA-NMFS-2020-0031-DRAFT-11747
NOAA-NMFS-2020-0031-DRAFT-11748
NOAA-NMFS-2020-0031-DRAFT-11749
NOAA-NMFS-2020-0031-DRAFT-11750
NOAA-NMFS-2020-0031-DRAFT-11751
NOAA-NMFS-2020-0031-DRAFT-11752
NOAA-NMFS-2020-0031-DRAFT-11753
NOAA-NMFS-2020-0031-DRAFT-11754
NOAA-NMFS-2020-0031-DRAFT-11755
NOAA-NMFS-2020-0031-DRAFT-11756
NOAA-NMFS-2020-0031-DRAFT-11757
NOAA-NMFS-2020-0031-DRAFT-11758
NOAA-NMFS-2020-0031-DRAFT-11759
NOAA-NMFS-2020-0031-DRAFT-11760
NOAA-NMFS-2020-0031-DRAFT-11761
NOAA-NMFS-2020-0031-DRAFT-11762
NOAA-NMFS-2020-0031-DRAFT-11763
NOAA-NMFS-2020-0031-DRAFT-11764
NOAA-NMFS-2020-0031-DRAFT-11765
NOAA-NMFS-2020-0031-DRAFT-11766
NOAA-NMFS-2020-0031-DRAFT-11767
NOAA-NMFS-2020-0031-DRAFT-11768
NOAA-NMFS-2020-0031-DRAFT-11769
NOAA-NMFS-2020-0031-DRAFT-11770
NOAA-NMFS-2020-0031-DRAFT-11771
NOAA-NMFS-2020-0031-DRAFT-11772
NOAA-NMFS-2020-0031-DRAFT-11773
NOAA-NMFS-2020-0031-DRAFT-11774
NOAA-NMFS-2020-0031-DRAFT-11775
NOAA-NMFS-2020-0031-DRAFT-11776
NOAA-NMFS-2020-0031-DRAFT-11777
NOAA-NMFS-2020-0031-DRAFT-11778
NOAA-NMFS-2020-0031-DRAFT-11779
NOAA-NMFS-2020-0031-DRAFT-11780
NOAA-NMFS-2020-0031-DRAFT-11781
NOAA-NMFS-2020-0031-DRAFT-11782

Comment from bart rivezzi
Comment from JOHN PRYBYLSKI
Comment from Carolyn Stabenow
Comment from V.L. Brandt
Comment from Jo Ellis
Comment from Susan Yarnell
Comment from Heidi Andrade
Comment from Lynn Lichtenberg
Comment from Jeff Burns
Comment from Susan Dobbelaere
Comment from Rose Nielsen
Comment from DJ Fura
Comment from Steve Berman
Comment from Bobbi Segal
Comment from Tracey Peterson
Comment from Robert Fladger
Comment from Carol brickel
Comment from Barb Crumpacker
Comment from Sharon Ketcherside
Comment from Carmen Nichols
Comment from Courtney Thompson
Comment from Shannon Milhaupt
Comment from Lee BBible
Comment from Susan Haas
Comment from Lynne Rosenfield
Comment from Mark Redmond
Comment from Shannon Milhaupt
Comment from Charlotte Cook
Comment from Pat Button
Comment from pauline bedford
Comment from John Foxen
Comment from Angrika Leverette
Comment from Devon Benton
Comment from Anne Gregory
Comment from Pamela Cubberly
Comment from Edye Calderon
Comment from Barbara Cross-Tedesco
Comment from Lynn Eland
Comment from Pat Pike-Dimel
Comment from Phoebe McLeod
Comment from Alissa Sollitto

02/18/2021
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02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16905
NOAA-NMFS-2020-0031-DRAFT-16906
NOAA-NMFS-2020-0031-DRAFT-16907
NOAA-NMFS-2020-0031-DRAFT-16908
NOAA-NMFS-2020-0031-DRAFT-16909
NOAA-NMFS-2020-0031-DRAFT-16910
NOAA-NMFS-2020-0031-DRAFT-16911
NOAA-NMFS-2020-0031-DRAFT-16912
NOAA-NMFS-2020-0031-DRAFT-16913
NOAA-NMFS-2020-0031-DRAFT-16914
NOAA-NMFS-2020-0031-DRAFT-16915
NOAA-NMFS-2020-0031-DRAFT-16916
NOAA-NMFS-2020-0031-DRAFT-16917
NOAA-NMFS-2020-0031-DRAFT-16918
NOAA-NMFS-2020-0031-DRAFT-16919
NOAA-NMFS-2020-0031-DRAFT-16920
NOAA-NMFS-2020-0031-DRAFT-16921
NOAA-NMFS-2020-0031-DRAFT-16922
NOAA-NMFS-2020-0031-DRAFT-16923
NOAA-NMFS-2020-0031-DRAFT-16924
NOAA-NMFS-2020-0031-DRAFT-16925
NOAA-NMFS-2020-0031-DRAFT-16926
NOAA-NMFS-2020-0031-DRAFT-16927
NOAA-NMFS-2020-0031-DRAFT-16928
NOAA-NMFS-2020-0031-DRAFT-16929
NOAA-NMFS-2020-0031-DRAFT-16930
NOAA-NMFS-2020-0031-DRAFT-16931
NOAA-NMFS-2020-0031-DRAFT-16932
NOAA-NMFS-2020-0031-DRAFT-16933
NOAA-NMFS-2020-0031-DRAFT-16934
NOAA-NMFS-2020-0031-DRAFT-16935
NOAA-NMFS-2020-0031-DRAFT-16936
NOAA-NMFS-2020-0031-DRAFT-16937
NOAA-NMFS-2020-0031-DRAFT-16938
NOAA-NMFS-2020-0031-DRAFT-16939
NOAA-NMFS-2020-0031-DRAFT-16940
NOAA-NMFS-2020-0031-DRAFT-16941
NOAA-NMFS-2020-0031-DRAFT-16942
NOAA-NMFS-2020-0031-DRAFT-16943
NOAA-NMFS-2020-0031-DRAFT-16944
NOAA-NMFS-2020-0031-DRAFT-16945

Comment from Darlene Vales
Comment from Charles Tetoni
Comment from Rick Sutton
Comment from William St George
Comment from Ken French
Comment from Dorothy Chandler
Comment from Maureen Burke
Comment from Charles Tetoni
Comment from Missie Smith
Comment from Amy Filiano
Comment from Renee Detore
Comment from Kimberly Gough
Comment from Trevanne Foxton
Comment from Rachel Holland
Comment from Melissa Shinneman
Comment from Patricia Mazzoni
Comment from Julia Bottom
Comment from Cheryl Carney
Comment from Karen Staples
Comment from Ron and Dorene Richman
Comment from Nell McBride
Comment from Kim Frazier
Comment from Donna Roberts
Comment from Jeffery Lambert
Comment from Cesarina Somogy
Comment from Marcus N
Comment from Heather Westphal
Comment from Nilesh Shah
Comment from Debra Cosentino
Comment from Kathy Koenig
Comment from Allison Fradkin
Comment from Robert Janusko
Comment from Andy Lynn
Comment from Gloria Shen
Comment from Tonya Morrison
Comment from Barbara Brown
Comment from Anita Kuhn
Comment from JOAN MCMUNN
Comment from Tracy Cheek Cannell
Comment from Brenda Murphy
Comment from Richard Stern

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11783
NOAA-NMFS-2020-0031-DRAFT-11784
NOAA-NMFS-2020-0031-DRAFT-11785
NOAA-NMFS-2020-0031-DRAFT-11786
NOAA-NMFS-2020-0031-DRAFT-11787
NOAA-NMFS-2020-0031-DRAFT-11788
NOAA-NMFS-2020-0031-DRAFT-11789
NOAA-NMFS-2020-0031-DRAFT-11790
NOAA-NMFS-2020-0031-DRAFT-11791
NOAA-NMFS-2020-0031-DRAFT-11792
NOAA-NMFS-2020-0031-DRAFT-11793
NOAA-NMFS-2020-0031-DRAFT-11794
NOAA-NMFS-2020-0031-DRAFT-11795
NOAA-NMFS-2020-0031-DRAFT-11796
NOAA-NMFS-2020-0031-DRAFT-11797
NOAA-NMFS-2020-0031-DRAFT-11798
NOAA-NMFS-2020-0031-DRAFT-11799
NOAA-NMFS-2020-0031-DRAFT-11800
NOAA-NMFS-2020-0031-DRAFT-11801
NOAA-NMFS-2020-0031-DRAFT-11802
NOAA-NMFS-2020-0031-DRAFT-11803
NOAA-NMFS-2020-0031-DRAFT-11804
NOAA-NMFS-2020-0031-DRAFT-11805
NOAA-NMFS-2020-0031-DRAFT-11806
NOAA-NMFS-2020-0031-DRAFT-11807
NOAA-NMFS-2020-0031-DRAFT-11808
NOAA-NMFS-2020-0031-DRAFT-11809
NOAA-NMFS-2020-0031-DRAFT-11810
NOAA-NMFS-2020-0031-DRAFT-11811
NOAA-NMFS-2020-0031-DRAFT-11812
NOAA-NMFS-2020-0031-DRAFT-11813
NOAA-NMFS-2020-0031-DRAFT-11814
NOAA-NMFS-2020-0031-DRAFT-11815
NOAA-NMFS-2020-0031-DRAFT-11816
NOAA-NMFS-2020-0031-DRAFT-11817
NOAA-NMFS-2020-0031-DRAFT-11818
NOAA-NMFS-2020-0031-DRAFT-11819
NOAA-NMFS-2020-0031-DRAFT-11820
NOAA-NMFS-2020-0031-DRAFT-11821
NOAA-NMFS-2020-0031-DRAFT-11822
NOAA-NMFS-2020-0031-DRAFT-11823

Comment from C M
Comment from Georgeanne Samuelson
Comment from Tami Harvey
Comment from Steve Tardif
Comment from Evelyn Adams
Comment from Andrea Castellanos
Comment from William Parkinson
Comment from Jerry Davis
Comment from Kassie Wheeler
Comment from Kathryn Bomey
Comment from Marty Hertz
Comment from Anne Kelly
Comment from Beatriz Pallanes
Comment from lee jordan
Comment from Harrie Kessler
Comment from John McPeek
Comment from Cathy Bledsoe
Comment from Peter Gaudette
Comment from Todd Williams
Comment from Tracey Bonner
Comment from Jim Fritch
Comment from Michael Hegemeyer
Comment from Ana Johnson
Comment from Kathleen Danchise
Comment from Barbara Scavezze
Comment from Renette Jasphy
Comment from Kristine Jorgensen
Comment from Douglas Koch
Comment from Susan Miller
Comment from Frank Pilholski
Comment from David Clayman
Comment from Elizabeth MacKelvie
Comment from Jane Hartmann
Comment from Carrie Darling
Comment from Luisa Green
Comment from Carrie Anthony
Comment from Sarah Sloane
Comment from Lorraine Hartmann
Comment from George Beasley
Comment from Michael King
Comment from William Nusbaum

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16946
NOAA-NMFS-2020-0031-DRAFT-16947
NOAA-NMFS-2020-0031-DRAFT-16948
NOAA-NMFS-2020-0031-DRAFT-16949
NOAA-NMFS-2020-0031-DRAFT-16950
NOAA-NMFS-2020-0031-DRAFT-16951
NOAA-NMFS-2020-0031-DRAFT-16952
NOAA-NMFS-2020-0031-DRAFT-16953
NOAA-NMFS-2020-0031-DRAFT-16954
NOAA-NMFS-2020-0031-DRAFT-16955
NOAA-NMFS-2020-0031-DRAFT-16956
NOAA-NMFS-2020-0031-DRAFT-16957
NOAA-NMFS-2020-0031-DRAFT-16958
NOAA-NMFS-2020-0031-DRAFT-16959
NOAA-NMFS-2020-0031-DRAFT-16960
NOAA-NMFS-2020-0031-DRAFT-16961
NOAA-NMFS-2020-0031-DRAFT-16962
NOAA-NMFS-2020-0031-DRAFT-16963
NOAA-NMFS-2020-0031-DRAFT-16964
NOAA-NMFS-2020-0031-DRAFT-16966
NOAA-NMFS-2020-0031-DRAFT-16967
NOAA-NMFS-2020-0031-DRAFT-16968
NOAA-NMFS-2020-0031-DRAFT-16969
NOAA-NMFS-2020-0031-DRAFT-16970
NOAA-NMFS-2020-0031-DRAFT-16971
NOAA-NMFS-2020-0031-DRAFT-16972
NOAA-NMFS-2020-0031-DRAFT-16973
NOAA-NMFS-2020-0031-DRAFT-16974
NOAA-NMFS-2020-0031-DRAFT-16975
NOAA-NMFS-2020-0031-DRAFT-16976
NOAA-NMFS-2020-0031-DRAFT-16977
NOAA-NMFS-2020-0031-DRAFT-16978
NOAA-NMFS-2020-0031-DRAFT-16979
NOAA-NMFS-2020-0031-DRAFT-16980
NOAA-NMFS-2020-0031-DRAFT-16981
NOAA-NMFS-2020-0031-DRAFT-16982
NOAA-NMFS-2020-0031-DRAFT-16983
NOAA-NMFS-2020-0031-DRAFT-16984
NOAA-NMFS-2020-0031-DRAFT-16985
NOAA-NMFS-2020-0031-DRAFT-16986
NOAA-NMFS-2020-0031-DRAFT-16987

Comment from Laurie Franklin
Comment from fay forman
Comment from Martha Brown
Comment from Yolanda Rodriguez
Comment from Tina Fearnow
Comment from Sarah Garn
Comment from steve kent
Comment from Robert Arneach
Comment from Janice Phillips
Comment from Karylee Feldman
Comment from Monique Balaban
Comment from mark rist
Comment from Susan Jessen
Comment from Michele Wise
Comment from Nadine Godwin
Comment from Cathy Nelson
Comment from Riccardo Savi
Comment from Zo Osteen
Comment from Ann Alsobrook
Comment from Jonathan Peter
Comment from Joanne Rist
Comment from Jill Thompson
Comment from Marc Hoffman
Comment from Carolina Valenzuela
Comment from Timothy RITZ
Comment from Jane Bidinian
Comment from Jane Bidinian
Comment from Carol Tomusiak
Comment from Richard Ignelzi
Comment from Dawn Florio
Comment from Nancy Sidebotham
Comment from Patty Watson
Comment from Mark Schemm
Comment from Mark Schemm
Comment from Dawn Florio
Comment from Yohanna Willheim
Comment from Melissa Burchett
Comment from Sally Wise
Comment from Jean Cheesman
Comment from Margery Gray
Comment from Linda Townill

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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11824
NOAA-NMFS-2020-0031-DRAFT-11825
NOAA-NMFS-2020-0031-DRAFT-11826
NOAA-NMFS-2020-0031-DRAFT-11827
NOAA-NMFS-2020-0031-DRAFT-11828
NOAA-NMFS-2020-0031-DRAFT-11829
NOAA-NMFS-2020-0031-DRAFT-11830
NOAA-NMFS-2020-0031-DRAFT-11831
NOAA-NMFS-2020-0031-DRAFT-11832
NOAA-NMFS-2020-0031-DRAFT-11833
NOAA-NMFS-2020-0031-DRAFT-11834
NOAA-NMFS-2020-0031-DRAFT-11835
NOAA-NMFS-2020-0031-DRAFT-11836
NOAA-NMFS-2020-0031-DRAFT-11837
NOAA-NMFS-2020-0031-DRAFT-11838
NOAA-NMFS-2020-0031-DRAFT-11839
NOAA-NMFS-2020-0031-DRAFT-11840
NOAA-NMFS-2020-0031-DRAFT-11841
NOAA-NMFS-2020-0031-DRAFT-11842
NOAA-NMFS-2020-0031-DRAFT-11843
NOAA-NMFS-2020-0031-DRAFT-11844
NOAA-NMFS-2020-0031-DRAFT-11845
NOAA-NMFS-2020-0031-DRAFT-11846
NOAA-NMFS-2020-0031-DRAFT-11847
NOAA-NMFS-2020-0031-DRAFT-11848
NOAA-NMFS-2020-0031-DRAFT-11849
NOAA-NMFS-2020-0031-DRAFT-11850
NOAA-NMFS-2020-0031-DRAFT-11851
NOAA-NMFS-2020-0031-DRAFT-11852
NOAA-NMFS-2020-0031-DRAFT-11853
NOAA-NMFS-2020-0031-DRAFT-11854
NOAA-NMFS-2020-0031-DRAFT-11855
NOAA-NMFS-2020-0031-DRAFT-11856
NOAA-NMFS-2020-0031-DRAFT-11857
NOAA-NMFS-2020-0031-DRAFT-11858
NOAA-NMFS-2020-0031-DRAFT-11859
NOAA-NMFS-2020-0031-DRAFT-11860
NOAA-NMFS-2020-0031-DRAFT-11861
NOAA-NMFS-2020-0031-DRAFT-11862
NOAA-NMFS-2020-0031-DRAFT-11863
NOAA-NMFS-2020-0031-DRAFT-11864

Comment from stephanie miller
Comment from Greg Nicholas
Comment from Sharon Lee
Comment from Paula Morgan
Comment from alison sky
Comment from Ann Cohen
Comment from Marion Lakatos
Comment from Rich Hladky
Comment from J. F.
Comment from Kristyn MacPhail
Comment from Marvin Guymon
Comment from Robert Keiser
Comment from Arline Mathews
Comment from Michele St Peter
Comment from Michael Prete
Comment from judy pizarro
Comment from Barbara Giorgio
Comment from Marilee Nagy
Comment from Laurie Tabor
Comment from Roderic Stephens
Comment from Arline Mathews
Comment from Rosemarie Kozdron
Comment from Krista Nordstrom
Comment from John McArthur
Comment from Sally Jacques
Comment from James Gonsman
Comment from kate nyne
Comment from Mina Bish
Comment from Hilary Harris
Comment from D Sizemore
Comment from Anna Victoria
Comment from Barb Powell
Comment from Myrna Houle
Comment from Susan Gill
Comment from Hillary Ostrow
Comment from Jon Anderholm
Comment from Laurel Watson
Comment from maria mutter
Comment from Darrel Whipple
Comment from gary ehatt
Comment from Marilee Meyer

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16988
NOAA-NMFS-2020-0031-DRAFT-16989
NOAA-NMFS-2020-0031-DRAFT-16990
NOAA-NMFS-2020-0031-DRAFT-16991
NOAA-NMFS-2020-0031-DRAFT-16992
NOAA-NMFS-2020-0031-DRAFT-16993
NOAA-NMFS-2020-0031-DRAFT-16994
NOAA-NMFS-2020-0031-DRAFT-16995
NOAA-NMFS-2020-0031-DRAFT-16996
NOAA-NMFS-2020-0031-DRAFT-16997
NOAA-NMFS-2020-0031-DRAFT-16998
NOAA-NMFS-2020-0031-DRAFT-16999
NOAA-NMFS-2020-0031-DRAFT-17000
NOAA-NMFS-2020-0031-DRAFT-17001
NOAA-NMFS-2020-0031-DRAFT-17002
NOAA-NMFS-2020-0031-DRAFT-17004
NOAA-NMFS-2020-0031-DRAFT-17005
NOAA-NMFS-2020-0031-DRAFT-17006
NOAA-NMFS-2020-0031-DRAFT-17007
NOAA-NMFS-2020-0031-DRAFT-17008
NOAA-NMFS-2020-0031-DRAFT-17009
NOAA-NMFS-2020-0031-DRAFT-17010
NOAA-NMFS-2020-0031-DRAFT-17011
NOAA-NMFS-2020-0031-DRAFT-17012
NOAA-NMFS-2020-0031-DRAFT-17013
NOAA-NMFS-2020-0031-DRAFT-17014
NOAA-NMFS-2020-0031-DRAFT-17015
NOAA-NMFS-2020-0031-DRAFT-17016
NOAA-NMFS-2020-0031-DRAFT-17017
NOAA-NMFS-2020-0031-DRAFT-17018
NOAA-NMFS-2020-0031-DRAFT-17019
NOAA-NMFS-2020-0031-DRAFT-17020
NOAA-NMFS-2020-0031-DRAFT-17021
NOAA-NMFS-2020-0031-DRAFT-17022
NOAA-NMFS-2020-0031-DRAFT-17023
NOAA-NMFS-2020-0031-DRAFT-17024
NOAA-NMFS-2020-0031-DRAFT-17025
NOAA-NMFS-2020-0031-DRAFT-17026
NOAA-NMFS-2020-0031-DRAFT-17027
NOAA-NMFS-2020-0031-DRAFT-17028
NOAA-NMFS-2020-0031-DRAFT-17030

Comment from Shawn Jones Bunn
Comment from Karen Freeman
Comment from Margaret Benson
Comment from Francine Dellinger
Comment from Lynn Pooley
Comment from DALE HOGLUND
Comment from Phyllis Park
Comment from DARLYNE SCHNEIDER
Comment from Linda Abbott
Comment from Mary Guillet
Comment from Laura Clement
Comment from Stacey Marchig
Comment from Mary Guillet
Comment from Ralph Herman
Comment from Nicholas Prychodko
Comment from Richard Bold
Comment from Sheldon Rosenp
Comment from Jolynn Jarboe
Comment from Tammy Edmonds
Comment from Ron Schmidt
Comment from Denice Eldridge
Comment from Debbie Bolsky
Comment from Eric Baizer
Comment from william pendergrass
Comment from Victoria Shankling
Comment from Jane DeAngelo
Comment from priscilla martinez
Comment from Gerald Hassett
Comment from Kendra Alexiis Nerl
Comment from Robert Carnevale
Comment from Sandra Kuschel
Comment from Suzanne MacDougall
Comment from James Henriksen
Comment from James Jones
Comment from Ron Richter
Comment from Ruth Carlson
Comment from Dolores Fifer
Comment from Janine Ruffo
Comment from Sharon Wallace
Comment from Elisabeth Simpson
Comment from Mary McGovern

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02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11865
NOAA-NMFS-2020-0031-DRAFT-11866
NOAA-NMFS-2020-0031-DRAFT-11867
NOAA-NMFS-2020-0031-DRAFT-11868
NOAA-NMFS-2020-0031-DRAFT-11869
NOAA-NMFS-2020-0031-DRAFT-11870
NOAA-NMFS-2020-0031-DRAFT-11871
NOAA-NMFS-2020-0031-DRAFT-11872
NOAA-NMFS-2020-0031-DRAFT-11873
NOAA-NMFS-2020-0031-DRAFT-11874
NOAA-NMFS-2020-0031-DRAFT-11875
NOAA-NMFS-2020-0031-DRAFT-11876
NOAA-NMFS-2020-0031-DRAFT-11877
NOAA-NMFS-2020-0031-DRAFT-11878
NOAA-NMFS-2020-0031-DRAFT-11879
NOAA-NMFS-2020-0031-DRAFT-11880
NOAA-NMFS-2020-0031-DRAFT-11881
NOAA-NMFS-2020-0031-DRAFT-11882
NOAA-NMFS-2020-0031-DRAFT-11883
NOAA-NMFS-2020-0031-DRAFT-11884
NOAA-NMFS-2020-0031-DRAFT-11885
NOAA-NMFS-2020-0031-DRAFT-11886
NOAA-NMFS-2020-0031-DRAFT-11887
NOAA-NMFS-2020-0031-DRAFT-11888
NOAA-NMFS-2020-0031-DRAFT-11889
NOAA-NMFS-2020-0031-DRAFT-11890
NOAA-NMFS-2020-0031-DRAFT-11891
NOAA-NMFS-2020-0031-DRAFT-11892
NOAA-NMFS-2020-0031-DRAFT-11893
NOAA-NMFS-2020-0031-DRAFT-11894
NOAA-NMFS-2020-0031-DRAFT-11895
NOAA-NMFS-2020-0031-DRAFT-11896
NOAA-NMFS-2020-0031-DRAFT-11897
NOAA-NMFS-2020-0031-DRAFT-11898
NOAA-NMFS-2020-0031-DRAFT-11899
NOAA-NMFS-2020-0031-DRAFT-11900
NOAA-NMFS-2020-0031-DRAFT-11901
NOAA-NMFS-2020-0031-DRAFT-11902
NOAA-NMFS-2020-0031-DRAFT-11903
NOAA-NMFS-2020-0031-DRAFT-11904
NOAA-NMFS-2020-0031-DRAFT-11905

Comment from barbara poland
Comment from Jacqui Tomaszewski
Comment from Steve Garrett
Comment from Susan Vessicchio
Comment from Ann Tagawa
Comment from Jeanne Mackay
Comment from Steven Collins
Comment from Ann Tagawa
Comment from Chris Berlet
Comment from Teree Parman
Comment from Vicki Davis
Comment from Mike Whyman
Comment from Melissa Dorval
Comment from Paula Lozar
Comment from Cindy Lance
Comment from Martin Rickman
Comment from ALLEN FREIHOFER
Comment from WILLIAM O'HARE
Comment from JOHN MCGLADE
Comment from Jean Hanson
Comment from Holly Koppenhaver
Comment from Tina Freeman
Comment from Margaret Shekell
Comment from Jennifer Noel
Comment from Ron De Stefano
Comment from Kathleen Miller
Comment from Regina Embry
Comment from Peter Ayres
Comment from Steve Gray
Comment from Rob Puc
Comment from Paige Ziehlermartin
Comment from Patricia Walker
Comment from les roberts
Comment from Mary Baier
Comment from Terry Vaccaro
Comment from g clemson
Comment from Kate Bolton
Comment from Cara Anderson
Comment from John Hawkins
Comment from Andrei Harabadji
Comment from Elisabeth Brisebois

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17031
NOAA-NMFS-2020-0031-DRAFT-17032
NOAA-NMFS-2020-0031-DRAFT-17033
NOAA-NMFS-2020-0031-DRAFT-17034
NOAA-NMFS-2020-0031-DRAFT-17035
NOAA-NMFS-2020-0031-DRAFT-17036
NOAA-NMFS-2020-0031-DRAFT-17037
NOAA-NMFS-2020-0031-DRAFT-17038
NOAA-NMFS-2020-0031-DRAFT-17039
NOAA-NMFS-2020-0031-DRAFT-17040
NOAA-NMFS-2020-0031-DRAFT-17041
NOAA-NMFS-2020-0031-DRAFT-17042
NOAA-NMFS-2020-0031-DRAFT-17043
NOAA-NMFS-2020-0031-DRAFT-17044
NOAA-NMFS-2020-0031-DRAFT-17045
NOAA-NMFS-2020-0031-DRAFT-17046
NOAA-NMFS-2020-0031-DRAFT-17047
NOAA-NMFS-2020-0031-DRAFT-17048
NOAA-NMFS-2020-0031-DRAFT-17049
NOAA-NMFS-2020-0031-DRAFT-17050
NOAA-NMFS-2020-0031-DRAFT-17051
NOAA-NMFS-2020-0031-DRAFT-17052
NOAA-NMFS-2020-0031-DRAFT-17053
NOAA-NMFS-2020-0031-DRAFT-17054
NOAA-NMFS-2020-0031-DRAFT-17055
NOAA-NMFS-2020-0031-DRAFT-17056
NOAA-NMFS-2020-0031-DRAFT-17057
NOAA-NMFS-2020-0031-DRAFT-17058
NOAA-NMFS-2020-0031-DRAFT-17059
NOAA-NMFS-2020-0031-DRAFT-17060
NOAA-NMFS-2020-0031-DRAFT-17061
NOAA-NMFS-2020-0031-DRAFT-17063
NOAA-NMFS-2020-0031-DRAFT-17064
NOAA-NMFS-2020-0031-DRAFT-17065
NOAA-NMFS-2020-0031-DRAFT-17066
NOAA-NMFS-2020-0031-DRAFT-17067
NOAA-NMFS-2020-0031-DRAFT-17068
NOAA-NMFS-2020-0031-DRAFT-17069
NOAA-NMFS-2020-0031-DRAFT-17070
NOAA-NMFS-2020-0031-DRAFT-17071
NOAA-NMFS-2020-0031-DRAFT-17072

Comment from Shelley Wehberg
Comment from Nowell Overby
Comment from Roberta Hamilton
Comment from Joanne Purnell
Comment from Allister Layne
Comment from Debbie Criswell
Comment from Geri Ott
Comment from Mary D'Errico
Comment from Kathy Sugarman
Comment from Cheryl Gaiefsky
Comment from Sharon Ann Ridings
Comment from Mark White
Comment from Vanessa Van Doorne
Comment from Marilyn Saunders
Comment from Vincent Veitas
Comment from Marketa Anderson
Comment from Margaret Jenco
Michalsky
Comment from Janice Pemberton
Comment from Anita Newman
Comment from Sandra Joos
Comment from Donna Smith
Comment from Glenda Krause
Comment from Deborah Lewis
Comment from Linda Marshall
Comment from Liz LaFour
Comment from Sharon Ann Ridings
Comment from Ruthann McDermott
Comment from Dario Morell
Comment from Amy Halstead
Comment from Andy Johnson
Comment from Brian Gibbons
Comment from Cheryl Pendola
Comment from Donna Marie Slack
Comment from carolyn massey
Comment from Paula Aszkler
Comment from Denise Derk
Comment from Ellen Pomeroy
Comment from John Andreykovic
Comment from Lorraine Akiba
Comment from Sue Holtz
Comment from Kim Smith

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02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11906
NOAA-NMFS-2020-0031-DRAFT-11907
NOAA-NMFS-2020-0031-DRAFT-11908
NOAA-NMFS-2020-0031-DRAFT-11909
NOAA-NMFS-2020-0031-DRAFT-11910
NOAA-NMFS-2020-0031-DRAFT-11911
NOAA-NMFS-2020-0031-DRAFT-11912
NOAA-NMFS-2020-0031-DRAFT-11913
NOAA-NMFS-2020-0031-DRAFT-11914
NOAA-NMFS-2020-0031-DRAFT-11915
NOAA-NMFS-2020-0031-DRAFT-11916
NOAA-NMFS-2020-0031-DRAFT-11917
NOAA-NMFS-2020-0031-DRAFT-11918
NOAA-NMFS-2020-0031-DRAFT-11919
NOAA-NMFS-2020-0031-DRAFT-11920
NOAA-NMFS-2020-0031-DRAFT-11921
NOAA-NMFS-2020-0031-DRAFT-11922
NOAA-NMFS-2020-0031-DRAFT-11923
NOAA-NMFS-2020-0031-DRAFT-11924
NOAA-NMFS-2020-0031-DRAFT-11925
NOAA-NMFS-2020-0031-DRAFT-11926
NOAA-NMFS-2020-0031-DRAFT-11927
NOAA-NMFS-2020-0031-DRAFT-11928
NOAA-NMFS-2020-0031-DRAFT-11929
NOAA-NMFS-2020-0031-DRAFT-11930
NOAA-NMFS-2020-0031-DRAFT-11931
NOAA-NMFS-2020-0031-DRAFT-11932
NOAA-NMFS-2020-0031-DRAFT-11933
NOAA-NMFS-2020-0031-DRAFT-11934
NOAA-NMFS-2020-0031-DRAFT-11935
NOAA-NMFS-2020-0031-DRAFT-11936
NOAA-NMFS-2020-0031-DRAFT-11937
NOAA-NMFS-2020-0031-DRAFT-11938
NOAA-NMFS-2020-0031-DRAFT-11939
NOAA-NMFS-2020-0031-DRAFT-11940
NOAA-NMFS-2020-0031-DRAFT-11941
NOAA-NMFS-2020-0031-DRAFT-11942
NOAA-NMFS-2020-0031-DRAFT-11943
NOAA-NMFS-2020-0031-DRAFT-11944
NOAA-NMFS-2020-0031-DRAFT-11945
NOAA-NMFS-2020-0031-DRAFT-11946

Comment from Carrie Staton
Comment from Sheila Dillon
Comment from Cassandra Kirk
Comment from Caroline Miller
Comment from Jason Gibson
Comment from Karen Thomas
Comment from Carol Whitehurst
Comment from Karen Thomas
Comment from Jeanne Mackay
Comment from Rayline Dean
Comment from l lee
Comment from Sandy Menden
Comment from Paul Hunrichs
Comment from Stephen Arvay
Comment from Judith Radovsky
Comment from Hazel Champagne
Comment from Randall Griswold
Comment from Lynn OShea
Comment from Norm Seelbinder
Comment from Sharon Kaylen
Comment from Marie Musante
Comment from charles rinear
Comment from Dianne Douglas
Comment from Robert Boyer
Comment from Jeff Harvey
Comment from Steven Kennie
Comment from Karen Spurr
Comment from James Helmers
Comment from Rebecca Gentry
Comment from Pat Dingleberry
Comment from Louise Friedenson
Comment from Sue Covello
Comment from BETSY BERLIN
Comment from j g
Comment from Edda Spielmann
Comment from irene kubosh
Comment from Cassy S
Comment from Patricia Anderson
Comment from Richard Martin
Comment from Robert Carroll
Comment from Katherine Patterson

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17073
NOAA-NMFS-2020-0031-DRAFT-17074
NOAA-NMFS-2020-0031-DRAFT-17075
NOAA-NMFS-2020-0031-DRAFT-17076
NOAA-NMFS-2020-0031-DRAFT-17077
NOAA-NMFS-2020-0031-DRAFT-17078
NOAA-NMFS-2020-0031-DRAFT-17079
NOAA-NMFS-2020-0031-DRAFT-17080
NOAA-NMFS-2020-0031-DRAFT-17081
NOAA-NMFS-2020-0031-DRAFT-17083
NOAA-NMFS-2020-0031-DRAFT-17084
NOAA-NMFS-2020-0031-DRAFT-17085
NOAA-NMFS-2020-0031-DRAFT-17086
NOAA-NMFS-2020-0031-DRAFT-17087
NOAA-NMFS-2020-0031-DRAFT-17089
NOAA-NMFS-2020-0031-DRAFT-17090
NOAA-NMFS-2020-0031-DRAFT-17091
NOAA-NMFS-2020-0031-DRAFT-17092
NOAA-NMFS-2020-0031-DRAFT-17093
NOAA-NMFS-2020-0031-DRAFT-17094
NOAA-NMFS-2020-0031-DRAFT-17095
NOAA-NMFS-2020-0031-DRAFT-17096
NOAA-NMFS-2020-0031-DRAFT-17097
NOAA-NMFS-2020-0031-DRAFT-17098
NOAA-NMFS-2020-0031-DRAFT-17099
NOAA-NMFS-2020-0031-DRAFT-17100
NOAA-NMFS-2020-0031-DRAFT-17101
NOAA-NMFS-2020-0031-DRAFT-17102
NOAA-NMFS-2020-0031-DRAFT-17103
NOAA-NMFS-2020-0031-DRAFT-17104
NOAA-NMFS-2020-0031-DRAFT-17105
NOAA-NMFS-2020-0031-DRAFT-17106
NOAA-NMFS-2020-0031-DRAFT-17107
NOAA-NMFS-2020-0031-DRAFT-17108
NOAA-NMFS-2020-0031-DRAFT-17109
NOAA-NMFS-2020-0031-DRAFT-17110
NOAA-NMFS-2020-0031-DRAFT-17111
NOAA-NMFS-2020-0031-DRAFT-17112
NOAA-NMFS-2020-0031-DRAFT-17113
NOAA-NMFS-2020-0031-DRAFT-17114
NOAA-NMFS-2020-0031-DRAFT-17115

Comment from Teresa Shelton
Comment from Diane Johnson
Comment from Ann Khambholja
Comment from Soretta Rodack
Comment from Nancy Heck
Comment from M Davidson
Comment from Nancy Schuhrke
Comment from Barbara Thomas Kruse
Comment from Mike Peale
Comment from Rob Walker
Comment from Richard LaBudie
Comment from Stacy Austin
Comment from Ken Bosch
Comment from Sandra Eschbach
Comment from maria ferrero
Comment from mike moran
Comment from Mark Canright
Comment from Michael Tomczyszyn
Comment from Debbie Williams
Comment from Richard Wallace
Comment from Rebecca Canright
Comment from Peggy Loveless
Comment from Heather Black
Comment from Amy Hansen
Comment from Terrence Kkysz
Comment from Hardy Kuenzl
Comment from Ellen Wasfi
Comment from William Fraley
Comment from Nancy Hayden
Comment from Eileen Karzen
Comment from Tammy Lettieri
Comment from Madra Christian
Comment from Hannah Lemke
Comment from Diana Avery
Comment from Joanne Tenney
Comment from Tracy Feldman
Comment from Nancy Craker
Comment from Debby Thiel
Comment from Suzi Knee
Comment from Patricia Browne
Comment from Esther Friedman

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11947
NOAA-NMFS-2020-0031-DRAFT-11948
NOAA-NMFS-2020-0031-DRAFT-11949
NOAA-NMFS-2020-0031-DRAFT-11950
NOAA-NMFS-2020-0031-DRAFT-11951
NOAA-NMFS-2020-0031-DRAFT-11952
NOAA-NMFS-2020-0031-DRAFT-11953
NOAA-NMFS-2020-0031-DRAFT-11954
NOAA-NMFS-2020-0031-DRAFT-11955
NOAA-NMFS-2020-0031-DRAFT-11956
NOAA-NMFS-2020-0031-DRAFT-11957
NOAA-NMFS-2020-0031-DRAFT-11958
NOAA-NMFS-2020-0031-DRAFT-11959
NOAA-NMFS-2020-0031-DRAFT-11960
NOAA-NMFS-2020-0031-DRAFT-11961
NOAA-NMFS-2020-0031-DRAFT-11962
NOAA-NMFS-2020-0031-DRAFT-11963
NOAA-NMFS-2020-0031-DRAFT-11964
NOAA-NMFS-2020-0031-DRAFT-11965
NOAA-NMFS-2020-0031-DRAFT-11966
NOAA-NMFS-2020-0031-DRAFT-11967
NOAA-NMFS-2020-0031-DRAFT-11968
NOAA-NMFS-2020-0031-DRAFT-11969
NOAA-NMFS-2020-0031-DRAFT-11970
NOAA-NMFS-2020-0031-DRAFT-11971
NOAA-NMFS-2020-0031-DRAFT-11972
NOAA-NMFS-2020-0031-DRAFT-11973
NOAA-NMFS-2020-0031-DRAFT-11974
NOAA-NMFS-2020-0031-DRAFT-11975
NOAA-NMFS-2020-0031-DRAFT-11976
NOAA-NMFS-2020-0031-DRAFT-11977
NOAA-NMFS-2020-0031-DRAFT-11978
NOAA-NMFS-2020-0031-DRAFT-11979
NOAA-NMFS-2020-0031-DRAFT-11980
NOAA-NMFS-2020-0031-DRAFT-11981
NOAA-NMFS-2020-0031-DRAFT-11982
NOAA-NMFS-2020-0031-DRAFT-11983
NOAA-NMFS-2020-0031-DRAFT-11984
NOAA-NMFS-2020-0031-DRAFT-11985
NOAA-NMFS-2020-0031-DRAFT-11986
NOAA-NMFS-2020-0031-DRAFT-11987

Comment from Dennis Stephen
Comment from pablo voitzuk
Comment from Jim Geear
Comment from Nancy Nelligan-McGarry
Comment from Patricia BlackwellMarchant
Comment from Donna Held
Comment from Barbara Sorgeler
Comment from Malvina Landau-Blake
Comment from Michael Stricker
Comment from Randy Guthrie
Comment from Angie Moore
Comment from Vicki Bruno
Comment from Nancy Griffith
Comment from AnnMarie Sardineer
Comment from Stephen Fitch
Comment from Antonia Chianis
Comment from MaryJo Wilkins
Comment from Gail Hanford
Comment from Ana Herrero
Comment from Concepcion Elvira
Comment from Amy Cyr
Comment from Kay Reinfried
Comment from JEAN ALLGOOD
Comment from Ronald Kestler
Comment from Susan Grey
Comment from Kimberly Boden
Comment from Christine Daum
Comment from Corey Schade
Comment from Barney Fortier
Comment from Jann Johnson
Comment from Tony Marra
Comment from Eric Abrams
Comment from Carla Taylor
Comment from Paul Bechtel
Comment from Ruthie Bernaert
Comment from Righthouse Victoria
Comment from Lisa Hoch
Comment from Tracy Marotta
Comment from Dorothy Battle
Comment from Amy King
Comment from Gayle Kerr

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17116
NOAA-NMFS-2020-0031-DRAFT-17117
NOAA-NMFS-2020-0031-DRAFT-17118
NOAA-NMFS-2020-0031-DRAFT-17119
NOAA-NMFS-2020-0031-DRAFT-17120
NOAA-NMFS-2020-0031-DRAFT-17121
NOAA-NMFS-2020-0031-DRAFT-17122
NOAA-NMFS-2020-0031-DRAFT-17123
NOAA-NMFS-2020-0031-DRAFT-17124
NOAA-NMFS-2020-0031-DRAFT-17125
NOAA-NMFS-2020-0031-DRAFT-17126
NOAA-NMFS-2020-0031-DRAFT-17127
NOAA-NMFS-2020-0031-DRAFT-17128
NOAA-NMFS-2020-0031-DRAFT-17129
NOAA-NMFS-2020-0031-DRAFT-17130
NOAA-NMFS-2020-0031-DRAFT-17131
NOAA-NMFS-2020-0031-DRAFT-17132
NOAA-NMFS-2020-0031-DRAFT-17133
NOAA-NMFS-2020-0031-DRAFT-17134
NOAA-NMFS-2020-0031-DRAFT-17135
NOAA-NMFS-2020-0031-DRAFT-17136
NOAA-NMFS-2020-0031-DRAFT-17138
NOAA-NMFS-2020-0031-DRAFT-17139
NOAA-NMFS-2020-0031-DRAFT-17140
NOAA-NMFS-2020-0031-DRAFT-17141
NOAA-NMFS-2020-0031-DRAFT-17142
NOAA-NMFS-2020-0031-DRAFT-17143
NOAA-NMFS-2020-0031-DRAFT-17144
NOAA-NMFS-2020-0031-DRAFT-17145
NOAA-NMFS-2020-0031-DRAFT-17146
NOAA-NMFS-2020-0031-DRAFT-17147
NOAA-NMFS-2020-0031-DRAFT-17148
NOAA-NMFS-2020-0031-DRAFT-17149
NOAA-NMFS-2020-0031-DRAFT-17150
NOAA-NMFS-2020-0031-DRAFT-17151
NOAA-NMFS-2020-0031-DRAFT-17152
NOAA-NMFS-2020-0031-DRAFT-17153
NOAA-NMFS-2020-0031-DRAFT-17154
NOAA-NMFS-2020-0031-DRAFT-17155
NOAA-NMFS-2020-0031-DRAFT-17156
NOAA-NMFS-2020-0031-DRAFT-17157

Comment from Norm Mika
Comment from Judith Peter
Comment from Kathryn Burns
Comment from Laura Caseley
Comment from Sally Maish
Comment from JONATHAN REGITSKY
Comment from Annette Dekanich
Comment from Rebecca Vitale Mandich
Comment from Colleen Wheeler
Comment from Patty Linder
Comment from Pam Harper Smith
Comment from Debbie Stephens
Comment from Karen Isaacs
Comment from Diane Kuzma
Comment from Linda Martinez
Comment from Melissa Ramundo
Comment from Carole Hines
Comment from Anubhav Chhabra
Comment from Debra Germain
Comment from kajsa ingelsson
Comment from Tod Foulk
Comment from Randy Thomas
Comment from Helen Drwinga
Comment from Deborah Longino
Comment from Carol Makris
Comment from Julia Rinaldi
Comment from Linda Eidelberg
Comment from sasha silverstein
Comment from Kirsten White
Comment from Vicki Peters
Comment from Linda Sparks
Comment from Marge Arnold
Comment from Kathy Consagra
Comment from Julie MORIN
Comment from Barbara Gregory
Comment from Gary Babb
Comment from Elliot Comunale
Comment from Chris Rose
Comment from Amy Dozier
Comment from Kathy OBrien
Comment from E Neal

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02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-11988
NOAA-NMFS-2020-0031-DRAFT-11989
NOAA-NMFS-2020-0031-DRAFT-11990
NOAA-NMFS-2020-0031-DRAFT-11991
NOAA-NMFS-2020-0031-DRAFT-11992
NOAA-NMFS-2020-0031-DRAFT-11993
NOAA-NMFS-2020-0031-DRAFT-11994
NOAA-NMFS-2020-0031-DRAFT-11995
NOAA-NMFS-2020-0031-DRAFT-11996
NOAA-NMFS-2020-0031-DRAFT-11997
NOAA-NMFS-2020-0031-DRAFT-11998
NOAA-NMFS-2020-0031-DRAFT-11999
NOAA-NMFS-2020-0031-DRAFT-12000
NOAA-NMFS-2020-0031-DRAFT-12001
NOAA-NMFS-2020-0031-DRAFT-12002
NOAA-NMFS-2020-0031-DRAFT-12003
NOAA-NMFS-2020-0031-DRAFT-12004
NOAA-NMFS-2020-0031-DRAFT-12005
NOAA-NMFS-2020-0031-DRAFT-12006
NOAA-NMFS-2020-0031-DRAFT-12007
NOAA-NMFS-2020-0031-DRAFT-12008
NOAA-NMFS-2020-0031-DRAFT-12009
NOAA-NMFS-2020-0031-DRAFT-12010
NOAA-NMFS-2020-0031-DRAFT-12011
NOAA-NMFS-2020-0031-DRAFT-12012
NOAA-NMFS-2020-0031-DRAFT-12013
NOAA-NMFS-2020-0031-DRAFT-12014
NOAA-NMFS-2020-0031-DRAFT-12015
NOAA-NMFS-2020-0031-DRAFT-12016
NOAA-NMFS-2020-0031-DRAFT-12017
NOAA-NMFS-2020-0031-DRAFT-12018
NOAA-NMFS-2020-0031-DRAFT-12019
NOAA-NMFS-2020-0031-DRAFT-12020
NOAA-NMFS-2020-0031-DRAFT-12021
NOAA-NMFS-2020-0031-DRAFT-12022
NOAA-NMFS-2020-0031-DRAFT-12023
NOAA-NMFS-2020-0031-DRAFT-12024
NOAA-NMFS-2020-0031-DRAFT-12025
NOAA-NMFS-2020-0031-DRAFT-12026
NOAA-NMFS-2020-0031-DRAFT-12027
NOAA-NMFS-2020-0031-DRAFT-12028

Comment from Anne Van Alstyne
Comment from Natalie Youngberg
Comment from Jane Marquet
Comment from Gail Sredanovic
Comment from Mary Dorfman
Comment from Elaine Berg
Comment from toni logan
Comment from Karen giugno
Comment from Elizabeth Nation
Comment from Jacqueline Johnson
Comment from Linda Muntner
Comment from David Whiteman
Comment from John Breiby
Comment from Lanie Cox
Comment from Jeremy Foisy
Comment from Barbara Lintz
Comment from Ryan ONeill
Comment from Laura Garro
Comment from John Sailer
Comment from Kelli Reynolds
Comment from Karen Austin
Comment from James Mulcare
Comment from David Maceira
Comment from Sharon Ponsford
Comment from Scott Girard
Comment from Elizabeth Slikas
Comment from Kurt Schwarz
Comment from Nolen Scott
Comment from Jessica Wardlaw
Comment from Tobey Thatcher
Comment from Barry Barnett
Comment from Liza H
Comment from Mary Johnson
Comment from Rick auman
Comment from Nina French
Comment from Krista Dana
Comment from Jeffery McConaughy
Comment from Meryle Korn
Comment from Valerle Leonard
Comment from Melony Paulson
Comment from Jasmine Gouveia

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17158
NOAA-NMFS-2020-0031-DRAFT-17159
NOAA-NMFS-2020-0031-DRAFT-17160
NOAA-NMFS-2020-0031-DRAFT-17161
NOAA-NMFS-2020-0031-DRAFT-17162
NOAA-NMFS-2020-0031-DRAFT-17163
NOAA-NMFS-2020-0031-DRAFT-17164
NOAA-NMFS-2020-0031-DRAFT-17165
NOAA-NMFS-2020-0031-DRAFT-17166
NOAA-NMFS-2020-0031-DRAFT-17167
NOAA-NMFS-2020-0031-DRAFT-17168
NOAA-NMFS-2020-0031-DRAFT-17169
NOAA-NMFS-2020-0031-DRAFT-17170
NOAA-NMFS-2020-0031-DRAFT-17171
NOAA-NMFS-2020-0031-DRAFT-17172
NOAA-NMFS-2020-0031-DRAFT-17173
NOAA-NMFS-2020-0031-DRAFT-17174
NOAA-NMFS-2020-0031-DRAFT-17175
NOAA-NMFS-2020-0031-DRAFT-17176
NOAA-NMFS-2020-0031-DRAFT-17177
NOAA-NMFS-2020-0031-DRAFT-17178
NOAA-NMFS-2020-0031-DRAFT-17179
NOAA-NMFS-2020-0031-DRAFT-17180
NOAA-NMFS-2020-0031-DRAFT-17181
NOAA-NMFS-2020-0031-DRAFT-17182
NOAA-NMFS-2020-0031-DRAFT-17183
NOAA-NMFS-2020-0031-DRAFT-17184
NOAA-NMFS-2020-0031-DRAFT-17185
NOAA-NMFS-2020-0031-DRAFT-17186
NOAA-NMFS-2020-0031-DRAFT-17187
NOAA-NMFS-2020-0031-DRAFT-17188
NOAA-NMFS-2020-0031-DRAFT-17189
NOAA-NMFS-2020-0031-DRAFT-17190
NOAA-NMFS-2020-0031-DRAFT-17191
NOAA-NMFS-2020-0031-DRAFT-17192
NOAA-NMFS-2020-0031-DRAFT-17193
NOAA-NMFS-2020-0031-DRAFT-17194
NOAA-NMFS-2020-0031-DRAFT-17195
NOAA-NMFS-2020-0031-DRAFT-17196
NOAA-NMFS-2020-0031-DRAFT-17197
NOAA-NMFS-2020-0031-DRAFT-17198

Comment from Hunter Klapperich
Comment from David Elfin
Comment from Amy Assael
Comment from Joan Milford
Comment from Jennifer Rials
Comment from Adriana Chalson
Comment from Dr Lori Ugolik
Comment from Rosemary Bernier
Comment from LISA MACCARO
Comment from Mark Giordani
Comment from Diane Pires
Comment from Faith Schulman
Comment from Madeline Grant
Comment from Tammi Stewart
Comment from Rebecca Hofmeyer
Comment from Susan Shields
Comment from Javier Rivera Diaz
Comment from Dorothea Laster
Comment from Robert Stark
Comment from Debra Berlan
Comment from Hillary Delgado
Comment from Paula Rock
Comment from Sharon Anderson
Comment from Norma Kafer
Comment from Julie Teague
Comment from Jane Doub
Comment from Phillip Mitchell
Comment from Pete Wash
Comment from Linda Smith
Comment from Noreen Lassandrello
Comment from Shirley Klimowicz
Comment from Patricia Eaton
Comment from Donald Hunt
Comment from Shirley Klimowicz
Comment from Patricia Lauer
Comment from Joanne DeHart
Comment from Patricia Wilson
Comment from Vivian J Watkins
Comment from Michele Horenstein
Comment from CW Cox
Comment from Erika Luchterhand

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12029
NOAA-NMFS-2020-0031-DRAFT-12030
NOAA-NMFS-2020-0031-DRAFT-12031
NOAA-NMFS-2020-0031-DRAFT-12032
NOAA-NMFS-2020-0031-DRAFT-12033
NOAA-NMFS-2020-0031-DRAFT-12034
NOAA-NMFS-2020-0031-DRAFT-12035
NOAA-NMFS-2020-0031-DRAFT-12036
NOAA-NMFS-2020-0031-DRAFT-12037
NOAA-NMFS-2020-0031-DRAFT-12038
NOAA-NMFS-2020-0031-DRAFT-12039
NOAA-NMFS-2020-0031-DRAFT-12040
NOAA-NMFS-2020-0031-DRAFT-12041
NOAA-NMFS-2020-0031-DRAFT-12042
NOAA-NMFS-2020-0031-DRAFT-12043
NOAA-NMFS-2020-0031-DRAFT-12044
NOAA-NMFS-2020-0031-DRAFT-12045
NOAA-NMFS-2020-0031-DRAFT-12046
NOAA-NMFS-2020-0031-DRAFT-12047
NOAA-NMFS-2020-0031-DRAFT-12048
NOAA-NMFS-2020-0031-DRAFT-12049
NOAA-NMFS-2020-0031-DRAFT-12050
NOAA-NMFS-2020-0031-DRAFT-12051
NOAA-NMFS-2020-0031-DRAFT-12053
NOAA-NMFS-2020-0031-DRAFT-12054
NOAA-NMFS-2020-0031-DRAFT-12055
NOAA-NMFS-2020-0031-DRAFT-12056
NOAA-NMFS-2020-0031-DRAFT-12057
NOAA-NMFS-2020-0031-DRAFT-12058
NOAA-NMFS-2020-0031-DRAFT-12059
NOAA-NMFS-2020-0031-DRAFT-12060
NOAA-NMFS-2020-0031-DRAFT-12061
NOAA-NMFS-2020-0031-DRAFT-12062
NOAA-NMFS-2020-0031-DRAFT-12063
NOAA-NMFS-2020-0031-DRAFT-12064
NOAA-NMFS-2020-0031-DRAFT-12065
NOAA-NMFS-2020-0031-DRAFT-12066
NOAA-NMFS-2020-0031-DRAFT-12067
NOAA-NMFS-2020-0031-DRAFT-12068
NOAA-NMFS-2020-0031-DRAFT-12069
NOAA-NMFS-2020-0031-DRAFT-12070

Comment from Mike Kelly
Comment from Claudia Sabine
Comment from Charlene Kerchevall
Comment from William Grannell
Comment from Donald Crosby
Comment from Art Meeder
Comment from sue parsell
Comment from Bob Steininger
Comment from Laurie Izzo
Comment from Robert Anderson
Comment from Bridget Williamson
Comment from Sara Avery
Comment from Carol Sedillo
Comment from Jacquelyn Scioscia
Comment from James DeLeon
Comment from Wanda Graff
Comment from Debra Miller
Comment from Frank Pellegrino
Comment from Jonathan Hancock
Comment from Jason Kedmenec
Comment from Cindy Shoaf
Comment from Jason Steadmon
Comment from Kathleen Grossman
Comment from margaret scripp
Comment from Cheryl Fergeson
Comment from Susan O'Connor
Comment from Carolyn Turner
Comment from William Pogue
Comment from Trese Biagini
Comment from Hugh McFadden
Comment from Nicole Weber
Comment from Jeff Montejo
Comment from Denise Clarke
Comment from Deborah Perrero
Comment from doug krause
Comment from BRENDA EVANS
Comment from T Hruska
Comment from Marrha Skinner
Comment from Mellina Simon
Comment from Nico Duon
Comment from Gail Wing

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17199
NOAA-NMFS-2020-0031-DRAFT-17200
NOAA-NMFS-2020-0031-DRAFT-17201
NOAA-NMFS-2020-0031-DRAFT-17202
NOAA-NMFS-2020-0031-DRAFT-17203
NOAA-NMFS-2020-0031-DRAFT-17204
NOAA-NMFS-2020-0031-DRAFT-17205
NOAA-NMFS-2020-0031-DRAFT-17206
NOAA-NMFS-2020-0031-DRAFT-17207
NOAA-NMFS-2020-0031-DRAFT-17208
NOAA-NMFS-2020-0031-DRAFT-17209
NOAA-NMFS-2020-0031-DRAFT-17210
NOAA-NMFS-2020-0031-DRAFT-17211
NOAA-NMFS-2020-0031-DRAFT-17212
NOAA-NMFS-2020-0031-DRAFT-17213
NOAA-NMFS-2020-0031-DRAFT-17214
NOAA-NMFS-2020-0031-DRAFT-17216
NOAA-NMFS-2020-0031-DRAFT-17217
NOAA-NMFS-2020-0031-DRAFT-17218
NOAA-NMFS-2020-0031-DRAFT-17219
NOAA-NMFS-2020-0031-DRAFT-17220
NOAA-NMFS-2020-0031-DRAFT-17221
NOAA-NMFS-2020-0031-DRAFT-17222
NOAA-NMFS-2020-0031-DRAFT-17223
NOAA-NMFS-2020-0031-DRAFT-17224
NOAA-NMFS-2020-0031-DRAFT-17225
NOAA-NMFS-2020-0031-DRAFT-17226
NOAA-NMFS-2020-0031-DRAFT-17227
NOAA-NMFS-2020-0031-DRAFT-17228
NOAA-NMFS-2020-0031-DRAFT-17229
NOAA-NMFS-2020-0031-DRAFT-17230
NOAA-NMFS-2020-0031-DRAFT-17231
NOAA-NMFS-2020-0031-DRAFT-17232
NOAA-NMFS-2020-0031-DRAFT-17233
NOAA-NMFS-2020-0031-DRAFT-17234
NOAA-NMFS-2020-0031-DRAFT-17235
NOAA-NMFS-2020-0031-DRAFT-17236
NOAA-NMFS-2020-0031-DRAFT-17237
NOAA-NMFS-2020-0031-DRAFT-17238
NOAA-NMFS-2020-0031-DRAFT-17239
NOAA-NMFS-2020-0031-DRAFT-17240

Comment from Shelly Seales
Comment from Schantz Basir
Comment from Lynette Wuest
Comment from Michelle Prince
Comment from debbie andrews
Comment from Cliff Hoy
Comment from cyndee kruggel
Comment from kathleen vick
Comment from Irina Kurland
Comment from Patty Duffy
Comment from Taryn Geer
Comment from Sherry Marsh
Comment from Kelly Ciccone
Comment from Kevin Sullivan
Comment from Stephen Appell
Comment from Erika Woods
Comment from Pamela Sumlin
Comment from Bob Druwing
Comment from Ruth Motley
Comment from Cindy Smith
Comment from Lacey Chaffee
Comment from Colleen Bergh
Comment from Michael Levenson
Comment from Barbara Esposito
Comment from Michael Hogan
Comment from Dominic Libby
Comment from Ashley Partridge
Comment from Michele Lauren
Comment from Gwendolyn Kent
Comment from Marvin Guymon
Comment from Deborah Brown Ridley
Comment from Joe Griffo
Comment from Silvia Franke
Comment from Amanda Felt
Comment from Norm Wilmes
Comment from Yvonne Donner
Comment from Susan Martinez
Comment from Carol Hauschild
Comment from Meg Kelly
Comment from Ann Nowicki
Comment from Angela Ramirez

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12071
NOAA-NMFS-2020-0031-DRAFT-12072
NOAA-NMFS-2020-0031-DRAFT-12073
NOAA-NMFS-2020-0031-DRAFT-12074
NOAA-NMFS-2020-0031-DRAFT-12075
NOAA-NMFS-2020-0031-DRAFT-12076
NOAA-NMFS-2020-0031-DRAFT-12077
NOAA-NMFS-2020-0031-DRAFT-12078
NOAA-NMFS-2020-0031-DRAFT-12079
NOAA-NMFS-2020-0031-DRAFT-12080
NOAA-NMFS-2020-0031-DRAFT-12081
NOAA-NMFS-2020-0031-DRAFT-12082
NOAA-NMFS-2020-0031-DRAFT-12083
NOAA-NMFS-2020-0031-DRAFT-12084
NOAA-NMFS-2020-0031-DRAFT-12085
NOAA-NMFS-2020-0031-DRAFT-12086
NOAA-NMFS-2020-0031-DRAFT-12087
NOAA-NMFS-2020-0031-DRAFT-12088
NOAA-NMFS-2020-0031-DRAFT-12089
NOAA-NMFS-2020-0031-DRAFT-12090
NOAA-NMFS-2020-0031-DRAFT-12091
NOAA-NMFS-2020-0031-DRAFT-12092
NOAA-NMFS-2020-0031-DRAFT-12093
NOAA-NMFS-2020-0031-DRAFT-12094
NOAA-NMFS-2020-0031-DRAFT-12095
NOAA-NMFS-2020-0031-DRAFT-12096
NOAA-NMFS-2020-0031-DRAFT-12097
NOAA-NMFS-2020-0031-DRAFT-12098
NOAA-NMFS-2020-0031-DRAFT-12099
NOAA-NMFS-2020-0031-DRAFT-12100
NOAA-NMFS-2020-0031-DRAFT-12101
NOAA-NMFS-2020-0031-DRAFT-12102
NOAA-NMFS-2020-0031-DRAFT-12103
NOAA-NMFS-2020-0031-DRAFT-12104
NOAA-NMFS-2020-0031-DRAFT-12105
NOAA-NMFS-2020-0031-DRAFT-12106
NOAA-NMFS-2020-0031-DRAFT-12107
NOAA-NMFS-2020-0031-DRAFT-12108
NOAA-NMFS-2020-0031-DRAFT-12109
NOAA-NMFS-2020-0031-DRAFT-12110
NOAA-NMFS-2020-0031-DRAFT-12111

Comment from Ray Bernhardt
Comment from Bruce Ross
Comment from Ben Basin
Comment from Rosiris Paniagua
Comment from Pat Copenhaver
Comment from Francis Cleary
Comment from ADAM BERNSTEIN
Comment from Rev. Cline
Comment from Joel Maguire
Comment from Leslie Smith
Comment from Susan Bradshaw
Comment from claudia bourks
Comment from Danielle Dryden
Comment from Karen Alqasem
Comment from Donna brooks
Comment from Beth Arndtsen
Comment from Christopher Marrs
Comment from Molly Swabb
Comment from Donald Williams
Comment from Sandra Breakfield
Comment from S. Urton
Comment from Stephen Babb
Comment from S. Urton
Comment from Bruno Cilione
Comment from Seda Sonentz-Papazian
Comment from David Smith
Comment from Judith Embry
Comment from Katy Landolfi
Comment from Karen Hodges
Comment from Amanda Graham
Comment from sybille Dubois
Comment from Melissa Anglin
Comment from Fay Payton
Comment from Sally Madigan
Comment from Jeffrey LaGasse
Comment from NM Porter
Comment from Keith Portka
Comment from Jean Dibble
Comment from Rosalind Ivens
Comment from Stephanie Potgieter
Comment from Joseph Breazeale

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17241
NOAA-NMFS-2020-0031-DRAFT-17242
NOAA-NMFS-2020-0031-DRAFT-17243
NOAA-NMFS-2020-0031-DRAFT-17244
NOAA-NMFS-2020-0031-DRAFT-17245
NOAA-NMFS-2020-0031-DRAFT-17246
NOAA-NMFS-2020-0031-DRAFT-17247
NOAA-NMFS-2020-0031-DRAFT-17248
NOAA-NMFS-2020-0031-DRAFT-17249
NOAA-NMFS-2020-0031-DRAFT-17250
NOAA-NMFS-2020-0031-DRAFT-17251
NOAA-NMFS-2020-0031-DRAFT-17252
NOAA-NMFS-2020-0031-DRAFT-17253
NOAA-NMFS-2020-0031-DRAFT-17254
NOAA-NMFS-2020-0031-DRAFT-17255
NOAA-NMFS-2020-0031-DRAFT-17256
NOAA-NMFS-2020-0031-DRAFT-17257
NOAA-NMFS-2020-0031-DRAFT-17258
NOAA-NMFS-2020-0031-DRAFT-17259
NOAA-NMFS-2020-0031-DRAFT-17260
NOAA-NMFS-2020-0031-DRAFT-17261
NOAA-NMFS-2020-0031-DRAFT-17262
NOAA-NMFS-2020-0031-DRAFT-17263
NOAA-NMFS-2020-0031-DRAFT-17264
NOAA-NMFS-2020-0031-DRAFT-17265
NOAA-NMFS-2020-0031-DRAFT-17266
NOAA-NMFS-2020-0031-DRAFT-17267
NOAA-NMFS-2020-0031-DRAFT-17268
NOAA-NMFS-2020-0031-DRAFT-17269
NOAA-NMFS-2020-0031-DRAFT-17270
NOAA-NMFS-2020-0031-DRAFT-17271
NOAA-NMFS-2020-0031-DRAFT-17272
NOAA-NMFS-2020-0031-DRAFT-17273
NOAA-NMFS-2020-0031-DRAFT-17274
NOAA-NMFS-2020-0031-DRAFT-17275
NOAA-NMFS-2020-0031-DRAFT-17276
NOAA-NMFS-2020-0031-DRAFT-17277
NOAA-NMFS-2020-0031-DRAFT-17278
NOAA-NMFS-2020-0031-DRAFT-17279
NOAA-NMFS-2020-0031-DRAFT-17280
NOAA-NMFS-2020-0031-DRAFT-17281

Comment from Shannon Markley
Comment from Kathy Barnett
Comment from Rosemary Butka
Comment from Pat Balko
Comment from Yusuf Khan
Comment from Wayne Stalsworth
Comment from J ODonnell
Comment from Rhonda Berger
Comment from Kathryn Donaldson
Comment from Jill Wettersten
Comment from Danny Bryan
Comment from Bethany Bradshaw
Comment from Ruth Cassidy
Comment from Javier Hernandez
Comment from G J
Comment from Paula Murphy
Comment from Rob Peters
Comment from Paula Rock
Comment from Julie Teague
Comment from Jessica Robertson
Comment from Elizabeth Ishmael
Comment from paula Vanbuskirk
Comment from Joanne DeHart
Comment from Shirley Klimowicz
Comment from Janet Harmon
Comment from Greg Kay
Comment from Neenah LancasterRiemer
Comment from D H
Comment from HEidi Schmitz
Comment from V Psrks
Comment from Rebecca Rabinowitz
Comment from Ann Barnes
Comment from Gail Camhi
Comment from Jennifer Noel
Comment from Terrence Thompson
Comment from Peggie Foster
Comment from Benita Auge
Comment from Howard Lepzelter
Comment from Yvonne Upchurch
Comment from Nicole Bickel
Comment from Mercedes Benet

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12112
NOAA-NMFS-2020-0031-DRAFT-12113
NOAA-NMFS-2020-0031-DRAFT-12114
NOAA-NMFS-2020-0031-DRAFT-12115
NOAA-NMFS-2020-0031-DRAFT-12116
NOAA-NMFS-2020-0031-DRAFT-12117
NOAA-NMFS-2020-0031-DRAFT-12118
NOAA-NMFS-2020-0031-DRAFT-12119
NOAA-NMFS-2020-0031-DRAFT-12120
NOAA-NMFS-2020-0031-DRAFT-12121
NOAA-NMFS-2020-0031-DRAFT-12122
NOAA-NMFS-2020-0031-DRAFT-12123
NOAA-NMFS-2020-0031-DRAFT-12124
NOAA-NMFS-2020-0031-DRAFT-12125
NOAA-NMFS-2020-0031-DRAFT-12126
NOAA-NMFS-2020-0031-DRAFT-12127
NOAA-NMFS-2020-0031-DRAFT-12128
NOAA-NMFS-2020-0031-DRAFT-12129
NOAA-NMFS-2020-0031-DRAFT-12130
NOAA-NMFS-2020-0031-DRAFT-12131
NOAA-NMFS-2020-0031-DRAFT-12132
NOAA-NMFS-2020-0031-DRAFT-12133
NOAA-NMFS-2020-0031-DRAFT-12134
NOAA-NMFS-2020-0031-DRAFT-12136
NOAA-NMFS-2020-0031-DRAFT-12137
NOAA-NMFS-2020-0031-DRAFT-12138
NOAA-NMFS-2020-0031-DRAFT-12139
NOAA-NMFS-2020-0031-DRAFT-12140
NOAA-NMFS-2020-0031-DRAFT-12141
NOAA-NMFS-2020-0031-DRAFT-12142
NOAA-NMFS-2020-0031-DRAFT-12143
NOAA-NMFS-2020-0031-DRAFT-12144
NOAA-NMFS-2020-0031-DRAFT-12145
NOAA-NMFS-2020-0031-DRAFT-12146
NOAA-NMFS-2020-0031-DRAFT-12147
NOAA-NMFS-2020-0031-DRAFT-12148
NOAA-NMFS-2020-0031-DRAFT-12149
NOAA-NMFS-2020-0031-DRAFT-12150
NOAA-NMFS-2020-0031-DRAFT-12151
NOAA-NMFS-2020-0031-DRAFT-12152
NOAA-NMFS-2020-0031-DRAFT-12153

Comment from Phil Fitzgerald
Comment from Sarah Wiedel
Comment from GARY MADOLE
Comment from Tamara Abashian
Comment from Erika Walton
Comment from Ron Ives
Comment from P.P. Soucek
Comment from Kermit Cuff
Comment from Becky Hixson
Comment from Sue Kenney
Comment from Jeannette Zeiler
Comment from David Savige
Comment from Lynn Skibinski
Comment from Nancy Goldberg
Comment from Michael Torosian
Comment from Ward Giblin
Comment from Juliann Pinto
Comment from Helen Torosian
Comment from Michael McLaughlin
Comment from George Lewis
Comment from S caff
Comment from Barbara Remund
Comment from Ann Bein
Comment from Bruce Kiesel
Comment from Sheila Enright
Comment from Lawrence Wallen
Comment from Edward Pfeiffer
Comment from John Brennan
Comment from Maureen Porcelli
Comment from Dixie Mullineaux
Comment from Michael Shapiro
Comment from Robert Waller
Comment from Kyle Peterson
Comment from Dat Tran
Comment from Crystal Mitchell
Comment from Jan Beauchamp
Comment from Marina Mooney
Comment from Maria Ramos
Comment from Maria Cardenas
Comment from Tara D
Comment from Lee Winslow

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17282
NOAA-NMFS-2020-0031-DRAFT-17283
NOAA-NMFS-2020-0031-DRAFT-17284
NOAA-NMFS-2020-0031-DRAFT-17285
NOAA-NMFS-2020-0031-DRAFT-17286
NOAA-NMFS-2020-0031-DRAFT-17287
NOAA-NMFS-2020-0031-DRAFT-17288
NOAA-NMFS-2020-0031-DRAFT-17289
NOAA-NMFS-2020-0031-DRAFT-17290
NOAA-NMFS-2020-0031-DRAFT-17291
NOAA-NMFS-2020-0031-DRAFT-17292
NOAA-NMFS-2020-0031-DRAFT-17293
NOAA-NMFS-2020-0031-DRAFT-17294
NOAA-NMFS-2020-0031-DRAFT-17295
NOAA-NMFS-2020-0031-DRAFT-17296
NOAA-NMFS-2020-0031-DRAFT-17297
NOAA-NMFS-2020-0031-DRAFT-17298
NOAA-NMFS-2020-0031-DRAFT-17299
NOAA-NMFS-2020-0031-DRAFT-17300
NOAA-NMFS-2020-0031-DRAFT-17301
NOAA-NMFS-2020-0031-DRAFT-17302
NOAA-NMFS-2020-0031-DRAFT-17303
NOAA-NMFS-2020-0031-DRAFT-17304
NOAA-NMFS-2020-0031-DRAFT-17305
NOAA-NMFS-2020-0031-DRAFT-17306
NOAA-NMFS-2020-0031-DRAFT-17307
NOAA-NMFS-2020-0031-DRAFT-17308
NOAA-NMFS-2020-0031-DRAFT-17309
NOAA-NMFS-2020-0031-DRAFT-17310
NOAA-NMFS-2020-0031-DRAFT-17311
NOAA-NMFS-2020-0031-DRAFT-17312
NOAA-NMFS-2020-0031-DRAFT-17313
NOAA-NMFS-2020-0031-DRAFT-17314
NOAA-NMFS-2020-0031-DRAFT-17315
NOAA-NMFS-2020-0031-DRAFT-17316
NOAA-NMFS-2020-0031-DRAFT-17317
NOAA-NMFS-2020-0031-DRAFT-17318
NOAA-NMFS-2020-0031-DRAFT-17319
NOAA-NMFS-2020-0031-DRAFT-17320
NOAA-NMFS-2020-0031-DRAFT-17321
NOAA-NMFS-2020-0031-DRAFT-17322

Comment from Angie Heide
Comment from Dessaline Moore
Comment from Karl Koessel
Comment from Sharon James
Comment from Kelly Murphy Kennerson
Comment from Sharon Michael
Comment from Virginia Jastromb
Comment from Mandy Weeks Green
Comment from Debbie Hagstrom
Comment from Charlene 5275
Comment from Larry Liou
Comment from Aubrey Lees
Comment from Donna Ingenito
Comment from Diane Soddy
Comment from Tina Colafranceschi
Comment from Carolyn Silvestro
Comment from Simone Fonseca
Comment from Charles Hundley
Comment from Marilyn Logan
Comment from Catherine J Stout
Comment from Marcela Bordes
Comment from Eric Hui
Comment from Laurie Izzo
Comment from Jieun Kwon
Comment from Barbara Tountas
Comment from KAREN OROURKE
Comment from Susan McClure
Comment from Mindie Sivey
Comment from Llll D
Comment from kim fetters
Comment from Mindy Mahood
Comment from Darla Reeves
Comment from Cheryl Thompson
Comment from Jean Thurston
Comment from Florence Harty
Comment from Angela Gantos
Comment from MaryAnn Sanchez
Comment from Frederick Elliott
Comment from Eileene Gillson
Comment from Wesley Wolf
Comment from James Pszanka

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12154
NOAA-NMFS-2020-0031-DRAFT-12155
NOAA-NMFS-2020-0031-DRAFT-12156
NOAA-NMFS-2020-0031-DRAFT-12157
NOAA-NMFS-2020-0031-DRAFT-12158
NOAA-NMFS-2020-0031-DRAFT-12159
NOAA-NMFS-2020-0031-DRAFT-12160
NOAA-NMFS-2020-0031-DRAFT-12161
NOAA-NMFS-2020-0031-DRAFT-12162
NOAA-NMFS-2020-0031-DRAFT-12163
NOAA-NMFS-2020-0031-DRAFT-12164
NOAA-NMFS-2020-0031-DRAFT-12165
NOAA-NMFS-2020-0031-DRAFT-12166
NOAA-NMFS-2020-0031-DRAFT-12167
NOAA-NMFS-2020-0031-DRAFT-12168
NOAA-NMFS-2020-0031-DRAFT-12169
NOAA-NMFS-2020-0031-DRAFT-12170
NOAA-NMFS-2020-0031-DRAFT-12171
NOAA-NMFS-2020-0031-DRAFT-12172
NOAA-NMFS-2020-0031-DRAFT-12173
NOAA-NMFS-2020-0031-DRAFT-12174
NOAA-NMFS-2020-0031-DRAFT-12175
NOAA-NMFS-2020-0031-DRAFT-12176
NOAA-NMFS-2020-0031-DRAFT-12177
NOAA-NMFS-2020-0031-DRAFT-12178
NOAA-NMFS-2020-0031-DRAFT-12179
NOAA-NMFS-2020-0031-DRAFT-12180
NOAA-NMFS-2020-0031-DRAFT-12181
NOAA-NMFS-2020-0031-DRAFT-12182
NOAA-NMFS-2020-0031-DRAFT-12183
NOAA-NMFS-2020-0031-DRAFT-12184
NOAA-NMFS-2020-0031-DRAFT-12185
NOAA-NMFS-2020-0031-DRAFT-12186
NOAA-NMFS-2020-0031-DRAFT-12187
NOAA-NMFS-2020-0031-DRAFT-12188
NOAA-NMFS-2020-0031-DRAFT-12189
NOAA-NMFS-2020-0031-DRAFT-12190
NOAA-NMFS-2020-0031-DRAFT-12191
NOAA-NMFS-2020-0031-DRAFT-12192
NOAA-NMFS-2020-0031-DRAFT-12193
NOAA-NMFS-2020-0031-DRAFT-12194

Comment from Sharon Kanter
Comment from Gail Tewalt
Comment from Jamila Garrecht
Comment from Mevelyn Richardson
Comment from Donna Wiggins
Comment from Sue Morrison
Comment from Katie White
Comment from ben baxter
Comment from Cinda Sabol
Comment from Amy Harlib
Comment from Michele Martuszewski
Comment from George Casner
Comment from Laurel Powers
Comment from Bruce Bonifaci
Comment from Stephanie Shine
Comment from Michael Clarke
Comment from Kristen Beck
Comment from Anna Reed
Comment from Camille McPhee
Comment from Allan Weiss
Comment from John Sutherland
Comment from Beverly Solomon
Comment from Mary McMahon
Comment from Byron Dale
Comment from Albert Wilson
Comment from Amy Hansen
Comment from Catherine Bylinowski
Comment from Stephanie Jones
Comment from Mark Canright
Comment from Lucia Samaras
Comment from warren nystrom
Comment from Deb Giannetti
Comment from Russell James
Comment from karen horton
Comment from Mary Al-Tukhaim
Comment from Janet Handford
Comment from LILLIAN MAHANEY
Comment from Frank Anderson
Comment from Sherry Vatter
Comment from Jason Caramico
Comment from brandon gregg

02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17323
NOAA-NMFS-2020-0031-DRAFT-17324
NOAA-NMFS-2020-0031-DRAFT-17325
NOAA-NMFS-2020-0031-DRAFT-17326
NOAA-NMFS-2020-0031-DRAFT-17327
NOAA-NMFS-2020-0031-DRAFT-17328
NOAA-NMFS-2020-0031-DRAFT-17329
NOAA-NMFS-2020-0031-DRAFT-17330
NOAA-NMFS-2020-0031-DRAFT-17331
NOAA-NMFS-2020-0031-DRAFT-17332
NOAA-NMFS-2020-0031-DRAFT-17333
NOAA-NMFS-2020-0031-DRAFT-17334
NOAA-NMFS-2020-0031-DRAFT-17335
NOAA-NMFS-2020-0031-DRAFT-17337
NOAA-NMFS-2020-0031-DRAFT-17338
NOAA-NMFS-2020-0031-DRAFT-17339
NOAA-NMFS-2020-0031-DRAFT-17340
NOAA-NMFS-2020-0031-DRAFT-17341
NOAA-NMFS-2020-0031-DRAFT-17342
NOAA-NMFS-2020-0031-DRAFT-17343
NOAA-NMFS-2020-0031-DRAFT-17344
NOAA-NMFS-2020-0031-DRAFT-17345
NOAA-NMFS-2020-0031-DRAFT-17346
NOAA-NMFS-2020-0031-DRAFT-17347
NOAA-NMFS-2020-0031-DRAFT-17348
NOAA-NMFS-2020-0031-DRAFT-17349
NOAA-NMFS-2020-0031-DRAFT-17350
NOAA-NMFS-2020-0031-DRAFT-17351
NOAA-NMFS-2020-0031-DRAFT-17352
NOAA-NMFS-2020-0031-DRAFT-17353
NOAA-NMFS-2020-0031-DRAFT-17354
NOAA-NMFS-2020-0031-DRAFT-17355
NOAA-NMFS-2020-0031-DRAFT-17356
NOAA-NMFS-2020-0031-DRAFT-17357
NOAA-NMFS-2020-0031-DRAFT-17358
NOAA-NMFS-2020-0031-DRAFT-17359
NOAA-NMFS-2020-0031-DRAFT-17360
NOAA-NMFS-2020-0031-DRAFT-17361
NOAA-NMFS-2020-0031-DRAFT-17362
NOAA-NMFS-2020-0031-DRAFT-17363
NOAA-NMFS-2020-0031-DRAFT-17364

Comment from Kel Wall
Comment from Christina Vigil
Comment from Frances Goff
Comment from carmen marti
Comment from Erika Schiegg
Comment from Doris Eley
Comment from C W
Comment from Carol Westerfield
Comment from Kim Brower
Comment from Carol Montgomery
Comment from D L
Comment from Katherine Robertson
Comment from Rita Pachitu
Comment from Feli Hohenshelt
Comment from Jana W
Comment from Dona Ward
Comment from nancy J danard
Comment from Sal Tumia
Comment from Patti Morris
Comment from Jana Bassman
Comment from Anne Enderle
Comment from Marissa Malen
Comment from Tina Rogers
Comment from Donna Jenny
Comment from Jean Siegel
Comment from Tonya Cockrell
Comment from Steven Bagenski
Comment from Debra Willey
Comment from Dan Murray
Comment from Venetia Large
Comment from Tracey Katsouros
Comment from Britton Saunders
Comment from russ ziegler
Comment from Susanne Bell
Comment from John Connor
Comment from Cherie McCoy
Comment from cindy perilstein
Comment from lynn henderson
Comment from beverly rice
Comment from Irene Brinkerhoff
Comment from Louise Stark

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12195
NOAA-NMFS-2020-0031-DRAFT-12196
NOAA-NMFS-2020-0031-DRAFT-12197
NOAA-NMFS-2020-0031-DRAFT-12198
NOAA-NMFS-2020-0031-DRAFT-12199
NOAA-NMFS-2020-0031-DRAFT-12200
NOAA-NMFS-2020-0031-DRAFT-12201
NOAA-NMFS-2020-0031-DRAFT-12202
NOAA-NMFS-2020-0031-DRAFT-12203
NOAA-NMFS-2020-0031-DRAFT-12204
NOAA-NMFS-2020-0031-DRAFT-12205
NOAA-NMFS-2020-0031-DRAFT-12206
NOAA-NMFS-2020-0031-DRAFT-12207
NOAA-NMFS-2020-0031-DRAFT-12208
NOAA-NMFS-2020-0031-DRAFT-12209
NOAA-NMFS-2020-0031-DRAFT-12210
NOAA-NMFS-2020-0031-DRAFT-12211
NOAA-NMFS-2020-0031-DRAFT-12212
NOAA-NMFS-2020-0031-DRAFT-12213
NOAA-NMFS-2020-0031-DRAFT-12214
NOAA-NMFS-2020-0031-DRAFT-12215
NOAA-NMFS-2020-0031-DRAFT-12216
NOAA-NMFS-2020-0031-DRAFT-12217
NOAA-NMFS-2020-0031-DRAFT-12218
NOAA-NMFS-2020-0031-DRAFT-12219
NOAA-NMFS-2020-0031-DRAFT-12220
NOAA-NMFS-2020-0031-DRAFT-12221
NOAA-NMFS-2020-0031-DRAFT-12222
NOAA-NMFS-2020-0031-DRAFT-12223
NOAA-NMFS-2020-0031-DRAFT-12224
NOAA-NMFS-2020-0031-DRAFT-12225
NOAA-NMFS-2020-0031-DRAFT-12226
NOAA-NMFS-2020-0031-DRAFT-12227
NOAA-NMFS-2020-0031-DRAFT-12228
NOAA-NMFS-2020-0031-DRAFT-12229
NOAA-NMFS-2020-0031-DRAFT-12230
NOAA-NMFS-2020-0031-DRAFT-12231
NOAA-NMFS-2020-0031-DRAFT-12232
NOAA-NMFS-2020-0031-DRAFT-12233
NOAA-NMFS-2020-0031-DRAFT-12234
NOAA-NMFS-2020-0031-DRAFT-12235

Comment from Joe Roy
Comment from Dennis Hough
Comment from Fawn King
Comment from Brian Dunn
Comment from Donna McCarthy
Comment from Hyun Lee
Comment from Gavi Stevens
Comment from Dedra Routh
Comment from David Burtis
Comment from Kimberly Crane
Comment from Sherry Quinn
Comment from Sondra Morales
Comment from E Haskell
Comment from Marsha Chomko
Comment from Karen Milstein
Comment from Rebecca Sanne
Comment from Linda Knowles
Comment from Dixie Parker
Comment from Susan Turney
Comment from Arlene Dreste
Comment from Meaghan Leavitt
Comment from Megan Lankenau
Comment from Susan Proietta
Comment from Samuel Newman
Comment from Marilyn H
Comment from Becky kurth
Comment from Kathleen Pfleiderer
Comment from Vernon Batty
Comment from Raphael Sulkovitz
Comment from Joel Quaintance
Comment from Lynelle Behler
Comment from Larry Chandler
Comment from Jamie Shultz
Comment from Barb Kruse
Comment from Gloria Carlton
Comment from Robert DeMuth
Comment from Gregory Barton
Comment from Emily Willoughby
Comment from Marya Zanders
Comment from Jennifer Hauge
Comment from Schneider R

02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17365
NOAA-NMFS-2020-0031-DRAFT-17366
NOAA-NMFS-2020-0031-DRAFT-17367
NOAA-NMFS-2020-0031-DRAFT-17368
NOAA-NMFS-2020-0031-DRAFT-17369
NOAA-NMFS-2020-0031-DRAFT-17370
NOAA-NMFS-2020-0031-DRAFT-17371
NOAA-NMFS-2020-0031-DRAFT-17372
NOAA-NMFS-2020-0031-DRAFT-17373
NOAA-NMFS-2020-0031-DRAFT-17374
NOAA-NMFS-2020-0031-DRAFT-17375
NOAA-NMFS-2020-0031-DRAFT-17376
NOAA-NMFS-2020-0031-DRAFT-17377
NOAA-NMFS-2020-0031-DRAFT-17378
NOAA-NMFS-2020-0031-DRAFT-17379
NOAA-NMFS-2020-0031-DRAFT-17380
NOAA-NMFS-2020-0031-DRAFT-17381
NOAA-NMFS-2020-0031-DRAFT-17382
NOAA-NMFS-2020-0031-DRAFT-17383
NOAA-NMFS-2020-0031-DRAFT-17384
NOAA-NMFS-2020-0031-DRAFT-17385
NOAA-NMFS-2020-0031-DRAFT-17386
NOAA-NMFS-2020-0031-DRAFT-17387
NOAA-NMFS-2020-0031-DRAFT-17388
NOAA-NMFS-2020-0031-DRAFT-17389
NOAA-NMFS-2020-0031-DRAFT-17390
NOAA-NMFS-2020-0031-DRAFT-17391
NOAA-NMFS-2020-0031-DRAFT-17392
NOAA-NMFS-2020-0031-DRAFT-17393
NOAA-NMFS-2020-0031-DRAFT-17394
NOAA-NMFS-2020-0031-DRAFT-17395
NOAA-NMFS-2020-0031-DRAFT-17396
NOAA-NMFS-2020-0031-DRAFT-17397
NOAA-NMFS-2020-0031-DRAFT-17398
NOAA-NMFS-2020-0031-DRAFT-17399
NOAA-NMFS-2020-0031-DRAFT-17400
NOAA-NMFS-2020-0031-DRAFT-17401
NOAA-NMFS-2020-0031-DRAFT-17402
NOAA-NMFS-2020-0031-DRAFT-17403
NOAA-NMFS-2020-0031-DRAFT-17404
NOAA-NMFS-2020-0031-DRAFT-17405

Comment from Linda McMullin
Comment from Mary Beth Schmidt
Comment from Angie Baker
Comment from Mary Dickson
Comment from Kim Kunkel
Comment from Mary Ann Cooper
Comment from ELLEN Straw
Comment from Mark Sussek
Comment from Rena Santomauro
Comment from Bonnie Cail
Comment from Lenore Bussing
Comment from Kathy Lyles Diers
Comment from Lesa DiIorio
Comment from Emily Boone
Comment from Mike LeHew
Comment from Edna Metcalf
Comment from Tania Malven
Comment from Judi Calvi
Comment from ron weiss
Comment from Anne McClenachan
Comment from Isis Garcia
Comment from Loretta Goldenberg
Comment from Murielle Antoku
Comment from Debbie McMahon
Comment from Jonathan Mitchell
Comment from Marcia Kellam
Comment from Melissa O'Rourke
Comment from Mary rivas
Comment from Robert Hollerbach
Comment from Mary Nostramo
Comment from Rosemary Busterna
Comment from Geary Buydos
Comment from Wendy Harris
Comment from Julia Mildenberger
Comment from Kerrie Pons
Comment from Douglas Schneller
Comment from Dr William M Smith Jr
Comment from Maura Chazin
Comment from Katie Morgan
Comment from Krista Saunders
Comment from JANUS WOODS

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12236
NOAA-NMFS-2020-0031-DRAFT-12237
NOAA-NMFS-2020-0031-DRAFT-12238
NOAA-NMFS-2020-0031-DRAFT-12239
NOAA-NMFS-2020-0031-DRAFT-12240
NOAA-NMFS-2020-0031-DRAFT-12241
NOAA-NMFS-2020-0031-DRAFT-12242
NOAA-NMFS-2020-0031-DRAFT-12243
NOAA-NMFS-2020-0031-DRAFT-12244
NOAA-NMFS-2020-0031-DRAFT-12245
NOAA-NMFS-2020-0031-DRAFT-12246
NOAA-NMFS-2020-0031-DRAFT-12247
NOAA-NMFS-2020-0031-DRAFT-12248
NOAA-NMFS-2020-0031-DRAFT-12249
NOAA-NMFS-2020-0031-DRAFT-12250
NOAA-NMFS-2020-0031-DRAFT-12251
NOAA-NMFS-2020-0031-DRAFT-12252
NOAA-NMFS-2020-0031-DRAFT-12253
NOAA-NMFS-2020-0031-DRAFT-12254
NOAA-NMFS-2020-0031-DRAFT-12255
NOAA-NMFS-2020-0031-DRAFT-12256
NOAA-NMFS-2020-0031-DRAFT-12257
NOAA-NMFS-2020-0031-DRAFT-12258
NOAA-NMFS-2020-0031-DRAFT-12259
NOAA-NMFS-2020-0031-DRAFT-12260
NOAA-NMFS-2020-0031-DRAFT-12261
NOAA-NMFS-2020-0031-DRAFT-12262
NOAA-NMFS-2020-0031-DRAFT-12263
NOAA-NMFS-2020-0031-DRAFT-12264
NOAA-NMFS-2020-0031-DRAFT-12265
NOAA-NMFS-2020-0031-DRAFT-12266
NOAA-NMFS-2020-0031-DRAFT-12267
NOAA-NMFS-2020-0031-DRAFT-12268
NOAA-NMFS-2020-0031-DRAFT-12269
NOAA-NMFS-2020-0031-DRAFT-12271
NOAA-NMFS-2020-0031-DRAFT-12272
NOAA-NMFS-2020-0031-DRAFT-12273
NOAA-NMFS-2020-0031-DRAFT-12274
NOAA-NMFS-2020-0031-DRAFT-12275
NOAA-NMFS-2020-0031-DRAFT-12276
NOAA-NMFS-2020-0031-DRAFT-12277

Comment from Marilyn Campolettano
Comment from Mary Junek
Comment from Nancy Lasley
Comment from Mary Junek
Comment from Lisa Critchlow
Comment from Dorothy Knudson
Comment from Cyndee Jimenez
Comment from Rebecca Walding
Comment from Patricia Brech
Comment from Graciela Huth
Comment from Ellen McConnell
Comment from Jody Kim-Eng
Comment from Hank Schlinger
Comment from Judy Trohkimoinen
Comment from John Murray
Comment from Brian Scott
Comment from Joan McCormick
Comment from F Olson
Comment from Myrna Torrie
Comment from Norbert Mietus
Comment from Kathlyn Grabenstein
Comment from Kay Lockridge
Comment from Margaret Neumann
Comment from Julia Petipas
Comment from Laura Guttridge
Comment from Robert Aguirre
Comment from Lynne Weiske
Comment from Ellen Dollar
Comment from randall potts
Comment from Lynn Cascio
Comment from Paul Kirsch
Comment from Kevin O'Donnell
Comment from William Anderson
Comment from Lynda Cook
Comment from Margo Salone
Comment from Annie Dawid
Comment from Merry Bolt
Comment from Jane LaLone
Comment from Damon Franke
Comment from Nicholas Cardwell
Comment from Maura Schaeffer

02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17406
NOAA-NMFS-2020-0031-DRAFT-17407
NOAA-NMFS-2020-0031-DRAFT-17408
NOAA-NMFS-2020-0031-DRAFT-17409
NOAA-NMFS-2020-0031-DRAFT-17410
NOAA-NMFS-2020-0031-DRAFT-17411
NOAA-NMFS-2020-0031-DRAFT-17412
NOAA-NMFS-2020-0031-DRAFT-17413
NOAA-NMFS-2020-0031-DRAFT-17414
NOAA-NMFS-2020-0031-DRAFT-17415
NOAA-NMFS-2020-0031-DRAFT-17416
NOAA-NMFS-2020-0031-DRAFT-17417
NOAA-NMFS-2020-0031-DRAFT-17418
NOAA-NMFS-2020-0031-DRAFT-17419
NOAA-NMFS-2020-0031-DRAFT-17420
NOAA-NMFS-2020-0031-DRAFT-17421
NOAA-NMFS-2020-0031-DRAFT-17422
NOAA-NMFS-2020-0031-DRAFT-17423
NOAA-NMFS-2020-0031-DRAFT-17424
NOAA-NMFS-2020-0031-DRAFT-17425
NOAA-NMFS-2020-0031-DRAFT-17426
NOAA-NMFS-2020-0031-DRAFT-17427
NOAA-NMFS-2020-0031-DRAFT-17429
NOAA-NMFS-2020-0031-DRAFT-17430
NOAA-NMFS-2020-0031-DRAFT-17431
NOAA-NMFS-2020-0031-DRAFT-17432
NOAA-NMFS-2020-0031-DRAFT-17433
NOAA-NMFS-2020-0031-DRAFT-17434
NOAA-NMFS-2020-0031-DRAFT-17435
NOAA-NMFS-2020-0031-DRAFT-17436
NOAA-NMFS-2020-0031-DRAFT-17437
NOAA-NMFS-2020-0031-DRAFT-17438
NOAA-NMFS-2020-0031-DRAFT-17439
NOAA-NMFS-2020-0031-DRAFT-17440
NOAA-NMFS-2020-0031-DRAFT-17441
NOAA-NMFS-2020-0031-DRAFT-17442
NOAA-NMFS-2020-0031-DRAFT-17443
NOAA-NMFS-2020-0031-DRAFT-17444
NOAA-NMFS-2020-0031-DRAFT-17445
NOAA-NMFS-2020-0031-DRAFT-17446
NOAA-NMFS-2020-0031-DRAFT-17447

Comment from Winke Self
Comment from Lindsay Reeve
Comment from Lauren Mota
Comment from Patricia Baker
Comment from Evelina Dillmann
Comment from Julie Harris
Comment from C M
Comment from Cheryl Aakeberg
Comment from S M McFarland
Comment from Song Kinnamon
Comment from Alicia Silvestri
Comment from Sherry Holt
Comment from Christine Churchill
Comment from Jeff Burns
Comment from Henry Kimbell
Comment from Tim Linerud
Comment from Roseann Flores
Comment from Dan Cappello
Comment from LAURA PAYAN
Comment from Ellen Mullery
Comment from Constance Franklin
Comment from Asmah Khan
Comment from Todd Fletcher
Comment from Robert Gerhart
Comment from Albert Coffman
Comment from Dan Esposito
Comment from Eric Naji
Comment from Patti Schultze
Comment from Lori Nell
Comment from Sarah Welte
Comment from lynn hoang
Comment from Cheryl Whitehurst
Comment from Lisa Annecone
Comment from Dee Perron
Comment from Rosemary delPino
Comment from Phyllis Hatch
Comment from Joie Budington
Comment from Pamela Speagle
Comment from Daniel Rosenthal
Comment from Heidi Mugrauer
Comment from Gehan Klele

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12278
NOAA-NMFS-2020-0031-DRAFT-12279
NOAA-NMFS-2020-0031-DRAFT-12280
NOAA-NMFS-2020-0031-DRAFT-12281
NOAA-NMFS-2020-0031-DRAFT-12282
NOAA-NMFS-2020-0031-DRAFT-12283
NOAA-NMFS-2020-0031-DRAFT-12284
NOAA-NMFS-2020-0031-DRAFT-12285
NOAA-NMFS-2020-0031-DRAFT-12286
NOAA-NMFS-2020-0031-DRAFT-12287
NOAA-NMFS-2020-0031-DRAFT-12288
NOAA-NMFS-2020-0031-DRAFT-12289
NOAA-NMFS-2020-0031-DRAFT-12290
NOAA-NMFS-2020-0031-DRAFT-12291
NOAA-NMFS-2020-0031-DRAFT-12292
NOAA-NMFS-2020-0031-DRAFT-12293
NOAA-NMFS-2020-0031-DRAFT-12294
NOAA-NMFS-2020-0031-DRAFT-12295
NOAA-NMFS-2020-0031-DRAFT-12296
NOAA-NMFS-2020-0031-DRAFT-12297
NOAA-NMFS-2020-0031-DRAFT-12298
NOAA-NMFS-2020-0031-DRAFT-12299
NOAA-NMFS-2020-0031-DRAFT-12300
NOAA-NMFS-2020-0031-DRAFT-12301
NOAA-NMFS-2020-0031-DRAFT-12302
NOAA-NMFS-2020-0031-DRAFT-12303
NOAA-NMFS-2020-0031-DRAFT-12304
NOAA-NMFS-2020-0031-DRAFT-12305
NOAA-NMFS-2020-0031-DRAFT-12306
NOAA-NMFS-2020-0031-DRAFT-12307
NOAA-NMFS-2020-0031-DRAFT-12308
NOAA-NMFS-2020-0031-DRAFT-12309
NOAA-NMFS-2020-0031-DRAFT-12310
NOAA-NMFS-2020-0031-DRAFT-12311
NOAA-NMFS-2020-0031-DRAFT-12312
NOAA-NMFS-2020-0031-DRAFT-12313
NOAA-NMFS-2020-0031-DRAFT-12314
NOAA-NMFS-2020-0031-DRAFT-12315
NOAA-NMFS-2020-0031-DRAFT-12317
NOAA-NMFS-2020-0031-DRAFT-12318
NOAA-NMFS-2020-0031-DRAFT-12319

Comment from Andi Wright
Comment from L. Wilkinson
Comment from Sandra Hall
Comment from Mary Baker
Comment from Mercedes Benet
Comment from Martha Guilford
Comment from m sanders
Comment from Jane Makowski
Comment from Eugene Falik
Comment from El. Pe.
Comment from Frances Mentch
Comment from Jeanne Gray
Comment from Deb Lincoln
Comment from Nicole Deter
Comment from Wynn Johanson
Comment from Karen McGreevy
Comment from Nicole Deter
Comment from Cathy Wootan
Comment from Caroline Kern
Comment from Honorable Snyder
Comment from Marco Khanlian
Comment from El. Pe.
Comment from Nancy Kondracki
Comment from Ken Lawson
Comment from Gail Bolka
Comment from Kristin Smith
Comment from Bruce Nowak
Comment from Stevie Sugarman
Comment from B. Conelley
Comment from Piero Soligo
Comment from Jenene Garey
Comment from Jennifer Adams
Comment from Mina Bish
Comment from Carl Stapler
Comment from Gloria Boyd
Comment from sheila draughon
Comment from Kristin Kline
Comment from Bebe Elsamahy
Comment from robin wright
Comment from Theresa Corrigan
Comment from Liz Reed

02/18/2021
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02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17448
NOAA-NMFS-2020-0031-DRAFT-17449
NOAA-NMFS-2020-0031-DRAFT-17450
NOAA-NMFS-2020-0031-DRAFT-17451
NOAA-NMFS-2020-0031-DRAFT-17452
NOAA-NMFS-2020-0031-DRAFT-17453
NOAA-NMFS-2020-0031-DRAFT-17454
NOAA-NMFS-2020-0031-DRAFT-17455
NOAA-NMFS-2020-0031-DRAFT-17456
NOAA-NMFS-2020-0031-DRAFT-17457
NOAA-NMFS-2020-0031-DRAFT-17458
NOAA-NMFS-2020-0031-DRAFT-17459
NOAA-NMFS-2020-0031-DRAFT-17461
NOAA-NMFS-2020-0031-DRAFT-17462
NOAA-NMFS-2020-0031-DRAFT-17463
NOAA-NMFS-2020-0031-DRAFT-17464
NOAA-NMFS-2020-0031-DRAFT-17465
NOAA-NMFS-2020-0031-DRAFT-17466
NOAA-NMFS-2020-0031-DRAFT-17467
NOAA-NMFS-2020-0031-DRAFT-17468
NOAA-NMFS-2020-0031-DRAFT-17469
NOAA-NMFS-2020-0031-DRAFT-17470
NOAA-NMFS-2020-0031-DRAFT-17471
NOAA-NMFS-2020-0031-DRAFT-17472
NOAA-NMFS-2020-0031-DRAFT-17473
NOAA-NMFS-2020-0031-DRAFT-17474
NOAA-NMFS-2020-0031-DRAFT-17475
NOAA-NMFS-2020-0031-DRAFT-17476
NOAA-NMFS-2020-0031-DRAFT-17477
NOAA-NMFS-2020-0031-DRAFT-17478
NOAA-NMFS-2020-0031-DRAFT-17479
NOAA-NMFS-2020-0031-DRAFT-17480
NOAA-NMFS-2020-0031-DRAFT-17481
NOAA-NMFS-2020-0031-DRAFT-17482
NOAA-NMFS-2020-0031-DRAFT-17483
NOAA-NMFS-2020-0031-DRAFT-17484
NOAA-NMFS-2020-0031-DRAFT-17485
NOAA-NMFS-2020-0031-DRAFT-17486
NOAA-NMFS-2020-0031-DRAFT-17487
NOAA-NMFS-2020-0031-DRAFT-17488
NOAA-NMFS-2020-0031-DRAFT-17489

Comment from Cheryl Van Reeth
Comment from Gayle Civale
Comment from Elliott Birckhead
Comment from Lana Henson
Comment from Lorraine Brabham
Comment from Sam Jones
Comment from Edward Lemieux Jr
Comment from Karen Liza Avelino David
Comment from Elizabeth Ketz Robinson
Comment from Patricia Burgert
Comment from Leslie Stewart
Comment from Helen Reynolds
Comment from Stephen Keener
Comment from Kelly Miller
Comment from Anne Farley
Comment from Pam Plummer
Comment from Ana Paula Martins
Fernandes
Comment from Susan Hampton
Comment from Paula Denissen
Comment from Christina Nillo
Comment from Barbara Blackwood
Comment from Alan MacLamroc
Comment from Eve Duplissis
Comment from Denise Carmosino
Comment from Concepcion Elvira
Comment from Lynn Murphy
Comment from Marcella Manslow
Comment from michael guest
Comment from Christy Ruoff
Comment from Lindy A Von Dohlen
Comment from Denise Carmosino
Comment from June Tullman
Comment from Yvonne Zinter
Comment from kathy monaco
Comment from Kenneth Koenigshofer
Comment from Terry De Simone
Comment from Linda Feitell
Comment from Kathleen O Ezemoli
Comment from Holly Graves
Comment from Kathleen Jefferies
Comment from Denise Anzelmo

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02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12320
NOAA-NMFS-2020-0031-DRAFT-12321
NOAA-NMFS-2020-0031-DRAFT-12322
NOAA-NMFS-2020-0031-DRAFT-12323
NOAA-NMFS-2020-0031-DRAFT-12324
NOAA-NMFS-2020-0031-DRAFT-12325
NOAA-NMFS-2020-0031-DRAFT-12326
NOAA-NMFS-2020-0031-DRAFT-12327
NOAA-NMFS-2020-0031-DRAFT-12328
NOAA-NMFS-2020-0031-DRAFT-12329
NOAA-NMFS-2020-0031-DRAFT-12330
NOAA-NMFS-2020-0031-DRAFT-12331
NOAA-NMFS-2020-0031-DRAFT-12332
NOAA-NMFS-2020-0031-DRAFT-12333
NOAA-NMFS-2020-0031-DRAFT-12334
NOAA-NMFS-2020-0031-DRAFT-12335
NOAA-NMFS-2020-0031-DRAFT-12336
NOAA-NMFS-2020-0031-DRAFT-12337
NOAA-NMFS-2020-0031-DRAFT-12338
NOAA-NMFS-2020-0031-DRAFT-12339
NOAA-NMFS-2020-0031-DRAFT-12340
NOAA-NMFS-2020-0031-DRAFT-12342
NOAA-NMFS-2020-0031-DRAFT-12343
NOAA-NMFS-2020-0031-DRAFT-12344
NOAA-NMFS-2020-0031-DRAFT-12345
NOAA-NMFS-2020-0031-DRAFT-12346
NOAA-NMFS-2020-0031-DRAFT-12347
NOAA-NMFS-2020-0031-DRAFT-12348
NOAA-NMFS-2020-0031-DRAFT-12349
NOAA-NMFS-2020-0031-DRAFT-12350
NOAA-NMFS-2020-0031-DRAFT-12351
NOAA-NMFS-2020-0031-DRAFT-12352
NOAA-NMFS-2020-0031-DRAFT-12353
NOAA-NMFS-2020-0031-DRAFT-12354
NOAA-NMFS-2020-0031-DRAFT-12355
NOAA-NMFS-2020-0031-DRAFT-12356
NOAA-NMFS-2020-0031-DRAFT-12357
NOAA-NMFS-2020-0031-DRAFT-12358
NOAA-NMFS-2020-0031-DRAFT-12359
NOAA-NMFS-2020-0031-DRAFT-12360
NOAA-NMFS-2020-0031-DRAFT-12361

Comment from Coralie Carraway
Comment from Kristina Bradwell
Comment from Lynn Ryan
Comment from Ingrid Eichenbaum
Comment from Norman Baker
Comment from Linda Shirey
Comment from Deborah Lyons
Comment from Mark Youd
Comment from Ralph Anderson
Comment from shelley mckee
Comment from Jack Milton
Comment from Kathleen Eaton
Comment from Ana Herold
Comment from Thomas Giblin
Comment from daniel uiterwyk
Comment from Kari Stringer
Comment from Patricia Randazzo
Comment from Cynthia McMath
Comment from Bob Neuzil
Comment from Lira Johnson
Comment from Sandra Lane
Comment from Lesley Jorgensen
Comment from Linda Peterson
Comment from Edward Wardwell
Comment from Karen Spradlin
Comment from Ramona Hillier-O'Hara
Comment from Sanndi vanacore
Comment from Autumn Garcia
Comment from Anne Rettenmair
Comment from tia pearson
Comment from Nikki Adams
Comment from Mady bergs
Comment from Patricia Foschi
Comment from Blair Hopkins
Comment from Steve Hess
Comment from Mady bergs
Comment from Robert Frank
Comment from Marcella Hammond
Comment from Jan Hillegas
Comment from Eileen McLeod
Comment from Diana Owens

02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17490
NOAA-NMFS-2020-0031-DRAFT-17491
NOAA-NMFS-2020-0031-DRAFT-17492
NOAA-NMFS-2020-0031-DRAFT-17493
NOAA-NMFS-2020-0031-DRAFT-17494
NOAA-NMFS-2020-0031-DRAFT-17495
NOAA-NMFS-2020-0031-DRAFT-17496
NOAA-NMFS-2020-0031-DRAFT-17497
NOAA-NMFS-2020-0031-DRAFT-17498
NOAA-NMFS-2020-0031-DRAFT-17499
NOAA-NMFS-2020-0031-DRAFT-17500
NOAA-NMFS-2020-0031-DRAFT-17501
NOAA-NMFS-2020-0031-DRAFT-17502
NOAA-NMFS-2020-0031-DRAFT-17503
NOAA-NMFS-2020-0031-DRAFT-17504
NOAA-NMFS-2020-0031-DRAFT-17505
NOAA-NMFS-2020-0031-DRAFT-17506
NOAA-NMFS-2020-0031-DRAFT-17507
NOAA-NMFS-2020-0031-DRAFT-17508
NOAA-NMFS-2020-0031-DRAFT-17509
NOAA-NMFS-2020-0031-DRAFT-17510
NOAA-NMFS-2020-0031-DRAFT-17511
NOAA-NMFS-2020-0031-DRAFT-17512
NOAA-NMFS-2020-0031-DRAFT-17513
NOAA-NMFS-2020-0031-DRAFT-17514
NOAA-NMFS-2020-0031-DRAFT-17515
NOAA-NMFS-2020-0031-DRAFT-17516
NOAA-NMFS-2020-0031-DRAFT-17517
NOAA-NMFS-2020-0031-DRAFT-17518
NOAA-NMFS-2020-0031-DRAFT-17519
NOAA-NMFS-2020-0031-DRAFT-17520
NOAA-NMFS-2020-0031-DRAFT-17521
NOAA-NMFS-2020-0031-DRAFT-17522
NOAA-NMFS-2020-0031-DRAFT-17523
NOAA-NMFS-2020-0031-DRAFT-17524
NOAA-NMFS-2020-0031-DRAFT-17525
NOAA-NMFS-2020-0031-DRAFT-17526
NOAA-NMFS-2020-0031-DRAFT-17527
NOAA-NMFS-2020-0031-DRAFT-17528
NOAA-NMFS-2020-0031-DRAFT-17529
NOAA-NMFS-2020-0031-DRAFT-17530

Comment from Clare Halloran
Comment from Bianca Molgora
Comment from Ann Myers
Comment from Jeremy Marks
Comment from Lisa Ridge
Comment from Sheila O'Neill
Comment from Laurie Mcdougall
Comment from Nico Mcafee
Comment from Bernadette Andaloro
Comment from Elizabeth Watts
Comment from Norman Stephens
Comment from Lisa McKillop
Comment from Robert Lombardi
Comment from Jill McClendon
Comment from Tim Duda
Comment from Nicolette Froehlich
Comment from Elak Swindell
Comment from Lesley Triptow
Comment from Jeanine Garber
Comment from Diana Sanderson
Comment from Mike Halegua
Comment from Elena Mavros
Comment from Donna Grubbs
Comment from Alice Petersen
Comment from Adrienne Cadway
Comment from leslie spoon
Comment from Josette Le Beau
Comment from Maria Iavarone
Comment from Peggy Fry
Comment from Traci Hamilton
Comment from barbara cunningham
Comment from Pati Jio
Comment from James Mather
Comment from Liana Castro
Comment from Patricia Sullivan
Comment from melissa spengler
Comment from Joanne Grossi
Comment from Carol Brady
Comment from Elaine Parker
Comment from Jim Frageman
Comment from J FRIED

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02/09/2021
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02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12362
NOAA-NMFS-2020-0031-DRAFT-12363
NOAA-NMFS-2020-0031-DRAFT-12364
NOAA-NMFS-2020-0031-DRAFT-12365
NOAA-NMFS-2020-0031-DRAFT-12366
NOAA-NMFS-2020-0031-DRAFT-12367
NOAA-NMFS-2020-0031-DRAFT-12368
NOAA-NMFS-2020-0031-DRAFT-12369
NOAA-NMFS-2020-0031-DRAFT-12370
NOAA-NMFS-2020-0031-DRAFT-12371
NOAA-NMFS-2020-0031-DRAFT-12372
NOAA-NMFS-2020-0031-DRAFT-12373
NOAA-NMFS-2020-0031-DRAFT-12374
NOAA-NMFS-2020-0031-DRAFT-12375
NOAA-NMFS-2020-0031-DRAFT-12376
NOAA-NMFS-2020-0031-DRAFT-12377
NOAA-NMFS-2020-0031-DRAFT-12378
NOAA-NMFS-2020-0031-DRAFT-12379
NOAA-NMFS-2020-0031-DRAFT-12380
NOAA-NMFS-2020-0031-DRAFT-12381
NOAA-NMFS-2020-0031-DRAFT-12382
NOAA-NMFS-2020-0031-DRAFT-12383
NOAA-NMFS-2020-0031-DRAFT-12384
NOAA-NMFS-2020-0031-DRAFT-12385
NOAA-NMFS-2020-0031-DRAFT-12386
NOAA-NMFS-2020-0031-DRAFT-12387
NOAA-NMFS-2020-0031-DRAFT-12388
NOAA-NMFS-2020-0031-DRAFT-12389
NOAA-NMFS-2020-0031-DRAFT-12390
NOAA-NMFS-2020-0031-DRAFT-12391
NOAA-NMFS-2020-0031-DRAFT-12392
NOAA-NMFS-2020-0031-DRAFT-12393
NOAA-NMFS-2020-0031-DRAFT-12394
NOAA-NMFS-2020-0031-DRAFT-12395
NOAA-NMFS-2020-0031-DRAFT-12396
NOAA-NMFS-2020-0031-DRAFT-12397
NOAA-NMFS-2020-0031-DRAFT-12398
NOAA-NMFS-2020-0031-DRAFT-12399
NOAA-NMFS-2020-0031-DRAFT-12400
NOAA-NMFS-2020-0031-DRAFT-12401
NOAA-NMFS-2020-0031-DRAFT-12402

Comment from Bob Davis
Comment from Miranda Vorhees
Comment from Gary Blair
Comment from Richard Ward
Comment from joyce cotter
Comment from Catherine Elverston
Comment from Georgiann Young
Comment from Ron Wish
Comment from Tammy Lettieri
Comment from Michelle Benes
Comment from James Tandoo
Comment from Ellen Callahan
Comment from Bill Triplett
Comment from KURT STEINMAN
Comment from Brenda Smith
Comment from Sabrina Fedel
Comment from Patti Johnson
Comment from Billie Anderson
Comment from angelo sturino
Comment from Lisa Norman
Comment from Charles Favorite
Comment from Stephen Whitt
Comment from Ken Loehlein
Comment from MARY EASTMAN
Comment from Richard Fish
Comment from Anita Nowell
Comment from Kimberly Jannarone
Comment from Dr Smith
Comment from Cheryl Kirby
Comment from Dave Kisor
Comment from Heather Miller
Comment from Julia DeNiro
Comment from Alan Berg
Comment from Patricia Lewis
Comment from Silvia Hall
Comment from Todd Powers
Comment from Donna Polson
Comment from Bernie Hartwig
Comment from Corinne Marrone
Comment from Margaret Friedenbach
Comment from Susan Porter

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17531
NOAA-NMFS-2020-0031-DRAFT-17532
NOAA-NMFS-2020-0031-DRAFT-17533
NOAA-NMFS-2020-0031-DRAFT-17534
NOAA-NMFS-2020-0031-DRAFT-17535
NOAA-NMFS-2020-0031-DRAFT-17536
NOAA-NMFS-2020-0031-DRAFT-17537
NOAA-NMFS-2020-0031-DRAFT-17538
NOAA-NMFS-2020-0031-DRAFT-17539
NOAA-NMFS-2020-0031-DRAFT-17540
NOAA-NMFS-2020-0031-DRAFT-17541
NOAA-NMFS-2020-0031-DRAFT-17542
NOAA-NMFS-2020-0031-DRAFT-17543
NOAA-NMFS-2020-0031-DRAFT-17544
NOAA-NMFS-2020-0031-DRAFT-17545
NOAA-NMFS-2020-0031-DRAFT-17546
NOAA-NMFS-2020-0031-DRAFT-17547
NOAA-NMFS-2020-0031-DRAFT-17548
NOAA-NMFS-2020-0031-DRAFT-17549
NOAA-NMFS-2020-0031-DRAFT-17550
NOAA-NMFS-2020-0031-DRAFT-17551
NOAA-NMFS-2020-0031-DRAFT-17552
NOAA-NMFS-2020-0031-DRAFT-17553
NOAA-NMFS-2020-0031-DRAFT-17554
NOAA-NMFS-2020-0031-DRAFT-17555
NOAA-NMFS-2020-0031-DRAFT-17556
NOAA-NMFS-2020-0031-DRAFT-17557
NOAA-NMFS-2020-0031-DRAFT-17558
NOAA-NMFS-2020-0031-DRAFT-17559
NOAA-NMFS-2020-0031-DRAFT-17560
NOAA-NMFS-2020-0031-DRAFT-17561
NOAA-NMFS-2020-0031-DRAFT-17562
NOAA-NMFS-2020-0031-DRAFT-17563
NOAA-NMFS-2020-0031-DRAFT-17564
NOAA-NMFS-2020-0031-DRAFT-17565
NOAA-NMFS-2020-0031-DRAFT-17566
NOAA-NMFS-2020-0031-DRAFT-17567
NOAA-NMFS-2020-0031-DRAFT-17568
NOAA-NMFS-2020-0031-DRAFT-17569
NOAA-NMFS-2020-0031-DRAFT-17570
NOAA-NMFS-2020-0031-DRAFT-17571

Comment from Irene Franzis
Comment from Tamara Miller
Comment from Megan Lankenau
Comment from Katie Wood
Comment from Maria Gabrielle
Comment from Melanie Lavimoniere
Comment from Sandra Farkas
Comment from Patricia Aranibar
Comment from janna piper
Comment from Linda Malik
Comment from Mary Thibaudeau
Comment from Jean Browman
Comment from Catherine Crawford
Comment from Jesse Gennarelli
Comment from Lenore Nieters
Comment from Annette Benton
Comment from Maureen Shockley
Comment from Richard Weavil
Comment from Joyce Grajczyk
Comment from Roz goldstein
Comment from CLAUDIA VARGAS
MCCORMACK
Comment from John Chase
Comment from Shawn Grause
Comment from Stephanie Jones
Comment from Pam Lewis
Comment from Donna Pope
Comment from Jan Rydeen
Comment from William Reavis
Comment from Laree Farmer
Comment from Toy Michel
Comment from Cindy Meloni
Comment from Christine Capaldo
Comment from Monica Rangne
Comment from Jackie Duval
Comment from Anne Henry
Comment from Minerva Mollica
Comment from Jacqueline Burr Lonnon
Comment from Karen Emanuel
Comment from Tracy Ouellette
Comment from GISELE BRYCE
Comment from Kristi Wilson

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12403
NOAA-NMFS-2020-0031-DRAFT-12404
NOAA-NMFS-2020-0031-DRAFT-12405
NOAA-NMFS-2020-0031-DRAFT-12406
NOAA-NMFS-2020-0031-DRAFT-12407
NOAA-NMFS-2020-0031-DRAFT-12408
NOAA-NMFS-2020-0031-DRAFT-12409
NOAA-NMFS-2020-0031-DRAFT-12410
NOAA-NMFS-2020-0031-DRAFT-12411
NOAA-NMFS-2020-0031-DRAFT-12412
NOAA-NMFS-2020-0031-DRAFT-12413
NOAA-NMFS-2020-0031-DRAFT-12414
NOAA-NMFS-2020-0031-DRAFT-12415
NOAA-NMFS-2020-0031-DRAFT-12416
NOAA-NMFS-2020-0031-DRAFT-12417
NOAA-NMFS-2020-0031-DRAFT-12418
NOAA-NMFS-2020-0031-DRAFT-12419
NOAA-NMFS-2020-0031-DRAFT-12420
NOAA-NMFS-2020-0031-DRAFT-12421
NOAA-NMFS-2020-0031-DRAFT-12422
NOAA-NMFS-2020-0031-DRAFT-12423
NOAA-NMFS-2020-0031-DRAFT-12424
NOAA-NMFS-2020-0031-DRAFT-12425
NOAA-NMFS-2020-0031-DRAFT-12426
NOAA-NMFS-2020-0031-DRAFT-12427
NOAA-NMFS-2020-0031-DRAFT-12428
NOAA-NMFS-2020-0031-DRAFT-12429
NOAA-NMFS-2020-0031-DRAFT-12430
NOAA-NMFS-2020-0031-DRAFT-12431
NOAA-NMFS-2020-0031-DRAFT-12432
NOAA-NMFS-2020-0031-DRAFT-12433
NOAA-NMFS-2020-0031-DRAFT-12434
NOAA-NMFS-2020-0031-DRAFT-12435
NOAA-NMFS-2020-0031-DRAFT-12436
NOAA-NMFS-2020-0031-DRAFT-12437
NOAA-NMFS-2020-0031-DRAFT-12438
NOAA-NMFS-2020-0031-DRAFT-12439
NOAA-NMFS-2020-0031-DRAFT-12440
NOAA-NMFS-2020-0031-DRAFT-12441
NOAA-NMFS-2020-0031-DRAFT-12442
NOAA-NMFS-2020-0031-DRAFT-12443

Comment from David Haskins
Comment from Katherine DeAngelis
Comment from Debbie Friesen
Comment from Melissa Friedman
Comment from Janet Carlisle
Comment from Eleanor Leo
Comment from Amanda Young
Comment from Laura Ray
Comment from Cathy Barton
Comment from Anthony Celaya
Comment from Tina Brenza
Comment from James Talbot
Comment from Jeffrey Colledge
Comment from Judy Greenfield
Comment from Marlys Reid
Comment from Cathy Reynolds
Comment from Darcy Silver
Comment from Lee Bartell
Comment from Nancy Weil
Comment from Erika Seibel
Comment from Rae Furcha
Comment from Michelle Pavcovich
Comment from Angela Cole
Comment from Carol Adamec
Comment from John Dylla
Comment from nancy deblanco
Comment from Sarah Bauman
Comment from Grace Padelford
Comment from Dorothy Parshall
Comment from Karen Mehner
Comment from Carole Newsome
Comment from Hope Blume
Comment from mardy weinstein
Comment from Erika Lehmann
Comment from Julie Tyler
Comment from Gwendolyn Harper
Comment from Carol Clarkin
Comment from Peggy Gilges
Comment from LindaLee
McEachronTaylor
Comment from Maurice Samuels
Comment from Todd Hack

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17572
NOAA-NMFS-2020-0031-DRAFT-17573
NOAA-NMFS-2020-0031-DRAFT-17574
NOAA-NMFS-2020-0031-DRAFT-17575
NOAA-NMFS-2020-0031-DRAFT-17576
NOAA-NMFS-2020-0031-DRAFT-17577
NOAA-NMFS-2020-0031-DRAFT-17578
NOAA-NMFS-2020-0031-DRAFT-17579
NOAA-NMFS-2020-0031-DRAFT-17580
NOAA-NMFS-2020-0031-DRAFT-17581
NOAA-NMFS-2020-0031-DRAFT-17582
NOAA-NMFS-2020-0031-DRAFT-17583
NOAA-NMFS-2020-0031-DRAFT-17584
NOAA-NMFS-2020-0031-DRAFT-17585
NOAA-NMFS-2020-0031-DRAFT-17586
NOAA-NMFS-2020-0031-DRAFT-17587
NOAA-NMFS-2020-0031-DRAFT-17588
NOAA-NMFS-2020-0031-DRAFT-17589
NOAA-NMFS-2020-0031-DRAFT-17590
NOAA-NMFS-2020-0031-DRAFT-17591
NOAA-NMFS-2020-0031-DRAFT-17592
NOAA-NMFS-2020-0031-DRAFT-17593
NOAA-NMFS-2020-0031-DRAFT-17594
NOAA-NMFS-2020-0031-DRAFT-17595
NOAA-NMFS-2020-0031-DRAFT-17596
NOAA-NMFS-2020-0031-DRAFT-17597
NOAA-NMFS-2020-0031-DRAFT-17598
NOAA-NMFS-2020-0031-DRAFT-17599
NOAA-NMFS-2020-0031-DRAFT-17600
NOAA-NMFS-2020-0031-DRAFT-17601
NOAA-NMFS-2020-0031-DRAFT-17602
NOAA-NMFS-2020-0031-DRAFT-17603
NOAA-NMFS-2020-0031-DRAFT-17604
NOAA-NMFS-2020-0031-DRAFT-17606
NOAA-NMFS-2020-0031-DRAFT-17607
NOAA-NMFS-2020-0031-DRAFT-17608
NOAA-NMFS-2020-0031-DRAFT-17609
NOAA-NMFS-2020-0031-DRAFT-17610
NOAA-NMFS-2020-0031-DRAFT-17612
NOAA-NMFS-2020-0031-DRAFT-17613
NOAA-NMFS-2020-0031-DRAFT-17614

Comment from Jacqueline Kimzey
Comment from murry cohen
Comment from Joyce Carlson
Comment from Deborah Tyler
Comment from Tammy Williams
Comment from Jessica Freeman
Comment from jj skiddy
Comment from Amir Niknam
Comment from Patricia Krasinski
Comment from David Nez
Comment from Maureen Sanderson
Comment from Cynthia Liss
Comment from Hyun Lee
Comment from Eustacia Hall
Comment from James Walton
Comment from Marlene Miller
Comment from Carolyn Hawk
Comment from Holly Marczak
Comment from Kaylouise Cook
Comment from Samantha Boyce
Comment from Jeannine Trattner
Comment from Debra Bruegge
Comment from Zoraya Michel
Comment from Donna Leavitt
Comment from MICHELLE OROZ
Comment from Matthew Richcreek
Comment from Suzi Goller
Comment from Dawn Schanz
Comment from Vicki Ferguson
Comment from David Nichols
Comment from Brittany Barringer
Comment from Wendy Weldon
Comment from Elaina Ozeroff
Comment from Kevin Bannon
Comment from Thomas Dow
Comment from Katherine Godwin
Comment from Dan Pepin
Comment from barbara leviness
Comment from Tammy Fenske
Comment from Sharon Leavell
Comment from Sherri Hodges

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02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12444
NOAA-NMFS-2020-0031-DRAFT-12445
NOAA-NMFS-2020-0031-DRAFT-12446
NOAA-NMFS-2020-0031-DRAFT-12447
NOAA-NMFS-2020-0031-DRAFT-12448
NOAA-NMFS-2020-0031-DRAFT-12449
NOAA-NMFS-2020-0031-DRAFT-12450
NOAA-NMFS-2020-0031-DRAFT-12451
NOAA-NMFS-2020-0031-DRAFT-12452
NOAA-NMFS-2020-0031-DRAFT-12453
NOAA-NMFS-2020-0031-DRAFT-12454
NOAA-NMFS-2020-0031-DRAFT-12455
NOAA-NMFS-2020-0031-DRAFT-12456
NOAA-NMFS-2020-0031-DRAFT-12457
NOAA-NMFS-2020-0031-DRAFT-12458
NOAA-NMFS-2020-0031-DRAFT-12459
NOAA-NMFS-2020-0031-DRAFT-12460
NOAA-NMFS-2020-0031-DRAFT-12461
NOAA-NMFS-2020-0031-DRAFT-12462
NOAA-NMFS-2020-0031-DRAFT-12464
NOAA-NMFS-2020-0031-DRAFT-12465
NOAA-NMFS-2020-0031-DRAFT-12466
NOAA-NMFS-2020-0031-DRAFT-12467
NOAA-NMFS-2020-0031-DRAFT-12468
NOAA-NMFS-2020-0031-DRAFT-12469
NOAA-NMFS-2020-0031-DRAFT-12470
NOAA-NMFS-2020-0031-DRAFT-12471
NOAA-NMFS-2020-0031-DRAFT-12472
NOAA-NMFS-2020-0031-DRAFT-12473
NOAA-NMFS-2020-0031-DRAFT-12475
NOAA-NMFS-2020-0031-DRAFT-12476
NOAA-NMFS-2020-0031-DRAFT-12477
NOAA-NMFS-2020-0031-DRAFT-12478
NOAA-NMFS-2020-0031-DRAFT-12479
NOAA-NMFS-2020-0031-DRAFT-12480
NOAA-NMFS-2020-0031-DRAFT-12481
NOAA-NMFS-2020-0031-DRAFT-12482
NOAA-NMFS-2020-0031-DRAFT-12483
NOAA-NMFS-2020-0031-DRAFT-12484
NOAA-NMFS-2020-0031-DRAFT-12485
NOAA-NMFS-2020-0031-DRAFT-12486

Comment from Michael Lawrence
Comment from Diane Huber
Comment from Dennis Heinzig
Comment from Anne-Marie Read
Comment from James Walton
Comment from Dana Sklar
Comment from Stephanie Claypoole
Comment from Holly carper
Comment from Erin Dalessandro
Comment from Patricia Benjamin
Comment from John Essman
Comment from Barbara Stafford
Comment from Michael Hill
Comment from Lisa Winters
Comment from Gloria Muszynski
Comment from Howard Graham
Comment from thomas nolan
Comment from Jan Salas
Comment from Irene Osborn
Comment from Fred Martin
Comment from Monya Duvall
Comment from Terry Vollmer
Comment from Myra Dewhurst
Comment from Elaine Becker
Comment from cindy chuplis
Comment from Naomi Klass
Comment from Lois Karasek
Comment from William Fast
Comment from Edward Colley
Comment from Maggie Mandzuk
Comment from Heather Walker-Dale
Comment from Justin Grover
Comment from Catherine McCabe
Comment from Nandita Shah
Comment from Constance Baus
Comment from Karen Husocki
Comment from Valerie Sanderson
Comment from Anne Randolph
Comment from Katherine O'Sullivan
Comment from Sue Velez
Comment from Keith Hammond

02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17615
NOAA-NMFS-2020-0031-DRAFT-17616
NOAA-NMFS-2020-0031-DRAFT-17617
NOAA-NMFS-2020-0031-DRAFT-17618
NOAA-NMFS-2020-0031-DRAFT-17619
NOAA-NMFS-2020-0031-DRAFT-17620
NOAA-NMFS-2020-0031-DRAFT-17621
NOAA-NMFS-2020-0031-DRAFT-17622
NOAA-NMFS-2020-0031-DRAFT-17623
NOAA-NMFS-2020-0031-DRAFT-17624
NOAA-NMFS-2020-0031-DRAFT-17625
NOAA-NMFS-2020-0031-DRAFT-17626
NOAA-NMFS-2020-0031-DRAFT-17627
NOAA-NMFS-2020-0031-DRAFT-17628
NOAA-NMFS-2020-0031-DRAFT-17629
NOAA-NMFS-2020-0031-DRAFT-17630
NOAA-NMFS-2020-0031-DRAFT-17632
NOAA-NMFS-2020-0031-DRAFT-17633
NOAA-NMFS-2020-0031-DRAFT-17634
NOAA-NMFS-2020-0031-DRAFT-17635
NOAA-NMFS-2020-0031-DRAFT-17636
NOAA-NMFS-2020-0031-DRAFT-17637
NOAA-NMFS-2020-0031-DRAFT-17638
NOAA-NMFS-2020-0031-DRAFT-17639
NOAA-NMFS-2020-0031-DRAFT-17641
NOAA-NMFS-2020-0031-DRAFT-17642
NOAA-NMFS-2020-0031-DRAFT-17643
NOAA-NMFS-2020-0031-DRAFT-17644
NOAA-NMFS-2020-0031-DRAFT-17645
NOAA-NMFS-2020-0031-DRAFT-17646
NOAA-NMFS-2020-0031-DRAFT-17647
NOAA-NMFS-2020-0031-DRAFT-17648
NOAA-NMFS-2020-0031-DRAFT-17649
NOAA-NMFS-2020-0031-DRAFT-17650
NOAA-NMFS-2020-0031-DRAFT-17651
NOAA-NMFS-2020-0031-DRAFT-17652
NOAA-NMFS-2020-0031-DRAFT-17653
NOAA-NMFS-2020-0031-DRAFT-17654
NOAA-NMFS-2020-0031-DRAFT-17655
NOAA-NMFS-2020-0031-DRAFT-17656
NOAA-NMFS-2020-0031-DRAFT-17657

Comment from Marge Maloney
Comment from Nadine Duckworth
Comment from cecilia nevel
Comment from Linda Singer
Comment from Sharon Edmondson
Comment from Jerusalem Wise
Comment from Autumn Monnahan
Comment from Jesse Mallory
Comment from Nathan Trimble
Comment from Linda Malik
Comment from Kirstin Robertson
Comment from Glen Benjamin
Comment from Mark GOODMAN
Comment from Sheila Simonson
Comment from SUE KREMER
Comment from Sierra Partlan
Comment from Ranko Balog
Comment from Len Clark
Comment from Steven Wolff
Comment from Anita Braddock
Comment from Linda Malik
Comment from Stephanie Witkoski
Comment from Richard Smith
Comment from Jeannette Welling
Comment from Christopher Lopez
Comment from barbara leviness
Comment from Ruby Warren
Comment from Medina Larkin
Comment from Janell Copello
Comment from KAREN ROCKWELL
Comment from Joan Tokarz
Comment from Alexandra Nicole
Comment from Sue McCasey
Comment from Donna Chiordi
Comment from Greg Hendricks
Comment from Nonna Settlemyer
Comment from Jerrilynne Titsworth
Comment from Cynthia Loucks
Comment from Christopher DiFonso
Comment from Charles Arnold
Comment from Patty Viers

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12487
NOAA-NMFS-2020-0031-DRAFT-12488
NOAA-NMFS-2020-0031-DRAFT-12489
NOAA-NMFS-2020-0031-DRAFT-12490
NOAA-NMFS-2020-0031-DRAFT-12491
NOAA-NMFS-2020-0031-DRAFT-12492
NOAA-NMFS-2020-0031-DRAFT-12493
NOAA-NMFS-2020-0031-DRAFT-12494
NOAA-NMFS-2020-0031-DRAFT-12495
NOAA-NMFS-2020-0031-DRAFT-12496
NOAA-NMFS-2020-0031-DRAFT-12497
NOAA-NMFS-2020-0031-DRAFT-12498
NOAA-NMFS-2020-0031-DRAFT-12499
NOAA-NMFS-2020-0031-DRAFT-12500
NOAA-NMFS-2020-0031-DRAFT-12501
NOAA-NMFS-2020-0031-DRAFT-12502
NOAA-NMFS-2020-0031-DRAFT-12503
NOAA-NMFS-2020-0031-DRAFT-12504
NOAA-NMFS-2020-0031-DRAFT-12505
NOAA-NMFS-2020-0031-DRAFT-12506
NOAA-NMFS-2020-0031-DRAFT-12507
NOAA-NMFS-2020-0031-DRAFT-12508
NOAA-NMFS-2020-0031-DRAFT-12509
NOAA-NMFS-2020-0031-DRAFT-12510
NOAA-NMFS-2020-0031-DRAFT-12511
NOAA-NMFS-2020-0031-DRAFT-12512
NOAA-NMFS-2020-0031-DRAFT-12513
NOAA-NMFS-2020-0031-DRAFT-12514
NOAA-NMFS-2020-0031-DRAFT-12515
NOAA-NMFS-2020-0031-DRAFT-12516
NOAA-NMFS-2020-0031-DRAFT-12517
NOAA-NMFS-2020-0031-DRAFT-12518
NOAA-NMFS-2020-0031-DRAFT-12519
NOAA-NMFS-2020-0031-DRAFT-12520
NOAA-NMFS-2020-0031-DRAFT-12521
NOAA-NMFS-2020-0031-DRAFT-12522
NOAA-NMFS-2020-0031-DRAFT-12523
NOAA-NMFS-2020-0031-DRAFT-12524
NOAA-NMFS-2020-0031-DRAFT-12525
NOAA-NMFS-2020-0031-DRAFT-12526
NOAA-NMFS-2020-0031-DRAFT-12527

Comment from Kerry Ducan
Comment from Diana Proper
Comment from Jason Green
Comment from Kay Campbell
Comment from Lissa McCullough
Comment from Stephen Kornbluth
Comment from Judith King
Comment from Lisa Gherardi
Comment from Linda Hayes
Comment from Toni Hamilton
Comment from Janell Curtis
Comment from Jack Stockslager
Comment from Terry Evans
Comment from Theresa Owens
Comment from Theresa Waldspurger
Comment from Shannon Elliott
Comment from Linda Freeman
Comment from Cynthia McHale
Comment from Ron Torretta
Comment from Jennifer Tulo
Comment from Carlene Reuscher
Comment from Susan Smith
Comment from Dan Perdios
Comment from Toby Reese
Comment from Jill DeBender
Comment from Thinh Ngo
Comment from Gary LaClair
Comment from Debra Wilks
Comment from Stacey Farley
Comment from David Laramie
Comment from Doreen Gruchawka
Comment from karen donofrio
Comment from Cynthia McKeen
Comment from James Sweeney
Comment from Nancy Schwall
Comment from R. Peterson
Comment from Cynthia Florenzen
Comment from Luz Marina
Comment from Sondra Boes
Comment from Donna Bender
Comment from Barry Grimecy

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17659
NOAA-NMFS-2020-0031-DRAFT-17660
NOAA-NMFS-2020-0031-DRAFT-17661
NOAA-NMFS-2020-0031-DRAFT-17662
NOAA-NMFS-2020-0031-DRAFT-17663
NOAA-NMFS-2020-0031-DRAFT-17664
NOAA-NMFS-2020-0031-DRAFT-17665
NOAA-NMFS-2020-0031-DRAFT-17666
NOAA-NMFS-2020-0031-DRAFT-17667
NOAA-NMFS-2020-0031-DRAFT-17668
NOAA-NMFS-2020-0031-DRAFT-17669
NOAA-NMFS-2020-0031-DRAFT-17670
NOAA-NMFS-2020-0031-DRAFT-17671
NOAA-NMFS-2020-0031-DRAFT-17672
NOAA-NMFS-2020-0031-DRAFT-17673
NOAA-NMFS-2020-0031-DRAFT-17674
NOAA-NMFS-2020-0031-DRAFT-17675
NOAA-NMFS-2020-0031-DRAFT-17676
NOAA-NMFS-2020-0031-DRAFT-17677
NOAA-NMFS-2020-0031-DRAFT-17678
NOAA-NMFS-2020-0031-DRAFT-17679
NOAA-NMFS-2020-0031-DRAFT-17680
NOAA-NMFS-2020-0031-DRAFT-17681
NOAA-NMFS-2020-0031-DRAFT-17682
NOAA-NMFS-2020-0031-DRAFT-17683
NOAA-NMFS-2020-0031-DRAFT-17684
NOAA-NMFS-2020-0031-DRAFT-17685
NOAA-NMFS-2020-0031-DRAFT-17686
NOAA-NMFS-2020-0031-DRAFT-17687
NOAA-NMFS-2020-0031-DRAFT-17688
NOAA-NMFS-2020-0031-DRAFT-17689
NOAA-NMFS-2020-0031-DRAFT-17690
NOAA-NMFS-2020-0031-DRAFT-17691
NOAA-NMFS-2020-0031-DRAFT-17692
NOAA-NMFS-2020-0031-DRAFT-17694
NOAA-NMFS-2020-0031-DRAFT-17695
NOAA-NMFS-2020-0031-DRAFT-17696
NOAA-NMFS-2020-0031-DRAFT-17698
NOAA-NMFS-2020-0031-DRAFT-17699
NOAA-NMFS-2020-0031-DRAFT-17700
NOAA-NMFS-2020-0031-DRAFT-17701

Comment from Andi Fregosi
Comment from Susan Howard
Comment from Debora Hojda
Comment from Margaret Fularczyk
Comment from Susan Pelakh
Comment from Jeanne Fletcher
Comment from Georgeta Burca
Comment from Evelyn Marencik
Comment from gm whiting
Comment from Geri Marshall
Comment from Elizabeth Publicover
Comment from Alex Zukas
Comment from Barbara McClain
Comment from Pat Lang
Comment from Alfina Bruce
Comment from Georgina Wright
Comment from Cynthia Schumann
Comment from maxine bookbinder
Comment from Frank Wilson
Comment from Barbara Van Dusen
Comment from Rolf Friis
Comment from Charmaine Henriques
Comment from Gehan Klele
Comment from Lori Quigley
Comment from Jennifer Cunningham
Comment from Siegrid Berman
Comment from Katherine Wright
Comment from Jim Lindsay
Comment from Deborah Gripp
Comment from Laurence Laverty
Comment from Susan Goldberg
Comment from Leigh Warren
Comment from Geri Sterling
Comment from Janice Durbin
Comment from Gayle Brennan
Comment from J Barry Gurdin
Comment from Joseph Brigandi
Comment from Linda Shirey
Comment from Jeannie Rumple
Comment from C Lamb
Comment from C Golya

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12528
NOAA-NMFS-2020-0031-DRAFT-12529
NOAA-NMFS-2020-0031-DRAFT-12530
NOAA-NMFS-2020-0031-DRAFT-12531
NOAA-NMFS-2020-0031-DRAFT-12532
NOAA-NMFS-2020-0031-DRAFT-12533
NOAA-NMFS-2020-0031-DRAFT-12534
NOAA-NMFS-2020-0031-DRAFT-12535
NOAA-NMFS-2020-0031-DRAFT-12536
NOAA-NMFS-2020-0031-DRAFT-12537
NOAA-NMFS-2020-0031-DRAFT-12538
NOAA-NMFS-2020-0031-DRAFT-12539
NOAA-NMFS-2020-0031-DRAFT-12540
NOAA-NMFS-2020-0031-DRAFT-12541
NOAA-NMFS-2020-0031-DRAFT-12542
NOAA-NMFS-2020-0031-DRAFT-12543
NOAA-NMFS-2020-0031-DRAFT-12544
NOAA-NMFS-2020-0031-DRAFT-12545
NOAA-NMFS-2020-0031-DRAFT-12546
NOAA-NMFS-2020-0031-DRAFT-12547
NOAA-NMFS-2020-0031-DRAFT-12548
NOAA-NMFS-2020-0031-DRAFT-12549
NOAA-NMFS-2020-0031-DRAFT-12550
NOAA-NMFS-2020-0031-DRAFT-12551
NOAA-NMFS-2020-0031-DRAFT-12552
NOAA-NMFS-2020-0031-DRAFT-12553
NOAA-NMFS-2020-0031-DRAFT-12554
NOAA-NMFS-2020-0031-DRAFT-12555
NOAA-NMFS-2020-0031-DRAFT-12556
NOAA-NMFS-2020-0031-DRAFT-12557
NOAA-NMFS-2020-0031-DRAFT-12558
NOAA-NMFS-2020-0031-DRAFT-12559
NOAA-NMFS-2020-0031-DRAFT-12560
NOAA-NMFS-2020-0031-DRAFT-12561
NOAA-NMFS-2020-0031-DRAFT-12562
NOAA-NMFS-2020-0031-DRAFT-12563
NOAA-NMFS-2020-0031-DRAFT-12564
NOAA-NMFS-2020-0031-DRAFT-12565
NOAA-NMFS-2020-0031-DRAFT-12566
NOAA-NMFS-2020-0031-DRAFT-12567
NOAA-NMFS-2020-0031-DRAFT-12568

Comment from Jordan Longever
Comment from Carol Becker
Comment from Laura Horowitz
Comment from James Vallejos
Comment from Bill Millican
Comment from Gerald Orcholski
Comment from Peter Weinberger
Comment from Thomas Brenner
Comment from Marvin Chartoff
Comment from Susan Lozoraitis
Comment from Selina Harris
Comment from Cate Swan
Comment from Ronald Drahos
Comment from Esther Mooncrest
Comment from Steve Robey
Comment from Sharon Orser
Comment from Barbara Letsom
Comment from ROB DOUCETTE
Comment from Anne Jackson
Comment from Debra Care
Comment from Patrease Durgin
Comment from roger schmidt
Comment from Whitney watters
Comment from Daniel Costa
Comment from Nicole Mola
Comment from Bruce Kelley
Comment from Lynn Lang
Comment from Janeene Porcher
Comment from anthony tedesco
Comment from Britton Saunders
Comment from Tiffany Maldonado
Comment from Steven Barlow
Comment from Jaime Bernthaler
Comment from Nicole Maurone
Comment from Dianne Minicucci
Comment from Pat Rabin
Comment from Linda Olson
Comment from Kate Skolnick
Comment from Dale Dapprich
Comment from Julie Drevenkar
Comment from Michael Secino

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17702
NOAA-NMFS-2020-0031-DRAFT-17703
NOAA-NMFS-2020-0031-DRAFT-17704
NOAA-NMFS-2020-0031-DRAFT-17705
NOAA-NMFS-2020-0031-DRAFT-17706
NOAA-NMFS-2020-0031-DRAFT-17707
NOAA-NMFS-2020-0031-DRAFT-17708
NOAA-NMFS-2020-0031-DRAFT-17709
NOAA-NMFS-2020-0031-DRAFT-17710
NOAA-NMFS-2020-0031-DRAFT-17711
NOAA-NMFS-2020-0031-DRAFT-17712
NOAA-NMFS-2020-0031-DRAFT-17713
NOAA-NMFS-2020-0031-DRAFT-17714
NOAA-NMFS-2020-0031-DRAFT-17715
NOAA-NMFS-2020-0031-DRAFT-17716
NOAA-NMFS-2020-0031-DRAFT-17717
NOAA-NMFS-2020-0031-DRAFT-17718
NOAA-NMFS-2020-0031-DRAFT-17719
NOAA-NMFS-2020-0031-DRAFT-17720
NOAA-NMFS-2020-0031-DRAFT-17721
NOAA-NMFS-2020-0031-DRAFT-17722
NOAA-NMFS-2020-0031-DRAFT-17723
NOAA-NMFS-2020-0031-DRAFT-17724
NOAA-NMFS-2020-0031-DRAFT-17725
NOAA-NMFS-2020-0031-DRAFT-17726
NOAA-NMFS-2020-0031-DRAFT-17727
NOAA-NMFS-2020-0031-DRAFT-17728
NOAA-NMFS-2020-0031-DRAFT-17729
NOAA-NMFS-2020-0031-DRAFT-17730
NOAA-NMFS-2020-0031-DRAFT-17731
NOAA-NMFS-2020-0031-DRAFT-17732
NOAA-NMFS-2020-0031-DRAFT-17733
NOAA-NMFS-2020-0031-DRAFT-17735
NOAA-NMFS-2020-0031-DRAFT-17736
NOAA-NMFS-2020-0031-DRAFT-17737
NOAA-NMFS-2020-0031-DRAFT-17738
NOAA-NMFS-2020-0031-DRAFT-17739
NOAA-NMFS-2020-0031-DRAFT-17740
NOAA-NMFS-2020-0031-DRAFT-17741
NOAA-NMFS-2020-0031-DRAFT-17742
NOAA-NMFS-2020-0031-DRAFT-17743

Comment from Tina Phillips
Comment from Kathleen Shabi
Comment from John Viacrucis
Comment from Victoria MacDonald
Comment from Nichole Oneal
Comment from Cyndy Blackledge
Comment from LC Sanders
Comment from Brad Koehler
Comment from Donna C
Comment from Curtis Phillips
Comment from James Klein
Comment from Carla Freels
Comment from Judy Moran
Comment from Robert Kalovsky
Comment from Patricia Goodson
Comment from Chris Byczek
Comment from Carole McAuliffe
Comment from KELLY LEWIS
Comment from Jillian Unger
Comment from Karen Baka
Comment from Debra Pumphrey
Comment from Chris Grill
Comment from Frank Pierri
Comment from Carol Boyd
Comment from Eva Grzelak
Comment from Roz goldstein
Comment from anne veraldi
Comment from Susan Fraser
Comment from Sheila Cowden
Comment from Raquel Buxton
Comment from Joe Sims
Comment from John Moszyk
Comment from Ji Young Kim
Comment from Christine Reeder
Comment from Danielle Kelly
Comment from Amy Graf
Comment from Colleen Kelly
Comment from john papandrea
Comment from Meg Casey
Comment from Marie Wakefield
Comment from Elizabeth Mitchell

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12569
NOAA-NMFS-2020-0031-DRAFT-12570
NOAA-NMFS-2020-0031-DRAFT-12571
NOAA-NMFS-2020-0031-DRAFT-12572
NOAA-NMFS-2020-0031-DRAFT-12573
NOAA-NMFS-2020-0031-DRAFT-12574
NOAA-NMFS-2020-0031-DRAFT-12575
NOAA-NMFS-2020-0031-DRAFT-12576
NOAA-NMFS-2020-0031-DRAFT-12578
NOAA-NMFS-2020-0031-DRAFT-12579
NOAA-NMFS-2020-0031-DRAFT-12580
NOAA-NMFS-2020-0031-DRAFT-12581
NOAA-NMFS-2020-0031-DRAFT-12582
NOAA-NMFS-2020-0031-DRAFT-12583
NOAA-NMFS-2020-0031-DRAFT-12584
NOAA-NMFS-2020-0031-DRAFT-12585
NOAA-NMFS-2020-0031-DRAFT-12586
NOAA-NMFS-2020-0031-DRAFT-12587
NOAA-NMFS-2020-0031-DRAFT-12588
NOAA-NMFS-2020-0031-DRAFT-12589
NOAA-NMFS-2020-0031-DRAFT-12590
NOAA-NMFS-2020-0031-DRAFT-12591
NOAA-NMFS-2020-0031-DRAFT-12592
NOAA-NMFS-2020-0031-DRAFT-12593
NOAA-NMFS-2020-0031-DRAFT-12594
NOAA-NMFS-2020-0031-DRAFT-12595
NOAA-NMFS-2020-0031-DRAFT-12596
NOAA-NMFS-2020-0031-DRAFT-12597
NOAA-NMFS-2020-0031-DRAFT-12598
NOAA-NMFS-2020-0031-DRAFT-12599
NOAA-NMFS-2020-0031-DRAFT-12600
NOAA-NMFS-2020-0031-DRAFT-12601
NOAA-NMFS-2020-0031-DRAFT-12602
NOAA-NMFS-2020-0031-DRAFT-12603
NOAA-NMFS-2020-0031-DRAFT-12604
NOAA-NMFS-2020-0031-DRAFT-12605
NOAA-NMFS-2020-0031-DRAFT-12606
NOAA-NMFS-2020-0031-DRAFT-12607
NOAA-NMFS-2020-0031-DRAFT-12608
NOAA-NMFS-2020-0031-DRAFT-12609
NOAA-NMFS-2020-0031-DRAFT-12610

Comment from Steve Disch
Comment from Carol Kelley
Comment from Helen Spalding
Comment from Karen Stewart
Comment from Claudette Ashley
Comment from Deanne Romano
Comment from Jamie Klem
Comment from Lucille Thibodeau
Comment from Carol Sears
Comment from Ann Eastman
Comment from Carlos Acosta
Comment from Wendy Niemeyer
Comment from Margie Hunter
Comment from Mark Umphred
Comment from Lynn Killam
Comment from David Ashley
Comment from LINDA DIMAGGIO
Comment from Penny Mackenzie
Comment from d 'Anne Y MacNeil
Comment from Laura Vera
Comment from Amanda Dewey
Comment from Laurie Springer
Comment from Maia Van Pelt
Comment from Jean Heaps
Comment from Nancy Niemeir
Comment from Deborah King
Comment from Alice Goodman
Comment from Susie Shapira
Comment from Jane Zimmerman
Comment from Janet Rees
Comment from Lauren Bauman
Comment from Andrew Willman
Comment from john ordway
Comment from Kimberly Brandimarte
Comment from Mike Lesley
Comment from Mike Mahler
Comment from Elaine Costolo
Comment from Vicky Hollowell
Comment from eileen donnelly
Comment from Wilma Davison
Comment from Brittney Rice

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17744
NOAA-NMFS-2020-0031-DRAFT-17745
NOAA-NMFS-2020-0031-DRAFT-17746
NOAA-NMFS-2020-0031-DRAFT-17747
NOAA-NMFS-2020-0031-DRAFT-17748
NOAA-NMFS-2020-0031-DRAFT-17749
NOAA-NMFS-2020-0031-DRAFT-17750
NOAA-NMFS-2020-0031-DRAFT-17751
NOAA-NMFS-2020-0031-DRAFT-17752
NOAA-NMFS-2020-0031-DRAFT-17753
NOAA-NMFS-2020-0031-DRAFT-17754
NOAA-NMFS-2020-0031-DRAFT-17755
NOAA-NMFS-2020-0031-DRAFT-17756
NOAA-NMFS-2020-0031-DRAFT-17757
NOAA-NMFS-2020-0031-DRAFT-17758
NOAA-NMFS-2020-0031-DRAFT-17760
NOAA-NMFS-2020-0031-DRAFT-17761
NOAA-NMFS-2020-0031-DRAFT-17762
NOAA-NMFS-2020-0031-DRAFT-17763
NOAA-NMFS-2020-0031-DRAFT-17764
NOAA-NMFS-2020-0031-DRAFT-17765
NOAA-NMFS-2020-0031-DRAFT-17766
NOAA-NMFS-2020-0031-DRAFT-17767
NOAA-NMFS-2020-0031-DRAFT-17768
NOAA-NMFS-2020-0031-DRAFT-17769
NOAA-NMFS-2020-0031-DRAFT-17770
NOAA-NMFS-2020-0031-DRAFT-17771
NOAA-NMFS-2020-0031-DRAFT-17772
NOAA-NMFS-2020-0031-DRAFT-17773
NOAA-NMFS-2020-0031-DRAFT-17774
NOAA-NMFS-2020-0031-DRAFT-17775
NOAA-NMFS-2020-0031-DRAFT-17776
NOAA-NMFS-2020-0031-DRAFT-17777
NOAA-NMFS-2020-0031-DRAFT-17778
NOAA-NMFS-2020-0031-DRAFT-17779
NOAA-NMFS-2020-0031-DRAFT-17781
NOAA-NMFS-2020-0031-DRAFT-17782
NOAA-NMFS-2020-0031-DRAFT-17783
NOAA-NMFS-2020-0031-DRAFT-17784
NOAA-NMFS-2020-0031-DRAFT-17785
NOAA-NMFS-2020-0031-DRAFT-17786

Comment from Mason Griffith
Comment from Patricia Panitz
Comment from Patricia Gleason
Comment from jan k stewart
Comment from Jennifer Schmidt
Comment from Helen Knauer
Comment from Peter Lockwood
Comment from Dylan Flather
Comment from Roslynn Budoff
Comment from Oliver E Knox
Comment from Lee Stinson
Comment from Linda Muntner
Comment from John Desimone
Comment from Larry Benvenuti
Comment from Debbie D
Comment from Birgit Hermann
Comment from Kay Reinfried
Comment from Priscilla Wagner
Comment from Sonya Borowsky
Comment from Christina Salazar
Comment from Pamela Draper
Comment from Casey Yarder
Comment from Michele Ham
Comment from Jaxon Brooks
Comment from shelley mckee
Comment from Gail Schuessler
Comment from Anthony Ricciardi
Comment from LONDA FOWLER
Comment from Jennifer Witt
Comment from Kathleen Bentley
Comment from Lisa Connolly
Comment from Dawn Matta
Comment from Robert Schoonmaker
Comment from Joel Stein
Comment from Dawn Matta
Comment from yola ileen gitter
Comment from G Paxton
Comment from Kristine Riccardi
Comment from Sonia Wilson
Comment from Whitney Metz
Comment from Terry Cummings

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12611
NOAA-NMFS-2020-0031-DRAFT-12612
NOAA-NMFS-2020-0031-DRAFT-12613
NOAA-NMFS-2020-0031-DRAFT-12614
NOAA-NMFS-2020-0031-DRAFT-12615
NOAA-NMFS-2020-0031-DRAFT-12616
NOAA-NMFS-2020-0031-DRAFT-12617
NOAA-NMFS-2020-0031-DRAFT-12618
NOAA-NMFS-2020-0031-DRAFT-12619
NOAA-NMFS-2020-0031-DRAFT-12620
NOAA-NMFS-2020-0031-DRAFT-12621
NOAA-NMFS-2020-0031-DRAFT-12622
NOAA-NMFS-2020-0031-DRAFT-12623
NOAA-NMFS-2020-0031-DRAFT-12624
NOAA-NMFS-2020-0031-DRAFT-12625
NOAA-NMFS-2020-0031-DRAFT-12626
NOAA-NMFS-2020-0031-DRAFT-12627
NOAA-NMFS-2020-0031-DRAFT-12628
NOAA-NMFS-2020-0031-DRAFT-12629
NOAA-NMFS-2020-0031-DRAFT-12630
NOAA-NMFS-2020-0031-DRAFT-12631
NOAA-NMFS-2020-0031-DRAFT-12632
NOAA-NMFS-2020-0031-DRAFT-12633
NOAA-NMFS-2020-0031-DRAFT-12634
NOAA-NMFS-2020-0031-DRAFT-12635
NOAA-NMFS-2020-0031-DRAFT-12636
NOAA-NMFS-2020-0031-DRAFT-12637
NOAA-NMFS-2020-0031-DRAFT-12638
NOAA-NMFS-2020-0031-DRAFT-12639
NOAA-NMFS-2020-0031-DRAFT-12640
NOAA-NMFS-2020-0031-DRAFT-12641
NOAA-NMFS-2020-0031-DRAFT-12642
NOAA-NMFS-2020-0031-DRAFT-12643
NOAA-NMFS-2020-0031-DRAFT-12644
NOAA-NMFS-2020-0031-DRAFT-12645
NOAA-NMFS-2020-0031-DRAFT-12646
NOAA-NMFS-2020-0031-DRAFT-12647
NOAA-NMFS-2020-0031-DRAFT-12648
NOAA-NMFS-2020-0031-DRAFT-12649
NOAA-NMFS-2020-0031-DRAFT-12650
NOAA-NMFS-2020-0031-DRAFT-12651

Comment from JM Villalobos
Comment from Penelope Andrews
Comment from Nina Diamante
Comment from Stu Farnsworth
Comment from Lorna Emdy
Comment from Sarah Bauman
Comment from Charlene Ferguson
Comment from Larry M
Comment from Lorraine Dumas
Comment from Kathryn Giesler
Comment from Stephanie Phillippi
Comment from Ken Rosenblad
Comment from Rachel Henba
Comment from Helen Stuehler
Comment from Nancy Juskowich
Comment from James Bodsberg
Comment from Mark Koritz
Comment from Bonnie Farmer
Comment from Patricia Savage
Comment from Maude Burns
Comment from Phyllis Grande
Comment from Lori Nell
Comment from P Turick
Comment from Cheryl Kallenbach
Comment from GEORGE ERCEG
Comment from Anita Rinaldi
Comment from Christian Andrade
Comment from Mary Green
Comment from Raffaella Selvaggio
Comment from Debra Gagliano
Comment from M Rivera
Comment from Amy Zink
Comment from Rosemarie Sawdon
Comment from Zola Packman
Comment from Stephanie Weber
Comment from Shan Albert
Comment from Donna Duncan
Comment from Debra Gagliano
Comment from Jana Perinchief
Comment from Robin Pinsof
Comment from Maria Lorek

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17787
NOAA-NMFS-2020-0031-DRAFT-17788
NOAA-NMFS-2020-0031-DRAFT-17789
NOAA-NMFS-2020-0031-DRAFT-17790
NOAA-NMFS-2020-0031-DRAFT-17791
NOAA-NMFS-2020-0031-DRAFT-17792
NOAA-NMFS-2020-0031-DRAFT-17793
NOAA-NMFS-2020-0031-DRAFT-17794
NOAA-NMFS-2020-0031-DRAFT-17796
NOAA-NMFS-2020-0031-DRAFT-17797
NOAA-NMFS-2020-0031-DRAFT-17798
NOAA-NMFS-2020-0031-DRAFT-17799
NOAA-NMFS-2020-0031-DRAFT-17800
NOAA-NMFS-2020-0031-DRAFT-17801
NOAA-NMFS-2020-0031-DRAFT-17802
NOAA-NMFS-2020-0031-DRAFT-17803
NOAA-NMFS-2020-0031-DRAFT-17804
NOAA-NMFS-2020-0031-DRAFT-17805
NOAA-NMFS-2020-0031-DRAFT-17806
NOAA-NMFS-2020-0031-DRAFT-17807
NOAA-NMFS-2020-0031-DRAFT-17808
NOAA-NMFS-2020-0031-DRAFT-17809
NOAA-NMFS-2020-0031-DRAFT-17810
NOAA-NMFS-2020-0031-DRAFT-17811
NOAA-NMFS-2020-0031-DRAFT-17812
NOAA-NMFS-2020-0031-DRAFT-17813
NOAA-NMFS-2020-0031-DRAFT-17814
NOAA-NMFS-2020-0031-DRAFT-17815
NOAA-NMFS-2020-0031-DRAFT-17816
NOAA-NMFS-2020-0031-DRAFT-17817
NOAA-NMFS-2020-0031-DRAFT-17818
NOAA-NMFS-2020-0031-DRAFT-17819
NOAA-NMFS-2020-0031-DRAFT-17820
NOAA-NMFS-2020-0031-DRAFT-17821
NOAA-NMFS-2020-0031-DRAFT-17822
NOAA-NMFS-2020-0031-DRAFT-17823
NOAA-NMFS-2020-0031-DRAFT-17824
NOAA-NMFS-2020-0031-DRAFT-17825
NOAA-NMFS-2020-0031-DRAFT-17826
NOAA-NMFS-2020-0031-DRAFT-17827
NOAA-NMFS-2020-0031-DRAFT-17828

Comment from Elizabeth Madden
Comment from Karla Devine
Comment from Deborah Thelen
Comment from Davindranauth Shiwratan
Comment from Alexandra Torres
Krushinski
Comment from Gary Thaler
Comment from Nick Barcott
Comment from Nancy DiBartolo
Comment from Albert Koehler
Comment from Rebecca Levinson
Comment from Linda Leeser
Comment from Cindy Girgenti
Comment from Lois Karasek
Comment from Kara Howard
Comment from Barry Cutler
Comment from Ana Jacques
Comment from Jan Suche
Comment from David Williams
Comment from Rosemary Colson
Comment from Lori Grace
Comment from Michael Thuring
Comment from Emily Nrokaw
Comment from Jennifer Corrigan
Comment from Martha Olavarrieta
Comment from Susan Vogt
Comment from Jill Boyle
Comment from Danny Castori
Comment from David Walker
Comment from Mary Lawrence
Comment from Kathrine Fegette
Comment from Natasha Weaver
Comment from Mark Giese
Comment from Laura Rose Fortmueller
Comment from KIM EMERSON
Comment from Barbara B
Comment from Lorrie Ogren
Comment from Linda Greene
Comment from Elizabeth Walters
Comment from Kenneth Epstein
Comment from Cierra Buer
Comment from Caryn Ackerman

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12652
NOAA-NMFS-2020-0031-DRAFT-12653
NOAA-NMFS-2020-0031-DRAFT-12654
NOAA-NMFS-2020-0031-DRAFT-12655
NOAA-NMFS-2020-0031-DRAFT-12656
NOAA-NMFS-2020-0031-DRAFT-12657
NOAA-NMFS-2020-0031-DRAFT-12658
NOAA-NMFS-2020-0031-DRAFT-12659
NOAA-NMFS-2020-0031-DRAFT-12660
NOAA-NMFS-2020-0031-DRAFT-12661
NOAA-NMFS-2020-0031-DRAFT-12662
NOAA-NMFS-2020-0031-DRAFT-12663
NOAA-NMFS-2020-0031-DRAFT-12664
NOAA-NMFS-2020-0031-DRAFT-12665
NOAA-NMFS-2020-0031-DRAFT-12666
NOAA-NMFS-2020-0031-DRAFT-12668
NOAA-NMFS-2020-0031-DRAFT-12669
NOAA-NMFS-2020-0031-DRAFT-12670
NOAA-NMFS-2020-0031-DRAFT-12671
NOAA-NMFS-2020-0031-DRAFT-12672
NOAA-NMFS-2020-0031-DRAFT-12673
NOAA-NMFS-2020-0031-DRAFT-12674
NOAA-NMFS-2020-0031-DRAFT-12675
NOAA-NMFS-2020-0031-DRAFT-12676
NOAA-NMFS-2020-0031-DRAFT-12677
NOAA-NMFS-2020-0031-DRAFT-12678
NOAA-NMFS-2020-0031-DRAFT-12679
NOAA-NMFS-2020-0031-DRAFT-12680
NOAA-NMFS-2020-0031-DRAFT-12681
NOAA-NMFS-2020-0031-DRAFT-12682
NOAA-NMFS-2020-0031-DRAFT-12683
NOAA-NMFS-2020-0031-DRAFT-12684
NOAA-NMFS-2020-0031-DRAFT-12685
NOAA-NMFS-2020-0031-DRAFT-12686
NOAA-NMFS-2020-0031-DRAFT-12687
NOAA-NMFS-2020-0031-DRAFT-12688
NOAA-NMFS-2020-0031-DRAFT-12689
NOAA-NMFS-2020-0031-DRAFT-12690
NOAA-NMFS-2020-0031-DRAFT-12691
NOAA-NMFS-2020-0031-DRAFT-12693
NOAA-NMFS-2020-0031-DRAFT-12694

Comment from Terry Tedesco
Comment from Barbara Fernandez
Comment from Patricia Lenzen
Comment from Tria Shaffer
Comment from Kathy Rapp
Comment from Meaghan Doherty
Comment from Cindy Schultz
Comment from David LeRoy
Comment from Sandra McPherson
Comment from Nancy Gregory
Comment from Diann Rose
Comment from Mary flynn
Comment from Jake Shirmer
Comment from Alice Markey
Comment from Natalie Alexander
Comment from Alan Carter
Comment from Roz Connor
Comment from Mary Baker
Comment from K. King
Comment from liz gonzalez
Comment from Sue Holtz
Comment from Maria Miranda
Comment from Barbara Hoch
Comment from Susan Getzschman
Comment from Johnna Anderson
Comment from gabriela monge
Comment from Donna Renninger
Comment from MARTHA GREEN
Comment from Alan Young
Comment from Carson Martin
Comment from Florence Leto
Comment from Robert Martin
Comment from June Curley
Comment from Brenda Nieland
Comment from Ellen Lalier
Comment from Sharon Lloyd
Comment from Lessli Nielsen
Comment from Susan Tucker
Comment from David Katz
Comment from Hal Pillinger
Comment from Karissa Zastrow

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17829
NOAA-NMFS-2020-0031-DRAFT-17830
NOAA-NMFS-2020-0031-DRAFT-17831
NOAA-NMFS-2020-0031-DRAFT-17832
NOAA-NMFS-2020-0031-DRAFT-17833
NOAA-NMFS-2020-0031-DRAFT-17834
NOAA-NMFS-2020-0031-DRAFT-17835
NOAA-NMFS-2020-0031-DRAFT-17836
NOAA-NMFS-2020-0031-DRAFT-17837
NOAA-NMFS-2020-0031-DRAFT-17838
NOAA-NMFS-2020-0031-DRAFT-17839
NOAA-NMFS-2020-0031-DRAFT-17841
NOAA-NMFS-2020-0031-DRAFT-17842
NOAA-NMFS-2020-0031-DRAFT-17843
NOAA-NMFS-2020-0031-DRAFT-17844
NOAA-NMFS-2020-0031-DRAFT-17845
NOAA-NMFS-2020-0031-DRAFT-17846
NOAA-NMFS-2020-0031-DRAFT-17848
NOAA-NMFS-2020-0031-DRAFT-17849
NOAA-NMFS-2020-0031-DRAFT-17850
NOAA-NMFS-2020-0031-DRAFT-17851
NOAA-NMFS-2020-0031-DRAFT-17852
NOAA-NMFS-2020-0031-DRAFT-17853
NOAA-NMFS-2020-0031-DRAFT-17854
NOAA-NMFS-2020-0031-DRAFT-17855
NOAA-NMFS-2020-0031-DRAFT-17856
NOAA-NMFS-2020-0031-DRAFT-17857
NOAA-NMFS-2020-0031-DRAFT-17858
NOAA-NMFS-2020-0031-DRAFT-17859
NOAA-NMFS-2020-0031-DRAFT-17860
NOAA-NMFS-2020-0031-DRAFT-17861
NOAA-NMFS-2020-0031-DRAFT-17862
NOAA-NMFS-2020-0031-DRAFT-17863
NOAA-NMFS-2020-0031-DRAFT-17864
NOAA-NMFS-2020-0031-DRAFT-17865
NOAA-NMFS-2020-0031-DRAFT-17866
NOAA-NMFS-2020-0031-DRAFT-17867
NOAA-NMFS-2020-0031-DRAFT-17868
NOAA-NMFS-2020-0031-DRAFT-17869
NOAA-NMFS-2020-0031-DRAFT-17870
NOAA-NMFS-2020-0031-DRAFT-17871

Comment from Dena Desantis
Comment from John Picard
Comment from Rosemary Plonka
Comment from Lauren Felicione
Comment from Patrick Felix
Comment from Susan Ostlie
Comment from Kristen Frame
Comment from Darlene Carpenter
Comment from Vanessa Jamison
Comment from Gwen Gay
Comment from Ann Bein
Comment from Miriam Moran
Comment from Bill McCormick
Comment from Paul West
Comment from Jonathan Gigear
Comment from MICHAEL MEL
Comment from Paul Slack
Comment from V Garvy
Comment from Barbara Brockell
Comment from Cara O'Neill
Comment from Paula Giesing
Comment from Linda Fighera
Comment from Ben Grego
Comment from C B
Comment from Marla Echeverria
Comment from Marion Marsh
Comment from Tracy Nguyen
Comment from Jill Martin
Comment from Letitia Noel
Comment from Elsie Au
Comment from Kim Lobasso
Comment from Roi Mitchell
Comment from Donna Barham
Comment from Linda Bock
Comment from joseph Racano
Comment from Christina Babst
Comment from Perry Wong
Comment from WILLIAM goell
Comment from mia heavyrunner
Comment from Pat Condon
Comment from Starrlet Rogers

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12695
NOAA-NMFS-2020-0031-DRAFT-12696
NOAA-NMFS-2020-0031-DRAFT-12697
NOAA-NMFS-2020-0031-DRAFT-12698
NOAA-NMFS-2020-0031-DRAFT-12699
NOAA-NMFS-2020-0031-DRAFT-12700
NOAA-NMFS-2020-0031-DRAFT-12701
NOAA-NMFS-2020-0031-DRAFT-12702
NOAA-NMFS-2020-0031-DRAFT-12703
NOAA-NMFS-2020-0031-DRAFT-12704
NOAA-NMFS-2020-0031-DRAFT-12705
NOAA-NMFS-2020-0031-DRAFT-12706
NOAA-NMFS-2020-0031-DRAFT-12707
NOAA-NMFS-2020-0031-DRAFT-12708
NOAA-NMFS-2020-0031-DRAFT-12709
NOAA-NMFS-2020-0031-DRAFT-12710
NOAA-NMFS-2020-0031-DRAFT-12711
NOAA-NMFS-2020-0031-DRAFT-12712
NOAA-NMFS-2020-0031-DRAFT-12713
NOAA-NMFS-2020-0031-DRAFT-12714
NOAA-NMFS-2020-0031-DRAFT-12715
NOAA-NMFS-2020-0031-DRAFT-12716
NOAA-NMFS-2020-0031-DRAFT-12717
NOAA-NMFS-2020-0031-DRAFT-12718
NOAA-NMFS-2020-0031-DRAFT-12719
NOAA-NMFS-2020-0031-DRAFT-12720
NOAA-NMFS-2020-0031-DRAFT-12721
NOAA-NMFS-2020-0031-DRAFT-12722
NOAA-NMFS-2020-0031-DRAFT-12723
NOAA-NMFS-2020-0031-DRAFT-12724
NOAA-NMFS-2020-0031-DRAFT-12725
NOAA-NMFS-2020-0031-DRAFT-12726
NOAA-NMFS-2020-0031-DRAFT-12727
NOAA-NMFS-2020-0031-DRAFT-12728
NOAA-NMFS-2020-0031-DRAFT-12729
NOAA-NMFS-2020-0031-DRAFT-12730
NOAA-NMFS-2020-0031-DRAFT-12731
NOAA-NMFS-2020-0031-DRAFT-12732
NOAA-NMFS-2020-0031-DRAFT-12733
NOAA-NMFS-2020-0031-DRAFT-12734
NOAA-NMFS-2020-0031-DRAFT-12735

Comment from Lindy Von Dohlen
Comment from Andrew Joseph
Comment from Karen Morton
Comment from Lajeanne Leveton
Comment from Sarah Straus
Comment from cathi soule
Comment from Maryann Barulich
Comment from Wm Briggs
Comment from Judith Hansell
Comment from Gayle Countryman-Mills
Comment from Jamie Perron
Comment from G Caviglia
Comment from Joan Mahoney
Comment from William Evans
Comment from Dave Albrecht
Comment from MikeAnthony Moffa
Comment from Terri Richmond
Comment from Sheila Marshall
Comment from Annie Belt
Comment from Michael Renfrow
Comment from Anna Schwadron
Comment from Chris Davenport
Comment from Emily danielson
Comment from Kenya Pena
Comment from Adrian Bergeron
Comment from Helen Johnson
Comment from Jo Glancy
Comment from Deidre Gotjen
Comment from Andrelene Babbitt
Comment from Len Carella
Comment from Darleen Brown
Comment from Stephen Bohac
Comment from Luis Camero
Comment from Kun Kang
Comment from Faye Gregory
Comment from Ina Pillar
Comment from Robert Clark
Comment from Craig Grube
Comment from Bash Judy
Comment from steve zimet
Comment from Flo Vannoni

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17872
NOAA-NMFS-2020-0031-DRAFT-17873
NOAA-NMFS-2020-0031-DRAFT-17874
NOAA-NMFS-2020-0031-DRAFT-17875
NOAA-NMFS-2020-0031-DRAFT-17876
NOAA-NMFS-2020-0031-DRAFT-17877
NOAA-NMFS-2020-0031-DRAFT-17878
NOAA-NMFS-2020-0031-DRAFT-17879
NOAA-NMFS-2020-0031-DRAFT-17880
NOAA-NMFS-2020-0031-DRAFT-17881
NOAA-NMFS-2020-0031-DRAFT-17882
NOAA-NMFS-2020-0031-DRAFT-17883
NOAA-NMFS-2020-0031-DRAFT-17884
NOAA-NMFS-2020-0031-DRAFT-17885
NOAA-NMFS-2020-0031-DRAFT-17886
NOAA-NMFS-2020-0031-DRAFT-17887
NOAA-NMFS-2020-0031-DRAFT-17888
NOAA-NMFS-2020-0031-DRAFT-17889
NOAA-NMFS-2020-0031-DRAFT-17890
NOAA-NMFS-2020-0031-DRAFT-17891
NOAA-NMFS-2020-0031-DRAFT-17892
NOAA-NMFS-2020-0031-DRAFT-17893
NOAA-NMFS-2020-0031-DRAFT-17894
NOAA-NMFS-2020-0031-DRAFT-17895
NOAA-NMFS-2020-0031-DRAFT-17896
NOAA-NMFS-2020-0031-DRAFT-17897
NOAA-NMFS-2020-0031-DRAFT-17898
NOAA-NMFS-2020-0031-DRAFT-17899
NOAA-NMFS-2020-0031-DRAFT-17900
NOAA-NMFS-2020-0031-DRAFT-17901
NOAA-NMFS-2020-0031-DRAFT-17902
NOAA-NMFS-2020-0031-DRAFT-17903
NOAA-NMFS-2020-0031-DRAFT-17905
NOAA-NMFS-2020-0031-DRAFT-17906
NOAA-NMFS-2020-0031-DRAFT-17907
NOAA-NMFS-2020-0031-DRAFT-17908
NOAA-NMFS-2020-0031-DRAFT-17909
NOAA-NMFS-2020-0031-DRAFT-17910
NOAA-NMFS-2020-0031-DRAFT-17911
NOAA-NMFS-2020-0031-DRAFT-17912
NOAA-NMFS-2020-0031-DRAFT-17913

Comment from Janice Schenfisch
Comment from mia heavyrunner
Comment from Maryann Piccione
Comment from Karen Fostel
Comment from Leonie Olin
Comment from Richard Maricic
Comment from Anissa Otero
Comment from Beth Larson
Comment from Nicholas Williams
Comment from Glenda V
Comment from J L Evans
Comment from Erin Garcia
Comment from Tom Armagost
Comment from Sandra Varvel
Comment from Carol Williamson
Comment from Kathleen Frasco
Comment from Deborah Cosentino
Comment from Marion Bennett
Comment from Maggie Rady
Comment from Lorraine Avallone
Comment from Terry Tedesco
Comment from Reginald Spengler
Comment from celine devlin
Comment from Patricia Blackwell
Marchant
Comment from Daviann McClurg
Comment from Taven Vergara
Comment from Trisha Picco
Comment from Amy Lund
Comment from Joan Arnold
Comment from Michael Young
Comment from Anthony Byrne
Comment from Karin Winter
Comment from Amanda Graham
Comment from Kevin Grimes
Comment from Tracey Jernigan Bethea
Comment from Aimee Johnson
Comment from Sheila Sartin
Comment from Sarah aquino
Comment from Heidi Powell
Comment from Marian Carter
Comment from Sonia King

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12736
NOAA-NMFS-2020-0031-DRAFT-12737
NOAA-NMFS-2020-0031-DRAFT-12738
NOAA-NMFS-2020-0031-DRAFT-12739
NOAA-NMFS-2020-0031-DRAFT-12740
NOAA-NMFS-2020-0031-DRAFT-12741
NOAA-NMFS-2020-0031-DRAFT-12742
NOAA-NMFS-2020-0031-DRAFT-12743
NOAA-NMFS-2020-0031-DRAFT-12744
NOAA-NMFS-2020-0031-DRAFT-12745
NOAA-NMFS-2020-0031-DRAFT-12746
NOAA-NMFS-2020-0031-DRAFT-12747
NOAA-NMFS-2020-0031-DRAFT-12748
NOAA-NMFS-2020-0031-DRAFT-12749
NOAA-NMFS-2020-0031-DRAFT-12750
NOAA-NMFS-2020-0031-DRAFT-12751
NOAA-NMFS-2020-0031-DRAFT-12752
NOAA-NMFS-2020-0031-DRAFT-12753
NOAA-NMFS-2020-0031-DRAFT-12754
NOAA-NMFS-2020-0031-DRAFT-12755
NOAA-NMFS-2020-0031-DRAFT-12756
NOAA-NMFS-2020-0031-DRAFT-12757
NOAA-NMFS-2020-0031-DRAFT-12758
NOAA-NMFS-2020-0031-DRAFT-12759
NOAA-NMFS-2020-0031-DRAFT-12760
NOAA-NMFS-2020-0031-DRAFT-12761
NOAA-NMFS-2020-0031-DRAFT-12762
NOAA-NMFS-2020-0031-DRAFT-12763
NOAA-NMFS-2020-0031-DRAFT-12764
NOAA-NMFS-2020-0031-DRAFT-12765
NOAA-NMFS-2020-0031-DRAFT-12766
NOAA-NMFS-2020-0031-DRAFT-12767
NOAA-NMFS-2020-0031-DRAFT-12768
NOAA-NMFS-2020-0031-DRAFT-12769
NOAA-NMFS-2020-0031-DRAFT-12770
NOAA-NMFS-2020-0031-DRAFT-12771
NOAA-NMFS-2020-0031-DRAFT-12772
NOAA-NMFS-2020-0031-DRAFT-12773
NOAA-NMFS-2020-0031-DRAFT-12774
NOAA-NMFS-2020-0031-DRAFT-12775
NOAA-NMFS-2020-0031-DRAFT-12776

Comment from James Langenhahn
Comment from Carole Criddle
Comment from Donald Greenberg
Comment from Amanda Jovanovich
Comment from Lyn Huston
Comment from Michael Sutera
Comment from Julia Cranmer
Comment from Therese DeBing
Comment from Lee White
Comment from Jamie Le
Comment from Mary Jeffrey
Comment from Adela Estudillo
Comment from Pamela Lanagan
Comment from Lynn Greene
Comment from Heidi Schmitz
Comment from Mark McQuitty
Comment from Diane Miller
Comment from Michael Goldberg
Comment from Hal Trufan
Comment from Deborah Allison
Comment from June MacArthur
Comment from Rob Rowe
Comment from Lillyam Barberi
Comment from Sacha de Nijs
Comment from Alix Nunez
Comment from Jeannie Boyd
Comment from Jon Singleton
Comment from Helen Miller
Comment from Alyssa Freeman
Comment from Roth Woods
Comment from Marie Young
Comment from Carolyn Eden
Comment from EllenJo Lancey
Comment from Christina Miller
Comment from Denise McGregor
Comment from steven nasta
Comment from Ayana Airakan
Comment from Diane Tabbott
Comment from Meredith Blackwell
Comment from Anne-Marie Mallon
Comment from Janet Kennington

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17914
NOAA-NMFS-2020-0031-DRAFT-17915
NOAA-NMFS-2020-0031-DRAFT-17916
NOAA-NMFS-2020-0031-DRAFT-17917
NOAA-NMFS-2020-0031-DRAFT-17918
NOAA-NMFS-2020-0031-DRAFT-17919
NOAA-NMFS-2020-0031-DRAFT-17920
NOAA-NMFS-2020-0031-DRAFT-17921
NOAA-NMFS-2020-0031-DRAFT-17922
NOAA-NMFS-2020-0031-DRAFT-17923
NOAA-NMFS-2020-0031-DRAFT-17924
NOAA-NMFS-2020-0031-DRAFT-17925
NOAA-NMFS-2020-0031-DRAFT-17926
NOAA-NMFS-2020-0031-DRAFT-17927
NOAA-NMFS-2020-0031-DRAFT-17928
NOAA-NMFS-2020-0031-DRAFT-17929
NOAA-NMFS-2020-0031-DRAFT-17930
NOAA-NMFS-2020-0031-DRAFT-17931
NOAA-NMFS-2020-0031-DRAFT-17932
NOAA-NMFS-2020-0031-DRAFT-17933
NOAA-NMFS-2020-0031-DRAFT-17934
NOAA-NMFS-2020-0031-DRAFT-17935
NOAA-NMFS-2020-0031-DRAFT-17936
NOAA-NMFS-2020-0031-DRAFT-17937
NOAA-NMFS-2020-0031-DRAFT-17938
NOAA-NMFS-2020-0031-DRAFT-17939
NOAA-NMFS-2020-0031-DRAFT-17940
NOAA-NMFS-2020-0031-DRAFT-17941
NOAA-NMFS-2020-0031-DRAFT-17943
NOAA-NMFS-2020-0031-DRAFT-17944
NOAA-NMFS-2020-0031-DRAFT-17945
NOAA-NMFS-2020-0031-DRAFT-17946
NOAA-NMFS-2020-0031-DRAFT-17947
NOAA-NMFS-2020-0031-DRAFT-17948
NOAA-NMFS-2020-0031-DRAFT-17949
NOAA-NMFS-2020-0031-DRAFT-17950
NOAA-NMFS-2020-0031-DRAFT-17951
NOAA-NMFS-2020-0031-DRAFT-17952
NOAA-NMFS-2020-0031-DRAFT-17953
NOAA-NMFS-2020-0031-DRAFT-17954
NOAA-NMFS-2020-0031-DRAFT-17955

Comment from Kathleen Kirkpatrik
Comment from Candace LaPorte
Comment from Petite Resch
Comment from Candace Russell
Comment from Karen Schoenhals
Comment from Imara Francioni
Comment from Lorraine Rowe Conlan
Comment from LM Drucker
Comment from Donald Betts
Comment from Dave and Rita Cross
Comment from Connie Raper
Comment from Paula Towry
Comment from Hilda Landaeta
Comment from Drena LaPointe
Comment from Julie Fisher
Comment from Barbara Ramirez
Comment from Mika Gentili Lloyd
Comment from Dawn Mello
Comment from Catherine Krug
Comment from Rita D
Comment from Lillian Kraemer
Comment from Craig Carpenter
Comment from Erin Ferguson
Comment from Michael Krane
Comment from Catherine Alsafi
Comment from Eleanor Porciello
Comment from Mary Helen Venos
Comment from Margaret Adams
Comment from Claudia Folch
Comment from William Morrow
Comment from Ami Jambusaria
Comment from Kitty Kessler
Comment from Kellen Dunn
Comment from Debbie Johnson
Comment from Patti Schultze
Comment from Linda Tonnesen
Comment from Erik Carlson
Comment from Anne Grime
Comment from Amber Abascal
Comment from Frances Blair
Comment from Paul Blackburn

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12777
NOAA-NMFS-2020-0031-DRAFT-12778
NOAA-NMFS-2020-0031-DRAFT-12779
NOAA-NMFS-2020-0031-DRAFT-12780
NOAA-NMFS-2020-0031-DRAFT-12781
NOAA-NMFS-2020-0031-DRAFT-12782
NOAA-NMFS-2020-0031-DRAFT-12783
NOAA-NMFS-2020-0031-DRAFT-12784
NOAA-NMFS-2020-0031-DRAFT-12785
NOAA-NMFS-2020-0031-DRAFT-12786
NOAA-NMFS-2020-0031-DRAFT-12787
NOAA-NMFS-2020-0031-DRAFT-12788
NOAA-NMFS-2020-0031-DRAFT-12789
NOAA-NMFS-2020-0031-DRAFT-12790
NOAA-NMFS-2020-0031-DRAFT-12791
NOAA-NMFS-2020-0031-DRAFT-12792
NOAA-NMFS-2020-0031-DRAFT-12793
NOAA-NMFS-2020-0031-DRAFT-12794
NOAA-NMFS-2020-0031-DRAFT-12795
NOAA-NMFS-2020-0031-DRAFT-12796
NOAA-NMFS-2020-0031-DRAFT-12797
NOAA-NMFS-2020-0031-DRAFT-12798
NOAA-NMFS-2020-0031-DRAFT-12799
NOAA-NMFS-2020-0031-DRAFT-12800
NOAA-NMFS-2020-0031-DRAFT-12801
NOAA-NMFS-2020-0031-DRAFT-12802
NOAA-NMFS-2020-0031-DRAFT-12803
NOAA-NMFS-2020-0031-DRAFT-12804
NOAA-NMFS-2020-0031-DRAFT-12805
NOAA-NMFS-2020-0031-DRAFT-12806
NOAA-NMFS-2020-0031-DRAFT-12807
NOAA-NMFS-2020-0031-DRAFT-12808
NOAA-NMFS-2020-0031-DRAFT-12809
NOAA-NMFS-2020-0031-DRAFT-12810
NOAA-NMFS-2020-0031-DRAFT-12811
NOAA-NMFS-2020-0031-DRAFT-12812
NOAA-NMFS-2020-0031-DRAFT-12813
NOAA-NMFS-2020-0031-DRAFT-12814
NOAA-NMFS-2020-0031-DRAFT-12815
NOAA-NMFS-2020-0031-DRAFT-12816
NOAA-NMFS-2020-0031-DRAFT-12817

Comment from Sharyn Dreyer
Comment from Ahmet Argon
Comment from Frank Boggio
Comment from Thomas Berg
Comment from Larry Lewis
Comment from Bernadette Andaloro
Comment from Terry Hill
Comment from Sandra Barros
Comment from Nancy Boderick
Comment from Deb Christensen
Comment from Mary Guard
Comment from Jean Clement
Comment from Cindy Kasnicka
Comment from Julie Beer
Comment from Lisa Wirth
Comment from Laurie Ryan
Comment from Patricia Johnson
Comment from Tiffany Ehnes
Comment from Louise Schwartz
Comment from Ron Season
Comment from carolyn massey
Comment from Marilyn Koff
Comment from James Falsken
Comment from Robert Gardiner
Comment from Jean Chagnon
Comment from Steven Skal
Comment from Scott Crockett
Comment from Bruce Triplett
Comment from Todd Reich
Comment from Donna Simmonds
Comment from joyce kolasa
Comment from Scott Crockett
Comment from diana kolaski
Comment from Phyllis Perna
Comment from Rachel Cox
Comment from Malcolm Glass
Comment from Derinda Nilsson
Comment from Geraldine Battistessa
Comment from Dave Beck
Comment from ROBERT HARRIS
Comment from Devin Baker

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17956
NOAA-NMFS-2020-0031-DRAFT-17957
NOAA-NMFS-2020-0031-DRAFT-17958
NOAA-NMFS-2020-0031-DRAFT-17959
NOAA-NMFS-2020-0031-DRAFT-17960
NOAA-NMFS-2020-0031-DRAFT-17961
NOAA-NMFS-2020-0031-DRAFT-17962
NOAA-NMFS-2020-0031-DRAFT-17963
NOAA-NMFS-2020-0031-DRAFT-17964
NOAA-NMFS-2020-0031-DRAFT-17965
NOAA-NMFS-2020-0031-DRAFT-17966
NOAA-NMFS-2020-0031-DRAFT-17967
NOAA-NMFS-2020-0031-DRAFT-17968
NOAA-NMFS-2020-0031-DRAFT-17969
NOAA-NMFS-2020-0031-DRAFT-17970
NOAA-NMFS-2020-0031-DRAFT-17971
NOAA-NMFS-2020-0031-DRAFT-17972
NOAA-NMFS-2020-0031-DRAFT-17973
NOAA-NMFS-2020-0031-DRAFT-17974
NOAA-NMFS-2020-0031-DRAFT-17975
NOAA-NMFS-2020-0031-DRAFT-17976
NOAA-NMFS-2020-0031-DRAFT-17977
NOAA-NMFS-2020-0031-DRAFT-17978
NOAA-NMFS-2020-0031-DRAFT-17979
NOAA-NMFS-2020-0031-DRAFT-17980
NOAA-NMFS-2020-0031-DRAFT-17982
NOAA-NMFS-2020-0031-DRAFT-17983
NOAA-NMFS-2020-0031-DRAFT-17984
NOAA-NMFS-2020-0031-DRAFT-17985
NOAA-NMFS-2020-0031-DRAFT-17986
NOAA-NMFS-2020-0031-DRAFT-17987
NOAA-NMFS-2020-0031-DRAFT-17988
NOAA-NMFS-2020-0031-DRAFT-17989
NOAA-NMFS-2020-0031-DRAFT-17990
NOAA-NMFS-2020-0031-DRAFT-17991
NOAA-NMFS-2020-0031-DRAFT-17992
NOAA-NMFS-2020-0031-DRAFT-17993
NOAA-NMFS-2020-0031-DRAFT-17994
NOAA-NMFS-2020-0031-DRAFT-17995
NOAA-NMFS-2020-0031-DRAFT-17996
NOAA-NMFS-2020-0031-DRAFT-17997

Comment from Loisann Sciarrillo
Comment from Monica Defelice
Comment from Caroline Chesebrough
Comment from Palmeta Baier
Comment from Jana Harker
Comment from David Suarez
Comment from Kelly Chenoweth
Comment from Vickie Mowry
Comment from Aaron Beer
Comment from Hal Trefry
Comment from Jamie Jansen
Comment from Nancy White
Comment from Sissi Asperti
Comment from Dana Palka
Comment from David Mowry
Comment from Marcus Gottlieb
Comment from Shirley Minich
Comment from edna anderson
Comment from Jennifer Shea
Comment from Cindy Alba
Comment from Mary White
Comment from gregory a Clewell
Comment from Jill Klein
Comment from Sheila Marshall
Comment from Elaine Livingston
Comment from Catherine Macan
Comment from Julie Roedel
Comment from Sheila Marshall
Comment from Charlotte Reichert
Comment from Dorothy Macnak
Comment from Robert and Susan
Puscheck
Comment from Sandi Petty
Comment from Gabriele Ansay
Comment from Frankie Harris
Comment from Lillian Kraemer
Comment from Sam Scirenco
Comment from Kit Dugan
Comment from Lori Weber
Comment from Teri Luttrell Rowan
Comment from Maria Grigoriadis
Comment from Michelle Blackley

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12818
NOAA-NMFS-2020-0031-DRAFT-12819
NOAA-NMFS-2020-0031-DRAFT-12820
NOAA-NMFS-2020-0031-DRAFT-12821
NOAA-NMFS-2020-0031-DRAFT-12822
NOAA-NMFS-2020-0031-DRAFT-12823
NOAA-NMFS-2020-0031-DRAFT-12824
NOAA-NMFS-2020-0031-DRAFT-12825
NOAA-NMFS-2020-0031-DRAFT-12826
NOAA-NMFS-2020-0031-DRAFT-12827
NOAA-NMFS-2020-0031-DRAFT-12828
NOAA-NMFS-2020-0031-DRAFT-12829
NOAA-NMFS-2020-0031-DRAFT-12830
NOAA-NMFS-2020-0031-DRAFT-12831
NOAA-NMFS-2020-0031-DRAFT-12832
NOAA-NMFS-2020-0031-DRAFT-12833
NOAA-NMFS-2020-0031-DRAFT-12834
NOAA-NMFS-2020-0031-DRAFT-12835
NOAA-NMFS-2020-0031-DRAFT-12836
NOAA-NMFS-2020-0031-DRAFT-12837
NOAA-NMFS-2020-0031-DRAFT-12838
NOAA-NMFS-2020-0031-DRAFT-12839
NOAA-NMFS-2020-0031-DRAFT-12840
NOAA-NMFS-2020-0031-DRAFT-12841
NOAA-NMFS-2020-0031-DRAFT-12842
NOAA-NMFS-2020-0031-DRAFT-12843
NOAA-NMFS-2020-0031-DRAFT-12844
NOAA-NMFS-2020-0031-DRAFT-12845
NOAA-NMFS-2020-0031-DRAFT-12846
NOAA-NMFS-2020-0031-DRAFT-12847
NOAA-NMFS-2020-0031-DRAFT-12848
NOAA-NMFS-2020-0031-DRAFT-12849
NOAA-NMFS-2020-0031-DRAFT-12850
NOAA-NMFS-2020-0031-DRAFT-12851
NOAA-NMFS-2020-0031-DRAFT-12852
NOAA-NMFS-2020-0031-DRAFT-12853
NOAA-NMFS-2020-0031-DRAFT-12854
NOAA-NMFS-2020-0031-DRAFT-12855
NOAA-NMFS-2020-0031-DRAFT-12856
NOAA-NMFS-2020-0031-DRAFT-12857
NOAA-NMFS-2020-0031-DRAFT-12858

Comment from Steven Fenster
Comment from Marcia Behrens
Comment from Justin Stricker
Comment from Leigh Slater
Comment from Garvey Alyson
Comment from Robert Tinsley
Comment from Sherrill Futrell
Comment from Rob Seltzer
Comment from LJ Lanfranchi
Comment from Gay Kramer-Dodd
Comment from Paul Lima
Comment from Anna Towns
Comment from Lisabeth Faller
Comment from CARL DETTWILER
Comment from Kristen Hermel
Comment from Karen Brant
Comment from Catherine Kowalczyk.
Comment from Christina Cowan
Comment from Debra Sicard
Comment from Martin Tripp
Comment from carolyn massey
Comment from Rachel Weber
Comment from Cathy Zollo
Comment from Andrea Prieto
Comment from Fran Ransom
Comment from James Bartlett
Comment from Serena Van Buskirk
Comment from Karina Dansie
Comment from Myrna Docherty
Comment from Michael Gennarelli
Comment from Clayton Jones
Comment from Dee Green
Comment from Gloria McCracken
Comment from La Standridge
Comment from Gabriel Sheets
Comment from Kristina MacKinnon
Comment from Cathy Baynar
Comment from Cay White
Comment from Susan Siniard
Comment from Kari Jackson
Comment from Barry De Jasu

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17998
NOAA-NMFS-2020-0031-DRAFT-17999
NOAA-NMFS-2020-0031-DRAFT-18000
NOAA-NMFS-2020-0031-DRAFT-18001
NOAA-NMFS-2020-0031-DRAFT-18002
NOAA-NMFS-2020-0031-DRAFT-18003
NOAA-NMFS-2020-0031-DRAFT-18004
NOAA-NMFS-2020-0031-DRAFT-18005
NOAA-NMFS-2020-0031-DRAFT-18006
NOAA-NMFS-2020-0031-DRAFT-18007
NOAA-NMFS-2020-0031-DRAFT-18008
NOAA-NMFS-2020-0031-DRAFT-18009
NOAA-NMFS-2020-0031-DRAFT-18010
NOAA-NMFS-2020-0031-DRAFT-18011
NOAA-NMFS-2020-0031-DRAFT-18012
NOAA-NMFS-2020-0031-DRAFT-18013
NOAA-NMFS-2020-0031-DRAFT-18014
NOAA-NMFS-2020-0031-DRAFT-18015
NOAA-NMFS-2020-0031-DRAFT-18016
NOAA-NMFS-2020-0031-DRAFT-18017
NOAA-NMFS-2020-0031-DRAFT-18018
NOAA-NMFS-2020-0031-DRAFT-18019
NOAA-NMFS-2020-0031-DRAFT-18020
NOAA-NMFS-2020-0031-DRAFT-18021
NOAA-NMFS-2020-0031-DRAFT-18022
NOAA-NMFS-2020-0031-DRAFT-18023
NOAA-NMFS-2020-0031-DRAFT-18024
NOAA-NMFS-2020-0031-DRAFT-18025
NOAA-NMFS-2020-0031-DRAFT-18026
NOAA-NMFS-2020-0031-DRAFT-18027
NOAA-NMFS-2020-0031-DRAFT-18028
NOAA-NMFS-2020-0031-DRAFT-18029
NOAA-NMFS-2020-0031-DRAFT-18030
NOAA-NMFS-2020-0031-DRAFT-18031
NOAA-NMFS-2020-0031-DRAFT-18032
NOAA-NMFS-2020-0031-DRAFT-18033
NOAA-NMFS-2020-0031-DRAFT-18034
NOAA-NMFS-2020-0031-DRAFT-18035
NOAA-NMFS-2020-0031-DRAFT-18036
NOAA-NMFS-2020-0031-DRAFT-18037
NOAA-NMFS-2020-0031-DRAFT-18038

Comment from Sandra Russell
Comment from Diana Sinclair
Comment from Lisa Eddy
Comment from Karen Delgado
Comment from Debi McDowell
Comment from Twyla Meyer
Comment from Megan Ramsey
Comment from Aaron Dukes
Comment from Beth Dubay
Comment from Nadine Parish
Comment from Jonathan Hartman
Comment from Jodi Jackson
Comment from Madalyn Benoit
Comment from Trish Sanford
Comment from Sarah Kreisher
Comment from Bonnie Hearthstone
Comment from Lynda Zehnder
Comment from Cindy Jefferys
Comment from Linda Larsen
Comment from Alan Carter
Comment from Shandra Officer
Comment from Jeannine Guern
Comment from David Amrod
Comment from Mary Cato
Comment from Joyce Harris
Comment from Alyce Fritch
Comment from Nancy Dezio
Comment from Susan Farrell
Comment from Margaret Bachtler
Comment from Maryann Kage
Comment from Michael Henderson
Comment from Gary Cantara
Comment from Hannah Liu
Comment from RONALD FARRELL
Comment from Hayley Somers
Comment from Chris Drumright
Comment from Becky Calhoun
Comment from Debbie Sequichie Kerchee
Comment from Bernadette Gero
Comment from Hayley Somers
Comment from Rita Jaskowitz

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12859
NOAA-NMFS-2020-0031-DRAFT-12860
NOAA-NMFS-2020-0031-DRAFT-12861
NOAA-NMFS-2020-0031-DRAFT-12862
NOAA-NMFS-2020-0031-DRAFT-12863
NOAA-NMFS-2020-0031-DRAFT-12864
NOAA-NMFS-2020-0031-DRAFT-12865
NOAA-NMFS-2020-0031-DRAFT-12866
NOAA-NMFS-2020-0031-DRAFT-12867
NOAA-NMFS-2020-0031-DRAFT-12868
NOAA-NMFS-2020-0031-DRAFT-12869
NOAA-NMFS-2020-0031-DRAFT-12870
NOAA-NMFS-2020-0031-DRAFT-12871
NOAA-NMFS-2020-0031-DRAFT-12872
NOAA-NMFS-2020-0031-DRAFT-12873
NOAA-NMFS-2020-0031-DRAFT-12874
NOAA-NMFS-2020-0031-DRAFT-12875
NOAA-NMFS-2020-0031-DRAFT-12876
NOAA-NMFS-2020-0031-DRAFT-12877
NOAA-NMFS-2020-0031-DRAFT-12878
NOAA-NMFS-2020-0031-DRAFT-12879
NOAA-NMFS-2020-0031-DRAFT-12880
NOAA-NMFS-2020-0031-DRAFT-12881
NOAA-NMFS-2020-0031-DRAFT-12882
NOAA-NMFS-2020-0031-DRAFT-12883
NOAA-NMFS-2020-0031-DRAFT-12884
NOAA-NMFS-2020-0031-DRAFT-12885
NOAA-NMFS-2020-0031-DRAFT-12886
NOAA-NMFS-2020-0031-DRAFT-12887
NOAA-NMFS-2020-0031-DRAFT-12888
NOAA-NMFS-2020-0031-DRAFT-12889
NOAA-NMFS-2020-0031-DRAFT-12890
NOAA-NMFS-2020-0031-DRAFT-12891
NOAA-NMFS-2020-0031-DRAFT-12892
NOAA-NMFS-2020-0031-DRAFT-12893
NOAA-NMFS-2020-0031-DRAFT-12894
NOAA-NMFS-2020-0031-DRAFT-12895
NOAA-NMFS-2020-0031-DRAFT-12896
NOAA-NMFS-2020-0031-DRAFT-12897
NOAA-NMFS-2020-0031-DRAFT-12898
NOAA-NMFS-2020-0031-DRAFT-12899

Comment from Sharon Edmondson
Comment from Russell Stone
Comment from Robert Fisher
Comment from Alyssa Melton
Comment from G J
Comment from Michael Utley
Comment from Ned Overton
Comment from Kat Davis
Comment from Robert Lentz
Comment from Sharon Fetter
Comment from peter souza
Comment from Cynthia Slomin
Comment from Alfred Epding
Comment from Brady Hurley
Comment from Joan Johnson
Comment from Laura Thurner
Comment from Lisa Brehm
Comment from Sharon Wushensky
Comment from Diana Munson
Comment from Michele Ondre
Comment from Todd Heiler
Comment from Iris Shpak
Comment from Barb Stenross
Comment from Belinda Dodd
Comment from Lynn Dimmick
Comment from Janet Rafferty
Comment from Deborah Miller
Comment from diane marchisio
Comment from Gaia Schubert
Comment from patricia shore
Comment from Nancy Buchik
Comment from Cynthia Springer
Comment from matt ravenda
Comment from Mary Southard
Comment from Colleen Crowden
Comment from Allan Chen
Comment from Glenn Pierce
Comment from Pamela Esser
Comment from Michael Henderson
Comment from Susan Anduskey
Comment from Barbara Merrill

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18039
NOAA-NMFS-2020-0031-DRAFT-18040
NOAA-NMFS-2020-0031-DRAFT-18041
NOAA-NMFS-2020-0031-DRAFT-18042
NOAA-NMFS-2020-0031-DRAFT-18043
NOAA-NMFS-2020-0031-DRAFT-18044
NOAA-NMFS-2020-0031-DRAFT-18045
NOAA-NMFS-2020-0031-DRAFT-18046
NOAA-NMFS-2020-0031-DRAFT-18047
NOAA-NMFS-2020-0031-DRAFT-18048
NOAA-NMFS-2020-0031-DRAFT-18049
NOAA-NMFS-2020-0031-DRAFT-18050
NOAA-NMFS-2020-0031-DRAFT-18051
NOAA-NMFS-2020-0031-DRAFT-18053
NOAA-NMFS-2020-0031-DRAFT-18054
NOAA-NMFS-2020-0031-DRAFT-18055
NOAA-NMFS-2020-0031-DRAFT-18056
NOAA-NMFS-2020-0031-DRAFT-18057
NOAA-NMFS-2020-0031-DRAFT-18058
NOAA-NMFS-2020-0031-DRAFT-18059
NOAA-NMFS-2020-0031-DRAFT-18060
NOAA-NMFS-2020-0031-DRAFT-18061
NOAA-NMFS-2020-0031-DRAFT-18062
NOAA-NMFS-2020-0031-DRAFT-18063
NOAA-NMFS-2020-0031-DRAFT-18064
NOAA-NMFS-2020-0031-DRAFT-18065
NOAA-NMFS-2020-0031-DRAFT-18066
NOAA-NMFS-2020-0031-DRAFT-18067
NOAA-NMFS-2020-0031-DRAFT-18068
NOAA-NMFS-2020-0031-DRAFT-18069
NOAA-NMFS-2020-0031-DRAFT-18070
NOAA-NMFS-2020-0031-DRAFT-18071
NOAA-NMFS-2020-0031-DRAFT-18072
NOAA-NMFS-2020-0031-DRAFT-18073
NOAA-NMFS-2020-0031-DRAFT-18074
NOAA-NMFS-2020-0031-DRAFT-18075
NOAA-NMFS-2020-0031-DRAFT-18076
NOAA-NMFS-2020-0031-DRAFT-18077
NOAA-NMFS-2020-0031-DRAFT-18078
NOAA-NMFS-2020-0031-DRAFT-18079
NOAA-NMFS-2020-0031-DRAFT-18080

Comment from Helen Blue
Comment from Frank Pilholski
Comment from Debora Moon
Comment from Jaedra Luke
Comment from Becky McClain
Comment from Joyce Maloney
Comment from Sara Lazarus
Comment from Ralph Santana
Comment from barry farley
Comment from Nasrin Mazuji
Comment from Kristof Haavik
Comment from Elizabeth Shepherd
Comment from Colleen Carroll
Comment from Tessa Ryan
Comment from chris burns
Comment from Cal Meuser
Comment from Carla Morin
Comment from Julio Ruben Terveen
Comment from Elke Binder
Comment from Gail Ferriera
Comment from Elizabeth Metcalf
Comment from Tajeer Robinson
Comment from Lillyam Barberi
Comment from Georgiann Young
Comment from Charleen Strelke
Comment from Sharon Brown
Comment from Gloria Walters
Comment from Gary Cantara
Comment from Irvonne Newman
Comment from Deborah Williams
Comment from Anna Lipsig
Comment from Tina Pirazzi
Comment from Diane Berliner
Comment from Donald Strohm
Comment from Lisa Mellinger
Comment from kathy grieves
Comment from Paula Loftis
Comment from Leslie Richardson
Comment from Yazmin Gonzalez
Comment from Carol Lynn Anderson
Comment from ALAN MURAWSKI

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12900
NOAA-NMFS-2020-0031-DRAFT-12901
NOAA-NMFS-2020-0031-DRAFT-12902
NOAA-NMFS-2020-0031-DRAFT-12903
NOAA-NMFS-2020-0031-DRAFT-12904
NOAA-NMFS-2020-0031-DRAFT-12905
NOAA-NMFS-2020-0031-DRAFT-12906
NOAA-NMFS-2020-0031-DRAFT-12907
NOAA-NMFS-2020-0031-DRAFT-12908
NOAA-NMFS-2020-0031-DRAFT-12909
NOAA-NMFS-2020-0031-DRAFT-12910
NOAA-NMFS-2020-0031-DRAFT-12911
NOAA-NMFS-2020-0031-DRAFT-12912
NOAA-NMFS-2020-0031-DRAFT-12913
NOAA-NMFS-2020-0031-DRAFT-12914
NOAA-NMFS-2020-0031-DRAFT-12915
NOAA-NMFS-2020-0031-DRAFT-12916
NOAA-NMFS-2020-0031-DRAFT-12917
NOAA-NMFS-2020-0031-DRAFT-12918
NOAA-NMFS-2020-0031-DRAFT-12919
NOAA-NMFS-2020-0031-DRAFT-12920
NOAA-NMFS-2020-0031-DRAFT-12921
NOAA-NMFS-2020-0031-DRAFT-12922
NOAA-NMFS-2020-0031-DRAFT-12923
NOAA-NMFS-2020-0031-DRAFT-12924
NOAA-NMFS-2020-0031-DRAFT-12925
NOAA-NMFS-2020-0031-DRAFT-12926
NOAA-NMFS-2020-0031-DRAFT-12927
NOAA-NMFS-2020-0031-DRAFT-12928
NOAA-NMFS-2020-0031-DRAFT-12929
NOAA-NMFS-2020-0031-DRAFT-12930
NOAA-NMFS-2020-0031-DRAFT-12931
NOAA-NMFS-2020-0031-DRAFT-12932
NOAA-NMFS-2020-0031-DRAFT-12933
NOAA-NMFS-2020-0031-DRAFT-12934
NOAA-NMFS-2020-0031-DRAFT-12935
NOAA-NMFS-2020-0031-DRAFT-12936
NOAA-NMFS-2020-0031-DRAFT-12937
NOAA-NMFS-2020-0031-DRAFT-12938
NOAA-NMFS-2020-0031-DRAFT-12939
NOAA-NMFS-2020-0031-DRAFT-12940

Comment from Judith Hansell
Comment from Art Bogie
Comment from Brian Sesack
Comment from Sandra Zaninovich
Comment from Kirsten Perez
Comment from Evan Krichevsky
Comment from Trisha Sherman
Comment from Catherine Tucher
Comment from Johana Flores
Comment from Scott Kanter
Comment from Melene Rose
Comment from Kristine Moy
Comment from Pat Hanbury
Comment from bernard hochendoner
Comment from Nanciann Rogers
Comment from JULIEN JEGOU
Comment from Harriet Redwine
Comment from Peggy Baldwin
Comment from Ann Barnes
Comment from Roni madorma
Comment from Ann Barnes
Comment from Chloe Key
Comment from Gunther Ruckl
Comment from Elizabeth Seltzer
Comment from kathryn broughton
Comment from SUSAN GALANTE
Comment from Sandra Kuschel
Comment from Sandra Kuschel
Comment from Sandra Kuschel
Comment from Sandra Kuschel
Comment from Rebecca Picton
Comment from Gracie King
Comment from Anavai Harish
Comment from Maureen Schiener
Comment from Susan Harmon
Comment from David Silver
Comment from Karol Klein
Comment from Dan Schneider
Comment from Lacey Chaffee
Comment from Patricia Gehring
Comment from Raymond McGrath

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18081
NOAA-NMFS-2020-0031-DRAFT-18082
NOAA-NMFS-2020-0031-DRAFT-18083
NOAA-NMFS-2020-0031-DRAFT-18084
NOAA-NMFS-2020-0031-DRAFT-18085
NOAA-NMFS-2020-0031-DRAFT-18086
NOAA-NMFS-2020-0031-DRAFT-18087
NOAA-NMFS-2020-0031-DRAFT-18088
NOAA-NMFS-2020-0031-DRAFT-18089
NOAA-NMFS-2020-0031-DRAFT-18090
NOAA-NMFS-2020-0031-DRAFT-18091
NOAA-NMFS-2020-0031-DRAFT-18092
NOAA-NMFS-2020-0031-DRAFT-18093
NOAA-NMFS-2020-0031-DRAFT-18094
NOAA-NMFS-2020-0031-DRAFT-18095
NOAA-NMFS-2020-0031-DRAFT-18096
NOAA-NMFS-2020-0031-DRAFT-18097
NOAA-NMFS-2020-0031-DRAFT-18098
NOAA-NMFS-2020-0031-DRAFT-18099
NOAA-NMFS-2020-0031-DRAFT-18100
NOAA-NMFS-2020-0031-DRAFT-18101
NOAA-NMFS-2020-0031-DRAFT-18102
NOAA-NMFS-2020-0031-DRAFT-18103
NOAA-NMFS-2020-0031-DRAFT-18104
NOAA-NMFS-2020-0031-DRAFT-18105
NOAA-NMFS-2020-0031-DRAFT-18106
NOAA-NMFS-2020-0031-DRAFT-18107
NOAA-NMFS-2020-0031-DRAFT-18108
NOAA-NMFS-2020-0031-DRAFT-18109
NOAA-NMFS-2020-0031-DRAFT-18110
NOAA-NMFS-2020-0031-DRAFT-18111
NOAA-NMFS-2020-0031-DRAFT-18112
NOAA-NMFS-2020-0031-DRAFT-18113
NOAA-NMFS-2020-0031-DRAFT-18114
NOAA-NMFS-2020-0031-DRAFT-18115
NOAA-NMFS-2020-0031-DRAFT-18116
NOAA-NMFS-2020-0031-DRAFT-18117
NOAA-NMFS-2020-0031-DRAFT-18118
NOAA-NMFS-2020-0031-DRAFT-18119
NOAA-NMFS-2020-0031-DRAFT-18120
NOAA-NMFS-2020-0031-DRAFT-18121

Comment from Norma Kline
Comment from Julie Block
Comment from Jennifer Taylor
Comment from Cindy Stein
Comment from David Stetler
Comment from Jamie Thomas
Comment from Debbie Dillon
Comment from Sue Rosenbach
Comment from Krystina Boyle
Comment from darcy lion
Comment from Toni Moore
Comment from Ruth Woodcock
Comment from Beverly Fowler
Comment from Greg Gazzana
Comment from Iraida Capaccio
Comment from Donna Nelson
Comment from Larry Crabtree
Comment from John Blaha
Comment from Martha D Perlmutter
Comment from Rich Mayerhofer
Comment from Carolyn Potts
Comment from Nicholas Bridgett
Comment from Sybil Tracey
Comment from Robin Kawecki
Comment from kristin carstarphen
Comment from Dee Dixson
Comment from Deborhah Calloway
Comment from linda petrulias
Comment from Aaron Irvin
Comment from Bruce Rauscher
Comment from Karin Hoggard
Comment from frank belcastro
Comment from anthony terrulli
Comment from Dawn Sweat
Comment from Pauline Bedford
Comment from Diane and Syd Marcus
Comment from JR Stratton
Comment from Seychelle Cannes
Comment from jim roberts
Comment from Sherre Lamberson
Comment from Susan Jordan

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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12941
NOAA-NMFS-2020-0031-DRAFT-12942
NOAA-NMFS-2020-0031-DRAFT-12943
NOAA-NMFS-2020-0031-DRAFT-12944
NOAA-NMFS-2020-0031-DRAFT-12945
NOAA-NMFS-2020-0031-DRAFT-12946
NOAA-NMFS-2020-0031-DRAFT-12947
NOAA-NMFS-2020-0031-DRAFT-12948
NOAA-NMFS-2020-0031-DRAFT-12949
NOAA-NMFS-2020-0031-DRAFT-12950
NOAA-NMFS-2020-0031-DRAFT-12951
NOAA-NMFS-2020-0031-DRAFT-12952
NOAA-NMFS-2020-0031-DRAFT-12953
NOAA-NMFS-2020-0031-DRAFT-12954
NOAA-NMFS-2020-0031-DRAFT-12955
NOAA-NMFS-2020-0031-DRAFT-12956
NOAA-NMFS-2020-0031-DRAFT-12957
NOAA-NMFS-2020-0031-DRAFT-12958
NOAA-NMFS-2020-0031-DRAFT-12959
NOAA-NMFS-2020-0031-DRAFT-12960
NOAA-NMFS-2020-0031-DRAFT-12961
NOAA-NMFS-2020-0031-DRAFT-12962
NOAA-NMFS-2020-0031-DRAFT-12963
NOAA-NMFS-2020-0031-DRAFT-12964
NOAA-NMFS-2020-0031-DRAFT-12965
NOAA-NMFS-2020-0031-DRAFT-12966
NOAA-NMFS-2020-0031-DRAFT-12967
NOAA-NMFS-2020-0031-DRAFT-12968
NOAA-NMFS-2020-0031-DRAFT-12969
NOAA-NMFS-2020-0031-DRAFT-12970
NOAA-NMFS-2020-0031-DRAFT-12971
NOAA-NMFS-2020-0031-DRAFT-12972
NOAA-NMFS-2020-0031-DRAFT-12973
NOAA-NMFS-2020-0031-DRAFT-12974
NOAA-NMFS-2020-0031-DRAFT-12975
NOAA-NMFS-2020-0031-DRAFT-12976
NOAA-NMFS-2020-0031-DRAFT-12977
NOAA-NMFS-2020-0031-DRAFT-12978
NOAA-NMFS-2020-0031-DRAFT-12979
NOAA-NMFS-2020-0031-DRAFT-12980
NOAA-NMFS-2020-0031-DRAFT-12981

Comment from Marguerite Shuster
Comment from Kathryn Conrad
Comment from Jole Lheureux
Comment from Bonnie New
Comment from Linda Gillaspy
Comment from Gabriel Alberti
Comment from Patricia Jones-Stahnke
Comment from Suzanne Kalbach
Comment from Dorota Kolodziejczyk
Comment from Karen Waltman
Comment from Michael Bankston
Comment from Kenneth Hildebrandt
Comment from Robert Swett
Comment from Heather Turbush
Comment from Heather Marsh
Comment from A. Zamudio
Comment from David Levy
Comment from Barry Marchessault
Comment from Tanya Hatfield
Comment from Julie Roe
Comment from Bonita Thomas
Comment from Marsha Lowry
Comment from Steven Garland
Comment from PAMELA SMITH
Comment from Kathy Chakoutis
Comment from Radha Shenoy
Comment from Lauren Mader
Comment from Cohn Nancy
Comment from Romona CzichosSlaughter
Comment from Phillip Hope
Comment from Robert Long
Comment from Anthony Yee
Comment from David Kaplan
Comment from Ronald Houghton
Comment from Janet Glaspie
Comment from Jenna Fallaw
Comment from Kay Olan
Comment from Braxton Worth
Comment from Ellen Ayalin
Comment from Jan McDonagh
Comment from Kerry Burkhardt

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18122
NOAA-NMFS-2020-0031-DRAFT-18123
NOAA-NMFS-2020-0031-DRAFT-18124
NOAA-NMFS-2020-0031-DRAFT-18125
NOAA-NMFS-2020-0031-DRAFT-18126
NOAA-NMFS-2020-0031-DRAFT-18127
NOAA-NMFS-2020-0031-DRAFT-18128
NOAA-NMFS-2020-0031-DRAFT-18129
NOAA-NMFS-2020-0031-DRAFT-18130
NOAA-NMFS-2020-0031-DRAFT-18131
NOAA-NMFS-2020-0031-DRAFT-18132
NOAA-NMFS-2020-0031-DRAFT-18134
NOAA-NMFS-2020-0031-DRAFT-18136
NOAA-NMFS-2020-0031-DRAFT-18137
NOAA-NMFS-2020-0031-DRAFT-18138
NOAA-NMFS-2020-0031-DRAFT-18139
NOAA-NMFS-2020-0031-DRAFT-18140
NOAA-NMFS-2020-0031-DRAFT-18141
NOAA-NMFS-2020-0031-DRAFT-18142
NOAA-NMFS-2020-0031-DRAFT-18143
NOAA-NMFS-2020-0031-DRAFT-18144
NOAA-NMFS-2020-0031-DRAFT-18145
NOAA-NMFS-2020-0031-DRAFT-18146
NOAA-NMFS-2020-0031-DRAFT-18147
NOAA-NMFS-2020-0031-DRAFT-18148
NOAA-NMFS-2020-0031-DRAFT-18149
NOAA-NMFS-2020-0031-DRAFT-18150
NOAA-NMFS-2020-0031-DRAFT-18151
NOAA-NMFS-2020-0031-DRAFT-18152
NOAA-NMFS-2020-0031-DRAFT-18153
NOAA-NMFS-2020-0031-DRAFT-18154
NOAA-NMFS-2020-0031-DRAFT-18155
NOAA-NMFS-2020-0031-DRAFT-18156
NOAA-NMFS-2020-0031-DRAFT-18157
NOAA-NMFS-2020-0031-DRAFT-18158
NOAA-NMFS-2020-0031-DRAFT-18159
NOAA-NMFS-2020-0031-DRAFT-18160
NOAA-NMFS-2020-0031-DRAFT-18161
NOAA-NMFS-2020-0031-DRAFT-18162
NOAA-NMFS-2020-0031-DRAFT-18163
NOAA-NMFS-2020-0031-DRAFT-18164

Comment from kaj oldenburg
Comment from David Sickles
Comment from Sue Johnston
Comment from Geoff Regalado
Comment from susi williams
Comment from Frank Ayers
Comment from Susan Emery
Comment from Dennis Hartman
Comment from Linda Weinberg
Comment from Nelson Baker
Comment from Leandra Block
Comment from Sunnie Noellert
Comment from Kathryn Melton
Comment from Jan Mcdonagh
Comment from Alexander Dolowitz
Comment from Jessica Mojica
Comment from T Johnson
Comment from Courtney Chandel
Comment from Tracy Gray
Comment from JoAnn Lopez
Comment from Gary Lichtenberg
Comment from Suzanne Hodges
Comment from Koral Campbell
Comment from Michael Lentini
Comment from Jewell batway
Comment from Melissa Newman
Comment from Tara Becsey
Comment from Starla Morgan
Comment from Leigh Winn
Comment from Karen Cornell
Comment from Lesa Mccoy
Comment from isabelle golion
Comment from V Psrks
Comment from Peter Burval
Comment from Lin Westler
Comment from Robin Patten
Comment from Marisa Landsberg
Comment from Maria Grigoriadis
Comment from Michelle Blackley
Comment from Anne Orticerio
Comment from Betty Green

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02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-12982
NOAA-NMFS-2020-0031-DRAFT-12983
NOAA-NMFS-2020-0031-DRAFT-12984
NOAA-NMFS-2020-0031-DRAFT-12986
NOAA-NMFS-2020-0031-DRAFT-12987
NOAA-NMFS-2020-0031-DRAFT-12988
NOAA-NMFS-2020-0031-DRAFT-12989
NOAA-NMFS-2020-0031-DRAFT-12990
NOAA-NMFS-2020-0031-DRAFT-12991
NOAA-NMFS-2020-0031-DRAFT-12992
NOAA-NMFS-2020-0031-DRAFT-12993
NOAA-NMFS-2020-0031-DRAFT-12994
NOAA-NMFS-2020-0031-DRAFT-12995
NOAA-NMFS-2020-0031-DRAFT-12997
NOAA-NMFS-2020-0031-DRAFT-12998
NOAA-NMFS-2020-0031-DRAFT-12999
NOAA-NMFS-2020-0031-DRAFT-13000
NOAA-NMFS-2020-0031-DRAFT-13001
NOAA-NMFS-2020-0031-DRAFT-13002
NOAA-NMFS-2020-0031-DRAFT-13004
NOAA-NMFS-2020-0031-DRAFT-13005
NOAA-NMFS-2020-0031-DRAFT-13006
NOAA-NMFS-2020-0031-DRAFT-13007
NOAA-NMFS-2020-0031-DRAFT-13008
NOAA-NMFS-2020-0031-DRAFT-13009
NOAA-NMFS-2020-0031-DRAFT-13010
NOAA-NMFS-2020-0031-DRAFT-13011
NOAA-NMFS-2020-0031-DRAFT-13012
NOAA-NMFS-2020-0031-DRAFT-13013
NOAA-NMFS-2020-0031-DRAFT-13014
NOAA-NMFS-2020-0031-DRAFT-13015
NOAA-NMFS-2020-0031-DRAFT-13016
NOAA-NMFS-2020-0031-DRAFT-13017
NOAA-NMFS-2020-0031-DRAFT-13018
NOAA-NMFS-2020-0031-DRAFT-13019
NOAA-NMFS-2020-0031-DRAFT-13020
NOAA-NMFS-2020-0031-DRAFT-13021
NOAA-NMFS-2020-0031-DRAFT-13022
NOAA-NMFS-2020-0031-DRAFT-13023
NOAA-NMFS-2020-0031-DRAFT-13024
NOAA-NMFS-2020-0031-DRAFT-13025

Comment from Celine Montijo
Comment from Diane Pierce
Comment from Hilda Gilman
Comment from Charlie Gedi
Comment from Gina Sheridan
Comment from Shani Schulman
Comment from Elaine Becker
Comment from Bonnie Orkow
Comment from Elizabeth Taylor
Comment from Jeri Romero
Comment from Ken Cohn
Comment from Maria Gabrielle
Comment from Maria Yepes
Comment from Stephanie McFadden
Comment from Peter Kahigian
Comment from Glenda Logan
Comment from Simah Kraus
Comment from Janet Romano
Comment from Kay Carey
Comment from Nancy Daniel
Comment from Judy Cassada
Comment from Jan Siemucha
Comment from Jeannine Lish
Comment from Rick Sparks
Comment from dana Bleckinger
Comment from Kelly Schumann
Comment from Maja Dordevic
Comment from Robert Burkowski
Comment from Tiffany Grant
Comment from Johnny Pflugrad
Comment from Timothy Beitel
Comment from Joan Rossignol
Comment from Chris Guillory
Comment from Mary Harte
Comment from Linda Savage
Comment from Jane hunziker
Comment from Aaron Kenna
Comment from Harriet McCleary
Comment from Peter Tegstad
Comment from Jane hunziker
Comment from Craig Guenther

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18165
NOAA-NMFS-2020-0031-DRAFT-18168
NOAA-NMFS-2020-0031-DRAFT-18169
NOAA-NMFS-2020-0031-DRAFT-18170
NOAA-NMFS-2020-0031-DRAFT-18171
NOAA-NMFS-2020-0031-DRAFT-18173
NOAA-NMFS-2020-0031-DRAFT-18174
NOAA-NMFS-2020-0031-DRAFT-18175
NOAA-NMFS-2020-0031-DRAFT-18176
NOAA-NMFS-2020-0031-DRAFT-18177
NOAA-NMFS-2020-0031-DRAFT-18178
NOAA-NMFS-2020-0031-DRAFT-18180
NOAA-NMFS-2020-0031-DRAFT-18181
NOAA-NMFS-2020-0031-DRAFT-18182
NOAA-NMFS-2020-0031-DRAFT-18183
NOAA-NMFS-2020-0031-DRAFT-18184
NOAA-NMFS-2020-0031-DRAFT-18185
NOAA-NMFS-2020-0031-DRAFT-18186
NOAA-NMFS-2020-0031-DRAFT-18187
NOAA-NMFS-2020-0031-DRAFT-18188
NOAA-NMFS-2020-0031-DRAFT-18189
NOAA-NMFS-2020-0031-DRAFT-18190
NOAA-NMFS-2020-0031-DRAFT-18191
NOAA-NMFS-2020-0031-DRAFT-18192
NOAA-NMFS-2020-0031-DRAFT-18194
NOAA-NMFS-2020-0031-DRAFT-18195
NOAA-NMFS-2020-0031-DRAFT-18196
NOAA-NMFS-2020-0031-DRAFT-18197
NOAA-NMFS-2020-0031-DRAFT-18198
NOAA-NMFS-2020-0031-DRAFT-18199
NOAA-NMFS-2020-0031-DRAFT-18200
NOAA-NMFS-2020-0031-DRAFT-18201
NOAA-NMFS-2020-0031-DRAFT-18202
NOAA-NMFS-2020-0031-DRAFT-18203
NOAA-NMFS-2020-0031-DRAFT-18204
NOAA-NMFS-2020-0031-DRAFT-18205
NOAA-NMFS-2020-0031-DRAFT-18206
NOAA-NMFS-2020-0031-DRAFT-18207
NOAA-NMFS-2020-0031-DRAFT-18208
NOAA-NMFS-2020-0031-DRAFT-18209
NOAA-NMFS-2020-0031-DRAFT-18210

Comment from Pamela Duffy
Comment from Judith Ferrell
Comment from Angie Zerance
Comment from Madeline Spain
Comment from marlena tzakis
Comment from Alisha Nickols
Comment from Kathy Kosinski
Comment from Cara Russo
Comment from Jill Turco
Comment from Susan Sander
Comment from Alexander Vollmer
Comment from Melissa Vinch
Comment from Carolyn Coxon
Comment from marna herrington
Comment from Carol Musante
Comment from patty song
Comment from Eloise Hill
Comment from Kendra Kendrick
Comment from Christie Ruppel
Comment from Alan Harper
Comment from Juan Hernandez Garibay
Comment from clinton burdette
Comment from Judah Watson
Comment from Marcie Colpas
Comment from Amy Dalporto
Comment from Steve BOYCE
Comment from Marion Stewart
Comment from David Warner
Comment from Vicki Hambrick
Comment from DIANE HENZLER
Comment from Elyse Dubow
Comment from Sandra Caputo
Comment from Shaina Bloom
Comment from John Tyson
Comment from Sommes McGregor
Comment from Noelle Armstrong
Comment from Maria Lasorsa
Comment from Mary Hirsch
Comment from Debbie Harrington
Comment from Amber Abascal
Comment from Nick Notte

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13026
NOAA-NMFS-2020-0031-DRAFT-13027
NOAA-NMFS-2020-0031-DRAFT-13028
NOAA-NMFS-2020-0031-DRAFT-13029
NOAA-NMFS-2020-0031-DRAFT-13030
NOAA-NMFS-2020-0031-DRAFT-13031
NOAA-NMFS-2020-0031-DRAFT-13032
NOAA-NMFS-2020-0031-DRAFT-13033
NOAA-NMFS-2020-0031-DRAFT-13034
NOAA-NMFS-2020-0031-DRAFT-13035
NOAA-NMFS-2020-0031-DRAFT-13036
NOAA-NMFS-2020-0031-DRAFT-13037
NOAA-NMFS-2020-0031-DRAFT-13038
NOAA-NMFS-2020-0031-DRAFT-13039
NOAA-NMFS-2020-0031-DRAFT-13040
NOAA-NMFS-2020-0031-DRAFT-13041
NOAA-NMFS-2020-0031-DRAFT-13042
NOAA-NMFS-2020-0031-DRAFT-13043
NOAA-NMFS-2020-0031-DRAFT-13044
NOAA-NMFS-2020-0031-DRAFT-13045
NOAA-NMFS-2020-0031-DRAFT-13046
NOAA-NMFS-2020-0031-DRAFT-13047
NOAA-NMFS-2020-0031-DRAFT-13048
NOAA-NMFS-2020-0031-DRAFT-13049
NOAA-NMFS-2020-0031-DRAFT-13050
NOAA-NMFS-2020-0031-DRAFT-13051
NOAA-NMFS-2020-0031-DRAFT-13052
NOAA-NMFS-2020-0031-DRAFT-13053
NOAA-NMFS-2020-0031-DRAFT-13054
NOAA-NMFS-2020-0031-DRAFT-13055
NOAA-NMFS-2020-0031-DRAFT-13056
NOAA-NMFS-2020-0031-DRAFT-13057
NOAA-NMFS-2020-0031-DRAFT-13058
NOAA-NMFS-2020-0031-DRAFT-13059
NOAA-NMFS-2020-0031-DRAFT-13060
NOAA-NMFS-2020-0031-DRAFT-13061
NOAA-NMFS-2020-0031-DRAFT-13062
NOAA-NMFS-2020-0031-DRAFT-13063
NOAA-NMFS-2020-0031-DRAFT-13064
NOAA-NMFS-2020-0031-DRAFT-13065
NOAA-NMFS-2020-0031-DRAFT-13066

Comment from Jon Hager
Comment from Susan Anderson
Comment from William Heuser
Comment from Karen Feiler
Comment from Theo Giesy
Comment from Victoria Tuorto
Comment from Richard Watson
Comment from Roxanne Hewitt
Comment from Marna Gasperino
Comment from Elaine Carlini-Davis
Comment from Kathleen Colwill
Comment from Marjory Clyne
Comment from Jeremy Wales
Comment from Michael Friedmann
Comment from DIANA BOOM
Comment from Angi Tilley
Comment from Patricia Rain
Comment from Mirabai Nagle
Comment from Iliana Lopez
Comment from Debbie Martinez
Comment from David Lavender
Comment from Susan Lefler
Comment from Darby Stone
Comment from Robert Applebaum
Comment from Fredette Hallstead
Comment from Richard Hallstead
Comment from Brenda Roy
Comment from William Barrett
Comment from thyme council
Comment from Patricia Dishman
Comment from Lynne Walters
Comment from Carol Fly
Comment from Chris Larsen
Comment from Teresia LaFleur
Comment from EVA CANTU
Comment from Sandra Joos
Comment from Sonya Starbuck
Comment from Catherine Schultz
Comment from Sharon Paltin
Comment from Robert Rivera
Comment from Jean-Paul Bergeron

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18211
NOAA-NMFS-2020-0031-DRAFT-18212
NOAA-NMFS-2020-0031-DRAFT-18213
NOAA-NMFS-2020-0031-DRAFT-18214
NOAA-NMFS-2020-0031-DRAFT-18215
NOAA-NMFS-2020-0031-DRAFT-18216
NOAA-NMFS-2020-0031-DRAFT-18217
NOAA-NMFS-2020-0031-DRAFT-18218
NOAA-NMFS-2020-0031-DRAFT-18219
NOAA-NMFS-2020-0031-DRAFT-18220
NOAA-NMFS-2020-0031-DRAFT-18221
NOAA-NMFS-2020-0031-DRAFT-18222
NOAA-NMFS-2020-0031-DRAFT-18223
NOAA-NMFS-2020-0031-DRAFT-18224
NOAA-NMFS-2020-0031-DRAFT-18225
NOAA-NMFS-2020-0031-DRAFT-18226
NOAA-NMFS-2020-0031-DRAFT-18227
NOAA-NMFS-2020-0031-DRAFT-18228
NOAA-NMFS-2020-0031-DRAFT-18229
NOAA-NMFS-2020-0031-DRAFT-18231
NOAA-NMFS-2020-0031-DRAFT-18232
NOAA-NMFS-2020-0031-DRAFT-18233
NOAA-NMFS-2020-0031-DRAFT-18234
NOAA-NMFS-2020-0031-DRAFT-18235
NOAA-NMFS-2020-0031-DRAFT-18236
NOAA-NMFS-2020-0031-DRAFT-18237
NOAA-NMFS-2020-0031-DRAFT-18238
NOAA-NMFS-2020-0031-DRAFT-18239
NOAA-NMFS-2020-0031-DRAFT-18240
NOAA-NMFS-2020-0031-DRAFT-18241
NOAA-NMFS-2020-0031-DRAFT-18242
NOAA-NMFS-2020-0031-DRAFT-18243
NOAA-NMFS-2020-0031-DRAFT-18244
NOAA-NMFS-2020-0031-DRAFT-18245
NOAA-NMFS-2020-0031-DRAFT-18246
NOAA-NMFS-2020-0031-DRAFT-18247
NOAA-NMFS-2020-0031-DRAFT-18248
NOAA-NMFS-2020-0031-DRAFT-18249
NOAA-NMFS-2020-0031-DRAFT-18250
NOAA-NMFS-2020-0031-DRAFT-18251
NOAA-NMFS-2020-0031-DRAFT-18252

Comment from Sandra Burnett
Comment from Rachel Cairns
Comment from Kristina Wunder
Comment from Peggy Wynn
Comment from Andrea Holwager
Comment from Barbara Dockus
Comment from Donna Gensler
Comment from Cindy Borske
Comment from Kevin Worker
Comment from Linda Hilf
Comment from Linda Eberhard
Comment from Ana Schroeder
Comment from Sheila Pereira
Comment from Michelle Profant
Comment from Ariel Wynn
Comment from Tiffany Teachout
Comment from Carol Affleck
Comment from Gareth Wynn
Comment from Adrian Schilke
Comment from Bobby Wynn
Comment from Michael Kenosky
Comment from Eunice Richmond
Comment from Donna Lampkin
Comment from Tami Trearse
Comment from Dianne Kenosky
Comment from Alexa Morgan
Comment from Sandra Falcon
Comment from diane marchisio
Comment from Joseph Kenosky
Comment from d'Anne MacNeil
Comment from Enrico Pelausa
Comment from Vicki Wheeler
Comment from Barbara Peters
Comment from matt ravenda
Comment from Jeff Charity
Comment from Candice Schellenger
Comment from Jennifer Neff
Comment from Vicki Richards
Comment from Barbara Becker
Comment from Janice Kidd
Comment from Stephanie Snyder

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13067
NOAA-NMFS-2020-0031-DRAFT-13068
NOAA-NMFS-2020-0031-DRAFT-13069
NOAA-NMFS-2020-0031-DRAFT-13070
NOAA-NMFS-2020-0031-DRAFT-13071
NOAA-NMFS-2020-0031-DRAFT-13072
NOAA-NMFS-2020-0031-DRAFT-13073
NOAA-NMFS-2020-0031-DRAFT-13074
NOAA-NMFS-2020-0031-DRAFT-13075
NOAA-NMFS-2020-0031-DRAFT-13076
NOAA-NMFS-2020-0031-DRAFT-13077
NOAA-NMFS-2020-0031-DRAFT-13078
NOAA-NMFS-2020-0031-DRAFT-13079
NOAA-NMFS-2020-0031-DRAFT-13080
NOAA-NMFS-2020-0031-DRAFT-13081
NOAA-NMFS-2020-0031-DRAFT-13082
NOAA-NMFS-2020-0031-DRAFT-13083
NOAA-NMFS-2020-0031-DRAFT-13084
NOAA-NMFS-2020-0031-DRAFT-13085
NOAA-NMFS-2020-0031-DRAFT-13086
NOAA-NMFS-2020-0031-DRAFT-13087
NOAA-NMFS-2020-0031-DRAFT-13088
NOAA-NMFS-2020-0031-DRAFT-13089
NOAA-NMFS-2020-0031-DRAFT-13090
NOAA-NMFS-2020-0031-DRAFT-13091
NOAA-NMFS-2020-0031-DRAFT-13092
NOAA-NMFS-2020-0031-DRAFT-13093
NOAA-NMFS-2020-0031-DRAFT-13094
NOAA-NMFS-2020-0031-DRAFT-13095
NOAA-NMFS-2020-0031-DRAFT-13096
NOAA-NMFS-2020-0031-DRAFT-13097
NOAA-NMFS-2020-0031-DRAFT-13098
NOAA-NMFS-2020-0031-DRAFT-13099
NOAA-NMFS-2020-0031-DRAFT-13100
NOAA-NMFS-2020-0031-DRAFT-13101
NOAA-NMFS-2020-0031-DRAFT-13102
NOAA-NMFS-2020-0031-DRAFT-13103
NOAA-NMFS-2020-0031-DRAFT-13104
NOAA-NMFS-2020-0031-DRAFT-13105
NOAA-NMFS-2020-0031-DRAFT-13106
NOAA-NMFS-2020-0031-DRAFT-13107

Comment from Larry Oconner
Comment from Michelle Unger
Comment from Susan Pfretzschner
Comment from Susana Lee
Comment from Kay Lowe
Comment from Susana Lee
Comment from Frances Alet
Comment from Ann McGill
Comment from Ryan Nestler
Comment from Ryan Nestler
Comment from Ryan Nestler
Comment from Hellene Chapman
Comment from Mia Kodzik
Comment from Nancy Lewis
Comment from Elaine Edell
Comment from Kim Wick
Comment from Susan Michetti
Comment from Lauren A.
Comment from Barbara Gross
Comment from Stacy Cornelius
Comment from Saran K.
Comment from joyce heyn
Comment from Pat Petro
Comment from Savannah Hawkins
Comment from kathy Jarman
Comment from Hans Deutsch
Comment from jennifer robinson
Comment from Kristina Wunder
Comment from Brenda Smith
Comment from james mckee
Comment from Alan Linville
Comment from S Mendon
Comment from Lynn Roebuck
Comment from Maya Kurtz
Comment from John Markham
Comment from Marlene Tucay
Comment from Sharon Braswell
Comment from David Bryan
Comment from Robyn Lauren
Comment from Mary Breitlow
Comment from Kristine Kennedy

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18253
NOAA-NMFS-2020-0031-DRAFT-18254
NOAA-NMFS-2020-0031-DRAFT-18255
NOAA-NMFS-2020-0031-DRAFT-18256
NOAA-NMFS-2020-0031-DRAFT-18257
NOAA-NMFS-2020-0031-DRAFT-18258
NOAA-NMFS-2020-0031-DRAFT-18259
NOAA-NMFS-2020-0031-DRAFT-18260
NOAA-NMFS-2020-0031-DRAFT-18261
NOAA-NMFS-2020-0031-DRAFT-18262
NOAA-NMFS-2020-0031-DRAFT-18263
NOAA-NMFS-2020-0031-DRAFT-18264
NOAA-NMFS-2020-0031-DRAFT-18265
NOAA-NMFS-2020-0031-DRAFT-18266
NOAA-NMFS-2020-0031-DRAFT-18267
NOAA-NMFS-2020-0031-DRAFT-18268
NOAA-NMFS-2020-0031-DRAFT-18269
NOAA-NMFS-2020-0031-DRAFT-18270
NOAA-NMFS-2020-0031-DRAFT-18271
NOAA-NMFS-2020-0031-DRAFT-18272
NOAA-NMFS-2020-0031-DRAFT-18273
NOAA-NMFS-2020-0031-DRAFT-18274
NOAA-NMFS-2020-0031-DRAFT-18275
NOAA-NMFS-2020-0031-DRAFT-18276
NOAA-NMFS-2020-0031-DRAFT-18277
NOAA-NMFS-2020-0031-DRAFT-18278
NOAA-NMFS-2020-0031-DRAFT-18279
NOAA-NMFS-2020-0031-DRAFT-18280
NOAA-NMFS-2020-0031-DRAFT-18281
NOAA-NMFS-2020-0031-DRAFT-18282
NOAA-NMFS-2020-0031-DRAFT-18283
NOAA-NMFS-2020-0031-DRAFT-18284
NOAA-NMFS-2020-0031-DRAFT-18285
NOAA-NMFS-2020-0031-DRAFT-18286
NOAA-NMFS-2020-0031-DRAFT-18287
NOAA-NMFS-2020-0031-DRAFT-18288
NOAA-NMFS-2020-0031-DRAFT-18289
NOAA-NMFS-2020-0031-DRAFT-18290
NOAA-NMFS-2020-0031-DRAFT-18291
NOAA-NMFS-2020-0031-DRAFT-18292
NOAA-NMFS-2020-0031-DRAFT-18293

Comment from Wolfey Buydos
Comment from Angelique St Pierre
Comment from Christine Piekarski
Comment from ROB DOUCETTE
Comment from Mary Keithler
Comment from Marcel Liberge
Comment from Dogan Ozkan
Comment from gary zahler
Comment from Vicki Gaffney
Comment from Victoria Behar
Comment from Jeane Gogerty
Comment from Aleksandra Kaporovskaya
Comment from Judith Laik
Comment from Ernet Garayan
Comment from Leslie Kreilich Robertson
RN BSN
Comment from Kathleen Doctor
Comment from Maryellen Redish
Comment from Linda Guthrie
Comment from Teresa Sem
Comment from Alex Weiland
Comment from Mark Kapec
Comment from Robin Rysavy
Comment from Larry Friedman
Comment from Amy Schaupeter
Comment from Hooman Larimi
Comment from Laurie Gorman
Comment from Debbie Kahn
Comment from Lisa Iffland
Comment from Shelley Winters
Comment from Robert Schicker
Comment from Terri Knauber
Comment from KIMBERLY BRENOWITZ
Comment from Neilia Pierson
Comment from ALAN MURAWSKI
Comment from Evangeline Miranda
Comment from Rosemary Rukavena
Comment from Pamela Cornish
Comment from Jennifer Taylor
Comment from Helen Pruzan
Comment from Katherine Wentworth
Comment from regula hess

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13108
NOAA-NMFS-2020-0031-DRAFT-13109
NOAA-NMFS-2020-0031-DRAFT-13110
NOAA-NMFS-2020-0031-DRAFT-13111
NOAA-NMFS-2020-0031-DRAFT-13112
NOAA-NMFS-2020-0031-DRAFT-13113
NOAA-NMFS-2020-0031-DRAFT-13114
NOAA-NMFS-2020-0031-DRAFT-13115
NOAA-NMFS-2020-0031-DRAFT-13116
NOAA-NMFS-2020-0031-DRAFT-13117
NOAA-NMFS-2020-0031-DRAFT-13118
NOAA-NMFS-2020-0031-DRAFT-13119
NOAA-NMFS-2020-0031-DRAFT-13120
NOAA-NMFS-2020-0031-DRAFT-13121
NOAA-NMFS-2020-0031-DRAFT-13122
NOAA-NMFS-2020-0031-DRAFT-13123
NOAA-NMFS-2020-0031-DRAFT-13124
NOAA-NMFS-2020-0031-DRAFT-13126
NOAA-NMFS-2020-0031-DRAFT-13127
NOAA-NMFS-2020-0031-DRAFT-13128
NOAA-NMFS-2020-0031-DRAFT-13129
NOAA-NMFS-2020-0031-DRAFT-13130
NOAA-NMFS-2020-0031-DRAFT-13131
NOAA-NMFS-2020-0031-DRAFT-13133
NOAA-NMFS-2020-0031-DRAFT-13134
NOAA-NMFS-2020-0031-DRAFT-13135
NOAA-NMFS-2020-0031-DRAFT-13136
NOAA-NMFS-2020-0031-DRAFT-13137
NOAA-NMFS-2020-0031-DRAFT-13138
NOAA-NMFS-2020-0031-DRAFT-13139
NOAA-NMFS-2020-0031-DRAFT-13140
NOAA-NMFS-2020-0031-DRAFT-13141
NOAA-NMFS-2020-0031-DRAFT-13142
NOAA-NMFS-2020-0031-DRAFT-13143
NOAA-NMFS-2020-0031-DRAFT-13144
NOAA-NMFS-2020-0031-DRAFT-13145
NOAA-NMFS-2020-0031-DRAFT-13146
NOAA-NMFS-2020-0031-DRAFT-13147
NOAA-NMFS-2020-0031-DRAFT-13148
NOAA-NMFS-2020-0031-DRAFT-13149
NOAA-NMFS-2020-0031-DRAFT-13150

Comment from Philip Dooley
Comment from Scott Jennings
Comment from Blake Wu
Comment from Debra Harpole
Comment from Cheryl Odoardi
Comment from Susan Rambo
Comment from Arrie Hammel
Comment from Brenda Griswold
Comment from Patricia Taylor
Comment from Har Canto
Comment from Laura Huddlestone
Comment from Beverly Thomas
Comment from Cynthia Vartenuk
Comment from Christina Nillo
Comment from Jane Van Praag
Comment from Carol Gordon
Comment from Stanley Peterson
Comment from Donna Lynn
Comment from Robin Esterkin
Comment from Marney Reed
Comment from terr badger
Comment from Linda Taffet
Comment from jonathan weinstock
Comment from Barbara Diederichs
Comment from Jolayne Justice
Comment from Jacqueline Jenkins
Comment from Rosemary delPino
Comment from Melissa Mazias
Comment from Gaia Cole
Comment from Elena Rumiantseva
Comment from Bridgette Jessen
Comment from robert moeller
Comment from Reverend Scholar
Comment from Norm Wilmes
Comment from Linda Sherwood
Comment from Nick Byrne
Comment from Heidi Steffy
Comment from Kristine Kennedy
Comment from Kelsey Kennedy
Comment from Linda Carroll
Comment from K R

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18294
NOAA-NMFS-2020-0031-DRAFT-18295
NOAA-NMFS-2020-0031-DRAFT-18296
NOAA-NMFS-2020-0031-DRAFT-18297
NOAA-NMFS-2020-0031-DRAFT-18298
NOAA-NMFS-2020-0031-DRAFT-18299
NOAA-NMFS-2020-0031-DRAFT-18300
NOAA-NMFS-2020-0031-DRAFT-18301
NOAA-NMFS-2020-0031-DRAFT-18302
NOAA-NMFS-2020-0031-DRAFT-18303
NOAA-NMFS-2020-0031-DRAFT-18304
NOAA-NMFS-2020-0031-DRAFT-18305
NOAA-NMFS-2020-0031-DRAFT-18306
NOAA-NMFS-2020-0031-DRAFT-18307
NOAA-NMFS-2020-0031-DRAFT-18308
NOAA-NMFS-2020-0031-DRAFT-18309
NOAA-NMFS-2020-0031-DRAFT-18310
NOAA-NMFS-2020-0031-DRAFT-18312
NOAA-NMFS-2020-0031-DRAFT-18313
NOAA-NMFS-2020-0031-DRAFT-18314
NOAA-NMFS-2020-0031-DRAFT-18315
NOAA-NMFS-2020-0031-DRAFT-18316
NOAA-NMFS-2020-0031-DRAFT-18317
NOAA-NMFS-2020-0031-DRAFT-18318
NOAA-NMFS-2020-0031-DRAFT-18319
NOAA-NMFS-2020-0031-DRAFT-18320
NOAA-NMFS-2020-0031-DRAFT-18321
NOAA-NMFS-2020-0031-DRAFT-18322
NOAA-NMFS-2020-0031-DRAFT-18323
NOAA-NMFS-2020-0031-DRAFT-18324
NOAA-NMFS-2020-0031-DRAFT-18325
NOAA-NMFS-2020-0031-DRAFT-18326
NOAA-NMFS-2020-0031-DRAFT-18327
NOAA-NMFS-2020-0031-DRAFT-18328
NOAA-NMFS-2020-0031-DRAFT-18329
NOAA-NMFS-2020-0031-DRAFT-18330
NOAA-NMFS-2020-0031-DRAFT-18332
NOAA-NMFS-2020-0031-DRAFT-18333
NOAA-NMFS-2020-0031-DRAFT-18334
NOAA-NMFS-2020-0031-DRAFT-18335
NOAA-NMFS-2020-0031-DRAFT-18336

Comment from dana Bleckinger
Comment from John Essman
Comment from Juli Kring
Comment from Lydia Garvey
Comment from Michelle Collar
Comment from Joanne Anderson
Comment from Tracy Gourville
Comment from Kristin Arioli
Comment from Maureen O'Neal
Comment from Eury Ramos
Comment from James Beeler II
Comment from Marion Mcnamara
Comment from Isadora Avett
Comment from Maureen Simpson
Comment from Nan Schmid
Comment from hilary sochacki
Comment from Diane Murphy
Comment from MARIA VENIDIS
Comment from Aitor Suarez
Comment from Gina Petty
Comment from Naomi Durbin
Comment from Sandra Denninger
Comment from Donna D Varcoe
Comment from Jeremy Carpenter
Comment from D J Lubonovich
Comment from Susan Garman
Comment from Michelle Walls
Comment from johna Rice
Comment from Kyle Haines
Comment from Donna Thomas
Comment from Lex Hames
Comment from Patricia Monacella
Comment from Barbara Culbert
Comment from Cynthia McCray
Comment from Jennifer Hurlburt
Comment from MJ mashburn
Comment from Natalie Santiago
Comment from Mary Kinney
Comment from Elizabeth Mitchell
Comment from M W
Comment from Rumeysa Kusdogan

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13151
NOAA-NMFS-2020-0031-DRAFT-13152
NOAA-NMFS-2020-0031-DRAFT-13153
NOAA-NMFS-2020-0031-DRAFT-13154
NOAA-NMFS-2020-0031-DRAFT-13155
NOAA-NMFS-2020-0031-DRAFT-13156
NOAA-NMFS-2020-0031-DRAFT-13157
NOAA-NMFS-2020-0031-DRAFT-13158
NOAA-NMFS-2020-0031-DRAFT-13159
NOAA-NMFS-2020-0031-DRAFT-13160
NOAA-NMFS-2020-0031-DRAFT-13161
NOAA-NMFS-2020-0031-DRAFT-13162
NOAA-NMFS-2020-0031-DRAFT-13163
NOAA-NMFS-2020-0031-DRAFT-13164
NOAA-NMFS-2020-0031-DRAFT-13165
NOAA-NMFS-2020-0031-DRAFT-13166
NOAA-NMFS-2020-0031-DRAFT-13167
NOAA-NMFS-2020-0031-DRAFT-13168
NOAA-NMFS-2020-0031-DRAFT-13169
NOAA-NMFS-2020-0031-DRAFT-13170
NOAA-NMFS-2020-0031-DRAFT-13171
NOAA-NMFS-2020-0031-DRAFT-13172
NOAA-NMFS-2020-0031-DRAFT-13173
NOAA-NMFS-2020-0031-DRAFT-13174
NOAA-NMFS-2020-0031-DRAFT-13175
NOAA-NMFS-2020-0031-DRAFT-13176
NOAA-NMFS-2020-0031-DRAFT-13177
NOAA-NMFS-2020-0031-DRAFT-13178
NOAA-NMFS-2020-0031-DRAFT-13179
NOAA-NMFS-2020-0031-DRAFT-13180
NOAA-NMFS-2020-0031-DRAFT-13181
NOAA-NMFS-2020-0031-DRAFT-13182
NOAA-NMFS-2020-0031-DRAFT-13183
NOAA-NMFS-2020-0031-DRAFT-13184
NOAA-NMFS-2020-0031-DRAFT-13185
NOAA-NMFS-2020-0031-DRAFT-13186
NOAA-NMFS-2020-0031-DRAFT-13187
NOAA-NMFS-2020-0031-DRAFT-13188
NOAA-NMFS-2020-0031-DRAFT-13190
NOAA-NMFS-2020-0031-DRAFT-13191
NOAA-NMFS-2020-0031-DRAFT-13192

Comment from Margaret Christman
Comment from Cindy Koch
Comment from Ankea Kkoutas
Comment from Carlo Zucchi
Comment from David Arnson
Comment from Alicia Bernhardt
Comment from Tami Phelps
Comment from Eileen Moceri
Comment from Sanja Lalic
Comment from Sun kim
Comment from Janna Caughron
Comment from Eliot Schickler
Comment from Mary Williamson
Comment from Karen Pecsok
Comment from Michael Fletty
Comment from Jen Plishka
Comment from Mike Evans
Comment from Lorna Kepes
Comment from Christy Matherne
Comment from Thomas Talbot
Comment from Danika Esden-Tempski
Comment from ISABEL CERVERA
Comment from Gaetano Amato
Comment from Peter Tello
Comment from Sara Roderer
Comment from Elizabeth Schauer
Comment from Peg Kucek
Comment from Mary Creighton
Comment from Don Meriwether
Comment from Mike Rossi
Comment from Emma Thomas
Comment from Stephanie Cawley
Comment from Andre Meaux
Comment from Barbara Blount-Powell
Comment from Carole Arbour
Comment from Benedict Di Salvo
Comment from Hajara Ntale
Comment from Stephen Antoniadis
Comment from Jan Gustafson
Comment from Jacob Pendlebury
Comment from Cheryl Fontaine

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18337
NOAA-NMFS-2020-0031-DRAFT-18338
NOAA-NMFS-2020-0031-DRAFT-18339
NOAA-NMFS-2020-0031-DRAFT-18340
NOAA-NMFS-2020-0031-DRAFT-18341
NOAA-NMFS-2020-0031-DRAFT-18342
NOAA-NMFS-2020-0031-DRAFT-18343
NOAA-NMFS-2020-0031-DRAFT-18344
NOAA-NMFS-2020-0031-DRAFT-18345
NOAA-NMFS-2020-0031-DRAFT-18346
NOAA-NMFS-2020-0031-DRAFT-18347
NOAA-NMFS-2020-0031-DRAFT-18348
NOAA-NMFS-2020-0031-DRAFT-18349
NOAA-NMFS-2020-0031-DRAFT-18350
NOAA-NMFS-2020-0031-DRAFT-18351
NOAA-NMFS-2020-0031-DRAFT-18352
NOAA-NMFS-2020-0031-DRAFT-18353
NOAA-NMFS-2020-0031-DRAFT-18354
NOAA-NMFS-2020-0031-DRAFT-18355
NOAA-NMFS-2020-0031-DRAFT-18356
NOAA-NMFS-2020-0031-DRAFT-18357
NOAA-NMFS-2020-0031-DRAFT-18358
NOAA-NMFS-2020-0031-DRAFT-18359
NOAA-NMFS-2020-0031-DRAFT-18360
NOAA-NMFS-2020-0031-DRAFT-18361
NOAA-NMFS-2020-0031-DRAFT-18362
NOAA-NMFS-2020-0031-DRAFT-18363
NOAA-NMFS-2020-0031-DRAFT-18364
NOAA-NMFS-2020-0031-DRAFT-18365
NOAA-NMFS-2020-0031-DRAFT-18366
NOAA-NMFS-2020-0031-DRAFT-18367
NOAA-NMFS-2020-0031-DRAFT-18368
NOAA-NMFS-2020-0031-DRAFT-18369
NOAA-NMFS-2020-0031-DRAFT-18370
NOAA-NMFS-2020-0031-DRAFT-18371
NOAA-NMFS-2020-0031-DRAFT-18372
NOAA-NMFS-2020-0031-DRAFT-18373
NOAA-NMFS-2020-0031-DRAFT-18374
NOAA-NMFS-2020-0031-DRAFT-18375
NOAA-NMFS-2020-0031-DRAFT-18376
NOAA-NMFS-2020-0031-DRAFT-18377

Comment from Kermit Cuff
Comment from g clemson
Comment from Alexandra Simmonds
Comment from Patricia McLean
Comment from Robert Davenport
Comment from Margaret Sellers
Comment from Hannelore Kennedy
Comment from Ruth Curiale
Comment from Frances Bell
Comment from Kathleen Margulis
Comment from Leslie Sutliff
Comment from Sharon Durniak
Comment from Carole Courtney
Comment from Cynthia Skandis
Comment from Diana Farfan
Comment from Teresa DeNardo
Comment from Mark Koritz
Comment from Michael Peterman
Comment from Irene Osten
Comment from Janet Martucci
Comment from Marian Cruz
Comment from Cathy Stansell
Comment from S Emmel
Comment from Elaine Preston
Comment from Nicole Hoekstra
Comment from Laura Prohaska
Comment from Okiyo Ososaka
Comment from Jeanette Taylor
Comment from David Lavender
Comment from Dina Morena
Comment from Dave Searles
Comment from Patricia Vance
Comment from Attila Aczel
Comment from Aleta Wallach
Comment from William McCullough
Comment from Theresa Dudley
Comment from Timothy Beitel
Comment from Stephen Mudrick
Comment from James Kawamura
Comment from Pat Hackett
Comment from John Stofko

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02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13193
NOAA-NMFS-2020-0031-DRAFT-13194
NOAA-NMFS-2020-0031-DRAFT-13195
NOAA-NMFS-2020-0031-DRAFT-13196
NOAA-NMFS-2020-0031-DRAFT-13197
NOAA-NMFS-2020-0031-DRAFT-13198
NOAA-NMFS-2020-0031-DRAFT-13199
NOAA-NMFS-2020-0031-DRAFT-13200
NOAA-NMFS-2020-0031-DRAFT-13201
NOAA-NMFS-2020-0031-DRAFT-13203
NOAA-NMFS-2020-0031-DRAFT-13204
NOAA-NMFS-2020-0031-DRAFT-13205
NOAA-NMFS-2020-0031-DRAFT-13206
NOAA-NMFS-2020-0031-DRAFT-13207
NOAA-NMFS-2020-0031-DRAFT-13208
NOAA-NMFS-2020-0031-DRAFT-13209
NOAA-NMFS-2020-0031-DRAFT-13210
NOAA-NMFS-2020-0031-DRAFT-13211
NOAA-NMFS-2020-0031-DRAFT-13212
NOAA-NMFS-2020-0031-DRAFT-13213
NOAA-NMFS-2020-0031-DRAFT-13214
NOAA-NMFS-2020-0031-DRAFT-13215
NOAA-NMFS-2020-0031-DRAFT-13216
NOAA-NMFS-2020-0031-DRAFT-13217
NOAA-NMFS-2020-0031-DRAFT-13218
NOAA-NMFS-2020-0031-DRAFT-13219
NOAA-NMFS-2020-0031-DRAFT-13220
NOAA-NMFS-2020-0031-DRAFT-13221
NOAA-NMFS-2020-0031-DRAFT-13222
NOAA-NMFS-2020-0031-DRAFT-13223
NOAA-NMFS-2020-0031-DRAFT-13224
NOAA-NMFS-2020-0031-DRAFT-13225
NOAA-NMFS-2020-0031-DRAFT-13226
NOAA-NMFS-2020-0031-DRAFT-13227
NOAA-NMFS-2020-0031-DRAFT-13228
NOAA-NMFS-2020-0031-DRAFT-13229
NOAA-NMFS-2020-0031-DRAFT-13230
NOAA-NMFS-2020-0031-DRAFT-13231
NOAA-NMFS-2020-0031-DRAFT-13232
NOAA-NMFS-2020-0031-DRAFT-13233
NOAA-NMFS-2020-0031-DRAFT-13234

Comment from Christel Marvin
Comment from Deb Horan
Comment from Uwe Dotzauer
Comment from Laura Brown
Comment from Matthew Boguske
Comment from John Furlong
Comment from Mike McCool
Comment from Valerie Stains
Comment from Delaine Spilsbury
Comment from Karen Alexander
Comment from debbie stapleton
Comment from Judy LaVaute
Comment from Carrie Breen
Comment from Kim Smith
Comment from Paul Laney
Comment from Eileen Conner
Comment from Roel Cantu
Comment from Gary Ardito
Comment from Rod Garner
Comment from Constance Lorig
Comment from Douglas Morrison
Comment from Christelle Stubbs
Comment from Erica Minglis
Comment from Carl Oerke
Comment from Susy Palou
Comment from Alison Werther
Comment from John LaPolla
Comment from Ann Downey
Comment from Sharon Teagardin
Comment from Gordon Cook
Comment from Leslie Janoe
Comment from Caroline Kipling
Comment from Caroline Kipling
Comment from Brett Schultz
Comment from Diane Levy
Comment from Elisabeth Youngclaus
Comment from Cassia Charles
Comment from Joy Kunc
Comment from Linda McDougal
Comment from Christina Crosby
Comment from Ann-Marie Corkett

02/18/2021
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NOAA-NMFS-2020-0031-DRAFT-18378
NOAA-NMFS-2020-0031-DRAFT-18379
NOAA-NMFS-2020-0031-DRAFT-18380
NOAA-NMFS-2020-0031-DRAFT-18381
NOAA-NMFS-2020-0031-DRAFT-18382
NOAA-NMFS-2020-0031-DRAFT-18383
NOAA-NMFS-2020-0031-DRAFT-18384
NOAA-NMFS-2020-0031-DRAFT-18385
NOAA-NMFS-2020-0031-DRAFT-18386
NOAA-NMFS-2020-0031-DRAFT-18387
NOAA-NMFS-2020-0031-DRAFT-18388
NOAA-NMFS-2020-0031-DRAFT-18389
NOAA-NMFS-2020-0031-DRAFT-18390
NOAA-NMFS-2020-0031-DRAFT-18391
NOAA-NMFS-2020-0031-DRAFT-18392
NOAA-NMFS-2020-0031-DRAFT-18393
NOAA-NMFS-2020-0031-DRAFT-18394
NOAA-NMFS-2020-0031-DRAFT-18395
NOAA-NMFS-2020-0031-DRAFT-18396
NOAA-NMFS-2020-0031-DRAFT-18398
NOAA-NMFS-2020-0031-DRAFT-18401
NOAA-NMFS-2020-0031-DRAFT-18402
NOAA-NMFS-2020-0031-DRAFT-18403
NOAA-NMFS-2020-0031-DRAFT-18404
NOAA-NMFS-2020-0031-DRAFT-18405
NOAA-NMFS-2020-0031-DRAFT-18406
NOAA-NMFS-2020-0031-DRAFT-18407
NOAA-NMFS-2020-0031-DRAFT-18408
NOAA-NMFS-2020-0031-DRAFT-18409
NOAA-NMFS-2020-0031-DRAFT-18410
NOAA-NMFS-2020-0031-DRAFT-18411
NOAA-NMFS-2020-0031-DRAFT-18412
NOAA-NMFS-2020-0031-DRAFT-18413
NOAA-NMFS-2020-0031-DRAFT-18414
NOAA-NMFS-2020-0031-DRAFT-18415
NOAA-NMFS-2020-0031-DRAFT-18416
NOAA-NMFS-2020-0031-DRAFT-18417
NOAA-NMFS-2020-0031-DRAFT-18418
NOAA-NMFS-2020-0031-DRAFT-18419
NOAA-NMFS-2020-0031-DRAFT-18420
NOAA-NMFS-2020-0031-DRAFT-18421

Comment from Adrienne Pritchard
Comment from Alberdina Schmidt
Comment from Katherine Barrett Zywan
Comment from Theodora Sable
Comment from Denise White
Comment from LJ Harris
Comment from Roberta Stephan
Comment from Lex Hall
Comment from Barbara Methvin
Comment from Stacy Schrader
Comment from Jody Lewis
Comment from Kelly Eaves
Comment from Leslie Lomas
Comment from Lois nottingham
Comment from Barbara Rose
Comment from Lisa Stanley
Comment from Susan Irvine
Comment from L Fielder
Comment from Liisa Kingsley
Comment from Anitra P
Comment from Celeste VeZolles
Comment from Bruce and Penny Triplett
Comment from Johnny Pflugrad
Comment from Lisa Piner
Comment from Donald Wilson
Comment from STACIE CHARLEBOIS
Comment from Betty Meade
Comment from Thomas Guaraldi
Comment from Kelly Paquette
Comment from Marilyn Matye
Comment from Richard Pendarvis
Comment from Norbert Langer
Comment from sharon simmons
Comment from Marcella Crane
Comment from Susan Berzac
Comment from Vanessa Gonzales
Comment from Charlotte Ryan
Comment from Hector A Pol
Comment from Ann Katcef
Comment from manuel santod
Comment from Andrew Arneson

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NOAA-NMFS-2020-0031-DRAFT-13235
NOAA-NMFS-2020-0031-DRAFT-13236
NOAA-NMFS-2020-0031-DRAFT-13237
NOAA-NMFS-2020-0031-DRAFT-13238
NOAA-NMFS-2020-0031-DRAFT-13239
NOAA-NMFS-2020-0031-DRAFT-13240
NOAA-NMFS-2020-0031-DRAFT-13241
NOAA-NMFS-2020-0031-DRAFT-13242
NOAA-NMFS-2020-0031-DRAFT-13243
NOAA-NMFS-2020-0031-DRAFT-13244
NOAA-NMFS-2020-0031-DRAFT-13245
NOAA-NMFS-2020-0031-DRAFT-13246
NOAA-NMFS-2020-0031-DRAFT-13247
NOAA-NMFS-2020-0031-DRAFT-13248
NOAA-NMFS-2020-0031-DRAFT-13249
NOAA-NMFS-2020-0031-DRAFT-13250
NOAA-NMFS-2020-0031-DRAFT-13252
NOAA-NMFS-2020-0031-DRAFT-13253
NOAA-NMFS-2020-0031-DRAFT-13254
NOAA-NMFS-2020-0031-DRAFT-13255
NOAA-NMFS-2020-0031-DRAFT-13256
NOAA-NMFS-2020-0031-DRAFT-13257
NOAA-NMFS-2020-0031-DRAFT-13258
NOAA-NMFS-2020-0031-DRAFT-13259
NOAA-NMFS-2020-0031-DRAFT-13260
NOAA-NMFS-2020-0031-DRAFT-13261
NOAA-NMFS-2020-0031-DRAFT-13262
NOAA-NMFS-2020-0031-DRAFT-13263
NOAA-NMFS-2020-0031-DRAFT-13264
NOAA-NMFS-2020-0031-DRAFT-13265
NOAA-NMFS-2020-0031-DRAFT-13266
NOAA-NMFS-2020-0031-DRAFT-13267
NOAA-NMFS-2020-0031-DRAFT-13268
NOAA-NMFS-2020-0031-DRAFT-13269
NOAA-NMFS-2020-0031-DRAFT-13270
NOAA-NMFS-2020-0031-DRAFT-13271
NOAA-NMFS-2020-0031-DRAFT-13272
NOAA-NMFS-2020-0031-DRAFT-13273
NOAA-NMFS-2020-0031-DRAFT-13274
NOAA-NMFS-2020-0031-DRAFT-13275
NOAA-NMFS-2020-0031-DRAFT-13276

Comment from Heather Pattee
Comment from Diane Arnal
Comment from Teresa Miller
Comment from Chris Nolasco
Comment from szu burgess
Comment from Charles Goldsmith
Comment from Vicki Casarett
Comment from Sarah Stansill
Comment from Sarah Yonder
Comment from Laura Mcmullen
Comment from Raymond Arent
Comment from Nan Faile
Comment from Lila-Dave ZastrowHendrickson
Comment from Eddie Konczal
Comment from David Elwell
Comment from Jay Brasher
Comment from Ray Barlow
Comment from Misti Kane
Comment from BRETT KENGOR
Comment from lin farley
Comment from Dave Stevens
Comment from Ruchir Vora
Comment from Sarah Gerard
Comment from Jocelyn Parris
Comment from Dara Errichetti
Comment from Mike Shields
Comment from Eugene Bae
Comment from Lisa Knight
Comment from andres venegas
Comment from Lenore Solomon
Comment from David Jones
Comment from william rastetter
Comment from Linda Shultis-Hoffmann
Comment from Barry Horney
Comment from mary coulter
Comment from Chad Pearson
Comment from GLORIA SHARP
Comment from Robert Long
Comment from Kevin Henry
Comment from Pamela Hamilton
Comment from Joe Balsamo

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18422
NOAA-NMFS-2020-0031-DRAFT-18423
NOAA-NMFS-2020-0031-DRAFT-18424
NOAA-NMFS-2020-0031-DRAFT-18425
NOAA-NMFS-2020-0031-DRAFT-18426
NOAA-NMFS-2020-0031-DRAFT-18427
NOAA-NMFS-2020-0031-DRAFT-18428
NOAA-NMFS-2020-0031-DRAFT-18429
NOAA-NMFS-2020-0031-DRAFT-18430
NOAA-NMFS-2020-0031-DRAFT-18431
NOAA-NMFS-2020-0031-DRAFT-18432
NOAA-NMFS-2020-0031-DRAFT-18433
NOAA-NMFS-2020-0031-DRAFT-18434
NOAA-NMFS-2020-0031-DRAFT-18435
NOAA-NMFS-2020-0031-DRAFT-18436
NOAA-NMFS-2020-0031-DRAFT-18437
NOAA-NMFS-2020-0031-DRAFT-18438
NOAA-NMFS-2020-0031-DRAFT-18439
NOAA-NMFS-2020-0031-DRAFT-18440
NOAA-NMFS-2020-0031-DRAFT-18441
NOAA-NMFS-2020-0031-DRAFT-18442
NOAA-NMFS-2020-0031-DRAFT-18443
NOAA-NMFS-2020-0031-DRAFT-18444
NOAA-NMFS-2020-0031-DRAFT-18445
NOAA-NMFS-2020-0031-DRAFT-18446
NOAA-NMFS-2020-0031-DRAFT-18447
NOAA-NMFS-2020-0031-DRAFT-18448
NOAA-NMFS-2020-0031-DRAFT-18449
NOAA-NMFS-2020-0031-DRAFT-18450
NOAA-NMFS-2020-0031-DRAFT-18451
NOAA-NMFS-2020-0031-DRAFT-18452
NOAA-NMFS-2020-0031-DRAFT-18453
NOAA-NMFS-2020-0031-DRAFT-18454
NOAA-NMFS-2020-0031-DRAFT-18455
NOAA-NMFS-2020-0031-DRAFT-18456
NOAA-NMFS-2020-0031-DRAFT-18457
NOAA-NMFS-2020-0031-DRAFT-18458
NOAA-NMFS-2020-0031-DRAFT-18459
NOAA-NMFS-2020-0031-DRAFT-18460
NOAA-NMFS-2020-0031-DRAFT-18461
NOAA-NMFS-2020-0031-DRAFT-18462

Comment from Marlena Lovewell
Comment from Nancy Dollard
Comment from Sherry McCullough
Comment from Margaret Tice
Comment from Monique Williams
Comment from Evelyn Coltman
Comment from D'Anna Fortunato
Comment from Linda Allen
Comment from John Rokas
Comment from Diane OBrien
Comment from Deborah Butler
Comment from Margarita Perez
Comment from Frederick Blosser
Comment from Carlos Medina
Comment from Margarita Gonzalez
Comment from Paula Standley
Comment from Connie Kirkham
Comment from Jane W
Comment from Michelle Vallee
Comment from Simona Burshteyn
Comment from ALISON APLIN
Comment from julia holleran
Comment from Kelly Caffrey
Comment from Lawrence Spinner
Comment from Aaron Kenna
Comment from Debasri Roy
Comment from Vickie Jacobs
Comment from Pam Reeves
Comment from Melody Anne Boatright
Comment from Elaine Edell
Comment from Joyce Cantino
Comment from Mary Shannon
Comment from Ginny Rocco
Comment from fern clark
Comment from sarah vanderwaaall
Comment from Taffi Newhouser
Comment from Mary Bissell
Comment from Karen Winnick
Comment from Gerald Karlovitz
Comment from Barbara Merrill
Comment from Roberta Stern

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13277
NOAA-NMFS-2020-0031-DRAFT-13278
NOAA-NMFS-2020-0031-DRAFT-13279
NOAA-NMFS-2020-0031-DRAFT-13280
NOAA-NMFS-2020-0031-DRAFT-13281
NOAA-NMFS-2020-0031-DRAFT-13282
NOAA-NMFS-2020-0031-DRAFT-13283
NOAA-NMFS-2020-0031-DRAFT-13284
NOAA-NMFS-2020-0031-DRAFT-13285
NOAA-NMFS-2020-0031-DRAFT-13286
NOAA-NMFS-2020-0031-DRAFT-13287
NOAA-NMFS-2020-0031-DRAFT-13288
NOAA-NMFS-2020-0031-DRAFT-13289
NOAA-NMFS-2020-0031-DRAFT-13290
NOAA-NMFS-2020-0031-DRAFT-13291
NOAA-NMFS-2020-0031-DRAFT-13293
NOAA-NMFS-2020-0031-DRAFT-13294
NOAA-NMFS-2020-0031-DRAFT-13295
NOAA-NMFS-2020-0031-DRAFT-13296
NOAA-NMFS-2020-0031-DRAFT-13297
NOAA-NMFS-2020-0031-DRAFT-13298
NOAA-NMFS-2020-0031-DRAFT-13299
NOAA-NMFS-2020-0031-DRAFT-13300
NOAA-NMFS-2020-0031-DRAFT-13301
NOAA-NMFS-2020-0031-DRAFT-13302
NOAA-NMFS-2020-0031-DRAFT-13303
NOAA-NMFS-2020-0031-DRAFT-13304
NOAA-NMFS-2020-0031-DRAFT-13306
NOAA-NMFS-2020-0031-DRAFT-13307
NOAA-NMFS-2020-0031-DRAFT-13308
NOAA-NMFS-2020-0031-DRAFT-13309
NOAA-NMFS-2020-0031-DRAFT-13310
NOAA-NMFS-2020-0031-DRAFT-13311
NOAA-NMFS-2020-0031-DRAFT-13312
NOAA-NMFS-2020-0031-DRAFT-13313
NOAA-NMFS-2020-0031-DRAFT-13314
NOAA-NMFS-2020-0031-DRAFT-13315
NOAA-NMFS-2020-0031-DRAFT-13316
NOAA-NMFS-2020-0031-DRAFT-13317
NOAA-NMFS-2020-0031-DRAFT-13318
NOAA-NMFS-2020-0031-DRAFT-13319

Comment from Diane Faircloth
Comment from Denise Henyard
Comment from Paula Eaton
Comment from Karyn Sederberg
Comment from ANDREW HOFFMAN
Comment from Elizabeth Cherubin
Comment from Wendy Ryden
Comment from Riley Canada
Comment from Sandra. Langer
Comment from Janette Klein
Comment from Johanna Scott
Comment from Mark Lotito
Comment from Laraine Lebron
Comment from S Simpson
Comment from Patricia Heiden
Comment from Kathleen Mulhall
Comment from Nicole Kennedy
Comment from Carolyn Warner
Comment from Beverly Boling
Comment from Mel Vance
Comment from Jeffery Olson
Comment from Dorothy Hatch
Comment from Michele Fulton
Comment from Angel Hissley
Comment from Michael Brezin
Comment from Michele Horenstein
Comment from Sandy Kasper
Comment from Tracy Nguyen
Comment from Monroe Quinn
Comment from Janet Romine
Comment from Cynthia Bernett
Comment from Shira Miess
Comment from Leah Olson
Comment from Nicholas Stott
Comment from Kathy Goltry
Comment from Terri Hartsfield
Comment from Mark Gowan
Comment from William leben
Comment from Michael Raymond
Comment from Timothy Wuthier
Comment from Phyllis White

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18463
NOAA-NMFS-2020-0031-DRAFT-18464
NOAA-NMFS-2020-0031-DRAFT-18465
NOAA-NMFS-2020-0031-DRAFT-18466
NOAA-NMFS-2020-0031-DRAFT-18467
NOAA-NMFS-2020-0031-DRAFT-18468
NOAA-NMFS-2020-0031-DRAFT-18469
NOAA-NMFS-2020-0031-DRAFT-18470
NOAA-NMFS-2020-0031-DRAFT-18471
NOAA-NMFS-2020-0031-DRAFT-18472
NOAA-NMFS-2020-0031-DRAFT-18473
NOAA-NMFS-2020-0031-DRAFT-18474
NOAA-NMFS-2020-0031-DRAFT-18475
NOAA-NMFS-2020-0031-DRAFT-18476
NOAA-NMFS-2020-0031-DRAFT-18477
NOAA-NMFS-2020-0031-DRAFT-18478
NOAA-NMFS-2020-0031-DRAFT-18479
NOAA-NMFS-2020-0031-DRAFT-18480
NOAA-NMFS-2020-0031-DRAFT-18481
NOAA-NMFS-2020-0031-DRAFT-18482
NOAA-NMFS-2020-0031-DRAFT-18483
NOAA-NMFS-2020-0031-DRAFT-18484
NOAA-NMFS-2020-0031-DRAFT-18485
NOAA-NMFS-2020-0031-DRAFT-18486
NOAA-NMFS-2020-0031-DRAFT-18487
NOAA-NMFS-2020-0031-DRAFT-18488
NOAA-NMFS-2020-0031-DRAFT-18489
NOAA-NMFS-2020-0031-DRAFT-18490
NOAA-NMFS-2020-0031-DRAFT-18491
NOAA-NMFS-2020-0031-DRAFT-18492
NOAA-NMFS-2020-0031-DRAFT-18493
NOAA-NMFS-2020-0031-DRAFT-18494
NOAA-NMFS-2020-0031-DRAFT-18495
NOAA-NMFS-2020-0031-DRAFT-18496
NOAA-NMFS-2020-0031-DRAFT-18497
NOAA-NMFS-2020-0031-DRAFT-18498
NOAA-NMFS-2020-0031-DRAFT-18499
NOAA-NMFS-2020-0031-DRAFT-18500
NOAA-NMFS-2020-0031-DRAFT-18501
NOAA-NMFS-2020-0031-DRAFT-18502
NOAA-NMFS-2020-0031-DRAFT-18503

Comment from Debbie Cieplinski
Comment from Lynette Rynders
Comment from Karen Kravcov Malcolm
Comment from Patricia Rogers
Comment from Flavia Sollecito
Comment from Lily Doris
Comment from Laura BLANCHETTE
Comment from Sheree Bala
Comment from Larry Bosket
Comment from Kevin Bickers
Comment from judith keeley
Comment from Michael Smith
Comment from Susan Worden
Comment from Lise Hull
Comment from Claudia D
Comment from Louis Sambuco
Comment from Marguerite Fortin
Comment from Erin Meadows
Comment from Gayle Janzen
Comment from Katherine Anderson
Comment from Shawna Zanney
Comment from Valerie Masi
Comment from Rita Mullis
Comment from Ruth Dyke
Comment from Lilia Casarez
Comment from Connie Colvin
Comment from Robert Scott
Comment from Mikaela Sierra
Comment from M Timmins
Comment from Malcolm Elgut
Comment from Mark Davis
Comment from Alma Spaulding
Comment from Kendra Knight
Comment from Katherine Stano
Comment from Susan Canada
Comment from Gail Clark
Comment from Michael Zeller
Comment from Judith Rubin
Comment from Lisa Bonaldi
Comment from Mary Dudley
Comment from Kevin Stodolski

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13320
NOAA-NMFS-2020-0031-DRAFT-13321
NOAA-NMFS-2020-0031-DRAFT-13322
NOAA-NMFS-2020-0031-DRAFT-13323
NOAA-NMFS-2020-0031-DRAFT-13324
NOAA-NMFS-2020-0031-DRAFT-13325
NOAA-NMFS-2020-0031-DRAFT-13326
NOAA-NMFS-2020-0031-DRAFT-13327
NOAA-NMFS-2020-0031-DRAFT-13328
NOAA-NMFS-2020-0031-DRAFT-13329
NOAA-NMFS-2020-0031-DRAFT-13330
NOAA-NMFS-2020-0031-DRAFT-13331
NOAA-NMFS-2020-0031-DRAFT-13332
NOAA-NMFS-2020-0031-DRAFT-13333
NOAA-NMFS-2020-0031-DRAFT-13334
NOAA-NMFS-2020-0031-DRAFT-13335
NOAA-NMFS-2020-0031-DRAFT-13336
NOAA-NMFS-2020-0031-DRAFT-13337
NOAA-NMFS-2020-0031-DRAFT-13339
NOAA-NMFS-2020-0031-DRAFT-13340
NOAA-NMFS-2020-0031-DRAFT-13341
NOAA-NMFS-2020-0031-DRAFT-13342
NOAA-NMFS-2020-0031-DRAFT-13343
NOAA-NMFS-2020-0031-DRAFT-13344
NOAA-NMFS-2020-0031-DRAFT-13345
NOAA-NMFS-2020-0031-DRAFT-13346
NOAA-NMFS-2020-0031-DRAFT-13347
NOAA-NMFS-2020-0031-DRAFT-13348
NOAA-NMFS-2020-0031-DRAFT-13349
NOAA-NMFS-2020-0031-DRAFT-13350
NOAA-NMFS-2020-0031-DRAFT-13351
NOAA-NMFS-2020-0031-DRAFT-13352
NOAA-NMFS-2020-0031-DRAFT-13354
NOAA-NMFS-2020-0031-DRAFT-13355
NOAA-NMFS-2020-0031-DRAFT-13356
NOAA-NMFS-2020-0031-DRAFT-13357
NOAA-NMFS-2020-0031-DRAFT-13358
NOAA-NMFS-2020-0031-DRAFT-13359
NOAA-NMFS-2020-0031-DRAFT-13360
NOAA-NMFS-2020-0031-DRAFT-13361
NOAA-NMFS-2020-0031-DRAFT-13362

Comment from Shannon Marshall
Comment from steve simmons
Comment from John Cohen
Comment from don smith
Comment from Erin Kennedy
Comment from Paul Johnson
Comment from Bill Marotz
Comment from Annie McCann
Comment from Nancy Feuerbacher
Comment from Irene Casey
Comment from Hal Glidden
Comment from Jimmie Lunsford
Comment from Clara sharp
Comment from Tammy Bittler
Comment from Lena Williams
Comment from Lena Williams
Comment from Carol Kain
Comment from Bob Rushford
Comment from Surya-Patricia Hood
Comment from EMMA JENNINGS
Comment from TRAVIS JENNINGS
Comment from Michele B
Comment from Lawrence Joe
Comment from Tina Messamore
Comment from Robert Bagley
Comment from Russell Jones
Comment from Claire Bush
Comment from Frances Heath
Comment from KELLY BARRIOS
Comment from Kristina Ruhland
Comment from Tina Overland
Comment from Nicholas Bridgett
Comment from Pam Moore
Comment from Luanne Alomair
Comment from Ronlyn Schwartz
Comment from Francine Lipka
Comment from Stephanie Haines
Comment from Diane Loughbom
Comment from Sam Eaton
Comment from elaine peters
Comment from Lizzie Vierra

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18504
NOAA-NMFS-2020-0031-DRAFT-18505
NOAA-NMFS-2020-0031-DRAFT-18506
NOAA-NMFS-2020-0031-DRAFT-18507
NOAA-NMFS-2020-0031-DRAFT-18508
NOAA-NMFS-2020-0031-DRAFT-18509
NOAA-NMFS-2020-0031-DRAFT-18510
NOAA-NMFS-2020-0031-DRAFT-18511
NOAA-NMFS-2020-0031-DRAFT-18512
NOAA-NMFS-2020-0031-DRAFT-18513
NOAA-NMFS-2020-0031-DRAFT-18514
NOAA-NMFS-2020-0031-DRAFT-18515
NOAA-NMFS-2020-0031-DRAFT-18516
NOAA-NMFS-2020-0031-DRAFT-18517
NOAA-NMFS-2020-0031-DRAFT-18518
NOAA-NMFS-2020-0031-DRAFT-18519
NOAA-NMFS-2020-0031-DRAFT-18520
NOAA-NMFS-2020-0031-DRAFT-18521
NOAA-NMFS-2020-0031-DRAFT-18522
NOAA-NMFS-2020-0031-DRAFT-18523
NOAA-NMFS-2020-0031-DRAFT-18524
NOAA-NMFS-2020-0031-DRAFT-18525
NOAA-NMFS-2020-0031-DRAFT-18526
NOAA-NMFS-2020-0031-DRAFT-18527
NOAA-NMFS-2020-0031-DRAFT-18528
NOAA-NMFS-2020-0031-DRAFT-18529
NOAA-NMFS-2020-0031-DRAFT-18530
NOAA-NMFS-2020-0031-DRAFT-18531
NOAA-NMFS-2020-0031-DRAFT-18532
NOAA-NMFS-2020-0031-DRAFT-18533
NOAA-NMFS-2020-0031-DRAFT-18534
NOAA-NMFS-2020-0031-DRAFT-18535
NOAA-NMFS-2020-0031-DRAFT-18536
NOAA-NMFS-2020-0031-DRAFT-18537
NOAA-NMFS-2020-0031-DRAFT-18538
NOAA-NMFS-2020-0031-DRAFT-18539
NOAA-NMFS-2020-0031-DRAFT-18540
NOAA-NMFS-2020-0031-DRAFT-18541
NOAA-NMFS-2020-0031-DRAFT-18542
NOAA-NMFS-2020-0031-DRAFT-18543
NOAA-NMFS-2020-0031-DRAFT-18544

Comment from Terri Fields
Comment from Ellen Peterson
Comment from Jim Anthis
Comment from Estella Edwards
Comment from joyce heyn
Comment from James Frattarola
Comment from Sheri Opp
Comment from Arlene Ng
Comment from Kennedy Roop
Comment from Nina Perino
Comment from anh nguyen
Comment from Jason Alexander
Comment from Suzy Siegmann
Comment from pamela guyon
Comment from Marvis J Phillips
Comment from Glenna Dowling
Comment from Rebecca Wang
Comment from Susan Emery
Comment from Judy Manning
Comment from Margarita Politte
Comment from Linda Blodgett
Comment from JUNE SCHNEIDERMAN
Comment from Margaret Lloyd
Comment from Sherry Frey
Comment from fern clark
Comment from Angela Poinsett
Comment from Michalle Gleason
Comment from Natalie Aharonian
Comment from Jay R Hipol
Comment from Sher Pullen
Comment from David Hombokau
Comment from Faith Conroy
Comment from Beverly Saks
Comment from Mary Dabney
Comment from Edward Macan
Comment from Ben Martin
Comment from Diane Rohn
Comment from Leonid Volovnik
Comment from Peggy Bergen
Comment from Suzanne Marienau
Comment from Kate Hein

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13364
NOAA-NMFS-2020-0031-DRAFT-13365
NOAA-NMFS-2020-0031-DRAFT-13366
NOAA-NMFS-2020-0031-DRAFT-13367
NOAA-NMFS-2020-0031-DRAFT-13368
NOAA-NMFS-2020-0031-DRAFT-13370
NOAA-NMFS-2020-0031-DRAFT-13372
NOAA-NMFS-2020-0031-DRAFT-13373
NOAA-NMFS-2020-0031-DRAFT-13374
NOAA-NMFS-2020-0031-DRAFT-13375
NOAA-NMFS-2020-0031-DRAFT-13376
NOAA-NMFS-2020-0031-DRAFT-13377
NOAA-NMFS-2020-0031-DRAFT-13378
NOAA-NMFS-2020-0031-DRAFT-13379
NOAA-NMFS-2020-0031-DRAFT-13380
NOAA-NMFS-2020-0031-DRAFT-13381
NOAA-NMFS-2020-0031-DRAFT-13382
NOAA-NMFS-2020-0031-DRAFT-13383
NOAA-NMFS-2020-0031-DRAFT-13384
NOAA-NMFS-2020-0031-DRAFT-13385
NOAA-NMFS-2020-0031-DRAFT-13386
NOAA-NMFS-2020-0031-DRAFT-13387
NOAA-NMFS-2020-0031-DRAFT-13389
NOAA-NMFS-2020-0031-DRAFT-13390
NOAA-NMFS-2020-0031-DRAFT-13391
NOAA-NMFS-2020-0031-DRAFT-13392
NOAA-NMFS-2020-0031-DRAFT-13393
NOAA-NMFS-2020-0031-DRAFT-13394
NOAA-NMFS-2020-0031-DRAFT-13395
NOAA-NMFS-2020-0031-DRAFT-13396
NOAA-NMFS-2020-0031-DRAFT-13397
NOAA-NMFS-2020-0031-DRAFT-13398
NOAA-NMFS-2020-0031-DRAFT-13399
NOAA-NMFS-2020-0031-DRAFT-13400
NOAA-NMFS-2020-0031-DRAFT-13401
NOAA-NMFS-2020-0031-DRAFT-13402
NOAA-NMFS-2020-0031-DRAFT-13403
NOAA-NMFS-2020-0031-DRAFT-13404
NOAA-NMFS-2020-0031-DRAFT-13405
NOAA-NMFS-2020-0031-DRAFT-13406
NOAA-NMFS-2020-0031-DRAFT-13407

Comment from Jennifer Shanks
Comment from Georgeta Burca
Comment from Angel McCarter
Comment from Gabriella Turek
Comment from Julian Siminski
Comment from Lauri Moon
Comment from barbara maat
Comment from Linda Camp
Comment from Sean Jaquiss
Comment from Elizabeth Hartrick
Comment from Catherine Nelson
Comment from Kerry Witmer
Comment from Joel Jensen
Comment from Nick Brannan
Comment from Karen Scanlon
Comment from Christopher Michaels
Comment from Patricia Auer
Comment from Mario Melo
Comment from Carter Jones
Comment from Jacquelyn Fay
Comment from Mary Easton
Comment from Diana Sanderson
Comment from Lisa Niebling
Comment from Frances M
Comment from Amy M
Comment from Gary Maedl
Comment from Ruth Quinones
Comment from Valerie Apel
Comment from Leah Hallow
Comment from Matt Nesbit
Comment from Albert Honican
Comment from Alfred Wilson
Comment from Stephen Pittman
Comment from Judith Karlovsky
Comment from Jeff Kulp
Comment from JAMES JOHNSON
Comment from Roger Vaughan
Comment from Cathi Campbell
Comment from Laura Hughes
Comment from Jennifer Romans
Comment from Erica Runge

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18545
NOAA-NMFS-2020-0031-DRAFT-18546
NOAA-NMFS-2020-0031-DRAFT-18547
NOAA-NMFS-2020-0031-DRAFT-18548
NOAA-NMFS-2020-0031-DRAFT-18549
NOAA-NMFS-2020-0031-DRAFT-18550
NOAA-NMFS-2020-0031-DRAFT-18551
NOAA-NMFS-2020-0031-DRAFT-18552
NOAA-NMFS-2020-0031-DRAFT-18553
NOAA-NMFS-2020-0031-DRAFT-18554
NOAA-NMFS-2020-0031-DRAFT-18555
NOAA-NMFS-2020-0031-DRAFT-18556
NOAA-NMFS-2020-0031-DRAFT-18557
NOAA-NMFS-2020-0031-DRAFT-18558
NOAA-NMFS-2020-0031-DRAFT-18559
NOAA-NMFS-2020-0031-DRAFT-18560
NOAA-NMFS-2020-0031-DRAFT-18561
NOAA-NMFS-2020-0031-DRAFT-18562
NOAA-NMFS-2020-0031-DRAFT-18563
NOAA-NMFS-2020-0031-DRAFT-18564
NOAA-NMFS-2020-0031-DRAFT-18565
NOAA-NMFS-2020-0031-DRAFT-18566
NOAA-NMFS-2020-0031-DRAFT-18567
NOAA-NMFS-2020-0031-DRAFT-18568
NOAA-NMFS-2020-0031-DRAFT-18569
NOAA-NMFS-2020-0031-DRAFT-18570
NOAA-NMFS-2020-0031-DRAFT-18571
NOAA-NMFS-2020-0031-DRAFT-18572
NOAA-NMFS-2020-0031-DRAFT-18573
NOAA-NMFS-2020-0031-DRAFT-18574
NOAA-NMFS-2020-0031-DRAFT-18575
NOAA-NMFS-2020-0031-DRAFT-18576
NOAA-NMFS-2020-0031-DRAFT-18577
NOAA-NMFS-2020-0031-DRAFT-18578
NOAA-NMFS-2020-0031-DRAFT-18579
NOAA-NMFS-2020-0031-DRAFT-18580
NOAA-NMFS-2020-0031-DRAFT-18581
NOAA-NMFS-2020-0031-DRAFT-18582
NOAA-NMFS-2020-0031-DRAFT-18583
NOAA-NMFS-2020-0031-DRAFT-18584
NOAA-NMFS-2020-0031-DRAFT-18585

Comment from Carlos Echevarria
Comment from Heather Lapensee
Comment from Susan DalSanto
Comment from Sarah Mattingly
Comment from Patricia Allen
Comment from Elizabeth Meszaros
Comment from Patricia Dishman
Comment from Pamela VourosCallahan
Comment from PAMELA J SMITH
Comment from Elizabeth Meszaros
Comment from Sima K
Comment from Debra Harpole
Comment from Amanda Ellixson
Comment from Phyllis Kaiser
Comment from Lorraine Small
Comment from Debbie Lapierre
Comment from Kelly Brannigan
Comment from Dave Beck
Comment from Reanna Flores
Comment from Sharon Fenderson
Comment from James Knott
Comment from Maureen Drews
Comment from Sarah Hafer
Comment from Gary Worthy
Comment from rochelle ellison
Comment from Ki Jung
Comment from MaryAnn Tittle
Comment from Michael Collier
Comment from Adrienne Metter
Comment from Shannon Fox
Comment from Mr Derlin Clair
Comment from Enoch Ben Gabriel Jihad
Shabazz Yisrael Bey
Comment from Pamela Gray
Comment from GEENA DURAN
Comment from Kimberly Mann
Comment from Rachel Docherty
Comment from Warren Potter
Comment from David Carter
Comment from Debra Dorfman
Comment from Tammie Thier
Comment from Kimberly Mann

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13408
NOAA-NMFS-2020-0031-DRAFT-13409
NOAA-NMFS-2020-0031-DRAFT-13410
NOAA-NMFS-2020-0031-DRAFT-13411
NOAA-NMFS-2020-0031-DRAFT-13412
NOAA-NMFS-2020-0031-DRAFT-13413
NOAA-NMFS-2020-0031-DRAFT-13414
NOAA-NMFS-2020-0031-DRAFT-13415
NOAA-NMFS-2020-0031-DRAFT-13416
NOAA-NMFS-2020-0031-DRAFT-13417
NOAA-NMFS-2020-0031-DRAFT-13418
NOAA-NMFS-2020-0031-DRAFT-13419
NOAA-NMFS-2020-0031-DRAFT-13420
NOAA-NMFS-2020-0031-DRAFT-13421
NOAA-NMFS-2020-0031-DRAFT-13422
NOAA-NMFS-2020-0031-DRAFT-13423
NOAA-NMFS-2020-0031-DRAFT-13425
NOAA-NMFS-2020-0031-DRAFT-13426
NOAA-NMFS-2020-0031-DRAFT-13428
NOAA-NMFS-2020-0031-DRAFT-13429
NOAA-NMFS-2020-0031-DRAFT-13430
NOAA-NMFS-2020-0031-DRAFT-13431
NOAA-NMFS-2020-0031-DRAFT-13432
NOAA-NMFS-2020-0031-DRAFT-13433
NOAA-NMFS-2020-0031-DRAFT-13434
NOAA-NMFS-2020-0031-DRAFT-13436
NOAA-NMFS-2020-0031-DRAFT-13437
NOAA-NMFS-2020-0031-DRAFT-13438
NOAA-NMFS-2020-0031-DRAFT-13439
NOAA-NMFS-2020-0031-DRAFT-13440
NOAA-NMFS-2020-0031-DRAFT-13441
NOAA-NMFS-2020-0031-DRAFT-13443
NOAA-NMFS-2020-0031-DRAFT-13445
NOAA-NMFS-2020-0031-DRAFT-13446
NOAA-NMFS-2020-0031-DRAFT-13447
NOAA-NMFS-2020-0031-DRAFT-13448
NOAA-NMFS-2020-0031-DRAFT-13449
NOAA-NMFS-2020-0031-DRAFT-13450
NOAA-NMFS-2020-0031-DRAFT-13451
NOAA-NMFS-2020-0031-DRAFT-13452
NOAA-NMFS-2020-0031-DRAFT-13453

Comment from John Dixon
Comment from Wendy McGowan
Comment from tara wheeler
Comment from Sheila Kelley
Comment from Gail Hoehn
Comment from CHRISTOPHER PARSONS
Comment from carl tegethoff
Comment from Dawn Hendry
Comment from Sabrina Sarne
Comment from tami mccready
Comment from Cynthia Lawrence
Comment from April Narcisse
Comment from Robert Wahl
Comment from Skot McDaniel
Comment from Julie Hawkins
Comment from Matt Reola
Comment from Mavis Belisle
Comment from Debra Raymond
Comment from Derinda Nilsson
Comment from Aubre Walther
Comment from Larry Chandler
Comment from Lara Hutchin
Comment from Juan Garcs
Comment from Deidra Smith
Comment from Ashleigh Britton
Comment from Ramsay Kieffer
Comment from Norbert Mietus
Comment from Maria Balicka
Comment from Janet Carmichael
Comment from Rebecca Doane
Comment from Danielle Miele
Comment from Karen Witty
Comment from Michael Garitty
Comment from Claudia Gorecki
Comment from Michael Puntillo
Comment from Leslie Kriebel
Comment from Michael Puntillo
Comment from Karyn Blue
Comment from Michael Favata
Comment from Joanna Leary
Comment from Diana Rodgers

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18586
NOAA-NMFS-2020-0031-DRAFT-18587
NOAA-NMFS-2020-0031-DRAFT-18588
NOAA-NMFS-2020-0031-DRAFT-18589
NOAA-NMFS-2020-0031-DRAFT-18590
NOAA-NMFS-2020-0031-DRAFT-18591
NOAA-NMFS-2020-0031-DRAFT-18592
NOAA-NMFS-2020-0031-DRAFT-18593
NOAA-NMFS-2020-0031-DRAFT-18594
NOAA-NMFS-2020-0031-DRAFT-18595
NOAA-NMFS-2020-0031-DRAFT-18596
NOAA-NMFS-2020-0031-DRAFT-18597
NOAA-NMFS-2020-0031-DRAFT-18598
NOAA-NMFS-2020-0031-DRAFT-18599
NOAA-NMFS-2020-0031-DRAFT-18600
NOAA-NMFS-2020-0031-DRAFT-18601
NOAA-NMFS-2020-0031-DRAFT-18602
NOAA-NMFS-2020-0031-DRAFT-18603
NOAA-NMFS-2020-0031-DRAFT-18604
NOAA-NMFS-2020-0031-DRAFT-18605
NOAA-NMFS-2020-0031-DRAFT-18606
NOAA-NMFS-2020-0031-DRAFT-18607
NOAA-NMFS-2020-0031-DRAFT-18608
NOAA-NMFS-2020-0031-DRAFT-18609
NOAA-NMFS-2020-0031-DRAFT-18610
NOAA-NMFS-2020-0031-DRAFT-18611
NOAA-NMFS-2020-0031-DRAFT-18612
NOAA-NMFS-2020-0031-DRAFT-18613
NOAA-NMFS-2020-0031-DRAFT-18614
NOAA-NMFS-2020-0031-DRAFT-18615
NOAA-NMFS-2020-0031-DRAFT-18616
NOAA-NMFS-2020-0031-DRAFT-18617
NOAA-NMFS-2020-0031-DRAFT-18618
NOAA-NMFS-2020-0031-DRAFT-18619
NOAA-NMFS-2020-0031-DRAFT-18620
NOAA-NMFS-2020-0031-DRAFT-18621
NOAA-NMFS-2020-0031-DRAFT-18622
NOAA-NMFS-2020-0031-DRAFT-18623
NOAA-NMFS-2020-0031-DRAFT-18624
NOAA-NMFS-2020-0031-DRAFT-18625
NOAA-NMFS-2020-0031-DRAFT-18626

Comment from Melinda Weisser Lee
Comment from Susan Loscher
Comment from Virgene Link New
Comment from Carol Oller
Comment from Valerie Emery
Comment from Caroline Mead
Comment from Caroline Oneal
Comment from t bell
Comment from Renee Owens
Comment from Angi Tilley
Comment from Katie Haber
Comment from Robert DeMuth
Comment from Sandra Klueger
Comment from Evan Oakley
Comment from Sandra Webster
Comment from Valerle Leonard
Comment from Thomas Libbey
Comment from Mari Dominguez
Comment from Susan Quickel
Comment from Bruce Ross
Comment from Dave Howard
Comment from Sarah Jordan
Comment from Angela Norse
Comment from John Everett
Comment from Colonel Meyer
Comment from David Wilcox
Comment from Sheila Tran
Comment from A French
Comment from Nano McNamara
Comment from Mary Callison
Comment from Sharmayne Busher
Comment from Sally Kyle
Comment from Alicia Paravola
Comment from Anne Barker
Comment from Michael Deckard
Comment from Katy Adcock
Comment from Charlene Homady
Comment from Claire Prevost
Comment from Mary Fleming
Comment from Barbara Adkins
Comment from Bonnie Butts

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13454
NOAA-NMFS-2020-0031-DRAFT-13455
NOAA-NMFS-2020-0031-DRAFT-13456
NOAA-NMFS-2020-0031-DRAFT-13457
NOAA-NMFS-2020-0031-DRAFT-13459
NOAA-NMFS-2020-0031-DRAFT-13460
NOAA-NMFS-2020-0031-DRAFT-13461
NOAA-NMFS-2020-0031-DRAFT-13462
NOAA-NMFS-2020-0031-DRAFT-13463
NOAA-NMFS-2020-0031-DRAFT-13464
NOAA-NMFS-2020-0031-DRAFT-13465
NOAA-NMFS-2020-0031-DRAFT-13466
NOAA-NMFS-2020-0031-DRAFT-13467
NOAA-NMFS-2020-0031-DRAFT-13468
NOAA-NMFS-2020-0031-DRAFT-13470
NOAA-NMFS-2020-0031-DRAFT-13471
NOAA-NMFS-2020-0031-DRAFT-13472
NOAA-NMFS-2020-0031-DRAFT-13473
NOAA-NMFS-2020-0031-DRAFT-13474
NOAA-NMFS-2020-0031-DRAFT-13475
NOAA-NMFS-2020-0031-DRAFT-13478
NOAA-NMFS-2020-0031-DRAFT-13479
NOAA-NMFS-2020-0031-DRAFT-13480
NOAA-NMFS-2020-0031-DRAFT-13481
NOAA-NMFS-2020-0031-DRAFT-13482
NOAA-NMFS-2020-0031-DRAFT-13483
NOAA-NMFS-2020-0031-DRAFT-13484
NOAA-NMFS-2020-0031-DRAFT-13485
NOAA-NMFS-2020-0031-DRAFT-13486
NOAA-NMFS-2020-0031-DRAFT-13487
NOAA-NMFS-2020-0031-DRAFT-13488
NOAA-NMFS-2020-0031-DRAFT-13489
NOAA-NMFS-2020-0031-DRAFT-13490
NOAA-NMFS-2020-0031-DRAFT-13491
NOAA-NMFS-2020-0031-DRAFT-13492
NOAA-NMFS-2020-0031-DRAFT-13493
NOAA-NMFS-2020-0031-DRAFT-13494
NOAA-NMFS-2020-0031-DRAFT-13495
NOAA-NMFS-2020-0031-DRAFT-13496
NOAA-NMFS-2020-0031-DRAFT-13497
NOAA-NMFS-2020-0031-DRAFT-13504

Comment from T Thompson
Comment from Shan Magnuson
Comment from David Wimsatt
Comment from Sandra Joy
Comment from V Evan
Comment from Amaryntha Schalin
Comment from Cheryl Arthur
Comment from Marc Westler
Comment from Philip Ritter
Comment from Diane Klump
Comment from Leslie Valentine
Comment from Pamela Hall
Comment from Lee McCann
Comment from Mary Splan
Comment from Paul Doscher
Comment from Manucher Baybordi
Comment from Patricia Gashlin
Comment from Shelby Hood
Comment from Robert De Beck
Comment from Beth Williamson
Comment from Arci Jimenez
Comment from Lauretta Iaconetti
Comment from Deb Buckler
Comment from L. Sinclair
Comment from Sean Egan
Comment from m'lou christ
Comment from Irina Clark
Comment from Barbara DeCoursey
Comment from Stephanie Cloak-Sander
Comment from Linda Gertig
Comment from M Gosline
Comment from Randi McManus
Comment from Erika Sirabian
Comment from Christie Vaughn
Comment from Susan Perez
Comment from f t
Comment from catherine podojil
Comment from Ivonne Montero
Comment from Rebecca Lippmann
Comment from Heidi Howell
Comment from MaryJo Fontenot

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18627
NOAA-NMFS-2020-0031-DRAFT-18628
NOAA-NMFS-2020-0031-DRAFT-18629
NOAA-NMFS-2020-0031-DRAFT-18630
NOAA-NMFS-2020-0031-DRAFT-18631
NOAA-NMFS-2020-0031-DRAFT-18632
NOAA-NMFS-2020-0031-DRAFT-18633
NOAA-NMFS-2020-0031-DRAFT-18634
NOAA-NMFS-2020-0031-DRAFT-18635
NOAA-NMFS-2020-0031-DRAFT-18636
NOAA-NMFS-2020-0031-DRAFT-18637
NOAA-NMFS-2020-0031-DRAFT-18638
NOAA-NMFS-2020-0031-DRAFT-18639
NOAA-NMFS-2020-0031-DRAFT-18640
NOAA-NMFS-2020-0031-DRAFT-18641
NOAA-NMFS-2020-0031-DRAFT-18642
NOAA-NMFS-2020-0031-DRAFT-18643
NOAA-NMFS-2020-0031-DRAFT-18644
NOAA-NMFS-2020-0031-DRAFT-18645
NOAA-NMFS-2020-0031-DRAFT-18646
NOAA-NMFS-2020-0031-DRAFT-18647
NOAA-NMFS-2020-0031-DRAFT-18648
NOAA-NMFS-2020-0031-DRAFT-18649
NOAA-NMFS-2020-0031-DRAFT-18650
NOAA-NMFS-2020-0031-DRAFT-18651
NOAA-NMFS-2020-0031-DRAFT-18652
NOAA-NMFS-2020-0031-DRAFT-18653
NOAA-NMFS-2020-0031-DRAFT-18654
NOAA-NMFS-2020-0031-DRAFT-18655
NOAA-NMFS-2020-0031-DRAFT-18656
NOAA-NMFS-2020-0031-DRAFT-18657
NOAA-NMFS-2020-0031-DRAFT-18658
NOAA-NMFS-2020-0031-DRAFT-18659
NOAA-NMFS-2020-0031-DRAFT-18660
NOAA-NMFS-2020-0031-DRAFT-18661
NOAA-NMFS-2020-0031-DRAFT-18662
NOAA-NMFS-2020-0031-DRAFT-18663
NOAA-NMFS-2020-0031-DRAFT-18664
NOAA-NMFS-2020-0031-DRAFT-18665
NOAA-NMFS-2020-0031-DRAFT-18666
NOAA-NMFS-2020-0031-DRAFT-18667

Comment from Kay Spidle
Comment from Janet Uyeki
Comment from Arlene Baker
Comment from Raymond Mlynczak
Comment from Steven Kranowski
Comment from SANDA AKERLUND
Comment from Pam Hobbs
Comment from Dawn Skok
Comment from Julia Westfall
Comment from Ali Mosa
Comment from Lauren Schiffman
Comment from Yulia Brockdorf
Comment from Meredith Miller
Comment from Hannah Smith
Comment from Vicky Chan
Comment from Lisa Zarafonetis
Comment from Lori Crowley
Comment from Melissa Johnson
Comment from Susan Gilcreast
Comment from Irham Saeed
Comment from Georgie Song
Comment from Melissa Amberson
Comment from Cassy S
Comment from Catherine Squier
Comment from Patricia Crail
Comment from Jen Shanks
Comment from Steve Scott
Comment from Sue Christiansen
Comment from Sharon Jenkins
Comment from Gabriel Funes
Comment from Lauren Hembree
Comment from Rosiris Paniagua
Comment from Tammy Bullock
Comment from Domingo Hermosillo
Comment from Wayne Cohen
Comment from Virginia Dwyer
Comment from Melissa Santucci
Comment from Beverly Bullock
Comment from Don McKelvey
Comment from Ava Lee
Comment from Lorraine Small

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13505
NOAA-NMFS-2020-0031-DRAFT-13506
NOAA-NMFS-2020-0031-DRAFT-13507
NOAA-NMFS-2020-0031-DRAFT-13508
NOAA-NMFS-2020-0031-DRAFT-13509
NOAA-NMFS-2020-0031-DRAFT-13510
NOAA-NMFS-2020-0031-DRAFT-13511
NOAA-NMFS-2020-0031-DRAFT-13512
NOAA-NMFS-2020-0031-DRAFT-13513
NOAA-NMFS-2020-0031-DRAFT-13514
NOAA-NMFS-2020-0031-DRAFT-13515
NOAA-NMFS-2020-0031-DRAFT-13516
NOAA-NMFS-2020-0031-DRAFT-13517
NOAA-NMFS-2020-0031-DRAFT-13518
NOAA-NMFS-2020-0031-DRAFT-13519
NOAA-NMFS-2020-0031-DRAFT-13520
NOAA-NMFS-2020-0031-DRAFT-13521
NOAA-NMFS-2020-0031-DRAFT-13522
NOAA-NMFS-2020-0031-DRAFT-13523
NOAA-NMFS-2020-0031-DRAFT-13524
NOAA-NMFS-2020-0031-DRAFT-13525
NOAA-NMFS-2020-0031-DRAFT-13526
NOAA-NMFS-2020-0031-DRAFT-13527
NOAA-NMFS-2020-0031-DRAFT-13528
NOAA-NMFS-2020-0031-DRAFT-13529
NOAA-NMFS-2020-0031-DRAFT-13530
NOAA-NMFS-2020-0031-DRAFT-13532
NOAA-NMFS-2020-0031-DRAFT-13533
NOAA-NMFS-2020-0031-DRAFT-13534
NOAA-NMFS-2020-0031-DRAFT-13535
NOAA-NMFS-2020-0031-DRAFT-13536
NOAA-NMFS-2020-0031-DRAFT-13537
NOAA-NMFS-2020-0031-DRAFT-13538
NOAA-NMFS-2020-0031-DRAFT-13539
NOAA-NMFS-2020-0031-DRAFT-13540
NOAA-NMFS-2020-0031-DRAFT-13541
NOAA-NMFS-2020-0031-DRAFT-13542
NOAA-NMFS-2020-0031-DRAFT-13543
NOAA-NMFS-2020-0031-DRAFT-13544
NOAA-NMFS-2020-0031-DRAFT-13545
NOAA-NMFS-2020-0031-DRAFT-13546

Comment from Katie Clifford
Comment from Kathy lawless
Comment from Katie Clifford
Comment from Hannah King
Comment from Diane Kraft
Comment from Dee Morin
Comment from Jennifer Schieffer
Comment from Medora Van Denburgh
Comment from Rax Green
Comment from Claire Phillips
Comment from James Murpheyj
Comment from Candace. Slivinski
Comment from Kris Gata
Comment from Lorraine Avallone
Comment from Lauren Bas
Comment from Stephen Bamford
Comment from Nina Gondos
Comment from Laura Nilson
Comment from Robert Morton
Comment from Patricia Grace
Comment from Brian Gingras
Comment from Lynne Jones
Comment from SUSAN BABBITT
Comment from Sally Brainerd
Comment from April Tackett
Comment from Beverly Bradshaw
Comment from Beverly Bradshaw
Comment from Laurel Watson
Comment from Robert Abbatecola
Comment from Julia French
Comment from pat turney
Comment from Christopher O'Brien
Comment from Debbie Jarae
Comment from Arline Hoskinson
Comment from Allison Jones
Comment from Patricia Snowden
Comment from stacey murrow
Comment from James Whitelock
Comment from Doug Roaten
Comment from Rebecca Glass
Comment from Russell Brooks

02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18668
NOAA-NMFS-2020-0031-DRAFT-18669
NOAA-NMFS-2020-0031-DRAFT-18670
NOAA-NMFS-2020-0031-DRAFT-18671
NOAA-NMFS-2020-0031-DRAFT-18672
NOAA-NMFS-2020-0031-DRAFT-18673
NOAA-NMFS-2020-0031-DRAFT-18674
NOAA-NMFS-2020-0031-DRAFT-18675
NOAA-NMFS-2020-0031-DRAFT-18676
NOAA-NMFS-2020-0031-DRAFT-18677
NOAA-NMFS-2020-0031-DRAFT-18678
NOAA-NMFS-2020-0031-DRAFT-18679
NOAA-NMFS-2020-0031-DRAFT-18680
NOAA-NMFS-2020-0031-DRAFT-18681
NOAA-NMFS-2020-0031-DRAFT-18682
NOAA-NMFS-2020-0031-DRAFT-18683
NOAA-NMFS-2020-0031-DRAFT-18684
NOAA-NMFS-2020-0031-DRAFT-18685
NOAA-NMFS-2020-0031-DRAFT-18686
NOAA-NMFS-2020-0031-DRAFT-18687
NOAA-NMFS-2020-0031-DRAFT-18688
NOAA-NMFS-2020-0031-DRAFT-18689
NOAA-NMFS-2020-0031-DRAFT-18690
NOAA-NMFS-2020-0031-DRAFT-18691
NOAA-NMFS-2020-0031-DRAFT-18692
NOAA-NMFS-2020-0031-DRAFT-18693
NOAA-NMFS-2020-0031-DRAFT-18694
NOAA-NMFS-2020-0031-DRAFT-18695
NOAA-NMFS-2020-0031-DRAFT-18696
NOAA-NMFS-2020-0031-DRAFT-18697
NOAA-NMFS-2020-0031-DRAFT-18698
NOAA-NMFS-2020-0031-DRAFT-18699
NOAA-NMFS-2020-0031-DRAFT-18700
NOAA-NMFS-2020-0031-DRAFT-18701
NOAA-NMFS-2020-0031-DRAFT-18702
NOAA-NMFS-2020-0031-DRAFT-18703
NOAA-NMFS-2020-0031-DRAFT-18704
NOAA-NMFS-2020-0031-DRAFT-18705
NOAA-NMFS-2020-0031-DRAFT-18706
NOAA-NMFS-2020-0031-DRAFT-18707
NOAA-NMFS-2020-0031-DRAFT-18708

Comment from Jeri Fioramanti
Comment from OC Oliveira
Comment from John McMillan
Comment from Laura Long
Comment from Denise Day
Comment from G G Johnson
Comment from Kim Seger
Comment from Carol King
Comment from Angela Plagge
Comment from D Bello
Comment from Robin Kohn
Comment from David Berry
Comment from roger schmidt
Comment from George Bond
Comment from James Hartley
Comment from Nancy Stamm
Comment from Dennis Lyday
Comment from Judi Poulson
Comment from Robin Dumler
Comment from Katelyn Acevedo Perez
Comment from Michael Tucker
Comment from Norm Wilmes
Comment from Sherry Macias
Comment from Yvonne Marley
Comment from Michael Halloran
Comment from Jared Howe
Comment from Reed Fenton
Comment from Melinda RobinsonPaquette
Comment from TRACY JONES
Comment from Julie Richards
Comment from Sarah Dean
Comment from Susan Carroll
Comment from John and Judy Knoten
Comment from Marla Feierabend
Comment from Cody Hoff
Comment from Jason Steadmon
Comment from Tim Durnell
Comment from Terry Derchia
Comment from Michael Hoover
Comment from Jenna Harris
Comment from Julie Moylan

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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021

NOAA-NMFS-2020-0031-DRAFT-13547
NOAA-NMFS-2020-0031-DRAFT-13548
NOAA-NMFS-2020-0031-DRAFT-13549
NOAA-NMFS-2020-0031-DRAFT-13550
NOAA-NMFS-2020-0031-DRAFT-13551
NOAA-NMFS-2020-0031-DRAFT-13552
NOAA-NMFS-2020-0031-DRAFT-13553
NOAA-NMFS-2020-0031-DRAFT-13554
NOAA-NMFS-2020-0031-DRAFT-13555
NOAA-NMFS-2020-0031-DRAFT-13556
NOAA-NMFS-2020-0031-DRAFT-13558
NOAA-NMFS-2020-0031-DRAFT-13559
NOAA-NMFS-2020-0031-DRAFT-13560
NOAA-NMFS-2020-0031-DRAFT-13561
NOAA-NMFS-2020-0031-DRAFT-13562
NOAA-NMFS-2020-0031-DRAFT-13563
NOAA-NMFS-2020-0031-DRAFT-13564
NOAA-NMFS-2020-0031-DRAFT-13565
NOAA-NMFS-2020-0031-DRAFT-13566
NOAA-NMFS-2020-0031-DRAFT-13567
NOAA-NMFS-2020-0031-DRAFT-13568
NOAA-NMFS-2020-0031-DRAFT-13569
NOAA-NMFS-2020-0031-DRAFT-13570
NOAA-NMFS-2020-0031-DRAFT-13571
NOAA-NMFS-2020-0031-DRAFT-13572
NOAA-NMFS-2020-0031-DRAFT-13573
NOAA-NMFS-2020-0031-DRAFT-13574
NOAA-NMFS-2020-0031-DRAFT-13575
NOAA-NMFS-2020-0031-DRAFT-13576
NOAA-NMFS-2020-0031-DRAFT-13577
NOAA-NMFS-2020-0031-DRAFT-13578
NOAA-NMFS-2020-0031-DRAFT-13579
NOAA-NMFS-2020-0031-DRAFT-13580
NOAA-NMFS-2020-0031-DRAFT-13581
NOAA-NMFS-2020-0031-DRAFT-13582
NOAA-NMFS-2020-0031-DRAFT-13583
NOAA-NMFS-2020-0031-DRAFT-13584
NOAA-NMFS-2020-0031-DRAFT-13585
NOAA-NMFS-2020-0031-DRAFT-13586
NOAA-NMFS-2020-0031-DRAFT-13587
NOAA-NMFS-2020-0031-DRAFT-13588

Comment from H Lee
Comment from Sandra Bell
Comment from Pamela Roberts
Comment from Shylah valley
Comment from Sharon Szews
Comment from Glenn Moody
Comment from Carol Kommerstad-Reiche
Comment from Marianne White
Comment from Kathy simonik
Comment from Maryann Piccione
Comment from Colleen Conrade
Comment from Mark Crane
Comment from jason husby
Comment from Kimberly Troxell
Comment from Lou MacNaughton
Comment from Susie Tortell
Comment from Kathleen Roche
Comment from David Dragon
Comment from Brieaux Poche
Comment from Paula Shafransky
Comment from Carol Guffey
Comment from Gina Cipriano
Comment from Rita Storie
Comment from Max Burg
Comment from elizabeth shore
Comment from Anita Hayden
Comment from Pamela Williamson
Comment from Michael Donofrio
Comment from Erin Znidar
Comment from William Harrison
Comment from Andrew Auerbach
Comment from Patsy Matthews
Comment from Janet Almond
Comment from Lorena Larez
Comment from Melissa K
Comment from Dana Wrich
Comment from Susan Didrichsen
Comment from Sandra Naidich
Comment from Dennis Hough
Comment from Cindy Grimes
Comment from Glenn Nappi

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18709
NOAA-NMFS-2020-0031-DRAFT-18710
NOAA-NMFS-2020-0031-DRAFT-18711
NOAA-NMFS-2020-0031-DRAFT-18712
NOAA-NMFS-2020-0031-DRAFT-18713
NOAA-NMFS-2020-0031-DRAFT-18714
NOAA-NMFS-2020-0031-DRAFT-18715
NOAA-NMFS-2020-0031-DRAFT-18716
NOAA-NMFS-2020-0031-DRAFT-18717
NOAA-NMFS-2020-0031-DRAFT-18718
NOAA-NMFS-2020-0031-DRAFT-18719
NOAA-NMFS-2020-0031-DRAFT-18720
NOAA-NMFS-2020-0031-DRAFT-18721
NOAA-NMFS-2020-0031-DRAFT-18722
NOAA-NMFS-2020-0031-DRAFT-18723
NOAA-NMFS-2020-0031-DRAFT-18724
NOAA-NMFS-2020-0031-DRAFT-18725
NOAA-NMFS-2020-0031-DRAFT-18726
NOAA-NMFS-2020-0031-DRAFT-18727
NOAA-NMFS-2020-0031-DRAFT-18728
NOAA-NMFS-2020-0031-DRAFT-18729
NOAA-NMFS-2020-0031-DRAFT-18730
NOAA-NMFS-2020-0031-DRAFT-18731
NOAA-NMFS-2020-0031-DRAFT-18732
NOAA-NMFS-2020-0031-DRAFT-18733
NOAA-NMFS-2020-0031-DRAFT-18734
NOAA-NMFS-2020-0031-DRAFT-18735
NOAA-NMFS-2020-0031-DRAFT-18736
NOAA-NMFS-2020-0031-DRAFT-18737
NOAA-NMFS-2020-0031-DRAFT-18738
NOAA-NMFS-2020-0031-DRAFT-18739
NOAA-NMFS-2020-0031-DRAFT-18740
NOAA-NMFS-2020-0031-DRAFT-18741
NOAA-NMFS-2020-0031-DRAFT-18742
NOAA-NMFS-2020-0031-DRAFT-18743
NOAA-NMFS-2020-0031-DRAFT-18744
NOAA-NMFS-2020-0031-DRAFT-18745
NOAA-NMFS-2020-0031-DRAFT-18746
NOAA-NMFS-2020-0031-DRAFT-18747
NOAA-NMFS-2020-0031-DRAFT-18748
NOAA-NMFS-2020-0031-DRAFT-18749

Comment from Terri Cordell
Comment from Cheri Moore
Comment from Carol Devoss
Comment from JOHN DEISS
Comment from David Miller
Comment from Randy Harrison
Comment from James Walton
Comment from susanne madden
Comment from Christina Nillo
Comment from Deirdre Morris
Comment from Valerie Bollini
Comment from Tiffany Buell
Comment from Patricia Foschi
Comment from george jackman
Comment from Margaret Stephens
Comment from Beth Braun
Comment from Michael Violante
Comment from Laurie Toner
Comment from Peter Townsend
Comment from Marianne Hines
Comment from John Chase
Comment from Katherine GermanoKowalczyk
Comment from Linda Lemmel
Comment from Amy Hopkins
Comment from Nicole Shaffer
Comment from Nicolas Duon
Comment from Holly Wilson
Comment from Julie Schampel
Comment from David Casker
Comment from jurissah naive
Comment from Richard Kite
Comment from Maude Burns
Comment from John Lindsay
Comment from Michael Laird
Comment from Gaia Schubert
Comment from Laura Schuman
Comment from Jesse Reyes
Comment from Ralph Guay
Comment from Pamela Glintenkamp
Comment from lauren horwitz
Comment from Ted Weber

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02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13589
NOAA-NMFS-2020-0031-DRAFT-13590
NOAA-NMFS-2020-0031-DRAFT-13591
NOAA-NMFS-2020-0031-DRAFT-13592
NOAA-NMFS-2020-0031-DRAFT-13593
NOAA-NMFS-2020-0031-DRAFT-13594
NOAA-NMFS-2020-0031-DRAFT-13595
NOAA-NMFS-2020-0031-DRAFT-13596
NOAA-NMFS-2020-0031-DRAFT-13597
NOAA-NMFS-2020-0031-DRAFT-13598
NOAA-NMFS-2020-0031-DRAFT-13599
NOAA-NMFS-2020-0031-DRAFT-13600
NOAA-NMFS-2020-0031-DRAFT-13601
NOAA-NMFS-2020-0031-DRAFT-13602
NOAA-NMFS-2020-0031-DRAFT-13603
NOAA-NMFS-2020-0031-DRAFT-13604
NOAA-NMFS-2020-0031-DRAFT-13605
NOAA-NMFS-2020-0031-DRAFT-13606
NOAA-NMFS-2020-0031-DRAFT-13607
NOAA-NMFS-2020-0031-DRAFT-13608
NOAA-NMFS-2020-0031-DRAFT-13610
NOAA-NMFS-2020-0031-DRAFT-13611
NOAA-NMFS-2020-0031-DRAFT-13612
NOAA-NMFS-2020-0031-DRAFT-13613
NOAA-NMFS-2020-0031-DRAFT-13614
NOAA-NMFS-2020-0031-DRAFT-13615
NOAA-NMFS-2020-0031-DRAFT-13616
NOAA-NMFS-2020-0031-DRAFT-13617
NOAA-NMFS-2020-0031-DRAFT-13618
NOAA-NMFS-2020-0031-DRAFT-13619
NOAA-NMFS-2020-0031-DRAFT-13620
NOAA-NMFS-2020-0031-DRAFT-13621
NOAA-NMFS-2020-0031-DRAFT-13622
NOAA-NMFS-2020-0031-DRAFT-13623
NOAA-NMFS-2020-0031-DRAFT-13624
NOAA-NMFS-2020-0031-DRAFT-13625
NOAA-NMFS-2020-0031-DRAFT-13626
NOAA-NMFS-2020-0031-DRAFT-13627
NOAA-NMFS-2020-0031-DRAFT-13628
NOAA-NMFS-2020-0031-DRAFT-13629
NOAA-NMFS-2020-0031-DRAFT-13630

Comment from Tibsherany Bill
Comment from Mary Cato
Comment from Shani Schulman
Comment from M n
Comment from Elizabeth Lowell
Comment from Elizabeth Walker
Comment from Ronna Kabler
Comment from Carlos Mata
Comment from Debbie Mahder
Comment from David Wilcox
Comment from Patricia KETELSEN
Comment from Lena Fine
Comment from Stacy Temeyer
Comment from FLORI STROE
Comment from Natalie DeBoer
Comment from Milissa Burge
Comment from Milissa Burge
Comment from Tatyana Shats
Comment from Glen Weissman
Comment from Kelly Grogan
Comment from Christopher Greffin
Comment from Frank Blake
Comment from Sharon Atkinson
Comment from Sonja Wong
Comment from Bob Leppo
Comment from Pat Petro
Comment from Joan Miller
Comment from Lilian Cimadoro
Comment from Wendy Wiberg
Comment from Matthew Hartlieb
Comment from Ms. Menard
Comment from Joseph Wiesner
Comment from Amy Morneault-Mentz
Comment from Larry Beane
Comment from Kevin Stueven
Comment from Vincent DiTizio
Comment from Edward Sullivan
Comment from Pilar Zorrilla
Comment from Catherine Kowalczyk.
Comment from Anna Kolovou
Comment from Dennis Nelson

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18750
NOAA-NMFS-2020-0031-DRAFT-18751
NOAA-NMFS-2020-0031-DRAFT-18752
NOAA-NMFS-2020-0031-DRAFT-18753
NOAA-NMFS-2020-0031-DRAFT-18754
NOAA-NMFS-2020-0031-DRAFT-18755
NOAA-NMFS-2020-0031-DRAFT-18756
NOAA-NMFS-2020-0031-DRAFT-18757
NOAA-NMFS-2020-0031-DRAFT-18758
NOAA-NMFS-2020-0031-DRAFT-18759
NOAA-NMFS-2020-0031-DRAFT-18760
NOAA-NMFS-2020-0031-DRAFT-18761
NOAA-NMFS-2020-0031-DRAFT-18762
NOAA-NMFS-2020-0031-DRAFT-18763
NOAA-NMFS-2020-0031-DRAFT-18764
NOAA-NMFS-2020-0031-DRAFT-18765
NOAA-NMFS-2020-0031-DRAFT-18766
NOAA-NMFS-2020-0031-DRAFT-18767
NOAA-NMFS-2020-0031-DRAFT-18768
NOAA-NMFS-2020-0031-DRAFT-18769
NOAA-NMFS-2020-0031-DRAFT-18770
NOAA-NMFS-2020-0031-DRAFT-18771
NOAA-NMFS-2020-0031-DRAFT-18772
NOAA-NMFS-2020-0031-DRAFT-18773
NOAA-NMFS-2020-0031-DRAFT-18774
NOAA-NMFS-2020-0031-DRAFT-18775
NOAA-NMFS-2020-0031-DRAFT-18776
NOAA-NMFS-2020-0031-DRAFT-18777
NOAA-NMFS-2020-0031-DRAFT-18778
NOAA-NMFS-2020-0031-DRAFT-18779
NOAA-NMFS-2020-0031-DRAFT-18780
NOAA-NMFS-2020-0031-DRAFT-18781
NOAA-NMFS-2020-0031-DRAFT-18782
NOAA-NMFS-2020-0031-DRAFT-18783
NOAA-NMFS-2020-0031-DRAFT-18784
NOAA-NMFS-2020-0031-DRAFT-18785
NOAA-NMFS-2020-0031-DRAFT-18786
NOAA-NMFS-2020-0031-DRAFT-18787
NOAA-NMFS-2020-0031-DRAFT-18788
NOAA-NMFS-2020-0031-DRAFT-18789
NOAA-NMFS-2020-0031-DRAFT-18791

Comment from Katherine Werner
Comment from Bruce Ross
Comment from Seymour Gross
Comment from Nalei Kahakalau
Comment from Karen Bond
Comment from TIM DRESSEL
Comment from Steve Berman
Comment from Scott Rubel
Comment from Robbie White
Comment from Tony Espinosa
Comment from Angela Judy
Comment from Diane Arnal
Comment from Katie Morgan
Comment from Ann Bein
Comment from Heidi Klee
Comment from Maria Williamson
Comment from Graciela Huth
Comment from Clare Wheeler
Comment from Julie Parcells
Comment from Michael Bittner
Comment from Richard Coreno
Comment from John Gordon
Comment from Carrie Breen
Comment from Amelia Linder
Comment from Judith Weis
Comment from jess odoski
Comment from Patricia Kavet
Comment from Charles Dineen
Comment from Scott Emsley
Comment from Heidi Kausch
Comment from eric pash
Comment from Joseph Lawson
Comment from Barbra Raymond
Comment from Carol Modrell
Comment from Patricia May
Comment from Anne Robison
Comment from Susan Grabowski
Comment from Julie Sacco
Comment from Mina Bornn
Comment from Caitlin Burke
Comment from Jon Olson

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13631
NOAA-NMFS-2020-0031-DRAFT-13632
NOAA-NMFS-2020-0031-DRAFT-13633
NOAA-NMFS-2020-0031-DRAFT-13634
NOAA-NMFS-2020-0031-DRAFT-13635
NOAA-NMFS-2020-0031-DRAFT-13636
NOAA-NMFS-2020-0031-DRAFT-13637
NOAA-NMFS-2020-0031-DRAFT-13638
NOAA-NMFS-2020-0031-DRAFT-13639
NOAA-NMFS-2020-0031-DRAFT-13640
NOAA-NMFS-2020-0031-DRAFT-13641
NOAA-NMFS-2020-0031-DRAFT-13642
NOAA-NMFS-2020-0031-DRAFT-13643
NOAA-NMFS-2020-0031-DRAFT-13644
NOAA-NMFS-2020-0031-DRAFT-13645
NOAA-NMFS-2020-0031-DRAFT-13646
NOAA-NMFS-2020-0031-DRAFT-13647
NOAA-NMFS-2020-0031-DRAFT-13648
NOAA-NMFS-2020-0031-DRAFT-13649
NOAA-NMFS-2020-0031-DRAFT-13650
NOAA-NMFS-2020-0031-DRAFT-13651
NOAA-NMFS-2020-0031-DRAFT-13652
NOAA-NMFS-2020-0031-DRAFT-13653
NOAA-NMFS-2020-0031-DRAFT-13654
NOAA-NMFS-2020-0031-DRAFT-13655
NOAA-NMFS-2020-0031-DRAFT-13656
NOAA-NMFS-2020-0031-DRAFT-13657
NOAA-NMFS-2020-0031-DRAFT-13658
NOAA-NMFS-2020-0031-DRAFT-13659
NOAA-NMFS-2020-0031-DRAFT-13660
NOAA-NMFS-2020-0031-DRAFT-13661
NOAA-NMFS-2020-0031-DRAFT-13662
NOAA-NMFS-2020-0031-DRAFT-13663
NOAA-NMFS-2020-0031-DRAFT-13664
NOAA-NMFS-2020-0031-DRAFT-13665
NOAA-NMFS-2020-0031-DRAFT-13666
NOAA-NMFS-2020-0031-DRAFT-13667
NOAA-NMFS-2020-0031-DRAFT-13668
NOAA-NMFS-2020-0031-DRAFT-13669
NOAA-NMFS-2020-0031-DRAFT-13670
NOAA-NMFS-2020-0031-DRAFT-13671

Comment from Sumiko Miller
Comment from Christine Hayes
Comment from Zinnia Politzer
Comment from Jeff Burns
Comment from Jane Alexander
Comment from Carmen Buono
Comment from Lisa Answeeney
Comment from Susan Enzinna
Comment from William Schaffer
Comment from Barbara Walls
Comment from Nancy Miller
Comment from Francie Fillatti
Comment from Daun Kilpatrick
Comment from David Halperin
Comment from Ruth Housman
Comment from Linda Rudman
Comment from Gail Leakan
Comment from Weldon Williams
Comment from Pam Hepfer
Comment from Mai Hermann
Comment from Michele Osland
Comment from Ian Proctor
Comment from Desiree Johnson
Comment from Bonnie Smith
Comment from Lorna Mccaslin
Comment from Jennifer Purvis
Comment from Jeffrey Christo
Comment from Vicki Puluso
Comment from Ellen Jessen
Comment from Mike Sheppard
Comment from Elena Fernandez
Comment from AnnaLea Elliott
Comment from Monica Bonualas
Comment from Janice Ferrier
Comment from Tara Nestleroad
Comment from Kathrine Jones
Comment from Sheri Hirsch
Comment from Debora Hojda
Comment from Meryl Alexander
Comment from Robert Cauley
Comment from Patricia Ruggles

02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18792
NOAA-NMFS-2020-0031-DRAFT-18793
NOAA-NMFS-2020-0031-DRAFT-18794
NOAA-NMFS-2020-0031-DRAFT-18795
NOAA-NMFS-2020-0031-DRAFT-18796
NOAA-NMFS-2020-0031-DRAFT-18797
NOAA-NMFS-2020-0031-DRAFT-18798
NOAA-NMFS-2020-0031-DRAFT-18799
NOAA-NMFS-2020-0031-DRAFT-18800
NOAA-NMFS-2020-0031-DRAFT-18801
NOAA-NMFS-2020-0031-DRAFT-18802
NOAA-NMFS-2020-0031-DRAFT-18803
NOAA-NMFS-2020-0031-DRAFT-18804
NOAA-NMFS-2020-0031-DRAFT-18805
NOAA-NMFS-2020-0031-DRAFT-18806
NOAA-NMFS-2020-0031-DRAFT-18807
NOAA-NMFS-2020-0031-DRAFT-18808
NOAA-NMFS-2020-0031-DRAFT-18809
NOAA-NMFS-2020-0031-DRAFT-18810
NOAA-NMFS-2020-0031-DRAFT-18811
NOAA-NMFS-2020-0031-DRAFT-18812
NOAA-NMFS-2020-0031-DRAFT-18813
NOAA-NMFS-2020-0031-DRAFT-18814
NOAA-NMFS-2020-0031-DRAFT-18815
NOAA-NMFS-2020-0031-DRAFT-18816
NOAA-NMFS-2020-0031-DRAFT-18817
NOAA-NMFS-2020-0031-DRAFT-18818
NOAA-NMFS-2020-0031-DRAFT-18819
NOAA-NMFS-2020-0031-DRAFT-18820
NOAA-NMFS-2020-0031-DRAFT-18821
NOAA-NMFS-2020-0031-DRAFT-18822
NOAA-NMFS-2020-0031-DRAFT-18823
NOAA-NMFS-2020-0031-DRAFT-18824
NOAA-NMFS-2020-0031-DRAFT-18825
NOAA-NMFS-2020-0031-DRAFT-18826
NOAA-NMFS-2020-0031-DRAFT-18827
NOAA-NMFS-2020-0031-DRAFT-18828
NOAA-NMFS-2020-0031-DRAFT-18829
NOAA-NMFS-2020-0031-DRAFT-18830
NOAA-NMFS-2020-0031-DRAFT-18831
NOAA-NMFS-2020-0031-DRAFT-18832

Comment from Debra Kern
Comment from KATHY CARROLL
Comment from Frances Blythe
Comment from Christel Bolgiano
Comment from Lara Kramer-Smith
Comment from Kelly Berdeaux
Comment from Nicole Bickel
Comment from Susan Finsterer
Comment from Allan Campbell
Comment from Paula Beall
Comment from Sarah Meyers
Comment from Patrick Senkel
Comment from Holly Hall
Comment from Brianna Knickerbocker
Comment from Julie Miro
Comment from Carol Masuda
Comment from Joanne Tenney
Comment from Barbara Bonfield
Comment from Steve Green
Comment from Marilyn H
Comment from Marcy Wasinski
Comment from Brenda Evans
Comment from Lloyd Hedger
Comment from Teresa Sem
Comment from Seth Silverman
Comment from Marya Zanders
Comment from Robert Bamford
Comment from Judith Fry
Comment from Barry Goldfarb
Comment from Victoria Heil
Comment from Brooks Obr
Comment from Lumina Greenway
Comment from Edward Bielaus
Comment from Nicole Staudinger
Comment from JoAnne Metzler
Comment from Merrilee Morgan
Comment from LILLIAN MAHANEY
Comment from Angela Jones
Comment from Kris Lacy
Comment from Daniel Polley
Comment from Jodi Rodar

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13672
NOAA-NMFS-2020-0031-DRAFT-13673
NOAA-NMFS-2020-0031-DRAFT-13674
NOAA-NMFS-2020-0031-DRAFT-13675
NOAA-NMFS-2020-0031-DRAFT-13676
NOAA-NMFS-2020-0031-DRAFT-13677
NOAA-NMFS-2020-0031-DRAFT-13678
NOAA-NMFS-2020-0031-DRAFT-13679
NOAA-NMFS-2020-0031-DRAFT-13680
NOAA-NMFS-2020-0031-DRAFT-13681
NOAA-NMFS-2020-0031-DRAFT-13682
NOAA-NMFS-2020-0031-DRAFT-13683
NOAA-NMFS-2020-0031-DRAFT-13685
NOAA-NMFS-2020-0031-DRAFT-13686
NOAA-NMFS-2020-0031-DRAFT-13687
NOAA-NMFS-2020-0031-DRAFT-13688
NOAA-NMFS-2020-0031-DRAFT-13689
NOAA-NMFS-2020-0031-DRAFT-13690
NOAA-NMFS-2020-0031-DRAFT-13691
NOAA-NMFS-2020-0031-DRAFT-13693
NOAA-NMFS-2020-0031-DRAFT-13694
NOAA-NMFS-2020-0031-DRAFT-13695
NOAA-NMFS-2020-0031-DRAFT-13696
NOAA-NMFS-2020-0031-DRAFT-13697
NOAA-NMFS-2020-0031-DRAFT-13698
NOAA-NMFS-2020-0031-DRAFT-13699
NOAA-NMFS-2020-0031-DRAFT-13700
NOAA-NMFS-2020-0031-DRAFT-13701
NOAA-NMFS-2020-0031-DRAFT-13702
NOAA-NMFS-2020-0031-DRAFT-13703
NOAA-NMFS-2020-0031-DRAFT-13704
NOAA-NMFS-2020-0031-DRAFT-13705
NOAA-NMFS-2020-0031-DRAFT-13706
NOAA-NMFS-2020-0031-DRAFT-13707
NOAA-NMFS-2020-0031-DRAFT-13708
NOAA-NMFS-2020-0031-DRAFT-13709
NOAA-NMFS-2020-0031-DRAFT-13710
NOAA-NMFS-2020-0031-DRAFT-13712
NOAA-NMFS-2020-0031-DRAFT-13713
NOAA-NMFS-2020-0031-DRAFT-13714
NOAA-NMFS-2020-0031-DRAFT-13715

Comment from Rhonda Pulliam
Comment from Michele Johansson
Comment from Kate Mullan
Comment from Stanley Charles
Comment from Sirbrenna Jeansonne
Comment from Lorrene Lucas
Comment from Andrea Loft
Comment from Linda Kilgore
Comment from Michele Hutchins
Comment from Lisa Neste
Comment from Annie Laurie
Comment from sam bleecker
Comment from Nancy McLure
Comment from dawn sartori
Comment from Mary Shea
Comment from Sabine ZELL
Comment from Elizabeth Stewart
Comment from Juan Reyes
Comment from Katy Mahlum
Comment from L. Wilkinson
Comment from Bonita Shea
Comment from Terrie Phenicie
Comment from Steven Phenicie
Comment from Frank DiMarzo
Comment from Connelee Shaw
Comment from Cathie Bell
Comment from ALEXIS NAZARIO
Comment from Lee Alton
Comment from RUTH CISNEROS
Comment from Kelly Burgess
Comment from a w
Comment from James Boos
Comment from Manuela Gattasse
Comment from John Eckler
Comment from John Eckler
Comment from Kai Butscher
Comment from Mary Trybul
Comment from Peggy Lyle
Comment from Merry Guben
Comment from victoria boucher
Comment from Misti Reif

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18833
NOAA-NMFS-2020-0031-DRAFT-18834
NOAA-NMFS-2020-0031-DRAFT-18835
NOAA-NMFS-2020-0031-DRAFT-18836
NOAA-NMFS-2020-0031-DRAFT-18837
NOAA-NMFS-2020-0031-DRAFT-18838
NOAA-NMFS-2020-0031-DRAFT-18839
NOAA-NMFS-2020-0031-DRAFT-18840
NOAA-NMFS-2020-0031-DRAFT-18841
NOAA-NMFS-2020-0031-DRAFT-18842
NOAA-NMFS-2020-0031-DRAFT-18843
NOAA-NMFS-2020-0031-DRAFT-18844
NOAA-NMFS-2020-0031-DRAFT-18845
NOAA-NMFS-2020-0031-DRAFT-18846
NOAA-NMFS-2020-0031-DRAFT-18847
NOAA-NMFS-2020-0031-DRAFT-18848
NOAA-NMFS-2020-0031-DRAFT-18849
NOAA-NMFS-2020-0031-DRAFT-18850
NOAA-NMFS-2020-0031-DRAFT-18851
NOAA-NMFS-2020-0031-DRAFT-18852
NOAA-NMFS-2020-0031-DRAFT-18853
NOAA-NMFS-2020-0031-DRAFT-18854
NOAA-NMFS-2020-0031-DRAFT-18855
NOAA-NMFS-2020-0031-DRAFT-18856
NOAA-NMFS-2020-0031-DRAFT-18857
NOAA-NMFS-2020-0031-DRAFT-18858
NOAA-NMFS-2020-0031-DRAFT-18859
NOAA-NMFS-2020-0031-DRAFT-18860
NOAA-NMFS-2020-0031-DRAFT-18861
NOAA-NMFS-2020-0031-DRAFT-18862
NOAA-NMFS-2020-0031-DRAFT-18863
NOAA-NMFS-2020-0031-DRAFT-18864
NOAA-NMFS-2020-0031-DRAFT-18865
NOAA-NMFS-2020-0031-DRAFT-18866
NOAA-NMFS-2020-0031-DRAFT-18867
NOAA-NMFS-2020-0031-DRAFT-18868
NOAA-NMFS-2020-0031-DRAFT-18869
NOAA-NMFS-2020-0031-DRAFT-18870
NOAA-NMFS-2020-0031-DRAFT-18871
NOAA-NMFS-2020-0031-DRAFT-18872
NOAA-NMFS-2020-0031-DRAFT-18873

Comment from Margaret Quentin
Comment from Valerie Shideler
Comment from Christine Arroyo
Comment from Brian Sesack
Comment from Edward Laurson
Comment from Barbra K
Comment from Bob Farrell
Comment from Deborah Perrero
Comment from Paul Zachow
Comment from Melanie Stopyra
Comment from Don Thompson
Comment from Jonathan Kennedy
Comment from Steven Lamers
Comment from Joseph Suarez
Comment from Pat Kemmerer
Comment from JC Corcoran
Comment from Clarence Sutton
Comment from Janice Beyer
Comment from Rochelle Gravance
Comment from Antonia Cx
Comment from Hillary Ostrow
Comment from Shannon Lucas
Comment from Mark Reback
Comment from katharine egan
Comment from laura malka
Comment from Robert Duke
Comment from Beth Hawes
Comment from Peter Gradoni
Comment from Teri Yazdi
Comment from Sasha Jackson
Comment from Geraldine Battistessa
Comment from Matthew Young
Comment from Katie Wood
Comment from Stephanie Potgieter
Comment from Jennifer Emerle-Sifuentes
Comment from Gwen Davis
Comment from Paula Morgan
Comment from Molly Hauck
Comment from Michael Daveiga
Comment from Germano Brandes
Comment from Marla Bottesch

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13716
NOAA-NMFS-2020-0031-DRAFT-13717
NOAA-NMFS-2020-0031-DRAFT-13718
NOAA-NMFS-2020-0031-DRAFT-13719
NOAA-NMFS-2020-0031-DRAFT-13720
NOAA-NMFS-2020-0031-DRAFT-13723
NOAA-NMFS-2020-0031-DRAFT-13724
NOAA-NMFS-2020-0031-DRAFT-13725
NOAA-NMFS-2020-0031-DRAFT-13726
NOAA-NMFS-2020-0031-DRAFT-13727
NOAA-NMFS-2020-0031-DRAFT-13728
NOAA-NMFS-2020-0031-DRAFT-13729
NOAA-NMFS-2020-0031-DRAFT-13730
NOAA-NMFS-2020-0031-DRAFT-13731
NOAA-NMFS-2020-0031-DRAFT-13732
NOAA-NMFS-2020-0031-DRAFT-13733
NOAA-NMFS-2020-0031-DRAFT-13734
NOAA-NMFS-2020-0031-DRAFT-13735
NOAA-NMFS-2020-0031-DRAFT-13736
NOAA-NMFS-2020-0031-DRAFT-13737
NOAA-NMFS-2020-0031-DRAFT-13738
NOAA-NMFS-2020-0031-DRAFT-13739
NOAA-NMFS-2020-0031-DRAFT-13740
NOAA-NMFS-2020-0031-DRAFT-13741
NOAA-NMFS-2020-0031-DRAFT-13742
NOAA-NMFS-2020-0031-DRAFT-13743
NOAA-NMFS-2020-0031-DRAFT-13744
NOAA-NMFS-2020-0031-DRAFT-13745
NOAA-NMFS-2020-0031-DRAFT-13746
NOAA-NMFS-2020-0031-DRAFT-13747
NOAA-NMFS-2020-0031-DRAFT-13748
NOAA-NMFS-2020-0031-DRAFT-13749
NOAA-NMFS-2020-0031-DRAFT-13750
NOAA-NMFS-2020-0031-DRAFT-13751
NOAA-NMFS-2020-0031-DRAFT-13752
NOAA-NMFS-2020-0031-DRAFT-13753
NOAA-NMFS-2020-0031-DRAFT-13754
NOAA-NMFS-2020-0031-DRAFT-13755
NOAA-NMFS-2020-0031-DRAFT-13756
NOAA-NMFS-2020-0031-DRAFT-13758
NOAA-NMFS-2020-0031-DRAFT-13759

Comment from William Forbes
Comment from Brandon Oakley
Comment from Tanya Manning
Comment from Evelyn Dassau
Comment from Anita Laskaris
Comment from Carol Batchelder
Comment from Dennis Hough
Comment from DAVID FURA
Comment from Anthony Tadda
Comment from Wynima Cavagnaro
Comment from Wynima Cavagnaro
Comment from nicolas estvez
Comment from Lindsey Loperena
Comment from Sue VanDerzee
Comment from Penelope Ward
Comment from Dale Morris
Comment from Margaret Quentin
Comment from Julie Wireman
Comment from Dalia Salgado
Comment from Meredith Erickson
Comment from Joan Mccoy
Comment from Angela Brancati
Comment from Catherine Kowalczyk.
Comment from Bruce McCullough
Comment from Catherine Ream
Comment from Linda Oller
Comment from Heidi Shorey
Comment from Debra McPherson
Comment from Marlene Testaguzza
Comment from Michelle Hagan
Comment from oscar zamora
Comment from Jennifer Love
Comment from Catherine Long
Comment from Catherine Lipnick
Comment from Kathetine Napolitani
Comment from Pat Edley
Comment from Carol Batchelder
Comment from Dwight Hughes
Comment from Anita Lane
Comment from Joseph Nowak
Comment from Jennifer Valentine

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18874
NOAA-NMFS-2020-0031-DRAFT-18875
NOAA-NMFS-2020-0031-DRAFT-18876
NOAA-NMFS-2020-0031-DRAFT-18877
NOAA-NMFS-2020-0031-DRAFT-18878
NOAA-NMFS-2020-0031-DRAFT-18879
NOAA-NMFS-2020-0031-DRAFT-18880
NOAA-NMFS-2020-0031-DRAFT-18881
NOAA-NMFS-2020-0031-DRAFT-18882
NOAA-NMFS-2020-0031-DRAFT-18883
NOAA-NMFS-2020-0031-DRAFT-18884
NOAA-NMFS-2020-0031-DRAFT-18885
NOAA-NMFS-2020-0031-DRAFT-18886
NOAA-NMFS-2020-0031-DRAFT-18887
NOAA-NMFS-2020-0031-DRAFT-18888
NOAA-NMFS-2020-0031-DRAFT-18889
NOAA-NMFS-2020-0031-DRAFT-18890
NOAA-NMFS-2020-0031-DRAFT-18891
NOAA-NMFS-2020-0031-DRAFT-18892
NOAA-NMFS-2020-0031-DRAFT-18893
NOAA-NMFS-2020-0031-DRAFT-18894
NOAA-NMFS-2020-0031-DRAFT-18895
NOAA-NMFS-2020-0031-DRAFT-18896
NOAA-NMFS-2020-0031-DRAFT-18897
NOAA-NMFS-2020-0031-DRAFT-18898
NOAA-NMFS-2020-0031-DRAFT-18899
NOAA-NMFS-2020-0031-DRAFT-18900
NOAA-NMFS-2020-0031-DRAFT-18901
NOAA-NMFS-2020-0031-DRAFT-18902
NOAA-NMFS-2020-0031-DRAFT-18903
NOAA-NMFS-2020-0031-DRAFT-18904
NOAA-NMFS-2020-0031-DRAFT-18905
NOAA-NMFS-2020-0031-DRAFT-18906
NOAA-NMFS-2020-0031-DRAFT-18907
NOAA-NMFS-2020-0031-DRAFT-18908
NOAA-NMFS-2020-0031-DRAFT-18909
NOAA-NMFS-2020-0031-DRAFT-18910
NOAA-NMFS-2020-0031-DRAFT-18911
NOAA-NMFS-2020-0031-DRAFT-18912
NOAA-NMFS-2020-0031-DRAFT-18913
NOAA-NMFS-2020-0031-DRAFT-18914

Comment from Vicki Smith
Comment from Vivian Dowell
Comment from Angela Steinberg
Comment from sandy kavoyianni
Comment from Maria Magana
Comment from Juliann Rule
Comment from Brad Walker
Comment from Marlene Miller
Comment from Tobey Thatcher
Comment from Basey Klopp
Comment from John Markham
Comment from bert corley
Comment from Taryn Braband
Comment from Annie McMahon
Comment from Coree Spencer
Comment from Paul Walker
Comment from Elizabeth Grainger
Comment from Susan Hampel
Comment from Maria Aragon
Comment from Marylen kincer
Comment from Dena Schwimmer
Comment from Kristine Winnicki
Comment from Melissa Cleaver
Comment from Jessica Motta
Comment from Chris Buelow
Comment from Michael Martin
Comment from Beverly Bradshaw
Comment from Keith DAlessandro
Comment from cathy delaware
Comment from Karen Ryan
Comment from Nancy Schuhrke
Comment from jim strickland
Comment from Ralf Schuetz
Comment from Bruce Hellemn
Comment from Leuise Crumble
Comment from John Beavers
Comment from glen gorsetman
Comment from Janice Le Blanc
Comment from Walt Brown
Comment from Cathy Grassi
Comment from Coree Spencer

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13760
NOAA-NMFS-2020-0031-DRAFT-13761
NOAA-NMFS-2020-0031-DRAFT-13762
NOAA-NMFS-2020-0031-DRAFT-13763
NOAA-NMFS-2020-0031-DRAFT-13765
NOAA-NMFS-2020-0031-DRAFT-13766
NOAA-NMFS-2020-0031-DRAFT-13767
NOAA-NMFS-2020-0031-DRAFT-13768
NOAA-NMFS-2020-0031-DRAFT-13769
NOAA-NMFS-2020-0031-DRAFT-13770
NOAA-NMFS-2020-0031-DRAFT-13771
NOAA-NMFS-2020-0031-DRAFT-13772
NOAA-NMFS-2020-0031-DRAFT-13773
NOAA-NMFS-2020-0031-DRAFT-13774
NOAA-NMFS-2020-0031-DRAFT-13776
NOAA-NMFS-2020-0031-DRAFT-13777
NOAA-NMFS-2020-0031-DRAFT-13778
NOAA-NMFS-2020-0031-DRAFT-13779
NOAA-NMFS-2020-0031-DRAFT-13780
NOAA-NMFS-2020-0031-DRAFT-13781
NOAA-NMFS-2020-0031-DRAFT-13782
NOAA-NMFS-2020-0031-DRAFT-13783
NOAA-NMFS-2020-0031-DRAFT-13784
NOAA-NMFS-2020-0031-DRAFT-13785
NOAA-NMFS-2020-0031-DRAFT-13786
NOAA-NMFS-2020-0031-DRAFT-13787
NOAA-NMFS-2020-0031-DRAFT-13788
NOAA-NMFS-2020-0031-DRAFT-13789
NOAA-NMFS-2020-0031-DRAFT-13790
NOAA-NMFS-2020-0031-DRAFT-13791
NOAA-NMFS-2020-0031-DRAFT-13792
NOAA-NMFS-2020-0031-DRAFT-13793
NOAA-NMFS-2020-0031-DRAFT-13794
NOAA-NMFS-2020-0031-DRAFT-13795
NOAA-NMFS-2020-0031-DRAFT-13796
NOAA-NMFS-2020-0031-DRAFT-13797
NOAA-NMFS-2020-0031-DRAFT-13798
NOAA-NMFS-2020-0031-DRAFT-13799
NOAA-NMFS-2020-0031-DRAFT-13800
NOAA-NMFS-2020-0031-DRAFT-13801
NOAA-NMFS-2020-0031-DRAFT-13802

Comment from Ericka Abrams
Comment from LISA HEY
Comment from Joe Kaleel
Comment from robert cobb
Comment from JoAnn McGeorge
Comment from Chantal Eldridge
Comment from Marion Patrick
Comment from Leo Lieber
Comment from Jennifer Storm
Comment from RedElisa Mendoza
Comment from Dreyer, David
Comment from Ellen DeMarco
Comment from Diane Monsef
Comment from Nancy Hendrix
Comment from Douglas Nolan
Comment from Judith Foran
Comment from Edward Cubero
Comment from jean publee
Comment from Rita Kain
Comment from Adam Pastula
Comment from SUDIE SALLEE
Comment from Michelle Dumar
Comment from Carol Berard
Comment from Tara De Veau
Comment from Susan Rives-Denight
Comment from Frank Palmer
Comment from Janice Kobi
Comment from Karin Maher
Comment from Jude Lotz
Comment from Ellen Leonard
Comment from Peter Lizotte
Comment from Dona Farishta
Comment from Karen Fain
Comment from Freya Harris
Comment from Sarah Provost
Comment from Candis Whitney
Comment from Joseph Quirk
Comment from Kimberly Kubik
Comment from Bruce HIGGINS
Comment from Shelby Buck
Comment from Jeanne Fitzpatrick

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18915
NOAA-NMFS-2020-0031-DRAFT-18916
NOAA-NMFS-2020-0031-DRAFT-18917
NOAA-NMFS-2020-0031-DRAFT-18918
NOAA-NMFS-2020-0031-DRAFT-18919
NOAA-NMFS-2020-0031-DRAFT-18920
NOAA-NMFS-2020-0031-DRAFT-18921
NOAA-NMFS-2020-0031-DRAFT-18922
NOAA-NMFS-2020-0031-DRAFT-18923
NOAA-NMFS-2020-0031-DRAFT-18924
NOAA-NMFS-2020-0031-DRAFT-18925
NOAA-NMFS-2020-0031-DRAFT-18926
NOAA-NMFS-2020-0031-DRAFT-18927
NOAA-NMFS-2020-0031-DRAFT-18928
NOAA-NMFS-2020-0031-DRAFT-18929
NOAA-NMFS-2020-0031-DRAFT-18930
NOAA-NMFS-2020-0031-DRAFT-18931
NOAA-NMFS-2020-0031-DRAFT-18932
NOAA-NMFS-2020-0031-DRAFT-18933
NOAA-NMFS-2020-0031-DRAFT-18934
NOAA-NMFS-2020-0031-DRAFT-18935
NOAA-NMFS-2020-0031-DRAFT-18936
NOAA-NMFS-2020-0031-DRAFT-18937
NOAA-NMFS-2020-0031-DRAFT-18938
NOAA-NMFS-2020-0031-DRAFT-18939
NOAA-NMFS-2020-0031-DRAFT-18940
NOAA-NMFS-2020-0031-DRAFT-18941
NOAA-NMFS-2020-0031-DRAFT-18942
NOAA-NMFS-2020-0031-DRAFT-18943
NOAA-NMFS-2020-0031-DRAFT-18944
NOAA-NMFS-2020-0031-DRAFT-18945
NOAA-NMFS-2020-0031-DRAFT-18946
NOAA-NMFS-2020-0031-DRAFT-18947
NOAA-NMFS-2020-0031-DRAFT-18948
NOAA-NMFS-2020-0031-DRAFT-18949
NOAA-NMFS-2020-0031-DRAFT-18950
NOAA-NMFS-2020-0031-DRAFT-18951
NOAA-NMFS-2020-0031-DRAFT-18952
NOAA-NMFS-2020-0031-DRAFT-18953
NOAA-NMFS-2020-0031-DRAFT-18954
NOAA-NMFS-2020-0031-DRAFT-18955

Comment from Guy Perkins
Comment from Mia Dravis
Comment from Cheryl Arvio
Comment from Cori Ellison
Comment from Michael Langlais
Comment from REGAN EBERT
Comment from Yvonne Snyder
Comment from Sylvia Duncan
Comment from Monica Urias
Comment from ALAN Weiskott
Comment from William Taylor
Comment from Gail Yborra
Comment from Judith Anshin
Comment from Fred Granlund
Comment from Rebecca Miller
Comment from Lisa Acher
Comment from Maria Correia
Comment from Kal Krishnan
Comment from Scott Steinman
Comment from Sharon Wilson
Comment from Louis Drinkwater
Comment from Lisa Knight
Comment from Alexandra Grossi
Comment from Susan Ford
Comment from Theresa Baroni
Comment from Donna Varcoe
Comment from Norman Traum
Comment from Wendy Stevens
Comment from Chris Guillory
Comment from Jennifer Will
Comment from Dorothy Brown
Comment from Wendy Fast
Comment from Art Van Kampen
Comment from winston huang
Comment from Christine Harris
Comment from Maureen Nolan
Comment from marilyn evenson
Comment from Maria Correia
Comment from Paula Morgan
Comment from Alice Stack
Comment from Zachary Todd

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13803
NOAA-NMFS-2020-0031-DRAFT-13804
NOAA-NMFS-2020-0031-DRAFT-13805
NOAA-NMFS-2020-0031-DRAFT-13806
NOAA-NMFS-2020-0031-DRAFT-13807
NOAA-NMFS-2020-0031-DRAFT-13808
NOAA-NMFS-2020-0031-DRAFT-13809
NOAA-NMFS-2020-0031-DRAFT-13810
NOAA-NMFS-2020-0031-DRAFT-13811
NOAA-NMFS-2020-0031-DRAFT-13812
NOAA-NMFS-2020-0031-DRAFT-13813
NOAA-NMFS-2020-0031-DRAFT-13814
NOAA-NMFS-2020-0031-DRAFT-13815
NOAA-NMFS-2020-0031-DRAFT-13816
NOAA-NMFS-2020-0031-DRAFT-13817
NOAA-NMFS-2020-0031-DRAFT-13818
NOAA-NMFS-2020-0031-DRAFT-13819
NOAA-NMFS-2020-0031-DRAFT-13820
NOAA-NMFS-2020-0031-DRAFT-13821
NOAA-NMFS-2020-0031-DRAFT-13822
NOAA-NMFS-2020-0031-DRAFT-13823
NOAA-NMFS-2020-0031-DRAFT-13824
NOAA-NMFS-2020-0031-DRAFT-13825
NOAA-NMFS-2020-0031-DRAFT-13826
NOAA-NMFS-2020-0031-DRAFT-13827
NOAA-NMFS-2020-0031-DRAFT-13828
NOAA-NMFS-2020-0031-DRAFT-13829
NOAA-NMFS-2020-0031-DRAFT-13830
NOAA-NMFS-2020-0031-DRAFT-13831
NOAA-NMFS-2020-0031-DRAFT-13832
NOAA-NMFS-2020-0031-DRAFT-13833
NOAA-NMFS-2020-0031-DRAFT-13834
NOAA-NMFS-2020-0031-DRAFT-13835
NOAA-NMFS-2020-0031-DRAFT-13836
NOAA-NMFS-2020-0031-DRAFT-13837
NOAA-NMFS-2020-0031-DRAFT-13838
NOAA-NMFS-2020-0031-DRAFT-13839
NOAA-NMFS-2020-0031-DRAFT-13840
NOAA-NMFS-2020-0031-DRAFT-13841
NOAA-NMFS-2020-0031-DRAFT-13842
NOAA-NMFS-2020-0031-DRAFT-13843

Comment from Luerra Hammond
Comment from Jeremy Bleech
Comment from dawn sartori
Comment from Kimberly Wade
Comment from Kimberly Wade
Comment from David Snutes
Comment from Ezra van
Comment from Mark Molloy
Comment from Tina Lynch
Comment from Sherry Wisler
Comment from Karen Fabiane
Comment from Judith Barton
Comment from Pat Van alstyne
Comment from Theresa Carmody
Comment from Brenda Campbell
Comment from Serene Henry
Comment from Linda Granato
Comment from Brenda Roy
Comment from Terry Hares
Comment from Elmone Kissling
Comment from Constance Merwin
Comment from Nicholas Galante
Comment from Miguel Marquez
Comment from Tim Chambo
Comment from Donna Daniels
Comment from Eliot Kaplan
Comment from Karen Wagner
Comment from John Kosiorek
Comment from Rosemary Bernier
Comment from Karla Schuster
Comment from Mary Gutierrez
Comment from Kimberly Carlson
Comment from Laura Schwind
Comment from EVA LOVE
Comment from Marjorie Tortajada
Comment from Jacqueline Brethen
Comment from Deborah Doolittle
Comment from Robert Mayworth
Comment from Cherie Schofner
Comment from Rosemary Carton
Comment from TIMOTHY HOPWOOD

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18956
NOAA-NMFS-2020-0031-DRAFT-18957
NOAA-NMFS-2020-0031-DRAFT-18958
NOAA-NMFS-2020-0031-DRAFT-18959
NOAA-NMFS-2020-0031-DRAFT-18960
NOAA-NMFS-2020-0031-DRAFT-18961
NOAA-NMFS-2020-0031-DRAFT-18962
NOAA-NMFS-2020-0031-DRAFT-18963
NOAA-NMFS-2020-0031-DRAFT-18964
NOAA-NMFS-2020-0031-DRAFT-18965
NOAA-NMFS-2020-0031-DRAFT-18966
NOAA-NMFS-2020-0031-DRAFT-18967
NOAA-NMFS-2020-0031-DRAFT-18968
NOAA-NMFS-2020-0031-DRAFT-18969
NOAA-NMFS-2020-0031-DRAFT-18970
NOAA-NMFS-2020-0031-DRAFT-18971
NOAA-NMFS-2020-0031-DRAFT-18972
NOAA-NMFS-2020-0031-DRAFT-18973
NOAA-NMFS-2020-0031-DRAFT-18974
NOAA-NMFS-2020-0031-DRAFT-18975
NOAA-NMFS-2020-0031-DRAFT-18976
NOAA-NMFS-2020-0031-DRAFT-18977
NOAA-NMFS-2020-0031-DRAFT-18978
NOAA-NMFS-2020-0031-DRAFT-18979
NOAA-NMFS-2020-0031-DRAFT-18980
NOAA-NMFS-2020-0031-DRAFT-18981
NOAA-NMFS-2020-0031-DRAFT-18982
NOAA-NMFS-2020-0031-DRAFT-18983
NOAA-NMFS-2020-0031-DRAFT-18984
NOAA-NMFS-2020-0031-DRAFT-18985
NOAA-NMFS-2020-0031-DRAFT-18986
NOAA-NMFS-2020-0031-DRAFT-18987
NOAA-NMFS-2020-0031-DRAFT-18988
NOAA-NMFS-2020-0031-DRAFT-18989
NOAA-NMFS-2020-0031-DRAFT-18990
NOAA-NMFS-2020-0031-DRAFT-18991
NOAA-NMFS-2020-0031-DRAFT-18992
NOAA-NMFS-2020-0031-DRAFT-18993
NOAA-NMFS-2020-0031-DRAFT-18994
NOAA-NMFS-2020-0031-DRAFT-18995
NOAA-NMFS-2020-0031-DRAFT-18996

Comment from Beverly Bradshaw
Comment from Chris Calvert
Comment from Ed Kraynak
Comment from Leo Shapiro
Comment from Randall Brown
Comment from Ed Dillon
Comment from Liz Tymkiw
Comment from christine raffetto
Comment from Patricia Harlow
Comment from Jacqueline donel
Comment from Eric Lezotte
Comment from diane larsen
Comment from michele rule
Comment from Tobey Thatcher
Comment from Savi Chadha
Comment from Pierina Provenzano
Comment from Terry Inouye
Comment from George Baschiera
Comment from Rita Glasscock
Comment from Stephanie Cook
Comment from Christopher Tumolo
Comment from Sharon Wushensky
Comment from Kara Harms
Comment from Bridget Wyatt
Comment from Kelley Price
Comment from Amanda Sweet
Comment from Stewart Casey
Comment from Melinda Armistead
Comment from As stewards Zerzan
Comment from Glenn Hufnagel
Comment from Margery Race
Comment from Beverly Bradshaw
Comment from Jodi Daniels
Comment from Patricia Rossi
Comment from Marilyn Platt
Comment from Heather Cross
Comment from Claudia Cinardo
Comment from Debra Gagliano
Comment from John engineer
Comment from Beverly Solomon
Comment from Goldyn Summitt

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02/11/2021
02/11/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13844
NOAA-NMFS-2020-0031-DRAFT-13845
NOAA-NMFS-2020-0031-DRAFT-13846
NOAA-NMFS-2020-0031-DRAFT-13847
NOAA-NMFS-2020-0031-DRAFT-13848
NOAA-NMFS-2020-0031-DRAFT-13849
NOAA-NMFS-2020-0031-DRAFT-13850
NOAA-NMFS-2020-0031-DRAFT-13851
NOAA-NMFS-2020-0031-DRAFT-13852
NOAA-NMFS-2020-0031-DRAFT-13853
NOAA-NMFS-2020-0031-DRAFT-13854
NOAA-NMFS-2020-0031-DRAFT-13855
NOAA-NMFS-2020-0031-DRAFT-13856
NOAA-NMFS-2020-0031-DRAFT-13857
NOAA-NMFS-2020-0031-DRAFT-13858
NOAA-NMFS-2020-0031-DRAFT-13859
NOAA-NMFS-2020-0031-DRAFT-13860
NOAA-NMFS-2020-0031-DRAFT-13861
NOAA-NMFS-2020-0031-DRAFT-13862
NOAA-NMFS-2020-0031-DRAFT-13863
NOAA-NMFS-2020-0031-DRAFT-13864
NOAA-NMFS-2020-0031-DRAFT-13865
NOAA-NMFS-2020-0031-DRAFT-13866
NOAA-NMFS-2020-0031-DRAFT-13867
NOAA-NMFS-2020-0031-DRAFT-13868
NOAA-NMFS-2020-0031-DRAFT-13869
NOAA-NMFS-2020-0031-DRAFT-13870
NOAA-NMFS-2020-0031-DRAFT-13871
NOAA-NMFS-2020-0031-DRAFT-13872
NOAA-NMFS-2020-0031-DRAFT-13873
NOAA-NMFS-2020-0031-DRAFT-13874
NOAA-NMFS-2020-0031-DRAFT-13875
NOAA-NMFS-2020-0031-DRAFT-13876
NOAA-NMFS-2020-0031-DRAFT-13877
NOAA-NMFS-2020-0031-DRAFT-13878
NOAA-NMFS-2020-0031-DRAFT-13879
NOAA-NMFS-2020-0031-DRAFT-13880
NOAA-NMFS-2020-0031-DRAFT-13881
NOAA-NMFS-2020-0031-DRAFT-13882
NOAA-NMFS-2020-0031-DRAFT-13883
NOAA-NMFS-2020-0031-DRAFT-13884

Comment from Kim Mewhorter
Comment from Ellen Pennington
Comment from Nicole Lauren
Comment from William Cordero
Comment from Virginia LeBlanc
Comment from Stacey Liguori
Comment from eric pash
Comment from Heike horning
Comment from Ronna Kabler
Comment from Nicholas Potter
Comment from Elizabeth Javinsky
Comment from Carol Hillson
Comment from Anne Sotelo
Comment from Kristin Keating
Comment from Cynthia Papia
Comment from Bruce Wheeler
Comment from Elizabeth Chiribi
Comment from Lisa Zafar
Comment from Maura Pichette
Comment from Cheryl Pittman
Comment from Kristan Uruchurtu
Comment from Dedra Routh
Comment from Angela Brancati
Comment from Stephanie Travers
Comment from Nancy Mesa
Comment from Joe Vecchi
Comment from Nancyy Rose
Comment from Michael Hogan
Comment from Ileana Garcia
Comment from Chuck Hoover
Comment from Thomas Hallock
Comment from Jenifer Johnson
Comment from Mary Bucley
Comment from Suzanne Carreker-Voigt
Comment from Kathleen Brodbeck
Comment from Kathleen Brodbeck
Comment from Joy Campbell
Comment from Sharon Al-Haddad
Comment from Adrienne Moumin
Comment from Frances Breitkopf
Comment from Debbie d

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18997
NOAA-NMFS-2020-0031-DRAFT-18998
NOAA-NMFS-2020-0031-DRAFT-18999
NOAA-NMFS-2020-0031-DRAFT-19000
NOAA-NMFS-2020-0031-DRAFT-19001
NOAA-NMFS-2020-0031-DRAFT-19002
NOAA-NMFS-2020-0031-DRAFT-19003
NOAA-NMFS-2020-0031-DRAFT-19004
NOAA-NMFS-2020-0031-DRAFT-19005
NOAA-NMFS-2020-0031-DRAFT-19006
NOAA-NMFS-2020-0031-DRAFT-19007
NOAA-NMFS-2020-0031-DRAFT-19008
NOAA-NMFS-2020-0031-DRAFT-19009
NOAA-NMFS-2020-0031-DRAFT-19010
NOAA-NMFS-2020-0031-DRAFT-19011
NOAA-NMFS-2020-0031-DRAFT-19012
NOAA-NMFS-2020-0031-DRAFT-19013
NOAA-NMFS-2020-0031-DRAFT-19014
NOAA-NMFS-2020-0031-DRAFT-19015
NOAA-NMFS-2020-0031-DRAFT-19016
NOAA-NMFS-2020-0031-DRAFT-19017
NOAA-NMFS-2020-0031-DRAFT-19018
NOAA-NMFS-2020-0031-DRAFT-19019
NOAA-NMFS-2020-0031-DRAFT-19020
NOAA-NMFS-2020-0031-DRAFT-19021
NOAA-NMFS-2020-0031-DRAFT-19022
NOAA-NMFS-2020-0031-DRAFT-19023
NOAA-NMFS-2020-0031-DRAFT-19024
NOAA-NMFS-2020-0031-DRAFT-19025
NOAA-NMFS-2020-0031-DRAFT-19026
NOAA-NMFS-2020-0031-DRAFT-19027
NOAA-NMFS-2020-0031-DRAFT-19028
NOAA-NMFS-2020-0031-DRAFT-19029
NOAA-NMFS-2020-0031-DRAFT-19030
NOAA-NMFS-2020-0031-DRAFT-19031
NOAA-NMFS-2020-0031-DRAFT-19032
NOAA-NMFS-2020-0031-DRAFT-19033
NOAA-NMFS-2020-0031-DRAFT-19034
NOAA-NMFS-2020-0031-DRAFT-19035
NOAA-NMFS-2020-0031-DRAFT-19036
NOAA-NMFS-2020-0031-DRAFT-19037

Comment from Sallie Robbins-Druian
Comment from rebecca scheckler
Comment from Craig Nazor
Comment from Bash Judy
Comment from Ellen Shively
Comment from Donna Tromans
Comment from Jerry Hokanson
Comment from Thi TonOlshaskie
Comment from Darren Strain
Comment from Alice LeTourneau
Comment from Vicky Brandt
Comment from Susan Coffi
Comment from Pam Nelson
Comment from Ellin Stiteler
Comment from Debra Vitola
Comment from Joel Hencken
Comment from George Marsh
Comment from Jeannie Pollak
Comment from Kat Klahn
Comment from Jennifer Carver
Comment from Mary Allen
Comment from L. Adams
Comment from Joyce McDonald
Comment from Debi Griepsma
Comment from Carmen Chacon
Comment from Margaret Wessels
Comment from Suzanne Smither
Comment from Carrie Swank
Comment from Diane Guernsey
Comment from Linette Foley
Comment from Marian Shaaban
Comment from Viv. K
Comment from Rachel Gullett
Comment from Maia Van Pelt
Comment from Mari Kozlowski
Comment from j M
Comment from Paul Gregory
Comment from Annette Sergi
Comment from Deirdre Gately
Comment from Renee Carl
Comment from David Knopf

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02/12/2021
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02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13885
NOAA-NMFS-2020-0031-DRAFT-13886
NOAA-NMFS-2020-0031-DRAFT-13887
NOAA-NMFS-2020-0031-DRAFT-13889
NOAA-NMFS-2020-0031-DRAFT-13890
NOAA-NMFS-2020-0031-DRAFT-13891
NOAA-NMFS-2020-0031-DRAFT-13892
NOAA-NMFS-2020-0031-DRAFT-13893
NOAA-NMFS-2020-0031-DRAFT-13894
NOAA-NMFS-2020-0031-DRAFT-13895
NOAA-NMFS-2020-0031-DRAFT-13896
NOAA-NMFS-2020-0031-DRAFT-13897
NOAA-NMFS-2020-0031-DRAFT-13898
NOAA-NMFS-2020-0031-DRAFT-13899
NOAA-NMFS-2020-0031-DRAFT-13900
NOAA-NMFS-2020-0031-DRAFT-13901
NOAA-NMFS-2020-0031-DRAFT-13902
NOAA-NMFS-2020-0031-DRAFT-13903
NOAA-NMFS-2020-0031-DRAFT-13904
NOAA-NMFS-2020-0031-DRAFT-13905
NOAA-NMFS-2020-0031-DRAFT-13906
NOAA-NMFS-2020-0031-DRAFT-13907
NOAA-NMFS-2020-0031-DRAFT-13908
NOAA-NMFS-2020-0031-DRAFT-13909
NOAA-NMFS-2020-0031-DRAFT-13910
NOAA-NMFS-2020-0031-DRAFT-13911
NOAA-NMFS-2020-0031-DRAFT-13912
NOAA-NMFS-2020-0031-DRAFT-13913
NOAA-NMFS-2020-0031-DRAFT-13914
NOAA-NMFS-2020-0031-DRAFT-13915
NOAA-NMFS-2020-0031-DRAFT-13916
NOAA-NMFS-2020-0031-DRAFT-13917
NOAA-NMFS-2020-0031-DRAFT-13918
NOAA-NMFS-2020-0031-DRAFT-13919
NOAA-NMFS-2020-0031-DRAFT-13920
NOAA-NMFS-2020-0031-DRAFT-13921
NOAA-NMFS-2020-0031-DRAFT-13922
NOAA-NMFS-2020-0031-DRAFT-13923
NOAA-NMFS-2020-0031-DRAFT-13924
NOAA-NMFS-2020-0031-DRAFT-13925
NOAA-NMFS-2020-0031-DRAFT-13926

Comment from Maggie Rady
Comment from Danielle Shannon
Comment from Vern Southard
Comment from Celeste Langston
Comment from Ana-Paula MartinsFernandes
Comment from Mitchell Deighan
Comment from Bob-Marie Rayburn
Comment from Shobhana Natu
Comment from Anik Mancuso
Comment from George Brieger
Comment from Josefina Gutierrez
Comment from Crystal Rector
Comment from Jef Shelby
Comment from Barbara B
Comment from Robert Freeman
Comment from Nancy McLean
Comment from Annie Katzman
Comment from Steven Studdard
Comment from Michael Heinsohn
Comment from Vanessa Simmons
Comment from Laura T
Comment from Anna Stein
Comment from cheryl greenwood
Comment from Anonymous
Comment from Raissa Holt
Comment from Valerie Haugen
Comment from Dolores Wynne
Comment from Jane Church
Comment from Margaret Olness
Comment from Gaia Cole
Comment from Debbie pierce
Comment from christine sirias
Comment from Rachel Vandinter
Comment from Rose Mellino
Comment from Dana Winkler
Comment from Colonel Meyer
Comment from Doris Smith
Comment from Eric Lohman
Comment from Michael Mager
Comment from Lisa Pezzella
Comment from Julia Toomey

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19038
NOAA-NMFS-2020-0031-DRAFT-19039
NOAA-NMFS-2020-0031-DRAFT-19040
NOAA-NMFS-2020-0031-DRAFT-19041
NOAA-NMFS-2020-0031-DRAFT-19042
NOAA-NMFS-2020-0031-DRAFT-19043
NOAA-NMFS-2020-0031-DRAFT-19044
NOAA-NMFS-2020-0031-DRAFT-19045
NOAA-NMFS-2020-0031-DRAFT-19046
NOAA-NMFS-2020-0031-DRAFT-19047
NOAA-NMFS-2020-0031-DRAFT-19048
NOAA-NMFS-2020-0031-DRAFT-19049
NOAA-NMFS-2020-0031-DRAFT-19050
NOAA-NMFS-2020-0031-DRAFT-19051
NOAA-NMFS-2020-0031-DRAFT-19052
NOAA-NMFS-2020-0031-DRAFT-19053
NOAA-NMFS-2020-0031-DRAFT-19054
NOAA-NMFS-2020-0031-DRAFT-19055
NOAA-NMFS-2020-0031-DRAFT-19056
NOAA-NMFS-2020-0031-DRAFT-19057
NOAA-NMFS-2020-0031-DRAFT-19058
NOAA-NMFS-2020-0031-DRAFT-19059
NOAA-NMFS-2020-0031-DRAFT-19060
NOAA-NMFS-2020-0031-DRAFT-19061
NOAA-NMFS-2020-0031-DRAFT-19062
NOAA-NMFS-2020-0031-DRAFT-19063
NOAA-NMFS-2020-0031-DRAFT-19064
NOAA-NMFS-2020-0031-DRAFT-19065
NOAA-NMFS-2020-0031-DRAFT-19066
NOAA-NMFS-2020-0031-DRAFT-19067
NOAA-NMFS-2020-0031-DRAFT-19068
NOAA-NMFS-2020-0031-DRAFT-19069
NOAA-NMFS-2020-0031-DRAFT-19070
NOAA-NMFS-2020-0031-DRAFT-19071
NOAA-NMFS-2020-0031-DRAFT-19072
NOAA-NMFS-2020-0031-DRAFT-19073
NOAA-NMFS-2020-0031-DRAFT-19074
NOAA-NMFS-2020-0031-DRAFT-19075
NOAA-NMFS-2020-0031-DRAFT-19076
NOAA-NMFS-2020-0031-DRAFT-19077
NOAA-NMFS-2020-0031-DRAFT-19078

Comment from Serena Van Buskirk
Comment from Allan Rubin
Comment from Bob Hagele
Comment from Beverly Bradshaw
Comment from Tom Wendel
Comment from Janelle Bowen
Comment from susan peirce
Comment from Irene Bucko
Comment from Anita Dauberman
Comment from Carol Collins
Comment from Carol Ross
Comment from terese rule
Comment from Laura Ray
Comment from Dana Sanchez
Comment from Hazel Champagne
Comment from Harry Freiberg
Comment from Liz Porter
Comment from Betty Mello
Comment from Barry Miller
Comment from Victoria Chennault
Comment from David Allara
Comment from Gay Linfante
Comment from Eric McLaughlin
Comment from Corey Schade
Comment from Matthew Grussing
Comment from Cheryl Gilchrist
Comment from Barbara Kelly
Comment from Beverly Bradshaw
Comment from Patricia Richard-Amato
Comment from Tami Linder
Comment from Edith Gonzalez
Comment from Richard Evans
Comment from Dominique Edmondson
Comment from Donna Varcoe
Comment from Carlos Acosta
Comment from william mittig
Comment from tj bolduc
Comment from David Ringle
Comment from Janice Shields
Comment from Carole Pontius
Comment from DJ Schubert

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02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13927
NOAA-NMFS-2020-0031-DRAFT-13928
NOAA-NMFS-2020-0031-DRAFT-13929
NOAA-NMFS-2020-0031-DRAFT-13930
NOAA-NMFS-2020-0031-DRAFT-13931
NOAA-NMFS-2020-0031-DRAFT-13932
NOAA-NMFS-2020-0031-DRAFT-13933
NOAA-NMFS-2020-0031-DRAFT-13934
NOAA-NMFS-2020-0031-DRAFT-13935
NOAA-NMFS-2020-0031-DRAFT-13936
NOAA-NMFS-2020-0031-DRAFT-13937
NOAA-NMFS-2020-0031-DRAFT-13938
NOAA-NMFS-2020-0031-DRAFT-13940
NOAA-NMFS-2020-0031-DRAFT-13941
NOAA-NMFS-2020-0031-DRAFT-13942
NOAA-NMFS-2020-0031-DRAFT-13943
NOAA-NMFS-2020-0031-DRAFT-13944
NOAA-NMFS-2020-0031-DRAFT-13945
NOAA-NMFS-2020-0031-DRAFT-13947
NOAA-NMFS-2020-0031-DRAFT-13948
NOAA-NMFS-2020-0031-DRAFT-13949
NOAA-NMFS-2020-0031-DRAFT-13950
NOAA-NMFS-2020-0031-DRAFT-13951
NOAA-NMFS-2020-0031-DRAFT-13952
NOAA-NMFS-2020-0031-DRAFT-13953
NOAA-NMFS-2020-0031-DRAFT-13954
NOAA-NMFS-2020-0031-DRAFT-13955
NOAA-NMFS-2020-0031-DRAFT-13956
NOAA-NMFS-2020-0031-DRAFT-13957
NOAA-NMFS-2020-0031-DRAFT-13958
NOAA-NMFS-2020-0031-DRAFT-13959
NOAA-NMFS-2020-0031-DRAFT-13960
NOAA-NMFS-2020-0031-DRAFT-13961
NOAA-NMFS-2020-0031-DRAFT-13962
NOAA-NMFS-2020-0031-DRAFT-13963
NOAA-NMFS-2020-0031-DRAFT-13965
NOAA-NMFS-2020-0031-DRAFT-13966
NOAA-NMFS-2020-0031-DRAFT-13967
NOAA-NMFS-2020-0031-DRAFT-13968
NOAA-NMFS-2020-0031-DRAFT-13969
NOAA-NMFS-2020-0031-DRAFT-13970

Comment from Sara Graziosa
Comment from Carol Goetschius
Comment from Ann-Marie Corkett
Comment from Ellaine Janicki
Comment from Lisa Kunsch
Comment from Dawna Nelson
Comment from Sandra Wolf-Dean
Comment from Hollee Hansen
Comment from nathan schaefer
Comment from Melissa Carter
Comment from Ruth Housman
Comment from Barbara Schrier
Comment from Melissa Cunningham
Comment from Marsha Hicks
Comment from Peter Crockett
Comment from Anonymous Anonymous
Comment from Marianne Reynolds
Comment from Eowyn Grecco
Comment from Debora Hojda
Comment from Mary Blackmur
Comment from Chris Brock
Comment from Dana Meadows
Comment from Bernard Morris
Comment from Sharon Fors
Comment from Scott Heinze
Comment from Mauricio Espineira
Comment from Sandra Gather
Comment from Beverly Eadie
Comment from John Swiencicki
Comment from Ed Olivo
Comment from Nataliia Dusanovska
Comment from Gary Rosenberger
Comment from Mamie Robbins
Comment from Marilyn Garrett
Comment from Janet Witzeman
Comment from Jeffrey Jenkins
Comment from ROSEMARY GRIFFITH
Comment from Ella Robson
Comment from Lisa Wahle
Comment from Susan Perry
Comment from Susie Weitzenkamp

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19079
NOAA-NMFS-2020-0031-DRAFT-19080
NOAA-NMFS-2020-0031-DRAFT-19081
NOAA-NMFS-2020-0031-DRAFT-19082
NOAA-NMFS-2020-0031-DRAFT-19083
NOAA-NMFS-2020-0031-DRAFT-19084
NOAA-NMFS-2020-0031-DRAFT-19085
NOAA-NMFS-2020-0031-DRAFT-19086
NOAA-NMFS-2020-0031-DRAFT-19087
NOAA-NMFS-2020-0031-DRAFT-19088
NOAA-NMFS-2020-0031-DRAFT-19089
NOAA-NMFS-2020-0031-DRAFT-19090
NOAA-NMFS-2020-0031-DRAFT-19091
NOAA-NMFS-2020-0031-DRAFT-19092
NOAA-NMFS-2020-0031-DRAFT-19093
NOAA-NMFS-2020-0031-DRAFT-19094
NOAA-NMFS-2020-0031-DRAFT-19095
NOAA-NMFS-2020-0031-DRAFT-19096
NOAA-NMFS-2020-0031-DRAFT-19097
NOAA-NMFS-2020-0031-DRAFT-19098
NOAA-NMFS-2020-0031-DRAFT-19099
NOAA-NMFS-2020-0031-DRAFT-19100
NOAA-NMFS-2020-0031-DRAFT-19101
NOAA-NMFS-2020-0031-DRAFT-19102
NOAA-NMFS-2020-0031-DRAFT-19103
NOAA-NMFS-2020-0031-DRAFT-19104
NOAA-NMFS-2020-0031-DRAFT-19105
NOAA-NMFS-2020-0031-DRAFT-19106
NOAA-NMFS-2020-0031-DRAFT-19107
NOAA-NMFS-2020-0031-DRAFT-19108
NOAA-NMFS-2020-0031-DRAFT-19109
NOAA-NMFS-2020-0031-DRAFT-19110
NOAA-NMFS-2020-0031-DRAFT-19111
NOAA-NMFS-2020-0031-DRAFT-19112
NOAA-NMFS-2020-0031-DRAFT-19113
NOAA-NMFS-2020-0031-DRAFT-19114
NOAA-NMFS-2020-0031-DRAFT-19115
NOAA-NMFS-2020-0031-DRAFT-19116
NOAA-NMFS-2020-0031-DRAFT-19117
NOAA-NMFS-2020-0031-DRAFT-19118
NOAA-NMFS-2020-0031-DRAFT-19119

Comment from Sharon Newman
Comment from Andi Shotwell
Comment from Judy Fairless
Comment from Janet Harley
Comment from Vic Bostock
Comment from Angela Embree
Comment from Colleen Nielsen
Comment from Joan Hansen
Comment from Michael Rees
Comment from Sets Furuike
Comment from Jonathan Hancock
Comment from Tara Strand
Comment from Rebecca Tinsley
Comment from Steven Nelson
Comment from Robert Posch
Comment from Kim Streich
Comment from Marsha Chomko
Comment from Chad Johnson
Comment from Erica Rose
Comment from William Nusbaum
Comment from dagmar mclaughlin
Comment from Carmen Celea
Comment from Oceanah D'amore
Comment from Angela Zellner
Comment from John Blaha
Comment from Sandra Barros
Comment from Ashley Ouellette
Comment from Barbara Mesney
Comment from Sarah Yonder
Comment from Gina Bassetti
Comment from Patricia Stewart
Comment from sherrri hodges
Comment from Janet Heinle
Comment from BB Mielke
Comment from Aimee Goff
Comment from Jane Zimmerman
Comment from Jennifer Miller
Comment from melody alexander
Comment from Jane Whiteside
Comment from Fred Licht
Comment from Karen Porter

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02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021
02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13971
NOAA-NMFS-2020-0031-DRAFT-13972
NOAA-NMFS-2020-0031-DRAFT-13973
NOAA-NMFS-2020-0031-DRAFT-13974
NOAA-NMFS-2020-0031-DRAFT-13975
NOAA-NMFS-2020-0031-DRAFT-13976
NOAA-NMFS-2020-0031-DRAFT-13977
NOAA-NMFS-2020-0031-DRAFT-13978
NOAA-NMFS-2020-0031-DRAFT-13979
NOAA-NMFS-2020-0031-DRAFT-13980
NOAA-NMFS-2020-0031-DRAFT-13981
NOAA-NMFS-2020-0031-DRAFT-13982
NOAA-NMFS-2020-0031-DRAFT-13983
NOAA-NMFS-2020-0031-DRAFT-13984
NOAA-NMFS-2020-0031-DRAFT-13985
NOAA-NMFS-2020-0031-DRAFT-13986
NOAA-NMFS-2020-0031-DRAFT-13987
NOAA-NMFS-2020-0031-DRAFT-13988
NOAA-NMFS-2020-0031-DRAFT-13989
NOAA-NMFS-2020-0031-DRAFT-13991
NOAA-NMFS-2020-0031-DRAFT-13992
NOAA-NMFS-2020-0031-DRAFT-13993
NOAA-NMFS-2020-0031-DRAFT-13994
NOAA-NMFS-2020-0031-DRAFT-13995
NOAA-NMFS-2020-0031-DRAFT-13996
NOAA-NMFS-2020-0031-DRAFT-13997
NOAA-NMFS-2020-0031-DRAFT-13998
NOAA-NMFS-2020-0031-DRAFT-13999
NOAA-NMFS-2020-0031-DRAFT-14000
NOAA-NMFS-2020-0031-DRAFT-14001
NOAA-NMFS-2020-0031-DRAFT-14002
NOAA-NMFS-2020-0031-DRAFT-14003
NOAA-NMFS-2020-0031-DRAFT-14004
NOAA-NMFS-2020-0031-DRAFT-14005
NOAA-NMFS-2020-0031-DRAFT-14006
NOAA-NMFS-2020-0031-DRAFT-14007
NOAA-NMFS-2020-0031-DRAFT-14008
NOAA-NMFS-2020-0031-DRAFT-14009
NOAA-NMFS-2020-0031-DRAFT-14010
NOAA-NMFS-2020-0031-DRAFT-14011
NOAA-NMFS-2020-0031-DRAFT-14012

Comment from Judy hanlon
Comment from Miranda Smith
Comment from Sasha Kirby
Comment from Gary Maedl
Comment from Haylee Gerard
Comment from Nancy Tomlinson
Comment from Mera Kenney
Comment from Mara Sansevero
Comment from Bonnie Scudder
Comment from Maria Matone
Comment from Janet Reynolds
Comment from denice cornell
Comment from Ronald Woolford
Comment from Devin Detwiler
Comment from Lisa Brylczyk
Comment from Debra Thornley
Comment from Jerine Martin
Comment from Ann MacDonald
Comment from Mayelin Torna
Comment from Crista Abel
Comment from Stephanie Christoff
Comment from Deborah Pelter-Laman
Comment from Philip Wartel
Comment from Barbara Federman
Comment from Mara Hall
Comment from Kathleen Tortolano
Comment from Sarah Gielink
Comment from Laura Thomas
Comment from Cheryl leonard
Comment from Erin Fleck
Comment from Richard Saklad
Comment from Lorraine Skibitcky
Comment from Corinne Case
Comment from Nancy Graupner
Comment from Patricia Stone
Comment from Ann Bailey
Comment from Linda Miller
Comment from Catherine Milovina
Comment from Jessica Flores
Comment from Kate Hinton
Comment from Julie Osborn

02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19120
NOAA-NMFS-2020-0031-DRAFT-19121
NOAA-NMFS-2020-0031-DRAFT-19122
NOAA-NMFS-2020-0031-DRAFT-19123
NOAA-NMFS-2020-0031-DRAFT-19124
NOAA-NMFS-2020-0031-DRAFT-19125
NOAA-NMFS-2020-0031-DRAFT-19126
NOAA-NMFS-2020-0031-DRAFT-19127
NOAA-NMFS-2020-0031-DRAFT-19128
NOAA-NMFS-2020-0031-DRAFT-19129
NOAA-NMFS-2020-0031-DRAFT-19130
NOAA-NMFS-2020-0031-DRAFT-19131
NOAA-NMFS-2020-0031-DRAFT-19132
NOAA-NMFS-2020-0031-DRAFT-19133
NOAA-NMFS-2020-0031-DRAFT-19134
NOAA-NMFS-2020-0031-DRAFT-19135
NOAA-NMFS-2020-0031-DRAFT-19136
NOAA-NMFS-2020-0031-DRAFT-19137
NOAA-NMFS-2020-0031-DRAFT-19138
NOAA-NMFS-2020-0031-DRAFT-19139
NOAA-NMFS-2020-0031-DRAFT-19140
NOAA-NMFS-2020-0031-DRAFT-19141
NOAA-NMFS-2020-0031-DRAFT-19142
NOAA-NMFS-2020-0031-DRAFT-19143
NOAA-NMFS-2020-0031-DRAFT-19144
NOAA-NMFS-2020-0031-DRAFT-19145
NOAA-NMFS-2020-0031-DRAFT-19146
NOAA-NMFS-2020-0031-DRAFT-19147
NOAA-NMFS-2020-0031-DRAFT-19148
NOAA-NMFS-2020-0031-DRAFT-19149
NOAA-NMFS-2020-0031-DRAFT-19150
NOAA-NMFS-2020-0031-DRAFT-19151
NOAA-NMFS-2020-0031-DRAFT-19152
NOAA-NMFS-2020-0031-DRAFT-19153
NOAA-NMFS-2020-0031-DRAFT-19154
NOAA-NMFS-2020-0031-DRAFT-19155
NOAA-NMFS-2020-0031-DRAFT-19156
NOAA-NMFS-2020-0031-DRAFT-19157
NOAA-NMFS-2020-0031-DRAFT-19158
NOAA-NMFS-2020-0031-DRAFT-19159
NOAA-NMFS-2020-0031-DRAFT-19160

Comment from Scott Clark
Comment from Susanna Stone
Comment from Ben Basin
Comment from James Stuhlmacher
Comment from Mary Bristow
Comment from Susan Schlessinger
Comment from Beverly Johnston
Comment from Sennuwy Arisawa
Comment from Steve Mattan
Comment from Beverly Bradshaw
Comment from Jeanine Mielke
Comment from Gregory Fite
Comment from Corbett Kroehler
Comment from Lisa Daloia
Comment from Shereen Gillette
Comment from karen mcguire
Comment from Heather Mack
Comment from Mimi Sherin
Comment from Sally Jacques
Comment from Jeremy Trimm
Comment from ISABELLE PRITCHETT
Comment from Lisa Krausz
Comment from Leslie Wissing
Comment from Susan Smith
Comment from F Fitz
Comment from Sharon Black
Comment from Richard Kite
Comment from Katherine Bohn
Comment from AIMEE MILLENSIFER
Comment from Alana Crow
Comment from Capt Tara Chase
Comment from Mona Spangler
Comment from Harley Pierce
Comment from Elisabeth Ritter
Comment from Tricia Kob
Comment from Tony Meinerding
Comment from Jeanette LeTourneux
Comment from Matthew Janusauskas
Comment from David Haskins
Comment from Rayline Dean
Comment from Leigh Begalske

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02/12/2021
02/12/2021
02/13/2021
02/13/2021
02/13/2021
02/13/2021
02/13/2021

NOAA-NMFS-2020-0031-DRAFT-14013
NOAA-NMFS-2020-0031-DRAFT-14014
NOAA-NMFS-2020-0031-DRAFT-14015
NOAA-NMFS-2020-0031-DRAFT-14016
NOAA-NMFS-2020-0031-DRAFT-14017
NOAA-NMFS-2020-0031-DRAFT-14018
NOAA-NMFS-2020-0031-DRAFT-14019
NOAA-NMFS-2020-0031-DRAFT-14020
NOAA-NMFS-2020-0031-DRAFT-14021
NOAA-NMFS-2020-0031-DRAFT-14022
NOAA-NMFS-2020-0031-DRAFT-14023
NOAA-NMFS-2020-0031-DRAFT-14024
NOAA-NMFS-2020-0031-DRAFT-14025
NOAA-NMFS-2020-0031-DRAFT-14026
NOAA-NMFS-2020-0031-DRAFT-14027
NOAA-NMFS-2020-0031-DRAFT-14028
NOAA-NMFS-2020-0031-DRAFT-14029
NOAA-NMFS-2020-0031-DRAFT-14030
NOAA-NMFS-2020-0031-DRAFT-14031
NOAA-NMFS-2020-0031-DRAFT-14032
NOAA-NMFS-2020-0031-DRAFT-14033
NOAA-NMFS-2020-0031-DRAFT-14034
NOAA-NMFS-2020-0031-DRAFT-14035
NOAA-NMFS-2020-0031-DRAFT-14036
NOAA-NMFS-2020-0031-DRAFT-14037
NOAA-NMFS-2020-0031-DRAFT-14038
NOAA-NMFS-2020-0031-DRAFT-14039
NOAA-NMFS-2020-0031-DRAFT-14040
NOAA-NMFS-2020-0031-DRAFT-14041
NOAA-NMFS-2020-0031-DRAFT-14042
NOAA-NMFS-2020-0031-DRAFT-14043
NOAA-NMFS-2020-0031-DRAFT-14044
NOAA-NMFS-2020-0031-DRAFT-14045
NOAA-NMFS-2020-0031-DRAFT-14046
NOAA-NMFS-2020-0031-DRAFT-14047
NOAA-NMFS-2020-0031-DRAFT-14048
NOAA-NMFS-2020-0031-DRAFT-14049
NOAA-NMFS-2020-0031-DRAFT-14050
NOAA-NMFS-2020-0031-DRAFT-14051
NOAA-NMFS-2020-0031-DRAFT-14052
NOAA-NMFS-2020-0031-DRAFT-14053

Comment from Gina Evers
Comment from Elaine Kinder
Comment from Robert Hugi
Comment from Jo Herr
Comment from Nicholas Bearce
Comment from Kim Lyon
Comment from Andrea Lewis
Comment from Bridget Faria
Comment from Julianna Dunn
Comment from Robert Collins
Comment from Sheila Bell
Comment from Nyleene Land
Comment from Eva Lazarus
Comment from Renu Nahata
Comment from Jean Garretson
Comment from monique sonoquie
Comment from Vivian Kalaher
Comment from Alan Nishman
Comment from Joy Lewis
Comment from Lori Morin
Comment from Evita Sandoval
Comment from Ellen Phinney
Comment from Jesse Livingston
Comment from Kelly Burgess
Comment from Melissa Sunshine
Comment from Debra Hubbs
Comment from Cheryl Erb
Comment from Diana BloseGarcia
Comment from Peggy Waltz
Comment from Andy Rodriguez
Comment from George Moschella
Comment from Ben Yong
Comment from Dawna Fackrell
Comment from Elaine Quinones
Comment from Sean Burger
Comment from Paul senyszyn
Comment from Joanne Delprete
Comment from Jaime Miller
Comment from Maritza Martinez
Comment from Debra Magee
Comment from Courtney Sloane

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19161
NOAA-NMFS-2020-0031-DRAFT-19162
NOAA-NMFS-2020-0031-DRAFT-19163
NOAA-NMFS-2020-0031-DRAFT-19164
NOAA-NMFS-2020-0031-DRAFT-19165
NOAA-NMFS-2020-0031-DRAFT-19166
NOAA-NMFS-2020-0031-DRAFT-19167
NOAA-NMFS-2020-0031-DRAFT-19168
NOAA-NMFS-2020-0031-DRAFT-19169
NOAA-NMFS-2020-0031-DRAFT-19170
NOAA-NMFS-2020-0031-DRAFT-19171
NOAA-NMFS-2020-0031-DRAFT-19172
NOAA-NMFS-2020-0031-DRAFT-19173
NOAA-NMFS-2020-0031-DRAFT-19174
NOAA-NMFS-2020-0031-DRAFT-19175
NOAA-NMFS-2020-0031-DRAFT-19176
NOAA-NMFS-2020-0031-DRAFT-19177
NOAA-NMFS-2020-0031-DRAFT-19178
NOAA-NMFS-2020-0031-DRAFT-19179
NOAA-NMFS-2020-0031-DRAFT-19180
NOAA-NMFS-2020-0031-DRAFT-19181
NOAA-NMFS-2020-0031-DRAFT-19182
NOAA-NMFS-2020-0031-DRAFT-19183
NOAA-NMFS-2020-0031-DRAFT-19184
NOAA-NMFS-2020-0031-DRAFT-19185
NOAA-NMFS-2020-0031-DRAFT-19186
NOAA-NMFS-2020-0031-DRAFT-19187
NOAA-NMFS-2020-0031-DRAFT-19188
NOAA-NMFS-2020-0031-DRAFT-19189
NOAA-NMFS-2020-0031-DRAFT-19190
NOAA-NMFS-2020-0031-DRAFT-19191
NOAA-NMFS-2020-0031-DRAFT-19193
NOAA-NMFS-2020-0031-DRAFT-19194
NOAA-NMFS-2020-0031-DRAFT-19195
NOAA-NMFS-2020-0031-DRAFT-19196
NOAA-NMFS-2020-0031-DRAFT-19197
NOAA-NMFS-2020-0031-DRAFT-19198
NOAA-NMFS-2020-0031-DRAFT-19199
NOAA-NMFS-2020-0031-DRAFT-19200
NOAA-NMFS-2020-0031-DRAFT-19201
NOAA-NMFS-2020-0031-DRAFT-19202

Comment from Peggy Patti
Comment from Carol Souva
Comment from Terri Greene
Comment from Mary Fitzpatrick
Comment from Ginette Maisse
Comment from Robert Kennedy
Comment from Jazmine Harvey
Comment from Cathy Stoner
Comment from r tippens
Comment from Nikita Jones
Comment from Gustaf Sarkkinen
Comment from William Malmros
Comment from Aimie McDaniel
Comment from Maria Clair-Howard
Comment from Marilyn Thompson
Comment from Jessica Koran
Comment from Elsy Shallman
Comment from Beverly Bradshaw
Comment from Kelly Hibbert
Comment from Timothy Smith
Comment from Michael Bondoc
Comment from Pamela Haddad
Comment from Gary Raymond
Comment from linda martinez
Comment from Natalie Alexander
Comment from Regina Embry
Comment from Carmen Wiseman
Comment from Kathy Bradley
Comment from Anne Prost
Comment from Elizabeth Butler
Comment from Leon Epperly
Comment from Michael Malone
Comment from Kelly Armour
Comment from Debra Bruegge
Comment from Daniel Goldberg
Comment from Carroll Arkema
Comment from Daniel Prost
Comment from Eleanor Beram
Comment from tami mccready
Comment from Martin Wieland
Comment from Shannon Brossia

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02/13/2021
02/13/2021
02/13/2021
02/13/2021
02/13/2021

NOAA-NMFS-2020-0031-DRAFT-14054
NOAA-NMFS-2020-0031-DRAFT-14055
NOAA-NMFS-2020-0031-DRAFT-14056
NOAA-NMFS-2020-0031-DRAFT-14057
NOAA-NMFS-2020-0031-DRAFT-14058
NOAA-NMFS-2020-0031-DRAFT-14059
NOAA-NMFS-2020-0031-DRAFT-14060
NOAA-NMFS-2020-0031-DRAFT-14061
NOAA-NMFS-2020-0031-DRAFT-14062
NOAA-NMFS-2020-0031-DRAFT-14063
NOAA-NMFS-2020-0031-DRAFT-14064
NOAA-NMFS-2020-0031-DRAFT-14065
NOAA-NMFS-2020-0031-DRAFT-14066
NOAA-NMFS-2020-0031-DRAFT-14067
NOAA-NMFS-2020-0031-DRAFT-14068
NOAA-NMFS-2020-0031-DRAFT-14069
NOAA-NMFS-2020-0031-DRAFT-14070
NOAA-NMFS-2020-0031-DRAFT-14071
NOAA-NMFS-2020-0031-DRAFT-14072
NOAA-NMFS-2020-0031-DRAFT-14073
NOAA-NMFS-2020-0031-DRAFT-14074
NOAA-NMFS-2020-0031-DRAFT-14075
NOAA-NMFS-2020-0031-DRAFT-14076
NOAA-NMFS-2020-0031-DRAFT-14077
NOAA-NMFS-2020-0031-DRAFT-14078
NOAA-NMFS-2020-0031-DRAFT-14080
NOAA-NMFS-2020-0031-DRAFT-14081
NOAA-NMFS-2020-0031-DRAFT-14082
NOAA-NMFS-2020-0031-DRAFT-14083
NOAA-NMFS-2020-0031-DRAFT-14084
NOAA-NMFS-2020-0031-DRAFT-14085
NOAA-NMFS-2020-0031-DRAFT-14086
NOAA-NMFS-2020-0031-DRAFT-14087
NOAA-NMFS-2020-0031-DRAFT-14089
NOAA-NMFS-2020-0031-DRAFT-14090
NOAA-NMFS-2020-0031-DRAFT-14091
NOAA-NMFS-2020-0031-DRAFT-14092
NOAA-NMFS-2020-0031-DRAFT-14093
NOAA-NMFS-2020-0031-DRAFT-14094
NOAA-NMFS-2020-0031-DRAFT-14095
NOAA-NMFS-2020-0031-DRAFT-14096

Comment from Nicole Tursi
Comment from Renee Loger
Comment from Joe Guilfoyle
Comment from Stephanie Rossi
Comment from Beverly Beck
Comment from Janis Keller
Comment from Darlene Falk
Comment from Linda Tesser
Comment from Brenda Benoit
Comment from Marie Dopico
Comment from Sara Ogden
Comment from noah hall
Comment from Frank Palmer
Comment from Alexander Gasik
Comment from Carol Brooks
Comment from Cathleen HolcombKnowles
Comment from Cynthia Okolichany
Comment from Jesse Winder
Comment from Lisa LaSpina
Comment from Christin Murphy
Comment from Robert Healey
Comment from Terri Robinson
Comment from Omar Boumali
Comment from Jerome Motley
Comment from Marti Hinchey
Comment from Jeannette RodriguezCornejo
Comment from Sue O'donnell
Comment from Tina Blankenship
Comment from Maureen Verwiel
Comment from Debbie Collins
Comment from Bonnie Langford
Comment from Cathy Clucas
Comment from Dana Maguire
Comment from Carolyn Hall
Comment from John Velner
Comment from Judith Keller
Comment from Cynthia Barrett
Comment from Robert Sprogell
Comment from Elizabeth foster
Comment from Heidi Steinert-Bresilge
Comment from Deirdre Chonaill

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19204
NOAA-NMFS-2020-0031-DRAFT-19205
NOAA-NMFS-2020-0031-DRAFT-19206
NOAA-NMFS-2020-0031-DRAFT-19207
NOAA-NMFS-2020-0031-DRAFT-19208
NOAA-NMFS-2020-0031-DRAFT-19209
NOAA-NMFS-2020-0031-DRAFT-19210
NOAA-NMFS-2020-0031-DRAFT-19211
NOAA-NMFS-2020-0031-DRAFT-19212
NOAA-NMFS-2020-0031-DRAFT-19213
NOAA-NMFS-2020-0031-DRAFT-19214
NOAA-NMFS-2020-0031-DRAFT-19215
NOAA-NMFS-2020-0031-DRAFT-19216
NOAA-NMFS-2020-0031-DRAFT-19217
NOAA-NMFS-2020-0031-DRAFT-19218
NOAA-NMFS-2020-0031-DRAFT-19219
NOAA-NMFS-2020-0031-DRAFT-19220
NOAA-NMFS-2020-0031-DRAFT-19221
NOAA-NMFS-2020-0031-DRAFT-19222
NOAA-NMFS-2020-0031-DRAFT-19223
NOAA-NMFS-2020-0031-DRAFT-19224
NOAA-NMFS-2020-0031-DRAFT-19225
NOAA-NMFS-2020-0031-DRAFT-19226
NOAA-NMFS-2020-0031-DRAFT-19227
NOAA-NMFS-2020-0031-DRAFT-19228
NOAA-NMFS-2020-0031-DRAFT-19229
NOAA-NMFS-2020-0031-DRAFT-19230
NOAA-NMFS-2020-0031-DRAFT-19231
NOAA-NMFS-2020-0031-DRAFT-19232
NOAA-NMFS-2020-0031-DRAFT-19233
NOAA-NMFS-2020-0031-DRAFT-19234
NOAA-NMFS-2020-0031-DRAFT-19235
NOAA-NMFS-2020-0031-DRAFT-19236
NOAA-NMFS-2020-0031-DRAFT-19237
NOAA-NMFS-2020-0031-DRAFT-19239
NOAA-NMFS-2020-0031-DRAFT-19240
NOAA-NMFS-2020-0031-DRAFT-19241
NOAA-NMFS-2020-0031-DRAFT-19242
NOAA-NMFS-2020-0031-DRAFT-19243
NOAA-NMFS-2020-0031-DRAFT-19244
NOAA-NMFS-2020-0031-DRAFT-19245

Comment from Maria Cardenas
Comment from Melinda Lewis
Comment from Ken Peterson
Comment from Elena Fowler
Comment from David Brockett
Comment from RENATE DOLIN
Comment from Sharon Derence
Comment from GERARD VACHEZ
Comment from Ronnie Tiner
Comment from Valrey Van Gundy
Comment from Linda Schmidt
Comment from Eric Naji
Comment from Brenda Haig
Comment from Jay Roth
Comment from Camille McPhee
Comment from Linda Perrigoue
Comment from Laura Stice
Comment from Leah Yamaguchi
Comment from Christine Daum
Comment from Esther Zepeda
Comment from Mary Smith
Comment from Julie Allnutt
Comment from RoseMarie Di GiovanniNorton
Comment from Catherine Delaney
Comment from Bob Miller
Comment from Alan Bromborsky
Comment from chris ottosen
Comment from Wendy Honold
Comment from Theresa Melof
Comment from Ellen Homsey
Comment from Elizabeth Nation
Comment from Paula Plasky
Comment from Tracy Richards
Comment from David Wilen
Comment from Carol Drabin
Comment from Marc Anderson
Comment from Michael Hampu
Comment from Elizabeth Krocheski
Comment from Sandra Kerr
Comment from Kathy Colletti
Comment from Michael Hlis

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02/13/2021
02/13/2021
02/13/2021

NOAA-NMFS-2020-0031-DRAFT-14097
NOAA-NMFS-2020-0031-DRAFT-14098
NOAA-NMFS-2020-0031-DRAFT-14099
NOAA-NMFS-2020-0031-DRAFT-14100
NOAA-NMFS-2020-0031-DRAFT-14101
NOAA-NMFS-2020-0031-DRAFT-14102
NOAA-NMFS-2020-0031-DRAFT-14103
NOAA-NMFS-2020-0031-DRAFT-14104
NOAA-NMFS-2020-0031-DRAFT-14105
NOAA-NMFS-2020-0031-DRAFT-14106
NOAA-NMFS-2020-0031-DRAFT-14107
NOAA-NMFS-2020-0031-DRAFT-14108
NOAA-NMFS-2020-0031-DRAFT-14109
NOAA-NMFS-2020-0031-DRAFT-14110
NOAA-NMFS-2020-0031-DRAFT-14111
NOAA-NMFS-2020-0031-DRAFT-14112
NOAA-NMFS-2020-0031-DRAFT-14113
NOAA-NMFS-2020-0031-DRAFT-14114
NOAA-NMFS-2020-0031-DRAFT-14115
NOAA-NMFS-2020-0031-DRAFT-14116
NOAA-NMFS-2020-0031-DRAFT-14117
NOAA-NMFS-2020-0031-DRAFT-14118
NOAA-NMFS-2020-0031-DRAFT-14119
NOAA-NMFS-2020-0031-DRAFT-14120
NOAA-NMFS-2020-0031-DRAFT-14121
NOAA-NMFS-2020-0031-DRAFT-14122
NOAA-NMFS-2020-0031-DRAFT-14123
NOAA-NMFS-2020-0031-DRAFT-14124
NOAA-NMFS-2020-0031-DRAFT-14125
NOAA-NMFS-2020-0031-DRAFT-14126
NOAA-NMFS-2020-0031-DRAFT-14127
NOAA-NMFS-2020-0031-DRAFT-14128
NOAA-NMFS-2020-0031-DRAFT-14129
NOAA-NMFS-2020-0031-DRAFT-14130
NOAA-NMFS-2020-0031-DRAFT-14131
NOAA-NMFS-2020-0031-DRAFT-14132
NOAA-NMFS-2020-0031-DRAFT-14133
NOAA-NMFS-2020-0031-DRAFT-14134
NOAA-NMFS-2020-0031-DRAFT-14135
NOAA-NMFS-2020-0031-DRAFT-14136
NOAA-NMFS-2020-0031-DRAFT-14137

Comment from Olivia Saachi
Comment from Dawn-Marie Staccia
Comment from Catherine Kowalczyk.
Comment from Carol Goetschius
Comment from Mary Botti
Comment from Carol Goetschius
Comment from GREGORY NAVARRO
Comment from Kelly Bickford
Comment from Lara Villavicencio
Comment from Katherine CreggerMarshall
Comment from Jennifer Milo
Comment from Terry stark
Comment from Leslie MacPhail
Comment from Patricia Tannenbaum
Comment from Steven Steele
Comment from Joseph Rando
Comment from Susanne Gallivan
Comment from Richard Balducci
Comment from Mark Ditzler
Comment from Norma Torres
Comment from Ruth McElvain
Comment from Susan Siens
Comment from Marilyn Garrett
Comment from Marilyn Garrett
Comment from Allison Yungclas
Comment from LynnMeta Williams
Comment from Mary Matott
Comment from Pat Tomasello
Comment from Heather Payne
Comment from Peggy Waltz
Comment from Susan Coffey
Comment from Leslie Cullis
Comment from Elaine Eudy
Comment from jan nelson
Comment from Melissa Gilbert
Comment from Jeff Peterson
Comment from Cogsil Nancy
Comment from Eileen McCorry
Comment from Marc Clarke
Comment from Cheri Hitesman
Comment from James Burns

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19246
NOAA-NMFS-2020-0031-DRAFT-19247
NOAA-NMFS-2020-0031-DRAFT-19248
NOAA-NMFS-2020-0031-DRAFT-19249
NOAA-NMFS-2020-0031-DRAFT-19250
NOAA-NMFS-2020-0031-DRAFT-19251
NOAA-NMFS-2020-0031-DRAFT-19252
NOAA-NMFS-2020-0031-DRAFT-19253
NOAA-NMFS-2020-0031-DRAFT-19254
NOAA-NMFS-2020-0031-DRAFT-19255
NOAA-NMFS-2020-0031-DRAFT-19256
NOAA-NMFS-2020-0031-DRAFT-19258
NOAA-NMFS-2020-0031-DRAFT-19259
NOAA-NMFS-2020-0031-DRAFT-19260
NOAA-NMFS-2020-0031-DRAFT-19261
NOAA-NMFS-2020-0031-DRAFT-19262
NOAA-NMFS-2020-0031-DRAFT-19263
NOAA-NMFS-2020-0031-DRAFT-19264
NOAA-NMFS-2020-0031-DRAFT-19265
NOAA-NMFS-2020-0031-DRAFT-19266
NOAA-NMFS-2020-0031-DRAFT-19267
NOAA-NMFS-2020-0031-DRAFT-19268
NOAA-NMFS-2020-0031-DRAFT-19269
NOAA-NMFS-2020-0031-DRAFT-19270
NOAA-NMFS-2020-0031-DRAFT-19271
NOAA-NMFS-2020-0031-DRAFT-19272
NOAA-NMFS-2020-0031-DRAFT-19273
NOAA-NMFS-2020-0031-DRAFT-19274
NOAA-NMFS-2020-0031-DRAFT-19275
NOAA-NMFS-2020-0031-DRAFT-19276
NOAA-NMFS-2020-0031-DRAFT-19277
NOAA-NMFS-2020-0031-DRAFT-19278
NOAA-NMFS-2020-0031-DRAFT-19279
NOAA-NMFS-2020-0031-DRAFT-19280
NOAA-NMFS-2020-0031-DRAFT-19281
NOAA-NMFS-2020-0031-DRAFT-19282
NOAA-NMFS-2020-0031-DRAFT-19283
NOAA-NMFS-2020-0031-DRAFT-19284
NOAA-NMFS-2020-0031-DRAFT-19285
NOAA-NMFS-2020-0031-DRAFT-19286
NOAA-NMFS-2020-0031-DRAFT-19287

Comment from Susie Heiss
Comment from Heather Schlichter
Comment from Valerie Apple
Comment from Douglas Estes
Comment from ROBERT KOCH
Comment from S. Almskaar
Comment from Julie sasaoka
Comment from Sandra Hoppmann
Comment from Ashley Carter
Comment from Thomas Reese
Comment from Kathy Chakoutis
Comment from Laurel Przybylski
Comment from Graciela Huth
Comment from Emmanuel Ramirez
Comment from Patti Harter
Comment from Joel Stoup
Comment from Paul Vesper
Comment from Sue Janssen
Comment from Cynthia Bauer
Comment from Maddalena Bearzi
Comment from Maddalena Bearzi
Comment from Ludmila Dmitriev-Odier
Comment from Kathy Bouvier
Comment from Gina Maria Picone
Comment from lynne Rpsemfield
Comment from J.B. CIESIELSKI
Comment from James Llewellyn
Comment from cathyelizabeth levin
Comment from Regina Lee
Comment from Ivonne Sanchez
Comment from Grace Sharington
Comment from Ben Badger
Comment from Melissa Naundorff
Comment from Ian Bosserman
Comment from Christopher Michaels
Comment from Scott Jordan
Comment from Jo Harvey
Comment from Michael Klausing
Comment from Linda Freeman
Comment from David Groode
Comment from Judith Maron Friend

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02/14/2021
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02/14/2021
02/14/2021
02/14/2021
02/14/2021
02/14/2021
02/14/2021

NOAA-NMFS-2020-0031-DRAFT-14138
NOAA-NMFS-2020-0031-DRAFT-14139
NOAA-NMFS-2020-0031-DRAFT-14140
NOAA-NMFS-2020-0031-DRAFT-14141
NOAA-NMFS-2020-0031-DRAFT-14142
NOAA-NMFS-2020-0031-DRAFT-14143
NOAA-NMFS-2020-0031-DRAFT-14144
NOAA-NMFS-2020-0031-DRAFT-14145
NOAA-NMFS-2020-0031-DRAFT-14146
NOAA-NMFS-2020-0031-DRAFT-14147
NOAA-NMFS-2020-0031-DRAFT-14148
NOAA-NMFS-2020-0031-DRAFT-14149
NOAA-NMFS-2020-0031-DRAFT-14150
NOAA-NMFS-2020-0031-DRAFT-14151
NOAA-NMFS-2020-0031-DRAFT-14152
NOAA-NMFS-2020-0031-DRAFT-14153
NOAA-NMFS-2020-0031-DRAFT-14154
NOAA-NMFS-2020-0031-DRAFT-14155
NOAA-NMFS-2020-0031-DRAFT-14156
NOAA-NMFS-2020-0031-DRAFT-14157
NOAA-NMFS-2020-0031-DRAFT-14158
NOAA-NMFS-2020-0031-DRAFT-14159
NOAA-NMFS-2020-0031-DRAFT-14160
NOAA-NMFS-2020-0031-DRAFT-14161
NOAA-NMFS-2020-0031-DRAFT-14162
NOAA-NMFS-2020-0031-DRAFT-14163
NOAA-NMFS-2020-0031-DRAFT-14164
NOAA-NMFS-2020-0031-DRAFT-14165
NOAA-NMFS-2020-0031-DRAFT-14166
NOAA-NMFS-2020-0031-DRAFT-14167
NOAA-NMFS-2020-0031-DRAFT-14168
NOAA-NMFS-2020-0031-DRAFT-14169
NOAA-NMFS-2020-0031-DRAFT-14170
NOAA-NMFS-2020-0031-DRAFT-14171
NOAA-NMFS-2020-0031-DRAFT-14172
NOAA-NMFS-2020-0031-DRAFT-14173
NOAA-NMFS-2020-0031-DRAFT-14174
NOAA-NMFS-2020-0031-DRAFT-14175
NOAA-NMFS-2020-0031-DRAFT-14176
NOAA-NMFS-2020-0031-DRAFT-14177
NOAA-NMFS-2020-0031-DRAFT-14178

Comment from Laura Kaiser
Comment from E Larson
Comment from David Marchant
Comment from Linda Fronk
Comment from Michael Womack
Comment from Lynne Pendleton
Comment from Rachel Lentini
Comment from Myra Toth
Comment from Cheryl Parker
Comment from carrie harbison
Comment from Sonja Bryant
Comment from Peggy Kauffman
Comment from MICHELLE HOFF
Comment from Doug Frug
Comment from Hilary Dyson
Comment from Dianne Johnson
Comment from Bill Groves
Comment from Rick Guerrero
Comment from fa La
Comment from Liz Derr
Comment from Steve Schildwachter
Comment from Jennifer Griffith
Comment from Amy Bombard
Comment from Elaine Quinones
Comment from Alex Rickel
Comment from Marie Dopico
Comment from Susan Rabideau
Comment from Catherine Kowalczyk.
Comment from Christine Fluor
Comment from Maria Hernandez
Comment from Manuel Moreno
Comment from David Charbonneau
Comment from NOLA Family
Comment from Bonnie Epstein
Comment from cheryl kathan
Comment from Lois Feuerle
Comment from Anne Lentz
Comment from Robert Frank
Comment from Karen Shepp
Comment from Doug Bataille
Comment from Sherri West

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19288
NOAA-NMFS-2020-0031-DRAFT-19289
NOAA-NMFS-2020-0031-DRAFT-19290
NOAA-NMFS-2020-0031-DRAFT-19291
NOAA-NMFS-2020-0031-DRAFT-19292
NOAA-NMFS-2020-0031-DRAFT-19293
NOAA-NMFS-2020-0031-DRAFT-19294
NOAA-NMFS-2020-0031-DRAFT-19295
NOAA-NMFS-2020-0031-DRAFT-19296
NOAA-NMFS-2020-0031-DRAFT-19297
NOAA-NMFS-2020-0031-DRAFT-19298
NOAA-NMFS-2020-0031-DRAFT-19299
NOAA-NMFS-2020-0031-DRAFT-19300
NOAA-NMFS-2020-0031-DRAFT-19301
NOAA-NMFS-2020-0031-DRAFT-19302
NOAA-NMFS-2020-0031-DRAFT-19303
NOAA-NMFS-2020-0031-DRAFT-19304
NOAA-NMFS-2020-0031-DRAFT-19305
NOAA-NMFS-2020-0031-DRAFT-19306
NOAA-NMFS-2020-0031-DRAFT-19307
NOAA-NMFS-2020-0031-DRAFT-19308
NOAA-NMFS-2020-0031-DRAFT-19309
NOAA-NMFS-2020-0031-DRAFT-19310
NOAA-NMFS-2020-0031-DRAFT-19311
NOAA-NMFS-2020-0031-DRAFT-19312
NOAA-NMFS-2020-0031-DRAFT-19313
NOAA-NMFS-2020-0031-DRAFT-19314
NOAA-NMFS-2020-0031-DRAFT-19315
NOAA-NMFS-2020-0031-DRAFT-19316
NOAA-NMFS-2020-0031-DRAFT-19317
NOAA-NMFS-2020-0031-DRAFT-19318
NOAA-NMFS-2020-0031-DRAFT-19319
NOAA-NMFS-2020-0031-DRAFT-19320
NOAA-NMFS-2020-0031-DRAFT-19321
NOAA-NMFS-2020-0031-DRAFT-19322
NOAA-NMFS-2020-0031-DRAFT-19323
NOAA-NMFS-2020-0031-DRAFT-19324
NOAA-NMFS-2020-0031-DRAFT-19325
NOAA-NMFS-2020-0031-DRAFT-19326
NOAA-NMFS-2020-0031-DRAFT-19327
NOAA-NMFS-2020-0031-DRAFT-19328

Comment from Lynn Krupa
Comment from Cathleen Burns
Comment from Deborah Peregrina
Comment from Tom Butch
Comment from Jeannine Lish
Comment from Sylvia Rodriguez
Comment from Luis Mon
Comment from Susan Grodsky
Comment from Rev. Coughlin
Comment from Francine Traniello
Comment from Mary Shabbott
Comment from Grace Hepler
Comment from Stacey Smith
Comment from Linda Gray
Comment from khai hang
Comment from lucia fabbo
Comment from Meg Massaro
Comment from Annie McCann
Comment from LindaF Claycomb
Comment from Kim White
Comment from Valerie Clark
Comment from Leo Souto
Comment from Alice Gard
Comment from Ludmila Dmitriev Odier
Comment from Pamela Gibberman
Comment from Emily Van Alyne
Comment from Janet Romine
Comment from Veronica Salas
Comment from ANGELA Drunasky
Comment from Cara O'Neill
Comment from Carol Dearborn
Comment from Silvia Bertano
Comment from Denise Campbell
Comment from MICHAEL SCHUMM
Comment from Roni Unger
Comment from Eva Marks-Curatolo
Comment from Don Riepe
Comment from Kelly Deese
Comment from Robert Newman
Comment from claudine murray
Comment from Brenda Arson

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02/14/2021
02/14/2021
02/14/2021
02/14/2021
02/14/2021
02/14/2021

NOAA-NMFS-2020-0031-DRAFT-14179
NOAA-NMFS-2020-0031-DRAFT-14180
NOAA-NMFS-2020-0031-DRAFT-14181
NOAA-NMFS-2020-0031-DRAFT-14182
NOAA-NMFS-2020-0031-DRAFT-14183
NOAA-NMFS-2020-0031-DRAFT-14184
NOAA-NMFS-2020-0031-DRAFT-14185
NOAA-NMFS-2020-0031-DRAFT-14186
NOAA-NMFS-2020-0031-DRAFT-14187
NOAA-NMFS-2020-0031-DRAFT-14188
NOAA-NMFS-2020-0031-DRAFT-14189
NOAA-NMFS-2020-0031-DRAFT-14190
NOAA-NMFS-2020-0031-DRAFT-14191
NOAA-NMFS-2020-0031-DRAFT-14192
NOAA-NMFS-2020-0031-DRAFT-14193
NOAA-NMFS-2020-0031-DRAFT-14194
NOAA-NMFS-2020-0031-DRAFT-14195
NOAA-NMFS-2020-0031-DRAFT-14196
NOAA-NMFS-2020-0031-DRAFT-14197
NOAA-NMFS-2020-0031-DRAFT-14198
NOAA-NMFS-2020-0031-DRAFT-14199
NOAA-NMFS-2020-0031-DRAFT-14200
NOAA-NMFS-2020-0031-DRAFT-14201
NOAA-NMFS-2020-0031-DRAFT-14202
NOAA-NMFS-2020-0031-DRAFT-14203
NOAA-NMFS-2020-0031-DRAFT-14204
NOAA-NMFS-2020-0031-DRAFT-14205
NOAA-NMFS-2020-0031-DRAFT-14206
NOAA-NMFS-2020-0031-DRAFT-14207
NOAA-NMFS-2020-0031-DRAFT-14208
NOAA-NMFS-2020-0031-DRAFT-14209
NOAA-NMFS-2020-0031-DRAFT-14210
NOAA-NMFS-2020-0031-DRAFT-14211
NOAA-NMFS-2020-0031-DRAFT-14212
NOAA-NMFS-2020-0031-DRAFT-14213
NOAA-NMFS-2020-0031-DRAFT-14214
NOAA-NMFS-2020-0031-DRAFT-14215
NOAA-NMFS-2020-0031-DRAFT-14216
NOAA-NMFS-2020-0031-DRAFT-14217
NOAA-NMFS-2020-0031-DRAFT-14218
NOAA-NMFS-2020-0031-DRAFT-14219

Comment from dawn sartori
Comment from Maggie Louden
Comment from EDITH KERN
Comment from Adriana Sordelli
Comment from Crystal Reppert
Comment from Jeffrey Gephart
Comment from Amy McCoy
Comment from Jessica Weber
Comment from Jennifer Marshall
Comment from Soumya Naidu
Comment from Louise Harbour, Esquire
Comment from Deanna Horton
Comment from dan horton
Comment from Ian Zickler
Comment from Jerome Schmidt
Comment from Mary Heyworth
Comment from Annette Didrickson
Comment from Debra Marier
Comment from Melissa Milano
Comment from Georgina Reyes
Comment from Jane Montonen
Comment from Jane Montonen
Comment from Dalia Jakubauskas
Comment from Maggie Louden
Comment from Madria Everson
Comment from Melanie Homan
Comment from John Daneke
Comment from Nichole Stilkey
Comment from Steven Ketchel
Comment from Jule Oneal
Comment from Einger Desjardins
Comment from Diane Martin
Comment from Keiko M.
Comment from Jordan Blank
Comment from Bruce lougee
Comment from Dionne Heilman
Comment from Gabriela Vera
Comment from Jean Saja
Comment from Hannah Wild
Comment from Michael Martin
Comment from Rita Taylor

02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19329
NOAA-NMFS-2020-0031-DRAFT-19330
NOAA-NMFS-2020-0031-DRAFT-19331
NOAA-NMFS-2020-0031-DRAFT-19332
NOAA-NMFS-2020-0031-DRAFT-19333
NOAA-NMFS-2020-0031-DRAFT-19334
NOAA-NMFS-2020-0031-DRAFT-19335
NOAA-NMFS-2020-0031-DRAFT-19336
NOAA-NMFS-2020-0031-DRAFT-19337
NOAA-NMFS-2020-0031-DRAFT-19338
NOAA-NMFS-2020-0031-DRAFT-19339
NOAA-NMFS-2020-0031-DRAFT-19340
NOAA-NMFS-2020-0031-DRAFT-19341
NOAA-NMFS-2020-0031-DRAFT-19342
NOAA-NMFS-2020-0031-DRAFT-19343
NOAA-NMFS-2020-0031-DRAFT-19344
NOAA-NMFS-2020-0031-DRAFT-19345
NOAA-NMFS-2020-0031-DRAFT-19346
NOAA-NMFS-2020-0031-DRAFT-19347
NOAA-NMFS-2020-0031-DRAFT-19348
NOAA-NMFS-2020-0031-DRAFT-19349
NOAA-NMFS-2020-0031-DRAFT-19350
NOAA-NMFS-2020-0031-DRAFT-19351
NOAA-NMFS-2020-0031-DRAFT-19352
NOAA-NMFS-2020-0031-DRAFT-19353
NOAA-NMFS-2020-0031-DRAFT-19354
NOAA-NMFS-2020-0031-DRAFT-19355
NOAA-NMFS-2020-0031-DRAFT-19356
NOAA-NMFS-2020-0031-DRAFT-19357
NOAA-NMFS-2020-0031-DRAFT-19358
NOAA-NMFS-2020-0031-DRAFT-19359
NOAA-NMFS-2020-0031-DRAFT-19360
NOAA-NMFS-2020-0031-DRAFT-19361
NOAA-NMFS-2020-0031-DRAFT-19362
NOAA-NMFS-2020-0031-DRAFT-19363
NOAA-NMFS-2020-0031-DRAFT-19364
NOAA-NMFS-2020-0031-DRAFT-19365
NOAA-NMFS-2020-0031-DRAFT-19366
NOAA-NMFS-2020-0031-DRAFT-19367
NOAA-NMFS-2020-0031-DRAFT-19368
NOAA-NMFS-2020-0031-DRAFT-19369

Comment from E. Neal
Comment from Joan Roncalli-Cummings
Comment from Ellen Dryer
Comment from Lynn Skibinski
Comment from Merlin Wilson
Comment from Duncan Brown
Comment from Noah Haydon
Comment from Marie Zwicker
Comment from Pamela Haddad
Comment from David Dewenter
Comment from Reevyn Aronson
Comment from Pete Childs
Comment from Christine Carol Abraham
Comment from kristy Bragg
Comment from laura raforth
Comment from Donna Parente
Comment from Stephen Fitch
Comment from Andrea Vera
Comment from Andrew Rowlas
Comment from Mary Ann Doychak
Comment from Felicia Lewis
Comment from Elaine Drody
Comment from Eyad Buhaissi
Comment from Eilene Janke
Comment from Richard Martin
Comment from Crystal Hart
Comment from Marianne Hoffman
Comment from Helene Christina Weiss
Comment from Linda Peterson
Comment from nancy siebert
Comment from Christa Neuber
Comment from Terry Bergeron
Comment from Sheri Cutright
Comment from Timothy Castine
Comment from Deborah Williamson
Comment from Chris Kermiet
Comment from Karylee Feldman
Comment from Rhonda Berger
Comment from Barbara Swyden
Comment from Todd Fletcher
Comment from myra berario

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02/14/2021
02/14/2021

NOAA-NMFS-2020-0031-DRAFT-14220
NOAA-NMFS-2020-0031-DRAFT-14221
NOAA-NMFS-2020-0031-DRAFT-14223
NOAA-NMFS-2020-0031-DRAFT-14224
NOAA-NMFS-2020-0031-DRAFT-14225
NOAA-NMFS-2020-0031-DRAFT-14226
NOAA-NMFS-2020-0031-DRAFT-14227
NOAA-NMFS-2020-0031-DRAFT-14228
NOAA-NMFS-2020-0031-DRAFT-14229
NOAA-NMFS-2020-0031-DRAFT-14230
NOAA-NMFS-2020-0031-DRAFT-14231
NOAA-NMFS-2020-0031-DRAFT-14232
NOAA-NMFS-2020-0031-DRAFT-14233
NOAA-NMFS-2020-0031-DRAFT-14234
NOAA-NMFS-2020-0031-DRAFT-14235
NOAA-NMFS-2020-0031-DRAFT-14236
NOAA-NMFS-2020-0031-DRAFT-14237
NOAA-NMFS-2020-0031-DRAFT-14238
NOAA-NMFS-2020-0031-DRAFT-14239
NOAA-NMFS-2020-0031-DRAFT-14240
NOAA-NMFS-2020-0031-DRAFT-14241
NOAA-NMFS-2020-0031-DRAFT-14242
NOAA-NMFS-2020-0031-DRAFT-14244
NOAA-NMFS-2020-0031-DRAFT-14245
NOAA-NMFS-2020-0031-DRAFT-14246
NOAA-NMFS-2020-0031-DRAFT-14247
NOAA-NMFS-2020-0031-DRAFT-14248
NOAA-NMFS-2020-0031-DRAFT-14249
NOAA-NMFS-2020-0031-DRAFT-14250
NOAA-NMFS-2020-0031-DRAFT-14251
NOAA-NMFS-2020-0031-DRAFT-14252
NOAA-NMFS-2020-0031-DRAFT-14253
NOAA-NMFS-2020-0031-DRAFT-14254
NOAA-NMFS-2020-0031-DRAFT-14255
NOAA-NMFS-2020-0031-DRAFT-14256
NOAA-NMFS-2020-0031-DRAFT-14257
NOAA-NMFS-2020-0031-DRAFT-14258
NOAA-NMFS-2020-0031-DRAFT-14259
NOAA-NMFS-2020-0031-DRAFT-14260
NOAA-NMFS-2020-0031-DRAFT-14261
NOAA-NMFS-2020-0031-DRAFT-14262

Comment from Suzanne Morine
Comment from Mariam Andalibi
Comment from Debora Hojda
Comment from Valerie Felicione
Comment from Reba Reiser
Comment from Karen Cassidy
Comment from Kristin Steuerle
Comment from Becca Greenstein
Comment from Fernando Suarez
Comment from Carolyn Coder
Comment from Catherine Kowalczyk.
Comment from Maria Lorek
Comment from Juanita Clark
Comment from Alan McRae
Comment from Jean Stidham
Comment from Wendy Gold
Comment from Stephen Griffiths
Comment from Melissa Smith
Comment from Maria Blaszczyk
Comment from Abbie Nestler
Comment from Donna Banks
Comment from Charles Culbertson
Comment from Randy Cabrera
Comment from Denise Lytle
Comment from Bruce Kinney
Comment from Sandra Gallagher
Comment from Barbara Harmer
Comment from Brenda Brooks
Comment from Gayle Carr
Comment from James Roberts
Comment from Jerone Ellis
Comment from Lisa Cameron
Comment from Anjanette Donlan
Comment from Aubrianna Schlottman
Comment from Dianna Kilroy
Comment from Dianna Kilroy
Comment from Randy Kight
Comment from Dianne Angelikoussis
Comment from Patricia Tillman
Comment from Dennis Marinuzzi
Comment from Paul Bickmore

02/18/2021
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02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19370
NOAA-NMFS-2020-0031-DRAFT-19371
NOAA-NMFS-2020-0031-DRAFT-19372
NOAA-NMFS-2020-0031-DRAFT-19373
NOAA-NMFS-2020-0031-DRAFT-19374
NOAA-NMFS-2020-0031-DRAFT-19375
NOAA-NMFS-2020-0031-DRAFT-19376
NOAA-NMFS-2020-0031-DRAFT-19377
NOAA-NMFS-2020-0031-DRAFT-19378
NOAA-NMFS-2020-0031-DRAFT-19379
NOAA-NMFS-2020-0031-DRAFT-19380
NOAA-NMFS-2020-0031-DRAFT-19381
NOAA-NMFS-2020-0031-DRAFT-19382
NOAA-NMFS-2020-0031-DRAFT-19383
NOAA-NMFS-2020-0031-DRAFT-19384
NOAA-NMFS-2020-0031-DRAFT-19385
NOAA-NMFS-2020-0031-DRAFT-19386
NOAA-NMFS-2020-0031-DRAFT-19387
NOAA-NMFS-2020-0031-DRAFT-19388
NOAA-NMFS-2020-0031-DRAFT-19389
NOAA-NMFS-2020-0031-DRAFT-19390
NOAA-NMFS-2020-0031-DRAFT-19391
NOAA-NMFS-2020-0031-DRAFT-19392
NOAA-NMFS-2020-0031-DRAFT-19393
NOAA-NMFS-2020-0031-DRAFT-19394
NOAA-NMFS-2020-0031-DRAFT-19395
NOAA-NMFS-2020-0031-DRAFT-19396
NOAA-NMFS-2020-0031-DRAFT-19397
NOAA-NMFS-2020-0031-DRAFT-19398
NOAA-NMFS-2020-0031-DRAFT-19399
NOAA-NMFS-2020-0031-DRAFT-19400
NOAA-NMFS-2020-0031-DRAFT-19401
NOAA-NMFS-2020-0031-DRAFT-19402
NOAA-NMFS-2020-0031-DRAFT-19403
NOAA-NMFS-2020-0031-DRAFT-19404
NOAA-NMFS-2020-0031-DRAFT-19405
NOAA-NMFS-2020-0031-DRAFT-19406
NOAA-NMFS-2020-0031-DRAFT-19407
NOAA-NMFS-2020-0031-DRAFT-19408
NOAA-NMFS-2020-0031-DRAFT-19409
NOAA-NMFS-2020-0031-DRAFT-19410

Comment from Joan Mccoy
Comment from RENATE DOLIN
Comment from Mya Shone
Comment from Jared Cornelia
Comment from Mary Carrick
Comment from Colette Van Os
Comment from Aimee Jordan
Comment from Dawn Harrod
Comment from Stefanka Ilieva
Comment from Priscilla mezrahi
Comment from Luanne Stone
Comment from Joan Murtagh
Comment from Lorraine Sanchez
Comment from William Fisk
Comment from Judy Jolin
Comment from Bert Lustig
Comment from Skylar Storm
Comment from Carl Prellwitz
Comment from Amelia Jones
Comment from Barbara Sallee
Comment from Cathy McDow
Comment from Cheryl Turnbough
Comment from Gina Bates
Comment from Wolfgang burger
Comment from Jeffrey Dravis
Comment from Alan Firth
Comment from Nancy Sharak
Comment from Gail Donath
Comment from Marilee Meyer
Comment from Heather Schraeder
Comment from Marilyn Koff
Comment from Robert Rivera
Comment from Chelsea Ruth
Comment from norman pont
Comment from Asdur Triff
Comment from Felicia Bruce
Comment from Wendy Pratt
Comment from Marilyn Rose
Comment from Charles Brumleve
Comment from Katherine Russell
Comment from Francois De La Giroday

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02/15/2021
02/15/2021
02/15/2021
02/15/2021

NOAA-NMFS-2020-0031-DRAFT-14263
NOAA-NMFS-2020-0031-DRAFT-14264
NOAA-NMFS-2020-0031-DRAFT-14265
NOAA-NMFS-2020-0031-DRAFT-14266
NOAA-NMFS-2020-0031-DRAFT-14267
NOAA-NMFS-2020-0031-DRAFT-14268
NOAA-NMFS-2020-0031-DRAFT-14269
NOAA-NMFS-2020-0031-DRAFT-14271
NOAA-NMFS-2020-0031-DRAFT-14272
NOAA-NMFS-2020-0031-DRAFT-14273
NOAA-NMFS-2020-0031-DRAFT-14274
NOAA-NMFS-2020-0031-DRAFT-14275
NOAA-NMFS-2020-0031-DRAFT-14276
NOAA-NMFS-2020-0031-DRAFT-14277
NOAA-NMFS-2020-0031-DRAFT-14278
NOAA-NMFS-2020-0031-DRAFT-14279
NOAA-NMFS-2020-0031-DRAFT-14280
NOAA-NMFS-2020-0031-DRAFT-14281
NOAA-NMFS-2020-0031-DRAFT-14282
NOAA-NMFS-2020-0031-DRAFT-14283
NOAA-NMFS-2020-0031-DRAFT-14284
NOAA-NMFS-2020-0031-DRAFT-14285
NOAA-NMFS-2020-0031-DRAFT-14286
NOAA-NMFS-2020-0031-DRAFT-14287
NOAA-NMFS-2020-0031-DRAFT-14288
NOAA-NMFS-2020-0031-DRAFT-14289
NOAA-NMFS-2020-0031-DRAFT-14290
NOAA-NMFS-2020-0031-DRAFT-14291
NOAA-NMFS-2020-0031-DRAFT-14292
NOAA-NMFS-2020-0031-DRAFT-14293
NOAA-NMFS-2020-0031-DRAFT-14294
NOAA-NMFS-2020-0031-DRAFT-14295
NOAA-NMFS-2020-0031-DRAFT-14296
NOAA-NMFS-2020-0031-DRAFT-14297
NOAA-NMFS-2020-0031-DRAFT-14298
NOAA-NMFS-2020-0031-DRAFT-14299
NOAA-NMFS-2020-0031-DRAFT-14300
NOAA-NMFS-2020-0031-DRAFT-14301
NOAA-NMFS-2020-0031-DRAFT-14302
NOAA-NMFS-2020-0031-DRAFT-14304
NOAA-NMFS-2020-0031-DRAFT-14305

Comment from carol strobel
Comment from Peggy Kauffman
Comment from Sheila Kirsch
Comment from Sheila Kirsch
Comment from Kathi Smith
Comment from Kathryn Drobish
Comment from k. paro
Comment from Jennifer Benoit
Comment from sara habis
Comment from Steve Webster
Comment from Jule Oneal
Comment from Tom Wheys
Comment from Mary Estep
Comment from John Ferguson
Comment from Frank Carola
Comment from Sarika Arora
Comment from maryellen todd
Comment from Sandy Commons
Comment from Meredith Cody
Comment from Alisanne Wegman
Comment from Marianne Ruggiero
Comment from Karen Locke
Comment from Aixa Acevedo
Comment from Roxanne Barksdale
Comment from Cheryl Baker
Comment from Daryl Gale
Comment from Donald Hodge
Comment from Hadley Fowler
Comment from Jan Shimp
Comment from Sonia Waddell1234
Comment from Betsy Duffy
Comment from Marilyn Jordan
Comment from Michael Kelly
Comment from Kiana Gomez
Comment from Debra Smith
Comment from Carol Dewees
Comment from Michelle Wood
Comment from Virginia Whitaker
Comment from Virginia Whitaker
Comment from Celeste Almaral
Comment from Mari Mennel-Bell

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19411
NOAA-NMFS-2020-0031-DRAFT-19412
NOAA-NMFS-2020-0031-DRAFT-19413
NOAA-NMFS-2020-0031-DRAFT-19414
NOAA-NMFS-2020-0031-DRAFT-19415
NOAA-NMFS-2020-0031-DRAFT-19416
NOAA-NMFS-2020-0031-DRAFT-19417
NOAA-NMFS-2020-0031-DRAFT-19418
NOAA-NMFS-2020-0031-DRAFT-19419
NOAA-NMFS-2020-0031-DRAFT-19420
NOAA-NMFS-2020-0031-DRAFT-19421
NOAA-NMFS-2020-0031-DRAFT-19422
NOAA-NMFS-2020-0031-DRAFT-19423
NOAA-NMFS-2020-0031-DRAFT-19424
NOAA-NMFS-2020-0031-DRAFT-19425
NOAA-NMFS-2020-0031-DRAFT-19426
NOAA-NMFS-2020-0031-DRAFT-19427
NOAA-NMFS-2020-0031-DRAFT-19428
NOAA-NMFS-2020-0031-DRAFT-19429
NOAA-NMFS-2020-0031-DRAFT-19430
NOAA-NMFS-2020-0031-DRAFT-19431
NOAA-NMFS-2020-0031-DRAFT-19432
NOAA-NMFS-2020-0031-DRAFT-19433
NOAA-NMFS-2020-0031-DRAFT-19434
NOAA-NMFS-2020-0031-DRAFT-19435
NOAA-NMFS-2020-0031-DRAFT-19436
NOAA-NMFS-2020-0031-DRAFT-19437
NOAA-NMFS-2020-0031-DRAFT-19438
NOAA-NMFS-2020-0031-DRAFT-19439
NOAA-NMFS-2020-0031-DRAFT-19441
NOAA-NMFS-2020-0031-DRAFT-19442
NOAA-NMFS-2020-0031-DRAFT-19443
NOAA-NMFS-2020-0031-DRAFT-19444
NOAA-NMFS-2020-0031-DRAFT-19445
NOAA-NMFS-2020-0031-DRAFT-19446
NOAA-NMFS-2020-0031-DRAFT-19447
NOAA-NMFS-2020-0031-DRAFT-19448
NOAA-NMFS-2020-0031-DRAFT-19449
NOAA-NMFS-2020-0031-DRAFT-19450
NOAA-NMFS-2020-0031-DRAFT-19451
NOAA-NMFS-2020-0031-DRAFT-19452

Comment from Alana Willroth
Comment from Annette Pieniazek
Comment from Gordon Cook
Comment from Barbara Hood
Comment from wendy denny
Comment from Sarah Hallowell
Comment from Tony Romero
Comment from Wayne Steffes
Comment from andrew kaplan
Comment from Patricia PERRON
Comment from Kimberly Teraberry
Comment from Jodi Flynn
Comment from Linda Pflugrad
Comment from Wendy Jordan
Comment from Angel Moreno
Comment from Dennis Kreiner
Comment from Brandon Perras
Comment from Susan Biccum
Comment from audrey ross
Comment from Douglas McCormick
Comment from Lucille Thibodeau
Comment from Christine Koehler
Comment from Charlene Kerchevall
Comment from Maggie Paren
Comment from Amy Roberts
Comment from Josephine Biagi
Comment from Kate Harder
Comment from THOMAS KLUSARITZ
Comment from Kimberly Derwent
Comment from Robert Ortiz
Comment from billie ambrose
Comment from Paul Riley
Comment from Choky Alvarez
Comment from Denise Turner
Comment from MariLynn Herman
Comment from Stephen Mahoney
Comment from Donna Bender
Comment from Robert Oliver
Comment from pam zimmerman
Comment from Shirley Allison
Comment from Ron Ives

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02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/15/2021

NOAA-NMFS-2020-0031-DRAFT-14306
NOAA-NMFS-2020-0031-DRAFT-14307
NOAA-NMFS-2020-0031-DRAFT-14308
NOAA-NMFS-2020-0031-DRAFT-14309
NOAA-NMFS-2020-0031-DRAFT-14311
NOAA-NMFS-2020-0031-DRAFT-14313
NOAA-NMFS-2020-0031-DRAFT-14314
NOAA-NMFS-2020-0031-DRAFT-14315
NOAA-NMFS-2020-0031-DRAFT-14316
NOAA-NMFS-2020-0031-DRAFT-14317
NOAA-NMFS-2020-0031-DRAFT-14319
NOAA-NMFS-2020-0031-DRAFT-14320
NOAA-NMFS-2020-0031-DRAFT-14321
NOAA-NMFS-2020-0031-DRAFT-14322
NOAA-NMFS-2020-0031-DRAFT-14323
NOAA-NMFS-2020-0031-DRAFT-14324
NOAA-NMFS-2020-0031-DRAFT-14325
NOAA-NMFS-2020-0031-DRAFT-14326
NOAA-NMFS-2020-0031-DRAFT-14327
NOAA-NMFS-2020-0031-DRAFT-14328
NOAA-NMFS-2020-0031-DRAFT-14331
NOAA-NMFS-2020-0031-DRAFT-14332
NOAA-NMFS-2020-0031-DRAFT-14333
NOAA-NMFS-2020-0031-DRAFT-14334
NOAA-NMFS-2020-0031-DRAFT-14335
NOAA-NMFS-2020-0031-DRAFT-14336
NOAA-NMFS-2020-0031-DRAFT-14338
NOAA-NMFS-2020-0031-DRAFT-14339
NOAA-NMFS-2020-0031-DRAFT-14340
NOAA-NMFS-2020-0031-DRAFT-14341
NOAA-NMFS-2020-0031-DRAFT-14343
NOAA-NMFS-2020-0031-DRAFT-14344
NOAA-NMFS-2020-0031-DRAFT-14345
NOAA-NMFS-2020-0031-DRAFT-14346
NOAA-NMFS-2020-0031-DRAFT-14347
NOAA-NMFS-2020-0031-DRAFT-14348
NOAA-NMFS-2020-0031-DRAFT-14349
NOAA-NMFS-2020-0031-DRAFT-14350
NOAA-NMFS-2020-0031-DRAFT-14351
NOAA-NMFS-2020-0031-DRAFT-14352
NOAA-NMFS-2020-0031-DRAFT-14353

Comment from Evelyn Dassau
Comment from Richard Peterson
Comment from Liz Smith
Comment from Amy Benham
Comment from Martin Ariola
Comment from Frauke Argyros
Comment from Gretchen Zeiger-May
Comment from Ken Cassell
Comment from Paula jarrel
Comment from Stephanie Ferris
Comment from Lindsey Ladd
Comment from Jennifer Adams
Comment from Heather Watkins
Comment from Williams, Mary Frances
Comment from Anne M
Comment from Anne Pascucci
Comment from Wil O'Leary
Comment from Ali Van Zee
Comment from Emily Bragonier
Comment from Parent, Elena
Comment from John Blanchard
Comment from Lori Vadnais
Comment from Patrick Jacobson
Comment from Catherine GumtowFarrior
Comment from Catherine Kowalczyk.
Comment from Sierra Bassett
Comment from Mary More
Comment from Larry Oconner
Comment from Brian Goss
Comment from Ursula Pruitt
Comment from Natalie Mudd
Comment from Patricia Turner
Comment from John Outland
Comment from Mary Carrick
Comment from Daniel Brower
Comment from Peggy Kauffman
Comment from Liselle McFletcher
Comment from Joann Gilkes
Comment from Maisa Aziz
Comment from Sheri Howe
Comment from Julie Mirbach

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19453
NOAA-NMFS-2020-0031-DRAFT-19454
NOAA-NMFS-2020-0031-DRAFT-19455
NOAA-NMFS-2020-0031-DRAFT-19456
NOAA-NMFS-2020-0031-DRAFT-19457
NOAA-NMFS-2020-0031-DRAFT-19458
NOAA-NMFS-2020-0031-DRAFT-19459
NOAA-NMFS-2020-0031-DRAFT-19460
NOAA-NMFS-2020-0031-DRAFT-19461
NOAA-NMFS-2020-0031-DRAFT-19462
NOAA-NMFS-2020-0031-DRAFT-19463
NOAA-NMFS-2020-0031-DRAFT-19464
NOAA-NMFS-2020-0031-DRAFT-19465
NOAA-NMFS-2020-0031-DRAFT-19466
NOAA-NMFS-2020-0031-DRAFT-19467
NOAA-NMFS-2020-0031-DRAFT-19468
NOAA-NMFS-2020-0031-DRAFT-19469
NOAA-NMFS-2020-0031-DRAFT-19470
NOAA-NMFS-2020-0031-DRAFT-19471
NOAA-NMFS-2020-0031-DRAFT-19472
NOAA-NMFS-2020-0031-DRAFT-19473
NOAA-NMFS-2020-0031-DRAFT-19474
NOAA-NMFS-2020-0031-DRAFT-19475
NOAA-NMFS-2020-0031-DRAFT-19476
NOAA-NMFS-2020-0031-DRAFT-19477
NOAA-NMFS-2020-0031-DRAFT-19478
NOAA-NMFS-2020-0031-DRAFT-19479
NOAA-NMFS-2020-0031-DRAFT-19480
NOAA-NMFS-2020-0031-DRAFT-19481
NOAA-NMFS-2020-0031-DRAFT-19482
NOAA-NMFS-2020-0031-DRAFT-19483
NOAA-NMFS-2020-0031-DRAFT-19484
NOAA-NMFS-2020-0031-DRAFT-19485
NOAA-NMFS-2020-0031-DRAFT-19486
NOAA-NMFS-2020-0031-DRAFT-19487
NOAA-NMFS-2020-0031-DRAFT-19488
NOAA-NMFS-2020-0031-DRAFT-19489
NOAA-NMFS-2020-0031-DRAFT-19490
NOAA-NMFS-2020-0031-DRAFT-19491
NOAA-NMFS-2020-0031-DRAFT-19492
NOAA-NMFS-2020-0031-DRAFT-19493

Comment from Steve Gould
Comment from Diana Covington
Comment from Louise McNulty
Comment from andrea Feig
Comment from Patty Lehr
Comment from Tom Cleveland
Comment from irina kurland
Comment from David Henderson
Comment from Christi DeMark
Comment from Choky Alvarez
Comment from D. Rader
Comment from William Shearer
Comment from ellen wertheim
Comment from louis caravaglia
Comment from Dana Linder
Comment from Lisa Annecone
Comment from Laurie Cocheo
Comment from Arthur Fornari
Comment from Karin Kozie
Comment from Eunice Daily
Comment from Pauline Erera
Comment from Cynthia Blackledge
Comment from Pat Ellison
Comment from Wally Sykes
Comment from Janice Brown
Comment from Ernie Sanchez
Comment from Shirley Evans
Comment from Tom Tripp
Comment from Leslie Kuhn
Comment from Betty Butler
Comment from Karen Rivers
Comment from Susan Emery
Comment from Marina af Grivas
Comment from Marvin Guymon
Comment from Raymie Roland
Comment from A F
Comment from Stephen Babb
Comment from Karla Devine
Comment from Niki Wise
Comment from Karen Stewart
Comment from Sandra Morales

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02/16/2021
02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14354
NOAA-NMFS-2020-0031-DRAFT-14356
NOAA-NMFS-2020-0031-DRAFT-14357
NOAA-NMFS-2020-0031-DRAFT-14358
NOAA-NMFS-2020-0031-DRAFT-14359
NOAA-NMFS-2020-0031-DRAFT-14360
NOAA-NMFS-2020-0031-DRAFT-14361
NOAA-NMFS-2020-0031-DRAFT-14363
NOAA-NMFS-2020-0031-DRAFT-14364
NOAA-NMFS-2020-0031-DRAFT-14365
NOAA-NMFS-2020-0031-DRAFT-14366
NOAA-NMFS-2020-0031-DRAFT-14367
NOAA-NMFS-2020-0031-DRAFT-14368
NOAA-NMFS-2020-0031-DRAFT-14369
NOAA-NMFS-2020-0031-DRAFT-14370
NOAA-NMFS-2020-0031-DRAFT-14371
NOAA-NMFS-2020-0031-DRAFT-14372
NOAA-NMFS-2020-0031-DRAFT-14373
NOAA-NMFS-2020-0031-DRAFT-14374
NOAA-NMFS-2020-0031-DRAFT-14375
NOAA-NMFS-2020-0031-DRAFT-14376
NOAA-NMFS-2020-0031-DRAFT-14377
NOAA-NMFS-2020-0031-DRAFT-14378
NOAA-NMFS-2020-0031-DRAFT-14379
NOAA-NMFS-2020-0031-DRAFT-14380
NOAA-NMFS-2020-0031-DRAFT-14382
NOAA-NMFS-2020-0031-DRAFT-14383
NOAA-NMFS-2020-0031-DRAFT-14384
NOAA-NMFS-2020-0031-DRAFT-14385
NOAA-NMFS-2020-0031-DRAFT-14386
NOAA-NMFS-2020-0031-DRAFT-14387
NOAA-NMFS-2020-0031-DRAFT-14388
NOAA-NMFS-2020-0031-DRAFT-14389
NOAA-NMFS-2020-0031-DRAFT-14390
NOAA-NMFS-2020-0031-DRAFT-14391
NOAA-NMFS-2020-0031-DRAFT-14392
NOAA-NMFS-2020-0031-DRAFT-14393
NOAA-NMFS-2020-0031-DRAFT-14395
NOAA-NMFS-2020-0031-DRAFT-14396
NOAA-NMFS-2020-0031-DRAFT-14397
NOAA-NMFS-2020-0031-DRAFT-14398

Comment from Jennifer Flocco
Comment from Rob Edwards
Comment from Mike Feria
Comment from Donna Gattuso
Comment from Kendall Reiss
Comment from Bonnie Clark
Comment from Tanya Osterman
Comment from Melissa Conard
Comment from Armand Gadbois
Comment from Becky Bauer
Comment from Joann Dahmen
Comment from Karen Yarnell
Comment from Christina McCulley
Comment from Eric Brooker
Comment from Erika Gesue
Comment from Milena Nesic
Comment from Gulfem Bilgic
Comment from Jennifer Work
Comment from Margaret Hall
Comment from Paw Taw
Comment from Katherine Babiak
Comment from John Walker
Comment from Jo RomaniszakSanchez
Comment from Shani Schulman
Comment from Chris Blyth
Comment from Dana Adams
Comment from Jessie Medina
Comment from Keiko M.
Comment from Claudia Panzer
Comment from John Delgado
Comment from Miriam Merino
Comment from Eddie Plotts
Comment from Michael Dorer
Comment from Cheryl Chubokas
Comment from Katrina Neber
Comment from Mary Nuss
Comment from Michele Testa
Comment from Alison Osment
Comment from Priscilla Hunt
Comment from Ilse Singer
Comment from Rachel Langsam

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19494
NOAA-NMFS-2020-0031-DRAFT-19495
NOAA-NMFS-2020-0031-DRAFT-19497
NOAA-NMFS-2020-0031-DRAFT-19498
NOAA-NMFS-2020-0031-DRAFT-19499
NOAA-NMFS-2020-0031-DRAFT-19500
NOAA-NMFS-2020-0031-DRAFT-19501
NOAA-NMFS-2020-0031-DRAFT-19502
NOAA-NMFS-2020-0031-DRAFT-19503
NOAA-NMFS-2020-0031-DRAFT-19504
NOAA-NMFS-2020-0031-DRAFT-19505
NOAA-NMFS-2020-0031-DRAFT-19506
NOAA-NMFS-2020-0031-DRAFT-19507
NOAA-NMFS-2020-0031-DRAFT-19508
NOAA-NMFS-2020-0031-DRAFT-19509
NOAA-NMFS-2020-0031-DRAFT-19510
NOAA-NMFS-2020-0031-DRAFT-19511
NOAA-NMFS-2020-0031-DRAFT-19512
NOAA-NMFS-2020-0031-DRAFT-19513
NOAA-NMFS-2020-0031-DRAFT-19514
NOAA-NMFS-2020-0031-DRAFT-19515
NOAA-NMFS-2020-0031-DRAFT-19516
NOAA-NMFS-2020-0031-DRAFT-19517
NOAA-NMFS-2020-0031-DRAFT-19518
NOAA-NMFS-2020-0031-DRAFT-19519
NOAA-NMFS-2020-0031-DRAFT-19520
NOAA-NMFS-2020-0031-DRAFT-19521
NOAA-NMFS-2020-0031-DRAFT-19522
NOAA-NMFS-2020-0031-DRAFT-19523
NOAA-NMFS-2020-0031-DRAFT-19524
NOAA-NMFS-2020-0031-DRAFT-19525
NOAA-NMFS-2020-0031-DRAFT-19526
NOAA-NMFS-2020-0031-DRAFT-19527
NOAA-NMFS-2020-0031-DRAFT-19528
NOAA-NMFS-2020-0031-DRAFT-19529
NOAA-NMFS-2020-0031-DRAFT-19530
NOAA-NMFS-2020-0031-DRAFT-19531
NOAA-NMFS-2020-0031-DRAFT-19532
NOAA-NMFS-2020-0031-DRAFT-19533
NOAA-NMFS-2020-0031-DRAFT-19534
NOAA-NMFS-2020-0031-DRAFT-19535

Comment from Dee Downing
Comment from Karen Wilson
Comment from Dawn Kosec
Comment from Karen Spradlin
Comment from Holly Barr
Comment from Frederick Glazier
Comment from LeRoy Holcomb
Comment from Maureen Fogerty
Comment from Danika Esden-Tempski
Comment from Jerry Lee
Comment from Lisa Goodson
Comment from Linda Waine
Comment from Abigail Gindele
Comment from Mary Stanton
Comment from Linda Williams
Comment from Robert Jacobson
Comment from Stevie Sugarman
Comment from Andy Lynn
Comment from Adrian Paul
Comment from William Anderson
Comment from Kathryn Lambros
Comment from Mark Gotvald
Comment from Julie Strother
Comment from Bettina Goodall
Comment from Roslynn Budoff
Comment from CARL LUHRING
Comment from Stephanie Mistretta
Comment from Ralph Ciavatti
Comment from Edmund Wright
Comment from Margaret Philhower
Comment from Brandon Kozak
Comment from William Sarovec
Comment from Elena Fowler
Comment from Lorraine Martinez
Comment from Sharon Sullivan
Comment from David Clapper
Comment from Sally Madigan
Comment from John Christopher
Comment from Wanda Almodovar
Comment from Laurel Watson
Comment from Leslie Nirenstein

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02/16/2021
02/16/2021
02/16/2021
02/16/2021
02/16/2021
02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14399
NOAA-NMFS-2020-0031-DRAFT-14400
NOAA-NMFS-2020-0031-DRAFT-14401
NOAA-NMFS-2020-0031-DRAFT-14402
NOAA-NMFS-2020-0031-DRAFT-14403
NOAA-NMFS-2020-0031-DRAFT-14404
NOAA-NMFS-2020-0031-DRAFT-14405
NOAA-NMFS-2020-0031-DRAFT-14406
NOAA-NMFS-2020-0031-DRAFT-14407
NOAA-NMFS-2020-0031-DRAFT-14408
NOAA-NMFS-2020-0031-DRAFT-14409
NOAA-NMFS-2020-0031-DRAFT-14410
NOAA-NMFS-2020-0031-DRAFT-14411
NOAA-NMFS-2020-0031-DRAFT-14412
NOAA-NMFS-2020-0031-DRAFT-14413
NOAA-NMFS-2020-0031-DRAFT-14416
NOAA-NMFS-2020-0031-DRAFT-14417
NOAA-NMFS-2020-0031-DRAFT-14418
NOAA-NMFS-2020-0031-DRAFT-14419
NOAA-NMFS-2020-0031-DRAFT-14421
NOAA-NMFS-2020-0031-DRAFT-14422
NOAA-NMFS-2020-0031-DRAFT-14424
NOAA-NMFS-2020-0031-DRAFT-14425
NOAA-NMFS-2020-0031-DRAFT-14426
NOAA-NMFS-2020-0031-DRAFT-14427
NOAA-NMFS-2020-0031-DRAFT-14428
NOAA-NMFS-2020-0031-DRAFT-14429
NOAA-NMFS-2020-0031-DRAFT-14430
NOAA-NMFS-2020-0031-DRAFT-14431
NOAA-NMFS-2020-0031-DRAFT-14432
NOAA-NMFS-2020-0031-DRAFT-14433
NOAA-NMFS-2020-0031-DRAFT-14434
NOAA-NMFS-2020-0031-DRAFT-14435
NOAA-NMFS-2020-0031-DRAFT-14436
NOAA-NMFS-2020-0031-DRAFT-14437
NOAA-NMFS-2020-0031-DRAFT-14438
NOAA-NMFS-2020-0031-DRAFT-14439
NOAA-NMFS-2020-0031-DRAFT-14440
NOAA-NMFS-2020-0031-DRAFT-14442
NOAA-NMFS-2020-0031-DRAFT-14443
NOAA-NMFS-2020-0031-DRAFT-14444

Comment from Dolores Saenz
Comment from JILL AUXER
Comment from Jessica Stewart
Comment from Cathy Satiro
Comment from Ellen May
Comment from Georgia Cosenza
Comment from Jessalyn Timson
Comment from Kelly Saindon
Comment from Terri S
Comment from Michelle Stein
Comment from Tammy Boleng
Comment from Karen Miller
Comment from Kimberly Schmidt
Comment from Jane White
Comment from kathy Branagan
Comment from Sally Perzanowski
Comment from Nicke Hetzel
Comment from Nicole Sievers
Comment from Ann Marie
Comment from Litsa Katsarou
Comment from Eugene Bae
Comment from Litsa Katsarou
Comment from Jo Herlovski
Comment from Deanna LaBella
Comment from Pat Wyman
Comment from Dom Citrullo
Comment from Joelle Ziemian
Comment from Nan Clark
Comment from Penny Webster
Comment from Corinne Lamour
Comment from Misty Stone
Comment from Michelle Warmath
Comment from DawnMoon Jaques
Comment from Lucy John
Comment from Michelle Malaspino
Comment from Alese Tait
Comment from Elizabeth Hunt
Comment from Cindy Beck
Comment from Steven DeSanctis
Comment from Johanessen, Kathryn
Comment from Smith, Judith

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19536
NOAA-NMFS-2020-0031-DRAFT-19537
NOAA-NMFS-2020-0031-DRAFT-19538
NOAA-NMFS-2020-0031-DRAFT-19539
NOAA-NMFS-2020-0031-DRAFT-19540
NOAA-NMFS-2020-0031-DRAFT-19541
NOAA-NMFS-2020-0031-DRAFT-19542
NOAA-NMFS-2020-0031-DRAFT-19543
NOAA-NMFS-2020-0031-DRAFT-19544
NOAA-NMFS-2020-0031-DRAFT-19545
NOAA-NMFS-2020-0031-DRAFT-19546
NOAA-NMFS-2020-0031-DRAFT-19547
NOAA-NMFS-2020-0031-DRAFT-19548
NOAA-NMFS-2020-0031-DRAFT-19549
NOAA-NMFS-2020-0031-DRAFT-19550
NOAA-NMFS-2020-0031-DRAFT-19551
NOAA-NMFS-2020-0031-DRAFT-19552
NOAA-NMFS-2020-0031-DRAFT-19553
NOAA-NMFS-2020-0031-DRAFT-19554
NOAA-NMFS-2020-0031-DRAFT-19555
NOAA-NMFS-2020-0031-DRAFT-19556
NOAA-NMFS-2020-0031-DRAFT-19557
NOAA-NMFS-2020-0031-DRAFT-19558
NOAA-NMFS-2020-0031-DRAFT-19559
NOAA-NMFS-2020-0031-DRAFT-19560
NOAA-NMFS-2020-0031-DRAFT-19561
NOAA-NMFS-2020-0031-DRAFT-19562
NOAA-NMFS-2020-0031-DRAFT-19563
NOAA-NMFS-2020-0031-DRAFT-19564
NOAA-NMFS-2020-0031-DRAFT-19565
NOAA-NMFS-2020-0031-DRAFT-19566
NOAA-NMFS-2020-0031-DRAFT-19567
NOAA-NMFS-2020-0031-DRAFT-19568
NOAA-NMFS-2020-0031-DRAFT-19569
NOAA-NMFS-2020-0031-DRAFT-19570
NOAA-NMFS-2020-0031-DRAFT-19571
NOAA-NMFS-2020-0031-DRAFT-19572
NOAA-NMFS-2020-0031-DRAFT-19573
NOAA-NMFS-2020-0031-DRAFT-19574
NOAA-NMFS-2020-0031-DRAFT-19575
NOAA-NMFS-2020-0031-DRAFT-19576

Comment from Richard Van Aken
Comment from Alfred Staab
Comment from Elaine Russell
Comment from Sharon Baker
Comment from Jacob Listerud
Comment from Julie Hawkins
Comment from Susan Anderson
Comment from Priscilla Martin
Comment from Jacob Listerud
Comment from Gary Hull
Comment from Mary Tindukasiri
Comment from Selim Uzuner
Comment from Lisa Mistretta
Comment from James Bullock
Comment from Ryan Gardner
Comment from Karyn Morales
Comment from S Mendon
Comment from Sheila Enright
Comment from Dorothy Holtzman
Comment from Vic DeAngelo
Comment from Richard Hammer
Comment from Suzanne Gordon
Comment from Renee Janton
Comment from Linda Michalopoulos
Comment from Ken Martin
Comment from Mitch M
Comment from Tim Ryan
Comment from Kim Altana
Comment from nathan carl
Comment from Sally Maish
Comment from Pauline Burak
Comment from Frances Mcaroy
Comment from David Worley
Comment from Gia Granucci
Comment from Laurel Kornfeld
Comment from kori olaso
Comment from Laura Ray
Comment from Robin Lorentzen
Comment from Linda Hendrix
Comment from Kim Frazier
Comment from Jean Wiant

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02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14445
NOAA-NMFS-2020-0031-DRAFT-14446
NOAA-NMFS-2020-0031-DRAFT-14447
NOAA-NMFS-2020-0031-DRAFT-14448
NOAA-NMFS-2020-0031-DRAFT-14449
NOAA-NMFS-2020-0031-DRAFT-14451
NOAA-NMFS-2020-0031-DRAFT-14452
NOAA-NMFS-2020-0031-DRAFT-14453
NOAA-NMFS-2020-0031-DRAFT-14454
NOAA-NMFS-2020-0031-DRAFT-14455
NOAA-NMFS-2020-0031-DRAFT-14456
NOAA-NMFS-2020-0031-DRAFT-14457
NOAA-NMFS-2020-0031-DRAFT-14458
NOAA-NMFS-2020-0031-DRAFT-14459
NOAA-NMFS-2020-0031-DRAFT-14461
NOAA-NMFS-2020-0031-DRAFT-14462
NOAA-NMFS-2020-0031-DRAFT-14463
NOAA-NMFS-2020-0031-DRAFT-14464
NOAA-NMFS-2020-0031-DRAFT-14465
NOAA-NMFS-2020-0031-DRAFT-14466
NOAA-NMFS-2020-0031-DRAFT-14467
NOAA-NMFS-2020-0031-DRAFT-14469
NOAA-NMFS-2020-0031-DRAFT-14470
NOAA-NMFS-2020-0031-DRAFT-14471
NOAA-NMFS-2020-0031-DRAFT-14472
NOAA-NMFS-2020-0031-DRAFT-14473
NOAA-NMFS-2020-0031-DRAFT-14474
NOAA-NMFS-2020-0031-DRAFT-14475
NOAA-NMFS-2020-0031-DRAFT-14476
NOAA-NMFS-2020-0031-DRAFT-14477
NOAA-NMFS-2020-0031-DRAFT-14478
NOAA-NMFS-2020-0031-DRAFT-14479
NOAA-NMFS-2020-0031-DRAFT-14480
NOAA-NMFS-2020-0031-DRAFT-14481
NOAA-NMFS-2020-0031-DRAFT-14482
NOAA-NMFS-2020-0031-DRAFT-14483
NOAA-NMFS-2020-0031-DRAFT-14484
NOAA-NMFS-2020-0031-DRAFT-14485
NOAA-NMFS-2020-0031-DRAFT-14486
NOAA-NMFS-2020-0031-DRAFT-14487
NOAA-NMFS-2020-0031-DRAFT-14488

Comment from DONALD PREISTER
Comment from A, NK
Comment from Carrison, Yvonne
Comment from Cobb, Sandra
Comment from Segar, Beth
Comment from Fletcher, Jennifer
Comment from Atkins, Theresa
Comment from Bescript, Linda
Comment from Judy Monson
Comment from Alexander, Jim
Comment from Elaine Quinones
Comment from Goldbaugh, Dennis
Comment from Howell, Valerie
Comment from wolf, val
Comment from l, s
Comment from Cassianna, Frank
Comment from Monger, Becky
Comment from S, Patti
Comment from Suzann Daley
Comment from Scott, Jennifer
Comment from CHAURASIA, Tawnya
Comment from Babaian, Caryn
Comment from Gabaree Wayne
Comment from Mulvey, Donna
Comment from Mistretta, Jill
Comment from Ayers, Robert
Comment from Koplow, Maureen
Comment from Mireault, Kathleen
Comment from Kotlyar, Sofia
Comment from Klawiter, Michelle
Comment from Kenner, Kate
Comment from Passoa, Valerie
Comment from Dudan, Don
Comment from Alexander, Susan
Comment from Och, Evelyn
Comment from Hauer, Emily
Comment from Fitch, Tom
Comment from McNally, Sue
Comment from Garvett, Esther
Comment from Grosshans, Lois
Comment from Peter, Joan

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NOAA-NMFS-2020-0031-DRAFT-19577
NOAA-NMFS-2020-0031-DRAFT-19578
NOAA-NMFS-2020-0031-DRAFT-19579
NOAA-NMFS-2020-0031-DRAFT-19580
NOAA-NMFS-2020-0031-DRAFT-19581
NOAA-NMFS-2020-0031-DRAFT-19582
NOAA-NMFS-2020-0031-DRAFT-19583
NOAA-NMFS-2020-0031-DRAFT-19584
NOAA-NMFS-2020-0031-DRAFT-19585
NOAA-NMFS-2020-0031-DRAFT-19586
NOAA-NMFS-2020-0031-DRAFT-19587
NOAA-NMFS-2020-0031-DRAFT-19588
NOAA-NMFS-2020-0031-DRAFT-19589
NOAA-NMFS-2020-0031-DRAFT-19590
NOAA-NMFS-2020-0031-DRAFT-19591
NOAA-NMFS-2020-0031-DRAFT-19592
NOAA-NMFS-2020-0031-DRAFT-19593
NOAA-NMFS-2020-0031-DRAFT-19594
NOAA-NMFS-2020-0031-DRAFT-19595
NOAA-NMFS-2020-0031-DRAFT-19596
NOAA-NMFS-2020-0031-DRAFT-19597
NOAA-NMFS-2020-0031-DRAFT-19598
NOAA-NMFS-2020-0031-DRAFT-19599
NOAA-NMFS-2020-0031-DRAFT-19600
NOAA-NMFS-2020-0031-DRAFT-19601
NOAA-NMFS-2020-0031-DRAFT-19602
NOAA-NMFS-2020-0031-DRAFT-19603
NOAA-NMFS-2020-0031-DRAFT-19604
NOAA-NMFS-2020-0031-DRAFT-19605
NOAA-NMFS-2020-0031-DRAFT-19606
NOAA-NMFS-2020-0031-DRAFT-19607
NOAA-NMFS-2020-0031-DRAFT-19608
NOAA-NMFS-2020-0031-DRAFT-19609
NOAA-NMFS-2020-0031-DRAFT-19610
NOAA-NMFS-2020-0031-DRAFT-19611
NOAA-NMFS-2020-0031-DRAFT-19612
NOAA-NMFS-2020-0031-DRAFT-19613
NOAA-NMFS-2020-0031-DRAFT-19615
NOAA-NMFS-2020-0031-DRAFT-19616
NOAA-NMFS-2020-0031-DRAFT-19617
NOAA-NMFS-2020-0031-DRAFT-19618

Comment from Ellen Phillips
Comment from Bob P.
Comment from Patricia Carpenter
Comment from Susan Pfretzschner
Comment from Tracey Flater
Comment from Harold Hubbard
Comment from John Lynch
Comment from Julia Bottom
Comment from Tim Hayes
Comment from Wayne Ott
Comment from Nina Berry
Comment from Liam Dineen
Comment from Marilyn Montgomery
Comment from L Haage
Comment from Mike Chyba
Comment from Amy Stoller
Comment from Patricia Warden
Comment from Kyle Peterson
Comment from Hayli Walker
Comment from tom taylor
Comment from Elizabeth McSweeney
Comment from Caroline Svilla
Comment from Janet Monfredini
Comment from casee maxfield
Comment from Judy Cassada
Comment from Kelly Fiske
Comment from Cathy Holden
Comment from Sherron Collins
Comment from Thomas Boswell
Comment from Paul Brooks
Comment from Theodore Burger
Comment from James van Maanen
Comment from Don Hon
Comment from Julia Hart
Comment from Mary Diercks
Comment from Theodore Burger
Comment from Emily Dickinson-Adams
Comment from Barbara Sullivan
Comment from Gary Miller
Comment from Roderic Stephens
Comment from Kristin Lewis

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02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14489
NOAA-NMFS-2020-0031-DRAFT-14490
NOAA-NMFS-2020-0031-DRAFT-14491
NOAA-NMFS-2020-0031-DRAFT-14492
NOAA-NMFS-2020-0031-DRAFT-14493
NOAA-NMFS-2020-0031-DRAFT-14494
NOAA-NMFS-2020-0031-DRAFT-14495
NOAA-NMFS-2020-0031-DRAFT-14496
NOAA-NMFS-2020-0031-DRAFT-14497
NOAA-NMFS-2020-0031-DRAFT-14498
NOAA-NMFS-2020-0031-DRAFT-14499
NOAA-NMFS-2020-0031-DRAFT-14500
NOAA-NMFS-2020-0031-DRAFT-14501
NOAA-NMFS-2020-0031-DRAFT-14502
NOAA-NMFS-2020-0031-DRAFT-14503
NOAA-NMFS-2020-0031-DRAFT-14504
NOAA-NMFS-2020-0031-DRAFT-14505
NOAA-NMFS-2020-0031-DRAFT-14506
NOAA-NMFS-2020-0031-DRAFT-14507
NOAA-NMFS-2020-0031-DRAFT-14508
NOAA-NMFS-2020-0031-DRAFT-14509
NOAA-NMFS-2020-0031-DRAFT-14510
NOAA-NMFS-2020-0031-DRAFT-14511
NOAA-NMFS-2020-0031-DRAFT-14512
NOAA-NMFS-2020-0031-DRAFT-14513
NOAA-NMFS-2020-0031-DRAFT-14514
NOAA-NMFS-2020-0031-DRAFT-14515
NOAA-NMFS-2020-0031-DRAFT-14516
NOAA-NMFS-2020-0031-DRAFT-14517
NOAA-NMFS-2020-0031-DRAFT-14518
NOAA-NMFS-2020-0031-DRAFT-14519
NOAA-NMFS-2020-0031-DRAFT-14520
NOAA-NMFS-2020-0031-DRAFT-14521
NOAA-NMFS-2020-0031-DRAFT-14522
NOAA-NMFS-2020-0031-DRAFT-14523
NOAA-NMFS-2020-0031-DRAFT-14524
NOAA-NMFS-2020-0031-DRAFT-14525
NOAA-NMFS-2020-0031-DRAFT-14526
NOAA-NMFS-2020-0031-DRAFT-14527
NOAA-NMFS-2020-0031-DRAFT-14528
NOAA-NMFS-2020-0031-DRAFT-14529

Comment from Rebecca Weisser
Comment from Shultz, Jamie
Comment from Stoller, Amy
Comment from Sidelnikova, Julia
Comment from Bobe, Pablo
Comment from Frederick, Nicholas
Comment from Miller, Carol
Comment from Keys, Jennifer
Comment from Gillespie, Sharon
Comment from Przybysz, Slowomir and
irene
Comment from Skyler Nathanson
Comment from Otero, Julia
Comment from Duong, Nicolas
Comment from Levitt, Lacey
Comment from broenner, Cindra
Comment from Abellorentzen, Katherine
Comment from Costa, Lynn
Comment from Duong, Nicolas
Comment from Lind, A Eric
Comment from DeNunzio, Bruce and
Maureen
Comment from Reeves, Lenore
Comment from Peterson, Robin
Comment from McMaken, Jean
Comment from Cloud, Jarrett
Comment from McDonald, Mark
Comment from Wilson, Ivalee
Comment from Sotere, Valerie
Comment from Apostolos, Andrew
Comment from Wolf, Mera
Comment from Streich, Kim
Comment from Thibodeau, Lucille
Comment from Vially, Vincent and Tess
Comment from BERRY, JASON
Comment from Ratcliff, Philip
Comment from Huber, Dr Susan
Comment from Root, TAMMY
Comment from Gregory, Nancy
Comment from Brenza, Tina
Comment from Denning, Asphodel
Comment from Vander Poel, James
Comment from Bousquet, Bob

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NOAA-NMFS-2020-0031-DRAFT-19619
NOAA-NMFS-2020-0031-DRAFT-19620
NOAA-NMFS-2020-0031-DRAFT-19621
NOAA-NMFS-2020-0031-DRAFT-19622
NOAA-NMFS-2020-0031-DRAFT-19623
NOAA-NMFS-2020-0031-DRAFT-19624
NOAA-NMFS-2020-0031-DRAFT-19625
NOAA-NMFS-2020-0031-DRAFT-19626
NOAA-NMFS-2020-0031-DRAFT-19627
NOAA-NMFS-2020-0031-DRAFT-19628
NOAA-NMFS-2020-0031-DRAFT-19629
NOAA-NMFS-2020-0031-DRAFT-19630
NOAA-NMFS-2020-0031-DRAFT-19631
NOAA-NMFS-2020-0031-DRAFT-19632
NOAA-NMFS-2020-0031-DRAFT-19633
NOAA-NMFS-2020-0031-DRAFT-19634
NOAA-NMFS-2020-0031-DRAFT-19635
NOAA-NMFS-2020-0031-DRAFT-19636
NOAA-NMFS-2020-0031-DRAFT-19637
NOAA-NMFS-2020-0031-DRAFT-19638
NOAA-NMFS-2020-0031-DRAFT-19639
NOAA-NMFS-2020-0031-DRAFT-19640
NOAA-NMFS-2020-0031-DRAFT-19641
NOAA-NMFS-2020-0031-DRAFT-19642
NOAA-NMFS-2020-0031-DRAFT-19643
NOAA-NMFS-2020-0031-DRAFT-19644
NOAA-NMFS-2020-0031-DRAFT-19645
NOAA-NMFS-2020-0031-DRAFT-19646
NOAA-NMFS-2020-0031-DRAFT-19647
NOAA-NMFS-2020-0031-DRAFT-19648
NOAA-NMFS-2020-0031-DRAFT-19649
NOAA-NMFS-2020-0031-DRAFT-19650
NOAA-NMFS-2020-0031-DRAFT-19651
NOAA-NMFS-2020-0031-DRAFT-19652
NOAA-NMFS-2020-0031-DRAFT-19653
NOAA-NMFS-2020-0031-DRAFT-19654
NOAA-NMFS-2020-0031-DRAFT-19655
NOAA-NMFS-2020-0031-DRAFT-19656
NOAA-NMFS-2020-0031-DRAFT-19657
NOAA-NMFS-2020-0031-DRAFT-19658
NOAA-NMFS-2020-0031-DRAFT-19659

Comment from MaryEllen Meli
Comment from Anne Randolph
Comment from Melissa K
Comment from Carolyn Maguire
Comment from Nathan Vogel
Comment from John Bertaina
Comment from Terry Gunning
Comment from Lisa Annecone
Comment from Chantal livernois
Comment from Elizabeth Gann
Comment from Gavin Dillard
Comment from Eugene Brusin
Comment from Gretchen Byrne
Comment from Alicia Barnes
Comment from Evelyn Bailey
Comment from Alan Decker
Comment from Jo jones
Comment from Dale shuffler
Comment from Sgt. Palloc
Comment from Carol prost
Comment from Barbara Abraham
Comment from James Carley
Comment from kristin carstarphen
Comment from Randle Sink
Comment from Cammy Colton
Comment from Julia Cranmer
Comment from Anthony Mehle
Comment from Dan Racz
Comment from Jane Van Praag
Comment from Sarah Cooke
Comment from Russell De La Mare
Comment from Delores Dyke
Comment from Linda Anderson
Comment from ALISON APLIN
Comment from Gianna Garcia
Comment from Harold Brundage
Comment from Mary Al-Tukhaim
Comment from Clifford Provost
Comment from Jon Hudson
Comment from JimBetty Burrell
Comment from Alice Nicholson

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02/16/2021
02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14530
NOAA-NMFS-2020-0031-DRAFT-14531
NOAA-NMFS-2020-0031-DRAFT-14532
NOAA-NMFS-2020-0031-DRAFT-14533
NOAA-NMFS-2020-0031-DRAFT-14534
NOAA-NMFS-2020-0031-DRAFT-14535
NOAA-NMFS-2020-0031-DRAFT-14536
NOAA-NMFS-2020-0031-DRAFT-14537
NOAA-NMFS-2020-0031-DRAFT-14538
NOAA-NMFS-2020-0031-DRAFT-14539
NOAA-NMFS-2020-0031-DRAFT-14540
NOAA-NMFS-2020-0031-DRAFT-14541
NOAA-NMFS-2020-0031-DRAFT-14542
NOAA-NMFS-2020-0031-DRAFT-14543
NOAA-NMFS-2020-0031-DRAFT-14544
NOAA-NMFS-2020-0031-DRAFT-14545
NOAA-NMFS-2020-0031-DRAFT-14546
NOAA-NMFS-2020-0031-DRAFT-14547
NOAA-NMFS-2020-0031-DRAFT-14548
NOAA-NMFS-2020-0031-DRAFT-14549
NOAA-NMFS-2020-0031-DRAFT-14550
NOAA-NMFS-2020-0031-DRAFT-14551
NOAA-NMFS-2020-0031-DRAFT-14552
NOAA-NMFS-2020-0031-DRAFT-14553
NOAA-NMFS-2020-0031-DRAFT-14554
NOAA-NMFS-2020-0031-DRAFT-14555
NOAA-NMFS-2020-0031-DRAFT-14556
NOAA-NMFS-2020-0031-DRAFT-14557
NOAA-NMFS-2020-0031-DRAFT-14558
NOAA-NMFS-2020-0031-DRAFT-14559
NOAA-NMFS-2020-0031-DRAFT-14560
NOAA-NMFS-2020-0031-DRAFT-14561
NOAA-NMFS-2020-0031-DRAFT-14562
NOAA-NMFS-2020-0031-DRAFT-14563
NOAA-NMFS-2020-0031-DRAFT-14564
NOAA-NMFS-2020-0031-DRAFT-14565
NOAA-NMFS-2020-0031-DRAFT-14567
NOAA-NMFS-2020-0031-DRAFT-14568
NOAA-NMFS-2020-0031-DRAFT-14572
NOAA-NMFS-2020-0031-DRAFT-14575
NOAA-NMFS-2020-0031-DRAFT-14576

Comment from Cavallaro, Joseph
Comment from alayza mujica, bernardo
Comment from Hicks, Lacey
Comment from Baron, Roger
Comment from Reback, Mark
Comment from landskroner, ron
Comment from Beldin, Joanie
Comment from Elder, Melissa
Comment from Barth, Patricia
Comment from Oppenheim, Jennifer
Comment from Fleming, Susan
Comment from Goodman, Margaret
Comment from Frederick, Nicholas
Comment from Delugach, Joie
Comment from Wylie, Michael and Ann
Comment from Gorak, Martha
Comment from Guarnieri, Tony and
Cindy
Comment from Brown, Maryetta
Comment from Tedesco, Terry
Comment from Berridge, Nigel Paul
Comment from Chinofsky, Laura
Comment from Bozgacki, Paul and Jackie
Comment from Herwig, Gary
Comment from McCleary, Harriet
Comment from Gannon, Michael
Comment from CORTE, ALLEN
Comment from Bajaj, Ashok and Kiran
Comment from Donnell, Bruce
Comment from Lyons kalmenson, Karen
Comment from Devin, Helene
Comment from Perinchief, Jana
Comment from Fusco, Barbara
Comment from Sylvia Tolley
Comment from Julie Alicea
Comment from Kimberly Nickles
Comment from Ethel Hinchy
Comment from Joseph Capuano
Comment from John Carpenter
Comment from Patricia Hunt
Comment from Jillian Fiedor
Comment from Beth Kinkade

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19660
NOAA-NMFS-2020-0031-DRAFT-19661
NOAA-NMFS-2020-0031-DRAFT-19662
NOAA-NMFS-2020-0031-DRAFT-19663
NOAA-NMFS-2020-0031-DRAFT-19664
NOAA-NMFS-2020-0031-DRAFT-19665
NOAA-NMFS-2020-0031-DRAFT-19666
NOAA-NMFS-2020-0031-DRAFT-19667
NOAA-NMFS-2020-0031-DRAFT-19668
NOAA-NMFS-2020-0031-DRAFT-19669
NOAA-NMFS-2020-0031-DRAFT-19670
NOAA-NMFS-2020-0031-DRAFT-19671
NOAA-NMFS-2020-0031-DRAFT-19672
NOAA-NMFS-2020-0031-DRAFT-19673
NOAA-NMFS-2020-0031-DRAFT-19674
NOAA-NMFS-2020-0031-DRAFT-19675
NOAA-NMFS-2020-0031-DRAFT-19676
NOAA-NMFS-2020-0031-DRAFT-19677
NOAA-NMFS-2020-0031-DRAFT-19678
NOAA-NMFS-2020-0031-DRAFT-19679
NOAA-NMFS-2020-0031-DRAFT-19680
NOAA-NMFS-2020-0031-DRAFT-19681
NOAA-NMFS-2020-0031-DRAFT-19682
NOAA-NMFS-2020-0031-DRAFT-19683
NOAA-NMFS-2020-0031-DRAFT-19684
NOAA-NMFS-2020-0031-DRAFT-19685
NOAA-NMFS-2020-0031-DRAFT-19686
NOAA-NMFS-2020-0031-DRAFT-19687
NOAA-NMFS-2020-0031-DRAFT-19688
NOAA-NMFS-2020-0031-DRAFT-19689
NOAA-NMFS-2020-0031-DRAFT-19690
NOAA-NMFS-2020-0031-DRAFT-19691
NOAA-NMFS-2020-0031-DRAFT-19692
NOAA-NMFS-2020-0031-DRAFT-19693
NOAA-NMFS-2020-0031-DRAFT-19694
NOAA-NMFS-2020-0031-DRAFT-19695
NOAA-NMFS-2020-0031-DRAFT-19696
NOAA-NMFS-2020-0031-DRAFT-19697
NOAA-NMFS-2020-0031-DRAFT-19698
NOAA-NMFS-2020-0031-DRAFT-19699
NOAA-NMFS-2020-0031-DRAFT-19700

Comment from Robin Kory
Comment from Bruce Hallett
Comment from Kevin Wiker
Comment from Richard Anderson
Comment from Bennie Scott
Comment from Barry Mowday
Comment from joyce cotter
Comment from sandra garcia
Comment from Jennifer Planeta
Comment from Leonard Way
Comment from John Sonin
Comment from Anne Kelly
Comment from Michael Anderson
Comment from Vincent Geiger
Comment from Lance Polya
Comment from Dale Janssen
Comment from Angela Hayes
Comment from Jackie Cole
Comment from Aimee Miller
Comment from Janet Witzeman
Comment from Bill Holt
Comment from Debi Holt
Comment from Jan ebersole
Comment from Delaine Spilsbury
Comment from Stephanie Lovell
Comment from Susan Stoll
Comment from Raffaella Selvaggio
Comment from Howard Lepzelter
Comment from Suzanne Barns
Comment from Valerie Lloyd
Comment from Rita Ceresini
Comment from Paul Bird
Comment from Barry Cutler
Comment from Carrie Campbell
Comment from Maria Dabrowski
Comment from Kathy Kelly
Comment from Christina Babst
Comment from Jane lanzoni
Comment from Nikki Martin
Comment from Emily Pitner
Comment from Chuck Jesse

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02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14578
NOAA-NMFS-2020-0031-DRAFT-14579
NOAA-NMFS-2020-0031-DRAFT-14580
NOAA-NMFS-2020-0031-DRAFT-14581
NOAA-NMFS-2020-0031-DRAFT-14582
NOAA-NMFS-2020-0031-DRAFT-14583
NOAA-NMFS-2020-0031-DRAFT-14584
NOAA-NMFS-2020-0031-DRAFT-14585
NOAA-NMFS-2020-0031-DRAFT-14586
NOAA-NMFS-2020-0031-DRAFT-14587
NOAA-NMFS-2020-0031-DRAFT-14588
NOAA-NMFS-2020-0031-DRAFT-14589
NOAA-NMFS-2020-0031-DRAFT-14590
NOAA-NMFS-2020-0031-DRAFT-14591
NOAA-NMFS-2020-0031-DRAFT-14592
NOAA-NMFS-2020-0031-DRAFT-14593
NOAA-NMFS-2020-0031-DRAFT-14594
NOAA-NMFS-2020-0031-DRAFT-14595
NOAA-NMFS-2020-0031-DRAFT-14596
NOAA-NMFS-2020-0031-DRAFT-14597
NOAA-NMFS-2020-0031-DRAFT-14598
NOAA-NMFS-2020-0031-DRAFT-14599
NOAA-NMFS-2020-0031-DRAFT-14600
NOAA-NMFS-2020-0031-DRAFT-14601
NOAA-NMFS-2020-0031-DRAFT-14602
NOAA-NMFS-2020-0031-DRAFT-14603
NOAA-NMFS-2020-0031-DRAFT-14604
NOAA-NMFS-2020-0031-DRAFT-14605
NOAA-NMFS-2020-0031-DRAFT-14606
NOAA-NMFS-2020-0031-DRAFT-14607
NOAA-NMFS-2020-0031-DRAFT-14608
NOAA-NMFS-2020-0031-DRAFT-14609
NOAA-NMFS-2020-0031-DRAFT-14610
NOAA-NMFS-2020-0031-DRAFT-14611
NOAA-NMFS-2020-0031-DRAFT-14612
NOAA-NMFS-2020-0031-DRAFT-14613
NOAA-NMFS-2020-0031-DRAFT-14614
NOAA-NMFS-2020-0031-DRAFT-14615
NOAA-NMFS-2020-0031-DRAFT-14616
NOAA-NMFS-2020-0031-DRAFT-14618
NOAA-NMFS-2020-0031-DRAFT-14619

Comment from Claire dean
Comment from Carla Porter
Comment from Sarika Arora
Comment from Shannon Geis
Comment from Karen Waltman
Comment from VANDA JAGGARD
Comment from Brenda Spinella
Comment from Melody Ludwig
Comment from Larry Oconner
Comment from Beverly Spohr
Comment from Jill Waldon
Comment from Jill Waldon
Comment from M Coulter
Comment from sonia velez
Comment from Casey Proctor
Comment from Pam Parisi
Comment from Anne Kuo
Comment from Anne Opuda
Comment from Francoise Desoutter
Comment from kevin O'Halloran
Comment from Michelle Lindo
Comment from Isabela Mihajic
Comment from Brad Nahill
Comment from Jeremy Benjamin
Comment from Leslee Duncan
Comment from Geri Marshall
Comment from Deb faroe
Comment from Joseph taylor
Comment from Jessica LaSalla
Comment from Geier, Eric
Comment from McMahon, Annie
Comment from Sauner, Diane
Comment from Whillock, Laurel
Comment from Edmondson, Dominique
Comment from Milano, Joseph and Mary
Comment from Kincer, M
Comment from Eskew, Jerry
Comment from Hunter, Shannon
Comment from Jacobs, Kathy
Comment from O'Dell, Sean
Comment from Townsend, Sarah

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19701
NOAA-NMFS-2020-0031-DRAFT-19702
NOAA-NMFS-2020-0031-DRAFT-19703
NOAA-NMFS-2020-0031-DRAFT-19704
NOAA-NMFS-2020-0031-DRAFT-19705
NOAA-NMFS-2020-0031-DRAFT-19706
NOAA-NMFS-2020-0031-DRAFT-19707
NOAA-NMFS-2020-0031-DRAFT-19708
NOAA-NMFS-2020-0031-DRAFT-19709
NOAA-NMFS-2020-0031-DRAFT-19710
NOAA-NMFS-2020-0031-DRAFT-19711
NOAA-NMFS-2020-0031-DRAFT-19712
NOAA-NMFS-2020-0031-DRAFT-19713
NOAA-NMFS-2020-0031-DRAFT-19714
NOAA-NMFS-2020-0031-DRAFT-19715
NOAA-NMFS-2020-0031-DRAFT-19716
NOAA-NMFS-2020-0031-DRAFT-19717
NOAA-NMFS-2020-0031-DRAFT-19718
NOAA-NMFS-2020-0031-DRAFT-19719
NOAA-NMFS-2020-0031-DRAFT-19720
NOAA-NMFS-2020-0031-DRAFT-19721
NOAA-NMFS-2020-0031-DRAFT-19722
NOAA-NMFS-2020-0031-DRAFT-19723
NOAA-NMFS-2020-0031-DRAFT-19724
NOAA-NMFS-2020-0031-DRAFT-19725
NOAA-NMFS-2020-0031-DRAFT-19726
NOAA-NMFS-2020-0031-DRAFT-19727
NOAA-NMFS-2020-0031-DRAFT-19728
NOAA-NMFS-2020-0031-DRAFT-19729
NOAA-NMFS-2020-0031-DRAFT-19730
NOAA-NMFS-2020-0031-DRAFT-19731
NOAA-NMFS-2020-0031-DRAFT-19732
NOAA-NMFS-2020-0031-DRAFT-19733
NOAA-NMFS-2020-0031-DRAFT-19734
NOAA-NMFS-2020-0031-DRAFT-19735
NOAA-NMFS-2020-0031-DRAFT-19736
NOAA-NMFS-2020-0031-DRAFT-19737
NOAA-NMFS-2020-0031-DRAFT-19738
NOAA-NMFS-2020-0031-DRAFT-19739
NOAA-NMFS-2020-0031-DRAFT-19740
NOAA-NMFS-2020-0031-DRAFT-19741

Comment from Mimi Abers
Comment from Robin Eddington
Comment from Gabriel Lautaro
Comment from Linda Stabile
Comment from Carol Ramo
Comment from cathy crum
Comment from John Essman
Comment from Mark Fields
Comment from Janice Fitcha
Comment from Lynne Weiske
Comment from Crystal wolf
Comment from Jan Clae
Comment from Detlef Joerss
Comment from Melissa Dorval
Comment from Lisa Jefko
Comment from cathy crum
Comment from Peter Burval
Comment from Linda Webb
Comment from Janet Harwell
Comment from Hector Bertin
Comment from Rochelle La Frinere
Comment from Wendy Bowman
Comment from raymond Wager
Comment from Anne Aylor
Comment from George Quasha
Comment from Barbara Stannard
Comment from Patty Hatcher
Comment from Juanita Hull
Comment from Suzanne Marienau
Comment from Edward Scott
Comment from Jeanne Stulb
Comment from EILEEN MASSEY
Comment from Sandra Swisher
Comment from Maura Schaeffer
Comment from Julie Shuman
Comment from HENRY MILLER
Comment from Steve Kline
Comment from Janette Teevan
Comment from marc silverman
Comment from Florencia Morales
Comment from Walter Bock

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02/17/2021
02/17/2021
02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14620
NOAA-NMFS-2020-0031-DRAFT-14621
NOAA-NMFS-2020-0031-DRAFT-14622
NOAA-NMFS-2020-0031-DRAFT-14623
NOAA-NMFS-2020-0031-DRAFT-14624
NOAA-NMFS-2020-0031-DRAFT-14625
NOAA-NMFS-2020-0031-DRAFT-14626
NOAA-NMFS-2020-0031-DRAFT-14627
NOAA-NMFS-2020-0031-DRAFT-14628
NOAA-NMFS-2020-0031-DRAFT-14629
NOAA-NMFS-2020-0031-DRAFT-14630
NOAA-NMFS-2020-0031-DRAFT-14631
NOAA-NMFS-2020-0031-DRAFT-14632
NOAA-NMFS-2020-0031-DRAFT-14633
NOAA-NMFS-2020-0031-DRAFT-14634
NOAA-NMFS-2020-0031-DRAFT-14635
NOAA-NMFS-2020-0031-DRAFT-14636
NOAA-NMFS-2020-0031-DRAFT-14637
NOAA-NMFS-2020-0031-DRAFT-14638
NOAA-NMFS-2020-0031-DRAFT-14639
NOAA-NMFS-2020-0031-DRAFT-14640
NOAA-NMFS-2020-0031-DRAFT-14641
NOAA-NMFS-2020-0031-DRAFT-14642
NOAA-NMFS-2020-0031-DRAFT-14643
NOAA-NMFS-2020-0031-DRAFT-14644
NOAA-NMFS-2020-0031-DRAFT-14645
NOAA-NMFS-2020-0031-DRAFT-14646
NOAA-NMFS-2020-0031-DRAFT-14647
NOAA-NMFS-2020-0031-DRAFT-14648
NOAA-NMFS-2020-0031-DRAFT-14649
NOAA-NMFS-2020-0031-DRAFT-14650
NOAA-NMFS-2020-0031-DRAFT-14651
NOAA-NMFS-2020-0031-DRAFT-14652
NOAA-NMFS-2020-0031-DRAFT-14653
NOAA-NMFS-2020-0031-DRAFT-14654
NOAA-NMFS-2020-0031-DRAFT-14655
NOAA-NMFS-2020-0031-DRAFT-14656
NOAA-NMFS-2020-0031-DRAFT-14657
NOAA-NMFS-2020-0031-DRAFT-14658
NOAA-NMFS-2020-0031-DRAFT-14659
NOAA-NMFS-2020-0031-DRAFT-14660

Comment from Stephanie Lovell
Comment from Smith, Kathleen
Comment from Campbell, Carrie
Comment from Osterman, Tamara
Comment from Baez, Nellie
Comment from Kommerstad Reiche,
Carol
Comment from Hayman, Lauren Elise
Comment from Comstock, Christian
Comment from Ginsburg, Marvin
Comment from Spraga, Laurie
Comment from Vickers, Barbara
Comment from Sutton, Dawn
Comment from R, Chris
Comment from Faulkner, Martha
Comment from Shields, Jamie
Comment from Taylor, Alexia
Comment from Graff, Steve
Comment from Goldstein, Susan
Comment from Frantz Crafton, Candy
Comment from sterner, daniel
Comment from Porter, Kaye M
Comment from Chappell, Christina
Comment from krause, doug
Comment from Wood, Beth
Comment from A, Colette
Comment from Lucas, Kathy
Comment from Askins, Susanna
Comment from Heverly MD FACEP,
Debra
Comment from Simmons, Julia
Comment from Guarnieri, Anthony and
Christine
Comment from naive, jurissah
Comment from Marotta, Tracy
Comment from Atkins, Todd
Comment from Schuman, Laura
Comment from Haynes, Andrew
Comment from Willroth, Alana
Comment from Atlas, Debra
Comment from Hendon, Marie
Comment from Clark, Maxine
Comment from capra, michele
Comment from Steve Mineau

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19742
NOAA-NMFS-2020-0031-DRAFT-19743
NOAA-NMFS-2020-0031-DRAFT-19744
NOAA-NMFS-2020-0031-DRAFT-19745
NOAA-NMFS-2020-0031-DRAFT-19746
NOAA-NMFS-2020-0031-DRAFT-19747
NOAA-NMFS-2020-0031-DRAFT-19748
NOAA-NMFS-2020-0031-DRAFT-19749
NOAA-NMFS-2020-0031-DRAFT-19750
NOAA-NMFS-2020-0031-DRAFT-19751
NOAA-NMFS-2020-0031-DRAFT-19752
NOAA-NMFS-2020-0031-DRAFT-19753
NOAA-NMFS-2020-0031-DRAFT-19754
NOAA-NMFS-2020-0031-DRAFT-19755
NOAA-NMFS-2020-0031-DRAFT-19756
NOAA-NMFS-2020-0031-DRAFT-19757
NOAA-NMFS-2020-0031-DRAFT-19758
NOAA-NMFS-2020-0031-DRAFT-19759
NOAA-NMFS-2020-0031-DRAFT-19760
NOAA-NMFS-2020-0031-DRAFT-19761
NOAA-NMFS-2020-0031-DRAFT-19762
NOAA-NMFS-2020-0031-DRAFT-19763
NOAA-NMFS-2020-0031-DRAFT-19764
NOAA-NMFS-2020-0031-DRAFT-19765
NOAA-NMFS-2020-0031-DRAFT-19766
NOAA-NMFS-2020-0031-DRAFT-19767
NOAA-NMFS-2020-0031-DRAFT-19768
NOAA-NMFS-2020-0031-DRAFT-19769
NOAA-NMFS-2020-0031-DRAFT-19770
NOAA-NMFS-2020-0031-DRAFT-19771
NOAA-NMFS-2020-0031-DRAFT-19772
NOAA-NMFS-2020-0031-DRAFT-19773
NOAA-NMFS-2020-0031-DRAFT-19774
NOAA-NMFS-2020-0031-DRAFT-19775
NOAA-NMFS-2020-0031-DRAFT-19776
NOAA-NMFS-2020-0031-DRAFT-19777
NOAA-NMFS-2020-0031-DRAFT-19778
NOAA-NMFS-2020-0031-DRAFT-19779
NOAA-NMFS-2020-0031-DRAFT-19780
NOAA-NMFS-2020-0031-DRAFT-19781
NOAA-NMFS-2020-0031-DRAFT-19782

Comment from Carol Sears
Comment from Jeffery Garcia
Comment from Rev. Cline
Comment from Elena Fowler
Comment from Pamela Mcdonald
Comment from Sam Butler
Comment from Dana Greathouse
Comment from Barbara Lintz
Comment from Soretta Rodack
Comment from Mara Sansevero
Comment from Margaret Griffin
Comment from Kathleen Cridge
Comment from Steven Cool
Comment from Brenda Earl
Comment from Leonard Epstein
Comment from Lory Ono
Comment from Pinky Peterson
Comment from Fawn King
Comment from Melissa Barnard
Comment from Donalyn Gross
Comment from David Edwards
Comment from Maria Botello
Comment from Jeffrey Fernandez
Comment from Steve Loe
Comment from Katherine Hinson
Comment from Samuel Case
Comment from Mark Volans
Comment from Tony Meinerding
Comment from diane cote
Comment from Michael Martin
Comment from Maxine Goodyear
Comment from Dennis Heinzig
Comment from James Lin
Comment from Georgeanne Matranga
Comment from Frann Spiess
Comment from Carol Craig
Comment from T C
Comment from Barbara Gregory
Comment from Isabelle Richard
Comment from Sharen Oxman
Comment from Tammera Hinshaw

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02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14661
NOAA-NMFS-2020-0031-DRAFT-14662
NOAA-NMFS-2020-0031-DRAFT-14663
NOAA-NMFS-2020-0031-DRAFT-14664
NOAA-NMFS-2020-0031-DRAFT-14665
NOAA-NMFS-2020-0031-DRAFT-14666
NOAA-NMFS-2020-0031-DRAFT-14667
NOAA-NMFS-2020-0031-DRAFT-14668
NOAA-NMFS-2020-0031-DRAFT-14669
NOAA-NMFS-2020-0031-DRAFT-14670
NOAA-NMFS-2020-0031-DRAFT-14671
NOAA-NMFS-2020-0031-DRAFT-14672
NOAA-NMFS-2020-0031-DRAFT-14673
NOAA-NMFS-2020-0031-DRAFT-14674
NOAA-NMFS-2020-0031-DRAFT-14676
NOAA-NMFS-2020-0031-DRAFT-14677
NOAA-NMFS-2020-0031-DRAFT-14678
NOAA-NMFS-2020-0031-DRAFT-14679
NOAA-NMFS-2020-0031-DRAFT-14680
NOAA-NMFS-2020-0031-DRAFT-14681
NOAA-NMFS-2020-0031-DRAFT-14682
NOAA-NMFS-2020-0031-DRAFT-14683
NOAA-NMFS-2020-0031-DRAFT-14684
NOAA-NMFS-2020-0031-DRAFT-14685
NOAA-NMFS-2020-0031-DRAFT-14686
NOAA-NMFS-2020-0031-DRAFT-14687
NOAA-NMFS-2020-0031-DRAFT-14688
NOAA-NMFS-2020-0031-DRAFT-14689
NOAA-NMFS-2020-0031-DRAFT-14690
NOAA-NMFS-2020-0031-DRAFT-14691
NOAA-NMFS-2020-0031-DRAFT-14692
NOAA-NMFS-2020-0031-DRAFT-14693
NOAA-NMFS-2020-0031-DRAFT-14694
NOAA-NMFS-2020-0031-DRAFT-14695
NOAA-NMFS-2020-0031-DRAFT-14696
NOAA-NMFS-2020-0031-DRAFT-14697
NOAA-NMFS-2020-0031-DRAFT-14698
NOAA-NMFS-2020-0031-DRAFT-14699
NOAA-NMFS-2020-0031-DRAFT-14700
NOAA-NMFS-2020-0031-DRAFT-14701
NOAA-NMFS-2020-0031-DRAFT-14702

Comment from Stein, Zbigniew
Comment from Campbell, Gary
Comment from Esslinger, Angela
Comment from Moreno, Di
Comment from Taylor, Polly
Comment from Arfin, Danielle
Comment from Clarke, Leta
Comment from Moog, Lori
Comment from Johnson, Lorraine
Comment from Michaels, Melissa
Comment from Yancey, Robert
Comment from Thompson, Reva
Comment from Arnold, Melissa
Comment from Berinstein, Paula
Comment from rader, bradley
Comment from Janet Lindsey-Hays
Comment from Yamamoto, Lillian
Comment from Dinehart, Sue
Comment from Kautz, Sue
Comment from de arteaga, jose
Comment from Lewis, Barbara
Comment from Sheibley, Kathryn
Comment from Schmitt DeBonis,
Michelle
Comment from davis, anne
Comment from davis, anne
Comment from Braunsberger, Karin
Comment from Cynthia Boyd
Comment from Lori Baske
Comment from Bleecker, Sam
Comment from Neumann, Ann
Comment from Yazdi, Teri
Comment from Shankel, Georgia
Comment from Ulrich, Albert
Comment from Kohn, Laura
Comment from Blevins, Patti
Comment from Wolf, Karen
Comment from Kantz, Karen
Comment from Graham, Lisa
Comment from Miller, Victoria
Comment from Santos, Jennifer
Comment from Barros, Suzanne

02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19783
NOAA-NMFS-2020-0031-DRAFT-19784
NOAA-NMFS-2020-0031-DRAFT-19785
NOAA-NMFS-2020-0031-DRAFT-19786
NOAA-NMFS-2020-0031-DRAFT-19787
NOAA-NMFS-2020-0031-DRAFT-19788
NOAA-NMFS-2020-0031-DRAFT-19789
NOAA-NMFS-2020-0031-DRAFT-19790
NOAA-NMFS-2020-0031-DRAFT-19791
NOAA-NMFS-2020-0031-DRAFT-19792
NOAA-NMFS-2020-0031-DRAFT-19793
NOAA-NMFS-2020-0031-DRAFT-19794
NOAA-NMFS-2020-0031-DRAFT-19795
NOAA-NMFS-2020-0031-DRAFT-19796
NOAA-NMFS-2020-0031-DRAFT-19797
NOAA-NMFS-2020-0031-DRAFT-19798
NOAA-NMFS-2020-0031-DRAFT-19799
NOAA-NMFS-2020-0031-DRAFT-19800
NOAA-NMFS-2020-0031-DRAFT-19801
NOAA-NMFS-2020-0031-DRAFT-19802
NOAA-NMFS-2020-0031-DRAFT-19803
NOAA-NMFS-2020-0031-DRAFT-19804
NOAA-NMFS-2020-0031-DRAFT-19805
NOAA-NMFS-2020-0031-DRAFT-19806
NOAA-NMFS-2020-0031-DRAFT-19807
NOAA-NMFS-2020-0031-DRAFT-19808
NOAA-NMFS-2020-0031-DRAFT-19809
NOAA-NMFS-2020-0031-DRAFT-19810
NOAA-NMFS-2020-0031-DRAFT-19811
NOAA-NMFS-2020-0031-DRAFT-19812
NOAA-NMFS-2020-0031-DRAFT-19813
NOAA-NMFS-2020-0031-DRAFT-19814
NOAA-NMFS-2020-0031-DRAFT-19815
NOAA-NMFS-2020-0031-DRAFT-19816
NOAA-NMFS-2020-0031-DRAFT-19817
NOAA-NMFS-2020-0031-DRAFT-19818
NOAA-NMFS-2020-0031-DRAFT-19819
NOAA-NMFS-2020-0031-DRAFT-19820
NOAA-NMFS-2020-0031-DRAFT-19821
NOAA-NMFS-2020-0031-DRAFT-19822
NOAA-NMFS-2020-0031-DRAFT-19823

Comment from Ira Raab
Comment from Michael DeLoye
Comment from Victoria Randall
Comment from George Ruiz
Comment from simona podskubka
Comment from Nico McAfee
Comment from kate nyne
Comment from Sija Sur
Comment from Susan Lefler
Comment from Megan Sommers
Comment from A M Lindemann
Comment from Michele Blackwell
Comment from dANIEL FIGUEROA
Comment from David Burtis
Comment from Christine Dougherty
Comment from Marie Weis
Comment from dANIEL FIGUEROA
Comment from Michele Vaillancourt
Comment from Darryl San Souci
Comment from Michael Clarke
Comment from Tonya Sexton
Comment from Kathleen Parisi
Comment from Vincent Messineo
Comment from Bonnie Zotos
Comment from Jo Kirsch
Comment from Beth Palumbo
Comment from Gloria Fisher
Comment from Betsey Porter
Comment from Holly Ceriale
Comment from Jeff Lutrell
Comment from Bruce Hlodnicki
Comment from Merle Suhayda
Comment from Deborah Wilk
Comment from Thomas Warner
Comment from Sabine Persenaire
Comment from Pippa Pearthree
Comment from Rick Priebe
Comment from Mary Dickson
Comment from Robert Gibb
Comment from Daniel Figueroa
Comment from Rondane Hollar

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02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14703
NOAA-NMFS-2020-0031-DRAFT-14704
NOAA-NMFS-2020-0031-DRAFT-14705
NOAA-NMFS-2020-0031-DRAFT-14706
NOAA-NMFS-2020-0031-DRAFT-14707
NOAA-NMFS-2020-0031-DRAFT-14708
NOAA-NMFS-2020-0031-DRAFT-14709
NOAA-NMFS-2020-0031-DRAFT-14710
NOAA-NMFS-2020-0031-DRAFT-14711
NOAA-NMFS-2020-0031-DRAFT-14712
NOAA-NMFS-2020-0031-DRAFT-14713
NOAA-NMFS-2020-0031-DRAFT-14714
NOAA-NMFS-2020-0031-DRAFT-14715
NOAA-NMFS-2020-0031-DRAFT-14716
NOAA-NMFS-2020-0031-DRAFT-14717
NOAA-NMFS-2020-0031-DRAFT-14718
NOAA-NMFS-2020-0031-DRAFT-14719
NOAA-NMFS-2020-0031-DRAFT-14720
NOAA-NMFS-2020-0031-DRAFT-14721
NOAA-NMFS-2020-0031-DRAFT-14722
NOAA-NMFS-2020-0031-DRAFT-14723
NOAA-NMFS-2020-0031-DRAFT-14724
NOAA-NMFS-2020-0031-DRAFT-14725
NOAA-NMFS-2020-0031-DRAFT-14726
NOAA-NMFS-2020-0031-DRAFT-14727
NOAA-NMFS-2020-0031-DRAFT-14728
NOAA-NMFS-2020-0031-DRAFT-14729
NOAA-NMFS-2020-0031-DRAFT-14730
NOAA-NMFS-2020-0031-DRAFT-14731
NOAA-NMFS-2020-0031-DRAFT-14732
NOAA-NMFS-2020-0031-DRAFT-14733
NOAA-NMFS-2020-0031-DRAFT-14734
NOAA-NMFS-2020-0031-DRAFT-14735
NOAA-NMFS-2020-0031-DRAFT-14736
NOAA-NMFS-2020-0031-DRAFT-14737
NOAA-NMFS-2020-0031-DRAFT-14738
NOAA-NMFS-2020-0031-DRAFT-14739
NOAA-NMFS-2020-0031-DRAFT-14740
NOAA-NMFS-2020-0031-DRAFT-14741
NOAA-NMFS-2020-0031-DRAFT-14742
NOAA-NMFS-2020-0031-DRAFT-14743

Comment from spurr, karen
Comment from Malaroche, Christine
Comment from Maher, Mary
Comment from Walter Manley
Comment from Mcwhorter, Kathleen
Comment from Smith, Lee
Comment from Morrison, Barb
Comment from Kay, Joel
Comment from Vasquez, Heather
Comment from Levine, Marilyn
Comment from Wilson, Theresa
Comment from Solvang, Mark
Comment from Embler, Kyle
Comment from Harlib, Amy
Comment from Kelly Burgess
Comment from Phillips, Suyin
Comment from Troccia, Michael
Comment from Wieland, Chuck
Comment from Bush, Sam
Comment from Bradley, Rhonda
Comment from Langelan, M
Comment from Kraynak, Ed
Comment from Jackson, James
Comment from Elder, Elizabeth
Comment from Diller, Susan
Comment from McDowell, Susan
Comment from Bowen, Janelle
Comment from Davenport, Dave
Comment from Karen Shain
Comment from Rhazi, Carolyn
Comment from Miville, Jennifer
Comment from Black, Morrigan
Comment from Spratley, Jodi
Comment from Wilson, Merlin
Comment from Spratley, Richard
Comment from Kelly, Mike
Comment from Wells, Lasha
Comment from Lynch, Linda
Comment from Gibney, Jody
Comment from Phillips, Jodi
Comment from Harlib, Amy

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19824
NOAA-NMFS-2020-0031-DRAFT-19825
NOAA-NMFS-2020-0031-DRAFT-19826
NOAA-NMFS-2020-0031-DRAFT-19827
NOAA-NMFS-2020-0031-DRAFT-19828
NOAA-NMFS-2020-0031-DRAFT-19829
NOAA-NMFS-2020-0031-DRAFT-19830
NOAA-NMFS-2020-0031-DRAFT-19831
NOAA-NMFS-2020-0031-DRAFT-19832
NOAA-NMFS-2020-0031-DRAFT-19833
NOAA-NMFS-2020-0031-DRAFT-19834
NOAA-NMFS-2020-0031-DRAFT-19835
NOAA-NMFS-2020-0031-DRAFT-19836
NOAA-NMFS-2020-0031-DRAFT-19837
NOAA-NMFS-2020-0031-DRAFT-19838
NOAA-NMFS-2020-0031-DRAFT-19839
NOAA-NMFS-2020-0031-DRAFT-19840
NOAA-NMFS-2020-0031-DRAFT-19841
NOAA-NMFS-2020-0031-DRAFT-19842
NOAA-NMFS-2020-0031-DRAFT-19843
NOAA-NMFS-2020-0031-DRAFT-19844
NOAA-NMFS-2020-0031-DRAFT-19845
NOAA-NMFS-2020-0031-DRAFT-19846
NOAA-NMFS-2020-0031-DRAFT-19847
NOAA-NMFS-2020-0031-DRAFT-19848
NOAA-NMFS-2020-0031-DRAFT-19849
NOAA-NMFS-2020-0031-DRAFT-19850
NOAA-NMFS-2020-0031-DRAFT-19851
NOAA-NMFS-2020-0031-DRAFT-19852
NOAA-NMFS-2020-0031-DRAFT-19853
NOAA-NMFS-2020-0031-DRAFT-19854
NOAA-NMFS-2020-0031-DRAFT-19855
NOAA-NMFS-2020-0031-DRAFT-19856
NOAA-NMFS-2020-0031-DRAFT-19857
NOAA-NMFS-2020-0031-DRAFT-19858
NOAA-NMFS-2020-0031-DRAFT-19859
NOAA-NMFS-2020-0031-DRAFT-19860
NOAA-NMFS-2020-0031-DRAFT-19861
NOAA-NMFS-2020-0031-DRAFT-19862
NOAA-NMFS-2020-0031-DRAFT-19863
NOAA-NMFS-2020-0031-DRAFT-19864

Comment from Sharon Longyear
Comment from Richard Guier
Comment from George Weaver
Comment from robin nadel
Comment from Carol Hewitt
Comment from Linda Andrade
Comment from Ashley Farreny
Comment from Mark Hollinrake
Comment from Michelle Cobert
Comment from Rajat Kapoor
Comment from george patterson
Comment from Karen Berger
Comment from Janice Dutka
Comment from Michael Weaver
Comment from Hurd Hess
Comment from Theresa Morris
Comment from Helena Zofchak Zofchak
Comment from Beti Trauth
Comment from Beti Trauth
Comment from Kenneth Krehn
Comment from Annabelle Herbert
Comment from Lynne Rustad
Comment from Louise Krus
Comment from Karen Lyons kalmenson
Comment from Lisa Jablow
Comment from Gloria Carlton
Comment from Dara Rider
Comment from Jason Chinn
Comment from Dorothy Brooks
Comment from Jani Sena
Comment from Kathleen Casson
Comment from Scott Girard
Comment from irene kubosh
Comment from Angel Hissley
Comment from John Rodriguez
Comment from Jill Robison
Comment from Virginia Breza
Comment from Mary Joyce
Comment from Brenda Boudreaux
Comment from Benjamin Martin
Comment from Francine Cohen

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02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14744
NOAA-NMFS-2020-0031-DRAFT-14745
NOAA-NMFS-2020-0031-DRAFT-14746
NOAA-NMFS-2020-0031-DRAFT-14747
NOAA-NMFS-2020-0031-DRAFT-14748
NOAA-NMFS-2020-0031-DRAFT-14749
NOAA-NMFS-2020-0031-DRAFT-14750
NOAA-NMFS-2020-0031-DRAFT-14751
NOAA-NMFS-2020-0031-DRAFT-14752
NOAA-NMFS-2020-0031-DRAFT-14753
NOAA-NMFS-2020-0031-DRAFT-14754
NOAA-NMFS-2020-0031-DRAFT-14756
NOAA-NMFS-2020-0031-DRAFT-14757
NOAA-NMFS-2020-0031-DRAFT-14758
NOAA-NMFS-2020-0031-DRAFT-14759
NOAA-NMFS-2020-0031-DRAFT-14760
NOAA-NMFS-2020-0031-DRAFT-14761
NOAA-NMFS-2020-0031-DRAFT-14762
NOAA-NMFS-2020-0031-DRAFT-14763
NOAA-NMFS-2020-0031-DRAFT-14764
NOAA-NMFS-2020-0031-DRAFT-14765
NOAA-NMFS-2020-0031-DRAFT-14766
NOAA-NMFS-2020-0031-DRAFT-14767
NOAA-NMFS-2020-0031-DRAFT-14768
NOAA-NMFS-2020-0031-DRAFT-14769
NOAA-NMFS-2020-0031-DRAFT-14770
NOAA-NMFS-2020-0031-DRAFT-14771
NOAA-NMFS-2020-0031-DRAFT-14772
NOAA-NMFS-2020-0031-DRAFT-14773
NOAA-NMFS-2020-0031-DRAFT-14774
NOAA-NMFS-2020-0031-DRAFT-14775
NOAA-NMFS-2020-0031-DRAFT-14776
NOAA-NMFS-2020-0031-DRAFT-14777
NOAA-NMFS-2020-0031-DRAFT-14778
NOAA-NMFS-2020-0031-DRAFT-14779
NOAA-NMFS-2020-0031-DRAFT-14780
NOAA-NMFS-2020-0031-DRAFT-14781
NOAA-NMFS-2020-0031-DRAFT-14782
NOAA-NMFS-2020-0031-DRAFT-14783
NOAA-NMFS-2020-0031-DRAFT-14784
NOAA-NMFS-2020-0031-DRAFT-14785

Comment from Krikorian, Lynn
Comment from Hempfling, Grace
Comment from McLaren, Kim
Comment from Raible, Annette
Comment from Kenakin, Deborah
Comment from Rahbari, Carol
Comment from Brown, Ronald and
Deidre
Comment from Terletzky, Doreen
Comment from Gonzales, Tara
Comment from Nowak, Diane
Comment from Debra Ashton
Comment from Brown, Robert
Comment from Quimby, Mary
Comment from Boston, Caroline
Comment from Altman, Jeri
Comment from Royer, Elana
Comment from Gaman, Steven
Comment from Cowan, Jan
Comment from Kahigian, Peter
Comment from Dorchin, Susan
Comment from Martin, Karla
Comment from Elayne McKenna
Comment from Kozak, Brandon
Comment from Wood, Sharon
Comment from Fierro, Tallia
Comment from Sims, Catherine
Comment from Conrad, Valerie
Comment from Cindy Carter
Comment from Kawananakoa, Haunani
V
Comment from McLean, Diane
Comment from Lahaie, Ann Marie
Comment from Grimmer, Katie
Comment from Lyons, Marcia
Comment from Sharon Towsley
Comment from Bohannan, Theresa
Comment from Meaux, Andre
Comment from Ross, Katherine
Comment from Blumenthal, Robert
Comment from Walsh, Susan
Comment from PERRON, Patricia
Comment from Martenson, Julie

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19865
NOAA-NMFS-2020-0031-DRAFT-19866
NOAA-NMFS-2020-0031-DRAFT-19867
NOAA-NMFS-2020-0031-DRAFT-19868
NOAA-NMFS-2020-0031-DRAFT-19869
NOAA-NMFS-2020-0031-DRAFT-19870
NOAA-NMFS-2020-0031-DRAFT-19871
NOAA-NMFS-2020-0031-DRAFT-19872
NOAA-NMFS-2020-0031-DRAFT-19873
NOAA-NMFS-2020-0031-DRAFT-19874
NOAA-NMFS-2020-0031-DRAFT-19875
NOAA-NMFS-2020-0031-DRAFT-19876
NOAA-NMFS-2020-0031-DRAFT-19877
NOAA-NMFS-2020-0031-DRAFT-19878
NOAA-NMFS-2020-0031-DRAFT-19879
NOAA-NMFS-2020-0031-DRAFT-19880
NOAA-NMFS-2020-0031-DRAFT-19881
NOAA-NMFS-2020-0031-DRAFT-19882
NOAA-NMFS-2020-0031-DRAFT-19883
NOAA-NMFS-2020-0031-DRAFT-19884
NOAA-NMFS-2020-0031-DRAFT-19885
NOAA-NMFS-2020-0031-DRAFT-19886
NOAA-NMFS-2020-0031-DRAFT-19887
NOAA-NMFS-2020-0031-DRAFT-19888
NOAA-NMFS-2020-0031-DRAFT-19889
NOAA-NMFS-2020-0031-DRAFT-19890
NOAA-NMFS-2020-0031-DRAFT-19891
NOAA-NMFS-2020-0031-DRAFT-19892
NOAA-NMFS-2020-0031-DRAFT-19893
NOAA-NMFS-2020-0031-DRAFT-19894
NOAA-NMFS-2020-0031-DRAFT-19895
NOAA-NMFS-2020-0031-DRAFT-19896
NOAA-NMFS-2020-0031-DRAFT-19897
NOAA-NMFS-2020-0031-DRAFT-19898
NOAA-NMFS-2020-0031-DRAFT-19899
NOAA-NMFS-2020-0031-DRAFT-19900
NOAA-NMFS-2020-0031-DRAFT-19901
NOAA-NMFS-2020-0031-DRAFT-19902
NOAA-NMFS-2020-0031-DRAFT-19903
NOAA-NMFS-2020-0031-DRAFT-19904
NOAA-NMFS-2020-0031-DRAFT-19905

Comment from Mina Bish
Comment from j g
Comment from Elena Knox
Comment from John George
Comment from Michele Wise
Comment from Catherine Ricciardo
Comment from Mary Munday
Comment from Todd Priest
Comment from susan kalan
Comment from Benny Holdren
Comment from janet maker
Comment from Briana Purcell
Comment from Mike Peale
Comment from Steve Gross
Comment from Bill Vartnaw
Comment from Sabrina Sarne
Comment from Peggy Jakopak
Comment from Ingrid Frassl
Comment from Bryan Daniel
Comment from Bonnie Oliver
Comment from Adriana Bernstein
Comment from Judith Levinton
Comment from James Cooper
Comment from Nancy McBride
Comment from Darian Mark
Comment from Jill McManus
Comment from Kristin Kline
Comment from Don Pew
Comment from melanie griffith
Comment from Peggy Goldberg
Comment from Dawn Reed
Comment from Daniel Carrillo
Comment from Joyce Coombs
Comment from Thomas Conroy
Comment from Iris Owens
Comment from Brenda Riddle
Comment from Michael Parsons
Comment from Tim Curry
Comment from Alice Neuhauser
Comment from TIMOTHY GEHRKE
Comment from Denise Brown

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02/17/2021
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02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14786
NOAA-NMFS-2020-0031-DRAFT-14787
NOAA-NMFS-2020-0031-DRAFT-14788
NOAA-NMFS-2020-0031-DRAFT-14789
NOAA-NMFS-2020-0031-DRAFT-14790
NOAA-NMFS-2020-0031-DRAFT-14791
NOAA-NMFS-2020-0031-DRAFT-14792
NOAA-NMFS-2020-0031-DRAFT-14793
NOAA-NMFS-2020-0031-DRAFT-14794
NOAA-NMFS-2020-0031-DRAFT-14795
NOAA-NMFS-2020-0031-DRAFT-14796
NOAA-NMFS-2020-0031-DRAFT-14797
NOAA-NMFS-2020-0031-DRAFT-14798
NOAA-NMFS-2020-0031-DRAFT-14799
NOAA-NMFS-2020-0031-DRAFT-14800
NOAA-NMFS-2020-0031-DRAFT-14801
NOAA-NMFS-2020-0031-DRAFT-14802
NOAA-NMFS-2020-0031-DRAFT-14803
NOAA-NMFS-2020-0031-DRAFT-14804
NOAA-NMFS-2020-0031-DRAFT-14805
NOAA-NMFS-2020-0031-DRAFT-14806
NOAA-NMFS-2020-0031-DRAFT-14807
NOAA-NMFS-2020-0031-DRAFT-14808
NOAA-NMFS-2020-0031-DRAFT-14809
NOAA-NMFS-2020-0031-DRAFT-14810
NOAA-NMFS-2020-0031-DRAFT-14811
NOAA-NMFS-2020-0031-DRAFT-14812
NOAA-NMFS-2020-0031-DRAFT-14813
NOAA-NMFS-2020-0031-DRAFT-14814
NOAA-NMFS-2020-0031-DRAFT-14815
NOAA-NMFS-2020-0031-DRAFT-14816
NOAA-NMFS-2020-0031-DRAFT-14817
NOAA-NMFS-2020-0031-DRAFT-14818
NOAA-NMFS-2020-0031-DRAFT-14819
NOAA-NMFS-2020-0031-DRAFT-14820
NOAA-NMFS-2020-0031-DRAFT-14821
NOAA-NMFS-2020-0031-DRAFT-14822
NOAA-NMFS-2020-0031-DRAFT-14823
NOAA-NMFS-2020-0031-DRAFT-14824
NOAA-NMFS-2020-0031-DRAFT-14825
NOAA-NMFS-2020-0031-DRAFT-14826

Comment from Graham Smith
Comment from Richard Peterson
Comment from Whitely, Catherine
Comment from Walsh, Gerald
Comment from Jansen Van Rensburg,
Lena
Comment from Lee, Rex
Comment from Servello, John
Comment from Lensenmayer, Kathleen
Comment from Herschlag, Jane
Comment from Jose Fernandes
Comment from Bronstein, Deborah
Comment from Mckinley, Patti
Comment from Nilssen, Nancy
Comment from Castro, Katherine
Comment from Moog, Thomas
Comment from Kirk, John
Comment from field, pat
Comment from Delagarza, David
Comment from Livingston, Barb
Comment from Ramirez, Enrique
Comment from Vortman, Roger
Comment from LePore, Lodiza
Comment from Dominick, Gail
Comment from dawn sartori
Comment from Frisella, Michele
Comment from Long, Kit
Comment from Mills, Alice
Comment from Fowler, Linda
Comment from Lambert, Kay
Comment from Duffy, Dina
Comment from Lohman, Wendy
Comment from McWhorter, Elaine
Comment from BEAUDET, MELISSA
Comment from Miller, Cindy
Comment from Robinson, Dawn
Comment from Westberg, Juanita
Comment from Larson, Cliff
Comment from Wolkiewicz, Chris
Comment from Allen PhD DVM, Julia N
Comment from lane, john
Comment from Machusic, Karin

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19906
NOAA-NMFS-2020-0031-DRAFT-19907
NOAA-NMFS-2020-0031-DRAFT-19908
NOAA-NMFS-2020-0031-DRAFT-19909
NOAA-NMFS-2020-0031-DRAFT-19910
NOAA-NMFS-2020-0031-DRAFT-19911
NOAA-NMFS-2020-0031-DRAFT-19912
NOAA-NMFS-2020-0031-DRAFT-19913
NOAA-NMFS-2020-0031-DRAFT-19914
NOAA-NMFS-2020-0031-DRAFT-19915
NOAA-NMFS-2020-0031-DRAFT-19916
NOAA-NMFS-2020-0031-DRAFT-19917
NOAA-NMFS-2020-0031-DRAFT-19918
NOAA-NMFS-2020-0031-DRAFT-19919
NOAA-NMFS-2020-0031-DRAFT-19920
NOAA-NMFS-2020-0031-DRAFT-19921
NOAA-NMFS-2020-0031-DRAFT-19922
NOAA-NMFS-2020-0031-DRAFT-19923
NOAA-NMFS-2020-0031-DRAFT-19924
NOAA-NMFS-2020-0031-DRAFT-19925
NOAA-NMFS-2020-0031-DRAFT-19926
NOAA-NMFS-2020-0031-DRAFT-19927
NOAA-NMFS-2020-0031-DRAFT-19928
NOAA-NMFS-2020-0031-DRAFT-19929
NOAA-NMFS-2020-0031-DRAFT-19930
NOAA-NMFS-2020-0031-DRAFT-19931
NOAA-NMFS-2020-0031-DRAFT-19932
NOAA-NMFS-2020-0031-DRAFT-19933
NOAA-NMFS-2020-0031-DRAFT-19934
NOAA-NMFS-2020-0031-DRAFT-19935
NOAA-NMFS-2020-0031-DRAFT-19936
NOAA-NMFS-2020-0031-DRAFT-19937
NOAA-NMFS-2020-0031-DRAFT-19938
NOAA-NMFS-2020-0031-DRAFT-19939
NOAA-NMFS-2020-0031-DRAFT-19940
NOAA-NMFS-2020-0031-DRAFT-19941
NOAA-NMFS-2020-0031-DRAFT-19942
NOAA-NMFS-2020-0031-DRAFT-19943
NOAA-NMFS-2020-0031-DRAFT-19944
NOAA-NMFS-2020-0031-DRAFT-19945
NOAA-NMFS-2020-0031-DRAFT-19946

Comment from Christian Tabone
Comment from Philip Quadrini
Comment from Herman Villamizar
Comment from Connor Hansell
Comment from John Marro
Comment from Gerri Ricciardi
Comment from Holly Koppenhaver
Comment from Glenn Secor
Comment from Marilyn Warren
Comment from Nancy Gathing
Comment from Brandt Mannchen
Comment from Bill Christie
Comment from S G Bower
Comment from ANGELA MORGAN
Comment from ANGELA MORGAN
Comment from william nyikes
Comment from Bridget Williamson
Comment from Jose Greco
Comment from Joe Roy
Comment from Laurel Whillock
Comment from Christina DeRespiris
Comment from Raymond Valinoti
Comment from Herbert Lord
Comment from peggy tallyn
Comment from Jana Perinchief
Comment from Lynn Forsht
Comment from Randall Bash
Comment from Mary Lebert
Comment from lisa black
Comment from Susan Breitbard
Comment from Kyle Embler
Comment from Kimberly Jannarone
Comment from Thomas Fair
Comment from Lisa Elderton
Comment from Iris Owens
Comment from mia heavyrunner
Comment from James Thompson
Comment from Susan Siniard
Comment from Peggy Alpert
Comment from Anthony Trotta
Comment from Nancy Cole

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02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14827
NOAA-NMFS-2020-0031-DRAFT-14828
NOAA-NMFS-2020-0031-DRAFT-14829
NOAA-NMFS-2020-0031-DRAFT-14830
NOAA-NMFS-2020-0031-DRAFT-14831
NOAA-NMFS-2020-0031-DRAFT-14832
NOAA-NMFS-2020-0031-DRAFT-14833
NOAA-NMFS-2020-0031-DRAFT-14834
NOAA-NMFS-2020-0031-DRAFT-14835
NOAA-NMFS-2020-0031-DRAFT-14836
NOAA-NMFS-2020-0031-DRAFT-14837
NOAA-NMFS-2020-0031-DRAFT-14838
NOAA-NMFS-2020-0031-DRAFT-14839
NOAA-NMFS-2020-0031-DRAFT-14840
NOAA-NMFS-2020-0031-DRAFT-14841
NOAA-NMFS-2020-0031-DRAFT-14842
NOAA-NMFS-2020-0031-DRAFT-14843
NOAA-NMFS-2020-0031-DRAFT-14844
NOAA-NMFS-2020-0031-DRAFT-14845
NOAA-NMFS-2020-0031-DRAFT-14846
NOAA-NMFS-2020-0031-DRAFT-14847
NOAA-NMFS-2020-0031-DRAFT-14848
NOAA-NMFS-2020-0031-DRAFT-14849
NOAA-NMFS-2020-0031-DRAFT-14850
NOAA-NMFS-2020-0031-DRAFT-14851
NOAA-NMFS-2020-0031-DRAFT-14852
NOAA-NMFS-2020-0031-DRAFT-14853
NOAA-NMFS-2020-0031-DRAFT-14854
NOAA-NMFS-2020-0031-DRAFT-14855
NOAA-NMFS-2020-0031-DRAFT-14856
NOAA-NMFS-2020-0031-DRAFT-14858
NOAA-NMFS-2020-0031-DRAFT-14859
NOAA-NMFS-2020-0031-DRAFT-14860
NOAA-NMFS-2020-0031-DRAFT-14861
NOAA-NMFS-2020-0031-DRAFT-14862
NOAA-NMFS-2020-0031-DRAFT-14863
NOAA-NMFS-2020-0031-DRAFT-14864
NOAA-NMFS-2020-0031-DRAFT-14865
NOAA-NMFS-2020-0031-DRAFT-14866
NOAA-NMFS-2020-0031-DRAFT-14867
NOAA-NMFS-2020-0031-DRAFT-14868

Comment from perry, Jeannie
Comment from DeBraal, Karen
Comment from Fahmy, Natalie
Comment from Lange, Marlena
Comment from Krieger, Jim
Comment from Arnold, Tina
Comment from Hoerlein, Sara
Comment from Brown, Meghan
Comment from Stieber, Frank
Comment from Diaz, Kristen
Comment from Betti, Mark
Comment from Lee, Jann
Comment from OBrien, Robert
Comment from Peiris, Ravi
Comment from Kolessar, Joan
Comment from Crowleu, Marty
Comment from John Fleming
Comment from Mary Korde
Comment from McGregor, Hilary
Comment from Echevarria, Mario
Comment from Rodgers, Camie
Comment from Stimmel, Christina
Comment from Dobson, Deborah
Comment from Mehrer, Russell
Comment from Alice Moore
Comment from Bender, Gary
Comment from Reis, Judith
Comment from Lowrey, Jan
Comment from James Bonee
Comment from Allison, Paulette
Comment from Greene, Jennifer
Comment from XX, Vicki
Comment from Saks, Jane
Comment from Lam, Charisma
Comment from Puffer, Deidre
Comment from Loomis, Gregry
Comment from Pratt, Wendy
Comment from Stewart, Linda
Comment from Halizak, Kim
Comment from Korn, Meryle A
Comment from Rullmann, Gale

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02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19947
NOAA-NMFS-2020-0031-DRAFT-19948
NOAA-NMFS-2020-0031-DRAFT-19949
NOAA-NMFS-2020-0031-DRAFT-19950
NOAA-NMFS-2020-0031-DRAFT-19951
NOAA-NMFS-2020-0031-DRAFT-19952
NOAA-NMFS-2020-0031-DRAFT-19953
NOAA-NMFS-2020-0031-DRAFT-19954
NOAA-NMFS-2020-0031-DRAFT-19955
NOAA-NMFS-2020-0031-DRAFT-19956
NOAA-NMFS-2020-0031-DRAFT-19957
NOAA-NMFS-2020-0031-DRAFT-19958
NOAA-NMFS-2020-0031-DRAFT-19959
NOAA-NMFS-2020-0031-DRAFT-19960
NOAA-NMFS-2020-0031-DRAFT-19961
NOAA-NMFS-2020-0031-DRAFT-19962
NOAA-NMFS-2020-0031-DRAFT-19963
NOAA-NMFS-2020-0031-DRAFT-19964
NOAA-NMFS-2020-0031-DRAFT-19965
NOAA-NMFS-2020-0031-DRAFT-19966
NOAA-NMFS-2020-0031-DRAFT-19967
NOAA-NMFS-2020-0031-DRAFT-19968
NOAA-NMFS-2020-0031-DRAFT-19969
NOAA-NMFS-2020-0031-DRAFT-19970
NOAA-NMFS-2020-0031-DRAFT-19971
NOAA-NMFS-2020-0031-DRAFT-19972
NOAA-NMFS-2020-0031-DRAFT-19973
NOAA-NMFS-2020-0031-DRAFT-19974
NOAA-NMFS-2020-0031-DRAFT-19975
NOAA-NMFS-2020-0031-DRAFT-19976
NOAA-NMFS-2020-0031-DRAFT-19977
NOAA-NMFS-2020-0031-DRAFT-19978
NOAA-NMFS-2020-0031-DRAFT-19979
NOAA-NMFS-2020-0031-DRAFT-19980
NOAA-NMFS-2020-0031-DRAFT-19981
NOAA-NMFS-2020-0031-DRAFT-19982
NOAA-NMFS-2020-0031-DRAFT-19983
NOAA-NMFS-2020-0031-DRAFT-19984
NOAA-NMFS-2020-0031-DRAFT-19985
NOAA-NMFS-2020-0031-DRAFT-19986
NOAA-NMFS-2020-0031-DRAFT-19987

Comment from Jodi Bell
Comment from Rob Rondanini
Comment from Morgan Cormia
Comment from Susan Dorchin
Comment from Nico Font
Comment from Doug Sleight
Comment from Janine Nordquist
Comment from Jeff Fromberg
Comment from Anita Wisch
Comment from Stephanie Kana
Comment from Frank Dall
Comment from Cathy Thompson
Comment from Susan Wigfield
Comment from Elizabeth Ramsey
Comment from Andrew Kistler
Comment from Anita Wisch
Comment from Anita Wisch
Comment from Sharon Marchisello
Comment from Terrence McNally
Comment from Judy Barringer
Comment from Faith Herschler
Comment from Margie Schiff
Comment from Mina Bornn
Comment from Jennifer Scull
Comment from Karen Emanuel
Comment from Karen Hughes
Comment from Patricia Randazzo
Comment from Rebecca Garrett
Comment from Catherine Johnson
Comment from Joseph Hamilton
Comment from sheila draughon
Comment from Lucia Pasqualini
Comment from Lori McMurdy
Comment from Diane Eisenhower
Comment from candace l
Comment from Mary McMahon
Comment from lori conley
Comment from Beth Werner
Comment from Debbie Hunter
Comment from susanne moh
Comment from Martin Diedrich

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02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14869
NOAA-NMFS-2020-0031-DRAFT-14870
NOAA-NMFS-2020-0031-DRAFT-14871
NOAA-NMFS-2020-0031-DRAFT-14872
NOAA-NMFS-2020-0031-DRAFT-14873
NOAA-NMFS-2020-0031-DRAFT-14874
NOAA-NMFS-2020-0031-DRAFT-14875
NOAA-NMFS-2020-0031-DRAFT-14876
NOAA-NMFS-2020-0031-DRAFT-14877
NOAA-NMFS-2020-0031-DRAFT-14878
NOAA-NMFS-2020-0031-DRAFT-14879
NOAA-NMFS-2020-0031-DRAFT-14880
NOAA-NMFS-2020-0031-DRAFT-14882
NOAA-NMFS-2020-0031-DRAFT-14883
NOAA-NMFS-2020-0031-DRAFT-14884
NOAA-NMFS-2020-0031-DRAFT-14885
NOAA-NMFS-2020-0031-DRAFT-14886
NOAA-NMFS-2020-0031-DRAFT-14887
NOAA-NMFS-2020-0031-DRAFT-14888
NOAA-NMFS-2020-0031-DRAFT-14889
NOAA-NMFS-2020-0031-DRAFT-14890
NOAA-NMFS-2020-0031-DRAFT-14891
NOAA-NMFS-2020-0031-DRAFT-14892
NOAA-NMFS-2020-0031-DRAFT-14893
NOAA-NMFS-2020-0031-DRAFT-14894
NOAA-NMFS-2020-0031-DRAFT-14895
NOAA-NMFS-2020-0031-DRAFT-14896
NOAA-NMFS-2020-0031-DRAFT-14897
NOAA-NMFS-2020-0031-DRAFT-14898
NOAA-NMFS-2020-0031-DRAFT-14899
NOAA-NMFS-2020-0031-DRAFT-14900
NOAA-NMFS-2020-0031-DRAFT-14901
NOAA-NMFS-2020-0031-DRAFT-14902
NOAA-NMFS-2020-0031-DRAFT-14903
NOAA-NMFS-2020-0031-DRAFT-14904
NOAA-NMFS-2020-0031-DRAFT-14905
NOAA-NMFS-2020-0031-DRAFT-14906
NOAA-NMFS-2020-0031-DRAFT-14907
NOAA-NMFS-2020-0031-DRAFT-14908
NOAA-NMFS-2020-0031-DRAFT-14909
NOAA-NMFS-2020-0031-DRAFT-14910

Comment from Angell, JL
Comment from Van Gelder, Lindsy
Comment from Jaasko, Lisbeth
Comment from Bowman, Wendy
Comment from Ochoa Rounkles, Sherry
Comment from Schuchard, Susan
Comment from Abers, Mimi
Comment from Dougherty, Dennis
Comment from Mulroy, Rhonda
Comment from McEachronTaylor,
LindaLee
Comment from Elaine Eudy
Comment from VonBenken, Barbara
Comment from Griepsma, Debi
Comment from Elizabeth Carroll
Comment from Warren, Roxanne
Comment from Riddell, Catherine
Comment from Ragana, Lollie
Comment from Greenberg, Alexandra
Comment from Welch, Kristi
Comment from Nelson, Paige
Comment from Wadstrup, David
Comment from Leckliter, Linda
Comment from Tucker, Michael
Comment from Uzmed, Arlene
Comment from Brophy, Heather
Comment from Saint Clair, Catherine
Comment from Halverson, Janet
Comment from Michelson, Sue
Comment from Humrich, Gilia
Comment from Dooley, Katherine
Comment from Zersen, Holly
Comment from ELSE, CAROL
Comment from Prellwitz, Carl
Comment from Swyden, Barbara
Comment from Palladino, Mary
Comment from Bowles, Rebecca
Comment from Claudio, Christian
Comment from Taffurelli, Linda
Comment from Ladiana, Elizabeth
Comment from Hammond, Gretchen
Comment from Huynh, Suong

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-19988
NOAA-NMFS-2020-0031-DRAFT-19989
NOAA-NMFS-2020-0031-DRAFT-19990
NOAA-NMFS-2020-0031-DRAFT-19991
NOAA-NMFS-2020-0031-DRAFT-19992
NOAA-NMFS-2020-0031-DRAFT-19993
NOAA-NMFS-2020-0031-DRAFT-19994
NOAA-NMFS-2020-0031-DRAFT-19995
NOAA-NMFS-2020-0031-DRAFT-19996
NOAA-NMFS-2020-0031-DRAFT-19997
NOAA-NMFS-2020-0031-DRAFT-19998
NOAA-NMFS-2020-0031-DRAFT-19999
NOAA-NMFS-2020-0031-DRAFT-20000
NOAA-NMFS-2020-0031-DRAFT-20001
NOAA-NMFS-2020-0031-DRAFT-20002
NOAA-NMFS-2020-0031-DRAFT-20003
NOAA-NMFS-2020-0031-DRAFT-20004
NOAA-NMFS-2020-0031-DRAFT-20005
NOAA-NMFS-2020-0031-DRAFT-20006
NOAA-NMFS-2020-0031-DRAFT-20007
NOAA-NMFS-2020-0031-DRAFT-20008
NOAA-NMFS-2020-0031-DRAFT-20009
NOAA-NMFS-2020-0031-DRAFT-20010
NOAA-NMFS-2020-0031-DRAFT-20011
NOAA-NMFS-2020-0031-DRAFT-20012
NOAA-NMFS-2020-0031-DRAFT-20013
NOAA-NMFS-2020-0031-DRAFT-20014
NOAA-NMFS-2020-0031-DRAFT-20015
NOAA-NMFS-2020-0031-DRAFT-20016
NOAA-NMFS-2020-0031-DRAFT-20017
NOAA-NMFS-2020-0031-DRAFT-20018
NOAA-NMFS-2020-0031-DRAFT-20019
NOAA-NMFS-2020-0031-DRAFT-20020
NOAA-NMFS-2020-0031-DRAFT-20021
NOAA-NMFS-2020-0031-DRAFT-20022
NOAA-NMFS-2020-0031-DRAFT-20023
NOAA-NMFS-2020-0031-DRAFT-20024
NOAA-NMFS-2020-0031-DRAFT-20025
NOAA-NMFS-2020-0031-DRAFT-20026
NOAA-NMFS-2020-0031-DRAFT-20027
NOAA-NMFS-2020-0031-DRAFT-20028

Comment from Victoria Groshong
Comment from Jo K.
Comment from Oksana Brodie
Comment from Jan Modjeski
Comment from Janet Glaspie
Comment from Jacqueline Peipert
Comment from pam ward
Comment from Rhoda Herrold
Comment from Linda Knowles
Comment from Jordan Longever
Comment from D Alex
Comment from Rachel Morr
Comment from david bradbury
Comment from Sarika Arora
Comment from Paul Horne
Comment from Susan Reid
Comment from Sandra Bader
Comment from Drew Pelton
Comment from Carol Wiley
Comment from Claudia Richner
Comment from Nick Byrne
Comment from Carolyn Dickson
Comment from Bob Gaskins
Comment from Jeffrey Ward
Comment from Anna Brewer
Comment from Julie Wade
Comment from Jon Singleton
Comment from Dennis Villavicencio
Comment from Joseph Guariglia
Comment from Susana Soares
Comment from Laura Stevens
Comment from Dorothy Sturges
Comment from Theodore Snyder
Comment from Mark Feldman
Comment from Lisa Ventura
Comment from John Sailer
Comment from Janet Handford
Comment from Andrew Karen
Comment from Dorothy Hammer
Comment from Migdalia Ortega
Comment from Evelyn Malone

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02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14911
NOAA-NMFS-2020-0031-DRAFT-14912
NOAA-NMFS-2020-0031-DRAFT-14913
NOAA-NMFS-2020-0031-DRAFT-14914
NOAA-NMFS-2020-0031-DRAFT-14915
NOAA-NMFS-2020-0031-DRAFT-14916
NOAA-NMFS-2020-0031-DRAFT-14917
NOAA-NMFS-2020-0031-DRAFT-14920
NOAA-NMFS-2020-0031-DRAFT-14921
NOAA-NMFS-2020-0031-DRAFT-14922
NOAA-NMFS-2020-0031-DRAFT-14923
NOAA-NMFS-2020-0031-DRAFT-14924
NOAA-NMFS-2020-0031-DRAFT-14925
NOAA-NMFS-2020-0031-DRAFT-14926
NOAA-NMFS-2020-0031-DRAFT-14927
NOAA-NMFS-2020-0031-DRAFT-14928
NOAA-NMFS-2020-0031-DRAFT-14929
NOAA-NMFS-2020-0031-DRAFT-14930
NOAA-NMFS-2020-0031-DRAFT-14931
NOAA-NMFS-2020-0031-DRAFT-14932
NOAA-NMFS-2020-0031-DRAFT-14933
NOAA-NMFS-2020-0031-DRAFT-14935
NOAA-NMFS-2020-0031-DRAFT-14936
NOAA-NMFS-2020-0031-DRAFT-14937
NOAA-NMFS-2020-0031-DRAFT-14938
NOAA-NMFS-2020-0031-DRAFT-14939
NOAA-NMFS-2020-0031-DRAFT-14940
NOAA-NMFS-2020-0031-DRAFT-14941
NOAA-NMFS-2020-0031-DRAFT-14942
NOAA-NMFS-2020-0031-DRAFT-14943
NOAA-NMFS-2020-0031-DRAFT-14944
NOAA-NMFS-2020-0031-DRAFT-14945
NOAA-NMFS-2020-0031-DRAFT-14946
NOAA-NMFS-2020-0031-DRAFT-14947
NOAA-NMFS-2020-0031-DRAFT-14948
NOAA-NMFS-2020-0031-DRAFT-14949
NOAA-NMFS-2020-0031-DRAFT-14950
NOAA-NMFS-2020-0031-DRAFT-14951
NOAA-NMFS-2020-0031-DRAFT-14952
NOAA-NMFS-2020-0031-DRAFT-14953
NOAA-NMFS-2020-0031-DRAFT-14954

Comment from Miller, Susan
Comment from Robb, Aaeron
Comment from Murphy, Dacia
Comment from Smith, Jaszmene
Comment from dillon, joan
Comment from Palladino, Mary
Comment from Eric Griffith
Comment from Hall, Carol
Comment from Will, Jennifer
Comment from Sellers, Jennifer
Comment from Sévilla, Caroline
Comment from Trauger, Adam
Comment from Hovermill, Earl
Comment from farber, joan
Comment from Althiser, Kenneth
Comment from Nicholas, Kathleen
Comment from fromberg, jeff
Comment from Erin Mccue
Comment from Glendon Frank
Comment from bonham, jimmy
Comment from Lee, Jerry
Comment from Clough, Cyndi
Comment from Sunde, John
Comment from Lake, Carol
Comment from Rocheleau, Sophie
Comment from Huber, Diane
Comment from Cohick, Melanie
Comment from Loholdt, Elizabeth
Comment from Mart, Helene
Comment from William Collins
Comment from Wilson, Christa
Comment from West, Carrie
Comment from Sketo, Steve
Comment from Peterson, Tracey
Comment from Perez, Velma
Comment from Chandler, Wendy
Comment from MILLENSIFER, AIMEE
Comment from hazzard, sandra
Comment from Vogel, Steven
Comment from Adler, Barbara
Comment from Brian Davis

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20029
NOAA-NMFS-2020-0031-DRAFT-20030
NOAA-NMFS-2020-0031-DRAFT-20031
NOAA-NMFS-2020-0031-DRAFT-20032
NOAA-NMFS-2020-0031-DRAFT-20033
NOAA-NMFS-2020-0031-DRAFT-20034
NOAA-NMFS-2020-0031-DRAFT-20035
NOAA-NMFS-2020-0031-DRAFT-20036
NOAA-NMFS-2020-0031-DRAFT-20037
NOAA-NMFS-2020-0031-DRAFT-20038
NOAA-NMFS-2020-0031-DRAFT-20039
NOAA-NMFS-2020-0031-DRAFT-20040
NOAA-NMFS-2020-0031-DRAFT-20041
NOAA-NMFS-2020-0031-DRAFT-20042
NOAA-NMFS-2020-0031-DRAFT-20043
NOAA-NMFS-2020-0031-DRAFT-20044
NOAA-NMFS-2020-0031-DRAFT-20045
NOAA-NMFS-2020-0031-DRAFT-20046
NOAA-NMFS-2020-0031-DRAFT-20047
NOAA-NMFS-2020-0031-DRAFT-20048
NOAA-NMFS-2020-0031-DRAFT-20049
NOAA-NMFS-2020-0031-DRAFT-20050
NOAA-NMFS-2020-0031-DRAFT-20051
NOAA-NMFS-2020-0031-DRAFT-20052
NOAA-NMFS-2020-0031-DRAFT-20053
NOAA-NMFS-2020-0031-DRAFT-20054
NOAA-NMFS-2020-0031-DRAFT-20055
NOAA-NMFS-2020-0031-DRAFT-20056
NOAA-NMFS-2020-0031-DRAFT-20057
NOAA-NMFS-2020-0031-DRAFT-20059
NOAA-NMFS-2020-0031-DRAFT-20060
NOAA-NMFS-2020-0031-DRAFT-20061
NOAA-NMFS-2020-0031-DRAFT-20062
NOAA-NMFS-2020-0031-DRAFT-20063
NOAA-NMFS-2020-0031-DRAFT-20064
NOAA-NMFS-2020-0031-DRAFT-20065
NOAA-NMFS-2020-0031-DRAFT-20066
NOAA-NMFS-2020-0031-DRAFT-20067
NOAA-NMFS-2020-0031-DRAFT-20068
NOAA-NMFS-2020-0031-DRAFT-20069
NOAA-NMFS-2020-0031-DRAFT-20070

Comment from Christopher Tumolo
Comment from Amy Van Schijndel
Comment from Marguerite Barragan
Comment from Debra heatherly
Comment from Gaetano Amato
Comment from Suzy Siegmann
Comment from Anne Mocella
Comment from Patricia Brech
Comment from Jan Leath
Comment from Sandy Mariucci
Comment from Ruby Mitchell
Comment from michele martin
Comment from marina prifti
Comment from Sharon siodmak
Comment from Lisa Iffland
Comment from Carole Smudin
Comment from Peggy Savides
Comment from Uwe Dotzauer
Comment from Kathryn Burns
Comment from William Gabbard
Comment from Nancy Vlasvich
Comment from Steve Troyanovich
Comment from Susan Plubell
Comment from Ann Allen
Comment from Tom Norris
Comment from Larry Welsh
Comment from Rheama Koonce
Comment from Tammy Manthe
Comment from Beatrice Simmonds
Comment from Amanda Briggs
Comment from ELOISE PETERSON
Comment from Tatiana Medina
Comment from Donna Alleyne-Chin
Comment from Rodney Whisenhunt
Comment from Louise Priest
Comment from John Breiby
Comment from marion irwin
Comment from Nancy Howard
Comment from Geri Ott
Comment from Stacey Solum
Comment from Jamie Shields

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02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14955
NOAA-NMFS-2020-0031-DRAFT-14956
NOAA-NMFS-2020-0031-DRAFT-14957
NOAA-NMFS-2020-0031-DRAFT-14958
NOAA-NMFS-2020-0031-DRAFT-14959
NOAA-NMFS-2020-0031-DRAFT-14961
NOAA-NMFS-2020-0031-DRAFT-14962
NOAA-NMFS-2020-0031-DRAFT-14963
NOAA-NMFS-2020-0031-DRAFT-14964
NOAA-NMFS-2020-0031-DRAFT-14965
NOAA-NMFS-2020-0031-DRAFT-14966
NOAA-NMFS-2020-0031-DRAFT-14967
NOAA-NMFS-2020-0031-DRAFT-14968
NOAA-NMFS-2020-0031-DRAFT-14969
NOAA-NMFS-2020-0031-DRAFT-14970
NOAA-NMFS-2020-0031-DRAFT-14971
NOAA-NMFS-2020-0031-DRAFT-14972
NOAA-NMFS-2020-0031-DRAFT-14973
NOAA-NMFS-2020-0031-DRAFT-14974
NOAA-NMFS-2020-0031-DRAFT-14975
NOAA-NMFS-2020-0031-DRAFT-14976
NOAA-NMFS-2020-0031-DRAFT-14977
NOAA-NMFS-2020-0031-DRAFT-14978
NOAA-NMFS-2020-0031-DRAFT-14979
NOAA-NMFS-2020-0031-DRAFT-14980
NOAA-NMFS-2020-0031-DRAFT-14981
NOAA-NMFS-2020-0031-DRAFT-14982
NOAA-NMFS-2020-0031-DRAFT-14983
NOAA-NMFS-2020-0031-DRAFT-14984
NOAA-NMFS-2020-0031-DRAFT-14985
NOAA-NMFS-2020-0031-DRAFT-14986
NOAA-NMFS-2020-0031-DRAFT-14987
NOAA-NMFS-2020-0031-DRAFT-14988
NOAA-NMFS-2020-0031-DRAFT-14989
NOAA-NMFS-2020-0031-DRAFT-14990
NOAA-NMFS-2020-0031-DRAFT-14991
NOAA-NMFS-2020-0031-DRAFT-14992
NOAA-NMFS-2020-0031-DRAFT-14993
NOAA-NMFS-2020-0031-DRAFT-14994
NOAA-NMFS-2020-0031-DRAFT-14995
NOAA-NMFS-2020-0031-DRAFT-14996

Comment from mary campbell
Comment from Jain, Rasika
Comment from Vargas, Alisa
Comment from Fore, Judy
Comment from Straus, Sarah
Comment from Holland, Susan
Comment from Summers, Isaac
Comment from speros, george
Comment from Tate, Connie
Comment from Dill, Elizabeth
Comment from Polk, Docken
Comment from Quackenbush, Kay
Comment from Doucet, Pauline
Comment from Salama, Karen
Comment from Jennings, Jami e
Comment from dawn sartori
Comment from Durham, Veronica
Comment from speros, george
Comment from Shipley, Leslie
Comment from Morgenstein, Grace
Comment from Kestler, Ronald
Comment from Hartz, Shelley
Comment from Lilly, Haley
Comment from Finn, Julie
Comment from Wallace, Patrice
Comment from Knutson, Julie
Comment from Meier, Jill
Comment from Maura Hendry
Comment from Lira, Stefon
Comment from Burns, Cathleen
Comment from Schulman, Shani
Comment from Fredericksen, Karen
Comment from Socha, Diane
Comment from Haig, Brenda
Comment from Aurilio, Laura
Comment from Raynolds, Margaret
Comment from Torget, Marie
Comment from madden, kendra
Comment from GALANTE, SUSAN
Comment from Pineda, Faye
Comment from Madagan, Sharon

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NOAA-NMFS-2020-0031-DRAFT-20071
NOAA-NMFS-2020-0031-DRAFT-20072
NOAA-NMFS-2020-0031-DRAFT-20073
NOAA-NMFS-2020-0031-DRAFT-20074
NOAA-NMFS-2020-0031-DRAFT-20075
NOAA-NMFS-2020-0031-DRAFT-20076
NOAA-NMFS-2020-0031-DRAFT-20077
NOAA-NMFS-2020-0031-DRAFT-20078
NOAA-NMFS-2020-0031-DRAFT-20079
NOAA-NMFS-2020-0031-DRAFT-20080
NOAA-NMFS-2020-0031-DRAFT-20081
NOAA-NMFS-2020-0031-DRAFT-20082
NOAA-NMFS-2020-0031-DRAFT-20083
NOAA-NMFS-2020-0031-DRAFT-20084
NOAA-NMFS-2020-0031-DRAFT-20085
NOAA-NMFS-2020-0031-DRAFT-20086
NOAA-NMFS-2020-0031-DRAFT-20087
NOAA-NMFS-2020-0031-DRAFT-20088
NOAA-NMFS-2020-0031-DRAFT-20089
NOAA-NMFS-2020-0031-DRAFT-20090
NOAA-NMFS-2020-0031-DRAFT-20091
NOAA-NMFS-2020-0031-DRAFT-20092
NOAA-NMFS-2020-0031-DRAFT-20093
NOAA-NMFS-2020-0031-DRAFT-20094
NOAA-NMFS-2020-0031-DRAFT-20095
NOAA-NMFS-2020-0031-DRAFT-20096
NOAA-NMFS-2020-0031-DRAFT-20097
NOAA-NMFS-2020-0031-DRAFT-20099
NOAA-NMFS-2020-0031-DRAFT-20100
NOAA-NMFS-2020-0031-DRAFT-20101
NOAA-NMFS-2020-0031-DRAFT-20102
NOAA-NMFS-2020-0031-DRAFT-20103
NOAA-NMFS-2020-0031-DRAFT-20104
NOAA-NMFS-2020-0031-DRAFT-20105
NOAA-NMFS-2020-0031-DRAFT-20106
NOAA-NMFS-2020-0031-DRAFT-20107
NOAA-NMFS-2020-0031-DRAFT-20108
NOAA-NMFS-2020-0031-DRAFT-20109
NOAA-NMFS-2020-0031-DRAFT-20110
NOAA-NMFS-2020-0031-DRAFT-20111
NOAA-NMFS-2020-0031-DRAFT-20112

Comment from Karren Crouch
Comment from Grace Malara Aiello
Comment from Long Pham
Comment from Nancy Nolan
Comment from Kathleen Kiselewich
Comment from Vicki Davis
Comment from Anne Dawid
Comment from Barry Cutler
Comment from Dorothy Dunlap
Comment from Barbara Pray
Comment from barbara shalaew
Comment from Carla Brown
Comment from Michael Brandes
Comment from Jean Kim
Comment from Malcolm Groome
Comment from Marc Fleisher
Comment from Priscilla Newcomer
Comment from Melissa Duralia
Comment from Elaine McCabe
Comment from Gavin Kramer
Comment from Donna Blair
Comment from Sandra Stock
Comment from Pat Petro
Comment from Florence Girvin
Comment from Meryl Pinque
Comment from Scott Harris
Comment from Mike Kelly
Comment from Shawn Cline
Comment from Robert Kastigar
Comment from Sherry Wilmsen
Comment from Kathy Morrison
Comment from Michael Hoaster
Comment from Don Dudan
Comment from Michael Giansiracusa
Comment from Abigail Longo
Comment from Christy Smith
Comment from Fred Brodsky
Comment from Diane Falk
Comment from Samantha Rosa Re
Comment from Nancy Lasater
Comment from daniel uiterwyk

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02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14997
NOAA-NMFS-2020-0031-DRAFT-14998
NOAA-NMFS-2020-0031-DRAFT-14999
NOAA-NMFS-2020-0031-DRAFT-15000
NOAA-NMFS-2020-0031-DRAFT-15001
NOAA-NMFS-2020-0031-DRAFT-15002
NOAA-NMFS-2020-0031-DRAFT-15003
NOAA-NMFS-2020-0031-DRAFT-15004
NOAA-NMFS-2020-0031-DRAFT-15005
NOAA-NMFS-2020-0031-DRAFT-15006
NOAA-NMFS-2020-0031-DRAFT-15007
NOAA-NMFS-2020-0031-DRAFT-15008
NOAA-NMFS-2020-0031-DRAFT-15009
NOAA-NMFS-2020-0031-DRAFT-15010
NOAA-NMFS-2020-0031-DRAFT-15011
NOAA-NMFS-2020-0031-DRAFT-15012
NOAA-NMFS-2020-0031-DRAFT-15013
NOAA-NMFS-2020-0031-DRAFT-15014
NOAA-NMFS-2020-0031-DRAFT-15015
NOAA-NMFS-2020-0031-DRAFT-15016
NOAA-NMFS-2020-0031-DRAFT-15017
NOAA-NMFS-2020-0031-DRAFT-15018
NOAA-NMFS-2020-0031-DRAFT-15019
NOAA-NMFS-2020-0031-DRAFT-15020
NOAA-NMFS-2020-0031-DRAFT-15021
NOAA-NMFS-2020-0031-DRAFT-15022
NOAA-NMFS-2020-0031-DRAFT-15023
NOAA-NMFS-2020-0031-DRAFT-15024
NOAA-NMFS-2020-0031-DRAFT-15025
NOAA-NMFS-2020-0031-DRAFT-15026
NOAA-NMFS-2020-0031-DRAFT-15028
NOAA-NMFS-2020-0031-DRAFT-15029
NOAA-NMFS-2020-0031-DRAFT-15030
NOAA-NMFS-2020-0031-DRAFT-15032
NOAA-NMFS-2020-0031-DRAFT-15033
NOAA-NMFS-2020-0031-DRAFT-15034
NOAA-NMFS-2020-0031-DRAFT-15035
NOAA-NMFS-2020-0031-DRAFT-15036
NOAA-NMFS-2020-0031-DRAFT-15037
NOAA-NMFS-2020-0031-DRAFT-15038
NOAA-NMFS-2020-0031-DRAFT-15039

Comment from Terry Bulla
Comment from Saran, Harvinderjit
Comment from Carlson, Rita
Comment from Baker Smith, Elizabeth
and Gerritt
Comment from Sommers, Megan
Comment from Morales, Jennifer
Comment from Chadderdon, Christina
Comment from Krause, Crystal
Comment from ilse singer
Comment from Hollander, Cynthia
Comment from Merchant, Pranav
Comment from Guarino, Donna
Comment from Allen, Ann
Comment from Parr, Sarah
Comment from Moser, Rich
Comment from Woods, Roth
Comment from goodfellow, joan
Comment from Jurus, Nicholas
Comment from Wirtz, Liz
Comment from PETERSON, MARY
Comment from Young, Melanie
Comment from Masek, M
Comment from Durham, Jerry
Comment from Gaiti, Phyllis
Comment from Midgett, Jennifer
Comment from Kilfoyle, Emma
Comment from Jacobson, Joyce
Comment from Feld, Lowell
Comment from Hufnagel, Glenn
Comment from Jesse Winder
Comment from Dean, Deborah
Comment from Weinstein, Bob
Comment from Cole, Shelley
Comment from Thompson, Carol
Comment from Amell, Sue
Comment from Terry Tinsley
Comment from Williamson, Deborah
Comment from Holden, John
Comment from Hasan, Terry
Comment from Grassi, Cathy
Comment from Jespersen, Karla

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02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20113
NOAA-NMFS-2020-0031-DRAFT-20114
NOAA-NMFS-2020-0031-DRAFT-20115
NOAA-NMFS-2020-0031-DRAFT-20116
NOAA-NMFS-2020-0031-DRAFT-20117
NOAA-NMFS-2020-0031-DRAFT-20118
NOAA-NMFS-2020-0031-DRAFT-20119
NOAA-NMFS-2020-0031-DRAFT-20120
NOAA-NMFS-2020-0031-DRAFT-20121
NOAA-NMFS-2020-0031-DRAFT-20122
NOAA-NMFS-2020-0031-DRAFT-20123
NOAA-NMFS-2020-0031-DRAFT-20124
NOAA-NMFS-2020-0031-DRAFT-20125
NOAA-NMFS-2020-0031-DRAFT-20126
NOAA-NMFS-2020-0031-DRAFT-20127
NOAA-NMFS-2020-0031-DRAFT-20128
NOAA-NMFS-2020-0031-DRAFT-20129
NOAA-NMFS-2020-0031-DRAFT-20130
NOAA-NMFS-2020-0031-DRAFT-20131
NOAA-NMFS-2020-0031-DRAFT-20132
NOAA-NMFS-2020-0031-DRAFT-20133
NOAA-NMFS-2020-0031-DRAFT-20134
NOAA-NMFS-2020-0031-DRAFT-20135
NOAA-NMFS-2020-0031-DRAFT-20136
NOAA-NMFS-2020-0031-DRAFT-20137
NOAA-NMFS-2020-0031-DRAFT-20138
NOAA-NMFS-2020-0031-DRAFT-20139
NOAA-NMFS-2020-0031-DRAFT-20140
NOAA-NMFS-2020-0031-DRAFT-20141
NOAA-NMFS-2020-0031-DRAFT-20142
NOAA-NMFS-2020-0031-DRAFT-20143
NOAA-NMFS-2020-0031-DRAFT-20144
NOAA-NMFS-2020-0031-DRAFT-20145
NOAA-NMFS-2020-0031-DRAFT-20146
NOAA-NMFS-2020-0031-DRAFT-20147
NOAA-NMFS-2020-0031-DRAFT-20148
NOAA-NMFS-2020-0031-DRAFT-20149
NOAA-NMFS-2020-0031-DRAFT-20150
NOAA-NMFS-2020-0031-DRAFT-20151
NOAA-NMFS-2020-0031-DRAFT-20152
NOAA-NMFS-2020-0031-DRAFT-20153

Comment from James Peloquen
Comment from Christopher Evans
Comment from Ellen Atkinson
Comment from Mary Anders
Comment from Alan Gonzalez
Comment from gregory whynott
Comment from cathy adams
Comment from Laura Belgiorno
Comment from Todd Clark
Comment from Rhonda Rohlfing
Comment from Erin Dalessandro
Comment from Denise Guevara
Comment from Tess Hacker
Comment from Susan Leibowitz
Comment from Sherry Toy
Comment from Leslie King
Comment from m sanders
Comment from Jon Bream
Comment from Stephen Knox
Comment from Mary Garcin
Comment from Elizabeth MacKelvie
Comment from Sandy Ranallo
Comment from Tamara Abashian
Comment from Kat Stevens
Comment from Cathy Saunders
Comment from Janet Walls
Comment from Colleen Cleary
Comment from Michele Mendelsohn
Comment from Beth Ross
Comment from Laurel Wagner
Comment from Katie Zukoski
Comment from Elaine hill
Comment from Bruce Krawisz
Comment from Margaret Lohr
Comment from Linda Owen
Comment from Joan Peter
Comment from Danette Haley
Comment from Jacqui Bowman
Comment from jean publiee
Comment from Cathie Leslie
Comment from Alexis Frankian

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02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15040
NOAA-NMFS-2020-0031-DRAFT-15041
NOAA-NMFS-2020-0031-DRAFT-15042
NOAA-NMFS-2020-0031-DRAFT-15044
NOAA-NMFS-2020-0031-DRAFT-15046
NOAA-NMFS-2020-0031-DRAFT-15047
NOAA-NMFS-2020-0031-DRAFT-15049
NOAA-NMFS-2020-0031-DRAFT-15050
NOAA-NMFS-2020-0031-DRAFT-15051
NOAA-NMFS-2020-0031-DRAFT-15052
NOAA-NMFS-2020-0031-DRAFT-15053
NOAA-NMFS-2020-0031-DRAFT-15062
NOAA-NMFS-2020-0031-DRAFT-15066
NOAA-NMFS-2020-0031-DRAFT-15072
NOAA-NMFS-2020-0031-DRAFT-15073
NOAA-NMFS-2020-0031-DRAFT-15075
NOAA-NMFS-2020-0031-DRAFT-15076
NOAA-NMFS-2020-0031-DRAFT-15077
NOAA-NMFS-2020-0031-DRAFT-15078
NOAA-NMFS-2020-0031-DRAFT-15079
NOAA-NMFS-2020-0031-DRAFT-15080
NOAA-NMFS-2020-0031-DRAFT-15081
NOAA-NMFS-2020-0031-DRAFT-15082
NOAA-NMFS-2020-0031-DRAFT-15083
NOAA-NMFS-2020-0031-DRAFT-15084
NOAA-NMFS-2020-0031-DRAFT-15086
NOAA-NMFS-2020-0031-DRAFT-15087
NOAA-NMFS-2020-0031-DRAFT-15088
NOAA-NMFS-2020-0031-DRAFT-15089
NOAA-NMFS-2020-0031-DRAFT-15090
NOAA-NMFS-2020-0031-DRAFT-15092
NOAA-NMFS-2020-0031-DRAFT-15093
NOAA-NMFS-2020-0031-DRAFT-15095
NOAA-NMFS-2020-0031-DRAFT-15096
NOAA-NMFS-2020-0031-DRAFT-15099
NOAA-NMFS-2020-0031-DRAFT-15100
NOAA-NMFS-2020-0031-DRAFT-15101
NOAA-NMFS-2020-0031-DRAFT-15102
NOAA-NMFS-2020-0031-DRAFT-15103
NOAA-NMFS-2020-0031-DRAFT-15104
NOAA-NMFS-2020-0031-DRAFT-15105

Comment from S, Marjorie
Comment from Timothy Moody
Comment from Grul, tessa
Comment from Karen Kenngott
Comment from Stephen Hale
Comment from Margie Miller
Comment from Paul DAntonio
Comment from Molly Williams
Comment from Cheryl Pittman
Comment from Kimberly Yates
Comment from Susan Galante
Comment from Sandra FernandezAchenbach
Comment from troy testa
Comment from Tina Max
Comment from Sarika Arora
Comment from Bryan Johns
Comment from Pepper Trail
Comment from Debora Hojda
Comment from Beth Foye
Comment from Yevgeniy Kievskiy
Comment from Daniel Gan
Comment from Teresa Gallar
Comment from Wayne Langley
Comment from Tracie Edwards
Comment from Derinda Nilsson
Comment from elizabeth myrinshore
Comment from Gail Deppen
Comment from Stanley Davidson
Comment from Stanley Davidson
Comment from Matthew Mahoney
Comment from Gloria Abramowitz
Comment from Karen Maish
Comment from Villary LaRue
Comment from Yvonne Scott
Comment from Linda Hall
Comment from Sandra Lawson
Comment from Rita Taylor
Comment from Jean Naples
Comment from Albert Fiorini
Comment from Chris Bernard
Comment from Becky Muldowney

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02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20154
NOAA-NMFS-2020-0031-DRAFT-20155
NOAA-NMFS-2020-0031-DRAFT-20156
NOAA-NMFS-2020-0031-DRAFT-20157
NOAA-NMFS-2020-0031-DRAFT-20158
NOAA-NMFS-2020-0031-DRAFT-20159
NOAA-NMFS-2020-0031-DRAFT-20160
NOAA-NMFS-2020-0031-DRAFT-20161
NOAA-NMFS-2020-0031-DRAFT-20162
NOAA-NMFS-2020-0031-DRAFT-20163
NOAA-NMFS-2020-0031-DRAFT-20164
NOAA-NMFS-2020-0031-DRAFT-20165
NOAA-NMFS-2020-0031-DRAFT-20166
NOAA-NMFS-2020-0031-DRAFT-20167
NOAA-NMFS-2020-0031-DRAFT-20168
NOAA-NMFS-2020-0031-DRAFT-20169
NOAA-NMFS-2020-0031-DRAFT-20170
NOAA-NMFS-2020-0031-DRAFT-20171
NOAA-NMFS-2020-0031-DRAFT-20172
NOAA-NMFS-2020-0031-DRAFT-20173
NOAA-NMFS-2020-0031-DRAFT-20174
NOAA-NMFS-2020-0031-DRAFT-20175
NOAA-NMFS-2020-0031-DRAFT-20176
NOAA-NMFS-2020-0031-DRAFT-20177
NOAA-NMFS-2020-0031-DRAFT-20178
NOAA-NMFS-2020-0031-DRAFT-20179
NOAA-NMFS-2020-0031-DRAFT-20180
NOAA-NMFS-2020-0031-DRAFT-20181
NOAA-NMFS-2020-0031-DRAFT-20182
NOAA-NMFS-2020-0031-DRAFT-20183
NOAA-NMFS-2020-0031-DRAFT-20184
NOAA-NMFS-2020-0031-DRAFT-20185
NOAA-NMFS-2020-0031-DRAFT-20186
NOAA-NMFS-2020-0031-DRAFT-20187
NOAA-NMFS-2020-0031-DRAFT-20188
NOAA-NMFS-2020-0031-DRAFT-20189
NOAA-NMFS-2020-0031-DRAFT-20190
NOAA-NMFS-2020-0031-DRAFT-20191
NOAA-NMFS-2020-0031-DRAFT-20192
NOAA-NMFS-2020-0031-DRAFT-20193
NOAA-NMFS-2020-0031-DRAFT-20194

Comment from kay bushnell
Comment from Caroline Svilla
Comment from Sue Holtz
Comment from Barbara Collins
Comment from Juanita Garcia
Comment from Diane Eisenhower
Comment from Carol Mock
Comment from Sharon Campanella
Comment from Heidi Steinert Bresilge
Comment from Jim Green
Comment from Stephanie Fox
Comment from Josh Craven
Comment from G. Countryman-Mills
Comment from Debra Gleason
Comment from Catherine Saint-Clair
Comment from Kendall Ayers
Comment from nick evans
Comment from Marilyn Switzer
Comment from Rumi Kusdogan
Comment from Joei Fischer
Comment from Enid Breakstone
Comment from sonja franz
Comment from Helen Dimmitt
Comment from Jane Warring
Comment from Valerie Charbonneau
Comment from Carla Compton
Comment from Diane Hopkins
Comment from Dave Scherer
Comment from Steve Schueth
Comment from Lynn Nelson
Comment from Judy Bokhoven
Comment from Brooke Kane
Comment from Heather Hogge
Comment from Elaine Johnson
Comment from Patrick Beaudry
Comment from Martina Patterson
Comment from Joseph Boone
Comment from Astra Kalodukas
Comment from Jennifer Dimarco
Comment from Alisa Battaglia
Comment from Patti S

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NOAA-NMFS-2020-0031-DRAFT-15106
NOAA-NMFS-2020-0031-DRAFT-15107
NOAA-NMFS-2020-0031-DRAFT-15108
NOAA-NMFS-2020-0031-DRAFT-15109
NOAA-NMFS-2020-0031-DRAFT-15110
NOAA-NMFS-2020-0031-DRAFT-15111
NOAA-NMFS-2020-0031-DRAFT-15112
NOAA-NMFS-2020-0031-DRAFT-15113
NOAA-NMFS-2020-0031-DRAFT-15114
NOAA-NMFS-2020-0031-DRAFT-15115
NOAA-NMFS-2020-0031-DRAFT-15116
NOAA-NMFS-2020-0031-DRAFT-15117
NOAA-NMFS-2020-0031-DRAFT-15118
NOAA-NMFS-2020-0031-DRAFT-15119
NOAA-NMFS-2020-0031-DRAFT-15120
NOAA-NMFS-2020-0031-DRAFT-15121
NOAA-NMFS-2020-0031-DRAFT-15122
NOAA-NMFS-2020-0031-DRAFT-15123
NOAA-NMFS-2020-0031-DRAFT-15124
NOAA-NMFS-2020-0031-DRAFT-15125
NOAA-NMFS-2020-0031-DRAFT-15126
NOAA-NMFS-2020-0031-DRAFT-15127
NOAA-NMFS-2020-0031-DRAFT-15128
NOAA-NMFS-2020-0031-DRAFT-15129
NOAA-NMFS-2020-0031-DRAFT-15130
NOAA-NMFS-2020-0031-DRAFT-15131
NOAA-NMFS-2020-0031-DRAFT-15132
NOAA-NMFS-2020-0031-DRAFT-15133
NOAA-NMFS-2020-0031-DRAFT-15134
NOAA-NMFS-2020-0031-DRAFT-15135
NOAA-NMFS-2020-0031-DRAFT-15136
NOAA-NMFS-2020-0031-DRAFT-15137
NOAA-NMFS-2020-0031-DRAFT-15138
NOAA-NMFS-2020-0031-DRAFT-15139
NOAA-NMFS-2020-0031-DRAFT-15140
NOAA-NMFS-2020-0031-DRAFT-15141
NOAA-NMFS-2020-0031-DRAFT-15142
NOAA-NMFS-2020-0031-DRAFT-15143
NOAA-NMFS-2020-0031-DRAFT-15144
NOAA-NMFS-2020-0031-DRAFT-15145
NOAA-NMFS-2020-0031-DRAFT-15146

Comment from Amanda Seissian
Comment from Joi Marker
Comment from Maria Mondaca
Comment from Joanne Minton
Comment from Barbara Staab
Comment from Janis Wilder
Comment from Collins, Carol
Comment from Bernard, Frankie
Comment from Rothschild, Laurence
Comment from Lepore, Paula
Comment from White, Rob
Comment from Hansen, Marsha
Comment from Glass, Jordan
Comment from Feil, Fran
Comment from Masbaum, Judy
Comment from Blandford, Mark
Comment from Cranmer, Cassandra
Comment from McCaffrey, Carol
Comment from Reed, Jennifer
Comment from Rose, Skye
Comment from Peek, Aileen
Comment from Bukowski, Nancy
Comment from Victor, Joan
Comment from Sumrall, Amber
Comment from Evans, Pam
Comment from Corbin Beaver, Pamela
Comment from Cornelia Jerviss
Comment from Fontaine, Cheryl
Comment from Serkes, Nanette
Comment from Cappetta, Mark
Comment from Dreyer, Sharyn
Comment from Robinson, Janet
Comment from bohnert, allen
Comment from Baker, Barbara
Comment from Cross, Heather
Comment from Gabriel, Candace
Comment from Reuscher, F Carlene
Comment from L, Jean
Comment from Cristobal, Josie
Comment from Nolasco, Michael
Comment from Dalton, Mary Ann

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NOAA-NMFS-2020-0031-DRAFT-20195
NOAA-NMFS-2020-0031-DRAFT-20196
NOAA-NMFS-2020-0031-DRAFT-20197
NOAA-NMFS-2020-0031-DRAFT-20198
NOAA-NMFS-2020-0031-DRAFT-20199
NOAA-NMFS-2020-0031-DRAFT-20200
NOAA-NMFS-2020-0031-DRAFT-20201
NOAA-NMFS-2020-0031-DRAFT-20202
NOAA-NMFS-2020-0031-DRAFT-20203
NOAA-NMFS-2020-0031-DRAFT-20204
NOAA-NMFS-2020-0031-DRAFT-20205
NOAA-NMFS-2020-0031-DRAFT-20206
NOAA-NMFS-2020-0031-DRAFT-20207
NOAA-NMFS-2020-0031-DRAFT-20208
NOAA-NMFS-2020-0031-DRAFT-20209
NOAA-NMFS-2020-0031-DRAFT-20210
NOAA-NMFS-2020-0031-DRAFT-20211
NOAA-NMFS-2020-0031-DRAFT-20212
NOAA-NMFS-2020-0031-DRAFT-20213
NOAA-NMFS-2020-0031-DRAFT-20214
NOAA-NMFS-2020-0031-DRAFT-20215
NOAA-NMFS-2020-0031-DRAFT-20216
NOAA-NMFS-2020-0031-DRAFT-20217
NOAA-NMFS-2020-0031-DRAFT-20218
NOAA-NMFS-2020-0031-DRAFT-20219
NOAA-NMFS-2020-0031-DRAFT-20220
NOAA-NMFS-2020-0031-DRAFT-20221
NOAA-NMFS-2020-0031-DRAFT-20222
NOAA-NMFS-2020-0031-DRAFT-20223
NOAA-NMFS-2020-0031-DRAFT-20224
NOAA-NMFS-2020-0031-DRAFT-20225
NOAA-NMFS-2020-0031-DRAFT-20226
NOAA-NMFS-2020-0031-DRAFT-20227
NOAA-NMFS-2020-0031-DRAFT-20228
NOAA-NMFS-2020-0031-DRAFT-20229
NOAA-NMFS-2020-0031-DRAFT-20230
NOAA-NMFS-2020-0031-DRAFT-20231
NOAA-NMFS-2020-0031-DRAFT-20232
NOAA-NMFS-2020-0031-DRAFT-20233
NOAA-NMFS-2020-0031-DRAFT-20234
NOAA-NMFS-2020-0031-DRAFT-20235

Comment from Mary Crocker
Comment from James Byers
Comment from Marcia Meredith
Comment from Megan Wright
Comment from Marge Galloway
Comment from Stephen Roberson
Comment from Richard Petryk
Comment from Meredith Mohr
Comment from Renee McGrath
Comment from Lisa Goldman
Comment from Sandy Ellis
Comment from Robert Mark
Comment from Donald Houser
Comment from Cynthia Hautzinger
Comment from Betty Stewart
Comment from Erica Munn
Comment from Mary Ann Belshaw
Comment from steve shalaew
Comment from Juli Hamilton
Comment from Sylvia Briones
Comment from Linda Mullaney
Comment from Steven Biggio
Comment from Richard Wilkins
Comment from Sisse Jensen
Comment from Virgile Bobot
Comment from Hannah Curzio
Comment from david thomas
Comment from Diana Lewis
Comment from Ron Richter
Comment from Carolyn REPETA
Comment from Rudy Zeller
Comment from Lynda Hulsopple
Comment from Cris Quinn
Comment from Paula Harrington
Comment from Ralph Ferrara
Comment from Carrie Keske
Comment from Limor Zomer
Comment from Robert Neuzil
Comment from Edith Nash
Comment from Cynthia Ruder
Comment from Barbara Schittino

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NOAA-NMFS-2020-0031-DRAFT-15147
NOAA-NMFS-2020-0031-DRAFT-15148
NOAA-NMFS-2020-0031-DRAFT-15149
NOAA-NMFS-2020-0031-DRAFT-15150
NOAA-NMFS-2020-0031-DRAFT-15151
NOAA-NMFS-2020-0031-DRAFT-15152
NOAA-NMFS-2020-0031-DRAFT-15153
NOAA-NMFS-2020-0031-DRAFT-15154
NOAA-NMFS-2020-0031-DRAFT-15155
NOAA-NMFS-2020-0031-DRAFT-15156
NOAA-NMFS-2020-0031-DRAFT-15157
NOAA-NMFS-2020-0031-DRAFT-15158
NOAA-NMFS-2020-0031-DRAFT-15159
NOAA-NMFS-2020-0031-DRAFT-15160
NOAA-NMFS-2020-0031-DRAFT-15161
NOAA-NMFS-2020-0031-DRAFT-15162
NOAA-NMFS-2020-0031-DRAFT-15163
NOAA-NMFS-2020-0031-DRAFT-15164
NOAA-NMFS-2020-0031-DRAFT-15165
NOAA-NMFS-2020-0031-DRAFT-15166
NOAA-NMFS-2020-0031-DRAFT-15167
NOAA-NMFS-2020-0031-DRAFT-15168
NOAA-NMFS-2020-0031-DRAFT-15169
NOAA-NMFS-2020-0031-DRAFT-15170
NOAA-NMFS-2020-0031-DRAFT-15171
NOAA-NMFS-2020-0031-DRAFT-15172
NOAA-NMFS-2020-0031-DRAFT-15173
NOAA-NMFS-2020-0031-DRAFT-15174
NOAA-NMFS-2020-0031-DRAFT-15175
NOAA-NMFS-2020-0031-DRAFT-15177
NOAA-NMFS-2020-0031-DRAFT-15178
NOAA-NMFS-2020-0031-DRAFT-15179
NOAA-NMFS-2020-0031-DRAFT-15180
NOAA-NMFS-2020-0031-DRAFT-15181
NOAA-NMFS-2020-0031-DRAFT-15182
NOAA-NMFS-2020-0031-DRAFT-15183
NOAA-NMFS-2020-0031-DRAFT-15184
NOAA-NMFS-2020-0031-DRAFT-15185
NOAA-NMFS-2020-0031-DRAFT-15186
NOAA-NMFS-2020-0031-DRAFT-15187
NOAA-NMFS-2020-0031-DRAFT-15188

Comment from Havers, LuAnn
Comment from Shari Broyles
Comment from Swabb, Molly
Comment from Haberman, Chrystal
Comment from Runion, Keith
Comment from Gorski, Elizabeth
Comment from kiene, beth
Comment from naylor, john
Comment from Zech, Gisela
Comment from Ewing, Marianne
Comment from Spitzer, Sarah
Comment from Zappala, Sam
Comment from Olsgard, Christine
Comment from dunkum, john
Comment from C, L
Comment from Thomas, Toni
Comment from Derry, Bridget
Comment from Deans Smith, Susan
Comment from Aziz, Mark
Comment from Norlund, Rick and Sharon
Comment from Johnson, Elizabeth
Comment from Straus, Elizabeth
Comment from Sawyer, Holli
Comment from Johnson, Chad
Comment from Zelazo, Janice
Comment from McFadden, Stephanie
Comment from Wolf, Betsy
Comment from MITCHELL, SANDRA
Comment from Haas, Pamela
Comment from Grant, Renee
Comment from Rogers, Sherry
Comment from G, S
Comment from Field, Brian
Comment from Bruno, Linda
Comment from Byerly, Barbara
Comment from Rubin, Mary Jo
Comment from Voss, Craig
Comment from Patton, James
Comment from Honsberger, Chris
Comment from Newmark, Michelle
Comment from Diercks, Mary Ann

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NOAA-NMFS-2020-0031-DRAFT-20236
NOAA-NMFS-2020-0031-DRAFT-20237
NOAA-NMFS-2020-0031-DRAFT-20238
NOAA-NMFS-2020-0031-DRAFT-20239
NOAA-NMFS-2020-0031-DRAFT-20240
NOAA-NMFS-2020-0031-DRAFT-20241
NOAA-NMFS-2020-0031-DRAFT-20242
NOAA-NMFS-2020-0031-DRAFT-20243
NOAA-NMFS-2020-0031-DRAFT-20244
NOAA-NMFS-2020-0031-DRAFT-20245
NOAA-NMFS-2020-0031-DRAFT-20246
NOAA-NMFS-2020-0031-DRAFT-20247
NOAA-NMFS-2020-0031-DRAFT-20248
NOAA-NMFS-2020-0031-DRAFT-20249
NOAA-NMFS-2020-0031-DRAFT-20250
NOAA-NMFS-2020-0031-DRAFT-20251
NOAA-NMFS-2020-0031-DRAFT-20252
NOAA-NMFS-2020-0031-DRAFT-20253
NOAA-NMFS-2020-0031-DRAFT-20254
NOAA-NMFS-2020-0031-DRAFT-20255
NOAA-NMFS-2020-0031-DRAFT-20256
NOAA-NMFS-2020-0031-DRAFT-20257
NOAA-NMFS-2020-0031-DRAFT-20258
NOAA-NMFS-2020-0031-DRAFT-20259
NOAA-NMFS-2020-0031-DRAFT-20260
NOAA-NMFS-2020-0031-DRAFT-20261
NOAA-NMFS-2020-0031-DRAFT-20262
NOAA-NMFS-2020-0031-DRAFT-20263
NOAA-NMFS-2020-0031-DRAFT-20264
NOAA-NMFS-2020-0031-DRAFT-20265
NOAA-NMFS-2020-0031-DRAFT-20266
NOAA-NMFS-2020-0031-DRAFT-20267
NOAA-NMFS-2020-0031-DRAFT-20268
NOAA-NMFS-2020-0031-DRAFT-20269
NOAA-NMFS-2020-0031-DRAFT-20270
NOAA-NMFS-2020-0031-DRAFT-20271
NOAA-NMFS-2020-0031-DRAFT-20272
NOAA-NMFS-2020-0031-DRAFT-20273
NOAA-NMFS-2020-0031-DRAFT-20275
NOAA-NMFS-2020-0031-DRAFT-20276
NOAA-NMFS-2020-0031-DRAFT-20277

Comment from Kim Munchel
Comment from Tyler Miranda
Comment from Lenore Sivulich
Comment from Peter Sutherland
Comment from Mary Johnson
Comment from Zorina Weber
Comment from Laurel Tucker
Comment from Jamila Viandier
Comment from Rosina I
Comment from Erin Byrne
Comment from Todd Snyder
Comment from B.J. Herbison
Comment from Susan Esposito
Comment from Mariko Kahn
Comment from Susang Talamo Family
Comment from Cathy Martin
Comment from Jennifer Spirakis
Comment from Robert DeFerrante
Comment from Monika Seegler
Comment from Donald Barker
Comment from Christina Park
Comment from Melodie Middlebrooks
Comment from Julie Pierson
Comment from R Weiss
Comment from Sandra Schilling
Comment from James Mulcare
Comment from elizabeth gardner
Comment from Cheri Mattina
Comment from Devon Seltzer
Comment from Tyler Miranda
Comment from Tyler Miranda
Comment from Tyler Miranda
Comment from Richard Starling
Comment from Misty Ferrara
Comment from Laura Canino
Comment from Tim Barrington
Comment from K. Youmans
Comment from Nycolle Lfe
Comment from Deborah Goodman
Comment from Susan Bellevue
Comment from Janet Bindas

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NOAA-NMFS-2020-0031-DRAFT-15189
NOAA-NMFS-2020-0031-DRAFT-15190
NOAA-NMFS-2020-0031-DRAFT-15191
NOAA-NMFS-2020-0031-DRAFT-15192
NOAA-NMFS-2020-0031-DRAFT-15193
NOAA-NMFS-2020-0031-DRAFT-15194
NOAA-NMFS-2020-0031-DRAFT-15195
NOAA-NMFS-2020-0031-DRAFT-15196
NOAA-NMFS-2020-0031-DRAFT-15197
NOAA-NMFS-2020-0031-DRAFT-15198
NOAA-NMFS-2020-0031-DRAFT-15199
NOAA-NMFS-2020-0031-DRAFT-15200
NOAA-NMFS-2020-0031-DRAFT-15201
NOAA-NMFS-2020-0031-DRAFT-15202
NOAA-NMFS-2020-0031-DRAFT-15203
NOAA-NMFS-2020-0031-DRAFT-15204
NOAA-NMFS-2020-0031-DRAFT-15205
NOAA-NMFS-2020-0031-DRAFT-15206
NOAA-NMFS-2020-0031-DRAFT-15207
NOAA-NMFS-2020-0031-DRAFT-15208
NOAA-NMFS-2020-0031-DRAFT-15209
NOAA-NMFS-2020-0031-DRAFT-15210
NOAA-NMFS-2020-0031-DRAFT-15211
NOAA-NMFS-2020-0031-DRAFT-15212
NOAA-NMFS-2020-0031-DRAFT-15213
NOAA-NMFS-2020-0031-DRAFT-15214
NOAA-NMFS-2020-0031-DRAFT-15215
NOAA-NMFS-2020-0031-DRAFT-15216
NOAA-NMFS-2020-0031-DRAFT-15217
NOAA-NMFS-2020-0031-DRAFT-15218
NOAA-NMFS-2020-0031-DRAFT-15219
NOAA-NMFS-2020-0031-DRAFT-15220
NOAA-NMFS-2020-0031-DRAFT-15221
NOAA-NMFS-2020-0031-DRAFT-15222
NOAA-NMFS-2020-0031-DRAFT-15223
NOAA-NMFS-2020-0031-DRAFT-15224
NOAA-NMFS-2020-0031-DRAFT-15225
NOAA-NMFS-2020-0031-DRAFT-15226
NOAA-NMFS-2020-0031-DRAFT-15227
NOAA-NMFS-2020-0031-DRAFT-15228
NOAA-NMFS-2020-0031-DRAFT-15229

Comment from Steinberg, Eric
Comment from NOVAK, Suzie
Comment from Lindgren, Heather
Comment from Gallagher, Leslie
Comment from s, c
Comment from Giuliano, Matty
Comment from Jardine, Robert
Comment from Williams, Olivia
Comment from Boyd, Shauna
Comment from Hahler, Pamela
Comment from Potenza, Frank
Comment from Abbate, Shelley
Comment from Nelson, Debbie
Comment from McNamara, Nano
Comment from Halloran, Michael
Comment from Yamauchi, Saeko
Comment from Henches, Elizabeth
Comment from Rohrbaugh, Stephanie
Comment from Aime, Lynn
Comment from Herman, MariLynn
Comment from Ross, Sue
Comment from BOLEMBACH, KEVIN
Comment from Juliusson, Marguerite
Comment from Janney, Susan
Comment from riehart, dale
Comment from Grube, Craig
Comment from Johnson Anonymous
Comment from Hinkle, Janice
Comment from siebert Anonymous
Comment from Nemirow Anonymous
Comment from Smith Anonymous
Comment from Jacob, April
Comment from Albert, Anthony
Comment from Antrim Anonymous
Comment from Bailis Anonymous
Comment from Bagdonas Anonymous
Comment from Krupinski, K
Comment from Branson Anonymous
Comment from Sundarajan, Aditi
Comment from Gantz Anonymous
Comment from DeFranco Anonymous

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NOAA-NMFS-2020-0031-DRAFT-20278
NOAA-NMFS-2020-0031-DRAFT-20279
NOAA-NMFS-2020-0031-DRAFT-20280
NOAA-NMFS-2020-0031-DRAFT-20281
NOAA-NMFS-2020-0031-DRAFT-20282
NOAA-NMFS-2020-0031-DRAFT-20283
NOAA-NMFS-2020-0031-DRAFT-20284
NOAA-NMFS-2020-0031-DRAFT-20285
NOAA-NMFS-2020-0031-DRAFT-20286
NOAA-NMFS-2020-0031-DRAFT-20287
NOAA-NMFS-2020-0031-DRAFT-20288
NOAA-NMFS-2020-0031-DRAFT-20289
NOAA-NMFS-2020-0031-DRAFT-20290
NOAA-NMFS-2020-0031-DRAFT-20291
NOAA-NMFS-2020-0031-DRAFT-20292
NOAA-NMFS-2020-0031-DRAFT-20293
NOAA-NMFS-2020-0031-DRAFT-20294
NOAA-NMFS-2020-0031-DRAFT-20295
NOAA-NMFS-2020-0031-DRAFT-20296
NOAA-NMFS-2020-0031-DRAFT-20297
NOAA-NMFS-2020-0031-DRAFT-20298
NOAA-NMFS-2020-0031-DRAFT-20299
NOAA-NMFS-2020-0031-DRAFT-20300
NOAA-NMFS-2020-0031-DRAFT-20301
NOAA-NMFS-2020-0031-DRAFT-20302
NOAA-NMFS-2020-0031-DRAFT-20303
NOAA-NMFS-2020-0031-DRAFT-20304
NOAA-NMFS-2020-0031-DRAFT-20305
NOAA-NMFS-2020-0031-DRAFT-20306
NOAA-NMFS-2020-0031-DRAFT-20307
NOAA-NMFS-2020-0031-DRAFT-20308
NOAA-NMFS-2020-0031-DRAFT-20309
NOAA-NMFS-2020-0031-DRAFT-20311
NOAA-NMFS-2020-0031-DRAFT-20313
NOAA-NMFS-2020-0031-DRAFT-20314
NOAA-NMFS-2020-0031-DRAFT-20315
NOAA-NMFS-2020-0031-DRAFT-20316
NOAA-NMFS-2020-0031-DRAFT-20317
NOAA-NMFS-2020-0031-DRAFT-20318
NOAA-NMFS-2020-0031-DRAFT-20319
NOAA-NMFS-2020-0031-DRAFT-20320

Comment from Jean Fricano
Comment from Sandra Marquez-Hall
Comment from Curtis Tomlin
Comment from Janice Mackanic
Comment from Cathy Swanson
Comment from Doreen Smithwick
Comment from MIchele Johnson
Comment from Gene Fox
Comment from Donna Cohen
Comment from Mike Inganamort
Comment from Kevin Brehm
Comment from debbie stapleton
Comment from Joseph Klym
Comment from Robert Frank
Comment from ellen schecter
Comment from Laurel Eckert
Comment from Stacy Sarai
Comment from Gordon James
Comment from Robert Burns
Comment from Courtney Caligiuri
Comment from Steve Hartley
Comment from Sylvia Smithwick
Comment from Rose Elcsics
Comment from marina sagardua
Comment from claire cohen
Comment from DOUG FRITSCH
Comment from Ashley Wentzel
Comment from Jamie Perron
Comment from Stephanie Berry
Comment from Robert Rush
Comment from Fred Martin
Comment from Jacqueline Murtha
Comment from Pamela Kjono
Comment from Pia Vartabedian
Comment from Carol Davies
Comment from Brenda Robinson
Comment from Amber Murphy
Comment from Tammy Lettieri
Comment from Cindy Higgins
Comment from Liz Davis
Comment from Barbara Miller

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NOAA-NMFS-2020-0031-DRAFT-15230
NOAA-NMFS-2020-0031-DRAFT-15231
NOAA-NMFS-2020-0031-DRAFT-15232
NOAA-NMFS-2020-0031-DRAFT-15233
NOAA-NMFS-2020-0031-DRAFT-15234
NOAA-NMFS-2020-0031-DRAFT-15235
NOAA-NMFS-2020-0031-DRAFT-15236
NOAA-NMFS-2020-0031-DRAFT-15237
NOAA-NMFS-2020-0031-DRAFT-15238
NOAA-NMFS-2020-0031-DRAFT-15239
NOAA-NMFS-2020-0031-DRAFT-15240
NOAA-NMFS-2020-0031-DRAFT-15241
NOAA-NMFS-2020-0031-DRAFT-15242
NOAA-NMFS-2020-0031-DRAFT-15243
NOAA-NMFS-2020-0031-DRAFT-15244
NOAA-NMFS-2020-0031-DRAFT-15245
NOAA-NMFS-2020-0031-DRAFT-15246
NOAA-NMFS-2020-0031-DRAFT-15247
NOAA-NMFS-2020-0031-DRAFT-15248
NOAA-NMFS-2020-0031-DRAFT-15249
NOAA-NMFS-2020-0031-DRAFT-15250
NOAA-NMFS-2020-0031-DRAFT-15251
NOAA-NMFS-2020-0031-DRAFT-15252
NOAA-NMFS-2020-0031-DRAFT-15253
NOAA-NMFS-2020-0031-DRAFT-15254
NOAA-NMFS-2020-0031-DRAFT-15255
NOAA-NMFS-2020-0031-DRAFT-15256
NOAA-NMFS-2020-0031-DRAFT-15257
NOAA-NMFS-2020-0031-DRAFT-15258
NOAA-NMFS-2020-0031-DRAFT-15259
NOAA-NMFS-2020-0031-DRAFT-15260
NOAA-NMFS-2020-0031-DRAFT-15261
NOAA-NMFS-2020-0031-DRAFT-15262
NOAA-NMFS-2020-0031-DRAFT-15263
NOAA-NMFS-2020-0031-DRAFT-15264
NOAA-NMFS-2020-0031-DRAFT-15265
NOAA-NMFS-2020-0031-DRAFT-15266
NOAA-NMFS-2020-0031-DRAFT-15267
NOAA-NMFS-2020-0031-DRAFT-15268
NOAA-NMFS-2020-0031-DRAFT-15269
NOAA-NMFS-2020-0031-DRAFT-15270

Comment from Bedgood Anonymous
Comment from Smeltzer, Debra
Comment from Rausch Anonymous
Comment from Rivers, Karen
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lukes, Zachary
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Platte, Leigh
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Meeks Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Lourdes Caballero
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Jill Russo Downey
Comment from Tyra Pellerin
Comment from Alice Neuhauser
Comment from Sherry Davila
Comment from Denna Bowman
Comment from Diane Pierce
Comment from Helen Goodspeed
Comment from Bonnie Maloney
Comment from Leonard Piersialla
Comment from Thomas Conroy
Comment from Jamie Arbuckle
Comment from Ross Heckmann
Comment from Valeria Mola
Comment from Deborah Webb
Comment from Austin Stark
Comment from Jay Lewis
Comment from t b
Comment from Jill Mulato

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NOAA-NMFS-2020-0031-DRAFT-20321
NOAA-NMFS-2020-0031-DRAFT-20322
NOAA-NMFS-2020-0031-DRAFT-20323
NOAA-NMFS-2020-0031-DRAFT-20324
NOAA-NMFS-2020-0031-DRAFT-20325
NOAA-NMFS-2020-0031-DRAFT-20326
NOAA-NMFS-2020-0031-DRAFT-20327
NOAA-NMFS-2020-0031-DRAFT-20328
NOAA-NMFS-2020-0031-DRAFT-20329
NOAA-NMFS-2020-0031-DRAFT-20330
NOAA-NMFS-2020-0031-DRAFT-20331
NOAA-NMFS-2020-0031-DRAFT-20332
NOAA-NMFS-2020-0031-DRAFT-20333
NOAA-NMFS-2020-0031-DRAFT-20334
NOAA-NMFS-2020-0031-DRAFT-20335
NOAA-NMFS-2020-0031-DRAFT-20336
NOAA-NMFS-2020-0031-DRAFT-20337
NOAA-NMFS-2020-0031-DRAFT-20338
NOAA-NMFS-2020-0031-DRAFT-20339
NOAA-NMFS-2020-0031-DRAFT-20340
NOAA-NMFS-2020-0031-DRAFT-20341
NOAA-NMFS-2020-0031-DRAFT-20342
NOAA-NMFS-2020-0031-DRAFT-20343
NOAA-NMFS-2020-0031-DRAFT-20344
NOAA-NMFS-2020-0031-DRAFT-20345
NOAA-NMFS-2020-0031-DRAFT-20346
NOAA-NMFS-2020-0031-DRAFT-20347
NOAA-NMFS-2020-0031-DRAFT-20348
NOAA-NMFS-2020-0031-DRAFT-20349
NOAA-NMFS-2020-0031-DRAFT-20350
NOAA-NMFS-2020-0031-DRAFT-20351
NOAA-NMFS-2020-0031-DRAFT-20352
NOAA-NMFS-2020-0031-DRAFT-20354
NOAA-NMFS-2020-0031-DRAFT-20355
NOAA-NMFS-2020-0031-DRAFT-20356
NOAA-NMFS-2020-0031-DRAFT-20357
NOAA-NMFS-2020-0031-DRAFT-20358
NOAA-NMFS-2020-0031-DRAFT-20359
NOAA-NMFS-2020-0031-DRAFT-20360
NOAA-NMFS-2020-0031-DRAFT-20361
NOAA-NMFS-2020-0031-DRAFT-20362

Comment from Marta Reyes
Comment from Trena Anderson
Comment from Lynda Means
Comment from Mollie Vreeland
Comment from Anna Donnelly
Comment from maurice saunders
Comment from John Cairns
Comment from Jane Davidson
Comment from Susan Hastings
Comment from Robert Mitchell
Comment from Jean Saja
Comment from Harry Blumenthal
Comment from Angela Teixeira
Comment from Kathy Brigger
Comment from Janet Weissman
Comment from Sharon Hobrock
Comment from Carolyn Marion
Comment from Walt Koenig
Comment from karen korec
Comment from Christine Leeman
Comment from Fernando Robles
Comment from John Stark
Comment from Robert Hensman
Comment from Steven Sowell
Comment from Debora Hojda
Comment from Don Pew
Comment from Teresa Lyman
Comment from gabriele hollnd
Comment from Victor Alvarez Tapia
Comment from Linda Yaffe
Comment from Stephen Davie
Comment from Jan Shimp
Comment from Ronald Partridge
Comment from Tanja Rieger
Comment from Bechi Currier
Comment from Mara Wiley
Comment from Katherine O'Sullivan
Comment from Keely McLeod
Comment from Pat Vaselewski
Comment from John Costanzo
Comment from Kevin Silvey

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NOAA-NMFS-2020-0031-DRAFT-15271
NOAA-NMFS-2020-0031-DRAFT-15272
NOAA-NMFS-2020-0031-DRAFT-15273
NOAA-NMFS-2020-0031-DRAFT-15274
NOAA-NMFS-2020-0031-DRAFT-15275
NOAA-NMFS-2020-0031-DRAFT-15276
NOAA-NMFS-2020-0031-DRAFT-15277
NOAA-NMFS-2020-0031-DRAFT-15278
NOAA-NMFS-2020-0031-DRAFT-15279
NOAA-NMFS-2020-0031-DRAFT-15280
NOAA-NMFS-2020-0031-DRAFT-15281
NOAA-NMFS-2020-0031-DRAFT-15282
NOAA-NMFS-2020-0031-DRAFT-15283
NOAA-NMFS-2020-0031-DRAFT-15284
NOAA-NMFS-2020-0031-DRAFT-15285
NOAA-NMFS-2020-0031-DRAFT-15286
NOAA-NMFS-2020-0031-DRAFT-15287
NOAA-NMFS-2020-0031-DRAFT-15288
NOAA-NMFS-2020-0031-DRAFT-15289
NOAA-NMFS-2020-0031-DRAFT-15290
NOAA-NMFS-2020-0031-DRAFT-15291
NOAA-NMFS-2020-0031-DRAFT-15292
NOAA-NMFS-2020-0031-DRAFT-15293
NOAA-NMFS-2020-0031-DRAFT-15294
NOAA-NMFS-2020-0031-DRAFT-15295
NOAA-NMFS-2020-0031-DRAFT-15296
NOAA-NMFS-2020-0031-DRAFT-15297
NOAA-NMFS-2020-0031-DRAFT-15298
NOAA-NMFS-2020-0031-DRAFT-15299
NOAA-NMFS-2020-0031-DRAFT-15300
NOAA-NMFS-2020-0031-DRAFT-15301
NOAA-NMFS-2020-0031-DRAFT-15302
NOAA-NMFS-2020-0031-DRAFT-15303
NOAA-NMFS-2020-0031-DRAFT-15304
NOAA-NMFS-2020-0031-DRAFT-15305
NOAA-NMFS-2020-0031-DRAFT-15306
NOAA-NMFS-2020-0031-DRAFT-15307
NOAA-NMFS-2020-0031-DRAFT-15308
NOAA-NMFS-2020-0031-DRAFT-15309
NOAA-NMFS-2020-0031-DRAFT-15310
NOAA-NMFS-2020-0031-DRAFT-15311

Comment from Michelle Jorgensen
Comment from Diana Yee
Comment from Stacey Larson
Comment from Laurie Slatniske
Comment from Eric Naji
Comment from Scott Kennedy
Comment from Michael Carter
Comment from Kira Velella
Comment from Lynn Ryan
Comment from carrie harbison
Comment from Lisa Cubeiro
Comment from Mary Ferguson
Comment from Kathryn Massel
Comment from DeAnna Baier Barnes
Comment from Anne Marie Gorman
Comment from carol smythe
Comment from Lynda West
Comment from Kathleen Byrnes
Comment from Nancy Harter
Comment from Joyce Mays
Comment from Roxy Darling
Comment from Kristen Thomas
Comment from Sally Hodson
Comment from Joseph Folino Gallo
Comment from Edward Ott
Comment from Marilyn Clark
Comment from Jamelyn Purdy
Comment from Peggy Rollie
Comment from Linda Lane
Comment from Carol Kemmerer
Comment from Melvin Sheets
Comment from Julia Keating
Comment from Katharine Sommerfield
Comment from Wendy Lyden
Comment from nadine vergilia
Comment from Mike Smith
Comment from Jennifer Tulo
Comment from Kimberly Brandimarte
Comment from Margaret Silver
Comment from jeanette mayer
Comment from Caryl Speck

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NOAA-NMFS-2020-0031-DRAFT-20363
NOAA-NMFS-2020-0031-DRAFT-20364
NOAA-NMFS-2020-0031-DRAFT-20365
NOAA-NMFS-2020-0031-DRAFT-20366
NOAA-NMFS-2020-0031-DRAFT-20367
NOAA-NMFS-2020-0031-DRAFT-20368
NOAA-NMFS-2020-0031-DRAFT-20369
NOAA-NMFS-2020-0031-DRAFT-20370
NOAA-NMFS-2020-0031-DRAFT-20371
NOAA-NMFS-2020-0031-DRAFT-20372
NOAA-NMFS-2020-0031-DRAFT-20373
NOAA-NMFS-2020-0031-DRAFT-20374
NOAA-NMFS-2020-0031-DRAFT-20375
NOAA-NMFS-2020-0031-DRAFT-20376
NOAA-NMFS-2020-0031-DRAFT-20377
NOAA-NMFS-2020-0031-DRAFT-20378
NOAA-NMFS-2020-0031-DRAFT-20379
NOAA-NMFS-2020-0031-DRAFT-20380
NOAA-NMFS-2020-0031-DRAFT-20381
NOAA-NMFS-2020-0031-DRAFT-20382
NOAA-NMFS-2020-0031-DRAFT-20383
NOAA-NMFS-2020-0031-DRAFT-20384
NOAA-NMFS-2020-0031-DRAFT-20385
NOAA-NMFS-2020-0031-DRAFT-20386
NOAA-NMFS-2020-0031-DRAFT-20387
NOAA-NMFS-2020-0031-DRAFT-20388
NOAA-NMFS-2020-0031-DRAFT-20389
NOAA-NMFS-2020-0031-DRAFT-20390
NOAA-NMFS-2020-0031-DRAFT-20391
NOAA-NMFS-2020-0031-DRAFT-20392
NOAA-NMFS-2020-0031-DRAFT-20393
NOAA-NMFS-2020-0031-DRAFT-20394
NOAA-NMFS-2020-0031-DRAFT-20396
NOAA-NMFS-2020-0031-DRAFT-20397
NOAA-NMFS-2020-0031-DRAFT-20398
NOAA-NMFS-2020-0031-DRAFT-20399
NOAA-NMFS-2020-0031-DRAFT-20400
NOAA-NMFS-2020-0031-DRAFT-20401
NOAA-NMFS-2020-0031-DRAFT-20402
NOAA-NMFS-2020-0031-DRAFT-20403
NOAA-NMFS-2020-0031-DRAFT-20404

Comment from Betty Thomas
Comment from Elizabeth Nussbaumer
Comment from A.L. Hern
Comment from Michael Perez
Comment from Nellie Medlin
Comment from Mary Vorachek
Comment from Sheila Draughon
Comment from Joe Lopze
Comment from Angelika Braxton
Comment from Courtney Borley
Comment from Pam Longenecker
Comment from Anita Brandariz
Comment from Pat Pike-Dimel
Comment from Daniel Danner
Comment from Patricia Lewis
Comment from Denise Foehl
Comment from Andria Childs
Comment from Bonnie RN
Comment from Lowell Palm
Comment from Stacey Liguori
Comment from Stephanie Miller
Comment from Elizabeth Zumchak
Comment from Diana Boom
Comment from Lorianne Viglione Rose
Comment from Betty Lininger
Comment from Kim White
Comment from Michael Chamberlain
Comment from Ginnie Preuss
Comment from Byron Dale
Comment from Jacquelyn Digiovanni
Comment from Douglas Meacham
Comment from Lorraine Irvine
Comment from Mary Mann
Comment from Sue Counterman
Comment from Zonda Mercer
Comment from Susan Harmon
Comment from Cynthia Simms
Comment from Gregory Mattice
Comment from steven smereglia
Comment from Lisa Manthey
Comment from Susan Summers

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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15312
NOAA-NMFS-2020-0031-DRAFT-15313
NOAA-NMFS-2020-0031-DRAFT-15314
NOAA-NMFS-2020-0031-DRAFT-15315
NOAA-NMFS-2020-0031-DRAFT-15316
NOAA-NMFS-2020-0031-DRAFT-15317
NOAA-NMFS-2020-0031-DRAFT-15318
NOAA-NMFS-2020-0031-DRAFT-15319
NOAA-NMFS-2020-0031-DRAFT-15320
NOAA-NMFS-2020-0031-DRAFT-15321
NOAA-NMFS-2020-0031-DRAFT-15322
NOAA-NMFS-2020-0031-DRAFT-15323
NOAA-NMFS-2020-0031-DRAFT-15324
NOAA-NMFS-2020-0031-DRAFT-15325
NOAA-NMFS-2020-0031-DRAFT-15326
NOAA-NMFS-2020-0031-DRAFT-15327
NOAA-NMFS-2020-0031-DRAFT-15328
NOAA-NMFS-2020-0031-DRAFT-15329
NOAA-NMFS-2020-0031-DRAFT-15330
NOAA-NMFS-2020-0031-DRAFT-15331
NOAA-NMFS-2020-0031-DRAFT-15332
NOAA-NMFS-2020-0031-DRAFT-15333
NOAA-NMFS-2020-0031-DRAFT-15334
NOAA-NMFS-2020-0031-DRAFT-15335
NOAA-NMFS-2020-0031-DRAFT-15336
NOAA-NMFS-2020-0031-DRAFT-15337
NOAA-NMFS-2020-0031-DRAFT-15338
NOAA-NMFS-2020-0031-DRAFT-15339
NOAA-NMFS-2020-0031-DRAFT-15340
NOAA-NMFS-2020-0031-DRAFT-15341
NOAA-NMFS-2020-0031-DRAFT-15342
NOAA-NMFS-2020-0031-DRAFT-15343
NOAA-NMFS-2020-0031-DRAFT-15344
NOAA-NMFS-2020-0031-DRAFT-15345
NOAA-NMFS-2020-0031-DRAFT-15346
NOAA-NMFS-2020-0031-DRAFT-15347
NOAA-NMFS-2020-0031-DRAFT-15348
NOAA-NMFS-2020-0031-DRAFT-15349
NOAA-NMFS-2020-0031-DRAFT-15350
NOAA-NMFS-2020-0031-DRAFT-15351
NOAA-NMFS-2020-0031-DRAFT-15352

Comment from Amy Wrobel
Comment from Susan Rubin
Comment from Sherry Macias
Comment from MJ Jackson
Comment from Thomas Koslo
Comment from Monica Miranda
Comment from Leslie Smith
Comment from Robin Bernoski
Comment from shirley jenkins
Comment from Ronald Silver
Comment from Vivian Yost
Comment from Jennifer DeLoia
Comment from Susan Porter
Comment from Evelyn Lilly
Comment from George Hurst
Comment from d o
Comment from Karina Black
Comment from Glen Anderson
Comment from Berenice Cedillo
Comment from Cheryl Dzubak
Comment from Miriam Harris
Comment from Linda Barrientos
Comment from Georgia Mattingly
Comment from Brooke Stufflebeam
Comment from Catherine Milovina
Comment from Mykel Reese
Comment from l lee
Comment from Sherita Wilson
Comment from priscilla stephens
Comment from Debra Bouton
Comment from Linda Douglas
Comment from Ronald Drahos
Comment from Dennis Kreiner
Comment from Beniko Yamasaki
Comment from Deborah Acquisti
Comment from Bill Mclaughlin
Comment from Angela Porsch
Comment from Michael Kemper
Comment from Teresa Young
Comment from Adrienne Abbott
Comment from John Wiles

02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20405
NOAA-NMFS-2020-0031-DRAFT-20407
NOAA-NMFS-2020-0031-DRAFT-20410
NOAA-NMFS-2020-0031-DRAFT-20411
NOAA-NMFS-2020-0031-DRAFT-20412
NOAA-NMFS-2020-0031-DRAFT-20413
NOAA-NMFS-2020-0031-DRAFT-20414
NOAA-NMFS-2020-0031-DRAFT-20415
NOAA-NMFS-2020-0031-DRAFT-20416
NOAA-NMFS-2020-0031-DRAFT-20417
NOAA-NMFS-2020-0031-DRAFT-20418
NOAA-NMFS-2020-0031-DRAFT-20419
NOAA-NMFS-2020-0031-DRAFT-20420
NOAA-NMFS-2020-0031-DRAFT-20421
NOAA-NMFS-2020-0031-DRAFT-20422
NOAA-NMFS-2020-0031-DRAFT-20423
NOAA-NMFS-2020-0031-DRAFT-20424
NOAA-NMFS-2020-0031-DRAFT-20425
NOAA-NMFS-2020-0031-DRAFT-20426
NOAA-NMFS-2020-0031-DRAFT-20427
NOAA-NMFS-2020-0031-DRAFT-20428
NOAA-NMFS-2020-0031-DRAFT-20429
NOAA-NMFS-2020-0031-DRAFT-20430
NOAA-NMFS-2020-0031-DRAFT-20431
NOAA-NMFS-2020-0031-DRAFT-20432
NOAA-NMFS-2020-0031-DRAFT-20433
NOAA-NMFS-2020-0031-DRAFT-20434
NOAA-NMFS-2020-0031-DRAFT-20435
NOAA-NMFS-2020-0031-DRAFT-20436
NOAA-NMFS-2020-0031-DRAFT-20437
NOAA-NMFS-2020-0031-DRAFT-20438
NOAA-NMFS-2020-0031-DRAFT-20439
NOAA-NMFS-2020-0031-DRAFT-20440
NOAA-NMFS-2020-0031-DRAFT-20441
NOAA-NMFS-2020-0031-DRAFT-20442
NOAA-NMFS-2020-0031-DRAFT-20443
NOAA-NMFS-2020-0031-DRAFT-20444
NOAA-NMFS-2020-0031-DRAFT-20445
NOAA-NMFS-2020-0031-DRAFT-20446
NOAA-NMFS-2020-0031-DRAFT-20447
NOAA-NMFS-2020-0031-DRAFT-20448

Comment from Sharon Meagher
Comment from Deanne O'Donnell
Comment from Robbi Chisholm
Comment from Heidi Baird
Comment from Gregory Barton
Comment from Madison Hoover
Comment from Elizabeth Christensen
Comment from Stephanie Van Campen
Comment from Gary Barton
Comment from Cathleen Olsen
Comment from Chris Moore
Comment from Kathleen O'Sullivan
Comment from Cynthia Dudley
Comment from Gary Cornett
Comment from Kim Block
Comment from GARY MADOLE
Comment from Kathleen Espamer
Comment from Bonnie Clouser
Comment from Kim Smith
Comment from Elaine Cuttler
Comment from Stephen Evans
Comment from Laurie Storm
Comment from Susan Fox
Comment from Vivian Romano
Comment from Lance Kammerud
Comment from Cindy Bernard
Comment from Marc Moshman
Comment from J S
Comment from Arlene Zuckerman
Comment from Chereale Cormack
Comment from Mashawn Zimmerman
Comment from Suzanne Wooldridge
Comment from Lynn Eland
Comment from ROMULA NAVARRO
Comment from Jessica Stepp
Comment from Christina heldenbrand
Comment from Stephen Evans
Comment from Elena Jurgela
Comment from Patti Davis
Comment from Jen Manders-Raney
Comment from jeff burdoff

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15353
NOAA-NMFS-2020-0031-DRAFT-15354
NOAA-NMFS-2020-0031-DRAFT-15355
NOAA-NMFS-2020-0031-DRAFT-15356
NOAA-NMFS-2020-0031-DRAFT-15357
NOAA-NMFS-2020-0031-DRAFT-15358
NOAA-NMFS-2020-0031-DRAFT-15359
NOAA-NMFS-2020-0031-DRAFT-15360
NOAA-NMFS-2020-0031-DRAFT-15361
NOAA-NMFS-2020-0031-DRAFT-15362
NOAA-NMFS-2020-0031-DRAFT-15363
NOAA-NMFS-2020-0031-DRAFT-15364
NOAA-NMFS-2020-0031-DRAFT-15365
NOAA-NMFS-2020-0031-DRAFT-15366
NOAA-NMFS-2020-0031-DRAFT-15367
NOAA-NMFS-2020-0031-DRAFT-15368
NOAA-NMFS-2020-0031-DRAFT-15369
NOAA-NMFS-2020-0031-DRAFT-15370
NOAA-NMFS-2020-0031-DRAFT-15371
NOAA-NMFS-2020-0031-DRAFT-15372
NOAA-NMFS-2020-0031-DRAFT-15374
NOAA-NMFS-2020-0031-DRAFT-15375
NOAA-NMFS-2020-0031-DRAFT-15376
NOAA-NMFS-2020-0031-DRAFT-15377
NOAA-NMFS-2020-0031-DRAFT-15378
NOAA-NMFS-2020-0031-DRAFT-15379
NOAA-NMFS-2020-0031-DRAFT-15380
NOAA-NMFS-2020-0031-DRAFT-15381
NOAA-NMFS-2020-0031-DRAFT-15382
NOAA-NMFS-2020-0031-DRAFT-15383
NOAA-NMFS-2020-0031-DRAFT-15384
NOAA-NMFS-2020-0031-DRAFT-15385
NOAA-NMFS-2020-0031-DRAFT-15386
NOAA-NMFS-2020-0031-DRAFT-15387
NOAA-NMFS-2020-0031-DRAFT-15388
NOAA-NMFS-2020-0031-DRAFT-15389
NOAA-NMFS-2020-0031-DRAFT-15390
NOAA-NMFS-2020-0031-DRAFT-15391
NOAA-NMFS-2020-0031-DRAFT-15392
NOAA-NMFS-2020-0031-DRAFT-15393
NOAA-NMFS-2020-0031-DRAFT-15394

Comment from Stephen Taylor
Comment from Lisa Stone
Comment from Linda Millar
Comment from Suzanne Wright
Comment from Cathy Anderson
Comment from Robin Pappas
Comment from Michele Hondo
Comment from Sara Vevia
Comment from Janet Binette
Comment from M G Lind
Comment from Abbie Carrasco
Comment from DEBRA LANCIA
Comment from Jennifer Howenstine
Comment from Annie Fernald
Comment from Elisabeth Armendarez
Comment from Jackie Tryggeseth
Comment from Danielle M
Comment from Molly Brown
Comment from karen Francis
Comment from Dana Greathouse
Comment from Melissa McGaygirl
Comment from ron slosky
Comment from Patricia Oseroff
Comment from Laura Lidral
Comment from Eric Stiff
Comment from Alison Glennon
Comment from Tina Beedle
Comment from Joline Barth
Comment from Deborah Roney
Comment from Kathe Garbrick
Comment from Sheila Spencer
Comment from Brianne Evans
Comment from Anne Tuddenham
Comment from Rob Puc
Comment from Sophie Kyriacou
Comment from Bryon Sundberg
Comment from Charles Butler
Comment from Kelly Paulk
Comment from Alice Stehle
Comment from Gayle Evezich
Comment from Karen Esposito

02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20449
NOAA-NMFS-2020-0031-DRAFT-20450
NOAA-NMFS-2020-0031-DRAFT-20451
NOAA-NMFS-2020-0031-DRAFT-20452
NOAA-NMFS-2020-0031-DRAFT-20453
NOAA-NMFS-2020-0031-DRAFT-20455
NOAA-NMFS-2020-0031-DRAFT-20456
NOAA-NMFS-2020-0031-DRAFT-20458
NOAA-NMFS-2020-0031-DRAFT-20459
NOAA-NMFS-2020-0031-DRAFT-20460
NOAA-NMFS-2020-0031-DRAFT-20461
NOAA-NMFS-2020-0031-DRAFT-20462
NOAA-NMFS-2020-0031-DRAFT-20463
NOAA-NMFS-2020-0031-DRAFT-20464
NOAA-NMFS-2020-0031-DRAFT-20465
NOAA-NMFS-2020-0031-DRAFT-20466
NOAA-NMFS-2020-0031-DRAFT-20467
NOAA-NMFS-2020-0031-DRAFT-20468
NOAA-NMFS-2020-0031-DRAFT-20469
NOAA-NMFS-2020-0031-DRAFT-20471
NOAA-NMFS-2020-0031-DRAFT-20472
NOAA-NMFS-2020-0031-DRAFT-20473
NOAA-NMFS-2020-0031-DRAFT-20474
NOAA-NMFS-2020-0031-DRAFT-20475
NOAA-NMFS-2020-0031-DRAFT-20476
NOAA-NMFS-2020-0031-DRAFT-20477
NOAA-NMFS-2020-0031-DRAFT-20478
NOAA-NMFS-2020-0031-DRAFT-20479
NOAA-NMFS-2020-0031-DRAFT-20480
NOAA-NMFS-2020-0031-DRAFT-20481
NOAA-NMFS-2020-0031-DRAFT-20482
NOAA-NMFS-2020-0031-DRAFT-20483
NOAA-NMFS-2020-0031-DRAFT-20484
NOAA-NMFS-2020-0031-DRAFT-20485
NOAA-NMFS-2020-0031-DRAFT-20486
NOAA-NMFS-2020-0031-DRAFT-20487
NOAA-NMFS-2020-0031-DRAFT-20488
NOAA-NMFS-2020-0031-DRAFT-20489
NOAA-NMFS-2020-0031-DRAFT-20490
NOAA-NMFS-2020-0031-DRAFT-20491
NOAA-NMFS-2020-0031-DRAFT-20492

Comment from John Deddy
Comment from Mike McCool
Comment from Mark Weinberger
Comment from Brenda Priddy
Comment from Rose Magness
Comment from A Diamond
Comment from Kathi Ridgway
Comment from Hope Prather
Comment from Susan Grant
Comment from Karen Orner
Comment from Sharon Newman
Comment from JoElla Mang
Comment from teseo staffilani
Comment from Joanne Heiling
Comment from Judy Nalbandian
Comment from Mark van Rossen
Comment from Tina Stewart
Comment from Elizabeth Schauer
Comment from Norman Baker
Comment from Jane Thompson
Comment from kathy hilt
Comment from George Lewis
Comment from John Finazzo
Comment from Ursula Pelka
Comment from Kathy Bockelman
Comment from Robin McKay
Comment from Chris Loo
Comment from Timothy Schacht
Comment from Elisa Guss
Comment from William Anderson
Comment from Roger Cardillo
Comment from Monique Weatherspoon
Comment from William Rave
Comment from Robert Slomer
Comment from DIANA MCNAIR
Comment from Ann Bradshaw
Comment from Leona Klerer
Comment from Darleen Brown
Comment from Erin McCarty
Comment from Mike Van Dyne
Comment from marja leino

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15395
NOAA-NMFS-2020-0031-DRAFT-15396
NOAA-NMFS-2020-0031-DRAFT-15397
NOAA-NMFS-2020-0031-DRAFT-15398
NOAA-NMFS-2020-0031-DRAFT-15399
NOAA-NMFS-2020-0031-DRAFT-15400
NOAA-NMFS-2020-0031-DRAFT-15401
NOAA-NMFS-2020-0031-DRAFT-15402
NOAA-NMFS-2020-0031-DRAFT-15404
NOAA-NMFS-2020-0031-DRAFT-15405
NOAA-NMFS-2020-0031-DRAFT-15406
NOAA-NMFS-2020-0031-DRAFT-15407
NOAA-NMFS-2020-0031-DRAFT-15408
NOAA-NMFS-2020-0031-DRAFT-15409
NOAA-NMFS-2020-0031-DRAFT-15410
NOAA-NMFS-2020-0031-DRAFT-15411
NOAA-NMFS-2020-0031-DRAFT-15412
NOAA-NMFS-2020-0031-DRAFT-15413
NOAA-NMFS-2020-0031-DRAFT-15414
NOAA-NMFS-2020-0031-DRAFT-15415
NOAA-NMFS-2020-0031-DRAFT-15416
NOAA-NMFS-2020-0031-DRAFT-15417
NOAA-NMFS-2020-0031-DRAFT-15418
NOAA-NMFS-2020-0031-DRAFT-15419
NOAA-NMFS-2020-0031-DRAFT-15420
NOAA-NMFS-2020-0031-DRAFT-15421
NOAA-NMFS-2020-0031-DRAFT-15422
NOAA-NMFS-2020-0031-DRAFT-15423
NOAA-NMFS-2020-0031-DRAFT-15424
NOAA-NMFS-2020-0031-DRAFT-15425
NOAA-NMFS-2020-0031-DRAFT-15426
NOAA-NMFS-2020-0031-DRAFT-15427
NOAA-NMFS-2020-0031-DRAFT-15428
NOAA-NMFS-2020-0031-DRAFT-15429
NOAA-NMFS-2020-0031-DRAFT-15430
NOAA-NMFS-2020-0031-DRAFT-15431
NOAA-NMFS-2020-0031-DRAFT-15432
NOAA-NMFS-2020-0031-DRAFT-15433
NOAA-NMFS-2020-0031-DRAFT-15434
NOAA-NMFS-2020-0031-DRAFT-15436
NOAA-NMFS-2020-0031-DRAFT-15437

Comment from Janis Branneky
Comment from Flavia Pellizzari
Comment from Gina Cipriano
Comment from April A
Comment from Michelle MacKenzie
Comment from Natalie Thompson
Comment from Laura Rose Fortmueller
Comment from Jeannette Gavin
Comment from Deborah Spencer
Comment from Joe May
Comment from Natalie Clark
Comment from cathy crum
Comment from Becky Sorrells
Comment from Lawrence Hager
Comment from Laura Pennington
Comment from Stacey Mitchell
Comment from Deborah Shea
Comment from Karen Milstein
Comment from Anita McNamara
Comment from Susanne Schneider
Comment from Kathy Kelly
Comment from Janet SCHMIDTLEIN
Sparling
Comment from Pete Put
Comment from naomi cohen
Comment from Claudia Garouute
Comment from Sonja Nelson
Comment from Gail Wing
Comment from Lisa Thompson
Comment from Patricia Mondore
Comment from Phyllis Simon
Comment from Richard Jandoli
Comment from Barry Lazarus
Comment from Frederick Hamilton
Comment from Mary Roma
Comment from Robin Sternburg
Comment from Steffie Curth
Comment from Thomas Crothers
Comment from Marguerite Winkel
Comment from Susan Cerniglia
Comment from Catherine McNamara
Comment from James Duff

02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20493
NOAA-NMFS-2020-0031-DRAFT-20494
NOAA-NMFS-2020-0031-DRAFT-20495
NOAA-NMFS-2020-0031-DRAFT-20496
NOAA-NMFS-2020-0031-DRAFT-20497
NOAA-NMFS-2020-0031-DRAFT-20498
NOAA-NMFS-2020-0031-DRAFT-20499
NOAA-NMFS-2020-0031-DRAFT-20500
NOAA-NMFS-2020-0031-DRAFT-20501
NOAA-NMFS-2020-0031-DRAFT-20502
NOAA-NMFS-2020-0031-DRAFT-20503
NOAA-NMFS-2020-0031-DRAFT-20504
NOAA-NMFS-2020-0031-DRAFT-20505
NOAA-NMFS-2020-0031-DRAFT-20507
NOAA-NMFS-2020-0031-DRAFT-20508
NOAA-NMFS-2020-0031-DRAFT-20509
NOAA-NMFS-2020-0031-DRAFT-20510
NOAA-NMFS-2020-0031-DRAFT-20511
NOAA-NMFS-2020-0031-DRAFT-20512
NOAA-NMFS-2020-0031-DRAFT-20513
NOAA-NMFS-2020-0031-DRAFT-20514
NOAA-NMFS-2020-0031-DRAFT-20515
NOAA-NMFS-2020-0031-DRAFT-20516
NOAA-NMFS-2020-0031-DRAFT-20517
NOAA-NMFS-2020-0031-DRAFT-20518
NOAA-NMFS-2020-0031-DRAFT-20519
NOAA-NMFS-2020-0031-DRAFT-20520
NOAA-NMFS-2020-0031-DRAFT-20521
NOAA-NMFS-2020-0031-DRAFT-20522
NOAA-NMFS-2020-0031-DRAFT-20523
NOAA-NMFS-2020-0031-DRAFT-20524
NOAA-NMFS-2020-0031-DRAFT-20525
NOAA-NMFS-2020-0031-DRAFT-20526
NOAA-NMFS-2020-0031-DRAFT-20527
NOAA-NMFS-2020-0031-DRAFT-20528
NOAA-NMFS-2020-0031-DRAFT-20529
NOAA-NMFS-2020-0031-DRAFT-20530
NOAA-NMFS-2020-0031-DRAFT-20531
NOAA-NMFS-2020-0031-DRAFT-20532
NOAA-NMFS-2020-0031-DRAFT-20533
NOAA-NMFS-2020-0031-DRAFT-20534

Comment from Jessica Halverson
Comment from Susan Messerschmitt
Comment from Barbara Kates
Comment from Laura Manz
Comment from C Keating
Comment from Donna Ennis
Comment from Cynthia Murphy
Comment from chris lewis
Comment from Mary Baier
Comment from Pamela Wilber
Comment from Nancy Saad
Comment from Sarah Meyers
Comment from Lena Williams
Comment from Daniel Miller
Comment from Myles Hunt
Comment from Chris Aldrich
Comment from Patricia Lewis
Comment from Tiffany Piscitello
Comment from Etta Robin
Comment from Maura Scherrer
Comment from Jacqueline Palumbo
Comment from Karen Foley
Comment from Isabel Vanover
Comment from Mary Levan
Comment from William Jones
Comment from Gina Marie Sapanaro
Comment from Annemarie Nauert
Comment from Marley McDermott
Comment from Judy McDonald
Comment from Gail Haaz
Comment from Nina Davis
Comment from Bonita Lockhart
Comment from Nikki Burkett
Comment from David Wassilak
Comment from Lisa Mulrane
Comment from Jeanine Werntz
Comment from Lisa Lashaway
Comment from Nancy Drockelman
Comment from Sharon Haney
Comment from Colleen Keegan
Comment from Jill Alibrandi

Received Date
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-20535
NOAA-NMFS-2020-0031-DRAFT-20536
NOAA-NMFS-2020-0031-DRAFT-20537
NOAA-NMFS-2020-0031-DRAFT-20538
NOAA-NMFS-2020-0031-DRAFT-20539
NOAA-NMFS-2020-0031-DRAFT-20540
NOAA-NMFS-2020-0031-DRAFT-20541
NOAA-NMFS-2020-0031-DRAFT-20542
NOAA-NMFS-2020-0031-DRAFT-20543
NOAA-NMFS-2020-0031-DRAFT-20544
NOAA-NMFS-2020-0031-DRAFT-20545
NOAA-NMFS-2020-0031-DRAFT-20546
NOAA-NMFS-2020-0031-DRAFT-20547
NOAA-NMFS-2020-0031-DRAFT-20548
NOAA-NMFS-2020-0031-DRAFT-20549
NOAA-NMFS-2020-0031-DRAFT-20550
NOAA-NMFS-2020-0031-DRAFT-20551
NOAA-NMFS-2020-0031-DRAFT-20552
NOAA-NMFS-2020-0031-DRAFT-20553
NOAA-NMFS-2020-0031-DRAFT-20554
NOAA-NMFS-2020-0031-DRAFT-20555
NOAA-NMFS-2020-0031-DRAFT-20556
NOAA-NMFS-2020-0031-DRAFT-20557
NOAA-NMFS-2020-0031-DRAFT-20558
NOAA-NMFS-2020-0031-DRAFT-20559
NOAA-NMFS-2020-0031-DRAFT-20560
NOAA-NMFS-2020-0031-DRAFT-20561
NOAA-NMFS-2020-0031-DRAFT-20563
NOAA-NMFS-2020-0031-DRAFT-20564
NOAA-NMFS-2020-0031-DRAFT-20565
NOAA-NMFS-2020-0031-DRAFT-20566
NOAA-NMFS-2020-0031-DRAFT-20567
NOAA-NMFS-2020-0031-DRAFT-20568
NOAA-NMFS-2020-0031-DRAFT-20569
NOAA-NMFS-2020-0031-DRAFT-20570
NOAA-NMFS-2020-0031-DRAFT-20571
NOAA-NMFS-2020-0031-DRAFT-20572
NOAA-NMFS-2020-0031-DRAFT-20573
NOAA-NMFS-2020-0031-DRAFT-20574
NOAA-NMFS-2020-0031-DRAFT-20575

Title
Comment from Elizabeth Oliver
Comment from Francisca Blackburne
Comment from Angela Wilkinson
Comment from Ellen Jessen
Comment from Alan Kennedy
Comment from Mark Miller
Comment from Joshua Wallman
Comment from Bonnie Roscinski
Comment from Marcia Grabowski
Comment from Alison Zyla
Comment from John Adams
Comment from Jerilyn Sackler
Comment from scott Finamore
Comment from Priscilla Mezrahi
Comment from Anna Wibalda
Comment from Heather Keast
Comment from James Glucroft
Comment from Carol Elder
Comment from Karen Spradlin
Comment from Karynn Merkel
Comment from Mary Ellen Milesnick
Comment from Melissa & Steven Lawrence
Comment from jera petersen
Comment from Barry Greenhill
Comment from Diann Rose
Comment from Aline Rosenzweig
Comment from Toni Kimmel
Comment from Yvonne Albrecht
Comment from Tony M
Comment from Bonnie Smith
Comment from Robert Reed
Comment from Melissa Bishop
Comment from Lorin Swinehart
Comment from Pam Rensch
Comment from Jamie Fairchild
Comment from Joan Smelkinson
Comment from Beth Stauber
Comment from Jordan Fixler
Comment from Peggy Fergus
Comment from Craig Voss

Date
02/26/2021
02/26/2021
02/26/2021
02/26/2021
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02/26/2021
02/26/2021
02/26/2021
02/26/2021
02/26/2021

Original Document ID
NOAA-NMFS-2020-0031-DRAFT-25753
NOAA-NMFS-2020-0031-DRAFT-25754
NOAA-NMFS-2020-0031-DRAFT-25755
NOAA-NMFS-2020-0031-DRAFT-25756
NOAA-NMFS-2020-0031-DRAFT-25757
NOAA-NMFS-2020-0031-DRAFT-25758
NOAA-NMFS-2020-0031-DRAFT-25759
NOAA-NMFS-2020-0031-DRAFT-25760
NOAA-NMFS-2020-0031-DRAFT-25761
NOAA-NMFS-2020-0031-DRAFT-25762
NOAA-NMFS-2020-0031-DRAFT-25763
NOAA-NMFS-2020-0031-DRAFT-25764
NOAA-NMFS-2020-0031-DRAFT-25765
NOAA-NMFS-2020-0031-DRAFT-25766
NOAA-NMFS-2020-0031-DRAFT-25767
NOAA-NMFS-2020-0031-DRAFT-25768
NOAA-NMFS-2020-0031-DRAFT-25769
NOAA-NMFS-2020-0031-DRAFT-25770
NOAA-NMFS-2020-0031-DRAFT-25771
NOAA-NMFS-2020-0031-DRAFT-25776
NOAA-NMFS-2020-0031-DRAFT-25777
NOAA-NMFS-2020-0031-DRAFT-25778
NOAA-NMFS-2020-0031-DRAFT-25779
NOAA-NMFS-2020-0031-DRAFT-25780
NOAA-NMFS-2020-0031-DRAFT-25781
NOAA-NMFS-2020-0031-DRAFT-25782
NOAA-NMFS-2020-0031-DRAFT-25783
NOAA-NMFS-2020-0031-DRAFT-25784
NOAA-NMFS-2020-0031-DRAFT-25785
NOAA-NMFS-2020-0031-DRAFT-25786
NOAA-NMFS-2020-0031-DRAFT-25787
NOAA-NMFS-2020-0031-DRAFT-25788
NOAA-NMFS-2020-0031-DRAFT-25789
NOAA-NMFS-2020-0031-DRAFT-25790
NOAA-NMFS-2020-0031-DRAFT-25791
NOAA-NMFS-2020-0031-DRAFT-25792
NOAA-NMFS-2020-0031-DRAFT-25793
NOAA-NMFS-2020-0031-DRAFT-25794
NOAA-NMFS-2020-0031-DRAFT-25795
NOAA-NMFS-2020-0031-DRAFT-25796

Title
Comment from Harris, Brenda
Comment from Fisher, Susan
Comment from Henriques, Claudio
Comment from Henriques, Heloisa
Comment from Ruiz, Shirley
Comment from Mattos, Claudio
Comment from Mattos, Heloisa
Comment from Johnson, T.
Comment from Simoes, Claudio
Comment from massey, carolyn
Comment from Murdock, Lauren
Comment from Tscheiner, Kathy
Comment from Countryman, Sarah
Comment from Childers, MaryLouise
Comment from Dixon , Staci
Comment from Carson, Glenn and Debbie
Comment from Turner, Ashley
Comment from Lewis, Nancy
Comment from McMullen, Laura
Comment from Hawkins , Diana
Comment from Hong, Kit Yee
Comment from Rodriguez , Ange9
Comment from Enriquez, Mireya
Comment from levin, cathyelizabeth
Comment from Goldberg, James
Comment from Herrmann, Kerstin
Comment from LANDRY, ELIZABETH
Comment from Stone, Julie
Comment from Faulks, Lea
Comment from Reed, Claudia
Comment from McNamara, Andrew
Comment from Tibbett, Jillian
Comment from Rimestad, Pat
Comment from Voloshin, Lara
Comment from Followill, Peter
Comment from Kidder, Lynn
Comment from Bosh, Kyle
Comment from Hein, Laurie
Comment from Goncalves, Anita
Comment from levin, cathyelizabeth

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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20576
NOAA-NMFS-2020-0031-DRAFT-20577
NOAA-NMFS-2020-0031-DRAFT-20578
NOAA-NMFS-2020-0031-DRAFT-20579
NOAA-NMFS-2020-0031-DRAFT-20580
NOAA-NMFS-2020-0031-DRAFT-20581
NOAA-NMFS-2020-0031-DRAFT-20582
NOAA-NMFS-2020-0031-DRAFT-20583
NOAA-NMFS-2020-0031-DRAFT-20584
NOAA-NMFS-2020-0031-DRAFT-20585
NOAA-NMFS-2020-0031-DRAFT-20586
NOAA-NMFS-2020-0031-DRAFT-20587
NOAA-NMFS-2020-0031-DRAFT-20588
NOAA-NMFS-2020-0031-DRAFT-20589
NOAA-NMFS-2020-0031-DRAFT-20590
NOAA-NMFS-2020-0031-DRAFT-20591
NOAA-NMFS-2020-0031-DRAFT-20592
NOAA-NMFS-2020-0031-DRAFT-20593
NOAA-NMFS-2020-0031-DRAFT-20594
NOAA-NMFS-2020-0031-DRAFT-20595
NOAA-NMFS-2020-0031-DRAFT-20596
NOAA-NMFS-2020-0031-DRAFT-20597
NOAA-NMFS-2020-0031-DRAFT-20598
NOAA-NMFS-2020-0031-DRAFT-20599
NOAA-NMFS-2020-0031-DRAFT-20600
NOAA-NMFS-2020-0031-DRAFT-20601
NOAA-NMFS-2020-0031-DRAFT-20602
NOAA-NMFS-2020-0031-DRAFT-20603
NOAA-NMFS-2020-0031-DRAFT-20604
NOAA-NMFS-2020-0031-DRAFT-20605
NOAA-NMFS-2020-0031-DRAFT-20606
NOAA-NMFS-2020-0031-DRAFT-20607
NOAA-NMFS-2020-0031-DRAFT-20608
NOAA-NMFS-2020-0031-DRAFT-20609
NOAA-NMFS-2020-0031-DRAFT-20610
NOAA-NMFS-2020-0031-DRAFT-20611
NOAA-NMFS-2020-0031-DRAFT-20612
NOAA-NMFS-2020-0031-DRAFT-20613
NOAA-NMFS-2020-0031-DRAFT-20614
NOAA-NMFS-2020-0031-DRAFT-20615
NOAA-NMFS-2020-0031-DRAFT-20616

Comment from Adrienne Whyte
Comment from Kat Bowley
Comment from Dawn DiBlasi
Comment from allie palmer
Comment from Angele Pettinato
Comment from Christine Hutchison
Comment from Kate Million
Comment from michele martin
Comment from Sue Rosenbach
Comment from Barbara Foster
Comment from Bob Moyer
Comment from Lisa Angell
Comment from Bill Stahl
Comment from Gail Stewart-Iles
Comment from yolonda cooper
Comment from Kian Daniel
Comment from Gabriel Bobek
Comment from Nancy Bauer
Comment from Jo seller
Comment from Robin Clark
Comment from Ginny Nolan
Comment from Dade Snellgrove
Comment from Kathie Takush
Comment from James Corrigan
Comment from M F
Comment from Debra Elder
Comment from Richard Compagni
Comment from Kathie Bruscia
Comment from Lynn Killam
Comment from margith MAUGHAN
Comment from Mark Johnsen
Comment from Sabina Gross
Comment from Diane Verna
Comment from Loralee Brown
Comment from Elizabeth Ashby
Comment from Tanya Manning
Comment from Mary Guard
Comment from Elizabeth Thomas
Comment from L Yes
Comment from K Caspers
Comment from Karen Sawicki

02/26/2021
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NOAA-NMFS-2020-0031-DRAFT-25797
NOAA-NMFS-2020-0031-DRAFT-25798
NOAA-NMFS-2020-0031-DRAFT-25799
NOAA-NMFS-2020-0031-DRAFT-25800
NOAA-NMFS-2020-0031-DRAFT-25801
NOAA-NMFS-2020-0031-DRAFT-25802
NOAA-NMFS-2020-0031-DRAFT-25803
NOAA-NMFS-2020-0031-DRAFT-25805
NOAA-NMFS-2020-0031-DRAFT-25806
NOAA-NMFS-2020-0031-DRAFT-25807
NOAA-NMFS-2020-0031-DRAFT-25808
NOAA-NMFS-2020-0031-DRAFT-25809
NOAA-NMFS-2020-0031-DRAFT-25810
NOAA-NMFS-2020-0031-DRAFT-25811
NOAA-NMFS-2020-0031-DRAFT-25812
NOAA-NMFS-2020-0031-DRAFT-25813
NOAA-NMFS-2020-0031-DRAFT-25814
NOAA-NMFS-2020-0031-DRAFT-25815
NOAA-NMFS-2020-0031-DRAFT-25816
NOAA-NMFS-2020-0031-DRAFT-25817
NOAA-NMFS-2020-0031-DRAFT-25818
NOAA-NMFS-2020-0031-DRAFT-25819
NOAA-NMFS-2020-0031-DRAFT-25820
NOAA-NMFS-2020-0031-DRAFT-25821
NOAA-NMFS-2020-0031-DRAFT-25822
NOAA-NMFS-2020-0031-DRAFT-25823
NOAA-NMFS-2020-0031-DRAFT-25824
NOAA-NMFS-2020-0031-DRAFT-25825
NOAA-NMFS-2020-0031-DRAFT-25826
NOAA-NMFS-2020-0031-DRAFT-25827
NOAA-NMFS-2020-0031-DRAFT-25828
NOAA-NMFS-2020-0031-DRAFT-25829
NOAA-NMFS-2020-0031-DRAFT-25830
NOAA-NMFS-2020-0031-DRAFT-25831
NOAA-NMFS-2020-0031-DRAFT-25832
NOAA-NMFS-2020-0031-DRAFT-25833
NOAA-NMFS-2020-0031-DRAFT-25834
NOAA-NMFS-2020-0031-DRAFT-25835
NOAA-NMFS-2020-0031-DRAFT-25836
NOAA-NMFS-2020-0031-DRAFT-25837
NOAA-NMFS-2020-0031-DRAFT-25838

Comment from Payne, Geneine
Comment from Brutzman, Joseph
Comment from Rawlinson, Deborah
Comment from Sawyer, Rebecca
Comment from Schuna, Ramona
Comment from Mason , Rhonda
Comment from Benge, Laura
Comment from Guthrie, Linda
Comment from Miller, Lee
Comment from Grunden, Kim
Comment from Moomaw, Shelley
Comment from Gupta, Raju
Comment from K., Miriam
Comment from Guyer, Margaret
Comment from Rrwin, Kelly
Comment from DEL RIO, DIANA
Comment from Johnson, Ann
Comment from Serra, Thomas and Linda
Comment from Sandoval , Esmeralda
Comment from guest, michael
Comment from Dagher, Carrie
Comment from Walker, C
Comment from Saracini, Deborah
Comment from Black, Vicki
Comment from Goldman, Brenda
Comment from Nicholes, Linda
Comment from Buri, Matt
Comment from Fiore, Frank
Comment from Carlson, Peggy
Comment from Hottle , Susan
Comment from TAGLIA, DEBRA
Comment from Doyle, Frank M
Comment from Hay, Marilyn
Comment from Allen, III, Doug
Comment from Bravo, Oly
Comment from Wood, Martha
Comment from Hixson, Leslie
Comment from Kirk, Roberta
Comment from Raich, Denise
Comment from Beville, Richard
Comment from Merritt DO, Lindsey

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NOAA-NMFS-2020-0031-DRAFT-20617
NOAA-NMFS-2020-0031-DRAFT-20618
NOAA-NMFS-2020-0031-DRAFT-20619
NOAA-NMFS-2020-0031-DRAFT-20620
NOAA-NMFS-2020-0031-DRAFT-20621
NOAA-NMFS-2020-0031-DRAFT-20622
NOAA-NMFS-2020-0031-DRAFT-20623
NOAA-NMFS-2020-0031-DRAFT-20624
NOAA-NMFS-2020-0031-DRAFT-20625
NOAA-NMFS-2020-0031-DRAFT-20626
NOAA-NMFS-2020-0031-DRAFT-20627
NOAA-NMFS-2020-0031-DRAFT-20628
NOAA-NMFS-2020-0031-DRAFT-20629
NOAA-NMFS-2020-0031-DRAFT-20630
NOAA-NMFS-2020-0031-DRAFT-20631
NOAA-NMFS-2020-0031-DRAFT-20632
NOAA-NMFS-2020-0031-DRAFT-20633
NOAA-NMFS-2020-0031-DRAFT-20634
NOAA-NMFS-2020-0031-DRAFT-20635
NOAA-NMFS-2020-0031-DRAFT-20636
NOAA-NMFS-2020-0031-DRAFT-20637
NOAA-NMFS-2020-0031-DRAFT-20638
NOAA-NMFS-2020-0031-DRAFT-20639
NOAA-NMFS-2020-0031-DRAFT-20640
NOAA-NMFS-2020-0031-DRAFT-20641
NOAA-NMFS-2020-0031-DRAFT-20642
NOAA-NMFS-2020-0031-DRAFT-20643
NOAA-NMFS-2020-0031-DRAFT-20644
NOAA-NMFS-2020-0031-DRAFT-20645
NOAA-NMFS-2020-0031-DRAFT-20646
NOAA-NMFS-2020-0031-DRAFT-20647
NOAA-NMFS-2020-0031-DRAFT-20648
NOAA-NMFS-2020-0031-DRAFT-20649
NOAA-NMFS-2020-0031-DRAFT-20650
NOAA-NMFS-2020-0031-DRAFT-20651
NOAA-NMFS-2020-0031-DRAFT-20652
NOAA-NMFS-2020-0031-DRAFT-20653
NOAA-NMFS-2020-0031-DRAFT-20654
NOAA-NMFS-2020-0031-DRAFT-20655
NOAA-NMFS-2020-0031-DRAFT-20656
NOAA-NMFS-2020-0031-DRAFT-20657

Comment from Shawn Troxell
Comment from Dawn Lee
Comment from cathy arnett
Comment from barb aylward
Comment from Jeanette Allen
Comment from Jodi Cavanaugh
Comment from Alison Roth
Comment from Cynthia Sampson
Comment from Elizabeth Tuminski
Comment from Tina Lynch
Comment from Richard Groff
Comment from Louise Rickard
Comment from Kelly Garbato
Comment from Peter Lee
Comment from Marianne Tolken
Comment from Barbara Delgado
Comment from Paula ihne
Comment from Nancy Griffin
Comment from Allen Gibas
Comment from Kenneth Ruby
Comment from Tammy Kelly
Comment from Valerle Leonard
Comment from Gail Roberts
Comment from Sylvie Renaudot
Comment from Eric Crouch
Comment from William Wakerley
Comment from Laura Ames
Comment from jenn fields
Comment from Scott Grubb
Comment from Diane McJunkin
Comment from priscilla smith
Comment from Dave Frank
Comment from George Schneider
Comment from Merritt Tilley
Comment from Jennifer Laval
Comment from S Repp
Comment from Dan Cappello
Comment from Bridget Chapman
Comment from patricia holbrook
Comment from Jeff Montejo
Comment from Mandi Mason

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02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-25839
NOAA-NMFS-2020-0031-DRAFT-25840
NOAA-NMFS-2020-0031-DRAFT-25841
NOAA-NMFS-2020-0031-DRAFT-25842
NOAA-NMFS-2020-0031-DRAFT-25843
NOAA-NMFS-2020-0031-DRAFT-25844
NOAA-NMFS-2020-0031-DRAFT-25845
NOAA-NMFS-2020-0031-DRAFT-25846
NOAA-NMFS-2020-0031-DRAFT-25847
NOAA-NMFS-2020-0031-DRAFT-25848
NOAA-NMFS-2020-0031-DRAFT-25849
NOAA-NMFS-2020-0031-DRAFT-25850
NOAA-NMFS-2020-0031-DRAFT-25851
NOAA-NMFS-2020-0031-DRAFT-25852
NOAA-NMFS-2020-0031-DRAFT-25853
NOAA-NMFS-2020-0031-DRAFT-25854
NOAA-NMFS-2020-0031-DRAFT-25855
NOAA-NMFS-2020-0031-DRAFT-25856
NOAA-NMFS-2020-0031-DRAFT-25857
NOAA-NMFS-2020-0031-DRAFT-25858
NOAA-NMFS-2020-0031-DRAFT-25859
NOAA-NMFS-2020-0031-DRAFT-25860
NOAA-NMFS-2020-0031-DRAFT-25861
NOAA-NMFS-2020-0031-DRAFT-25862
NOAA-NMFS-2020-0031-DRAFT-25863
NOAA-NMFS-2020-0031-DRAFT-25864
NOAA-NMFS-2020-0031-DRAFT-25865
NOAA-NMFS-2020-0031-DRAFT-25866
NOAA-NMFS-2020-0031-DRAFT-25867
NOAA-NMFS-2020-0031-DRAFT-25868
NOAA-NMFS-2020-0031-DRAFT-25869
NOAA-NMFS-2020-0031-DRAFT-25870
NOAA-NMFS-2020-0031-DRAFT-25871
NOAA-NMFS-2020-0031-DRAFT-25872
NOAA-NMFS-2020-0031-DRAFT-25873
NOAA-NMFS-2020-0031-DRAFT-25874
NOAA-NMFS-2020-0031-DRAFT-25875
NOAA-NMFS-2020-0031-DRAFT-25876
NOAA-NMFS-2020-0031-DRAFT-25877
NOAA-NMFS-2020-0031-DRAFT-25878
NOAA-NMFS-2020-0031-DRAFT-25879

Comment from Srichan , Tanitsara
Comment from Handsaker, Heidi
Comment from mainiero, joanne
Comment from Gibson, Katherine
Dr. Robert and Ginny
Comment from Fearing, Christine
Comment from Bresk, Helena
Comment from ellis, anne
Comment from Mastrandrea, Deborah
Comment from Haney-Mcdonald, Cynthia
Comment from Dattilo, Geri
Comment from Schultz, Walter
Comment from Brunton, Jim
Comment from Caldwell, Yogi
Comment from Arbetman, Alacoque
Comment from Holguin , Carla
Comment from Caldwell, Yogi
Comment from Arbetman, Stephen
Comment from schwartz , becca
Comment from Overend, Michael
Comment from Yurchuck, Ruth
Comment from C, nicole
Comment from Lee, Vena
Comment from Vartanian, Donna
Comment from Church, Philip
Comment from Durbin, Kira
Comment from DGSFD, GDFSGH
Comment from Wade, Jesse
Comment from Jackson, Barbara
Comment from Lord, Christopher
Comment from Schmidt, Lindsay
Comment from N, Michelle
Comment from Avila, Dayana
Comment from Ingham, Mark
Comment from Carlan, Melvina
Comment from Arthofer, Klaudia
Comment from Arthofer, Klaudia
Comment from valdez, antoinette
Comment from Notte, Nick
Comment from Viator, Louise
Comment from Gallagher , Pamela

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02/18/2021
02/18/2021
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02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20658
NOAA-NMFS-2020-0031-DRAFT-20659
NOAA-NMFS-2020-0031-DRAFT-20660
NOAA-NMFS-2020-0031-DRAFT-20661
NOAA-NMFS-2020-0031-DRAFT-20662
NOAA-NMFS-2020-0031-DRAFT-20663
NOAA-NMFS-2020-0031-DRAFT-20664
NOAA-NMFS-2020-0031-DRAFT-20665
NOAA-NMFS-2020-0031-DRAFT-20666
NOAA-NMFS-2020-0031-DRAFT-20667
NOAA-NMFS-2020-0031-DRAFT-20668
NOAA-NMFS-2020-0031-DRAFT-20669
NOAA-NMFS-2020-0031-DRAFT-20670
NOAA-NMFS-2020-0031-DRAFT-20671
NOAA-NMFS-2020-0031-DRAFT-20672
NOAA-NMFS-2020-0031-DRAFT-20673
NOAA-NMFS-2020-0031-DRAFT-20674
NOAA-NMFS-2020-0031-DRAFT-20675
NOAA-NMFS-2020-0031-DRAFT-20676
NOAA-NMFS-2020-0031-DRAFT-20677
NOAA-NMFS-2020-0031-DRAFT-20678
NOAA-NMFS-2020-0031-DRAFT-20679
NOAA-NMFS-2020-0031-DRAFT-20680
NOAA-NMFS-2020-0031-DRAFT-20681
NOAA-NMFS-2020-0031-DRAFT-20682
NOAA-NMFS-2020-0031-DRAFT-20683
NOAA-NMFS-2020-0031-DRAFT-20684
NOAA-NMFS-2020-0031-DRAFT-20685
NOAA-NMFS-2020-0031-DRAFT-20686
NOAA-NMFS-2020-0031-DRAFT-20687
NOAA-NMFS-2020-0031-DRAFT-20688
NOAA-NMFS-2020-0031-DRAFT-20689
NOAA-NMFS-2020-0031-DRAFT-20690
NOAA-NMFS-2020-0031-DRAFT-20691
NOAA-NMFS-2020-0031-DRAFT-20692
NOAA-NMFS-2020-0031-DRAFT-20693
NOAA-NMFS-2020-0031-DRAFT-20694
NOAA-NMFS-2020-0031-DRAFT-20695
NOAA-NMFS-2020-0031-DRAFT-20696
NOAA-NMFS-2020-0031-DRAFT-20697
NOAA-NMFS-2020-0031-DRAFT-20698

Comment from Steven Carpenter
Comment from Melinda Elkins
Comment from Scott Thurman
Comment from Bharat Adarkar
Comment from Kipp Wessel
Comment from Diana Donovan
Comment from Suzanne Dean
Comment from rio valencia
Comment from Doug Terry
Comment from Renee Rivard
Comment from Tara Spellman
Comment from jenn fields
Comment from Paul Collins
Comment from Dina Balint
Comment from Mitzi Frank
Comment from Angela Stuebben
Comment from Diane Bugliarelli
Comment from Pamela Vasquez
Comment from Lin Provost
Comment from Michele Fischer
Comment from Roseann Trezza
Comment from Lisa Pezzella
Comment from Alina Parera
Comment from Carol Reilly
Comment from Lynda Dawson
Comment from Zoe Strassfield
Comment from E. Wixson
Comment from Ryan ONeill
Comment from Gloria Taylor
Comment from Laura Rich
Comment from Michelle Lang
Comment from Marisa Morales
Comment from Patricia Ritter
Comment from Herb Lowrance
Comment from Laura Ray
Comment from Bill Pipes
Comment from Bridget Lynch
Comment from Ward Giblin
Comment from Ashley Brown
Comment from janna giacoppo
Comment from Gary Bender

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02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-25880
NOAA-NMFS-2020-0031-DRAFT-25881
NOAA-NMFS-2020-0031-DRAFT-25882
NOAA-NMFS-2020-0031-DRAFT-25883
NOAA-NMFS-2020-0031-DRAFT-25884
NOAA-NMFS-2020-0031-DRAFT-25885
NOAA-NMFS-2020-0031-DRAFT-25886
NOAA-NMFS-2020-0031-DRAFT-25887
NOAA-NMFS-2020-0031-DRAFT-25888
NOAA-NMFS-2020-0031-DRAFT-25889
NOAA-NMFS-2020-0031-DRAFT-25890
NOAA-NMFS-2020-0031-DRAFT-25891
NOAA-NMFS-2020-0031-DRAFT-25892
NOAA-NMFS-2020-0031-DRAFT-25893
NOAA-NMFS-2020-0031-DRAFT-25894
NOAA-NMFS-2020-0031-DRAFT-25895
NOAA-NMFS-2020-0031-DRAFT-25896
NOAA-NMFS-2020-0031-DRAFT-25897
NOAA-NMFS-2020-0031-DRAFT-25898
NOAA-NMFS-2020-0031-DRAFT-25899
NOAA-NMFS-2020-0031-DRAFT-25900
NOAA-NMFS-2020-0031-DRAFT-25901
NOAA-NMFS-2020-0031-DRAFT-25902
NOAA-NMFS-2020-0031-DRAFT-25903
NOAA-NMFS-2020-0031-DRAFT-25904
NOAA-NMFS-2020-0031-DRAFT-25905
NOAA-NMFS-2020-0031-DRAFT-25906
NOAA-NMFS-2020-0031-DRAFT-25907
NOAA-NMFS-2020-0031-DRAFT-25908
NOAA-NMFS-2020-0031-DRAFT-25909
NOAA-NMFS-2020-0031-DRAFT-25910
NOAA-NMFS-2020-0031-DRAFT-25911
NOAA-NMFS-2020-0031-DRAFT-25915
NOAA-NMFS-2020-0031-DRAFT-25916
NOAA-NMFS-2020-0031-DRAFT-25917
NOAA-NMFS-2020-0031-DRAFT-25918
NOAA-NMFS-2020-0031-DRAFT-25919
NOAA-NMFS-2020-0031-DRAFT-25920
NOAA-NMFS-2020-0031-DRAFT-25921
NOAA-NMFS-2020-0031-DRAFT-25922
NOAA-NMFS-2020-0031-DRAFT-25923

Comment from Sardar, Lucimar
Comment from White, Trina
Comment from Davis, Laura
Comment from Hayes, Mary Ann
Comment from LOCKARD, VALERIE
Comment from Rea, Linda
Comment from Kultgen, Karry
Comment from erikson, justin
Comment from Gillam, Deborah
Comment from Klein, Lisa
Comment from Clark , Alicia
Comment from Caputo, Michael
Comment from Startseva, Irina
Comment from Turner, Bernadine
Comment from Sipulski, Marcia
Comment from Myers, Linda
Comment from Turner, Bernadine
Comment from Carter, Catherine
Comment from Andersen, Chantal
Comment from Kolar , Judy
Comment from Cleary, Annette
Comment from cessari, fulvio
Comment from Gorman, Robert
Comment from Garcia, Nuria
Comment from Brennan, Marina
Comment from sanchez, henry
Comment from Russo, Melissa
Comment from Flynn-Williams, Patricia
Comment from sanchez, karen
Comment from Ella (she, her, hers), Jean
Comment from Winburn, Tammie
Comment from Musser,gJ
y
Management Council
Comment from Mallet, Hector
Comment from Beard, Bob
Comment from Bohley, Christine
Comment from Houser, Matt
Comment from FIGUEROA, dANIEL
Comment from Newkirk, Robyn
Comment from Sanecki, Janice
Comment from Hendrickson, Dan

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NOAA-NMFS-2020-0031-DRAFT-20699
NOAA-NMFS-2020-0031-DRAFT-20700
NOAA-NMFS-2020-0031-DRAFT-20701
NOAA-NMFS-2020-0031-DRAFT-20702
NOAA-NMFS-2020-0031-DRAFT-20703
NOAA-NMFS-2020-0031-DRAFT-20704
NOAA-NMFS-2020-0031-DRAFT-20705
NOAA-NMFS-2020-0031-DRAFT-20706
NOAA-NMFS-2020-0031-DRAFT-20707
NOAA-NMFS-2020-0031-DRAFT-20708
NOAA-NMFS-2020-0031-DRAFT-20709
NOAA-NMFS-2020-0031-DRAFT-20710
NOAA-NMFS-2020-0031-DRAFT-20711
NOAA-NMFS-2020-0031-DRAFT-20712
NOAA-NMFS-2020-0031-DRAFT-20713
NOAA-NMFS-2020-0031-DRAFT-20714
NOAA-NMFS-2020-0031-DRAFT-20715
NOAA-NMFS-2020-0031-DRAFT-20716
NOAA-NMFS-2020-0031-DRAFT-20717
NOAA-NMFS-2020-0031-DRAFT-20718
NOAA-NMFS-2020-0031-DRAFT-20719
NOAA-NMFS-2020-0031-DRAFT-20720
NOAA-NMFS-2020-0031-DRAFT-20721
NOAA-NMFS-2020-0031-DRAFT-20722
NOAA-NMFS-2020-0031-DRAFT-20724
NOAA-NMFS-2020-0031-DRAFT-20725
NOAA-NMFS-2020-0031-DRAFT-20726
NOAA-NMFS-2020-0031-DRAFT-20727
NOAA-NMFS-2020-0031-DRAFT-20728
NOAA-NMFS-2020-0031-DRAFT-20729
NOAA-NMFS-2020-0031-DRAFT-20731
NOAA-NMFS-2020-0031-DRAFT-20732
NOAA-NMFS-2020-0031-DRAFT-20733
NOAA-NMFS-2020-0031-DRAFT-20734
NOAA-NMFS-2020-0031-DRAFT-20735
NOAA-NMFS-2020-0031-DRAFT-20736
NOAA-NMFS-2020-0031-DRAFT-20737
NOAA-NMFS-2020-0031-DRAFT-20738
NOAA-NMFS-2020-0031-DRAFT-20739
NOAA-NMFS-2020-0031-DRAFT-20740
NOAA-NMFS-2020-0031-DRAFT-20742

Comment from Judith Major
Comment from Lisa Garbarino
Comment from JILL KOTCH
Comment from Dorene Randall
Comment from Frances Rove
Comment from Michael Bordenave
Comment from Michael Muscato
Comment from Ellen Peck
Comment from Shel Neu
Comment from Maureen Kenny
Comment from Jacquelyn Scioscia
Comment from Chey Richmond
Comment from Annette Straubinger
Comment from Annette Tuzzolino Czachor
Comment from Dawne Santopietro
Comment from CATHY WALLACH
Comment from Eileen Patch
Comment from Bonnie Mitchell
Comment from janet maker
Comment from Patricia Maher
Comment from Shirley Bensetler
Comment from Bruce Bryant
Comment from Erin Neubauer
Comment from Wendelin Giebel
Comment from Julie Beer
Comment from Kimm Carter
Comment from Karen Wonders
Comment from Barbara Tillman
Comment from Michael Wallace
Comment from Janette Durant
Comment from Tim Lewandowski
Comment from George Wilder
Comment from Nancy Rupp
Comment from Patrick Eggleston
Comment from Donna Larschan
Comment from Janise Fitzpatrick
Comment from Katherine Ransier
Comment from Raffaella Selvaggio
Comment from Jennifer Emerle Sifuentes
Comment from Michele Temple
Comment from Dave Baine

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NOAA-NMFS-2020-0031-DRAFT-25925
NOAA-NMFS-2020-0031-DRAFT-25926
NOAA-NMFS-2020-0031-DRAFT-25927
NOAA-NMFS-2020-0031-DRAFT-25928
NOAA-NMFS-2020-0031-DRAFT-25929
NOAA-NMFS-2020-0031-DRAFT-25930
NOAA-NMFS-2020-0031-DRAFT-25931
NOAA-NMFS-2020-0031-DRAFT-25932
NOAA-NMFS-2020-0031-DRAFT-25933
NOAA-NMFS-2020-0031-DRAFT-25934
NOAA-NMFS-2020-0031-DRAFT-25935
NOAA-NMFS-2020-0031-DRAFT-25936
NOAA-NMFS-2020-0031-DRAFT-25937
NOAA-NMFS-2020-0031-DRAFT-25938
NOAA-NMFS-2020-0031-DRAFT-25939
NOAA-NMFS-2020-0031-DRAFT-25940
NOAA-NMFS-2020-0031-DRAFT-25941
NOAA-NMFS-2020-0031-DRAFT-25942
NOAA-NMFS-2020-0031-DRAFT-25943
NOAA-NMFS-2020-0031-DRAFT-25944
NOAA-NMFS-2020-0031-DRAFT-25945
NOAA-NMFS-2020-0031-DRAFT-25946
NOAA-NMFS-2020-0031-DRAFT-25947
NOAA-NMFS-2020-0031-DRAFT-25948
NOAA-NMFS-2020-0031-DRAFT-25949
NOAA-NMFS-2020-0031-DRAFT-25950
NOAA-NMFS-2020-0031-DRAFT-25951
NOAA-NMFS-2020-0031-DRAFT-25952
NOAA-NMFS-2020-0031-DRAFT-25953
NOAA-NMFS-2020-0031-DRAFT-25954
NOAA-NMFS-2020-0031-DRAFT-25955
NOAA-NMFS-2020-0031-DRAFT-25956
NOAA-NMFS-2020-0031-DRAFT-25957
NOAA-NMFS-2020-0031-DRAFT-25958
NOAA-NMFS-2020-0031-DRAFT-25959
NOAA-NMFS-2020-0031-DRAFT-25960
NOAA-NMFS-2020-0031-DRAFT-25961
NOAA-NMFS-2020-0031-DRAFT-25962
NOAA-NMFS-2020-0031-DRAFT-25963
NOAA-NMFS-2020-0031-DRAFT-25964
NOAA-NMFS-2020-0031-DRAFT-25965

Comment from Conlan, Colleen
Comment from Talerico, Alicia
Comment from Szulc-Flissi, Susan
Comment from Eudy, Elaine
Comment from Geest, Astrid
Comment from White, Cynthia
Comment from Adler, Davis
Comment from Townsend, Cheryl
Comment from Dyck, CHERYL
Comment from Lee, Myra
Comment from Sherman, Ken
Comment from Horan, Teresa
Comment from Freeman, Antoinette
Comment from McGoldrick, William
Comment from Hesse, Susanne
Comment from Senft, Rebecca
Comment from Winters, Jonie
Comment from Bethea, Janine
Comment from Dyer, Doug
Comment from Beale, Carolyn
Comment from Leinicke, Sally
Comment from Ussini, Monique
Comment from Fitzgerald, Kevin
Comment from Rosenblatt, Carrie
Comment from Ward, Darryl
Comment from Prichard, Phillip
Comment from Alvarez, Maria T.
Comment from Howard, Gloria J
Comment from Narayan, Frances
Comment from Gowland, Kathe
Comment from Anonymous Anonymous
Comment from Claire, Claire
Comment from Ballah, Joan
Comment from Lakin, Justine
Comment from Byrd, James
Comment from chitto, Elizabeth
Comment from Allison, Candace
Comment from Klepek, Lisa
Comment from pynn, doug
Comment from McClean, Sharman
Comment from Martin, Melody

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NOAA-NMFS-2020-0031-DRAFT-20743
NOAA-NMFS-2020-0031-DRAFT-20744
NOAA-NMFS-2020-0031-DRAFT-20745
NOAA-NMFS-2020-0031-DRAFT-20746
NOAA-NMFS-2020-0031-DRAFT-20747
NOAA-NMFS-2020-0031-DRAFT-20748
NOAA-NMFS-2020-0031-DRAFT-20749
NOAA-NMFS-2020-0031-DRAFT-20750
NOAA-NMFS-2020-0031-DRAFT-20751
NOAA-NMFS-2020-0031-DRAFT-20752
NOAA-NMFS-2020-0031-DRAFT-20753
NOAA-NMFS-2020-0031-DRAFT-20754
NOAA-NMFS-2020-0031-DRAFT-20755
NOAA-NMFS-2020-0031-DRAFT-20756
NOAA-NMFS-2020-0031-DRAFT-20757
NOAA-NMFS-2020-0031-DRAFT-20758
NOAA-NMFS-2020-0031-DRAFT-20759
NOAA-NMFS-2020-0031-DRAFT-20760
NOAA-NMFS-2020-0031-DRAFT-20761
NOAA-NMFS-2020-0031-DRAFT-20762
NOAA-NMFS-2020-0031-DRAFT-20763
NOAA-NMFS-2020-0031-DRAFT-20764
NOAA-NMFS-2020-0031-DRAFT-20765
NOAA-NMFS-2020-0031-DRAFT-20766
NOAA-NMFS-2020-0031-DRAFT-20767
NOAA-NMFS-2020-0031-DRAFT-20768
NOAA-NMFS-2020-0031-DRAFT-20769
NOAA-NMFS-2020-0031-DRAFT-20770
NOAA-NMFS-2020-0031-DRAFT-20771
NOAA-NMFS-2020-0031-DRAFT-20772
NOAA-NMFS-2020-0031-DRAFT-20773
NOAA-NMFS-2020-0031-DRAFT-20774
NOAA-NMFS-2020-0031-DRAFT-20775
NOAA-NMFS-2020-0031-DRAFT-20776
NOAA-NMFS-2020-0031-DRAFT-20777
NOAA-NMFS-2020-0031-DRAFT-20778
NOAA-NMFS-2020-0031-DRAFT-20779
NOAA-NMFS-2020-0031-DRAFT-20780
NOAA-NMFS-2020-0031-DRAFT-20781
NOAA-NMFS-2020-0031-DRAFT-20782
NOAA-NMFS-2020-0031-DRAFT-20783

Comment from Sonny Chen
Comment from Kevin Kimmel
Comment from Lynn Diakogiannakis
Comment from Hillary Tiefer
Comment from Rebecca Tucker
Comment from BK Young
Comment from Lynn Merle
Comment from Robin Coleman
Comment from Angelisse Santiago
Comment from Kari Mueller
Comment from Tiffany Deal
Comment from Roger Nelson
Comment from Andrea Smith
Comment from Marsha Jarvis
Comment from craig rhoads
Comment from Diane Fulcher
Comment from Esmeralda Sandoval
Comment from Patricia Mctigue
Comment from Andrea Smith
Comment from Thomas Peel
Comment from Lisa Hurley
Comment from Ken Loehlein
Comment from Philip Hipps
Comment from Christina Robertson
Comment from margo wyse
Comment from Jeannette Vieg
Comment from Cheryl Carnahan
Comment from Ellen Fleishman
Comment from Lynne Russert
Comment from Beth Freeman
Comment from Daniel Wood
Comment from arline lohli
Comment from Joan Smith
Comment from Peter Wood
Comment from William Achramowicz
Comment from Maxine Bernstein
Comment from Suzanne Claggett
Comment from Linda Leonard
Comment from Justin Rauzon
Comment from Julia Serrago
Comment from Emily Haggerty

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02/26/2021

NOAA-NMFS-2020-0031-DRAFT-25966
NOAA-NMFS-2020-0031-DRAFT-25967
NOAA-NMFS-2020-0031-DRAFT-25968
NOAA-NMFS-2020-0031-DRAFT-25969
NOAA-NMFS-2020-0031-DRAFT-25970
NOAA-NMFS-2020-0031-DRAFT-25971
NOAA-NMFS-2020-0031-DRAFT-25972
NOAA-NMFS-2020-0031-DRAFT-25973
NOAA-NMFS-2020-0031-DRAFT-25974
NOAA-NMFS-2020-0031-DRAFT-25975
NOAA-NMFS-2020-0031-DRAFT-25976
NOAA-NMFS-2020-0031-DRAFT-25977
NOAA-NMFS-2020-0031-DRAFT-25978
NOAA-NMFS-2020-0031-DRAFT-25979
NOAA-NMFS-2020-0031-DRAFT-25980
NOAA-NMFS-2020-0031-DRAFT-25981
NOAA-NMFS-2020-0031-DRAFT-25982
NOAA-NMFS-2020-0031-DRAFT-25983
NOAA-NMFS-2020-0031-DRAFT-25984
NOAA-NMFS-2020-0031-DRAFT-25985
NOAA-NMFS-2020-0031-DRAFT-25986
NOAA-NMFS-2020-0031-DRAFT-25987
NOAA-NMFS-2020-0031-DRAFT-25988
NOAA-NMFS-2020-0031-DRAFT-25989
NOAA-NMFS-2020-0031-DRAFT-25990
NOAA-NMFS-2020-0031-DRAFT-25991
NOAA-NMFS-2020-0031-DRAFT-25992
NOAA-NMFS-2020-0031-DRAFT-25993
NOAA-NMFS-2020-0031-DRAFT-25994
NOAA-NMFS-2020-0031-DRAFT-25995
NOAA-NMFS-2020-0031-DRAFT-25996
NOAA-NMFS-2020-0031-DRAFT-25997
NOAA-NMFS-2020-0031-DRAFT-25998
NOAA-NMFS-2020-0031-DRAFT-25999
NOAA-NMFS-2020-0031-DRAFT-26000
NOAA-NMFS-2020-0031-DRAFT-26001
NOAA-NMFS-2020-0031-DRAFT-26002
NOAA-NMFS-2020-0031-DRAFT-26003
NOAA-NMFS-2020-0031-DRAFT-26004
NOAA-NMFS-2020-0031-DRAFT-26005
NOAA-NMFS-2020-0031-DRAFT-26006

Comment from Paul, Abigail
Comment from Putman, Holly
Comment from Stith , Doni
Comment from Smith , Debbie
Comment from MARSHALL??, CRYSTAL??
Comment from Burke, John
Comment from Chasteen, Donald
Comment from JEFFERES, ELISSA
Comment from Yurkanin, Eric
Comment from Plishka , Debra
Comment from V, M
Comment from Travers , Cheryl
Comment from Carlson, April
Comment from Douglas-Holt, Rochelle
Comment from Hartwig Sr., Daniel
Comment from kleen, james
Comment from Sowa, Marilyn
Comment from Hodges, E
Comment from Zavodny, Cassie
Comment from Skiada, Chrysanthi
Comment from Oguni, Justin
Comment from Hudgins-Manzel, Kathleen
Comment from Speer, Rich
Comment from Nicol, Tiffany
Comment from Crowley, Mark
Comment from Cramer, Marilyn
Comment from Marwick , Jean Ann
Comment from Moore, Shabaka
Comment from Hunter, Nan
Comment from Darden, Paula
Comment from Smyth, Linda
Comment from Boura, Teodora
Comment from Lange, Chris
Comment from Meyer, Michelle
Comment from Radoccia, Judy
Comment from Chase, Capt tara
Comment from Christensen, Debra
Comment from Whyman, John
Comment from Esker, Minna
Comment from Koritz, Mark
Comment from Reynolds, Patricia

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02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20784
NOAA-NMFS-2020-0031-DRAFT-20785
NOAA-NMFS-2020-0031-DRAFT-20786
NOAA-NMFS-2020-0031-DRAFT-20787
NOAA-NMFS-2020-0031-DRAFT-20788
NOAA-NMFS-2020-0031-DRAFT-20789
NOAA-NMFS-2020-0031-DRAFT-20790
NOAA-NMFS-2020-0031-DRAFT-20791
NOAA-NMFS-2020-0031-DRAFT-20792
NOAA-NMFS-2020-0031-DRAFT-20793
NOAA-NMFS-2020-0031-DRAFT-20795
NOAA-NMFS-2020-0031-DRAFT-20796
NOAA-NMFS-2020-0031-DRAFT-20797
NOAA-NMFS-2020-0031-DRAFT-20798
NOAA-NMFS-2020-0031-DRAFT-20799
NOAA-NMFS-2020-0031-DRAFT-20800
NOAA-NMFS-2020-0031-DRAFT-20801
NOAA-NMFS-2020-0031-DRAFT-20802
NOAA-NMFS-2020-0031-DRAFT-20803
NOAA-NMFS-2020-0031-DRAFT-20804
NOAA-NMFS-2020-0031-DRAFT-20805
NOAA-NMFS-2020-0031-DRAFT-20806
NOAA-NMFS-2020-0031-DRAFT-20807
NOAA-NMFS-2020-0031-DRAFT-20808
NOAA-NMFS-2020-0031-DRAFT-20809
NOAA-NMFS-2020-0031-DRAFT-20810
NOAA-NMFS-2020-0031-DRAFT-20811
NOAA-NMFS-2020-0031-DRAFT-20812
NOAA-NMFS-2020-0031-DRAFT-20813
NOAA-NMFS-2020-0031-DRAFT-20814
NOAA-NMFS-2020-0031-DRAFT-20815
NOAA-NMFS-2020-0031-DRAFT-20816
NOAA-NMFS-2020-0031-DRAFT-20817
NOAA-NMFS-2020-0031-DRAFT-20818
NOAA-NMFS-2020-0031-DRAFT-20819
NOAA-NMFS-2020-0031-DRAFT-20820
NOAA-NMFS-2020-0031-DRAFT-20821
NOAA-NMFS-2020-0031-DRAFT-20822
NOAA-NMFS-2020-0031-DRAFT-20823
NOAA-NMFS-2020-0031-DRAFT-20824
NOAA-NMFS-2020-0031-DRAFT-20825

Comment from Cat Smith
Comment from Phyllis Perna
Comment from Nancy Dillard
Comment from RICHARD AMERLING
Comment from Sara Murray
Comment from Cass Bielski
Comment from Michelle Yarber
Comment from Diane Arnal
Comment from Jody Coakley
Comment from Arleen Ferrell
Comment from Kathy Lynn
Comment from James +Yvonne Tittle
Comment from SHELLEY STEFANIC
Comment from Richard Grooms
Comment from Karen and Allen Perry
Comment from Marie zimmerman
Comment from Lenise Mitchell
Comment from Ericka Kohn
Comment from Robin Martin
Comment from Kathleen Medina
Comment from Joan Conca
Comment from Theresa Waldspurger
Comment from Scott Cecile
Comment from Mark Huckel
Comment from Dawn Longo
Comment from Marianne White
Comment from Linda Ross
Comment from Neville Bruce
Comment from Donald Mackay
Comment from William Roberson
Comment from Leslene Dunn
Comment from Danya Kuperstein
Comment from Oly bravo
Comment from Julie Christensen
Comment from Lewis Gould
Comment from Carlos Acosta
Comment from Daniel Cole
Comment from Maureen Swiss
Comment from Jeffrey Roughgarden
Comment from Lorie Mc Cracken
Comment from lauren becker

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NOAA-NMFS-2020-0031-DRAFT-26007
NOAA-NMFS-2020-0031-DRAFT-26008
NOAA-NMFS-2020-0031-DRAFT-26009
NOAA-NMFS-2020-0031-DRAFT-26010
NOAA-NMFS-2020-0031-DRAFT-26011
NOAA-NMFS-2020-0031-DRAFT-26012
NOAA-NMFS-2020-0031-DRAFT-26013
NOAA-NMFS-2020-0031-DRAFT-26014
NOAA-NMFS-2020-0031-DRAFT-26015
NOAA-NMFS-2020-0031-DRAFT-26016
NOAA-NMFS-2020-0031-DRAFT-26017
NOAA-NMFS-2020-0031-DRAFT-26018
NOAA-NMFS-2020-0031-DRAFT-26019
NOAA-NMFS-2020-0031-DRAFT-26020
NOAA-NMFS-2020-0031-DRAFT-26021
NOAA-NMFS-2020-0031-DRAFT-26022
NOAA-NMFS-2020-0031-DRAFT-26023
NOAA-NMFS-2020-0031-DRAFT-26024
NOAA-NMFS-2020-0031-DRAFT-26025
NOAA-NMFS-2020-0031-DRAFT-26026
NOAA-NMFS-2020-0031-DRAFT-26027
NOAA-NMFS-2020-0031-DRAFT-26028
NOAA-NMFS-2020-0031-DRAFT-26029
NOAA-NMFS-2020-0031-DRAFT-26030
NOAA-NMFS-2020-0031-DRAFT-26031
NOAA-NMFS-2020-0031-DRAFT-26032
NOAA-NMFS-2020-0031-DRAFT-26033
NOAA-NMFS-2020-0031-DRAFT-26034
NOAA-NMFS-2020-0031-DRAFT-26035
NOAA-NMFS-2020-0031-DRAFT-26036
NOAA-NMFS-2020-0031-DRAFT-26037
NOAA-NMFS-2020-0031-DRAFT-26038
NOAA-NMFS-2020-0031-DRAFT-26039
NOAA-NMFS-2020-0031-DRAFT-26040
NOAA-NMFS-2020-0031-DRAFT-26041
NOAA-NMFS-2020-0031-DRAFT-26042
NOAA-NMFS-2020-0031-DRAFT-26043
NOAA-NMFS-2020-0031-DRAFT-26044
NOAA-NMFS-2020-0031-DRAFT-26045
NOAA-NMFS-2020-0031-DRAFT-26046
NOAA-NMFS-2020-0031-DRAFT-26047

Comment from Blancato, Nadine
Comment from Bragg, Tamara
Comment from Behrens, Joanna
Comment from Erdmann , Donette
Comment from Risvold, Cindy
Comment from Bodner, Rob
Comment from Foden, John
Comment from BRADY, JAMIE
Comment from Overkamp, Roberta
Comment from Arias, Hector
Comment from Tugwell, Thomas
Comment from Wall, Debbie
Comment from Demorales, Nikole
Comment from EDMONDSON, JACKIE
Comment from Cowan, Scott
Comment from Bobick, Sherry
Comment from Kiefer, Marion
Comment from Ludlow, Marlene
Comment from Santana, Lillian
Comment from Arnold, Maureen
Comment from Marcus, Heather
Comment from Alvarado, Angie
Comment from Chimiklid, Lynne
Comment from Skinner, Phyllis
Comment from Manthey, Lisa
Comment from Fransioli, Lena
Comment from Cohen, Juliet
Comment from Taylor, Tracey
Comment from Mandato, Rhonda
Comment from Romero Villanueva, Sonia
Comment from Ike, Laura
Comment from Price, Dennis
Comment from SELLERS, ROBIN
Comment from Gonçalves, Luciana
Comment from vermaaten, seth
Comment from arpin, susan
Comment from Bortoluzzo, Virginia
Comment from chuplis, cindy
Comment from Meyers, Robert
Comment from Zola, Yvonne
Comment from Friedman, Marc

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02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20826
NOAA-NMFS-2020-0031-DRAFT-20827
NOAA-NMFS-2020-0031-DRAFT-20828
NOAA-NMFS-2020-0031-DRAFT-20829
NOAA-NMFS-2020-0031-DRAFT-20830
NOAA-NMFS-2020-0031-DRAFT-20831
NOAA-NMFS-2020-0031-DRAFT-20832
NOAA-NMFS-2020-0031-DRAFT-20833
NOAA-NMFS-2020-0031-DRAFT-20835
NOAA-NMFS-2020-0031-DRAFT-20836
NOAA-NMFS-2020-0031-DRAFT-20837
NOAA-NMFS-2020-0031-DRAFT-20838
NOAA-NMFS-2020-0031-DRAFT-20839
NOAA-NMFS-2020-0031-DRAFT-20840
NOAA-NMFS-2020-0031-DRAFT-20841
NOAA-NMFS-2020-0031-DRAFT-20842
NOAA-NMFS-2020-0031-DRAFT-20843
NOAA-NMFS-2020-0031-DRAFT-20844
NOAA-NMFS-2020-0031-DRAFT-20845
NOAA-NMFS-2020-0031-DRAFT-20846
NOAA-NMFS-2020-0031-DRAFT-20847
NOAA-NMFS-2020-0031-DRAFT-20848
NOAA-NMFS-2020-0031-DRAFT-20849
NOAA-NMFS-2020-0031-DRAFT-20850
NOAA-NMFS-2020-0031-DRAFT-20851
NOAA-NMFS-2020-0031-DRAFT-20852
NOAA-NMFS-2020-0031-DRAFT-20853
NOAA-NMFS-2020-0031-DRAFT-20854
NOAA-NMFS-2020-0031-DRAFT-20855
NOAA-NMFS-2020-0031-DRAFT-20856
NOAA-NMFS-2020-0031-DRAFT-20857
NOAA-NMFS-2020-0031-DRAFT-20858
NOAA-NMFS-2020-0031-DRAFT-20859
NOAA-NMFS-2020-0031-DRAFT-20860
NOAA-NMFS-2020-0031-DRAFT-20861
NOAA-NMFS-2020-0031-DRAFT-20862
NOAA-NMFS-2020-0031-DRAFT-20863
NOAA-NMFS-2020-0031-DRAFT-20864
NOAA-NMFS-2020-0031-DRAFT-20865
NOAA-NMFS-2020-0031-DRAFT-20866
NOAA-NMFS-2020-0031-DRAFT-20867

Comment from Debbie Bonnet
Comment from Gina Read
Comment from Keith Lyle
Comment from Susa Querze
Comment from Joni Karnopp
Comment from sara rahbar
Comment from Kate Kenner
Comment from Barbara Fleming
Comment from Michael Goehring
Comment from Nancy Boyce
Comment from Julia Arafa
Comment from Cecilia Correia
Comment from C. Brezina
Comment from Connie Cotton
Comment from Laurie Denis
Comment from Aurora Caiano
Comment from Charles Webb
Comment from Deborah Dahlgren
Comment from Rosemary Ward
Comment from Macy Ciriaco
Comment from Sarah Becker
Comment from Kathrin Dodds
Comment from Nancy Lien
Comment from Cynthia Brady
Comment from Stephanie Trujillo
Comment from Tina Seagraves
Comment from Elizabeth Migliore
Comment from Linda Millet
Comment from Sandra Cobb
Comment from p schalge
Comment from REGAN EBERT
Comment from Kathryn Christian
Comment from Ken Box
Comment from Robert Stark
Comment from Donna Polson
Comment from Kristin Davis
Comment from Robert Oliver
Comment from Jan Hamilton-Sherwonit
Comment from Susan Brown
Comment from Maggie Pappageorge
Comment from Mary Totty

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NOAA-NMFS-2020-0031-DRAFT-26048
NOAA-NMFS-2020-0031-DRAFT-26049
NOAA-NMFS-2020-0031-DRAFT-26050
NOAA-NMFS-2020-0031-DRAFT-26051
NOAA-NMFS-2020-0031-DRAFT-26052
NOAA-NMFS-2020-0031-DRAFT-26053
NOAA-NMFS-2020-0031-DRAFT-26054
NOAA-NMFS-2020-0031-DRAFT-26055
NOAA-NMFS-2020-0031-DRAFT-26056
NOAA-NMFS-2020-0031-DRAFT-26057
NOAA-NMFS-2020-0031-DRAFT-26058
NOAA-NMFS-2020-0031-DRAFT-26059
NOAA-NMFS-2020-0031-DRAFT-26060
NOAA-NMFS-2020-0031-DRAFT-26061
NOAA-NMFS-2020-0031-DRAFT-26062
NOAA-NMFS-2020-0031-DRAFT-26063
NOAA-NMFS-2020-0031-DRAFT-26064
NOAA-NMFS-2020-0031-DRAFT-26065
NOAA-NMFS-2020-0031-DRAFT-26066
NOAA-NMFS-2020-0031-DRAFT-26067
NOAA-NMFS-2020-0031-DRAFT-26069
NOAA-NMFS-2020-0031-DRAFT-26070
NOAA-NMFS-2020-0031-DRAFT-26071
NOAA-NMFS-2020-0031-DRAFT-26072
NOAA-NMFS-2020-0031-DRAFT-26073
NOAA-NMFS-2020-0031-DRAFT-26074
NOAA-NMFS-2020-0031-DRAFT-26075
NOAA-NMFS-2020-0031-DRAFT-26076
NOAA-NMFS-2020-0031-DRAFT-26077
NOAA-NMFS-2020-0031-DRAFT-26078
NOAA-NMFS-2020-0031-DRAFT-26079
NOAA-NMFS-2020-0031-DRAFT-26080
NOAA-NMFS-2020-0031-DRAFT-26081
NOAA-NMFS-2020-0031-DRAFT-26082
NOAA-NMFS-2020-0031-DRAFT-26083
NOAA-NMFS-2020-0031-DRAFT-26084
NOAA-NMFS-2020-0031-DRAFT-26085
NOAA-NMFS-2020-0031-DRAFT-26086
NOAA-NMFS-2020-0031-DRAFT-26087
NOAA-NMFS-2020-0031-DRAFT-26088
NOAA-NMFS-2020-0031-DRAFT-26089

Comment from Friedman, Marc
Comment from Shifflett, Linda
Comment from REAVELL, GLENNA
Comment from Hanigan, Kathy
Comment from Aronoff, Elaine
Comment from Curry, Jane
Comment from Jennings, Lynn
Comment from Zeshonski, Mark
Comment from Fieldd, Carol
Comment from Bell, Kay
Comment from Taylor, Gloria
Comment from Hydeman, Jinx
Comment from Correa, Monique
Comment from Correa, Monique
Comment from Grubbs, Jessica
Comment from Dresch, Phaedra
Comment from Roach, Cana
Comment from McCauley, Leah
Comment from Fripp, Robert
Comment from Kautz, Felicia
Comment from McDougal, Linda
Comment from toll, dennis
Comment from Riley, David & Angela
Comment from reedy, karen
Comment from Rambo, Jane
Comment from Fornaroli, Fabio
Comment from LeCates, Karen
Comment from Charland, Chadd
Comment from venegas, andres
Comment from Allen, Cynthia
Comment from Bostwick, Victoria
Comment from Bergeron, Marlena
Comment from Earey, Christine
Comment from martin, juan
Comment from Petras, Carrington
Comment from Serra, Ruth
Comment from Geiger, Michelle
Comment from Schmidt, Anita
Comment from Engle, Angela
Comment from Messer, Gretchen
Comment from Hyde , Karen

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NOAA-NMFS-2020-0031-DRAFT-20868
NOAA-NMFS-2020-0031-DRAFT-20869
NOAA-NMFS-2020-0031-DRAFT-20870
NOAA-NMFS-2020-0031-DRAFT-20871
NOAA-NMFS-2020-0031-DRAFT-20872
NOAA-NMFS-2020-0031-DRAFT-20873
NOAA-NMFS-2020-0031-DRAFT-20874
NOAA-NMFS-2020-0031-DRAFT-20875
NOAA-NMFS-2020-0031-DRAFT-20876
NOAA-NMFS-2020-0031-DRAFT-20877
NOAA-NMFS-2020-0031-DRAFT-20878
NOAA-NMFS-2020-0031-DRAFT-20879
NOAA-NMFS-2020-0031-DRAFT-20880
NOAA-NMFS-2020-0031-DRAFT-20881
NOAA-NMFS-2020-0031-DRAFT-20882
NOAA-NMFS-2020-0031-DRAFT-20883
NOAA-NMFS-2020-0031-DRAFT-20884
NOAA-NMFS-2020-0031-DRAFT-20885
NOAA-NMFS-2020-0031-DRAFT-20886
NOAA-NMFS-2020-0031-DRAFT-20887
NOAA-NMFS-2020-0031-DRAFT-20888
NOAA-NMFS-2020-0031-DRAFT-20889
NOAA-NMFS-2020-0031-DRAFT-20890
NOAA-NMFS-2020-0031-DRAFT-20891
NOAA-NMFS-2020-0031-DRAFT-20892
NOAA-NMFS-2020-0031-DRAFT-20893
NOAA-NMFS-2020-0031-DRAFT-20894
NOAA-NMFS-2020-0031-DRAFT-20895
NOAA-NMFS-2020-0031-DRAFT-20896
NOAA-NMFS-2020-0031-DRAFT-20897
NOAA-NMFS-2020-0031-DRAFT-20898
NOAA-NMFS-2020-0031-DRAFT-20899
NOAA-NMFS-2020-0031-DRAFT-20900
NOAA-NMFS-2020-0031-DRAFT-20902
NOAA-NMFS-2020-0031-DRAFT-20903
NOAA-NMFS-2020-0031-DRAFT-20904
NOAA-NMFS-2020-0031-DRAFT-20905
NOAA-NMFS-2020-0031-DRAFT-20906
NOAA-NMFS-2020-0031-DRAFT-20907
NOAA-NMFS-2020-0031-DRAFT-20908
NOAA-NMFS-2020-0031-DRAFT-20909

Comment from Sylvia Cardella
Comment from Sigfredo Galdamez
Comment from Samantha Kelly
Comment from KAMALA CHAPMAN
Comment from Linda Higgins
Comment from Brian Draper
Comment from Emanuel Falcone
Comment from Robert Posch
Comment from Bijan Foroutan
Comment from Tabitha Purcell
Comment from Stephanie Seymour
Comment from Katherine Cregger Marshall
Comment from Lynn Konieczny
Comment from Jean Allgood
Comment from John Voehringer
Comment from Lily Fortin
Comment from Lisa Beveridge
Comment from jeanette casciano
Comment from Daniel Kozminski
Comment from Jennifer Romans
Comment from christina scott
Comment from Richard McConnell
Comment from Jacqueline Eliopoulos
Comment from Katherine Hutchins
Comment from Joan Little
Comment from Debra Christensen
Comment from O Lewis
Comment from G Ramsey
Comment from Susan Porter
Comment from Lyn Pegg
Comment from Jonette Bronson
Comment from Ryan Burger
Comment from Diana Johnson
Comment from Sherry Taylor
Comment from Linda Schiffer
Comment from Gerald Quenell
Comment from Curtis Barnett
Comment from Sandra Remilien
Comment from Debbie Goodykoontz
Comment from Mary Schmidt
Comment from Janie Roberts

02/26/2021
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NOAA-NMFS-2020-0031-DRAFT-26090
NOAA-NMFS-2020-0031-DRAFT-26091
NOAA-NMFS-2020-0031-DRAFT-26092
NOAA-NMFS-2020-0031-DRAFT-26093
NOAA-NMFS-2020-0031-DRAFT-26094
NOAA-NMFS-2020-0031-DRAFT-26095
NOAA-NMFS-2020-0031-DRAFT-26096
NOAA-NMFS-2020-0031-DRAFT-26097
NOAA-NMFS-2020-0031-DRAFT-26098
NOAA-NMFS-2020-0031-DRAFT-26099
NOAA-NMFS-2020-0031-DRAFT-26100
NOAA-NMFS-2020-0031-DRAFT-26101
NOAA-NMFS-2020-0031-DRAFT-26102
NOAA-NMFS-2020-0031-DRAFT-26103
NOAA-NMFS-2020-0031-DRAFT-26104
NOAA-NMFS-2020-0031-DRAFT-26105
NOAA-NMFS-2020-0031-DRAFT-26106
NOAA-NMFS-2020-0031-DRAFT-26107
NOAA-NMFS-2020-0031-DRAFT-26108
NOAA-NMFS-2020-0031-DRAFT-26109
NOAA-NMFS-2020-0031-DRAFT-26110
NOAA-NMFS-2020-0031-DRAFT-26111
NOAA-NMFS-2020-0031-DRAFT-26112
NOAA-NMFS-2020-0031-DRAFT-26113
NOAA-NMFS-2020-0031-DRAFT-26114
NOAA-NMFS-2020-0031-DRAFT-26115
NOAA-NMFS-2020-0031-DRAFT-26116
NOAA-NMFS-2020-0031-DRAFT-26117
NOAA-NMFS-2020-0031-DRAFT-26118
NOAA-NMFS-2020-0031-DRAFT-26119
NOAA-NMFS-2020-0031-DRAFT-26120
NOAA-NMFS-2020-0031-DRAFT-26121
NOAA-NMFS-2020-0031-DRAFT-26122
NOAA-NMFS-2020-0031-DRAFT-26123
NOAA-NMFS-2020-0031-DRAFT-26124
NOAA-NMFS-2020-0031-DRAFT-26125
NOAA-NMFS-2020-0031-DRAFT-26126
NOAA-NMFS-2020-0031-DRAFT-26127
NOAA-NMFS-2020-0031-DRAFT-26128
NOAA-NMFS-2020-0031-DRAFT-26129
NOAA-NMFS-2020-0031-DRAFT-26130

Comment from Belvaux, Luna
Comment from Medina , Joe
Comment from Roussel, Jamie
Comment from plumly, chad
Comment from Rubin, Bill
Comment from Martin, Robin
Comment from Morihara, Laura
Comment from Jarvis, Janis
Comment from Schulte, RolfViol
Comment from Hanon, James
Comment from Bertrand, Chris
Comment from Cheverton, Erica
Comment from Mathes, Jean
Comment from Kozel, Susan
Comment from Haggins, Helen
Comment from Lewis, Allyson
Comment from Newton, Pat
Comment from Gieseking, Melissa
Comment from Schulz, Alexandra
Comment from Ryser, Kathryn
Comment from Jayagopal, Sharada
Comment from Lund, Adria
Comment from Cardone, Michele
Comment from Braum, Morris
Comment from Caster, Arina
Comment from Remilien, Sandra
Comment from Pavlova, Karina
Comment from Craven, Stephen
Comment from Kasparova, Nela
Comment from odell, katharine
Comment from Northrup, Lisa
Comment from Lawrence, Ashley
Comment from Troccoli, Iyleen
Comment from Casperson , Mary
Comment from DeLassus, Dana
Comment from Shiarella, Richard
Comment from Carroll, Kristina
Comment from Liner, Tom
Comment from Marose, Ciannat
Comment from Stewart, Jennifer
Comment from Herrington, Mary

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NOAA-NMFS-2020-0031-DRAFT-20910
NOAA-NMFS-2020-0031-DRAFT-20911
NOAA-NMFS-2020-0031-DRAFT-20912
NOAA-NMFS-2020-0031-DRAFT-20913
NOAA-NMFS-2020-0031-DRAFT-20914
NOAA-NMFS-2020-0031-DRAFT-20915
NOAA-NMFS-2020-0031-DRAFT-20916
NOAA-NMFS-2020-0031-DRAFT-20917
NOAA-NMFS-2020-0031-DRAFT-20918
NOAA-NMFS-2020-0031-DRAFT-20919
NOAA-NMFS-2020-0031-DRAFT-20920
NOAA-NMFS-2020-0031-DRAFT-20921
NOAA-NMFS-2020-0031-DRAFT-20922
NOAA-NMFS-2020-0031-DRAFT-20923
NOAA-NMFS-2020-0031-DRAFT-20924
NOAA-NMFS-2020-0031-DRAFT-20925
NOAA-NMFS-2020-0031-DRAFT-20926
NOAA-NMFS-2020-0031-DRAFT-20927
NOAA-NMFS-2020-0031-DRAFT-20928
NOAA-NMFS-2020-0031-DRAFT-20929
NOAA-NMFS-2020-0031-DRAFT-20930
NOAA-NMFS-2020-0031-DRAFT-20931
NOAA-NMFS-2020-0031-DRAFT-20932
NOAA-NMFS-2020-0031-DRAFT-20933
NOAA-NMFS-2020-0031-DRAFT-20934
NOAA-NMFS-2020-0031-DRAFT-20935
NOAA-NMFS-2020-0031-DRAFT-20937
NOAA-NMFS-2020-0031-DRAFT-20938
NOAA-NMFS-2020-0031-DRAFT-20939
NOAA-NMFS-2020-0031-DRAFT-20940
NOAA-NMFS-2020-0031-DRAFT-20942
NOAA-NMFS-2020-0031-DRAFT-20943
NOAA-NMFS-2020-0031-DRAFT-20944
NOAA-NMFS-2020-0031-DRAFT-20945
NOAA-NMFS-2020-0031-DRAFT-20946
NOAA-NMFS-2020-0031-DRAFT-20947
NOAA-NMFS-2020-0031-DRAFT-20948
NOAA-NMFS-2020-0031-DRAFT-20949
NOAA-NMFS-2020-0031-DRAFT-20950
NOAA-NMFS-2020-0031-DRAFT-20951
NOAA-NMFS-2020-0031-DRAFT-20952

Comment from eric biemuller
Comment from Larry Zim
Comment from Stacey Eichner
Comment from Sharon Krikorian
Comment from Cindy Blue
Comment from Lauren Teresa
Comment from Elizabeth Hunter
Comment from Judy Desreuisseau
Comment from Jesse Mallory
Comment from robert mitch
Comment from Linda Dezotelle
Comment from Sandra Colacurti
Comment from Darren Mitton
Comment from Ruliffson Mary
Comment from Deborah Robinson
Comment from Christy Spear
Comment from Suzanne Hamer
Comment from Aurora Caiano
Comment from Donna Bender
Comment from Beverly Jahn
Comment from Naomi Avissar
Comment from Leslie Mlawski
Comment from Patricia Mathis
Comment from Samora Whitlow
Comment from Catherine Palmer
Comment from Rhonda Lieberman
Comment from Kris Schmidt
Comment from Linda Addis
Comment from Pam Emery
Comment from Dominic Garcia
Comment from Scott Grubb
Comment from alena Jorgensen
Comment from Eileen Fonferko
Comment from Jonathan McVey
Comment from Frederick Semel
Comment from Allie Tennant
Comment from Marina Mooney
Comment from Leslie Bender
Comment from Jackie Pomies
Comment from Christopher Scheller
Comment from Patria Santini

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NOAA-NMFS-2020-0031-DRAFT-26131
NOAA-NMFS-2020-0031-DRAFT-26132
NOAA-NMFS-2020-0031-DRAFT-26133
NOAA-NMFS-2020-0031-DRAFT-26134
NOAA-NMFS-2020-0031-DRAFT-26135
NOAA-NMFS-2020-0031-DRAFT-26136
NOAA-NMFS-2020-0031-DRAFT-26138
NOAA-NMFS-2020-0031-DRAFT-26139
NOAA-NMFS-2020-0031-DRAFT-26140
NOAA-NMFS-2020-0031-DRAFT-26141
NOAA-NMFS-2020-0031-DRAFT-26142
NOAA-NMFS-2020-0031-DRAFT-26143
NOAA-NMFS-2020-0031-DRAFT-26144
NOAA-NMFS-2020-0031-DRAFT-26145
NOAA-NMFS-2020-0031-DRAFT-26146
NOAA-NMFS-2020-0031-DRAFT-26147
NOAA-NMFS-2020-0031-DRAFT-26148
NOAA-NMFS-2020-0031-DRAFT-26149
NOAA-NMFS-2020-0031-DRAFT-26150
NOAA-NMFS-2020-0031-DRAFT-26151
NOAA-NMFS-2020-0031-DRAFT-26152
NOAA-NMFS-2020-0031-DRAFT-26153
NOAA-NMFS-2020-0031-DRAFT-26154
NOAA-NMFS-2020-0031-DRAFT-26155
NOAA-NMFS-2020-0031-DRAFT-26156
NOAA-NMFS-2020-0031-DRAFT-26157
NOAA-NMFS-2020-0031-DRAFT-26158
NOAA-NMFS-2020-0031-DRAFT-26159
NOAA-NMFS-2020-0031-DRAFT-26160
NOAA-NMFS-2020-0031-DRAFT-26161
NOAA-NMFS-2020-0031-DRAFT-26162
NOAA-NMFS-2020-0031-DRAFT-26164
NOAA-NMFS-2020-0031-DRAFT-26165
NOAA-NMFS-2020-0031-DRAFT-26166
NOAA-NMFS-2020-0031-DRAFT-26167
NOAA-NMFS-2020-0031-DRAFT-26168
NOAA-NMFS-2020-0031-DRAFT-26169
NOAA-NMFS-2020-0031-DRAFT-26170
NOAA-NMFS-2020-0031-DRAFT-26171
NOAA-NMFS-2020-0031-DRAFT-26172
NOAA-NMFS-2020-0031-DRAFT-26173

Comment from Gandy, Betsy
Comment from Matturro, Bill
Comment from Reed, Elizabeth
Comment from Deveau, Patty
Comment from Southby, Helen
Comment from Pérez , Lucy
Comment from Tomeske, Patricia
Comment from Reed, Patricia
Comment from Church, Judith
G
Comment from Suszylo, Anna
Comment from mahoney, linda
Comment from Regnery, Russell
Comment from Peace, Julia
Comment from Hawlins, Phyllis
Comment from Barlow, Susan
Comment from Laird, Nancy Clair
Comment from MEARS, SUSANJ
Comment from Hanna, Megan
Comment from Kruger, Sandra
Comment from Keegan, Carter
Comment from Truex, Jess
Comment from Ha, Sooki
Comment from Hopper, Grace
Comment from Newell, Steve
Comment from Bourlotos, George
Comment from Helton, Lynn
Comment from wiesner, leesa
Comment from Curtis, Marnelle
Comment from Braverman, Margrie
Comment from Dexter, Rob
Comment from Bressan, Katherine
Comment from Webb, Caitlin
Comment from Pavlinac, Sheryl
Comment from Wolf, Darlene
Comment from MacIntyre, Dan
Comment from Gillis, Nancy
Comment from stewart, mark
Comment from Chewning, Stephanie
Comment from Hull, Juanita
Comment from Welch, Meredith

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NOAA-NMFS-2020-0031-DRAFT-20953
NOAA-NMFS-2020-0031-DRAFT-20954
NOAA-NMFS-2020-0031-DRAFT-20955
NOAA-NMFS-2020-0031-DRAFT-20956
NOAA-NMFS-2020-0031-DRAFT-20957
NOAA-NMFS-2020-0031-DRAFT-20958
NOAA-NMFS-2020-0031-DRAFT-20959
NOAA-NMFS-2020-0031-DRAFT-20960
NOAA-NMFS-2020-0031-DRAFT-20961
NOAA-NMFS-2020-0031-DRAFT-20962
NOAA-NMFS-2020-0031-DRAFT-20963
NOAA-NMFS-2020-0031-DRAFT-20964
NOAA-NMFS-2020-0031-DRAFT-20965
NOAA-NMFS-2020-0031-DRAFT-20966
NOAA-NMFS-2020-0031-DRAFT-20967
NOAA-NMFS-2020-0031-DRAFT-20968
NOAA-NMFS-2020-0031-DRAFT-20969
NOAA-NMFS-2020-0031-DRAFT-20970
NOAA-NMFS-2020-0031-DRAFT-20971
NOAA-NMFS-2020-0031-DRAFT-20972
NOAA-NMFS-2020-0031-DRAFT-20973
NOAA-NMFS-2020-0031-DRAFT-20974
NOAA-NMFS-2020-0031-DRAFT-20975
NOAA-NMFS-2020-0031-DRAFT-20976
NOAA-NMFS-2020-0031-DRAFT-20977
NOAA-NMFS-2020-0031-DRAFT-20978
NOAA-NMFS-2020-0031-DRAFT-20979
NOAA-NMFS-2020-0031-DRAFT-20980
NOAA-NMFS-2020-0031-DRAFT-20981
NOAA-NMFS-2020-0031-DRAFT-20982
NOAA-NMFS-2020-0031-DRAFT-20983
NOAA-NMFS-2020-0031-DRAFT-20984
NOAA-NMFS-2020-0031-DRAFT-20985
NOAA-NMFS-2020-0031-DRAFT-20986
NOAA-NMFS-2020-0031-DRAFT-20987
NOAA-NMFS-2020-0031-DRAFT-20988
NOAA-NMFS-2020-0031-DRAFT-20989
NOAA-NMFS-2020-0031-DRAFT-20990
NOAA-NMFS-2020-0031-DRAFT-20991
NOAA-NMFS-2020-0031-DRAFT-20992
NOAA-NMFS-2020-0031-DRAFT-20993

Comment from Ronald Woolford
Comment from Jan Moore
Comment from B Hearn
Comment from Daniel Heyduk
Comment from Karen Suit
Comment from Martin Iseri
Comment from Laurie Ellis
Comment from Patricia DeLuca
Comment from Angie Mackey
Comment from Joan Kelly
Comment from Victoria Brandon
Comment from Jane Anderson
Comment from Judy Shively
Comment from Carla Albers
Comment from Laura Tartaglia
Comment from Fran Seldin
Comment from Stephanie Limpert
Comment from Margaret Phillips
Comment from Cheryl Sperber
Comment from Alan Harper
Comment from Albert Wilson
Comment from Heather Walker-Dale
Comment from Jason LaBerge
Comment from David Balan
Comment from Kimberly Carignan
Comment from Carol Churchill
Comment from Bridget Irons
Comment from Bruce McHenry
Comment from Cindy Page
Comment from william tibby
Comment from Cb Michaels
Comment from Gemma Peckinpah
Comment from Dana Griffin
Comment from Lauri Barish
Comment from Jenifer Johnson
Comment from Cathy menendian
Comment from Stefan Taylor
Comment from Kristine George
Comment from JUDY SMARIO-JOHNSON
Comment from Anita Burton
Comment from Bonnie Thompson

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NOAA-NMFS-2020-0031-DRAFT-26174
NOAA-NMFS-2020-0031-DRAFT-26175
NOAA-NMFS-2020-0031-DRAFT-26176
NOAA-NMFS-2020-0031-DRAFT-26177
NOAA-NMFS-2020-0031-DRAFT-26178
NOAA-NMFS-2020-0031-DRAFT-26179
NOAA-NMFS-2020-0031-DRAFT-26180
NOAA-NMFS-2020-0031-DRAFT-26181
NOAA-NMFS-2020-0031-DRAFT-26182
NOAA-NMFS-2020-0031-DRAFT-26183
NOAA-NMFS-2020-0031-DRAFT-26184
NOAA-NMFS-2020-0031-DRAFT-26185
NOAA-NMFS-2020-0031-DRAFT-26186
NOAA-NMFS-2020-0031-DRAFT-26187
NOAA-NMFS-2020-0031-DRAFT-26188
NOAA-NMFS-2020-0031-DRAFT-26190
NOAA-NMFS-2020-0031-DRAFT-26191
NOAA-NMFS-2020-0031-DRAFT-26192
NOAA-NMFS-2020-0031-DRAFT-26193
NOAA-NMFS-2020-0031-DRAFT-26194
NOAA-NMFS-2020-0031-DRAFT-26195
NOAA-NMFS-2020-0031-DRAFT-26196
NOAA-NMFS-2020-0031-DRAFT-26197
NOAA-NMFS-2020-0031-DRAFT-26198
NOAA-NMFS-2020-0031-DRAFT-26199
NOAA-NMFS-2020-0031-DRAFT-26200
NOAA-NMFS-2020-0031-DRAFT-26201
NOAA-NMFS-2020-0031-DRAFT-26202
NOAA-NMFS-2020-0031-DRAFT-26203
NOAA-NMFS-2020-0031-DRAFT-26204
NOAA-NMFS-2020-0031-DRAFT-26205
NOAA-NMFS-2020-0031-DRAFT-26206
NOAA-NMFS-2020-0031-DRAFT-26207
NOAA-NMFS-2020-0031-DRAFT-26208
NOAA-NMFS-2020-0031-DRAFT-26209
NOAA-NMFS-2020-0031-DRAFT-26210
NOAA-NMFS-2020-0031-DRAFT-26211
NOAA-NMFS-2020-0031-DRAFT-26212
NOAA-NMFS-2020-0031-DRAFT-26213
NOAA-NMFS-2020-0031-DRAFT-26214
NOAA-NMFS-2020-0031-DRAFT-26215

Comment from RAHGO, WILLIAM
Comment from Johnson, Greg
Comment from Suzman, Maxine
Comment from Peddicord, Lisa
Comment from Flournoy, Carrie
Comment from Williams, Steve
Comment from Nabel, Yvette
Comment from Stephens, Donna
Comment from Lacasse, Monja
Comment from Beresford, Sara
Comment from Foley, Valerie
Comment from Chaney, Elaine
Comment from Caraco, Virginia
Comment from Collada, Rosa
Comment from Tollman , Larry
Comment from maes, simone
Comment from Mongillo, Michael
Comment from Spencer, Arlene
Comment from Psychas, Sherry
Comment from Allbritton, Kristen
Comment from Kowing, Kerri
Comment from Anderson, Ralph
Comment from Butler, Zachary
Comment from Arias-Anderson, Juliana
Comment from Graham, Gary
Comment from Dezendorf, andrea
Comment from Sharp, Charon
Comment from Yeomans , Kathy
Comment from Speirs, Moira
Comment from Piehl, Jeanne
Comment from E., K.
Comment from Beauvoir, Annette
Comment from DuBose, Elizabeth
Comment from Elsten, Bonnie
Comment from Beauvoir, Annette
Comment from Bell, Stacy
Comment from Grynkewich, Rsy
Comment from Hawkins, Marta
Comment from Nelson, Anne
Comment from McQueen, Ashley
Comment from LaMonica, Gina

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NOAA-NMFS-2020-0031-DRAFT-20994
NOAA-NMFS-2020-0031-DRAFT-20995
NOAA-NMFS-2020-0031-DRAFT-20996
NOAA-NMFS-2020-0031-DRAFT-20997
NOAA-NMFS-2020-0031-DRAFT-20998
NOAA-NMFS-2020-0031-DRAFT-20999
NOAA-NMFS-2020-0031-DRAFT-21000
NOAA-NMFS-2020-0031-DRAFT-21001
NOAA-NMFS-2020-0031-DRAFT-21002
NOAA-NMFS-2020-0031-DRAFT-21003
NOAA-NMFS-2020-0031-DRAFT-21004
NOAA-NMFS-2020-0031-DRAFT-21005
NOAA-NMFS-2020-0031-DRAFT-21006
NOAA-NMFS-2020-0031-DRAFT-21007
NOAA-NMFS-2020-0031-DRAFT-21008
NOAA-NMFS-2020-0031-DRAFT-21009
NOAA-NMFS-2020-0031-DRAFT-21010
NOAA-NMFS-2020-0031-DRAFT-21011
NOAA-NMFS-2020-0031-DRAFT-21012
NOAA-NMFS-2020-0031-DRAFT-21013
NOAA-NMFS-2020-0031-DRAFT-21014
NOAA-NMFS-2020-0031-DRAFT-21015
NOAA-NMFS-2020-0031-DRAFT-21016
NOAA-NMFS-2020-0031-DRAFT-21017
NOAA-NMFS-2020-0031-DRAFT-21018
NOAA-NMFS-2020-0031-DRAFT-21019
NOAA-NMFS-2020-0031-DRAFT-21020
NOAA-NMFS-2020-0031-DRAFT-21021
NOAA-NMFS-2020-0031-DRAFT-21022
NOAA-NMFS-2020-0031-DRAFT-21023
NOAA-NMFS-2020-0031-DRAFT-21024
NOAA-NMFS-2020-0031-DRAFT-21025
NOAA-NMFS-2020-0031-DRAFT-21026
NOAA-NMFS-2020-0031-DRAFT-21027
NOAA-NMFS-2020-0031-DRAFT-21028
NOAA-NMFS-2020-0031-DRAFT-21029
NOAA-NMFS-2020-0031-DRAFT-21030
NOAA-NMFS-2020-0031-DRAFT-21031
NOAA-NMFS-2020-0031-DRAFT-21032
NOAA-NMFS-2020-0031-DRAFT-21033
NOAA-NMFS-2020-0031-DRAFT-21034

Comment from Andrew Yerian
Comment from Debra Shea
Comment from Nancy Williams
Comment from Joette Borzik
Comment from Sandra Middour
Comment from Michelle Wilson
Comment from Elaine Johnson
Comment from Fiona Nolan
Comment from kristin arce
Comment from Jennifer Lo
Comment from Cynthia Cripps
Comment from Dawn Ohlsson
Comment from Judith Ackerman
Comment from Laura Smith
Comment from Felena Puentes
Comment from Deborah McMahan
Comment from Jill Dudek
Comment from Sarah Rowe
Comment from Susan Servis
Comment from Mana Iluna
Comment from Adam Burns
Comment from Robert Reece
Comment from Patricia Benjamin
Comment from Thinh Ngo
Comment from Janelle Chase
Comment from Nancy Walsh
Comment from Bennie Scott
Comment from Dena Hernandez Kosche
Comment from Margaret Handley
Comment from Paula Hooser
Comment from Thinh Ngo
Comment from Susan Schneeberger
Comment from dana Bleckinger
Comment from Ann Lahaie
Comment from Ray Derrickson
Comment from Deepak Vohra
Comment from Brigitte Forster
Comment from Jean Dibble
Comment from james ashcraft
Comment from Cynthia Hicks
Comment from Carol g

02/26/2021
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02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26216
NOAA-NMFS-2020-0031-DRAFT-26217
NOAA-NMFS-2020-0031-DRAFT-26218
NOAA-NMFS-2020-0031-DRAFT-26219
NOAA-NMFS-2020-0031-DRAFT-26220
NOAA-NMFS-2020-0031-DRAFT-26221
NOAA-NMFS-2020-0031-DRAFT-26222
NOAA-NMFS-2020-0031-DRAFT-26223
NOAA-NMFS-2020-0031-DRAFT-26224
NOAA-NMFS-2020-0031-DRAFT-26225
NOAA-NMFS-2020-0031-DRAFT-26226
NOAA-NMFS-2020-0031-DRAFT-26227
NOAA-NMFS-2020-0031-DRAFT-26228
NOAA-NMFS-2020-0031-DRAFT-26229
NOAA-NMFS-2020-0031-DRAFT-26230
NOAA-NMFS-2020-0031-DRAFT-26231
NOAA-NMFS-2020-0031-DRAFT-26232
NOAA-NMFS-2020-0031-DRAFT-26233
NOAA-NMFS-2020-0031-DRAFT-26234
NOAA-NMFS-2020-0031-DRAFT-26235
NOAA-NMFS-2020-0031-DRAFT-26236
NOAA-NMFS-2020-0031-DRAFT-26237
NOAA-NMFS-2020-0031-DRAFT-26238
NOAA-NMFS-2020-0031-DRAFT-26239
NOAA-NMFS-2020-0031-DRAFT-26240
NOAA-NMFS-2020-0031-DRAFT-26241
NOAA-NMFS-2020-0031-DRAFT-26242
NOAA-NMFS-2020-0031-DRAFT-26243
NOAA-NMFS-2020-0031-DRAFT-26244
NOAA-NMFS-2020-0031-DRAFT-26245
NOAA-NMFS-2020-0031-DRAFT-26246
NOAA-NMFS-2020-0031-DRAFT-26247
NOAA-NMFS-2020-0031-DRAFT-26248
NOAA-NMFS-2020-0031-DRAFT-26249
NOAA-NMFS-2020-0031-DRAFT-26250
NOAA-NMFS-2020-0031-DRAFT-26251
NOAA-NMFS-2020-0031-DRAFT-26252
NOAA-NMFS-2020-0031-DRAFT-26253
NOAA-NMFS-2020-0031-DRAFT-26254
NOAA-NMFS-2020-0031-DRAFT-26255
NOAA-NMFS-2020-0031-DRAFT-26256

Comment from Smeti, Mari
Comment from Richmond , Robert
Comment from ROBERTS, Sharon
Comment from Jordan, Julie
Comment from Muller, Rosita
Comment from gullo, andrea
Comment from V brandwijk , Wilma
Comment from Felker, Ric
Comment from Loza, Jayne
Comment from Carroll , Kevin
Comment from Hudson, Sara
Comment from Diaz, Yelina
Comment from Schultze, Patti
Comment from cloud, peter
Comment from SMITH, DEBORAH
Comment from Altenbach , Marilyn
Comment from Lopes, Maria Manuela
Comment from Leonard, Cami
Comment from Carlson, Kelly
Comment from Simms, Kimberly
Comment from Kilpatrick, Gail
Comment from Kutz, Susan
Comment from Nehring-Bliss, Diane
Comment from Curtis, Patrice
Comment from Audsley, Madeleine
Comment from Slater, Jody
Comment from Martin, Joanna
Comment from Rizzi, Tricia
Comment from Beaulieu , Richard
Comment from Fast, Yvonne
Comment from Romans, Jennifer
Comment from Shuler, Carol
Comment from Tamimi, Nawal
Comment from Muñoz, Laura
Comment from Rohr, Andrea
Comment from Sanchez, Rose
Comment from Charlton, Elizabeth
Comment from Leary, Ellen
Comment from East, Terri
Comment from Davis, Ken
Comment from McLeod, Keely

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NOAA-NMFS-2020-0031-DRAFT-21035
NOAA-NMFS-2020-0031-DRAFT-21036
NOAA-NMFS-2020-0031-DRAFT-21037
NOAA-NMFS-2020-0031-DRAFT-21038
NOAA-NMFS-2020-0031-DRAFT-21039
NOAA-NMFS-2020-0031-DRAFT-21040
NOAA-NMFS-2020-0031-DRAFT-21041
NOAA-NMFS-2020-0031-DRAFT-21042
NOAA-NMFS-2020-0031-DRAFT-21043
NOAA-NMFS-2020-0031-DRAFT-21044
NOAA-NMFS-2020-0031-DRAFT-21045
NOAA-NMFS-2020-0031-DRAFT-21046
NOAA-NMFS-2020-0031-DRAFT-21047
NOAA-NMFS-2020-0031-DRAFT-21048
NOAA-NMFS-2020-0031-DRAFT-21049
NOAA-NMFS-2020-0031-DRAFT-21050
NOAA-NMFS-2020-0031-DRAFT-21051
NOAA-NMFS-2020-0031-DRAFT-21052
NOAA-NMFS-2020-0031-DRAFT-21053
NOAA-NMFS-2020-0031-DRAFT-21054
NOAA-NMFS-2020-0031-DRAFT-21055
NOAA-NMFS-2020-0031-DRAFT-21056
NOAA-NMFS-2020-0031-DRAFT-21057
NOAA-NMFS-2020-0031-DRAFT-21058
NOAA-NMFS-2020-0031-DRAFT-21059
NOAA-NMFS-2020-0031-DRAFT-21060
NOAA-NMFS-2020-0031-DRAFT-21061
NOAA-NMFS-2020-0031-DRAFT-21062
NOAA-NMFS-2020-0031-DRAFT-21063
NOAA-NMFS-2020-0031-DRAFT-21064
NOAA-NMFS-2020-0031-DRAFT-21065
NOAA-NMFS-2020-0031-DRAFT-21066
NOAA-NMFS-2020-0031-DRAFT-21067
NOAA-NMFS-2020-0031-DRAFT-21068
NOAA-NMFS-2020-0031-DRAFT-21069
NOAA-NMFS-2020-0031-DRAFT-21070
NOAA-NMFS-2020-0031-DRAFT-21071
NOAA-NMFS-2020-0031-DRAFT-21072
NOAA-NMFS-2020-0031-DRAFT-21073
NOAA-NMFS-2020-0031-DRAFT-21074
NOAA-NMFS-2020-0031-DRAFT-21075

Comment from Patricia Flynn-Williams
Comment from Judith Grisel
Comment from Karen OBrien
Comment from Darla Kravetz
Comment from Ken Bosch
Comment from Silvia Hall
Comment from Paula Parker
Comment from Amanda Gordon
Comment from Kristine Jorgensen
Comment from Barbara Mintz
Comment from Aliaa Abdel-Gawad
Comment from Lauren OKEEFE
Comment from Amber Sumrall
Comment from Linda Meiberg
Comment from Barbara Lintz
Comment from Linda Szurley
Comment from Feli Devlin
Comment from Carla Compton
Comment from JULIEN JEGOU
Comment from Susan Bortolussi
Comment from Joan Reilly
Comment from nan matthews
Comment from Calvin Cole
Comment from Mark Jennerjohn
Comment from Spencer Adams
Comment from tony lorito
Comment from Delores Stachura
Comment from Weisman Milt
Comment from Daniel Hawley
Comment from Brian TRUAX
Comment from Wayne Toven
Comment from Susan Crowle
Comment from Timothy Schacht
Comment from Elizabeth Chiribi
Comment from Rebecca Thomas
Comment from Mark Crane
Comment from Wilma Davison
Comment from Jennifer Reed
Comment from William McGoldrick
Comment from Frank Blake
Comment from Bruce Nowak

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NOAA-NMFS-2020-0031-DRAFT-26257
NOAA-NMFS-2020-0031-DRAFT-26258
NOAA-NMFS-2020-0031-DRAFT-26259
NOAA-NMFS-2020-0031-DRAFT-26260
NOAA-NMFS-2020-0031-DRAFT-26261
NOAA-NMFS-2020-0031-DRAFT-26262
NOAA-NMFS-2020-0031-DRAFT-26263
NOAA-NMFS-2020-0031-DRAFT-26264
NOAA-NMFS-2020-0031-DRAFT-26265
NOAA-NMFS-2020-0031-DRAFT-26266
NOAA-NMFS-2020-0031-DRAFT-26267
NOAA-NMFS-2020-0031-DRAFT-26268
NOAA-NMFS-2020-0031-DRAFT-26269
NOAA-NMFS-2020-0031-DRAFT-26270
NOAA-NMFS-2020-0031-DRAFT-26271
NOAA-NMFS-2020-0031-DRAFT-26272
NOAA-NMFS-2020-0031-DRAFT-26273
NOAA-NMFS-2020-0031-DRAFT-26274
NOAA-NMFS-2020-0031-DRAFT-26275
NOAA-NMFS-2020-0031-DRAFT-26276
NOAA-NMFS-2020-0031-DRAFT-26277
NOAA-NMFS-2020-0031-DRAFT-26278
NOAA-NMFS-2020-0031-DRAFT-26279
NOAA-NMFS-2020-0031-DRAFT-26280
NOAA-NMFS-2020-0031-DRAFT-26281
NOAA-NMFS-2020-0031-DRAFT-26282
NOAA-NMFS-2020-0031-DRAFT-26283
NOAA-NMFS-2020-0031-DRAFT-26284
NOAA-NMFS-2020-0031-DRAFT-26285
NOAA-NMFS-2020-0031-DRAFT-26286
NOAA-NMFS-2020-0031-DRAFT-26287
NOAA-NMFS-2020-0031-DRAFT-26288
NOAA-NMFS-2020-0031-DRAFT-26289
NOAA-NMFS-2020-0031-DRAFT-26290
NOAA-NMFS-2020-0031-DRAFT-26291
NOAA-NMFS-2020-0031-DRAFT-26292
NOAA-NMFS-2020-0031-DRAFT-26293
NOAA-NMFS-2020-0031-DRAFT-26294
NOAA-NMFS-2020-0031-DRAFT-26295
NOAA-NMFS-2020-0031-DRAFT-26296
NOAA-NMFS-2020-0031-DRAFT-26297

Comment from KUIPERI, CHRISTINA
Comment from Renta, Anne
Comment from MILLER, LOYCE
Comment from Kane, Austin
Comment from Whitt, Amesha
Comment from Freund, Julia
Comment from Ryan, Bev
Comment from REED, DONALD
Comment from Nakayama, Midori
Comment from Gitman, Samantha
Comment from gedney, harry
Comment from Schrey, Natalie
Comment from Graef, Alicia
Comment from Hinton, Robin
Comment from Hano, Sara
Comment from Holland, Kim
Comment from Dixon, Vicki
Comment from Moreno, Carolina
Comment from SCANLON, SANDRA
Comment from jordan, patti
Comment from Jennings, Barbara
Comment from Boccagna, emilia
Comment from Flood, Patricia
Comment from Fillat de Acosta, Loreto
Comment from Lindsey, Judith
Comment from Rubera, Kathy
Comment from Kraushaar, Sunday
Comment from Mills, Constance
Comment from Foshee, Margaret
Comment from Hrycuna, Charles and
Comment from Fournier, Suzanne
Comment from Poole, Marybeth
Comment from McLean , Diane
Comment from Hill, Sandra
Comment from Rozhkova , Viktoriya
Comment from Brune, Michael
Comment from Mariani, Eugene
Comment from Nowak, Mary
Comment from Grooms , Teri
Comment from Scibetta , Jen
Comment from Covington, Pamela

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NOAA-NMFS-2020-0031-DRAFT-21076
NOAA-NMFS-2020-0031-DRAFT-21077
NOAA-NMFS-2020-0031-DRAFT-21078
NOAA-NMFS-2020-0031-DRAFT-21079
NOAA-NMFS-2020-0031-DRAFT-21080
NOAA-NMFS-2020-0031-DRAFT-21081
NOAA-NMFS-2020-0031-DRAFT-21082
NOAA-NMFS-2020-0031-DRAFT-21083
NOAA-NMFS-2020-0031-DRAFT-21084
NOAA-NMFS-2020-0031-DRAFT-21085
NOAA-NMFS-2020-0031-DRAFT-21086
NOAA-NMFS-2020-0031-DRAFT-21087
NOAA-NMFS-2020-0031-DRAFT-21088
NOAA-NMFS-2020-0031-DRAFT-21089
NOAA-NMFS-2020-0031-DRAFT-21090
NOAA-NMFS-2020-0031-DRAFT-21091
NOAA-NMFS-2020-0031-DRAFT-21092
NOAA-NMFS-2020-0031-DRAFT-21093
NOAA-NMFS-2020-0031-DRAFT-21094
NOAA-NMFS-2020-0031-DRAFT-21095
NOAA-NMFS-2020-0031-DRAFT-21096
NOAA-NMFS-2020-0031-DRAFT-21097
NOAA-NMFS-2020-0031-DRAFT-21098
NOAA-NMFS-2020-0031-DRAFT-21099
NOAA-NMFS-2020-0031-DRAFT-21100
NOAA-NMFS-2020-0031-DRAFT-21101
NOAA-NMFS-2020-0031-DRAFT-21102
NOAA-NMFS-2020-0031-DRAFT-21103
NOAA-NMFS-2020-0031-DRAFT-21104
NOAA-NMFS-2020-0031-DRAFT-21105
NOAA-NMFS-2020-0031-DRAFT-21106
NOAA-NMFS-2020-0031-DRAFT-21107
NOAA-NMFS-2020-0031-DRAFT-21108
NOAA-NMFS-2020-0031-DRAFT-21109
NOAA-NMFS-2020-0031-DRAFT-21110
NOAA-NMFS-2020-0031-DRAFT-21111
NOAA-NMFS-2020-0031-DRAFT-21113
NOAA-NMFS-2020-0031-DRAFT-21114
NOAA-NMFS-2020-0031-DRAFT-21115
NOAA-NMFS-2020-0031-DRAFT-21116
NOAA-NMFS-2020-0031-DRAFT-21117

Comment from BRUCE Revesz
Comment from Lori Unick
Comment from betty winholtz
Comment from Sunday Kraushaar
Comment from Edythe Quinn
Comment from Kristyn MacPhail
Comment from Stephen Maxwell
Comment from Patrick Mitchell
Comment from Lyn Lowry
Comment from Daniel Wilkinson
Comment from Ben Ruwe
Comment from Eva Havas
Comment from Tia Pearson
Comment from Robert Durych
Comment from Lynn Ricci
Comment from Doris Luther
Comment from Sandra Russell
Comment from Mel Kahrs
Comment from John Joadwine
Comment from Jean Bevsek
Comment from Joan Bonnington
Comment from Tracey Peterson
Comment from Patrick Maloney
Comment from Heidi Davis
Comment from Gretchen Dickson
Comment from John Burchard
Comment from E Wait
Comment from Charlie Gedi
Comment from Gloria Boyd
Comment from Deborah Reiter
Comment from Steve Sheehy
Comment from Leslie Gladstone
Comment from Amy Mower
Comment from Michael Johan
Comment from J.L. Evans
Comment from Susan Schuchard
Comment from Joshua Paterno
Comment from ki paul
Comment from Laura Vera
Comment from Frank Boggio
Comment from Nancy Pichiotino

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NOAA-NMFS-2020-0031-DRAFT-26298
NOAA-NMFS-2020-0031-DRAFT-26299
NOAA-NMFS-2020-0031-DRAFT-26300
NOAA-NMFS-2020-0031-DRAFT-26301
NOAA-NMFS-2020-0031-DRAFT-26302
NOAA-NMFS-2020-0031-DRAFT-26303
NOAA-NMFS-2020-0031-DRAFT-26304
NOAA-NMFS-2020-0031-DRAFT-26305
NOAA-NMFS-2020-0031-DRAFT-26306
NOAA-NMFS-2020-0031-DRAFT-26307
NOAA-NMFS-2020-0031-DRAFT-26308
NOAA-NMFS-2020-0031-DRAFT-26309
NOAA-NMFS-2020-0031-DRAFT-26310
NOAA-NMFS-2020-0031-DRAFT-26311
NOAA-NMFS-2020-0031-DRAFT-26312
NOAA-NMFS-2020-0031-DRAFT-26313
NOAA-NMFS-2020-0031-DRAFT-26314
NOAA-NMFS-2020-0031-DRAFT-26315
NOAA-NMFS-2020-0031-DRAFT-26316
NOAA-NMFS-2020-0031-DRAFT-26317
NOAA-NMFS-2020-0031-DRAFT-26318
NOAA-NMFS-2020-0031-DRAFT-26319
NOAA-NMFS-2020-0031-DRAFT-26320
NOAA-NMFS-2020-0031-DRAFT-26321
NOAA-NMFS-2020-0031-DRAFT-26322
NOAA-NMFS-2020-0031-DRAFT-26323
NOAA-NMFS-2020-0031-DRAFT-26324
NOAA-NMFS-2020-0031-DRAFT-26325
NOAA-NMFS-2020-0031-DRAFT-26326
NOAA-NMFS-2020-0031-DRAFT-26327
NOAA-NMFS-2020-0031-DRAFT-26328
NOAA-NMFS-2020-0031-DRAFT-26329
NOAA-NMFS-2020-0031-DRAFT-26330
NOAA-NMFS-2020-0031-DRAFT-26331
NOAA-NMFS-2020-0031-DRAFT-26332
NOAA-NMFS-2020-0031-DRAFT-26333
NOAA-NMFS-2020-0031-DRAFT-26334
NOAA-NMFS-2020-0031-DRAFT-26335
NOAA-NMFS-2020-0031-DRAFT-26336
NOAA-NMFS-2020-0031-DRAFT-26337
NOAA-NMFS-2020-0031-DRAFT-26338

Comment from Macy, Cecilia
Comment from Hughes, Royce
Comment from Bichler, Ingrid
Comment from Sokolowski, Linda
Comment from Wallace , Shelly
Comment from Wilson, June
Comment from Glass, Ann
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-21118
NOAA-NMFS-2020-0031-DRAFT-21119
NOAA-NMFS-2020-0031-DRAFT-21120
NOAA-NMFS-2020-0031-DRAFT-21121
NOAA-NMFS-2020-0031-DRAFT-21122
NOAA-NMFS-2020-0031-DRAFT-21123
NOAA-NMFS-2020-0031-DRAFT-21124
NOAA-NMFS-2020-0031-DRAFT-21125
NOAA-NMFS-2020-0031-DRAFT-21126
NOAA-NMFS-2020-0031-DRAFT-21127
NOAA-NMFS-2020-0031-DRAFT-21128
NOAA-NMFS-2020-0031-DRAFT-21129
NOAA-NMFS-2020-0031-DRAFT-21130
NOAA-NMFS-2020-0031-DRAFT-21131
NOAA-NMFS-2020-0031-DRAFT-21132
NOAA-NMFS-2020-0031-DRAFT-21133
NOAA-NMFS-2020-0031-DRAFT-21134
NOAA-NMFS-2020-0031-DRAFT-21135
NOAA-NMFS-2020-0031-DRAFT-21136
NOAA-NMFS-2020-0031-DRAFT-21137
NOAA-NMFS-2020-0031-DRAFT-21138
NOAA-NMFS-2020-0031-DRAFT-21139
NOAA-NMFS-2020-0031-DRAFT-21140
NOAA-NMFS-2020-0031-DRAFT-21141
NOAA-NMFS-2020-0031-DRAFT-21142
NOAA-NMFS-2020-0031-DRAFT-21143
NOAA-NMFS-2020-0031-DRAFT-21144
NOAA-NMFS-2020-0031-DRAFT-21145
NOAA-NMFS-2020-0031-DRAFT-21146
NOAA-NMFS-2020-0031-DRAFT-21147
NOAA-NMFS-2020-0031-DRAFT-21148
NOAA-NMFS-2020-0031-DRAFT-21149
NOAA-NMFS-2020-0031-DRAFT-21150
NOAA-NMFS-2020-0031-DRAFT-21151
NOAA-NMFS-2020-0031-DRAFT-21152
NOAA-NMFS-2020-0031-DRAFT-21153
NOAA-NMFS-2020-0031-DRAFT-21154
NOAA-NMFS-2020-0031-DRAFT-21155
NOAA-NMFS-2020-0031-DRAFT-21156
NOAA-NMFS-2020-0031-DRAFT-21157
NOAA-NMFS-2020-0031-DRAFT-21158

Comment from Melissa Grondin
Comment from Joshua Paterno
Comment from Loretta Aja
Comment from Jason Green
Comment from Janis Todd
Comment from Steven Iszauk
Comment from Karen Bonnell
Comment from Donald Taylor
Comment from Leonard Samford
Comment from Shelley Vereen
Comment from cathi soule
Comment from Andrew Mittelman
Comment from Georgiann Young
Comment from Grace Neff
Comment from Ann Luft
Comment from Koral Campbell
Comment from Claire Goldthwaite
Comment from Jean Johnston
Comment from Susan Yarnell
Comment from John Brown
Comment from Ron McGill
Comment from Pablo Bobe
Comment from Susan Halloran
Comment from Chris Nolasco
Comment from Linda Fowler
Comment from Sandra Breakfield
Comment from Brian Jones
Comment from Laura Guttridge
Comment from Lisa Bass
Comment from Kathleen Doctor
Comment from Sally Tucker
Comment from Barbara Burton
Comment from L. Wilkinson
Comment from Patricia Baker
Comment from Linda Klein
Comment from Gwen Hadland
Comment from Dan Schneider
Comment from Claudia Leff
Comment from Andrea Zajac
Comment from Kit Mason
Comment from Tania Roa

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NOAA-NMFS-2020-0031-DRAFT-26339
NOAA-NMFS-2020-0031-DRAFT-26340
NOAA-NMFS-2020-0031-DRAFT-26341
NOAA-NMFS-2020-0031-DRAFT-26342
NOAA-NMFS-2020-0031-DRAFT-26343
NOAA-NMFS-2020-0031-DRAFT-26344
NOAA-NMFS-2020-0031-DRAFT-26345
NOAA-NMFS-2020-0031-DRAFT-26346
NOAA-NMFS-2020-0031-DRAFT-26347
NOAA-NMFS-2020-0031-DRAFT-26348
NOAA-NMFS-2020-0031-DRAFT-26349
NOAA-NMFS-2020-0031-DRAFT-26350
NOAA-NMFS-2020-0031-DRAFT-26351
NOAA-NMFS-2020-0031-DRAFT-26352
NOAA-NMFS-2020-0031-DRAFT-26353
NOAA-NMFS-2020-0031-DRAFT-26354
NOAA-NMFS-2020-0031-DRAFT-26355
NOAA-NMFS-2020-0031-DRAFT-26356
NOAA-NMFS-2020-0031-DRAFT-26357
NOAA-NMFS-2020-0031-DRAFT-26358
NOAA-NMFS-2020-0031-DRAFT-26359
NOAA-NMFS-2020-0031-DRAFT-26360
NOAA-NMFS-2020-0031-DRAFT-26361
NOAA-NMFS-2020-0031-DRAFT-26362
NOAA-NMFS-2020-0031-DRAFT-26363
NOAA-NMFS-2020-0031-DRAFT-26364
NOAA-NMFS-2020-0031-DRAFT-26365
NOAA-NMFS-2020-0031-DRAFT-26366
NOAA-NMFS-2020-0031-DRAFT-26367
NOAA-NMFS-2020-0031-DRAFT-26368
NOAA-NMFS-2020-0031-DRAFT-26369
NOAA-NMFS-2020-0031-DRAFT-26370
NOAA-NMFS-2020-0031-DRAFT-26371
NOAA-NMFS-2020-0031-DRAFT-26372
NOAA-NMFS-2020-0031-DRAFT-26373
NOAA-NMFS-2020-0031-DRAFT-26374
NOAA-NMFS-2020-0031-DRAFT-26375
NOAA-NMFS-2020-0031-DRAFT-26376
NOAA-NMFS-2020-0031-DRAFT-26377
NOAA-NMFS-2020-0031-DRAFT-26378
NOAA-NMFS-2020-0031-DRAFT-26379

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Cynde McInnis
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gaess, Judie
Comment from A., Colette
Comment from Warner, Cherie
Comment from Schorin, Susan
Comment from Sanders, Krista
Comment from berario, myra
Comment from McFarland, S.M.
Comment from Voorhies, Eric
Comment from urias, rose
Comment from Black, Sharon
Comment from Roth, Margaret
Comment from Nichols, Claudia
Comment from Grimes, Christiane
Comment from Ennis, Mark
Comment from Krom, Beverly
Comment from Shultz, Doris
Comment from Dominguez, Mari
Comment from Staab , Kathleen
Comment from Edison , Fern Marcia
Comment from Pellegrini, Annika
Comment from Renk, Edeltraut
Comment from johnson, nigel
Comment from Winter, Bonnie
Comment from Mortimer, Karl
Comment from Clark , Brenda
Comment from Scionti, Cynthia
Comment from renard, mary
Comment from Thurston, Vanda

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NOAA-NMFS-2020-0031-DRAFT-21159
NOAA-NMFS-2020-0031-DRAFT-21160
NOAA-NMFS-2020-0031-DRAFT-21161
NOAA-NMFS-2020-0031-DRAFT-21162
NOAA-NMFS-2020-0031-DRAFT-21163
NOAA-NMFS-2020-0031-DRAFT-21164
NOAA-NMFS-2020-0031-DRAFT-21165
NOAA-NMFS-2020-0031-DRAFT-21166
NOAA-NMFS-2020-0031-DRAFT-21167
NOAA-NMFS-2020-0031-DRAFT-21168
NOAA-NMFS-2020-0031-DRAFT-21169
NOAA-NMFS-2020-0031-DRAFT-21170
NOAA-NMFS-2020-0031-DRAFT-21171
NOAA-NMFS-2020-0031-DRAFT-21172
NOAA-NMFS-2020-0031-DRAFT-21173
NOAA-NMFS-2020-0031-DRAFT-21174
NOAA-NMFS-2020-0031-DRAFT-21175
NOAA-NMFS-2020-0031-DRAFT-21176
NOAA-NMFS-2020-0031-DRAFT-21177
NOAA-NMFS-2020-0031-DRAFT-21178
NOAA-NMFS-2020-0031-DRAFT-21179
NOAA-NMFS-2020-0031-DRAFT-21180
NOAA-NMFS-2020-0031-DRAFT-21181
NOAA-NMFS-2020-0031-DRAFT-21182
NOAA-NMFS-2020-0031-DRAFT-21183
NOAA-NMFS-2020-0031-DRAFT-21184
NOAA-NMFS-2020-0031-DRAFT-21185
NOAA-NMFS-2020-0031-DRAFT-21186
NOAA-NMFS-2020-0031-DRAFT-21187
NOAA-NMFS-2020-0031-DRAFT-21188
NOAA-NMFS-2020-0031-DRAFT-21189
NOAA-NMFS-2020-0031-DRAFT-21190
NOAA-NMFS-2020-0031-DRAFT-21191
NOAA-NMFS-2020-0031-DRAFT-21192
NOAA-NMFS-2020-0031-DRAFT-21193
NOAA-NMFS-2020-0031-DRAFT-21194
NOAA-NMFS-2020-0031-DRAFT-21195
NOAA-NMFS-2020-0031-DRAFT-21196
NOAA-NMFS-2020-0031-DRAFT-21197
NOAA-NMFS-2020-0031-DRAFT-21198
NOAA-NMFS-2020-0031-DRAFT-21199

Comment from David Landskron
Comment from Suzette Hoyt
Comment from Robert Johnson
Comment from Joe Tutt
Comment from I. Engle
Comment from Janet Hofmann
Comment from Nina Davis
Comment from Jill Mulato
Comment from C. Cook
Comment from lee jordan
Comment from gertz michael
Comment from Sylvia Byerley
Comment from Sylvia Byerley
Comment from Rod Garner
Comment from Raisa Hebra
Comment from Raisa Hebra
Comment from sue parsell
Comment from Thomas Dawley
Comment from JoAnna Redman-Smith
Comment from Stephen Rosen
Comment from Chad Evans
Comment from Lynn arnheim
Comment from Rebecca Sundberg
Comment from Gail Veiby
Comment from bonnie kohleriter
Comment from Randall Griswold
Comment from Sharon Mora
Comment from Katherine Valentino
Comment from Felicia Saunders
Comment from Leslie Smith
Comment from dana Bleckinger
Comment from Mark Waltzer
Comment from Marianne Bentley
Comment from Sheilagh Bergeron
Comment from Phoenix Giffen
Comment from Pam Doran
Comment from Linsley Pietsch
Comment from bonnie mandel
Comment from Ed Loosli
Comment from Debbie Stinehart
Comment from Laurie Habel

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NOAA-NMFS-2020-0031-DRAFT-26380
NOAA-NMFS-2020-0031-DRAFT-26381
NOAA-NMFS-2020-0031-DRAFT-26382
NOAA-NMFS-2020-0031-DRAFT-26383
NOAA-NMFS-2020-0031-DRAFT-26384
NOAA-NMFS-2020-0031-DRAFT-26385
NOAA-NMFS-2020-0031-DRAFT-26386
NOAA-NMFS-2020-0031-DRAFT-26387
NOAA-NMFS-2020-0031-DRAFT-26388
NOAA-NMFS-2020-0031-DRAFT-26389
NOAA-NMFS-2020-0031-DRAFT-26390
NOAA-NMFS-2020-0031-DRAFT-26391
NOAA-NMFS-2020-0031-DRAFT-26392
NOAA-NMFS-2020-0031-DRAFT-26393
NOAA-NMFS-2020-0031-DRAFT-26394
NOAA-NMFS-2020-0031-DRAFT-26395
NOAA-NMFS-2020-0031-DRAFT-26396
NOAA-NMFS-2020-0031-DRAFT-26397
NOAA-NMFS-2020-0031-DRAFT-26398
NOAA-NMFS-2020-0031-DRAFT-26399
NOAA-NMFS-2020-0031-DRAFT-26400
NOAA-NMFS-2020-0031-DRAFT-26401
NOAA-NMFS-2020-0031-DRAFT-26402
NOAA-NMFS-2020-0031-DRAFT-26403
NOAA-NMFS-2020-0031-DRAFT-26404
NOAA-NMFS-2020-0031-DRAFT-26405
NOAA-NMFS-2020-0031-DRAFT-26406
NOAA-NMFS-2020-0031-DRAFT-26407
NOAA-NMFS-2020-0031-DRAFT-26408
NOAA-NMFS-2020-0031-DRAFT-26409
NOAA-NMFS-2020-0031-DRAFT-26410
NOAA-NMFS-2020-0031-DRAFT-26411
NOAA-NMFS-2020-0031-DRAFT-26412
NOAA-NMFS-2020-0031-DRAFT-26413
NOAA-NMFS-2020-0031-DRAFT-26414
NOAA-NMFS-2020-0031-DRAFT-26415
NOAA-NMFS-2020-0031-DRAFT-26416
NOAA-NMFS-2020-0031-DRAFT-26417
NOAA-NMFS-2020-0031-DRAFT-26418
NOAA-NMFS-2020-0031-DRAFT-26419
NOAA-NMFS-2020-0031-DRAFT-26420

Comment from Visconti, Angela
Comment from Anonymous Anonymous
Comment from Cohrs, Sabrina
Comment from Schwartz , Julianne
Comment from Kuster, Lorien
Comment from Carsten, R
Comment from Sirois, Brent
Comment from Profeta, Sara
Comment from Vie, Phoenix
Comment from Mehring, Gwen
Comment from de Castro, Brian
Comment from Gunn, Errol
Comment from Ritzmann, Mary
Comment from Benet, Mercedes
Comment from troalic, paul
Comment from Regan, Laura
Comment from Gatehouse, John
Comment from contreras, alfred
Comment from Jacobson, Ruth
Comment from Oliver, Bonnie
Comment from Toomey, Jacinda
Comment from Lindau , Roberta
Comment from Zarbano, Angela
Comment from Scott, Laura
Comment from Thallon, Ruhi
Comment from Braghiroli, Iris
Comment from Vandiver, Dwayne
Comment from Dragonheart, Debra
Comment from whitehall, lee
Comment from Lee, Marcy
Comment from Verkamp, Doris
Comment from Anonymous Anonymous
Comment from Toy, Sherry
Comment from Paoluzzi, Sara
Comment from cobb, gene
Comment from Thomas, Carrie
Comment from Mackenzie, Kristine
Comment from Anonymous Anonymous
Comment from McKee, Lary
Comment from Jensen, Anne Lise Bai
Comment from Barton, Bethany

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NOAA-NMFS-2020-0031-DRAFT-21200
NOAA-NMFS-2020-0031-DRAFT-21201
NOAA-NMFS-2020-0031-DRAFT-21202
NOAA-NMFS-2020-0031-DRAFT-21203
NOAA-NMFS-2020-0031-DRAFT-21204
NOAA-NMFS-2020-0031-DRAFT-21205
NOAA-NMFS-2020-0031-DRAFT-21206
NOAA-NMFS-2020-0031-DRAFT-21207
NOAA-NMFS-2020-0031-DRAFT-21208
NOAA-NMFS-2020-0031-DRAFT-21209
NOAA-NMFS-2020-0031-DRAFT-21210
NOAA-NMFS-2020-0031-DRAFT-21211
NOAA-NMFS-2020-0031-DRAFT-21212
NOAA-NMFS-2020-0031-DRAFT-21213
NOAA-NMFS-2020-0031-DRAFT-21214
NOAA-NMFS-2020-0031-DRAFT-21215
NOAA-NMFS-2020-0031-DRAFT-21216
NOAA-NMFS-2020-0031-DRAFT-21217
NOAA-NMFS-2020-0031-DRAFT-21218
NOAA-NMFS-2020-0031-DRAFT-21219
NOAA-NMFS-2020-0031-DRAFT-21220
NOAA-NMFS-2020-0031-DRAFT-21221
NOAA-NMFS-2020-0031-DRAFT-21222
NOAA-NMFS-2020-0031-DRAFT-21223
NOAA-NMFS-2020-0031-DRAFT-21224
NOAA-NMFS-2020-0031-DRAFT-21225
NOAA-NMFS-2020-0031-DRAFT-21226
NOAA-NMFS-2020-0031-DRAFT-21227
NOAA-NMFS-2020-0031-DRAFT-21228
NOAA-NMFS-2020-0031-DRAFT-21229
NOAA-NMFS-2020-0031-DRAFT-21230
NOAA-NMFS-2020-0031-DRAFT-21231
NOAA-NMFS-2020-0031-DRAFT-21232
NOAA-NMFS-2020-0031-DRAFT-21233
NOAA-NMFS-2020-0031-DRAFT-21234
NOAA-NMFS-2020-0031-DRAFT-21235
NOAA-NMFS-2020-0031-DRAFT-21236
NOAA-NMFS-2020-0031-DRAFT-21237
NOAA-NMFS-2020-0031-DRAFT-21238
NOAA-NMFS-2020-0031-DRAFT-21239
NOAA-NMFS-2020-0031-DRAFT-21240

Comment from Catherine Vedder
Comment from Viviana Yost
Comment from Christina Schlitt
Comment from Judy Hollingsworth
Comment from William Harris
Comment from Arthur Schurr
Comment from Jamie Greer
Comment from Kerri Piazza
Comment from Cecile Ervin
Comment from rob fursich
Comment from Aleasa Crary
Comment from Daniel Carrillo
Comment from Mary Buckley
Comment from Patricia Bzker
Comment from Donna Wolz
Comment from Carole Arbour
Comment from Pamela Esser
Comment from cynthia dietzmann
Comment from Melanie Vliet
Comment from Gretchen Dysart
Comment from Anthony Vessicchio
Comment from Carol Rahbari
Comment from Paul Lifton
Comment from Barry Horney
Comment from Liz Kochis
Comment from Gretchen Dysart
Comment from Judith Radovsky
Comment from Linda Thompson
Comment from Genie Hatch
Comment from Judith DeAntonellis
Comment from ALLEN FREIHOFER
Comment from Travis Jardon
Comment from Kay Clement
Comment from Sarah Leighton
Comment from Tim Hughes
Comment from RICHARD KETTYLE
Comment from Anne Hammond
Comment from Mary Demaso
Comment from Carroll Abshier
Comment from Warren Clark
Comment from Annette Benton

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NOAA-NMFS-2020-0031-DRAFT-26421
NOAA-NMFS-2020-0031-DRAFT-26422
NOAA-NMFS-2020-0031-DRAFT-26423
NOAA-NMFS-2020-0031-DRAFT-26424
NOAA-NMFS-2020-0031-DRAFT-26425
NOAA-NMFS-2020-0031-DRAFT-26426
NOAA-NMFS-2020-0031-DRAFT-26427
NOAA-NMFS-2020-0031-DRAFT-26428
NOAA-NMFS-2020-0031-DRAFT-26429
NOAA-NMFS-2020-0031-DRAFT-26430
NOAA-NMFS-2020-0031-DRAFT-26431
NOAA-NMFS-2020-0031-DRAFT-26432
NOAA-NMFS-2020-0031-DRAFT-26433
NOAA-NMFS-2020-0031-DRAFT-26434
NOAA-NMFS-2020-0031-DRAFT-26435
NOAA-NMFS-2020-0031-DRAFT-26436
NOAA-NMFS-2020-0031-DRAFT-26437
NOAA-NMFS-2020-0031-DRAFT-26438
NOAA-NMFS-2020-0031-DRAFT-26439
NOAA-NMFS-2020-0031-DRAFT-26440
NOAA-NMFS-2020-0031-DRAFT-26441
NOAA-NMFS-2020-0031-DRAFT-26442
NOAA-NMFS-2020-0031-DRAFT-26443
NOAA-NMFS-2020-0031-DRAFT-26444
NOAA-NMFS-2020-0031-DRAFT-26445
NOAA-NMFS-2020-0031-DRAFT-26446
NOAA-NMFS-2020-0031-DRAFT-26447
NOAA-NMFS-2020-0031-DRAFT-26448
NOAA-NMFS-2020-0031-DRAFT-26449
NOAA-NMFS-2020-0031-DRAFT-26450
NOAA-NMFS-2020-0031-DRAFT-26451
NOAA-NMFS-2020-0031-DRAFT-26452
NOAA-NMFS-2020-0031-DRAFT-26453
NOAA-NMFS-2020-0031-DRAFT-26454
NOAA-NMFS-2020-0031-DRAFT-26455
NOAA-NMFS-2020-0031-DRAFT-26456
NOAA-NMFS-2020-0031-DRAFT-26457
NOAA-NMFS-2020-0031-DRAFT-26458
NOAA-NMFS-2020-0031-DRAFT-26459
NOAA-NMFS-2020-0031-DRAFT-26460
NOAA-NMFS-2020-0031-DRAFT-26461

Comment from LeBlanc, Heather
Comment from Besteiro, Marisa
Comment from Privett, Donald
Comment from Collins, John
Comment from durant, helen
Comment from Knowlton, Elizabeth
Comment from Kalabakas, Maggie
Comment from Smith, Dez
Comment from Waddell, Sonia
Comment from Petryk, Richard
Comment from Foulger, Paul
Comment from Campbell, michelle
Comment from Iradah, Anahata
Comment from Sallee, Sandra
Comment from Meadors, Helen
Comment from Jones, Linda
Comment from jung, marilou
Comment from Schilg, Ursula
Comment from Rigas, Misty
Comment from Lee, JoAnn
Comment from LaNeve, Patti
Comment from Gibson, Connie
Comment from Charnetski, Cindy
Comment from Fouts, Amber
Comment from Bruen, Harry
Comment from Wellington , Deborah
Comment from JANKELOW, MICHELE
Comment from Forrest, Ellie
Comment from Nix, Cecilia
Comment from Anonymous Anonymous
Comment from Vitelli, Karen
Comment from Longino, Lynette
Comment from Forrest, Ellie
Comment from Sanders, Evelyn
Comment from Ellman, Tonya
Comment from FARRARE, DENISE
Comment from Lohne, Laurie
Comment from Jordan, Alexander
Comment from Smith, Thomas
Comment from Muñoz, Laura
Comment from Zakreski, Ann

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NOAA-NMFS-2020-0031-DRAFT-21241
NOAA-NMFS-2020-0031-DRAFT-21242
NOAA-NMFS-2020-0031-DRAFT-21243
NOAA-NMFS-2020-0031-DRAFT-21244
NOAA-NMFS-2020-0031-DRAFT-21245
NOAA-NMFS-2020-0031-DRAFT-21246
NOAA-NMFS-2020-0031-DRAFT-21247
NOAA-NMFS-2020-0031-DRAFT-21248
NOAA-NMFS-2020-0031-DRAFT-21249
NOAA-NMFS-2020-0031-DRAFT-21250
NOAA-NMFS-2020-0031-DRAFT-21251
NOAA-NMFS-2020-0031-DRAFT-21252
NOAA-NMFS-2020-0031-DRAFT-21253
NOAA-NMFS-2020-0031-DRAFT-21254
NOAA-NMFS-2020-0031-DRAFT-21255
NOAA-NMFS-2020-0031-DRAFT-21256
NOAA-NMFS-2020-0031-DRAFT-21257
NOAA-NMFS-2020-0031-DRAFT-21258
NOAA-NMFS-2020-0031-DRAFT-21259
NOAA-NMFS-2020-0031-DRAFT-21260
NOAA-NMFS-2020-0031-DRAFT-21261
NOAA-NMFS-2020-0031-DRAFT-21262
NOAA-NMFS-2020-0031-DRAFT-21263
NOAA-NMFS-2020-0031-DRAFT-21264
NOAA-NMFS-2020-0031-DRAFT-21265
NOAA-NMFS-2020-0031-DRAFT-21266
NOAA-NMFS-2020-0031-DRAFT-21267
NOAA-NMFS-2020-0031-DRAFT-21268
NOAA-NMFS-2020-0031-DRAFT-21269
NOAA-NMFS-2020-0031-DRAFT-21270
NOAA-NMFS-2020-0031-DRAFT-21271
NOAA-NMFS-2020-0031-DRAFT-21272
NOAA-NMFS-2020-0031-DRAFT-21273
NOAA-NMFS-2020-0031-DRAFT-21274
NOAA-NMFS-2020-0031-DRAFT-21275
NOAA-NMFS-2020-0031-DRAFT-21276
NOAA-NMFS-2020-0031-DRAFT-21277
NOAA-NMFS-2020-0031-DRAFT-21278
NOAA-NMFS-2020-0031-DRAFT-21279
NOAA-NMFS-2020-0031-DRAFT-21280
NOAA-NMFS-2020-0031-DRAFT-21281

Comment from Christopher Dill
Comment from Gregory Barton
Comment from Sherry brown
Comment from Elana Eli
Comment from Peter Kuhn
Comment from Hank Schlinger
Comment from r d
Comment from Karen Wolf
Comment from Barb Morrison
Comment from Virginia Leslie
Comment from Mandy Tshibangu
Comment from Gail Battaglia
Comment from Jewell Batway
Comment from Nicholas Huss
Comment from Miranda Vorhees
Comment from Jackie Bachor
Comment from Benton Elliott
Comment from Jackie Bachor
Comment from Joseph Otto
Comment from barbara Murray
Comment from Rae Furcha
Comment from Patricia Carlton
Comment from Jill Mossor
Comment from Debbie Earley
Comment from Janet Lindsey-Hays
Comment from Norma Rouser
Comment from Robert Hobe
Comment from Beverley Clarke
Comment from KAREN HODGES
Comment from Diane Loughbom
Comment from William Boteler
Comment from Bridgett Heinly
Comment from Geoffrey Symcox
Comment from jon mocey-hanton
Comment from Jamie Shultz
Comment from Carolyn O'Shea
Comment from Nicole Dick
Comment from Mary Gershanoff
Comment from Heather Walters
Comment from Deirdre Morris
Comment from Michael Burgess

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02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26462
NOAA-NMFS-2020-0031-DRAFT-26463
NOAA-NMFS-2020-0031-DRAFT-26464
NOAA-NMFS-2020-0031-DRAFT-26465
NOAA-NMFS-2020-0031-DRAFT-26466
NOAA-NMFS-2020-0031-DRAFT-26467
NOAA-NMFS-2020-0031-DRAFT-26468
NOAA-NMFS-2020-0031-DRAFT-26469
NOAA-NMFS-2020-0031-DRAFT-26470
NOAA-NMFS-2020-0031-DRAFT-26471
NOAA-NMFS-2020-0031-DRAFT-26472
NOAA-NMFS-2020-0031-DRAFT-26473
NOAA-NMFS-2020-0031-DRAFT-26474
NOAA-NMFS-2020-0031-DRAFT-26475
NOAA-NMFS-2020-0031-DRAFT-26476
NOAA-NMFS-2020-0031-DRAFT-26477
NOAA-NMFS-2020-0031-DRAFT-26478
NOAA-NMFS-2020-0031-DRAFT-26479
NOAA-NMFS-2020-0031-DRAFT-26480
NOAA-NMFS-2020-0031-DRAFT-26481
NOAA-NMFS-2020-0031-DRAFT-26482
NOAA-NMFS-2020-0031-DRAFT-26483
NOAA-NMFS-2020-0031-DRAFT-26484
NOAA-NMFS-2020-0031-DRAFT-26485
NOAA-NMFS-2020-0031-DRAFT-26486
NOAA-NMFS-2020-0031-DRAFT-26487
NOAA-NMFS-2020-0031-DRAFT-26488
NOAA-NMFS-2020-0031-DRAFT-26489
NOAA-NMFS-2020-0031-DRAFT-26490
NOAA-NMFS-2020-0031-DRAFT-26491
NOAA-NMFS-2020-0031-DRAFT-26492
NOAA-NMFS-2020-0031-DRAFT-26493
NOAA-NMFS-2020-0031-DRAFT-26494
NOAA-NMFS-2020-0031-DRAFT-26495
NOAA-NMFS-2020-0031-DRAFT-26496
NOAA-NMFS-2020-0031-DRAFT-26497
NOAA-NMFS-2020-0031-DRAFT-26498
NOAA-NMFS-2020-0031-DRAFT-26499
NOAA-NMFS-2020-0031-DRAFT-26500
NOAA-NMFS-2020-0031-DRAFT-26501
NOAA-NMFS-2020-0031-DRAFT-26502

Comment from Diner, Randy
Comment from Willingham, Kathy
Comment from Garrard, Bryan
Comment from Feketis, Karen
Comment from George, Misha
Comment from mcmichael, rebecca
Comment from Coffman, Kathleen
Comment from Hainley, Tim
Comment from Anonymous Anonymous
Comment from G, M
Comment from Penney, RE
Comment from Cochran , Valerie
Comment from Callalway, Sharrell
Comment from Loveland, Jim
Comment from Rivalsi, Douglas & Elvira
Comment from Wilbourn, Pam
Comment from Borriello, Christy
Comment from WAGNER, CAROL
Comment from DeBryne, Tristine
Comment from Wilkinson, Brad
Comment from Mayhew-Bergman, Megan
Comment from Lukowitz, Wendy
Comment from paulson, wendy
Comment from Emrich, Michelle
Comment from Mclean, Leslie
Comment from Zakova-Laney, Pavla
Comment from O'Keeffe, Kathryn
Comment from Sasnett , Gail
Comment from Leibowitz, Lynda
Comment from Rearick, Cathleen
Comment from Camp, Cynthia
Comment from Majoue, Daniel
Comment from Linder, Nancy
Comment from jonas, mary
Comment from Anonymous Anonymous
Comment from Lamb, Peta-Maree
Comment from SCHOEN, BROOKS
Comment from Money, Christine M.C.
Comment from Tattoli, Chantel
Comment from Howard, Gloria J
Comment from Budde, Sharon

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NOAA-NMFS-2020-0031-DRAFT-21282
NOAA-NMFS-2020-0031-DRAFT-21283
NOAA-NMFS-2020-0031-DRAFT-21284
NOAA-NMFS-2020-0031-DRAFT-21285
NOAA-NMFS-2020-0031-DRAFT-21286
NOAA-NMFS-2020-0031-DRAFT-21287
NOAA-NMFS-2020-0031-DRAFT-21288
NOAA-NMFS-2020-0031-DRAFT-21289
NOAA-NMFS-2020-0031-DRAFT-21290
NOAA-NMFS-2020-0031-DRAFT-21291
NOAA-NMFS-2020-0031-DRAFT-21292
NOAA-NMFS-2020-0031-DRAFT-21293
NOAA-NMFS-2020-0031-DRAFT-21294
NOAA-NMFS-2020-0031-DRAFT-21295
NOAA-NMFS-2020-0031-DRAFT-21296
NOAA-NMFS-2020-0031-DRAFT-21297
NOAA-NMFS-2020-0031-DRAFT-21298
NOAA-NMFS-2020-0031-DRAFT-21299
NOAA-NMFS-2020-0031-DRAFT-21300
NOAA-NMFS-2020-0031-DRAFT-21301
NOAA-NMFS-2020-0031-DRAFT-21302
NOAA-NMFS-2020-0031-DRAFT-21303
NOAA-NMFS-2020-0031-DRAFT-21304
NOAA-NMFS-2020-0031-DRAFT-21305
NOAA-NMFS-2020-0031-DRAFT-21306
NOAA-NMFS-2020-0031-DRAFT-21307
NOAA-NMFS-2020-0031-DRAFT-21308
NOAA-NMFS-2020-0031-DRAFT-21309
NOAA-NMFS-2020-0031-DRAFT-21310
NOAA-NMFS-2020-0031-DRAFT-21311
NOAA-NMFS-2020-0031-DRAFT-21312
NOAA-NMFS-2020-0031-DRAFT-21313
NOAA-NMFS-2020-0031-DRAFT-21314
NOAA-NMFS-2020-0031-DRAFT-21315
NOAA-NMFS-2020-0031-DRAFT-21316
NOAA-NMFS-2020-0031-DRAFT-21318
NOAA-NMFS-2020-0031-DRAFT-21319
NOAA-NMFS-2020-0031-DRAFT-21320
NOAA-NMFS-2020-0031-DRAFT-21321
NOAA-NMFS-2020-0031-DRAFT-21322
NOAA-NMFS-2020-0031-DRAFT-21323

Comment from William George
Comment from Mary Platter-Rieger
Comment from Mo Kafka
Comment from Tonia Howe
Comment from Heather Walters
Comment from Raymond Ballweg
Comment from Lynn Artz
Comment from char hersh
Comment from Pamylle Greinke
Comment from Clifford Phillips
Comment from Michelle Macy
Comment from suanne Williams-Lindgren
Comment from Lori Bryan
Comment from James Murphy
Comment from Marie Hutchens
Comment from Cindy Fine
Comment from Mina Tang
Comment from Tracy Shortle
Comment from Constance Graham
Comment from Nola Family
Comment from Cindy Grimes
Comment from Laree Farmer
Comment from Barb Kruse
Comment from Daniel Solano
Comment from Alethea Kehas
Comment from Linda Just
Comment from Marie Dickenson
Comment from Edwyna Spiegel
Comment from Maryke Petruzzi
Comment from John Wiles
Comment from Marcia Henning
Comment from Katherine Skirvin
Comment from Stephen Howard
Comment from cheryl Minieri
Comment from Valerie Conrad
Comment from Julia Dalton
Comment from Andrew Hinz
Comment from Thomas Page
Comment from Josephine Girardin
Comment from Siegel Martha
Comment from Sally Morrow

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NOAA-NMFS-2020-0031-DRAFT-26503
NOAA-NMFS-2020-0031-DRAFT-26504
NOAA-NMFS-2020-0031-DRAFT-26505
NOAA-NMFS-2020-0031-DRAFT-26506
NOAA-NMFS-2020-0031-DRAFT-26507
NOAA-NMFS-2020-0031-DRAFT-26508
NOAA-NMFS-2020-0031-DRAFT-26509
NOAA-NMFS-2020-0031-DRAFT-26510
NOAA-NMFS-2020-0031-DRAFT-26511
NOAA-NMFS-2020-0031-DRAFT-26512
NOAA-NMFS-2020-0031-DRAFT-26513
NOAA-NMFS-2020-0031-DRAFT-26514
NOAA-NMFS-2020-0031-DRAFT-26515
NOAA-NMFS-2020-0031-DRAFT-26516
NOAA-NMFS-2020-0031-DRAFT-26517
NOAA-NMFS-2020-0031-DRAFT-26518
NOAA-NMFS-2020-0031-DRAFT-26519
NOAA-NMFS-2020-0031-DRAFT-26520
NOAA-NMFS-2020-0031-DRAFT-26521
NOAA-NMFS-2020-0031-DRAFT-26522
NOAA-NMFS-2020-0031-DRAFT-26523
NOAA-NMFS-2020-0031-DRAFT-26524
NOAA-NMFS-2020-0031-DRAFT-26525
NOAA-NMFS-2020-0031-DRAFT-26526
NOAA-NMFS-2020-0031-DRAFT-26527
NOAA-NMFS-2020-0031-DRAFT-26528
NOAA-NMFS-2020-0031-DRAFT-26529
NOAA-NMFS-2020-0031-DRAFT-26530
NOAA-NMFS-2020-0031-DRAFT-26531
NOAA-NMFS-2020-0031-DRAFT-26532
NOAA-NMFS-2020-0031-DRAFT-26533
NOAA-NMFS-2020-0031-DRAFT-26534
NOAA-NMFS-2020-0031-DRAFT-26535
NOAA-NMFS-2020-0031-DRAFT-26536
NOAA-NMFS-2020-0031-DRAFT-26537
NOAA-NMFS-2020-0031-DRAFT-26538
NOAA-NMFS-2020-0031-DRAFT-26539
NOAA-NMFS-2020-0031-DRAFT-26540
NOAA-NMFS-2020-0031-DRAFT-26541
NOAA-NMFS-2020-0031-DRAFT-26542
NOAA-NMFS-2020-0031-DRAFT-26543

Comment from Leitner, Joel
Comment from Anonymous Anonymous
Comment from Keeler, Thomas
Comment from Lipps, Teresa
Comment from Hughes, Vera
Comment from newman, roberta e.
Comment from Woodman, Renee
Comment from Marsh, Marie
Comment from Nehring, Nancy
Comment from Bouchard, Robyn
Comment from South , Wendy
Comment from ALDRICH, JIM
Comment from Hallstead, Fredette
Comment from Hattori, Takako
Comment from Anonymous Anonymous
Comment from Hadcock, Jan
Comment from Glynn , Kathy
Comment from T, John
Comment from Briley, Samantha
Comment from Al-Tukhaim, Mary Jo
Comment from Whorton, Adrian
Comment from Woods, Roth
Comment from Nix, Kathy
Comment from Sheehan, Kimberly
Comment from Fairley, Kathleen
Comment from Girard, Anne Marie
Comment from Molloy, Mark
Comment from Girard, Anne Marie
Comment from Hester, Ray
Comment from parmenter, zephreny
Comment from Head, Dottie
Comment from t, j
Comment from Webster, Cassandra
Comment from Hodorowich , Rick
Comment from Tasheff, Jennie
Comment from Susi, Christine
Comment from Phillips, Phree
Comment from Horton, Jennifer
Comment from Giovengo, Keren
Comment from Felts, Karen D
Comment from Johnson, T.

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NOAA-NMFS-2020-0031-DRAFT-21324
NOAA-NMFS-2020-0031-DRAFT-21325
NOAA-NMFS-2020-0031-DRAFT-21326
NOAA-NMFS-2020-0031-DRAFT-21327
NOAA-NMFS-2020-0031-DRAFT-21328
NOAA-NMFS-2020-0031-DRAFT-21329
NOAA-NMFS-2020-0031-DRAFT-21330
NOAA-NMFS-2020-0031-DRAFT-21331
NOAA-NMFS-2020-0031-DRAFT-21332
NOAA-NMFS-2020-0031-DRAFT-21333
NOAA-NMFS-2020-0031-DRAFT-21334
NOAA-NMFS-2020-0031-DRAFT-21335
NOAA-NMFS-2020-0031-DRAFT-21336
NOAA-NMFS-2020-0031-DRAFT-21337
NOAA-NMFS-2020-0031-DRAFT-21338
NOAA-NMFS-2020-0031-DRAFT-21339
NOAA-NMFS-2020-0031-DRAFT-21340
NOAA-NMFS-2020-0031-DRAFT-21341
NOAA-NMFS-2020-0031-DRAFT-21342
NOAA-NMFS-2020-0031-DRAFT-21343
NOAA-NMFS-2020-0031-DRAFT-21344
NOAA-NMFS-2020-0031-DRAFT-21345
NOAA-NMFS-2020-0031-DRAFT-21346
NOAA-NMFS-2020-0031-DRAFT-21347
NOAA-NMFS-2020-0031-DRAFT-21348
NOAA-NMFS-2020-0031-DRAFT-21349
NOAA-NMFS-2020-0031-DRAFT-21350
NOAA-NMFS-2020-0031-DRAFT-21351
NOAA-NMFS-2020-0031-DRAFT-21352
NOAA-NMFS-2020-0031-DRAFT-21353
NOAA-NMFS-2020-0031-DRAFT-21354
NOAA-NMFS-2020-0031-DRAFT-21355
NOAA-NMFS-2020-0031-DRAFT-21356
NOAA-NMFS-2020-0031-DRAFT-21357
NOAA-NMFS-2020-0031-DRAFT-21358
NOAA-NMFS-2020-0031-DRAFT-21359
NOAA-NMFS-2020-0031-DRAFT-21360
NOAA-NMFS-2020-0031-DRAFT-21361
NOAA-NMFS-2020-0031-DRAFT-21362
NOAA-NMFS-2020-0031-DRAFT-21363
NOAA-NMFS-2020-0031-DRAFT-21364

Comment from Renee Grant
Comment from Lynn Costa
Comment from Gida Naser
Comment from John Doucette
Comment from Ingrid Rochester
Comment from jack Stockslager
Comment from Jon Hager
Comment from Tracey Bonner
Comment from Donna Ingenito
Comment from Jones Jan
Comment from Steve Tardif
Comment from Marie DeLuna
Comment from Douglas Cooke
Comment from ROCHELLE FORAN
Comment from Lynn Raiser
Comment from Catherine Vedder
Comment from Carolyn Edmunds
Comment from Eric Davis
Comment from Scarlet Sobranie
Comment from Melissa Kallick
Comment from Michael Pitt
Comment from Phyllis Grande
Comment from Gregg Oelker
Comment from Mary McGaughey
Comment from Seda Sonentz-Papazian
Comment from Scott Coahran
Comment from Leah Bush
Comment from Leon Cheong
Comment from Becky Calhoun
Comment from Nolen Scott
Comment from Terry Hill
Comment from Sally thompson
Comment from Jeffery Biss
Comment from William Forbes
Comment from Earl Frounfelter
Comment from James Murphey
Comment from Jeffery McConaughy
Comment from Paul Bechtel
Comment from Gale Swiontkowski
Comment from Gloria Diggle
Comment from Pat Randow

02/26/2021
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NOAA-NMFS-2020-0031-DRAFT-26544
NOAA-NMFS-2020-0031-DRAFT-26545
NOAA-NMFS-2020-0031-DRAFT-26546
NOAA-NMFS-2020-0031-DRAFT-26547
NOAA-NMFS-2020-0031-DRAFT-26548
NOAA-NMFS-2020-0031-DRAFT-26549
NOAA-NMFS-2020-0031-DRAFT-26550
NOAA-NMFS-2020-0031-DRAFT-26551
NOAA-NMFS-2020-0031-DRAFT-26552
NOAA-NMFS-2020-0031-DRAFT-26553
NOAA-NMFS-2020-0031-DRAFT-26554
NOAA-NMFS-2020-0031-DRAFT-26555
NOAA-NMFS-2020-0031-DRAFT-26556
NOAA-NMFS-2020-0031-DRAFT-26557
NOAA-NMFS-2020-0031-DRAFT-26558
NOAA-NMFS-2020-0031-DRAFT-26559
NOAA-NMFS-2020-0031-DRAFT-26560
NOAA-NMFS-2020-0031-DRAFT-26561
NOAA-NMFS-2020-0031-DRAFT-26562
NOAA-NMFS-2020-0031-DRAFT-26563
NOAA-NMFS-2020-0031-DRAFT-26564
NOAA-NMFS-2020-0031-DRAFT-26565
NOAA-NMFS-2020-0031-DRAFT-26566
NOAA-NMFS-2020-0031-DRAFT-26567
NOAA-NMFS-2020-0031-DRAFT-26568
NOAA-NMFS-2020-0031-DRAFT-26569
NOAA-NMFS-2020-0031-DRAFT-26570
NOAA-NMFS-2020-0031-DRAFT-26571
NOAA-NMFS-2020-0031-DRAFT-26572
NOAA-NMFS-2020-0031-DRAFT-26573
NOAA-NMFS-2020-0031-DRAFT-26574
NOAA-NMFS-2020-0031-DRAFT-26575
NOAA-NMFS-2020-0031-DRAFT-26576
NOAA-NMFS-2020-0031-DRAFT-26577
NOAA-NMFS-2020-0031-DRAFT-26578
NOAA-NMFS-2020-0031-DRAFT-26579
NOAA-NMFS-2020-0031-DRAFT-26580
NOAA-NMFS-2020-0031-DRAFT-26581
NOAA-NMFS-2020-0031-DRAFT-26582
NOAA-NMFS-2020-0031-DRAFT-26583
NOAA-NMFS-2020-0031-DRAFT-26584

Comment from McNulty, Kathleen
Comment from Bilisoly, Kandice
Comment from Keifner, Shannon
Comment from DeBacco, Tony
Comment from Keyes, Margaret
Comment from Cork, Victoria
Comment from Rabinowitz, Jennifer
Comment from Henegar, Terry
Comment from Mears, Tina
Comment from Finley, Tracie
Comment from Noren, Debra
Comment from Scott, Raine
Comment from Schacke, John
Comment from Hall, Jeannie
Comment from Hall, Jeannie
Comment from Leijonros , Nadja
Comment from Stone, Cati
Comment from Holmqvist, Magnus
Comment from Waguespack, Patrice
Comment from Jang, Anne
Comment from Kruzan, Teresa
Jonathan
Comment from Woolf, Wesley
Comment from Reid, Cathy
Comment from Watson, Maddy
Comment from McQueen-Allinger, Eve
Comment from Jarosz, June
Comment from Black, Angela
Comment from Talbott, Frances
Comment from McAlear, Elissa
Comment from Aguilar , Angelica
Comment from Jorgensen , Michelle
Comment from Mendieta, Vince
Comment from Hatcher, Jennifer
Comment from Machinske, Kevin
Comment from Patterson, Carol Joan
Comment from Furlong, Jenn
Comment from Briggs , Abby
Comment from Tusinac, Michele
Comment from Deasy, Ashley
Comment from Smith, Gemma

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NOAA-NMFS-2020-0031-DRAFT-21365
NOAA-NMFS-2020-0031-DRAFT-21366
NOAA-NMFS-2020-0031-DRAFT-21367
NOAA-NMFS-2020-0031-DRAFT-21368
NOAA-NMFS-2020-0031-DRAFT-21369
NOAA-NMFS-2020-0031-DRAFT-21370
NOAA-NMFS-2020-0031-DRAFT-21371
NOAA-NMFS-2020-0031-DRAFT-21372
NOAA-NMFS-2020-0031-DRAFT-21373
NOAA-NMFS-2020-0031-DRAFT-21374
NOAA-NMFS-2020-0031-DRAFT-21375
NOAA-NMFS-2020-0031-DRAFT-21376
NOAA-NMFS-2020-0031-DRAFT-21377
NOAA-NMFS-2020-0031-DRAFT-21378
NOAA-NMFS-2020-0031-DRAFT-21379
NOAA-NMFS-2020-0031-DRAFT-21380
NOAA-NMFS-2020-0031-DRAFT-21381
NOAA-NMFS-2020-0031-DRAFT-21382
NOAA-NMFS-2020-0031-DRAFT-21383
NOAA-NMFS-2020-0031-DRAFT-21384
NOAA-NMFS-2020-0031-DRAFT-21385
NOAA-NMFS-2020-0031-DRAFT-21386
NOAA-NMFS-2020-0031-DRAFT-21387
NOAA-NMFS-2020-0031-DRAFT-21388
NOAA-NMFS-2020-0031-DRAFT-21389
NOAA-NMFS-2020-0031-DRAFT-21390
NOAA-NMFS-2020-0031-DRAFT-21391
NOAA-NMFS-2020-0031-DRAFT-21392
NOAA-NMFS-2020-0031-DRAFT-21393
NOAA-NMFS-2020-0031-DRAFT-21394
NOAA-NMFS-2020-0031-DRAFT-21395
NOAA-NMFS-2020-0031-DRAFT-21396
NOAA-NMFS-2020-0031-DRAFT-21397
NOAA-NMFS-2020-0031-DRAFT-21398
NOAA-NMFS-2020-0031-DRAFT-21399
NOAA-NMFS-2020-0031-DRAFT-21400
NOAA-NMFS-2020-0031-DRAFT-21401
NOAA-NMFS-2020-0031-DRAFT-21402
NOAA-NMFS-2020-0031-DRAFT-21404
NOAA-NMFS-2020-0031-DRAFT-21405
NOAA-NMFS-2020-0031-DRAFT-21406

Comment from Meaghan Doherty
Comment from s l
Comment from Paul Hunrichs
Comment from Michael Lewandowski
Comment from Deb Buckler
Comment from Linda Rudman
Comment from Carol Fletcher
Comment from John Holtzclaw
Comment from Gary Mazzotti
Comment from Ellie McGuire
Comment from RON WISH
Comment from David Cottrell
Comment from Kathy Kosinski
Comment from Prem Mulberry
Comment from Nicole Mola
Comment from Michael Nelson
Comment from Louise Stark
Comment from Tina Kim
Comment from Michael Lindley
Comment from Carol Miller
Comment from Dorota Kolodziejczyk
Comment from L. Sinclair
Comment from Charlotte Cook
Comment from Tom Beatini
Comment from Patricia Gashlin
Comment from Michelle Barbour
Comment from Meredith Hayward
Comment from SHARON PONSFORD
Comment from Jessica Anderson
Comment from stacey francis
Comment from Suzann Daley
Comment from Cynthia Edney
Comment from Joanna Behrens
Comment from Christine Gasco
Comment from deborah cushman
Comment from Rogard Ross
Comment from Johnny Hall
Comment from Olivia DiNardo
Comment from William Wollner
Comment from Kimberley Wisdom
Comment from Catherine Scott

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NOAA-NMFS-2020-0031-DRAFT-26585
NOAA-NMFS-2020-0031-DRAFT-26586
NOAA-NMFS-2020-0031-DRAFT-26587
NOAA-NMFS-2020-0031-DRAFT-26588
NOAA-NMFS-2020-0031-DRAFT-26589
NOAA-NMFS-2020-0031-DRAFT-26590
NOAA-NMFS-2020-0031-DRAFT-26591
NOAA-NMFS-2020-0031-DRAFT-26592
NOAA-NMFS-2020-0031-DRAFT-26593
NOAA-NMFS-2020-0031-DRAFT-26594
NOAA-NMFS-2020-0031-DRAFT-26595
NOAA-NMFS-2020-0031-DRAFT-26596
NOAA-NMFS-2020-0031-DRAFT-26597
NOAA-NMFS-2020-0031-DRAFT-26598
NOAA-NMFS-2020-0031-DRAFT-26599
NOAA-NMFS-2020-0031-DRAFT-26600
NOAA-NMFS-2020-0031-DRAFT-26602
NOAA-NMFS-2020-0031-DRAFT-26603
NOAA-NMFS-2020-0031-DRAFT-26604
NOAA-NMFS-2020-0031-DRAFT-26605
NOAA-NMFS-2020-0031-DRAFT-26606
NOAA-NMFS-2020-0031-DRAFT-26607
NOAA-NMFS-2020-0031-DRAFT-26608
NOAA-NMFS-2020-0031-DRAFT-26609
NOAA-NMFS-2020-0031-DRAFT-26610
NOAA-NMFS-2020-0031-DRAFT-26611
NOAA-NMFS-2020-0031-DRAFT-26612
NOAA-NMFS-2020-0031-DRAFT-26613
NOAA-NMFS-2020-0031-DRAFT-26614
NOAA-NMFS-2020-0031-DRAFT-26615
NOAA-NMFS-2020-0031-DRAFT-26616
NOAA-NMFS-2020-0031-DRAFT-26617
NOAA-NMFS-2020-0031-DRAFT-26618
NOAA-NMFS-2020-0031-DRAFT-26619
NOAA-NMFS-2020-0031-DRAFT-26620
NOAA-NMFS-2020-0031-DRAFT-26621
NOAA-NMFS-2020-0031-DRAFT-26622
NOAA-NMFS-2020-0031-DRAFT-26623
NOAA-NMFS-2020-0031-DRAFT-26624
NOAA-NMFS-2020-0031-DRAFT-26625
NOAA-NMFS-2020-0031-DRAFT-26626

Comment from Whorton, Adrian
Comment from Kroger, Christine
Comment from Hancock, Georgia
Comment from House, Suzanne
Comment from Redding, Bryan
Comment from Anonymous Anonymous
Comment from May, Lindsey
Comment from Howard, Gloria J
Comment from Kaniewski, Julianne
Comment from Lock, Frank
Comment from Anonymous Anonymous
Comment from HEIMAN, DIANE
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Ray, Amber
Comment from Combs, Debi
Comment from Anonymous Anonymous
Comment from Flores, Annie
Comment from Anonymous Anonymous
Comment from Dale, Maureen
Comment from Paren, Maggie
Comment from Lindberg , Karin
Comment from BenHaim, David
Comment from Maddock, June
Comment from van der Walt, Mandy
Comment from Bowler, Leslee
Comment from Cook, Jeanie
Comment from White, Robin
Comment from Fleter, Carol
Comment from Staples , Laura
Comment from Le Marquand, Jean
Comment from Diamond, Nichole
Comment from Garcia, Gabrielle
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Comment from Chenoweth, Linda
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NOAA-NMFS-2020-0031-DRAFT-21407
NOAA-NMFS-2020-0031-DRAFT-21408
NOAA-NMFS-2020-0031-DRAFT-21409
NOAA-NMFS-2020-0031-DRAFT-21410
NOAA-NMFS-2020-0031-DRAFT-21411
NOAA-NMFS-2020-0031-DRAFT-21412
NOAA-NMFS-2020-0031-DRAFT-21413
NOAA-NMFS-2020-0031-DRAFT-21414
NOAA-NMFS-2020-0031-DRAFT-21415
NOAA-NMFS-2020-0031-DRAFT-21416
NOAA-NMFS-2020-0031-DRAFT-21417
NOAA-NMFS-2020-0031-DRAFT-21418
NOAA-NMFS-2020-0031-DRAFT-21419
NOAA-NMFS-2020-0031-DRAFT-21420
NOAA-NMFS-2020-0031-DRAFT-21421
NOAA-NMFS-2020-0031-DRAFT-21422
NOAA-NMFS-2020-0031-DRAFT-21423
NOAA-NMFS-2020-0031-DRAFT-21424
NOAA-NMFS-2020-0031-DRAFT-21425
NOAA-NMFS-2020-0031-DRAFT-21426
NOAA-NMFS-2020-0031-DRAFT-21427
NOAA-NMFS-2020-0031-DRAFT-21428
NOAA-NMFS-2020-0031-DRAFT-21429
NOAA-NMFS-2020-0031-DRAFT-21430
NOAA-NMFS-2020-0031-DRAFT-21431
NOAA-NMFS-2020-0031-DRAFT-21432
NOAA-NMFS-2020-0031-DRAFT-21433
NOAA-NMFS-2020-0031-DRAFT-21434
NOAA-NMFS-2020-0031-DRAFT-21435
NOAA-NMFS-2020-0031-DRAFT-21436
NOAA-NMFS-2020-0031-DRAFT-21437
NOAA-NMFS-2020-0031-DRAFT-21438
NOAA-NMFS-2020-0031-DRAFT-21439
NOAA-NMFS-2020-0031-DRAFT-21440
NOAA-NMFS-2020-0031-DRAFT-21441
NOAA-NMFS-2020-0031-DRAFT-21442
NOAA-NMFS-2020-0031-DRAFT-21443
NOAA-NMFS-2020-0031-DRAFT-21444
NOAA-NMFS-2020-0031-DRAFT-21445
NOAA-NMFS-2020-0031-DRAFT-21446
NOAA-NMFS-2020-0031-DRAFT-21447

Comment from Alan Canfield
Comment from Thomas Hendrickson
Comment from William Hayes
Comment from Mary Fedullo
Comment from Michael Garitty
Comment from Elaine Benjamin
Comment from David Savige
Comment from Perry Gx
Comment from Sam Garbi
Comment from Rohana Wolf
Comment from Georgia Shankel
Comment from Joe Buhowsky
Comment from Dyan donofrio
Comment from Mason Griffith
Comment from Peter McCone
Comment from Joseph Pluta
Comment from Wanda Graff
Comment from Tracy Drake
Comment from Deb Christensen
Comment from Lawrence Bojarski
Comment from Antonio Bayona
Comment from Ina Lippard
Comment from Anne Winicki
Comment from Christopher Tobias
Comment from Robert Cassinelli
Comment from Sagen Smith
Comment from Richard Zimmermann
Comment from Debbi Pratt
Comment from Tatiana Maxwell
Comment from Roz Goldstein
Comment from Glenis Ramirez
Comment from Kimberly Sheehan
Comment from Bernie Hartwig
Comment from Joyce Appel
Comment from Jo Baxter
Comment from Jeanne Esposito
Comment from G J
Comment from Michael Bond
Comment from Fran Ransom
Comment from Hana correa
Comment from Paula Berry

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NOAA-NMFS-2020-0031-DRAFT-26627
NOAA-NMFS-2020-0031-DRAFT-26628
NOAA-NMFS-2020-0031-DRAFT-26629
NOAA-NMFS-2020-0031-DRAFT-26630
NOAA-NMFS-2020-0031-DRAFT-26631
NOAA-NMFS-2020-0031-DRAFT-26632
NOAA-NMFS-2020-0031-DRAFT-26633
NOAA-NMFS-2020-0031-DRAFT-26634
NOAA-NMFS-2020-0031-DRAFT-26635
NOAA-NMFS-2020-0031-DRAFT-26636
NOAA-NMFS-2020-0031-DRAFT-26637
NOAA-NMFS-2020-0031-DRAFT-26638
NOAA-NMFS-2020-0031-DRAFT-26639
NOAA-NMFS-2020-0031-DRAFT-26640
NOAA-NMFS-2020-0031-DRAFT-26641
NOAA-NMFS-2020-0031-DRAFT-26642
NOAA-NMFS-2020-0031-DRAFT-26643
NOAA-NMFS-2020-0031-DRAFT-26644
NOAA-NMFS-2020-0031-DRAFT-26645
NOAA-NMFS-2020-0031-DRAFT-26646
NOAA-NMFS-2020-0031-DRAFT-26647
NOAA-NMFS-2020-0031-DRAFT-26648
NOAA-NMFS-2020-0031-DRAFT-26650
NOAA-NMFS-2020-0031-DRAFT-26651
NOAA-NMFS-2020-0031-DRAFT-26653
NOAA-NMFS-2020-0031-DRAFT-26654
NOAA-NMFS-2020-0031-DRAFT-26655
NOAA-NMFS-2020-0031-DRAFT-26656
NOAA-NMFS-2020-0031-DRAFT-26657
NOAA-NMFS-2020-0031-DRAFT-26658
NOAA-NMFS-2020-0031-DRAFT-26659
NOAA-NMFS-2020-0031-DRAFT-26660
NOAA-NMFS-2020-0031-DRAFT-26661
NOAA-NMFS-2020-0031-DRAFT-26662
NOAA-NMFS-2020-0031-DRAFT-26663
NOAA-NMFS-2020-0031-DRAFT-26664
NOAA-NMFS-2020-0031-DRAFT-26665
NOAA-NMFS-2020-0031-DRAFT-26666
NOAA-NMFS-2020-0031-DRAFT-26667
NOAA-NMFS-2020-0031-DRAFT-26668
NOAA-NMFS-2020-0031-DRAFT-26669

Comment from Floyd, Bradley
Comment from Anonymous Anonymous
Comment from Price, Elysée
Comment from Kirova, Tanya
Comment from Haynes, Sandra
Comment from Haynes, Sandra
Comment from Reid, Tyler
Comment from Kulcsárová, Klára
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Bobbi Lempert
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Comment from Susan Porter
Comment from Jenna Fallaw
Comment from Anonymous Anonymous
Comment from Nicole Cloutier
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Comment from Bronwen Evans
Comment from Anonymous Anonymous
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Comment from Tracey Aquino
Comment from Anonymous Anonymous
Comment from Chuck Levin
Comment from Anonymous Anonymous
Comment from Alicia Salazar
Comment from Anonymous Anonymous
Comment from Tracy Drake
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Maureen Burke
Comment from Vicky Brandt
Comment from Kevin Vaught
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NOAA-NMFS-2020-0031-DRAFT-21448
NOAA-NMFS-2020-0031-DRAFT-21449
NOAA-NMFS-2020-0031-DRAFT-21450
NOAA-NMFS-2020-0031-DRAFT-21451
NOAA-NMFS-2020-0031-DRAFT-21452
NOAA-NMFS-2020-0031-DRAFT-21453
NOAA-NMFS-2020-0031-DRAFT-21454
NOAA-NMFS-2020-0031-DRAFT-21455
NOAA-NMFS-2020-0031-DRAFT-21456
NOAA-NMFS-2020-0031-DRAFT-21457
NOAA-NMFS-2020-0031-DRAFT-21458
NOAA-NMFS-2020-0031-DRAFT-21459
NOAA-NMFS-2020-0031-DRAFT-21460
NOAA-NMFS-2020-0031-DRAFT-21461
NOAA-NMFS-2020-0031-DRAFT-21462
NOAA-NMFS-2020-0031-DRAFT-21463
NOAA-NMFS-2020-0031-DRAFT-21464
NOAA-NMFS-2020-0031-DRAFT-21465
NOAA-NMFS-2020-0031-DRAFT-21466
NOAA-NMFS-2020-0031-DRAFT-21467
NOAA-NMFS-2020-0031-DRAFT-21468
NOAA-NMFS-2020-0031-DRAFT-21469
NOAA-NMFS-2020-0031-DRAFT-21470
NOAA-NMFS-2020-0031-DRAFT-21471
NOAA-NMFS-2020-0031-DRAFT-21472
NOAA-NMFS-2020-0031-DRAFT-21473
NOAA-NMFS-2020-0031-DRAFT-21474
NOAA-NMFS-2020-0031-DRAFT-21475
NOAA-NMFS-2020-0031-DRAFT-21476
NOAA-NMFS-2020-0031-DRAFT-21477
NOAA-NMFS-2020-0031-DRAFT-21478
NOAA-NMFS-2020-0031-DRAFT-21479
NOAA-NMFS-2020-0031-DRAFT-21480
NOAA-NMFS-2020-0031-DRAFT-21481
NOAA-NMFS-2020-0031-DRAFT-21482
NOAA-NMFS-2020-0031-DRAFT-21483
NOAA-NMFS-2020-0031-DRAFT-21484
NOAA-NMFS-2020-0031-DRAFT-21485
NOAA-NMFS-2020-0031-DRAFT-21486
NOAA-NMFS-2020-0031-DRAFT-21487
NOAA-NMFS-2020-0031-DRAFT-21488

Comment from roger schmidt
Comment from George Ferrell
Comment from roger schmidt
Comment from Maureen Schiener
Comment from Don Waller
Comment from Trisha Sherman
Comment from Sherry Troutwine
Comment from Karen Robbins
Comment from Vikki Blondin-smith
Comment from William Grant
Comment from Jennifer Corrigan
Comment from Ellen Callahan
Comment from Michael Hunter
Comment from Timothy Raymond
Comment from Lisa G
Comment from Roberta Young
Comment from Grace Padelford
Comment from Nancy Harter
Comment from Kristin dubovsky
Comment from Nancy Griffith
Comment from Rainbow Di Benedetto
Comment from Shela Hadley
Comment from Marie O'Meara
Comment from melony Paulson
Comment from Martin Judd
Comment from Alberta Morgan
Comment from Craig Warren
Comment from Debbie Friesen
Comment from Marcy Gordon
Comment from Brian Resh
Comment from Lisa Zato
Comment from Ann Sinica
Comment from Jane Spini
Comment from Teresa Mays
Comment from Pete Sinica
Comment from Julie Griffith
Comment from Kat Davis
Comment from sonia Cobo
Comment from Francis Groff
Comment from karen clausen
Comment from Andy Tomsky

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NOAA-NMFS-2020-0031-DRAFT-26670
NOAA-NMFS-2020-0031-DRAFT-26671
NOAA-NMFS-2020-0031-DRAFT-26672
NOAA-NMFS-2020-0031-DRAFT-26673
NOAA-NMFS-2020-0031-DRAFT-26674
NOAA-NMFS-2020-0031-DRAFT-26675
NOAA-NMFS-2020-0031-DRAFT-26676
NOAA-NMFS-2020-0031-DRAFT-26677
NOAA-NMFS-2020-0031-DRAFT-26678
NOAA-NMFS-2020-0031-DRAFT-26680
NOAA-NMFS-2020-0031-DRAFT-26681
NOAA-NMFS-2020-0031-DRAFT-26682
NOAA-NMFS-2020-0031-DRAFT-26683
NOAA-NMFS-2020-0031-DRAFT-26684
NOAA-NMFS-2020-0031-DRAFT-26685
NOAA-NMFS-2020-0031-DRAFT-26686
NOAA-NMFS-2020-0031-DRAFT-26687
NOAA-NMFS-2020-0031-DRAFT-26688
NOAA-NMFS-2020-0031-DRAFT-26689
NOAA-NMFS-2020-0031-DRAFT-26690
NOAA-NMFS-2020-0031-DRAFT-26691
NOAA-NMFS-2020-0031-DRAFT-26692
NOAA-NMFS-2020-0031-DRAFT-26693
NOAA-NMFS-2020-0031-DRAFT-26694
NOAA-NMFS-2020-0031-DRAFT-26695
NOAA-NMFS-2020-0031-DRAFT-26696
NOAA-NMFS-2020-0031-DRAFT-26697
NOAA-NMFS-2020-0031-DRAFT-26698
NOAA-NMFS-2020-0031-DRAFT-26699
NOAA-NMFS-2020-0031-DRAFT-26700
NOAA-NMFS-2020-0031-DRAFT-26701
NOAA-NMFS-2020-0031-DRAFT-26702
NOAA-NMFS-2020-0031-DRAFT-26703
NOAA-NMFS-2020-0031-DRAFT-26704
NOAA-NMFS-2020-0031-DRAFT-26705
NOAA-NMFS-2020-0031-DRAFT-26706
NOAA-NMFS-2020-0031-DRAFT-26707
NOAA-NMFS-2020-0031-DRAFT-26708
NOAA-NMFS-2020-0031-DRAFT-26709
NOAA-NMFS-2020-0031-DRAFT-26710
NOAA-NMFS-2020-0031-DRAFT-26711

Comment from Arnold Schildhaus
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Mark Reback
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Comment from Patricia Perron
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Comment from Julie Schampel
Comment from Melanie Stopyra
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Comment from Rita Lemkuil
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Comment from Caroline Svilla
Comment from Anonymous Anonymous
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Comment from Spoden, lynn
Comment from Schwamberger, Christine
Comment from George, Janelle
Comment from Kyra Rice
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lisa Mazzola
Comment from Kathy Aub
Comment from Anonymous Anonymous
Comment from Linda Jones
Comment from Anonymous Anonymous
Comment from Kelley Price
Comment from Anonymous Anonymous
Comment from Barbara Bennigson
Comment from Dorothea Stephan
Comment from Emese Wood

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NOAA-NMFS-2020-0031-DRAFT-21489
NOAA-NMFS-2020-0031-DRAFT-21490
NOAA-NMFS-2020-0031-DRAFT-21491
NOAA-NMFS-2020-0031-DRAFT-21492
NOAA-NMFS-2020-0031-DRAFT-21493
NOAA-NMFS-2020-0031-DRAFT-21494
NOAA-NMFS-2020-0031-DRAFT-21495
NOAA-NMFS-2020-0031-DRAFT-21496
NOAA-NMFS-2020-0031-DRAFT-21497
NOAA-NMFS-2020-0031-DRAFT-21498
NOAA-NMFS-2020-0031-DRAFT-21499
NOAA-NMFS-2020-0031-DRAFT-21500
NOAA-NMFS-2020-0031-DRAFT-21501
NOAA-NMFS-2020-0031-DRAFT-21502
NOAA-NMFS-2020-0031-DRAFT-21503
NOAA-NMFS-2020-0031-DRAFT-21504
NOAA-NMFS-2020-0031-DRAFT-21505
NOAA-NMFS-2020-0031-DRAFT-21506
NOAA-NMFS-2020-0031-DRAFT-21507
NOAA-NMFS-2020-0031-DRAFT-21508
NOAA-NMFS-2020-0031-DRAFT-21509
NOAA-NMFS-2020-0031-DRAFT-21510
NOAA-NMFS-2020-0031-DRAFT-21511
NOAA-NMFS-2020-0031-DRAFT-21512
NOAA-NMFS-2020-0031-DRAFT-21513
NOAA-NMFS-2020-0031-DRAFT-21514
NOAA-NMFS-2020-0031-DRAFT-21515
NOAA-NMFS-2020-0031-DRAFT-21516
NOAA-NMFS-2020-0031-DRAFT-21517
NOAA-NMFS-2020-0031-DRAFT-21518
NOAA-NMFS-2020-0031-DRAFT-21519
NOAA-NMFS-2020-0031-DRAFT-21520
NOAA-NMFS-2020-0031-DRAFT-21521
NOAA-NMFS-2020-0031-DRAFT-21522
NOAA-NMFS-2020-0031-DRAFT-21523
NOAA-NMFS-2020-0031-DRAFT-21524
NOAA-NMFS-2020-0031-DRAFT-21525
NOAA-NMFS-2020-0031-DRAFT-21526
NOAA-NMFS-2020-0031-DRAFT-21527
NOAA-NMFS-2020-0031-DRAFT-21528
NOAA-NMFS-2020-0031-DRAFT-21529

Comment from Jennifer Reed
Comment from Cynthia Springer
Comment from Sylvia Selverston
Comment from Ed gruver
Comment from Diane George
Comment from Ed gruver
Comment from Shari Galve
Comment from Kathy Ralph
Comment from JERI REMILLARD
Comment from Deborah Randall
Comment from Natalia Laisure
Comment from Albert Gamble
Comment from Sandra Reeves
Comment from David Dragon
Comment from Lourdes Guzman
Comment from Karen Thomas
Comment from Mary Kerins
Comment from Alina grinshpun
Comment from Rachel Henba
Comment from richard jackson
Comment from Maria Asteinza
Comment from Anne Wolfenbarger
Comment from Patricia Johnson
Comment from Mary Puccini
Comment from Emma Thomas
Comment from Stepheny McGraw
Comment from Irene Mills
Comment from Robert Jehn
Comment from Valerie Sanderson
Comment from Michelle Rice
Comment from Doris Applebaum
Comment from Sherrill Futrell
Comment from Kerrie Shisila
Comment from Amber Murphy
Comment from Deb Giannetti
Comment from Chelsea Vukovich
Comment from Gloria Lash
Comment from Judy Moran
Comment from Tim Porter
Comment from Rama Paruchuri
Comment from Susan Kollar

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NOAA-NMFS-2020-0031-DRAFT-26712
NOAA-NMFS-2020-0031-DRAFT-26714
NOAA-NMFS-2020-0031-DRAFT-26715
NOAA-NMFS-2020-0031-DRAFT-26716
NOAA-NMFS-2020-0031-DRAFT-26717
NOAA-NMFS-2020-0031-DRAFT-26718
NOAA-NMFS-2020-0031-DRAFT-26719
NOAA-NMFS-2020-0031-DRAFT-26720
NOAA-NMFS-2020-0031-DRAFT-26721
NOAA-NMFS-2020-0031-DRAFT-26722
NOAA-NMFS-2020-0031-DRAFT-26723
NOAA-NMFS-2020-0031-DRAFT-26724
NOAA-NMFS-2020-0031-DRAFT-26725
NOAA-NMFS-2020-0031-DRAFT-26726
NOAA-NMFS-2020-0031-DRAFT-26728
NOAA-NMFS-2020-0031-DRAFT-26729
NOAA-NMFS-2020-0031-DRAFT-26730
NOAA-NMFS-2020-0031-DRAFT-26731
NOAA-NMFS-2020-0031-DRAFT-26732
NOAA-NMFS-2020-0031-DRAFT-26733
NOAA-NMFS-2020-0031-DRAFT-26734
NOAA-NMFS-2020-0031-DRAFT-26735
NOAA-NMFS-2020-0031-DRAFT-26736
NOAA-NMFS-2020-0031-DRAFT-26737
NOAA-NMFS-2020-0031-DRAFT-26738
NOAA-NMFS-2020-0031-DRAFT-26739
NOAA-NMFS-2020-0031-DRAFT-26740
NOAA-NMFS-2020-0031-DRAFT-26741
NOAA-NMFS-2020-0031-DRAFT-26742
NOAA-NMFS-2020-0031-DRAFT-26743
NOAA-NMFS-2020-0031-DRAFT-26744
NOAA-NMFS-2020-0031-DRAFT-26745
NOAA-NMFS-2020-0031-DRAFT-26746
NOAA-NMFS-2020-0031-DRAFT-26748
NOAA-NMFS-2020-0031-DRAFT-26749
NOAA-NMFS-2020-0031-DRAFT-26750
NOAA-NMFS-2020-0031-DRAFT-26751
NOAA-NMFS-2020-0031-DRAFT-26753
NOAA-NMFS-2020-0031-DRAFT-26754
NOAA-NMFS-2020-0031-DRAFT-26755
NOAA-NMFS-2020-0031-DRAFT-26756

Comment from Lawrence Thompson
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Ann Debolt
Comment from Susan Sloan
Comment from Heide Coppotelli
Comment from Debi Griepsma
Comment from Anonymous Anonymous
Comment from Skot McDaniel
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Comment from Cynthia & Barry Marks
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Comment from Bridgett Heinly
Comment from Jared Brenner
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Comment from Ainslie Gilligan
Comment from Campbell, Christine
Comment from Ruge, Richard and
Comment from Wells, Gayle
Comment from Anonymous Anonymous
Comment from Rob Seltzer
Comment from Anonymous Anonymous
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Comment from jesse williams
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NOAA-NMFS-2020-0031-DRAFT-21530
NOAA-NMFS-2020-0031-DRAFT-21531
NOAA-NMFS-2020-0031-DRAFT-21532
NOAA-NMFS-2020-0031-DRAFT-21533
NOAA-NMFS-2020-0031-DRAFT-21534
NOAA-NMFS-2020-0031-DRAFT-21535
NOAA-NMFS-2020-0031-DRAFT-21536
NOAA-NMFS-2020-0031-DRAFT-21537
NOAA-NMFS-2020-0031-DRAFT-21538
NOAA-NMFS-2020-0031-DRAFT-21539
NOAA-NMFS-2020-0031-DRAFT-21540
NOAA-NMFS-2020-0031-DRAFT-21541
NOAA-NMFS-2020-0031-DRAFT-21542
NOAA-NMFS-2020-0031-DRAFT-21543
NOAA-NMFS-2020-0031-DRAFT-21545
NOAA-NMFS-2020-0031-DRAFT-21546
NOAA-NMFS-2020-0031-DRAFT-21548
NOAA-NMFS-2020-0031-DRAFT-21549
NOAA-NMFS-2020-0031-DRAFT-21550
NOAA-NMFS-2020-0031-DRAFT-21551
NOAA-NMFS-2020-0031-DRAFT-21552
NOAA-NMFS-2020-0031-DRAFT-21553
NOAA-NMFS-2020-0031-DRAFT-21554
NOAA-NMFS-2020-0031-DRAFT-21555
NOAA-NMFS-2020-0031-DRAFT-21556
NOAA-NMFS-2020-0031-DRAFT-21557
NOAA-NMFS-2020-0031-DRAFT-21558
NOAA-NMFS-2020-0031-DRAFT-21559
NOAA-NMFS-2020-0031-DRAFT-21560
NOAA-NMFS-2020-0031-DRAFT-21561
NOAA-NMFS-2020-0031-DRAFT-21562
NOAA-NMFS-2020-0031-DRAFT-21563
NOAA-NMFS-2020-0031-DRAFT-21564
NOAA-NMFS-2020-0031-DRAFT-21565
NOAA-NMFS-2020-0031-DRAFT-21566
NOAA-NMFS-2020-0031-DRAFT-21567
NOAA-NMFS-2020-0031-DRAFT-21568
NOAA-NMFS-2020-0031-DRAFT-21569
NOAA-NMFS-2020-0031-DRAFT-21570
NOAA-NMFS-2020-0031-DRAFT-21571
NOAA-NMFS-2020-0031-DRAFT-21572

Comment from Daniel D
Comment from Sandy Stuhaan
Comment from Joseph White
Comment from Elizabeth Melo
Comment from Charlie Burns
Comment from Michael Henderson
Comment from Ronda O'Bryant
Comment from Charlie Burns
Comment from Gordon Parker
Comment from Charlie Burns
Comment from ConsueloMaria Mata
Comment from Charlie Burns
Comment from Carol Baier
Comment from Hon. Mayor
Comment from John Lampson
Comment from Ronda Reynolds
Comment from Pamela Johnson
Comment from Mary Pruim
Comment from John LoBuono
Comment from Shannon Jacobs
Comment from Philomena Easley
Comment from Meg Brown
Comment from Randolph Schoedler
Comment from Dana Sklar
Comment from Jamie Le
Comment from Elizabeth Jache
Comment from Alice Markey
Comment from Michelle Mitchell
Comment from Nancy loeb
Comment from John Weston
Comment from Faith Strailey
Comment from Silvia Noell
Comment from Samantha Ayin
Comment from Stacey Lopez
Comment from Barbara Giorgio
Comment from Paula Shafransky
Comment from Lynn Lang
Comment from Roberta Glaze
Comment from Clara Restivo
Comment from Sally Wise
Comment from Eugenia Guilin

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NOAA-NMFS-2020-0031-DRAFT-26757
NOAA-NMFS-2020-0031-DRAFT-26760
NOAA-NMFS-2020-0031-DRAFT-26761
NOAA-NMFS-2020-0031-DRAFT-26762
NOAA-NMFS-2020-0031-DRAFT-26763
NOAA-NMFS-2020-0031-DRAFT-26765
NOAA-NMFS-2020-0031-DRAFT-26767
NOAA-NMFS-2020-0031-DRAFT-26768
NOAA-NMFS-2020-0031-DRAFT-26769
NOAA-NMFS-2020-0031-DRAFT-26770
NOAA-NMFS-2020-0031-DRAFT-26771
NOAA-NMFS-2020-0031-DRAFT-26772
NOAA-NMFS-2020-0031-DRAFT-26773
NOAA-NMFS-2020-0031-DRAFT-26774
NOAA-NMFS-2020-0031-DRAFT-26775
NOAA-NMFS-2020-0031-DRAFT-26776
NOAA-NMFS-2020-0031-DRAFT-26777
NOAA-NMFS-2020-0031-DRAFT-26778
NOAA-NMFS-2020-0031-DRAFT-26779
NOAA-NMFS-2020-0031-DRAFT-26780
NOAA-NMFS-2020-0031-DRAFT-26781
NOAA-NMFS-2020-0031-DRAFT-26782
NOAA-NMFS-2020-0031-DRAFT-26783
NOAA-NMFS-2020-0031-DRAFT-26784
NOAA-NMFS-2020-0031-DRAFT-26785
NOAA-NMFS-2020-0031-DRAFT-26786
NOAA-NMFS-2020-0031-DRAFT-26787
NOAA-NMFS-2020-0031-DRAFT-26789
NOAA-NMFS-2020-0031-DRAFT-26790
NOAA-NMFS-2020-0031-DRAFT-26791
NOAA-NMFS-2020-0031-DRAFT-26793
NOAA-NMFS-2020-0031-DRAFT-26794
NOAA-NMFS-2020-0031-DRAFT-26795
NOAA-NMFS-2020-0031-DRAFT-26796
NOAA-NMFS-2020-0031-DRAFT-26797
NOAA-NMFS-2020-0031-DRAFT-26798
NOAA-NMFS-2020-0031-DRAFT-26799
NOAA-NMFS-2020-0031-DRAFT-26800
NOAA-NMFS-2020-0031-DRAFT-26801
NOAA-NMFS-2020-0031-DRAFT-26802
NOAA-NMFS-2020-0031-DRAFT-26803

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Sorokina, Elena
Comment from Heller, Patrice
Comment from Anonymous Anonymous
Comment from Ottenbrite, Shelley
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Comment from Nelson, Steven
Comment from Zoll, Donna
Comment from Ridolfo, Angela
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Comment from Beaulieu , Carol
Comment from Topper, Sarah
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Comment from Ussini, Monique
Comment from Mason, Ralph
Comment from Armando A. Garcia
Comment from Asencio, Adam
Comment from Vic Bostock
Comment from hanley, malveena
Comment from Bloom, Amanda
Comment from Mezarlis, Gun
Comment from Anonymous Anonymous
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Comment from Ashleigh Wolven
Comment from Claudia Wornum
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Comment from Carrie West
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Comment from Anonymous Anonymous
Comment from David Sumner
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-21573
NOAA-NMFS-2020-0031-DRAFT-21574
NOAA-NMFS-2020-0031-DRAFT-21575
NOAA-NMFS-2020-0031-DRAFT-21576
NOAA-NMFS-2020-0031-DRAFT-21577
NOAA-NMFS-2020-0031-DRAFT-21578
NOAA-NMFS-2020-0031-DRAFT-21579
NOAA-NMFS-2020-0031-DRAFT-21580
NOAA-NMFS-2020-0031-DRAFT-21581
NOAA-NMFS-2020-0031-DRAFT-21582
NOAA-NMFS-2020-0031-DRAFT-21583
NOAA-NMFS-2020-0031-DRAFT-21584
NOAA-NMFS-2020-0031-DRAFT-21585
NOAA-NMFS-2020-0031-DRAFT-21586
NOAA-NMFS-2020-0031-DRAFT-21587
NOAA-NMFS-2020-0031-DRAFT-21588
NOAA-NMFS-2020-0031-DRAFT-21589
NOAA-NMFS-2020-0031-DRAFT-21590
NOAA-NMFS-2020-0031-DRAFT-21591
NOAA-NMFS-2020-0031-DRAFT-21592
NOAA-NMFS-2020-0031-DRAFT-21593
NOAA-NMFS-2020-0031-DRAFT-21594
NOAA-NMFS-2020-0031-DRAFT-21595
NOAA-NMFS-2020-0031-DRAFT-21596
NOAA-NMFS-2020-0031-DRAFT-21597
NOAA-NMFS-2020-0031-DRAFT-21598
NOAA-NMFS-2020-0031-DRAFT-21599
NOAA-NMFS-2020-0031-DRAFT-21600
NOAA-NMFS-2020-0031-DRAFT-21601
NOAA-NMFS-2020-0031-DRAFT-21602
NOAA-NMFS-2020-0031-DRAFT-21603
NOAA-NMFS-2020-0031-DRAFT-21604
NOAA-NMFS-2020-0031-DRAFT-21605
NOAA-NMFS-2020-0031-DRAFT-21606
NOAA-NMFS-2020-0031-DRAFT-21607
NOAA-NMFS-2020-0031-DRAFT-21608
NOAA-NMFS-2020-0031-DRAFT-21609
NOAA-NMFS-2020-0031-DRAFT-21610
NOAA-NMFS-2020-0031-DRAFT-21611
NOAA-NMFS-2020-0031-DRAFT-21612
NOAA-NMFS-2020-0031-DRAFT-21613

Comment from Lindy Von Dohlen
Comment from DJ Fura
Comment from Leah Hallow
Comment from Kerby Miller
Comment from Tim Speece
Comment from Haven Knight
Comment from Lorraine Gray
Comment from carolyn star
Comment from Heather Marsh
Comment from DJ Fura
Comment from Michael Bowe
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Comment from Maria Venidis
Comment from Liz Field
Comment from fritzi redgrave
Comment from Lisha Doucet
Comment from Bob Phillips
Comment from Denise White
Comment from Gabriel Sheets
Comment from Lester Thompson
Comment from Sarah Sheets
Comment from Lisa Lipscomb
Comment from steven nasta
Comment from Stephanie Toohey
Comment from Bobby Hayden
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Comment from Mary Baker
Comment from Dorothea Leicher
Comment from Charles Rinehart
Comment from Christopher Rose
Comment from Marie Dopico
Comment from Lisa Tobias
Comment from Andrea Chisari
Comment from Tajeer Robinson
Comment from Kay Randall
Comment from Melissa Donley
Comment from Maryann Stork
Comment from Charlotte Jones
Comment from Patricia Lauer
Comment from Susan Bradshaw
Comment from Ah Ho

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NOAA-NMFS-2020-0031-DRAFT-26805
NOAA-NMFS-2020-0031-DRAFT-26806
NOAA-NMFS-2020-0031-DRAFT-26807
NOAA-NMFS-2020-0031-DRAFT-26808
NOAA-NMFS-2020-0031-DRAFT-26809
NOAA-NMFS-2020-0031-DRAFT-26810
NOAA-NMFS-2020-0031-DRAFT-26811
NOAA-NMFS-2020-0031-DRAFT-26812
NOAA-NMFS-2020-0031-DRAFT-26813
NOAA-NMFS-2020-0031-DRAFT-26814
NOAA-NMFS-2020-0031-DRAFT-26817
NOAA-NMFS-2020-0031-DRAFT-26818
NOAA-NMFS-2020-0031-DRAFT-26819
NOAA-NMFS-2020-0031-DRAFT-26820
NOAA-NMFS-2020-0031-DRAFT-26821
NOAA-NMFS-2020-0031-DRAFT-26822
NOAA-NMFS-2020-0031-DRAFT-26823
NOAA-NMFS-2020-0031-DRAFT-26824
NOAA-NMFS-2020-0031-DRAFT-26825
NOAA-NMFS-2020-0031-DRAFT-26826
NOAA-NMFS-2020-0031-DRAFT-26827
NOAA-NMFS-2020-0031-DRAFT-26828
NOAA-NMFS-2020-0031-DRAFT-26829
NOAA-NMFS-2020-0031-DRAFT-26830
NOAA-NMFS-2020-0031-DRAFT-26832
NOAA-NMFS-2020-0031-DRAFT-26833
NOAA-NMFS-2020-0031-DRAFT-26835
NOAA-NMFS-2020-0031-DRAFT-26836
NOAA-NMFS-2020-0031-DRAFT-26837
NOAA-NMFS-2020-0031-DRAFT-26838
NOAA-NMFS-2020-0031-DRAFT-26839
NOAA-NMFS-2020-0031-DRAFT-26840
NOAA-NMFS-2020-0031-DRAFT-26841
NOAA-NMFS-2020-0031-DRAFT-26842
NOAA-NMFS-2020-0031-DRAFT-26843
NOAA-NMFS-2020-0031-DRAFT-26844
NOAA-NMFS-2020-0031-DRAFT-26845
NOAA-NMFS-2020-0031-DRAFT-26847
NOAA-NMFS-2020-0031-DRAFT-26848
NOAA-NMFS-2020-0031-DRAFT-26849
NOAA-NMFS-2020-0031-DRAFT-26850

Comment from Anonymous Anonymous
Comment from Probyn Gregory
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Comment from Neal Steiner
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Comment from Gail Kieler
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Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-21614
NOAA-NMFS-2020-0031-DRAFT-21615
NOAA-NMFS-2020-0031-DRAFT-21616
NOAA-NMFS-2020-0031-DRAFT-21617
NOAA-NMFS-2020-0031-DRAFT-21618
NOAA-NMFS-2020-0031-DRAFT-21619
NOAA-NMFS-2020-0031-DRAFT-21620
NOAA-NMFS-2020-0031-DRAFT-21621
NOAA-NMFS-2020-0031-DRAFT-21622
NOAA-NMFS-2020-0031-DRAFT-21623
NOAA-NMFS-2020-0031-DRAFT-21624
NOAA-NMFS-2020-0031-DRAFT-21625
NOAA-NMFS-2020-0031-DRAFT-21626
NOAA-NMFS-2020-0031-DRAFT-21627
NOAA-NMFS-2020-0031-DRAFT-21628
NOAA-NMFS-2020-0031-DRAFT-21629
NOAA-NMFS-2020-0031-DRAFT-21630
NOAA-NMFS-2020-0031-DRAFT-21631
NOAA-NMFS-2020-0031-DRAFT-21632
NOAA-NMFS-2020-0031-DRAFT-21633
NOAA-NMFS-2020-0031-DRAFT-21634
NOAA-NMFS-2020-0031-DRAFT-21635
NOAA-NMFS-2020-0031-DRAFT-21636
NOAA-NMFS-2020-0031-DRAFT-21637
NOAA-NMFS-2020-0031-DRAFT-21638
NOAA-NMFS-2020-0031-DRAFT-21639
NOAA-NMFS-2020-0031-DRAFT-21640
NOAA-NMFS-2020-0031-DRAFT-21641
NOAA-NMFS-2020-0031-DRAFT-21642
NOAA-NMFS-2020-0031-DRAFT-21643
NOAA-NMFS-2020-0031-DRAFT-21644
NOAA-NMFS-2020-0031-DRAFT-21645
NOAA-NMFS-2020-0031-DRAFT-21646
NOAA-NMFS-2020-0031-DRAFT-21647
NOAA-NMFS-2020-0031-DRAFT-21648
NOAA-NMFS-2020-0031-DRAFT-21649
NOAA-NMFS-2020-0031-DRAFT-21650
NOAA-NMFS-2020-0031-DRAFT-21651
NOAA-NMFS-2020-0031-DRAFT-21652
NOAA-NMFS-2020-0031-DRAFT-21653
NOAA-NMFS-2020-0031-DRAFT-21654

Comment from Donn Carroll
Comment from Joanne Doherty
Comment from stacey murrow
Comment from Veena singwi
Comment from Rodney Bowen
Comment from marie torget
Comment from Laura McMullen
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Comment from Marian Cooley
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Comment from Samantha Gill
Comment from Peter Maronge
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Comment from Sybil Schlesinger
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Comment from Rachel Gonzalez
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NOAA-NMFS-2020-0031-DRAFT-26851
NOAA-NMFS-2020-0031-DRAFT-26852
NOAA-NMFS-2020-0031-DRAFT-26853
NOAA-NMFS-2020-0031-DRAFT-26854
NOAA-NMFS-2020-0031-DRAFT-26855
NOAA-NMFS-2020-0031-DRAFT-26856
NOAA-NMFS-2020-0031-DRAFT-26857
NOAA-NMFS-2020-0031-DRAFT-26858
NOAA-NMFS-2020-0031-DRAFT-26859
NOAA-NMFS-2020-0031-DRAFT-26860
NOAA-NMFS-2020-0031-DRAFT-26862
NOAA-NMFS-2020-0031-DRAFT-26863
NOAA-NMFS-2020-0031-DRAFT-26865
NOAA-NMFS-2020-0031-DRAFT-26867
NOAA-NMFS-2020-0031-DRAFT-26868
NOAA-NMFS-2020-0031-DRAFT-26869
NOAA-NMFS-2020-0031-DRAFT-26870
NOAA-NMFS-2020-0031-DRAFT-26871
NOAA-NMFS-2020-0031-DRAFT-26872
NOAA-NMFS-2020-0031-DRAFT-26873
NOAA-NMFS-2020-0031-DRAFT-26874
NOAA-NMFS-2020-0031-DRAFT-26875
NOAA-NMFS-2020-0031-DRAFT-26876
NOAA-NMFS-2020-0031-DRAFT-26877
NOAA-NMFS-2020-0031-DRAFT-26878
NOAA-NMFS-2020-0031-DRAFT-26879
NOAA-NMFS-2020-0031-DRAFT-26880
NOAA-NMFS-2020-0031-DRAFT-26881
NOAA-NMFS-2020-0031-DRAFT-26882
NOAA-NMFS-2020-0031-DRAFT-26883
NOAA-NMFS-2020-0031-DRAFT-26884
NOAA-NMFS-2020-0031-DRAFT-26885
NOAA-NMFS-2020-0031-DRAFT-26886
NOAA-NMFS-2020-0031-DRAFT-26887
NOAA-NMFS-2020-0031-DRAFT-26888
NOAA-NMFS-2020-0031-DRAFT-26889
NOAA-NMFS-2020-0031-DRAFT-26890
NOAA-NMFS-2020-0031-DRAFT-26891
NOAA-NMFS-2020-0031-DRAFT-26892
NOAA-NMFS-2020-0031-DRAFT-26893
NOAA-NMFS-2020-0031-DRAFT-26894

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NOAA-NMFS-2020-0031-DRAFT-21655
NOAA-NMFS-2020-0031-DRAFT-21656
NOAA-NMFS-2020-0031-DRAFT-21657
NOAA-NMFS-2020-0031-DRAFT-21658
NOAA-NMFS-2020-0031-DRAFT-21659
NOAA-NMFS-2020-0031-DRAFT-21660
NOAA-NMFS-2020-0031-DRAFT-21661
NOAA-NMFS-2020-0031-DRAFT-21662
NOAA-NMFS-2020-0031-DRAFT-21663
NOAA-NMFS-2020-0031-DRAFT-21664
NOAA-NMFS-2020-0031-DRAFT-21665
NOAA-NMFS-2020-0031-DRAFT-21666
NOAA-NMFS-2020-0031-DRAFT-21667
NOAA-NMFS-2020-0031-DRAFT-21670
NOAA-NMFS-2020-0031-DRAFT-21676
NOAA-NMFS-2020-0031-DRAFT-21677
NOAA-NMFS-2020-0031-DRAFT-21678
NOAA-NMFS-2020-0031-DRAFT-21679
NOAA-NMFS-2020-0031-DRAFT-21680
NOAA-NMFS-2020-0031-DRAFT-21681
NOAA-NMFS-2020-0031-DRAFT-21682
NOAA-NMFS-2020-0031-DRAFT-21683
NOAA-NMFS-2020-0031-DRAFT-21684
NOAA-NMFS-2020-0031-DRAFT-21685
NOAA-NMFS-2020-0031-DRAFT-21686
NOAA-NMFS-2020-0031-DRAFT-21687
NOAA-NMFS-2020-0031-DRAFT-21688
NOAA-NMFS-2020-0031-DRAFT-21689
NOAA-NMFS-2020-0031-DRAFT-21690
NOAA-NMFS-2020-0031-DRAFT-21691
NOAA-NMFS-2020-0031-DRAFT-21692
NOAA-NMFS-2020-0031-DRAFT-21693
NOAA-NMFS-2020-0031-DRAFT-21694
NOAA-NMFS-2020-0031-DRAFT-21695
NOAA-NMFS-2020-0031-DRAFT-21696
NOAA-NMFS-2020-0031-DRAFT-21697
NOAA-NMFS-2020-0031-DRAFT-21698
NOAA-NMFS-2020-0031-DRAFT-21699
NOAA-NMFS-2020-0031-DRAFT-21700
NOAA-NMFS-2020-0031-DRAFT-21701
NOAA-NMFS-2020-0031-DRAFT-21702

Comment from Jaye Bergen
Comment from Lynne Kane
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NOAA-NMFS-2020-0031-DRAFT-26895
NOAA-NMFS-2020-0031-DRAFT-26896
NOAA-NMFS-2020-0031-DRAFT-26897
NOAA-NMFS-2020-0031-DRAFT-26898
NOAA-NMFS-2020-0031-DRAFT-26899
NOAA-NMFS-2020-0031-DRAFT-26900
NOAA-NMFS-2020-0031-DRAFT-26901
NOAA-NMFS-2020-0031-DRAFT-26902
NOAA-NMFS-2020-0031-DRAFT-26903
NOAA-NMFS-2020-0031-DRAFT-26904
NOAA-NMFS-2020-0031-DRAFT-26905
NOAA-NMFS-2020-0031-DRAFT-26906
NOAA-NMFS-2020-0031-DRAFT-26907
NOAA-NMFS-2020-0031-DRAFT-26908
NOAA-NMFS-2020-0031-DRAFT-26909
NOAA-NMFS-2020-0031-DRAFT-26910
NOAA-NMFS-2020-0031-DRAFT-26911
NOAA-NMFS-2020-0031-DRAFT-26912
NOAA-NMFS-2020-0031-DRAFT-26913
NOAA-NMFS-2020-0031-DRAFT-26914
NOAA-NMFS-2020-0031-DRAFT-26915
NOAA-NMFS-2020-0031-DRAFT-26916
NOAA-NMFS-2020-0031-DRAFT-26917
NOAA-NMFS-2020-0031-DRAFT-26918
NOAA-NMFS-2020-0031-DRAFT-26919
NOAA-NMFS-2020-0031-DRAFT-26921
NOAA-NMFS-2020-0031-DRAFT-26922
NOAA-NMFS-2020-0031-DRAFT-26923
NOAA-NMFS-2020-0031-DRAFT-26924
NOAA-NMFS-2020-0031-DRAFT-26925
NOAA-NMFS-2020-0031-DRAFT-26926
NOAA-NMFS-2020-0031-DRAFT-26927
NOAA-NMFS-2020-0031-DRAFT-26928
NOAA-NMFS-2020-0031-DRAFT-26929
NOAA-NMFS-2020-0031-DRAFT-26931
NOAA-NMFS-2020-0031-DRAFT-26932
NOAA-NMFS-2020-0031-DRAFT-26933
NOAA-NMFS-2020-0031-DRAFT-26934
NOAA-NMFS-2020-0031-DRAFT-26935
NOAA-NMFS-2020-0031-DRAFT-26936
NOAA-NMFS-2020-0031-DRAFT-26937

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NOAA-NMFS-2020-0031-DRAFT-21703
NOAA-NMFS-2020-0031-DRAFT-21704
NOAA-NMFS-2020-0031-DRAFT-21705
NOAA-NMFS-2020-0031-DRAFT-21706
NOAA-NMFS-2020-0031-DRAFT-21707
NOAA-NMFS-2020-0031-DRAFT-21708
NOAA-NMFS-2020-0031-DRAFT-21709
NOAA-NMFS-2020-0031-DRAFT-21710
NOAA-NMFS-2020-0031-DRAFT-21711
NOAA-NMFS-2020-0031-DRAFT-21712
NOAA-NMFS-2020-0031-DRAFT-21713
NOAA-NMFS-2020-0031-DRAFT-21714
NOAA-NMFS-2020-0031-DRAFT-21715
NOAA-NMFS-2020-0031-DRAFT-21716
NOAA-NMFS-2020-0031-DRAFT-21717
NOAA-NMFS-2020-0031-DRAFT-21718
NOAA-NMFS-2020-0031-DRAFT-21719
NOAA-NMFS-2020-0031-DRAFT-21720
NOAA-NMFS-2020-0031-DRAFT-21721
NOAA-NMFS-2020-0031-DRAFT-21722
NOAA-NMFS-2020-0031-DRAFT-21723
NOAA-NMFS-2020-0031-DRAFT-21724
NOAA-NMFS-2020-0031-DRAFT-21725
NOAA-NMFS-2020-0031-DRAFT-21726
NOAA-NMFS-2020-0031-DRAFT-21727
NOAA-NMFS-2020-0031-DRAFT-21728
NOAA-NMFS-2020-0031-DRAFT-21729
NOAA-NMFS-2020-0031-DRAFT-21730
NOAA-NMFS-2020-0031-DRAFT-21731
NOAA-NMFS-2020-0031-DRAFT-21732
NOAA-NMFS-2020-0031-DRAFT-21733
NOAA-NMFS-2020-0031-DRAFT-21734
NOAA-NMFS-2020-0031-DRAFT-21735
NOAA-NMFS-2020-0031-DRAFT-21736
NOAA-NMFS-2020-0031-DRAFT-21737
NOAA-NMFS-2020-0031-DRAFT-21738
NOAA-NMFS-2020-0031-DRAFT-21739
NOAA-NMFS-2020-0031-DRAFT-21740
NOAA-NMFS-2020-0031-DRAFT-21741
NOAA-NMFS-2020-0031-DRAFT-21742
NOAA-NMFS-2020-0031-DRAFT-21743

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NOAA-NMFS-2020-0031-DRAFT-26938
NOAA-NMFS-2020-0031-DRAFT-26939
NOAA-NMFS-2020-0031-DRAFT-26940
NOAA-NMFS-2020-0031-DRAFT-26941
NOAA-NMFS-2020-0031-DRAFT-26942
NOAA-NMFS-2020-0031-DRAFT-26943
NOAA-NMFS-2020-0031-DRAFT-26944
NOAA-NMFS-2020-0031-DRAFT-26945
NOAA-NMFS-2020-0031-DRAFT-26946
NOAA-NMFS-2020-0031-DRAFT-26947
NOAA-NMFS-2020-0031-DRAFT-26948
NOAA-NMFS-2020-0031-DRAFT-26949
NOAA-NMFS-2020-0031-DRAFT-26950
NOAA-NMFS-2020-0031-DRAFT-26951
NOAA-NMFS-2020-0031-DRAFT-26952
NOAA-NMFS-2020-0031-DRAFT-26953
NOAA-NMFS-2020-0031-DRAFT-26954
NOAA-NMFS-2020-0031-DRAFT-26955
NOAA-NMFS-2020-0031-DRAFT-26956
NOAA-NMFS-2020-0031-DRAFT-26957
NOAA-NMFS-2020-0031-DRAFT-26958
NOAA-NMFS-2020-0031-DRAFT-26959
NOAA-NMFS-2020-0031-DRAFT-26960
NOAA-NMFS-2020-0031-DRAFT-26961
NOAA-NMFS-2020-0031-DRAFT-26962
NOAA-NMFS-2020-0031-DRAFT-26963
NOAA-NMFS-2020-0031-DRAFT-26964
NOAA-NMFS-2020-0031-DRAFT-26965
NOAA-NMFS-2020-0031-DRAFT-26966
NOAA-NMFS-2020-0031-DRAFT-26967
NOAA-NMFS-2020-0031-DRAFT-26968
NOAA-NMFS-2020-0031-DRAFT-26969
NOAA-NMFS-2020-0031-DRAFT-26970
NOAA-NMFS-2020-0031-DRAFT-26971
NOAA-NMFS-2020-0031-DRAFT-26972
NOAA-NMFS-2020-0031-DRAFT-26973
NOAA-NMFS-2020-0031-DRAFT-26974
NOAA-NMFS-2020-0031-DRAFT-26975
NOAA-NMFS-2020-0031-DRAFT-26976
NOAA-NMFS-2020-0031-DRAFT-26977
NOAA-NMFS-2020-0031-DRAFT-26978

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Comment from Fisher, Donna
Comment from Buffie, Elise
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-21744
NOAA-NMFS-2020-0031-DRAFT-21745
NOAA-NMFS-2020-0031-DRAFT-21746
NOAA-NMFS-2020-0031-DRAFT-21747
NOAA-NMFS-2020-0031-DRAFT-21748
NOAA-NMFS-2020-0031-DRAFT-21749
NOAA-NMFS-2020-0031-DRAFT-21750
NOAA-NMFS-2020-0031-DRAFT-21751
NOAA-NMFS-2020-0031-DRAFT-21752
NOAA-NMFS-2020-0031-DRAFT-21753
NOAA-NMFS-2020-0031-DRAFT-21754
NOAA-NMFS-2020-0031-DRAFT-21755
NOAA-NMFS-2020-0031-DRAFT-21756
NOAA-NMFS-2020-0031-DRAFT-21757
NOAA-NMFS-2020-0031-DRAFT-21758
NOAA-NMFS-2020-0031-DRAFT-21759
NOAA-NMFS-2020-0031-DRAFT-21760
NOAA-NMFS-2020-0031-DRAFT-21761
NOAA-NMFS-2020-0031-DRAFT-21762
NOAA-NMFS-2020-0031-DRAFT-21763
NOAA-NMFS-2020-0031-DRAFT-21764
NOAA-NMFS-2020-0031-DRAFT-21765
NOAA-NMFS-2020-0031-DRAFT-21766
NOAA-NMFS-2020-0031-DRAFT-21767
NOAA-NMFS-2020-0031-DRAFT-21768
NOAA-NMFS-2020-0031-DRAFT-21769
NOAA-NMFS-2020-0031-DRAFT-21770
NOAA-NMFS-2020-0031-DRAFT-21771
NOAA-NMFS-2020-0031-DRAFT-21772
NOAA-NMFS-2020-0031-DRAFT-21773
NOAA-NMFS-2020-0031-DRAFT-21774
NOAA-NMFS-2020-0031-DRAFT-21775
NOAA-NMFS-2020-0031-DRAFT-21777
NOAA-NMFS-2020-0031-DRAFT-21779
NOAA-NMFS-2020-0031-DRAFT-21780
NOAA-NMFS-2020-0031-DRAFT-21781
NOAA-NMFS-2020-0031-DRAFT-21782
NOAA-NMFS-2020-0031-DRAFT-21783
NOAA-NMFS-2020-0031-DRAFT-21785
NOAA-NMFS-2020-0031-DRAFT-21786
NOAA-NMFS-2020-0031-DRAFT-21787

Comment from Rogers, Barbara
Comment from Ruderman, Paul
Comment from Bergeron, Allison
Comment from Dewberry, Sandra
Comment from SHARP, GLORIA
Comment from Jolley, Dee
Comment from Stegeman, Deborah
Comment from Pawloski, Linda
Comment from Green, Steve
Comment from Ullberg, Dan
Comment from Simpson, Lou
Comment from Wilkas, Mary
Comment from Gates, Kathryn
Comment from Franz, Patricia
Comment from Cutler, Edward
Comment from Campeau, Jane
Comment from Stimson, Christopher
Comment from Delaney, Amy
Comment from Klass, David
Comment from Roberts, Janie
Comment from Christ, Starr aka Shirlene
Comment from Bee, Sha
Comment from Twaddell, Cheryl
Comment from Bloom, Joyce
Comment from Pflugh, Melissa
Comment from Lemmon, Courtney
Comment from DeFazio, Heather
Comment from Miller, Connie
Comment from Downey, Janet
Comment from Camacho, MC
Comment from Lascari, Eleanor
Comment from VanWinkle, Jean Marie
Comment from coniglio, mark
Comment from Benton, Mary
Comment from OConnor, Keri
Comment from Schwartz, Joyce
Comment from Schneebeli, Christine
Comment from Rosenfeld, Lynn
Comment from Moskal, Barbara
Comment from Wheeler, Theresa
Comment from T, Ann

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NOAA-NMFS-2020-0031-DRAFT-26979
NOAA-NMFS-2020-0031-DRAFT-26980
NOAA-NMFS-2020-0031-DRAFT-26981
NOAA-NMFS-2020-0031-DRAFT-26982
NOAA-NMFS-2020-0031-DRAFT-26983
NOAA-NMFS-2020-0031-DRAFT-26984
NOAA-NMFS-2020-0031-DRAFT-26985
NOAA-NMFS-2020-0031-DRAFT-26986
NOAA-NMFS-2020-0031-DRAFT-26987
NOAA-NMFS-2020-0031-DRAFT-26988
NOAA-NMFS-2020-0031-DRAFT-26989
NOAA-NMFS-2020-0031-DRAFT-26990
NOAA-NMFS-2020-0031-DRAFT-26991
NOAA-NMFS-2020-0031-DRAFT-26992
NOAA-NMFS-2020-0031-DRAFT-26993
NOAA-NMFS-2020-0031-DRAFT-26994
NOAA-NMFS-2020-0031-DRAFT-26995
NOAA-NMFS-2020-0031-DRAFT-26996
NOAA-NMFS-2020-0031-DRAFT-26997
NOAA-NMFS-2020-0031-DRAFT-26998
NOAA-NMFS-2020-0031-DRAFT-26999
NOAA-NMFS-2020-0031-DRAFT-27000
NOAA-NMFS-2020-0031-DRAFT-27001
NOAA-NMFS-2020-0031-DRAFT-27002
NOAA-NMFS-2020-0031-DRAFT-27003
NOAA-NMFS-2020-0031-DRAFT-27004
NOAA-NMFS-2020-0031-DRAFT-27005
NOAA-NMFS-2020-0031-DRAFT-27006
NOAA-NMFS-2020-0031-DRAFT-27007
NOAA-NMFS-2020-0031-DRAFT-27008
NOAA-NMFS-2020-0031-DRAFT-27009
NOAA-NMFS-2020-0031-DRAFT-27010
NOAA-NMFS-2020-0031-DRAFT-27012
NOAA-NMFS-2020-0031-DRAFT-27013
NOAA-NMFS-2020-0031-DRAFT-27014
NOAA-NMFS-2020-0031-DRAFT-27015
NOAA-NMFS-2020-0031-DRAFT-27016
NOAA-NMFS-2020-0031-DRAFT-27017
NOAA-NMFS-2020-0031-DRAFT-27018
NOAA-NMFS-2020-0031-DRAFT-27019
NOAA-NMFS-2020-0031-DRAFT-27020

Comment from Browning, Marjorie
Comment from Newton, Laura
Comment from Encarnacao, AnneMarie
Comment from weaver, laura
Comment from Frank, Rose
Comment from Brannigan, Kelly
Comment from weaver, laura
Comment from Anonymous Anonymous
Comment from Moreton, Shannon
Comment from Reed, Towner
Comment from Blackmore, Susan
Comment from Hall, Justen
Comment from Moffett, Will
Comment from Hamer, Suzanne
Comment from Anonymous Anonymous
Comment from Fritz, Marilyn
Comment from Flory, Evelyn
Comment from Janson, Sharon
Comment from Kelly, Alanna
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Fortgang, Mindye
Comment from Alten, Margot
Comment from Kusdogan, Rumi
Comment from Cueto, Joey
Comment from Oliver Borquez, Maureen
Comment from Patricia Wittig
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Schwartz, Eric
Comment from Schwartz, Eric
Comment from Fratkin, Bryan
Comment from Anonymous Anonymous
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Comment from Austin, Christine

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NOAA-NMFS-2020-0031-DRAFT-21788
NOAA-NMFS-2020-0031-DRAFT-21789
NOAA-NMFS-2020-0031-DRAFT-21790
NOAA-NMFS-2020-0031-DRAFT-21791
NOAA-NMFS-2020-0031-DRAFT-21792
NOAA-NMFS-2020-0031-DRAFT-21793
NOAA-NMFS-2020-0031-DRAFT-21794
NOAA-NMFS-2020-0031-DRAFT-21795
NOAA-NMFS-2020-0031-DRAFT-21796
NOAA-NMFS-2020-0031-DRAFT-21797
NOAA-NMFS-2020-0031-DRAFT-21798
NOAA-NMFS-2020-0031-DRAFT-21799
NOAA-NMFS-2020-0031-DRAFT-21800
NOAA-NMFS-2020-0031-DRAFT-21801
NOAA-NMFS-2020-0031-DRAFT-21802
NOAA-NMFS-2020-0031-DRAFT-21803
NOAA-NMFS-2020-0031-DRAFT-21804
NOAA-NMFS-2020-0031-DRAFT-21805
NOAA-NMFS-2020-0031-DRAFT-21806
NOAA-NMFS-2020-0031-DRAFT-21807
NOAA-NMFS-2020-0031-DRAFT-21808
NOAA-NMFS-2020-0031-DRAFT-21809
NOAA-NMFS-2020-0031-DRAFT-21810
NOAA-NMFS-2020-0031-DRAFT-21811
NOAA-NMFS-2020-0031-DRAFT-21812
NOAA-NMFS-2020-0031-DRAFT-21813
NOAA-NMFS-2020-0031-DRAFT-21814
NOAA-NMFS-2020-0031-DRAFT-21815
NOAA-NMFS-2020-0031-DRAFT-21816
NOAA-NMFS-2020-0031-DRAFT-21817
NOAA-NMFS-2020-0031-DRAFT-21818
NOAA-NMFS-2020-0031-DRAFT-21819
NOAA-NMFS-2020-0031-DRAFT-21820
NOAA-NMFS-2020-0031-DRAFT-21821
NOAA-NMFS-2020-0031-DRAFT-21822
NOAA-NMFS-2020-0031-DRAFT-21823
NOAA-NMFS-2020-0031-DRAFT-21824
NOAA-NMFS-2020-0031-DRAFT-21825
NOAA-NMFS-2020-0031-DRAFT-21826
NOAA-NMFS-2020-0031-DRAFT-21827
NOAA-NMFS-2020-0031-DRAFT-21828

Comment from Jordan, Jill
Comment from Olsen, Joyce
Comment from Kaemerer, Casey
Comment from Capstick, Hilary
Comment from Damon, Matt
Comment from Roy, Nancy
Comment from McDonald, Judy
Comment from Richey, Harry
Comment from schampel, julie
Comment from Iovino, Teresa
Comment from Montgomery, Marilyn
Comment from Ashkettle, Rebecca
Comment from St Denis Searle, Susan
Comment from Barquet, Yamile M
Comment from Kaufman, Michelle
Comment from Klumb, Carole
Comment from Embree Lavoie, Cynthia
Comment from Higdon, Maxxcell
Comment from Gross, Elaine
Comment from Boomershine, Renee
Comment from Hamer, Suzanne
Comment from Durrer, Mary
Comment from Durrer, Mary
Comment from Oerke Jr, Carl
Comment from Irvine, Nancy
Comment from Hershey, Donald
Comment from Lutsky, Dawn
Comment from Roney, David
Comment from Witherington, Allen
Comment from Avila, Olivia
Comment from Chiappa, Russell
Comment from Serafin, Kiara
Comment from Owens, Christina
Comment from Allison, Michelle
Comment from Josselin, Christine
Comment from Pier, Italia
Comment from Gummel, Janis
Comment from Vie, Phoenix
Comment from Wise, K
Comment from Ruth, Sherry
Comment from Lalumiere, Valerie

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NOAA-NMFS-2020-0031-DRAFT-27021
NOAA-NMFS-2020-0031-DRAFT-27022
NOAA-NMFS-2020-0031-DRAFT-27023
NOAA-NMFS-2020-0031-DRAFT-27024
NOAA-NMFS-2020-0031-DRAFT-27025
NOAA-NMFS-2020-0031-DRAFT-27026
NOAA-NMFS-2020-0031-DRAFT-27027
NOAA-NMFS-2020-0031-DRAFT-27028
NOAA-NMFS-2020-0031-DRAFT-27029
NOAA-NMFS-2020-0031-DRAFT-27030
NOAA-NMFS-2020-0031-DRAFT-27031
NOAA-NMFS-2020-0031-DRAFT-27032
NOAA-NMFS-2020-0031-DRAFT-27033
NOAA-NMFS-2020-0031-DRAFT-27034
NOAA-NMFS-2020-0031-DRAFT-27035
NOAA-NMFS-2020-0031-DRAFT-27036
NOAA-NMFS-2020-0031-DRAFT-27037
NOAA-NMFS-2020-0031-DRAFT-27038
NOAA-NMFS-2020-0031-DRAFT-27039
NOAA-NMFS-2020-0031-DRAFT-27040
NOAA-NMFS-2020-0031-DRAFT-27041
NOAA-NMFS-2020-0031-DRAFT-27042
NOAA-NMFS-2020-0031-DRAFT-27043
NOAA-NMFS-2020-0031-DRAFT-27044
NOAA-NMFS-2020-0031-DRAFT-27045
NOAA-NMFS-2020-0031-DRAFT-27046
NOAA-NMFS-2020-0031-DRAFT-27047
NOAA-NMFS-2020-0031-DRAFT-27048
NOAA-NMFS-2020-0031-DRAFT-27049
NOAA-NMFS-2020-0031-DRAFT-27050
NOAA-NMFS-2020-0031-DRAFT-27051
NOAA-NMFS-2020-0031-DRAFT-27052
NOAA-NMFS-2020-0031-DRAFT-27053
NOAA-NMFS-2020-0031-DRAFT-27054
NOAA-NMFS-2020-0031-DRAFT-27055
NOAA-NMFS-2020-0031-DRAFT-27056
NOAA-NMFS-2020-0031-DRAFT-27058
NOAA-NMFS-2020-0031-DRAFT-27059
NOAA-NMFS-2020-0031-DRAFT-27060
NOAA-NMFS-2020-0031-DRAFT-27061
NOAA-NMFS-2020-0031-DRAFT-27062

Comment from Grove, Scott
Comment from Agnew, Brenda
Comment from Margaret Goodale
Comment from Leas, Arlene
Comment from Janson, Sharon
Comment from Nihsen, Dixie
Comment from Marxuach, Antonio
Comment from Miller, Paula
Comment from Robinson, Pat
Comment from LeFebvre, Dave
Comment from W., P.
Comment from Wood, Kim
Comment from Graham, Lisa
Comment from Princip, Stephanie
Comment from Anonymous Anonymous
Comment from Nihsen, Dixie
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Layne, Allister
Comment from Eudy, Elaine
Comment from Barfield, Bonnie
Comment from Straw, Rebecca
Comment from Anonymous Anonymous
Comment from Oberdorf, Robert
Comment from Anonymous Anonymous
Comment from Weisman, Milt
Comment from DAnnunzio, Patrick
Comment from Hendershot, Tamara
Comment from Smoller, Merry
Comment from Klein, Philip
Comment from Bains, Jeffrey
Comment from Wright MD, Rhonda D.
Comment from Peter, John
Comment from Smith, Priscilla
Comment from Argo, Allison
Comment from Eddy, Brendan
Comment from McBride, Nancy
Comment from Ajemian, Peter
Comment from Axelrod RN, Jan
Comment from Vayda, Karen
Comment from Graf, Rosemary

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NOAA-NMFS-2020-0031-DRAFT-21829
NOAA-NMFS-2020-0031-DRAFT-21830
NOAA-NMFS-2020-0031-DRAFT-21831
NOAA-NMFS-2020-0031-DRAFT-21832
NOAA-NMFS-2020-0031-DRAFT-21833
NOAA-NMFS-2020-0031-DRAFT-21834
NOAA-NMFS-2020-0031-DRAFT-21835
NOAA-NMFS-2020-0031-DRAFT-21836
NOAA-NMFS-2020-0031-DRAFT-21837
NOAA-NMFS-2020-0031-DRAFT-21838
NOAA-NMFS-2020-0031-DRAFT-21839
NOAA-NMFS-2020-0031-DRAFT-21840
NOAA-NMFS-2020-0031-DRAFT-21841
NOAA-NMFS-2020-0031-DRAFT-21842
NOAA-NMFS-2020-0031-DRAFT-21843
NOAA-NMFS-2020-0031-DRAFT-21844
NOAA-NMFS-2020-0031-DRAFT-21845
NOAA-NMFS-2020-0031-DRAFT-21846
NOAA-NMFS-2020-0031-DRAFT-21847
NOAA-NMFS-2020-0031-DRAFT-21848
NOAA-NMFS-2020-0031-DRAFT-21849
NOAA-NMFS-2020-0031-DRAFT-21850
NOAA-NMFS-2020-0031-DRAFT-21851
NOAA-NMFS-2020-0031-DRAFT-21852
NOAA-NMFS-2020-0031-DRAFT-21853
NOAA-NMFS-2020-0031-DRAFT-21854
NOAA-NMFS-2020-0031-DRAFT-21855
NOAA-NMFS-2020-0031-DRAFT-21856
NOAA-NMFS-2020-0031-DRAFT-21857
NOAA-NMFS-2020-0031-DRAFT-21858
NOAA-NMFS-2020-0031-DRAFT-21859
NOAA-NMFS-2020-0031-DRAFT-21860
NOAA-NMFS-2020-0031-DRAFT-21861
NOAA-NMFS-2020-0031-DRAFT-21862
NOAA-NMFS-2020-0031-DRAFT-21863
NOAA-NMFS-2020-0031-DRAFT-21864
NOAA-NMFS-2020-0031-DRAFT-21873
NOAA-NMFS-2020-0031-DRAFT-21874
NOAA-NMFS-2020-0031-DRAFT-21875
NOAA-NMFS-2020-0031-DRAFT-21876
NOAA-NMFS-2020-0031-DRAFT-21877

Comment from bauer, pf
Comment from Azzarello, Joseph
Comment from dabrowski, mike
Comment from wolfskill, laurie
Comment from Boylston, Sandra
Comment from Slonaker, Lynn
Comment from Courson, Tim
Comment from Brady, Thomas
Comment from Gramigna, Lynda
Comment from goodwin, mattie
Comment from Pullins, Bette
Comment from Sober, Margaret
Comment from Flannery, Elisabeth
Comment from Lario, Rocio
Comment from Fishman, Susan
Comment from Young, Robert
Comment from Cannon Huffman, Linda
Comment from Fairhurst, Samantha
Comment from Cliff, Tara
Comment from Rolon, Jennie
Comment from Greene, James
Comment from Brannan, Nick
Comment from Scott, Shelly
Comment from Rosenfeld, David
Comment from Tsouristakis, Margaret
Comment from Florez, Alejandro
Comment from Grosu, Camelia
Comment from Beerheide, Erna
Comment from Montoya, Maria
Comment from R, Alison
Comment from Williams, Donald
Comment from Boop, Tracy
Comment from Tomori, James
Comment from Hochtritt, David
Comment from Filkins, Joanne
Comment from Newmark, Jane
Comment from Harrison, Michael
Comment from Mudge, Muriel
Comment from McConnell, Ann
Comment from Kellman, Steven G
Comment from Shulman, Rose

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NOAA-NMFS-2020-0031-DRAFT-27063
NOAA-NMFS-2020-0031-DRAFT-27064
NOAA-NMFS-2020-0031-DRAFT-27065
NOAA-NMFS-2020-0031-DRAFT-27066
NOAA-NMFS-2020-0031-DRAFT-27067
NOAA-NMFS-2020-0031-DRAFT-27069
NOAA-NMFS-2020-0031-DRAFT-27071
NOAA-NMFS-2020-0031-DRAFT-27072
NOAA-NMFS-2020-0031-DRAFT-27073
NOAA-NMFS-2020-0031-DRAFT-27074
NOAA-NMFS-2020-0031-DRAFT-27075
NOAA-NMFS-2020-0031-DRAFT-27076
NOAA-NMFS-2020-0031-DRAFT-27077
NOAA-NMFS-2020-0031-DRAFT-27078
NOAA-NMFS-2020-0031-DRAFT-27079
NOAA-NMFS-2020-0031-DRAFT-27080
NOAA-NMFS-2020-0031-DRAFT-27081
NOAA-NMFS-2020-0031-DRAFT-27082
NOAA-NMFS-2020-0031-DRAFT-27083
NOAA-NMFS-2020-0031-DRAFT-27084
NOAA-NMFS-2020-0031-DRAFT-27085
NOAA-NMFS-2020-0031-DRAFT-27086
NOAA-NMFS-2020-0031-DRAFT-27087
NOAA-NMFS-2020-0031-DRAFT-27088
NOAA-NMFS-2020-0031-DRAFT-27089
NOAA-NMFS-2020-0031-DRAFT-27090
NOAA-NMFS-2020-0031-DRAFT-27091
NOAA-NMFS-2020-0031-DRAFT-27092
NOAA-NMFS-2020-0031-DRAFT-27093
NOAA-NMFS-2020-0031-DRAFT-27094
NOAA-NMFS-2020-0031-DRAFT-27095
NOAA-NMFS-2020-0031-DRAFT-27096
NOAA-NMFS-2020-0031-DRAFT-27097
NOAA-NMFS-2020-0031-DRAFT-27098
NOAA-NMFS-2020-0031-DRAFT-27099
NOAA-NMFS-2020-0031-DRAFT-27100
NOAA-NMFS-2020-0031-DRAFT-27101
NOAA-NMFS-2020-0031-DRAFT-27102
NOAA-NMFS-2020-0031-DRAFT-27103
NOAA-NMFS-2020-0031-DRAFT-27104
NOAA-NMFS-2020-0031-DRAFT-27105

Comment from Sorrells, James
Comment from Marshall, Sheila
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-21878
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NOAA-NMFS-2020-0031-DRAFT-27106
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NOAA-NMFS-2020-0031-DRAFT-27108
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NOAA-NMFS-2020-0031-DRAFT-21926
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NOAA-NMFS-2020-0031-DRAFT-27147
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NOAA-NMFS-2020-0031-DRAFT-21971
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NOAA-NMFS-2020-0031-DRAFT-27225
NOAA-NMFS-2020-0031-DRAFT-27226
NOAA-NMFS-2020-0031-DRAFT-27227
NOAA-NMFS-2020-0031-DRAFT-27228

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NOAA-NMFS-2020-0031-DRAFT-22012
NOAA-NMFS-2020-0031-DRAFT-22013
NOAA-NMFS-2020-0031-DRAFT-22014
NOAA-NMFS-2020-0031-DRAFT-22015
NOAA-NMFS-2020-0031-DRAFT-22016
NOAA-NMFS-2020-0031-DRAFT-22017
NOAA-NMFS-2020-0031-DRAFT-22018
NOAA-NMFS-2020-0031-DRAFT-22019
NOAA-NMFS-2020-0031-DRAFT-22020
NOAA-NMFS-2020-0031-DRAFT-22021
NOAA-NMFS-2020-0031-DRAFT-22022
NOAA-NMFS-2020-0031-DRAFT-22023
NOAA-NMFS-2020-0031-DRAFT-22024
NOAA-NMFS-2020-0031-DRAFT-22025
NOAA-NMFS-2020-0031-DRAFT-22026
NOAA-NMFS-2020-0031-DRAFT-22027
NOAA-NMFS-2020-0031-DRAFT-22028
NOAA-NMFS-2020-0031-DRAFT-22029
NOAA-NMFS-2020-0031-DRAFT-22030
NOAA-NMFS-2020-0031-DRAFT-22031
NOAA-NMFS-2020-0031-DRAFT-22032
NOAA-NMFS-2020-0031-DRAFT-22033
NOAA-NMFS-2020-0031-DRAFT-22034
NOAA-NMFS-2020-0031-DRAFT-22035
NOAA-NMFS-2020-0031-DRAFT-22036
NOAA-NMFS-2020-0031-DRAFT-22037
NOAA-NMFS-2020-0031-DRAFT-22040
NOAA-NMFS-2020-0031-DRAFT-22041
NOAA-NMFS-2020-0031-DRAFT-22042
NOAA-NMFS-2020-0031-DRAFT-22043
NOAA-NMFS-2020-0031-DRAFT-22044
NOAA-NMFS-2020-0031-DRAFT-22045
NOAA-NMFS-2020-0031-DRAFT-22046
NOAA-NMFS-2020-0031-DRAFT-22047
NOAA-NMFS-2020-0031-DRAFT-22048
NOAA-NMFS-2020-0031-DRAFT-22049
NOAA-NMFS-2020-0031-DRAFT-22050
NOAA-NMFS-2020-0031-DRAFT-22051
NOAA-NMFS-2020-0031-DRAFT-22052
NOAA-NMFS-2020-0031-DRAFT-22053
NOAA-NMFS-2020-0031-DRAFT-22054

Comment from McGovern, Sandy
Comment from Sanchez, Barbara
Comment from Sargent, Robert
Comment from Kunkel, Margaret
Comment from Cochran, Casey
Comment from Van Rossum, Patrice
Comment from Ramos, Paul
Comment from Knuth, Lilly
Comment from Pike, Laura
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Comment from Marashinsky, Amy Sophia
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Comment from Mitchell, Ronald
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NOAA-NMFS-2020-0031-DRAFT-27229
NOAA-NMFS-2020-0031-DRAFT-27230
NOAA-NMFS-2020-0031-DRAFT-27231
NOAA-NMFS-2020-0031-DRAFT-27232
NOAA-NMFS-2020-0031-DRAFT-27233
NOAA-NMFS-2020-0031-DRAFT-27234
NOAA-NMFS-2020-0031-DRAFT-27235
NOAA-NMFS-2020-0031-DRAFT-27236
NOAA-NMFS-2020-0031-DRAFT-27237
NOAA-NMFS-2020-0031-DRAFT-27238
NOAA-NMFS-2020-0031-DRAFT-27239
NOAA-NMFS-2020-0031-DRAFT-27240
NOAA-NMFS-2020-0031-DRAFT-27241
NOAA-NMFS-2020-0031-DRAFT-27242
NOAA-NMFS-2020-0031-DRAFT-27243
NOAA-NMFS-2020-0031-DRAFT-27244
NOAA-NMFS-2020-0031-DRAFT-27245
NOAA-NMFS-2020-0031-DRAFT-27246
NOAA-NMFS-2020-0031-DRAFT-27247
NOAA-NMFS-2020-0031-DRAFT-27248
NOAA-NMFS-2020-0031-DRAFT-27249
NOAA-NMFS-2020-0031-DRAFT-27250
NOAA-NMFS-2020-0031-DRAFT-27251
NOAA-NMFS-2020-0031-DRAFT-27252
NOAA-NMFS-2020-0031-DRAFT-27253
NOAA-NMFS-2020-0031-DRAFT-27254
NOAA-NMFS-2020-0031-DRAFT-27255
NOAA-NMFS-2020-0031-DRAFT-27256
NOAA-NMFS-2020-0031-DRAFT-27257
NOAA-NMFS-2020-0031-DRAFT-27258
NOAA-NMFS-2020-0031-DRAFT-27259
NOAA-NMFS-2020-0031-DRAFT-27260
NOAA-NMFS-2020-0031-DRAFT-27261
NOAA-NMFS-2020-0031-DRAFT-27262
NOAA-NMFS-2020-0031-DRAFT-27263
NOAA-NMFS-2020-0031-DRAFT-27264
NOAA-NMFS-2020-0031-DRAFT-27265
NOAA-NMFS-2020-0031-DRAFT-27266
NOAA-NMFS-2020-0031-DRAFT-27267
NOAA-NMFS-2020-0031-DRAFT-27268
NOAA-NMFS-2020-0031-DRAFT-27269

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NOAA-NMFS-2020-0031-DRAFT-22055
NOAA-NMFS-2020-0031-DRAFT-22056
NOAA-NMFS-2020-0031-DRAFT-22057
NOAA-NMFS-2020-0031-DRAFT-22058
NOAA-NMFS-2020-0031-DRAFT-22059
NOAA-NMFS-2020-0031-DRAFT-22060
NOAA-NMFS-2020-0031-DRAFT-22061
NOAA-NMFS-2020-0031-DRAFT-22062
NOAA-NMFS-2020-0031-DRAFT-22063
NOAA-NMFS-2020-0031-DRAFT-22064
NOAA-NMFS-2020-0031-DRAFT-22065
NOAA-NMFS-2020-0031-DRAFT-22066
NOAA-NMFS-2020-0031-DRAFT-22067
NOAA-NMFS-2020-0031-DRAFT-22068
NOAA-NMFS-2020-0031-DRAFT-22069
NOAA-NMFS-2020-0031-DRAFT-22071
NOAA-NMFS-2020-0031-DRAFT-22072
NOAA-NMFS-2020-0031-DRAFT-22073
NOAA-NMFS-2020-0031-DRAFT-22074
NOAA-NMFS-2020-0031-DRAFT-22075
NOAA-NMFS-2020-0031-DRAFT-22076
NOAA-NMFS-2020-0031-DRAFT-22077
NOAA-NMFS-2020-0031-DRAFT-22078
NOAA-NMFS-2020-0031-DRAFT-22079
NOAA-NMFS-2020-0031-DRAFT-22080
NOAA-NMFS-2020-0031-DRAFT-22081
NOAA-NMFS-2020-0031-DRAFT-22083
NOAA-NMFS-2020-0031-DRAFT-22084
NOAA-NMFS-2020-0031-DRAFT-22085
NOAA-NMFS-2020-0031-DRAFT-22086
NOAA-NMFS-2020-0031-DRAFT-22087
NOAA-NMFS-2020-0031-DRAFT-22088
NOAA-NMFS-2020-0031-DRAFT-22089
NOAA-NMFS-2020-0031-DRAFT-22090
NOAA-NMFS-2020-0031-DRAFT-22091
NOAA-NMFS-2020-0031-DRAFT-22092
NOAA-NMFS-2020-0031-DRAFT-22093
NOAA-NMFS-2020-0031-DRAFT-22094
NOAA-NMFS-2020-0031-DRAFT-22095
NOAA-NMFS-2020-0031-DRAFT-22096
NOAA-NMFS-2020-0031-DRAFT-22097

Comment from Cotton, Christine
Comment from Ungar, Autumn
Comment from Hansell, Connor
Comment from Lindner, Roberta
Comment from Ash, Susan
Comment from Marrone, Marnie
Comment from morander, kellyann
Comment from Skeggs, Nicola
Comment from Sweeney, Wesa Asgaya
Comment from Briner, Helen
Comment from Albright, Elizabeth
Comment from Bj, Nigel
Comment from H, A
Comment from Schnitzer, Karen
Comment from Embree, Harland
Comment from thompson, susan
Comment from Calabrese, Deborah
Comment from Daugherty, Sharon
Comment from cobb, robert
Comment from Cj, Sandi
Comment from Dotzauer, Uwe
Comment from Kale, Nivedeeta
Comment from Cox, CJ
Comment from caccia, david
Comment from Giovannini, Aldo
Comment from Cellurale, Linda
Comment from David, Bet
Comment from roberts, les
Comment from Hull, Gary
Comment from Mazzone, Anne
Comment from Parris, Jocelyn
Comment from SZELA, STANLEY
Comment from Holloway, Dempsey
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NOAA-NMFS-2020-0031-DRAFT-27270
NOAA-NMFS-2020-0031-DRAFT-27271
NOAA-NMFS-2020-0031-DRAFT-27272
NOAA-NMFS-2020-0031-DRAFT-27273
NOAA-NMFS-2020-0031-DRAFT-27274
NOAA-NMFS-2020-0031-DRAFT-27275
NOAA-NMFS-2020-0031-DRAFT-27276
NOAA-NMFS-2020-0031-DRAFT-27277
NOAA-NMFS-2020-0031-DRAFT-27278
NOAA-NMFS-2020-0031-DRAFT-27279
NOAA-NMFS-2020-0031-DRAFT-27280
NOAA-NMFS-2020-0031-DRAFT-27281
NOAA-NMFS-2020-0031-DRAFT-27282
NOAA-NMFS-2020-0031-DRAFT-27283
NOAA-NMFS-2020-0031-DRAFT-27284
NOAA-NMFS-2020-0031-DRAFT-27285
NOAA-NMFS-2020-0031-DRAFT-27286
NOAA-NMFS-2020-0031-DRAFT-27288
NOAA-NMFS-2020-0031-DRAFT-27289
NOAA-NMFS-2020-0031-DRAFT-27290
NOAA-NMFS-2020-0031-DRAFT-27291
NOAA-NMFS-2020-0031-DRAFT-27292
NOAA-NMFS-2020-0031-DRAFT-27293
NOAA-NMFS-2020-0031-DRAFT-27294
NOAA-NMFS-2020-0031-DRAFT-27295
NOAA-NMFS-2020-0031-DRAFT-27296
NOAA-NMFS-2020-0031-DRAFT-27297
NOAA-NMFS-2020-0031-DRAFT-27298
NOAA-NMFS-2020-0031-DRAFT-27299
NOAA-NMFS-2020-0031-DRAFT-27300
NOAA-NMFS-2020-0031-DRAFT-27301
NOAA-NMFS-2020-0031-DRAFT-27302
NOAA-NMFS-2020-0031-DRAFT-27303
NOAA-NMFS-2020-0031-DRAFT-27304
NOAA-NMFS-2020-0031-DRAFT-27305
NOAA-NMFS-2020-0031-DRAFT-27306
NOAA-NMFS-2020-0031-DRAFT-27307
NOAA-NMFS-2020-0031-DRAFT-27308
NOAA-NMFS-2020-0031-DRAFT-27309
NOAA-NMFS-2020-0031-DRAFT-27310
NOAA-NMFS-2020-0031-DRAFT-27311

Comment from Turner, Traci
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NOAA-NMFS-2020-0031-DRAFT-22098
NOAA-NMFS-2020-0031-DRAFT-22099
NOAA-NMFS-2020-0031-DRAFT-22100
NOAA-NMFS-2020-0031-DRAFT-22101
NOAA-NMFS-2020-0031-DRAFT-22102
NOAA-NMFS-2020-0031-DRAFT-22103
NOAA-NMFS-2020-0031-DRAFT-22104
NOAA-NMFS-2020-0031-DRAFT-22105
NOAA-NMFS-2020-0031-DRAFT-22106
NOAA-NMFS-2020-0031-DRAFT-22107
NOAA-NMFS-2020-0031-DRAFT-22108
NOAA-NMFS-2020-0031-DRAFT-22109
NOAA-NMFS-2020-0031-DRAFT-22110
NOAA-NMFS-2020-0031-DRAFT-22112
NOAA-NMFS-2020-0031-DRAFT-22113
NOAA-NMFS-2020-0031-DRAFT-22114
NOAA-NMFS-2020-0031-DRAFT-22115
NOAA-NMFS-2020-0031-DRAFT-22116
NOAA-NMFS-2020-0031-DRAFT-22117
NOAA-NMFS-2020-0031-DRAFT-22118
NOAA-NMFS-2020-0031-DRAFT-22119
NOAA-NMFS-2020-0031-DRAFT-22120
NOAA-NMFS-2020-0031-DRAFT-22121
NOAA-NMFS-2020-0031-DRAFT-22122
NOAA-NMFS-2020-0031-DRAFT-22123
NOAA-NMFS-2020-0031-DRAFT-22124
NOAA-NMFS-2020-0031-DRAFT-22125
NOAA-NMFS-2020-0031-DRAFT-22126
NOAA-NMFS-2020-0031-DRAFT-22127
NOAA-NMFS-2020-0031-DRAFT-22128
NOAA-NMFS-2020-0031-DRAFT-22129
NOAA-NMFS-2020-0031-DRAFT-22130
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NOAA-NMFS-2020-0031-DRAFT-22133
NOAA-NMFS-2020-0031-DRAFT-22134
NOAA-NMFS-2020-0031-DRAFT-22135
NOAA-NMFS-2020-0031-DRAFT-22136
NOAA-NMFS-2020-0031-DRAFT-22137
NOAA-NMFS-2020-0031-DRAFT-22138
NOAA-NMFS-2020-0031-DRAFT-22139

Comment from elliott, phyllis
Comment from Kaslander, Carol
Comment from ahlstrand, Heidi
Comment from Eckberg, Brenda
Comment from Ruopp, Kathy
Comment from Martin, Lynn
Comment from Hooten, Dustin
Comment from Lindemulder Harris, Laurie
Comment from Cambouris, Jeanne
Comment from glasser, mark
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Comment from Szela, Carolyn
Comment from Cambouris, Jeanne
Comment from Coppotelli, Fred
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Comment from Coppotelli, Heide
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Sandra
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NOAA-NMFS-2020-0031-DRAFT-27312
NOAA-NMFS-2020-0031-DRAFT-27313
NOAA-NMFS-2020-0031-DRAFT-27314
NOAA-NMFS-2020-0031-DRAFT-27316
NOAA-NMFS-2020-0031-DRAFT-27317
NOAA-NMFS-2020-0031-DRAFT-27318
NOAA-NMFS-2020-0031-DRAFT-27319
NOAA-NMFS-2020-0031-DRAFT-27320
NOAA-NMFS-2020-0031-DRAFT-27321
NOAA-NMFS-2020-0031-DRAFT-27322
NOAA-NMFS-2020-0031-DRAFT-27323
NOAA-NMFS-2020-0031-DRAFT-27324
NOAA-NMFS-2020-0031-DRAFT-27325
NOAA-NMFS-2020-0031-DRAFT-27326
NOAA-NMFS-2020-0031-DRAFT-27327
NOAA-NMFS-2020-0031-DRAFT-27328
NOAA-NMFS-2020-0031-DRAFT-27329
NOAA-NMFS-2020-0031-DRAFT-27330
NOAA-NMFS-2020-0031-DRAFT-27331
NOAA-NMFS-2020-0031-DRAFT-27332
NOAA-NMFS-2020-0031-DRAFT-27333
NOAA-NMFS-2020-0031-DRAFT-27334
NOAA-NMFS-2020-0031-DRAFT-27335
NOAA-NMFS-2020-0031-DRAFT-27336
NOAA-NMFS-2020-0031-DRAFT-27337
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NOAA-NMFS-2020-0031-DRAFT-27353

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NOAA-NMFS-2020-0031-DRAFT-22140
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NOAA-NMFS-2020-0031-DRAFT-22150
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NOAA-NMFS-2020-0031-DRAFT-22159
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NOAA-NMFS-2020-0031-DRAFT-22161
NOAA-NMFS-2020-0031-DRAFT-22162
NOAA-NMFS-2020-0031-DRAFT-22163
NOAA-NMFS-2020-0031-DRAFT-22164
NOAA-NMFS-2020-0031-DRAFT-22165
NOAA-NMFS-2020-0031-DRAFT-22166
NOAA-NMFS-2020-0031-DRAFT-22167
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NOAA-NMFS-2020-0031-DRAFT-22178
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NOAA-NMFS-2020-0031-DRAFT-22180

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NOAA-NMFS-2020-0031-DRAFT-27354
NOAA-NMFS-2020-0031-DRAFT-27355
NOAA-NMFS-2020-0031-DRAFT-27356
NOAA-NMFS-2020-0031-DRAFT-27357
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NOAA-NMFS-2020-0031-DRAFT-27364
NOAA-NMFS-2020-0031-DRAFT-27365
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NOAA-NMFS-2020-0031-DRAFT-27370
NOAA-NMFS-2020-0031-DRAFT-27371
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NOAA-NMFS-2020-0031-DRAFT-27373
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NOAA-NMFS-2020-0031-DRAFT-27392
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NOAA-NMFS-2020-0031-DRAFT-22213
NOAA-NMFS-2020-0031-DRAFT-22214
NOAA-NMFS-2020-0031-DRAFT-22215
NOAA-NMFS-2020-0031-DRAFT-22216
NOAA-NMFS-2020-0031-DRAFT-22217
NOAA-NMFS-2020-0031-DRAFT-22218
NOAA-NMFS-2020-0031-DRAFT-22219
NOAA-NMFS-2020-0031-DRAFT-22220
NOAA-NMFS-2020-0031-DRAFT-22221

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NOAA-NMFS-2020-0031-DRAFT-27395
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NOAA-NMFS-2020-0031-DRAFT-27410
NOAA-NMFS-2020-0031-DRAFT-27411
NOAA-NMFS-2020-0031-DRAFT-27412
NOAA-NMFS-2020-0031-DRAFT-27413
NOAA-NMFS-2020-0031-DRAFT-27414
NOAA-NMFS-2020-0031-DRAFT-27415
NOAA-NMFS-2020-0031-DRAFT-27416
NOAA-NMFS-2020-0031-DRAFT-27417
NOAA-NMFS-2020-0031-DRAFT-27418
NOAA-NMFS-2020-0031-DRAFT-27419
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NOAA-NMFS-2020-0031-DRAFT-22222
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NOAA-NMFS-2020-0031-DRAFT-27477
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NOAA-NMFS-2020-0031-DRAFT-27518
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NOAA-NMFS-2020-0031-DRAFT-27558

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NOAA-NMFS-2020-0031-DRAFT-22346
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NOAA-NMFS-2020-0031-DRAFT-27565
NOAA-NMFS-2020-0031-DRAFT-27566
NOAA-NMFS-2020-0031-DRAFT-27567
NOAA-NMFS-2020-0031-DRAFT-27568
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NOAA-NMFS-2020-0031-DRAFT-27579
NOAA-NMFS-2020-0031-DRAFT-27580
NOAA-NMFS-2020-0031-DRAFT-27581
NOAA-NMFS-2020-0031-DRAFT-27582
NOAA-NMFS-2020-0031-DRAFT-27583
NOAA-NMFS-2020-0031-DRAFT-27584
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NOAA-NMFS-2020-0031-DRAFT-27599

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NOAA-NMFS-2020-0031-DRAFT-22407
NOAA-NMFS-2020-0031-DRAFT-22408
NOAA-NMFS-2020-0031-DRAFT-22409
NOAA-NMFS-2020-0031-DRAFT-22410
NOAA-NMFS-2020-0031-DRAFT-22411
NOAA-NMFS-2020-0031-DRAFT-22412
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NOAA-NMFS-2020-0031-DRAFT-22414
NOAA-NMFS-2020-0031-DRAFT-22415
NOAA-NMFS-2020-0031-DRAFT-22416
NOAA-NMFS-2020-0031-DRAFT-22417
NOAA-NMFS-2020-0031-DRAFT-22418
NOAA-NMFS-2020-0031-DRAFT-22419
NOAA-NMFS-2020-0031-DRAFT-22420
NOAA-NMFS-2020-0031-DRAFT-22421
NOAA-NMFS-2020-0031-DRAFT-22422
NOAA-NMFS-2020-0031-DRAFT-22423
NOAA-NMFS-2020-0031-DRAFT-22424
NOAA-NMFS-2020-0031-DRAFT-22425
NOAA-NMFS-2020-0031-DRAFT-22426
NOAA-NMFS-2020-0031-DRAFT-22427
NOAA-NMFS-2020-0031-DRAFT-22428
NOAA-NMFS-2020-0031-DRAFT-22429
NOAA-NMFS-2020-0031-DRAFT-22430
NOAA-NMFS-2020-0031-DRAFT-22431
NOAA-NMFS-2020-0031-DRAFT-22432
NOAA-NMFS-2020-0031-DRAFT-22433
NOAA-NMFS-2020-0031-DRAFT-22435
NOAA-NMFS-2020-0031-DRAFT-22436
NOAA-NMFS-2020-0031-DRAFT-22437
NOAA-NMFS-2020-0031-DRAFT-22438
NOAA-NMFS-2020-0031-DRAFT-22439
NOAA-NMFS-2020-0031-DRAFT-22440
NOAA-NMFS-2020-0031-DRAFT-22441
NOAA-NMFS-2020-0031-DRAFT-22442
NOAA-NMFS-2020-0031-DRAFT-22443
NOAA-NMFS-2020-0031-DRAFT-22444
NOAA-NMFS-2020-0031-DRAFT-22445
NOAA-NMFS-2020-0031-DRAFT-22446
NOAA-NMFS-2020-0031-DRAFT-22447
NOAA-NMFS-2020-0031-DRAFT-22449

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NOAA-NMFS-2020-0031-DRAFT-27600
NOAA-NMFS-2020-0031-DRAFT-27601
NOAA-NMFS-2020-0031-DRAFT-27602
NOAA-NMFS-2020-0031-DRAFT-27603
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NOAA-NMFS-2020-0031-DRAFT-27607
NOAA-NMFS-2020-0031-DRAFT-27608
NOAA-NMFS-2020-0031-DRAFT-27609
NOAA-NMFS-2020-0031-DRAFT-27610
NOAA-NMFS-2020-0031-DRAFT-27611
NOAA-NMFS-2020-0031-DRAFT-27612
NOAA-NMFS-2020-0031-DRAFT-27613
NOAA-NMFS-2020-0031-DRAFT-27614
NOAA-NMFS-2020-0031-DRAFT-27615
NOAA-NMFS-2020-0031-DRAFT-27616
NOAA-NMFS-2020-0031-DRAFT-27617
NOAA-NMFS-2020-0031-DRAFT-27618
NOAA-NMFS-2020-0031-DRAFT-27619
NOAA-NMFS-2020-0031-DRAFT-27620
NOAA-NMFS-2020-0031-DRAFT-27621
NOAA-NMFS-2020-0031-DRAFT-27622
NOAA-NMFS-2020-0031-DRAFT-27623
NOAA-NMFS-2020-0031-DRAFT-27624
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NOAA-NMFS-2020-0031-DRAFT-27629
NOAA-NMFS-2020-0031-DRAFT-27630
NOAA-NMFS-2020-0031-DRAFT-27631
NOAA-NMFS-2020-0031-DRAFT-27632
NOAA-NMFS-2020-0031-DRAFT-27633
NOAA-NMFS-2020-0031-DRAFT-27634
NOAA-NMFS-2020-0031-DRAFT-27635
NOAA-NMFS-2020-0031-DRAFT-27636
NOAA-NMFS-2020-0031-DRAFT-27637
NOAA-NMFS-2020-0031-DRAFT-27638
NOAA-NMFS-2020-0031-DRAFT-27639
NOAA-NMFS-2020-0031-DRAFT-27640

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NOAA-NMFS-2020-0031-DRAFT-22450
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NOAA-NMFS-2020-0031-DRAFT-22453
NOAA-NMFS-2020-0031-DRAFT-22454
NOAA-NMFS-2020-0031-DRAFT-22455
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NOAA-NMFS-2020-0031-DRAFT-22463
NOAA-NMFS-2020-0031-DRAFT-22464
NOAA-NMFS-2020-0031-DRAFT-22465
NOAA-NMFS-2020-0031-DRAFT-22466
NOAA-NMFS-2020-0031-DRAFT-22467
NOAA-NMFS-2020-0031-DRAFT-22468
NOAA-NMFS-2020-0031-DRAFT-22469
NOAA-NMFS-2020-0031-DRAFT-22470
NOAA-NMFS-2020-0031-DRAFT-22471
NOAA-NMFS-2020-0031-DRAFT-22472
NOAA-NMFS-2020-0031-DRAFT-22473
NOAA-NMFS-2020-0031-DRAFT-22474
NOAA-NMFS-2020-0031-DRAFT-22475
NOAA-NMFS-2020-0031-DRAFT-22476
NOAA-NMFS-2020-0031-DRAFT-22477
NOAA-NMFS-2020-0031-DRAFT-22478
NOAA-NMFS-2020-0031-DRAFT-22479
NOAA-NMFS-2020-0031-DRAFT-22480
NOAA-NMFS-2020-0031-DRAFT-22481
NOAA-NMFS-2020-0031-DRAFT-22482
NOAA-NMFS-2020-0031-DRAFT-22483
NOAA-NMFS-2020-0031-DRAFT-22484
NOAA-NMFS-2020-0031-DRAFT-22485
NOAA-NMFS-2020-0031-DRAFT-22486
NOAA-NMFS-2020-0031-DRAFT-22487
NOAA-NMFS-2020-0031-DRAFT-22488
NOAA-NMFS-2020-0031-DRAFT-22489
NOAA-NMFS-2020-0031-DRAFT-22490

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NOAA-NMFS-2020-0031-DRAFT-27651
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NOAA-NMFS-2020-0031-DRAFT-27653
NOAA-NMFS-2020-0031-DRAFT-27654
NOAA-NMFS-2020-0031-DRAFT-27655
NOAA-NMFS-2020-0031-DRAFT-27656
NOAA-NMFS-2020-0031-DRAFT-27657
NOAA-NMFS-2020-0031-DRAFT-27658
NOAA-NMFS-2020-0031-DRAFT-27659
NOAA-NMFS-2020-0031-DRAFT-27660
NOAA-NMFS-2020-0031-DRAFT-27661
NOAA-NMFS-2020-0031-DRAFT-27662
NOAA-NMFS-2020-0031-DRAFT-27663
NOAA-NMFS-2020-0031-DRAFT-27664
NOAA-NMFS-2020-0031-DRAFT-27665
NOAA-NMFS-2020-0031-DRAFT-27666
NOAA-NMFS-2020-0031-DRAFT-27667
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NOAA-NMFS-2020-0031-DRAFT-27680
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NOAA-NMFS-2020-0031-DRAFT-22491
NOAA-NMFS-2020-0031-DRAFT-22492
NOAA-NMFS-2020-0031-DRAFT-22493
NOAA-NMFS-2020-0031-DRAFT-22494
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NOAA-NMFS-2020-0031-DRAFT-22501
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NOAA-NMFS-2020-0031-DRAFT-22504
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NOAA-NMFS-2020-0031-DRAFT-22506
NOAA-NMFS-2020-0031-DRAFT-22507
NOAA-NMFS-2020-0031-DRAFT-22508
NOAA-NMFS-2020-0031-DRAFT-22509
NOAA-NMFS-2020-0031-DRAFT-22510
NOAA-NMFS-2020-0031-DRAFT-22511
NOAA-NMFS-2020-0031-DRAFT-22512
NOAA-NMFS-2020-0031-DRAFT-22513
NOAA-NMFS-2020-0031-DRAFT-22514
NOAA-NMFS-2020-0031-DRAFT-22515
NOAA-NMFS-2020-0031-DRAFT-22516
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NOAA-NMFS-2020-0031-DRAFT-22522
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NOAA-NMFS-2020-0031-DRAFT-22526
NOAA-NMFS-2020-0031-DRAFT-22527
NOAA-NMFS-2020-0031-DRAFT-22528
NOAA-NMFS-2020-0031-DRAFT-22530
NOAA-NMFS-2020-0031-DRAFT-22531
NOAA-NMFS-2020-0031-DRAFT-22532

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NOAA-NMFS-2020-0031-DRAFT-27682
NOAA-NMFS-2020-0031-DRAFT-27683
NOAA-NMFS-2020-0031-DRAFT-27684
NOAA-NMFS-2020-0031-DRAFT-27685
NOAA-NMFS-2020-0031-DRAFT-27686
NOAA-NMFS-2020-0031-DRAFT-27687
NOAA-NMFS-2020-0031-DRAFT-27688
NOAA-NMFS-2020-0031-DRAFT-27689
NOAA-NMFS-2020-0031-DRAFT-27690
NOAA-NMFS-2020-0031-DRAFT-27691
NOAA-NMFS-2020-0031-DRAFT-27692
NOAA-NMFS-2020-0031-DRAFT-27693
NOAA-NMFS-2020-0031-DRAFT-27694
NOAA-NMFS-2020-0031-DRAFT-27695
NOAA-NMFS-2020-0031-DRAFT-27696
NOAA-NMFS-2020-0031-DRAFT-27697
NOAA-NMFS-2020-0031-DRAFT-27698
NOAA-NMFS-2020-0031-DRAFT-27699
NOAA-NMFS-2020-0031-DRAFT-27700
NOAA-NMFS-2020-0031-DRAFT-27701
NOAA-NMFS-2020-0031-DRAFT-27702
NOAA-NMFS-2020-0031-DRAFT-27703
NOAA-NMFS-2020-0031-DRAFT-27704
NOAA-NMFS-2020-0031-DRAFT-27705
NOAA-NMFS-2020-0031-DRAFT-27706
NOAA-NMFS-2020-0031-DRAFT-27707
NOAA-NMFS-2020-0031-DRAFT-27708
NOAA-NMFS-2020-0031-DRAFT-27709
NOAA-NMFS-2020-0031-DRAFT-27710
NOAA-NMFS-2020-0031-DRAFT-27711
NOAA-NMFS-2020-0031-DRAFT-27712
NOAA-NMFS-2020-0031-DRAFT-27713
NOAA-NMFS-2020-0031-DRAFT-27714
NOAA-NMFS-2020-0031-DRAFT-27715
NOAA-NMFS-2020-0031-DRAFT-27716
NOAA-NMFS-2020-0031-DRAFT-27717
NOAA-NMFS-2020-0031-DRAFT-27718
NOAA-NMFS-2020-0031-DRAFT-27719
NOAA-NMFS-2020-0031-DRAFT-27720
NOAA-NMFS-2020-0031-DRAFT-27721
NOAA-NMFS-2020-0031-DRAFT-27722

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NOAA-NMFS-2020-0031-DRAFT-22533
NOAA-NMFS-2020-0031-DRAFT-22534
NOAA-NMFS-2020-0031-DRAFT-22535
NOAA-NMFS-2020-0031-DRAFT-22536
NOAA-NMFS-2020-0031-DRAFT-22537
NOAA-NMFS-2020-0031-DRAFT-22538
NOAA-NMFS-2020-0031-DRAFT-22539
NOAA-NMFS-2020-0031-DRAFT-22540
NOAA-NMFS-2020-0031-DRAFT-22541
NOAA-NMFS-2020-0031-DRAFT-22542
NOAA-NMFS-2020-0031-DRAFT-22543
NOAA-NMFS-2020-0031-DRAFT-22544
NOAA-NMFS-2020-0031-DRAFT-22545
NOAA-NMFS-2020-0031-DRAFT-22546
NOAA-NMFS-2020-0031-DRAFT-22547
NOAA-NMFS-2020-0031-DRAFT-22548
NOAA-NMFS-2020-0031-DRAFT-22549
NOAA-NMFS-2020-0031-DRAFT-22550
NOAA-NMFS-2020-0031-DRAFT-22551
NOAA-NMFS-2020-0031-DRAFT-22552
NOAA-NMFS-2020-0031-DRAFT-22553
NOAA-NMFS-2020-0031-DRAFT-22554
NOAA-NMFS-2020-0031-DRAFT-22555
NOAA-NMFS-2020-0031-DRAFT-22556
NOAA-NMFS-2020-0031-DRAFT-22557
NOAA-NMFS-2020-0031-DRAFT-22558
NOAA-NMFS-2020-0031-DRAFT-22559
NOAA-NMFS-2020-0031-DRAFT-22560
NOAA-NMFS-2020-0031-DRAFT-22561
NOAA-NMFS-2020-0031-DRAFT-22562
NOAA-NMFS-2020-0031-DRAFT-22563
NOAA-NMFS-2020-0031-DRAFT-22564
NOAA-NMFS-2020-0031-DRAFT-22565
NOAA-NMFS-2020-0031-DRAFT-22566
NOAA-NMFS-2020-0031-DRAFT-22567
NOAA-NMFS-2020-0031-DRAFT-22568
NOAA-NMFS-2020-0031-DRAFT-22569
NOAA-NMFS-2020-0031-DRAFT-22570
NOAA-NMFS-2020-0031-DRAFT-22571
NOAA-NMFS-2020-0031-DRAFT-22572
NOAA-NMFS-2020-0031-DRAFT-22573

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NOAA-NMFS-2020-0031-DRAFT-27723
NOAA-NMFS-2020-0031-DRAFT-27724
NOAA-NMFS-2020-0031-DRAFT-27725
NOAA-NMFS-2020-0031-DRAFT-27726
NOAA-NMFS-2020-0031-DRAFT-27727
NOAA-NMFS-2020-0031-DRAFT-27728
NOAA-NMFS-2020-0031-DRAFT-27729
NOAA-NMFS-2020-0031-DRAFT-27730
NOAA-NMFS-2020-0031-DRAFT-27731
NOAA-NMFS-2020-0031-DRAFT-27732
NOAA-NMFS-2020-0031-DRAFT-27733
NOAA-NMFS-2020-0031-DRAFT-27734
NOAA-NMFS-2020-0031-DRAFT-27735
NOAA-NMFS-2020-0031-DRAFT-27736
NOAA-NMFS-2020-0031-DRAFT-27737
NOAA-NMFS-2020-0031-DRAFT-27738
NOAA-NMFS-2020-0031-DRAFT-27739
NOAA-NMFS-2020-0031-DRAFT-27740
NOAA-NMFS-2020-0031-DRAFT-27741
NOAA-NMFS-2020-0031-DRAFT-27742
NOAA-NMFS-2020-0031-DRAFT-27743
NOAA-NMFS-2020-0031-DRAFT-27744
NOAA-NMFS-2020-0031-DRAFT-27745
NOAA-NMFS-2020-0031-DRAFT-27746
NOAA-NMFS-2020-0031-DRAFT-27747
NOAA-NMFS-2020-0031-DRAFT-27748
NOAA-NMFS-2020-0031-DRAFT-27749
NOAA-NMFS-2020-0031-DRAFT-27750
NOAA-NMFS-2020-0031-DRAFT-27751
NOAA-NMFS-2020-0031-DRAFT-27752
NOAA-NMFS-2020-0031-DRAFT-27753
NOAA-NMFS-2020-0031-DRAFT-27754
NOAA-NMFS-2020-0031-DRAFT-27755
NOAA-NMFS-2020-0031-DRAFT-27756
NOAA-NMFS-2020-0031-DRAFT-27757
NOAA-NMFS-2020-0031-DRAFT-27758
NOAA-NMFS-2020-0031-DRAFT-27759
NOAA-NMFS-2020-0031-DRAFT-27760
NOAA-NMFS-2020-0031-DRAFT-27761
NOAA-NMFS-2020-0031-DRAFT-27762
NOAA-NMFS-2020-0031-DRAFT-27763

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NOAA-NMFS-2020-0031-DRAFT-22574
NOAA-NMFS-2020-0031-DRAFT-22575
NOAA-NMFS-2020-0031-DRAFT-22576
NOAA-NMFS-2020-0031-DRAFT-22577
NOAA-NMFS-2020-0031-DRAFT-22578
NOAA-NMFS-2020-0031-DRAFT-22579
NOAA-NMFS-2020-0031-DRAFT-22580
NOAA-NMFS-2020-0031-DRAFT-22581
NOAA-NMFS-2020-0031-DRAFT-22582
NOAA-NMFS-2020-0031-DRAFT-22583
NOAA-NMFS-2020-0031-DRAFT-22584
NOAA-NMFS-2020-0031-DRAFT-22585
NOAA-NMFS-2020-0031-DRAFT-22586
NOAA-NMFS-2020-0031-DRAFT-22587
NOAA-NMFS-2020-0031-DRAFT-22588
NOAA-NMFS-2020-0031-DRAFT-22589
NOAA-NMFS-2020-0031-DRAFT-22590
NOAA-NMFS-2020-0031-DRAFT-22591
NOAA-NMFS-2020-0031-DRAFT-22592
NOAA-NMFS-2020-0031-DRAFT-22593
NOAA-NMFS-2020-0031-DRAFT-22594
NOAA-NMFS-2020-0031-DRAFT-22595
NOAA-NMFS-2020-0031-DRAFT-22596
NOAA-NMFS-2020-0031-DRAFT-22597
NOAA-NMFS-2020-0031-DRAFT-22598
NOAA-NMFS-2020-0031-DRAFT-22599
NOAA-NMFS-2020-0031-DRAFT-22600
NOAA-NMFS-2020-0031-DRAFT-22601
NOAA-NMFS-2020-0031-DRAFT-22602
NOAA-NMFS-2020-0031-DRAFT-22603
NOAA-NMFS-2020-0031-DRAFT-22604
NOAA-NMFS-2020-0031-DRAFT-22605
NOAA-NMFS-2020-0031-DRAFT-22606
NOAA-NMFS-2020-0031-DRAFT-22607
NOAA-NMFS-2020-0031-DRAFT-22608
NOAA-NMFS-2020-0031-DRAFT-22609
NOAA-NMFS-2020-0031-DRAFT-22610
NOAA-NMFS-2020-0031-DRAFT-22611
NOAA-NMFS-2020-0031-DRAFT-22612
NOAA-NMFS-2020-0031-DRAFT-22613
NOAA-NMFS-2020-0031-DRAFT-22614

Comment from Slate, Robin
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NOAA-NMFS-2020-0031-DRAFT-27764
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NOAA-NMFS-2020-0031-DRAFT-27779
NOAA-NMFS-2020-0031-DRAFT-27780
NOAA-NMFS-2020-0031-DRAFT-27781
NOAA-NMFS-2020-0031-DRAFT-27782
NOAA-NMFS-2020-0031-DRAFT-27783
NOAA-NMFS-2020-0031-DRAFT-27784
NOAA-NMFS-2020-0031-DRAFT-27785
NOAA-NMFS-2020-0031-DRAFT-27786
NOAA-NMFS-2020-0031-DRAFT-27787
NOAA-NMFS-2020-0031-DRAFT-27788
NOAA-NMFS-2020-0031-DRAFT-27789
NOAA-NMFS-2020-0031-DRAFT-27790
NOAA-NMFS-2020-0031-DRAFT-27791
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NOAA-NMFS-2020-0031-DRAFT-22615
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NOAA-NMFS-2020-0031-DRAFT-22617
NOAA-NMFS-2020-0031-DRAFT-22618
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NOAA-NMFS-2020-0031-DRAFT-22625
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NOAA-NMFS-2020-0031-DRAFT-22627
NOAA-NMFS-2020-0031-DRAFT-22628
NOAA-NMFS-2020-0031-DRAFT-22629
NOAA-NMFS-2020-0031-DRAFT-22630
NOAA-NMFS-2020-0031-DRAFT-22631
NOAA-NMFS-2020-0031-DRAFT-22632
NOAA-NMFS-2020-0031-DRAFT-22633
NOAA-NMFS-2020-0031-DRAFT-22634
NOAA-NMFS-2020-0031-DRAFT-22635
NOAA-NMFS-2020-0031-DRAFT-22636
NOAA-NMFS-2020-0031-DRAFT-22637
NOAA-NMFS-2020-0031-DRAFT-22638
NOAA-NMFS-2020-0031-DRAFT-22639
NOAA-NMFS-2020-0031-DRAFT-22640
NOAA-NMFS-2020-0031-DRAFT-22641
NOAA-NMFS-2020-0031-DRAFT-22642
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NOAA-NMFS-2020-0031-DRAFT-22646
NOAA-NMFS-2020-0031-DRAFT-22647
NOAA-NMFS-2020-0031-DRAFT-22648
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NOAA-NMFS-2020-0031-DRAFT-22650
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NOAA-NMFS-2020-0031-DRAFT-27806
NOAA-NMFS-2020-0031-DRAFT-27807
NOAA-NMFS-2020-0031-DRAFT-27808
NOAA-NMFS-2020-0031-DRAFT-27809
NOAA-NMFS-2020-0031-DRAFT-27810
NOAA-NMFS-2020-0031-DRAFT-27811
NOAA-NMFS-2020-0031-DRAFT-27812
NOAA-NMFS-2020-0031-DRAFT-27813
NOAA-NMFS-2020-0031-DRAFT-27814
NOAA-NMFS-2020-0031-DRAFT-27815
NOAA-NMFS-2020-0031-DRAFT-27816
NOAA-NMFS-2020-0031-DRAFT-27817
NOAA-NMFS-2020-0031-DRAFT-27818
NOAA-NMFS-2020-0031-DRAFT-27819
NOAA-NMFS-2020-0031-DRAFT-27820
NOAA-NMFS-2020-0031-DRAFT-27821
NOAA-NMFS-2020-0031-DRAFT-27822
NOAA-NMFS-2020-0031-DRAFT-27823
NOAA-NMFS-2020-0031-DRAFT-27824
NOAA-NMFS-2020-0031-DRAFT-27825
NOAA-NMFS-2020-0031-DRAFT-27826
NOAA-NMFS-2020-0031-DRAFT-27827
NOAA-NMFS-2020-0031-DRAFT-27828
NOAA-NMFS-2020-0031-DRAFT-27829
NOAA-NMFS-2020-0031-DRAFT-27830
NOAA-NMFS-2020-0031-DRAFT-27831
NOAA-NMFS-2020-0031-DRAFT-27832
NOAA-NMFS-2020-0031-DRAFT-27833
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NOAA-NMFS-2020-0031-DRAFT-27837
NOAA-NMFS-2020-0031-DRAFT-27838
NOAA-NMFS-2020-0031-DRAFT-27839
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NOAA-NMFS-2020-0031-DRAFT-27841
NOAA-NMFS-2020-0031-DRAFT-27842
NOAA-NMFS-2020-0031-DRAFT-27843
NOAA-NMFS-2020-0031-DRAFT-27844
NOAA-NMFS-2020-0031-DRAFT-27845
NOAA-NMFS-2020-0031-DRAFT-27846

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NOAA-NMFS-2020-0031-DRAFT-22656
NOAA-NMFS-2020-0031-DRAFT-22658
NOAA-NMFS-2020-0031-DRAFT-22659
NOAA-NMFS-2020-0031-DRAFT-22660
NOAA-NMFS-2020-0031-DRAFT-22661
NOAA-NMFS-2020-0031-DRAFT-22662
NOAA-NMFS-2020-0031-DRAFT-22663
NOAA-NMFS-2020-0031-DRAFT-22664
NOAA-NMFS-2020-0031-DRAFT-22665
NOAA-NMFS-2020-0031-DRAFT-22666
NOAA-NMFS-2020-0031-DRAFT-22667
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NOAA-NMFS-2020-0031-DRAFT-22671
NOAA-NMFS-2020-0031-DRAFT-22672
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NOAA-NMFS-2020-0031-DRAFT-22675
NOAA-NMFS-2020-0031-DRAFT-22676
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NOAA-NMFS-2020-0031-DRAFT-22678
NOAA-NMFS-2020-0031-DRAFT-22679
NOAA-NMFS-2020-0031-DRAFT-22680
NOAA-NMFS-2020-0031-DRAFT-22681
NOAA-NMFS-2020-0031-DRAFT-22682
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NOAA-NMFS-2020-0031-DRAFT-22685
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NOAA-NMFS-2020-0031-DRAFT-22693
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NOAA-NMFS-2020-0031-DRAFT-22698

Comment from Sheck, Sally
Comment from Goodstein, Karen
Comment from Kennedy, Nicole
Comment from McGuire, Linda
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Comment from Unger, Pamela
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NOAA-NMFS-2020-0031-DRAFT-27847
NOAA-NMFS-2020-0031-DRAFT-27848
NOAA-NMFS-2020-0031-DRAFT-27849
NOAA-NMFS-2020-0031-DRAFT-27850
NOAA-NMFS-2020-0031-DRAFT-27851
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NOAA-NMFS-2020-0031-DRAFT-27861
NOAA-NMFS-2020-0031-DRAFT-27862
NOAA-NMFS-2020-0031-DRAFT-27863
NOAA-NMFS-2020-0031-DRAFT-27864
NOAA-NMFS-2020-0031-DRAFT-27865
NOAA-NMFS-2020-0031-DRAFT-27866
NOAA-NMFS-2020-0031-DRAFT-27867
NOAA-NMFS-2020-0031-DRAFT-27868
NOAA-NMFS-2020-0031-DRAFT-27869
NOAA-NMFS-2020-0031-DRAFT-27870
NOAA-NMFS-2020-0031-DRAFT-27871
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NOAA-NMFS-2020-0031-DRAFT-27886
NOAA-NMFS-2020-0031-DRAFT-27887
NOAA-NMFS-2020-0031-DRAFT-27888

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NOAA-NMFS-2020-0031-DRAFT-22699
NOAA-NMFS-2020-0031-DRAFT-22700
NOAA-NMFS-2020-0031-DRAFT-22701
NOAA-NMFS-2020-0031-DRAFT-22702
NOAA-NMFS-2020-0031-DRAFT-22703
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NOAA-NMFS-2020-0031-DRAFT-22717
NOAA-NMFS-2020-0031-DRAFT-22718
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NOAA-NMFS-2020-0031-DRAFT-22720
NOAA-NMFS-2020-0031-DRAFT-22721
NOAA-NMFS-2020-0031-DRAFT-22722
NOAA-NMFS-2020-0031-DRAFT-22723
NOAA-NMFS-2020-0031-DRAFT-22724
NOAA-NMFS-2020-0031-DRAFT-22725
NOAA-NMFS-2020-0031-DRAFT-22726
NOAA-NMFS-2020-0031-DRAFT-22727
NOAA-NMFS-2020-0031-DRAFT-22728
NOAA-NMFS-2020-0031-DRAFT-22730
NOAA-NMFS-2020-0031-DRAFT-22731
NOAA-NMFS-2020-0031-DRAFT-22732
NOAA-NMFS-2020-0031-DRAFT-22733
NOAA-NMFS-2020-0031-DRAFT-22734
NOAA-NMFS-2020-0031-DRAFT-22735
NOAA-NMFS-2020-0031-DRAFT-22736
NOAA-NMFS-2020-0031-DRAFT-22737
NOAA-NMFS-2020-0031-DRAFT-22738
NOAA-NMFS-2020-0031-DRAFT-22739
NOAA-NMFS-2020-0031-DRAFT-22740

Comment from cook, necole
Comment from Mendoza, Redelisa
Comment from Walters, Ernie
Comment from schoeman, gayle
Comment from fabulian, marybeth
Comment from Will, Leona
Comment from lynch, cindy
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NOAA-NMFS-2020-0031-DRAFT-27889
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NOAA-NMFS-2020-0031-DRAFT-27899
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NOAA-NMFS-2020-0031-DRAFT-27901
NOAA-NMFS-2020-0031-DRAFT-27902
NOAA-NMFS-2020-0031-DRAFT-27903
NOAA-NMFS-2020-0031-DRAFT-27904
NOAA-NMFS-2020-0031-DRAFT-27905
NOAA-NMFS-2020-0031-DRAFT-27906
NOAA-NMFS-2020-0031-DRAFT-27907
NOAA-NMFS-2020-0031-DRAFT-27908
NOAA-NMFS-2020-0031-DRAFT-27909
NOAA-NMFS-2020-0031-DRAFT-27910
NOAA-NMFS-2020-0031-DRAFT-27911
NOAA-NMFS-2020-0031-DRAFT-27912
NOAA-NMFS-2020-0031-DRAFT-27913
NOAA-NMFS-2020-0031-DRAFT-27914
NOAA-NMFS-2020-0031-DRAFT-27915
NOAA-NMFS-2020-0031-DRAFT-27916
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NOAA-NMFS-2020-0031-DRAFT-27921
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NOAA-NMFS-2020-0031-DRAFT-27924
NOAA-NMFS-2020-0031-DRAFT-27925
NOAA-NMFS-2020-0031-DRAFT-27926
NOAA-NMFS-2020-0031-DRAFT-27927
NOAA-NMFS-2020-0031-DRAFT-27928
NOAA-NMFS-2020-0031-DRAFT-27929

Comment from DONNELLY, STEPHEN
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NOAA-NMFS-2020-0031-DRAFT-22741
NOAA-NMFS-2020-0031-DRAFT-22742
NOAA-NMFS-2020-0031-DRAFT-22743
NOAA-NMFS-2020-0031-DRAFT-22744
NOAA-NMFS-2020-0031-DRAFT-22746
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NOAA-NMFS-2020-0031-DRAFT-22751
NOAA-NMFS-2020-0031-DRAFT-22752
NOAA-NMFS-2020-0031-DRAFT-22753
NOAA-NMFS-2020-0031-DRAFT-22754
NOAA-NMFS-2020-0031-DRAFT-22765
NOAA-NMFS-2020-0031-DRAFT-22766
NOAA-NMFS-2020-0031-DRAFT-22767
NOAA-NMFS-2020-0031-DRAFT-22768
NOAA-NMFS-2020-0031-DRAFT-22769
NOAA-NMFS-2020-0031-DRAFT-22770
NOAA-NMFS-2020-0031-DRAFT-22771
NOAA-NMFS-2020-0031-DRAFT-22772
NOAA-NMFS-2020-0031-DRAFT-22773
NOAA-NMFS-2020-0031-DRAFT-22774
NOAA-NMFS-2020-0031-DRAFT-22775
NOAA-NMFS-2020-0031-DRAFT-22776
NOAA-NMFS-2020-0031-DRAFT-22777
NOAA-NMFS-2020-0031-DRAFT-22778
NOAA-NMFS-2020-0031-DRAFT-22779
NOAA-NMFS-2020-0031-DRAFT-22780
NOAA-NMFS-2020-0031-DRAFT-22781
NOAA-NMFS-2020-0031-DRAFT-22782
NOAA-NMFS-2020-0031-DRAFT-22783
NOAA-NMFS-2020-0031-DRAFT-22784
NOAA-NMFS-2020-0031-DRAFT-22786
NOAA-NMFS-2020-0031-DRAFT-22787
NOAA-NMFS-2020-0031-DRAFT-22788
NOAA-NMFS-2020-0031-DRAFT-22789
NOAA-NMFS-2020-0031-DRAFT-22790
NOAA-NMFS-2020-0031-DRAFT-22791
NOAA-NMFS-2020-0031-DRAFT-22792
NOAA-NMFS-2020-0031-DRAFT-22793

Comment from Kowall, Betty
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NOAA-NMFS-2020-0031-DRAFT-27930
NOAA-NMFS-2020-0031-DRAFT-27931
NOAA-NMFS-2020-0031-DRAFT-27932
NOAA-NMFS-2020-0031-DRAFT-27933
NOAA-NMFS-2020-0031-DRAFT-27934
NOAA-NMFS-2020-0031-DRAFT-27935
NOAA-NMFS-2020-0031-DRAFT-27936
NOAA-NMFS-2020-0031-DRAFT-27937
NOAA-NMFS-2020-0031-DRAFT-27938
NOAA-NMFS-2020-0031-DRAFT-27939
NOAA-NMFS-2020-0031-DRAFT-27940
NOAA-NMFS-2020-0031-DRAFT-27941
NOAA-NMFS-2020-0031-DRAFT-27942
NOAA-NMFS-2020-0031-DRAFT-27943
NOAA-NMFS-2020-0031-DRAFT-27944
NOAA-NMFS-2020-0031-DRAFT-27945
NOAA-NMFS-2020-0031-DRAFT-27946
NOAA-NMFS-2020-0031-DRAFT-27947
NOAA-NMFS-2020-0031-DRAFT-27948
NOAA-NMFS-2020-0031-DRAFT-27949
NOAA-NMFS-2020-0031-DRAFT-27950
NOAA-NMFS-2020-0031-DRAFT-27951
NOAA-NMFS-2020-0031-DRAFT-27952
NOAA-NMFS-2020-0031-DRAFT-27953
NOAA-NMFS-2020-0031-DRAFT-27954
NOAA-NMFS-2020-0031-DRAFT-27955
NOAA-NMFS-2020-0031-DRAFT-27956
NOAA-NMFS-2020-0031-DRAFT-27957
NOAA-NMFS-2020-0031-DRAFT-27958
NOAA-NMFS-2020-0031-DRAFT-27959
NOAA-NMFS-2020-0031-DRAFT-27960
NOAA-NMFS-2020-0031-DRAFT-27961
NOAA-NMFS-2020-0031-DRAFT-27962
NOAA-NMFS-2020-0031-DRAFT-27963
NOAA-NMFS-2020-0031-DRAFT-27964
NOAA-NMFS-2020-0031-DRAFT-27965
NOAA-NMFS-2020-0031-DRAFT-27966
NOAA-NMFS-2020-0031-DRAFT-27967
NOAA-NMFS-2020-0031-DRAFT-27968
NOAA-NMFS-2020-0031-DRAFT-27969
NOAA-NMFS-2020-0031-DRAFT-27970

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NOAA-NMFS-2020-0031-DRAFT-22794
NOAA-NMFS-2020-0031-DRAFT-22795
NOAA-NMFS-2020-0031-DRAFT-22796
NOAA-NMFS-2020-0031-DRAFT-22797
NOAA-NMFS-2020-0031-DRAFT-22798
NOAA-NMFS-2020-0031-DRAFT-22799
NOAA-NMFS-2020-0031-DRAFT-22801
NOAA-NMFS-2020-0031-DRAFT-22802
NOAA-NMFS-2020-0031-DRAFT-22803
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NOAA-NMFS-2020-0031-DRAFT-22805
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NOAA-NMFS-2020-0031-DRAFT-22807
NOAA-NMFS-2020-0031-DRAFT-22808
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NOAA-NMFS-2020-0031-DRAFT-22817
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NOAA-NMFS-2020-0031-DRAFT-22819
NOAA-NMFS-2020-0031-DRAFT-22820
NOAA-NMFS-2020-0031-DRAFT-22821
NOAA-NMFS-2020-0031-DRAFT-22822
NOAA-NMFS-2020-0031-DRAFT-22823
NOAA-NMFS-2020-0031-DRAFT-22824
NOAA-NMFS-2020-0031-DRAFT-22825
NOAA-NMFS-2020-0031-DRAFT-22826
NOAA-NMFS-2020-0031-DRAFT-22827
NOAA-NMFS-2020-0031-DRAFT-22828
NOAA-NMFS-2020-0031-DRAFT-22829
NOAA-NMFS-2020-0031-DRAFT-22830
NOAA-NMFS-2020-0031-DRAFT-22831
NOAA-NMFS-2020-0031-DRAFT-22832
NOAA-NMFS-2020-0031-DRAFT-22833
NOAA-NMFS-2020-0031-DRAFT-22834
NOAA-NMFS-2020-0031-DRAFT-22835
NOAA-NMFS-2020-0031-DRAFT-22836
NOAA-NMFS-2020-0031-DRAFT-22837
NOAA-NMFS-2020-0031-DRAFT-22838

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NOAA-NMFS-2020-0031-DRAFT-27971
NOAA-NMFS-2020-0031-DRAFT-27972
NOAA-NMFS-2020-0031-DRAFT-27973
NOAA-NMFS-2020-0031-DRAFT-27974
NOAA-NMFS-2020-0031-DRAFT-27975
NOAA-NMFS-2020-0031-DRAFT-27976
NOAA-NMFS-2020-0031-DRAFT-27977
NOAA-NMFS-2020-0031-DRAFT-27978
NOAA-NMFS-2020-0031-DRAFT-27979
NOAA-NMFS-2020-0031-DRAFT-27980
NOAA-NMFS-2020-0031-DRAFT-27981
NOAA-NMFS-2020-0031-DRAFT-27982
NOAA-NMFS-2020-0031-DRAFT-27983
NOAA-NMFS-2020-0031-DRAFT-27984
NOAA-NMFS-2020-0031-DRAFT-27985
NOAA-NMFS-2020-0031-DRAFT-27986
NOAA-NMFS-2020-0031-DRAFT-27987
NOAA-NMFS-2020-0031-DRAFT-27988
NOAA-NMFS-2020-0031-DRAFT-27989
NOAA-NMFS-2020-0031-DRAFT-27990
NOAA-NMFS-2020-0031-DRAFT-27991
NOAA-NMFS-2020-0031-DRAFT-27992
NOAA-NMFS-2020-0031-DRAFT-27993
NOAA-NMFS-2020-0031-DRAFT-27994
NOAA-NMFS-2020-0031-DRAFT-27995
NOAA-NMFS-2020-0031-DRAFT-27996
NOAA-NMFS-2020-0031-DRAFT-27997
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NOAA-NMFS-2020-0031-DRAFT-28000
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NOAA-NMFS-2020-0031-DRAFT-28006
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NOAA-NMFS-2020-0031-DRAFT-28009
NOAA-NMFS-2020-0031-DRAFT-28010
NOAA-NMFS-2020-0031-DRAFT-28011

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NOAA-NMFS-2020-0031-DRAFT-22839
NOAA-NMFS-2020-0031-DRAFT-22840
NOAA-NMFS-2020-0031-DRAFT-22841
NOAA-NMFS-2020-0031-DRAFT-22842
NOAA-NMFS-2020-0031-DRAFT-22843
NOAA-NMFS-2020-0031-DRAFT-22844
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NOAA-NMFS-2020-0031-DRAFT-22854
NOAA-NMFS-2020-0031-DRAFT-22855
NOAA-NMFS-2020-0031-DRAFT-22856
NOAA-NMFS-2020-0031-DRAFT-22857
NOAA-NMFS-2020-0031-DRAFT-22858
NOAA-NMFS-2020-0031-DRAFT-22859
NOAA-NMFS-2020-0031-DRAFT-22860
NOAA-NMFS-2020-0031-DRAFT-22861
NOAA-NMFS-2020-0031-DRAFT-22862
NOAA-NMFS-2020-0031-DRAFT-22863
NOAA-NMFS-2020-0031-DRAFT-22864
NOAA-NMFS-2020-0031-DRAFT-22865
NOAA-NMFS-2020-0031-DRAFT-22866
NOAA-NMFS-2020-0031-DRAFT-22867
NOAA-NMFS-2020-0031-DRAFT-22868
NOAA-NMFS-2020-0031-DRAFT-22869
NOAA-NMFS-2020-0031-DRAFT-22870
NOAA-NMFS-2020-0031-DRAFT-22871
NOAA-NMFS-2020-0031-DRAFT-22872
NOAA-NMFS-2020-0031-DRAFT-22873
NOAA-NMFS-2020-0031-DRAFT-22874
NOAA-NMFS-2020-0031-DRAFT-22875
NOAA-NMFS-2020-0031-DRAFT-22876
NOAA-NMFS-2020-0031-DRAFT-22877
NOAA-NMFS-2020-0031-DRAFT-22879
NOAA-NMFS-2020-0031-DRAFT-22880

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NOAA-NMFS-2020-0031-DRAFT-28012
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NOAA-NMFS-2020-0031-DRAFT-28014
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NOAA-NMFS-2020-0031-DRAFT-28020
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NOAA-NMFS-2020-0031-DRAFT-28022
NOAA-NMFS-2020-0031-DRAFT-28023
NOAA-NMFS-2020-0031-DRAFT-28024
NOAA-NMFS-2020-0031-DRAFT-28025
NOAA-NMFS-2020-0031-DRAFT-28026
NOAA-NMFS-2020-0031-DRAFT-28027
NOAA-NMFS-2020-0031-DRAFT-28029
NOAA-NMFS-2020-0031-DRAFT-28030
NOAA-NMFS-2020-0031-DRAFT-28031
NOAA-NMFS-2020-0031-DRAFT-28032
NOAA-NMFS-2020-0031-DRAFT-28033
NOAA-NMFS-2020-0031-DRAFT-28034
NOAA-NMFS-2020-0031-DRAFT-28035
NOAA-NMFS-2020-0031-DRAFT-28036
NOAA-NMFS-2020-0031-DRAFT-28037
NOAA-NMFS-2020-0031-DRAFT-28038
NOAA-NMFS-2020-0031-DRAFT-28039
NOAA-NMFS-2020-0031-DRAFT-28040
NOAA-NMFS-2020-0031-DRAFT-28041
NOAA-NMFS-2020-0031-DRAFT-28042
NOAA-NMFS-2020-0031-DRAFT-28043
NOAA-NMFS-2020-0031-DRAFT-28044
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NOAA-NMFS-2020-0031-DRAFT-28047
NOAA-NMFS-2020-0031-DRAFT-28048
NOAA-NMFS-2020-0031-DRAFT-28049
NOAA-NMFS-2020-0031-DRAFT-28050
NOAA-NMFS-2020-0031-DRAFT-28051
NOAA-NMFS-2020-0031-DRAFT-28052
NOAA-NMFS-2020-0031-DRAFT-28053

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NOAA-NMFS-2020-0031-DRAFT-22881
NOAA-NMFS-2020-0031-DRAFT-22882
NOAA-NMFS-2020-0031-DRAFT-22883
NOAA-NMFS-2020-0031-DRAFT-22884
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NOAA-NMFS-2020-0031-DRAFT-22891
NOAA-NMFS-2020-0031-DRAFT-22892
NOAA-NMFS-2020-0031-DRAFT-22893
NOAA-NMFS-2020-0031-DRAFT-22894
NOAA-NMFS-2020-0031-DRAFT-22895
NOAA-NMFS-2020-0031-DRAFT-22896
NOAA-NMFS-2020-0031-DRAFT-22897
NOAA-NMFS-2020-0031-DRAFT-22898
NOAA-NMFS-2020-0031-DRAFT-22899
NOAA-NMFS-2020-0031-DRAFT-22900
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NOAA-NMFS-2020-0031-DRAFT-22902
NOAA-NMFS-2020-0031-DRAFT-22903
NOAA-NMFS-2020-0031-DRAFT-22904
NOAA-NMFS-2020-0031-DRAFT-22905
NOAA-NMFS-2020-0031-DRAFT-22906
NOAA-NMFS-2020-0031-DRAFT-22907
NOAA-NMFS-2020-0031-DRAFT-22908
NOAA-NMFS-2020-0031-DRAFT-22909
NOAA-NMFS-2020-0031-DRAFT-22910
NOAA-NMFS-2020-0031-DRAFT-22911
NOAA-NMFS-2020-0031-DRAFT-22912
NOAA-NMFS-2020-0031-DRAFT-22913
NOAA-NMFS-2020-0031-DRAFT-22914
NOAA-NMFS-2020-0031-DRAFT-22915
NOAA-NMFS-2020-0031-DRAFT-22919
NOAA-NMFS-2020-0031-DRAFT-22920
NOAA-NMFS-2020-0031-DRAFT-22921
NOAA-NMFS-2020-0031-DRAFT-22922
NOAA-NMFS-2020-0031-DRAFT-22923
NOAA-NMFS-2020-0031-DRAFT-22924

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NOAA-NMFS-2020-0031-DRAFT-28054
NOAA-NMFS-2020-0031-DRAFT-28055
NOAA-NMFS-2020-0031-DRAFT-28056
NOAA-NMFS-2020-0031-DRAFT-28057
NOAA-NMFS-2020-0031-DRAFT-28059
NOAA-NMFS-2020-0031-DRAFT-28060
NOAA-NMFS-2020-0031-DRAFT-28061
NOAA-NMFS-2020-0031-DRAFT-28062
NOAA-NMFS-2020-0031-DRAFT-28063
NOAA-NMFS-2020-0031-DRAFT-28064
NOAA-NMFS-2020-0031-DRAFT-28065
NOAA-NMFS-2020-0031-DRAFT-28066
NOAA-NMFS-2020-0031-DRAFT-28067
NOAA-NMFS-2020-0031-DRAFT-28068
NOAA-NMFS-2020-0031-DRAFT-28069
NOAA-NMFS-2020-0031-DRAFT-28070
NOAA-NMFS-2020-0031-DRAFT-28071
NOAA-NMFS-2020-0031-DRAFT-28072
NOAA-NMFS-2020-0031-DRAFT-28073
NOAA-NMFS-2020-0031-DRAFT-28074
NOAA-NMFS-2020-0031-DRAFT-28075
NOAA-NMFS-2020-0031-DRAFT-28076
NOAA-NMFS-2020-0031-DRAFT-28077
NOAA-NMFS-2020-0031-DRAFT-28078
NOAA-NMFS-2020-0031-DRAFT-28079
NOAA-NMFS-2020-0031-DRAFT-28080
NOAA-NMFS-2020-0031-DRAFT-28081
NOAA-NMFS-2020-0031-DRAFT-28082
NOAA-NMFS-2020-0031-DRAFT-28083
NOAA-NMFS-2020-0031-DRAFT-28084
NOAA-NMFS-2020-0031-DRAFT-28085
NOAA-NMFS-2020-0031-DRAFT-28086
NOAA-NMFS-2020-0031-DRAFT-28087
NOAA-NMFS-2020-0031-DRAFT-28088
NOAA-NMFS-2020-0031-DRAFT-28089
NOAA-NMFS-2020-0031-DRAFT-28090
NOAA-NMFS-2020-0031-DRAFT-28092
NOAA-NMFS-2020-0031-DRAFT-28093
NOAA-NMFS-2020-0031-DRAFT-28094
NOAA-NMFS-2020-0031-DRAFT-28095
NOAA-NMFS-2020-0031-DRAFT-28096

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NOAA-NMFS-2020-0031-DRAFT-22925
NOAA-NMFS-2020-0031-DRAFT-22926
NOAA-NMFS-2020-0031-DRAFT-22927
NOAA-NMFS-2020-0031-DRAFT-22928
NOAA-NMFS-2020-0031-DRAFT-22929
NOAA-NMFS-2020-0031-DRAFT-22930
NOAA-NMFS-2020-0031-DRAFT-22931
NOAA-NMFS-2020-0031-DRAFT-22932
NOAA-NMFS-2020-0031-DRAFT-22933
NOAA-NMFS-2020-0031-DRAFT-22934
NOAA-NMFS-2020-0031-DRAFT-22935
NOAA-NMFS-2020-0031-DRAFT-22936
NOAA-NMFS-2020-0031-DRAFT-22937
NOAA-NMFS-2020-0031-DRAFT-22938
NOAA-NMFS-2020-0031-DRAFT-22939
NOAA-NMFS-2020-0031-DRAFT-22940
NOAA-NMFS-2020-0031-DRAFT-22941
NOAA-NMFS-2020-0031-DRAFT-22942
NOAA-NMFS-2020-0031-DRAFT-22943
NOAA-NMFS-2020-0031-DRAFT-22944
NOAA-NMFS-2020-0031-DRAFT-22945
NOAA-NMFS-2020-0031-DRAFT-22946
NOAA-NMFS-2020-0031-DRAFT-22947
NOAA-NMFS-2020-0031-DRAFT-22948
NOAA-NMFS-2020-0031-DRAFT-22949
NOAA-NMFS-2020-0031-DRAFT-22950
NOAA-NMFS-2020-0031-DRAFT-22951
NOAA-NMFS-2020-0031-DRAFT-22952
NOAA-NMFS-2020-0031-DRAFT-22953
NOAA-NMFS-2020-0031-DRAFT-22954
NOAA-NMFS-2020-0031-DRAFT-22955
NOAA-NMFS-2020-0031-DRAFT-22956
NOAA-NMFS-2020-0031-DRAFT-22957
NOAA-NMFS-2020-0031-DRAFT-22958
NOAA-NMFS-2020-0031-DRAFT-22959
NOAA-NMFS-2020-0031-DRAFT-22960
NOAA-NMFS-2020-0031-DRAFT-22961
NOAA-NMFS-2020-0031-DRAFT-22962
NOAA-NMFS-2020-0031-DRAFT-22963
NOAA-NMFS-2020-0031-DRAFT-22964
NOAA-NMFS-2020-0031-DRAFT-22965

Comment from Dillon, Christi
Comment from forman, janet
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NOAA-NMFS-2020-0031-DRAFT-28097
NOAA-NMFS-2020-0031-DRAFT-28098
NOAA-NMFS-2020-0031-DRAFT-28099
NOAA-NMFS-2020-0031-DRAFT-28100
NOAA-NMFS-2020-0031-DRAFT-28101
NOAA-NMFS-2020-0031-DRAFT-28102
NOAA-NMFS-2020-0031-DRAFT-28103
NOAA-NMFS-2020-0031-DRAFT-28104
NOAA-NMFS-2020-0031-DRAFT-28105
NOAA-NMFS-2020-0031-DRAFT-28106
NOAA-NMFS-2020-0031-DRAFT-28107
NOAA-NMFS-2020-0031-DRAFT-28108
NOAA-NMFS-2020-0031-DRAFT-28109
NOAA-NMFS-2020-0031-DRAFT-28110
NOAA-NMFS-2020-0031-DRAFT-28111
NOAA-NMFS-2020-0031-DRAFT-28112
NOAA-NMFS-2020-0031-DRAFT-28113
NOAA-NMFS-2020-0031-DRAFT-28114
NOAA-NMFS-2020-0031-DRAFT-28115
NOAA-NMFS-2020-0031-DRAFT-28116
NOAA-NMFS-2020-0031-DRAFT-28117
NOAA-NMFS-2020-0031-DRAFT-28118
NOAA-NMFS-2020-0031-DRAFT-28119
NOAA-NMFS-2020-0031-DRAFT-28120
NOAA-NMFS-2020-0031-DRAFT-28121
NOAA-NMFS-2020-0031-DRAFT-28122
NOAA-NMFS-2020-0031-DRAFT-28123
NOAA-NMFS-2020-0031-DRAFT-28124
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NOAA-NMFS-2020-0031-DRAFT-28135
NOAA-NMFS-2020-0031-DRAFT-28136
NOAA-NMFS-2020-0031-DRAFT-28137

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NOAA-NMFS-2020-0031-DRAFT-22966
NOAA-NMFS-2020-0031-DRAFT-22967
NOAA-NMFS-2020-0031-DRAFT-22968
NOAA-NMFS-2020-0031-DRAFT-22969
NOAA-NMFS-2020-0031-DRAFT-22970
NOAA-NMFS-2020-0031-DRAFT-22971
NOAA-NMFS-2020-0031-DRAFT-22972
NOAA-NMFS-2020-0031-DRAFT-22974
NOAA-NMFS-2020-0031-DRAFT-22975
NOAA-NMFS-2020-0031-DRAFT-22976
NOAA-NMFS-2020-0031-DRAFT-22977
NOAA-NMFS-2020-0031-DRAFT-22978
NOAA-NMFS-2020-0031-DRAFT-22979
NOAA-NMFS-2020-0031-DRAFT-22980
NOAA-NMFS-2020-0031-DRAFT-22981
NOAA-NMFS-2020-0031-DRAFT-22982
NOAA-NMFS-2020-0031-DRAFT-22983
NOAA-NMFS-2020-0031-DRAFT-22984
NOAA-NMFS-2020-0031-DRAFT-22985
NOAA-NMFS-2020-0031-DRAFT-22987
NOAA-NMFS-2020-0031-DRAFT-22988
NOAA-NMFS-2020-0031-DRAFT-22990
NOAA-NMFS-2020-0031-DRAFT-22991
NOAA-NMFS-2020-0031-DRAFT-22992
NOAA-NMFS-2020-0031-DRAFT-22993
NOAA-NMFS-2020-0031-DRAFT-22995
NOAA-NMFS-2020-0031-DRAFT-22996
NOAA-NMFS-2020-0031-DRAFT-22997
NOAA-NMFS-2020-0031-DRAFT-22998
NOAA-NMFS-2020-0031-DRAFT-22999
NOAA-NMFS-2020-0031-DRAFT-23001
NOAA-NMFS-2020-0031-DRAFT-23002
NOAA-NMFS-2020-0031-DRAFT-23003
NOAA-NMFS-2020-0031-DRAFT-23004
NOAA-NMFS-2020-0031-DRAFT-23005
NOAA-NMFS-2020-0031-DRAFT-23006
NOAA-NMFS-2020-0031-DRAFT-23007
NOAA-NMFS-2020-0031-DRAFT-23008
NOAA-NMFS-2020-0031-DRAFT-23009
NOAA-NMFS-2020-0031-DRAFT-23010
NOAA-NMFS-2020-0031-DRAFT-23011

Comment from Frigo, Dina
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NOAA-NMFS-2020-0031-DRAFT-28138
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NOAA-NMFS-2020-0031-DRAFT-28148
NOAA-NMFS-2020-0031-DRAFT-28149
NOAA-NMFS-2020-0031-DRAFT-28150
NOAA-NMFS-2020-0031-DRAFT-28151
NOAA-NMFS-2020-0031-DRAFT-28152
NOAA-NMFS-2020-0031-DRAFT-28153
NOAA-NMFS-2020-0031-DRAFT-28154
NOAA-NMFS-2020-0031-DRAFT-28155
NOAA-NMFS-2020-0031-DRAFT-28156
NOAA-NMFS-2020-0031-DRAFT-28157
NOAA-NMFS-2020-0031-DRAFT-28158
NOAA-NMFS-2020-0031-DRAFT-28159
NOAA-NMFS-2020-0031-DRAFT-28160
NOAA-NMFS-2020-0031-DRAFT-28161
NOAA-NMFS-2020-0031-DRAFT-28162
NOAA-NMFS-2020-0031-DRAFT-28163
NOAA-NMFS-2020-0031-DRAFT-28164
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NOAA-NMFS-2020-0031-DRAFT-28177
NOAA-NMFS-2020-0031-DRAFT-28178

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NOAA-NMFS-2020-0031-DRAFT-23012
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NOAA-NMFS-2020-0031-DRAFT-23015
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NOAA-NMFS-2020-0031-DRAFT-23028
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NOAA-NMFS-2020-0031-DRAFT-23030
NOAA-NMFS-2020-0031-DRAFT-23031
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NOAA-NMFS-2020-0031-DRAFT-23033
NOAA-NMFS-2020-0031-DRAFT-23034
NOAA-NMFS-2020-0031-DRAFT-23035
NOAA-NMFS-2020-0031-DRAFT-23036
NOAA-NMFS-2020-0031-DRAFT-23037
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NOAA-NMFS-2020-0031-DRAFT-23039
NOAA-NMFS-2020-0031-DRAFT-23040
NOAA-NMFS-2020-0031-DRAFT-23041
NOAA-NMFS-2020-0031-DRAFT-23042
NOAA-NMFS-2020-0031-DRAFT-23043
NOAA-NMFS-2020-0031-DRAFT-23044
NOAA-NMFS-2020-0031-DRAFT-23045
NOAA-NMFS-2020-0031-DRAFT-23046
NOAA-NMFS-2020-0031-DRAFT-23047
NOAA-NMFS-2020-0031-DRAFT-23048
NOAA-NMFS-2020-0031-DRAFT-23049
NOAA-NMFS-2020-0031-DRAFT-23050
NOAA-NMFS-2020-0031-DRAFT-23051
NOAA-NMFS-2020-0031-DRAFT-23052

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NOAA-NMFS-2020-0031-DRAFT-28179
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NOAA-NMFS-2020-0031-DRAFT-28181
NOAA-NMFS-2020-0031-DRAFT-28182
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NOAA-NMFS-2020-0031-DRAFT-28189
NOAA-NMFS-2020-0031-DRAFT-28190
NOAA-NMFS-2020-0031-DRAFT-28191
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NOAA-NMFS-2020-0031-DRAFT-28203
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NOAA-NMFS-2020-0031-DRAFT-28217
NOAA-NMFS-2020-0031-DRAFT-28218
NOAA-NMFS-2020-0031-DRAFT-28219

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NOAA-NMFS-2020-0031-DRAFT-23053
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NOAA-NMFS-2020-0031-DRAFT-23055
NOAA-NMFS-2020-0031-DRAFT-23056
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NOAA-NMFS-2020-0031-DRAFT-23069
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NOAA-NMFS-2020-0031-DRAFT-23071
NOAA-NMFS-2020-0031-DRAFT-23072
NOAA-NMFS-2020-0031-DRAFT-23073
NOAA-NMFS-2020-0031-DRAFT-23074
NOAA-NMFS-2020-0031-DRAFT-23075
NOAA-NMFS-2020-0031-DRAFT-23076
NOAA-NMFS-2020-0031-DRAFT-23077
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NOAA-NMFS-2020-0031-DRAFT-23079
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NOAA-NMFS-2020-0031-DRAFT-23086
NOAA-NMFS-2020-0031-DRAFT-23089
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NOAA-NMFS-2020-0031-DRAFT-23105
NOAA-NMFS-2020-0031-DRAFT-23106
NOAA-NMFS-2020-0031-DRAFT-23107

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NOAA-NMFS-2020-0031-DRAFT-28220
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NOAA-NMFS-2020-0031-DRAFT-28222
NOAA-NMFS-2020-0031-DRAFT-28223
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NOAA-NMFS-2020-0031-DRAFT-28232
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NOAA-NMFS-2020-0031-DRAFT-28234
NOAA-NMFS-2020-0031-DRAFT-28235
NOAA-NMFS-2020-0031-DRAFT-28236
NOAA-NMFS-2020-0031-DRAFT-28237
NOAA-NMFS-2020-0031-DRAFT-28238
NOAA-NMFS-2020-0031-DRAFT-28239
NOAA-NMFS-2020-0031-DRAFT-28240
NOAA-NMFS-2020-0031-DRAFT-28241
NOAA-NMFS-2020-0031-DRAFT-28242
NOAA-NMFS-2020-0031-DRAFT-28243
NOAA-NMFS-2020-0031-DRAFT-28244
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NOAA-NMFS-2020-0031-DRAFT-28258
NOAA-NMFS-2020-0031-DRAFT-28259
NOAA-NMFS-2020-0031-DRAFT-28260

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NOAA-NMFS-2020-0031-DRAFT-23109
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NOAA-NMFS-2020-0031-DRAFT-23111
NOAA-NMFS-2020-0031-DRAFT-23112
NOAA-NMFS-2020-0031-DRAFT-23113
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NOAA-NMFS-2020-0031-DRAFT-23127
NOAA-NMFS-2020-0031-DRAFT-23128
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NOAA-NMFS-2020-0031-DRAFT-23131
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NOAA-NMFS-2020-0031-DRAFT-23144
NOAA-NMFS-2020-0031-DRAFT-23145
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NOAA-NMFS-2020-0031-DRAFT-23147
NOAA-NMFS-2020-0031-DRAFT-23148
NOAA-NMFS-2020-0031-DRAFT-23149

Comment from Borlo, Ann
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NOAA-NMFS-2020-0031-DRAFT-28261
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NOAA-NMFS-2020-0031-DRAFT-28272
NOAA-NMFS-2020-0031-DRAFT-28273
NOAA-NMFS-2020-0031-DRAFT-28274
NOAA-NMFS-2020-0031-DRAFT-28275
NOAA-NMFS-2020-0031-DRAFT-28276
NOAA-NMFS-2020-0031-DRAFT-28277
NOAA-NMFS-2020-0031-DRAFT-28278
NOAA-NMFS-2020-0031-DRAFT-28279
NOAA-NMFS-2020-0031-DRAFT-28280
NOAA-NMFS-2020-0031-DRAFT-28281
NOAA-NMFS-2020-0031-DRAFT-28282
NOAA-NMFS-2020-0031-DRAFT-28283
NOAA-NMFS-2020-0031-DRAFT-28284
NOAA-NMFS-2020-0031-DRAFT-28285
NOAA-NMFS-2020-0031-DRAFT-28286
NOAA-NMFS-2020-0031-DRAFT-28287
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NOAA-NMFS-2020-0031-DRAFT-28289
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NOAA-NMFS-2020-0031-DRAFT-28292
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NOAA-NMFS-2020-0031-DRAFT-28295
NOAA-NMFS-2020-0031-DRAFT-28296
NOAA-NMFS-2020-0031-DRAFT-28297
NOAA-NMFS-2020-0031-DRAFT-28298
NOAA-NMFS-2020-0031-DRAFT-28299
NOAA-NMFS-2020-0031-DRAFT-28300
NOAA-NMFS-2020-0031-DRAFT-28301

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NOAA-NMFS-2020-0031-DRAFT-23150
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NOAA-NMFS-2020-0031-DRAFT-23152
NOAA-NMFS-2020-0031-DRAFT-23153
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NOAA-NMFS-2020-0031-DRAFT-23185
NOAA-NMFS-2020-0031-DRAFT-23186
NOAA-NMFS-2020-0031-DRAFT-23187
NOAA-NMFS-2020-0031-DRAFT-23188
NOAA-NMFS-2020-0031-DRAFT-23189
NOAA-NMFS-2020-0031-DRAFT-23190

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NOAA-NMFS-2020-0031-DRAFT-28302
NOAA-NMFS-2020-0031-DRAFT-28303
NOAA-NMFS-2020-0031-DRAFT-28304
NOAA-NMFS-2020-0031-DRAFT-28305
NOAA-NMFS-2020-0031-DRAFT-28306
NOAA-NMFS-2020-0031-DRAFT-28307
NOAA-NMFS-2020-0031-DRAFT-28308
NOAA-NMFS-2020-0031-DRAFT-28309
NOAA-NMFS-2020-0031-DRAFT-28310
NOAA-NMFS-2020-0031-DRAFT-28311
NOAA-NMFS-2020-0031-DRAFT-28312
NOAA-NMFS-2020-0031-DRAFT-28313
NOAA-NMFS-2020-0031-DRAFT-28314
NOAA-NMFS-2020-0031-DRAFT-28315
NOAA-NMFS-2020-0031-DRAFT-28316
NOAA-NMFS-2020-0031-DRAFT-28317
NOAA-NMFS-2020-0031-DRAFT-28318
NOAA-NMFS-2020-0031-DRAFT-28319
NOAA-NMFS-2020-0031-DRAFT-28320
NOAA-NMFS-2020-0031-DRAFT-28321
NOAA-NMFS-2020-0031-DRAFT-28322
NOAA-NMFS-2020-0031-DRAFT-28323
NOAA-NMFS-2020-0031-DRAFT-28324
NOAA-NMFS-2020-0031-DRAFT-28325
NOAA-NMFS-2020-0031-DRAFT-28326
NOAA-NMFS-2020-0031-DRAFT-28327
NOAA-NMFS-2020-0031-DRAFT-28328
NOAA-NMFS-2020-0031-DRAFT-28329
NOAA-NMFS-2020-0031-DRAFT-28330
NOAA-NMFS-2020-0031-DRAFT-28331
NOAA-NMFS-2020-0031-DRAFT-28332
NOAA-NMFS-2020-0031-DRAFT-28333
NOAA-NMFS-2020-0031-DRAFT-28334
NOAA-NMFS-2020-0031-DRAFT-28335
NOAA-NMFS-2020-0031-DRAFT-28336
NOAA-NMFS-2020-0031-DRAFT-28337
NOAA-NMFS-2020-0031-DRAFT-28338
NOAA-NMFS-2020-0031-DRAFT-28339
NOAA-NMFS-2020-0031-DRAFT-28340
NOAA-NMFS-2020-0031-DRAFT-28341
NOAA-NMFS-2020-0031-DRAFT-28342

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NOAA-NMFS-2020-0031-DRAFT-23191
NOAA-NMFS-2020-0031-DRAFT-23192
NOAA-NMFS-2020-0031-DRAFT-23193
NOAA-NMFS-2020-0031-DRAFT-23194
NOAA-NMFS-2020-0031-DRAFT-23195
NOAA-NMFS-2020-0031-DRAFT-23196
NOAA-NMFS-2020-0031-DRAFT-23197
NOAA-NMFS-2020-0031-DRAFT-23198
NOAA-NMFS-2020-0031-DRAFT-23199
NOAA-NMFS-2020-0031-DRAFT-23200
NOAA-NMFS-2020-0031-DRAFT-23201
NOAA-NMFS-2020-0031-DRAFT-23202
NOAA-NMFS-2020-0031-DRAFT-23203
NOAA-NMFS-2020-0031-DRAFT-23205
NOAA-NMFS-2020-0031-DRAFT-23206
NOAA-NMFS-2020-0031-DRAFT-23207
NOAA-NMFS-2020-0031-DRAFT-23208
NOAA-NMFS-2020-0031-DRAFT-23209
NOAA-NMFS-2020-0031-DRAFT-23210
NOAA-NMFS-2020-0031-DRAFT-23211
NOAA-NMFS-2020-0031-DRAFT-23212
NOAA-NMFS-2020-0031-DRAFT-23213
NOAA-NMFS-2020-0031-DRAFT-23214
NOAA-NMFS-2020-0031-DRAFT-23215
NOAA-NMFS-2020-0031-DRAFT-23216
NOAA-NMFS-2020-0031-DRAFT-23217
NOAA-NMFS-2020-0031-DRAFT-23218
NOAA-NMFS-2020-0031-DRAFT-23219
NOAA-NMFS-2020-0031-DRAFT-23220
NOAA-NMFS-2020-0031-DRAFT-23221
NOAA-NMFS-2020-0031-DRAFT-23222
NOAA-NMFS-2020-0031-DRAFT-23223
NOAA-NMFS-2020-0031-DRAFT-23224
NOAA-NMFS-2020-0031-DRAFT-23225
NOAA-NMFS-2020-0031-DRAFT-23226
NOAA-NMFS-2020-0031-DRAFT-23227
NOAA-NMFS-2020-0031-DRAFT-23228
NOAA-NMFS-2020-0031-DRAFT-23229
NOAA-NMFS-2020-0031-DRAFT-23230
NOAA-NMFS-2020-0031-DRAFT-23231
NOAA-NMFS-2020-0031-DRAFT-23232

Comment from Stermer, Sue
Comment from Haebig, Susan
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NOAA-NMFS-2020-0031-DRAFT-28343
NOAA-NMFS-2020-0031-DRAFT-28344
NOAA-NMFS-2020-0031-DRAFT-28345
NOAA-NMFS-2020-0031-DRAFT-28346
NOAA-NMFS-2020-0031-DRAFT-28347
NOAA-NMFS-2020-0031-DRAFT-28348
NOAA-NMFS-2020-0031-DRAFT-28349
NOAA-NMFS-2020-0031-DRAFT-28350
NOAA-NMFS-2020-0031-DRAFT-28352
NOAA-NMFS-2020-0031-DRAFT-28353
NOAA-NMFS-2020-0031-DRAFT-28354
NOAA-NMFS-2020-0031-DRAFT-28355
NOAA-NMFS-2020-0031-DRAFT-28356
NOAA-NMFS-2020-0031-DRAFT-28357
NOAA-NMFS-2020-0031-DRAFT-28358
NOAA-NMFS-2020-0031-DRAFT-28359
NOAA-NMFS-2020-0031-DRAFT-28360
NOAA-NMFS-2020-0031-DRAFT-28361
NOAA-NMFS-2020-0031-DRAFT-28362
NOAA-NMFS-2020-0031-DRAFT-28363
NOAA-NMFS-2020-0031-DRAFT-28364
NOAA-NMFS-2020-0031-DRAFT-28365
NOAA-NMFS-2020-0031-DRAFT-28366
NOAA-NMFS-2020-0031-DRAFT-28367
NOAA-NMFS-2020-0031-DRAFT-28368
NOAA-NMFS-2020-0031-DRAFT-28369
NOAA-NMFS-2020-0031-DRAFT-28370
NOAA-NMFS-2020-0031-DRAFT-28371
NOAA-NMFS-2020-0031-DRAFT-28372
NOAA-NMFS-2020-0031-DRAFT-28373
NOAA-NMFS-2020-0031-DRAFT-28374
NOAA-NMFS-2020-0031-DRAFT-28375
NOAA-NMFS-2020-0031-DRAFT-28376
NOAA-NMFS-2020-0031-DRAFT-28377
NOAA-NMFS-2020-0031-DRAFT-28378
NOAA-NMFS-2020-0031-DRAFT-28379
NOAA-NMFS-2020-0031-DRAFT-28380
NOAA-NMFS-2020-0031-DRAFT-28382
NOAA-NMFS-2020-0031-DRAFT-28383
NOAA-NMFS-2020-0031-DRAFT-28384
NOAA-NMFS-2020-0031-DRAFT-28385

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NOAA-NMFS-2020-0031-DRAFT-23233
NOAA-NMFS-2020-0031-DRAFT-23234
NOAA-NMFS-2020-0031-DRAFT-23235
NOAA-NMFS-2020-0031-DRAFT-23236
NOAA-NMFS-2020-0031-DRAFT-23237
NOAA-NMFS-2020-0031-DRAFT-23238
NOAA-NMFS-2020-0031-DRAFT-23239
NOAA-NMFS-2020-0031-DRAFT-23240
NOAA-NMFS-2020-0031-DRAFT-23241
NOAA-NMFS-2020-0031-DRAFT-23242
NOAA-NMFS-2020-0031-DRAFT-23243
NOAA-NMFS-2020-0031-DRAFT-23244
NOAA-NMFS-2020-0031-DRAFT-23245
NOAA-NMFS-2020-0031-DRAFT-23246
NOAA-NMFS-2020-0031-DRAFT-23247
NOAA-NMFS-2020-0031-DRAFT-23248
NOAA-NMFS-2020-0031-DRAFT-23249
NOAA-NMFS-2020-0031-DRAFT-23250
NOAA-NMFS-2020-0031-DRAFT-23251
NOAA-NMFS-2020-0031-DRAFT-23252
NOAA-NMFS-2020-0031-DRAFT-23253
NOAA-NMFS-2020-0031-DRAFT-23254
NOAA-NMFS-2020-0031-DRAFT-23255
NOAA-NMFS-2020-0031-DRAFT-23256
NOAA-NMFS-2020-0031-DRAFT-23257
NOAA-NMFS-2020-0031-DRAFT-23258
NOAA-NMFS-2020-0031-DRAFT-23259
NOAA-NMFS-2020-0031-DRAFT-23260
NOAA-NMFS-2020-0031-DRAFT-23261
NOAA-NMFS-2020-0031-DRAFT-23262
NOAA-NMFS-2020-0031-DRAFT-23263
NOAA-NMFS-2020-0031-DRAFT-23264
NOAA-NMFS-2020-0031-DRAFT-23265
NOAA-NMFS-2020-0031-DRAFT-23266
NOAA-NMFS-2020-0031-DRAFT-23267
NOAA-NMFS-2020-0031-DRAFT-23268
NOAA-NMFS-2020-0031-DRAFT-23269
NOAA-NMFS-2020-0031-DRAFT-23270
NOAA-NMFS-2020-0031-DRAFT-23271
NOAA-NMFS-2020-0031-DRAFT-23272
NOAA-NMFS-2020-0031-DRAFT-23273

Comment from Villarreal, Melissa
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NOAA-NMFS-2020-0031-DRAFT-28386
NOAA-NMFS-2020-0031-DRAFT-28387
NOAA-NMFS-2020-0031-DRAFT-28388
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NOAA-NMFS-2020-0031-DRAFT-28395
NOAA-NMFS-2020-0031-DRAFT-28396
NOAA-NMFS-2020-0031-DRAFT-28397
NOAA-NMFS-2020-0031-DRAFT-28398
NOAA-NMFS-2020-0031-DRAFT-28399
NOAA-NMFS-2020-0031-DRAFT-28400
NOAA-NMFS-2020-0031-DRAFT-28401
NOAA-NMFS-2020-0031-DRAFT-28402
NOAA-NMFS-2020-0031-DRAFT-28403
NOAA-NMFS-2020-0031-DRAFT-28404
NOAA-NMFS-2020-0031-DRAFT-28405
NOAA-NMFS-2020-0031-DRAFT-28406
NOAA-NMFS-2020-0031-DRAFT-28407
NOAA-NMFS-2020-0031-DRAFT-28408
NOAA-NMFS-2020-0031-DRAFT-28409
NOAA-NMFS-2020-0031-DRAFT-28410
NOAA-NMFS-2020-0031-DRAFT-28411
NOAA-NMFS-2020-0031-DRAFT-28412
NOAA-NMFS-2020-0031-DRAFT-28413
NOAA-NMFS-2020-0031-DRAFT-28414
NOAA-NMFS-2020-0031-DRAFT-28415
NOAA-NMFS-2020-0031-DRAFT-28416
NOAA-NMFS-2020-0031-DRAFT-28417
NOAA-NMFS-2020-0031-DRAFT-28418
NOAA-NMFS-2020-0031-DRAFT-28419
NOAA-NMFS-2020-0031-DRAFT-28420
NOAA-NMFS-2020-0031-DRAFT-28421
NOAA-NMFS-2020-0031-DRAFT-28422
NOAA-NMFS-2020-0031-DRAFT-28423
NOAA-NMFS-2020-0031-DRAFT-28424
NOAA-NMFS-2020-0031-DRAFT-28425
NOAA-NMFS-2020-0031-DRAFT-28426

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NOAA-NMFS-2020-0031-DRAFT-23274
NOAA-NMFS-2020-0031-DRAFT-23275
NOAA-NMFS-2020-0031-DRAFT-23276
NOAA-NMFS-2020-0031-DRAFT-23277
NOAA-NMFS-2020-0031-DRAFT-23278
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NOAA-NMFS-2020-0031-DRAFT-23283
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NOAA-NMFS-2020-0031-DRAFT-23285
NOAA-NMFS-2020-0031-DRAFT-23286
NOAA-NMFS-2020-0031-DRAFT-23287
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NOAA-NMFS-2020-0031-DRAFT-23289
NOAA-NMFS-2020-0031-DRAFT-23290
NOAA-NMFS-2020-0031-DRAFT-23291
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NOAA-NMFS-2020-0031-DRAFT-23295
NOAA-NMFS-2020-0031-DRAFT-23296
NOAA-NMFS-2020-0031-DRAFT-23297
NOAA-NMFS-2020-0031-DRAFT-23298
NOAA-NMFS-2020-0031-DRAFT-23299
NOAA-NMFS-2020-0031-DRAFT-23300
NOAA-NMFS-2020-0031-DRAFT-23301
NOAA-NMFS-2020-0031-DRAFT-23302
NOAA-NMFS-2020-0031-DRAFT-23303
NOAA-NMFS-2020-0031-DRAFT-23304
NOAA-NMFS-2020-0031-DRAFT-23305
NOAA-NMFS-2020-0031-DRAFT-23306
NOAA-NMFS-2020-0031-DRAFT-23307
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NOAA-NMFS-2020-0031-DRAFT-23309
NOAA-NMFS-2020-0031-DRAFT-23310
NOAA-NMFS-2020-0031-DRAFT-23311
NOAA-NMFS-2020-0031-DRAFT-23312
NOAA-NMFS-2020-0031-DRAFT-23313
NOAA-NMFS-2020-0031-DRAFT-23314

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NOAA-NMFS-2020-0031-DRAFT-28427
NOAA-NMFS-2020-0031-DRAFT-28428
NOAA-NMFS-2020-0031-DRAFT-28429
NOAA-NMFS-2020-0031-DRAFT-28430
NOAA-NMFS-2020-0031-DRAFT-28431
NOAA-NMFS-2020-0031-DRAFT-28432
NOAA-NMFS-2020-0031-DRAFT-28433
NOAA-NMFS-2020-0031-DRAFT-28434
NOAA-NMFS-2020-0031-DRAFT-28435
NOAA-NMFS-2020-0031-DRAFT-28436
NOAA-NMFS-2020-0031-DRAFT-28437
NOAA-NMFS-2020-0031-DRAFT-28438
NOAA-NMFS-2020-0031-DRAFT-28439
NOAA-NMFS-2020-0031-DRAFT-28440
NOAA-NMFS-2020-0031-DRAFT-28441
NOAA-NMFS-2020-0031-DRAFT-28442
NOAA-NMFS-2020-0031-DRAFT-28443
NOAA-NMFS-2020-0031-DRAFT-28444
NOAA-NMFS-2020-0031-DRAFT-28445
NOAA-NMFS-2020-0031-DRAFT-28446
NOAA-NMFS-2020-0031-DRAFT-28447
NOAA-NMFS-2020-0031-DRAFT-28448
NOAA-NMFS-2020-0031-DRAFT-28449
NOAA-NMFS-2020-0031-DRAFT-28450
NOAA-NMFS-2020-0031-DRAFT-28451
NOAA-NMFS-2020-0031-DRAFT-28452
NOAA-NMFS-2020-0031-DRAFT-28453
NOAA-NMFS-2020-0031-DRAFT-28454
NOAA-NMFS-2020-0031-DRAFT-28455
NOAA-NMFS-2020-0031-DRAFT-28456
NOAA-NMFS-2020-0031-DRAFT-28457
NOAA-NMFS-2020-0031-DRAFT-28458
NOAA-NMFS-2020-0031-DRAFT-28459
NOAA-NMFS-2020-0031-DRAFT-28460
NOAA-NMFS-2020-0031-DRAFT-28461
NOAA-NMFS-2020-0031-DRAFT-28462
NOAA-NMFS-2020-0031-DRAFT-28463
NOAA-NMFS-2020-0031-DRAFT-28464
NOAA-NMFS-2020-0031-DRAFT-28465
NOAA-NMFS-2020-0031-DRAFT-28466
NOAA-NMFS-2020-0031-DRAFT-28467

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NOAA-NMFS-2020-0031-DRAFT-23315
NOAA-NMFS-2020-0031-DRAFT-23316
NOAA-NMFS-2020-0031-DRAFT-23317
NOAA-NMFS-2020-0031-DRAFT-23318
NOAA-NMFS-2020-0031-DRAFT-23319
NOAA-NMFS-2020-0031-DRAFT-23320
NOAA-NMFS-2020-0031-DRAFT-23321
NOAA-NMFS-2020-0031-DRAFT-23322
NOAA-NMFS-2020-0031-DRAFT-23323
NOAA-NMFS-2020-0031-DRAFT-23324
NOAA-NMFS-2020-0031-DRAFT-23325
NOAA-NMFS-2020-0031-DRAFT-23327
NOAA-NMFS-2020-0031-DRAFT-23328
NOAA-NMFS-2020-0031-DRAFT-23329
NOAA-NMFS-2020-0031-DRAFT-23330
NOAA-NMFS-2020-0031-DRAFT-23331
NOAA-NMFS-2020-0031-DRAFT-23333
NOAA-NMFS-2020-0031-DRAFT-23334
NOAA-NMFS-2020-0031-DRAFT-23335
NOAA-NMFS-2020-0031-DRAFT-23336
NOAA-NMFS-2020-0031-DRAFT-23337
NOAA-NMFS-2020-0031-DRAFT-23338
NOAA-NMFS-2020-0031-DRAFT-23339
NOAA-NMFS-2020-0031-DRAFT-23340
NOAA-NMFS-2020-0031-DRAFT-23341
NOAA-NMFS-2020-0031-DRAFT-23342
NOAA-NMFS-2020-0031-DRAFT-23343
NOAA-NMFS-2020-0031-DRAFT-23344
NOAA-NMFS-2020-0031-DRAFT-23345
NOAA-NMFS-2020-0031-DRAFT-23346
NOAA-NMFS-2020-0031-DRAFT-23347
NOAA-NMFS-2020-0031-DRAFT-23348
NOAA-NMFS-2020-0031-DRAFT-23349
NOAA-NMFS-2020-0031-DRAFT-23350
NOAA-NMFS-2020-0031-DRAFT-23351
NOAA-NMFS-2020-0031-DRAFT-23353
NOAA-NMFS-2020-0031-DRAFT-23354
NOAA-NMFS-2020-0031-DRAFT-23356
NOAA-NMFS-2020-0031-DRAFT-23357
NOAA-NMFS-2020-0031-DRAFT-23358
NOAA-NMFS-2020-0031-DRAFT-23359

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NOAA-NMFS-2020-0031-DRAFT-28468
NOAA-NMFS-2020-0031-DRAFT-28469
NOAA-NMFS-2020-0031-DRAFT-28470
NOAA-NMFS-2020-0031-DRAFT-28471
NOAA-NMFS-2020-0031-DRAFT-28472
NOAA-NMFS-2020-0031-DRAFT-28473
NOAA-NMFS-2020-0031-DRAFT-28474
NOAA-NMFS-2020-0031-DRAFT-28475
NOAA-NMFS-2020-0031-DRAFT-28476
NOAA-NMFS-2020-0031-DRAFT-28477
NOAA-NMFS-2020-0031-DRAFT-28478
NOAA-NMFS-2020-0031-DRAFT-28479
NOAA-NMFS-2020-0031-DRAFT-28480
NOAA-NMFS-2020-0031-DRAFT-28481
NOAA-NMFS-2020-0031-DRAFT-28482
NOAA-NMFS-2020-0031-DRAFT-28483
NOAA-NMFS-2020-0031-DRAFT-28484
NOAA-NMFS-2020-0031-DRAFT-28485
NOAA-NMFS-2020-0031-DRAFT-28486
NOAA-NMFS-2020-0031-DRAFT-28487
NOAA-NMFS-2020-0031-DRAFT-28488
NOAA-NMFS-2020-0031-DRAFT-28489
NOAA-NMFS-2020-0031-DRAFT-28490
NOAA-NMFS-2020-0031-DRAFT-28491
NOAA-NMFS-2020-0031-DRAFT-28492
NOAA-NMFS-2020-0031-DRAFT-28493
NOAA-NMFS-2020-0031-DRAFT-28494
NOAA-NMFS-2020-0031-DRAFT-28495
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NOAA-NMFS-2020-0031-DRAFT-28499
NOAA-NMFS-2020-0031-DRAFT-28500
NOAA-NMFS-2020-0031-DRAFT-28501
NOAA-NMFS-2020-0031-DRAFT-28502
NOAA-NMFS-2020-0031-DRAFT-28503
NOAA-NMFS-2020-0031-DRAFT-28504
NOAA-NMFS-2020-0031-DRAFT-28505
NOAA-NMFS-2020-0031-DRAFT-28506
NOAA-NMFS-2020-0031-DRAFT-28507
NOAA-NMFS-2020-0031-DRAFT-28508
NOAA-NMFS-2020-0031-DRAFT-28509

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NOAA-NMFS-2020-0031-DRAFT-23360
NOAA-NMFS-2020-0031-DRAFT-23361
NOAA-NMFS-2020-0031-DRAFT-23363
NOAA-NMFS-2020-0031-DRAFT-23364
NOAA-NMFS-2020-0031-DRAFT-23365
NOAA-NMFS-2020-0031-DRAFT-23366
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NOAA-NMFS-2020-0031-DRAFT-23380
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NOAA-NMFS-2020-0031-DRAFT-23382
NOAA-NMFS-2020-0031-DRAFT-23383
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NOAA-NMFS-2020-0031-DRAFT-23385
NOAA-NMFS-2020-0031-DRAFT-23386
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NOAA-NMFS-2020-0031-DRAFT-23389
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NOAA-NMFS-2020-0031-DRAFT-23392
NOAA-NMFS-2020-0031-DRAFT-23393
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NOAA-NMFS-2020-0031-DRAFT-23396
NOAA-NMFS-2020-0031-DRAFT-23397
NOAA-NMFS-2020-0031-DRAFT-23398
NOAA-NMFS-2020-0031-DRAFT-23399
NOAA-NMFS-2020-0031-DRAFT-23400
NOAA-NMFS-2020-0031-DRAFT-23401

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NOAA-NMFS-2020-0031-DRAFT-28510
NOAA-NMFS-2020-0031-DRAFT-28511
NOAA-NMFS-2020-0031-DRAFT-28512
NOAA-NMFS-2020-0031-DRAFT-28513
NOAA-NMFS-2020-0031-DRAFT-28514
NOAA-NMFS-2020-0031-DRAFT-28515
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NOAA-NMFS-2020-0031-DRAFT-28518
NOAA-NMFS-2020-0031-DRAFT-28519
NOAA-NMFS-2020-0031-DRAFT-28520
NOAA-NMFS-2020-0031-DRAFT-28521
NOAA-NMFS-2020-0031-DRAFT-28522
NOAA-NMFS-2020-0031-DRAFT-28523
NOAA-NMFS-2020-0031-DRAFT-28524
NOAA-NMFS-2020-0031-DRAFT-28525
NOAA-NMFS-2020-0031-DRAFT-28526
NOAA-NMFS-2020-0031-DRAFT-28527
NOAA-NMFS-2020-0031-DRAFT-28528
NOAA-NMFS-2020-0031-DRAFT-28529
NOAA-NMFS-2020-0031-DRAFT-28530
NOAA-NMFS-2020-0031-DRAFT-28531
NOAA-NMFS-2020-0031-DRAFT-28532
NOAA-NMFS-2020-0031-DRAFT-28533
NOAA-NMFS-2020-0031-DRAFT-28534
NOAA-NMFS-2020-0031-DRAFT-28535
NOAA-NMFS-2020-0031-DRAFT-28536
NOAA-NMFS-2020-0031-DRAFT-28537
NOAA-NMFS-2020-0031-DRAFT-28538
NOAA-NMFS-2020-0031-DRAFT-28539
NOAA-NMFS-2020-0031-DRAFT-28540
NOAA-NMFS-2020-0031-DRAFT-28541
NOAA-NMFS-2020-0031-DRAFT-28542
NOAA-NMFS-2020-0031-DRAFT-28543
NOAA-NMFS-2020-0031-DRAFT-28544
NOAA-NMFS-2020-0031-DRAFT-28545
NOAA-NMFS-2020-0031-DRAFT-28546
NOAA-NMFS-2020-0031-DRAFT-28547
NOAA-NMFS-2020-0031-DRAFT-28548
NOAA-NMFS-2020-0031-DRAFT-28549
NOAA-NMFS-2020-0031-DRAFT-28550

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NOAA-NMFS-2020-0031-DRAFT-23402
NOAA-NMFS-2020-0031-DRAFT-23403
NOAA-NMFS-2020-0031-DRAFT-23404
NOAA-NMFS-2020-0031-DRAFT-23405
NOAA-NMFS-2020-0031-DRAFT-23406
NOAA-NMFS-2020-0031-DRAFT-23407
NOAA-NMFS-2020-0031-DRAFT-23408
NOAA-NMFS-2020-0031-DRAFT-23409
NOAA-NMFS-2020-0031-DRAFT-23410
NOAA-NMFS-2020-0031-DRAFT-23411
NOAA-NMFS-2020-0031-DRAFT-23412
NOAA-NMFS-2020-0031-DRAFT-23413
NOAA-NMFS-2020-0031-DRAFT-23414
NOAA-NMFS-2020-0031-DRAFT-23415
NOAA-NMFS-2020-0031-DRAFT-23416
NOAA-NMFS-2020-0031-DRAFT-23417
NOAA-NMFS-2020-0031-DRAFT-23418
NOAA-NMFS-2020-0031-DRAFT-23419
NOAA-NMFS-2020-0031-DRAFT-23420
NOAA-NMFS-2020-0031-DRAFT-23421
NOAA-NMFS-2020-0031-DRAFT-23422
NOAA-NMFS-2020-0031-DRAFT-23423
NOAA-NMFS-2020-0031-DRAFT-23424
NOAA-NMFS-2020-0031-DRAFT-23426
NOAA-NMFS-2020-0031-DRAFT-23427
NOAA-NMFS-2020-0031-DRAFT-23428
NOAA-NMFS-2020-0031-DRAFT-23429
NOAA-NMFS-2020-0031-DRAFT-23430
NOAA-NMFS-2020-0031-DRAFT-23431
NOAA-NMFS-2020-0031-DRAFT-23432
NOAA-NMFS-2020-0031-DRAFT-23433
NOAA-NMFS-2020-0031-DRAFT-23434
NOAA-NMFS-2020-0031-DRAFT-23435
NOAA-NMFS-2020-0031-DRAFT-23436
NOAA-NMFS-2020-0031-DRAFT-23437
NOAA-NMFS-2020-0031-DRAFT-23438
NOAA-NMFS-2020-0031-DRAFT-23439
NOAA-NMFS-2020-0031-DRAFT-23440
NOAA-NMFS-2020-0031-DRAFT-23441
NOAA-NMFS-2020-0031-DRAFT-23442
NOAA-NMFS-2020-0031-DRAFT-23443

Comment from Penso Cuculich, Valerie
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Comment from Shields, Daniel J
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NOAA-NMFS-2020-0031-DRAFT-28551
NOAA-NMFS-2020-0031-DRAFT-28552
NOAA-NMFS-2020-0031-DRAFT-28553
NOAA-NMFS-2020-0031-DRAFT-28554
NOAA-NMFS-2020-0031-DRAFT-28555
NOAA-NMFS-2020-0031-DRAFT-28556
NOAA-NMFS-2020-0031-DRAFT-28557
NOAA-NMFS-2020-0031-DRAFT-28558
NOAA-NMFS-2020-0031-DRAFT-28560
NOAA-NMFS-2020-0031-DRAFT-28561
NOAA-NMFS-2020-0031-DRAFT-28562
NOAA-NMFS-2020-0031-DRAFT-28563
NOAA-NMFS-2020-0031-DRAFT-28564
NOAA-NMFS-2020-0031-DRAFT-28565
NOAA-NMFS-2020-0031-DRAFT-28566
NOAA-NMFS-2020-0031-DRAFT-28567
NOAA-NMFS-2020-0031-DRAFT-28568
NOAA-NMFS-2020-0031-DRAFT-28569
NOAA-NMFS-2020-0031-DRAFT-28570
NOAA-NMFS-2020-0031-DRAFT-28571
NOAA-NMFS-2020-0031-DRAFT-28572
NOAA-NMFS-2020-0031-DRAFT-28573
NOAA-NMFS-2020-0031-DRAFT-28574
NOAA-NMFS-2020-0031-DRAFT-28575
NOAA-NMFS-2020-0031-DRAFT-28576
NOAA-NMFS-2020-0031-DRAFT-28577
NOAA-NMFS-2020-0031-DRAFT-28578
NOAA-NMFS-2020-0031-DRAFT-28579
NOAA-NMFS-2020-0031-DRAFT-28580
NOAA-NMFS-2020-0031-DRAFT-28581
NOAA-NMFS-2020-0031-DRAFT-28582
NOAA-NMFS-2020-0031-DRAFT-28583
NOAA-NMFS-2020-0031-DRAFT-28584
NOAA-NMFS-2020-0031-DRAFT-28585
NOAA-NMFS-2020-0031-DRAFT-28586
NOAA-NMFS-2020-0031-DRAFT-28587
NOAA-NMFS-2020-0031-DRAFT-28588
NOAA-NMFS-2020-0031-DRAFT-28589
NOAA-NMFS-2020-0031-DRAFT-28590
NOAA-NMFS-2020-0031-DRAFT-28591
NOAA-NMFS-2020-0031-DRAFT-28592

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NOAA-NMFS-2020-0031-DRAFT-23444
NOAA-NMFS-2020-0031-DRAFT-23445
NOAA-NMFS-2020-0031-DRAFT-23446
NOAA-NMFS-2020-0031-DRAFT-23447
NOAA-NMFS-2020-0031-DRAFT-23448
NOAA-NMFS-2020-0031-DRAFT-23449
NOAA-NMFS-2020-0031-DRAFT-23450
NOAA-NMFS-2020-0031-DRAFT-23451
NOAA-NMFS-2020-0031-DRAFT-23452
NOAA-NMFS-2020-0031-DRAFT-23453
NOAA-NMFS-2020-0031-DRAFT-23454
NOAA-NMFS-2020-0031-DRAFT-23455
NOAA-NMFS-2020-0031-DRAFT-23456
NOAA-NMFS-2020-0031-DRAFT-23457
NOAA-NMFS-2020-0031-DRAFT-23458
NOAA-NMFS-2020-0031-DRAFT-23459
NOAA-NMFS-2020-0031-DRAFT-23460
NOAA-NMFS-2020-0031-DRAFT-23461
NOAA-NMFS-2020-0031-DRAFT-23462
NOAA-NMFS-2020-0031-DRAFT-23463
NOAA-NMFS-2020-0031-DRAFT-23464
NOAA-NMFS-2020-0031-DRAFT-23465
NOAA-NMFS-2020-0031-DRAFT-23466
NOAA-NMFS-2020-0031-DRAFT-23467
NOAA-NMFS-2020-0031-DRAFT-23468
NOAA-NMFS-2020-0031-DRAFT-23469
NOAA-NMFS-2020-0031-DRAFT-23470
NOAA-NMFS-2020-0031-DRAFT-23471
NOAA-NMFS-2020-0031-DRAFT-23472
NOAA-NMFS-2020-0031-DRAFT-23473
NOAA-NMFS-2020-0031-DRAFT-23474
NOAA-NMFS-2020-0031-DRAFT-23475
NOAA-NMFS-2020-0031-DRAFT-23476
NOAA-NMFS-2020-0031-DRAFT-23477
NOAA-NMFS-2020-0031-DRAFT-23478
NOAA-NMFS-2020-0031-DRAFT-23479
NOAA-NMFS-2020-0031-DRAFT-23480
NOAA-NMFS-2020-0031-DRAFT-23481
NOAA-NMFS-2020-0031-DRAFT-23482
NOAA-NMFS-2020-0031-DRAFT-23483
NOAA-NMFS-2020-0031-DRAFT-23484

Comment from cobb, margaret
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Comment from Moore, Susan
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NOAA-NMFS-2020-0031-DRAFT-28593
NOAA-NMFS-2020-0031-DRAFT-28594
NOAA-NMFS-2020-0031-DRAFT-28595
NOAA-NMFS-2020-0031-DRAFT-28596
NOAA-NMFS-2020-0031-DRAFT-28597
NOAA-NMFS-2020-0031-DRAFT-28598
NOAA-NMFS-2020-0031-DRAFT-28599
NOAA-NMFS-2020-0031-DRAFT-28600
NOAA-NMFS-2020-0031-DRAFT-28601
NOAA-NMFS-2020-0031-DRAFT-28602
NOAA-NMFS-2020-0031-DRAFT-28603
NOAA-NMFS-2020-0031-DRAFT-28604
NOAA-NMFS-2020-0031-DRAFT-28605
NOAA-NMFS-2020-0031-DRAFT-28606
NOAA-NMFS-2020-0031-DRAFT-28607
NOAA-NMFS-2020-0031-DRAFT-28608
NOAA-NMFS-2020-0031-DRAFT-28609
NOAA-NMFS-2020-0031-DRAFT-28610
NOAA-NMFS-2020-0031-DRAFT-28611
NOAA-NMFS-2020-0031-DRAFT-28612
NOAA-NMFS-2020-0031-DRAFT-28613
NOAA-NMFS-2020-0031-DRAFT-28614
NOAA-NMFS-2020-0031-DRAFT-28615
NOAA-NMFS-2020-0031-DRAFT-28616
NOAA-NMFS-2020-0031-DRAFT-28617
NOAA-NMFS-2020-0031-DRAFT-28618
NOAA-NMFS-2020-0031-DRAFT-28619
NOAA-NMFS-2020-0031-DRAFT-28620
NOAA-NMFS-2020-0031-DRAFT-28621
NOAA-NMFS-2020-0031-DRAFT-28622
NOAA-NMFS-2020-0031-DRAFT-28623
NOAA-NMFS-2020-0031-DRAFT-28624
NOAA-NMFS-2020-0031-DRAFT-28625
NOAA-NMFS-2020-0031-DRAFT-28626
NOAA-NMFS-2020-0031-DRAFT-28627
NOAA-NMFS-2020-0031-DRAFT-28628
NOAA-NMFS-2020-0031-DRAFT-28629
NOAA-NMFS-2020-0031-DRAFT-28630
NOAA-NMFS-2020-0031-DRAFT-28631
NOAA-NMFS-2020-0031-DRAFT-28632
NOAA-NMFS-2020-0031-DRAFT-28633

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NOAA-NMFS-2020-0031-DRAFT-23485
NOAA-NMFS-2020-0031-DRAFT-23486
NOAA-NMFS-2020-0031-DRAFT-23487
NOAA-NMFS-2020-0031-DRAFT-23488
NOAA-NMFS-2020-0031-DRAFT-23489
NOAA-NMFS-2020-0031-DRAFT-23490
NOAA-NMFS-2020-0031-DRAFT-23491
NOAA-NMFS-2020-0031-DRAFT-23492
NOAA-NMFS-2020-0031-DRAFT-23493
NOAA-NMFS-2020-0031-DRAFT-23494
NOAA-NMFS-2020-0031-DRAFT-23495
NOAA-NMFS-2020-0031-DRAFT-23496
NOAA-NMFS-2020-0031-DRAFT-23497
NOAA-NMFS-2020-0031-DRAFT-23498
NOAA-NMFS-2020-0031-DRAFT-23499
NOAA-NMFS-2020-0031-DRAFT-23500
NOAA-NMFS-2020-0031-DRAFT-23501
NOAA-NMFS-2020-0031-DRAFT-23502
NOAA-NMFS-2020-0031-DRAFT-23503
NOAA-NMFS-2020-0031-DRAFT-23504
NOAA-NMFS-2020-0031-DRAFT-23505
NOAA-NMFS-2020-0031-DRAFT-23506
NOAA-NMFS-2020-0031-DRAFT-23507
NOAA-NMFS-2020-0031-DRAFT-23508
NOAA-NMFS-2020-0031-DRAFT-23509
NOAA-NMFS-2020-0031-DRAFT-23510
NOAA-NMFS-2020-0031-DRAFT-23511
NOAA-NMFS-2020-0031-DRAFT-23512
NOAA-NMFS-2020-0031-DRAFT-23513
NOAA-NMFS-2020-0031-DRAFT-23514
NOAA-NMFS-2020-0031-DRAFT-23516
NOAA-NMFS-2020-0031-DRAFT-23517
NOAA-NMFS-2020-0031-DRAFT-23518
NOAA-NMFS-2020-0031-DRAFT-23519
NOAA-NMFS-2020-0031-DRAFT-23520
NOAA-NMFS-2020-0031-DRAFT-23521
NOAA-NMFS-2020-0031-DRAFT-23522
NOAA-NMFS-2020-0031-DRAFT-23523
NOAA-NMFS-2020-0031-DRAFT-23524
NOAA-NMFS-2020-0031-DRAFT-23525
NOAA-NMFS-2020-0031-DRAFT-23526

Comment from Florez, Alejandro
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NOAA-NMFS-2020-0031-DRAFT-28634
NOAA-NMFS-2020-0031-DRAFT-28635
NOAA-NMFS-2020-0031-DRAFT-28636
NOAA-NMFS-2020-0031-DRAFT-28637
NOAA-NMFS-2020-0031-DRAFT-28638
NOAA-NMFS-2020-0031-DRAFT-28639
NOAA-NMFS-2020-0031-DRAFT-28640
NOAA-NMFS-2020-0031-DRAFT-28641
NOAA-NMFS-2020-0031-DRAFT-28642
NOAA-NMFS-2020-0031-DRAFT-28643
NOAA-NMFS-2020-0031-DRAFT-28644
NOAA-NMFS-2020-0031-DRAFT-28645
NOAA-NMFS-2020-0031-DRAFT-28646
NOAA-NMFS-2020-0031-DRAFT-28647
NOAA-NMFS-2020-0031-DRAFT-28648
NOAA-NMFS-2020-0031-DRAFT-28649
NOAA-NMFS-2020-0031-DRAFT-28650
NOAA-NMFS-2020-0031-DRAFT-28651
NOAA-NMFS-2020-0031-DRAFT-28652
NOAA-NMFS-2020-0031-DRAFT-28653
NOAA-NMFS-2020-0031-DRAFT-28654
NOAA-NMFS-2020-0031-DRAFT-28655
NOAA-NMFS-2020-0031-DRAFT-28656
NOAA-NMFS-2020-0031-DRAFT-28657
NOAA-NMFS-2020-0031-DRAFT-28658
NOAA-NMFS-2020-0031-DRAFT-28659
NOAA-NMFS-2020-0031-DRAFT-28660
NOAA-NMFS-2020-0031-DRAFT-28661
NOAA-NMFS-2020-0031-DRAFT-28662
NOAA-NMFS-2020-0031-DRAFT-28663
NOAA-NMFS-2020-0031-DRAFT-28664
NOAA-NMFS-2020-0031-DRAFT-28665
NOAA-NMFS-2020-0031-DRAFT-28666
NOAA-NMFS-2020-0031-DRAFT-28667
NOAA-NMFS-2020-0031-DRAFT-28668
NOAA-NMFS-2020-0031-DRAFT-28669
NOAA-NMFS-2020-0031-DRAFT-28670
NOAA-NMFS-2020-0031-DRAFT-28671
NOAA-NMFS-2020-0031-DRAFT-28672
NOAA-NMFS-2020-0031-DRAFT-28673
NOAA-NMFS-2020-0031-DRAFT-28674

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NOAA-NMFS-2020-0031-DRAFT-23527
NOAA-NMFS-2020-0031-DRAFT-23529
NOAA-NMFS-2020-0031-DRAFT-23530
NOAA-NMFS-2020-0031-DRAFT-23531
NOAA-NMFS-2020-0031-DRAFT-23532
NOAA-NMFS-2020-0031-DRAFT-23533
NOAA-NMFS-2020-0031-DRAFT-23534
NOAA-NMFS-2020-0031-DRAFT-23535
NOAA-NMFS-2020-0031-DRAFT-23536
NOAA-NMFS-2020-0031-DRAFT-23537
NOAA-NMFS-2020-0031-DRAFT-23539
NOAA-NMFS-2020-0031-DRAFT-23540
NOAA-NMFS-2020-0031-DRAFT-23541
NOAA-NMFS-2020-0031-DRAFT-23542
NOAA-NMFS-2020-0031-DRAFT-23543
NOAA-NMFS-2020-0031-DRAFT-23544
NOAA-NMFS-2020-0031-DRAFT-23545
NOAA-NMFS-2020-0031-DRAFT-23546
NOAA-NMFS-2020-0031-DRAFT-23547
NOAA-NMFS-2020-0031-DRAFT-23548
NOAA-NMFS-2020-0031-DRAFT-23549
NOAA-NMFS-2020-0031-DRAFT-23550
NOAA-NMFS-2020-0031-DRAFT-23551
NOAA-NMFS-2020-0031-DRAFT-23552
NOAA-NMFS-2020-0031-DRAFT-23553
NOAA-NMFS-2020-0031-DRAFT-23554
NOAA-NMFS-2020-0031-DRAFT-23555
NOAA-NMFS-2020-0031-DRAFT-23556
NOAA-NMFS-2020-0031-DRAFT-23557
NOAA-NMFS-2020-0031-DRAFT-23558
NOAA-NMFS-2020-0031-DRAFT-23559
NOAA-NMFS-2020-0031-DRAFT-23560
NOAA-NMFS-2020-0031-DRAFT-23561
NOAA-NMFS-2020-0031-DRAFT-23562
NOAA-NMFS-2020-0031-DRAFT-23563
NOAA-NMFS-2020-0031-DRAFT-23564
NOAA-NMFS-2020-0031-DRAFT-23565
NOAA-NMFS-2020-0031-DRAFT-23566
NOAA-NMFS-2020-0031-DRAFT-23567
NOAA-NMFS-2020-0031-DRAFT-23568
NOAA-NMFS-2020-0031-DRAFT-23569

Comment from Hennessy, Ellison
Comment from Schuetz, Sue
Comment from Eastin, Sarah
Comment from Kulp, Jeff
Comment from Johnson, Katie
Comment from Martin, Drew
Comment from Heisler, Mark
Comment from weber, kathy
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NOAA-NMFS-2020-0031-DRAFT-28675
NOAA-NMFS-2020-0031-DRAFT-28676
NOAA-NMFS-2020-0031-DRAFT-28677
NOAA-NMFS-2020-0031-DRAFT-28678
NOAA-NMFS-2020-0031-DRAFT-28679
NOAA-NMFS-2020-0031-DRAFT-28680
NOAA-NMFS-2020-0031-DRAFT-28681
NOAA-NMFS-2020-0031-DRAFT-28682
NOAA-NMFS-2020-0031-DRAFT-28683
NOAA-NMFS-2020-0031-DRAFT-28684
NOAA-NMFS-2020-0031-DRAFT-28685
NOAA-NMFS-2020-0031-DRAFT-28686
NOAA-NMFS-2020-0031-DRAFT-28687
NOAA-NMFS-2020-0031-DRAFT-28688
NOAA-NMFS-2020-0031-DRAFT-28689
NOAA-NMFS-2020-0031-DRAFT-28690
NOAA-NMFS-2020-0031-DRAFT-28691
NOAA-NMFS-2020-0031-DRAFT-28692
NOAA-NMFS-2020-0031-DRAFT-28693
NOAA-NMFS-2020-0031-DRAFT-28694
NOAA-NMFS-2020-0031-DRAFT-28695
NOAA-NMFS-2020-0031-DRAFT-28696
NOAA-NMFS-2020-0031-DRAFT-28697
NOAA-NMFS-2020-0031-DRAFT-28698
NOAA-NMFS-2020-0031-DRAFT-28699
NOAA-NMFS-2020-0031-DRAFT-28700
NOAA-NMFS-2020-0031-DRAFT-28701
NOAA-NMFS-2020-0031-DRAFT-28702
NOAA-NMFS-2020-0031-DRAFT-28703
NOAA-NMFS-2020-0031-DRAFT-28704
NOAA-NMFS-2020-0031-DRAFT-28705
NOAA-NMFS-2020-0031-DRAFT-28706
NOAA-NMFS-2020-0031-DRAFT-28707
NOAA-NMFS-2020-0031-DRAFT-28708
NOAA-NMFS-2020-0031-DRAFT-28709
NOAA-NMFS-2020-0031-DRAFT-28710
NOAA-NMFS-2020-0031-DRAFT-28711
NOAA-NMFS-2020-0031-DRAFT-28712
NOAA-NMFS-2020-0031-DRAFT-28713
NOAA-NMFS-2020-0031-DRAFT-28714
NOAA-NMFS-2020-0031-DRAFT-28715

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NOAA-NMFS-2020-0031-DRAFT-23570
NOAA-NMFS-2020-0031-DRAFT-23571
NOAA-NMFS-2020-0031-DRAFT-23572
NOAA-NMFS-2020-0031-DRAFT-23573
NOAA-NMFS-2020-0031-DRAFT-23574
NOAA-NMFS-2020-0031-DRAFT-23575
NOAA-NMFS-2020-0031-DRAFT-23576
NOAA-NMFS-2020-0031-DRAFT-23577
NOAA-NMFS-2020-0031-DRAFT-23578
NOAA-NMFS-2020-0031-DRAFT-23579
NOAA-NMFS-2020-0031-DRAFT-23580
NOAA-NMFS-2020-0031-DRAFT-23581
NOAA-NMFS-2020-0031-DRAFT-23582
NOAA-NMFS-2020-0031-DRAFT-23583
NOAA-NMFS-2020-0031-DRAFT-23584
NOAA-NMFS-2020-0031-DRAFT-23585
NOAA-NMFS-2020-0031-DRAFT-23586
NOAA-NMFS-2020-0031-DRAFT-23587
NOAA-NMFS-2020-0031-DRAFT-23588
NOAA-NMFS-2020-0031-DRAFT-23589
NOAA-NMFS-2020-0031-DRAFT-23590
NOAA-NMFS-2020-0031-DRAFT-23591
NOAA-NMFS-2020-0031-DRAFT-23593
NOAA-NMFS-2020-0031-DRAFT-23594
NOAA-NMFS-2020-0031-DRAFT-23595
NOAA-NMFS-2020-0031-DRAFT-23596
NOAA-NMFS-2020-0031-DRAFT-23597
NOAA-NMFS-2020-0031-DRAFT-23599
NOAA-NMFS-2020-0031-DRAFT-23600
NOAA-NMFS-2020-0031-DRAFT-23601
NOAA-NMFS-2020-0031-DRAFT-23602
NOAA-NMFS-2020-0031-DRAFT-23603
NOAA-NMFS-2020-0031-DRAFT-23604
NOAA-NMFS-2020-0031-DRAFT-23605
NOAA-NMFS-2020-0031-DRAFT-23606
NOAA-NMFS-2020-0031-DRAFT-23607
NOAA-NMFS-2020-0031-DRAFT-23608
NOAA-NMFS-2020-0031-DRAFT-23609
NOAA-NMFS-2020-0031-DRAFT-23610
NOAA-NMFS-2020-0031-DRAFT-23611
NOAA-NMFS-2020-0031-DRAFT-23612

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Comment from Gomez, Maria
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NOAA-NMFS-2020-0031-DRAFT-28716
NOAA-NMFS-2020-0031-DRAFT-28717
NOAA-NMFS-2020-0031-DRAFT-28718
NOAA-NMFS-2020-0031-DRAFT-28719
NOAA-NMFS-2020-0031-DRAFT-28720
NOAA-NMFS-2020-0031-DRAFT-28721
NOAA-NMFS-2020-0031-DRAFT-28722
NOAA-NMFS-2020-0031-DRAFT-28723
NOAA-NMFS-2020-0031-DRAFT-28724
NOAA-NMFS-2020-0031-DRAFT-28725
NOAA-NMFS-2020-0031-DRAFT-28726
NOAA-NMFS-2020-0031-DRAFT-28727
NOAA-NMFS-2020-0031-DRAFT-28728
NOAA-NMFS-2020-0031-DRAFT-28729
NOAA-NMFS-2020-0031-DRAFT-28730
NOAA-NMFS-2020-0031-DRAFT-28731
NOAA-NMFS-2020-0031-DRAFT-28732
NOAA-NMFS-2020-0031-DRAFT-28733
NOAA-NMFS-2020-0031-DRAFT-28734
NOAA-NMFS-2020-0031-DRAFT-28735
NOAA-NMFS-2020-0031-DRAFT-28736
NOAA-NMFS-2020-0031-DRAFT-28737
NOAA-NMFS-2020-0031-DRAFT-28738
NOAA-NMFS-2020-0031-DRAFT-28739
NOAA-NMFS-2020-0031-DRAFT-28740
NOAA-NMFS-2020-0031-DRAFT-28741
NOAA-NMFS-2020-0031-DRAFT-28742
NOAA-NMFS-2020-0031-DRAFT-28743
NOAA-NMFS-2020-0031-DRAFT-28744
NOAA-NMFS-2020-0031-DRAFT-28745
NOAA-NMFS-2020-0031-DRAFT-28746
NOAA-NMFS-2020-0031-DRAFT-28747
NOAA-NMFS-2020-0031-DRAFT-28748
NOAA-NMFS-2020-0031-DRAFT-28749
NOAA-NMFS-2020-0031-DRAFT-28750
NOAA-NMFS-2020-0031-DRAFT-28751
NOAA-NMFS-2020-0031-DRAFT-28752
NOAA-NMFS-2020-0031-DRAFT-28753
NOAA-NMFS-2020-0031-DRAFT-28754
NOAA-NMFS-2020-0031-DRAFT-28755
NOAA-NMFS-2020-0031-DRAFT-28756

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NOAA-NMFS-2020-0031-DRAFT-23613
NOAA-NMFS-2020-0031-DRAFT-23614
NOAA-NMFS-2020-0031-DRAFT-23615
NOAA-NMFS-2020-0031-DRAFT-23616
NOAA-NMFS-2020-0031-DRAFT-23617
NOAA-NMFS-2020-0031-DRAFT-23618
NOAA-NMFS-2020-0031-DRAFT-23619
NOAA-NMFS-2020-0031-DRAFT-23620
NOAA-NMFS-2020-0031-DRAFT-23621
NOAA-NMFS-2020-0031-DRAFT-23622
NOAA-NMFS-2020-0031-DRAFT-23623
NOAA-NMFS-2020-0031-DRAFT-23624
NOAA-NMFS-2020-0031-DRAFT-23625
NOAA-NMFS-2020-0031-DRAFT-23626
NOAA-NMFS-2020-0031-DRAFT-23627
NOAA-NMFS-2020-0031-DRAFT-23628
NOAA-NMFS-2020-0031-DRAFT-23629
NOAA-NMFS-2020-0031-DRAFT-23630
NOAA-NMFS-2020-0031-DRAFT-23631
NOAA-NMFS-2020-0031-DRAFT-23632
NOAA-NMFS-2020-0031-DRAFT-23633
NOAA-NMFS-2020-0031-DRAFT-23634
NOAA-NMFS-2020-0031-DRAFT-23635
NOAA-NMFS-2020-0031-DRAFT-23636
NOAA-NMFS-2020-0031-DRAFT-23637
NOAA-NMFS-2020-0031-DRAFT-23638
NOAA-NMFS-2020-0031-DRAFT-23640
NOAA-NMFS-2020-0031-DRAFT-23641
NOAA-NMFS-2020-0031-DRAFT-23642
NOAA-NMFS-2020-0031-DRAFT-23643
NOAA-NMFS-2020-0031-DRAFT-23644
NOAA-NMFS-2020-0031-DRAFT-23645
NOAA-NMFS-2020-0031-DRAFT-23646
NOAA-NMFS-2020-0031-DRAFT-23647
NOAA-NMFS-2020-0031-DRAFT-23648
NOAA-NMFS-2020-0031-DRAFT-23649
NOAA-NMFS-2020-0031-DRAFT-23650
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NOAA-NMFS-2020-0031-DRAFT-23653
NOAA-NMFS-2020-0031-DRAFT-23654
NOAA-NMFS-2020-0031-DRAFT-23655

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NOAA-NMFS-2020-0031-DRAFT-28757
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NOAA-NMFS-2020-0031-DRAFT-28759
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NOAA-NMFS-2020-0031-DRAFT-28764
NOAA-NMFS-2020-0031-DRAFT-28765
NOAA-NMFS-2020-0031-DRAFT-28766
NOAA-NMFS-2020-0031-DRAFT-28767
NOAA-NMFS-2020-0031-DRAFT-28768
NOAA-NMFS-2020-0031-DRAFT-28769
NOAA-NMFS-2020-0031-DRAFT-28770
NOAA-NMFS-2020-0031-DRAFT-28771
NOAA-NMFS-2020-0031-DRAFT-28772
NOAA-NMFS-2020-0031-DRAFT-28773
NOAA-NMFS-2020-0031-DRAFT-28774
NOAA-NMFS-2020-0031-DRAFT-28775
NOAA-NMFS-2020-0031-DRAFT-28776
NOAA-NMFS-2020-0031-DRAFT-28777
NOAA-NMFS-2020-0031-DRAFT-28778
NOAA-NMFS-2020-0031-DRAFT-28779
NOAA-NMFS-2020-0031-DRAFT-28780
NOAA-NMFS-2020-0031-DRAFT-28781
NOAA-NMFS-2020-0031-DRAFT-28782
NOAA-NMFS-2020-0031-DRAFT-28783
NOAA-NMFS-2020-0031-DRAFT-28784
NOAA-NMFS-2020-0031-DRAFT-28785
NOAA-NMFS-2020-0031-DRAFT-28786
NOAA-NMFS-2020-0031-DRAFT-28787
NOAA-NMFS-2020-0031-DRAFT-28788
NOAA-NMFS-2020-0031-DRAFT-28789
NOAA-NMFS-2020-0031-DRAFT-28790
NOAA-NMFS-2020-0031-DRAFT-28791
NOAA-NMFS-2020-0031-DRAFT-28792
NOAA-NMFS-2020-0031-DRAFT-28793
NOAA-NMFS-2020-0031-DRAFT-28794
NOAA-NMFS-2020-0031-DRAFT-28795
NOAA-NMFS-2020-0031-DRAFT-28796
NOAA-NMFS-2020-0031-DRAFT-28797

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NOAA-NMFS-2020-0031-DRAFT-23656
NOAA-NMFS-2020-0031-DRAFT-23657
NOAA-NMFS-2020-0031-DRAFT-23658
NOAA-NMFS-2020-0031-DRAFT-23659
NOAA-NMFS-2020-0031-DRAFT-23660
NOAA-NMFS-2020-0031-DRAFT-23661
NOAA-NMFS-2020-0031-DRAFT-23662
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NOAA-NMFS-2020-0031-DRAFT-23664
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NOAA-NMFS-2020-0031-DRAFT-23667
NOAA-NMFS-2020-0031-DRAFT-23668
NOAA-NMFS-2020-0031-DRAFT-23669
NOAA-NMFS-2020-0031-DRAFT-23670
NOAA-NMFS-2020-0031-DRAFT-23671
NOAA-NMFS-2020-0031-DRAFT-23672
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NOAA-NMFS-2020-0031-DRAFT-23674
NOAA-NMFS-2020-0031-DRAFT-23675
NOAA-NMFS-2020-0031-DRAFT-23676
NOAA-NMFS-2020-0031-DRAFT-23677
NOAA-NMFS-2020-0031-DRAFT-23678
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NOAA-NMFS-2020-0031-DRAFT-23680
NOAA-NMFS-2020-0031-DRAFT-23681
NOAA-NMFS-2020-0031-DRAFT-23682
NOAA-NMFS-2020-0031-DRAFT-23683
NOAA-NMFS-2020-0031-DRAFT-23684
NOAA-NMFS-2020-0031-DRAFT-23685
NOAA-NMFS-2020-0031-DRAFT-23686
NOAA-NMFS-2020-0031-DRAFT-23687
NOAA-NMFS-2020-0031-DRAFT-23688
NOAA-NMFS-2020-0031-DRAFT-23689
NOAA-NMFS-2020-0031-DRAFT-23690
NOAA-NMFS-2020-0031-DRAFT-23691
NOAA-NMFS-2020-0031-DRAFT-23692
NOAA-NMFS-2020-0031-DRAFT-23693
NOAA-NMFS-2020-0031-DRAFT-23694
NOAA-NMFS-2020-0031-DRAFT-23695
NOAA-NMFS-2020-0031-DRAFT-23696

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NOAA-NMFS-2020-0031-DRAFT-28798
NOAA-NMFS-2020-0031-DRAFT-28799
NOAA-NMFS-2020-0031-DRAFT-28800
NOAA-NMFS-2020-0031-DRAFT-28801
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NOAA-NMFS-2020-0031-DRAFT-28808
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NOAA-NMFS-2020-0031-DRAFT-28810
NOAA-NMFS-2020-0031-DRAFT-28811
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NOAA-NMFS-2020-0031-DRAFT-28813
NOAA-NMFS-2020-0031-DRAFT-28814
NOAA-NMFS-2020-0031-DRAFT-28815
NOAA-NMFS-2020-0031-DRAFT-28816
NOAA-NMFS-2020-0031-DRAFT-28817
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NOAA-NMFS-2020-0031-DRAFT-28819
NOAA-NMFS-2020-0031-DRAFT-28820
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NOAA-NMFS-2020-0031-DRAFT-28822
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NOAA-NMFS-2020-0031-DRAFT-28835
NOAA-NMFS-2020-0031-DRAFT-28836
NOAA-NMFS-2020-0031-DRAFT-28837
NOAA-NMFS-2020-0031-DRAFT-28838

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NOAA-NMFS-2020-0031-DRAFT-23697
NOAA-NMFS-2020-0031-DRAFT-23698
NOAA-NMFS-2020-0031-DRAFT-23699
NOAA-NMFS-2020-0031-DRAFT-23700
NOAA-NMFS-2020-0031-DRAFT-23701
NOAA-NMFS-2020-0031-DRAFT-23702
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NOAA-NMFS-2020-0031-DRAFT-23704
NOAA-NMFS-2020-0031-DRAFT-23705
NOAA-NMFS-2020-0031-DRAFT-23706
NOAA-NMFS-2020-0031-DRAFT-23707
NOAA-NMFS-2020-0031-DRAFT-23708
NOAA-NMFS-2020-0031-DRAFT-23709
NOAA-NMFS-2020-0031-DRAFT-23710
NOAA-NMFS-2020-0031-DRAFT-23711
NOAA-NMFS-2020-0031-DRAFT-23712
NOAA-NMFS-2020-0031-DRAFT-23713
NOAA-NMFS-2020-0031-DRAFT-23714
NOAA-NMFS-2020-0031-DRAFT-23720
NOAA-NMFS-2020-0031-DRAFT-23721
NOAA-NMFS-2020-0031-DRAFT-23731
NOAA-NMFS-2020-0031-DRAFT-23732
NOAA-NMFS-2020-0031-DRAFT-23733
NOAA-NMFS-2020-0031-DRAFT-23734
NOAA-NMFS-2020-0031-DRAFT-23735
NOAA-NMFS-2020-0031-DRAFT-23736
NOAA-NMFS-2020-0031-DRAFT-23737
NOAA-NMFS-2020-0031-DRAFT-23738
NOAA-NMFS-2020-0031-DRAFT-23739
NOAA-NMFS-2020-0031-DRAFT-23740
NOAA-NMFS-2020-0031-DRAFT-23741
NOAA-NMFS-2020-0031-DRAFT-23742
NOAA-NMFS-2020-0031-DRAFT-23743
NOAA-NMFS-2020-0031-DRAFT-23744
NOAA-NMFS-2020-0031-DRAFT-23745
NOAA-NMFS-2020-0031-DRAFT-23747
NOAA-NMFS-2020-0031-DRAFT-23748
NOAA-NMFS-2020-0031-DRAFT-23749
NOAA-NMFS-2020-0031-DRAFT-23750
NOAA-NMFS-2020-0031-DRAFT-23751
NOAA-NMFS-2020-0031-DRAFT-23752

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NOAA-NMFS-2020-0031-DRAFT-28839
NOAA-NMFS-2020-0031-DRAFT-28840
NOAA-NMFS-2020-0031-DRAFT-28841
NOAA-NMFS-2020-0031-DRAFT-28842
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NOAA-NMFS-2020-0031-DRAFT-28844
NOAA-NMFS-2020-0031-DRAFT-28845
NOAA-NMFS-2020-0031-DRAFT-28846
NOAA-NMFS-2020-0031-DRAFT-28847
NOAA-NMFS-2020-0031-DRAFT-28848
NOAA-NMFS-2020-0031-DRAFT-28849
NOAA-NMFS-2020-0031-DRAFT-28850
NOAA-NMFS-2020-0031-DRAFT-28851
NOAA-NMFS-2020-0031-DRAFT-28852
NOAA-NMFS-2020-0031-DRAFT-28853
NOAA-NMFS-2020-0031-DRAFT-28854
NOAA-NMFS-2020-0031-DRAFT-28855
NOAA-NMFS-2020-0031-DRAFT-28856
NOAA-NMFS-2020-0031-DRAFT-28857
NOAA-NMFS-2020-0031-DRAFT-28858
NOAA-NMFS-2020-0031-DRAFT-28859
NOAA-NMFS-2020-0031-DRAFT-28860
NOAA-NMFS-2020-0031-DRAFT-28861
NOAA-NMFS-2020-0031-DRAFT-28862
NOAA-NMFS-2020-0031-DRAFT-28863
NOAA-NMFS-2020-0031-DRAFT-28864
NOAA-NMFS-2020-0031-DRAFT-28865
NOAA-NMFS-2020-0031-DRAFT-28866
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NOAA-NMFS-2020-0031-DRAFT-28868
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NOAA-NMFS-2020-0031-DRAFT-28871
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NOAA-NMFS-2020-0031-DRAFT-28875
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NOAA-NMFS-2020-0031-DRAFT-28877
NOAA-NMFS-2020-0031-DRAFT-28878
NOAA-NMFS-2020-0031-DRAFT-28879

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NOAA-NMFS-2020-0031-DRAFT-23753
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NOAA-NMFS-2020-0031-DRAFT-28895
NOAA-NMFS-2020-0031-DRAFT-28896
NOAA-NMFS-2020-0031-DRAFT-28897
NOAA-NMFS-2020-0031-DRAFT-28898
NOAA-NMFS-2020-0031-DRAFT-28899
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NOAA-NMFS-2020-0031-DRAFT-28904
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NOAA-NMFS-2020-0031-DRAFT-28915
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NOAA-NMFS-2020-0031-DRAFT-28918
NOAA-NMFS-2020-0031-DRAFT-28919
NOAA-NMFS-2020-0031-DRAFT-28920

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NOAA-NMFS-2020-0031-DRAFT-23798
NOAA-NMFS-2020-0031-DRAFT-23800
NOAA-NMFS-2020-0031-DRAFT-23801
NOAA-NMFS-2020-0031-DRAFT-23802
NOAA-NMFS-2020-0031-DRAFT-23803
NOAA-NMFS-2020-0031-DRAFT-23804
NOAA-NMFS-2020-0031-DRAFT-23805
NOAA-NMFS-2020-0031-DRAFT-23806
NOAA-NMFS-2020-0031-DRAFT-23808
NOAA-NMFS-2020-0031-DRAFT-23809
NOAA-NMFS-2020-0031-DRAFT-23810
NOAA-NMFS-2020-0031-DRAFT-23811
NOAA-NMFS-2020-0031-DRAFT-23812
NOAA-NMFS-2020-0031-DRAFT-23813
NOAA-NMFS-2020-0031-DRAFT-23814
NOAA-NMFS-2020-0031-DRAFT-23815
NOAA-NMFS-2020-0031-DRAFT-23816
NOAA-NMFS-2020-0031-DRAFT-23818
NOAA-NMFS-2020-0031-DRAFT-23820
NOAA-NMFS-2020-0031-DRAFT-23821
NOAA-NMFS-2020-0031-DRAFT-23822
NOAA-NMFS-2020-0031-DRAFT-23823
NOAA-NMFS-2020-0031-DRAFT-23824
NOAA-NMFS-2020-0031-DRAFT-23825
NOAA-NMFS-2020-0031-DRAFT-23826
NOAA-NMFS-2020-0031-DRAFT-23828
NOAA-NMFS-2020-0031-DRAFT-23829
NOAA-NMFS-2020-0031-DRAFT-23830
NOAA-NMFS-2020-0031-DRAFT-23831
NOAA-NMFS-2020-0031-DRAFT-23832
NOAA-NMFS-2020-0031-DRAFT-23833
NOAA-NMFS-2020-0031-DRAFT-23834
NOAA-NMFS-2020-0031-DRAFT-23835
NOAA-NMFS-2020-0031-DRAFT-23837
NOAA-NMFS-2020-0031-DRAFT-23838
NOAA-NMFS-2020-0031-DRAFT-23839
NOAA-NMFS-2020-0031-DRAFT-23840
NOAA-NMFS-2020-0031-DRAFT-23842
NOAA-NMFS-2020-0031-DRAFT-23843
NOAA-NMFS-2020-0031-DRAFT-23844
NOAA-NMFS-2020-0031-DRAFT-23845

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NOAA-NMFS-2020-0031-DRAFT-28921
NOAA-NMFS-2020-0031-DRAFT-28922
NOAA-NMFS-2020-0031-DRAFT-28923
NOAA-NMFS-2020-0031-DRAFT-28924
NOAA-NMFS-2020-0031-DRAFT-28925
NOAA-NMFS-2020-0031-DRAFT-28926
NOAA-NMFS-2020-0031-DRAFT-28927
NOAA-NMFS-2020-0031-DRAFT-28928
NOAA-NMFS-2020-0031-DRAFT-28929
NOAA-NMFS-2020-0031-DRAFT-28930
NOAA-NMFS-2020-0031-DRAFT-28931
NOAA-NMFS-2020-0031-DRAFT-28932
NOAA-NMFS-2020-0031-DRAFT-28933
NOAA-NMFS-2020-0031-DRAFT-28934
NOAA-NMFS-2020-0031-DRAFT-28935
NOAA-NMFS-2020-0031-DRAFT-28936
NOAA-NMFS-2020-0031-DRAFT-28937
NOAA-NMFS-2020-0031-DRAFT-28938
NOAA-NMFS-2020-0031-DRAFT-28939
NOAA-NMFS-2020-0031-DRAFT-28940
NOAA-NMFS-2020-0031-DRAFT-28941
NOAA-NMFS-2020-0031-DRAFT-28942
NOAA-NMFS-2020-0031-DRAFT-28943
NOAA-NMFS-2020-0031-DRAFT-28944
NOAA-NMFS-2020-0031-DRAFT-28945
NOAA-NMFS-2020-0031-DRAFT-28946
NOAA-NMFS-2020-0031-DRAFT-28947
NOAA-NMFS-2020-0031-DRAFT-28948
NOAA-NMFS-2020-0031-DRAFT-28949
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NOAA-NMFS-2020-0031-DRAFT-28951
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NOAA-NMFS-2020-0031-DRAFT-28959
NOAA-NMFS-2020-0031-DRAFT-28960
NOAA-NMFS-2020-0031-DRAFT-28961

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NOAA-NMFS-2020-0031-DRAFT-23846
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NOAA-NMFS-2020-0031-DRAFT-23848
NOAA-NMFS-2020-0031-DRAFT-23849
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NOAA-NMFS-2020-0031-DRAFT-23851
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NOAA-NMFS-2020-0031-DRAFT-23861
NOAA-NMFS-2020-0031-DRAFT-23862
NOAA-NMFS-2020-0031-DRAFT-23863
NOAA-NMFS-2020-0031-DRAFT-23864
NOAA-NMFS-2020-0031-DRAFT-23865
NOAA-NMFS-2020-0031-DRAFT-23866
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NOAA-NMFS-2020-0031-DRAFT-23868
NOAA-NMFS-2020-0031-DRAFT-23869
NOAA-NMFS-2020-0031-DRAFT-23870
NOAA-NMFS-2020-0031-DRAFT-23871
NOAA-NMFS-2020-0031-DRAFT-23872
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NOAA-NMFS-2020-0031-DRAFT-23874
NOAA-NMFS-2020-0031-DRAFT-23876
NOAA-NMFS-2020-0031-DRAFT-23877
NOAA-NMFS-2020-0031-DRAFT-23878
NOAA-NMFS-2020-0031-DRAFT-23879
NOAA-NMFS-2020-0031-DRAFT-23880
NOAA-NMFS-2020-0031-DRAFT-23881
NOAA-NMFS-2020-0031-DRAFT-23882
NOAA-NMFS-2020-0031-DRAFT-23883
NOAA-NMFS-2020-0031-DRAFT-23884
NOAA-NMFS-2020-0031-DRAFT-23885
NOAA-NMFS-2020-0031-DRAFT-23886
NOAA-NMFS-2020-0031-DRAFT-23887
NOAA-NMFS-2020-0031-DRAFT-23891

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NOAA-NMFS-2020-0031-DRAFT-28962
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NOAA-NMFS-2020-0031-DRAFT-28975
NOAA-NMFS-2020-0031-DRAFT-28976
NOAA-NMFS-2020-0031-DRAFT-28977
NOAA-NMFS-2020-0031-DRAFT-28978
NOAA-NMFS-2020-0031-DRAFT-28979
NOAA-NMFS-2020-0031-DRAFT-28980
NOAA-NMFS-2020-0031-DRAFT-28981
NOAA-NMFS-2020-0031-DRAFT-28982
NOAA-NMFS-2020-0031-DRAFT-28983
NOAA-NMFS-2020-0031-DRAFT-28984
NOAA-NMFS-2020-0031-DRAFT-28985
NOAA-NMFS-2020-0031-DRAFT-28986
NOAA-NMFS-2020-0031-DRAFT-28987
NOAA-NMFS-2020-0031-DRAFT-28988
NOAA-NMFS-2020-0031-DRAFT-28989
NOAA-NMFS-2020-0031-DRAFT-28990
NOAA-NMFS-2020-0031-DRAFT-28991
NOAA-NMFS-2020-0031-DRAFT-28992
NOAA-NMFS-2020-0031-DRAFT-28993
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NOAA-NMFS-2020-0031-DRAFT-28997
NOAA-NMFS-2020-0031-DRAFT-28998
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NOAA-NMFS-2020-0031-DRAFT-29000
NOAA-NMFS-2020-0031-DRAFT-29001
NOAA-NMFS-2020-0031-DRAFT-29002

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NOAA-NMFS-2020-0031-DRAFT-23892
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NOAA-NMFS-2020-0031-DRAFT-23915
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NOAA-NMFS-2020-0031-DRAFT-23918
NOAA-NMFS-2020-0031-DRAFT-23921
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NOAA-NMFS-2020-0031-DRAFT-23935
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NOAA-NMFS-2020-0031-DRAFT-23937

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NOAA-NMFS-2020-0031-DRAFT-23938
NOAA-NMFS-2020-0031-DRAFT-23939
NOAA-NMFS-2020-0031-DRAFT-23940
NOAA-NMFS-2020-0031-DRAFT-23941
NOAA-NMFS-2020-0031-DRAFT-23942
NOAA-NMFS-2020-0031-DRAFT-23943
NOAA-NMFS-2020-0031-DRAFT-23944
NOAA-NMFS-2020-0031-DRAFT-23945
NOAA-NMFS-2020-0031-DRAFT-23946
NOAA-NMFS-2020-0031-DRAFT-23947
NOAA-NMFS-2020-0031-DRAFT-23948
NOAA-NMFS-2020-0031-DRAFT-23949
NOAA-NMFS-2020-0031-DRAFT-23950
NOAA-NMFS-2020-0031-DRAFT-23951
NOAA-NMFS-2020-0031-DRAFT-23953
NOAA-NMFS-2020-0031-DRAFT-23955
NOAA-NMFS-2020-0031-DRAFT-23956
NOAA-NMFS-2020-0031-DRAFT-23957
NOAA-NMFS-2020-0031-DRAFT-23958
NOAA-NMFS-2020-0031-DRAFT-23959
NOAA-NMFS-2020-0031-DRAFT-23960
NOAA-NMFS-2020-0031-DRAFT-23961
NOAA-NMFS-2020-0031-DRAFT-23962
NOAA-NMFS-2020-0031-DRAFT-23963
NOAA-NMFS-2020-0031-DRAFT-23964
NOAA-NMFS-2020-0031-DRAFT-23965
NOAA-NMFS-2020-0031-DRAFT-23966
NOAA-NMFS-2020-0031-DRAFT-23967
NOAA-NMFS-2020-0031-DRAFT-23968
NOAA-NMFS-2020-0031-DRAFT-23969
NOAA-NMFS-2020-0031-DRAFT-23970
NOAA-NMFS-2020-0031-DRAFT-23971
NOAA-NMFS-2020-0031-DRAFT-23972
NOAA-NMFS-2020-0031-DRAFT-23973
NOAA-NMFS-2020-0031-DRAFT-23974
NOAA-NMFS-2020-0031-DRAFT-23975
NOAA-NMFS-2020-0031-DRAFT-23976
NOAA-NMFS-2020-0031-DRAFT-23977
NOAA-NMFS-2020-0031-DRAFT-23978
NOAA-NMFS-2020-0031-DRAFT-23979
NOAA-NMFS-2020-0031-DRAFT-23980

Comment from Fedotova, Tatyana
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NOAA-NMFS-2020-0031-DRAFT-29044
NOAA-NMFS-2020-0031-DRAFT-29045
NOAA-NMFS-2020-0031-DRAFT-29046
NOAA-NMFS-2020-0031-DRAFT-29047
NOAA-NMFS-2020-0031-DRAFT-29048
NOAA-NMFS-2020-0031-DRAFT-29049
NOAA-NMFS-2020-0031-DRAFT-29050
NOAA-NMFS-2020-0031-DRAFT-29051
NOAA-NMFS-2020-0031-DRAFT-29052
NOAA-NMFS-2020-0031-DRAFT-29053
NOAA-NMFS-2020-0031-DRAFT-29054
NOAA-NMFS-2020-0031-DRAFT-29055
NOAA-NMFS-2020-0031-DRAFT-29056
NOAA-NMFS-2020-0031-DRAFT-29057
NOAA-NMFS-2020-0031-DRAFT-29058
NOAA-NMFS-2020-0031-DRAFT-29059
NOAA-NMFS-2020-0031-DRAFT-29060
NOAA-NMFS-2020-0031-DRAFT-29061
NOAA-NMFS-2020-0031-DRAFT-29062
NOAA-NMFS-2020-0031-DRAFT-29063
NOAA-NMFS-2020-0031-DRAFT-29064
NOAA-NMFS-2020-0031-DRAFT-29065
NOAA-NMFS-2020-0031-DRAFT-29066
NOAA-NMFS-2020-0031-DRAFT-29067
NOAA-NMFS-2020-0031-DRAFT-29068
NOAA-NMFS-2020-0031-DRAFT-29069
NOAA-NMFS-2020-0031-DRAFT-29070
NOAA-NMFS-2020-0031-DRAFT-29071
NOAA-NMFS-2020-0031-DRAFT-29072
NOAA-NMFS-2020-0031-DRAFT-29073
NOAA-NMFS-2020-0031-DRAFT-29074
NOAA-NMFS-2020-0031-DRAFT-29075
NOAA-NMFS-2020-0031-DRAFT-29076
NOAA-NMFS-2020-0031-DRAFT-29077
NOAA-NMFS-2020-0031-DRAFT-29078
NOAA-NMFS-2020-0031-DRAFT-29079
NOAA-NMFS-2020-0031-DRAFT-29080
NOAA-NMFS-2020-0031-DRAFT-29081
NOAA-NMFS-2020-0031-DRAFT-29082
NOAA-NMFS-2020-0031-DRAFT-29083
NOAA-NMFS-2020-0031-DRAFT-29084

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NOAA-NMFS-2020-0031-DRAFT-23981
NOAA-NMFS-2020-0031-DRAFT-23982
NOAA-NMFS-2020-0031-DRAFT-23983
NOAA-NMFS-2020-0031-DRAFT-23984
NOAA-NMFS-2020-0031-DRAFT-23985
NOAA-NMFS-2020-0031-DRAFT-23986
NOAA-NMFS-2020-0031-DRAFT-23987
NOAA-NMFS-2020-0031-DRAFT-23988
NOAA-NMFS-2020-0031-DRAFT-23989
NOAA-NMFS-2020-0031-DRAFT-23990
NOAA-NMFS-2020-0031-DRAFT-23991
NOAA-NMFS-2020-0031-DRAFT-23992
NOAA-NMFS-2020-0031-DRAFT-23993
NOAA-NMFS-2020-0031-DRAFT-23994
NOAA-NMFS-2020-0031-DRAFT-23995
NOAA-NMFS-2020-0031-DRAFT-23996
NOAA-NMFS-2020-0031-DRAFT-23997
NOAA-NMFS-2020-0031-DRAFT-23998
NOAA-NMFS-2020-0031-DRAFT-23999
NOAA-NMFS-2020-0031-DRAFT-24000
NOAA-NMFS-2020-0031-DRAFT-24001
NOAA-NMFS-2020-0031-DRAFT-24002
NOAA-NMFS-2020-0031-DRAFT-24003
NOAA-NMFS-2020-0031-DRAFT-24004
NOAA-NMFS-2020-0031-DRAFT-24005
NOAA-NMFS-2020-0031-DRAFT-24006
NOAA-NMFS-2020-0031-DRAFT-24007
NOAA-NMFS-2020-0031-DRAFT-24008
NOAA-NMFS-2020-0031-DRAFT-24009
NOAA-NMFS-2020-0031-DRAFT-24010
NOAA-NMFS-2020-0031-DRAFT-24011
NOAA-NMFS-2020-0031-DRAFT-24012
NOAA-NMFS-2020-0031-DRAFT-24013
NOAA-NMFS-2020-0031-DRAFT-24014
NOAA-NMFS-2020-0031-DRAFT-24015
NOAA-NMFS-2020-0031-DRAFT-24016
NOAA-NMFS-2020-0031-DRAFT-24017
NOAA-NMFS-2020-0031-DRAFT-24018
NOAA-NMFS-2020-0031-DRAFT-24019
NOAA-NMFS-2020-0031-DRAFT-24020
NOAA-NMFS-2020-0031-DRAFT-24021

Comment from Soto, Cheryl
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Comment from Suciu, Nathalie
Comment from O'Donnell , Mary
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NOAA-NMFS-2020-0031-DRAFT-29085
NOAA-NMFS-2020-0031-DRAFT-29086
NOAA-NMFS-2020-0031-DRAFT-29087
NOAA-NMFS-2020-0031-DRAFT-29088
NOAA-NMFS-2020-0031-DRAFT-29089
NOAA-NMFS-2020-0031-DRAFT-29090
NOAA-NMFS-2020-0031-DRAFT-29091
NOAA-NMFS-2020-0031-DRAFT-29092
NOAA-NMFS-2020-0031-DRAFT-29093
NOAA-NMFS-2020-0031-DRAFT-29094
NOAA-NMFS-2020-0031-DRAFT-29095
NOAA-NMFS-2020-0031-DRAFT-29096
NOAA-NMFS-2020-0031-DRAFT-29097
NOAA-NMFS-2020-0031-DRAFT-29098
NOAA-NMFS-2020-0031-DRAFT-29099
NOAA-NMFS-2020-0031-DRAFT-29100
NOAA-NMFS-2020-0031-DRAFT-29101
NOAA-NMFS-2020-0031-DRAFT-29102
NOAA-NMFS-2020-0031-DRAFT-29103
NOAA-NMFS-2020-0031-DRAFT-29104
NOAA-NMFS-2020-0031-DRAFT-29105
NOAA-NMFS-2020-0031-DRAFT-29106
NOAA-NMFS-2020-0031-DRAFT-29107
NOAA-NMFS-2020-0031-DRAFT-29108
NOAA-NMFS-2020-0031-DRAFT-29109
NOAA-NMFS-2020-0031-DRAFT-29110
NOAA-NMFS-2020-0031-DRAFT-29111
NOAA-NMFS-2020-0031-DRAFT-29112
NOAA-NMFS-2020-0031-DRAFT-29113
NOAA-NMFS-2020-0031-DRAFT-29114
NOAA-NMFS-2020-0031-DRAFT-29116
NOAA-NMFS-2020-0031-DRAFT-29117
NOAA-NMFS-2020-0031-DRAFT-29118
NOAA-NMFS-2020-0031-DRAFT-29119
NOAA-NMFS-2020-0031-DRAFT-29120
NOAA-NMFS-2020-0031-DRAFT-29121
NOAA-NMFS-2020-0031-DRAFT-29122
NOAA-NMFS-2020-0031-DRAFT-29123
NOAA-NMFS-2020-0031-DRAFT-29124
NOAA-NMFS-2020-0031-DRAFT-29125
NOAA-NMFS-2020-0031-DRAFT-29126

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NOAA-NMFS-2020-0031-DRAFT-24022
NOAA-NMFS-2020-0031-DRAFT-24023
NOAA-NMFS-2020-0031-DRAFT-24024
NOAA-NMFS-2020-0031-DRAFT-24025
NOAA-NMFS-2020-0031-DRAFT-24026
NOAA-NMFS-2020-0031-DRAFT-24027
NOAA-NMFS-2020-0031-DRAFT-24028
NOAA-NMFS-2020-0031-DRAFT-24029
NOAA-NMFS-2020-0031-DRAFT-24030
NOAA-NMFS-2020-0031-DRAFT-24031
NOAA-NMFS-2020-0031-DRAFT-24032
NOAA-NMFS-2020-0031-DRAFT-24033
NOAA-NMFS-2020-0031-DRAFT-24034
NOAA-NMFS-2020-0031-DRAFT-24035
NOAA-NMFS-2020-0031-DRAFT-24036
NOAA-NMFS-2020-0031-DRAFT-24037
NOAA-NMFS-2020-0031-DRAFT-24038
NOAA-NMFS-2020-0031-DRAFT-24039
NOAA-NMFS-2020-0031-DRAFT-24040
NOAA-NMFS-2020-0031-DRAFT-24041
NOAA-NMFS-2020-0031-DRAFT-24042
NOAA-NMFS-2020-0031-DRAFT-24043
NOAA-NMFS-2020-0031-DRAFT-24044
NOAA-NMFS-2020-0031-DRAFT-24045
NOAA-NMFS-2020-0031-DRAFT-24046
NOAA-NMFS-2020-0031-DRAFT-24047
NOAA-NMFS-2020-0031-DRAFT-24048
NOAA-NMFS-2020-0031-DRAFT-24049
NOAA-NMFS-2020-0031-DRAFT-24050
NOAA-NMFS-2020-0031-DRAFT-24051
NOAA-NMFS-2020-0031-DRAFT-24052
NOAA-NMFS-2020-0031-DRAFT-24053
NOAA-NMFS-2020-0031-DRAFT-24054
NOAA-NMFS-2020-0031-DRAFT-24055
NOAA-NMFS-2020-0031-DRAFT-24056
NOAA-NMFS-2020-0031-DRAFT-24057
NOAA-NMFS-2020-0031-DRAFT-24058
NOAA-NMFS-2020-0031-DRAFT-24059
NOAA-NMFS-2020-0031-DRAFT-24060
NOAA-NMFS-2020-0031-DRAFT-24061
NOAA-NMFS-2020-0031-DRAFT-24062

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NOAA-NMFS-2020-0031-DRAFT-29127
NOAA-NMFS-2020-0031-DRAFT-29128
NOAA-NMFS-2020-0031-DRAFT-29129
NOAA-NMFS-2020-0031-DRAFT-29130
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NOAA-NMFS-2020-0031-DRAFT-29132
NOAA-NMFS-2020-0031-DRAFT-29133
NOAA-NMFS-2020-0031-DRAFT-29134
NOAA-NMFS-2020-0031-DRAFT-29135
NOAA-NMFS-2020-0031-DRAFT-29136
NOAA-NMFS-2020-0031-DRAFT-29137
NOAA-NMFS-2020-0031-DRAFT-29138
NOAA-NMFS-2020-0031-DRAFT-29139
NOAA-NMFS-2020-0031-DRAFT-29140
NOAA-NMFS-2020-0031-DRAFT-29141
NOAA-NMFS-2020-0031-DRAFT-29142
NOAA-NMFS-2020-0031-DRAFT-29143
NOAA-NMFS-2020-0031-DRAFT-29144
NOAA-NMFS-2020-0031-DRAFT-29145
NOAA-NMFS-2020-0031-DRAFT-29146
NOAA-NMFS-2020-0031-DRAFT-29147
NOAA-NMFS-2020-0031-DRAFT-29148
NOAA-NMFS-2020-0031-DRAFT-29149
NOAA-NMFS-2020-0031-DRAFT-29150
NOAA-NMFS-2020-0031-DRAFT-29151
NOAA-NMFS-2020-0031-DRAFT-29152
NOAA-NMFS-2020-0031-DRAFT-29153
NOAA-NMFS-2020-0031-DRAFT-29154
NOAA-NMFS-2020-0031-DRAFT-29155
NOAA-NMFS-2020-0031-DRAFT-29156
NOAA-NMFS-2020-0031-DRAFT-29157
NOAA-NMFS-2020-0031-DRAFT-29158
NOAA-NMFS-2020-0031-DRAFT-29159
NOAA-NMFS-2020-0031-DRAFT-29160
NOAA-NMFS-2020-0031-DRAFT-29161
NOAA-NMFS-2020-0031-DRAFT-29162
NOAA-NMFS-2020-0031-DRAFT-29163
NOAA-NMFS-2020-0031-DRAFT-29164
NOAA-NMFS-2020-0031-DRAFT-29165
NOAA-NMFS-2020-0031-DRAFT-29166
NOAA-NMFS-2020-0031-DRAFT-29167

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NOAA-NMFS-2020-0031-DRAFT-24063
NOAA-NMFS-2020-0031-DRAFT-24064
NOAA-NMFS-2020-0031-DRAFT-24065
NOAA-NMFS-2020-0031-DRAFT-24066
NOAA-NMFS-2020-0031-DRAFT-24067
NOAA-NMFS-2020-0031-DRAFT-24068
NOAA-NMFS-2020-0031-DRAFT-24069
NOAA-NMFS-2020-0031-DRAFT-24070
NOAA-NMFS-2020-0031-DRAFT-24071
NOAA-NMFS-2020-0031-DRAFT-24072
NOAA-NMFS-2020-0031-DRAFT-24073
NOAA-NMFS-2020-0031-DRAFT-24074
NOAA-NMFS-2020-0031-DRAFT-24075
NOAA-NMFS-2020-0031-DRAFT-24076
NOAA-NMFS-2020-0031-DRAFT-24077
NOAA-NMFS-2020-0031-DRAFT-24078
NOAA-NMFS-2020-0031-DRAFT-24079
NOAA-NMFS-2020-0031-DRAFT-24080
NOAA-NMFS-2020-0031-DRAFT-24081
NOAA-NMFS-2020-0031-DRAFT-24082
NOAA-NMFS-2020-0031-DRAFT-24083
NOAA-NMFS-2020-0031-DRAFT-24084
NOAA-NMFS-2020-0031-DRAFT-24085
NOAA-NMFS-2020-0031-DRAFT-24086
NOAA-NMFS-2020-0031-DRAFT-24087
NOAA-NMFS-2020-0031-DRAFT-24088
NOAA-NMFS-2020-0031-DRAFT-24089
NOAA-NMFS-2020-0031-DRAFT-24090
NOAA-NMFS-2020-0031-DRAFT-24091
NOAA-NMFS-2020-0031-DRAFT-24092
NOAA-NMFS-2020-0031-DRAFT-24093
NOAA-NMFS-2020-0031-DRAFT-24094
NOAA-NMFS-2020-0031-DRAFT-24095
NOAA-NMFS-2020-0031-DRAFT-24096
NOAA-NMFS-2020-0031-DRAFT-24097
NOAA-NMFS-2020-0031-DRAFT-24098
NOAA-NMFS-2020-0031-DRAFT-24099
NOAA-NMFS-2020-0031-DRAFT-24100
NOAA-NMFS-2020-0031-DRAFT-24101
NOAA-NMFS-2020-0031-DRAFT-24102
NOAA-NMFS-2020-0031-DRAFT-24103

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NOAA-NMFS-2020-0031-DRAFT-29168
NOAA-NMFS-2020-0031-DRAFT-29169
NOAA-NMFS-2020-0031-DRAFT-29170
NOAA-NMFS-2020-0031-DRAFT-29171
NOAA-NMFS-2020-0031-DRAFT-29172
NOAA-NMFS-2020-0031-DRAFT-29173
NOAA-NMFS-2020-0031-DRAFT-29174
NOAA-NMFS-2020-0031-DRAFT-29175
NOAA-NMFS-2020-0031-DRAFT-29176
NOAA-NMFS-2020-0031-DRAFT-29177
NOAA-NMFS-2020-0031-DRAFT-29178
NOAA-NMFS-2020-0031-DRAFT-29179
NOAA-NMFS-2020-0031-DRAFT-29180
NOAA-NMFS-2020-0031-DRAFT-29181
NOAA-NMFS-2020-0031-DRAFT-29182
NOAA-NMFS-2020-0031-DRAFT-29183
NOAA-NMFS-2020-0031-DRAFT-29184
NOAA-NMFS-2020-0031-DRAFT-29185
NOAA-NMFS-2020-0031-DRAFT-29186
NOAA-NMFS-2020-0031-DRAFT-29187
NOAA-NMFS-2020-0031-DRAFT-29188
NOAA-NMFS-2020-0031-DRAFT-29189
NOAA-NMFS-2020-0031-DRAFT-29190
NOAA-NMFS-2020-0031-DRAFT-29191
NOAA-NMFS-2020-0031-DRAFT-29192
NOAA-NMFS-2020-0031-DRAFT-29193
NOAA-NMFS-2020-0031-DRAFT-29194
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NOAA-NMFS-2020-0031-DRAFT-29206
NOAA-NMFS-2020-0031-DRAFT-29207
NOAA-NMFS-2020-0031-DRAFT-29208

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NOAA-NMFS-2020-0031-DRAFT-24104
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NOAA-NMFS-2020-0031-DRAFT-24106
NOAA-NMFS-2020-0031-DRAFT-24107
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NOAA-NMFS-2020-0031-DRAFT-24117
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NOAA-NMFS-2020-0031-DRAFT-24120
NOAA-NMFS-2020-0031-DRAFT-24121
NOAA-NMFS-2020-0031-DRAFT-24122
NOAA-NMFS-2020-0031-DRAFT-24123
NOAA-NMFS-2020-0031-DRAFT-24124
NOAA-NMFS-2020-0031-DRAFT-24125
NOAA-NMFS-2020-0031-DRAFT-24126
NOAA-NMFS-2020-0031-DRAFT-24127
NOAA-NMFS-2020-0031-DRAFT-24128
NOAA-NMFS-2020-0031-DRAFT-24129
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NOAA-NMFS-2020-0031-DRAFT-24139
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NOAA-NMFS-2020-0031-DRAFT-24142
NOAA-NMFS-2020-0031-DRAFT-24143
NOAA-NMFS-2020-0031-DRAFT-24144

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NOAA-NMFS-2020-0031-DRAFT-29209
NOAA-NMFS-2020-0031-DRAFT-29210
NOAA-NMFS-2020-0031-DRAFT-29211
NOAA-NMFS-2020-0031-DRAFT-29212
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NOAA-NMFS-2020-0031-DRAFT-29214
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NOAA-NMFS-2020-0031-DRAFT-29219
NOAA-NMFS-2020-0031-DRAFT-29220
NOAA-NMFS-2020-0031-DRAFT-29221
NOAA-NMFS-2020-0031-DRAFT-29222
NOAA-NMFS-2020-0031-DRAFT-29223
NOAA-NMFS-2020-0031-DRAFT-29224
NOAA-NMFS-2020-0031-DRAFT-29225
NOAA-NMFS-2020-0031-DRAFT-29226
NOAA-NMFS-2020-0031-DRAFT-29227
NOAA-NMFS-2020-0031-DRAFT-29228
NOAA-NMFS-2020-0031-DRAFT-29229
NOAA-NMFS-2020-0031-DRAFT-29230
NOAA-NMFS-2020-0031-DRAFT-29231
NOAA-NMFS-2020-0031-DRAFT-29232
NOAA-NMFS-2020-0031-DRAFT-29233
NOAA-NMFS-2020-0031-DRAFT-29234
NOAA-NMFS-2020-0031-DRAFT-29235
NOAA-NMFS-2020-0031-DRAFT-29236
NOAA-NMFS-2020-0031-DRAFT-29237
NOAA-NMFS-2020-0031-DRAFT-29238
NOAA-NMFS-2020-0031-DRAFT-29239
NOAA-NMFS-2020-0031-DRAFT-29240
NOAA-NMFS-2020-0031-DRAFT-29241
NOAA-NMFS-2020-0031-DRAFT-29242
NOAA-NMFS-2020-0031-DRAFT-29243
NOAA-NMFS-2020-0031-DRAFT-29244
NOAA-NMFS-2020-0031-DRAFT-29245
NOAA-NMFS-2020-0031-DRAFT-29246
NOAA-NMFS-2020-0031-DRAFT-29247
NOAA-NMFS-2020-0031-DRAFT-29248
NOAA-NMFS-2020-0031-DRAFT-29249

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NOAA-NMFS-2020-0031-DRAFT-24145
NOAA-NMFS-2020-0031-DRAFT-24146
NOAA-NMFS-2020-0031-DRAFT-24147
NOAA-NMFS-2020-0031-DRAFT-24148
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NOAA-NMFS-2020-0031-DRAFT-24157
NOAA-NMFS-2020-0031-DRAFT-24158
NOAA-NMFS-2020-0031-DRAFT-24159
NOAA-NMFS-2020-0031-DRAFT-24160
NOAA-NMFS-2020-0031-DRAFT-24161
NOAA-NMFS-2020-0031-DRAFT-24162
NOAA-NMFS-2020-0031-DRAFT-24163
NOAA-NMFS-2020-0031-DRAFT-24164
NOAA-NMFS-2020-0031-DRAFT-24165
NOAA-NMFS-2020-0031-DRAFT-24166
NOAA-NMFS-2020-0031-DRAFT-24167
NOAA-NMFS-2020-0031-DRAFT-24168
NOAA-NMFS-2020-0031-DRAFT-24169
NOAA-NMFS-2020-0031-DRAFT-24170
NOAA-NMFS-2020-0031-DRAFT-24171
NOAA-NMFS-2020-0031-DRAFT-24172
NOAA-NMFS-2020-0031-DRAFT-24173
NOAA-NMFS-2020-0031-DRAFT-24174
NOAA-NMFS-2020-0031-DRAFT-24175
NOAA-NMFS-2020-0031-DRAFT-24176
NOAA-NMFS-2020-0031-DRAFT-24177
NOAA-NMFS-2020-0031-DRAFT-24178
NOAA-NMFS-2020-0031-DRAFT-24179
NOAA-NMFS-2020-0031-DRAFT-24180
NOAA-NMFS-2020-0031-DRAFT-24181
NOAA-NMFS-2020-0031-DRAFT-24182
NOAA-NMFS-2020-0031-DRAFT-24183
NOAA-NMFS-2020-0031-DRAFT-24184
NOAA-NMFS-2020-0031-DRAFT-24185

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NOAA-NMFS-2020-0031-DRAFT-29250
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NOAA-NMFS-2020-0031-DRAFT-29260
NOAA-NMFS-2020-0031-DRAFT-29261
NOAA-NMFS-2020-0031-DRAFT-29262
NOAA-NMFS-2020-0031-DRAFT-29263
NOAA-NMFS-2020-0031-DRAFT-29264
NOAA-NMFS-2020-0031-DRAFT-29265
NOAA-NMFS-2020-0031-DRAFT-29266
NOAA-NMFS-2020-0031-DRAFT-29267
NOAA-NMFS-2020-0031-DRAFT-29268
NOAA-NMFS-2020-0031-DRAFT-29269
NOAA-NMFS-2020-0031-DRAFT-29270
NOAA-NMFS-2020-0031-DRAFT-29271
NOAA-NMFS-2020-0031-DRAFT-29272
NOAA-NMFS-2020-0031-DRAFT-29273
NOAA-NMFS-2020-0031-DRAFT-29274
NOAA-NMFS-2020-0031-DRAFT-29275
NOAA-NMFS-2020-0031-DRAFT-29276
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NOAA-NMFS-2020-0031-DRAFT-29282
NOAA-NMFS-2020-0031-DRAFT-29283
NOAA-NMFS-2020-0031-DRAFT-29284
NOAA-NMFS-2020-0031-DRAFT-29285
NOAA-NMFS-2020-0031-DRAFT-29286
NOAA-NMFS-2020-0031-DRAFT-29287
NOAA-NMFS-2020-0031-DRAFT-29288
NOAA-NMFS-2020-0031-DRAFT-29289
NOAA-NMFS-2020-0031-DRAFT-29290

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NOAA-NMFS-2020-0031-DRAFT-24186
NOAA-NMFS-2020-0031-DRAFT-24187
NOAA-NMFS-2020-0031-DRAFT-24188
NOAA-NMFS-2020-0031-DRAFT-24189
NOAA-NMFS-2020-0031-DRAFT-24190
NOAA-NMFS-2020-0031-DRAFT-24191
NOAA-NMFS-2020-0031-DRAFT-24192
NOAA-NMFS-2020-0031-DRAFT-24193
NOAA-NMFS-2020-0031-DRAFT-24194
NOAA-NMFS-2020-0031-DRAFT-24195
NOAA-NMFS-2020-0031-DRAFT-24196
NOAA-NMFS-2020-0031-DRAFT-24197
NOAA-NMFS-2020-0031-DRAFT-24198
NOAA-NMFS-2020-0031-DRAFT-24199
NOAA-NMFS-2020-0031-DRAFT-24200
NOAA-NMFS-2020-0031-DRAFT-24201
NOAA-NMFS-2020-0031-DRAFT-24202
NOAA-NMFS-2020-0031-DRAFT-24203
NOAA-NMFS-2020-0031-DRAFT-24204
NOAA-NMFS-2020-0031-DRAFT-24205
NOAA-NMFS-2020-0031-DRAFT-24206
NOAA-NMFS-2020-0031-DRAFT-24207
NOAA-NMFS-2020-0031-DRAFT-24208
NOAA-NMFS-2020-0031-DRAFT-24209
NOAA-NMFS-2020-0031-DRAFT-24210
NOAA-NMFS-2020-0031-DRAFT-24211
NOAA-NMFS-2020-0031-DRAFT-24212
NOAA-NMFS-2020-0031-DRAFT-24213
NOAA-NMFS-2020-0031-DRAFT-24214
NOAA-NMFS-2020-0031-DRAFT-24215
NOAA-NMFS-2020-0031-DRAFT-24216
NOAA-NMFS-2020-0031-DRAFT-24217
NOAA-NMFS-2020-0031-DRAFT-24218
NOAA-NMFS-2020-0031-DRAFT-24219
NOAA-NMFS-2020-0031-DRAFT-24220
NOAA-NMFS-2020-0031-DRAFT-24221
NOAA-NMFS-2020-0031-DRAFT-24222
NOAA-NMFS-2020-0031-DRAFT-24223
NOAA-NMFS-2020-0031-DRAFT-24224
NOAA-NMFS-2020-0031-DRAFT-24225
NOAA-NMFS-2020-0031-DRAFT-24226

Comment from wray, anthea
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NOAA-NMFS-2020-0031-DRAFT-29291
NOAA-NMFS-2020-0031-DRAFT-29292
NOAA-NMFS-2020-0031-DRAFT-29293
NOAA-NMFS-2020-0031-DRAFT-29294
NOAA-NMFS-2020-0031-DRAFT-29295
NOAA-NMFS-2020-0031-DRAFT-29296
NOAA-NMFS-2020-0031-DRAFT-29297
NOAA-NMFS-2020-0031-DRAFT-29298
NOAA-NMFS-2020-0031-DRAFT-29299
NOAA-NMFS-2020-0031-DRAFT-29300
NOAA-NMFS-2020-0031-DRAFT-29301
NOAA-NMFS-2020-0031-DRAFT-29302
NOAA-NMFS-2020-0031-DRAFT-29303
NOAA-NMFS-2020-0031-DRAFT-29304
NOAA-NMFS-2020-0031-DRAFT-29305
NOAA-NMFS-2020-0031-DRAFT-29306
NOAA-NMFS-2020-0031-DRAFT-29307
NOAA-NMFS-2020-0031-DRAFT-29308
NOAA-NMFS-2020-0031-DRAFT-29309
NOAA-NMFS-2020-0031-DRAFT-29310
NOAA-NMFS-2020-0031-DRAFT-29311
NOAA-NMFS-2020-0031-DRAFT-29312
NOAA-NMFS-2020-0031-DRAFT-29313
NOAA-NMFS-2020-0031-DRAFT-29314
NOAA-NMFS-2020-0031-DRAFT-29315
NOAA-NMFS-2020-0031-DRAFT-29316
NOAA-NMFS-2020-0031-DRAFT-29317
NOAA-NMFS-2020-0031-DRAFT-29318
NOAA-NMFS-2020-0031-DRAFT-29319
NOAA-NMFS-2020-0031-DRAFT-29320
NOAA-NMFS-2020-0031-DRAFT-29321
NOAA-NMFS-2020-0031-DRAFT-29322
NOAA-NMFS-2020-0031-DRAFT-29323
NOAA-NMFS-2020-0031-DRAFT-29324
NOAA-NMFS-2020-0031-DRAFT-29325
NOAA-NMFS-2020-0031-DRAFT-29326
NOAA-NMFS-2020-0031-DRAFT-29327
NOAA-NMFS-2020-0031-DRAFT-29328
NOAA-NMFS-2020-0031-DRAFT-29329
NOAA-NMFS-2020-0031-DRAFT-29330
NOAA-NMFS-2020-0031-DRAFT-29331

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NOAA-NMFS-2020-0031-DRAFT-24227
NOAA-NMFS-2020-0031-DRAFT-24228
NOAA-NMFS-2020-0031-DRAFT-24229
NOAA-NMFS-2020-0031-DRAFT-24230
NOAA-NMFS-2020-0031-DRAFT-24231
NOAA-NMFS-2020-0031-DRAFT-24232
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NOAA-NMFS-2020-0031-DRAFT-24239
NOAA-NMFS-2020-0031-DRAFT-24240
NOAA-NMFS-2020-0031-DRAFT-24241
NOAA-NMFS-2020-0031-DRAFT-24242
NOAA-NMFS-2020-0031-DRAFT-24243
NOAA-NMFS-2020-0031-DRAFT-24244
NOAA-NMFS-2020-0031-DRAFT-24245
NOAA-NMFS-2020-0031-DRAFT-24246
NOAA-NMFS-2020-0031-DRAFT-24247
NOAA-NMFS-2020-0031-DRAFT-24248
NOAA-NMFS-2020-0031-DRAFT-24249
NOAA-NMFS-2020-0031-DRAFT-24250
NOAA-NMFS-2020-0031-DRAFT-24251
NOAA-NMFS-2020-0031-DRAFT-24252
NOAA-NMFS-2020-0031-DRAFT-24253
NOAA-NMFS-2020-0031-DRAFT-24254
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NOAA-NMFS-2020-0031-DRAFT-24259
NOAA-NMFS-2020-0031-DRAFT-24260
NOAA-NMFS-2020-0031-DRAFT-24261
NOAA-NMFS-2020-0031-DRAFT-24262
NOAA-NMFS-2020-0031-DRAFT-24263
NOAA-NMFS-2020-0031-DRAFT-24264
NOAA-NMFS-2020-0031-DRAFT-24265
NOAA-NMFS-2020-0031-DRAFT-24266
NOAA-NMFS-2020-0031-DRAFT-24267

Comment from Nichols, Beverly
Comment from Lentol, David
Comment from Noll, Sharon
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Comment from Abbondante, Jim
Comment from Wiorski, Marie
Comment from Scharin, Lisa
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NOAA-NMFS-2020-0031-DRAFT-29332
NOAA-NMFS-2020-0031-DRAFT-29333
NOAA-NMFS-2020-0031-DRAFT-29334
NOAA-NMFS-2020-0031-DRAFT-29335
NOAA-NMFS-2020-0031-DRAFT-29336
NOAA-NMFS-2020-0031-DRAFT-29337
NOAA-NMFS-2020-0031-DRAFT-29338
NOAA-NMFS-2020-0031-DRAFT-29339
NOAA-NMFS-2020-0031-DRAFT-29340
NOAA-NMFS-2020-0031-DRAFT-29341
NOAA-NMFS-2020-0031-DRAFT-29342
NOAA-NMFS-2020-0031-DRAFT-29343
NOAA-NMFS-2020-0031-DRAFT-29344
NOAA-NMFS-2020-0031-DRAFT-29345
NOAA-NMFS-2020-0031-DRAFT-29346
NOAA-NMFS-2020-0031-DRAFT-29347
NOAA-NMFS-2020-0031-DRAFT-29348
NOAA-NMFS-2020-0031-DRAFT-29349
NOAA-NMFS-2020-0031-DRAFT-29350
NOAA-NMFS-2020-0031-DRAFT-29351
NOAA-NMFS-2020-0031-DRAFT-29352
NOAA-NMFS-2020-0031-DRAFT-29353
NOAA-NMFS-2020-0031-DRAFT-29354
NOAA-NMFS-2020-0031-DRAFT-29355
NOAA-NMFS-2020-0031-DRAFT-29356
NOAA-NMFS-2020-0031-DRAFT-29357
NOAA-NMFS-2020-0031-DRAFT-29358
NOAA-NMFS-2020-0031-DRAFT-29359
NOAA-NMFS-2020-0031-DRAFT-29360
NOAA-NMFS-2020-0031-DRAFT-29361
NOAA-NMFS-2020-0031-DRAFT-29362
NOAA-NMFS-2020-0031-DRAFT-29363
NOAA-NMFS-2020-0031-DRAFT-29364
NOAA-NMFS-2020-0031-DRAFT-29365
NOAA-NMFS-2020-0031-DRAFT-29366
NOAA-NMFS-2020-0031-DRAFT-29367
NOAA-NMFS-2020-0031-DRAFT-29368
NOAA-NMFS-2020-0031-DRAFT-29369
NOAA-NMFS-2020-0031-DRAFT-29370
NOAA-NMFS-2020-0031-DRAFT-29371
NOAA-NMFS-2020-0031-DRAFT-29372

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NOAA-NMFS-2020-0031-DRAFT-24268
NOAA-NMFS-2020-0031-DRAFT-24269
NOAA-NMFS-2020-0031-DRAFT-24270
NOAA-NMFS-2020-0031-DRAFT-24271
NOAA-NMFS-2020-0031-DRAFT-24272
NOAA-NMFS-2020-0031-DRAFT-24273
NOAA-NMFS-2020-0031-DRAFT-24274
NOAA-NMFS-2020-0031-DRAFT-24275
NOAA-NMFS-2020-0031-DRAFT-24277
NOAA-NMFS-2020-0031-DRAFT-24278
NOAA-NMFS-2020-0031-DRAFT-24279
NOAA-NMFS-2020-0031-DRAFT-24280
NOAA-NMFS-2020-0031-DRAFT-24281
NOAA-NMFS-2020-0031-DRAFT-24282
NOAA-NMFS-2020-0031-DRAFT-24283
NOAA-NMFS-2020-0031-DRAFT-24284
NOAA-NMFS-2020-0031-DRAFT-24285
NOAA-NMFS-2020-0031-DRAFT-24286
NOAA-NMFS-2020-0031-DRAFT-24288
NOAA-NMFS-2020-0031-DRAFT-24289
NOAA-NMFS-2020-0031-DRAFT-24290
NOAA-NMFS-2020-0031-DRAFT-24291
NOAA-NMFS-2020-0031-DRAFT-24292
NOAA-NMFS-2020-0031-DRAFT-24293
NOAA-NMFS-2020-0031-DRAFT-24294
NOAA-NMFS-2020-0031-DRAFT-24295
NOAA-NMFS-2020-0031-DRAFT-24296
NOAA-NMFS-2020-0031-DRAFT-24297
NOAA-NMFS-2020-0031-DRAFT-24298
NOAA-NMFS-2020-0031-DRAFT-24299
NOAA-NMFS-2020-0031-DRAFT-24300
NOAA-NMFS-2020-0031-DRAFT-24301
NOAA-NMFS-2020-0031-DRAFT-24302
NOAA-NMFS-2020-0031-DRAFT-24303
NOAA-NMFS-2020-0031-DRAFT-24304
NOAA-NMFS-2020-0031-DRAFT-24305
NOAA-NMFS-2020-0031-DRAFT-24306
NOAA-NMFS-2020-0031-DRAFT-24307
NOAA-NMFS-2020-0031-DRAFT-24308
NOAA-NMFS-2020-0031-DRAFT-24309
NOAA-NMFS-2020-0031-DRAFT-24310

Comment from Slater-Giglioli, Julie
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NOAA-NMFS-2020-0031-DRAFT-29373
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NOAA-NMFS-2020-0031-DRAFT-29375
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NOAA-NMFS-2020-0031-DRAFT-29381
NOAA-NMFS-2020-0031-DRAFT-29382
NOAA-NMFS-2020-0031-DRAFT-29383
NOAA-NMFS-2020-0031-DRAFT-29384
NOAA-NMFS-2020-0031-DRAFT-29385
NOAA-NMFS-2020-0031-DRAFT-29386
NOAA-NMFS-2020-0031-DRAFT-29387
NOAA-NMFS-2020-0031-DRAFT-29388
NOAA-NMFS-2020-0031-DRAFT-29389
NOAA-NMFS-2020-0031-DRAFT-29390
NOAA-NMFS-2020-0031-DRAFT-29391
NOAA-NMFS-2020-0031-DRAFT-29392
NOAA-NMFS-2020-0031-DRAFT-29393
NOAA-NMFS-2020-0031-DRAFT-29394
NOAA-NMFS-2020-0031-DRAFT-29395
NOAA-NMFS-2020-0031-DRAFT-29396
NOAA-NMFS-2020-0031-DRAFT-29397
NOAA-NMFS-2020-0031-DRAFT-29398
NOAA-NMFS-2020-0031-DRAFT-29399
NOAA-NMFS-2020-0031-DRAFT-29400
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NOAA-NMFS-2020-0031-DRAFT-29402
NOAA-NMFS-2020-0031-DRAFT-29403
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NOAA-NMFS-2020-0031-DRAFT-29406
NOAA-NMFS-2020-0031-DRAFT-29407
NOAA-NMFS-2020-0031-DRAFT-29408
NOAA-NMFS-2020-0031-DRAFT-29409
NOAA-NMFS-2020-0031-DRAFT-29410
NOAA-NMFS-2020-0031-DRAFT-29411
NOAA-NMFS-2020-0031-DRAFT-29412
NOAA-NMFS-2020-0031-DRAFT-29413
NOAA-NMFS-2020-0031-DRAFT-29414

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NOAA-NMFS-2020-0031-DRAFT-24311
NOAA-NMFS-2020-0031-DRAFT-24312
NOAA-NMFS-2020-0031-DRAFT-24313
NOAA-NMFS-2020-0031-DRAFT-24314
NOAA-NMFS-2020-0031-DRAFT-24315
NOAA-NMFS-2020-0031-DRAFT-24316
NOAA-NMFS-2020-0031-DRAFT-24317
NOAA-NMFS-2020-0031-DRAFT-24318
NOAA-NMFS-2020-0031-DRAFT-24319
NOAA-NMFS-2020-0031-DRAFT-24320
NOAA-NMFS-2020-0031-DRAFT-24321
NOAA-NMFS-2020-0031-DRAFT-24322
NOAA-NMFS-2020-0031-DRAFT-24323
NOAA-NMFS-2020-0031-DRAFT-24324
NOAA-NMFS-2020-0031-DRAFT-24325
NOAA-NMFS-2020-0031-DRAFT-24326
NOAA-NMFS-2020-0031-DRAFT-24327
NOAA-NMFS-2020-0031-DRAFT-24328
NOAA-NMFS-2020-0031-DRAFT-24329
NOAA-NMFS-2020-0031-DRAFT-24330
NOAA-NMFS-2020-0031-DRAFT-24331
NOAA-NMFS-2020-0031-DRAFT-24332
NOAA-NMFS-2020-0031-DRAFT-24333
NOAA-NMFS-2020-0031-DRAFT-24334
NOAA-NMFS-2020-0031-DRAFT-24336
NOAA-NMFS-2020-0031-DRAFT-24339
NOAA-NMFS-2020-0031-DRAFT-24340
NOAA-NMFS-2020-0031-DRAFT-24341
NOAA-NMFS-2020-0031-DRAFT-24342
NOAA-NMFS-2020-0031-DRAFT-24343
NOAA-NMFS-2020-0031-DRAFT-24344
NOAA-NMFS-2020-0031-DRAFT-24345
NOAA-NMFS-2020-0031-DRAFT-24346
NOAA-NMFS-2020-0031-DRAFT-24347
NOAA-NMFS-2020-0031-DRAFT-24348
NOAA-NMFS-2020-0031-DRAFT-24349
NOAA-NMFS-2020-0031-DRAFT-24350
NOAA-NMFS-2020-0031-DRAFT-24351
NOAA-NMFS-2020-0031-DRAFT-24352
NOAA-NMFS-2020-0031-DRAFT-24353
NOAA-NMFS-2020-0031-DRAFT-24354

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NOAA-NMFS-2020-0031-DRAFT-29415
NOAA-NMFS-2020-0031-DRAFT-29416
NOAA-NMFS-2020-0031-DRAFT-29417
NOAA-NMFS-2020-0031-DRAFT-29418
NOAA-NMFS-2020-0031-DRAFT-29419
NOAA-NMFS-2020-0031-DRAFT-29420
NOAA-NMFS-2020-0031-DRAFT-29421
NOAA-NMFS-2020-0031-DRAFT-29422
NOAA-NMFS-2020-0031-DRAFT-29423
NOAA-NMFS-2020-0031-DRAFT-29424
NOAA-NMFS-2020-0031-DRAFT-29425
NOAA-NMFS-2020-0031-DRAFT-29426
NOAA-NMFS-2020-0031-DRAFT-29427
NOAA-NMFS-2020-0031-DRAFT-29428
NOAA-NMFS-2020-0031-DRAFT-29429
NOAA-NMFS-2020-0031-DRAFT-29430
NOAA-NMFS-2020-0031-DRAFT-29431
NOAA-NMFS-2020-0031-DRAFT-29432
NOAA-NMFS-2020-0031-DRAFT-29433
NOAA-NMFS-2020-0031-DRAFT-29434
NOAA-NMFS-2020-0031-DRAFT-29435
NOAA-NMFS-2020-0031-DRAFT-29436
NOAA-NMFS-2020-0031-DRAFT-29437
NOAA-NMFS-2020-0031-DRAFT-29438
NOAA-NMFS-2020-0031-DRAFT-29439
NOAA-NMFS-2020-0031-DRAFT-29440
NOAA-NMFS-2020-0031-DRAFT-29441
NOAA-NMFS-2020-0031-DRAFT-29442
NOAA-NMFS-2020-0031-DRAFT-29443
NOAA-NMFS-2020-0031-DRAFT-29444
NOAA-NMFS-2020-0031-DRAFT-29445
NOAA-NMFS-2020-0031-DRAFT-29446
NOAA-NMFS-2020-0031-DRAFT-29447
NOAA-NMFS-2020-0031-DRAFT-29448
NOAA-NMFS-2020-0031-DRAFT-29449
NOAA-NMFS-2020-0031-DRAFT-29450
NOAA-NMFS-2020-0031-DRAFT-29451
NOAA-NMFS-2020-0031-DRAFT-29452
NOAA-NMFS-2020-0031-DRAFT-29453
NOAA-NMFS-2020-0031-DRAFT-29454
NOAA-NMFS-2020-0031-DRAFT-29455

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NOAA-NMFS-2020-0031-DRAFT-24355
NOAA-NMFS-2020-0031-DRAFT-24356
NOAA-NMFS-2020-0031-DRAFT-24357
NOAA-NMFS-2020-0031-DRAFT-24358
NOAA-NMFS-2020-0031-DRAFT-24359
NOAA-NMFS-2020-0031-DRAFT-24360
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NOAA-NMFS-2020-0031-DRAFT-24368
NOAA-NMFS-2020-0031-DRAFT-24369
NOAA-NMFS-2020-0031-DRAFT-24370
NOAA-NMFS-2020-0031-DRAFT-24371
NOAA-NMFS-2020-0031-DRAFT-24372
NOAA-NMFS-2020-0031-DRAFT-24373
NOAA-NMFS-2020-0031-DRAFT-24374
NOAA-NMFS-2020-0031-DRAFT-24375
NOAA-NMFS-2020-0031-DRAFT-24376
NOAA-NMFS-2020-0031-DRAFT-24377
NOAA-NMFS-2020-0031-DRAFT-24378
NOAA-NMFS-2020-0031-DRAFT-24379
NOAA-NMFS-2020-0031-DRAFT-24380
NOAA-NMFS-2020-0031-DRAFT-24381
NOAA-NMFS-2020-0031-DRAFT-24382
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NOAA-NMFS-2020-0031-DRAFT-24386
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NOAA-NMFS-2020-0031-DRAFT-24390
NOAA-NMFS-2020-0031-DRAFT-24391
NOAA-NMFS-2020-0031-DRAFT-24392
NOAA-NMFS-2020-0031-DRAFT-24393
NOAA-NMFS-2020-0031-DRAFT-24394
NOAA-NMFS-2020-0031-DRAFT-24395

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NOAA-NMFS-2020-0031-DRAFT-29456
NOAA-NMFS-2020-0031-DRAFT-29457
NOAA-NMFS-2020-0031-DRAFT-29458
NOAA-NMFS-2020-0031-DRAFT-29459
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NOAA-NMFS-2020-0031-DRAFT-29466
NOAA-NMFS-2020-0031-DRAFT-29467
NOAA-NMFS-2020-0031-DRAFT-29468
NOAA-NMFS-2020-0031-DRAFT-29469
NOAA-NMFS-2020-0031-DRAFT-29470
NOAA-NMFS-2020-0031-DRAFT-29471
NOAA-NMFS-2020-0031-DRAFT-29472
NOAA-NMFS-2020-0031-DRAFT-29473
NOAA-NMFS-2020-0031-DRAFT-29474
NOAA-NMFS-2020-0031-DRAFT-29475
NOAA-NMFS-2020-0031-DRAFT-29476
NOAA-NMFS-2020-0031-DRAFT-29477
NOAA-NMFS-2020-0031-DRAFT-29478
NOAA-NMFS-2020-0031-DRAFT-29479
NOAA-NMFS-2020-0031-DRAFT-29480
NOAA-NMFS-2020-0031-DRAFT-29481
NOAA-NMFS-2020-0031-DRAFT-29482
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NOAA-NMFS-2020-0031-DRAFT-29485
NOAA-NMFS-2020-0031-DRAFT-29486
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NOAA-NMFS-2020-0031-DRAFT-29488
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NOAA-NMFS-2020-0031-DRAFT-29490
NOAA-NMFS-2020-0031-DRAFT-29491
NOAA-NMFS-2020-0031-DRAFT-29492
NOAA-NMFS-2020-0031-DRAFT-29493
NOAA-NMFS-2020-0031-DRAFT-29494
NOAA-NMFS-2020-0031-DRAFT-29495
NOAA-NMFS-2020-0031-DRAFT-29496

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NOAA-NMFS-2020-0031-DRAFT-24396
NOAA-NMFS-2020-0031-DRAFT-24397
NOAA-NMFS-2020-0031-DRAFT-24398
NOAA-NMFS-2020-0031-DRAFT-24399
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NOAA-NMFS-2020-0031-DRAFT-24406
NOAA-NMFS-2020-0031-DRAFT-24407
NOAA-NMFS-2020-0031-DRAFT-24408
NOAA-NMFS-2020-0031-DRAFT-24409
NOAA-NMFS-2020-0031-DRAFT-24410
NOAA-NMFS-2020-0031-DRAFT-24411
NOAA-NMFS-2020-0031-DRAFT-24412
NOAA-NMFS-2020-0031-DRAFT-24413
NOAA-NMFS-2020-0031-DRAFT-24414
NOAA-NMFS-2020-0031-DRAFT-24415
NOAA-NMFS-2020-0031-DRAFT-24416
NOAA-NMFS-2020-0031-DRAFT-24417
NOAA-NMFS-2020-0031-DRAFT-24418
NOAA-NMFS-2020-0031-DRAFT-24419
NOAA-NMFS-2020-0031-DRAFT-24420
NOAA-NMFS-2020-0031-DRAFT-24421
NOAA-NMFS-2020-0031-DRAFT-24422
NOAA-NMFS-2020-0031-DRAFT-24423
NOAA-NMFS-2020-0031-DRAFT-24424
NOAA-NMFS-2020-0031-DRAFT-24425
NOAA-NMFS-2020-0031-DRAFT-24426
NOAA-NMFS-2020-0031-DRAFT-24427
NOAA-NMFS-2020-0031-DRAFT-24428
NOAA-NMFS-2020-0031-DRAFT-24429
NOAA-NMFS-2020-0031-DRAFT-24430
NOAA-NMFS-2020-0031-DRAFT-24431
NOAA-NMFS-2020-0031-DRAFT-24432
NOAA-NMFS-2020-0031-DRAFT-24433
NOAA-NMFS-2020-0031-DRAFT-24434
NOAA-NMFS-2020-0031-DRAFT-24435
NOAA-NMFS-2020-0031-DRAFT-24436

Comment from Marhefka, Kathy
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NOAA-NMFS-2020-0031-DRAFT-29497
NOAA-NMFS-2020-0031-DRAFT-29498
NOAA-NMFS-2020-0031-DRAFT-29499
NOAA-NMFS-2020-0031-DRAFT-29500
NOAA-NMFS-2020-0031-DRAFT-29501
NOAA-NMFS-2020-0031-DRAFT-29502
NOAA-NMFS-2020-0031-DRAFT-29503
NOAA-NMFS-2020-0031-DRAFT-29504
NOAA-NMFS-2020-0031-DRAFT-29505
NOAA-NMFS-2020-0031-DRAFT-29506
NOAA-NMFS-2020-0031-DRAFT-29507
NOAA-NMFS-2020-0031-DRAFT-29508
NOAA-NMFS-2020-0031-DRAFT-29509
NOAA-NMFS-2020-0031-DRAFT-29510
NOAA-NMFS-2020-0031-DRAFT-29511
NOAA-NMFS-2020-0031-DRAFT-29512
NOAA-NMFS-2020-0031-DRAFT-29513
NOAA-NMFS-2020-0031-DRAFT-29514
NOAA-NMFS-2020-0031-DRAFT-29515
NOAA-NMFS-2020-0031-DRAFT-29516
NOAA-NMFS-2020-0031-DRAFT-29517
NOAA-NMFS-2020-0031-DRAFT-29518
NOAA-NMFS-2020-0031-DRAFT-29519
NOAA-NMFS-2020-0031-DRAFT-29521
NOAA-NMFS-2020-0031-DRAFT-29522
NOAA-NMFS-2020-0031-DRAFT-29523
NOAA-NMFS-2020-0031-DRAFT-29524
NOAA-NMFS-2020-0031-DRAFT-29525
NOAA-NMFS-2020-0031-DRAFT-29526
NOAA-NMFS-2020-0031-DRAFT-29527
NOAA-NMFS-2020-0031-DRAFT-29528
NOAA-NMFS-2020-0031-DRAFT-29529
NOAA-NMFS-2020-0031-DRAFT-29530
NOAA-NMFS-2020-0031-DRAFT-29531
NOAA-NMFS-2020-0031-DRAFT-29532
NOAA-NMFS-2020-0031-DRAFT-29533
NOAA-NMFS-2020-0031-DRAFT-29534
NOAA-NMFS-2020-0031-DRAFT-29535
NOAA-NMFS-2020-0031-DRAFT-29536
NOAA-NMFS-2020-0031-DRAFT-29537
NOAA-NMFS-2020-0031-DRAFT-29538

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NOAA-NMFS-2020-0031-DRAFT-24437
NOAA-NMFS-2020-0031-DRAFT-24438
NOAA-NMFS-2020-0031-DRAFT-24439
NOAA-NMFS-2020-0031-DRAFT-24440
NOAA-NMFS-2020-0031-DRAFT-24441
NOAA-NMFS-2020-0031-DRAFT-24442
NOAA-NMFS-2020-0031-DRAFT-24443
NOAA-NMFS-2020-0031-DRAFT-24444
NOAA-NMFS-2020-0031-DRAFT-24445
NOAA-NMFS-2020-0031-DRAFT-24446
NOAA-NMFS-2020-0031-DRAFT-24447
NOAA-NMFS-2020-0031-DRAFT-24448
NOAA-NMFS-2020-0031-DRAFT-24449
NOAA-NMFS-2020-0031-DRAFT-24450
NOAA-NMFS-2020-0031-DRAFT-24451
NOAA-NMFS-2020-0031-DRAFT-24452
NOAA-NMFS-2020-0031-DRAFT-24453
NOAA-NMFS-2020-0031-DRAFT-24454
NOAA-NMFS-2020-0031-DRAFT-24455
NOAA-NMFS-2020-0031-DRAFT-24456
NOAA-NMFS-2020-0031-DRAFT-24457
NOAA-NMFS-2020-0031-DRAFT-24458
NOAA-NMFS-2020-0031-DRAFT-24459
NOAA-NMFS-2020-0031-DRAFT-24460
NOAA-NMFS-2020-0031-DRAFT-24461
NOAA-NMFS-2020-0031-DRAFT-24462
NOAA-NMFS-2020-0031-DRAFT-24463
NOAA-NMFS-2020-0031-DRAFT-24464
NOAA-NMFS-2020-0031-DRAFT-24465
NOAA-NMFS-2020-0031-DRAFT-24466
NOAA-NMFS-2020-0031-DRAFT-24467
NOAA-NMFS-2020-0031-DRAFT-24468
NOAA-NMFS-2020-0031-DRAFT-24469
NOAA-NMFS-2020-0031-DRAFT-24470
NOAA-NMFS-2020-0031-DRAFT-24471
NOAA-NMFS-2020-0031-DRAFT-24472
NOAA-NMFS-2020-0031-DRAFT-24473
NOAA-NMFS-2020-0031-DRAFT-24474
NOAA-NMFS-2020-0031-DRAFT-24475
NOAA-NMFS-2020-0031-DRAFT-24476
NOAA-NMFS-2020-0031-DRAFT-24477

Comment from belafsky, ryane
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NOAA-NMFS-2020-0031-DRAFT-29539
NOAA-NMFS-2020-0031-DRAFT-29540
NOAA-NMFS-2020-0031-DRAFT-29541
NOAA-NMFS-2020-0031-DRAFT-29542
NOAA-NMFS-2020-0031-DRAFT-29543
NOAA-NMFS-2020-0031-DRAFT-29544
NOAA-NMFS-2020-0031-DRAFT-29545
NOAA-NMFS-2020-0031-DRAFT-29546
NOAA-NMFS-2020-0031-DRAFT-29547
NOAA-NMFS-2020-0031-DRAFT-29548
NOAA-NMFS-2020-0031-DRAFT-29549
NOAA-NMFS-2020-0031-DRAFT-29550
NOAA-NMFS-2020-0031-DRAFT-29551
NOAA-NMFS-2020-0031-DRAFT-29552
NOAA-NMFS-2020-0031-DRAFT-29553
NOAA-NMFS-2020-0031-DRAFT-29554
NOAA-NMFS-2020-0031-DRAFT-29555
NOAA-NMFS-2020-0031-DRAFT-29556
NOAA-NMFS-2020-0031-DRAFT-29557
NOAA-NMFS-2020-0031-DRAFT-29558
NOAA-NMFS-2020-0031-DRAFT-29559
NOAA-NMFS-2020-0031-DRAFT-29560
NOAA-NMFS-2020-0031-DRAFT-29561
NOAA-NMFS-2020-0031-DRAFT-29562
NOAA-NMFS-2020-0031-DRAFT-29563
NOAA-NMFS-2020-0031-DRAFT-29564
NOAA-NMFS-2020-0031-DRAFT-29565
NOAA-NMFS-2020-0031-DRAFT-29566
NOAA-NMFS-2020-0031-DRAFT-29567
NOAA-NMFS-2020-0031-DRAFT-29568
NOAA-NMFS-2020-0031-DRAFT-29569
NOAA-NMFS-2020-0031-DRAFT-29570
NOAA-NMFS-2020-0031-DRAFT-29571
NOAA-NMFS-2020-0031-DRAFT-29572
NOAA-NMFS-2020-0031-DRAFT-29573
NOAA-NMFS-2020-0031-DRAFT-29574
NOAA-NMFS-2020-0031-DRAFT-29575
NOAA-NMFS-2020-0031-DRAFT-29576
NOAA-NMFS-2020-0031-DRAFT-29577
NOAA-NMFS-2020-0031-DRAFT-29578
NOAA-NMFS-2020-0031-DRAFT-29579

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NOAA-NMFS-2020-0031-DRAFT-24478
NOAA-NMFS-2020-0031-DRAFT-24479
NOAA-NMFS-2020-0031-DRAFT-24480
NOAA-NMFS-2020-0031-DRAFT-24481
NOAA-NMFS-2020-0031-DRAFT-24482
NOAA-NMFS-2020-0031-DRAFT-24483
NOAA-NMFS-2020-0031-DRAFT-24484
NOAA-NMFS-2020-0031-DRAFT-24485
NOAA-NMFS-2020-0031-DRAFT-24486
NOAA-NMFS-2020-0031-DRAFT-24487
NOAA-NMFS-2020-0031-DRAFT-24488
NOAA-NMFS-2020-0031-DRAFT-24489
NOAA-NMFS-2020-0031-DRAFT-24490
NOAA-NMFS-2020-0031-DRAFT-24491
NOAA-NMFS-2020-0031-DRAFT-24492
NOAA-NMFS-2020-0031-DRAFT-24493
NOAA-NMFS-2020-0031-DRAFT-24494
NOAA-NMFS-2020-0031-DRAFT-24495
NOAA-NMFS-2020-0031-DRAFT-24496
NOAA-NMFS-2020-0031-DRAFT-24497
NOAA-NMFS-2020-0031-DRAFT-24498
NOAA-NMFS-2020-0031-DRAFT-24499
NOAA-NMFS-2020-0031-DRAFT-24500
NOAA-NMFS-2020-0031-DRAFT-24501
NOAA-NMFS-2020-0031-DRAFT-24502
NOAA-NMFS-2020-0031-DRAFT-24503
NOAA-NMFS-2020-0031-DRAFT-24504
NOAA-NMFS-2020-0031-DRAFT-24505
NOAA-NMFS-2020-0031-DRAFT-24506
NOAA-NMFS-2020-0031-DRAFT-24507
NOAA-NMFS-2020-0031-DRAFT-24508
NOAA-NMFS-2020-0031-DRAFT-24509
NOAA-NMFS-2020-0031-DRAFT-24510
NOAA-NMFS-2020-0031-DRAFT-24511
NOAA-NMFS-2020-0031-DRAFT-24512
NOAA-NMFS-2020-0031-DRAFT-24513
NOAA-NMFS-2020-0031-DRAFT-24514
NOAA-NMFS-2020-0031-DRAFT-24515
NOAA-NMFS-2020-0031-DRAFT-24516
NOAA-NMFS-2020-0031-DRAFT-24517
NOAA-NMFS-2020-0031-DRAFT-24518

Comment from Harper, Sean
Comment from Tanner, Milessa
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Comment from Wheeler, Kathleen
Comment from Heilman, Dionne
Comment from Rogers, Ruth
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NOAA-NMFS-2020-0031-DRAFT-29580
NOAA-NMFS-2020-0031-DRAFT-29581
NOAA-NMFS-2020-0031-DRAFT-29582
NOAA-NMFS-2020-0031-DRAFT-29583
NOAA-NMFS-2020-0031-DRAFT-29584
NOAA-NMFS-2020-0031-DRAFT-29585
NOAA-NMFS-2020-0031-DRAFT-29586
NOAA-NMFS-2020-0031-DRAFT-29587
NOAA-NMFS-2020-0031-DRAFT-29589
NOAA-NMFS-2020-0031-DRAFT-29590
NOAA-NMFS-2020-0031-DRAFT-29591
NOAA-NMFS-2020-0031-DRAFT-29592
NOAA-NMFS-2020-0031-DRAFT-29593
NOAA-NMFS-2020-0031-DRAFT-29594
NOAA-NMFS-2020-0031-DRAFT-29595
NOAA-NMFS-2020-0031-DRAFT-29596
NOAA-NMFS-2020-0031-DRAFT-29597
NOAA-NMFS-2020-0031-DRAFT-29598
NOAA-NMFS-2020-0031-DRAFT-29599
NOAA-NMFS-2020-0031-DRAFT-29600
NOAA-NMFS-2020-0031-DRAFT-29601
NOAA-NMFS-2020-0031-DRAFT-29602
NOAA-NMFS-2020-0031-DRAFT-29603
NOAA-NMFS-2020-0031-DRAFT-29604
NOAA-NMFS-2020-0031-DRAFT-29605
NOAA-NMFS-2020-0031-DRAFT-29606
NOAA-NMFS-2020-0031-DRAFT-29607
NOAA-NMFS-2020-0031-DRAFT-29608
NOAA-NMFS-2020-0031-DRAFT-29609
NOAA-NMFS-2020-0031-DRAFT-29610
NOAA-NMFS-2020-0031-DRAFT-29611
NOAA-NMFS-2020-0031-DRAFT-29612
NOAA-NMFS-2020-0031-DRAFT-29613
NOAA-NMFS-2020-0031-DRAFT-29614
NOAA-NMFS-2020-0031-DRAFT-29615
NOAA-NMFS-2020-0031-DRAFT-29616
NOAA-NMFS-2020-0031-DRAFT-29617
NOAA-NMFS-2020-0031-DRAFT-29618
NOAA-NMFS-2020-0031-DRAFT-29619
NOAA-NMFS-2020-0031-DRAFT-29620
NOAA-NMFS-2020-0031-DRAFT-29621

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NOAA-NMFS-2020-0031-DRAFT-24519
NOAA-NMFS-2020-0031-DRAFT-24520
NOAA-NMFS-2020-0031-DRAFT-24521
NOAA-NMFS-2020-0031-DRAFT-24522
NOAA-NMFS-2020-0031-DRAFT-24523
NOAA-NMFS-2020-0031-DRAFT-24524
NOAA-NMFS-2020-0031-DRAFT-24525
NOAA-NMFS-2020-0031-DRAFT-24526
NOAA-NMFS-2020-0031-DRAFT-24527
NOAA-NMFS-2020-0031-DRAFT-24528
NOAA-NMFS-2020-0031-DRAFT-24529
NOAA-NMFS-2020-0031-DRAFT-24530
NOAA-NMFS-2020-0031-DRAFT-24531
NOAA-NMFS-2020-0031-DRAFT-24532
NOAA-NMFS-2020-0031-DRAFT-24533
NOAA-NMFS-2020-0031-DRAFT-24534
NOAA-NMFS-2020-0031-DRAFT-24535
NOAA-NMFS-2020-0031-DRAFT-24536
NOAA-NMFS-2020-0031-DRAFT-24537
NOAA-NMFS-2020-0031-DRAFT-24538
NOAA-NMFS-2020-0031-DRAFT-24539
NOAA-NMFS-2020-0031-DRAFT-24541
NOAA-NMFS-2020-0031-DRAFT-24542
NOAA-NMFS-2020-0031-DRAFT-24543
NOAA-NMFS-2020-0031-DRAFT-24544
NOAA-NMFS-2020-0031-DRAFT-24545
NOAA-NMFS-2020-0031-DRAFT-24546
NOAA-NMFS-2020-0031-DRAFT-24547
NOAA-NMFS-2020-0031-DRAFT-24548
NOAA-NMFS-2020-0031-DRAFT-24549
NOAA-NMFS-2020-0031-DRAFT-24550
NOAA-NMFS-2020-0031-DRAFT-24551
NOAA-NMFS-2020-0031-DRAFT-24552
NOAA-NMFS-2020-0031-DRAFT-24553
NOAA-NMFS-2020-0031-DRAFT-24554
NOAA-NMFS-2020-0031-DRAFT-24555
NOAA-NMFS-2020-0031-DRAFT-24556
NOAA-NMFS-2020-0031-DRAFT-24557
NOAA-NMFS-2020-0031-DRAFT-24558
NOAA-NMFS-2020-0031-DRAFT-24559
NOAA-NMFS-2020-0031-DRAFT-24560

Comment from Howe, Cherie
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NOAA-NMFS-2020-0031-DRAFT-29622
NOAA-NMFS-2020-0031-DRAFT-29623
NOAA-NMFS-2020-0031-DRAFT-29624
NOAA-NMFS-2020-0031-DRAFT-29625
NOAA-NMFS-2020-0031-DRAFT-29626
NOAA-NMFS-2020-0031-DRAFT-29627
NOAA-NMFS-2020-0031-DRAFT-29628
NOAA-NMFS-2020-0031-DRAFT-29629
NOAA-NMFS-2020-0031-DRAFT-29630
NOAA-NMFS-2020-0031-DRAFT-29631
NOAA-NMFS-2020-0031-DRAFT-29632
NOAA-NMFS-2020-0031-DRAFT-29633
NOAA-NMFS-2020-0031-DRAFT-29634
NOAA-NMFS-2020-0031-DRAFT-29635
NOAA-NMFS-2020-0031-DRAFT-29636
NOAA-NMFS-2020-0031-DRAFT-29637
NOAA-NMFS-2020-0031-DRAFT-29638
NOAA-NMFS-2020-0031-DRAFT-29639
NOAA-NMFS-2020-0031-DRAFT-29640
NOAA-NMFS-2020-0031-DRAFT-29641
NOAA-NMFS-2020-0031-DRAFT-29642
NOAA-NMFS-2020-0031-DRAFT-29643
NOAA-NMFS-2020-0031-DRAFT-29644
NOAA-NMFS-2020-0031-DRAFT-29645
NOAA-NMFS-2020-0031-DRAFT-29646
NOAA-NMFS-2020-0031-DRAFT-29647
NOAA-NMFS-2020-0031-DRAFT-29648
NOAA-NMFS-2020-0031-DRAFT-29649
NOAA-NMFS-2020-0031-DRAFT-29650
NOAA-NMFS-2020-0031-DRAFT-29651
NOAA-NMFS-2020-0031-DRAFT-29652
NOAA-NMFS-2020-0031-DRAFT-29653
NOAA-NMFS-2020-0031-DRAFT-29654
NOAA-NMFS-2020-0031-DRAFT-29655
NOAA-NMFS-2020-0031-DRAFT-29656
NOAA-NMFS-2020-0031-DRAFT-29657
NOAA-NMFS-2020-0031-DRAFT-29658
NOAA-NMFS-2020-0031-DRAFT-29659
NOAA-NMFS-2020-0031-DRAFT-29660
NOAA-NMFS-2020-0031-DRAFT-29661
NOAA-NMFS-2020-0031-DRAFT-29662

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NOAA-NMFS-2020-0031-DRAFT-24561
NOAA-NMFS-2020-0031-DRAFT-24562
NOAA-NMFS-2020-0031-DRAFT-24563
NOAA-NMFS-2020-0031-DRAFT-24564
NOAA-NMFS-2020-0031-DRAFT-24565
NOAA-NMFS-2020-0031-DRAFT-24566
NOAA-NMFS-2020-0031-DRAFT-24567
NOAA-NMFS-2020-0031-DRAFT-24568
NOAA-NMFS-2020-0031-DRAFT-24569
NOAA-NMFS-2020-0031-DRAFT-24570
NOAA-NMFS-2020-0031-DRAFT-24571
NOAA-NMFS-2020-0031-DRAFT-24572
NOAA-NMFS-2020-0031-DRAFT-24573
NOAA-NMFS-2020-0031-DRAFT-24574
NOAA-NMFS-2020-0031-DRAFT-24575
NOAA-NMFS-2020-0031-DRAFT-24576
NOAA-NMFS-2020-0031-DRAFT-24577
NOAA-NMFS-2020-0031-DRAFT-24578
NOAA-NMFS-2020-0031-DRAFT-24579
NOAA-NMFS-2020-0031-DRAFT-24580
NOAA-NMFS-2020-0031-DRAFT-24581
NOAA-NMFS-2020-0031-DRAFT-24582
NOAA-NMFS-2020-0031-DRAFT-24583
NOAA-NMFS-2020-0031-DRAFT-24584
NOAA-NMFS-2020-0031-DRAFT-24585
NOAA-NMFS-2020-0031-DRAFT-24586
NOAA-NMFS-2020-0031-DRAFT-24587
NOAA-NMFS-2020-0031-DRAFT-24588
NOAA-NMFS-2020-0031-DRAFT-24589
NOAA-NMFS-2020-0031-DRAFT-24596
NOAA-NMFS-2020-0031-DRAFT-24597
NOAA-NMFS-2020-0031-DRAFT-24598
NOAA-NMFS-2020-0031-DRAFT-24599
NOAA-NMFS-2020-0031-DRAFT-24600
NOAA-NMFS-2020-0031-DRAFT-24601
NOAA-NMFS-2020-0031-DRAFT-24602
NOAA-NMFS-2020-0031-DRAFT-24603
NOAA-NMFS-2020-0031-DRAFT-24604
NOAA-NMFS-2020-0031-DRAFT-24605
NOAA-NMFS-2020-0031-DRAFT-24606
NOAA-NMFS-2020-0031-DRAFT-24607

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NOAA-NMFS-2020-0031-DRAFT-29663
NOAA-NMFS-2020-0031-DRAFT-29664
NOAA-NMFS-2020-0031-DRAFT-29665
NOAA-NMFS-2020-0031-DRAFT-29666
NOAA-NMFS-2020-0031-DRAFT-29667
NOAA-NMFS-2020-0031-DRAFT-29668
NOAA-NMFS-2020-0031-DRAFT-29669
NOAA-NMFS-2020-0031-DRAFT-29670
NOAA-NMFS-2020-0031-DRAFT-29671
NOAA-NMFS-2020-0031-DRAFT-29672
NOAA-NMFS-2020-0031-DRAFT-29673
NOAA-NMFS-2020-0031-DRAFT-29674
NOAA-NMFS-2020-0031-DRAFT-29675
NOAA-NMFS-2020-0031-DRAFT-29676
NOAA-NMFS-2020-0031-DRAFT-29677
NOAA-NMFS-2020-0031-DRAFT-29678
NOAA-NMFS-2020-0031-DRAFT-29679
NOAA-NMFS-2020-0031-DRAFT-29680
NOAA-NMFS-2020-0031-DRAFT-29681
NOAA-NMFS-2020-0031-DRAFT-29682
NOAA-NMFS-2020-0031-DRAFT-29683
NOAA-NMFS-2020-0031-DRAFT-29684
NOAA-NMFS-2020-0031-DRAFT-29685
NOAA-NMFS-2020-0031-DRAFT-29686
NOAA-NMFS-2020-0031-DRAFT-29687
NOAA-NMFS-2020-0031-DRAFT-29688
NOAA-NMFS-2020-0031-DRAFT-29689
NOAA-NMFS-2020-0031-DRAFT-29690
NOAA-NMFS-2020-0031-DRAFT-29691
NOAA-NMFS-2020-0031-DRAFT-29692
NOAA-NMFS-2020-0031-DRAFT-29693
NOAA-NMFS-2020-0031-DRAFT-29694
NOAA-NMFS-2020-0031-DRAFT-29695
NOAA-NMFS-2020-0031-DRAFT-29696
NOAA-NMFS-2020-0031-DRAFT-29697
NOAA-NMFS-2020-0031-DRAFT-29698
NOAA-NMFS-2020-0031-DRAFT-29699
NOAA-NMFS-2020-0031-DRAFT-29700
NOAA-NMFS-2020-0031-DRAFT-29701
NOAA-NMFS-2020-0031-DRAFT-29702
NOAA-NMFS-2020-0031-DRAFT-29703

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NOAA-NMFS-2020-0031-DRAFT-24608
NOAA-NMFS-2020-0031-DRAFT-24609
NOAA-NMFS-2020-0031-DRAFT-24610
NOAA-NMFS-2020-0031-DRAFT-24611
NOAA-NMFS-2020-0031-DRAFT-24612
NOAA-NMFS-2020-0031-DRAFT-24613
NOAA-NMFS-2020-0031-DRAFT-24614
NOAA-NMFS-2020-0031-DRAFT-24615
NOAA-NMFS-2020-0031-DRAFT-24616
NOAA-NMFS-2020-0031-DRAFT-24617
NOAA-NMFS-2020-0031-DRAFT-24618
NOAA-NMFS-2020-0031-DRAFT-24619
NOAA-NMFS-2020-0031-DRAFT-24620
NOAA-NMFS-2020-0031-DRAFT-24621
NOAA-NMFS-2020-0031-DRAFT-24622
NOAA-NMFS-2020-0031-DRAFT-24623
NOAA-NMFS-2020-0031-DRAFT-24624
NOAA-NMFS-2020-0031-DRAFT-24625
NOAA-NMFS-2020-0031-DRAFT-24626
NOAA-NMFS-2020-0031-DRAFT-24627
NOAA-NMFS-2020-0031-DRAFT-24628
NOAA-NMFS-2020-0031-DRAFT-24629
NOAA-NMFS-2020-0031-DRAFT-24630
NOAA-NMFS-2020-0031-DRAFT-24631
NOAA-NMFS-2020-0031-DRAFT-24632
NOAA-NMFS-2020-0031-DRAFT-24633
NOAA-NMFS-2020-0031-DRAFT-24634
NOAA-NMFS-2020-0031-DRAFT-24635
NOAA-NMFS-2020-0031-DRAFT-24636
NOAA-NMFS-2020-0031-DRAFT-24637
NOAA-NMFS-2020-0031-DRAFT-24638
NOAA-NMFS-2020-0031-DRAFT-24639
NOAA-NMFS-2020-0031-DRAFT-24640
NOAA-NMFS-2020-0031-DRAFT-24641
NOAA-NMFS-2020-0031-DRAFT-24642
NOAA-NMFS-2020-0031-DRAFT-24643
NOAA-NMFS-2020-0031-DRAFT-24644
NOAA-NMFS-2020-0031-DRAFT-24645
NOAA-NMFS-2020-0031-DRAFT-24646
NOAA-NMFS-2020-0031-DRAFT-24647
NOAA-NMFS-2020-0031-DRAFT-24648

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NOAA-NMFS-2020-0031-DRAFT-29704
NOAA-NMFS-2020-0031-DRAFT-29705
NOAA-NMFS-2020-0031-DRAFT-29706
NOAA-NMFS-2020-0031-DRAFT-29707
NOAA-NMFS-2020-0031-DRAFT-29708
NOAA-NMFS-2020-0031-DRAFT-29709
NOAA-NMFS-2020-0031-DRAFT-29710
NOAA-NMFS-2020-0031-DRAFT-29711
NOAA-NMFS-2020-0031-DRAFT-29712
NOAA-NMFS-2020-0031-DRAFT-29713
NOAA-NMFS-2020-0031-DRAFT-29714
NOAA-NMFS-2020-0031-DRAFT-29715
NOAA-NMFS-2020-0031-DRAFT-29716
NOAA-NMFS-2020-0031-DRAFT-29717
NOAA-NMFS-2020-0031-DRAFT-29718
NOAA-NMFS-2020-0031-DRAFT-29719
NOAA-NMFS-2020-0031-DRAFT-29720
NOAA-NMFS-2020-0031-DRAFT-29721
NOAA-NMFS-2020-0031-DRAFT-29722
NOAA-NMFS-2020-0031-DRAFT-29723
NOAA-NMFS-2020-0031-DRAFT-29724
NOAA-NMFS-2020-0031-DRAFT-29725
NOAA-NMFS-2020-0031-DRAFT-29726
NOAA-NMFS-2020-0031-DRAFT-29727
NOAA-NMFS-2020-0031-DRAFT-29728
NOAA-NMFS-2020-0031-DRAFT-29729
NOAA-NMFS-2020-0031-DRAFT-29730
NOAA-NMFS-2020-0031-DRAFT-29731
NOAA-NMFS-2020-0031-DRAFT-29732
NOAA-NMFS-2020-0031-DRAFT-29733
NOAA-NMFS-2020-0031-DRAFT-29734
NOAA-NMFS-2020-0031-DRAFT-29735
NOAA-NMFS-2020-0031-DRAFT-29736
NOAA-NMFS-2020-0031-DRAFT-29737
NOAA-NMFS-2020-0031-DRAFT-29738
NOAA-NMFS-2020-0031-DRAFT-29739
NOAA-NMFS-2020-0031-DRAFT-29740
NOAA-NMFS-2020-0031-DRAFT-29741
NOAA-NMFS-2020-0031-DRAFT-29742
NOAA-NMFS-2020-0031-DRAFT-29743
NOAA-NMFS-2020-0031-DRAFT-29744

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NOAA-NMFS-2020-0031-DRAFT-24649
NOAA-NMFS-2020-0031-DRAFT-24650
NOAA-NMFS-2020-0031-DRAFT-24651
NOAA-NMFS-2020-0031-DRAFT-24652
NOAA-NMFS-2020-0031-DRAFT-24653
NOAA-NMFS-2020-0031-DRAFT-24654
NOAA-NMFS-2020-0031-DRAFT-24655
NOAA-NMFS-2020-0031-DRAFT-24656
NOAA-NMFS-2020-0031-DRAFT-24657
NOAA-NMFS-2020-0031-DRAFT-24658
NOAA-NMFS-2020-0031-DRAFT-24659
NOAA-NMFS-2020-0031-DRAFT-24660
NOAA-NMFS-2020-0031-DRAFT-24661
NOAA-NMFS-2020-0031-DRAFT-24662
NOAA-NMFS-2020-0031-DRAFT-24663
NOAA-NMFS-2020-0031-DRAFT-24664
NOAA-NMFS-2020-0031-DRAFT-24665
NOAA-NMFS-2020-0031-DRAFT-24666
NOAA-NMFS-2020-0031-DRAFT-24667
NOAA-NMFS-2020-0031-DRAFT-24668
NOAA-NMFS-2020-0031-DRAFT-24669
NOAA-NMFS-2020-0031-DRAFT-24670
NOAA-NMFS-2020-0031-DRAFT-24671
NOAA-NMFS-2020-0031-DRAFT-24672
NOAA-NMFS-2020-0031-DRAFT-24673
NOAA-NMFS-2020-0031-DRAFT-24674
NOAA-NMFS-2020-0031-DRAFT-24675
NOAA-NMFS-2020-0031-DRAFT-24676
NOAA-NMFS-2020-0031-DRAFT-24677
NOAA-NMFS-2020-0031-DRAFT-24678
NOAA-NMFS-2020-0031-DRAFT-24679
NOAA-NMFS-2020-0031-DRAFT-24680
NOAA-NMFS-2020-0031-DRAFT-24681
NOAA-NMFS-2020-0031-DRAFT-24682
NOAA-NMFS-2020-0031-DRAFT-24683
NOAA-NMFS-2020-0031-DRAFT-24684
NOAA-NMFS-2020-0031-DRAFT-24685
NOAA-NMFS-2020-0031-DRAFT-24686
NOAA-NMFS-2020-0031-DRAFT-24687
NOAA-NMFS-2020-0031-DRAFT-24688
NOAA-NMFS-2020-0031-DRAFT-24689

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NOAA-NMFS-2020-0031-DRAFT-29745
NOAA-NMFS-2020-0031-DRAFT-29746
NOAA-NMFS-2020-0031-DRAFT-29747
NOAA-NMFS-2020-0031-DRAFT-29748
NOAA-NMFS-2020-0031-DRAFT-29749
NOAA-NMFS-2020-0031-DRAFT-29750
NOAA-NMFS-2020-0031-DRAFT-29751
NOAA-NMFS-2020-0031-DRAFT-29752
NOAA-NMFS-2020-0031-DRAFT-29753
NOAA-NMFS-2020-0031-DRAFT-29754
NOAA-NMFS-2020-0031-DRAFT-29755
NOAA-NMFS-2020-0031-DRAFT-29756
NOAA-NMFS-2020-0031-DRAFT-29757
NOAA-NMFS-2020-0031-DRAFT-29758
NOAA-NMFS-2020-0031-DRAFT-29759
NOAA-NMFS-2020-0031-DRAFT-29760
NOAA-NMFS-2020-0031-DRAFT-29761
NOAA-NMFS-2020-0031-DRAFT-29762
NOAA-NMFS-2020-0031-DRAFT-29763
NOAA-NMFS-2020-0031-DRAFT-29764
NOAA-NMFS-2020-0031-DRAFT-29765
NOAA-NMFS-2020-0031-DRAFT-29766
NOAA-NMFS-2020-0031-DRAFT-29767
NOAA-NMFS-2020-0031-DRAFT-29768
NOAA-NMFS-2020-0031-DRAFT-29769
NOAA-NMFS-2020-0031-DRAFT-29770
NOAA-NMFS-2020-0031-DRAFT-29771
NOAA-NMFS-2020-0031-DRAFT-29772
NOAA-NMFS-2020-0031-DRAFT-29773
NOAA-NMFS-2020-0031-DRAFT-29774
NOAA-NMFS-2020-0031-DRAFT-29775
NOAA-NMFS-2020-0031-DRAFT-29776
NOAA-NMFS-2020-0031-DRAFT-29777
NOAA-NMFS-2020-0031-DRAFT-29778
NOAA-NMFS-2020-0031-DRAFT-29779
NOAA-NMFS-2020-0031-DRAFT-29780
NOAA-NMFS-2020-0031-DRAFT-29781
NOAA-NMFS-2020-0031-DRAFT-29782
NOAA-NMFS-2020-0031-DRAFT-29783
NOAA-NMFS-2020-0031-DRAFT-29784
NOAA-NMFS-2020-0031-DRAFT-29785

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NOAA-NMFS-2020-0031-DRAFT-24690
NOAA-NMFS-2020-0031-DRAFT-24691
NOAA-NMFS-2020-0031-DRAFT-24692
NOAA-NMFS-2020-0031-DRAFT-24693
NOAA-NMFS-2020-0031-DRAFT-24694
NOAA-NMFS-2020-0031-DRAFT-24695
NOAA-NMFS-2020-0031-DRAFT-24696
NOAA-NMFS-2020-0031-DRAFT-24697
NOAA-NMFS-2020-0031-DRAFT-24698
NOAA-NMFS-2020-0031-DRAFT-24699
NOAA-NMFS-2020-0031-DRAFT-24700
NOAA-NMFS-2020-0031-DRAFT-24701
NOAA-NMFS-2020-0031-DRAFT-24702
NOAA-NMFS-2020-0031-DRAFT-24703
NOAA-NMFS-2020-0031-DRAFT-24704
NOAA-NMFS-2020-0031-DRAFT-24705
NOAA-NMFS-2020-0031-DRAFT-24706
NOAA-NMFS-2020-0031-DRAFT-24707
NOAA-NMFS-2020-0031-DRAFT-24708
NOAA-NMFS-2020-0031-DRAFT-24709
NOAA-NMFS-2020-0031-DRAFT-24710
NOAA-NMFS-2020-0031-DRAFT-24711
NOAA-NMFS-2020-0031-DRAFT-24712
NOAA-NMFS-2020-0031-DRAFT-24713
NOAA-NMFS-2020-0031-DRAFT-24714
NOAA-NMFS-2020-0031-DRAFT-24715
NOAA-NMFS-2020-0031-DRAFT-24716
NOAA-NMFS-2020-0031-DRAFT-24717
NOAA-NMFS-2020-0031-DRAFT-24718
NOAA-NMFS-2020-0031-DRAFT-24719
NOAA-NMFS-2020-0031-DRAFT-24720
NOAA-NMFS-2020-0031-DRAFT-24721
NOAA-NMFS-2020-0031-DRAFT-24722
NOAA-NMFS-2020-0031-DRAFT-24723
NOAA-NMFS-2020-0031-DRAFT-24724
NOAA-NMFS-2020-0031-DRAFT-24725
NOAA-NMFS-2020-0031-DRAFT-24726
NOAA-NMFS-2020-0031-DRAFT-24727
NOAA-NMFS-2020-0031-DRAFT-24728
NOAA-NMFS-2020-0031-DRAFT-24729
NOAA-NMFS-2020-0031-DRAFT-24730

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NOAA-NMFS-2020-0031-DRAFT-29786
NOAA-NMFS-2020-0031-DRAFT-29787
NOAA-NMFS-2020-0031-DRAFT-29788
NOAA-NMFS-2020-0031-DRAFT-29789
NOAA-NMFS-2020-0031-DRAFT-29790
NOAA-NMFS-2020-0031-DRAFT-29791
NOAA-NMFS-2020-0031-DRAFT-29792
NOAA-NMFS-2020-0031-DRAFT-29793
NOAA-NMFS-2020-0031-DRAFT-29794
NOAA-NMFS-2020-0031-DRAFT-29795
NOAA-NMFS-2020-0031-DRAFT-29796
NOAA-NMFS-2020-0031-DRAFT-29797
NOAA-NMFS-2020-0031-DRAFT-29798
NOAA-NMFS-2020-0031-DRAFT-29799
NOAA-NMFS-2020-0031-DRAFT-29800
NOAA-NMFS-2020-0031-DRAFT-29801
NOAA-NMFS-2020-0031-DRAFT-29802
NOAA-NMFS-2020-0031-DRAFT-29803
NOAA-NMFS-2020-0031-DRAFT-29804
NOAA-NMFS-2020-0031-DRAFT-29805
NOAA-NMFS-2020-0031-DRAFT-29806
NOAA-NMFS-2020-0031-DRAFT-29807
NOAA-NMFS-2020-0031-DRAFT-29808
NOAA-NMFS-2020-0031-DRAFT-29809
NOAA-NMFS-2020-0031-DRAFT-29810
NOAA-NMFS-2020-0031-DRAFT-29811
NOAA-NMFS-2020-0031-DRAFT-29812
NOAA-NMFS-2020-0031-DRAFT-29813
NOAA-NMFS-2020-0031-DRAFT-29814
NOAA-NMFS-2020-0031-DRAFT-29815
NOAA-NMFS-2020-0031-DRAFT-29816
NOAA-NMFS-2020-0031-DRAFT-29817
NOAA-NMFS-2020-0031-DRAFT-29818
NOAA-NMFS-2020-0031-DRAFT-29819
NOAA-NMFS-2020-0031-DRAFT-29820
NOAA-NMFS-2020-0031-DRAFT-29821
NOAA-NMFS-2020-0031-DRAFT-29822
NOAA-NMFS-2020-0031-DRAFT-29823
NOAA-NMFS-2020-0031-DRAFT-29824
NOAA-NMFS-2020-0031-DRAFT-29825
NOAA-NMFS-2020-0031-DRAFT-29826

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NOAA-NMFS-2020-0031-DRAFT-24731
NOAA-NMFS-2020-0031-DRAFT-24732
NOAA-NMFS-2020-0031-DRAFT-24733
NOAA-NMFS-2020-0031-DRAFT-24734
NOAA-NMFS-2020-0031-DRAFT-24735
NOAA-NMFS-2020-0031-DRAFT-24736
NOAA-NMFS-2020-0031-DRAFT-24737
NOAA-NMFS-2020-0031-DRAFT-24738
NOAA-NMFS-2020-0031-DRAFT-24739
NOAA-NMFS-2020-0031-DRAFT-24740
NOAA-NMFS-2020-0031-DRAFT-24741
NOAA-NMFS-2020-0031-DRAFT-24742
NOAA-NMFS-2020-0031-DRAFT-24743
NOAA-NMFS-2020-0031-DRAFT-24744
NOAA-NMFS-2020-0031-DRAFT-24745
NOAA-NMFS-2020-0031-DRAFT-24746
NOAA-NMFS-2020-0031-DRAFT-24747
NOAA-NMFS-2020-0031-DRAFT-24748
NOAA-NMFS-2020-0031-DRAFT-24749
NOAA-NMFS-2020-0031-DRAFT-24750
NOAA-NMFS-2020-0031-DRAFT-24751
NOAA-NMFS-2020-0031-DRAFT-24752
NOAA-NMFS-2020-0031-DRAFT-24753
NOAA-NMFS-2020-0031-DRAFT-24754
NOAA-NMFS-2020-0031-DRAFT-24755
NOAA-NMFS-2020-0031-DRAFT-24756
NOAA-NMFS-2020-0031-DRAFT-24757
NOAA-NMFS-2020-0031-DRAFT-24758
NOAA-NMFS-2020-0031-DRAFT-24759
NOAA-NMFS-2020-0031-DRAFT-24760
NOAA-NMFS-2020-0031-DRAFT-24761
NOAA-NMFS-2020-0031-DRAFT-24762
NOAA-NMFS-2020-0031-DRAFT-24763
NOAA-NMFS-2020-0031-DRAFT-24764
NOAA-NMFS-2020-0031-DRAFT-24765
NOAA-NMFS-2020-0031-DRAFT-24766
NOAA-NMFS-2020-0031-DRAFT-24767
NOAA-NMFS-2020-0031-DRAFT-24768
NOAA-NMFS-2020-0031-DRAFT-24769
NOAA-NMFS-2020-0031-DRAFT-24770
NOAA-NMFS-2020-0031-DRAFT-24771

Comment from MacPhail, Kristyn
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NOAA-NMFS-2020-0031-DRAFT-29827
NOAA-NMFS-2020-0031-DRAFT-29828
NOAA-NMFS-2020-0031-DRAFT-29829
NOAA-NMFS-2020-0031-DRAFT-29830
NOAA-NMFS-2020-0031-DRAFT-29831
NOAA-NMFS-2020-0031-DRAFT-29832
NOAA-NMFS-2020-0031-DRAFT-29833
NOAA-NMFS-2020-0031-DRAFT-29834
NOAA-NMFS-2020-0031-DRAFT-29835
NOAA-NMFS-2020-0031-DRAFT-29836
NOAA-NMFS-2020-0031-DRAFT-29837
NOAA-NMFS-2020-0031-DRAFT-29838
NOAA-NMFS-2020-0031-DRAFT-29839
NOAA-NMFS-2020-0031-DRAFT-29840
NOAA-NMFS-2020-0031-DRAFT-29841
NOAA-NMFS-2020-0031-DRAFT-29842
NOAA-NMFS-2020-0031-DRAFT-29843
NOAA-NMFS-2020-0031-DRAFT-29844
NOAA-NMFS-2020-0031-DRAFT-29845
NOAA-NMFS-2020-0031-DRAFT-29846
NOAA-NMFS-2020-0031-DRAFT-29847
NOAA-NMFS-2020-0031-DRAFT-29848
NOAA-NMFS-2020-0031-DRAFT-29849
NOAA-NMFS-2020-0031-DRAFT-29850
NOAA-NMFS-2020-0031-DRAFT-29851
NOAA-NMFS-2020-0031-DRAFT-29852
NOAA-NMFS-2020-0031-DRAFT-29853
NOAA-NMFS-2020-0031-DRAFT-29854
NOAA-NMFS-2020-0031-DRAFT-29855
NOAA-NMFS-2020-0031-DRAFT-29857
NOAA-NMFS-2020-0031-DRAFT-29858
NOAA-NMFS-2020-0031-DRAFT-29859
NOAA-NMFS-2020-0031-DRAFT-29860
NOAA-NMFS-2020-0031-DRAFT-29861
NOAA-NMFS-2020-0031-DRAFT-29862
NOAA-NMFS-2020-0031-DRAFT-29863
NOAA-NMFS-2020-0031-DRAFT-29864
NOAA-NMFS-2020-0031-DRAFT-29865
NOAA-NMFS-2020-0031-DRAFT-29866
NOAA-NMFS-2020-0031-DRAFT-29867
NOAA-NMFS-2020-0031-DRAFT-29868

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NOAA-NMFS-2020-0031-DRAFT-24772
NOAA-NMFS-2020-0031-DRAFT-24773
NOAA-NMFS-2020-0031-DRAFT-24774
NOAA-NMFS-2020-0031-DRAFT-24775
NOAA-NMFS-2020-0031-DRAFT-24776
NOAA-NMFS-2020-0031-DRAFT-24777
NOAA-NMFS-2020-0031-DRAFT-24778
NOAA-NMFS-2020-0031-DRAFT-24779
NOAA-NMFS-2020-0031-DRAFT-24780
NOAA-NMFS-2020-0031-DRAFT-24781
NOAA-NMFS-2020-0031-DRAFT-24782
NOAA-NMFS-2020-0031-DRAFT-24783
NOAA-NMFS-2020-0031-DRAFT-24784
NOAA-NMFS-2020-0031-DRAFT-24785
NOAA-NMFS-2020-0031-DRAFT-24786
NOAA-NMFS-2020-0031-DRAFT-24787
NOAA-NMFS-2020-0031-DRAFT-24788
NOAA-NMFS-2020-0031-DRAFT-24789
NOAA-NMFS-2020-0031-DRAFT-24790
NOAA-NMFS-2020-0031-DRAFT-24791
NOAA-NMFS-2020-0031-DRAFT-24792
NOAA-NMFS-2020-0031-DRAFT-24793
NOAA-NMFS-2020-0031-DRAFT-24794
NOAA-NMFS-2020-0031-DRAFT-24795
NOAA-NMFS-2020-0031-DRAFT-24796
NOAA-NMFS-2020-0031-DRAFT-24797
NOAA-NMFS-2020-0031-DRAFT-24798
NOAA-NMFS-2020-0031-DRAFT-24799
NOAA-NMFS-2020-0031-DRAFT-24800
NOAA-NMFS-2020-0031-DRAFT-24801
NOAA-NMFS-2020-0031-DRAFT-24802
NOAA-NMFS-2020-0031-DRAFT-24803
NOAA-NMFS-2020-0031-DRAFT-24804
NOAA-NMFS-2020-0031-DRAFT-24805
NOAA-NMFS-2020-0031-DRAFT-24806
NOAA-NMFS-2020-0031-DRAFT-24807
NOAA-NMFS-2020-0031-DRAFT-24808
NOAA-NMFS-2020-0031-DRAFT-24809
NOAA-NMFS-2020-0031-DRAFT-24810
NOAA-NMFS-2020-0031-DRAFT-24811
NOAA-NMFS-2020-0031-DRAFT-24812

Comment from Holtzhausen, Chris
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NOAA-NMFS-2020-0031-DRAFT-29869
NOAA-NMFS-2020-0031-DRAFT-29870
NOAA-NMFS-2020-0031-DRAFT-29871
NOAA-NMFS-2020-0031-DRAFT-29872
NOAA-NMFS-2020-0031-DRAFT-29873
NOAA-NMFS-2020-0031-DRAFT-29874
NOAA-NMFS-2020-0031-DRAFT-29875
NOAA-NMFS-2020-0031-DRAFT-29876
NOAA-NMFS-2020-0031-DRAFT-29877
NOAA-NMFS-2020-0031-DRAFT-29878
NOAA-NMFS-2020-0031-DRAFT-29879
NOAA-NMFS-2020-0031-DRAFT-29880
NOAA-NMFS-2020-0031-DRAFT-29881
NOAA-NMFS-2020-0031-DRAFT-29882
NOAA-NMFS-2020-0031-DRAFT-29883
NOAA-NMFS-2020-0031-DRAFT-29884
NOAA-NMFS-2020-0031-DRAFT-29885
NOAA-NMFS-2020-0031-DRAFT-29886
NOAA-NMFS-2020-0031-DRAFT-29887
NOAA-NMFS-2020-0031-DRAFT-29888
NOAA-NMFS-2020-0031-DRAFT-29889
NOAA-NMFS-2020-0031-DRAFT-29890
NOAA-NMFS-2020-0031-DRAFT-29891
NOAA-NMFS-2020-0031-DRAFT-29892
NOAA-NMFS-2020-0031-DRAFT-29893
NOAA-NMFS-2020-0031-DRAFT-29894
NOAA-NMFS-2020-0031-DRAFT-29895
NOAA-NMFS-2020-0031-DRAFT-29896
NOAA-NMFS-2020-0031-DRAFT-29897
NOAA-NMFS-2020-0031-DRAFT-29898
NOAA-NMFS-2020-0031-DRAFT-29899
NOAA-NMFS-2020-0031-DRAFT-29900
NOAA-NMFS-2020-0031-DRAFT-29901
NOAA-NMFS-2020-0031-DRAFT-29902
NOAA-NMFS-2020-0031-DRAFT-29903
NOAA-NMFS-2020-0031-DRAFT-29904
NOAA-NMFS-2020-0031-DRAFT-29905
NOAA-NMFS-2020-0031-DRAFT-29906
NOAA-NMFS-2020-0031-DRAFT-29907
NOAA-NMFS-2020-0031-DRAFT-29908
NOAA-NMFS-2020-0031-DRAFT-29909

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NOAA-NMFS-2020-0031-DRAFT-24813
NOAA-NMFS-2020-0031-DRAFT-24814
NOAA-NMFS-2020-0031-DRAFT-24815
NOAA-NMFS-2020-0031-DRAFT-24816
NOAA-NMFS-2020-0031-DRAFT-24817
NOAA-NMFS-2020-0031-DRAFT-24818
NOAA-NMFS-2020-0031-DRAFT-24819
NOAA-NMFS-2020-0031-DRAFT-24820
NOAA-NMFS-2020-0031-DRAFT-24821
NOAA-NMFS-2020-0031-DRAFT-24822
NOAA-NMFS-2020-0031-DRAFT-24823
NOAA-NMFS-2020-0031-DRAFT-24824
NOAA-NMFS-2020-0031-DRAFT-24825
NOAA-NMFS-2020-0031-DRAFT-24826
NOAA-NMFS-2020-0031-DRAFT-24827
NOAA-NMFS-2020-0031-DRAFT-24828
NOAA-NMFS-2020-0031-DRAFT-24829
NOAA-NMFS-2020-0031-DRAFT-24830
NOAA-NMFS-2020-0031-DRAFT-24831
NOAA-NMFS-2020-0031-DRAFT-24832
NOAA-NMFS-2020-0031-DRAFT-24833
NOAA-NMFS-2020-0031-DRAFT-24834
NOAA-NMFS-2020-0031-DRAFT-24835
NOAA-NMFS-2020-0031-DRAFT-24836
NOAA-NMFS-2020-0031-DRAFT-24837
NOAA-NMFS-2020-0031-DRAFT-24838
NOAA-NMFS-2020-0031-DRAFT-24839
NOAA-NMFS-2020-0031-DRAFT-24840
NOAA-NMFS-2020-0031-DRAFT-24841
NOAA-NMFS-2020-0031-DRAFT-24842
NOAA-NMFS-2020-0031-DRAFT-24843
NOAA-NMFS-2020-0031-DRAFT-24844
NOAA-NMFS-2020-0031-DRAFT-24845
NOAA-NMFS-2020-0031-DRAFT-24847
NOAA-NMFS-2020-0031-DRAFT-24859
NOAA-NMFS-2020-0031-DRAFT-24861
NOAA-NMFS-2020-0031-DRAFT-24862
NOAA-NMFS-2020-0031-DRAFT-24863
NOAA-NMFS-2020-0031-DRAFT-24864
NOAA-NMFS-2020-0031-DRAFT-24865
NOAA-NMFS-2020-0031-DRAFT-24866

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NOAA-NMFS-2020-0031-DRAFT-29910
NOAA-NMFS-2020-0031-DRAFT-29911
NOAA-NMFS-2020-0031-DRAFT-29912
NOAA-NMFS-2020-0031-DRAFT-29913
NOAA-NMFS-2020-0031-DRAFT-29914
NOAA-NMFS-2020-0031-DRAFT-29915
NOAA-NMFS-2020-0031-DRAFT-29916
NOAA-NMFS-2020-0031-DRAFT-29917
NOAA-NMFS-2020-0031-DRAFT-29918
NOAA-NMFS-2020-0031-DRAFT-29919
NOAA-NMFS-2020-0031-DRAFT-29920
NOAA-NMFS-2020-0031-DRAFT-29921
NOAA-NMFS-2020-0031-DRAFT-29922
NOAA-NMFS-2020-0031-DRAFT-29923
NOAA-NMFS-2020-0031-DRAFT-29924
NOAA-NMFS-2020-0031-DRAFT-29925
NOAA-NMFS-2020-0031-DRAFT-29926
NOAA-NMFS-2020-0031-DRAFT-29927
NOAA-NMFS-2020-0031-DRAFT-29928
NOAA-NMFS-2020-0031-DRAFT-29929
NOAA-NMFS-2020-0031-DRAFT-29930
NOAA-NMFS-2020-0031-DRAFT-29931
NOAA-NMFS-2020-0031-DRAFT-29932
NOAA-NMFS-2020-0031-DRAFT-29933
NOAA-NMFS-2020-0031-DRAFT-29934
NOAA-NMFS-2020-0031-DRAFT-29935
NOAA-NMFS-2020-0031-DRAFT-29936
NOAA-NMFS-2020-0031-DRAFT-29937
NOAA-NMFS-2020-0031-DRAFT-29938
NOAA-NMFS-2020-0031-DRAFT-29939
NOAA-NMFS-2020-0031-DRAFT-29940
NOAA-NMFS-2020-0031-DRAFT-29941
NOAA-NMFS-2020-0031-DRAFT-29942
NOAA-NMFS-2020-0031-DRAFT-29943
NOAA-NMFS-2020-0031-DRAFT-29944
NOAA-NMFS-2020-0031-DRAFT-29945
NOAA-NMFS-2020-0031-DRAFT-29946
NOAA-NMFS-2020-0031-DRAFT-29947
NOAA-NMFS-2020-0031-DRAFT-29948
NOAA-NMFS-2020-0031-DRAFT-29949
NOAA-NMFS-2020-0031-DRAFT-29950

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NOAA-NMFS-2020-0031-DRAFT-24867
NOAA-NMFS-2020-0031-DRAFT-24868
NOAA-NMFS-2020-0031-DRAFT-24869
NOAA-NMFS-2020-0031-DRAFT-24870
NOAA-NMFS-2020-0031-DRAFT-24871
NOAA-NMFS-2020-0031-DRAFT-24872
NOAA-NMFS-2020-0031-DRAFT-24873
NOAA-NMFS-2020-0031-DRAFT-24874
NOAA-NMFS-2020-0031-DRAFT-24875
NOAA-NMFS-2020-0031-DRAFT-24876
NOAA-NMFS-2020-0031-DRAFT-24877
NOAA-NMFS-2020-0031-DRAFT-24878
NOAA-NMFS-2020-0031-DRAFT-24879
NOAA-NMFS-2020-0031-DRAFT-24881
NOAA-NMFS-2020-0031-DRAFT-24882
NOAA-NMFS-2020-0031-DRAFT-24883
NOAA-NMFS-2020-0031-DRAFT-24884
NOAA-NMFS-2020-0031-DRAFT-24885
NOAA-NMFS-2020-0031-DRAFT-24886
NOAA-NMFS-2020-0031-DRAFT-24887
NOAA-NMFS-2020-0031-DRAFT-24888
NOAA-NMFS-2020-0031-DRAFT-24889
NOAA-NMFS-2020-0031-DRAFT-24890
NOAA-NMFS-2020-0031-DRAFT-24891
NOAA-NMFS-2020-0031-DRAFT-24892
NOAA-NMFS-2020-0031-DRAFT-24893
NOAA-NMFS-2020-0031-DRAFT-24894
NOAA-NMFS-2020-0031-DRAFT-24895
NOAA-NMFS-2020-0031-DRAFT-24896
NOAA-NMFS-2020-0031-DRAFT-24897
NOAA-NMFS-2020-0031-DRAFT-24898
NOAA-NMFS-2020-0031-DRAFT-24899
NOAA-NMFS-2020-0031-DRAFT-24900
NOAA-NMFS-2020-0031-DRAFT-24901
NOAA-NMFS-2020-0031-DRAFT-24902
NOAA-NMFS-2020-0031-DRAFT-24903
NOAA-NMFS-2020-0031-DRAFT-24904
NOAA-NMFS-2020-0031-DRAFT-24905
NOAA-NMFS-2020-0031-DRAFT-24906
NOAA-NMFS-2020-0031-DRAFT-24907
NOAA-NMFS-2020-0031-DRAFT-24908

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NOAA-NMFS-2020-0031-DRAFT-29951
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NOAA-NMFS-2020-0031-DRAFT-29953
NOAA-NMFS-2020-0031-DRAFT-29954
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NOAA-NMFS-2020-0031-DRAFT-29956
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NOAA-NMFS-2020-0031-DRAFT-29958
NOAA-NMFS-2020-0031-DRAFT-29959
NOAA-NMFS-2020-0031-DRAFT-29960
NOAA-NMFS-2020-0031-DRAFT-29961
NOAA-NMFS-2020-0031-DRAFT-29962
NOAA-NMFS-2020-0031-DRAFT-29963
NOAA-NMFS-2020-0031-DRAFT-29964
NOAA-NMFS-2020-0031-DRAFT-29965
NOAA-NMFS-2020-0031-DRAFT-29966
NOAA-NMFS-2020-0031-DRAFT-29967
NOAA-NMFS-2020-0031-DRAFT-29968
NOAA-NMFS-2020-0031-DRAFT-29969
NOAA-NMFS-2020-0031-DRAFT-29970
NOAA-NMFS-2020-0031-DRAFT-29971
NOAA-NMFS-2020-0031-DRAFT-29972
NOAA-NMFS-2020-0031-DRAFT-29973
NOAA-NMFS-2020-0031-DRAFT-29974
NOAA-NMFS-2020-0031-DRAFT-29975
NOAA-NMFS-2020-0031-DRAFT-29976
NOAA-NMFS-2020-0031-DRAFT-29977
NOAA-NMFS-2020-0031-DRAFT-29978
NOAA-NMFS-2020-0031-DRAFT-29979
NOAA-NMFS-2020-0031-DRAFT-29980
NOAA-NMFS-2020-0031-DRAFT-29981
NOAA-NMFS-2020-0031-DRAFT-29982
NOAA-NMFS-2020-0031-DRAFT-29983
NOAA-NMFS-2020-0031-DRAFT-29984
NOAA-NMFS-2020-0031-DRAFT-29985
NOAA-NMFS-2020-0031-DRAFT-29986
NOAA-NMFS-2020-0031-DRAFT-29987
NOAA-NMFS-2020-0031-DRAFT-29988
NOAA-NMFS-2020-0031-DRAFT-29990
NOAA-NMFS-2020-0031-DRAFT-29991
NOAA-NMFS-2020-0031-DRAFT-29992

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NOAA-NMFS-2020-0031-DRAFT-24909
NOAA-NMFS-2020-0031-DRAFT-24910
NOAA-NMFS-2020-0031-DRAFT-24911
NOAA-NMFS-2020-0031-DRAFT-24912
NOAA-NMFS-2020-0031-DRAFT-24913
NOAA-NMFS-2020-0031-DRAFT-24914
NOAA-NMFS-2020-0031-DRAFT-24915
NOAA-NMFS-2020-0031-DRAFT-24916
NOAA-NMFS-2020-0031-DRAFT-24917
NOAA-NMFS-2020-0031-DRAFT-24918
NOAA-NMFS-2020-0031-DRAFT-24919
NOAA-NMFS-2020-0031-DRAFT-24920
NOAA-NMFS-2020-0031-DRAFT-24921
NOAA-NMFS-2020-0031-DRAFT-24922
NOAA-NMFS-2020-0031-DRAFT-24923
NOAA-NMFS-2020-0031-DRAFT-24924
NOAA-NMFS-2020-0031-DRAFT-24925
NOAA-NMFS-2020-0031-DRAFT-24926
NOAA-NMFS-2020-0031-DRAFT-24927
NOAA-NMFS-2020-0031-DRAFT-24928
NOAA-NMFS-2020-0031-DRAFT-24929
NOAA-NMFS-2020-0031-DRAFT-24930
NOAA-NMFS-2020-0031-DRAFT-24931
NOAA-NMFS-2020-0031-DRAFT-24932
NOAA-NMFS-2020-0031-DRAFT-24933
NOAA-NMFS-2020-0031-DRAFT-24934
NOAA-NMFS-2020-0031-DRAFT-24935
NOAA-NMFS-2020-0031-DRAFT-24936
NOAA-NMFS-2020-0031-DRAFT-24937
NOAA-NMFS-2020-0031-DRAFT-24938
NOAA-NMFS-2020-0031-DRAFT-24939
NOAA-NMFS-2020-0031-DRAFT-24940
NOAA-NMFS-2020-0031-DRAFT-24941
NOAA-NMFS-2020-0031-DRAFT-24942
NOAA-NMFS-2020-0031-DRAFT-24943
NOAA-NMFS-2020-0031-DRAFT-24944
NOAA-NMFS-2020-0031-DRAFT-24945
NOAA-NMFS-2020-0031-DRAFT-24946
NOAA-NMFS-2020-0031-DRAFT-24947
NOAA-NMFS-2020-0031-DRAFT-24948
NOAA-NMFS-2020-0031-DRAFT-24949

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NOAA-NMFS-2020-0031-DRAFT-29993
NOAA-NMFS-2020-0031-DRAFT-29994
NOAA-NMFS-2020-0031-DRAFT-29995
NOAA-NMFS-2020-0031-DRAFT-29996
NOAA-NMFS-2020-0031-DRAFT-29997
NOAA-NMFS-2020-0031-DRAFT-29998
NOAA-NMFS-2020-0031-DRAFT-29999
NOAA-NMFS-2020-0031-DRAFT-30000
NOAA-NMFS-2020-0031-DRAFT-30001
NOAA-NMFS-2020-0031-DRAFT-30002
NOAA-NMFS-2020-0031-DRAFT-30003
NOAA-NMFS-2020-0031-DRAFT-30004
NOAA-NMFS-2020-0031-DRAFT-30005
NOAA-NMFS-2020-0031-DRAFT-30006
NOAA-NMFS-2020-0031-DRAFT-30007
NOAA-NMFS-2020-0031-DRAFT-30008
NOAA-NMFS-2020-0031-DRAFT-30009
NOAA-NMFS-2020-0031-DRAFT-30010
NOAA-NMFS-2020-0031-DRAFT-30011
NOAA-NMFS-2020-0031-DRAFT-30012
NOAA-NMFS-2020-0031-DRAFT-30013
NOAA-NMFS-2020-0031-DRAFT-30014
NOAA-NMFS-2020-0031-DRAFT-30015
NOAA-NMFS-2020-0031-DRAFT-30016
NOAA-NMFS-2020-0031-DRAFT-30017
NOAA-NMFS-2020-0031-DRAFT-30018
NOAA-NMFS-2020-0031-DRAFT-30019
NOAA-NMFS-2020-0031-DRAFT-30020
NOAA-NMFS-2020-0031-DRAFT-30021
NOAA-NMFS-2020-0031-DRAFT-30022
NOAA-NMFS-2020-0031-DRAFT-30023
NOAA-NMFS-2020-0031-DRAFT-30024
NOAA-NMFS-2020-0031-DRAFT-30025
NOAA-NMFS-2020-0031-DRAFT-30026
NOAA-NMFS-2020-0031-DRAFT-30027
NOAA-NMFS-2020-0031-DRAFT-30028
NOAA-NMFS-2020-0031-DRAFT-30029
NOAA-NMFS-2020-0031-DRAFT-30030
NOAA-NMFS-2020-0031-DRAFT-30031
NOAA-NMFS-2020-0031-DRAFT-30032
NOAA-NMFS-2020-0031-DRAFT-30033

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NOAA-NMFS-2020-0031-DRAFT-24950
NOAA-NMFS-2020-0031-DRAFT-24951
NOAA-NMFS-2020-0031-DRAFT-24952
NOAA-NMFS-2020-0031-DRAFT-24953
NOAA-NMFS-2020-0031-DRAFT-24954
NOAA-NMFS-2020-0031-DRAFT-24955
NOAA-NMFS-2020-0031-DRAFT-24956
NOAA-NMFS-2020-0031-DRAFT-24957
NOAA-NMFS-2020-0031-DRAFT-24958
NOAA-NMFS-2020-0031-DRAFT-24959
NOAA-NMFS-2020-0031-DRAFT-24960
NOAA-NMFS-2020-0031-DRAFT-24961
NOAA-NMFS-2020-0031-DRAFT-24962
NOAA-NMFS-2020-0031-DRAFT-24963
NOAA-NMFS-2020-0031-DRAFT-24964
NOAA-NMFS-2020-0031-DRAFT-24965
NOAA-NMFS-2020-0031-DRAFT-24966
NOAA-NMFS-2020-0031-DRAFT-24967
NOAA-NMFS-2020-0031-DRAFT-24968
NOAA-NMFS-2020-0031-DRAFT-24969
NOAA-NMFS-2020-0031-DRAFT-24970
NOAA-NMFS-2020-0031-DRAFT-24971
NOAA-NMFS-2020-0031-DRAFT-24972
NOAA-NMFS-2020-0031-DRAFT-24973
NOAA-NMFS-2020-0031-DRAFT-24974
NOAA-NMFS-2020-0031-DRAFT-24975
NOAA-NMFS-2020-0031-DRAFT-24976
NOAA-NMFS-2020-0031-DRAFT-24977
NOAA-NMFS-2020-0031-DRAFT-24978
NOAA-NMFS-2020-0031-DRAFT-24979
NOAA-NMFS-2020-0031-DRAFT-24980
NOAA-NMFS-2020-0031-DRAFT-24981
NOAA-NMFS-2020-0031-DRAFT-24982
NOAA-NMFS-2020-0031-DRAFT-24983
NOAA-NMFS-2020-0031-DRAFT-24984
NOAA-NMFS-2020-0031-DRAFT-24985
NOAA-NMFS-2020-0031-DRAFT-24986
NOAA-NMFS-2020-0031-DRAFT-24987
NOAA-NMFS-2020-0031-DRAFT-24988
NOAA-NMFS-2020-0031-DRAFT-24989
NOAA-NMFS-2020-0031-DRAFT-24990

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NOAA-NMFS-2020-0031-DRAFT-30034
NOAA-NMFS-2020-0031-DRAFT-30035
NOAA-NMFS-2020-0031-DRAFT-30036
NOAA-NMFS-2020-0031-DRAFT-30037
NOAA-NMFS-2020-0031-DRAFT-30038
NOAA-NMFS-2020-0031-DRAFT-30039
NOAA-NMFS-2020-0031-DRAFT-30040
NOAA-NMFS-2020-0031-DRAFT-30041
NOAA-NMFS-2020-0031-DRAFT-30042
NOAA-NMFS-2020-0031-DRAFT-30043
NOAA-NMFS-2020-0031-DRAFT-30044
NOAA-NMFS-2020-0031-DRAFT-30045
NOAA-NMFS-2020-0031-DRAFT-30046
NOAA-NMFS-2020-0031-DRAFT-30047
NOAA-NMFS-2020-0031-DRAFT-30048
NOAA-NMFS-2020-0031-DRAFT-30049
NOAA-NMFS-2020-0031-DRAFT-30050
NOAA-NMFS-2020-0031-DRAFT-30051
NOAA-NMFS-2020-0031-DRAFT-30052
NOAA-NMFS-2020-0031-DRAFT-30053
NOAA-NMFS-2020-0031-DRAFT-30054
NOAA-NMFS-2020-0031-DRAFT-30055
NOAA-NMFS-2020-0031-DRAFT-30056
NOAA-NMFS-2020-0031-DRAFT-30057
NOAA-NMFS-2020-0031-DRAFT-30058
NOAA-NMFS-2020-0031-DRAFT-30059
NOAA-NMFS-2020-0031-DRAFT-30060
NOAA-NMFS-2020-0031-DRAFT-30061
NOAA-NMFS-2020-0031-DRAFT-30062
NOAA-NMFS-2020-0031-DRAFT-30063
NOAA-NMFS-2020-0031-DRAFT-30064
NOAA-NMFS-2020-0031-DRAFT-30065
NOAA-NMFS-2020-0031-DRAFT-30066
NOAA-NMFS-2020-0031-DRAFT-30067
NOAA-NMFS-2020-0031-DRAFT-30068
NOAA-NMFS-2020-0031-DRAFT-30069
NOAA-NMFS-2020-0031-DRAFT-30070
NOAA-NMFS-2020-0031-DRAFT-30071
NOAA-NMFS-2020-0031-DRAFT-30072
NOAA-NMFS-2020-0031-DRAFT-30073
NOAA-NMFS-2020-0031-DRAFT-30074

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NOAA-NMFS-2020-0031-DRAFT-24991
NOAA-NMFS-2020-0031-DRAFT-24992
NOAA-NMFS-2020-0031-DRAFT-24993
NOAA-NMFS-2020-0031-DRAFT-24994
NOAA-NMFS-2020-0031-DRAFT-24995
NOAA-NMFS-2020-0031-DRAFT-24996
NOAA-NMFS-2020-0031-DRAFT-24997
NOAA-NMFS-2020-0031-DRAFT-24998
NOAA-NMFS-2020-0031-DRAFT-24999
NOAA-NMFS-2020-0031-DRAFT-25000
NOAA-NMFS-2020-0031-DRAFT-25001
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NOAA-NMFS-2020-0031-DRAFT-25003
NOAA-NMFS-2020-0031-DRAFT-25004
NOAA-NMFS-2020-0031-DRAFT-25005
NOAA-NMFS-2020-0031-DRAFT-25006
NOAA-NMFS-2020-0031-DRAFT-25007
NOAA-NMFS-2020-0031-DRAFT-25008
NOAA-NMFS-2020-0031-DRAFT-25009
NOAA-NMFS-2020-0031-DRAFT-25010
NOAA-NMFS-2020-0031-DRAFT-25011
NOAA-NMFS-2020-0031-DRAFT-25012
NOAA-NMFS-2020-0031-DRAFT-25013
NOAA-NMFS-2020-0031-DRAFT-25014
NOAA-NMFS-2020-0031-DRAFT-25015
NOAA-NMFS-2020-0031-DRAFT-25016
NOAA-NMFS-2020-0031-DRAFT-25017
NOAA-NMFS-2020-0031-DRAFT-25018
NOAA-NMFS-2020-0031-DRAFT-25019
NOAA-NMFS-2020-0031-DRAFT-25020
NOAA-NMFS-2020-0031-DRAFT-25021
NOAA-NMFS-2020-0031-DRAFT-25022
NOAA-NMFS-2020-0031-DRAFT-25023
NOAA-NMFS-2020-0031-DRAFT-25024
NOAA-NMFS-2020-0031-DRAFT-25025
NOAA-NMFS-2020-0031-DRAFT-25026
NOAA-NMFS-2020-0031-DRAFT-25027
NOAA-NMFS-2020-0031-DRAFT-25028
NOAA-NMFS-2020-0031-DRAFT-25029
NOAA-NMFS-2020-0031-DRAFT-25030
NOAA-NMFS-2020-0031-DRAFT-25031

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NOAA-NMFS-2020-0031-DRAFT-30075
NOAA-NMFS-2020-0031-DRAFT-30076
NOAA-NMFS-2020-0031-DRAFT-30077
NOAA-NMFS-2020-0031-DRAFT-30078
NOAA-NMFS-2020-0031-DRAFT-30079
NOAA-NMFS-2020-0031-DRAFT-30080
NOAA-NMFS-2020-0031-DRAFT-30081
NOAA-NMFS-2020-0031-DRAFT-30082
NOAA-NMFS-2020-0031-DRAFT-30083
NOAA-NMFS-2020-0031-DRAFT-30084
NOAA-NMFS-2020-0031-DRAFT-30085
NOAA-NMFS-2020-0031-DRAFT-30086
NOAA-NMFS-2020-0031-DRAFT-30087
NOAA-NMFS-2020-0031-DRAFT-30088
NOAA-NMFS-2020-0031-DRAFT-30089
NOAA-NMFS-2020-0031-DRAFT-30090
NOAA-NMFS-2020-0031-DRAFT-30091
NOAA-NMFS-2020-0031-DRAFT-30092
NOAA-NMFS-2020-0031-DRAFT-30093
NOAA-NMFS-2020-0031-DRAFT-30094
NOAA-NMFS-2020-0031-DRAFT-30095
NOAA-NMFS-2020-0031-DRAFT-30096
NOAA-NMFS-2020-0031-DRAFT-30097
NOAA-NMFS-2020-0031-DRAFT-30098
NOAA-NMFS-2020-0031-DRAFT-30099
NOAA-NMFS-2020-0031-DRAFT-30100
NOAA-NMFS-2020-0031-DRAFT-30101
NOAA-NMFS-2020-0031-DRAFT-30102
NOAA-NMFS-2020-0031-DRAFT-30103
NOAA-NMFS-2020-0031-DRAFT-30104
NOAA-NMFS-2020-0031-DRAFT-30105
NOAA-NMFS-2020-0031-DRAFT-30106
NOAA-NMFS-2020-0031-DRAFT-30107
NOAA-NMFS-2020-0031-DRAFT-30108
NOAA-NMFS-2020-0031-DRAFT-30109
NOAA-NMFS-2020-0031-DRAFT-30110
NOAA-NMFS-2020-0031-DRAFT-30111
NOAA-NMFS-2020-0031-DRAFT-30112
NOAA-NMFS-2020-0031-DRAFT-30113
NOAA-NMFS-2020-0031-DRAFT-30114
NOAA-NMFS-2020-0031-DRAFT-30115

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NOAA-NMFS-2020-0031-DRAFT-25032
NOAA-NMFS-2020-0031-DRAFT-25033
NOAA-NMFS-2020-0031-DRAFT-25034
NOAA-NMFS-2020-0031-DRAFT-25035
NOAA-NMFS-2020-0031-DRAFT-25036
NOAA-NMFS-2020-0031-DRAFT-25037
NOAA-NMFS-2020-0031-DRAFT-25038
NOAA-NMFS-2020-0031-DRAFT-25039
NOAA-NMFS-2020-0031-DRAFT-25040
NOAA-NMFS-2020-0031-DRAFT-25041
NOAA-NMFS-2020-0031-DRAFT-25042
NOAA-NMFS-2020-0031-DRAFT-25043
NOAA-NMFS-2020-0031-DRAFT-25044
NOAA-NMFS-2020-0031-DRAFT-25045
NOAA-NMFS-2020-0031-DRAFT-25046
NOAA-NMFS-2020-0031-DRAFT-25047
NOAA-NMFS-2020-0031-DRAFT-25048
NOAA-NMFS-2020-0031-DRAFT-25049
NOAA-NMFS-2020-0031-DRAFT-25050
NOAA-NMFS-2020-0031-DRAFT-25051
NOAA-NMFS-2020-0031-DRAFT-25052
NOAA-NMFS-2020-0031-DRAFT-25053
NOAA-NMFS-2020-0031-DRAFT-25054
NOAA-NMFS-2020-0031-DRAFT-25055
NOAA-NMFS-2020-0031-DRAFT-25056
NOAA-NMFS-2020-0031-DRAFT-25057
NOAA-NMFS-2020-0031-DRAFT-25058
NOAA-NMFS-2020-0031-DRAFT-25059
NOAA-NMFS-2020-0031-DRAFT-25060
NOAA-NMFS-2020-0031-DRAFT-25061
NOAA-NMFS-2020-0031-DRAFT-25062
NOAA-NMFS-2020-0031-DRAFT-25063
NOAA-NMFS-2020-0031-DRAFT-25064
NOAA-NMFS-2020-0031-DRAFT-25065
NOAA-NMFS-2020-0031-DRAFT-25066
NOAA-NMFS-2020-0031-DRAFT-25067
NOAA-NMFS-2020-0031-DRAFT-25068
NOAA-NMFS-2020-0031-DRAFT-25069
NOAA-NMFS-2020-0031-DRAFT-25070
NOAA-NMFS-2020-0031-DRAFT-25071
NOAA-NMFS-2020-0031-DRAFT-25072

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NOAA-NMFS-2020-0031-DRAFT-30116
NOAA-NMFS-2020-0031-DRAFT-30117
NOAA-NMFS-2020-0031-DRAFT-30118
NOAA-NMFS-2020-0031-DRAFT-30119
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NOAA-NMFS-2020-0031-DRAFT-30121
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NOAA-NMFS-2020-0031-DRAFT-30124
NOAA-NMFS-2020-0031-DRAFT-30125
NOAA-NMFS-2020-0031-DRAFT-30126
NOAA-NMFS-2020-0031-DRAFT-30127
NOAA-NMFS-2020-0031-DRAFT-30128
NOAA-NMFS-2020-0031-DRAFT-30129
NOAA-NMFS-2020-0031-DRAFT-30130
NOAA-NMFS-2020-0031-DRAFT-30131
NOAA-NMFS-2020-0031-DRAFT-30132
NOAA-NMFS-2020-0031-DRAFT-30133
NOAA-NMFS-2020-0031-DRAFT-30134
NOAA-NMFS-2020-0031-DRAFT-30135
NOAA-NMFS-2020-0031-DRAFT-30136
NOAA-NMFS-2020-0031-DRAFT-30137
NOAA-NMFS-2020-0031-DRAFT-30138
NOAA-NMFS-2020-0031-DRAFT-30139
NOAA-NMFS-2020-0031-DRAFT-30140
NOAA-NMFS-2020-0031-DRAFT-30141
NOAA-NMFS-2020-0031-DRAFT-30142
NOAA-NMFS-2020-0031-DRAFT-30143
NOAA-NMFS-2020-0031-DRAFT-30144
NOAA-NMFS-2020-0031-DRAFT-30145
NOAA-NMFS-2020-0031-DRAFT-30146
NOAA-NMFS-2020-0031-DRAFT-30147
NOAA-NMFS-2020-0031-DRAFT-30148
NOAA-NMFS-2020-0031-DRAFT-30149
NOAA-NMFS-2020-0031-DRAFT-30150
NOAA-NMFS-2020-0031-DRAFT-30151
NOAA-NMFS-2020-0031-DRAFT-30152
NOAA-NMFS-2020-0031-DRAFT-30153
NOAA-NMFS-2020-0031-DRAFT-30154
NOAA-NMFS-2020-0031-DRAFT-30155
NOAA-NMFS-2020-0031-DRAFT-30156

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NOAA-NMFS-2020-0031-DRAFT-25073
NOAA-NMFS-2020-0031-DRAFT-25074
NOAA-NMFS-2020-0031-DRAFT-25075
NOAA-NMFS-2020-0031-DRAFT-25076
NOAA-NMFS-2020-0031-DRAFT-25077
NOAA-NMFS-2020-0031-DRAFT-25078
NOAA-NMFS-2020-0031-DRAFT-25079
NOAA-NMFS-2020-0031-DRAFT-25080
NOAA-NMFS-2020-0031-DRAFT-25081
NOAA-NMFS-2020-0031-DRAFT-25082
NOAA-NMFS-2020-0031-DRAFT-25083
NOAA-NMFS-2020-0031-DRAFT-25084
NOAA-NMFS-2020-0031-DRAFT-25085
NOAA-NMFS-2020-0031-DRAFT-25086
NOAA-NMFS-2020-0031-DRAFT-25087
NOAA-NMFS-2020-0031-DRAFT-25088
NOAA-NMFS-2020-0031-DRAFT-25089
NOAA-NMFS-2020-0031-DRAFT-25090
NOAA-NMFS-2020-0031-DRAFT-25091
NOAA-NMFS-2020-0031-DRAFT-25092
NOAA-NMFS-2020-0031-DRAFT-25093
NOAA-NMFS-2020-0031-DRAFT-25094
NOAA-NMFS-2020-0031-DRAFT-25095
NOAA-NMFS-2020-0031-DRAFT-25096
NOAA-NMFS-2020-0031-DRAFT-25097
NOAA-NMFS-2020-0031-DRAFT-25098
NOAA-NMFS-2020-0031-DRAFT-25099
NOAA-NMFS-2020-0031-DRAFT-25100
NOAA-NMFS-2020-0031-DRAFT-25101
NOAA-NMFS-2020-0031-DRAFT-25102
NOAA-NMFS-2020-0031-DRAFT-25103
NOAA-NMFS-2020-0031-DRAFT-25104
NOAA-NMFS-2020-0031-DRAFT-25105
NOAA-NMFS-2020-0031-DRAFT-25106
NOAA-NMFS-2020-0031-DRAFT-25107
NOAA-NMFS-2020-0031-DRAFT-25108
NOAA-NMFS-2020-0031-DRAFT-25109
NOAA-NMFS-2020-0031-DRAFT-25110
NOAA-NMFS-2020-0031-DRAFT-25111
NOAA-NMFS-2020-0031-DRAFT-25112
NOAA-NMFS-2020-0031-DRAFT-25124

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NOAA-NMFS-2020-0031-DRAFT-30157
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NOAA-NMFS-2020-0031-DRAFT-30159
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NOAA-NMFS-2020-0031-DRAFT-30170
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NOAA-NMFS-2020-0031-DRAFT-30172
NOAA-NMFS-2020-0031-DRAFT-30173
NOAA-NMFS-2020-0031-DRAFT-30174
NOAA-NMFS-2020-0031-DRAFT-30175
NOAA-NMFS-2020-0031-DRAFT-30176
NOAA-NMFS-2020-0031-DRAFT-30177
NOAA-NMFS-2020-0031-DRAFT-30178
NOAA-NMFS-2020-0031-DRAFT-30179
NOAA-NMFS-2020-0031-DRAFT-30180
NOAA-NMFS-2020-0031-DRAFT-30181
NOAA-NMFS-2020-0031-DRAFT-30182
NOAA-NMFS-2020-0031-DRAFT-30183
NOAA-NMFS-2020-0031-DRAFT-30184
NOAA-NMFS-2020-0031-DRAFT-30185
NOAA-NMFS-2020-0031-DRAFT-30186
NOAA-NMFS-2020-0031-DRAFT-30187
NOAA-NMFS-2020-0031-DRAFT-30188
NOAA-NMFS-2020-0031-DRAFT-30189
NOAA-NMFS-2020-0031-DRAFT-30190
NOAA-NMFS-2020-0031-DRAFT-30191
NOAA-NMFS-2020-0031-DRAFT-30192
NOAA-NMFS-2020-0031-DRAFT-30193
NOAA-NMFS-2020-0031-DRAFT-30194
NOAA-NMFS-2020-0031-DRAFT-30195
NOAA-NMFS-2020-0031-DRAFT-30196
NOAA-NMFS-2020-0031-DRAFT-30197

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NOAA-NMFS-2020-0031-DRAFT-25127
NOAA-NMFS-2020-0031-DRAFT-25134
NOAA-NMFS-2020-0031-DRAFT-25135
NOAA-NMFS-2020-0031-DRAFT-25136
NOAA-NMFS-2020-0031-DRAFT-25137
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NOAA-NMFS-2020-0031-DRAFT-25148
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NOAA-NMFS-2020-0031-DRAFT-25151
NOAA-NMFS-2020-0031-DRAFT-25152
NOAA-NMFS-2020-0031-DRAFT-25153
NOAA-NMFS-2020-0031-DRAFT-25154
NOAA-NMFS-2020-0031-DRAFT-25155
NOAA-NMFS-2020-0031-DRAFT-25156
NOAA-NMFS-2020-0031-DRAFT-25157
NOAA-NMFS-2020-0031-DRAFT-25158
NOAA-NMFS-2020-0031-DRAFT-25159
NOAA-NMFS-2020-0031-DRAFT-25160
NOAA-NMFS-2020-0031-DRAFT-25161
NOAA-NMFS-2020-0031-DRAFT-25162
NOAA-NMFS-2020-0031-DRAFT-25163
NOAA-NMFS-2020-0031-DRAFT-25164
NOAA-NMFS-2020-0031-DRAFT-25165
NOAA-NMFS-2020-0031-DRAFT-25166
NOAA-NMFS-2020-0031-DRAFT-25167
NOAA-NMFS-2020-0031-DRAFT-25168
NOAA-NMFS-2020-0031-DRAFT-25169
NOAA-NMFS-2020-0031-DRAFT-25170
NOAA-NMFS-2020-0031-DRAFT-25171
NOAA-NMFS-2020-0031-DRAFT-25172
NOAA-NMFS-2020-0031-DRAFT-25173

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NOAA-NMFS-2020-0031-DRAFT-30198
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NOAA-NMFS-2020-0031-DRAFT-30200
NOAA-NMFS-2020-0031-DRAFT-30201
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NOAA-NMFS-2020-0031-DRAFT-30203
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NOAA-NMFS-2020-0031-DRAFT-30205
NOAA-NMFS-2020-0031-DRAFT-30206
NOAA-NMFS-2020-0031-DRAFT-30207
NOAA-NMFS-2020-0031-DRAFT-30208
NOAA-NMFS-2020-0031-DRAFT-30209
NOAA-NMFS-2020-0031-DRAFT-30210
NOAA-NMFS-2020-0031-DRAFT-30211
NOAA-NMFS-2020-0031-DRAFT-30212
NOAA-NMFS-2020-0031-DRAFT-30213
NOAA-NMFS-2020-0031-DRAFT-30214
NOAA-NMFS-2020-0031-DRAFT-30215
NOAA-NMFS-2020-0031-DRAFT-30216
NOAA-NMFS-2020-0031-DRAFT-30217
NOAA-NMFS-2020-0031-DRAFT-30218
NOAA-NMFS-2020-0031-DRAFT-30219
NOAA-NMFS-2020-0031-DRAFT-30220
NOAA-NMFS-2020-0031-DRAFT-30221
NOAA-NMFS-2020-0031-DRAFT-30222
NOAA-NMFS-2020-0031-DRAFT-30223
NOAA-NMFS-2020-0031-DRAFT-30224
NOAA-NMFS-2020-0031-DRAFT-30225
NOAA-NMFS-2020-0031-DRAFT-30226
NOAA-NMFS-2020-0031-DRAFT-30227
NOAA-NMFS-2020-0031-DRAFT-30228
NOAA-NMFS-2020-0031-DRAFT-30229
NOAA-NMFS-2020-0031-DRAFT-30230
NOAA-NMFS-2020-0031-DRAFT-30231
NOAA-NMFS-2020-0031-DRAFT-30232
NOAA-NMFS-2020-0031-DRAFT-30233
NOAA-NMFS-2020-0031-DRAFT-30234
NOAA-NMFS-2020-0031-DRAFT-30235
NOAA-NMFS-2020-0031-DRAFT-30236
NOAA-NMFS-2020-0031-DRAFT-30237
NOAA-NMFS-2020-0031-DRAFT-30238

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NOAA-NMFS-2020-0031-DRAFT-25174
NOAA-NMFS-2020-0031-DRAFT-25175
NOAA-NMFS-2020-0031-DRAFT-25176
NOAA-NMFS-2020-0031-DRAFT-25177
NOAA-NMFS-2020-0031-DRAFT-25178
NOAA-NMFS-2020-0031-DRAFT-25179
NOAA-NMFS-2020-0031-DRAFT-25180
NOAA-NMFS-2020-0031-DRAFT-25181
NOAA-NMFS-2020-0031-DRAFT-25182
NOAA-NMFS-2020-0031-DRAFT-25183
NOAA-NMFS-2020-0031-DRAFT-25184
NOAA-NMFS-2020-0031-DRAFT-25185
NOAA-NMFS-2020-0031-DRAFT-25186
NOAA-NMFS-2020-0031-DRAFT-25187
NOAA-NMFS-2020-0031-DRAFT-25188
NOAA-NMFS-2020-0031-DRAFT-25189
NOAA-NMFS-2020-0031-DRAFT-25190
NOAA-NMFS-2020-0031-DRAFT-25191
NOAA-NMFS-2020-0031-DRAFT-25192
NOAA-NMFS-2020-0031-DRAFT-25193
NOAA-NMFS-2020-0031-DRAFT-25194
NOAA-NMFS-2020-0031-DRAFT-25195
NOAA-NMFS-2020-0031-DRAFT-25196
NOAA-NMFS-2020-0031-DRAFT-25197
NOAA-NMFS-2020-0031-DRAFT-25198
NOAA-NMFS-2020-0031-DRAFT-25199
NOAA-NMFS-2020-0031-DRAFT-25200
NOAA-NMFS-2020-0031-DRAFT-25201
NOAA-NMFS-2020-0031-DRAFT-25202
NOAA-NMFS-2020-0031-DRAFT-25203
NOAA-NMFS-2020-0031-DRAFT-25204
NOAA-NMFS-2020-0031-DRAFT-25205
NOAA-NMFS-2020-0031-DRAFT-25206
NOAA-NMFS-2020-0031-DRAFT-25207
NOAA-NMFS-2020-0031-DRAFT-25208
NOAA-NMFS-2020-0031-DRAFT-25209
NOAA-NMFS-2020-0031-DRAFT-25210
NOAA-NMFS-2020-0031-DRAFT-25211
NOAA-NMFS-2020-0031-DRAFT-25212
NOAA-NMFS-2020-0031-DRAFT-25213
NOAA-NMFS-2020-0031-DRAFT-25214

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NOAA-NMFS-2020-0031-DRAFT-30239
NOAA-NMFS-2020-0031-DRAFT-30240
NOAA-NMFS-2020-0031-DRAFT-30241
NOAA-NMFS-2020-0031-DRAFT-30242
NOAA-NMFS-2020-0031-DRAFT-30243
NOAA-NMFS-2020-0031-DRAFT-30244
NOAA-NMFS-2020-0031-DRAFT-30245
NOAA-NMFS-2020-0031-DRAFT-30246
NOAA-NMFS-2020-0031-DRAFT-30247
NOAA-NMFS-2020-0031-DRAFT-30248
NOAA-NMFS-2020-0031-DRAFT-30249
NOAA-NMFS-2020-0031-DRAFT-30250
NOAA-NMFS-2020-0031-DRAFT-30251
NOAA-NMFS-2020-0031-DRAFT-30252
NOAA-NMFS-2020-0031-DRAFT-30253
NOAA-NMFS-2020-0031-DRAFT-30254
NOAA-NMFS-2020-0031-DRAFT-30255
NOAA-NMFS-2020-0031-DRAFT-30256
NOAA-NMFS-2020-0031-DRAFT-30257
NOAA-NMFS-2020-0031-DRAFT-30258
NOAA-NMFS-2020-0031-DRAFT-30259
NOAA-NMFS-2020-0031-DRAFT-30260
NOAA-NMFS-2020-0031-DRAFT-30261
NOAA-NMFS-2020-0031-DRAFT-30262
NOAA-NMFS-2020-0031-DRAFT-30263
NOAA-NMFS-2020-0031-DRAFT-30264
NOAA-NMFS-2020-0031-DRAFT-30265
NOAA-NMFS-2020-0031-DRAFT-30266
NOAA-NMFS-2020-0031-DRAFT-30267
NOAA-NMFS-2020-0031-DRAFT-30268
NOAA-NMFS-2020-0031-DRAFT-30269
NOAA-NMFS-2020-0031-DRAFT-30270
NOAA-NMFS-2020-0031-DRAFT-30272
NOAA-NMFS-2020-0031-DRAFT-30273
NOAA-NMFS-2020-0031-DRAFT-30274
NOAA-NMFS-2020-0031-DRAFT-30275
NOAA-NMFS-2020-0031-DRAFT-30276
NOAA-NMFS-2020-0031-DRAFT-30277
NOAA-NMFS-2020-0031-DRAFT-30278
NOAA-NMFS-2020-0031-DRAFT-30279
NOAA-NMFS-2020-0031-DRAFT-30280

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NOAA-NMFS-2020-0031-DRAFT-25215
NOAA-NMFS-2020-0031-DRAFT-25216
NOAA-NMFS-2020-0031-DRAFT-25217
NOAA-NMFS-2020-0031-DRAFT-25218
NOAA-NMFS-2020-0031-DRAFT-25219
NOAA-NMFS-2020-0031-DRAFT-25220
NOAA-NMFS-2020-0031-DRAFT-25221
NOAA-NMFS-2020-0031-DRAFT-25222
NOAA-NMFS-2020-0031-DRAFT-25223
NOAA-NMFS-2020-0031-DRAFT-25224
NOAA-NMFS-2020-0031-DRAFT-25225
NOAA-NMFS-2020-0031-DRAFT-25226
NOAA-NMFS-2020-0031-DRAFT-25227
NOAA-NMFS-2020-0031-DRAFT-25228
NOAA-NMFS-2020-0031-DRAFT-25229
NOAA-NMFS-2020-0031-DRAFT-25230
NOAA-NMFS-2020-0031-DRAFT-25231
NOAA-NMFS-2020-0031-DRAFT-25232
NOAA-NMFS-2020-0031-DRAFT-25233
NOAA-NMFS-2020-0031-DRAFT-25234
NOAA-NMFS-2020-0031-DRAFT-25235
NOAA-NMFS-2020-0031-DRAFT-25236
NOAA-NMFS-2020-0031-DRAFT-25237
NOAA-NMFS-2020-0031-DRAFT-25238
NOAA-NMFS-2020-0031-DRAFT-25239
NOAA-NMFS-2020-0031-DRAFT-25240
NOAA-NMFS-2020-0031-DRAFT-25241
NOAA-NMFS-2020-0031-DRAFT-25242
NOAA-NMFS-2020-0031-DRAFT-25243
NOAA-NMFS-2020-0031-DRAFT-25244
NOAA-NMFS-2020-0031-DRAFT-25245
NOAA-NMFS-2020-0031-DRAFT-25246
NOAA-NMFS-2020-0031-DRAFT-25247
NOAA-NMFS-2020-0031-DRAFT-25248
NOAA-NMFS-2020-0031-DRAFT-25249
NOAA-NMFS-2020-0031-DRAFT-25250
NOAA-NMFS-2020-0031-DRAFT-25251
NOAA-NMFS-2020-0031-DRAFT-25252
NOAA-NMFS-2020-0031-DRAFT-25253
NOAA-NMFS-2020-0031-DRAFT-25254
NOAA-NMFS-2020-0031-DRAFT-25255

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NOAA-NMFS-2020-0031-DRAFT-30281
NOAA-NMFS-2020-0031-DRAFT-30282
NOAA-NMFS-2020-0031-DRAFT-30283
NOAA-NMFS-2020-0031-DRAFT-30284
NOAA-NMFS-2020-0031-DRAFT-30285
NOAA-NMFS-2020-0031-DRAFT-30287
NOAA-NMFS-2020-0031-DRAFT-30288
NOAA-NMFS-2020-0031-DRAFT-30289
NOAA-NMFS-2020-0031-DRAFT-30290
NOAA-NMFS-2020-0031-DRAFT-30291
NOAA-NMFS-2020-0031-DRAFT-30292
NOAA-NMFS-2020-0031-DRAFT-30293
NOAA-NMFS-2020-0031-DRAFT-30294
NOAA-NMFS-2020-0031-DRAFT-30295
NOAA-NMFS-2020-0031-DRAFT-30296
NOAA-NMFS-2020-0031-DRAFT-30297
NOAA-NMFS-2020-0031-DRAFT-30298
NOAA-NMFS-2020-0031-DRAFT-30299
NOAA-NMFS-2020-0031-DRAFT-30300
NOAA-NMFS-2020-0031-DRAFT-30301
NOAA-NMFS-2020-0031-DRAFT-30302
NOAA-NMFS-2020-0031-DRAFT-30303
NOAA-NMFS-2020-0031-DRAFT-30304
NOAA-NMFS-2020-0031-DRAFT-30305
NOAA-NMFS-2020-0031-DRAFT-30306
NOAA-NMFS-2020-0031-DRAFT-30307
NOAA-NMFS-2020-0031-DRAFT-30308
NOAA-NMFS-2020-0031-DRAFT-30309
NOAA-NMFS-2020-0031-DRAFT-30310
NOAA-NMFS-2020-0031-DRAFT-30311
NOAA-NMFS-2020-0031-DRAFT-30312
NOAA-NMFS-2020-0031-DRAFT-30313
NOAA-NMFS-2020-0031-DRAFT-30314
NOAA-NMFS-2020-0031-DRAFT-30315
NOAA-NMFS-2020-0031-DRAFT-30316
NOAA-NMFS-2020-0031-DRAFT-30317
NOAA-NMFS-2020-0031-DRAFT-30318
NOAA-NMFS-2020-0031-DRAFT-30319
NOAA-NMFS-2020-0031-DRAFT-30320
NOAA-NMFS-2020-0031-DRAFT-30321
NOAA-NMFS-2020-0031-DRAFT-30322

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NOAA-NMFS-2020-0031-DRAFT-25256
NOAA-NMFS-2020-0031-DRAFT-25257
NOAA-NMFS-2020-0031-DRAFT-25258
NOAA-NMFS-2020-0031-DRAFT-25259
NOAA-NMFS-2020-0031-DRAFT-25260
NOAA-NMFS-2020-0031-DRAFT-25261
NOAA-NMFS-2020-0031-DRAFT-25262
NOAA-NMFS-2020-0031-DRAFT-25263
NOAA-NMFS-2020-0031-DRAFT-25264
NOAA-NMFS-2020-0031-DRAFT-25265
NOAA-NMFS-2020-0031-DRAFT-25266
NOAA-NMFS-2020-0031-DRAFT-25267
NOAA-NMFS-2020-0031-DRAFT-25268
NOAA-NMFS-2020-0031-DRAFT-25269
NOAA-NMFS-2020-0031-DRAFT-25270
NOAA-NMFS-2020-0031-DRAFT-25271
NOAA-NMFS-2020-0031-DRAFT-25272
NOAA-NMFS-2020-0031-DRAFT-25273
NOAA-NMFS-2020-0031-DRAFT-25274
NOAA-NMFS-2020-0031-DRAFT-25275
NOAA-NMFS-2020-0031-DRAFT-25276
NOAA-NMFS-2020-0031-DRAFT-25277
NOAA-NMFS-2020-0031-DRAFT-25278
NOAA-NMFS-2020-0031-DRAFT-25279
NOAA-NMFS-2020-0031-DRAFT-25280
NOAA-NMFS-2020-0031-DRAFT-25281
NOAA-NMFS-2020-0031-DRAFT-25282
NOAA-NMFS-2020-0031-DRAFT-25283
NOAA-NMFS-2020-0031-DRAFT-25284
NOAA-NMFS-2020-0031-DRAFT-25285
NOAA-NMFS-2020-0031-DRAFT-25286
NOAA-NMFS-2020-0031-DRAFT-25287
NOAA-NMFS-2020-0031-DRAFT-25288
NOAA-NMFS-2020-0031-DRAFT-25289
NOAA-NMFS-2020-0031-DRAFT-25290
NOAA-NMFS-2020-0031-DRAFT-25291
NOAA-NMFS-2020-0031-DRAFT-25293
NOAA-NMFS-2020-0031-DRAFT-25294
NOAA-NMFS-2020-0031-DRAFT-25295
NOAA-NMFS-2020-0031-DRAFT-25296
NOAA-NMFS-2020-0031-DRAFT-25297

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NOAA-NMFS-2020-0031-DRAFT-30323
NOAA-NMFS-2020-0031-DRAFT-30324
NOAA-NMFS-2020-0031-DRAFT-30325
NOAA-NMFS-2020-0031-DRAFT-30326
NOAA-NMFS-2020-0031-DRAFT-30327
NOAA-NMFS-2020-0031-DRAFT-30328
NOAA-NMFS-2020-0031-DRAFT-30329
NOAA-NMFS-2020-0031-DRAFT-30330
NOAA-NMFS-2020-0031-DRAFT-30331
NOAA-NMFS-2020-0031-DRAFT-30332
NOAA-NMFS-2020-0031-DRAFT-30333
NOAA-NMFS-2020-0031-DRAFT-30334
NOAA-NMFS-2020-0031-DRAFT-30335
NOAA-NMFS-2020-0031-DRAFT-30336
NOAA-NMFS-2020-0031-DRAFT-30337
NOAA-NMFS-2020-0031-DRAFT-30338
NOAA-NMFS-2020-0031-DRAFT-30339
NOAA-NMFS-2020-0031-DRAFT-30340
NOAA-NMFS-2020-0031-DRAFT-30341
NOAA-NMFS-2020-0031-DRAFT-30342
NOAA-NMFS-2020-0031-DRAFT-30343
NOAA-NMFS-2020-0031-DRAFT-30344
NOAA-NMFS-2020-0031-DRAFT-30345
NOAA-NMFS-2020-0031-DRAFT-30346
NOAA-NMFS-2020-0031-DRAFT-30347
NOAA-NMFS-2020-0031-DRAFT-30348
NOAA-NMFS-2020-0031-DRAFT-30349
NOAA-NMFS-2020-0031-DRAFT-30350
NOAA-NMFS-2020-0031-DRAFT-30351
NOAA-NMFS-2020-0031-DRAFT-30352
NOAA-NMFS-2020-0031-DRAFT-30353
NOAA-NMFS-2020-0031-DRAFT-30354
NOAA-NMFS-2020-0031-DRAFT-30355
NOAA-NMFS-2020-0031-DRAFT-30356
NOAA-NMFS-2020-0031-DRAFT-30357
NOAA-NMFS-2020-0031-DRAFT-30358
NOAA-NMFS-2020-0031-DRAFT-30359
NOAA-NMFS-2020-0031-DRAFT-30360
NOAA-NMFS-2020-0031-DRAFT-30361
NOAA-NMFS-2020-0031-DRAFT-30362
NOAA-NMFS-2020-0031-DRAFT-30363

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NOAA-NMFS-2020-0031-DRAFT-25298
NOAA-NMFS-2020-0031-DRAFT-25299
NOAA-NMFS-2020-0031-DRAFT-25300
NOAA-NMFS-2020-0031-DRAFT-25301
NOAA-NMFS-2020-0031-DRAFT-25302
NOAA-NMFS-2020-0031-DRAFT-25303
NOAA-NMFS-2020-0031-DRAFT-25304
NOAA-NMFS-2020-0031-DRAFT-25305
NOAA-NMFS-2020-0031-DRAFT-25306
NOAA-NMFS-2020-0031-DRAFT-25307
NOAA-NMFS-2020-0031-DRAFT-25308
NOAA-NMFS-2020-0031-DRAFT-25309
NOAA-NMFS-2020-0031-DRAFT-25310
NOAA-NMFS-2020-0031-DRAFT-25311
NOAA-NMFS-2020-0031-DRAFT-25312
NOAA-NMFS-2020-0031-DRAFT-25313
NOAA-NMFS-2020-0031-DRAFT-25314
NOAA-NMFS-2020-0031-DRAFT-25315
NOAA-NMFS-2020-0031-DRAFT-25316
NOAA-NMFS-2020-0031-DRAFT-25317
NOAA-NMFS-2020-0031-DRAFT-25318
NOAA-NMFS-2020-0031-DRAFT-25319
NOAA-NMFS-2020-0031-DRAFT-25320
NOAA-NMFS-2020-0031-DRAFT-25321
NOAA-NMFS-2020-0031-DRAFT-25322
NOAA-NMFS-2020-0031-DRAFT-25323
NOAA-NMFS-2020-0031-DRAFT-25324
NOAA-NMFS-2020-0031-DRAFT-25325
NOAA-NMFS-2020-0031-DRAFT-25326
NOAA-NMFS-2020-0031-DRAFT-25327
NOAA-NMFS-2020-0031-DRAFT-25328
NOAA-NMFS-2020-0031-DRAFT-25329
NOAA-NMFS-2020-0031-DRAFT-25330
NOAA-NMFS-2020-0031-DRAFT-25331
NOAA-NMFS-2020-0031-DRAFT-25332
NOAA-NMFS-2020-0031-DRAFT-25333
NOAA-NMFS-2020-0031-DRAFT-25334
NOAA-NMFS-2020-0031-DRAFT-25335
NOAA-NMFS-2020-0031-DRAFT-25336
NOAA-NMFS-2020-0031-DRAFT-25337
NOAA-NMFS-2020-0031-DRAFT-25338

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NOAA-NMFS-2020-0031-DRAFT-30364
NOAA-NMFS-2020-0031-DRAFT-30365
NOAA-NMFS-2020-0031-DRAFT-30366
NOAA-NMFS-2020-0031-DRAFT-30367
NOAA-NMFS-2020-0031-DRAFT-30368
NOAA-NMFS-2020-0031-DRAFT-30369
NOAA-NMFS-2020-0031-DRAFT-30370
NOAA-NMFS-2020-0031-DRAFT-30371
NOAA-NMFS-2020-0031-DRAFT-30372
NOAA-NMFS-2020-0031-DRAFT-30373
NOAA-NMFS-2020-0031-DRAFT-30374
NOAA-NMFS-2020-0031-DRAFT-30375
NOAA-NMFS-2020-0031-DRAFT-30376
NOAA-NMFS-2020-0031-DRAFT-30377
NOAA-NMFS-2020-0031-DRAFT-30378
NOAA-NMFS-2020-0031-DRAFT-30379
NOAA-NMFS-2020-0031-DRAFT-30380
NOAA-NMFS-2020-0031-DRAFT-30381
NOAA-NMFS-2020-0031-DRAFT-30382
NOAA-NMFS-2020-0031-DRAFT-30383
NOAA-NMFS-2020-0031-DRAFT-30384
NOAA-NMFS-2020-0031-DRAFT-30385
NOAA-NMFS-2020-0031-DRAFT-30386
NOAA-NMFS-2020-0031-DRAFT-30387
NOAA-NMFS-2020-0031-DRAFT-30388
NOAA-NMFS-2020-0031-DRAFT-30389
NOAA-NMFS-2020-0031-DRAFT-30390
NOAA-NMFS-2020-0031-DRAFT-30391
NOAA-NMFS-2020-0031-DRAFT-30392
NOAA-NMFS-2020-0031-DRAFT-30393
NOAA-NMFS-2020-0031-DRAFT-30394
NOAA-NMFS-2020-0031-DRAFT-30395
NOAA-NMFS-2020-0031-DRAFT-30396
NOAA-NMFS-2020-0031-DRAFT-30397
NOAA-NMFS-2020-0031-DRAFT-30398
NOAA-NMFS-2020-0031-DRAFT-30399
NOAA-NMFS-2020-0031-DRAFT-30400
NOAA-NMFS-2020-0031-DRAFT-30401
NOAA-NMFS-2020-0031-DRAFT-30402
NOAA-NMFS-2020-0031-DRAFT-30403
NOAA-NMFS-2020-0031-DRAFT-30404

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NOAA-NMFS-2020-0031-DRAFT-25339
NOAA-NMFS-2020-0031-DRAFT-25340
NOAA-NMFS-2020-0031-DRAFT-25341
NOAA-NMFS-2020-0031-DRAFT-25342
NOAA-NMFS-2020-0031-DRAFT-25343
NOAA-NMFS-2020-0031-DRAFT-25344
NOAA-NMFS-2020-0031-DRAFT-25345
NOAA-NMFS-2020-0031-DRAFT-25346
NOAA-NMFS-2020-0031-DRAFT-25347
NOAA-NMFS-2020-0031-DRAFT-25348
NOAA-NMFS-2020-0031-DRAFT-25349
NOAA-NMFS-2020-0031-DRAFT-25350
NOAA-NMFS-2020-0031-DRAFT-25351
NOAA-NMFS-2020-0031-DRAFT-25352
NOAA-NMFS-2020-0031-DRAFT-25353
NOAA-NMFS-2020-0031-DRAFT-25354
NOAA-NMFS-2020-0031-DRAFT-25355
NOAA-NMFS-2020-0031-DRAFT-25356
NOAA-NMFS-2020-0031-DRAFT-25357
NOAA-NMFS-2020-0031-DRAFT-25358
NOAA-NMFS-2020-0031-DRAFT-25359
NOAA-NMFS-2020-0031-DRAFT-25360
NOAA-NMFS-2020-0031-DRAFT-25361
NOAA-NMFS-2020-0031-DRAFT-25362
NOAA-NMFS-2020-0031-DRAFT-25363
NOAA-NMFS-2020-0031-DRAFT-25364
NOAA-NMFS-2020-0031-DRAFT-25365
NOAA-NMFS-2020-0031-DRAFT-25366
NOAA-NMFS-2020-0031-DRAFT-25367
NOAA-NMFS-2020-0031-DRAFT-25368
NOAA-NMFS-2020-0031-DRAFT-25369
NOAA-NMFS-2020-0031-DRAFT-25370
NOAA-NMFS-2020-0031-DRAFT-25371
NOAA-NMFS-2020-0031-DRAFT-25372
NOAA-NMFS-2020-0031-DRAFT-25373
NOAA-NMFS-2020-0031-DRAFT-25374
NOAA-NMFS-2020-0031-DRAFT-25375
NOAA-NMFS-2020-0031-DRAFT-25376
NOAA-NMFS-2020-0031-DRAFT-25377
NOAA-NMFS-2020-0031-DRAFT-25378
NOAA-NMFS-2020-0031-DRAFT-25379

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NOAA-NMFS-2020-0031-DRAFT-30405
NOAA-NMFS-2020-0031-DRAFT-30406
NOAA-NMFS-2020-0031-DRAFT-30407
NOAA-NMFS-2020-0031-DRAFT-30408
NOAA-NMFS-2020-0031-DRAFT-30409
NOAA-NMFS-2020-0031-DRAFT-30410
NOAA-NMFS-2020-0031-DRAFT-30411
NOAA-NMFS-2020-0031-DRAFT-30412
NOAA-NMFS-2020-0031-DRAFT-30413
NOAA-NMFS-2020-0031-DRAFT-30414
NOAA-NMFS-2020-0031-DRAFT-30415
NOAA-NMFS-2020-0031-DRAFT-30416
NOAA-NMFS-2020-0031-DRAFT-30417
NOAA-NMFS-2020-0031-DRAFT-30418
NOAA-NMFS-2020-0031-DRAFT-30419
NOAA-NMFS-2020-0031-DRAFT-30420
NOAA-NMFS-2020-0031-DRAFT-30421
NOAA-NMFS-2020-0031-DRAFT-30422
NOAA-NMFS-2020-0031-DRAFT-30423
NOAA-NMFS-2020-0031-DRAFT-30424
NOAA-NMFS-2020-0031-DRAFT-30425
NOAA-NMFS-2020-0031-DRAFT-30426
NOAA-NMFS-2020-0031-DRAFT-30427
NOAA-NMFS-2020-0031-DRAFT-30428
NOAA-NMFS-2020-0031-DRAFT-30429
NOAA-NMFS-2020-0031-DRAFT-30430
NOAA-NMFS-2020-0031-DRAFT-30431
NOAA-NMFS-2020-0031-DRAFT-30432
NOAA-NMFS-2020-0031-DRAFT-30433
NOAA-NMFS-2020-0031-DRAFT-30434
NOAA-NMFS-2020-0031-DRAFT-30435
NOAA-NMFS-2020-0031-DRAFT-30436
NOAA-NMFS-2020-0031-DRAFT-30437
NOAA-NMFS-2020-0031-DRAFT-30438
NOAA-NMFS-2020-0031-DRAFT-30439
NOAA-NMFS-2020-0031-DRAFT-30440
NOAA-NMFS-2020-0031-DRAFT-30441
NOAA-NMFS-2020-0031-DRAFT-30442
NOAA-NMFS-2020-0031-DRAFT-30443
NOAA-NMFS-2020-0031-DRAFT-30444
NOAA-NMFS-2020-0031-DRAFT-30445

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NOAA-NMFS-2020-0031-DRAFT-25380
NOAA-NMFS-2020-0031-DRAFT-25381
NOAA-NMFS-2020-0031-DRAFT-25382
NOAA-NMFS-2020-0031-DRAFT-25385
NOAA-NMFS-2020-0031-DRAFT-25386
NOAA-NMFS-2020-0031-DRAFT-25387
NOAA-NMFS-2020-0031-DRAFT-25388
NOAA-NMFS-2020-0031-DRAFT-25389
NOAA-NMFS-2020-0031-DRAFT-25390
NOAA-NMFS-2020-0031-DRAFT-25391
NOAA-NMFS-2020-0031-DRAFT-25392
NOAA-NMFS-2020-0031-DRAFT-25393
NOAA-NMFS-2020-0031-DRAFT-25394
NOAA-NMFS-2020-0031-DRAFT-25395
NOAA-NMFS-2020-0031-DRAFT-25396
NOAA-NMFS-2020-0031-DRAFT-25397
NOAA-NMFS-2020-0031-DRAFT-25398
NOAA-NMFS-2020-0031-DRAFT-25399
NOAA-NMFS-2020-0031-DRAFT-25400
NOAA-NMFS-2020-0031-DRAFT-25401
NOAA-NMFS-2020-0031-DRAFT-25402
NOAA-NMFS-2020-0031-DRAFT-25403
NOAA-NMFS-2020-0031-DRAFT-25404
NOAA-NMFS-2020-0031-DRAFT-25405
NOAA-NMFS-2020-0031-DRAFT-25406
NOAA-NMFS-2020-0031-DRAFT-25407
NOAA-NMFS-2020-0031-DRAFT-25408
NOAA-NMFS-2020-0031-DRAFT-25409
NOAA-NMFS-2020-0031-DRAFT-25410
NOAA-NMFS-2020-0031-DRAFT-25411
NOAA-NMFS-2020-0031-DRAFT-25412
NOAA-NMFS-2020-0031-DRAFT-25413
NOAA-NMFS-2020-0031-DRAFT-25414
NOAA-NMFS-2020-0031-DRAFT-25415
NOAA-NMFS-2020-0031-DRAFT-25416
NOAA-NMFS-2020-0031-DRAFT-25417
NOAA-NMFS-2020-0031-DRAFT-25418
NOAA-NMFS-2020-0031-DRAFT-25419
NOAA-NMFS-2020-0031-DRAFT-25420
NOAA-NMFS-2020-0031-DRAFT-25421
NOAA-NMFS-2020-0031-DRAFT-25422

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NOAA-NMFS-2020-0031-DRAFT-30446
NOAA-NMFS-2020-0031-DRAFT-30447
NOAA-NMFS-2020-0031-DRAFT-30448
NOAA-NMFS-2020-0031-DRAFT-30449
NOAA-NMFS-2020-0031-DRAFT-30450
NOAA-NMFS-2020-0031-DRAFT-30451
NOAA-NMFS-2020-0031-DRAFT-30452
NOAA-NMFS-2020-0031-DRAFT-30453
NOAA-NMFS-2020-0031-DRAFT-30454
NOAA-NMFS-2020-0031-DRAFT-30455
NOAA-NMFS-2020-0031-DRAFT-30456
NOAA-NMFS-2020-0031-DRAFT-30457
NOAA-NMFS-2020-0031-DRAFT-30458
NOAA-NMFS-2020-0031-DRAFT-30459
NOAA-NMFS-2020-0031-DRAFT-30460
NOAA-NMFS-2020-0031-DRAFT-30461
NOAA-NMFS-2020-0031-DRAFT-30462
NOAA-NMFS-2020-0031-DRAFT-30463
NOAA-NMFS-2020-0031-DRAFT-30464
NOAA-NMFS-2020-0031-DRAFT-30465
NOAA-NMFS-2020-0031-DRAFT-30466
NOAA-NMFS-2020-0031-DRAFT-30467
NOAA-NMFS-2020-0031-DRAFT-30468
NOAA-NMFS-2020-0031-DRAFT-30469
NOAA-NMFS-2020-0031-DRAFT-30470
NOAA-NMFS-2020-0031-DRAFT-30471
NOAA-NMFS-2020-0031-DRAFT-30472
NOAA-NMFS-2020-0031-DRAFT-30473
NOAA-NMFS-2020-0031-DRAFT-30474
NOAA-NMFS-2020-0031-DRAFT-30475
NOAA-NMFS-2020-0031-DRAFT-30476
NOAA-NMFS-2020-0031-DRAFT-30477
NOAA-NMFS-2020-0031-DRAFT-30478
NOAA-NMFS-2020-0031-DRAFT-30479
NOAA-NMFS-2020-0031-DRAFT-30480
NOAA-NMFS-2020-0031-DRAFT-30481
NOAA-NMFS-2020-0031-DRAFT-30482
NOAA-NMFS-2020-0031-DRAFT-30483
NOAA-NMFS-2020-0031-DRAFT-30484
NOAA-NMFS-2020-0031-DRAFT-30485
NOAA-NMFS-2020-0031-DRAFT-30486

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NOAA-NMFS-2020-0031-DRAFT-25423
NOAA-NMFS-2020-0031-DRAFT-25424
NOAA-NMFS-2020-0031-DRAFT-25425
NOAA-NMFS-2020-0031-DRAFT-25426
NOAA-NMFS-2020-0031-DRAFT-25427
NOAA-NMFS-2020-0031-DRAFT-25428
NOAA-NMFS-2020-0031-DRAFT-25429
NOAA-NMFS-2020-0031-DRAFT-25430
NOAA-NMFS-2020-0031-DRAFT-25431
NOAA-NMFS-2020-0031-DRAFT-25432
NOAA-NMFS-2020-0031-DRAFT-25433
NOAA-NMFS-2020-0031-DRAFT-25434
NOAA-NMFS-2020-0031-DRAFT-25435
NOAA-NMFS-2020-0031-DRAFT-25436
NOAA-NMFS-2020-0031-DRAFT-25437
NOAA-NMFS-2020-0031-DRAFT-25438
NOAA-NMFS-2020-0031-DRAFT-25439
NOAA-NMFS-2020-0031-DRAFT-25440
NOAA-NMFS-2020-0031-DRAFT-25441
NOAA-NMFS-2020-0031-DRAFT-25442
NOAA-NMFS-2020-0031-DRAFT-25443
NOAA-NMFS-2020-0031-DRAFT-25444
NOAA-NMFS-2020-0031-DRAFT-25445
NOAA-NMFS-2020-0031-DRAFT-25446
NOAA-NMFS-2020-0031-DRAFT-25447
NOAA-NMFS-2020-0031-DRAFT-25448
NOAA-NMFS-2020-0031-DRAFT-25449
NOAA-NMFS-2020-0031-DRAFT-25450
NOAA-NMFS-2020-0031-DRAFT-25451
NOAA-NMFS-2020-0031-DRAFT-25452
NOAA-NMFS-2020-0031-DRAFT-25453
NOAA-NMFS-2020-0031-DRAFT-25454
NOAA-NMFS-2020-0031-DRAFT-25455
NOAA-NMFS-2020-0031-DRAFT-25456
NOAA-NMFS-2020-0031-DRAFT-25457
NOAA-NMFS-2020-0031-DRAFT-25458
NOAA-NMFS-2020-0031-DRAFT-25459
NOAA-NMFS-2020-0031-DRAFT-25460
NOAA-NMFS-2020-0031-DRAFT-25461
NOAA-NMFS-2020-0031-DRAFT-25462
NOAA-NMFS-2020-0031-DRAFT-25463

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NOAA-NMFS-2020-0031-DRAFT-30487
NOAA-NMFS-2020-0031-DRAFT-30488
NOAA-NMFS-2020-0031-DRAFT-30489
NOAA-NMFS-2020-0031-DRAFT-30490
NOAA-NMFS-2020-0031-DRAFT-30491
NOAA-NMFS-2020-0031-DRAFT-30492
NOAA-NMFS-2020-0031-DRAFT-30493
NOAA-NMFS-2020-0031-DRAFT-30494
NOAA-NMFS-2020-0031-DRAFT-30495
NOAA-NMFS-2020-0031-DRAFT-30496
NOAA-NMFS-2020-0031-DRAFT-30497
NOAA-NMFS-2020-0031-DRAFT-30498
NOAA-NMFS-2020-0031-DRAFT-30499
NOAA-NMFS-2020-0031-DRAFT-30500
NOAA-NMFS-2020-0031-DRAFT-30501
NOAA-NMFS-2020-0031-DRAFT-30502
NOAA-NMFS-2020-0031-DRAFT-30503
NOAA-NMFS-2020-0031-DRAFT-30504
NOAA-NMFS-2020-0031-DRAFT-30505
NOAA-NMFS-2020-0031-DRAFT-30506
NOAA-NMFS-2020-0031-DRAFT-30507
NOAA-NMFS-2020-0031-DRAFT-30508
NOAA-NMFS-2020-0031-DRAFT-30509
NOAA-NMFS-2020-0031-DRAFT-30510
NOAA-NMFS-2020-0031-DRAFT-30511
NOAA-NMFS-2020-0031-DRAFT-30512
NOAA-NMFS-2020-0031-DRAFT-30514
NOAA-NMFS-2020-0031-DRAFT-30515
NOAA-NMFS-2020-0031-DRAFT-30516
NOAA-NMFS-2020-0031-DRAFT-30517
NOAA-NMFS-2020-0031-DRAFT-30518
NOAA-NMFS-2020-0031-DRAFT-30519
NOAA-NMFS-2020-0031-DRAFT-30520
NOAA-NMFS-2020-0031-DRAFT-30521
NOAA-NMFS-2020-0031-DRAFT-30522
NOAA-NMFS-2020-0031-DRAFT-30523
NOAA-NMFS-2020-0031-DRAFT-30524
NOAA-NMFS-2020-0031-DRAFT-30525
NOAA-NMFS-2020-0031-DRAFT-30526
NOAA-NMFS-2020-0031-DRAFT-30527
NOAA-NMFS-2020-0031-DRAFT-30528

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NOAA-NMFS-2020-0031-DRAFT-25464
NOAA-NMFS-2020-0031-DRAFT-25465
NOAA-NMFS-2020-0031-DRAFT-25466
NOAA-NMFS-2020-0031-DRAFT-25467
NOAA-NMFS-2020-0031-DRAFT-25468
NOAA-NMFS-2020-0031-DRAFT-25469
NOAA-NMFS-2020-0031-DRAFT-25470
NOAA-NMFS-2020-0031-DRAFT-25471
NOAA-NMFS-2020-0031-DRAFT-25472
NOAA-NMFS-2020-0031-DRAFT-25473
NOAA-NMFS-2020-0031-DRAFT-25474
NOAA-NMFS-2020-0031-DRAFT-25475
NOAA-NMFS-2020-0031-DRAFT-25476
NOAA-NMFS-2020-0031-DRAFT-25477
NOAA-NMFS-2020-0031-DRAFT-25478
NOAA-NMFS-2020-0031-DRAFT-25479
NOAA-NMFS-2020-0031-DRAFT-25480
NOAA-NMFS-2020-0031-DRAFT-25481
NOAA-NMFS-2020-0031-DRAFT-25482
NOAA-NMFS-2020-0031-DRAFT-25483
NOAA-NMFS-2020-0031-DRAFT-25484
NOAA-NMFS-2020-0031-DRAFT-25485
NOAA-NMFS-2020-0031-DRAFT-25486
NOAA-NMFS-2020-0031-DRAFT-25487
NOAA-NMFS-2020-0031-DRAFT-25488
NOAA-NMFS-2020-0031-DRAFT-25489
NOAA-NMFS-2020-0031-DRAFT-25490
NOAA-NMFS-2020-0031-DRAFT-25491
NOAA-NMFS-2020-0031-DRAFT-25492
NOAA-NMFS-2020-0031-DRAFT-25493
NOAA-NMFS-2020-0031-DRAFT-25494
NOAA-NMFS-2020-0031-DRAFT-25495
NOAA-NMFS-2020-0031-DRAFT-25496
NOAA-NMFS-2020-0031-DRAFT-25497
NOAA-NMFS-2020-0031-DRAFT-25498
NOAA-NMFS-2020-0031-DRAFT-25499
NOAA-NMFS-2020-0031-DRAFT-25500
NOAA-NMFS-2020-0031-DRAFT-25501
NOAA-NMFS-2020-0031-DRAFT-25502
NOAA-NMFS-2020-0031-DRAFT-25503
NOAA-NMFS-2020-0031-DRAFT-25504

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NOAA-NMFS-2020-0031-DRAFT-30529
NOAA-NMFS-2020-0031-DRAFT-30530
NOAA-NMFS-2020-0031-DRAFT-30531
NOAA-NMFS-2020-0031-DRAFT-30532
NOAA-NMFS-2020-0031-DRAFT-30533
NOAA-NMFS-2020-0031-DRAFT-30534
NOAA-NMFS-2020-0031-DRAFT-30535
NOAA-NMFS-2020-0031-DRAFT-30536
NOAA-NMFS-2020-0031-DRAFT-30537
NOAA-NMFS-2020-0031-DRAFT-30538
NOAA-NMFS-2020-0031-DRAFT-30539
NOAA-NMFS-2020-0031-DRAFT-30540
NOAA-NMFS-2020-0031-DRAFT-30541
NOAA-NMFS-2020-0031-DRAFT-30542
NOAA-NMFS-2020-0031-DRAFT-30543
NOAA-NMFS-2020-0031-DRAFT-30544
NOAA-NMFS-2020-0031-DRAFT-30545
NOAA-NMFS-2020-0031-DRAFT-30546
NOAA-NMFS-2020-0031-DRAFT-30547
NOAA-NMFS-2020-0031-DRAFT-30548
NOAA-NMFS-2020-0031-DRAFT-30549
NOAA-NMFS-2020-0031-DRAFT-30550
NOAA-NMFS-2020-0031-DRAFT-30551
NOAA-NMFS-2020-0031-DRAFT-30552
NOAA-NMFS-2020-0031-DRAFT-30553
NOAA-NMFS-2020-0031-DRAFT-30554
NOAA-NMFS-2020-0031-DRAFT-30555
NOAA-NMFS-2020-0031-DRAFT-30556
NOAA-NMFS-2020-0031-DRAFT-30557
NOAA-NMFS-2020-0031-DRAFT-30558
NOAA-NMFS-2020-0031-DRAFT-30559
NOAA-NMFS-2020-0031-DRAFT-30560
NOAA-NMFS-2020-0031-DRAFT-30561
NOAA-NMFS-2020-0031-DRAFT-30562
NOAA-NMFS-2020-0031-DRAFT-30563
NOAA-NMFS-2020-0031-DRAFT-30564
NOAA-NMFS-2020-0031-DRAFT-30565
NOAA-NMFS-2020-0031-DRAFT-30566
NOAA-NMFS-2020-0031-DRAFT-30567
NOAA-NMFS-2020-0031-DRAFT-30568
NOAA-NMFS-2020-0031-DRAFT-30569

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NOAA-NMFS-2020-0031-DRAFT-25505
NOAA-NMFS-2020-0031-DRAFT-25506
NOAA-NMFS-2020-0031-DRAFT-25507
NOAA-NMFS-2020-0031-DRAFT-25508
NOAA-NMFS-2020-0031-DRAFT-25509
NOAA-NMFS-2020-0031-DRAFT-25510
NOAA-NMFS-2020-0031-DRAFT-25511
NOAA-NMFS-2020-0031-DRAFT-25512
NOAA-NMFS-2020-0031-DRAFT-25513
NOAA-NMFS-2020-0031-DRAFT-25514
NOAA-NMFS-2020-0031-DRAFT-25515
NOAA-NMFS-2020-0031-DRAFT-25516
NOAA-NMFS-2020-0031-DRAFT-25517
NOAA-NMFS-2020-0031-DRAFT-25518
NOAA-NMFS-2020-0031-DRAFT-25519
NOAA-NMFS-2020-0031-DRAFT-25520
NOAA-NMFS-2020-0031-DRAFT-25522
NOAA-NMFS-2020-0031-DRAFT-25523
NOAA-NMFS-2020-0031-DRAFT-25524
NOAA-NMFS-2020-0031-DRAFT-25525
NOAA-NMFS-2020-0031-DRAFT-25526
NOAA-NMFS-2020-0031-DRAFT-25527
NOAA-NMFS-2020-0031-DRAFT-25528
NOAA-NMFS-2020-0031-DRAFT-25529
NOAA-NMFS-2020-0031-DRAFT-25530
NOAA-NMFS-2020-0031-DRAFT-25531
NOAA-NMFS-2020-0031-DRAFT-25532
NOAA-NMFS-2020-0031-DRAFT-25533
NOAA-NMFS-2020-0031-DRAFT-25534
NOAA-NMFS-2020-0031-DRAFT-25535
NOAA-NMFS-2020-0031-DRAFT-25536
NOAA-NMFS-2020-0031-DRAFT-25537
NOAA-NMFS-2020-0031-DRAFT-25538
NOAA-NMFS-2020-0031-DRAFT-25539
NOAA-NMFS-2020-0031-DRAFT-25540
NOAA-NMFS-2020-0031-DRAFT-25541
NOAA-NMFS-2020-0031-DRAFT-25542
NOAA-NMFS-2020-0031-DRAFT-25543
NOAA-NMFS-2020-0031-DRAFT-25544
NOAA-NMFS-2020-0031-DRAFT-25545
NOAA-NMFS-2020-0031-DRAFT-25546

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NOAA-NMFS-2020-0031-DRAFT-30570
NOAA-NMFS-2020-0031-DRAFT-30571
NOAA-NMFS-2020-0031-DRAFT-30572
NOAA-NMFS-2020-0031-DRAFT-30573
NOAA-NMFS-2020-0031-DRAFT-30574
NOAA-NMFS-2020-0031-DRAFT-30575
NOAA-NMFS-2020-0031-DRAFT-30576
NOAA-NMFS-2020-0031-DRAFT-30577
NOAA-NMFS-2020-0031-DRAFT-30578
NOAA-NMFS-2020-0031-DRAFT-30579
NOAA-NMFS-2020-0031-DRAFT-30580
NOAA-NMFS-2020-0031-DRAFT-30581
NOAA-NMFS-2020-0031-DRAFT-30582
NOAA-NMFS-2020-0031-DRAFT-30583
NOAA-NMFS-2020-0031-DRAFT-30584
NOAA-NMFS-2020-0031-DRAFT-30585
NOAA-NMFS-2020-0031-DRAFT-30586
NOAA-NMFS-2020-0031-DRAFT-30587
NOAA-NMFS-2020-0031-DRAFT-30588
NOAA-NMFS-2020-0031-DRAFT-30589
NOAA-NMFS-2020-0031-DRAFT-30590
NOAA-NMFS-2020-0031-DRAFT-30591
NOAA-NMFS-2020-0031-DRAFT-30592
NOAA-NMFS-2020-0031-DRAFT-30593
NOAA-NMFS-2020-0031-DRAFT-30594
NOAA-NMFS-2020-0031-DRAFT-30595
NOAA-NMFS-2020-0031-DRAFT-30596
NOAA-NMFS-2020-0031-DRAFT-30597
NOAA-NMFS-2020-0031-DRAFT-30598
NOAA-NMFS-2020-0031-DRAFT-30599
NOAA-NMFS-2020-0031-DRAFT-30600
NOAA-NMFS-2020-0031-DRAFT-30601
NOAA-NMFS-2020-0031-DRAFT-30602
NOAA-NMFS-2020-0031-DRAFT-30603
NOAA-NMFS-2020-0031-DRAFT-30604
NOAA-NMFS-2020-0031-DRAFT-30605
NOAA-NMFS-2020-0031-DRAFT-30606
NOAA-NMFS-2020-0031-DRAFT-30607
NOAA-NMFS-2020-0031-DRAFT-30608
NOAA-NMFS-2020-0031-DRAFT-30609
NOAA-NMFS-2020-0031-DRAFT-30610

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NOAA-NMFS-2020-0031-DRAFT-25547
NOAA-NMFS-2020-0031-DRAFT-25548
NOAA-NMFS-2020-0031-DRAFT-25549
NOAA-NMFS-2020-0031-DRAFT-25550
NOAA-NMFS-2020-0031-DRAFT-25551
NOAA-NMFS-2020-0031-DRAFT-25552
NOAA-NMFS-2020-0031-DRAFT-25553
NOAA-NMFS-2020-0031-DRAFT-25554
NOAA-NMFS-2020-0031-DRAFT-25555
NOAA-NMFS-2020-0031-DRAFT-25556
NOAA-NMFS-2020-0031-DRAFT-25557
NOAA-NMFS-2020-0031-DRAFT-25558
NOAA-NMFS-2020-0031-DRAFT-25559
NOAA-NMFS-2020-0031-DRAFT-25560
NOAA-NMFS-2020-0031-DRAFT-25561
NOAA-NMFS-2020-0031-DRAFT-25562
NOAA-NMFS-2020-0031-DRAFT-25563
NOAA-NMFS-2020-0031-DRAFT-25564
NOAA-NMFS-2020-0031-DRAFT-25565
NOAA-NMFS-2020-0031-DRAFT-25566
NOAA-NMFS-2020-0031-DRAFT-25567
NOAA-NMFS-2020-0031-DRAFT-25568
NOAA-NMFS-2020-0031-DRAFT-25569
NOAA-NMFS-2020-0031-DRAFT-25570
NOAA-NMFS-2020-0031-DRAFT-25571
NOAA-NMFS-2020-0031-DRAFT-25572
NOAA-NMFS-2020-0031-DRAFT-25573
NOAA-NMFS-2020-0031-DRAFT-25574
NOAA-NMFS-2020-0031-DRAFT-25575
NOAA-NMFS-2020-0031-DRAFT-25576
NOAA-NMFS-2020-0031-DRAFT-25577
NOAA-NMFS-2020-0031-DRAFT-25578
NOAA-NMFS-2020-0031-DRAFT-25579
NOAA-NMFS-2020-0031-DRAFT-25580
NOAA-NMFS-2020-0031-DRAFT-25581
NOAA-NMFS-2020-0031-DRAFT-25582
NOAA-NMFS-2020-0031-DRAFT-25583
NOAA-NMFS-2020-0031-DRAFT-25584
NOAA-NMFS-2020-0031-DRAFT-25585
NOAA-NMFS-2020-0031-DRAFT-25586
NOAA-NMFS-2020-0031-DRAFT-25587

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NOAA-NMFS-2020-0031-DRAFT-30611
NOAA-NMFS-2020-0031-DRAFT-30612
NOAA-NMFS-2020-0031-DRAFT-30613
NOAA-NMFS-2020-0031-DRAFT-30614
NOAA-NMFS-2020-0031-DRAFT-30615
NOAA-NMFS-2020-0031-DRAFT-30616
NOAA-NMFS-2020-0031-DRAFT-30617
NOAA-NMFS-2020-0031-DRAFT-30618
NOAA-NMFS-2020-0031-DRAFT-30619
NOAA-NMFS-2020-0031-DRAFT-30620
NOAA-NMFS-2020-0031-DRAFT-30621
NOAA-NMFS-2020-0031-DRAFT-30622
NOAA-NMFS-2020-0031-DRAFT-30623
NOAA-NMFS-2020-0031-DRAFT-30624
NOAA-NMFS-2020-0031-DRAFT-30625
NOAA-NMFS-2020-0031-DRAFT-30626
NOAA-NMFS-2020-0031-DRAFT-30627
NOAA-NMFS-2020-0031-DRAFT-30628
NOAA-NMFS-2020-0031-DRAFT-30629
NOAA-NMFS-2020-0031-DRAFT-30630
NOAA-NMFS-2020-0031-DRAFT-30631
NOAA-NMFS-2020-0031-DRAFT-30632
NOAA-NMFS-2020-0031-DRAFT-30633
NOAA-NMFS-2020-0031-DRAFT-30634
NOAA-NMFS-2020-0031-DRAFT-30635
NOAA-NMFS-2020-0031-DRAFT-30636
NOAA-NMFS-2020-0031-DRAFT-30637
NOAA-NMFS-2020-0031-DRAFT-30638
NOAA-NMFS-2020-0031-DRAFT-30639
NOAA-NMFS-2020-0031-DRAFT-30640
NOAA-NMFS-2020-0031-DRAFT-30641
NOAA-NMFS-2020-0031-DRAFT-30642
NOAA-NMFS-2020-0031-DRAFT-30643
NOAA-NMFS-2020-0031-DRAFT-30644
NOAA-NMFS-2020-0031-DRAFT-30645
NOAA-NMFS-2020-0031-DRAFT-30646
NOAA-NMFS-2020-0031-DRAFT-30647
NOAA-NMFS-2020-0031-DRAFT-30648
NOAA-NMFS-2020-0031-DRAFT-30649
NOAA-NMFS-2020-0031-DRAFT-30650
NOAA-NMFS-2020-0031-DRAFT-30651

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NOAA-NMFS-2020-0031-DRAFT-25588
NOAA-NMFS-2020-0031-DRAFT-25589
NOAA-NMFS-2020-0031-DRAFT-25590
NOAA-NMFS-2020-0031-DRAFT-25591
NOAA-NMFS-2020-0031-DRAFT-25592
NOAA-NMFS-2020-0031-DRAFT-25593
NOAA-NMFS-2020-0031-DRAFT-25594
NOAA-NMFS-2020-0031-DRAFT-25595
NOAA-NMFS-2020-0031-DRAFT-25596
NOAA-NMFS-2020-0031-DRAFT-25597
NOAA-NMFS-2020-0031-DRAFT-25598
NOAA-NMFS-2020-0031-DRAFT-25599
NOAA-NMFS-2020-0031-DRAFT-25600
NOAA-NMFS-2020-0031-DRAFT-25601
NOAA-NMFS-2020-0031-DRAFT-25602
NOAA-NMFS-2020-0031-DRAFT-25603
NOAA-NMFS-2020-0031-DRAFT-25604
NOAA-NMFS-2020-0031-DRAFT-25605
NOAA-NMFS-2020-0031-DRAFT-25606
NOAA-NMFS-2020-0031-DRAFT-25607
NOAA-NMFS-2020-0031-DRAFT-25608
NOAA-NMFS-2020-0031-DRAFT-25609
NOAA-NMFS-2020-0031-DRAFT-25610
NOAA-NMFS-2020-0031-DRAFT-25611
NOAA-NMFS-2020-0031-DRAFT-25612
NOAA-NMFS-2020-0031-DRAFT-25613
NOAA-NMFS-2020-0031-DRAFT-25614
NOAA-NMFS-2020-0031-DRAFT-25615
NOAA-NMFS-2020-0031-DRAFT-25616
NOAA-NMFS-2020-0031-DRAFT-25617
NOAA-NMFS-2020-0031-DRAFT-25618
NOAA-NMFS-2020-0031-DRAFT-25619
NOAA-NMFS-2020-0031-DRAFT-25620
NOAA-NMFS-2020-0031-DRAFT-25621
NOAA-NMFS-2020-0031-DRAFT-25622
NOAA-NMFS-2020-0031-DRAFT-25623
NOAA-NMFS-2020-0031-DRAFT-25624
NOAA-NMFS-2020-0031-DRAFT-25625
NOAA-NMFS-2020-0031-DRAFT-25626
NOAA-NMFS-2020-0031-DRAFT-25627
NOAA-NMFS-2020-0031-DRAFT-25628

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NOAA-NMFS-2020-0031-DRAFT-30652
NOAA-NMFS-2020-0031-DRAFT-30653
NOAA-NMFS-2020-0031-DRAFT-30654
NOAA-NMFS-2020-0031-DRAFT-30655
NOAA-NMFS-2020-0031-DRAFT-30656
NOAA-NMFS-2020-0031-DRAFT-30657
NOAA-NMFS-2020-0031-DRAFT-30658
NOAA-NMFS-2020-0031-DRAFT-30659
NOAA-NMFS-2020-0031-DRAFT-30660
NOAA-NMFS-2020-0031-DRAFT-30661
NOAA-NMFS-2020-0031-DRAFT-30662
NOAA-NMFS-2020-0031-DRAFT-30663
NOAA-NMFS-2020-0031-DRAFT-30664
NOAA-NMFS-2020-0031-DRAFT-30665
NOAA-NMFS-2020-0031-DRAFT-30666
NOAA-NMFS-2020-0031-DRAFT-30667
NOAA-NMFS-2020-0031-DRAFT-30668
NOAA-NMFS-2020-0031-DRAFT-30669
NOAA-NMFS-2020-0031-DRAFT-30670
NOAA-NMFS-2020-0031-DRAFT-30671
NOAA-NMFS-2020-0031-DRAFT-30672
NOAA-NMFS-2020-0031-DRAFT-30673
NOAA-NMFS-2020-0031-DRAFT-30674
NOAA-NMFS-2020-0031-DRAFT-30675
NOAA-NMFS-2020-0031-DRAFT-30676
NOAA-NMFS-2020-0031-DRAFT-30677
NOAA-NMFS-2020-0031-DRAFT-30678
NOAA-NMFS-2020-0031-DRAFT-30679
NOAA-NMFS-2020-0031-DRAFT-30680
NOAA-NMFS-2020-0031-DRAFT-30681
NOAA-NMFS-2020-0031-DRAFT-30682
NOAA-NMFS-2020-0031-DRAFT-30683
NOAA-NMFS-2020-0031-DRAFT-30684
NOAA-NMFS-2020-0031-DRAFT-30685
NOAA-NMFS-2020-0031-DRAFT-30686
NOAA-NMFS-2020-0031-DRAFT-30687
NOAA-NMFS-2020-0031-DRAFT-30688
NOAA-NMFS-2020-0031-DRAFT-30689
NOAA-NMFS-2020-0031-DRAFT-30690
NOAA-NMFS-2020-0031-DRAFT-30691
NOAA-NMFS-2020-0031-DRAFT-30692

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NOAA-NMFS-2020-0031-DRAFT-25629
NOAA-NMFS-2020-0031-DRAFT-25630
NOAA-NMFS-2020-0031-DRAFT-25631
NOAA-NMFS-2020-0031-DRAFT-25632
NOAA-NMFS-2020-0031-DRAFT-25633
NOAA-NMFS-2020-0031-DRAFT-25634
NOAA-NMFS-2020-0031-DRAFT-25635
NOAA-NMFS-2020-0031-DRAFT-25636
NOAA-NMFS-2020-0031-DRAFT-25637
NOAA-NMFS-2020-0031-DRAFT-25639
NOAA-NMFS-2020-0031-DRAFT-25640
NOAA-NMFS-2020-0031-DRAFT-25641
NOAA-NMFS-2020-0031-DRAFT-25642
NOAA-NMFS-2020-0031-DRAFT-25643
NOAA-NMFS-2020-0031-DRAFT-25644
NOAA-NMFS-2020-0031-DRAFT-25645
NOAA-NMFS-2020-0031-DRAFT-25646
NOAA-NMFS-2020-0031-DRAFT-25647
NOAA-NMFS-2020-0031-DRAFT-25648
NOAA-NMFS-2020-0031-DRAFT-25649
NOAA-NMFS-2020-0031-DRAFT-25650
NOAA-NMFS-2020-0031-DRAFT-25651
NOAA-NMFS-2020-0031-DRAFT-25652
NOAA-NMFS-2020-0031-DRAFT-25653
NOAA-NMFS-2020-0031-DRAFT-25654
NOAA-NMFS-2020-0031-DRAFT-25655
NOAA-NMFS-2020-0031-DRAFT-25656
NOAA-NMFS-2020-0031-DRAFT-25657
NOAA-NMFS-2020-0031-DRAFT-25658
NOAA-NMFS-2020-0031-DRAFT-25659
NOAA-NMFS-2020-0031-DRAFT-25660
NOAA-NMFS-2020-0031-DRAFT-25661
NOAA-NMFS-2020-0031-DRAFT-25662
NOAA-NMFS-2020-0031-DRAFT-25663
NOAA-NMFS-2020-0031-DRAFT-25664
NOAA-NMFS-2020-0031-DRAFT-25665
NOAA-NMFS-2020-0031-DRAFT-25666
NOAA-NMFS-2020-0031-DRAFT-25667
NOAA-NMFS-2020-0031-DRAFT-25668
NOAA-NMFS-2020-0031-DRAFT-25669
NOAA-NMFS-2020-0031-DRAFT-25670

Comment from Carroll, Maureen
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NOAA-NMFS-2020-0031-DRAFT-30693
NOAA-NMFS-2020-0031-DRAFT-30694
NOAA-NMFS-2020-0031-DRAFT-30695
NOAA-NMFS-2020-0031-DRAFT-30696
NOAA-NMFS-2020-0031-DRAFT-30697
NOAA-NMFS-2020-0031-DRAFT-30698
NOAA-NMFS-2020-0031-DRAFT-30699
NOAA-NMFS-2020-0031-DRAFT-30700
NOAA-NMFS-2020-0031-DRAFT-30701
NOAA-NMFS-2020-0031-DRAFT-30702
NOAA-NMFS-2020-0031-DRAFT-30703
NOAA-NMFS-2020-0031-DRAFT-30704
NOAA-NMFS-2020-0031-DRAFT-30705
NOAA-NMFS-2020-0031-DRAFT-30706
NOAA-NMFS-2020-0031-DRAFT-30707
NOAA-NMFS-2020-0031-DRAFT-30708
NOAA-NMFS-2020-0031-DRAFT-30709
NOAA-NMFS-2020-0031-DRAFT-30710
NOAA-NMFS-2020-0031-DRAFT-30711
NOAA-NMFS-2020-0031-DRAFT-30712
NOAA-NMFS-2020-0031-DRAFT-30713
NOAA-NMFS-2020-0031-DRAFT-30714
NOAA-NMFS-2020-0031-DRAFT-30715
NOAA-NMFS-2020-0031-DRAFT-30716
NOAA-NMFS-2020-0031-DRAFT-30717
NOAA-NMFS-2020-0031-DRAFT-30718
NOAA-NMFS-2020-0031-DRAFT-30719
NOAA-NMFS-2020-0031-DRAFT-30720
NOAA-NMFS-2020-0031-DRAFT-30721
NOAA-NMFS-2020-0031-DRAFT-30722
NOAA-NMFS-2020-0031-DRAFT-30723
NOAA-NMFS-2020-0031-DRAFT-30724
NOAA-NMFS-2020-0031-DRAFT-30725
NOAA-NMFS-2020-0031-DRAFT-30726
NOAA-NMFS-2020-0031-DRAFT-30727
NOAA-NMFS-2020-0031-DRAFT-30728
NOAA-NMFS-2020-0031-DRAFT-30729
NOAA-NMFS-2020-0031-DRAFT-30730
NOAA-NMFS-2020-0031-DRAFT-30731
NOAA-NMFS-2020-0031-DRAFT-30732
NOAA-NMFS-2020-0031-DRAFT-30733

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NOAA-NMFS-2020-0031-DRAFT-25671
NOAA-NMFS-2020-0031-DRAFT-25672
NOAA-NMFS-2020-0031-DRAFT-25673
NOAA-NMFS-2020-0031-DRAFT-25674
NOAA-NMFS-2020-0031-DRAFT-25675
NOAA-NMFS-2020-0031-DRAFT-25676
NOAA-NMFS-2020-0031-DRAFT-25677
NOAA-NMFS-2020-0031-DRAFT-25678
NOAA-NMFS-2020-0031-DRAFT-25679
NOAA-NMFS-2020-0031-DRAFT-25680
NOAA-NMFS-2020-0031-DRAFT-25681
NOAA-NMFS-2020-0031-DRAFT-25682
NOAA-NMFS-2020-0031-DRAFT-25683
NOAA-NMFS-2020-0031-DRAFT-25684
NOAA-NMFS-2020-0031-DRAFT-25685
NOAA-NMFS-2020-0031-DRAFT-25686
NOAA-NMFS-2020-0031-DRAFT-25687
NOAA-NMFS-2020-0031-DRAFT-25688
NOAA-NMFS-2020-0031-DRAFT-25689
NOAA-NMFS-2020-0031-DRAFT-25690
NOAA-NMFS-2020-0031-DRAFT-25691
NOAA-NMFS-2020-0031-DRAFT-25692
NOAA-NMFS-2020-0031-DRAFT-25693
NOAA-NMFS-2020-0031-DRAFT-25694
NOAA-NMFS-2020-0031-DRAFT-25695
NOAA-NMFS-2020-0031-DRAFT-25696
NOAA-NMFS-2020-0031-DRAFT-25697
NOAA-NMFS-2020-0031-DRAFT-25698
NOAA-NMFS-2020-0031-DRAFT-25699
NOAA-NMFS-2020-0031-DRAFT-25700
NOAA-NMFS-2020-0031-DRAFT-25701
NOAA-NMFS-2020-0031-DRAFT-25702
NOAA-NMFS-2020-0031-DRAFT-25703
NOAA-NMFS-2020-0031-DRAFT-25704
NOAA-NMFS-2020-0031-DRAFT-25705
NOAA-NMFS-2020-0031-DRAFT-25706
NOAA-NMFS-2020-0031-DRAFT-25707
NOAA-NMFS-2020-0031-DRAFT-25708
NOAA-NMFS-2020-0031-DRAFT-25709
NOAA-NMFS-2020-0031-DRAFT-25710
NOAA-NMFS-2020-0031-DRAFT-25711

Comment from Kaliban, Timothy
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Comment from McCoubrie, Elise
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NOAA-NMFS-2020-0031-DRAFT-30734
NOAA-NMFS-2020-0031-DRAFT-30735
NOAA-NMFS-2020-0031-DRAFT-30736
NOAA-NMFS-2020-0031-DRAFT-30737
NOAA-NMFS-2020-0031-DRAFT-30738
NOAA-NMFS-2020-0031-DRAFT-30739
NOAA-NMFS-2020-0031-DRAFT-30740
NOAA-NMFS-2020-0031-DRAFT-30741
NOAA-NMFS-2020-0031-DRAFT-30742
NOAA-NMFS-2020-0031-DRAFT-30743
NOAA-NMFS-2020-0031-DRAFT-30744
NOAA-NMFS-2020-0031-DRAFT-30745
NOAA-NMFS-2020-0031-DRAFT-30746
NOAA-NMFS-2020-0031-DRAFT-30747
NOAA-NMFS-2020-0031-DRAFT-30748
NOAA-NMFS-2020-0031-DRAFT-30749
NOAA-NMFS-2020-0031-DRAFT-30750
NOAA-NMFS-2020-0031-DRAFT-30751
NOAA-NMFS-2020-0031-DRAFT-30752
NOAA-NMFS-2020-0031-DRAFT-30753
NOAA-NMFS-2020-0031-DRAFT-30754
NOAA-NMFS-2020-0031-DRAFT-30755
NOAA-NMFS-2020-0031-DRAFT-30756
NOAA-NMFS-2020-0031-DRAFT-30757
NOAA-NMFS-2020-0031-DRAFT-30758
NOAA-NMFS-2020-0031-DRAFT-30759
NOAA-NMFS-2020-0031-DRAFT-30760
NOAA-NMFS-2020-0031-DRAFT-30761
NOAA-NMFS-2020-0031-DRAFT-30762
NOAA-NMFS-2020-0031-DRAFT-30763
NOAA-NMFS-2020-0031-DRAFT-30764
NOAA-NMFS-2020-0031-DRAFT-30765
NOAA-NMFS-2020-0031-DRAFT-30766
NOAA-NMFS-2020-0031-DRAFT-30767
NOAA-NMFS-2020-0031-DRAFT-30768
NOAA-NMFS-2020-0031-DRAFT-30769
NOAA-NMFS-2020-0031-DRAFT-30770
NOAA-NMFS-2020-0031-DRAFT-30771
NOAA-NMFS-2020-0031-DRAFT-30772
NOAA-NMFS-2020-0031-DRAFT-30773
NOAA-NMFS-2020-0031-DRAFT-30774

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NOAA-NMFS-2020-0031-DRAFT-25712
NOAA-NMFS-2020-0031-DRAFT-25713
NOAA-NMFS-2020-0031-DRAFT-25714
NOAA-NMFS-2020-0031-DRAFT-25715
NOAA-NMFS-2020-0031-DRAFT-25716
NOAA-NMFS-2020-0031-DRAFT-25717
NOAA-NMFS-2020-0031-DRAFT-25718
NOAA-NMFS-2020-0031-DRAFT-25719
NOAA-NMFS-2020-0031-DRAFT-25720
NOAA-NMFS-2020-0031-DRAFT-25721
NOAA-NMFS-2020-0031-DRAFT-25722
NOAA-NMFS-2020-0031-DRAFT-25723
NOAA-NMFS-2020-0031-DRAFT-25724
NOAA-NMFS-2020-0031-DRAFT-25725
NOAA-NMFS-2020-0031-DRAFT-25726
NOAA-NMFS-2020-0031-DRAFT-25727
NOAA-NMFS-2020-0031-DRAFT-25728
NOAA-NMFS-2020-0031-DRAFT-25729
NOAA-NMFS-2020-0031-DRAFT-25730
NOAA-NMFS-2020-0031-DRAFT-25731
NOAA-NMFS-2020-0031-DRAFT-25732
NOAA-NMFS-2020-0031-DRAFT-25733
NOAA-NMFS-2020-0031-DRAFT-25734
NOAA-NMFS-2020-0031-DRAFT-25735
NOAA-NMFS-2020-0031-DRAFT-25736
NOAA-NMFS-2020-0031-DRAFT-25737
NOAA-NMFS-2020-0031-DRAFT-25738
NOAA-NMFS-2020-0031-DRAFT-25739
NOAA-NMFS-2020-0031-DRAFT-25740
NOAA-NMFS-2020-0031-DRAFT-25741
NOAA-NMFS-2020-0031-DRAFT-25742
NOAA-NMFS-2020-0031-DRAFT-25743
NOAA-NMFS-2020-0031-DRAFT-25744
NOAA-NMFS-2020-0031-DRAFT-25745
NOAA-NMFS-2020-0031-DRAFT-25746
NOAA-NMFS-2020-0031-DRAFT-25747
NOAA-NMFS-2020-0031-DRAFT-25748
NOAA-NMFS-2020-0031-DRAFT-25749
NOAA-NMFS-2020-0031-DRAFT-25750
NOAA-NMFS-2020-0031-DRAFT-25751
NOAA-NMFS-2020-0031-DRAFT-25752

Comment from Skouge, Gloria
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NOAA-NMFS-2020-0031-DRAFT-30775
NOAA-NMFS-2020-0031-DRAFT-30776
NOAA-NMFS-2020-0031-DRAFT-30777
NOAA-NMFS-2020-0031-DRAFT-30778
NOAA-NMFS-2020-0031-DRAFT-30779
NOAA-NMFS-2020-0031-DRAFT-30780
NOAA-NMFS-2020-0031-DRAFT-30781
NOAA-NMFS-2020-0031-DRAFT-30782
NOAA-NMFS-2020-0031-DRAFT-30783
NOAA-NMFS-2020-0031-DRAFT-30784
NOAA-NMFS-2020-0031-DRAFT-30785
NOAA-NMFS-2020-0031-DRAFT-30786
NOAA-NMFS-2020-0031-DRAFT-30787
NOAA-NMFS-2020-0031-DRAFT-30788
NOAA-NMFS-2020-0031-DRAFT-30789
NOAA-NMFS-2020-0031-DRAFT-30790
NOAA-NMFS-2020-0031-DRAFT-30791
NOAA-NMFS-2020-0031-DRAFT-30792
NOAA-NMFS-2020-0031-DRAFT-30793
NOAA-NMFS-2020-0031-DRAFT-30794
NOAA-NMFS-2020-0031-DRAFT-30795
NOAA-NMFS-2020-0031-DRAFT-30796
NOAA-NMFS-2020-0031-DRAFT-30797
NOAA-NMFS-2020-0031-DRAFT-30798
NOAA-NMFS-2020-0031-DRAFT-30799
NOAA-NMFS-2020-0031-DRAFT-30800
NOAA-NMFS-2020-0031-DRAFT-30801
NOAA-NMFS-2020-0031-DRAFT-30802
NOAA-NMFS-2020-0031-DRAFT-30803
NOAA-NMFS-2020-0031-DRAFT-30804
NOAA-NMFS-2020-0031-DRAFT-30805
NOAA-NMFS-2020-0031-DRAFT-30806
NOAA-NMFS-2020-0031-DRAFT-30807
NOAA-NMFS-2020-0031-DRAFT-30808
NOAA-NMFS-2020-0031-DRAFT-30809
NOAA-NMFS-2020-0031-DRAFT-30810
NOAA-NMFS-2020-0031-DRAFT-30811
NOAA-NMFS-2020-0031-DRAFT-30812
NOAA-NMFS-2020-0031-DRAFT-30813
NOAA-NMFS-2020-0031-DRAFT-30814
NOAA-NMFS-2020-0031-DRAFT-30815

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Received Date
02/26/2021
02/26/2021
02/26/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-30816
NOAA-NMFS-2020-0031-DRAFT-30817
NOAA-NMFS-2020-0031-DRAFT-30818
NOAA-NMFS-2020-0031-DRAFT-30819
NOAA-NMFS-2020-0031-DRAFT-30820
NOAA-NMFS-2020-0031-DRAFT-30821
NOAA-NMFS-2020-0031-DRAFT-30822
NOAA-NMFS-2020-0031-DRAFT-30823
NOAA-NMFS-2020-0031-DRAFT-30824
NOAA-NMFS-2020-0031-DRAFT-30825
NOAA-NMFS-2020-0031-DRAFT-30826
NOAA-NMFS-2020-0031-DRAFT-30827
NOAA-NMFS-2020-0031-DRAFT-30828
NOAA-NMFS-2020-0031-DRAFT-30829
NOAA-NMFS-2020-0031-DRAFT-30830
NOAA-NMFS-2020-0031-DRAFT-30831
NOAA-NMFS-2020-0031-DRAFT-30832
NOAA-NMFS-2020-0031-DRAFT-30833
NOAA-NMFS-2020-0031-DRAFT-30834
NOAA-NMFS-2020-0031-DRAFT-30835
NOAA-NMFS-2020-0031-DRAFT-30836
NOAA-NMFS-2020-0031-DRAFT-30837
NOAA-NMFS-2020-0031-DRAFT-30838
NOAA-NMFS-2020-0031-DRAFT-30839
NOAA-NMFS-2020-0031-DRAFT-30840
NOAA-NMFS-2020-0031-DRAFT-30841
NOAA-NMFS-2020-0031-DRAFT-30842
NOAA-NMFS-2020-0031-DRAFT-30843
NOAA-NMFS-2020-0031-DRAFT-30844
NOAA-NMFS-2020-0031-DRAFT-30845
NOAA-NMFS-2020-0031-DRAFT-30846
NOAA-NMFS-2020-0031-DRAFT-30847
NOAA-NMFS-2020-0031-DRAFT-30848
NOAA-NMFS-2020-0031-DRAFT-30849
NOAA-NMFS-2020-0031-DRAFT-30850
NOAA-NMFS-2020-0031-DRAFT-30851
NOAA-NMFS-2020-0031-DRAFT-30853
NOAA-NMFS-2020-0031-DRAFT-30854
NOAA-NMFS-2020-0031-DRAFT-30855
NOAA-NMFS-2020-0031-DRAFT-30856

Title
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Received Date
02/27/2021
02/27/2021
02/27/2021
02/27/2021
02/27/2021
02/27/2021
02/27/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-35824
NOAA-NMFS-2020-0031-DRAFT-35825
NOAA-NMFS-2020-0031-DRAFT-35826
NOAA-NMFS-2020-0031-DRAFT-35827
NOAA-NMFS-2020-0031-DRAFT-35828
NOAA-NMFS-2020-0031-DRAFT-35829
NOAA-NMFS-2020-0031-DRAFT-35830
NOAA-NMFS-2020-0031-DRAFT-35831
NOAA-NMFS-2020-0031-DRAFT-35832
NOAA-NMFS-2020-0031-DRAFT-35833
NOAA-NMFS-2020-0031-DRAFT-35834
NOAA-NMFS-2020-0031-DRAFT-35835
NOAA-NMFS-2020-0031-DRAFT-35836
NOAA-NMFS-2020-0031-DRAFT-35837
NOAA-NMFS-2020-0031-DRAFT-35838
NOAA-NMFS-2020-0031-DRAFT-35839
NOAA-NMFS-2020-0031-DRAFT-35840
NOAA-NMFS-2020-0031-DRAFT-35841
NOAA-NMFS-2020-0031-DRAFT-35842
NOAA-NMFS-2020-0031-DRAFT-35843
NOAA-NMFS-2020-0031-DRAFT-35844
NOAA-NMFS-2020-0031-DRAFT-35845
NOAA-NMFS-2020-0031-DRAFT-35846
NOAA-NMFS-2020-0031-DRAFT-35847
NOAA-NMFS-2020-0031-DRAFT-35848
NOAA-NMFS-2020-0031-DRAFT-35849
NOAA-NMFS-2020-0031-DRAFT-35850
NOAA-NMFS-2020-0031-DRAFT-35851
NOAA-NMFS-2020-0031-DRAFT-35852
NOAA-NMFS-2020-0031-DRAFT-35853
NOAA-NMFS-2020-0031-DRAFT-35854
NOAA-NMFS-2020-0031-DRAFT-35855
NOAA-NMFS-2020-0031-DRAFT-35856
NOAA-NMFS-2020-0031-DRAFT-35857
NOAA-NMFS-2020-0031-DRAFT-35858
NOAA-NMFS-2020-0031-DRAFT-35859
NOAA-NMFS-2020-0031-DRAFT-35860
NOAA-NMFS-2020-0031-DRAFT-35861
NOAA-NMFS-2020-0031-DRAFT-35862
NOAA-NMFS-2020-0031-DRAFT-35863

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NOAA-NMFS-2020-0031-DRAFT-30857
NOAA-NMFS-2020-0031-DRAFT-30858
NOAA-NMFS-2020-0031-DRAFT-30859
NOAA-NMFS-2020-0031-DRAFT-30860
NOAA-NMFS-2020-0031-DRAFT-30861
NOAA-NMFS-2020-0031-DRAFT-30862
NOAA-NMFS-2020-0031-DRAFT-30863
NOAA-NMFS-2020-0031-DRAFT-30864
NOAA-NMFS-2020-0031-DRAFT-30865
NOAA-NMFS-2020-0031-DRAFT-30866
NOAA-NMFS-2020-0031-DRAFT-30867
NOAA-NMFS-2020-0031-DRAFT-30868
NOAA-NMFS-2020-0031-DRAFT-30869
NOAA-NMFS-2020-0031-DRAFT-30870
NOAA-NMFS-2020-0031-DRAFT-30871
NOAA-NMFS-2020-0031-DRAFT-30872
NOAA-NMFS-2020-0031-DRAFT-30873
NOAA-NMFS-2020-0031-DRAFT-30874
NOAA-NMFS-2020-0031-DRAFT-30875
NOAA-NMFS-2020-0031-DRAFT-30876
NOAA-NMFS-2020-0031-DRAFT-30877
NOAA-NMFS-2020-0031-DRAFT-30878
NOAA-NMFS-2020-0031-DRAFT-30879
NOAA-NMFS-2020-0031-DRAFT-30880
NOAA-NMFS-2020-0031-DRAFT-30881
NOAA-NMFS-2020-0031-DRAFT-30882
NOAA-NMFS-2020-0031-DRAFT-30883
NOAA-NMFS-2020-0031-DRAFT-30884
NOAA-NMFS-2020-0031-DRAFT-30885
NOAA-NMFS-2020-0031-DRAFT-30886
NOAA-NMFS-2020-0031-DRAFT-30887
NOAA-NMFS-2020-0031-DRAFT-30888
NOAA-NMFS-2020-0031-DRAFT-30889
NOAA-NMFS-2020-0031-DRAFT-30890
NOAA-NMFS-2020-0031-DRAFT-30891
NOAA-NMFS-2020-0031-DRAFT-30892
NOAA-NMFS-2020-0031-DRAFT-30893
NOAA-NMFS-2020-0031-DRAFT-30894
NOAA-NMFS-2020-0031-DRAFT-30895
NOAA-NMFS-2020-0031-DRAFT-30896
NOAA-NMFS-2020-0031-DRAFT-30897

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NOAA-NMFS-2020-0031-DRAFT-35864
NOAA-NMFS-2020-0031-DRAFT-35865
NOAA-NMFS-2020-0031-DRAFT-35866
NOAA-NMFS-2020-0031-DRAFT-35867
NOAA-NMFS-2020-0031-DRAFT-35868
NOAA-NMFS-2020-0031-DRAFT-35869
NOAA-NMFS-2020-0031-DRAFT-35870
NOAA-NMFS-2020-0031-DRAFT-35871
NOAA-NMFS-2020-0031-DRAFT-35872
NOAA-NMFS-2020-0031-DRAFT-35873
NOAA-NMFS-2020-0031-DRAFT-35874
NOAA-NMFS-2020-0031-DRAFT-35875
NOAA-NMFS-2020-0031-DRAFT-35876
NOAA-NMFS-2020-0031-DRAFT-35877
NOAA-NMFS-2020-0031-DRAFT-35878
NOAA-NMFS-2020-0031-DRAFT-35879
NOAA-NMFS-2020-0031-DRAFT-35880
NOAA-NMFS-2020-0031-DRAFT-35881
NOAA-NMFS-2020-0031-DRAFT-35882
NOAA-NMFS-2020-0031-DRAFT-35883
NOAA-NMFS-2020-0031-DRAFT-35884
NOAA-NMFS-2020-0031-DRAFT-35885
NOAA-NMFS-2020-0031-DRAFT-35886
NOAA-NMFS-2020-0031-DRAFT-35887
NOAA-NMFS-2020-0031-DRAFT-35888
NOAA-NMFS-2020-0031-DRAFT-35889
NOAA-NMFS-2020-0031-DRAFT-35890
NOAA-NMFS-2020-0031-DRAFT-35891
NOAA-NMFS-2020-0031-DRAFT-35892
NOAA-NMFS-2020-0031-DRAFT-35893
NOAA-NMFS-2020-0031-DRAFT-35894
NOAA-NMFS-2020-0031-DRAFT-35895
NOAA-NMFS-2020-0031-DRAFT-35896
NOAA-NMFS-2020-0031-DRAFT-35897
NOAA-NMFS-2020-0031-DRAFT-35898
NOAA-NMFS-2020-0031-DRAFT-35899
NOAA-NMFS-2020-0031-DRAFT-35900
NOAA-NMFS-2020-0031-DRAFT-35901
NOAA-NMFS-2020-0031-DRAFT-35902
NOAA-NMFS-2020-0031-DRAFT-35903
NOAA-NMFS-2020-0031-DRAFT-35904

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02/26/2021
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NOAA-NMFS-2020-0031-DRAFT-30898
NOAA-NMFS-2020-0031-DRAFT-30899
NOAA-NMFS-2020-0031-DRAFT-30900
NOAA-NMFS-2020-0031-DRAFT-30901
NOAA-NMFS-2020-0031-DRAFT-30902
NOAA-NMFS-2020-0031-DRAFT-30903
NOAA-NMFS-2020-0031-DRAFT-30904
NOAA-NMFS-2020-0031-DRAFT-30905
NOAA-NMFS-2020-0031-DRAFT-30906
NOAA-NMFS-2020-0031-DRAFT-30907
NOAA-NMFS-2020-0031-DRAFT-30908
NOAA-NMFS-2020-0031-DRAFT-30909
NOAA-NMFS-2020-0031-DRAFT-30910
NOAA-NMFS-2020-0031-DRAFT-30911
NOAA-NMFS-2020-0031-DRAFT-30912
NOAA-NMFS-2020-0031-DRAFT-30913
NOAA-NMFS-2020-0031-DRAFT-30914
NOAA-NMFS-2020-0031-DRAFT-30915
NOAA-NMFS-2020-0031-DRAFT-30916
NOAA-NMFS-2020-0031-DRAFT-30917
NOAA-NMFS-2020-0031-DRAFT-30918
NOAA-NMFS-2020-0031-DRAFT-30919
NOAA-NMFS-2020-0031-DRAFT-30920
NOAA-NMFS-2020-0031-DRAFT-30921
NOAA-NMFS-2020-0031-DRAFT-30922
NOAA-NMFS-2020-0031-DRAFT-30923
NOAA-NMFS-2020-0031-DRAFT-30924
NOAA-NMFS-2020-0031-DRAFT-30925
NOAA-NMFS-2020-0031-DRAFT-30926
NOAA-NMFS-2020-0031-DRAFT-30927
NOAA-NMFS-2020-0031-DRAFT-30928
NOAA-NMFS-2020-0031-DRAFT-30929
NOAA-NMFS-2020-0031-DRAFT-30930
NOAA-NMFS-2020-0031-DRAFT-30931
NOAA-NMFS-2020-0031-DRAFT-30932
NOAA-NMFS-2020-0031-DRAFT-30933
NOAA-NMFS-2020-0031-DRAFT-30934
NOAA-NMFS-2020-0031-DRAFT-30935
NOAA-NMFS-2020-0031-DRAFT-30936
NOAA-NMFS-2020-0031-DRAFT-30937
NOAA-NMFS-2020-0031-DRAFT-30938

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NOAA-NMFS-2020-0031-DRAFT-35905
NOAA-NMFS-2020-0031-DRAFT-35906
NOAA-NMFS-2020-0031-DRAFT-35907
NOAA-NMFS-2020-0031-DRAFT-35908
NOAA-NMFS-2020-0031-DRAFT-35909
NOAA-NMFS-2020-0031-DRAFT-35910
NOAA-NMFS-2020-0031-DRAFT-35911
NOAA-NMFS-2020-0031-DRAFT-35912
NOAA-NMFS-2020-0031-DRAFT-35913
NOAA-NMFS-2020-0031-DRAFT-35914
NOAA-NMFS-2020-0031-DRAFT-35915
NOAA-NMFS-2020-0031-DRAFT-35916
NOAA-NMFS-2020-0031-DRAFT-35917
NOAA-NMFS-2020-0031-DRAFT-35918
NOAA-NMFS-2020-0031-DRAFT-35919
NOAA-NMFS-2020-0031-DRAFT-35920
NOAA-NMFS-2020-0031-DRAFT-35921
NOAA-NMFS-2020-0031-DRAFT-35922
NOAA-NMFS-2020-0031-DRAFT-35923
NOAA-NMFS-2020-0031-DRAFT-35924
NOAA-NMFS-2020-0031-DRAFT-35925
NOAA-NMFS-2020-0031-DRAFT-35926
NOAA-NMFS-2020-0031-DRAFT-35927
NOAA-NMFS-2020-0031-DRAFT-35928
NOAA-NMFS-2020-0031-DRAFT-35929
NOAA-NMFS-2020-0031-DRAFT-35930
NOAA-NMFS-2020-0031-DRAFT-35931
NOAA-NMFS-2020-0031-DRAFT-35932
NOAA-NMFS-2020-0031-DRAFT-35933
NOAA-NMFS-2020-0031-DRAFT-35934
NOAA-NMFS-2020-0031-DRAFT-35935
NOAA-NMFS-2020-0031-DRAFT-35936
NOAA-NMFS-2020-0031-DRAFT-35937
NOAA-NMFS-2020-0031-DRAFT-35938
NOAA-NMFS-2020-0031-DRAFT-35939
NOAA-NMFS-2020-0031-DRAFT-35940
NOAA-NMFS-2020-0031-DRAFT-35941
NOAA-NMFS-2020-0031-DRAFT-35942
NOAA-NMFS-2020-0031-DRAFT-35943
NOAA-NMFS-2020-0031-DRAFT-35944
NOAA-NMFS-2020-0031-DRAFT-35945

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NOAA-NMFS-2020-0031-DRAFT-30939
NOAA-NMFS-2020-0031-DRAFT-30940
NOAA-NMFS-2020-0031-DRAFT-30941
NOAA-NMFS-2020-0031-DRAFT-30942
NOAA-NMFS-2020-0031-DRAFT-30943
NOAA-NMFS-2020-0031-DRAFT-30944
NOAA-NMFS-2020-0031-DRAFT-30945
NOAA-NMFS-2020-0031-DRAFT-30946
NOAA-NMFS-2020-0031-DRAFT-30947
NOAA-NMFS-2020-0031-DRAFT-30948
NOAA-NMFS-2020-0031-DRAFT-30949
NOAA-NMFS-2020-0031-DRAFT-30950
NOAA-NMFS-2020-0031-DRAFT-30951
NOAA-NMFS-2020-0031-DRAFT-30952
NOAA-NMFS-2020-0031-DRAFT-30953
NOAA-NMFS-2020-0031-DRAFT-30954
NOAA-NMFS-2020-0031-DRAFT-30955
NOAA-NMFS-2020-0031-DRAFT-30956
NOAA-NMFS-2020-0031-DRAFT-30957
NOAA-NMFS-2020-0031-DRAFT-30958
NOAA-NMFS-2020-0031-DRAFT-30959
NOAA-NMFS-2020-0031-DRAFT-30960
NOAA-NMFS-2020-0031-DRAFT-30961
NOAA-NMFS-2020-0031-DRAFT-30962
NOAA-NMFS-2020-0031-DRAFT-30963
NOAA-NMFS-2020-0031-DRAFT-30964
NOAA-NMFS-2020-0031-DRAFT-30965
NOAA-NMFS-2020-0031-DRAFT-30966
NOAA-NMFS-2020-0031-DRAFT-30967
NOAA-NMFS-2020-0031-DRAFT-30968
NOAA-NMFS-2020-0031-DRAFT-30969
NOAA-NMFS-2020-0031-DRAFT-30970
NOAA-NMFS-2020-0031-DRAFT-30971
NOAA-NMFS-2020-0031-DRAFT-30972
NOAA-NMFS-2020-0031-DRAFT-30973
NOAA-NMFS-2020-0031-DRAFT-30974
NOAA-NMFS-2020-0031-DRAFT-30975
NOAA-NMFS-2020-0031-DRAFT-30976
NOAA-NMFS-2020-0031-DRAFT-30977
NOAA-NMFS-2020-0031-DRAFT-30978
NOAA-NMFS-2020-0031-DRAFT-30979

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02/27/2021
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NOAA-NMFS-2020-0031-DRAFT-35946
NOAA-NMFS-2020-0031-DRAFT-35947
NOAA-NMFS-2020-0031-DRAFT-35948
NOAA-NMFS-2020-0031-DRAFT-35949
NOAA-NMFS-2020-0031-DRAFT-35950
NOAA-NMFS-2020-0031-DRAFT-35951
NOAA-NMFS-2020-0031-DRAFT-35952
NOAA-NMFS-2020-0031-DRAFT-35953
NOAA-NMFS-2020-0031-DRAFT-35954
NOAA-NMFS-2020-0031-DRAFT-35955
NOAA-NMFS-2020-0031-DRAFT-35956
NOAA-NMFS-2020-0031-DRAFT-35957
NOAA-NMFS-2020-0031-DRAFT-35958
NOAA-NMFS-2020-0031-DRAFT-35959
NOAA-NMFS-2020-0031-DRAFT-35960
NOAA-NMFS-2020-0031-DRAFT-35961
NOAA-NMFS-2020-0031-DRAFT-35962
NOAA-NMFS-2020-0031-DRAFT-35963
NOAA-NMFS-2020-0031-DRAFT-35964
NOAA-NMFS-2020-0031-DRAFT-35965
NOAA-NMFS-2020-0031-DRAFT-35966
NOAA-NMFS-2020-0031-DRAFT-35967
NOAA-NMFS-2020-0031-DRAFT-35968
NOAA-NMFS-2020-0031-DRAFT-35969
NOAA-NMFS-2020-0031-DRAFT-35970
NOAA-NMFS-2020-0031-DRAFT-35971
NOAA-NMFS-2020-0031-DRAFT-35972
NOAA-NMFS-2020-0031-DRAFT-35973
NOAA-NMFS-2020-0031-DRAFT-35974
NOAA-NMFS-2020-0031-DRAFT-35975
NOAA-NMFS-2020-0031-DRAFT-35976
NOAA-NMFS-2020-0031-DRAFT-35977
NOAA-NMFS-2020-0031-DRAFT-35978
NOAA-NMFS-2020-0031-DRAFT-35979
NOAA-NMFS-2020-0031-DRAFT-35980
NOAA-NMFS-2020-0031-DRAFT-35981
NOAA-NMFS-2020-0031-DRAFT-35982
NOAA-NMFS-2020-0031-DRAFT-35983
NOAA-NMFS-2020-0031-DRAFT-35984
NOAA-NMFS-2020-0031-DRAFT-35985
NOAA-NMFS-2020-0031-DRAFT-35986

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02/26/2021
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NOAA-NMFS-2020-0031-DRAFT-30980
NOAA-NMFS-2020-0031-DRAFT-30981
NOAA-NMFS-2020-0031-DRAFT-30982
NOAA-NMFS-2020-0031-DRAFT-30983
NOAA-NMFS-2020-0031-DRAFT-30984
NOAA-NMFS-2020-0031-DRAFT-30985
NOAA-NMFS-2020-0031-DRAFT-30986
NOAA-NMFS-2020-0031-DRAFT-30987
NOAA-NMFS-2020-0031-DRAFT-30988
NOAA-NMFS-2020-0031-DRAFT-30989
NOAA-NMFS-2020-0031-DRAFT-30990
NOAA-NMFS-2020-0031-DRAFT-30991
NOAA-NMFS-2020-0031-DRAFT-30992
NOAA-NMFS-2020-0031-DRAFT-30993
NOAA-NMFS-2020-0031-DRAFT-30994
NOAA-NMFS-2020-0031-DRAFT-30995
NOAA-NMFS-2020-0031-DRAFT-30996
NOAA-NMFS-2020-0031-DRAFT-30997
NOAA-NMFS-2020-0031-DRAFT-30998
NOAA-NMFS-2020-0031-DRAFT-30999
NOAA-NMFS-2020-0031-DRAFT-31000
NOAA-NMFS-2020-0031-DRAFT-31001
NOAA-NMFS-2020-0031-DRAFT-31002
NOAA-NMFS-2020-0031-DRAFT-31003
NOAA-NMFS-2020-0031-DRAFT-31004
NOAA-NMFS-2020-0031-DRAFT-31005
NOAA-NMFS-2020-0031-DRAFT-31006
NOAA-NMFS-2020-0031-DRAFT-31007
NOAA-NMFS-2020-0031-DRAFT-31008
NOAA-NMFS-2020-0031-DRAFT-31009
NOAA-NMFS-2020-0031-DRAFT-31010
NOAA-NMFS-2020-0031-DRAFT-31011
NOAA-NMFS-2020-0031-DRAFT-31012
NOAA-NMFS-2020-0031-DRAFT-31013
NOAA-NMFS-2020-0031-DRAFT-31014
NOAA-NMFS-2020-0031-DRAFT-31015
NOAA-NMFS-2020-0031-DRAFT-31016
NOAA-NMFS-2020-0031-DRAFT-31017
NOAA-NMFS-2020-0031-DRAFT-31018
NOAA-NMFS-2020-0031-DRAFT-31019
NOAA-NMFS-2020-0031-DRAFT-31020

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NOAA-NMFS-2020-0031-DRAFT-35987
NOAA-NMFS-2020-0031-DRAFT-35988
NOAA-NMFS-2020-0031-DRAFT-35989
NOAA-NMFS-2020-0031-DRAFT-35990
NOAA-NMFS-2020-0031-DRAFT-35991
NOAA-NMFS-2020-0031-DRAFT-35992
NOAA-NMFS-2020-0031-DRAFT-35993
NOAA-NMFS-2020-0031-DRAFT-35994
NOAA-NMFS-2020-0031-DRAFT-35995
NOAA-NMFS-2020-0031-DRAFT-35996
NOAA-NMFS-2020-0031-DRAFT-35997
NOAA-NMFS-2020-0031-DRAFT-35998
NOAA-NMFS-2020-0031-DRAFT-35999
NOAA-NMFS-2020-0031-DRAFT-36000
NOAA-NMFS-2020-0031-DRAFT-36001
NOAA-NMFS-2020-0031-DRAFT-36002
NOAA-NMFS-2020-0031-DRAFT-36003
NOAA-NMFS-2020-0031-DRAFT-36004
NOAA-NMFS-2020-0031-DRAFT-36005
NOAA-NMFS-2020-0031-DRAFT-36006
NOAA-NMFS-2020-0031-DRAFT-36007
NOAA-NMFS-2020-0031-DRAFT-36008
NOAA-NMFS-2020-0031-DRAFT-36009
NOAA-NMFS-2020-0031-DRAFT-36010
NOAA-NMFS-2020-0031-DRAFT-36011
NOAA-NMFS-2020-0031-DRAFT-36012
NOAA-NMFS-2020-0031-DRAFT-36013
NOAA-NMFS-2020-0031-DRAFT-36014
NOAA-NMFS-2020-0031-DRAFT-36015
NOAA-NMFS-2020-0031-DRAFT-36016
NOAA-NMFS-2020-0031-DRAFT-36017
NOAA-NMFS-2020-0031-DRAFT-36018
NOAA-NMFS-2020-0031-DRAFT-36019
NOAA-NMFS-2020-0031-DRAFT-36020
NOAA-NMFS-2020-0031-DRAFT-36021
NOAA-NMFS-2020-0031-DRAFT-36022
NOAA-NMFS-2020-0031-DRAFT-36023
NOAA-NMFS-2020-0031-DRAFT-36024
NOAA-NMFS-2020-0031-DRAFT-36025
NOAA-NMFS-2020-0031-DRAFT-36026
NOAA-NMFS-2020-0031-DRAFT-36027

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NOAA-NMFS-2020-0031-DRAFT-31021
NOAA-NMFS-2020-0031-DRAFT-31022
NOAA-NMFS-2020-0031-DRAFT-31023
NOAA-NMFS-2020-0031-DRAFT-31024
NOAA-NMFS-2020-0031-DRAFT-31025
NOAA-NMFS-2020-0031-DRAFT-31026
NOAA-NMFS-2020-0031-DRAFT-31027
NOAA-NMFS-2020-0031-DRAFT-31028
NOAA-NMFS-2020-0031-DRAFT-31029
NOAA-NMFS-2020-0031-DRAFT-31030
NOAA-NMFS-2020-0031-DRAFT-31031
NOAA-NMFS-2020-0031-DRAFT-31032
NOAA-NMFS-2020-0031-DRAFT-31033
NOAA-NMFS-2020-0031-DRAFT-31034
NOAA-NMFS-2020-0031-DRAFT-31035
NOAA-NMFS-2020-0031-DRAFT-31036
NOAA-NMFS-2020-0031-DRAFT-31037
NOAA-NMFS-2020-0031-DRAFT-31038
NOAA-NMFS-2020-0031-DRAFT-31039
NOAA-NMFS-2020-0031-DRAFT-31040
NOAA-NMFS-2020-0031-DRAFT-31041
NOAA-NMFS-2020-0031-DRAFT-31042
NOAA-NMFS-2020-0031-DRAFT-31043
NOAA-NMFS-2020-0031-DRAFT-31044
NOAA-NMFS-2020-0031-DRAFT-31045
NOAA-NMFS-2020-0031-DRAFT-31046
NOAA-NMFS-2020-0031-DRAFT-31047
NOAA-NMFS-2020-0031-DRAFT-31048
NOAA-NMFS-2020-0031-DRAFT-31049
NOAA-NMFS-2020-0031-DRAFT-31050
NOAA-NMFS-2020-0031-DRAFT-31051
NOAA-NMFS-2020-0031-DRAFT-31052
NOAA-NMFS-2020-0031-DRAFT-31053
NOAA-NMFS-2020-0031-DRAFT-31054
NOAA-NMFS-2020-0031-DRAFT-31055
NOAA-NMFS-2020-0031-DRAFT-31056
NOAA-NMFS-2020-0031-DRAFT-31057
NOAA-NMFS-2020-0031-DRAFT-31058
NOAA-NMFS-2020-0031-DRAFT-31059
NOAA-NMFS-2020-0031-DRAFT-31060
NOAA-NMFS-2020-0031-DRAFT-31061

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NOAA-NMFS-2020-0031-DRAFT-36028
NOAA-NMFS-2020-0031-DRAFT-36029
NOAA-NMFS-2020-0031-DRAFT-36030
NOAA-NMFS-2020-0031-DRAFT-36031
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NOAA-NMFS-2020-0031-DRAFT-36037
NOAA-NMFS-2020-0031-DRAFT-36038
NOAA-NMFS-2020-0031-DRAFT-36039
NOAA-NMFS-2020-0031-DRAFT-36040
NOAA-NMFS-2020-0031-DRAFT-36041
NOAA-NMFS-2020-0031-DRAFT-36042
NOAA-NMFS-2020-0031-DRAFT-36043
NOAA-NMFS-2020-0031-DRAFT-36044
NOAA-NMFS-2020-0031-DRAFT-36045
NOAA-NMFS-2020-0031-DRAFT-36046
NOAA-NMFS-2020-0031-DRAFT-36047
NOAA-NMFS-2020-0031-DRAFT-36048
NOAA-NMFS-2020-0031-DRAFT-36049
NOAA-NMFS-2020-0031-DRAFT-36050
NOAA-NMFS-2020-0031-DRAFT-36051
NOAA-NMFS-2020-0031-DRAFT-36052
NOAA-NMFS-2020-0031-DRAFT-36053
NOAA-NMFS-2020-0031-DRAFT-36054
NOAA-NMFS-2020-0031-DRAFT-36055
NOAA-NMFS-2020-0031-DRAFT-36056
NOAA-NMFS-2020-0031-DRAFT-36057
NOAA-NMFS-2020-0031-DRAFT-36058
NOAA-NMFS-2020-0031-DRAFT-36059
NOAA-NMFS-2020-0031-DRAFT-36060
NOAA-NMFS-2020-0031-DRAFT-36061
NOAA-NMFS-2020-0031-DRAFT-36062
NOAA-NMFS-2020-0031-DRAFT-36063
NOAA-NMFS-2020-0031-DRAFT-36064
NOAA-NMFS-2020-0031-DRAFT-36065
NOAA-NMFS-2020-0031-DRAFT-36066
NOAA-NMFS-2020-0031-DRAFT-36067
NOAA-NMFS-2020-0031-DRAFT-36068

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NOAA-NMFS-2020-0031-DRAFT-31062
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NOAA-NMFS-2020-0031-DRAFT-31083
NOAA-NMFS-2020-0031-DRAFT-31085
NOAA-NMFS-2020-0031-DRAFT-31086
NOAA-NMFS-2020-0031-DRAFT-31087
NOAA-NMFS-2020-0031-DRAFT-31088
NOAA-NMFS-2020-0031-DRAFT-31089
NOAA-NMFS-2020-0031-DRAFT-31090
NOAA-NMFS-2020-0031-DRAFT-31091
NOAA-NMFS-2020-0031-DRAFT-31092
NOAA-NMFS-2020-0031-DRAFT-31093
NOAA-NMFS-2020-0031-DRAFT-31094
NOAA-NMFS-2020-0031-DRAFT-31095
NOAA-NMFS-2020-0031-DRAFT-31096
NOAA-NMFS-2020-0031-DRAFT-31097
NOAA-NMFS-2020-0031-DRAFT-31098
NOAA-NMFS-2020-0031-DRAFT-31099
NOAA-NMFS-2020-0031-DRAFT-31100
NOAA-NMFS-2020-0031-DRAFT-31101
NOAA-NMFS-2020-0031-DRAFT-31102
NOAA-NMFS-2020-0031-DRAFT-31103

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NOAA-NMFS-2020-0031-DRAFT-36069
NOAA-NMFS-2020-0031-DRAFT-36070
NOAA-NMFS-2020-0031-DRAFT-36071
NOAA-NMFS-2020-0031-DRAFT-36072
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NOAA-NMFS-2020-0031-DRAFT-36077
NOAA-NMFS-2020-0031-DRAFT-36078
NOAA-NMFS-2020-0031-DRAFT-36079
NOAA-NMFS-2020-0031-DRAFT-36080
NOAA-NMFS-2020-0031-DRAFT-36081
NOAA-NMFS-2020-0031-DRAFT-36082
NOAA-NMFS-2020-0031-DRAFT-36083
NOAA-NMFS-2020-0031-DRAFT-36084
NOAA-NMFS-2020-0031-DRAFT-36085
NOAA-NMFS-2020-0031-DRAFT-36086
NOAA-NMFS-2020-0031-DRAFT-36087
NOAA-NMFS-2020-0031-DRAFT-36088
NOAA-NMFS-2020-0031-DRAFT-36089
NOAA-NMFS-2020-0031-DRAFT-36090
NOAA-NMFS-2020-0031-DRAFT-36091
NOAA-NMFS-2020-0031-DRAFT-36092
NOAA-NMFS-2020-0031-DRAFT-36093
NOAA-NMFS-2020-0031-DRAFT-36094
NOAA-NMFS-2020-0031-DRAFT-36095
NOAA-NMFS-2020-0031-DRAFT-36096
NOAA-NMFS-2020-0031-DRAFT-36097
NOAA-NMFS-2020-0031-DRAFT-36098
NOAA-NMFS-2020-0031-DRAFT-36099
NOAA-NMFS-2020-0031-DRAFT-36100
NOAA-NMFS-2020-0031-DRAFT-36101
NOAA-NMFS-2020-0031-DRAFT-36102
NOAA-NMFS-2020-0031-DRAFT-36103
NOAA-NMFS-2020-0031-DRAFT-36104
NOAA-NMFS-2020-0031-DRAFT-36105
NOAA-NMFS-2020-0031-DRAFT-36106
NOAA-NMFS-2020-0031-DRAFT-36107
NOAA-NMFS-2020-0031-DRAFT-36108
NOAA-NMFS-2020-0031-DRAFT-36109

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NOAA-NMFS-2020-0031-DRAFT-31104
NOAA-NMFS-2020-0031-DRAFT-31105
NOAA-NMFS-2020-0031-DRAFT-31106
NOAA-NMFS-2020-0031-DRAFT-31107
NOAA-NMFS-2020-0031-DRAFT-31108
NOAA-NMFS-2020-0031-DRAFT-31109
NOAA-NMFS-2020-0031-DRAFT-31110
NOAA-NMFS-2020-0031-DRAFT-31111
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NOAA-NMFS-2020-0031-DRAFT-31116
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NOAA-NMFS-2020-0031-DRAFT-31119
NOAA-NMFS-2020-0031-DRAFT-31120
NOAA-NMFS-2020-0031-DRAFT-31121
NOAA-NMFS-2020-0031-DRAFT-31122
NOAA-NMFS-2020-0031-DRAFT-31123
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NOAA-NMFS-2020-0031-DRAFT-31125
NOAA-NMFS-2020-0031-DRAFT-31126
NOAA-NMFS-2020-0031-DRAFT-31127
NOAA-NMFS-2020-0031-DRAFT-31128
NOAA-NMFS-2020-0031-DRAFT-31129
NOAA-NMFS-2020-0031-DRAFT-31130
NOAA-NMFS-2020-0031-DRAFT-31131
NOAA-NMFS-2020-0031-DRAFT-31132
NOAA-NMFS-2020-0031-DRAFT-31133
NOAA-NMFS-2020-0031-DRAFT-31134
NOAA-NMFS-2020-0031-DRAFT-31135
NOAA-NMFS-2020-0031-DRAFT-31136
NOAA-NMFS-2020-0031-DRAFT-31137
NOAA-NMFS-2020-0031-DRAFT-31138
NOAA-NMFS-2020-0031-DRAFT-31139
NOAA-NMFS-2020-0031-DRAFT-31140
NOAA-NMFS-2020-0031-DRAFT-31141
NOAA-NMFS-2020-0031-DRAFT-31142
NOAA-NMFS-2020-0031-DRAFT-31143
NOAA-NMFS-2020-0031-DRAFT-31144

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NOAA-NMFS-2020-0031-DRAFT-36110
NOAA-NMFS-2020-0031-DRAFT-36111
NOAA-NMFS-2020-0031-DRAFT-36112
NOAA-NMFS-2020-0031-DRAFT-36113
NOAA-NMFS-2020-0031-DRAFT-36114
NOAA-NMFS-2020-0031-DRAFT-36115
NOAA-NMFS-2020-0031-DRAFT-36116
NOAA-NMFS-2020-0031-DRAFT-36117
NOAA-NMFS-2020-0031-DRAFT-36118
NOAA-NMFS-2020-0031-DRAFT-36119
NOAA-NMFS-2020-0031-DRAFT-36120
NOAA-NMFS-2020-0031-DRAFT-36121
NOAA-NMFS-2020-0031-DRAFT-36122
NOAA-NMFS-2020-0031-DRAFT-36123
NOAA-NMFS-2020-0031-DRAFT-36124
NOAA-NMFS-2020-0031-DRAFT-36125
NOAA-NMFS-2020-0031-DRAFT-36126
NOAA-NMFS-2020-0031-DRAFT-36127
NOAA-NMFS-2020-0031-DRAFT-36128
NOAA-NMFS-2020-0031-DRAFT-36129
NOAA-NMFS-2020-0031-DRAFT-36130
NOAA-NMFS-2020-0031-DRAFT-36131
NOAA-NMFS-2020-0031-DRAFT-36132
NOAA-NMFS-2020-0031-DRAFT-36133
NOAA-NMFS-2020-0031-DRAFT-36134
NOAA-NMFS-2020-0031-DRAFT-36135
NOAA-NMFS-2020-0031-DRAFT-36136
NOAA-NMFS-2020-0031-DRAFT-36137
NOAA-NMFS-2020-0031-DRAFT-36138
NOAA-NMFS-2020-0031-DRAFT-36139
NOAA-NMFS-2020-0031-DRAFT-36140
NOAA-NMFS-2020-0031-DRAFT-36141
NOAA-NMFS-2020-0031-DRAFT-36142
NOAA-NMFS-2020-0031-DRAFT-36143
NOAA-NMFS-2020-0031-DRAFT-36144
NOAA-NMFS-2020-0031-DRAFT-36145
NOAA-NMFS-2020-0031-DRAFT-36146
NOAA-NMFS-2020-0031-DRAFT-36147
NOAA-NMFS-2020-0031-DRAFT-36148
NOAA-NMFS-2020-0031-DRAFT-36149
NOAA-NMFS-2020-0031-DRAFT-36150

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NOAA-NMFS-2020-0031-DRAFT-31145
NOAA-NMFS-2020-0031-DRAFT-31146
NOAA-NMFS-2020-0031-DRAFT-31147
NOAA-NMFS-2020-0031-DRAFT-31148
NOAA-NMFS-2020-0031-DRAFT-31149
NOAA-NMFS-2020-0031-DRAFT-31150
NOAA-NMFS-2020-0031-DRAFT-31151
NOAA-NMFS-2020-0031-DRAFT-31152
NOAA-NMFS-2020-0031-DRAFT-31153
NOAA-NMFS-2020-0031-DRAFT-31154
NOAA-NMFS-2020-0031-DRAFT-31155
NOAA-NMFS-2020-0031-DRAFT-31156
NOAA-NMFS-2020-0031-DRAFT-31157
NOAA-NMFS-2020-0031-DRAFT-31158
NOAA-NMFS-2020-0031-DRAFT-31159
NOAA-NMFS-2020-0031-DRAFT-31160
NOAA-NMFS-2020-0031-DRAFT-31161
NOAA-NMFS-2020-0031-DRAFT-31162
NOAA-NMFS-2020-0031-DRAFT-31163
NOAA-NMFS-2020-0031-DRAFT-31164
NOAA-NMFS-2020-0031-DRAFT-31165
NOAA-NMFS-2020-0031-DRAFT-31166
NOAA-NMFS-2020-0031-DRAFT-31167
NOAA-NMFS-2020-0031-DRAFT-31168
NOAA-NMFS-2020-0031-DRAFT-31169
NOAA-NMFS-2020-0031-DRAFT-31170
NOAA-NMFS-2020-0031-DRAFT-31171
NOAA-NMFS-2020-0031-DRAFT-31172
NOAA-NMFS-2020-0031-DRAFT-31173
NOAA-NMFS-2020-0031-DRAFT-31174
NOAA-NMFS-2020-0031-DRAFT-31175
NOAA-NMFS-2020-0031-DRAFT-31176
NOAA-NMFS-2020-0031-DRAFT-31177
NOAA-NMFS-2020-0031-DRAFT-31178
NOAA-NMFS-2020-0031-DRAFT-31179
NOAA-NMFS-2020-0031-DRAFT-31180
NOAA-NMFS-2020-0031-DRAFT-31181
NOAA-NMFS-2020-0031-DRAFT-31182
NOAA-NMFS-2020-0031-DRAFT-31183
NOAA-NMFS-2020-0031-DRAFT-31184
NOAA-NMFS-2020-0031-DRAFT-31185

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NOAA-NMFS-2020-0031-DRAFT-36151
NOAA-NMFS-2020-0031-DRAFT-36152
NOAA-NMFS-2020-0031-DRAFT-36153
NOAA-NMFS-2020-0031-DRAFT-36154
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NOAA-NMFS-2020-0031-DRAFT-36156
NOAA-NMFS-2020-0031-DRAFT-36157
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NOAA-NMFS-2020-0031-DRAFT-36159
NOAA-NMFS-2020-0031-DRAFT-36160
NOAA-NMFS-2020-0031-DRAFT-36161
NOAA-NMFS-2020-0031-DRAFT-36162
NOAA-NMFS-2020-0031-DRAFT-36163
NOAA-NMFS-2020-0031-DRAFT-36164
NOAA-NMFS-2020-0031-DRAFT-36165
NOAA-NMFS-2020-0031-DRAFT-36166
NOAA-NMFS-2020-0031-DRAFT-36167
NOAA-NMFS-2020-0031-DRAFT-36168
NOAA-NMFS-2020-0031-DRAFT-36169
NOAA-NMFS-2020-0031-DRAFT-36170
NOAA-NMFS-2020-0031-DRAFT-36171
NOAA-NMFS-2020-0031-DRAFT-36172
NOAA-NMFS-2020-0031-DRAFT-36173
NOAA-NMFS-2020-0031-DRAFT-36174
NOAA-NMFS-2020-0031-DRAFT-36176
NOAA-NMFS-2020-0031-DRAFT-36177
NOAA-NMFS-2020-0031-DRAFT-36178
NOAA-NMFS-2020-0031-DRAFT-36179
NOAA-NMFS-2020-0031-DRAFT-36180
NOAA-NMFS-2020-0031-DRAFT-36181
NOAA-NMFS-2020-0031-DRAFT-36182
NOAA-NMFS-2020-0031-DRAFT-36183
NOAA-NMFS-2020-0031-DRAFT-36184
NOAA-NMFS-2020-0031-DRAFT-36185
NOAA-NMFS-2020-0031-DRAFT-36186
NOAA-NMFS-2020-0031-DRAFT-36187
NOAA-NMFS-2020-0031-DRAFT-36188
NOAA-NMFS-2020-0031-DRAFT-36189
NOAA-NMFS-2020-0031-DRAFT-36190
NOAA-NMFS-2020-0031-DRAFT-36191
NOAA-NMFS-2020-0031-DRAFT-36192

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NOAA-NMFS-2020-0031-DRAFT-31186
NOAA-NMFS-2020-0031-DRAFT-31187
NOAA-NMFS-2020-0031-DRAFT-31188
NOAA-NMFS-2020-0031-DRAFT-31189
NOAA-NMFS-2020-0031-DRAFT-31190
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NOAA-NMFS-2020-0031-DRAFT-31196
NOAA-NMFS-2020-0031-DRAFT-31197
NOAA-NMFS-2020-0031-DRAFT-31198
NOAA-NMFS-2020-0031-DRAFT-31199
NOAA-NMFS-2020-0031-DRAFT-31200
NOAA-NMFS-2020-0031-DRAFT-31201
NOAA-NMFS-2020-0031-DRAFT-31202
NOAA-NMFS-2020-0031-DRAFT-31203
NOAA-NMFS-2020-0031-DRAFT-31204
NOAA-NMFS-2020-0031-DRAFT-31205
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NOAA-NMFS-2020-0031-DRAFT-31207
NOAA-NMFS-2020-0031-DRAFT-31208
NOAA-NMFS-2020-0031-DRAFT-31209
NOAA-NMFS-2020-0031-DRAFT-31210
NOAA-NMFS-2020-0031-DRAFT-31211
NOAA-NMFS-2020-0031-DRAFT-31212
NOAA-NMFS-2020-0031-DRAFT-31213
NOAA-NMFS-2020-0031-DRAFT-31214
NOAA-NMFS-2020-0031-DRAFT-31215
NOAA-NMFS-2020-0031-DRAFT-31216
NOAA-NMFS-2020-0031-DRAFT-31217
NOAA-NMFS-2020-0031-DRAFT-31218
NOAA-NMFS-2020-0031-DRAFT-31219
NOAA-NMFS-2020-0031-DRAFT-31220
NOAA-NMFS-2020-0031-DRAFT-31221
NOAA-NMFS-2020-0031-DRAFT-31222
NOAA-NMFS-2020-0031-DRAFT-31223
NOAA-NMFS-2020-0031-DRAFT-31224
NOAA-NMFS-2020-0031-DRAFT-31225
NOAA-NMFS-2020-0031-DRAFT-31226

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NOAA-NMFS-2020-0031-DRAFT-36193
NOAA-NMFS-2020-0031-DRAFT-36194
NOAA-NMFS-2020-0031-DRAFT-36195
NOAA-NMFS-2020-0031-DRAFT-36196
NOAA-NMFS-2020-0031-DRAFT-36197
NOAA-NMFS-2020-0031-DRAFT-36198
NOAA-NMFS-2020-0031-DRAFT-36199
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NOAA-NMFS-2020-0031-DRAFT-36214
NOAA-NMFS-2020-0031-DRAFT-36215
NOAA-NMFS-2020-0031-DRAFT-36216
NOAA-NMFS-2020-0031-DRAFT-36217
NOAA-NMFS-2020-0031-DRAFT-36218
NOAA-NMFS-2020-0031-DRAFT-36219
NOAA-NMFS-2020-0031-DRAFT-36220
NOAA-NMFS-2020-0031-DRAFT-36221
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NOAA-NMFS-2020-0031-DRAFT-36224
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NOAA-NMFS-2020-0031-DRAFT-36231
NOAA-NMFS-2020-0031-DRAFT-36232
NOAA-NMFS-2020-0031-DRAFT-36233

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NOAA-NMFS-2020-0031-DRAFT-31227
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NOAA-NMFS-2020-0031-DRAFT-31248
NOAA-NMFS-2020-0031-DRAFT-31249
NOAA-NMFS-2020-0031-DRAFT-31250
NOAA-NMFS-2020-0031-DRAFT-31251
NOAA-NMFS-2020-0031-DRAFT-31252
NOAA-NMFS-2020-0031-DRAFT-31253
NOAA-NMFS-2020-0031-DRAFT-31254
NOAA-NMFS-2020-0031-DRAFT-31255
NOAA-NMFS-2020-0031-DRAFT-31256
NOAA-NMFS-2020-0031-DRAFT-31257
NOAA-NMFS-2020-0031-DRAFT-31258
NOAA-NMFS-2020-0031-DRAFT-31259
NOAA-NMFS-2020-0031-DRAFT-31260
NOAA-NMFS-2020-0031-DRAFT-31261
NOAA-NMFS-2020-0031-DRAFT-31262
NOAA-NMFS-2020-0031-DRAFT-31263
NOAA-NMFS-2020-0031-DRAFT-31264
NOAA-NMFS-2020-0031-DRAFT-31265
NOAA-NMFS-2020-0031-DRAFT-31266
NOAA-NMFS-2020-0031-DRAFT-31267

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NOAA-NMFS-2020-0031-DRAFT-36234
NOAA-NMFS-2020-0031-DRAFT-36235
NOAA-NMFS-2020-0031-DRAFT-36236
NOAA-NMFS-2020-0031-DRAFT-36238
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NOAA-NMFS-2020-0031-DRAFT-36244
NOAA-NMFS-2020-0031-DRAFT-36245
NOAA-NMFS-2020-0031-DRAFT-36246
NOAA-NMFS-2020-0031-DRAFT-36247
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NOAA-NMFS-2020-0031-DRAFT-31268
NOAA-NMFS-2020-0031-DRAFT-31269
NOAA-NMFS-2020-0031-DRAFT-31270
NOAA-NMFS-2020-0031-DRAFT-31271
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NOAA-NMFS-2020-0031-DRAFT-31278
NOAA-NMFS-2020-0031-DRAFT-31279
NOAA-NMFS-2020-0031-DRAFT-31280
NOAA-NMFS-2020-0031-DRAFT-31281
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NOAA-NMFS-2020-0031-DRAFT-31283
NOAA-NMFS-2020-0031-DRAFT-31284
NOAA-NMFS-2020-0031-DRAFT-31285
NOAA-NMFS-2020-0031-DRAFT-31286
NOAA-NMFS-2020-0031-DRAFT-31287
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NOAA-NMFS-2020-0031-DRAFT-31289
NOAA-NMFS-2020-0031-DRAFT-31290
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NOAA-NMFS-2020-0031-DRAFT-31292
NOAA-NMFS-2020-0031-DRAFT-31293
NOAA-NMFS-2020-0031-DRAFT-31294
NOAA-NMFS-2020-0031-DRAFT-31295
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NOAA-NMFS-2020-0031-DRAFT-31298
NOAA-NMFS-2020-0031-DRAFT-31299
NOAA-NMFS-2020-0031-DRAFT-31300
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NOAA-NMFS-2020-0031-DRAFT-31303
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NOAA-NMFS-2020-0031-DRAFT-31306
NOAA-NMFS-2020-0031-DRAFT-31307
NOAA-NMFS-2020-0031-DRAFT-31308

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NOAA-NMFS-2020-0031-DRAFT-36276
NOAA-NMFS-2020-0031-DRAFT-36277
NOAA-NMFS-2020-0031-DRAFT-36278
NOAA-NMFS-2020-0031-DRAFT-36279
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NOAA-NMFS-2020-0031-DRAFT-36288
NOAA-NMFS-2020-0031-DRAFT-36289
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NOAA-NMFS-2020-0031-DRAFT-36297
NOAA-NMFS-2020-0031-DRAFT-36298
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NOAA-NMFS-2020-0031-DRAFT-36300
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NOAA-NMFS-2020-0031-DRAFT-36314
NOAA-NMFS-2020-0031-DRAFT-36315
NOAA-NMFS-2020-0031-DRAFT-36316

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NOAA-NMFS-2020-0031-DRAFT-31309
NOAA-NMFS-2020-0031-DRAFT-31310
NOAA-NMFS-2020-0031-DRAFT-31311
NOAA-NMFS-2020-0031-DRAFT-31312
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NOAA-NMFS-2020-0031-DRAFT-31327
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NOAA-NMFS-2020-0031-DRAFT-31330
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NOAA-NMFS-2020-0031-DRAFT-31332
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NOAA-NMFS-2020-0031-DRAFT-31347
NOAA-NMFS-2020-0031-DRAFT-31348
NOAA-NMFS-2020-0031-DRAFT-31349

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NOAA-NMFS-2020-0031-DRAFT-36317
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NOAA-NMFS-2020-0031-DRAFT-36319
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NOAA-NMFS-2020-0031-DRAFT-36357
NOAA-NMFS-2020-0031-DRAFT-36358
NOAA-NMFS-2020-0031-DRAFT-36359

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NOAA-NMFS-2020-0031-DRAFT-31350
NOAA-NMFS-2020-0031-DRAFT-31351
NOAA-NMFS-2020-0031-DRAFT-31352
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NOAA-NMFS-2020-0031-DRAFT-31368
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NOAA-NMFS-2020-0031-DRAFT-31371
NOAA-NMFS-2020-0031-DRAFT-31372
NOAA-NMFS-2020-0031-DRAFT-31373
NOAA-NMFS-2020-0031-DRAFT-31374
NOAA-NMFS-2020-0031-DRAFT-31375
NOAA-NMFS-2020-0031-DRAFT-31376
NOAA-NMFS-2020-0031-DRAFT-31377
NOAA-NMFS-2020-0031-DRAFT-31378
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NOAA-NMFS-2020-0031-DRAFT-31381
NOAA-NMFS-2020-0031-DRAFT-31382
NOAA-NMFS-2020-0031-DRAFT-31383
NOAA-NMFS-2020-0031-DRAFT-31384
NOAA-NMFS-2020-0031-DRAFT-31385
NOAA-NMFS-2020-0031-DRAFT-31386
NOAA-NMFS-2020-0031-DRAFT-31387
NOAA-NMFS-2020-0031-DRAFT-31388
NOAA-NMFS-2020-0031-DRAFT-31389
NOAA-NMFS-2020-0031-DRAFT-31390

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NOAA-NMFS-2020-0031-DRAFT-36360
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NOAA-NMFS-2020-0031-DRAFT-36379
NOAA-NMFS-2020-0031-DRAFT-36380
NOAA-NMFS-2020-0031-DRAFT-36381
NOAA-NMFS-2020-0031-DRAFT-36382
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NOAA-NMFS-2020-0031-DRAFT-36399
NOAA-NMFS-2020-0031-DRAFT-36400

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NOAA-NMFS-2020-0031-DRAFT-31391
NOAA-NMFS-2020-0031-DRAFT-31392
NOAA-NMFS-2020-0031-DRAFT-31393
NOAA-NMFS-2020-0031-DRAFT-31394
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NOAA-NMFS-2020-0031-DRAFT-31396
NOAA-NMFS-2020-0031-DRAFT-31397
NOAA-NMFS-2020-0031-DRAFT-31398
NOAA-NMFS-2020-0031-DRAFT-31399
NOAA-NMFS-2020-0031-DRAFT-31400
NOAA-NMFS-2020-0031-DRAFT-31401
NOAA-NMFS-2020-0031-DRAFT-31402
NOAA-NMFS-2020-0031-DRAFT-31403
NOAA-NMFS-2020-0031-DRAFT-31404
NOAA-NMFS-2020-0031-DRAFT-31405
NOAA-NMFS-2020-0031-DRAFT-31406
NOAA-NMFS-2020-0031-DRAFT-31407
NOAA-NMFS-2020-0031-DRAFT-31408
NOAA-NMFS-2020-0031-DRAFT-31409
NOAA-NMFS-2020-0031-DRAFT-31410
NOAA-NMFS-2020-0031-DRAFT-31411
NOAA-NMFS-2020-0031-DRAFT-31412
NOAA-NMFS-2020-0031-DRAFT-31413
NOAA-NMFS-2020-0031-DRAFT-31414
NOAA-NMFS-2020-0031-DRAFT-31415
NOAA-NMFS-2020-0031-DRAFT-31416
NOAA-NMFS-2020-0031-DRAFT-31417
NOAA-NMFS-2020-0031-DRAFT-31418
NOAA-NMFS-2020-0031-DRAFT-31419
NOAA-NMFS-2020-0031-DRAFT-31420
NOAA-NMFS-2020-0031-DRAFT-31421
NOAA-NMFS-2020-0031-DRAFT-31422
NOAA-NMFS-2020-0031-DRAFT-31423
NOAA-NMFS-2020-0031-DRAFT-31424
NOAA-NMFS-2020-0031-DRAFT-31425
NOAA-NMFS-2020-0031-DRAFT-31426
NOAA-NMFS-2020-0031-DRAFT-31427
NOAA-NMFS-2020-0031-DRAFT-31428
NOAA-NMFS-2020-0031-DRAFT-31429
NOAA-NMFS-2020-0031-DRAFT-31430
NOAA-NMFS-2020-0031-DRAFT-31431

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NOAA-NMFS-2020-0031-DRAFT-36401
NOAA-NMFS-2020-0031-DRAFT-36402
NOAA-NMFS-2020-0031-DRAFT-36403
NOAA-NMFS-2020-0031-DRAFT-36404
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NOAA-NMFS-2020-0031-DRAFT-36409
NOAA-NMFS-2020-0031-DRAFT-36410
NOAA-NMFS-2020-0031-DRAFT-36411
NOAA-NMFS-2020-0031-DRAFT-36412
NOAA-NMFS-2020-0031-DRAFT-36413
NOAA-NMFS-2020-0031-DRAFT-36414
NOAA-NMFS-2020-0031-DRAFT-36415
NOAA-NMFS-2020-0031-DRAFT-36416
NOAA-NMFS-2020-0031-DRAFT-36417
NOAA-NMFS-2020-0031-DRAFT-36418
NOAA-NMFS-2020-0031-DRAFT-36419
NOAA-NMFS-2020-0031-DRAFT-36420
NOAA-NMFS-2020-0031-DRAFT-36421
NOAA-NMFS-2020-0031-DRAFT-36422
NOAA-NMFS-2020-0031-DRAFT-36423
NOAA-NMFS-2020-0031-DRAFT-36424
NOAA-NMFS-2020-0031-DRAFT-36425
NOAA-NMFS-2020-0031-DRAFT-36426
NOAA-NMFS-2020-0031-DRAFT-36427
NOAA-NMFS-2020-0031-DRAFT-36428
NOAA-NMFS-2020-0031-DRAFT-36429
NOAA-NMFS-2020-0031-DRAFT-36430
NOAA-NMFS-2020-0031-DRAFT-36431
NOAA-NMFS-2020-0031-DRAFT-36432
NOAA-NMFS-2020-0031-DRAFT-36433
NOAA-NMFS-2020-0031-DRAFT-36434
NOAA-NMFS-2020-0031-DRAFT-36435
NOAA-NMFS-2020-0031-DRAFT-36436
NOAA-NMFS-2020-0031-DRAFT-36437
NOAA-NMFS-2020-0031-DRAFT-36438
NOAA-NMFS-2020-0031-DRAFT-36439
NOAA-NMFS-2020-0031-DRAFT-36440
NOAA-NMFS-2020-0031-DRAFT-36441

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NOAA-NMFS-2020-0031-DRAFT-31432
NOAA-NMFS-2020-0031-DRAFT-31433
NOAA-NMFS-2020-0031-DRAFT-31434
NOAA-NMFS-2020-0031-DRAFT-31435
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NOAA-NMFS-2020-0031-DRAFT-31437
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NOAA-NMFS-2020-0031-DRAFT-31440
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NOAA-NMFS-2020-0031-DRAFT-31442
NOAA-NMFS-2020-0031-DRAFT-31443
NOAA-NMFS-2020-0031-DRAFT-31444
NOAA-NMFS-2020-0031-DRAFT-31445
NOAA-NMFS-2020-0031-DRAFT-31446
NOAA-NMFS-2020-0031-DRAFT-31447
NOAA-NMFS-2020-0031-DRAFT-31448
NOAA-NMFS-2020-0031-DRAFT-31449
NOAA-NMFS-2020-0031-DRAFT-31450
NOAA-NMFS-2020-0031-DRAFT-31451
NOAA-NMFS-2020-0031-DRAFT-31452
NOAA-NMFS-2020-0031-DRAFT-31453
NOAA-NMFS-2020-0031-DRAFT-31454
NOAA-NMFS-2020-0031-DRAFT-31455
NOAA-NMFS-2020-0031-DRAFT-31456
NOAA-NMFS-2020-0031-DRAFT-31457
NOAA-NMFS-2020-0031-DRAFT-31458
NOAA-NMFS-2020-0031-DRAFT-31459
NOAA-NMFS-2020-0031-DRAFT-31460
NOAA-NMFS-2020-0031-DRAFT-31461
NOAA-NMFS-2020-0031-DRAFT-31462
NOAA-NMFS-2020-0031-DRAFT-31463
NOAA-NMFS-2020-0031-DRAFT-31464
NOAA-NMFS-2020-0031-DRAFT-31465
NOAA-NMFS-2020-0031-DRAFT-31466
NOAA-NMFS-2020-0031-DRAFT-31467
NOAA-NMFS-2020-0031-DRAFT-31468
NOAA-NMFS-2020-0031-DRAFT-31469
NOAA-NMFS-2020-0031-DRAFT-31470
NOAA-NMFS-2020-0031-DRAFT-31471
NOAA-NMFS-2020-0031-DRAFT-31472

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NOAA-NMFS-2020-0031-DRAFT-36442
NOAA-NMFS-2020-0031-DRAFT-36443
NOAA-NMFS-2020-0031-DRAFT-36444
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NOAA-NMFS-2020-0031-DRAFT-36455
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NOAA-NMFS-2020-0031-DRAFT-36457
NOAA-NMFS-2020-0031-DRAFT-36458
NOAA-NMFS-2020-0031-DRAFT-36459
NOAA-NMFS-2020-0031-DRAFT-36460
NOAA-NMFS-2020-0031-DRAFT-36461
NOAA-NMFS-2020-0031-DRAFT-36462
NOAA-NMFS-2020-0031-DRAFT-36463
NOAA-NMFS-2020-0031-DRAFT-36464
NOAA-NMFS-2020-0031-DRAFT-36465
NOAA-NMFS-2020-0031-DRAFT-36466
NOAA-NMFS-2020-0031-DRAFT-36467
NOAA-NMFS-2020-0031-DRAFT-36468
NOAA-NMFS-2020-0031-DRAFT-36469
NOAA-NMFS-2020-0031-DRAFT-36470
NOAA-NMFS-2020-0031-DRAFT-36471
NOAA-NMFS-2020-0031-DRAFT-36472
NOAA-NMFS-2020-0031-DRAFT-36473
NOAA-NMFS-2020-0031-DRAFT-36474
NOAA-NMFS-2020-0031-DRAFT-36475
NOAA-NMFS-2020-0031-DRAFT-36476
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NOAA-NMFS-2020-0031-DRAFT-36478
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NOAA-NMFS-2020-0031-DRAFT-36480
NOAA-NMFS-2020-0031-DRAFT-36481
NOAA-NMFS-2020-0031-DRAFT-36482

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NOAA-NMFS-2020-0031-DRAFT-31473
NOAA-NMFS-2020-0031-DRAFT-31474
NOAA-NMFS-2020-0031-DRAFT-31475
NOAA-NMFS-2020-0031-DRAFT-31476
NOAA-NMFS-2020-0031-DRAFT-31477
NOAA-NMFS-2020-0031-DRAFT-31478
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NOAA-NMFS-2020-0031-DRAFT-31480
NOAA-NMFS-2020-0031-DRAFT-31481
NOAA-NMFS-2020-0031-DRAFT-31482
NOAA-NMFS-2020-0031-DRAFT-31483
NOAA-NMFS-2020-0031-DRAFT-31484
NOAA-NMFS-2020-0031-DRAFT-31485
NOAA-NMFS-2020-0031-DRAFT-31486
NOAA-NMFS-2020-0031-DRAFT-31487
NOAA-NMFS-2020-0031-DRAFT-31488
NOAA-NMFS-2020-0031-DRAFT-31489
NOAA-NMFS-2020-0031-DRAFT-31490
NOAA-NMFS-2020-0031-DRAFT-31491
NOAA-NMFS-2020-0031-DRAFT-31492
NOAA-NMFS-2020-0031-DRAFT-31493
NOAA-NMFS-2020-0031-DRAFT-31494
NOAA-NMFS-2020-0031-DRAFT-31495
NOAA-NMFS-2020-0031-DRAFT-31496
NOAA-NMFS-2020-0031-DRAFT-31497
NOAA-NMFS-2020-0031-DRAFT-31498
NOAA-NMFS-2020-0031-DRAFT-31499
NOAA-NMFS-2020-0031-DRAFT-31500
NOAA-NMFS-2020-0031-DRAFT-31501
NOAA-NMFS-2020-0031-DRAFT-31502
NOAA-NMFS-2020-0031-DRAFT-31503
NOAA-NMFS-2020-0031-DRAFT-31504
NOAA-NMFS-2020-0031-DRAFT-31505
NOAA-NMFS-2020-0031-DRAFT-31506
NOAA-NMFS-2020-0031-DRAFT-31507
NOAA-NMFS-2020-0031-DRAFT-31508
NOAA-NMFS-2020-0031-DRAFT-31509
NOAA-NMFS-2020-0031-DRAFT-31510
NOAA-NMFS-2020-0031-DRAFT-31511
NOAA-NMFS-2020-0031-DRAFT-31512
NOAA-NMFS-2020-0031-DRAFT-31513

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NOAA-NMFS-2020-0031-DRAFT-36483
NOAA-NMFS-2020-0031-DRAFT-36484
NOAA-NMFS-2020-0031-DRAFT-36485
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NOAA-NMFS-2020-0031-DRAFT-36492
NOAA-NMFS-2020-0031-DRAFT-36493
NOAA-NMFS-2020-0031-DRAFT-36494
NOAA-NMFS-2020-0031-DRAFT-36495
NOAA-NMFS-2020-0031-DRAFT-36496
NOAA-NMFS-2020-0031-DRAFT-36497
NOAA-NMFS-2020-0031-DRAFT-36498
NOAA-NMFS-2020-0031-DRAFT-36499
NOAA-NMFS-2020-0031-DRAFT-36500
NOAA-NMFS-2020-0031-DRAFT-36501
NOAA-NMFS-2020-0031-DRAFT-36502
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NOAA-NMFS-2020-0031-DRAFT-36504
NOAA-NMFS-2020-0031-DRAFT-36505
NOAA-NMFS-2020-0031-DRAFT-36506
NOAA-NMFS-2020-0031-DRAFT-36507
NOAA-NMFS-2020-0031-DRAFT-36508
NOAA-NMFS-2020-0031-DRAFT-36509
NOAA-NMFS-2020-0031-DRAFT-36510
NOAA-NMFS-2020-0031-DRAFT-36511
NOAA-NMFS-2020-0031-DRAFT-36512
NOAA-NMFS-2020-0031-DRAFT-36513
NOAA-NMFS-2020-0031-DRAFT-36514
NOAA-NMFS-2020-0031-DRAFT-36515
NOAA-NMFS-2020-0031-DRAFT-36516
NOAA-NMFS-2020-0031-DRAFT-36517
NOAA-NMFS-2020-0031-DRAFT-36518
NOAA-NMFS-2020-0031-DRAFT-36519
NOAA-NMFS-2020-0031-DRAFT-36520
NOAA-NMFS-2020-0031-DRAFT-36521
NOAA-NMFS-2020-0031-DRAFT-36522
NOAA-NMFS-2020-0031-DRAFT-36523

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NOAA-NMFS-2020-0031-DRAFT-31514
NOAA-NMFS-2020-0031-DRAFT-31515
NOAA-NMFS-2020-0031-DRAFT-31516
NOAA-NMFS-2020-0031-DRAFT-31517
NOAA-NMFS-2020-0031-DRAFT-31518
NOAA-NMFS-2020-0031-DRAFT-31519
NOAA-NMFS-2020-0031-DRAFT-31520
NOAA-NMFS-2020-0031-DRAFT-31521
NOAA-NMFS-2020-0031-DRAFT-31522
NOAA-NMFS-2020-0031-DRAFT-31523
NOAA-NMFS-2020-0031-DRAFT-31524
NOAA-NMFS-2020-0031-DRAFT-31525
NOAA-NMFS-2020-0031-DRAFT-31526
NOAA-NMFS-2020-0031-DRAFT-31527
NOAA-NMFS-2020-0031-DRAFT-31528
NOAA-NMFS-2020-0031-DRAFT-31529
NOAA-NMFS-2020-0031-DRAFT-31530
NOAA-NMFS-2020-0031-DRAFT-31531
NOAA-NMFS-2020-0031-DRAFT-31532
NOAA-NMFS-2020-0031-DRAFT-31533
NOAA-NMFS-2020-0031-DRAFT-31534
NOAA-NMFS-2020-0031-DRAFT-31535
NOAA-NMFS-2020-0031-DRAFT-31536
NOAA-NMFS-2020-0031-DRAFT-31537
NOAA-NMFS-2020-0031-DRAFT-31538
NOAA-NMFS-2020-0031-DRAFT-31539
NOAA-NMFS-2020-0031-DRAFT-31540
NOAA-NMFS-2020-0031-DRAFT-31541
NOAA-NMFS-2020-0031-DRAFT-31542
NOAA-NMFS-2020-0031-DRAFT-31543
NOAA-NMFS-2020-0031-DRAFT-31544
NOAA-NMFS-2020-0031-DRAFT-31545
NOAA-NMFS-2020-0031-DRAFT-31546
NOAA-NMFS-2020-0031-DRAFT-31547
NOAA-NMFS-2020-0031-DRAFT-31548
NOAA-NMFS-2020-0031-DRAFT-31549
NOAA-NMFS-2020-0031-DRAFT-31550
NOAA-NMFS-2020-0031-DRAFT-31551
NOAA-NMFS-2020-0031-DRAFT-31552
NOAA-NMFS-2020-0031-DRAFT-31553
NOAA-NMFS-2020-0031-DRAFT-31554

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NOAA-NMFS-2020-0031-DRAFT-36524
NOAA-NMFS-2020-0031-DRAFT-36525
NOAA-NMFS-2020-0031-DRAFT-36526
NOAA-NMFS-2020-0031-DRAFT-36527
NOAA-NMFS-2020-0031-DRAFT-36528
NOAA-NMFS-2020-0031-DRAFT-36529
NOAA-NMFS-2020-0031-DRAFT-36530
NOAA-NMFS-2020-0031-DRAFT-36531
NOAA-NMFS-2020-0031-DRAFT-36532
NOAA-NMFS-2020-0031-DRAFT-36533
NOAA-NMFS-2020-0031-DRAFT-36534
NOAA-NMFS-2020-0031-DRAFT-36535
NOAA-NMFS-2020-0031-DRAFT-36536
NOAA-NMFS-2020-0031-DRAFT-36537
NOAA-NMFS-2020-0031-DRAFT-36538
NOAA-NMFS-2020-0031-DRAFT-36539
NOAA-NMFS-2020-0031-DRAFT-36540
NOAA-NMFS-2020-0031-DRAFT-36541
NOAA-NMFS-2020-0031-DRAFT-36542
NOAA-NMFS-2020-0031-DRAFT-36543
NOAA-NMFS-2020-0031-DRAFT-36544
NOAA-NMFS-2020-0031-DRAFT-36545
NOAA-NMFS-2020-0031-DRAFT-36546
NOAA-NMFS-2020-0031-DRAFT-36547
NOAA-NMFS-2020-0031-DRAFT-36548
NOAA-NMFS-2020-0031-DRAFT-36549
NOAA-NMFS-2020-0031-DRAFT-36550
NOAA-NMFS-2020-0031-DRAFT-36551
NOAA-NMFS-2020-0031-DRAFT-36552
NOAA-NMFS-2020-0031-DRAFT-36553
NOAA-NMFS-2020-0031-DRAFT-36554
NOAA-NMFS-2020-0031-DRAFT-36555
NOAA-NMFS-2020-0031-DRAFT-36556
NOAA-NMFS-2020-0031-DRAFT-36557
NOAA-NMFS-2020-0031-DRAFT-36558
NOAA-NMFS-2020-0031-DRAFT-36559
NOAA-NMFS-2020-0031-DRAFT-36560
NOAA-NMFS-2020-0031-DRAFT-36561
NOAA-NMFS-2020-0031-DRAFT-36562
NOAA-NMFS-2020-0031-DRAFT-36563
NOAA-NMFS-2020-0031-DRAFT-36564

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NOAA-NMFS-2020-0031-DRAFT-31555
NOAA-NMFS-2020-0031-DRAFT-31556
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NOAA-NMFS-2020-0031-DRAFT-31558
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NOAA-NMFS-2020-0031-DRAFT-31565
NOAA-NMFS-2020-0031-DRAFT-31566
NOAA-NMFS-2020-0031-DRAFT-31567
NOAA-NMFS-2020-0031-DRAFT-31568
NOAA-NMFS-2020-0031-DRAFT-31569
NOAA-NMFS-2020-0031-DRAFT-31570
NOAA-NMFS-2020-0031-DRAFT-31571
NOAA-NMFS-2020-0031-DRAFT-31572
NOAA-NMFS-2020-0031-DRAFT-31573
NOAA-NMFS-2020-0031-DRAFT-31574
NOAA-NMFS-2020-0031-DRAFT-31575
NOAA-NMFS-2020-0031-DRAFT-31576
NOAA-NMFS-2020-0031-DRAFT-31577
NOAA-NMFS-2020-0031-DRAFT-31578
NOAA-NMFS-2020-0031-DRAFT-31579
NOAA-NMFS-2020-0031-DRAFT-31580
NOAA-NMFS-2020-0031-DRAFT-31581
NOAA-NMFS-2020-0031-DRAFT-31582
NOAA-NMFS-2020-0031-DRAFT-31583
NOAA-NMFS-2020-0031-DRAFT-31584
NOAA-NMFS-2020-0031-DRAFT-31585
NOAA-NMFS-2020-0031-DRAFT-31586
NOAA-NMFS-2020-0031-DRAFT-31587
NOAA-NMFS-2020-0031-DRAFT-31588
NOAA-NMFS-2020-0031-DRAFT-31589
NOAA-NMFS-2020-0031-DRAFT-31590
NOAA-NMFS-2020-0031-DRAFT-31591
NOAA-NMFS-2020-0031-DRAFT-31592
NOAA-NMFS-2020-0031-DRAFT-31593
NOAA-NMFS-2020-0031-DRAFT-31594
NOAA-NMFS-2020-0031-DRAFT-31595

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NOAA-NMFS-2020-0031-DRAFT-36565
NOAA-NMFS-2020-0031-DRAFT-36566
NOAA-NMFS-2020-0031-DRAFT-36567
NOAA-NMFS-2020-0031-DRAFT-36568
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NOAA-NMFS-2020-0031-DRAFT-36573
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NOAA-NMFS-2020-0031-DRAFT-36575
NOAA-NMFS-2020-0031-DRAFT-36576
NOAA-NMFS-2020-0031-DRAFT-36577
NOAA-NMFS-2020-0031-DRAFT-36578
NOAA-NMFS-2020-0031-DRAFT-36579
NOAA-NMFS-2020-0031-DRAFT-36580
NOAA-NMFS-2020-0031-DRAFT-36581
NOAA-NMFS-2020-0031-DRAFT-36582
NOAA-NMFS-2020-0031-DRAFT-36583
NOAA-NMFS-2020-0031-DRAFT-36584
NOAA-NMFS-2020-0031-DRAFT-36585
NOAA-NMFS-2020-0031-DRAFT-36586
NOAA-NMFS-2020-0031-DRAFT-36587
NOAA-NMFS-2020-0031-DRAFT-36588
NOAA-NMFS-2020-0031-DRAFT-36589
NOAA-NMFS-2020-0031-DRAFT-36590
NOAA-NMFS-2020-0031-DRAFT-36591
NOAA-NMFS-2020-0031-DRAFT-36592
NOAA-NMFS-2020-0031-DRAFT-36593
NOAA-NMFS-2020-0031-DRAFT-36594
NOAA-NMFS-2020-0031-DRAFT-36595
NOAA-NMFS-2020-0031-DRAFT-36596
NOAA-NMFS-2020-0031-DRAFT-36597
NOAA-NMFS-2020-0031-DRAFT-36598
NOAA-NMFS-2020-0031-DRAFT-36599
NOAA-NMFS-2020-0031-DRAFT-36600
NOAA-NMFS-2020-0031-DRAFT-36601
NOAA-NMFS-2020-0031-DRAFT-36602
NOAA-NMFS-2020-0031-DRAFT-36603
NOAA-NMFS-2020-0031-DRAFT-36604
NOAA-NMFS-2020-0031-DRAFT-36605

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NOAA-NMFS-2020-0031-DRAFT-31596
NOAA-NMFS-2020-0031-DRAFT-31597
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NOAA-NMFS-2020-0031-DRAFT-31611
NOAA-NMFS-2020-0031-DRAFT-31612
NOAA-NMFS-2020-0031-DRAFT-31613
NOAA-NMFS-2020-0031-DRAFT-31614
NOAA-NMFS-2020-0031-DRAFT-31615
NOAA-NMFS-2020-0031-DRAFT-31616
NOAA-NMFS-2020-0031-DRAFT-31617
NOAA-NMFS-2020-0031-DRAFT-31618
NOAA-NMFS-2020-0031-DRAFT-31619
NOAA-NMFS-2020-0031-DRAFT-31620
NOAA-NMFS-2020-0031-DRAFT-31621
NOAA-NMFS-2020-0031-DRAFT-31622
NOAA-NMFS-2020-0031-DRAFT-31623
NOAA-NMFS-2020-0031-DRAFT-31624
NOAA-NMFS-2020-0031-DRAFT-31625
NOAA-NMFS-2020-0031-DRAFT-31626
NOAA-NMFS-2020-0031-DRAFT-31627
NOAA-NMFS-2020-0031-DRAFT-31628
NOAA-NMFS-2020-0031-DRAFT-31629
NOAA-NMFS-2020-0031-DRAFT-31630
NOAA-NMFS-2020-0031-DRAFT-31631
NOAA-NMFS-2020-0031-DRAFT-31632
NOAA-NMFS-2020-0031-DRAFT-31633
NOAA-NMFS-2020-0031-DRAFT-31634
NOAA-NMFS-2020-0031-DRAFT-31635
NOAA-NMFS-2020-0031-DRAFT-31636

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NOAA-NMFS-2020-0031-DRAFT-36606
NOAA-NMFS-2020-0031-DRAFT-36607
NOAA-NMFS-2020-0031-DRAFT-36608
NOAA-NMFS-2020-0031-DRAFT-36609
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NOAA-NMFS-2020-0031-DRAFT-36616
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NOAA-NMFS-2020-0031-DRAFT-36618
NOAA-NMFS-2020-0031-DRAFT-36619
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NOAA-NMFS-2020-0031-DRAFT-36621
NOAA-NMFS-2020-0031-DRAFT-36622
NOAA-NMFS-2020-0031-DRAFT-36623
NOAA-NMFS-2020-0031-DRAFT-36624
NOAA-NMFS-2020-0031-DRAFT-36625
NOAA-NMFS-2020-0031-DRAFT-36626
NOAA-NMFS-2020-0031-DRAFT-36627
NOAA-NMFS-2020-0031-DRAFT-36628
NOAA-NMFS-2020-0031-DRAFT-36629
NOAA-NMFS-2020-0031-DRAFT-36630
NOAA-NMFS-2020-0031-DRAFT-36631
NOAA-NMFS-2020-0031-DRAFT-36632
NOAA-NMFS-2020-0031-DRAFT-36633
NOAA-NMFS-2020-0031-DRAFT-36634
NOAA-NMFS-2020-0031-DRAFT-36635
NOAA-NMFS-2020-0031-DRAFT-36636
NOAA-NMFS-2020-0031-DRAFT-36637
NOAA-NMFS-2020-0031-DRAFT-36638
NOAA-NMFS-2020-0031-DRAFT-36639
NOAA-NMFS-2020-0031-DRAFT-36640
NOAA-NMFS-2020-0031-DRAFT-36642
NOAA-NMFS-2020-0031-DRAFT-36643
NOAA-NMFS-2020-0031-DRAFT-36644
NOAA-NMFS-2020-0031-DRAFT-36645
NOAA-NMFS-2020-0031-DRAFT-36646
NOAA-NMFS-2020-0031-DRAFT-36647

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NOAA-NMFS-2020-0031-DRAFT-31637
NOAA-NMFS-2020-0031-DRAFT-31638
NOAA-NMFS-2020-0031-DRAFT-31639
NOAA-NMFS-2020-0031-DRAFT-31640
NOAA-NMFS-2020-0031-DRAFT-31641
NOAA-NMFS-2020-0031-DRAFT-31642
NOAA-NMFS-2020-0031-DRAFT-31643
NOAA-NMFS-2020-0031-DRAFT-31644
NOAA-NMFS-2020-0031-DRAFT-31645
NOAA-NMFS-2020-0031-DRAFT-31646
NOAA-NMFS-2020-0031-DRAFT-31647
NOAA-NMFS-2020-0031-DRAFT-31648
NOAA-NMFS-2020-0031-DRAFT-31649
NOAA-NMFS-2020-0031-DRAFT-31650
NOAA-NMFS-2020-0031-DRAFT-31651
NOAA-NMFS-2020-0031-DRAFT-31652
NOAA-NMFS-2020-0031-DRAFT-31653
NOAA-NMFS-2020-0031-DRAFT-31654
NOAA-NMFS-2020-0031-DRAFT-31655
NOAA-NMFS-2020-0031-DRAFT-31656
NOAA-NMFS-2020-0031-DRAFT-31657
NOAA-NMFS-2020-0031-DRAFT-31658
NOAA-NMFS-2020-0031-DRAFT-31659
NOAA-NMFS-2020-0031-DRAFT-31660
NOAA-NMFS-2020-0031-DRAFT-31661
NOAA-NMFS-2020-0031-DRAFT-31662
NOAA-NMFS-2020-0031-DRAFT-31663
NOAA-NMFS-2020-0031-DRAFT-31664
NOAA-NMFS-2020-0031-DRAFT-31665
NOAA-NMFS-2020-0031-DRAFT-31666
NOAA-NMFS-2020-0031-DRAFT-31667
NOAA-NMFS-2020-0031-DRAFT-31668
NOAA-NMFS-2020-0031-DRAFT-31669
NOAA-NMFS-2020-0031-DRAFT-31670
NOAA-NMFS-2020-0031-DRAFT-31671
NOAA-NMFS-2020-0031-DRAFT-31672
NOAA-NMFS-2020-0031-DRAFT-31673
NOAA-NMFS-2020-0031-DRAFT-31674
NOAA-NMFS-2020-0031-DRAFT-31675
NOAA-NMFS-2020-0031-DRAFT-31676
NOAA-NMFS-2020-0031-DRAFT-31677

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NOAA-NMFS-2020-0031-DRAFT-36648
NOAA-NMFS-2020-0031-DRAFT-36649
NOAA-NMFS-2020-0031-DRAFT-36650
NOAA-NMFS-2020-0031-DRAFT-36651
NOAA-NMFS-2020-0031-DRAFT-36652
NOAA-NMFS-2020-0031-DRAFT-36653
NOAA-NMFS-2020-0031-DRAFT-36654
NOAA-NMFS-2020-0031-DRAFT-36655
NOAA-NMFS-2020-0031-DRAFT-36656
NOAA-NMFS-2020-0031-DRAFT-36657
NOAA-NMFS-2020-0031-DRAFT-36658
NOAA-NMFS-2020-0031-DRAFT-36659
NOAA-NMFS-2020-0031-DRAFT-36660
NOAA-NMFS-2020-0031-DRAFT-36661
NOAA-NMFS-2020-0031-DRAFT-36662
NOAA-NMFS-2020-0031-DRAFT-36663
NOAA-NMFS-2020-0031-DRAFT-36664
NOAA-NMFS-2020-0031-DRAFT-36665
NOAA-NMFS-2020-0031-DRAFT-36666
NOAA-NMFS-2020-0031-DRAFT-36667
NOAA-NMFS-2020-0031-DRAFT-36668
NOAA-NMFS-2020-0031-DRAFT-36669
NOAA-NMFS-2020-0031-DRAFT-36670
NOAA-NMFS-2020-0031-DRAFT-36671
NOAA-NMFS-2020-0031-DRAFT-36672
NOAA-NMFS-2020-0031-DRAFT-36673
NOAA-NMFS-2020-0031-DRAFT-36674
NOAA-NMFS-2020-0031-DRAFT-36675
NOAA-NMFS-2020-0031-DRAFT-36676
NOAA-NMFS-2020-0031-DRAFT-36677
NOAA-NMFS-2020-0031-DRAFT-36678
NOAA-NMFS-2020-0031-DRAFT-36679
NOAA-NMFS-2020-0031-DRAFT-36680
NOAA-NMFS-2020-0031-DRAFT-36681
NOAA-NMFS-2020-0031-DRAFT-36682
NOAA-NMFS-2020-0031-DRAFT-36683
NOAA-NMFS-2020-0031-DRAFT-36684
NOAA-NMFS-2020-0031-DRAFT-36685
NOAA-NMFS-2020-0031-DRAFT-36686
NOAA-NMFS-2020-0031-DRAFT-36687
NOAA-NMFS-2020-0031-DRAFT-36688

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NOAA-NMFS-2020-0031-DRAFT-31678
NOAA-NMFS-2020-0031-DRAFT-31679
NOAA-NMFS-2020-0031-DRAFT-31680
NOAA-NMFS-2020-0031-DRAFT-31681
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NOAA-NMFS-2020-0031-DRAFT-31688
NOAA-NMFS-2020-0031-DRAFT-31689
NOAA-NMFS-2020-0031-DRAFT-31690
NOAA-NMFS-2020-0031-DRAFT-31691
NOAA-NMFS-2020-0031-DRAFT-31692
NOAA-NMFS-2020-0031-DRAFT-31693
NOAA-NMFS-2020-0031-DRAFT-31694
NOAA-NMFS-2020-0031-DRAFT-31695
NOAA-NMFS-2020-0031-DRAFT-31696
NOAA-NMFS-2020-0031-DRAFT-31697
NOAA-NMFS-2020-0031-DRAFT-31698
NOAA-NMFS-2020-0031-DRAFT-31699
NOAA-NMFS-2020-0031-DRAFT-31700
NOAA-NMFS-2020-0031-DRAFT-31701
NOAA-NMFS-2020-0031-DRAFT-31702
NOAA-NMFS-2020-0031-DRAFT-31703
NOAA-NMFS-2020-0031-DRAFT-31704
NOAA-NMFS-2020-0031-DRAFT-31705
NOAA-NMFS-2020-0031-DRAFT-31706
NOAA-NMFS-2020-0031-DRAFT-31707
NOAA-NMFS-2020-0031-DRAFT-31708
NOAA-NMFS-2020-0031-DRAFT-31709
NOAA-NMFS-2020-0031-DRAFT-31710
NOAA-NMFS-2020-0031-DRAFT-31711
NOAA-NMFS-2020-0031-DRAFT-31712
NOAA-NMFS-2020-0031-DRAFT-31713
NOAA-NMFS-2020-0031-DRAFT-31714
NOAA-NMFS-2020-0031-DRAFT-31715
NOAA-NMFS-2020-0031-DRAFT-31716
NOAA-NMFS-2020-0031-DRAFT-31717
NOAA-NMFS-2020-0031-DRAFT-31718

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NOAA-NMFS-2020-0031-DRAFT-36689
NOAA-NMFS-2020-0031-DRAFT-36690
NOAA-NMFS-2020-0031-DRAFT-36691
NOAA-NMFS-2020-0031-DRAFT-36692
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NOAA-NMFS-2020-0031-DRAFT-36697
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NOAA-NMFS-2020-0031-DRAFT-36699
NOAA-NMFS-2020-0031-DRAFT-36700
NOAA-NMFS-2020-0031-DRAFT-36701
NOAA-NMFS-2020-0031-DRAFT-36702
NOAA-NMFS-2020-0031-DRAFT-36703
NOAA-NMFS-2020-0031-DRAFT-36704
NOAA-NMFS-2020-0031-DRAFT-36705
NOAA-NMFS-2020-0031-DRAFT-36706
NOAA-NMFS-2020-0031-DRAFT-36707
NOAA-NMFS-2020-0031-DRAFT-36708
NOAA-NMFS-2020-0031-DRAFT-36709
NOAA-NMFS-2020-0031-DRAFT-36710
NOAA-NMFS-2020-0031-DRAFT-36711
NOAA-NMFS-2020-0031-DRAFT-36712
NOAA-NMFS-2020-0031-DRAFT-36713
NOAA-NMFS-2020-0031-DRAFT-36714
NOAA-NMFS-2020-0031-DRAFT-36715
NOAA-NMFS-2020-0031-DRAFT-36716
NOAA-NMFS-2020-0031-DRAFT-36717
NOAA-NMFS-2020-0031-DRAFT-36718
NOAA-NMFS-2020-0031-DRAFT-36719
NOAA-NMFS-2020-0031-DRAFT-36720
NOAA-NMFS-2020-0031-DRAFT-36721
NOAA-NMFS-2020-0031-DRAFT-36722
NOAA-NMFS-2020-0031-DRAFT-36723
NOAA-NMFS-2020-0031-DRAFT-36724
NOAA-NMFS-2020-0031-DRAFT-36725
NOAA-NMFS-2020-0031-DRAFT-36726
NOAA-NMFS-2020-0031-DRAFT-36727
NOAA-NMFS-2020-0031-DRAFT-36728
NOAA-NMFS-2020-0031-DRAFT-36729

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NOAA-NMFS-2020-0031-DRAFT-31719
NOAA-NMFS-2020-0031-DRAFT-31720
NOAA-NMFS-2020-0031-DRAFT-31721
NOAA-NMFS-2020-0031-DRAFT-31722
NOAA-NMFS-2020-0031-DRAFT-31723
NOAA-NMFS-2020-0031-DRAFT-31724
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NOAA-NMFS-2020-0031-DRAFT-31726
NOAA-NMFS-2020-0031-DRAFT-31727
NOAA-NMFS-2020-0031-DRAFT-31728
NOAA-NMFS-2020-0031-DRAFT-31729
NOAA-NMFS-2020-0031-DRAFT-31730
NOAA-NMFS-2020-0031-DRAFT-31731
NOAA-NMFS-2020-0031-DRAFT-31732
NOAA-NMFS-2020-0031-DRAFT-31733
NOAA-NMFS-2020-0031-DRAFT-31734
NOAA-NMFS-2020-0031-DRAFT-31735
NOAA-NMFS-2020-0031-DRAFT-31736
NOAA-NMFS-2020-0031-DRAFT-31737
NOAA-NMFS-2020-0031-DRAFT-31738
NOAA-NMFS-2020-0031-DRAFT-31739
NOAA-NMFS-2020-0031-DRAFT-31740
NOAA-NMFS-2020-0031-DRAFT-31741
NOAA-NMFS-2020-0031-DRAFT-31742
NOAA-NMFS-2020-0031-DRAFT-31743
NOAA-NMFS-2020-0031-DRAFT-31744
NOAA-NMFS-2020-0031-DRAFT-31745
NOAA-NMFS-2020-0031-DRAFT-31746
NOAA-NMFS-2020-0031-DRAFT-31747
NOAA-NMFS-2020-0031-DRAFT-31748
NOAA-NMFS-2020-0031-DRAFT-31749
NOAA-NMFS-2020-0031-DRAFT-31750
NOAA-NMFS-2020-0031-DRAFT-31751
NOAA-NMFS-2020-0031-DRAFT-31752
NOAA-NMFS-2020-0031-DRAFT-31753
NOAA-NMFS-2020-0031-DRAFT-31754
NOAA-NMFS-2020-0031-DRAFT-31755
NOAA-NMFS-2020-0031-DRAFT-31756
NOAA-NMFS-2020-0031-DRAFT-31757
NOAA-NMFS-2020-0031-DRAFT-31758
NOAA-NMFS-2020-0031-DRAFT-31759

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NOAA-NMFS-2020-0031-DRAFT-36730
NOAA-NMFS-2020-0031-DRAFT-36731
NOAA-NMFS-2020-0031-DRAFT-36732
NOAA-NMFS-2020-0031-DRAFT-36733
NOAA-NMFS-2020-0031-DRAFT-36734
NOAA-NMFS-2020-0031-DRAFT-36735
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NOAA-NMFS-2020-0031-DRAFT-36740
NOAA-NMFS-2020-0031-DRAFT-36741
NOAA-NMFS-2020-0031-DRAFT-36742
NOAA-NMFS-2020-0031-DRAFT-36743
NOAA-NMFS-2020-0031-DRAFT-36744
NOAA-NMFS-2020-0031-DRAFT-36745
NOAA-NMFS-2020-0031-DRAFT-36746
NOAA-NMFS-2020-0031-DRAFT-36747
NOAA-NMFS-2020-0031-DRAFT-36748
NOAA-NMFS-2020-0031-DRAFT-36749
NOAA-NMFS-2020-0031-DRAFT-36750
NOAA-NMFS-2020-0031-DRAFT-36751
NOAA-NMFS-2020-0031-DRAFT-36752
NOAA-NMFS-2020-0031-DRAFT-36753
NOAA-NMFS-2020-0031-DRAFT-36754
NOAA-NMFS-2020-0031-DRAFT-36755
NOAA-NMFS-2020-0031-DRAFT-36756
NOAA-NMFS-2020-0031-DRAFT-36757
NOAA-NMFS-2020-0031-DRAFT-36758
NOAA-NMFS-2020-0031-DRAFT-36759
NOAA-NMFS-2020-0031-DRAFT-36760
NOAA-NMFS-2020-0031-DRAFT-36761
NOAA-NMFS-2020-0031-DRAFT-36762
NOAA-NMFS-2020-0031-DRAFT-36763
NOAA-NMFS-2020-0031-DRAFT-36764
NOAA-NMFS-2020-0031-DRAFT-36765
NOAA-NMFS-2020-0031-DRAFT-36766
NOAA-NMFS-2020-0031-DRAFT-36767
NOAA-NMFS-2020-0031-DRAFT-36768
NOAA-NMFS-2020-0031-DRAFT-36769
NOAA-NMFS-2020-0031-DRAFT-36770

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NOAA-NMFS-2020-0031-DRAFT-31760
NOAA-NMFS-2020-0031-DRAFT-31761
NOAA-NMFS-2020-0031-DRAFT-31762
NOAA-NMFS-2020-0031-DRAFT-31763
NOAA-NMFS-2020-0031-DRAFT-31764
NOAA-NMFS-2020-0031-DRAFT-31765
NOAA-NMFS-2020-0031-DRAFT-31766
NOAA-NMFS-2020-0031-DRAFT-31767
NOAA-NMFS-2020-0031-DRAFT-31768
NOAA-NMFS-2020-0031-DRAFT-31769
NOAA-NMFS-2020-0031-DRAFT-31770
NOAA-NMFS-2020-0031-DRAFT-31771
NOAA-NMFS-2020-0031-DRAFT-31772
NOAA-NMFS-2020-0031-DRAFT-31773
NOAA-NMFS-2020-0031-DRAFT-31774
NOAA-NMFS-2020-0031-DRAFT-31775
NOAA-NMFS-2020-0031-DRAFT-31776
NOAA-NMFS-2020-0031-DRAFT-31777
NOAA-NMFS-2020-0031-DRAFT-31778
NOAA-NMFS-2020-0031-DRAFT-31779
NOAA-NMFS-2020-0031-DRAFT-31780
NOAA-NMFS-2020-0031-DRAFT-31781
NOAA-NMFS-2020-0031-DRAFT-31782
NOAA-NMFS-2020-0031-DRAFT-31783
NOAA-NMFS-2020-0031-DRAFT-31784
NOAA-NMFS-2020-0031-DRAFT-31785
NOAA-NMFS-2020-0031-DRAFT-31786
NOAA-NMFS-2020-0031-DRAFT-31787
NOAA-NMFS-2020-0031-DRAFT-31788
NOAA-NMFS-2020-0031-DRAFT-31789
NOAA-NMFS-2020-0031-DRAFT-31790
NOAA-NMFS-2020-0031-DRAFT-31791
NOAA-NMFS-2020-0031-DRAFT-31792
NOAA-NMFS-2020-0031-DRAFT-31793
NOAA-NMFS-2020-0031-DRAFT-31794
NOAA-NMFS-2020-0031-DRAFT-31795
NOAA-NMFS-2020-0031-DRAFT-31796
NOAA-NMFS-2020-0031-DRAFT-31797
NOAA-NMFS-2020-0031-DRAFT-31798
NOAA-NMFS-2020-0031-DRAFT-31799
NOAA-NMFS-2020-0031-DRAFT-31800

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NOAA-NMFS-2020-0031-DRAFT-36771
NOAA-NMFS-2020-0031-DRAFT-36772
NOAA-NMFS-2020-0031-DRAFT-36773
NOAA-NMFS-2020-0031-DRAFT-36774
NOAA-NMFS-2020-0031-DRAFT-36775
NOAA-NMFS-2020-0031-DRAFT-36776
NOAA-NMFS-2020-0031-DRAFT-36777
NOAA-NMFS-2020-0031-DRAFT-36778
NOAA-NMFS-2020-0031-DRAFT-36779
NOAA-NMFS-2020-0031-DRAFT-36780
NOAA-NMFS-2020-0031-DRAFT-36781
NOAA-NMFS-2020-0031-DRAFT-36782
NOAA-NMFS-2020-0031-DRAFT-36783
NOAA-NMFS-2020-0031-DRAFT-36784
NOAA-NMFS-2020-0031-DRAFT-36785
NOAA-NMFS-2020-0031-DRAFT-36786
NOAA-NMFS-2020-0031-DRAFT-36787
NOAA-NMFS-2020-0031-DRAFT-36788
NOAA-NMFS-2020-0031-DRAFT-36789
NOAA-NMFS-2020-0031-DRAFT-36790
NOAA-NMFS-2020-0031-DRAFT-36791
NOAA-NMFS-2020-0031-DRAFT-36792
NOAA-NMFS-2020-0031-DRAFT-36793
NOAA-NMFS-2020-0031-DRAFT-36794
NOAA-NMFS-2020-0031-DRAFT-36795
NOAA-NMFS-2020-0031-DRAFT-36796
NOAA-NMFS-2020-0031-DRAFT-36797
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NOAA-NMFS-2020-0031-DRAFT-36809
NOAA-NMFS-2020-0031-DRAFT-36810
NOAA-NMFS-2020-0031-DRAFT-36811

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NOAA-NMFS-2020-0031-DRAFT-31801
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NOAA-NMFS-2020-0031-DRAFT-31812
NOAA-NMFS-2020-0031-DRAFT-31813
NOAA-NMFS-2020-0031-DRAFT-31814
NOAA-NMFS-2020-0031-DRAFT-31815
NOAA-NMFS-2020-0031-DRAFT-31816
NOAA-NMFS-2020-0031-DRAFT-31817
NOAA-NMFS-2020-0031-DRAFT-31818
NOAA-NMFS-2020-0031-DRAFT-31819
NOAA-NMFS-2020-0031-DRAFT-31820
NOAA-NMFS-2020-0031-DRAFT-31821
NOAA-NMFS-2020-0031-DRAFT-31822
NOAA-NMFS-2020-0031-DRAFT-31823
NOAA-NMFS-2020-0031-DRAFT-31824
NOAA-NMFS-2020-0031-DRAFT-31825
NOAA-NMFS-2020-0031-DRAFT-31826
NOAA-NMFS-2020-0031-DRAFT-31827
NOAA-NMFS-2020-0031-DRAFT-31828
NOAA-NMFS-2020-0031-DRAFT-31829
NOAA-NMFS-2020-0031-DRAFT-31830
NOAA-NMFS-2020-0031-DRAFT-31831
NOAA-NMFS-2020-0031-DRAFT-31832
NOAA-NMFS-2020-0031-DRAFT-31833
NOAA-NMFS-2020-0031-DRAFT-31834
NOAA-NMFS-2020-0031-DRAFT-31835
NOAA-NMFS-2020-0031-DRAFT-31836
NOAA-NMFS-2020-0031-DRAFT-31837
NOAA-NMFS-2020-0031-DRAFT-31838
NOAA-NMFS-2020-0031-DRAFT-31839
NOAA-NMFS-2020-0031-DRAFT-31840
NOAA-NMFS-2020-0031-DRAFT-31841

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NOAA-NMFS-2020-0031-DRAFT-36812
NOAA-NMFS-2020-0031-DRAFT-36813
NOAA-NMFS-2020-0031-DRAFT-36814
NOAA-NMFS-2020-0031-DRAFT-36815
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NOAA-NMFS-2020-0031-DRAFT-36822
NOAA-NMFS-2020-0031-DRAFT-36823
NOAA-NMFS-2020-0031-DRAFT-36824
NOAA-NMFS-2020-0031-DRAFT-36825
NOAA-NMFS-2020-0031-DRAFT-36826
NOAA-NMFS-2020-0031-DRAFT-36827
NOAA-NMFS-2020-0031-DRAFT-36828
NOAA-NMFS-2020-0031-DRAFT-36829
NOAA-NMFS-2020-0031-DRAFT-36830
NOAA-NMFS-2020-0031-DRAFT-36831
NOAA-NMFS-2020-0031-DRAFT-36832
NOAA-NMFS-2020-0031-DRAFT-36833
NOAA-NMFS-2020-0031-DRAFT-36834
NOAA-NMFS-2020-0031-DRAFT-36835
NOAA-NMFS-2020-0031-DRAFT-36836
NOAA-NMFS-2020-0031-DRAFT-36837
NOAA-NMFS-2020-0031-DRAFT-36838
NOAA-NMFS-2020-0031-DRAFT-36839
NOAA-NMFS-2020-0031-DRAFT-36840
NOAA-NMFS-2020-0031-DRAFT-36841
NOAA-NMFS-2020-0031-DRAFT-36842
NOAA-NMFS-2020-0031-DRAFT-36843
NOAA-NMFS-2020-0031-DRAFT-36844
NOAA-NMFS-2020-0031-DRAFT-36845
NOAA-NMFS-2020-0031-DRAFT-36846
NOAA-NMFS-2020-0031-DRAFT-36847
NOAA-NMFS-2020-0031-DRAFT-36848
NOAA-NMFS-2020-0031-DRAFT-36849
NOAA-NMFS-2020-0031-DRAFT-36850
NOAA-NMFS-2020-0031-DRAFT-36851
NOAA-NMFS-2020-0031-DRAFT-36852

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NOAA-NMFS-2020-0031-DRAFT-31842
NOAA-NMFS-2020-0031-DRAFT-31843
NOAA-NMFS-2020-0031-DRAFT-31844
NOAA-NMFS-2020-0031-DRAFT-31845
NOAA-NMFS-2020-0031-DRAFT-31846
NOAA-NMFS-2020-0031-DRAFT-31847
NOAA-NMFS-2020-0031-DRAFT-31848
NOAA-NMFS-2020-0031-DRAFT-31849
NOAA-NMFS-2020-0031-DRAFT-31850
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NOAA-NMFS-2020-0031-DRAFT-31852
NOAA-NMFS-2020-0031-DRAFT-31853
NOAA-NMFS-2020-0031-DRAFT-31854
NOAA-NMFS-2020-0031-DRAFT-31855
NOAA-NMFS-2020-0031-DRAFT-31856
NOAA-NMFS-2020-0031-DRAFT-31857
NOAA-NMFS-2020-0031-DRAFT-31858
NOAA-NMFS-2020-0031-DRAFT-31859
NOAA-NMFS-2020-0031-DRAFT-31860
NOAA-NMFS-2020-0031-DRAFT-31861
NOAA-NMFS-2020-0031-DRAFT-31862
NOAA-NMFS-2020-0031-DRAFT-31863
NOAA-NMFS-2020-0031-DRAFT-31864
NOAA-NMFS-2020-0031-DRAFT-31865
NOAA-NMFS-2020-0031-DRAFT-31866
NOAA-NMFS-2020-0031-DRAFT-31867
NOAA-NMFS-2020-0031-DRAFT-31868
NOAA-NMFS-2020-0031-DRAFT-31869
NOAA-NMFS-2020-0031-DRAFT-31870
NOAA-NMFS-2020-0031-DRAFT-31871
NOAA-NMFS-2020-0031-DRAFT-31872
NOAA-NMFS-2020-0031-DRAFT-31873
NOAA-NMFS-2020-0031-DRAFT-31874
NOAA-NMFS-2020-0031-DRAFT-31875
NOAA-NMFS-2020-0031-DRAFT-31876
NOAA-NMFS-2020-0031-DRAFT-31877
NOAA-NMFS-2020-0031-DRAFT-31878
NOAA-NMFS-2020-0031-DRAFT-31879
NOAA-NMFS-2020-0031-DRAFT-31880
NOAA-NMFS-2020-0031-DRAFT-31881
NOAA-NMFS-2020-0031-DRAFT-31882

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NOAA-NMFS-2020-0031-DRAFT-36853
NOAA-NMFS-2020-0031-DRAFT-36854
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NOAA-NMFS-2020-0031-DRAFT-36866
NOAA-NMFS-2020-0031-DRAFT-36867
NOAA-NMFS-2020-0031-DRAFT-36868
NOAA-NMFS-2020-0031-DRAFT-36869
NOAA-NMFS-2020-0031-DRAFT-36870
NOAA-NMFS-2020-0031-DRAFT-36871
NOAA-NMFS-2020-0031-DRAFT-36872
NOAA-NMFS-2020-0031-DRAFT-36873
NOAA-NMFS-2020-0031-DRAFT-36874
NOAA-NMFS-2020-0031-DRAFT-36875
NOAA-NMFS-2020-0031-DRAFT-36876
NOAA-NMFS-2020-0031-DRAFT-36877
NOAA-NMFS-2020-0031-DRAFT-36878
NOAA-NMFS-2020-0031-DRAFT-36879
NOAA-NMFS-2020-0031-DRAFT-36880
NOAA-NMFS-2020-0031-DRAFT-36881
NOAA-NMFS-2020-0031-DRAFT-36882
NOAA-NMFS-2020-0031-DRAFT-36883
NOAA-NMFS-2020-0031-DRAFT-36884
NOAA-NMFS-2020-0031-DRAFT-36885
NOAA-NMFS-2020-0031-DRAFT-36886
NOAA-NMFS-2020-0031-DRAFT-36887
NOAA-NMFS-2020-0031-DRAFT-36888
NOAA-NMFS-2020-0031-DRAFT-36889
NOAA-NMFS-2020-0031-DRAFT-36890
NOAA-NMFS-2020-0031-DRAFT-36891
NOAA-NMFS-2020-0031-DRAFT-36892
NOAA-NMFS-2020-0031-DRAFT-36893

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NOAA-NMFS-2020-0031-DRAFT-31883
NOAA-NMFS-2020-0031-DRAFT-31884
NOAA-NMFS-2020-0031-DRAFT-31885
NOAA-NMFS-2020-0031-DRAFT-31886
NOAA-NMFS-2020-0031-DRAFT-31887
NOAA-NMFS-2020-0031-DRAFT-31888
NOAA-NMFS-2020-0031-DRAFT-31889
NOAA-NMFS-2020-0031-DRAFT-31890
NOAA-NMFS-2020-0031-DRAFT-31891
NOAA-NMFS-2020-0031-DRAFT-31892
NOAA-NMFS-2020-0031-DRAFT-31893
NOAA-NMFS-2020-0031-DRAFT-31894
NOAA-NMFS-2020-0031-DRAFT-31895
NOAA-NMFS-2020-0031-DRAFT-31896
NOAA-NMFS-2020-0031-DRAFT-31897
NOAA-NMFS-2020-0031-DRAFT-31898
NOAA-NMFS-2020-0031-DRAFT-31899
NOAA-NMFS-2020-0031-DRAFT-31900
NOAA-NMFS-2020-0031-DRAFT-31901
NOAA-NMFS-2020-0031-DRAFT-31902
NOAA-NMFS-2020-0031-DRAFT-31903
NOAA-NMFS-2020-0031-DRAFT-31904
NOAA-NMFS-2020-0031-DRAFT-31905
NOAA-NMFS-2020-0031-DRAFT-31906
NOAA-NMFS-2020-0031-DRAFT-31907
NOAA-NMFS-2020-0031-DRAFT-31908
NOAA-NMFS-2020-0031-DRAFT-31909
NOAA-NMFS-2020-0031-DRAFT-31910
NOAA-NMFS-2020-0031-DRAFT-31911
NOAA-NMFS-2020-0031-DRAFT-31912
NOAA-NMFS-2020-0031-DRAFT-31913
NOAA-NMFS-2020-0031-DRAFT-31914
NOAA-NMFS-2020-0031-DRAFT-31915
NOAA-NMFS-2020-0031-DRAFT-31916
NOAA-NMFS-2020-0031-DRAFT-31917
NOAA-NMFS-2020-0031-DRAFT-31918
NOAA-NMFS-2020-0031-DRAFT-31919
NOAA-NMFS-2020-0031-DRAFT-31920
NOAA-NMFS-2020-0031-DRAFT-31921
NOAA-NMFS-2020-0031-DRAFT-31922
NOAA-NMFS-2020-0031-DRAFT-31923

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NOAA-NMFS-2020-0031-DRAFT-36894
NOAA-NMFS-2020-0031-DRAFT-36895
NOAA-NMFS-2020-0031-DRAFT-36896
NOAA-NMFS-2020-0031-DRAFT-36897
NOAA-NMFS-2020-0031-DRAFT-36898
NOAA-NMFS-2020-0031-DRAFT-36899
NOAA-NMFS-2020-0031-DRAFT-36900
NOAA-NMFS-2020-0031-DRAFT-36901
NOAA-NMFS-2020-0031-DRAFT-36902
NOAA-NMFS-2020-0031-DRAFT-36903
NOAA-NMFS-2020-0031-DRAFT-36904
NOAA-NMFS-2020-0031-DRAFT-36905
NOAA-NMFS-2020-0031-DRAFT-36906
NOAA-NMFS-2020-0031-DRAFT-36907
NOAA-NMFS-2020-0031-DRAFT-36908
NOAA-NMFS-2020-0031-DRAFT-36909
NOAA-NMFS-2020-0031-DRAFT-36910
NOAA-NMFS-2020-0031-DRAFT-36911
NOAA-NMFS-2020-0031-DRAFT-36912
NOAA-NMFS-2020-0031-DRAFT-36913
NOAA-NMFS-2020-0031-DRAFT-36914
NOAA-NMFS-2020-0031-DRAFT-36915
NOAA-NMFS-2020-0031-DRAFT-36916
NOAA-NMFS-2020-0031-DRAFT-36917
NOAA-NMFS-2020-0031-DRAFT-36918
NOAA-NMFS-2020-0031-DRAFT-36919
NOAA-NMFS-2020-0031-DRAFT-36920
NOAA-NMFS-2020-0031-DRAFT-36921
NOAA-NMFS-2020-0031-DRAFT-36922
NOAA-NMFS-2020-0031-DRAFT-36923
NOAA-NMFS-2020-0031-DRAFT-36924
NOAA-NMFS-2020-0031-DRAFT-36925
NOAA-NMFS-2020-0031-DRAFT-36926
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NOAA-NMFS-2020-0031-DRAFT-36928
NOAA-NMFS-2020-0031-DRAFT-36929
NOAA-NMFS-2020-0031-DRAFT-36930
NOAA-NMFS-2020-0031-DRAFT-36931
NOAA-NMFS-2020-0031-DRAFT-36932
NOAA-NMFS-2020-0031-DRAFT-36933
NOAA-NMFS-2020-0031-DRAFT-36934

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NOAA-NMFS-2020-0031-DRAFT-31924
NOAA-NMFS-2020-0031-DRAFT-31925
NOAA-NMFS-2020-0031-DRAFT-31926
NOAA-NMFS-2020-0031-DRAFT-31927
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NOAA-NMFS-2020-0031-DRAFT-31929
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NOAA-NMFS-2020-0031-DRAFT-31931
NOAA-NMFS-2020-0031-DRAFT-31932
NOAA-NMFS-2020-0031-DRAFT-31933
NOAA-NMFS-2020-0031-DRAFT-31934
NOAA-NMFS-2020-0031-DRAFT-31935
NOAA-NMFS-2020-0031-DRAFT-31936
NOAA-NMFS-2020-0031-DRAFT-31937
NOAA-NMFS-2020-0031-DRAFT-31938
NOAA-NMFS-2020-0031-DRAFT-31939
NOAA-NMFS-2020-0031-DRAFT-31940
NOAA-NMFS-2020-0031-DRAFT-31941
NOAA-NMFS-2020-0031-DRAFT-31942
NOAA-NMFS-2020-0031-DRAFT-31943
NOAA-NMFS-2020-0031-DRAFT-31944
NOAA-NMFS-2020-0031-DRAFT-31945
NOAA-NMFS-2020-0031-DRAFT-31946
NOAA-NMFS-2020-0031-DRAFT-31947
NOAA-NMFS-2020-0031-DRAFT-31948
NOAA-NMFS-2020-0031-DRAFT-31949
NOAA-NMFS-2020-0031-DRAFT-31950
NOAA-NMFS-2020-0031-DRAFT-31951
NOAA-NMFS-2020-0031-DRAFT-31952
NOAA-NMFS-2020-0031-DRAFT-31953
NOAA-NMFS-2020-0031-DRAFT-31954
NOAA-NMFS-2020-0031-DRAFT-31955
NOAA-NMFS-2020-0031-DRAFT-31956
NOAA-NMFS-2020-0031-DRAFT-31957
NOAA-NMFS-2020-0031-DRAFT-31958
NOAA-NMFS-2020-0031-DRAFT-31959
NOAA-NMFS-2020-0031-DRAFT-31960
NOAA-NMFS-2020-0031-DRAFT-31961
NOAA-NMFS-2020-0031-DRAFT-31962
NOAA-NMFS-2020-0031-DRAFT-31963
NOAA-NMFS-2020-0031-DRAFT-31964

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NOAA-NMFS-2020-0031-DRAFT-36935
NOAA-NMFS-2020-0031-DRAFT-36936
NOAA-NMFS-2020-0031-DRAFT-36937
NOAA-NMFS-2020-0031-DRAFT-36938
NOAA-NMFS-2020-0031-DRAFT-36939
NOAA-NMFS-2020-0031-DRAFT-36940
NOAA-NMFS-2020-0031-DRAFT-36941
NOAA-NMFS-2020-0031-DRAFT-36942
NOAA-NMFS-2020-0031-DRAFT-36943
NOAA-NMFS-2020-0031-DRAFT-36944
NOAA-NMFS-2020-0031-DRAFT-36945
NOAA-NMFS-2020-0031-DRAFT-36946
NOAA-NMFS-2020-0031-DRAFT-36947
NOAA-NMFS-2020-0031-DRAFT-36948
NOAA-NMFS-2020-0031-DRAFT-36949
NOAA-NMFS-2020-0031-DRAFT-36950
NOAA-NMFS-2020-0031-DRAFT-36951
NOAA-NMFS-2020-0031-DRAFT-36952
NOAA-NMFS-2020-0031-DRAFT-36953
NOAA-NMFS-2020-0031-DRAFT-36954
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NOAA-NMFS-2020-0031-DRAFT-36956
NOAA-NMFS-2020-0031-DRAFT-36957
NOAA-NMFS-2020-0031-DRAFT-36958
NOAA-NMFS-2020-0031-DRAFT-36959
NOAA-NMFS-2020-0031-DRAFT-36960
NOAA-NMFS-2020-0031-DRAFT-36961
NOAA-NMFS-2020-0031-DRAFT-36962
NOAA-NMFS-2020-0031-DRAFT-36963
NOAA-NMFS-2020-0031-DRAFT-36964
NOAA-NMFS-2020-0031-DRAFT-36965
NOAA-NMFS-2020-0031-DRAFT-36966
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NOAA-NMFS-2020-0031-DRAFT-36973
NOAA-NMFS-2020-0031-DRAFT-36974
NOAA-NMFS-2020-0031-DRAFT-36975

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NOAA-NMFS-2020-0031-DRAFT-31965
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NOAA-NMFS-2020-0031-DRAFT-31989
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NOAA-NMFS-2020-0031-DRAFT-31997
NOAA-NMFS-2020-0031-DRAFT-31998
NOAA-NMFS-2020-0031-DRAFT-31999
NOAA-NMFS-2020-0031-DRAFT-32000
NOAA-NMFS-2020-0031-DRAFT-32001
NOAA-NMFS-2020-0031-DRAFT-32002
NOAA-NMFS-2020-0031-DRAFT-32003
NOAA-NMFS-2020-0031-DRAFT-32004
NOAA-NMFS-2020-0031-DRAFT-32005

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NOAA-NMFS-2020-0031-DRAFT-36976
NOAA-NMFS-2020-0031-DRAFT-36977
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NOAA-NMFS-2020-0031-DRAFT-36991
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NOAA-NMFS-2020-0031-DRAFT-36994
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NOAA-NMFS-2020-0031-DRAFT-36996
NOAA-NMFS-2020-0031-DRAFT-36997
NOAA-NMFS-2020-0031-DRAFT-36998
NOAA-NMFS-2020-0031-DRAFT-36999
NOAA-NMFS-2020-0031-DRAFT-37000
NOAA-NMFS-2020-0031-DRAFT-37001
NOAA-NMFS-2020-0031-DRAFT-37002
NOAA-NMFS-2020-0031-DRAFT-37003
NOAA-NMFS-2020-0031-DRAFT-37004
NOAA-NMFS-2020-0031-DRAFT-37005
NOAA-NMFS-2020-0031-DRAFT-37006
NOAA-NMFS-2020-0031-DRAFT-37007
NOAA-NMFS-2020-0031-DRAFT-37008
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NOAA-NMFS-2020-0031-DRAFT-37010
NOAA-NMFS-2020-0031-DRAFT-37011
NOAA-NMFS-2020-0031-DRAFT-37012
NOAA-NMFS-2020-0031-DRAFT-37013
NOAA-NMFS-2020-0031-DRAFT-37014
NOAA-NMFS-2020-0031-DRAFT-37016
NOAA-NMFS-2020-0031-DRAFT-37017

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NOAA-NMFS-2020-0031-DRAFT-32006
NOAA-NMFS-2020-0031-DRAFT-32007
NOAA-NMFS-2020-0031-DRAFT-32008
NOAA-NMFS-2020-0031-DRAFT-32009
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NOAA-NMFS-2020-0031-DRAFT-32013
NOAA-NMFS-2020-0031-DRAFT-32014
NOAA-NMFS-2020-0031-DRAFT-32015
NOAA-NMFS-2020-0031-DRAFT-32016
NOAA-NMFS-2020-0031-DRAFT-32017
NOAA-NMFS-2020-0031-DRAFT-32018
NOAA-NMFS-2020-0031-DRAFT-32019
NOAA-NMFS-2020-0031-DRAFT-32020
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NOAA-NMFS-2020-0031-DRAFT-32045
NOAA-NMFS-2020-0031-DRAFT-32046

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NOAA-NMFS-2020-0031-DRAFT-37018
NOAA-NMFS-2020-0031-DRAFT-37019
NOAA-NMFS-2020-0031-DRAFT-37020
NOAA-NMFS-2020-0031-DRAFT-37021
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NOAA-NMFS-2020-0031-DRAFT-37028
NOAA-NMFS-2020-0031-DRAFT-37029
NOAA-NMFS-2020-0031-DRAFT-37030
NOAA-NMFS-2020-0031-DRAFT-37031
NOAA-NMFS-2020-0031-DRAFT-37032
NOAA-NMFS-2020-0031-DRAFT-37033
NOAA-NMFS-2020-0031-DRAFT-37034
NOAA-NMFS-2020-0031-DRAFT-37035
NOAA-NMFS-2020-0031-DRAFT-37036
NOAA-NMFS-2020-0031-DRAFT-37037
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NOAA-NMFS-2020-0031-DRAFT-37039
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NOAA-NMFS-2020-0031-DRAFT-37042
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NOAA-NMFS-2020-0031-DRAFT-37044
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NOAA-NMFS-2020-0031-DRAFT-37053
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NOAA-NMFS-2020-0031-DRAFT-37055
NOAA-NMFS-2020-0031-DRAFT-37056
NOAA-NMFS-2020-0031-DRAFT-37057
NOAA-NMFS-2020-0031-DRAFT-37058

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NOAA-NMFS-2020-0031-DRAFT-32047
NOAA-NMFS-2020-0031-DRAFT-32048
NOAA-NMFS-2020-0031-DRAFT-32049
NOAA-NMFS-2020-0031-DRAFT-32050
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NOAA-NMFS-2020-0031-DRAFT-32055
NOAA-NMFS-2020-0031-DRAFT-32056
NOAA-NMFS-2020-0031-DRAFT-32057
NOAA-NMFS-2020-0031-DRAFT-32058
NOAA-NMFS-2020-0031-DRAFT-32059
NOAA-NMFS-2020-0031-DRAFT-32060
NOAA-NMFS-2020-0031-DRAFT-32061
NOAA-NMFS-2020-0031-DRAFT-32062
NOAA-NMFS-2020-0031-DRAFT-32063
NOAA-NMFS-2020-0031-DRAFT-32064
NOAA-NMFS-2020-0031-DRAFT-32065
NOAA-NMFS-2020-0031-DRAFT-32066
NOAA-NMFS-2020-0031-DRAFT-32067
NOAA-NMFS-2020-0031-DRAFT-32068
NOAA-NMFS-2020-0031-DRAFT-32069
NOAA-NMFS-2020-0031-DRAFT-32070
NOAA-NMFS-2020-0031-DRAFT-32071
NOAA-NMFS-2020-0031-DRAFT-32072
NOAA-NMFS-2020-0031-DRAFT-32073
NOAA-NMFS-2020-0031-DRAFT-32074
NOAA-NMFS-2020-0031-DRAFT-32075
NOAA-NMFS-2020-0031-DRAFT-32076
NOAA-NMFS-2020-0031-DRAFT-32077
NOAA-NMFS-2020-0031-DRAFT-32078
NOAA-NMFS-2020-0031-DRAFT-32079
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NOAA-NMFS-2020-0031-DRAFT-32081
NOAA-NMFS-2020-0031-DRAFT-32082
NOAA-NMFS-2020-0031-DRAFT-32083
NOAA-NMFS-2020-0031-DRAFT-32084
NOAA-NMFS-2020-0031-DRAFT-32085
NOAA-NMFS-2020-0031-DRAFT-32086
NOAA-NMFS-2020-0031-DRAFT-32087

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NOAA-NMFS-2020-0031-DRAFT-37059
NOAA-NMFS-2020-0031-DRAFT-37060
NOAA-NMFS-2020-0031-DRAFT-37061
NOAA-NMFS-2020-0031-DRAFT-37062
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NOAA-NMFS-2020-0031-DRAFT-37069
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NOAA-NMFS-2020-0031-DRAFT-37071
NOAA-NMFS-2020-0031-DRAFT-37072
NOAA-NMFS-2020-0031-DRAFT-37073
NOAA-NMFS-2020-0031-DRAFT-37074
NOAA-NMFS-2020-0031-DRAFT-37075
NOAA-NMFS-2020-0031-DRAFT-37076
NOAA-NMFS-2020-0031-DRAFT-37077
NOAA-NMFS-2020-0031-DRAFT-37078
NOAA-NMFS-2020-0031-DRAFT-37079
NOAA-NMFS-2020-0031-DRAFT-37080
NOAA-NMFS-2020-0031-DRAFT-37081
NOAA-NMFS-2020-0031-DRAFT-37082
NOAA-NMFS-2020-0031-DRAFT-37083
NOAA-NMFS-2020-0031-DRAFT-37084
NOAA-NMFS-2020-0031-DRAFT-37085
NOAA-NMFS-2020-0031-DRAFT-37086
NOAA-NMFS-2020-0031-DRAFT-37087
NOAA-NMFS-2020-0031-DRAFT-37088
NOAA-NMFS-2020-0031-DRAFT-37089
NOAA-NMFS-2020-0031-DRAFT-37090
NOAA-NMFS-2020-0031-DRAFT-37091
NOAA-NMFS-2020-0031-DRAFT-37092
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NOAA-NMFS-2020-0031-DRAFT-37094
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NOAA-NMFS-2020-0031-DRAFT-37096
NOAA-NMFS-2020-0031-DRAFT-37097
NOAA-NMFS-2020-0031-DRAFT-37098
NOAA-NMFS-2020-0031-DRAFT-37099

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NOAA-NMFS-2020-0031-DRAFT-32088
NOAA-NMFS-2020-0031-DRAFT-32089
NOAA-NMFS-2020-0031-DRAFT-32090
NOAA-NMFS-2020-0031-DRAFT-32091
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NOAA-NMFS-2020-0031-DRAFT-32094
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NOAA-NMFS-2020-0031-DRAFT-32096
NOAA-NMFS-2020-0031-DRAFT-32097
NOAA-NMFS-2020-0031-DRAFT-32098
NOAA-NMFS-2020-0031-DRAFT-32099
NOAA-NMFS-2020-0031-DRAFT-32100
NOAA-NMFS-2020-0031-DRAFT-32101
NOAA-NMFS-2020-0031-DRAFT-32102
NOAA-NMFS-2020-0031-DRAFT-32103
NOAA-NMFS-2020-0031-DRAFT-32104
NOAA-NMFS-2020-0031-DRAFT-32105
NOAA-NMFS-2020-0031-DRAFT-32106
NOAA-NMFS-2020-0031-DRAFT-32107
NOAA-NMFS-2020-0031-DRAFT-32108
NOAA-NMFS-2020-0031-DRAFT-32109
NOAA-NMFS-2020-0031-DRAFT-32110
NOAA-NMFS-2020-0031-DRAFT-32111
NOAA-NMFS-2020-0031-DRAFT-32112
NOAA-NMFS-2020-0031-DRAFT-32113
NOAA-NMFS-2020-0031-DRAFT-32114
NOAA-NMFS-2020-0031-DRAFT-32115
NOAA-NMFS-2020-0031-DRAFT-32116
NOAA-NMFS-2020-0031-DRAFT-32117
NOAA-NMFS-2020-0031-DRAFT-32118
NOAA-NMFS-2020-0031-DRAFT-32119
NOAA-NMFS-2020-0031-DRAFT-32120
NOAA-NMFS-2020-0031-DRAFT-32121
NOAA-NMFS-2020-0031-DRAFT-32122
NOAA-NMFS-2020-0031-DRAFT-32123
NOAA-NMFS-2020-0031-DRAFT-32124
NOAA-NMFS-2020-0031-DRAFT-32125
NOAA-NMFS-2020-0031-DRAFT-32126
NOAA-NMFS-2020-0031-DRAFT-32127
NOAA-NMFS-2020-0031-DRAFT-32128

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NOAA-NMFS-2020-0031-DRAFT-37100
NOAA-NMFS-2020-0031-DRAFT-37101
NOAA-NMFS-2020-0031-DRAFT-37102
NOAA-NMFS-2020-0031-DRAFT-37103
NOAA-NMFS-2020-0031-DRAFT-37104
NOAA-NMFS-2020-0031-DRAFT-37105
NOAA-NMFS-2020-0031-DRAFT-37106
NOAA-NMFS-2020-0031-DRAFT-37107
NOAA-NMFS-2020-0031-DRAFT-37108
NOAA-NMFS-2020-0031-DRAFT-37109
NOAA-NMFS-2020-0031-DRAFT-37110
NOAA-NMFS-2020-0031-DRAFT-37111
NOAA-NMFS-2020-0031-DRAFT-37112
NOAA-NMFS-2020-0031-DRAFT-37113
NOAA-NMFS-2020-0031-DRAFT-37114
NOAA-NMFS-2020-0031-DRAFT-37115
NOAA-NMFS-2020-0031-DRAFT-37116
NOAA-NMFS-2020-0031-DRAFT-37117
NOAA-NMFS-2020-0031-DRAFT-37118
NOAA-NMFS-2020-0031-DRAFT-37119
NOAA-NMFS-2020-0031-DRAFT-37120
NOAA-NMFS-2020-0031-DRAFT-37121
NOAA-NMFS-2020-0031-DRAFT-37122
NOAA-NMFS-2020-0031-DRAFT-37123
NOAA-NMFS-2020-0031-DRAFT-37124
NOAA-NMFS-2020-0031-DRAFT-37125
NOAA-NMFS-2020-0031-DRAFT-37126
NOAA-NMFS-2020-0031-DRAFT-37127
NOAA-NMFS-2020-0031-DRAFT-37128
NOAA-NMFS-2020-0031-DRAFT-37129
NOAA-NMFS-2020-0031-DRAFT-37130
NOAA-NMFS-2020-0031-DRAFT-37131
NOAA-NMFS-2020-0031-DRAFT-37132
NOAA-NMFS-2020-0031-DRAFT-37133
NOAA-NMFS-2020-0031-DRAFT-37134
NOAA-NMFS-2020-0031-DRAFT-37135
NOAA-NMFS-2020-0031-DRAFT-37136
NOAA-NMFS-2020-0031-DRAFT-37137
NOAA-NMFS-2020-0031-DRAFT-37138
NOAA-NMFS-2020-0031-DRAFT-37139
NOAA-NMFS-2020-0031-DRAFT-37140

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NOAA-NMFS-2020-0031-DRAFT-32129
NOAA-NMFS-2020-0031-DRAFT-32130
NOAA-NMFS-2020-0031-DRAFT-32131
NOAA-NMFS-2020-0031-DRAFT-32132
NOAA-NMFS-2020-0031-DRAFT-32133
NOAA-NMFS-2020-0031-DRAFT-32134
NOAA-NMFS-2020-0031-DRAFT-32135
NOAA-NMFS-2020-0031-DRAFT-32136
NOAA-NMFS-2020-0031-DRAFT-32137
NOAA-NMFS-2020-0031-DRAFT-32138
NOAA-NMFS-2020-0031-DRAFT-32139
NOAA-NMFS-2020-0031-DRAFT-32140
NOAA-NMFS-2020-0031-DRAFT-32141
NOAA-NMFS-2020-0031-DRAFT-32142
NOAA-NMFS-2020-0031-DRAFT-32143
NOAA-NMFS-2020-0031-DRAFT-32144
NOAA-NMFS-2020-0031-DRAFT-32145
NOAA-NMFS-2020-0031-DRAFT-32146
NOAA-NMFS-2020-0031-DRAFT-32147
NOAA-NMFS-2020-0031-DRAFT-32148
NOAA-NMFS-2020-0031-DRAFT-32149
NOAA-NMFS-2020-0031-DRAFT-32150
NOAA-NMFS-2020-0031-DRAFT-32151
NOAA-NMFS-2020-0031-DRAFT-32152
NOAA-NMFS-2020-0031-DRAFT-32153
NOAA-NMFS-2020-0031-DRAFT-32154
NOAA-NMFS-2020-0031-DRAFT-32155
NOAA-NMFS-2020-0031-DRAFT-32156
NOAA-NMFS-2020-0031-DRAFT-32157
NOAA-NMFS-2020-0031-DRAFT-32158
NOAA-NMFS-2020-0031-DRAFT-32159
NOAA-NMFS-2020-0031-DRAFT-32160
NOAA-NMFS-2020-0031-DRAFT-32161
NOAA-NMFS-2020-0031-DRAFT-32162
NOAA-NMFS-2020-0031-DRAFT-32163
NOAA-NMFS-2020-0031-DRAFT-32164
NOAA-NMFS-2020-0031-DRAFT-32165
NOAA-NMFS-2020-0031-DRAFT-32166
NOAA-NMFS-2020-0031-DRAFT-32167
NOAA-NMFS-2020-0031-DRAFT-32168
NOAA-NMFS-2020-0031-DRAFT-32169

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NOAA-NMFS-2020-0031-DRAFT-37141
NOAA-NMFS-2020-0031-DRAFT-37142
NOAA-NMFS-2020-0031-DRAFT-37143
NOAA-NMFS-2020-0031-DRAFT-37144
NOAA-NMFS-2020-0031-DRAFT-37145
NOAA-NMFS-2020-0031-DRAFT-37146
NOAA-NMFS-2020-0031-DRAFT-37147
NOAA-NMFS-2020-0031-DRAFT-37148
NOAA-NMFS-2020-0031-DRAFT-37149
NOAA-NMFS-2020-0031-DRAFT-37150
NOAA-NMFS-2020-0031-DRAFT-37151
NOAA-NMFS-2020-0031-DRAFT-37152
NOAA-NMFS-2020-0031-DRAFT-37153
NOAA-NMFS-2020-0031-DRAFT-37154
NOAA-NMFS-2020-0031-DRAFT-37155
NOAA-NMFS-2020-0031-DRAFT-37156
NOAA-NMFS-2020-0031-DRAFT-37157
NOAA-NMFS-2020-0031-DRAFT-37158
NOAA-NMFS-2020-0031-DRAFT-37159
NOAA-NMFS-2020-0031-DRAFT-37160
NOAA-NMFS-2020-0031-DRAFT-37161
NOAA-NMFS-2020-0031-DRAFT-37162
NOAA-NMFS-2020-0031-DRAFT-37163
NOAA-NMFS-2020-0031-DRAFT-37164
NOAA-NMFS-2020-0031-DRAFT-37165
NOAA-NMFS-2020-0031-DRAFT-37166
NOAA-NMFS-2020-0031-DRAFT-37167
NOAA-NMFS-2020-0031-DRAFT-37168
NOAA-NMFS-2020-0031-DRAFT-37169
NOAA-NMFS-2020-0031-DRAFT-37170
NOAA-NMFS-2020-0031-DRAFT-37171
NOAA-NMFS-2020-0031-DRAFT-37172
NOAA-NMFS-2020-0031-DRAFT-37173
NOAA-NMFS-2020-0031-DRAFT-37174
NOAA-NMFS-2020-0031-DRAFT-37175
NOAA-NMFS-2020-0031-DRAFT-37176
NOAA-NMFS-2020-0031-DRAFT-37177
NOAA-NMFS-2020-0031-DRAFT-37178
NOAA-NMFS-2020-0031-DRAFT-37179
NOAA-NMFS-2020-0031-DRAFT-37180
NOAA-NMFS-2020-0031-DRAFT-37181

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NOAA-NMFS-2020-0031-DRAFT-32170
NOAA-NMFS-2020-0031-DRAFT-32171
NOAA-NMFS-2020-0031-DRAFT-32172
NOAA-NMFS-2020-0031-DRAFT-32173
NOAA-NMFS-2020-0031-DRAFT-32174
NOAA-NMFS-2020-0031-DRAFT-32175
NOAA-NMFS-2020-0031-DRAFT-32176
NOAA-NMFS-2020-0031-DRAFT-32177
NOAA-NMFS-2020-0031-DRAFT-32178
NOAA-NMFS-2020-0031-DRAFT-32179
NOAA-NMFS-2020-0031-DRAFT-32180
NOAA-NMFS-2020-0031-DRAFT-32181
NOAA-NMFS-2020-0031-DRAFT-32182
NOAA-NMFS-2020-0031-DRAFT-32183
NOAA-NMFS-2020-0031-DRAFT-32184
NOAA-NMFS-2020-0031-DRAFT-32185
NOAA-NMFS-2020-0031-DRAFT-32186
NOAA-NMFS-2020-0031-DRAFT-32187
NOAA-NMFS-2020-0031-DRAFT-32188
NOAA-NMFS-2020-0031-DRAFT-32189
NOAA-NMFS-2020-0031-DRAFT-32190
NOAA-NMFS-2020-0031-DRAFT-32191
NOAA-NMFS-2020-0031-DRAFT-32192
NOAA-NMFS-2020-0031-DRAFT-32193
NOAA-NMFS-2020-0031-DRAFT-32194
NOAA-NMFS-2020-0031-DRAFT-32195
NOAA-NMFS-2020-0031-DRAFT-32196
NOAA-NMFS-2020-0031-DRAFT-32197
NOAA-NMFS-2020-0031-DRAFT-32198
NOAA-NMFS-2020-0031-DRAFT-32199
NOAA-NMFS-2020-0031-DRAFT-32200
NOAA-NMFS-2020-0031-DRAFT-32201
NOAA-NMFS-2020-0031-DRAFT-32202
NOAA-NMFS-2020-0031-DRAFT-32203
NOAA-NMFS-2020-0031-DRAFT-32204
NOAA-NMFS-2020-0031-DRAFT-32205
NOAA-NMFS-2020-0031-DRAFT-32206
NOAA-NMFS-2020-0031-DRAFT-32207
NOAA-NMFS-2020-0031-DRAFT-32208
NOAA-NMFS-2020-0031-DRAFT-32209
NOAA-NMFS-2020-0031-DRAFT-32210

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NOAA-NMFS-2020-0031-DRAFT-37182
NOAA-NMFS-2020-0031-DRAFT-37183
NOAA-NMFS-2020-0031-DRAFT-37184
NOAA-NMFS-2020-0031-DRAFT-37185
NOAA-NMFS-2020-0031-DRAFT-37186
NOAA-NMFS-2020-0031-DRAFT-37187
NOAA-NMFS-2020-0031-DRAFT-37188
NOAA-NMFS-2020-0031-DRAFT-37189
NOAA-NMFS-2020-0031-DRAFT-37190
NOAA-NMFS-2020-0031-DRAFT-37191
NOAA-NMFS-2020-0031-DRAFT-37192
NOAA-NMFS-2020-0031-DRAFT-37193
NOAA-NMFS-2020-0031-DRAFT-37194
NOAA-NMFS-2020-0031-DRAFT-37195
NOAA-NMFS-2020-0031-DRAFT-37196
NOAA-NMFS-2020-0031-DRAFT-37197
NOAA-NMFS-2020-0031-DRAFT-37198
NOAA-NMFS-2020-0031-DRAFT-37199
NOAA-NMFS-2020-0031-DRAFT-37200
NOAA-NMFS-2020-0031-DRAFT-37201
NOAA-NMFS-2020-0031-DRAFT-37202
NOAA-NMFS-2020-0031-DRAFT-37203
NOAA-NMFS-2020-0031-DRAFT-37204
NOAA-NMFS-2020-0031-DRAFT-37205
NOAA-NMFS-2020-0031-DRAFT-37206
NOAA-NMFS-2020-0031-DRAFT-37207
NOAA-NMFS-2020-0031-DRAFT-37208
NOAA-NMFS-2020-0031-DRAFT-37209
NOAA-NMFS-2020-0031-DRAFT-37210
NOAA-NMFS-2020-0031-DRAFT-37211
NOAA-NMFS-2020-0031-DRAFT-37212
NOAA-NMFS-2020-0031-DRAFT-37213
NOAA-NMFS-2020-0031-DRAFT-37214
NOAA-NMFS-2020-0031-DRAFT-37215
NOAA-NMFS-2020-0031-DRAFT-37216
NOAA-NMFS-2020-0031-DRAFT-37217
NOAA-NMFS-2020-0031-DRAFT-37218
NOAA-NMFS-2020-0031-DRAFT-37219
NOAA-NMFS-2020-0031-DRAFT-37220
NOAA-NMFS-2020-0031-DRAFT-37221
NOAA-NMFS-2020-0031-DRAFT-37222

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NOAA-NMFS-2020-0031-DRAFT-32211
NOAA-NMFS-2020-0031-DRAFT-32212
NOAA-NMFS-2020-0031-DRAFT-32213
NOAA-NMFS-2020-0031-DRAFT-32214
NOAA-NMFS-2020-0031-DRAFT-32215
NOAA-NMFS-2020-0031-DRAFT-32216
NOAA-NMFS-2020-0031-DRAFT-32217
NOAA-NMFS-2020-0031-DRAFT-32218
NOAA-NMFS-2020-0031-DRAFT-32219
NOAA-NMFS-2020-0031-DRAFT-32220
NOAA-NMFS-2020-0031-DRAFT-32221
NOAA-NMFS-2020-0031-DRAFT-32222
NOAA-NMFS-2020-0031-DRAFT-32223
NOAA-NMFS-2020-0031-DRAFT-32224
NOAA-NMFS-2020-0031-DRAFT-32225
NOAA-NMFS-2020-0031-DRAFT-32226
NOAA-NMFS-2020-0031-DRAFT-32227
NOAA-NMFS-2020-0031-DRAFT-32228
NOAA-NMFS-2020-0031-DRAFT-32229
NOAA-NMFS-2020-0031-DRAFT-32230
NOAA-NMFS-2020-0031-DRAFT-32231
NOAA-NMFS-2020-0031-DRAFT-32232
NOAA-NMFS-2020-0031-DRAFT-32233
NOAA-NMFS-2020-0031-DRAFT-32234
NOAA-NMFS-2020-0031-DRAFT-32235
NOAA-NMFS-2020-0031-DRAFT-32236
NOAA-NMFS-2020-0031-DRAFT-32237
NOAA-NMFS-2020-0031-DRAFT-32238
NOAA-NMFS-2020-0031-DRAFT-32239
NOAA-NMFS-2020-0031-DRAFT-32240
NOAA-NMFS-2020-0031-DRAFT-32241
NOAA-NMFS-2020-0031-DRAFT-32242
NOAA-NMFS-2020-0031-DRAFT-32243
NOAA-NMFS-2020-0031-DRAFT-32244
NOAA-NMFS-2020-0031-DRAFT-32245
NOAA-NMFS-2020-0031-DRAFT-32246
NOAA-NMFS-2020-0031-DRAFT-32247
NOAA-NMFS-2020-0031-DRAFT-32248
NOAA-NMFS-2020-0031-DRAFT-32249
NOAA-NMFS-2020-0031-DRAFT-32250
NOAA-NMFS-2020-0031-DRAFT-32251

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NOAA-NMFS-2020-0031-DRAFT-37223
NOAA-NMFS-2020-0031-DRAFT-37224
NOAA-NMFS-2020-0031-DRAFT-37225
NOAA-NMFS-2020-0031-DRAFT-37226
NOAA-NMFS-2020-0031-DRAFT-37227
NOAA-NMFS-2020-0031-DRAFT-37228
NOAA-NMFS-2020-0031-DRAFT-37229
NOAA-NMFS-2020-0031-DRAFT-37230
NOAA-NMFS-2020-0031-DRAFT-37231
NOAA-NMFS-2020-0031-DRAFT-37232
NOAA-NMFS-2020-0031-DRAFT-37233
NOAA-NMFS-2020-0031-DRAFT-37234
NOAA-NMFS-2020-0031-DRAFT-37235
NOAA-NMFS-2020-0031-DRAFT-37236
NOAA-NMFS-2020-0031-DRAFT-37237
NOAA-NMFS-2020-0031-DRAFT-37238
NOAA-NMFS-2020-0031-DRAFT-37239
NOAA-NMFS-2020-0031-DRAFT-37240
NOAA-NMFS-2020-0031-DRAFT-37241
NOAA-NMFS-2020-0031-DRAFT-37242
NOAA-NMFS-2020-0031-DRAFT-37243
NOAA-NMFS-2020-0031-DRAFT-37244
NOAA-NMFS-2020-0031-DRAFT-37245
NOAA-NMFS-2020-0031-DRAFT-37246
NOAA-NMFS-2020-0031-DRAFT-37247
NOAA-NMFS-2020-0031-DRAFT-37248
NOAA-NMFS-2020-0031-DRAFT-37249
NOAA-NMFS-2020-0031-DRAFT-37250
NOAA-NMFS-2020-0031-DRAFT-37251
NOAA-NMFS-2020-0031-DRAFT-37252
NOAA-NMFS-2020-0031-DRAFT-37253
NOAA-NMFS-2020-0031-DRAFT-37254
NOAA-NMFS-2020-0031-DRAFT-37255
NOAA-NMFS-2020-0031-DRAFT-37256
NOAA-NMFS-2020-0031-DRAFT-37257
NOAA-NMFS-2020-0031-DRAFT-37258
NOAA-NMFS-2020-0031-DRAFT-37259
NOAA-NMFS-2020-0031-DRAFT-37260
NOAA-NMFS-2020-0031-DRAFT-37261
NOAA-NMFS-2020-0031-DRAFT-37262
NOAA-NMFS-2020-0031-DRAFT-37263

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NOAA-NMFS-2020-0031-DRAFT-32252
NOAA-NMFS-2020-0031-DRAFT-32253
NOAA-NMFS-2020-0031-DRAFT-32254
NOAA-NMFS-2020-0031-DRAFT-32255
NOAA-NMFS-2020-0031-DRAFT-32256
NOAA-NMFS-2020-0031-DRAFT-32257
NOAA-NMFS-2020-0031-DRAFT-32258
NOAA-NMFS-2020-0031-DRAFT-32259
NOAA-NMFS-2020-0031-DRAFT-32260
NOAA-NMFS-2020-0031-DRAFT-32261
NOAA-NMFS-2020-0031-DRAFT-32262
NOAA-NMFS-2020-0031-DRAFT-32263
NOAA-NMFS-2020-0031-DRAFT-32264
NOAA-NMFS-2020-0031-DRAFT-32265
NOAA-NMFS-2020-0031-DRAFT-32266
NOAA-NMFS-2020-0031-DRAFT-32267
NOAA-NMFS-2020-0031-DRAFT-32268
NOAA-NMFS-2020-0031-DRAFT-32269
NOAA-NMFS-2020-0031-DRAFT-32270
NOAA-NMFS-2020-0031-DRAFT-32271
NOAA-NMFS-2020-0031-DRAFT-32272
NOAA-NMFS-2020-0031-DRAFT-32273
NOAA-NMFS-2020-0031-DRAFT-32274
NOAA-NMFS-2020-0031-DRAFT-32275
NOAA-NMFS-2020-0031-DRAFT-32276
NOAA-NMFS-2020-0031-DRAFT-32277
NOAA-NMFS-2020-0031-DRAFT-32278
NOAA-NMFS-2020-0031-DRAFT-32279
NOAA-NMFS-2020-0031-DRAFT-32280
NOAA-NMFS-2020-0031-DRAFT-32281
NOAA-NMFS-2020-0031-DRAFT-32282
NOAA-NMFS-2020-0031-DRAFT-32283
NOAA-NMFS-2020-0031-DRAFT-32284
NOAA-NMFS-2020-0031-DRAFT-32285
NOAA-NMFS-2020-0031-DRAFT-32286
NOAA-NMFS-2020-0031-DRAFT-32287
NOAA-NMFS-2020-0031-DRAFT-32288
NOAA-NMFS-2020-0031-DRAFT-32289
NOAA-NMFS-2020-0031-DRAFT-32290
NOAA-NMFS-2020-0031-DRAFT-32291
NOAA-NMFS-2020-0031-DRAFT-32292

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NOAA-NMFS-2020-0031-DRAFT-37264
NOAA-NMFS-2020-0031-DRAFT-37265
NOAA-NMFS-2020-0031-DRAFT-37266
NOAA-NMFS-2020-0031-DRAFT-37267
NOAA-NMFS-2020-0031-DRAFT-37268
NOAA-NMFS-2020-0031-DRAFT-37269
NOAA-NMFS-2020-0031-DRAFT-37270
NOAA-NMFS-2020-0031-DRAFT-37271
NOAA-NMFS-2020-0031-DRAFT-37272
NOAA-NMFS-2020-0031-DRAFT-37273
NOAA-NMFS-2020-0031-DRAFT-37274
NOAA-NMFS-2020-0031-DRAFT-37275
NOAA-NMFS-2020-0031-DRAFT-37276
NOAA-NMFS-2020-0031-DRAFT-37277
NOAA-NMFS-2020-0031-DRAFT-37278
NOAA-NMFS-2020-0031-DRAFT-37279
NOAA-NMFS-2020-0031-DRAFT-37280
NOAA-NMFS-2020-0031-DRAFT-37281
NOAA-NMFS-2020-0031-DRAFT-37282
NOAA-NMFS-2020-0031-DRAFT-37283
NOAA-NMFS-2020-0031-DRAFT-37284
NOAA-NMFS-2020-0031-DRAFT-37285
NOAA-NMFS-2020-0031-DRAFT-37286
NOAA-NMFS-2020-0031-DRAFT-37287
NOAA-NMFS-2020-0031-DRAFT-37288
NOAA-NMFS-2020-0031-DRAFT-37289
NOAA-NMFS-2020-0031-DRAFT-37290
NOAA-NMFS-2020-0031-DRAFT-37291
NOAA-NMFS-2020-0031-DRAFT-37292
NOAA-NMFS-2020-0031-DRAFT-37293
NOAA-NMFS-2020-0031-DRAFT-37294
NOAA-NMFS-2020-0031-DRAFT-37295
NOAA-NMFS-2020-0031-DRAFT-37296
NOAA-NMFS-2020-0031-DRAFT-37297
NOAA-NMFS-2020-0031-DRAFT-37298
NOAA-NMFS-2020-0031-DRAFT-37299
NOAA-NMFS-2020-0031-DRAFT-37300
NOAA-NMFS-2020-0031-DRAFT-37301
NOAA-NMFS-2020-0031-DRAFT-37302
NOAA-NMFS-2020-0031-DRAFT-37303
NOAA-NMFS-2020-0031-DRAFT-37304

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NOAA-NMFS-2020-0031-DRAFT-32293
NOAA-NMFS-2020-0031-DRAFT-32294
NOAA-NMFS-2020-0031-DRAFT-32295
NOAA-NMFS-2020-0031-DRAFT-32296
NOAA-NMFS-2020-0031-DRAFT-32297
NOAA-NMFS-2020-0031-DRAFT-32298
NOAA-NMFS-2020-0031-DRAFT-32299
NOAA-NMFS-2020-0031-DRAFT-32300
NOAA-NMFS-2020-0031-DRAFT-32301
NOAA-NMFS-2020-0031-DRAFT-32302
NOAA-NMFS-2020-0031-DRAFT-32303
NOAA-NMFS-2020-0031-DRAFT-32304
NOAA-NMFS-2020-0031-DRAFT-32305
NOAA-NMFS-2020-0031-DRAFT-32306
NOAA-NMFS-2020-0031-DRAFT-32307
NOAA-NMFS-2020-0031-DRAFT-32308
NOAA-NMFS-2020-0031-DRAFT-32309
NOAA-NMFS-2020-0031-DRAFT-32310
NOAA-NMFS-2020-0031-DRAFT-32311
NOAA-NMFS-2020-0031-DRAFT-32312
NOAA-NMFS-2020-0031-DRAFT-32313
NOAA-NMFS-2020-0031-DRAFT-32314
NOAA-NMFS-2020-0031-DRAFT-32315
NOAA-NMFS-2020-0031-DRAFT-32316
NOAA-NMFS-2020-0031-DRAFT-32317
NOAA-NMFS-2020-0031-DRAFT-32318
NOAA-NMFS-2020-0031-DRAFT-32319
NOAA-NMFS-2020-0031-DRAFT-32320
NOAA-NMFS-2020-0031-DRAFT-32321
NOAA-NMFS-2020-0031-DRAFT-32322
NOAA-NMFS-2020-0031-DRAFT-32323
NOAA-NMFS-2020-0031-DRAFT-32324
NOAA-NMFS-2020-0031-DRAFT-32325
NOAA-NMFS-2020-0031-DRAFT-32326
NOAA-NMFS-2020-0031-DRAFT-32327
NOAA-NMFS-2020-0031-DRAFT-32328
NOAA-NMFS-2020-0031-DRAFT-32329
NOAA-NMFS-2020-0031-DRAFT-32330
NOAA-NMFS-2020-0031-DRAFT-32331
NOAA-NMFS-2020-0031-DRAFT-32332
NOAA-NMFS-2020-0031-DRAFT-32333

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NOAA-NMFS-2020-0031-DRAFT-37305
NOAA-NMFS-2020-0031-DRAFT-37306
NOAA-NMFS-2020-0031-DRAFT-37307
NOAA-NMFS-2020-0031-DRAFT-37308
NOAA-NMFS-2020-0031-DRAFT-37309
NOAA-NMFS-2020-0031-DRAFT-37310
NOAA-NMFS-2020-0031-DRAFT-37311
NOAA-NMFS-2020-0031-DRAFT-37312
NOAA-NMFS-2020-0031-DRAFT-37313
NOAA-NMFS-2020-0031-DRAFT-37314
NOAA-NMFS-2020-0031-DRAFT-37315
NOAA-NMFS-2020-0031-DRAFT-37316
NOAA-NMFS-2020-0031-DRAFT-37317
NOAA-NMFS-2020-0031-DRAFT-37318
NOAA-NMFS-2020-0031-DRAFT-37319
NOAA-NMFS-2020-0031-DRAFT-37320
NOAA-NMFS-2020-0031-DRAFT-37321
NOAA-NMFS-2020-0031-DRAFT-37322
NOAA-NMFS-2020-0031-DRAFT-37323
NOAA-NMFS-2020-0031-DRAFT-37324
NOAA-NMFS-2020-0031-DRAFT-37325
NOAA-NMFS-2020-0031-DRAFT-37326
NOAA-NMFS-2020-0031-DRAFT-37327
NOAA-NMFS-2020-0031-DRAFT-37328
NOAA-NMFS-2020-0031-DRAFT-37329
NOAA-NMFS-2020-0031-DRAFT-37330
NOAA-NMFS-2020-0031-DRAFT-37331
NOAA-NMFS-2020-0031-DRAFT-37332
NOAA-NMFS-2020-0031-DRAFT-37333
NOAA-NMFS-2020-0031-DRAFT-37334
NOAA-NMFS-2020-0031-DRAFT-37335
NOAA-NMFS-2020-0031-DRAFT-37336
NOAA-NMFS-2020-0031-DRAFT-37337
NOAA-NMFS-2020-0031-DRAFT-37338
NOAA-NMFS-2020-0031-DRAFT-37339
NOAA-NMFS-2020-0031-DRAFT-37340
NOAA-NMFS-2020-0031-DRAFT-37341
NOAA-NMFS-2020-0031-DRAFT-37342
NOAA-NMFS-2020-0031-DRAFT-37343
NOAA-NMFS-2020-0031-DRAFT-37344
NOAA-NMFS-2020-0031-DRAFT-37345

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NOAA-NMFS-2020-0031-DRAFT-32334
NOAA-NMFS-2020-0031-DRAFT-32335
NOAA-NMFS-2020-0031-DRAFT-32336
NOAA-NMFS-2020-0031-DRAFT-32337
NOAA-NMFS-2020-0031-DRAFT-32338
NOAA-NMFS-2020-0031-DRAFT-32339
NOAA-NMFS-2020-0031-DRAFT-32340
NOAA-NMFS-2020-0031-DRAFT-32341
NOAA-NMFS-2020-0031-DRAFT-32342
NOAA-NMFS-2020-0031-DRAFT-32343
NOAA-NMFS-2020-0031-DRAFT-32344
NOAA-NMFS-2020-0031-DRAFT-32345
NOAA-NMFS-2020-0031-DRAFT-32346
NOAA-NMFS-2020-0031-DRAFT-32347
NOAA-NMFS-2020-0031-DRAFT-32348
NOAA-NMFS-2020-0031-DRAFT-32349
NOAA-NMFS-2020-0031-DRAFT-32350
NOAA-NMFS-2020-0031-DRAFT-32351
NOAA-NMFS-2020-0031-DRAFT-32352
NOAA-NMFS-2020-0031-DRAFT-32353
NOAA-NMFS-2020-0031-DRAFT-32354
NOAA-NMFS-2020-0031-DRAFT-32355
NOAA-NMFS-2020-0031-DRAFT-32356
NOAA-NMFS-2020-0031-DRAFT-32357
NOAA-NMFS-2020-0031-DRAFT-32358
NOAA-NMFS-2020-0031-DRAFT-32359
NOAA-NMFS-2020-0031-DRAFT-32360
NOAA-NMFS-2020-0031-DRAFT-32361
NOAA-NMFS-2020-0031-DRAFT-32362
NOAA-NMFS-2020-0031-DRAFT-32363
NOAA-NMFS-2020-0031-DRAFT-32364
NOAA-NMFS-2020-0031-DRAFT-32365
NOAA-NMFS-2020-0031-DRAFT-32366
NOAA-NMFS-2020-0031-DRAFT-32367
NOAA-NMFS-2020-0031-DRAFT-32368
NOAA-NMFS-2020-0031-DRAFT-32369
NOAA-NMFS-2020-0031-DRAFT-32370
NOAA-NMFS-2020-0031-DRAFT-32371
NOAA-NMFS-2020-0031-DRAFT-32372
NOAA-NMFS-2020-0031-DRAFT-32373
NOAA-NMFS-2020-0031-DRAFT-32374

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NOAA-NMFS-2020-0031-DRAFT-37346
NOAA-NMFS-2020-0031-DRAFT-37347
NOAA-NMFS-2020-0031-DRAFT-37348
NOAA-NMFS-2020-0031-DRAFT-37349
NOAA-NMFS-2020-0031-DRAFT-37350
NOAA-NMFS-2020-0031-DRAFT-37351
NOAA-NMFS-2020-0031-DRAFT-37352
NOAA-NMFS-2020-0031-DRAFT-37353
NOAA-NMFS-2020-0031-DRAFT-37354
NOAA-NMFS-2020-0031-DRAFT-37355
NOAA-NMFS-2020-0031-DRAFT-37356
NOAA-NMFS-2020-0031-DRAFT-37357
NOAA-NMFS-2020-0031-DRAFT-37358
NOAA-NMFS-2020-0031-DRAFT-37359
NOAA-NMFS-2020-0031-DRAFT-37360
NOAA-NMFS-2020-0031-DRAFT-37361
NOAA-NMFS-2020-0031-DRAFT-37362
NOAA-NMFS-2020-0031-DRAFT-37363
NOAA-NMFS-2020-0031-DRAFT-37364
NOAA-NMFS-2020-0031-DRAFT-37365
NOAA-NMFS-2020-0031-DRAFT-37366
NOAA-NMFS-2020-0031-DRAFT-37367
NOAA-NMFS-2020-0031-DRAFT-37368
NOAA-NMFS-2020-0031-DRAFT-37369
NOAA-NMFS-2020-0031-DRAFT-37370
NOAA-NMFS-2020-0031-DRAFT-37371
NOAA-NMFS-2020-0031-DRAFT-37372
NOAA-NMFS-2020-0031-DRAFT-37373
NOAA-NMFS-2020-0031-DRAFT-37374
NOAA-NMFS-2020-0031-DRAFT-37375
NOAA-NMFS-2020-0031-DRAFT-37376
NOAA-NMFS-2020-0031-DRAFT-37377
NOAA-NMFS-2020-0031-DRAFT-37378
NOAA-NMFS-2020-0031-DRAFT-37379
NOAA-NMFS-2020-0031-DRAFT-37380
NOAA-NMFS-2020-0031-DRAFT-37381
NOAA-NMFS-2020-0031-DRAFT-37382
NOAA-NMFS-2020-0031-DRAFT-37383
NOAA-NMFS-2020-0031-DRAFT-37384
NOAA-NMFS-2020-0031-DRAFT-37385
NOAA-NMFS-2020-0031-DRAFT-37386

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NOAA-NMFS-2020-0031-DRAFT-32375
NOAA-NMFS-2020-0031-DRAFT-32376
NOAA-NMFS-2020-0031-DRAFT-32377
NOAA-NMFS-2020-0031-DRAFT-32378
NOAA-NMFS-2020-0031-DRAFT-32379
NOAA-NMFS-2020-0031-DRAFT-32380
NOAA-NMFS-2020-0031-DRAFT-32381
NOAA-NMFS-2020-0031-DRAFT-32382
NOAA-NMFS-2020-0031-DRAFT-32383
NOAA-NMFS-2020-0031-DRAFT-32384
NOAA-NMFS-2020-0031-DRAFT-32385
NOAA-NMFS-2020-0031-DRAFT-32386
NOAA-NMFS-2020-0031-DRAFT-32387
NOAA-NMFS-2020-0031-DRAFT-32388
NOAA-NMFS-2020-0031-DRAFT-32389
NOAA-NMFS-2020-0031-DRAFT-32390
NOAA-NMFS-2020-0031-DRAFT-32391
NOAA-NMFS-2020-0031-DRAFT-32392
NOAA-NMFS-2020-0031-DRAFT-32393
NOAA-NMFS-2020-0031-DRAFT-32394
NOAA-NMFS-2020-0031-DRAFT-32395
NOAA-NMFS-2020-0031-DRAFT-32396
NOAA-NMFS-2020-0031-DRAFT-32397
NOAA-NMFS-2020-0031-DRAFT-32398
NOAA-NMFS-2020-0031-DRAFT-32399
NOAA-NMFS-2020-0031-DRAFT-32400
NOAA-NMFS-2020-0031-DRAFT-32401
NOAA-NMFS-2020-0031-DRAFT-32402
NOAA-NMFS-2020-0031-DRAFT-32403
NOAA-NMFS-2020-0031-DRAFT-32404
NOAA-NMFS-2020-0031-DRAFT-32405
NOAA-NMFS-2020-0031-DRAFT-32406
NOAA-NMFS-2020-0031-DRAFT-32407
NOAA-NMFS-2020-0031-DRAFT-32408
NOAA-NMFS-2020-0031-DRAFT-32409
NOAA-NMFS-2020-0031-DRAFT-32410
NOAA-NMFS-2020-0031-DRAFT-32411
NOAA-NMFS-2020-0031-DRAFT-32412
NOAA-NMFS-2020-0031-DRAFT-32413
NOAA-NMFS-2020-0031-DRAFT-32414
NOAA-NMFS-2020-0031-DRAFT-32415

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NOAA-NMFS-2020-0031-DRAFT-37387
NOAA-NMFS-2020-0031-DRAFT-37388
NOAA-NMFS-2020-0031-DRAFT-37389
NOAA-NMFS-2020-0031-DRAFT-37390
NOAA-NMFS-2020-0031-DRAFT-37391
NOAA-NMFS-2020-0031-DRAFT-37392
NOAA-NMFS-2020-0031-DRAFT-37393
NOAA-NMFS-2020-0031-DRAFT-37394
NOAA-NMFS-2020-0031-DRAFT-37395
NOAA-NMFS-2020-0031-DRAFT-37396
NOAA-NMFS-2020-0031-DRAFT-37397
NOAA-NMFS-2020-0031-DRAFT-37398
NOAA-NMFS-2020-0031-DRAFT-37399
NOAA-NMFS-2020-0031-DRAFT-37400
NOAA-NMFS-2020-0031-DRAFT-37401
NOAA-NMFS-2020-0031-DRAFT-37402
NOAA-NMFS-2020-0031-DRAFT-37403
NOAA-NMFS-2020-0031-DRAFT-37404
NOAA-NMFS-2020-0031-DRAFT-37405
NOAA-NMFS-2020-0031-DRAFT-37406
NOAA-NMFS-2020-0031-DRAFT-37407
NOAA-NMFS-2020-0031-DRAFT-37408
NOAA-NMFS-2020-0031-DRAFT-37409
NOAA-NMFS-2020-0031-DRAFT-37410
NOAA-NMFS-2020-0031-DRAFT-37411
NOAA-NMFS-2020-0031-DRAFT-37412
NOAA-NMFS-2020-0031-DRAFT-37413
NOAA-NMFS-2020-0031-DRAFT-37414
NOAA-NMFS-2020-0031-DRAFT-37415
NOAA-NMFS-2020-0031-DRAFT-37416
NOAA-NMFS-2020-0031-DRAFT-37417
NOAA-NMFS-2020-0031-DRAFT-37418
NOAA-NMFS-2020-0031-DRAFT-37419
NOAA-NMFS-2020-0031-DRAFT-37420
NOAA-NMFS-2020-0031-DRAFT-37421
NOAA-NMFS-2020-0031-DRAFT-37422
NOAA-NMFS-2020-0031-DRAFT-37423
NOAA-NMFS-2020-0031-DRAFT-37424
NOAA-NMFS-2020-0031-DRAFT-37425
NOAA-NMFS-2020-0031-DRAFT-37426
NOAA-NMFS-2020-0031-DRAFT-37427

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NOAA-NMFS-2020-0031-DRAFT-32416
NOAA-NMFS-2020-0031-DRAFT-32417
NOAA-NMFS-2020-0031-DRAFT-32418
NOAA-NMFS-2020-0031-DRAFT-32419
NOAA-NMFS-2020-0031-DRAFT-32420
NOAA-NMFS-2020-0031-DRAFT-32421
NOAA-NMFS-2020-0031-DRAFT-32422
NOAA-NMFS-2020-0031-DRAFT-32423
NOAA-NMFS-2020-0031-DRAFT-32424
NOAA-NMFS-2020-0031-DRAFT-32425
NOAA-NMFS-2020-0031-DRAFT-32426
NOAA-NMFS-2020-0031-DRAFT-32427
NOAA-NMFS-2020-0031-DRAFT-32428
NOAA-NMFS-2020-0031-DRAFT-32429
NOAA-NMFS-2020-0031-DRAFT-32430
NOAA-NMFS-2020-0031-DRAFT-32431
NOAA-NMFS-2020-0031-DRAFT-32432
NOAA-NMFS-2020-0031-DRAFT-32433
NOAA-NMFS-2020-0031-DRAFT-32434
NOAA-NMFS-2020-0031-DRAFT-32435
NOAA-NMFS-2020-0031-DRAFT-32436
NOAA-NMFS-2020-0031-DRAFT-32437
NOAA-NMFS-2020-0031-DRAFT-32438
NOAA-NMFS-2020-0031-DRAFT-32439
NOAA-NMFS-2020-0031-DRAFT-32440
NOAA-NMFS-2020-0031-DRAFT-32441
NOAA-NMFS-2020-0031-DRAFT-32442
NOAA-NMFS-2020-0031-DRAFT-32443
NOAA-NMFS-2020-0031-DRAFT-32444
NOAA-NMFS-2020-0031-DRAFT-32445
NOAA-NMFS-2020-0031-DRAFT-32446
NOAA-NMFS-2020-0031-DRAFT-32447
NOAA-NMFS-2020-0031-DRAFT-32448
NOAA-NMFS-2020-0031-DRAFT-32449
NOAA-NMFS-2020-0031-DRAFT-32450
NOAA-NMFS-2020-0031-DRAFT-32451
NOAA-NMFS-2020-0031-DRAFT-32452
NOAA-NMFS-2020-0031-DRAFT-32453
NOAA-NMFS-2020-0031-DRAFT-32454
NOAA-NMFS-2020-0031-DRAFT-32455
NOAA-NMFS-2020-0031-DRAFT-32456

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NOAA-NMFS-2020-0031-DRAFT-37428
NOAA-NMFS-2020-0031-DRAFT-37429
NOAA-NMFS-2020-0031-DRAFT-37430
NOAA-NMFS-2020-0031-DRAFT-37432
NOAA-NMFS-2020-0031-DRAFT-37433
NOAA-NMFS-2020-0031-DRAFT-37434
NOAA-NMFS-2020-0031-DRAFT-37435
NOAA-NMFS-2020-0031-DRAFT-37436
NOAA-NMFS-2020-0031-DRAFT-37437
NOAA-NMFS-2020-0031-DRAFT-37438
NOAA-NMFS-2020-0031-DRAFT-37439
NOAA-NMFS-2020-0031-DRAFT-37440
NOAA-NMFS-2020-0031-DRAFT-37441
NOAA-NMFS-2020-0031-DRAFT-37442
NOAA-NMFS-2020-0031-DRAFT-37443
NOAA-NMFS-2020-0031-DRAFT-37444
NOAA-NMFS-2020-0031-DRAFT-37445
NOAA-NMFS-2020-0031-DRAFT-37446
NOAA-NMFS-2020-0031-DRAFT-37447
NOAA-NMFS-2020-0031-DRAFT-37448
NOAA-NMFS-2020-0031-DRAFT-37449
NOAA-NMFS-2020-0031-DRAFT-37450
NOAA-NMFS-2020-0031-DRAFT-37451
NOAA-NMFS-2020-0031-DRAFT-37452
NOAA-NMFS-2020-0031-DRAFT-37453
NOAA-NMFS-2020-0031-DRAFT-37454
NOAA-NMFS-2020-0031-DRAFT-37455
NOAA-NMFS-2020-0031-DRAFT-37456
NOAA-NMFS-2020-0031-DRAFT-37457
NOAA-NMFS-2020-0031-DRAFT-37458
NOAA-NMFS-2020-0031-DRAFT-37459
NOAA-NMFS-2020-0031-DRAFT-37460
NOAA-NMFS-2020-0031-DRAFT-37461
NOAA-NMFS-2020-0031-DRAFT-37462
NOAA-NMFS-2020-0031-DRAFT-37463
NOAA-NMFS-2020-0031-DRAFT-37464
NOAA-NMFS-2020-0031-DRAFT-37465
NOAA-NMFS-2020-0031-DRAFT-37466
NOAA-NMFS-2020-0031-DRAFT-37467
NOAA-NMFS-2020-0031-DRAFT-37468
NOAA-NMFS-2020-0031-DRAFT-37469

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NOAA-NMFS-2020-0031-DRAFT-32457
NOAA-NMFS-2020-0031-DRAFT-32458
NOAA-NMFS-2020-0031-DRAFT-32459
NOAA-NMFS-2020-0031-DRAFT-32460
NOAA-NMFS-2020-0031-DRAFT-32461
NOAA-NMFS-2020-0031-DRAFT-32462
NOAA-NMFS-2020-0031-DRAFT-32463
NOAA-NMFS-2020-0031-DRAFT-32464
NOAA-NMFS-2020-0031-DRAFT-32465
NOAA-NMFS-2020-0031-DRAFT-32466
NOAA-NMFS-2020-0031-DRAFT-32467
NOAA-NMFS-2020-0031-DRAFT-32468
NOAA-NMFS-2020-0031-DRAFT-32469
NOAA-NMFS-2020-0031-DRAFT-32470
NOAA-NMFS-2020-0031-DRAFT-32471
NOAA-NMFS-2020-0031-DRAFT-32472
NOAA-NMFS-2020-0031-DRAFT-32473
NOAA-NMFS-2020-0031-DRAFT-32474
NOAA-NMFS-2020-0031-DRAFT-32475
NOAA-NMFS-2020-0031-DRAFT-32476
NOAA-NMFS-2020-0031-DRAFT-32477
NOAA-NMFS-2020-0031-DRAFT-32478
NOAA-NMFS-2020-0031-DRAFT-32479
NOAA-NMFS-2020-0031-DRAFT-32480
NOAA-NMFS-2020-0031-DRAFT-32481
NOAA-NMFS-2020-0031-DRAFT-32482
NOAA-NMFS-2020-0031-DRAFT-32483
NOAA-NMFS-2020-0031-DRAFT-32484
NOAA-NMFS-2020-0031-DRAFT-32485
NOAA-NMFS-2020-0031-DRAFT-32486
NOAA-NMFS-2020-0031-DRAFT-32487
NOAA-NMFS-2020-0031-DRAFT-32488
NOAA-NMFS-2020-0031-DRAFT-32489
NOAA-NMFS-2020-0031-DRAFT-32490
NOAA-NMFS-2020-0031-DRAFT-32491
NOAA-NMFS-2020-0031-DRAFT-32492
NOAA-NMFS-2020-0031-DRAFT-32493
NOAA-NMFS-2020-0031-DRAFT-32494
NOAA-NMFS-2020-0031-DRAFT-32495
NOAA-NMFS-2020-0031-DRAFT-32496
NOAA-NMFS-2020-0031-DRAFT-32497

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NOAA-NMFS-2020-0031-DRAFT-37470
NOAA-NMFS-2020-0031-DRAFT-37471
NOAA-NMFS-2020-0031-DRAFT-37472
NOAA-NMFS-2020-0031-DRAFT-37473
NOAA-NMFS-2020-0031-DRAFT-37474
NOAA-NMFS-2020-0031-DRAFT-37475
NOAA-NMFS-2020-0031-DRAFT-37476
NOAA-NMFS-2020-0031-DRAFT-37477
NOAA-NMFS-2020-0031-DRAFT-37478
NOAA-NMFS-2020-0031-DRAFT-37479
NOAA-NMFS-2020-0031-DRAFT-37480
NOAA-NMFS-2020-0031-DRAFT-37481
NOAA-NMFS-2020-0031-DRAFT-37482
NOAA-NMFS-2020-0031-DRAFT-37483
NOAA-NMFS-2020-0031-DRAFT-37484
NOAA-NMFS-2020-0031-DRAFT-37485
NOAA-NMFS-2020-0031-DRAFT-37486
NOAA-NMFS-2020-0031-DRAFT-37487
NOAA-NMFS-2020-0031-DRAFT-37488
NOAA-NMFS-2020-0031-DRAFT-37489
NOAA-NMFS-2020-0031-DRAFT-37490
NOAA-NMFS-2020-0031-DRAFT-37491
NOAA-NMFS-2020-0031-DRAFT-37492
NOAA-NMFS-2020-0031-DRAFT-37493
NOAA-NMFS-2020-0031-DRAFT-37494
NOAA-NMFS-2020-0031-DRAFT-37495
NOAA-NMFS-2020-0031-DRAFT-37496
NOAA-NMFS-2020-0031-DRAFT-37497
NOAA-NMFS-2020-0031-DRAFT-37498
NOAA-NMFS-2020-0031-DRAFT-37499
NOAA-NMFS-2020-0031-DRAFT-37500
NOAA-NMFS-2020-0031-DRAFT-37501
NOAA-NMFS-2020-0031-DRAFT-37502
NOAA-NMFS-2020-0031-DRAFT-37503
NOAA-NMFS-2020-0031-DRAFT-37504
NOAA-NMFS-2020-0031-DRAFT-37505
NOAA-NMFS-2020-0031-DRAFT-37506
NOAA-NMFS-2020-0031-DRAFT-37507
NOAA-NMFS-2020-0031-DRAFT-37508
NOAA-NMFS-2020-0031-DRAFT-37509
NOAA-NMFS-2020-0031-DRAFT-37510

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NOAA-NMFS-2020-0031-DRAFT-32498
NOAA-NMFS-2020-0031-DRAFT-32499
NOAA-NMFS-2020-0031-DRAFT-32500
NOAA-NMFS-2020-0031-DRAFT-32501
NOAA-NMFS-2020-0031-DRAFT-32502
NOAA-NMFS-2020-0031-DRAFT-32503
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NOAA-NMFS-2020-0031-DRAFT-32507
NOAA-NMFS-2020-0031-DRAFT-32508
NOAA-NMFS-2020-0031-DRAFT-32509
NOAA-NMFS-2020-0031-DRAFT-32510
NOAA-NMFS-2020-0031-DRAFT-32511
NOAA-NMFS-2020-0031-DRAFT-32512
NOAA-NMFS-2020-0031-DRAFT-32513
NOAA-NMFS-2020-0031-DRAFT-32514
NOAA-NMFS-2020-0031-DRAFT-32515
NOAA-NMFS-2020-0031-DRAFT-32516
NOAA-NMFS-2020-0031-DRAFT-32517
NOAA-NMFS-2020-0031-DRAFT-32518
NOAA-NMFS-2020-0031-DRAFT-32519
NOAA-NMFS-2020-0031-DRAFT-32520
NOAA-NMFS-2020-0031-DRAFT-32521
NOAA-NMFS-2020-0031-DRAFT-32522
NOAA-NMFS-2020-0031-DRAFT-32523
NOAA-NMFS-2020-0031-DRAFT-32524
NOAA-NMFS-2020-0031-DRAFT-32525
NOAA-NMFS-2020-0031-DRAFT-32526
NOAA-NMFS-2020-0031-DRAFT-32527
NOAA-NMFS-2020-0031-DRAFT-32528
NOAA-NMFS-2020-0031-DRAFT-32529
NOAA-NMFS-2020-0031-DRAFT-32530
NOAA-NMFS-2020-0031-DRAFT-32531
NOAA-NMFS-2020-0031-DRAFT-32532
NOAA-NMFS-2020-0031-DRAFT-32533
NOAA-NMFS-2020-0031-DRAFT-32534
NOAA-NMFS-2020-0031-DRAFT-32535
NOAA-NMFS-2020-0031-DRAFT-32536
NOAA-NMFS-2020-0031-DRAFT-32537
NOAA-NMFS-2020-0031-DRAFT-32538

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NOAA-NMFS-2020-0031-DRAFT-37511
NOAA-NMFS-2020-0031-DRAFT-37512
NOAA-NMFS-2020-0031-DRAFT-37513
NOAA-NMFS-2020-0031-DRAFT-37514
NOAA-NMFS-2020-0031-DRAFT-37515
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NOAA-NMFS-2020-0031-DRAFT-37517
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NOAA-NMFS-2020-0031-DRAFT-37519
NOAA-NMFS-2020-0031-DRAFT-37520
NOAA-NMFS-2020-0031-DRAFT-37521
NOAA-NMFS-2020-0031-DRAFT-37522
NOAA-NMFS-2020-0031-DRAFT-37523
NOAA-NMFS-2020-0031-DRAFT-37524
NOAA-NMFS-2020-0031-DRAFT-37525
NOAA-NMFS-2020-0031-DRAFT-37526
NOAA-NMFS-2020-0031-DRAFT-37527
NOAA-NMFS-2020-0031-DRAFT-37528
NOAA-NMFS-2020-0031-DRAFT-37529
NOAA-NMFS-2020-0031-DRAFT-37530
NOAA-NMFS-2020-0031-DRAFT-37531
NOAA-NMFS-2020-0031-DRAFT-37532
NOAA-NMFS-2020-0031-DRAFT-37533
NOAA-NMFS-2020-0031-DRAFT-37534
NOAA-NMFS-2020-0031-DRAFT-37535
NOAA-NMFS-2020-0031-DRAFT-37536
NOAA-NMFS-2020-0031-DRAFT-37537
NOAA-NMFS-2020-0031-DRAFT-37538
NOAA-NMFS-2020-0031-DRAFT-37539
NOAA-NMFS-2020-0031-DRAFT-37540
NOAA-NMFS-2020-0031-DRAFT-37541
NOAA-NMFS-2020-0031-DRAFT-37542
NOAA-NMFS-2020-0031-DRAFT-37543
NOAA-NMFS-2020-0031-DRAFT-37544
NOAA-NMFS-2020-0031-DRAFT-37545
NOAA-NMFS-2020-0031-DRAFT-37546
NOAA-NMFS-2020-0031-DRAFT-37547
NOAA-NMFS-2020-0031-DRAFT-37548
NOAA-NMFS-2020-0031-DRAFT-37549
NOAA-NMFS-2020-0031-DRAFT-37550
NOAA-NMFS-2020-0031-DRAFT-37551

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NOAA-NMFS-2020-0031-DRAFT-32539
NOAA-NMFS-2020-0031-DRAFT-32540
NOAA-NMFS-2020-0031-DRAFT-32541
NOAA-NMFS-2020-0031-DRAFT-32542
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NOAA-NMFS-2020-0031-DRAFT-32549
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NOAA-NMFS-2020-0031-DRAFT-32552
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NOAA-NMFS-2020-0031-DRAFT-32555
NOAA-NMFS-2020-0031-DRAFT-32556
NOAA-NMFS-2020-0031-DRAFT-32557
NOAA-NMFS-2020-0031-DRAFT-32558
NOAA-NMFS-2020-0031-DRAFT-32559
NOAA-NMFS-2020-0031-DRAFT-32560
NOAA-NMFS-2020-0031-DRAFT-32561
NOAA-NMFS-2020-0031-DRAFT-32562
NOAA-NMFS-2020-0031-DRAFT-32563
NOAA-NMFS-2020-0031-DRAFT-32564
NOAA-NMFS-2020-0031-DRAFT-32565
NOAA-NMFS-2020-0031-DRAFT-32566
NOAA-NMFS-2020-0031-DRAFT-32567
NOAA-NMFS-2020-0031-DRAFT-32568
NOAA-NMFS-2020-0031-DRAFT-32569
NOAA-NMFS-2020-0031-DRAFT-32570
NOAA-NMFS-2020-0031-DRAFT-32571
NOAA-NMFS-2020-0031-DRAFT-32572
NOAA-NMFS-2020-0031-DRAFT-32573
NOAA-NMFS-2020-0031-DRAFT-32574
NOAA-NMFS-2020-0031-DRAFT-32575
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NOAA-NMFS-2020-0031-DRAFT-32577
NOAA-NMFS-2020-0031-DRAFT-32578
NOAA-NMFS-2020-0031-DRAFT-32579

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NOAA-NMFS-2020-0031-DRAFT-37552
NOAA-NMFS-2020-0031-DRAFT-37553
NOAA-NMFS-2020-0031-DRAFT-37554
NOAA-NMFS-2020-0031-DRAFT-37555
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NOAA-NMFS-2020-0031-DRAFT-37567
NOAA-NMFS-2020-0031-DRAFT-37568
NOAA-NMFS-2020-0031-DRAFT-37569
NOAA-NMFS-2020-0031-DRAFT-37570
NOAA-NMFS-2020-0031-DRAFT-37571
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NOAA-NMFS-2020-0031-DRAFT-37573
NOAA-NMFS-2020-0031-DRAFT-37574
NOAA-NMFS-2020-0031-DRAFT-37575
NOAA-NMFS-2020-0031-DRAFT-37576
NOAA-NMFS-2020-0031-DRAFT-37577
NOAA-NMFS-2020-0031-DRAFT-37578
NOAA-NMFS-2020-0031-DRAFT-37579
NOAA-NMFS-2020-0031-DRAFT-37580
NOAA-NMFS-2020-0031-DRAFT-37581
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NOAA-NMFS-2020-0031-DRAFT-37589
NOAA-NMFS-2020-0031-DRAFT-37590
NOAA-NMFS-2020-0031-DRAFT-37591
NOAA-NMFS-2020-0031-DRAFT-37592

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NOAA-NMFS-2020-0031-DRAFT-32580
NOAA-NMFS-2020-0031-DRAFT-32581
NOAA-NMFS-2020-0031-DRAFT-32582
NOAA-NMFS-2020-0031-DRAFT-32583
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NOAA-NMFS-2020-0031-DRAFT-32596
NOAA-NMFS-2020-0031-DRAFT-32597
NOAA-NMFS-2020-0031-DRAFT-32598
NOAA-NMFS-2020-0031-DRAFT-32599
NOAA-NMFS-2020-0031-DRAFT-32600
NOAA-NMFS-2020-0031-DRAFT-32601
NOAA-NMFS-2020-0031-DRAFT-32602
NOAA-NMFS-2020-0031-DRAFT-32603
NOAA-NMFS-2020-0031-DRAFT-32604
NOAA-NMFS-2020-0031-DRAFT-32605
NOAA-NMFS-2020-0031-DRAFT-32606
NOAA-NMFS-2020-0031-DRAFT-32607
NOAA-NMFS-2020-0031-DRAFT-32608
NOAA-NMFS-2020-0031-DRAFT-32609
NOAA-NMFS-2020-0031-DRAFT-32610
NOAA-NMFS-2020-0031-DRAFT-32611
NOAA-NMFS-2020-0031-DRAFT-32612
NOAA-NMFS-2020-0031-DRAFT-32613
NOAA-NMFS-2020-0031-DRAFT-32614
NOAA-NMFS-2020-0031-DRAFT-32615
NOAA-NMFS-2020-0031-DRAFT-32616
NOAA-NMFS-2020-0031-DRAFT-32617
NOAA-NMFS-2020-0031-DRAFT-32618
NOAA-NMFS-2020-0031-DRAFT-32619
NOAA-NMFS-2020-0031-DRAFT-32620

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NOAA-NMFS-2020-0031-DRAFT-37593
NOAA-NMFS-2020-0031-DRAFT-37594
NOAA-NMFS-2020-0031-DRAFT-37595
NOAA-NMFS-2020-0031-DRAFT-37596
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NOAA-NMFS-2020-0031-DRAFT-37602
NOAA-NMFS-2020-0031-DRAFT-37603
NOAA-NMFS-2020-0031-DRAFT-37604
NOAA-NMFS-2020-0031-DRAFT-37605
NOAA-NMFS-2020-0031-DRAFT-37607
NOAA-NMFS-2020-0031-DRAFT-37608
NOAA-NMFS-2020-0031-DRAFT-37609
NOAA-NMFS-2020-0031-DRAFT-37610
NOAA-NMFS-2020-0031-DRAFT-37611
NOAA-NMFS-2020-0031-DRAFT-37612
NOAA-NMFS-2020-0031-DRAFT-37613
NOAA-NMFS-2020-0031-DRAFT-37614
NOAA-NMFS-2020-0031-DRAFT-37615
NOAA-NMFS-2020-0031-DRAFT-37616
NOAA-NMFS-2020-0031-DRAFT-37617
NOAA-NMFS-2020-0031-DRAFT-37618
NOAA-NMFS-2020-0031-DRAFT-37619
NOAA-NMFS-2020-0031-DRAFT-37620
NOAA-NMFS-2020-0031-DRAFT-37621
NOAA-NMFS-2020-0031-DRAFT-37622
NOAA-NMFS-2020-0031-DRAFT-37623
NOAA-NMFS-2020-0031-DRAFT-37624
NOAA-NMFS-2020-0031-DRAFT-37625
NOAA-NMFS-2020-0031-DRAFT-37626
NOAA-NMFS-2020-0031-DRAFT-37627
NOAA-NMFS-2020-0031-DRAFT-37628
NOAA-NMFS-2020-0031-DRAFT-37629
NOAA-NMFS-2020-0031-DRAFT-37630
NOAA-NMFS-2020-0031-DRAFT-37631
NOAA-NMFS-2020-0031-DRAFT-37632
NOAA-NMFS-2020-0031-DRAFT-37633
NOAA-NMFS-2020-0031-DRAFT-37634

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NOAA-NMFS-2020-0031-DRAFT-32621
NOAA-NMFS-2020-0031-DRAFT-32622
NOAA-NMFS-2020-0031-DRAFT-32623
NOAA-NMFS-2020-0031-DRAFT-32624
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NOAA-NMFS-2020-0031-DRAFT-32628
NOAA-NMFS-2020-0031-DRAFT-32629
NOAA-NMFS-2020-0031-DRAFT-32630
NOAA-NMFS-2020-0031-DRAFT-32631
NOAA-NMFS-2020-0031-DRAFT-32632
NOAA-NMFS-2020-0031-DRAFT-32633
NOAA-NMFS-2020-0031-DRAFT-32634
NOAA-NMFS-2020-0031-DRAFT-32635
NOAA-NMFS-2020-0031-DRAFT-32636
NOAA-NMFS-2020-0031-DRAFT-32637
NOAA-NMFS-2020-0031-DRAFT-32638
NOAA-NMFS-2020-0031-DRAFT-32639
NOAA-NMFS-2020-0031-DRAFT-32640
NOAA-NMFS-2020-0031-DRAFT-32641
NOAA-NMFS-2020-0031-DRAFT-32642
NOAA-NMFS-2020-0031-DRAFT-32643
NOAA-NMFS-2020-0031-DRAFT-32644
NOAA-NMFS-2020-0031-DRAFT-32645
NOAA-NMFS-2020-0031-DRAFT-32646
NOAA-NMFS-2020-0031-DRAFT-32647
NOAA-NMFS-2020-0031-DRAFT-32648
NOAA-NMFS-2020-0031-DRAFT-32649
NOAA-NMFS-2020-0031-DRAFT-32650
NOAA-NMFS-2020-0031-DRAFT-32651
NOAA-NMFS-2020-0031-DRAFT-32652
NOAA-NMFS-2020-0031-DRAFT-32653
NOAA-NMFS-2020-0031-DRAFT-32654
NOAA-NMFS-2020-0031-DRAFT-32655
NOAA-NMFS-2020-0031-DRAFT-32656
NOAA-NMFS-2020-0031-DRAFT-32657
NOAA-NMFS-2020-0031-DRAFT-32658
NOAA-NMFS-2020-0031-DRAFT-32659
NOAA-NMFS-2020-0031-DRAFT-32660
NOAA-NMFS-2020-0031-DRAFT-32661

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NOAA-NMFS-2020-0031-DRAFT-37635
NOAA-NMFS-2020-0031-DRAFT-37636
NOAA-NMFS-2020-0031-DRAFT-37637
NOAA-NMFS-2020-0031-DRAFT-37638
NOAA-NMFS-2020-0031-DRAFT-37639
NOAA-NMFS-2020-0031-DRAFT-37640
NOAA-NMFS-2020-0031-DRAFT-37641
NOAA-NMFS-2020-0031-DRAFT-37642
NOAA-NMFS-2020-0031-DRAFT-37643
NOAA-NMFS-2020-0031-DRAFT-37644
NOAA-NMFS-2020-0031-DRAFT-37645
NOAA-NMFS-2020-0031-DRAFT-37646
NOAA-NMFS-2020-0031-DRAFT-37647
NOAA-NMFS-2020-0031-DRAFT-37648
NOAA-NMFS-2020-0031-DRAFT-37649
NOAA-NMFS-2020-0031-DRAFT-37650
NOAA-NMFS-2020-0031-DRAFT-37651
NOAA-NMFS-2020-0031-DRAFT-37652
NOAA-NMFS-2020-0031-DRAFT-37653
NOAA-NMFS-2020-0031-DRAFT-37654
NOAA-NMFS-2020-0031-DRAFT-37655
NOAA-NMFS-2020-0031-DRAFT-37656
NOAA-NMFS-2020-0031-DRAFT-37657
NOAA-NMFS-2020-0031-DRAFT-37658
NOAA-NMFS-2020-0031-DRAFT-37659
NOAA-NMFS-2020-0031-DRAFT-37660
NOAA-NMFS-2020-0031-DRAFT-37661
NOAA-NMFS-2020-0031-DRAFT-37662
NOAA-NMFS-2020-0031-DRAFT-37663
NOAA-NMFS-2020-0031-DRAFT-37664
NOAA-NMFS-2020-0031-DRAFT-37665
NOAA-NMFS-2020-0031-DRAFT-37666
NOAA-NMFS-2020-0031-DRAFT-37667
NOAA-NMFS-2020-0031-DRAFT-37668
NOAA-NMFS-2020-0031-DRAFT-37669
NOAA-NMFS-2020-0031-DRAFT-37670
NOAA-NMFS-2020-0031-DRAFT-37671
NOAA-NMFS-2020-0031-DRAFT-37672
NOAA-NMFS-2020-0031-DRAFT-37673
NOAA-NMFS-2020-0031-DRAFT-37674
NOAA-NMFS-2020-0031-DRAFT-37675

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NOAA-NMFS-2020-0031-DRAFT-32662
NOAA-NMFS-2020-0031-DRAFT-32663
NOAA-NMFS-2020-0031-DRAFT-32664
NOAA-NMFS-2020-0031-DRAFT-32665
NOAA-NMFS-2020-0031-DRAFT-32666
NOAA-NMFS-2020-0031-DRAFT-32667
NOAA-NMFS-2020-0031-DRAFT-32668
NOAA-NMFS-2020-0031-DRAFT-32669
NOAA-NMFS-2020-0031-DRAFT-32670
NOAA-NMFS-2020-0031-DRAFT-32671
NOAA-NMFS-2020-0031-DRAFT-32672
NOAA-NMFS-2020-0031-DRAFT-32673
NOAA-NMFS-2020-0031-DRAFT-32674
NOAA-NMFS-2020-0031-DRAFT-32675
NOAA-NMFS-2020-0031-DRAFT-32676
NOAA-NMFS-2020-0031-DRAFT-32677
NOAA-NMFS-2020-0031-DRAFT-32678
NOAA-NMFS-2020-0031-DRAFT-32679
NOAA-NMFS-2020-0031-DRAFT-32680
NOAA-NMFS-2020-0031-DRAFT-32681
NOAA-NMFS-2020-0031-DRAFT-32682
NOAA-NMFS-2020-0031-DRAFT-32683
NOAA-NMFS-2020-0031-DRAFT-32684
NOAA-NMFS-2020-0031-DRAFT-32685
NOAA-NMFS-2020-0031-DRAFT-32686
NOAA-NMFS-2020-0031-DRAFT-32687
NOAA-NMFS-2020-0031-DRAFT-32688
NOAA-NMFS-2020-0031-DRAFT-32689
NOAA-NMFS-2020-0031-DRAFT-32690
NOAA-NMFS-2020-0031-DRAFT-32691
NOAA-NMFS-2020-0031-DRAFT-32692
NOAA-NMFS-2020-0031-DRAFT-32693
NOAA-NMFS-2020-0031-DRAFT-32694
NOAA-NMFS-2020-0031-DRAFT-32695
NOAA-NMFS-2020-0031-DRAFT-32696
NOAA-NMFS-2020-0031-DRAFT-32697
NOAA-NMFS-2020-0031-DRAFT-32698
NOAA-NMFS-2020-0031-DRAFT-32699
NOAA-NMFS-2020-0031-DRAFT-32700
NOAA-NMFS-2020-0031-DRAFT-32701
NOAA-NMFS-2020-0031-DRAFT-32702

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NOAA-NMFS-2020-0031-DRAFT-37676
NOAA-NMFS-2020-0031-DRAFT-37677
NOAA-NMFS-2020-0031-DRAFT-37678
NOAA-NMFS-2020-0031-DRAFT-37679
NOAA-NMFS-2020-0031-DRAFT-37680
NOAA-NMFS-2020-0031-DRAFT-37681
NOAA-NMFS-2020-0031-DRAFT-37682
NOAA-NMFS-2020-0031-DRAFT-37683
NOAA-NMFS-2020-0031-DRAFT-37684
NOAA-NMFS-2020-0031-DRAFT-37685
NOAA-NMFS-2020-0031-DRAFT-37686
NOAA-NMFS-2020-0031-DRAFT-37687
NOAA-NMFS-2020-0031-DRAFT-37688
NOAA-NMFS-2020-0031-DRAFT-37689
NOAA-NMFS-2020-0031-DRAFT-37690
NOAA-NMFS-2020-0031-DRAFT-37691
NOAA-NMFS-2020-0031-DRAFT-37692
NOAA-NMFS-2020-0031-DRAFT-37693
NOAA-NMFS-2020-0031-DRAFT-37694
NOAA-NMFS-2020-0031-DRAFT-37695
NOAA-NMFS-2020-0031-DRAFT-37696
NOAA-NMFS-2020-0031-DRAFT-37697
NOAA-NMFS-2020-0031-DRAFT-37698
NOAA-NMFS-2020-0031-DRAFT-37699
NOAA-NMFS-2020-0031-DRAFT-37700
NOAA-NMFS-2020-0031-DRAFT-37701
NOAA-NMFS-2020-0031-DRAFT-37702
NOAA-NMFS-2020-0031-DRAFT-37703
NOAA-NMFS-2020-0031-DRAFT-37704
NOAA-NMFS-2020-0031-DRAFT-37705
NOAA-NMFS-2020-0031-DRAFT-37706
NOAA-NMFS-2020-0031-DRAFT-37707
NOAA-NMFS-2020-0031-DRAFT-37708
NOAA-NMFS-2020-0031-DRAFT-37709
NOAA-NMFS-2020-0031-DRAFT-37710
NOAA-NMFS-2020-0031-DRAFT-37711
NOAA-NMFS-2020-0031-DRAFT-37712
NOAA-NMFS-2020-0031-DRAFT-37713
NOAA-NMFS-2020-0031-DRAFT-37714
NOAA-NMFS-2020-0031-DRAFT-37715
NOAA-NMFS-2020-0031-DRAFT-37716

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NOAA-NMFS-2020-0031-DRAFT-32703
NOAA-NMFS-2020-0031-DRAFT-32704
NOAA-NMFS-2020-0031-DRAFT-32705
NOAA-NMFS-2020-0031-DRAFT-32706
NOAA-NMFS-2020-0031-DRAFT-32707
NOAA-NMFS-2020-0031-DRAFT-32708
NOAA-NMFS-2020-0031-DRAFT-32709
NOAA-NMFS-2020-0031-DRAFT-32710
NOAA-NMFS-2020-0031-DRAFT-32711
NOAA-NMFS-2020-0031-DRAFT-32712
NOAA-NMFS-2020-0031-DRAFT-32713
NOAA-NMFS-2020-0031-DRAFT-32714
NOAA-NMFS-2020-0031-DRAFT-32715
NOAA-NMFS-2020-0031-DRAFT-32716
NOAA-NMFS-2020-0031-DRAFT-32717
NOAA-NMFS-2020-0031-DRAFT-32718
NOAA-NMFS-2020-0031-DRAFT-32719
NOAA-NMFS-2020-0031-DRAFT-32720
NOAA-NMFS-2020-0031-DRAFT-32721
NOAA-NMFS-2020-0031-DRAFT-32722
NOAA-NMFS-2020-0031-DRAFT-32723
NOAA-NMFS-2020-0031-DRAFT-32724
NOAA-NMFS-2020-0031-DRAFT-32725
NOAA-NMFS-2020-0031-DRAFT-32726
NOAA-NMFS-2020-0031-DRAFT-32727
NOAA-NMFS-2020-0031-DRAFT-32728
NOAA-NMFS-2020-0031-DRAFT-32729
NOAA-NMFS-2020-0031-DRAFT-32730
NOAA-NMFS-2020-0031-DRAFT-32731
NOAA-NMFS-2020-0031-DRAFT-32732
NOAA-NMFS-2020-0031-DRAFT-32733
NOAA-NMFS-2020-0031-DRAFT-32734
NOAA-NMFS-2020-0031-DRAFT-32735
NOAA-NMFS-2020-0031-DRAFT-32736
NOAA-NMFS-2020-0031-DRAFT-32737
NOAA-NMFS-2020-0031-DRAFT-32738
NOAA-NMFS-2020-0031-DRAFT-32739
NOAA-NMFS-2020-0031-DRAFT-32740
NOAA-NMFS-2020-0031-DRAFT-32741
NOAA-NMFS-2020-0031-DRAFT-32742
NOAA-NMFS-2020-0031-DRAFT-32743

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NOAA-NMFS-2020-0031-DRAFT-37717
NOAA-NMFS-2020-0031-DRAFT-37718
NOAA-NMFS-2020-0031-DRAFT-37719
NOAA-NMFS-2020-0031-DRAFT-37720
NOAA-NMFS-2020-0031-DRAFT-37721
NOAA-NMFS-2020-0031-DRAFT-37722
NOAA-NMFS-2020-0031-DRAFT-37723
NOAA-NMFS-2020-0031-DRAFT-37724
NOAA-NMFS-2020-0031-DRAFT-37725
NOAA-NMFS-2020-0031-DRAFT-37726
NOAA-NMFS-2020-0031-DRAFT-37727
NOAA-NMFS-2020-0031-DRAFT-37728
NOAA-NMFS-2020-0031-DRAFT-37729
NOAA-NMFS-2020-0031-DRAFT-37730
NOAA-NMFS-2020-0031-DRAFT-37731
NOAA-NMFS-2020-0031-DRAFT-37732
NOAA-NMFS-2020-0031-DRAFT-37733
NOAA-NMFS-2020-0031-DRAFT-37734
NOAA-NMFS-2020-0031-DRAFT-37735
NOAA-NMFS-2020-0031-DRAFT-37736
NOAA-NMFS-2020-0031-DRAFT-37737
NOAA-NMFS-2020-0031-DRAFT-37738
NOAA-NMFS-2020-0031-DRAFT-37739
NOAA-NMFS-2020-0031-DRAFT-37740
NOAA-NMFS-2020-0031-DRAFT-37741
NOAA-NMFS-2020-0031-DRAFT-37742
NOAA-NMFS-2020-0031-DRAFT-37743
NOAA-NMFS-2020-0031-DRAFT-37744
NOAA-NMFS-2020-0031-DRAFT-37745
NOAA-NMFS-2020-0031-DRAFT-37746
NOAA-NMFS-2020-0031-DRAFT-37747
NOAA-NMFS-2020-0031-DRAFT-37748
NOAA-NMFS-2020-0031-DRAFT-37749
NOAA-NMFS-2020-0031-DRAFT-37750
NOAA-NMFS-2020-0031-DRAFT-37751
NOAA-NMFS-2020-0031-DRAFT-37752
NOAA-NMFS-2020-0031-DRAFT-37753
NOAA-NMFS-2020-0031-DRAFT-37754
NOAA-NMFS-2020-0031-DRAFT-37755
NOAA-NMFS-2020-0031-DRAFT-37756
NOAA-NMFS-2020-0031-DRAFT-37757

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NOAA-NMFS-2020-0031-DRAFT-32744
NOAA-NMFS-2020-0031-DRAFT-32745
NOAA-NMFS-2020-0031-DRAFT-32746
NOAA-NMFS-2020-0031-DRAFT-32747
NOAA-NMFS-2020-0031-DRAFT-32748
NOAA-NMFS-2020-0031-DRAFT-32749
NOAA-NMFS-2020-0031-DRAFT-32750
NOAA-NMFS-2020-0031-DRAFT-32751
NOAA-NMFS-2020-0031-DRAFT-32752
NOAA-NMFS-2020-0031-DRAFT-32753
NOAA-NMFS-2020-0031-DRAFT-32754
NOAA-NMFS-2020-0031-DRAFT-32755
NOAA-NMFS-2020-0031-DRAFT-32756
NOAA-NMFS-2020-0031-DRAFT-32757
NOAA-NMFS-2020-0031-DRAFT-32758
NOAA-NMFS-2020-0031-DRAFT-32759
NOAA-NMFS-2020-0031-DRAFT-32760
NOAA-NMFS-2020-0031-DRAFT-32761
NOAA-NMFS-2020-0031-DRAFT-32762
NOAA-NMFS-2020-0031-DRAFT-32763
NOAA-NMFS-2020-0031-DRAFT-32764
NOAA-NMFS-2020-0031-DRAFT-32765
NOAA-NMFS-2020-0031-DRAFT-32766
NOAA-NMFS-2020-0031-DRAFT-32767
NOAA-NMFS-2020-0031-DRAFT-32768
NOAA-NMFS-2020-0031-DRAFT-32769
NOAA-NMFS-2020-0031-DRAFT-32770
NOAA-NMFS-2020-0031-DRAFT-32771
NOAA-NMFS-2020-0031-DRAFT-32772
NOAA-NMFS-2020-0031-DRAFT-32773
NOAA-NMFS-2020-0031-DRAFT-32774
NOAA-NMFS-2020-0031-DRAFT-32775
NOAA-NMFS-2020-0031-DRAFT-32776
NOAA-NMFS-2020-0031-DRAFT-32777
NOAA-NMFS-2020-0031-DRAFT-32778
NOAA-NMFS-2020-0031-DRAFT-32779
NOAA-NMFS-2020-0031-DRAFT-32780
NOAA-NMFS-2020-0031-DRAFT-32781
NOAA-NMFS-2020-0031-DRAFT-32782
NOAA-NMFS-2020-0031-DRAFT-32783
NOAA-NMFS-2020-0031-DRAFT-32784

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NOAA-NMFS-2020-0031-DRAFT-37758
NOAA-NMFS-2020-0031-DRAFT-37759
NOAA-NMFS-2020-0031-DRAFT-37760
NOAA-NMFS-2020-0031-DRAFT-37761
NOAA-NMFS-2020-0031-DRAFT-37762
NOAA-NMFS-2020-0031-DRAFT-37763
NOAA-NMFS-2020-0031-DRAFT-37764
NOAA-NMFS-2020-0031-DRAFT-37765
NOAA-NMFS-2020-0031-DRAFT-37766
NOAA-NMFS-2020-0031-DRAFT-37767
NOAA-NMFS-2020-0031-DRAFT-37768
NOAA-NMFS-2020-0031-DRAFT-37769
NOAA-NMFS-2020-0031-DRAFT-37770
NOAA-NMFS-2020-0031-DRAFT-37771
NOAA-NMFS-2020-0031-DRAFT-37772
NOAA-NMFS-2020-0031-DRAFT-37773
NOAA-NMFS-2020-0031-DRAFT-37774
NOAA-NMFS-2020-0031-DRAFT-37775
NOAA-NMFS-2020-0031-DRAFT-37776
NOAA-NMFS-2020-0031-DRAFT-37777
NOAA-NMFS-2020-0031-DRAFT-37778
NOAA-NMFS-2020-0031-DRAFT-37779
NOAA-NMFS-2020-0031-DRAFT-37780
NOAA-NMFS-2020-0031-DRAFT-37781
NOAA-NMFS-2020-0031-DRAFT-37782
NOAA-NMFS-2020-0031-DRAFT-37783
NOAA-NMFS-2020-0031-DRAFT-37784
NOAA-NMFS-2020-0031-DRAFT-37785
NOAA-NMFS-2020-0031-DRAFT-37786
NOAA-NMFS-2020-0031-DRAFT-37787
NOAA-NMFS-2020-0031-DRAFT-37788
NOAA-NMFS-2020-0031-DRAFT-37789
NOAA-NMFS-2020-0031-DRAFT-37790
NOAA-NMFS-2020-0031-DRAFT-37791
NOAA-NMFS-2020-0031-DRAFT-37792
NOAA-NMFS-2020-0031-DRAFT-37793
NOAA-NMFS-2020-0031-DRAFT-37794
NOAA-NMFS-2020-0031-DRAFT-37795
NOAA-NMFS-2020-0031-DRAFT-37796
NOAA-NMFS-2020-0031-DRAFT-37797
NOAA-NMFS-2020-0031-DRAFT-37798

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NOAA-NMFS-2020-0031-DRAFT-32785
NOAA-NMFS-2020-0031-DRAFT-32786
NOAA-NMFS-2020-0031-DRAFT-32787
NOAA-NMFS-2020-0031-DRAFT-32788
NOAA-NMFS-2020-0031-DRAFT-32789
NOAA-NMFS-2020-0031-DRAFT-32790
NOAA-NMFS-2020-0031-DRAFT-32791
NOAA-NMFS-2020-0031-DRAFT-32792
NOAA-NMFS-2020-0031-DRAFT-32793
NOAA-NMFS-2020-0031-DRAFT-32794
NOAA-NMFS-2020-0031-DRAFT-32795
NOAA-NMFS-2020-0031-DRAFT-32796
NOAA-NMFS-2020-0031-DRAFT-32797
NOAA-NMFS-2020-0031-DRAFT-32798
NOAA-NMFS-2020-0031-DRAFT-32799
NOAA-NMFS-2020-0031-DRAFT-32800
NOAA-NMFS-2020-0031-DRAFT-32801
NOAA-NMFS-2020-0031-DRAFT-32802
NOAA-NMFS-2020-0031-DRAFT-32803
NOAA-NMFS-2020-0031-DRAFT-32804
NOAA-NMFS-2020-0031-DRAFT-32805
NOAA-NMFS-2020-0031-DRAFT-32806
NOAA-NMFS-2020-0031-DRAFT-32807
NOAA-NMFS-2020-0031-DRAFT-32808
NOAA-NMFS-2020-0031-DRAFT-32809
NOAA-NMFS-2020-0031-DRAFT-32810
NOAA-NMFS-2020-0031-DRAFT-32811
NOAA-NMFS-2020-0031-DRAFT-32812
NOAA-NMFS-2020-0031-DRAFT-32813
NOAA-NMFS-2020-0031-DRAFT-32814
NOAA-NMFS-2020-0031-DRAFT-32815
NOAA-NMFS-2020-0031-DRAFT-32816
NOAA-NMFS-2020-0031-DRAFT-32817
NOAA-NMFS-2020-0031-DRAFT-32818
NOAA-NMFS-2020-0031-DRAFT-32819
NOAA-NMFS-2020-0031-DRAFT-32820
NOAA-NMFS-2020-0031-DRAFT-32821
NOAA-NMFS-2020-0031-DRAFT-32822
NOAA-NMFS-2020-0031-DRAFT-32823
NOAA-NMFS-2020-0031-DRAFT-32824
NOAA-NMFS-2020-0031-DRAFT-32825

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NOAA-NMFS-2020-0031-DRAFT-37799
NOAA-NMFS-2020-0031-DRAFT-37800
NOAA-NMFS-2020-0031-DRAFT-37801
NOAA-NMFS-2020-0031-DRAFT-37802
NOAA-NMFS-2020-0031-DRAFT-37803
NOAA-NMFS-2020-0031-DRAFT-37804
NOAA-NMFS-2020-0031-DRAFT-37805
NOAA-NMFS-2020-0031-DRAFT-37806
NOAA-NMFS-2020-0031-DRAFT-37807
NOAA-NMFS-2020-0031-DRAFT-37808
NOAA-NMFS-2020-0031-DRAFT-37809
NOAA-NMFS-2020-0031-DRAFT-37810
NOAA-NMFS-2020-0031-DRAFT-37811
NOAA-NMFS-2020-0031-DRAFT-37812
NOAA-NMFS-2020-0031-DRAFT-37813
NOAA-NMFS-2020-0031-DRAFT-37814
NOAA-NMFS-2020-0031-DRAFT-37815
NOAA-NMFS-2020-0031-DRAFT-37816
NOAA-NMFS-2020-0031-DRAFT-37817
NOAA-NMFS-2020-0031-DRAFT-37818
NOAA-NMFS-2020-0031-DRAFT-37819
NOAA-NMFS-2020-0031-DRAFT-37820
NOAA-NMFS-2020-0031-DRAFT-37821
NOAA-NMFS-2020-0031-DRAFT-37822
NOAA-NMFS-2020-0031-DRAFT-37823
NOAA-NMFS-2020-0031-DRAFT-37824
NOAA-NMFS-2020-0031-DRAFT-37825
NOAA-NMFS-2020-0031-DRAFT-37826
NOAA-NMFS-2020-0031-DRAFT-37827
NOAA-NMFS-2020-0031-DRAFT-37828
NOAA-NMFS-2020-0031-DRAFT-37829
NOAA-NMFS-2020-0031-DRAFT-37830
NOAA-NMFS-2020-0031-DRAFT-37831
NOAA-NMFS-2020-0031-DRAFT-37832
NOAA-NMFS-2020-0031-DRAFT-37833
NOAA-NMFS-2020-0031-DRAFT-37834
NOAA-NMFS-2020-0031-DRAFT-37835
NOAA-NMFS-2020-0031-DRAFT-37836
NOAA-NMFS-2020-0031-DRAFT-37837
NOAA-NMFS-2020-0031-DRAFT-37838
NOAA-NMFS-2020-0031-DRAFT-37839

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NOAA-NMFS-2020-0031-DRAFT-32826
NOAA-NMFS-2020-0031-DRAFT-32827
NOAA-NMFS-2020-0031-DRAFT-32828
NOAA-NMFS-2020-0031-DRAFT-32829
NOAA-NMFS-2020-0031-DRAFT-32830
NOAA-NMFS-2020-0031-DRAFT-32831
NOAA-NMFS-2020-0031-DRAFT-32832
NOAA-NMFS-2020-0031-DRAFT-32833
NOAA-NMFS-2020-0031-DRAFT-32834
NOAA-NMFS-2020-0031-DRAFT-32835
NOAA-NMFS-2020-0031-DRAFT-32836
NOAA-NMFS-2020-0031-DRAFT-32837
NOAA-NMFS-2020-0031-DRAFT-32838
NOAA-NMFS-2020-0031-DRAFT-32839
NOAA-NMFS-2020-0031-DRAFT-32840
NOAA-NMFS-2020-0031-DRAFT-32841
NOAA-NMFS-2020-0031-DRAFT-32842
NOAA-NMFS-2020-0031-DRAFT-32843
NOAA-NMFS-2020-0031-DRAFT-32844
NOAA-NMFS-2020-0031-DRAFT-32845
NOAA-NMFS-2020-0031-DRAFT-32846
NOAA-NMFS-2020-0031-DRAFT-32847
NOAA-NMFS-2020-0031-DRAFT-32848
NOAA-NMFS-2020-0031-DRAFT-32849
NOAA-NMFS-2020-0031-DRAFT-32850
NOAA-NMFS-2020-0031-DRAFT-32851
NOAA-NMFS-2020-0031-DRAFT-32852
NOAA-NMFS-2020-0031-DRAFT-32853
NOAA-NMFS-2020-0031-DRAFT-32854
NOAA-NMFS-2020-0031-DRAFT-32855
NOAA-NMFS-2020-0031-DRAFT-32856
NOAA-NMFS-2020-0031-DRAFT-32857
NOAA-NMFS-2020-0031-DRAFT-32858
NOAA-NMFS-2020-0031-DRAFT-32859
NOAA-NMFS-2020-0031-DRAFT-32860
NOAA-NMFS-2020-0031-DRAFT-32861
NOAA-NMFS-2020-0031-DRAFT-32862
NOAA-NMFS-2020-0031-DRAFT-32863
NOAA-NMFS-2020-0031-DRAFT-32864
NOAA-NMFS-2020-0031-DRAFT-32865
NOAA-NMFS-2020-0031-DRAFT-32866

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NOAA-NMFS-2020-0031-DRAFT-37840
NOAA-NMFS-2020-0031-DRAFT-37841
NOAA-NMFS-2020-0031-DRAFT-37842
NOAA-NMFS-2020-0031-DRAFT-37843
NOAA-NMFS-2020-0031-DRAFT-37844
NOAA-NMFS-2020-0031-DRAFT-37845
NOAA-NMFS-2020-0031-DRAFT-37846
NOAA-NMFS-2020-0031-DRAFT-37847
NOAA-NMFS-2020-0031-DRAFT-37848
NOAA-NMFS-2020-0031-DRAFT-37849
NOAA-NMFS-2020-0031-DRAFT-37850
NOAA-NMFS-2020-0031-DRAFT-37851
NOAA-NMFS-2020-0031-DRAFT-37852
NOAA-NMFS-2020-0031-DRAFT-37853
NOAA-NMFS-2020-0031-DRAFT-37854
NOAA-NMFS-2020-0031-DRAFT-37855
NOAA-NMFS-2020-0031-DRAFT-37856
NOAA-NMFS-2020-0031-DRAFT-37857
NOAA-NMFS-2020-0031-DRAFT-37858
NOAA-NMFS-2020-0031-DRAFT-37859
NOAA-NMFS-2020-0031-DRAFT-37860
NOAA-NMFS-2020-0031-DRAFT-37861
NOAA-NMFS-2020-0031-DRAFT-37862
NOAA-NMFS-2020-0031-DRAFT-37863
NOAA-NMFS-2020-0031-DRAFT-37864
NOAA-NMFS-2020-0031-DRAFT-37865
NOAA-NMFS-2020-0031-DRAFT-37866
NOAA-NMFS-2020-0031-DRAFT-37867
NOAA-NMFS-2020-0031-DRAFT-37868
NOAA-NMFS-2020-0031-DRAFT-37869
NOAA-NMFS-2020-0031-DRAFT-37870
NOAA-NMFS-2020-0031-DRAFT-37871
NOAA-NMFS-2020-0031-DRAFT-37872
NOAA-NMFS-2020-0031-DRAFT-37873
NOAA-NMFS-2020-0031-DRAFT-37874
NOAA-NMFS-2020-0031-DRAFT-37875
NOAA-NMFS-2020-0031-DRAFT-37876
NOAA-NMFS-2020-0031-DRAFT-37877
NOAA-NMFS-2020-0031-DRAFT-37878
NOAA-NMFS-2020-0031-DRAFT-37879
NOAA-NMFS-2020-0031-DRAFT-37880

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NOAA-NMFS-2020-0031-DRAFT-32867
NOAA-NMFS-2020-0031-DRAFT-32868
NOAA-NMFS-2020-0031-DRAFT-32869
NOAA-NMFS-2020-0031-DRAFT-32870
NOAA-NMFS-2020-0031-DRAFT-32871
NOAA-NMFS-2020-0031-DRAFT-32872
NOAA-NMFS-2020-0031-DRAFT-32873
NOAA-NMFS-2020-0031-DRAFT-32874
NOAA-NMFS-2020-0031-DRAFT-32875
NOAA-NMFS-2020-0031-DRAFT-32876
NOAA-NMFS-2020-0031-DRAFT-32877
NOAA-NMFS-2020-0031-DRAFT-32878
NOAA-NMFS-2020-0031-DRAFT-32879
NOAA-NMFS-2020-0031-DRAFT-32880
NOAA-NMFS-2020-0031-DRAFT-32881
NOAA-NMFS-2020-0031-DRAFT-32882
NOAA-NMFS-2020-0031-DRAFT-32883
NOAA-NMFS-2020-0031-DRAFT-32884
NOAA-NMFS-2020-0031-DRAFT-32885
NOAA-NMFS-2020-0031-DRAFT-32886
NOAA-NMFS-2020-0031-DRAFT-32887
NOAA-NMFS-2020-0031-DRAFT-32888
NOAA-NMFS-2020-0031-DRAFT-32889
NOAA-NMFS-2020-0031-DRAFT-32890
NOAA-NMFS-2020-0031-DRAFT-32891
NOAA-NMFS-2020-0031-DRAFT-32892
NOAA-NMFS-2020-0031-DRAFT-32893
NOAA-NMFS-2020-0031-DRAFT-32894
NOAA-NMFS-2020-0031-DRAFT-32895
NOAA-NMFS-2020-0031-DRAFT-32896
NOAA-NMFS-2020-0031-DRAFT-32897
NOAA-NMFS-2020-0031-DRAFT-32898
NOAA-NMFS-2020-0031-DRAFT-32900
NOAA-NMFS-2020-0031-DRAFT-32901
NOAA-NMFS-2020-0031-DRAFT-32902
NOAA-NMFS-2020-0031-DRAFT-32903
NOAA-NMFS-2020-0031-DRAFT-32904
NOAA-NMFS-2020-0031-DRAFT-32905
NOAA-NMFS-2020-0031-DRAFT-32906
NOAA-NMFS-2020-0031-DRAFT-32907
NOAA-NMFS-2020-0031-DRAFT-32908

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NOAA-NMFS-2020-0031-DRAFT-37881
NOAA-NMFS-2020-0031-DRAFT-37882
NOAA-NMFS-2020-0031-DRAFT-37883
NOAA-NMFS-2020-0031-DRAFT-37884
NOAA-NMFS-2020-0031-DRAFT-37885
NOAA-NMFS-2020-0031-DRAFT-37886
NOAA-NMFS-2020-0031-DRAFT-37887
NOAA-NMFS-2020-0031-DRAFT-37888
NOAA-NMFS-2020-0031-DRAFT-37889
NOAA-NMFS-2020-0031-DRAFT-37890
NOAA-NMFS-2020-0031-DRAFT-37891
NOAA-NMFS-2020-0031-DRAFT-37892
NOAA-NMFS-2020-0031-DRAFT-37893
NOAA-NMFS-2020-0031-DRAFT-37894
NOAA-NMFS-2020-0031-DRAFT-37895
NOAA-NMFS-2020-0031-DRAFT-37896
NOAA-NMFS-2020-0031-DRAFT-37897
NOAA-NMFS-2020-0031-DRAFT-37898
NOAA-NMFS-2020-0031-DRAFT-37899
NOAA-NMFS-2020-0031-DRAFT-37900
NOAA-NMFS-2020-0031-DRAFT-37901
NOAA-NMFS-2020-0031-DRAFT-37902
NOAA-NMFS-2020-0031-DRAFT-37903
NOAA-NMFS-2020-0031-DRAFT-37904
NOAA-NMFS-2020-0031-DRAFT-37905
NOAA-NMFS-2020-0031-DRAFT-37906
NOAA-NMFS-2020-0031-DRAFT-37907
NOAA-NMFS-2020-0031-DRAFT-37908
NOAA-NMFS-2020-0031-DRAFT-37909
NOAA-NMFS-2020-0031-DRAFT-37910
NOAA-NMFS-2020-0031-DRAFT-37911
NOAA-NMFS-2020-0031-DRAFT-37912
NOAA-NMFS-2020-0031-DRAFT-37913
NOAA-NMFS-2020-0031-DRAFT-37914
NOAA-NMFS-2020-0031-DRAFT-37915
NOAA-NMFS-2020-0031-DRAFT-37916
NOAA-NMFS-2020-0031-DRAFT-37917
NOAA-NMFS-2020-0031-DRAFT-37918
NOAA-NMFS-2020-0031-DRAFT-37919
NOAA-NMFS-2020-0031-DRAFT-37920
NOAA-NMFS-2020-0031-DRAFT-37921

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NOAA-NMFS-2020-0031-DRAFT-32909
NOAA-NMFS-2020-0031-DRAFT-32910
NOAA-NMFS-2020-0031-DRAFT-32911
NOAA-NMFS-2020-0031-DRAFT-32912
NOAA-NMFS-2020-0031-DRAFT-32913
NOAA-NMFS-2020-0031-DRAFT-32914
NOAA-NMFS-2020-0031-DRAFT-32915
NOAA-NMFS-2020-0031-DRAFT-32916
NOAA-NMFS-2020-0031-DRAFT-32917
NOAA-NMFS-2020-0031-DRAFT-32918
NOAA-NMFS-2020-0031-DRAFT-32919
NOAA-NMFS-2020-0031-DRAFT-32920
NOAA-NMFS-2020-0031-DRAFT-32921
NOAA-NMFS-2020-0031-DRAFT-32922
NOAA-NMFS-2020-0031-DRAFT-32923
NOAA-NMFS-2020-0031-DRAFT-32924
NOAA-NMFS-2020-0031-DRAFT-32925
NOAA-NMFS-2020-0031-DRAFT-32926
NOAA-NMFS-2020-0031-DRAFT-32927
NOAA-NMFS-2020-0031-DRAFT-32928
NOAA-NMFS-2020-0031-DRAFT-32929
NOAA-NMFS-2020-0031-DRAFT-32930
NOAA-NMFS-2020-0031-DRAFT-32931
NOAA-NMFS-2020-0031-DRAFT-32932
NOAA-NMFS-2020-0031-DRAFT-32933
NOAA-NMFS-2020-0031-DRAFT-32934
NOAA-NMFS-2020-0031-DRAFT-32935
NOAA-NMFS-2020-0031-DRAFT-32936
NOAA-NMFS-2020-0031-DRAFT-32937
NOAA-NMFS-2020-0031-DRAFT-32938
NOAA-NMFS-2020-0031-DRAFT-32939
NOAA-NMFS-2020-0031-DRAFT-32940
NOAA-NMFS-2020-0031-DRAFT-32941
NOAA-NMFS-2020-0031-DRAFT-32942
NOAA-NMFS-2020-0031-DRAFT-32943
NOAA-NMFS-2020-0031-DRAFT-32944
NOAA-NMFS-2020-0031-DRAFT-32945
NOAA-NMFS-2020-0031-DRAFT-32946
NOAA-NMFS-2020-0031-DRAFT-32947
NOAA-NMFS-2020-0031-DRAFT-32948
NOAA-NMFS-2020-0031-DRAFT-32949

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NOAA-NMFS-2020-0031-DRAFT-37922
NOAA-NMFS-2020-0031-DRAFT-37923
NOAA-NMFS-2020-0031-DRAFT-37924
NOAA-NMFS-2020-0031-DRAFT-37925
NOAA-NMFS-2020-0031-DRAFT-37926
NOAA-NMFS-2020-0031-DRAFT-37927
NOAA-NMFS-2020-0031-DRAFT-37928
NOAA-NMFS-2020-0031-DRAFT-37929
NOAA-NMFS-2020-0031-DRAFT-37930
NOAA-NMFS-2020-0031-DRAFT-37931
NOAA-NMFS-2020-0031-DRAFT-37932
NOAA-NMFS-2020-0031-DRAFT-37933
NOAA-NMFS-2020-0031-DRAFT-37934
NOAA-NMFS-2020-0031-DRAFT-37935
NOAA-NMFS-2020-0031-DRAFT-37936
NOAA-NMFS-2020-0031-DRAFT-37937
NOAA-NMFS-2020-0031-DRAFT-37938
NOAA-NMFS-2020-0031-DRAFT-37939
NOAA-NMFS-2020-0031-DRAFT-37940
NOAA-NMFS-2020-0031-DRAFT-37941
NOAA-NMFS-2020-0031-DRAFT-37942
NOAA-NMFS-2020-0031-DRAFT-37943
NOAA-NMFS-2020-0031-DRAFT-37944
NOAA-NMFS-2020-0031-DRAFT-37945
NOAA-NMFS-2020-0031-DRAFT-37946
NOAA-NMFS-2020-0031-DRAFT-37947
NOAA-NMFS-2020-0031-DRAFT-37948
NOAA-NMFS-2020-0031-DRAFT-37949
NOAA-NMFS-2020-0031-DRAFT-37950
NOAA-NMFS-2020-0031-DRAFT-37951
NOAA-NMFS-2020-0031-DRAFT-37952
NOAA-NMFS-2020-0031-DRAFT-37953
NOAA-NMFS-2020-0031-DRAFT-37954
NOAA-NMFS-2020-0031-DRAFT-37955
NOAA-NMFS-2020-0031-DRAFT-37956
NOAA-NMFS-2020-0031-DRAFT-37957
NOAA-NMFS-2020-0031-DRAFT-37958
NOAA-NMFS-2020-0031-DRAFT-37959
NOAA-NMFS-2020-0031-DRAFT-37960
NOAA-NMFS-2020-0031-DRAFT-37961
NOAA-NMFS-2020-0031-DRAFT-37962

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NOAA-NMFS-2020-0031-DRAFT-32950
NOAA-NMFS-2020-0031-DRAFT-32951
NOAA-NMFS-2020-0031-DRAFT-32952
NOAA-NMFS-2020-0031-DRAFT-32953
NOAA-NMFS-2020-0031-DRAFT-32954
NOAA-NMFS-2020-0031-DRAFT-32955
NOAA-NMFS-2020-0031-DRAFT-32956
NOAA-NMFS-2020-0031-DRAFT-32957
NOAA-NMFS-2020-0031-DRAFT-32958
NOAA-NMFS-2020-0031-DRAFT-32959
NOAA-NMFS-2020-0031-DRAFT-32960
NOAA-NMFS-2020-0031-DRAFT-32961
NOAA-NMFS-2020-0031-DRAFT-32962
NOAA-NMFS-2020-0031-DRAFT-32963
NOAA-NMFS-2020-0031-DRAFT-32964
NOAA-NMFS-2020-0031-DRAFT-32965
NOAA-NMFS-2020-0031-DRAFT-32966
NOAA-NMFS-2020-0031-DRAFT-32967
NOAA-NMFS-2020-0031-DRAFT-32968
NOAA-NMFS-2020-0031-DRAFT-32969
NOAA-NMFS-2020-0031-DRAFT-32970
NOAA-NMFS-2020-0031-DRAFT-32971
NOAA-NMFS-2020-0031-DRAFT-32972
NOAA-NMFS-2020-0031-DRAFT-32973
NOAA-NMFS-2020-0031-DRAFT-32974
NOAA-NMFS-2020-0031-DRAFT-32975
NOAA-NMFS-2020-0031-DRAFT-32976
NOAA-NMFS-2020-0031-DRAFT-32977
NOAA-NMFS-2020-0031-DRAFT-32978
NOAA-NMFS-2020-0031-DRAFT-32979
NOAA-NMFS-2020-0031-DRAFT-32980
NOAA-NMFS-2020-0031-DRAFT-32981
NOAA-NMFS-2020-0031-DRAFT-32982
NOAA-NMFS-2020-0031-DRAFT-32983
NOAA-NMFS-2020-0031-DRAFT-32984
NOAA-NMFS-2020-0031-DRAFT-32985
NOAA-NMFS-2020-0031-DRAFT-32986
NOAA-NMFS-2020-0031-DRAFT-32987
NOAA-NMFS-2020-0031-DRAFT-32988
NOAA-NMFS-2020-0031-DRAFT-32989
NOAA-NMFS-2020-0031-DRAFT-32990

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NOAA-NMFS-2020-0031-DRAFT-37963
NOAA-NMFS-2020-0031-DRAFT-37964
NOAA-NMFS-2020-0031-DRAFT-37965
NOAA-NMFS-2020-0031-DRAFT-37966
NOAA-NMFS-2020-0031-DRAFT-37967
NOAA-NMFS-2020-0031-DRAFT-37968
NOAA-NMFS-2020-0031-DRAFT-37969
NOAA-NMFS-2020-0031-DRAFT-37970
NOAA-NMFS-2020-0031-DRAFT-37971
NOAA-NMFS-2020-0031-DRAFT-37972
NOAA-NMFS-2020-0031-DRAFT-37973
NOAA-NMFS-2020-0031-DRAFT-37974
NOAA-NMFS-2020-0031-DRAFT-37975
NOAA-NMFS-2020-0031-DRAFT-37976
NOAA-NMFS-2020-0031-DRAFT-37977
NOAA-NMFS-2020-0031-DRAFT-37978
NOAA-NMFS-2020-0031-DRAFT-37979
NOAA-NMFS-2020-0031-DRAFT-37980
NOAA-NMFS-2020-0031-DRAFT-37981
NOAA-NMFS-2020-0031-DRAFT-37982
NOAA-NMFS-2020-0031-DRAFT-37983
NOAA-NMFS-2020-0031-DRAFT-37984
NOAA-NMFS-2020-0031-DRAFT-37985
NOAA-NMFS-2020-0031-DRAFT-37986
NOAA-NMFS-2020-0031-DRAFT-37987
NOAA-NMFS-2020-0031-DRAFT-37988
NOAA-NMFS-2020-0031-DRAFT-37989
NOAA-NMFS-2020-0031-DRAFT-37990
NOAA-NMFS-2020-0031-DRAFT-37991
NOAA-NMFS-2020-0031-DRAFT-37992
NOAA-NMFS-2020-0031-DRAFT-37993
NOAA-NMFS-2020-0031-DRAFT-37994
NOAA-NMFS-2020-0031-DRAFT-37995
NOAA-NMFS-2020-0031-DRAFT-37996
NOAA-NMFS-2020-0031-DRAFT-37997
NOAA-NMFS-2020-0031-DRAFT-37998
NOAA-NMFS-2020-0031-DRAFT-37999
NOAA-NMFS-2020-0031-DRAFT-38000
NOAA-NMFS-2020-0031-DRAFT-38001
NOAA-NMFS-2020-0031-DRAFT-38002
NOAA-NMFS-2020-0031-DRAFT-38003

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NOAA-NMFS-2020-0031-DRAFT-32991
NOAA-NMFS-2020-0031-DRAFT-32992
NOAA-NMFS-2020-0031-DRAFT-32993
NOAA-NMFS-2020-0031-DRAFT-32994
NOAA-NMFS-2020-0031-DRAFT-32995
NOAA-NMFS-2020-0031-DRAFT-32996
NOAA-NMFS-2020-0031-DRAFT-32997
NOAA-NMFS-2020-0031-DRAFT-32998
NOAA-NMFS-2020-0031-DRAFT-32999
NOAA-NMFS-2020-0031-DRAFT-33000
NOAA-NMFS-2020-0031-DRAFT-33001
NOAA-NMFS-2020-0031-DRAFT-33002
NOAA-NMFS-2020-0031-DRAFT-33003
NOAA-NMFS-2020-0031-DRAFT-33004
NOAA-NMFS-2020-0031-DRAFT-33005
NOAA-NMFS-2020-0031-DRAFT-33006
NOAA-NMFS-2020-0031-DRAFT-33007
NOAA-NMFS-2020-0031-DRAFT-33008
NOAA-NMFS-2020-0031-DRAFT-33009
NOAA-NMFS-2020-0031-DRAFT-33010
NOAA-NMFS-2020-0031-DRAFT-33011
NOAA-NMFS-2020-0031-DRAFT-33012
NOAA-NMFS-2020-0031-DRAFT-33013
NOAA-NMFS-2020-0031-DRAFT-33014
NOAA-NMFS-2020-0031-DRAFT-33015
NOAA-NMFS-2020-0031-DRAFT-33016
NOAA-NMFS-2020-0031-DRAFT-33017
NOAA-NMFS-2020-0031-DRAFT-33018
NOAA-NMFS-2020-0031-DRAFT-33019
NOAA-NMFS-2020-0031-DRAFT-33020
NOAA-NMFS-2020-0031-DRAFT-33021
NOAA-NMFS-2020-0031-DRAFT-33022
NOAA-NMFS-2020-0031-DRAFT-33023
NOAA-NMFS-2020-0031-DRAFT-33024
NOAA-NMFS-2020-0031-DRAFT-33025
NOAA-NMFS-2020-0031-DRAFT-33026
NOAA-NMFS-2020-0031-DRAFT-33027
NOAA-NMFS-2020-0031-DRAFT-33028
NOAA-NMFS-2020-0031-DRAFT-33029
NOAA-NMFS-2020-0031-DRAFT-33030
NOAA-NMFS-2020-0031-DRAFT-33031

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NOAA-NMFS-2020-0031-DRAFT-38004
NOAA-NMFS-2020-0031-DRAFT-38005
NOAA-NMFS-2020-0031-DRAFT-38006
NOAA-NMFS-2020-0031-DRAFT-38007
NOAA-NMFS-2020-0031-DRAFT-38008
NOAA-NMFS-2020-0031-DRAFT-38009
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NOAA-NMFS-2020-0031-DRAFT-38039
NOAA-NMFS-2020-0031-DRAFT-38040
NOAA-NMFS-2020-0031-DRAFT-38041
NOAA-NMFS-2020-0031-DRAFT-38042
NOAA-NMFS-2020-0031-DRAFT-38043
NOAA-NMFS-2020-0031-DRAFT-38044

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NOAA-NMFS-2020-0031-DRAFT-33032
NOAA-NMFS-2020-0031-DRAFT-33033
NOAA-NMFS-2020-0031-DRAFT-33034
NOAA-NMFS-2020-0031-DRAFT-33035
NOAA-NMFS-2020-0031-DRAFT-33036
NOAA-NMFS-2020-0031-DRAFT-33037
NOAA-NMFS-2020-0031-DRAFT-33038
NOAA-NMFS-2020-0031-DRAFT-33039
NOAA-NMFS-2020-0031-DRAFT-33040
NOAA-NMFS-2020-0031-DRAFT-33041
NOAA-NMFS-2020-0031-DRAFT-33042
NOAA-NMFS-2020-0031-DRAFT-33043
NOAA-NMFS-2020-0031-DRAFT-33044
NOAA-NMFS-2020-0031-DRAFT-33045
NOAA-NMFS-2020-0031-DRAFT-33046
NOAA-NMFS-2020-0031-DRAFT-33047
NOAA-NMFS-2020-0031-DRAFT-33048
NOAA-NMFS-2020-0031-DRAFT-33049
NOAA-NMFS-2020-0031-DRAFT-33050
NOAA-NMFS-2020-0031-DRAFT-33051
NOAA-NMFS-2020-0031-DRAFT-33052
NOAA-NMFS-2020-0031-DRAFT-33053
NOAA-NMFS-2020-0031-DRAFT-33054
NOAA-NMFS-2020-0031-DRAFT-33055
NOAA-NMFS-2020-0031-DRAFT-33056
NOAA-NMFS-2020-0031-DRAFT-33057
NOAA-NMFS-2020-0031-DRAFT-33058
NOAA-NMFS-2020-0031-DRAFT-33059
NOAA-NMFS-2020-0031-DRAFT-33060
NOAA-NMFS-2020-0031-DRAFT-33061
NOAA-NMFS-2020-0031-DRAFT-33062
NOAA-NMFS-2020-0031-DRAFT-33063
NOAA-NMFS-2020-0031-DRAFT-33064
NOAA-NMFS-2020-0031-DRAFT-33065
NOAA-NMFS-2020-0031-DRAFT-33066
NOAA-NMFS-2020-0031-DRAFT-33067
NOAA-NMFS-2020-0031-DRAFT-33068
NOAA-NMFS-2020-0031-DRAFT-33069
NOAA-NMFS-2020-0031-DRAFT-33070
NOAA-NMFS-2020-0031-DRAFT-33071
NOAA-NMFS-2020-0031-DRAFT-33072

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NOAA-NMFS-2020-0031-DRAFT-38045
NOAA-NMFS-2020-0031-DRAFT-38046
NOAA-NMFS-2020-0031-DRAFT-38047
NOAA-NMFS-2020-0031-DRAFT-38048
NOAA-NMFS-2020-0031-DRAFT-38049
NOAA-NMFS-2020-0031-DRAFT-38050
NOAA-NMFS-2020-0031-DRAFT-38051
NOAA-NMFS-2020-0031-DRAFT-38052
NOAA-NMFS-2020-0031-DRAFT-38053
NOAA-NMFS-2020-0031-DRAFT-38054
NOAA-NMFS-2020-0031-DRAFT-38055
NOAA-NMFS-2020-0031-DRAFT-38056
NOAA-NMFS-2020-0031-DRAFT-38057
NOAA-NMFS-2020-0031-DRAFT-38058
NOAA-NMFS-2020-0031-DRAFT-38059
NOAA-NMFS-2020-0031-DRAFT-38060
NOAA-NMFS-2020-0031-DRAFT-38061
NOAA-NMFS-2020-0031-DRAFT-38062
NOAA-NMFS-2020-0031-DRAFT-38063
NOAA-NMFS-2020-0031-DRAFT-38064
NOAA-NMFS-2020-0031-DRAFT-38065
NOAA-NMFS-2020-0031-DRAFT-38066
NOAA-NMFS-2020-0031-DRAFT-38067
NOAA-NMFS-2020-0031-DRAFT-38068
NOAA-NMFS-2020-0031-DRAFT-38069
NOAA-NMFS-2020-0031-DRAFT-38070
NOAA-NMFS-2020-0031-DRAFT-38071
NOAA-NMFS-2020-0031-DRAFT-38072
NOAA-NMFS-2020-0031-DRAFT-38073
NOAA-NMFS-2020-0031-DRAFT-38074
NOAA-NMFS-2020-0031-DRAFT-38075
NOAA-NMFS-2020-0031-DRAFT-38076
NOAA-NMFS-2020-0031-DRAFT-38077
NOAA-NMFS-2020-0031-DRAFT-38078
NOAA-NMFS-2020-0031-DRAFT-38079
NOAA-NMFS-2020-0031-DRAFT-38080
NOAA-NMFS-2020-0031-DRAFT-38081
NOAA-NMFS-2020-0031-DRAFT-38082
NOAA-NMFS-2020-0031-DRAFT-38083
NOAA-NMFS-2020-0031-DRAFT-38084
NOAA-NMFS-2020-0031-DRAFT-38085

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NOAA-NMFS-2020-0031-DRAFT-33073
NOAA-NMFS-2020-0031-DRAFT-33074
NOAA-NMFS-2020-0031-DRAFT-33075
NOAA-NMFS-2020-0031-DRAFT-33076
NOAA-NMFS-2020-0031-DRAFT-33077
NOAA-NMFS-2020-0031-DRAFT-33078
NOAA-NMFS-2020-0031-DRAFT-33079
NOAA-NMFS-2020-0031-DRAFT-33080
NOAA-NMFS-2020-0031-DRAFT-33081
NOAA-NMFS-2020-0031-DRAFT-33082
NOAA-NMFS-2020-0031-DRAFT-33083
NOAA-NMFS-2020-0031-DRAFT-33084
NOAA-NMFS-2020-0031-DRAFT-33085
NOAA-NMFS-2020-0031-DRAFT-33086
NOAA-NMFS-2020-0031-DRAFT-33087
NOAA-NMFS-2020-0031-DRAFT-33088
NOAA-NMFS-2020-0031-DRAFT-33089
NOAA-NMFS-2020-0031-DRAFT-33090
NOAA-NMFS-2020-0031-DRAFT-33091
NOAA-NMFS-2020-0031-DRAFT-33092
NOAA-NMFS-2020-0031-DRAFT-33093
NOAA-NMFS-2020-0031-DRAFT-33094
NOAA-NMFS-2020-0031-DRAFT-33095
NOAA-NMFS-2020-0031-DRAFT-33096
NOAA-NMFS-2020-0031-DRAFT-33097
NOAA-NMFS-2020-0031-DRAFT-33098
NOAA-NMFS-2020-0031-DRAFT-33099
NOAA-NMFS-2020-0031-DRAFT-33100
NOAA-NMFS-2020-0031-DRAFT-33101
NOAA-NMFS-2020-0031-DRAFT-33102
NOAA-NMFS-2020-0031-DRAFT-33103
NOAA-NMFS-2020-0031-DRAFT-33104
NOAA-NMFS-2020-0031-DRAFT-33105
NOAA-NMFS-2020-0031-DRAFT-33106
NOAA-NMFS-2020-0031-DRAFT-33107
NOAA-NMFS-2020-0031-DRAFT-33108
NOAA-NMFS-2020-0031-DRAFT-33109
NOAA-NMFS-2020-0031-DRAFT-33110
NOAA-NMFS-2020-0031-DRAFT-33111
NOAA-NMFS-2020-0031-DRAFT-33112
NOAA-NMFS-2020-0031-DRAFT-33113

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NOAA-NMFS-2020-0031-DRAFT-38086
NOAA-NMFS-2020-0031-DRAFT-38087
NOAA-NMFS-2020-0031-DRAFT-38088
NOAA-NMFS-2020-0031-DRAFT-38089
NOAA-NMFS-2020-0031-DRAFT-38090
NOAA-NMFS-2020-0031-DRAFT-38091
NOAA-NMFS-2020-0031-DRAFT-38092
NOAA-NMFS-2020-0031-DRAFT-38093
NOAA-NMFS-2020-0031-DRAFT-38094
NOAA-NMFS-2020-0031-DRAFT-38095
NOAA-NMFS-2020-0031-DRAFT-38096
NOAA-NMFS-2020-0031-DRAFT-38097
NOAA-NMFS-2020-0031-DRAFT-38098
NOAA-NMFS-2020-0031-DRAFT-38099
NOAA-NMFS-2020-0031-DRAFT-38100
NOAA-NMFS-2020-0031-DRAFT-38102
NOAA-NMFS-2020-0031-DRAFT-38103
NOAA-NMFS-2020-0031-DRAFT-38104
NOAA-NMFS-2020-0031-DRAFT-38105
NOAA-NMFS-2020-0031-DRAFT-38106
NOAA-NMFS-2020-0031-DRAFT-38107
NOAA-NMFS-2020-0031-DRAFT-38108
NOAA-NMFS-2020-0031-DRAFT-38109
NOAA-NMFS-2020-0031-DRAFT-38110
NOAA-NMFS-2020-0031-DRAFT-38111
NOAA-NMFS-2020-0031-DRAFT-38112
NOAA-NMFS-2020-0031-DRAFT-38113
NOAA-NMFS-2020-0031-DRAFT-38114
NOAA-NMFS-2020-0031-DRAFT-38115
NOAA-NMFS-2020-0031-DRAFT-38116
NOAA-NMFS-2020-0031-DRAFT-38117
NOAA-NMFS-2020-0031-DRAFT-38118
NOAA-NMFS-2020-0031-DRAFT-38119
NOAA-NMFS-2020-0031-DRAFT-38120
NOAA-NMFS-2020-0031-DRAFT-38121
NOAA-NMFS-2020-0031-DRAFT-38122
NOAA-NMFS-2020-0031-DRAFT-38123
NOAA-NMFS-2020-0031-DRAFT-38124
NOAA-NMFS-2020-0031-DRAFT-38125
NOAA-NMFS-2020-0031-DRAFT-38126
NOAA-NMFS-2020-0031-DRAFT-38127

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NOAA-NMFS-2020-0031-DRAFT-33114
NOAA-NMFS-2020-0031-DRAFT-33115
NOAA-NMFS-2020-0031-DRAFT-33116
NOAA-NMFS-2020-0031-DRAFT-33117
NOAA-NMFS-2020-0031-DRAFT-33118
NOAA-NMFS-2020-0031-DRAFT-33119
NOAA-NMFS-2020-0031-DRAFT-33120
NOAA-NMFS-2020-0031-DRAFT-33121
NOAA-NMFS-2020-0031-DRAFT-33122
NOAA-NMFS-2020-0031-DRAFT-33123
NOAA-NMFS-2020-0031-DRAFT-33124
NOAA-NMFS-2020-0031-DRAFT-33125
NOAA-NMFS-2020-0031-DRAFT-33126
NOAA-NMFS-2020-0031-DRAFT-33127
NOAA-NMFS-2020-0031-DRAFT-33128
NOAA-NMFS-2020-0031-DRAFT-33129
NOAA-NMFS-2020-0031-DRAFT-33130
NOAA-NMFS-2020-0031-DRAFT-33131
NOAA-NMFS-2020-0031-DRAFT-33132
NOAA-NMFS-2020-0031-DRAFT-33133
NOAA-NMFS-2020-0031-DRAFT-33134
NOAA-NMFS-2020-0031-DRAFT-33135
NOAA-NMFS-2020-0031-DRAFT-33136
NOAA-NMFS-2020-0031-DRAFT-33137
NOAA-NMFS-2020-0031-DRAFT-33138
NOAA-NMFS-2020-0031-DRAFT-33139
NOAA-NMFS-2020-0031-DRAFT-33140
NOAA-NMFS-2020-0031-DRAFT-33141
NOAA-NMFS-2020-0031-DRAFT-33142
NOAA-NMFS-2020-0031-DRAFT-33143
NOAA-NMFS-2020-0031-DRAFT-33144
NOAA-NMFS-2020-0031-DRAFT-33145
NOAA-NMFS-2020-0031-DRAFT-33146
NOAA-NMFS-2020-0031-DRAFT-33147
NOAA-NMFS-2020-0031-DRAFT-33148
NOAA-NMFS-2020-0031-DRAFT-33149
NOAA-NMFS-2020-0031-DRAFT-33150
NOAA-NMFS-2020-0031-DRAFT-33151
NOAA-NMFS-2020-0031-DRAFT-33152
NOAA-NMFS-2020-0031-DRAFT-33153
NOAA-NMFS-2020-0031-DRAFT-33154

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NOAA-NMFS-2020-0031-DRAFT-38128
NOAA-NMFS-2020-0031-DRAFT-38129
NOAA-NMFS-2020-0031-DRAFT-38130
NOAA-NMFS-2020-0031-DRAFT-38131
NOAA-NMFS-2020-0031-DRAFT-38132
NOAA-NMFS-2020-0031-DRAFT-38133
NOAA-NMFS-2020-0031-DRAFT-38134
NOAA-NMFS-2020-0031-DRAFT-38135
NOAA-NMFS-2020-0031-DRAFT-38136
NOAA-NMFS-2020-0031-DRAFT-38137
NOAA-NMFS-2020-0031-DRAFT-38138
NOAA-NMFS-2020-0031-DRAFT-38139
NOAA-NMFS-2020-0031-DRAFT-38140
NOAA-NMFS-2020-0031-DRAFT-38141
NOAA-NMFS-2020-0031-DRAFT-38142
NOAA-NMFS-2020-0031-DRAFT-38143
NOAA-NMFS-2020-0031-DRAFT-38144
NOAA-NMFS-2020-0031-DRAFT-38145
NOAA-NMFS-2020-0031-DRAFT-38146
NOAA-NMFS-2020-0031-DRAFT-38147
NOAA-NMFS-2020-0031-DRAFT-38148
NOAA-NMFS-2020-0031-DRAFT-38149
NOAA-NMFS-2020-0031-DRAFT-38150
NOAA-NMFS-2020-0031-DRAFT-38151
NOAA-NMFS-2020-0031-DRAFT-38152
NOAA-NMFS-2020-0031-DRAFT-38153
NOAA-NMFS-2020-0031-DRAFT-38154
NOAA-NMFS-2020-0031-DRAFT-38155
NOAA-NMFS-2020-0031-DRAFT-38156
NOAA-NMFS-2020-0031-DRAFT-38157
NOAA-NMFS-2020-0031-DRAFT-38158
NOAA-NMFS-2020-0031-DRAFT-38159
NOAA-NMFS-2020-0031-DRAFT-38160
NOAA-NMFS-2020-0031-DRAFT-38161
NOAA-NMFS-2020-0031-DRAFT-38162
NOAA-NMFS-2020-0031-DRAFT-38163
NOAA-NMFS-2020-0031-DRAFT-38164
NOAA-NMFS-2020-0031-DRAFT-38166
NOAA-NMFS-2020-0031-DRAFT-38167
NOAA-NMFS-2020-0031-DRAFT-38168
NOAA-NMFS-2020-0031-DRAFT-38169

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NOAA-NMFS-2020-0031-DRAFT-33155
NOAA-NMFS-2020-0031-DRAFT-33156
NOAA-NMFS-2020-0031-DRAFT-33157
NOAA-NMFS-2020-0031-DRAFT-33158
NOAA-NMFS-2020-0031-DRAFT-33159
NOAA-NMFS-2020-0031-DRAFT-33160
NOAA-NMFS-2020-0031-DRAFT-33161
NOAA-NMFS-2020-0031-DRAFT-33162
NOAA-NMFS-2020-0031-DRAFT-33163
NOAA-NMFS-2020-0031-DRAFT-33164
NOAA-NMFS-2020-0031-DRAFT-33165
NOAA-NMFS-2020-0031-DRAFT-33166
NOAA-NMFS-2020-0031-DRAFT-33167
NOAA-NMFS-2020-0031-DRAFT-33168
NOAA-NMFS-2020-0031-DRAFT-33169
NOAA-NMFS-2020-0031-DRAFT-33170
NOAA-NMFS-2020-0031-DRAFT-33171
NOAA-NMFS-2020-0031-DRAFT-33172
NOAA-NMFS-2020-0031-DRAFT-33173
NOAA-NMFS-2020-0031-DRAFT-33174
NOAA-NMFS-2020-0031-DRAFT-33175
NOAA-NMFS-2020-0031-DRAFT-33176
NOAA-NMFS-2020-0031-DRAFT-33177
NOAA-NMFS-2020-0031-DRAFT-33178
NOAA-NMFS-2020-0031-DRAFT-33179
NOAA-NMFS-2020-0031-DRAFT-33180
NOAA-NMFS-2020-0031-DRAFT-33181
NOAA-NMFS-2020-0031-DRAFT-33182
NOAA-NMFS-2020-0031-DRAFT-33183
NOAA-NMFS-2020-0031-DRAFT-33184
NOAA-NMFS-2020-0031-DRAFT-33185
NOAA-NMFS-2020-0031-DRAFT-33186
NOAA-NMFS-2020-0031-DRAFT-33187
NOAA-NMFS-2020-0031-DRAFT-33188
NOAA-NMFS-2020-0031-DRAFT-33189
NOAA-NMFS-2020-0031-DRAFT-33190
NOAA-NMFS-2020-0031-DRAFT-33191
NOAA-NMFS-2020-0031-DRAFT-33192
NOAA-NMFS-2020-0031-DRAFT-33193
NOAA-NMFS-2020-0031-DRAFT-33194
NOAA-NMFS-2020-0031-DRAFT-33195

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NOAA-NMFS-2020-0031-DRAFT-38170
NOAA-NMFS-2020-0031-DRAFT-38171
NOAA-NMFS-2020-0031-DRAFT-38172
NOAA-NMFS-2020-0031-DRAFT-38173
NOAA-NMFS-2020-0031-DRAFT-38174
NOAA-NMFS-2020-0031-DRAFT-38175
NOAA-NMFS-2020-0031-DRAFT-38176
NOAA-NMFS-2020-0031-DRAFT-38177
NOAA-NMFS-2020-0031-DRAFT-38178
NOAA-NMFS-2020-0031-DRAFT-38179
NOAA-NMFS-2020-0031-DRAFT-38180
NOAA-NMFS-2020-0031-DRAFT-38181
NOAA-NMFS-2020-0031-DRAFT-38182
NOAA-NMFS-2020-0031-DRAFT-38183
NOAA-NMFS-2020-0031-DRAFT-38184
NOAA-NMFS-2020-0031-DRAFT-38185
NOAA-NMFS-2020-0031-DRAFT-38186
NOAA-NMFS-2020-0031-DRAFT-38187
NOAA-NMFS-2020-0031-DRAFT-38188
NOAA-NMFS-2020-0031-DRAFT-38189
NOAA-NMFS-2020-0031-DRAFT-38190
NOAA-NMFS-2020-0031-DRAFT-38191
NOAA-NMFS-2020-0031-DRAFT-38192
NOAA-NMFS-2020-0031-DRAFT-38193
NOAA-NMFS-2020-0031-DRAFT-38194
NOAA-NMFS-2020-0031-DRAFT-38195
NOAA-NMFS-2020-0031-DRAFT-38196
NOAA-NMFS-2020-0031-DRAFT-38197
NOAA-NMFS-2020-0031-DRAFT-38198
NOAA-NMFS-2020-0031-DRAFT-38199
NOAA-NMFS-2020-0031-DRAFT-38200
NOAA-NMFS-2020-0031-DRAFT-38201
NOAA-NMFS-2020-0031-DRAFT-38202
NOAA-NMFS-2020-0031-DRAFT-38203
NOAA-NMFS-2020-0031-DRAFT-38204
NOAA-NMFS-2020-0031-DRAFT-38205
NOAA-NMFS-2020-0031-DRAFT-38206
NOAA-NMFS-2020-0031-DRAFT-38207
NOAA-NMFS-2020-0031-DRAFT-38208
NOAA-NMFS-2020-0031-DRAFT-38209
NOAA-NMFS-2020-0031-DRAFT-38210

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NOAA-NMFS-2020-0031-DRAFT-33196
NOAA-NMFS-2020-0031-DRAFT-33197
NOAA-NMFS-2020-0031-DRAFT-33198
NOAA-NMFS-2020-0031-DRAFT-33199
NOAA-NMFS-2020-0031-DRAFT-33200
NOAA-NMFS-2020-0031-DRAFT-33201
NOAA-NMFS-2020-0031-DRAFT-33202
NOAA-NMFS-2020-0031-DRAFT-33203
NOAA-NMFS-2020-0031-DRAFT-33204
NOAA-NMFS-2020-0031-DRAFT-33205
NOAA-NMFS-2020-0031-DRAFT-33206
NOAA-NMFS-2020-0031-DRAFT-33207
NOAA-NMFS-2020-0031-DRAFT-33208
NOAA-NMFS-2020-0031-DRAFT-33209
NOAA-NMFS-2020-0031-DRAFT-33210
NOAA-NMFS-2020-0031-DRAFT-33211
NOAA-NMFS-2020-0031-DRAFT-33212
NOAA-NMFS-2020-0031-DRAFT-33213
NOAA-NMFS-2020-0031-DRAFT-33214
NOAA-NMFS-2020-0031-DRAFT-33215
NOAA-NMFS-2020-0031-DRAFT-33216
NOAA-NMFS-2020-0031-DRAFT-33217
NOAA-NMFS-2020-0031-DRAFT-33218
NOAA-NMFS-2020-0031-DRAFT-33219
NOAA-NMFS-2020-0031-DRAFT-33220
NOAA-NMFS-2020-0031-DRAFT-33221
NOAA-NMFS-2020-0031-DRAFT-33222
NOAA-NMFS-2020-0031-DRAFT-33223
NOAA-NMFS-2020-0031-DRAFT-33224
NOAA-NMFS-2020-0031-DRAFT-33225
NOAA-NMFS-2020-0031-DRAFT-33226
NOAA-NMFS-2020-0031-DRAFT-33227
NOAA-NMFS-2020-0031-DRAFT-33228
NOAA-NMFS-2020-0031-DRAFT-33229
NOAA-NMFS-2020-0031-DRAFT-33230
NOAA-NMFS-2020-0031-DRAFT-33231
NOAA-NMFS-2020-0031-DRAFT-33232
NOAA-NMFS-2020-0031-DRAFT-33233
NOAA-NMFS-2020-0031-DRAFT-33234
NOAA-NMFS-2020-0031-DRAFT-33235
NOAA-NMFS-2020-0031-DRAFT-33236

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NOAA-NMFS-2020-0031-DRAFT-38211
NOAA-NMFS-2020-0031-DRAFT-38212
NOAA-NMFS-2020-0031-DRAFT-38213
NOAA-NMFS-2020-0031-DRAFT-38214
NOAA-NMFS-2020-0031-DRAFT-38215
NOAA-NMFS-2020-0031-DRAFT-38216
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NOAA-NMFS-2020-0031-DRAFT-38218
NOAA-NMFS-2020-0031-DRAFT-38219
NOAA-NMFS-2020-0031-DRAFT-38220
NOAA-NMFS-2020-0031-DRAFT-38221
NOAA-NMFS-2020-0031-DRAFT-38222
NOAA-NMFS-2020-0031-DRAFT-38223
NOAA-NMFS-2020-0031-DRAFT-38224
NOAA-NMFS-2020-0031-DRAFT-38225
NOAA-NMFS-2020-0031-DRAFT-38226
NOAA-NMFS-2020-0031-DRAFT-38227
NOAA-NMFS-2020-0031-DRAFT-38228
NOAA-NMFS-2020-0031-DRAFT-38229
NOAA-NMFS-2020-0031-DRAFT-38230
NOAA-NMFS-2020-0031-DRAFT-38231
NOAA-NMFS-2020-0031-DRAFT-38232
NOAA-NMFS-2020-0031-DRAFT-38233
NOAA-NMFS-2020-0031-DRAFT-38234
NOAA-NMFS-2020-0031-DRAFT-38235
NOAA-NMFS-2020-0031-DRAFT-38236
NOAA-NMFS-2020-0031-DRAFT-38237
NOAA-NMFS-2020-0031-DRAFT-38238
NOAA-NMFS-2020-0031-DRAFT-38239
NOAA-NMFS-2020-0031-DRAFT-38240
NOAA-NMFS-2020-0031-DRAFT-38241
NOAA-NMFS-2020-0031-DRAFT-38242
NOAA-NMFS-2020-0031-DRAFT-38243
NOAA-NMFS-2020-0031-DRAFT-38244
NOAA-NMFS-2020-0031-DRAFT-38245
NOAA-NMFS-2020-0031-DRAFT-38246
NOAA-NMFS-2020-0031-DRAFT-38247
NOAA-NMFS-2020-0031-DRAFT-38248
NOAA-NMFS-2020-0031-DRAFT-38249
NOAA-NMFS-2020-0031-DRAFT-38250
NOAA-NMFS-2020-0031-DRAFT-38251

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NOAA-NMFS-2020-0031-DRAFT-33237
NOAA-NMFS-2020-0031-DRAFT-33238
NOAA-NMFS-2020-0031-DRAFT-33239
NOAA-NMFS-2020-0031-DRAFT-33240
NOAA-NMFS-2020-0031-DRAFT-33241
NOAA-NMFS-2020-0031-DRAFT-33242
NOAA-NMFS-2020-0031-DRAFT-33243
NOAA-NMFS-2020-0031-DRAFT-33244
NOAA-NMFS-2020-0031-DRAFT-33245
NOAA-NMFS-2020-0031-DRAFT-33246
NOAA-NMFS-2020-0031-DRAFT-33247
NOAA-NMFS-2020-0031-DRAFT-33248
NOAA-NMFS-2020-0031-DRAFT-33249
NOAA-NMFS-2020-0031-DRAFT-33250
NOAA-NMFS-2020-0031-DRAFT-33251
NOAA-NMFS-2020-0031-DRAFT-33252
NOAA-NMFS-2020-0031-DRAFT-33253
NOAA-NMFS-2020-0031-DRAFT-33254
NOAA-NMFS-2020-0031-DRAFT-33255
NOAA-NMFS-2020-0031-DRAFT-33256
NOAA-NMFS-2020-0031-DRAFT-33257
NOAA-NMFS-2020-0031-DRAFT-33258
NOAA-NMFS-2020-0031-DRAFT-33259
NOAA-NMFS-2020-0031-DRAFT-33260
NOAA-NMFS-2020-0031-DRAFT-33261
NOAA-NMFS-2020-0031-DRAFT-33262
NOAA-NMFS-2020-0031-DRAFT-33263
NOAA-NMFS-2020-0031-DRAFT-33264
NOAA-NMFS-2020-0031-DRAFT-33265
NOAA-NMFS-2020-0031-DRAFT-33266
NOAA-NMFS-2020-0031-DRAFT-33267
NOAA-NMFS-2020-0031-DRAFT-33268
NOAA-NMFS-2020-0031-DRAFT-33269
NOAA-NMFS-2020-0031-DRAFT-33270
NOAA-NMFS-2020-0031-DRAFT-33271
NOAA-NMFS-2020-0031-DRAFT-33272
NOAA-NMFS-2020-0031-DRAFT-33273
NOAA-NMFS-2020-0031-DRAFT-33274
NOAA-NMFS-2020-0031-DRAFT-33275
NOAA-NMFS-2020-0031-DRAFT-33276
NOAA-NMFS-2020-0031-DRAFT-33277

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NOAA-NMFS-2020-0031-DRAFT-38252
NOAA-NMFS-2020-0031-DRAFT-38253
NOAA-NMFS-2020-0031-DRAFT-38254
NOAA-NMFS-2020-0031-DRAFT-38255
NOAA-NMFS-2020-0031-DRAFT-38256
NOAA-NMFS-2020-0031-DRAFT-38257
NOAA-NMFS-2020-0031-DRAFT-38258
NOAA-NMFS-2020-0031-DRAFT-38259
NOAA-NMFS-2020-0031-DRAFT-38260
NOAA-NMFS-2020-0031-DRAFT-38261
NOAA-NMFS-2020-0031-DRAFT-38262
NOAA-NMFS-2020-0031-DRAFT-38263
NOAA-NMFS-2020-0031-DRAFT-38264
NOAA-NMFS-2020-0031-DRAFT-38265
NOAA-NMFS-2020-0031-DRAFT-38266
NOAA-NMFS-2020-0031-DRAFT-38267
NOAA-NMFS-2020-0031-DRAFT-38268
NOAA-NMFS-2020-0031-DRAFT-38269
NOAA-NMFS-2020-0031-DRAFT-38270
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NOAA-NMFS-2020-0031-DRAFT-38291
NOAA-NMFS-2020-0031-DRAFT-38292

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NOAA-NMFS-2020-0031-DRAFT-33278
NOAA-NMFS-2020-0031-DRAFT-33279
NOAA-NMFS-2020-0031-DRAFT-33280
NOAA-NMFS-2020-0031-DRAFT-33281
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NOAA-NMFS-2020-0031-DRAFT-33286
NOAA-NMFS-2020-0031-DRAFT-33287
NOAA-NMFS-2020-0031-DRAFT-33288
NOAA-NMFS-2020-0031-DRAFT-33289
NOAA-NMFS-2020-0031-DRAFT-33290
NOAA-NMFS-2020-0031-DRAFT-33291
NOAA-NMFS-2020-0031-DRAFT-33292
NOAA-NMFS-2020-0031-DRAFT-33293
NOAA-NMFS-2020-0031-DRAFT-33294
NOAA-NMFS-2020-0031-DRAFT-33295
NOAA-NMFS-2020-0031-DRAFT-33296
NOAA-NMFS-2020-0031-DRAFT-33297
NOAA-NMFS-2020-0031-DRAFT-33298
NOAA-NMFS-2020-0031-DRAFT-33299
NOAA-NMFS-2020-0031-DRAFT-33300
NOAA-NMFS-2020-0031-DRAFT-33301
NOAA-NMFS-2020-0031-DRAFT-33302
NOAA-NMFS-2020-0031-DRAFT-33303
NOAA-NMFS-2020-0031-DRAFT-33304
NOAA-NMFS-2020-0031-DRAFT-33305
NOAA-NMFS-2020-0031-DRAFT-33306
NOAA-NMFS-2020-0031-DRAFT-33307
NOAA-NMFS-2020-0031-DRAFT-33308
NOAA-NMFS-2020-0031-DRAFT-33309
NOAA-NMFS-2020-0031-DRAFT-33310
NOAA-NMFS-2020-0031-DRAFT-33311
NOAA-NMFS-2020-0031-DRAFT-33312
NOAA-NMFS-2020-0031-DRAFT-33313
NOAA-NMFS-2020-0031-DRAFT-33314
NOAA-NMFS-2020-0031-DRAFT-33315
NOAA-NMFS-2020-0031-DRAFT-33316
NOAA-NMFS-2020-0031-DRAFT-33317
NOAA-NMFS-2020-0031-DRAFT-33318

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NOAA-NMFS-2020-0031-DRAFT-38293
NOAA-NMFS-2020-0031-DRAFT-38294
NOAA-NMFS-2020-0031-DRAFT-38295
NOAA-NMFS-2020-0031-DRAFT-38296
NOAA-NMFS-2020-0031-DRAFT-38297
NOAA-NMFS-2020-0031-DRAFT-38298
NOAA-NMFS-2020-0031-DRAFT-38299
NOAA-NMFS-2020-0031-DRAFT-38300
NOAA-NMFS-2020-0031-DRAFT-38301
NOAA-NMFS-2020-0031-DRAFT-38302
NOAA-NMFS-2020-0031-DRAFT-38303
NOAA-NMFS-2020-0031-DRAFT-38304
NOAA-NMFS-2020-0031-DRAFT-38305
NOAA-NMFS-2020-0031-DRAFT-38306
NOAA-NMFS-2020-0031-DRAFT-38307
NOAA-NMFS-2020-0031-DRAFT-38308
NOAA-NMFS-2020-0031-DRAFT-38309
NOAA-NMFS-2020-0031-DRAFT-38310
NOAA-NMFS-2020-0031-DRAFT-38311
NOAA-NMFS-2020-0031-DRAFT-38312
NOAA-NMFS-2020-0031-DRAFT-38313
NOAA-NMFS-2020-0031-DRAFT-38314
NOAA-NMFS-2020-0031-DRAFT-38315
NOAA-NMFS-2020-0031-DRAFT-38316
NOAA-NMFS-2020-0031-DRAFT-38317
NOAA-NMFS-2020-0031-DRAFT-38318
NOAA-NMFS-2020-0031-DRAFT-38319
NOAA-NMFS-2020-0031-DRAFT-38320
NOAA-NMFS-2020-0031-DRAFT-38321
NOAA-NMFS-2020-0031-DRAFT-38322
NOAA-NMFS-2020-0031-DRAFT-38323
NOAA-NMFS-2020-0031-DRAFT-38324
NOAA-NMFS-2020-0031-DRAFT-38325
NOAA-NMFS-2020-0031-DRAFT-38326
NOAA-NMFS-2020-0031-DRAFT-38327
NOAA-NMFS-2020-0031-DRAFT-38328
NOAA-NMFS-2020-0031-DRAFT-38329
NOAA-NMFS-2020-0031-DRAFT-38330
NOAA-NMFS-2020-0031-DRAFT-38331
NOAA-NMFS-2020-0031-DRAFT-38332
NOAA-NMFS-2020-0031-DRAFT-38333

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NOAA-NMFS-2020-0031-DRAFT-33319
NOAA-NMFS-2020-0031-DRAFT-33320
NOAA-NMFS-2020-0031-DRAFT-33321
NOAA-NMFS-2020-0031-DRAFT-33322
NOAA-NMFS-2020-0031-DRAFT-33323
NOAA-NMFS-2020-0031-DRAFT-33324
NOAA-NMFS-2020-0031-DRAFT-33325
NOAA-NMFS-2020-0031-DRAFT-33326
NOAA-NMFS-2020-0031-DRAFT-33327
NOAA-NMFS-2020-0031-DRAFT-33328
NOAA-NMFS-2020-0031-DRAFT-33329
NOAA-NMFS-2020-0031-DRAFT-33330
NOAA-NMFS-2020-0031-DRAFT-33331
NOAA-NMFS-2020-0031-DRAFT-33332
NOAA-NMFS-2020-0031-DRAFT-33333
NOAA-NMFS-2020-0031-DRAFT-33334
NOAA-NMFS-2020-0031-DRAFT-33335
NOAA-NMFS-2020-0031-DRAFT-33336
NOAA-NMFS-2020-0031-DRAFT-33337
NOAA-NMFS-2020-0031-DRAFT-33338
NOAA-NMFS-2020-0031-DRAFT-33339
NOAA-NMFS-2020-0031-DRAFT-33340
NOAA-NMFS-2020-0031-DRAFT-33341
NOAA-NMFS-2020-0031-DRAFT-33342
NOAA-NMFS-2020-0031-DRAFT-33343
NOAA-NMFS-2020-0031-DRAFT-33344
NOAA-NMFS-2020-0031-DRAFT-33345
NOAA-NMFS-2020-0031-DRAFT-33346
NOAA-NMFS-2020-0031-DRAFT-33347
NOAA-NMFS-2020-0031-DRAFT-33348
NOAA-NMFS-2020-0031-DRAFT-33349
NOAA-NMFS-2020-0031-DRAFT-33350
NOAA-NMFS-2020-0031-DRAFT-33351
NOAA-NMFS-2020-0031-DRAFT-33352
NOAA-NMFS-2020-0031-DRAFT-33353
NOAA-NMFS-2020-0031-DRAFT-33354
NOAA-NMFS-2020-0031-DRAFT-33355
NOAA-NMFS-2020-0031-DRAFT-33356
NOAA-NMFS-2020-0031-DRAFT-33357
NOAA-NMFS-2020-0031-DRAFT-33358
NOAA-NMFS-2020-0031-DRAFT-33359

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NOAA-NMFS-2020-0031-DRAFT-38334
NOAA-NMFS-2020-0031-DRAFT-38335
NOAA-NMFS-2020-0031-DRAFT-38336
NOAA-NMFS-2020-0031-DRAFT-38337
NOAA-NMFS-2020-0031-DRAFT-38338
NOAA-NMFS-2020-0031-DRAFT-38339
NOAA-NMFS-2020-0031-DRAFT-38340
NOAA-NMFS-2020-0031-DRAFT-38341
NOAA-NMFS-2020-0031-DRAFT-38342
NOAA-NMFS-2020-0031-DRAFT-38343
NOAA-NMFS-2020-0031-DRAFT-38344
NOAA-NMFS-2020-0031-DRAFT-38345
NOAA-NMFS-2020-0031-DRAFT-38346
NOAA-NMFS-2020-0031-DRAFT-38347
NOAA-NMFS-2020-0031-DRAFT-38348
NOAA-NMFS-2020-0031-DRAFT-38349
NOAA-NMFS-2020-0031-DRAFT-38350
NOAA-NMFS-2020-0031-DRAFT-38351
NOAA-NMFS-2020-0031-DRAFT-38352
NOAA-NMFS-2020-0031-DRAFT-38353
NOAA-NMFS-2020-0031-DRAFT-38354
NOAA-NMFS-2020-0031-DRAFT-38355
NOAA-NMFS-2020-0031-DRAFT-38356
NOAA-NMFS-2020-0031-DRAFT-38357
NOAA-NMFS-2020-0031-DRAFT-38358
NOAA-NMFS-2020-0031-DRAFT-38359
NOAA-NMFS-2020-0031-DRAFT-38360
NOAA-NMFS-2020-0031-DRAFT-38361
NOAA-NMFS-2020-0031-DRAFT-38363
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NOAA-NMFS-2020-0031-DRAFT-38366
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NOAA-NMFS-2020-0031-DRAFT-38370
NOAA-NMFS-2020-0031-DRAFT-38371
NOAA-NMFS-2020-0031-DRAFT-38372
NOAA-NMFS-2020-0031-DRAFT-38373
NOAA-NMFS-2020-0031-DRAFT-38374
NOAA-NMFS-2020-0031-DRAFT-38375

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NOAA-NMFS-2020-0031-DRAFT-33360
NOAA-NMFS-2020-0031-DRAFT-33361
NOAA-NMFS-2020-0031-DRAFT-33362
NOAA-NMFS-2020-0031-DRAFT-33363
NOAA-NMFS-2020-0031-DRAFT-33364
NOAA-NMFS-2020-0031-DRAFT-33365
NOAA-NMFS-2020-0031-DRAFT-33366
NOAA-NMFS-2020-0031-DRAFT-33367
NOAA-NMFS-2020-0031-DRAFT-33368
NOAA-NMFS-2020-0031-DRAFT-33369
NOAA-NMFS-2020-0031-DRAFT-33370
NOAA-NMFS-2020-0031-DRAFT-33371
NOAA-NMFS-2020-0031-DRAFT-33372
NOAA-NMFS-2020-0031-DRAFT-33373
NOAA-NMFS-2020-0031-DRAFT-33374
NOAA-NMFS-2020-0031-DRAFT-33375
NOAA-NMFS-2020-0031-DRAFT-33376
NOAA-NMFS-2020-0031-DRAFT-33377
NOAA-NMFS-2020-0031-DRAFT-33378
NOAA-NMFS-2020-0031-DRAFT-33379
NOAA-NMFS-2020-0031-DRAFT-33380
NOAA-NMFS-2020-0031-DRAFT-33381
NOAA-NMFS-2020-0031-DRAFT-33382
NOAA-NMFS-2020-0031-DRAFT-33383
NOAA-NMFS-2020-0031-DRAFT-33384
NOAA-NMFS-2020-0031-DRAFT-33385
NOAA-NMFS-2020-0031-DRAFT-33386
NOAA-NMFS-2020-0031-DRAFT-33387
NOAA-NMFS-2020-0031-DRAFT-33388
NOAA-NMFS-2020-0031-DRAFT-33389
NOAA-NMFS-2020-0031-DRAFT-33390
NOAA-NMFS-2020-0031-DRAFT-33391
NOAA-NMFS-2020-0031-DRAFT-33392
NOAA-NMFS-2020-0031-DRAFT-33393
NOAA-NMFS-2020-0031-DRAFT-33394
NOAA-NMFS-2020-0031-DRAFT-33395
NOAA-NMFS-2020-0031-DRAFT-33396
NOAA-NMFS-2020-0031-DRAFT-33397
NOAA-NMFS-2020-0031-DRAFT-33398
NOAA-NMFS-2020-0031-DRAFT-33399
NOAA-NMFS-2020-0031-DRAFT-33400

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NOAA-NMFS-2020-0031-DRAFT-38376
NOAA-NMFS-2020-0031-DRAFT-38377
NOAA-NMFS-2020-0031-DRAFT-38378
NOAA-NMFS-2020-0031-DRAFT-38379
NOAA-NMFS-2020-0031-DRAFT-38380
NOAA-NMFS-2020-0031-DRAFT-38381
NOAA-NMFS-2020-0031-DRAFT-38382
NOAA-NMFS-2020-0031-DRAFT-38383
NOAA-NMFS-2020-0031-DRAFT-38384
NOAA-NMFS-2020-0031-DRAFT-38385
NOAA-NMFS-2020-0031-DRAFT-38386
NOAA-NMFS-2020-0031-DRAFT-38387
NOAA-NMFS-2020-0031-DRAFT-38388
NOAA-NMFS-2020-0031-DRAFT-38389
NOAA-NMFS-2020-0031-DRAFT-38390
NOAA-NMFS-2020-0031-DRAFT-38391
NOAA-NMFS-2020-0031-DRAFT-38392
NOAA-NMFS-2020-0031-DRAFT-38393
NOAA-NMFS-2020-0031-DRAFT-38394
NOAA-NMFS-2020-0031-DRAFT-38395
NOAA-NMFS-2020-0031-DRAFT-38396
NOAA-NMFS-2020-0031-DRAFT-38397
NOAA-NMFS-2020-0031-DRAFT-38398
NOAA-NMFS-2020-0031-DRAFT-38399
NOAA-NMFS-2020-0031-DRAFT-38400
NOAA-NMFS-2020-0031-DRAFT-38401
NOAA-NMFS-2020-0031-DRAFT-38402
NOAA-NMFS-2020-0031-DRAFT-38403
NOAA-NMFS-2020-0031-DRAFT-38404
NOAA-NMFS-2020-0031-DRAFT-38405
NOAA-NMFS-2020-0031-DRAFT-38406
NOAA-NMFS-2020-0031-DRAFT-38407
NOAA-NMFS-2020-0031-DRAFT-38408
NOAA-NMFS-2020-0031-DRAFT-38409
NOAA-NMFS-2020-0031-DRAFT-38410
NOAA-NMFS-2020-0031-DRAFT-38411
NOAA-NMFS-2020-0031-DRAFT-38412
NOAA-NMFS-2020-0031-DRAFT-38413
NOAA-NMFS-2020-0031-DRAFT-38414
NOAA-NMFS-2020-0031-DRAFT-38415
NOAA-NMFS-2020-0031-DRAFT-38416

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NOAA-NMFS-2020-0031-DRAFT-33401
NOAA-NMFS-2020-0031-DRAFT-33402
NOAA-NMFS-2020-0031-DRAFT-33403
NOAA-NMFS-2020-0031-DRAFT-33404
NOAA-NMFS-2020-0031-DRAFT-33405
NOAA-NMFS-2020-0031-DRAFT-33406
NOAA-NMFS-2020-0031-DRAFT-33407
NOAA-NMFS-2020-0031-DRAFT-33408
NOAA-NMFS-2020-0031-DRAFT-33409
NOAA-NMFS-2020-0031-DRAFT-33410
NOAA-NMFS-2020-0031-DRAFT-33411
NOAA-NMFS-2020-0031-DRAFT-33412
NOAA-NMFS-2020-0031-DRAFT-33413
NOAA-NMFS-2020-0031-DRAFT-33414
NOAA-NMFS-2020-0031-DRAFT-33415
NOAA-NMFS-2020-0031-DRAFT-33416
NOAA-NMFS-2020-0031-DRAFT-33417
NOAA-NMFS-2020-0031-DRAFT-33418
NOAA-NMFS-2020-0031-DRAFT-33419
NOAA-NMFS-2020-0031-DRAFT-33420
NOAA-NMFS-2020-0031-DRAFT-33421
NOAA-NMFS-2020-0031-DRAFT-33422
NOAA-NMFS-2020-0031-DRAFT-33423
NOAA-NMFS-2020-0031-DRAFT-33424
NOAA-NMFS-2020-0031-DRAFT-33425
NOAA-NMFS-2020-0031-DRAFT-33426
NOAA-NMFS-2020-0031-DRAFT-33427
NOAA-NMFS-2020-0031-DRAFT-33428
NOAA-NMFS-2020-0031-DRAFT-33429
NOAA-NMFS-2020-0031-DRAFT-33430
NOAA-NMFS-2020-0031-DRAFT-33431
NOAA-NMFS-2020-0031-DRAFT-33432
NOAA-NMFS-2020-0031-DRAFT-33433
NOAA-NMFS-2020-0031-DRAFT-33434
NOAA-NMFS-2020-0031-DRAFT-33435
NOAA-NMFS-2020-0031-DRAFT-33436
NOAA-NMFS-2020-0031-DRAFT-33437
NOAA-NMFS-2020-0031-DRAFT-33438
NOAA-NMFS-2020-0031-DRAFT-33439
NOAA-NMFS-2020-0031-DRAFT-33440
NOAA-NMFS-2020-0031-DRAFT-33441

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NOAA-NMFS-2020-0031-DRAFT-38417
NOAA-NMFS-2020-0031-DRAFT-38418
NOAA-NMFS-2020-0031-DRAFT-38419
NOAA-NMFS-2020-0031-DRAFT-38420
NOAA-NMFS-2020-0031-DRAFT-38421
NOAA-NMFS-2020-0031-DRAFT-38422
NOAA-NMFS-2020-0031-DRAFT-38423
NOAA-NMFS-2020-0031-DRAFT-38424
NOAA-NMFS-2020-0031-DRAFT-38425
NOAA-NMFS-2020-0031-DRAFT-38426
NOAA-NMFS-2020-0031-DRAFT-38427
NOAA-NMFS-2020-0031-DRAFT-38428
NOAA-NMFS-2020-0031-DRAFT-38429
NOAA-NMFS-2020-0031-DRAFT-38430
NOAA-NMFS-2020-0031-DRAFT-38431
NOAA-NMFS-2020-0031-DRAFT-38432
NOAA-NMFS-2020-0031-DRAFT-38433
NOAA-NMFS-2020-0031-DRAFT-38434
NOAA-NMFS-2020-0031-DRAFT-38435
NOAA-NMFS-2020-0031-DRAFT-38436
NOAA-NMFS-2020-0031-DRAFT-38437
NOAA-NMFS-2020-0031-DRAFT-38438
NOAA-NMFS-2020-0031-DRAFT-38439
NOAA-NMFS-2020-0031-DRAFT-38440
NOAA-NMFS-2020-0031-DRAFT-38441
NOAA-NMFS-2020-0031-DRAFT-38442
NOAA-NMFS-2020-0031-DRAFT-38443
NOAA-NMFS-2020-0031-DRAFT-38444
NOAA-NMFS-2020-0031-DRAFT-38445
NOAA-NMFS-2020-0031-DRAFT-38446
NOAA-NMFS-2020-0031-DRAFT-38447
NOAA-NMFS-2020-0031-DRAFT-38448
NOAA-NMFS-2020-0031-DRAFT-38449
NOAA-NMFS-2020-0031-DRAFT-38450
NOAA-NMFS-2020-0031-DRAFT-38451
NOAA-NMFS-2020-0031-DRAFT-38452
NOAA-NMFS-2020-0031-DRAFT-38453
NOAA-NMFS-2020-0031-DRAFT-38454
NOAA-NMFS-2020-0031-DRAFT-38455
NOAA-NMFS-2020-0031-DRAFT-38457
NOAA-NMFS-2020-0031-DRAFT-38458

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NOAA-NMFS-2020-0031-DRAFT-33442
NOAA-NMFS-2020-0031-DRAFT-33443
NOAA-NMFS-2020-0031-DRAFT-33444
NOAA-NMFS-2020-0031-DRAFT-33445
NOAA-NMFS-2020-0031-DRAFT-33446
NOAA-NMFS-2020-0031-DRAFT-33447
NOAA-NMFS-2020-0031-DRAFT-33448
NOAA-NMFS-2020-0031-DRAFT-33449
NOAA-NMFS-2020-0031-DRAFT-33450
NOAA-NMFS-2020-0031-DRAFT-33451
NOAA-NMFS-2020-0031-DRAFT-33452
NOAA-NMFS-2020-0031-DRAFT-33453
NOAA-NMFS-2020-0031-DRAFT-33454
NOAA-NMFS-2020-0031-DRAFT-33455
NOAA-NMFS-2020-0031-DRAFT-33456
NOAA-NMFS-2020-0031-DRAFT-33457
NOAA-NMFS-2020-0031-DRAFT-33458
NOAA-NMFS-2020-0031-DRAFT-33459
NOAA-NMFS-2020-0031-DRAFT-33460
NOAA-NMFS-2020-0031-DRAFT-33461
NOAA-NMFS-2020-0031-DRAFT-33462
NOAA-NMFS-2020-0031-DRAFT-33463
NOAA-NMFS-2020-0031-DRAFT-33464
NOAA-NMFS-2020-0031-DRAFT-33465
NOAA-NMFS-2020-0031-DRAFT-33466
NOAA-NMFS-2020-0031-DRAFT-33467
NOAA-NMFS-2020-0031-DRAFT-33468
NOAA-NMFS-2020-0031-DRAFT-33469
NOAA-NMFS-2020-0031-DRAFT-33470
NOAA-NMFS-2020-0031-DRAFT-33471
NOAA-NMFS-2020-0031-DRAFT-33472
NOAA-NMFS-2020-0031-DRAFT-33473
NOAA-NMFS-2020-0031-DRAFT-33474
NOAA-NMFS-2020-0031-DRAFT-33475
NOAA-NMFS-2020-0031-DRAFT-33476
NOAA-NMFS-2020-0031-DRAFT-33477
NOAA-NMFS-2020-0031-DRAFT-33478
NOAA-NMFS-2020-0031-DRAFT-33479
NOAA-NMFS-2020-0031-DRAFT-33480
NOAA-NMFS-2020-0031-DRAFT-33481
NOAA-NMFS-2020-0031-DRAFT-33482

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NOAA-NMFS-2020-0031-DRAFT-38459
NOAA-NMFS-2020-0031-DRAFT-38460
NOAA-NMFS-2020-0031-DRAFT-38461
NOAA-NMFS-2020-0031-DRAFT-38462
NOAA-NMFS-2020-0031-DRAFT-38463
NOAA-NMFS-2020-0031-DRAFT-38464
NOAA-NMFS-2020-0031-DRAFT-38465
NOAA-NMFS-2020-0031-DRAFT-38466
NOAA-NMFS-2020-0031-DRAFT-38467
NOAA-NMFS-2020-0031-DRAFT-38468
NOAA-NMFS-2020-0031-DRAFT-38469
NOAA-NMFS-2020-0031-DRAFT-38470
NOAA-NMFS-2020-0031-DRAFT-38471
NOAA-NMFS-2020-0031-DRAFT-38472
NOAA-NMFS-2020-0031-DRAFT-38473
NOAA-NMFS-2020-0031-DRAFT-38474
NOAA-NMFS-2020-0031-DRAFT-38475
NOAA-NMFS-2020-0031-DRAFT-38476
NOAA-NMFS-2020-0031-DRAFT-38477
NOAA-NMFS-2020-0031-DRAFT-38478
NOAA-NMFS-2020-0031-DRAFT-38479
NOAA-NMFS-2020-0031-DRAFT-38480
NOAA-NMFS-2020-0031-DRAFT-38481
NOAA-NMFS-2020-0031-DRAFT-38482
NOAA-NMFS-2020-0031-DRAFT-38483
NOAA-NMFS-2020-0031-DRAFT-38484
NOAA-NMFS-2020-0031-DRAFT-38485
NOAA-NMFS-2020-0031-DRAFT-38486
NOAA-NMFS-2020-0031-DRAFT-38487
NOAA-NMFS-2020-0031-DRAFT-38488
NOAA-NMFS-2020-0031-DRAFT-38490
NOAA-NMFS-2020-0031-DRAFT-38491
NOAA-NMFS-2020-0031-DRAFT-38492
NOAA-NMFS-2020-0031-DRAFT-38493
NOAA-NMFS-2020-0031-DRAFT-38494
NOAA-NMFS-2020-0031-DRAFT-38495
NOAA-NMFS-2020-0031-DRAFT-38496
NOAA-NMFS-2020-0031-DRAFT-38497
NOAA-NMFS-2020-0031-DRAFT-38498
NOAA-NMFS-2020-0031-DRAFT-38499
NOAA-NMFS-2020-0031-DRAFT-38500

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NOAA-NMFS-2020-0031-DRAFT-33483
NOAA-NMFS-2020-0031-DRAFT-33484
NOAA-NMFS-2020-0031-DRAFT-33485
NOAA-NMFS-2020-0031-DRAFT-33486
NOAA-NMFS-2020-0031-DRAFT-33487
NOAA-NMFS-2020-0031-DRAFT-33488
NOAA-NMFS-2020-0031-DRAFT-33489
NOAA-NMFS-2020-0031-DRAFT-33490
NOAA-NMFS-2020-0031-DRAFT-33491
NOAA-NMFS-2020-0031-DRAFT-33492
NOAA-NMFS-2020-0031-DRAFT-33493
NOAA-NMFS-2020-0031-DRAFT-33494
NOAA-NMFS-2020-0031-DRAFT-33495
NOAA-NMFS-2020-0031-DRAFT-33496
NOAA-NMFS-2020-0031-DRAFT-33498
NOAA-NMFS-2020-0031-DRAFT-33499
NOAA-NMFS-2020-0031-DRAFT-33500
NOAA-NMFS-2020-0031-DRAFT-33501
NOAA-NMFS-2020-0031-DRAFT-33502
NOAA-NMFS-2020-0031-DRAFT-33503
NOAA-NMFS-2020-0031-DRAFT-33504
NOAA-NMFS-2020-0031-DRAFT-33505
NOAA-NMFS-2020-0031-DRAFT-33506
NOAA-NMFS-2020-0031-DRAFT-33507
NOAA-NMFS-2020-0031-DRAFT-33508
NOAA-NMFS-2020-0031-DRAFT-33509
NOAA-NMFS-2020-0031-DRAFT-33510
NOAA-NMFS-2020-0031-DRAFT-33511
NOAA-NMFS-2020-0031-DRAFT-33512
NOAA-NMFS-2020-0031-DRAFT-33513
NOAA-NMFS-2020-0031-DRAFT-33514
NOAA-NMFS-2020-0031-DRAFT-33515
NOAA-NMFS-2020-0031-DRAFT-33516
NOAA-NMFS-2020-0031-DRAFT-33517
NOAA-NMFS-2020-0031-DRAFT-33518
NOAA-NMFS-2020-0031-DRAFT-33519
NOAA-NMFS-2020-0031-DRAFT-33520
NOAA-NMFS-2020-0031-DRAFT-33521
NOAA-NMFS-2020-0031-DRAFT-33522
NOAA-NMFS-2020-0031-DRAFT-33523
NOAA-NMFS-2020-0031-DRAFT-33524

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NOAA-NMFS-2020-0031-DRAFT-38501
NOAA-NMFS-2020-0031-DRAFT-38502
NOAA-NMFS-2020-0031-DRAFT-38503
NOAA-NMFS-2020-0031-DRAFT-38504
NOAA-NMFS-2020-0031-DRAFT-38505
NOAA-NMFS-2020-0031-DRAFT-38506
NOAA-NMFS-2020-0031-DRAFT-38507
NOAA-NMFS-2020-0031-DRAFT-38508
NOAA-NMFS-2020-0031-DRAFT-38509
NOAA-NMFS-2020-0031-DRAFT-38510
NOAA-NMFS-2020-0031-DRAFT-38511
NOAA-NMFS-2020-0031-DRAFT-38512
NOAA-NMFS-2020-0031-DRAFT-38513
NOAA-NMFS-2020-0031-DRAFT-38514
NOAA-NMFS-2020-0031-DRAFT-38515
NOAA-NMFS-2020-0031-DRAFT-38516
NOAA-NMFS-2020-0031-DRAFT-38517
NOAA-NMFS-2020-0031-DRAFT-38518
NOAA-NMFS-2020-0031-DRAFT-38519
NOAA-NMFS-2020-0031-DRAFT-38520
NOAA-NMFS-2020-0031-DRAFT-38521
NOAA-NMFS-2020-0031-DRAFT-38522
NOAA-NMFS-2020-0031-DRAFT-38523
NOAA-NMFS-2020-0031-DRAFT-38524
NOAA-NMFS-2020-0031-DRAFT-38526
NOAA-NMFS-2020-0031-DRAFT-38527
NOAA-NMFS-2020-0031-DRAFT-38528
NOAA-NMFS-2020-0031-DRAFT-38529
NOAA-NMFS-2020-0031-DRAFT-38530
NOAA-NMFS-2020-0031-DRAFT-38531
NOAA-NMFS-2020-0031-DRAFT-38532
NOAA-NMFS-2020-0031-DRAFT-38533
NOAA-NMFS-2020-0031-DRAFT-38534
NOAA-NMFS-2020-0031-DRAFT-38535
NOAA-NMFS-2020-0031-DRAFT-38536
NOAA-NMFS-2020-0031-DRAFT-38537
NOAA-NMFS-2020-0031-DRAFT-38538
NOAA-NMFS-2020-0031-DRAFT-38539
NOAA-NMFS-2020-0031-DRAFT-38540
NOAA-NMFS-2020-0031-DRAFT-38541
NOAA-NMFS-2020-0031-DRAFT-38542

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NOAA-NMFS-2020-0031-DRAFT-33525
NOAA-NMFS-2020-0031-DRAFT-33526
NOAA-NMFS-2020-0031-DRAFT-33527
NOAA-NMFS-2020-0031-DRAFT-33528
NOAA-NMFS-2020-0031-DRAFT-33529
NOAA-NMFS-2020-0031-DRAFT-33530
NOAA-NMFS-2020-0031-DRAFT-33531
NOAA-NMFS-2020-0031-DRAFT-33532
NOAA-NMFS-2020-0031-DRAFT-33533
NOAA-NMFS-2020-0031-DRAFT-33534
NOAA-NMFS-2020-0031-DRAFT-33535
NOAA-NMFS-2020-0031-DRAFT-33536
NOAA-NMFS-2020-0031-DRAFT-33537
NOAA-NMFS-2020-0031-DRAFT-33538
NOAA-NMFS-2020-0031-DRAFT-33539
NOAA-NMFS-2020-0031-DRAFT-33540
NOAA-NMFS-2020-0031-DRAFT-33541
NOAA-NMFS-2020-0031-DRAFT-33542
NOAA-NMFS-2020-0031-DRAFT-33543
NOAA-NMFS-2020-0031-DRAFT-33544
NOAA-NMFS-2020-0031-DRAFT-33545
NOAA-NMFS-2020-0031-DRAFT-33546
NOAA-NMFS-2020-0031-DRAFT-33547
NOAA-NMFS-2020-0031-DRAFT-33548
NOAA-NMFS-2020-0031-DRAFT-33549
NOAA-NMFS-2020-0031-DRAFT-33550
NOAA-NMFS-2020-0031-DRAFT-33551
NOAA-NMFS-2020-0031-DRAFT-33552
NOAA-NMFS-2020-0031-DRAFT-33553
NOAA-NMFS-2020-0031-DRAFT-33554
NOAA-NMFS-2020-0031-DRAFT-33555
NOAA-NMFS-2020-0031-DRAFT-33556
NOAA-NMFS-2020-0031-DRAFT-33557
NOAA-NMFS-2020-0031-DRAFT-33558
NOAA-NMFS-2020-0031-DRAFT-33559
NOAA-NMFS-2020-0031-DRAFT-33560
NOAA-NMFS-2020-0031-DRAFT-33561
NOAA-NMFS-2020-0031-DRAFT-33562
NOAA-NMFS-2020-0031-DRAFT-33563
NOAA-NMFS-2020-0031-DRAFT-33564
NOAA-NMFS-2020-0031-DRAFT-33565

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NOAA-NMFS-2020-0031-DRAFT-38543
NOAA-NMFS-2020-0031-DRAFT-38544
NOAA-NMFS-2020-0031-DRAFT-38545
NOAA-NMFS-2020-0031-DRAFT-38546
NOAA-NMFS-2020-0031-DRAFT-38547
NOAA-NMFS-2020-0031-DRAFT-38548
NOAA-NMFS-2020-0031-DRAFT-38549
NOAA-NMFS-2020-0031-DRAFT-38550
NOAA-NMFS-2020-0031-DRAFT-38551
NOAA-NMFS-2020-0031-DRAFT-38552
NOAA-NMFS-2020-0031-DRAFT-38553
NOAA-NMFS-2020-0031-DRAFT-38554
NOAA-NMFS-2020-0031-DRAFT-38555
NOAA-NMFS-2020-0031-DRAFT-38556
NOAA-NMFS-2020-0031-DRAFT-38557
NOAA-NMFS-2020-0031-DRAFT-38558
NOAA-NMFS-2020-0031-DRAFT-38559
NOAA-NMFS-2020-0031-DRAFT-38560
NOAA-NMFS-2020-0031-DRAFT-38561
NOAA-NMFS-2020-0031-DRAFT-38562
NOAA-NMFS-2020-0031-DRAFT-38563
NOAA-NMFS-2020-0031-DRAFT-38564
NOAA-NMFS-2020-0031-DRAFT-38565
NOAA-NMFS-2020-0031-DRAFT-38566
NOAA-NMFS-2020-0031-DRAFT-38567
NOAA-NMFS-2020-0031-DRAFT-38568
NOAA-NMFS-2020-0031-DRAFT-38569
NOAA-NMFS-2020-0031-DRAFT-38570
NOAA-NMFS-2020-0031-DRAFT-38571
NOAA-NMFS-2020-0031-DRAFT-38572
NOAA-NMFS-2020-0031-DRAFT-38573
NOAA-NMFS-2020-0031-DRAFT-38574
NOAA-NMFS-2020-0031-DRAFT-38575
NOAA-NMFS-2020-0031-DRAFT-38576
NOAA-NMFS-2020-0031-DRAFT-38577
NOAA-NMFS-2020-0031-DRAFT-38578
NOAA-NMFS-2020-0031-DRAFT-38579
NOAA-NMFS-2020-0031-DRAFT-38580
NOAA-NMFS-2020-0031-DRAFT-38581
NOAA-NMFS-2020-0031-DRAFT-38582
NOAA-NMFS-2020-0031-DRAFT-38583

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NOAA-NMFS-2020-0031-DRAFT-33566
NOAA-NMFS-2020-0031-DRAFT-33567
NOAA-NMFS-2020-0031-DRAFT-33568
NOAA-NMFS-2020-0031-DRAFT-33569
NOAA-NMFS-2020-0031-DRAFT-33570
NOAA-NMFS-2020-0031-DRAFT-33571
NOAA-NMFS-2020-0031-DRAFT-33572
NOAA-NMFS-2020-0031-DRAFT-33573
NOAA-NMFS-2020-0031-DRAFT-33574
NOAA-NMFS-2020-0031-DRAFT-33575
NOAA-NMFS-2020-0031-DRAFT-33576
NOAA-NMFS-2020-0031-DRAFT-33577
NOAA-NMFS-2020-0031-DRAFT-33578
NOAA-NMFS-2020-0031-DRAFT-33579
NOAA-NMFS-2020-0031-DRAFT-33580
NOAA-NMFS-2020-0031-DRAFT-33581
NOAA-NMFS-2020-0031-DRAFT-33582
NOAA-NMFS-2020-0031-DRAFT-33583
NOAA-NMFS-2020-0031-DRAFT-33584
NOAA-NMFS-2020-0031-DRAFT-33585
NOAA-NMFS-2020-0031-DRAFT-33586
NOAA-NMFS-2020-0031-DRAFT-33587
NOAA-NMFS-2020-0031-DRAFT-33588
NOAA-NMFS-2020-0031-DRAFT-33589
NOAA-NMFS-2020-0031-DRAFT-33590
NOAA-NMFS-2020-0031-DRAFT-33591
NOAA-NMFS-2020-0031-DRAFT-33592
NOAA-NMFS-2020-0031-DRAFT-33593
NOAA-NMFS-2020-0031-DRAFT-33594
NOAA-NMFS-2020-0031-DRAFT-33595
NOAA-NMFS-2020-0031-DRAFT-33596
NOAA-NMFS-2020-0031-DRAFT-33597
NOAA-NMFS-2020-0031-DRAFT-33598
NOAA-NMFS-2020-0031-DRAFT-33599
NOAA-NMFS-2020-0031-DRAFT-33600
NOAA-NMFS-2020-0031-DRAFT-33601
NOAA-NMFS-2020-0031-DRAFT-33602
NOAA-NMFS-2020-0031-DRAFT-33603
NOAA-NMFS-2020-0031-DRAFT-33604
NOAA-NMFS-2020-0031-DRAFT-33605
NOAA-NMFS-2020-0031-DRAFT-33606

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NOAA-NMFS-2020-0031-DRAFT-38584
NOAA-NMFS-2020-0031-DRAFT-38585
NOAA-NMFS-2020-0031-DRAFT-38586
NOAA-NMFS-2020-0031-DRAFT-38587
NOAA-NMFS-2020-0031-DRAFT-38588
NOAA-NMFS-2020-0031-DRAFT-38589
NOAA-NMFS-2020-0031-DRAFT-38590
NOAA-NMFS-2020-0031-DRAFT-38591
NOAA-NMFS-2020-0031-DRAFT-38592
NOAA-NMFS-2020-0031-DRAFT-38593
NOAA-NMFS-2020-0031-DRAFT-38594
NOAA-NMFS-2020-0031-DRAFT-38595
NOAA-NMFS-2020-0031-DRAFT-38596
NOAA-NMFS-2020-0031-DRAFT-38597
NOAA-NMFS-2020-0031-DRAFT-38598
NOAA-NMFS-2020-0031-DRAFT-38599
NOAA-NMFS-2020-0031-DRAFT-38600
NOAA-NMFS-2020-0031-DRAFT-38601
NOAA-NMFS-2020-0031-DRAFT-38602
NOAA-NMFS-2020-0031-DRAFT-38603
NOAA-NMFS-2020-0031-DRAFT-38604
NOAA-NMFS-2020-0031-DRAFT-38605
NOAA-NMFS-2020-0031-DRAFT-38606
NOAA-NMFS-2020-0031-DRAFT-38607
NOAA-NMFS-2020-0031-DRAFT-38608
NOAA-NMFS-2020-0031-DRAFT-38609
NOAA-NMFS-2020-0031-DRAFT-38610
NOAA-NMFS-2020-0031-DRAFT-38611
NOAA-NMFS-2020-0031-DRAFT-38612
NOAA-NMFS-2020-0031-DRAFT-38613
NOAA-NMFS-2020-0031-DRAFT-38614
NOAA-NMFS-2020-0031-DRAFT-38615
NOAA-NMFS-2020-0031-DRAFT-38616
NOAA-NMFS-2020-0031-DRAFT-38617
NOAA-NMFS-2020-0031-DRAFT-38618
NOAA-NMFS-2020-0031-DRAFT-38619
NOAA-NMFS-2020-0031-DRAFT-38620
NOAA-NMFS-2020-0031-DRAFT-38621
NOAA-NMFS-2020-0031-DRAFT-38622
NOAA-NMFS-2020-0031-DRAFT-38623
NOAA-NMFS-2020-0031-DRAFT-38625

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NOAA-NMFS-2020-0031-DRAFT-33607
NOAA-NMFS-2020-0031-DRAFT-33608
NOAA-NMFS-2020-0031-DRAFT-33609
NOAA-NMFS-2020-0031-DRAFT-33610
NOAA-NMFS-2020-0031-DRAFT-33611
NOAA-NMFS-2020-0031-DRAFT-33612
NOAA-NMFS-2020-0031-DRAFT-33613
NOAA-NMFS-2020-0031-DRAFT-33614
NOAA-NMFS-2020-0031-DRAFT-33615
NOAA-NMFS-2020-0031-DRAFT-33616
NOAA-NMFS-2020-0031-DRAFT-33617
NOAA-NMFS-2020-0031-DRAFT-33618
NOAA-NMFS-2020-0031-DRAFT-33619
NOAA-NMFS-2020-0031-DRAFT-33620
NOAA-NMFS-2020-0031-DRAFT-33621
NOAA-NMFS-2020-0031-DRAFT-33622
NOAA-NMFS-2020-0031-DRAFT-33623
NOAA-NMFS-2020-0031-DRAFT-33624
NOAA-NMFS-2020-0031-DRAFT-33625
NOAA-NMFS-2020-0031-DRAFT-33626
NOAA-NMFS-2020-0031-DRAFT-33627
NOAA-NMFS-2020-0031-DRAFT-33628
NOAA-NMFS-2020-0031-DRAFT-33629
NOAA-NMFS-2020-0031-DRAFT-33630
NOAA-NMFS-2020-0031-DRAFT-33631
NOAA-NMFS-2020-0031-DRAFT-33632
NOAA-NMFS-2020-0031-DRAFT-33633
NOAA-NMFS-2020-0031-DRAFT-33634
NOAA-NMFS-2020-0031-DRAFT-33635
NOAA-NMFS-2020-0031-DRAFT-33636
NOAA-NMFS-2020-0031-DRAFT-33637
NOAA-NMFS-2020-0031-DRAFT-33638
NOAA-NMFS-2020-0031-DRAFT-33639
NOAA-NMFS-2020-0031-DRAFT-33640
NOAA-NMFS-2020-0031-DRAFT-33641
NOAA-NMFS-2020-0031-DRAFT-33642
NOAA-NMFS-2020-0031-DRAFT-33643
NOAA-NMFS-2020-0031-DRAFT-33644
NOAA-NMFS-2020-0031-DRAFT-33645
NOAA-NMFS-2020-0031-DRAFT-33646
NOAA-NMFS-2020-0031-DRAFT-33647

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NOAA-NMFS-2020-0031-DRAFT-38626
NOAA-NMFS-2020-0031-DRAFT-38627
NOAA-NMFS-2020-0031-DRAFT-38628
NOAA-NMFS-2020-0031-DRAFT-38629
NOAA-NMFS-2020-0031-DRAFT-38630
NOAA-NMFS-2020-0031-DRAFT-38631
NOAA-NMFS-2020-0031-DRAFT-38632
NOAA-NMFS-2020-0031-DRAFT-38633
NOAA-NMFS-2020-0031-DRAFT-38634
NOAA-NMFS-2020-0031-DRAFT-38635
NOAA-NMFS-2020-0031-DRAFT-38636
NOAA-NMFS-2020-0031-DRAFT-38637
NOAA-NMFS-2020-0031-DRAFT-38638
NOAA-NMFS-2020-0031-DRAFT-38639
NOAA-NMFS-2020-0031-DRAFT-38640
NOAA-NMFS-2020-0031-DRAFT-38641
NOAA-NMFS-2020-0031-DRAFT-38642
NOAA-NMFS-2020-0031-DRAFT-38643
NOAA-NMFS-2020-0031-DRAFT-38644
NOAA-NMFS-2020-0031-DRAFT-38645
NOAA-NMFS-2020-0031-DRAFT-38646
NOAA-NMFS-2020-0031-DRAFT-38647
NOAA-NMFS-2020-0031-DRAFT-38648
NOAA-NMFS-2020-0031-DRAFT-38649
NOAA-NMFS-2020-0031-DRAFT-38650
NOAA-NMFS-2020-0031-DRAFT-38651
NOAA-NMFS-2020-0031-DRAFT-38652
NOAA-NMFS-2020-0031-DRAFT-38653
NOAA-NMFS-2020-0031-DRAFT-38654
NOAA-NMFS-2020-0031-DRAFT-38655
NOAA-NMFS-2020-0031-DRAFT-38656
NOAA-NMFS-2020-0031-DRAFT-38657
NOAA-NMFS-2020-0031-DRAFT-38658
NOAA-NMFS-2020-0031-DRAFT-38659
NOAA-NMFS-2020-0031-DRAFT-38660
NOAA-NMFS-2020-0031-DRAFT-38661
NOAA-NMFS-2020-0031-DRAFT-38662
NOAA-NMFS-2020-0031-DRAFT-38663
NOAA-NMFS-2020-0031-DRAFT-38664
NOAA-NMFS-2020-0031-DRAFT-38665
NOAA-NMFS-2020-0031-DRAFT-38666

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NOAA-NMFS-2020-0031-DRAFT-33648
NOAA-NMFS-2020-0031-DRAFT-33649
NOAA-NMFS-2020-0031-DRAFT-33650
NOAA-NMFS-2020-0031-DRAFT-33651
NOAA-NMFS-2020-0031-DRAFT-33652
NOAA-NMFS-2020-0031-DRAFT-33653
NOAA-NMFS-2020-0031-DRAFT-33654
NOAA-NMFS-2020-0031-DRAFT-33655
NOAA-NMFS-2020-0031-DRAFT-33656
NOAA-NMFS-2020-0031-DRAFT-33657
NOAA-NMFS-2020-0031-DRAFT-33658
NOAA-NMFS-2020-0031-DRAFT-33659
NOAA-NMFS-2020-0031-DRAFT-33660
NOAA-NMFS-2020-0031-DRAFT-33661
NOAA-NMFS-2020-0031-DRAFT-33662
NOAA-NMFS-2020-0031-DRAFT-33663
NOAA-NMFS-2020-0031-DRAFT-33664
NOAA-NMFS-2020-0031-DRAFT-33665
NOAA-NMFS-2020-0031-DRAFT-33666
NOAA-NMFS-2020-0031-DRAFT-33667
NOAA-NMFS-2020-0031-DRAFT-33668
NOAA-NMFS-2020-0031-DRAFT-33669
NOAA-NMFS-2020-0031-DRAFT-33670
NOAA-NMFS-2020-0031-DRAFT-33671
NOAA-NMFS-2020-0031-DRAFT-33672
NOAA-NMFS-2020-0031-DRAFT-33673
NOAA-NMFS-2020-0031-DRAFT-33674
NOAA-NMFS-2020-0031-DRAFT-33675
NOAA-NMFS-2020-0031-DRAFT-33676
NOAA-NMFS-2020-0031-DRAFT-33677
NOAA-NMFS-2020-0031-DRAFT-33678
NOAA-NMFS-2020-0031-DRAFT-33679
NOAA-NMFS-2020-0031-DRAFT-33680
NOAA-NMFS-2020-0031-DRAFT-33681
NOAA-NMFS-2020-0031-DRAFT-33682
NOAA-NMFS-2020-0031-DRAFT-33683
NOAA-NMFS-2020-0031-DRAFT-33684
NOAA-NMFS-2020-0031-DRAFT-33685
NOAA-NMFS-2020-0031-DRAFT-33686
NOAA-NMFS-2020-0031-DRAFT-33687
NOAA-NMFS-2020-0031-DRAFT-33688

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NOAA-NMFS-2020-0031-DRAFT-38667
NOAA-NMFS-2020-0031-DRAFT-38668
NOAA-NMFS-2020-0031-DRAFT-38669
NOAA-NMFS-2020-0031-DRAFT-38670
NOAA-NMFS-2020-0031-DRAFT-38671
NOAA-NMFS-2020-0031-DRAFT-38672
NOAA-NMFS-2020-0031-DRAFT-38673
NOAA-NMFS-2020-0031-DRAFT-38674
NOAA-NMFS-2020-0031-DRAFT-38675
NOAA-NMFS-2020-0031-DRAFT-38676
NOAA-NMFS-2020-0031-DRAFT-38677
NOAA-NMFS-2020-0031-DRAFT-38678
NOAA-NMFS-2020-0031-DRAFT-38679
NOAA-NMFS-2020-0031-DRAFT-38680
NOAA-NMFS-2020-0031-DRAFT-38681
NOAA-NMFS-2020-0031-DRAFT-38682
NOAA-NMFS-2020-0031-DRAFT-38683
NOAA-NMFS-2020-0031-DRAFT-38684
NOAA-NMFS-2020-0031-DRAFT-38685
NOAA-NMFS-2020-0031-DRAFT-38686
NOAA-NMFS-2020-0031-DRAFT-38687
NOAA-NMFS-2020-0031-DRAFT-38688
NOAA-NMFS-2020-0031-DRAFT-38689
NOAA-NMFS-2020-0031-DRAFT-38690
NOAA-NMFS-2020-0031-DRAFT-38691
NOAA-NMFS-2020-0031-DRAFT-38692
NOAA-NMFS-2020-0031-DRAFT-38693
NOAA-NMFS-2020-0031-DRAFT-38694
NOAA-NMFS-2020-0031-DRAFT-38695
NOAA-NMFS-2020-0031-DRAFT-38696
NOAA-NMFS-2020-0031-DRAFT-38697
NOAA-NMFS-2020-0031-DRAFT-38698
NOAA-NMFS-2020-0031-DRAFT-38699
NOAA-NMFS-2020-0031-DRAFT-38700
NOAA-NMFS-2020-0031-DRAFT-38701
NOAA-NMFS-2020-0031-DRAFT-38702
NOAA-NMFS-2020-0031-DRAFT-38703
NOAA-NMFS-2020-0031-DRAFT-38704
NOAA-NMFS-2020-0031-DRAFT-38705
NOAA-NMFS-2020-0031-DRAFT-38706
NOAA-NMFS-2020-0031-DRAFT-38707

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NOAA-NMFS-2020-0031-DRAFT-33689
NOAA-NMFS-2020-0031-DRAFT-33690
NOAA-NMFS-2020-0031-DRAFT-33691
NOAA-NMFS-2020-0031-DRAFT-33692
NOAA-NMFS-2020-0031-DRAFT-33693
NOAA-NMFS-2020-0031-DRAFT-33694
NOAA-NMFS-2020-0031-DRAFT-33695
NOAA-NMFS-2020-0031-DRAFT-33696
NOAA-NMFS-2020-0031-DRAFT-33697
NOAA-NMFS-2020-0031-DRAFT-33698
NOAA-NMFS-2020-0031-DRAFT-33699
NOAA-NMFS-2020-0031-DRAFT-33700
NOAA-NMFS-2020-0031-DRAFT-33701
NOAA-NMFS-2020-0031-DRAFT-33702
NOAA-NMFS-2020-0031-DRAFT-33703
NOAA-NMFS-2020-0031-DRAFT-33704
NOAA-NMFS-2020-0031-DRAFT-33705
NOAA-NMFS-2020-0031-DRAFT-33706
NOAA-NMFS-2020-0031-DRAFT-33707
NOAA-NMFS-2020-0031-DRAFT-33708
NOAA-NMFS-2020-0031-DRAFT-33709
NOAA-NMFS-2020-0031-DRAFT-33710
NOAA-NMFS-2020-0031-DRAFT-33711
NOAA-NMFS-2020-0031-DRAFT-33712
NOAA-NMFS-2020-0031-DRAFT-33713
NOAA-NMFS-2020-0031-DRAFT-33714
NOAA-NMFS-2020-0031-DRAFT-33715
NOAA-NMFS-2020-0031-DRAFT-33716
NOAA-NMFS-2020-0031-DRAFT-33717
NOAA-NMFS-2020-0031-DRAFT-33718
NOAA-NMFS-2020-0031-DRAFT-33719
NOAA-NMFS-2020-0031-DRAFT-33720
NOAA-NMFS-2020-0031-DRAFT-33721
NOAA-NMFS-2020-0031-DRAFT-33722
NOAA-NMFS-2020-0031-DRAFT-33723
NOAA-NMFS-2020-0031-DRAFT-33724
NOAA-NMFS-2020-0031-DRAFT-33725
NOAA-NMFS-2020-0031-DRAFT-33726
NOAA-NMFS-2020-0031-DRAFT-33727
NOAA-NMFS-2020-0031-DRAFT-33728
NOAA-NMFS-2020-0031-DRAFT-33729

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NOAA-NMFS-2020-0031-DRAFT-38708
NOAA-NMFS-2020-0031-DRAFT-38709
NOAA-NMFS-2020-0031-DRAFT-38710
NOAA-NMFS-2020-0031-DRAFT-38711
NOAA-NMFS-2020-0031-DRAFT-38713
NOAA-NMFS-2020-0031-DRAFT-38714
NOAA-NMFS-2020-0031-DRAFT-38715
NOAA-NMFS-2020-0031-DRAFT-38716
NOAA-NMFS-2020-0031-DRAFT-38717
NOAA-NMFS-2020-0031-DRAFT-38718
NOAA-NMFS-2020-0031-DRAFT-38719
NOAA-NMFS-2020-0031-DRAFT-38720
NOAA-NMFS-2020-0031-DRAFT-38721
NOAA-NMFS-2020-0031-DRAFT-38722
NOAA-NMFS-2020-0031-DRAFT-38723
NOAA-NMFS-2020-0031-DRAFT-38724
NOAA-NMFS-2020-0031-DRAFT-38725
NOAA-NMFS-2020-0031-DRAFT-38726
NOAA-NMFS-2020-0031-DRAFT-38727
NOAA-NMFS-2020-0031-DRAFT-38728
NOAA-NMFS-2020-0031-DRAFT-38729
NOAA-NMFS-2020-0031-DRAFT-38730
NOAA-NMFS-2020-0031-DRAFT-38731
NOAA-NMFS-2020-0031-DRAFT-38732
NOAA-NMFS-2020-0031-DRAFT-38733
NOAA-NMFS-2020-0031-DRAFT-38734
NOAA-NMFS-2020-0031-DRAFT-38735
NOAA-NMFS-2020-0031-DRAFT-38736
NOAA-NMFS-2020-0031-DRAFT-38738
NOAA-NMFS-2020-0031-DRAFT-38739
NOAA-NMFS-2020-0031-DRAFT-38740
NOAA-NMFS-2020-0031-DRAFT-38742
NOAA-NMFS-2020-0031-DRAFT-38743
NOAA-NMFS-2020-0031-DRAFT-38744
NOAA-NMFS-2020-0031-DRAFT-38745
NOAA-NMFS-2020-0031-DRAFT-38746
NOAA-NMFS-2020-0031-DRAFT-38747
NOAA-NMFS-2020-0031-DRAFT-38748
NOAA-NMFS-2020-0031-DRAFT-38749
NOAA-NMFS-2020-0031-DRAFT-38750
NOAA-NMFS-2020-0031-DRAFT-38751

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NOAA-NMFS-2020-0031-DRAFT-33730
NOAA-NMFS-2020-0031-DRAFT-33731
NOAA-NMFS-2020-0031-DRAFT-33732
NOAA-NMFS-2020-0031-DRAFT-33733
NOAA-NMFS-2020-0031-DRAFT-33734
NOAA-NMFS-2020-0031-DRAFT-33735
NOAA-NMFS-2020-0031-DRAFT-33736
NOAA-NMFS-2020-0031-DRAFT-33737
NOAA-NMFS-2020-0031-DRAFT-33738
NOAA-NMFS-2020-0031-DRAFT-33739
NOAA-NMFS-2020-0031-DRAFT-33740
NOAA-NMFS-2020-0031-DRAFT-33741
NOAA-NMFS-2020-0031-DRAFT-33742
NOAA-NMFS-2020-0031-DRAFT-33743
NOAA-NMFS-2020-0031-DRAFT-33744
NOAA-NMFS-2020-0031-DRAFT-33745
NOAA-NMFS-2020-0031-DRAFT-33746
NOAA-NMFS-2020-0031-DRAFT-33747
NOAA-NMFS-2020-0031-DRAFT-33748
NOAA-NMFS-2020-0031-DRAFT-33749
NOAA-NMFS-2020-0031-DRAFT-33750
NOAA-NMFS-2020-0031-DRAFT-33751
NOAA-NMFS-2020-0031-DRAFT-33752
NOAA-NMFS-2020-0031-DRAFT-33753
NOAA-NMFS-2020-0031-DRAFT-33754
NOAA-NMFS-2020-0031-DRAFT-33755
NOAA-NMFS-2020-0031-DRAFT-33756
NOAA-NMFS-2020-0031-DRAFT-33757
NOAA-NMFS-2020-0031-DRAFT-33758
NOAA-NMFS-2020-0031-DRAFT-33759
NOAA-NMFS-2020-0031-DRAFT-33760
NOAA-NMFS-2020-0031-DRAFT-33761
NOAA-NMFS-2020-0031-DRAFT-33762
NOAA-NMFS-2020-0031-DRAFT-33764
NOAA-NMFS-2020-0031-DRAFT-33765
NOAA-NMFS-2020-0031-DRAFT-33766
NOAA-NMFS-2020-0031-DRAFT-33767
NOAA-NMFS-2020-0031-DRAFT-33768
NOAA-NMFS-2020-0031-DRAFT-33769
NOAA-NMFS-2020-0031-DRAFT-33770
NOAA-NMFS-2020-0031-DRAFT-33771

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NOAA-NMFS-2020-0031-DRAFT-38752
NOAA-NMFS-2020-0031-DRAFT-38753
NOAA-NMFS-2020-0031-DRAFT-38754
NOAA-NMFS-2020-0031-DRAFT-38755
NOAA-NMFS-2020-0031-DRAFT-38756
NOAA-NMFS-2020-0031-DRAFT-38757
NOAA-NMFS-2020-0031-DRAFT-38758
NOAA-NMFS-2020-0031-DRAFT-38759
NOAA-NMFS-2020-0031-DRAFT-38760
NOAA-NMFS-2020-0031-DRAFT-38761
NOAA-NMFS-2020-0031-DRAFT-38762
NOAA-NMFS-2020-0031-DRAFT-38763
NOAA-NMFS-2020-0031-DRAFT-38764
NOAA-NMFS-2020-0031-DRAFT-38765
NOAA-NMFS-2020-0031-DRAFT-38766
NOAA-NMFS-2020-0031-DRAFT-38767
NOAA-NMFS-2020-0031-DRAFT-38768
NOAA-NMFS-2020-0031-DRAFT-38769
NOAA-NMFS-2020-0031-DRAFT-38770
NOAA-NMFS-2020-0031-DRAFT-38771
NOAA-NMFS-2020-0031-DRAFT-38772
NOAA-NMFS-2020-0031-DRAFT-38773
NOAA-NMFS-2020-0031-DRAFT-38774
NOAA-NMFS-2020-0031-DRAFT-38775
NOAA-NMFS-2020-0031-DRAFT-38776
NOAA-NMFS-2020-0031-DRAFT-38777
NOAA-NMFS-2020-0031-DRAFT-38778
NOAA-NMFS-2020-0031-DRAFT-38779
NOAA-NMFS-2020-0031-DRAFT-38780
NOAA-NMFS-2020-0031-DRAFT-38781
NOAA-NMFS-2020-0031-DRAFT-38782
NOAA-NMFS-2020-0031-DRAFT-38783
NOAA-NMFS-2020-0031-DRAFT-38784
NOAA-NMFS-2020-0031-DRAFT-38785
NOAA-NMFS-2020-0031-DRAFT-38786
NOAA-NMFS-2020-0031-DRAFT-38787
NOAA-NMFS-2020-0031-DRAFT-38788
NOAA-NMFS-2020-0031-DRAFT-38789
NOAA-NMFS-2020-0031-DRAFT-38791
NOAA-NMFS-2020-0031-DRAFT-38792
NOAA-NMFS-2020-0031-DRAFT-38793

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NOAA-NMFS-2020-0031-DRAFT-33772
NOAA-NMFS-2020-0031-DRAFT-33773
NOAA-NMFS-2020-0031-DRAFT-33774
NOAA-NMFS-2020-0031-DRAFT-33775
NOAA-NMFS-2020-0031-DRAFT-33776
NOAA-NMFS-2020-0031-DRAFT-33777
NOAA-NMFS-2020-0031-DRAFT-33778
NOAA-NMFS-2020-0031-DRAFT-33779
NOAA-NMFS-2020-0031-DRAFT-33780
NOAA-NMFS-2020-0031-DRAFT-33781
NOAA-NMFS-2020-0031-DRAFT-33782
NOAA-NMFS-2020-0031-DRAFT-33783
NOAA-NMFS-2020-0031-DRAFT-33784
NOAA-NMFS-2020-0031-DRAFT-33785
NOAA-NMFS-2020-0031-DRAFT-33786
NOAA-NMFS-2020-0031-DRAFT-33787
NOAA-NMFS-2020-0031-DRAFT-33788
NOAA-NMFS-2020-0031-DRAFT-33789
NOAA-NMFS-2020-0031-DRAFT-33790
NOAA-NMFS-2020-0031-DRAFT-33791
NOAA-NMFS-2020-0031-DRAFT-33792
NOAA-NMFS-2020-0031-DRAFT-33793
NOAA-NMFS-2020-0031-DRAFT-33794
NOAA-NMFS-2020-0031-DRAFT-33795
NOAA-NMFS-2020-0031-DRAFT-33796
NOAA-NMFS-2020-0031-DRAFT-33797
NOAA-NMFS-2020-0031-DRAFT-33798
NOAA-NMFS-2020-0031-DRAFT-33799
NOAA-NMFS-2020-0031-DRAFT-33800
NOAA-NMFS-2020-0031-DRAFT-33801
NOAA-NMFS-2020-0031-DRAFT-33802
NOAA-NMFS-2020-0031-DRAFT-33803
NOAA-NMFS-2020-0031-DRAFT-33804
NOAA-NMFS-2020-0031-DRAFT-33805
NOAA-NMFS-2020-0031-DRAFT-33806
NOAA-NMFS-2020-0031-DRAFT-33807
NOAA-NMFS-2020-0031-DRAFT-33808
NOAA-NMFS-2020-0031-DRAFT-33809
NOAA-NMFS-2020-0031-DRAFT-33810
NOAA-NMFS-2020-0031-DRAFT-33811
NOAA-NMFS-2020-0031-DRAFT-33812

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NOAA-NMFS-2020-0031-DRAFT-38794
NOAA-NMFS-2020-0031-DRAFT-38795
NOAA-NMFS-2020-0031-DRAFT-38796
NOAA-NMFS-2020-0031-DRAFT-38797
NOAA-NMFS-2020-0031-DRAFT-38798
NOAA-NMFS-2020-0031-DRAFT-38799
NOAA-NMFS-2020-0031-DRAFT-38800
NOAA-NMFS-2020-0031-DRAFT-38801
NOAA-NMFS-2020-0031-DRAFT-38802
NOAA-NMFS-2020-0031-DRAFT-38803
NOAA-NMFS-2020-0031-DRAFT-38804
NOAA-NMFS-2020-0031-DRAFT-38805
NOAA-NMFS-2020-0031-DRAFT-38806
NOAA-NMFS-2020-0031-DRAFT-38807
NOAA-NMFS-2020-0031-DRAFT-38808
NOAA-NMFS-2020-0031-DRAFT-38809
NOAA-NMFS-2020-0031-DRAFT-38810
NOAA-NMFS-2020-0031-DRAFT-38811
NOAA-NMFS-2020-0031-DRAFT-38812
NOAA-NMFS-2020-0031-DRAFT-38813
NOAA-NMFS-2020-0031-DRAFT-38814
NOAA-NMFS-2020-0031-DRAFT-38815
NOAA-NMFS-2020-0031-DRAFT-38816
NOAA-NMFS-2020-0031-DRAFT-38817
NOAA-NMFS-2020-0031-DRAFT-38818
NOAA-NMFS-2020-0031-DRAFT-38819
NOAA-NMFS-2020-0031-DRAFT-38820
NOAA-NMFS-2020-0031-DRAFT-38821
NOAA-NMFS-2020-0031-DRAFT-38822
NOAA-NMFS-2020-0031-DRAFT-38823
NOAA-NMFS-2020-0031-DRAFT-38824
NOAA-NMFS-2020-0031-DRAFT-38825
NOAA-NMFS-2020-0031-DRAFT-38826
NOAA-NMFS-2020-0031-DRAFT-38827
NOAA-NMFS-2020-0031-DRAFT-38828
NOAA-NMFS-2020-0031-DRAFT-38829
NOAA-NMFS-2020-0031-DRAFT-38830
NOAA-NMFS-2020-0031-DRAFT-38831
NOAA-NMFS-2020-0031-DRAFT-38832
NOAA-NMFS-2020-0031-DRAFT-38833
NOAA-NMFS-2020-0031-DRAFT-38834

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NOAA-NMFS-2020-0031-DRAFT-33813
NOAA-NMFS-2020-0031-DRAFT-33814
NOAA-NMFS-2020-0031-DRAFT-33815
NOAA-NMFS-2020-0031-DRAFT-33816
NOAA-NMFS-2020-0031-DRAFT-33817
NOAA-NMFS-2020-0031-DRAFT-33818
NOAA-NMFS-2020-0031-DRAFT-33819
NOAA-NMFS-2020-0031-DRAFT-33820
NOAA-NMFS-2020-0031-DRAFT-33821
NOAA-NMFS-2020-0031-DRAFT-33822
NOAA-NMFS-2020-0031-DRAFT-33823
NOAA-NMFS-2020-0031-DRAFT-33824
NOAA-NMFS-2020-0031-DRAFT-33825
NOAA-NMFS-2020-0031-DRAFT-33826
NOAA-NMFS-2020-0031-DRAFT-33827
NOAA-NMFS-2020-0031-DRAFT-33828
NOAA-NMFS-2020-0031-DRAFT-33829
NOAA-NMFS-2020-0031-DRAFT-33830
NOAA-NMFS-2020-0031-DRAFT-33831
NOAA-NMFS-2020-0031-DRAFT-33832
NOAA-NMFS-2020-0031-DRAFT-33833
NOAA-NMFS-2020-0031-DRAFT-33834
NOAA-NMFS-2020-0031-DRAFT-33835
NOAA-NMFS-2020-0031-DRAFT-33836
NOAA-NMFS-2020-0031-DRAFT-33837
NOAA-NMFS-2020-0031-DRAFT-33838
NOAA-NMFS-2020-0031-DRAFT-33839
NOAA-NMFS-2020-0031-DRAFT-33840
NOAA-NMFS-2020-0031-DRAFT-33841
NOAA-NMFS-2020-0031-DRAFT-33842
NOAA-NMFS-2020-0031-DRAFT-33843
NOAA-NMFS-2020-0031-DRAFT-33844
NOAA-NMFS-2020-0031-DRAFT-33845
NOAA-NMFS-2020-0031-DRAFT-33846
NOAA-NMFS-2020-0031-DRAFT-33847
NOAA-NMFS-2020-0031-DRAFT-33848
NOAA-NMFS-2020-0031-DRAFT-33849
NOAA-NMFS-2020-0031-DRAFT-33850
NOAA-NMFS-2020-0031-DRAFT-33851
NOAA-NMFS-2020-0031-DRAFT-33852
NOAA-NMFS-2020-0031-DRAFT-33853

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NOAA-NMFS-2020-0031-DRAFT-38835
NOAA-NMFS-2020-0031-DRAFT-38836
NOAA-NMFS-2020-0031-DRAFT-38837
NOAA-NMFS-2020-0031-DRAFT-38839
NOAA-NMFS-2020-0031-DRAFT-38841
NOAA-NMFS-2020-0031-DRAFT-38842
NOAA-NMFS-2020-0031-DRAFT-38843
NOAA-NMFS-2020-0031-DRAFT-38844
NOAA-NMFS-2020-0031-DRAFT-38845
NOAA-NMFS-2020-0031-DRAFT-38846
NOAA-NMFS-2020-0031-DRAFT-38847
NOAA-NMFS-2020-0031-DRAFT-38848
NOAA-NMFS-2020-0031-DRAFT-38849
NOAA-NMFS-2020-0031-DRAFT-38850
NOAA-NMFS-2020-0031-DRAFT-38851
NOAA-NMFS-2020-0031-DRAFT-38852
NOAA-NMFS-2020-0031-DRAFT-38853
NOAA-NMFS-2020-0031-DRAFT-38854
NOAA-NMFS-2020-0031-DRAFT-38855
NOAA-NMFS-2020-0031-DRAFT-38856
NOAA-NMFS-2020-0031-DRAFT-38857
NOAA-NMFS-2020-0031-DRAFT-38858
NOAA-NMFS-2020-0031-DRAFT-38859
NOAA-NMFS-2020-0031-DRAFT-38860
NOAA-NMFS-2020-0031-DRAFT-38861
NOAA-NMFS-2020-0031-DRAFT-38862
NOAA-NMFS-2020-0031-DRAFT-38863
NOAA-NMFS-2020-0031-DRAFT-38864
NOAA-NMFS-2020-0031-DRAFT-38865
NOAA-NMFS-2020-0031-DRAFT-38866
NOAA-NMFS-2020-0031-DRAFT-38867
NOAA-NMFS-2020-0031-DRAFT-38868
NOAA-NMFS-2020-0031-DRAFT-38869
NOAA-NMFS-2020-0031-DRAFT-38870
NOAA-NMFS-2020-0031-DRAFT-38871
NOAA-NMFS-2020-0031-DRAFT-38872
NOAA-NMFS-2020-0031-DRAFT-38873
NOAA-NMFS-2020-0031-DRAFT-38874
NOAA-NMFS-2020-0031-DRAFT-38875
NOAA-NMFS-2020-0031-DRAFT-38876
NOAA-NMFS-2020-0031-DRAFT-38877

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NOAA-NMFS-2020-0031-DRAFT-33854
NOAA-NMFS-2020-0031-DRAFT-33855
NOAA-NMFS-2020-0031-DRAFT-33856
NOAA-NMFS-2020-0031-DRAFT-33857
NOAA-NMFS-2020-0031-DRAFT-33858
NOAA-NMFS-2020-0031-DRAFT-33859
NOAA-NMFS-2020-0031-DRAFT-33860
NOAA-NMFS-2020-0031-DRAFT-33861
NOAA-NMFS-2020-0031-DRAFT-33862
NOAA-NMFS-2020-0031-DRAFT-33863
NOAA-NMFS-2020-0031-DRAFT-33864
NOAA-NMFS-2020-0031-DRAFT-33865
NOAA-NMFS-2020-0031-DRAFT-33866
NOAA-NMFS-2020-0031-DRAFT-33867
NOAA-NMFS-2020-0031-DRAFT-33868
NOAA-NMFS-2020-0031-DRAFT-33869
NOAA-NMFS-2020-0031-DRAFT-33870
NOAA-NMFS-2020-0031-DRAFT-33871
NOAA-NMFS-2020-0031-DRAFT-33872
NOAA-NMFS-2020-0031-DRAFT-33873
NOAA-NMFS-2020-0031-DRAFT-33874
NOAA-NMFS-2020-0031-DRAFT-33875
NOAA-NMFS-2020-0031-DRAFT-33876
NOAA-NMFS-2020-0031-DRAFT-33877
NOAA-NMFS-2020-0031-DRAFT-33878
NOAA-NMFS-2020-0031-DRAFT-33879
NOAA-NMFS-2020-0031-DRAFT-33880
NOAA-NMFS-2020-0031-DRAFT-33881
NOAA-NMFS-2020-0031-DRAFT-33882
NOAA-NMFS-2020-0031-DRAFT-33883
NOAA-NMFS-2020-0031-DRAFT-33884
NOAA-NMFS-2020-0031-DRAFT-33885
NOAA-NMFS-2020-0031-DRAFT-33886
NOAA-NMFS-2020-0031-DRAFT-33887
NOAA-NMFS-2020-0031-DRAFT-33888
NOAA-NMFS-2020-0031-DRAFT-33889
NOAA-NMFS-2020-0031-DRAFT-33890
NOAA-NMFS-2020-0031-DRAFT-33891
NOAA-NMFS-2020-0031-DRAFT-33892
NOAA-NMFS-2020-0031-DRAFT-33893
NOAA-NMFS-2020-0031-DRAFT-33894

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NOAA-NMFS-2020-0031-DRAFT-38878
NOAA-NMFS-2020-0031-DRAFT-38879
NOAA-NMFS-2020-0031-DRAFT-38880
NOAA-NMFS-2020-0031-DRAFT-38881
NOAA-NMFS-2020-0031-DRAFT-38882
NOAA-NMFS-2020-0031-DRAFT-38883
NOAA-NMFS-2020-0031-DRAFT-38884
NOAA-NMFS-2020-0031-DRAFT-38885
NOAA-NMFS-2020-0031-DRAFT-38886
NOAA-NMFS-2020-0031-DRAFT-38887
NOAA-NMFS-2020-0031-DRAFT-38888
NOAA-NMFS-2020-0031-DRAFT-38889
NOAA-NMFS-2020-0031-DRAFT-38890
NOAA-NMFS-2020-0031-DRAFT-38891
NOAA-NMFS-2020-0031-DRAFT-38892
NOAA-NMFS-2020-0031-DRAFT-38893
NOAA-NMFS-2020-0031-DRAFT-38894
NOAA-NMFS-2020-0031-DRAFT-38895
NOAA-NMFS-2020-0031-DRAFT-38896
NOAA-NMFS-2020-0031-DRAFT-38897
NOAA-NMFS-2020-0031-DRAFT-38898
NOAA-NMFS-2020-0031-DRAFT-38899
NOAA-NMFS-2020-0031-DRAFT-38900
NOAA-NMFS-2020-0031-DRAFT-38901
NOAA-NMFS-2020-0031-DRAFT-38902
NOAA-NMFS-2020-0031-DRAFT-38903
NOAA-NMFS-2020-0031-DRAFT-38904
NOAA-NMFS-2020-0031-DRAFT-38905
NOAA-NMFS-2020-0031-DRAFT-38906
NOAA-NMFS-2020-0031-DRAFT-38907
NOAA-NMFS-2020-0031-DRAFT-38908
NOAA-NMFS-2020-0031-DRAFT-38909
NOAA-NMFS-2020-0031-DRAFT-38910
NOAA-NMFS-2020-0031-DRAFT-38911
NOAA-NMFS-2020-0031-DRAFT-38913
NOAA-NMFS-2020-0031-DRAFT-38914
NOAA-NMFS-2020-0031-DRAFT-38915
NOAA-NMFS-2020-0031-DRAFT-38916
NOAA-NMFS-2020-0031-DRAFT-38918
NOAA-NMFS-2020-0031-DRAFT-38919
NOAA-NMFS-2020-0031-DRAFT-38920

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NOAA-NMFS-2020-0031-DRAFT-33895
NOAA-NMFS-2020-0031-DRAFT-33896
NOAA-NMFS-2020-0031-DRAFT-33897
NOAA-NMFS-2020-0031-DRAFT-33898
NOAA-NMFS-2020-0031-DRAFT-33899
NOAA-NMFS-2020-0031-DRAFT-33900
NOAA-NMFS-2020-0031-DRAFT-33901
NOAA-NMFS-2020-0031-DRAFT-33902
NOAA-NMFS-2020-0031-DRAFT-33903
NOAA-NMFS-2020-0031-DRAFT-33904
NOAA-NMFS-2020-0031-DRAFT-33905
NOAA-NMFS-2020-0031-DRAFT-33906
NOAA-NMFS-2020-0031-DRAFT-33907
NOAA-NMFS-2020-0031-DRAFT-33908
NOAA-NMFS-2020-0031-DRAFT-33909
NOAA-NMFS-2020-0031-DRAFT-33910
NOAA-NMFS-2020-0031-DRAFT-33911
NOAA-NMFS-2020-0031-DRAFT-33912
NOAA-NMFS-2020-0031-DRAFT-33913
NOAA-NMFS-2020-0031-DRAFT-33914
NOAA-NMFS-2020-0031-DRAFT-33915
NOAA-NMFS-2020-0031-DRAFT-33916
NOAA-NMFS-2020-0031-DRAFT-33917
NOAA-NMFS-2020-0031-DRAFT-33918
NOAA-NMFS-2020-0031-DRAFT-33919
NOAA-NMFS-2020-0031-DRAFT-33920
NOAA-NMFS-2020-0031-DRAFT-33921
NOAA-NMFS-2020-0031-DRAFT-33922
NOAA-NMFS-2020-0031-DRAFT-33923
NOAA-NMFS-2020-0031-DRAFT-33924
NOAA-NMFS-2020-0031-DRAFT-33925
NOAA-NMFS-2020-0031-DRAFT-33926
NOAA-NMFS-2020-0031-DRAFT-33927
NOAA-NMFS-2020-0031-DRAFT-33928
NOAA-NMFS-2020-0031-DRAFT-33929
NOAA-NMFS-2020-0031-DRAFT-33930
NOAA-NMFS-2020-0031-DRAFT-33931
NOAA-NMFS-2020-0031-DRAFT-33932
NOAA-NMFS-2020-0031-DRAFT-33933
NOAA-NMFS-2020-0031-DRAFT-33934
NOAA-NMFS-2020-0031-DRAFT-33935

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NOAA-NMFS-2020-0031-DRAFT-38921
NOAA-NMFS-2020-0031-DRAFT-38922
NOAA-NMFS-2020-0031-DRAFT-38923
NOAA-NMFS-2020-0031-DRAFT-38924
NOAA-NMFS-2020-0031-DRAFT-38925
NOAA-NMFS-2020-0031-DRAFT-38926
NOAA-NMFS-2020-0031-DRAFT-38927
NOAA-NMFS-2020-0031-DRAFT-38928
NOAA-NMFS-2020-0031-DRAFT-38929
NOAA-NMFS-2020-0031-DRAFT-38930
NOAA-NMFS-2020-0031-DRAFT-38931
NOAA-NMFS-2020-0031-DRAFT-38932
NOAA-NMFS-2020-0031-DRAFT-38933
NOAA-NMFS-2020-0031-DRAFT-38934
NOAA-NMFS-2020-0031-DRAFT-38935
NOAA-NMFS-2020-0031-DRAFT-38936
NOAA-NMFS-2020-0031-DRAFT-38937
NOAA-NMFS-2020-0031-DRAFT-38938
NOAA-NMFS-2020-0031-DRAFT-38939
NOAA-NMFS-2020-0031-DRAFT-38940
NOAA-NMFS-2020-0031-DRAFT-38941
NOAA-NMFS-2020-0031-DRAFT-38942
NOAA-NMFS-2020-0031-DRAFT-38943
NOAA-NMFS-2020-0031-DRAFT-38944
NOAA-NMFS-2020-0031-DRAFT-38945
NOAA-NMFS-2020-0031-DRAFT-38946
NOAA-NMFS-2020-0031-DRAFT-38947
NOAA-NMFS-2020-0031-DRAFT-38948
NOAA-NMFS-2020-0031-DRAFT-38949
NOAA-NMFS-2020-0031-DRAFT-38950
NOAA-NMFS-2020-0031-DRAFT-38951
NOAA-NMFS-2020-0031-DRAFT-38952
NOAA-NMFS-2020-0031-DRAFT-38953
NOAA-NMFS-2020-0031-DRAFT-38954
NOAA-NMFS-2020-0031-DRAFT-38955
NOAA-NMFS-2020-0031-DRAFT-38956
NOAA-NMFS-2020-0031-DRAFT-38958
NOAA-NMFS-2020-0031-DRAFT-38959
NOAA-NMFS-2020-0031-DRAFT-38960
NOAA-NMFS-2020-0031-DRAFT-38961
NOAA-NMFS-2020-0031-DRAFT-38962

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NOAA-NMFS-2020-0031-DRAFT-33936
NOAA-NMFS-2020-0031-DRAFT-33937
NOAA-NMFS-2020-0031-DRAFT-33938
NOAA-NMFS-2020-0031-DRAFT-33939
NOAA-NMFS-2020-0031-DRAFT-33940
NOAA-NMFS-2020-0031-DRAFT-33941
NOAA-NMFS-2020-0031-DRAFT-33942
NOAA-NMFS-2020-0031-DRAFT-33943
NOAA-NMFS-2020-0031-DRAFT-33944
NOAA-NMFS-2020-0031-DRAFT-33945
NOAA-NMFS-2020-0031-DRAFT-33946
NOAA-NMFS-2020-0031-DRAFT-33947
NOAA-NMFS-2020-0031-DRAFT-33948
NOAA-NMFS-2020-0031-DRAFT-33949
NOAA-NMFS-2020-0031-DRAFT-33950
NOAA-NMFS-2020-0031-DRAFT-33951
NOAA-NMFS-2020-0031-DRAFT-33952
NOAA-NMFS-2020-0031-DRAFT-33953
NOAA-NMFS-2020-0031-DRAFT-33954
NOAA-NMFS-2020-0031-DRAFT-33955
NOAA-NMFS-2020-0031-DRAFT-33956
NOAA-NMFS-2020-0031-DRAFT-33957
NOAA-NMFS-2020-0031-DRAFT-33958
NOAA-NMFS-2020-0031-DRAFT-33959
NOAA-NMFS-2020-0031-DRAFT-33960
NOAA-NMFS-2020-0031-DRAFT-33961
NOAA-NMFS-2020-0031-DRAFT-33962
NOAA-NMFS-2020-0031-DRAFT-33963
NOAA-NMFS-2020-0031-DRAFT-33964
NOAA-NMFS-2020-0031-DRAFT-33965
NOAA-NMFS-2020-0031-DRAFT-33966
NOAA-NMFS-2020-0031-DRAFT-33967
NOAA-NMFS-2020-0031-DRAFT-33968
NOAA-NMFS-2020-0031-DRAFT-33969
NOAA-NMFS-2020-0031-DRAFT-33970
NOAA-NMFS-2020-0031-DRAFT-33971
NOAA-NMFS-2020-0031-DRAFT-33972
NOAA-NMFS-2020-0031-DRAFT-33973
NOAA-NMFS-2020-0031-DRAFT-33974
NOAA-NMFS-2020-0031-DRAFT-33975
NOAA-NMFS-2020-0031-DRAFT-33976

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NOAA-NMFS-2020-0031-DRAFT-38963
NOAA-NMFS-2020-0031-DRAFT-38964
NOAA-NMFS-2020-0031-DRAFT-38965
NOAA-NMFS-2020-0031-DRAFT-38966
NOAA-NMFS-2020-0031-DRAFT-38968
NOAA-NMFS-2020-0031-DRAFT-38969
NOAA-NMFS-2020-0031-DRAFT-38970
NOAA-NMFS-2020-0031-DRAFT-38971
NOAA-NMFS-2020-0031-DRAFT-38972
NOAA-NMFS-2020-0031-DRAFT-38973
NOAA-NMFS-2020-0031-DRAFT-38974
NOAA-NMFS-2020-0031-DRAFT-38975
NOAA-NMFS-2020-0031-DRAFT-38976
NOAA-NMFS-2020-0031-DRAFT-38977
NOAA-NMFS-2020-0031-DRAFT-38978
NOAA-NMFS-2020-0031-DRAFT-38979
NOAA-NMFS-2020-0031-DRAFT-38980
NOAA-NMFS-2020-0031-DRAFT-38981
NOAA-NMFS-2020-0031-DRAFT-38983
NOAA-NMFS-2020-0031-DRAFT-38984
NOAA-NMFS-2020-0031-DRAFT-38985
NOAA-NMFS-2020-0031-DRAFT-38986
NOAA-NMFS-2020-0031-DRAFT-38987
NOAA-NMFS-2020-0031-DRAFT-38988
NOAA-NMFS-2020-0031-DRAFT-38989
NOAA-NMFS-2020-0031-DRAFT-38990
NOAA-NMFS-2020-0031-DRAFT-38991
NOAA-NMFS-2020-0031-DRAFT-38992
NOAA-NMFS-2020-0031-DRAFT-38993
NOAA-NMFS-2020-0031-DRAFT-38994
NOAA-NMFS-2020-0031-DRAFT-38995
NOAA-NMFS-2020-0031-DRAFT-38996
NOAA-NMFS-2020-0031-DRAFT-38997
NOAA-NMFS-2020-0031-DRAFT-38998
NOAA-NMFS-2020-0031-DRAFT-38999
NOAA-NMFS-2020-0031-DRAFT-39000
NOAA-NMFS-2020-0031-DRAFT-39002
NOAA-NMFS-2020-0031-DRAFT-39003
NOAA-NMFS-2020-0031-DRAFT-39004
NOAA-NMFS-2020-0031-DRAFT-39005
NOAA-NMFS-2020-0031-DRAFT-39006

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NOAA-NMFS-2020-0031-DRAFT-33977
NOAA-NMFS-2020-0031-DRAFT-33978
NOAA-NMFS-2020-0031-DRAFT-33979
NOAA-NMFS-2020-0031-DRAFT-33980
NOAA-NMFS-2020-0031-DRAFT-33981
NOAA-NMFS-2020-0031-DRAFT-33982
NOAA-NMFS-2020-0031-DRAFT-33983
NOAA-NMFS-2020-0031-DRAFT-33984
NOAA-NMFS-2020-0031-DRAFT-33985
NOAA-NMFS-2020-0031-DRAFT-33986
NOAA-NMFS-2020-0031-DRAFT-33987
NOAA-NMFS-2020-0031-DRAFT-33988
NOAA-NMFS-2020-0031-DRAFT-33989
NOAA-NMFS-2020-0031-DRAFT-33990
NOAA-NMFS-2020-0031-DRAFT-33991
NOAA-NMFS-2020-0031-DRAFT-33992
NOAA-NMFS-2020-0031-DRAFT-33993
NOAA-NMFS-2020-0031-DRAFT-33994
NOAA-NMFS-2020-0031-DRAFT-33995
NOAA-NMFS-2020-0031-DRAFT-33996
NOAA-NMFS-2020-0031-DRAFT-33997
NOAA-NMFS-2020-0031-DRAFT-33998
NOAA-NMFS-2020-0031-DRAFT-33999
NOAA-NMFS-2020-0031-DRAFT-34000
NOAA-NMFS-2020-0031-DRAFT-34001
NOAA-NMFS-2020-0031-DRAFT-34002
NOAA-NMFS-2020-0031-DRAFT-34003
NOAA-NMFS-2020-0031-DRAFT-34004
NOAA-NMFS-2020-0031-DRAFT-34005
NOAA-NMFS-2020-0031-DRAFT-34006
NOAA-NMFS-2020-0031-DRAFT-34007
NOAA-NMFS-2020-0031-DRAFT-34008
NOAA-NMFS-2020-0031-DRAFT-34009
NOAA-NMFS-2020-0031-DRAFT-34010
NOAA-NMFS-2020-0031-DRAFT-34011
NOAA-NMFS-2020-0031-DRAFT-34012
NOAA-NMFS-2020-0031-DRAFT-34013
NOAA-NMFS-2020-0031-DRAFT-34014
NOAA-NMFS-2020-0031-DRAFT-34015
NOAA-NMFS-2020-0031-DRAFT-34016
NOAA-NMFS-2020-0031-DRAFT-34017

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NOAA-NMFS-2020-0031-DRAFT-39007
NOAA-NMFS-2020-0031-DRAFT-39008
NOAA-NMFS-2020-0031-DRAFT-39009
NOAA-NMFS-2020-0031-DRAFT-39010
NOAA-NMFS-2020-0031-DRAFT-39011
NOAA-NMFS-2020-0031-DRAFT-39012
NOAA-NMFS-2020-0031-DRAFT-39013
NOAA-NMFS-2020-0031-DRAFT-39014
NOAA-NMFS-2020-0031-DRAFT-39015
NOAA-NMFS-2020-0031-DRAFT-39016
NOAA-NMFS-2020-0031-DRAFT-39017
NOAA-NMFS-2020-0031-DRAFT-39019
NOAA-NMFS-2020-0031-DRAFT-39020
NOAA-NMFS-2020-0031-DRAFT-39021
NOAA-NMFS-2020-0031-DRAFT-39022
NOAA-NMFS-2020-0031-DRAFT-39023
NOAA-NMFS-2020-0031-DRAFT-39024
NOAA-NMFS-2020-0031-DRAFT-39025
NOAA-NMFS-2020-0031-DRAFT-39026
NOAA-NMFS-2020-0031-DRAFT-39027
NOAA-NMFS-2020-0031-DRAFT-39028
NOAA-NMFS-2020-0031-DRAFT-39029
NOAA-NMFS-2020-0031-DRAFT-39030
NOAA-NMFS-2020-0031-DRAFT-39031
NOAA-NMFS-2020-0031-DRAFT-39032
NOAA-NMFS-2020-0031-DRAFT-39033
NOAA-NMFS-2020-0031-DRAFT-39034
NOAA-NMFS-2020-0031-DRAFT-39035
NOAA-NMFS-2020-0031-DRAFT-39036
NOAA-NMFS-2020-0031-DRAFT-39037
NOAA-NMFS-2020-0031-DRAFT-39038
NOAA-NMFS-2020-0031-DRAFT-39039
NOAA-NMFS-2020-0031-DRAFT-39040
NOAA-NMFS-2020-0031-DRAFT-39041
NOAA-NMFS-2020-0031-DRAFT-39042
NOAA-NMFS-2020-0031-DRAFT-39043
NOAA-NMFS-2020-0031-DRAFT-39044
NOAA-NMFS-2020-0031-DRAFT-39045
NOAA-NMFS-2020-0031-DRAFT-39046
NOAA-NMFS-2020-0031-DRAFT-39047
NOAA-NMFS-2020-0031-DRAFT-39048

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NOAA-NMFS-2020-0031-DRAFT-34018
NOAA-NMFS-2020-0031-DRAFT-34019
NOAA-NMFS-2020-0031-DRAFT-34020
NOAA-NMFS-2020-0031-DRAFT-34021
NOAA-NMFS-2020-0031-DRAFT-34022
NOAA-NMFS-2020-0031-DRAFT-34023
NOAA-NMFS-2020-0031-DRAFT-34024
NOAA-NMFS-2020-0031-DRAFT-34025
NOAA-NMFS-2020-0031-DRAFT-34026
NOAA-NMFS-2020-0031-DRAFT-34027
NOAA-NMFS-2020-0031-DRAFT-34028
NOAA-NMFS-2020-0031-DRAFT-34029
NOAA-NMFS-2020-0031-DRAFT-34030
NOAA-NMFS-2020-0031-DRAFT-34031
NOAA-NMFS-2020-0031-DRAFT-34032
NOAA-NMFS-2020-0031-DRAFT-34033
NOAA-NMFS-2020-0031-DRAFT-34034
NOAA-NMFS-2020-0031-DRAFT-34035
NOAA-NMFS-2020-0031-DRAFT-34036
NOAA-NMFS-2020-0031-DRAFT-34037
NOAA-NMFS-2020-0031-DRAFT-34038
NOAA-NMFS-2020-0031-DRAFT-34039
NOAA-NMFS-2020-0031-DRAFT-34040
NOAA-NMFS-2020-0031-DRAFT-34041
NOAA-NMFS-2020-0031-DRAFT-34042
NOAA-NMFS-2020-0031-DRAFT-34043
NOAA-NMFS-2020-0031-DRAFT-34044
NOAA-NMFS-2020-0031-DRAFT-34045
NOAA-NMFS-2020-0031-DRAFT-34046
NOAA-NMFS-2020-0031-DRAFT-34047
NOAA-NMFS-2020-0031-DRAFT-34048
NOAA-NMFS-2020-0031-DRAFT-34049
NOAA-NMFS-2020-0031-DRAFT-34050
NOAA-NMFS-2020-0031-DRAFT-34051
NOAA-NMFS-2020-0031-DRAFT-34052
NOAA-NMFS-2020-0031-DRAFT-34053
NOAA-NMFS-2020-0031-DRAFT-34054
NOAA-NMFS-2020-0031-DRAFT-34055
NOAA-NMFS-2020-0031-DRAFT-34056
NOAA-NMFS-2020-0031-DRAFT-34057
NOAA-NMFS-2020-0031-DRAFT-34058

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NOAA-NMFS-2020-0031-DRAFT-39049
NOAA-NMFS-2020-0031-DRAFT-39050
NOAA-NMFS-2020-0031-DRAFT-39051
NOAA-NMFS-2020-0031-DRAFT-39052
NOAA-NMFS-2020-0031-DRAFT-39053
NOAA-NMFS-2020-0031-DRAFT-39054
NOAA-NMFS-2020-0031-DRAFT-39055
NOAA-NMFS-2020-0031-DRAFT-39056
NOAA-NMFS-2020-0031-DRAFT-39057
NOAA-NMFS-2020-0031-DRAFT-39058
NOAA-NMFS-2020-0031-DRAFT-39059
NOAA-NMFS-2020-0031-DRAFT-39060
NOAA-NMFS-2020-0031-DRAFT-39061
NOAA-NMFS-2020-0031-DRAFT-39062
NOAA-NMFS-2020-0031-DRAFT-39063
NOAA-NMFS-2020-0031-DRAFT-39064
NOAA-NMFS-2020-0031-DRAFT-39065
NOAA-NMFS-2020-0031-DRAFT-39066
NOAA-NMFS-2020-0031-DRAFT-39067
NOAA-NMFS-2020-0031-DRAFT-39068
NOAA-NMFS-2020-0031-DRAFT-39069
NOAA-NMFS-2020-0031-DRAFT-39070
NOAA-NMFS-2020-0031-DRAFT-39071
NOAA-NMFS-2020-0031-DRAFT-39072
NOAA-NMFS-2020-0031-DRAFT-39073
NOAA-NMFS-2020-0031-DRAFT-39074
NOAA-NMFS-2020-0031-DRAFT-39075
NOAA-NMFS-2020-0031-DRAFT-39076
NOAA-NMFS-2020-0031-DRAFT-39077
NOAA-NMFS-2020-0031-DRAFT-39078
NOAA-NMFS-2020-0031-DRAFT-39079
NOAA-NMFS-2020-0031-DRAFT-39080
NOAA-NMFS-2020-0031-DRAFT-39081
NOAA-NMFS-2020-0031-DRAFT-39082
NOAA-NMFS-2020-0031-DRAFT-39083
NOAA-NMFS-2020-0031-DRAFT-39084
NOAA-NMFS-2020-0031-DRAFT-39085
NOAA-NMFS-2020-0031-DRAFT-39086
NOAA-NMFS-2020-0031-DRAFT-39087
NOAA-NMFS-2020-0031-DRAFT-39088
NOAA-NMFS-2020-0031-DRAFT-39089

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NOAA-NMFS-2020-0031-DRAFT-34059
NOAA-NMFS-2020-0031-DRAFT-34060
NOAA-NMFS-2020-0031-DRAFT-34061
NOAA-NMFS-2020-0031-DRAFT-34062
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NOAA-NMFS-2020-0031-DRAFT-34066
NOAA-NMFS-2020-0031-DRAFT-34067
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NOAA-NMFS-2020-0031-DRAFT-34069
NOAA-NMFS-2020-0031-DRAFT-34070
NOAA-NMFS-2020-0031-DRAFT-34071
NOAA-NMFS-2020-0031-DRAFT-34072
NOAA-NMFS-2020-0031-DRAFT-34073
NOAA-NMFS-2020-0031-DRAFT-34074
NOAA-NMFS-2020-0031-DRAFT-34075
NOAA-NMFS-2020-0031-DRAFT-34076
NOAA-NMFS-2020-0031-DRAFT-34077
NOAA-NMFS-2020-0031-DRAFT-34078
NOAA-NMFS-2020-0031-DRAFT-34079
NOAA-NMFS-2020-0031-DRAFT-34080
NOAA-NMFS-2020-0031-DRAFT-34081
NOAA-NMFS-2020-0031-DRAFT-34082
NOAA-NMFS-2020-0031-DRAFT-34083
NOAA-NMFS-2020-0031-DRAFT-34084
NOAA-NMFS-2020-0031-DRAFT-34085
NOAA-NMFS-2020-0031-DRAFT-34086
NOAA-NMFS-2020-0031-DRAFT-34087
NOAA-NMFS-2020-0031-DRAFT-34088
NOAA-NMFS-2020-0031-DRAFT-34089
NOAA-NMFS-2020-0031-DRAFT-34090
NOAA-NMFS-2020-0031-DRAFT-34091
NOAA-NMFS-2020-0031-DRAFT-34092
NOAA-NMFS-2020-0031-DRAFT-34093
NOAA-NMFS-2020-0031-DRAFT-34094
NOAA-NMFS-2020-0031-DRAFT-34095
NOAA-NMFS-2020-0031-DRAFT-34096
NOAA-NMFS-2020-0031-DRAFT-34097
NOAA-NMFS-2020-0031-DRAFT-34098
NOAA-NMFS-2020-0031-DRAFT-34099

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NOAA-NMFS-2020-0031-DRAFT-39090
NOAA-NMFS-2020-0031-DRAFT-39091
NOAA-NMFS-2020-0031-DRAFT-39092
NOAA-NMFS-2020-0031-DRAFT-39093
NOAA-NMFS-2020-0031-DRAFT-39094
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NOAA-NMFS-2020-0031-DRAFT-39097
NOAA-NMFS-2020-0031-DRAFT-39098
NOAA-NMFS-2020-0031-DRAFT-39099
NOAA-NMFS-2020-0031-DRAFT-39100
NOAA-NMFS-2020-0031-DRAFT-39101
NOAA-NMFS-2020-0031-DRAFT-39102
NOAA-NMFS-2020-0031-DRAFT-39103
NOAA-NMFS-2020-0031-DRAFT-39104
NOAA-NMFS-2020-0031-DRAFT-39105
NOAA-NMFS-2020-0031-DRAFT-39106
NOAA-NMFS-2020-0031-DRAFT-39108
NOAA-NMFS-2020-0031-DRAFT-39109
NOAA-NMFS-2020-0031-DRAFT-39110
NOAA-NMFS-2020-0031-DRAFT-39111
NOAA-NMFS-2020-0031-DRAFT-39112
NOAA-NMFS-2020-0031-DRAFT-39113
NOAA-NMFS-2020-0031-DRAFT-39114
NOAA-NMFS-2020-0031-DRAFT-39115
NOAA-NMFS-2020-0031-DRAFT-39116
NOAA-NMFS-2020-0031-DRAFT-39117
NOAA-NMFS-2020-0031-DRAFT-39118
NOAA-NMFS-2020-0031-DRAFT-39119
NOAA-NMFS-2020-0031-DRAFT-39120
NOAA-NMFS-2020-0031-DRAFT-39121
NOAA-NMFS-2020-0031-DRAFT-39123
NOAA-NMFS-2020-0031-DRAFT-39124
NOAA-NMFS-2020-0031-DRAFT-39125
NOAA-NMFS-2020-0031-DRAFT-39126
NOAA-NMFS-2020-0031-DRAFT-39127
NOAA-NMFS-2020-0031-DRAFT-39128
NOAA-NMFS-2020-0031-DRAFT-39129
NOAA-NMFS-2020-0031-DRAFT-39130
NOAA-NMFS-2020-0031-DRAFT-39131
NOAA-NMFS-2020-0031-DRAFT-39132

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NOAA-NMFS-2020-0031-DRAFT-34100
NOAA-NMFS-2020-0031-DRAFT-34101
NOAA-NMFS-2020-0031-DRAFT-34102
NOAA-NMFS-2020-0031-DRAFT-34103
NOAA-NMFS-2020-0031-DRAFT-34104
NOAA-NMFS-2020-0031-DRAFT-34105
NOAA-NMFS-2020-0031-DRAFT-34106
NOAA-NMFS-2020-0031-DRAFT-34107
NOAA-NMFS-2020-0031-DRAFT-34108
NOAA-NMFS-2020-0031-DRAFT-34109
NOAA-NMFS-2020-0031-DRAFT-34110
NOAA-NMFS-2020-0031-DRAFT-34111
NOAA-NMFS-2020-0031-DRAFT-34112
NOAA-NMFS-2020-0031-DRAFT-34113
NOAA-NMFS-2020-0031-DRAFT-34114
NOAA-NMFS-2020-0031-DRAFT-34115
NOAA-NMFS-2020-0031-DRAFT-34116
NOAA-NMFS-2020-0031-DRAFT-34117
NOAA-NMFS-2020-0031-DRAFT-34118
NOAA-NMFS-2020-0031-DRAFT-34119
NOAA-NMFS-2020-0031-DRAFT-34120
NOAA-NMFS-2020-0031-DRAFT-34121
NOAA-NMFS-2020-0031-DRAFT-34122
NOAA-NMFS-2020-0031-DRAFT-34123
NOAA-NMFS-2020-0031-DRAFT-34124
NOAA-NMFS-2020-0031-DRAFT-34125
NOAA-NMFS-2020-0031-DRAFT-34126
NOAA-NMFS-2020-0031-DRAFT-34127
NOAA-NMFS-2020-0031-DRAFT-34128
NOAA-NMFS-2020-0031-DRAFT-34129
NOAA-NMFS-2020-0031-DRAFT-34130
NOAA-NMFS-2020-0031-DRAFT-34131
NOAA-NMFS-2020-0031-DRAFT-34132
NOAA-NMFS-2020-0031-DRAFT-34133
NOAA-NMFS-2020-0031-DRAFT-34134
NOAA-NMFS-2020-0031-DRAFT-34135
NOAA-NMFS-2020-0031-DRAFT-34136
NOAA-NMFS-2020-0031-DRAFT-34137
NOAA-NMFS-2020-0031-DRAFT-34138
NOAA-NMFS-2020-0031-DRAFT-34139
NOAA-NMFS-2020-0031-DRAFT-34140

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NOAA-NMFS-2020-0031-DRAFT-39133
NOAA-NMFS-2020-0031-DRAFT-39134
NOAA-NMFS-2020-0031-DRAFT-39135
NOAA-NMFS-2020-0031-DRAFT-39136
NOAA-NMFS-2020-0031-DRAFT-39137
NOAA-NMFS-2020-0031-DRAFT-39138
NOAA-NMFS-2020-0031-DRAFT-39139
NOAA-NMFS-2020-0031-DRAFT-39140
NOAA-NMFS-2020-0031-DRAFT-39141
NOAA-NMFS-2020-0031-DRAFT-39142
NOAA-NMFS-2020-0031-DRAFT-39144
NOAA-NMFS-2020-0031-DRAFT-39145
NOAA-NMFS-2020-0031-DRAFT-39146
NOAA-NMFS-2020-0031-DRAFT-39147
NOAA-NMFS-2020-0031-DRAFT-39148
NOAA-NMFS-2020-0031-DRAFT-39149
NOAA-NMFS-2020-0031-DRAFT-39150
NOAA-NMFS-2020-0031-DRAFT-39151
NOAA-NMFS-2020-0031-DRAFT-39152
NOAA-NMFS-2020-0031-DRAFT-39153
NOAA-NMFS-2020-0031-DRAFT-39154
NOAA-NMFS-2020-0031-DRAFT-39155
NOAA-NMFS-2020-0031-DRAFT-39156
NOAA-NMFS-2020-0031-DRAFT-39157
NOAA-NMFS-2020-0031-DRAFT-39158
NOAA-NMFS-2020-0031-DRAFT-39159
NOAA-NMFS-2020-0031-DRAFT-39160
NOAA-NMFS-2020-0031-DRAFT-39161
NOAA-NMFS-2020-0031-DRAFT-39162
NOAA-NMFS-2020-0031-DRAFT-39163
NOAA-NMFS-2020-0031-DRAFT-39164
NOAA-NMFS-2020-0031-DRAFT-39165
NOAA-NMFS-2020-0031-DRAFT-39166
NOAA-NMFS-2020-0031-DRAFT-39167
NOAA-NMFS-2020-0031-DRAFT-39169
NOAA-NMFS-2020-0031-DRAFT-39170
NOAA-NMFS-2020-0031-DRAFT-39172
NOAA-NMFS-2020-0031-DRAFT-39173
NOAA-NMFS-2020-0031-DRAFT-39174
NOAA-NMFS-2020-0031-DRAFT-39175
NOAA-NMFS-2020-0031-DRAFT-39176

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NOAA-NMFS-2020-0031-DRAFT-34141
NOAA-NMFS-2020-0031-DRAFT-34142
NOAA-NMFS-2020-0031-DRAFT-34143
NOAA-NMFS-2020-0031-DRAFT-34144
NOAA-NMFS-2020-0031-DRAFT-34145
NOAA-NMFS-2020-0031-DRAFT-34146
NOAA-NMFS-2020-0031-DRAFT-34147
NOAA-NMFS-2020-0031-DRAFT-34148
NOAA-NMFS-2020-0031-DRAFT-34149
NOAA-NMFS-2020-0031-DRAFT-34150
NOAA-NMFS-2020-0031-DRAFT-34151
NOAA-NMFS-2020-0031-DRAFT-34152
NOAA-NMFS-2020-0031-DRAFT-34153
NOAA-NMFS-2020-0031-DRAFT-34154
NOAA-NMFS-2020-0031-DRAFT-34155
NOAA-NMFS-2020-0031-DRAFT-34156
NOAA-NMFS-2020-0031-DRAFT-34157
NOAA-NMFS-2020-0031-DRAFT-34158
NOAA-NMFS-2020-0031-DRAFT-34159
NOAA-NMFS-2020-0031-DRAFT-34160
NOAA-NMFS-2020-0031-DRAFT-34161
NOAA-NMFS-2020-0031-DRAFT-34162
NOAA-NMFS-2020-0031-DRAFT-34163
NOAA-NMFS-2020-0031-DRAFT-34164
NOAA-NMFS-2020-0031-DRAFT-34165
NOAA-NMFS-2020-0031-DRAFT-34166
NOAA-NMFS-2020-0031-DRAFT-34167
NOAA-NMFS-2020-0031-DRAFT-34168
NOAA-NMFS-2020-0031-DRAFT-34169
NOAA-NMFS-2020-0031-DRAFT-34170
NOAA-NMFS-2020-0031-DRAFT-34171
NOAA-NMFS-2020-0031-DRAFT-34172
NOAA-NMFS-2020-0031-DRAFT-34173
NOAA-NMFS-2020-0031-DRAFT-34174
NOAA-NMFS-2020-0031-DRAFT-34175
NOAA-NMFS-2020-0031-DRAFT-34176
NOAA-NMFS-2020-0031-DRAFT-34177
NOAA-NMFS-2020-0031-DRAFT-34178
NOAA-NMFS-2020-0031-DRAFT-34179
NOAA-NMFS-2020-0031-DRAFT-34180
NOAA-NMFS-2020-0031-DRAFT-34181

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NOAA-NMFS-2020-0031-DRAFT-39177
NOAA-NMFS-2020-0031-DRAFT-39178
NOAA-NMFS-2020-0031-DRAFT-39179
NOAA-NMFS-2020-0031-DRAFT-39180
NOAA-NMFS-2020-0031-DRAFT-39181
NOAA-NMFS-2020-0031-DRAFT-39182
NOAA-NMFS-2020-0031-DRAFT-39183
NOAA-NMFS-2020-0031-DRAFT-39184
NOAA-NMFS-2020-0031-DRAFT-39185
NOAA-NMFS-2020-0031-DRAFT-39186
NOAA-NMFS-2020-0031-DRAFT-39187
NOAA-NMFS-2020-0031-DRAFT-39188
NOAA-NMFS-2020-0031-DRAFT-39189
NOAA-NMFS-2020-0031-DRAFT-39190
NOAA-NMFS-2020-0031-DRAFT-39191
NOAA-NMFS-2020-0031-DRAFT-39192
NOAA-NMFS-2020-0031-DRAFT-39193
NOAA-NMFS-2020-0031-DRAFT-39194
NOAA-NMFS-2020-0031-DRAFT-39195
NOAA-NMFS-2020-0031-DRAFT-39196
NOAA-NMFS-2020-0031-DRAFT-39197
NOAA-NMFS-2020-0031-DRAFT-39198
NOAA-NMFS-2020-0031-DRAFT-39199
NOAA-NMFS-2020-0031-DRAFT-39200
NOAA-NMFS-2020-0031-DRAFT-39201
NOAA-NMFS-2020-0031-DRAFT-39202
NOAA-NMFS-2020-0031-DRAFT-39203
NOAA-NMFS-2020-0031-DRAFT-39204
NOAA-NMFS-2020-0031-DRAFT-39205
NOAA-NMFS-2020-0031-DRAFT-39206
NOAA-NMFS-2020-0031-DRAFT-39207
NOAA-NMFS-2020-0031-DRAFT-39208
NOAA-NMFS-2020-0031-DRAFT-39209
NOAA-NMFS-2020-0031-DRAFT-39210
NOAA-NMFS-2020-0031-DRAFT-39211
NOAA-NMFS-2020-0031-DRAFT-39212
NOAA-NMFS-2020-0031-DRAFT-39213
NOAA-NMFS-2020-0031-DRAFT-39214
NOAA-NMFS-2020-0031-DRAFT-39215
NOAA-NMFS-2020-0031-DRAFT-39216
NOAA-NMFS-2020-0031-DRAFT-39217

Comment from DeLia, Tony
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NOAA-NMFS-2020-0031-DRAFT-34182
NOAA-NMFS-2020-0031-DRAFT-34183
NOAA-NMFS-2020-0031-DRAFT-34184
NOAA-NMFS-2020-0031-DRAFT-34185
NOAA-NMFS-2020-0031-DRAFT-34186
NOAA-NMFS-2020-0031-DRAFT-34187
NOAA-NMFS-2020-0031-DRAFT-34188
NOAA-NMFS-2020-0031-DRAFT-34189
NOAA-NMFS-2020-0031-DRAFT-34190
NOAA-NMFS-2020-0031-DRAFT-34191
NOAA-NMFS-2020-0031-DRAFT-34192
NOAA-NMFS-2020-0031-DRAFT-34193
NOAA-NMFS-2020-0031-DRAFT-34194
NOAA-NMFS-2020-0031-DRAFT-34195
NOAA-NMFS-2020-0031-DRAFT-34196
NOAA-NMFS-2020-0031-DRAFT-34197
NOAA-NMFS-2020-0031-DRAFT-34198
NOAA-NMFS-2020-0031-DRAFT-34199
NOAA-NMFS-2020-0031-DRAFT-34200
NOAA-NMFS-2020-0031-DRAFT-34201
NOAA-NMFS-2020-0031-DRAFT-34202
NOAA-NMFS-2020-0031-DRAFT-34203
NOAA-NMFS-2020-0031-DRAFT-34204
NOAA-NMFS-2020-0031-DRAFT-34205
NOAA-NMFS-2020-0031-DRAFT-34206
NOAA-NMFS-2020-0031-DRAFT-34207
NOAA-NMFS-2020-0031-DRAFT-34208
NOAA-NMFS-2020-0031-DRAFT-34209
NOAA-NMFS-2020-0031-DRAFT-34210
NOAA-NMFS-2020-0031-DRAFT-34211
NOAA-NMFS-2020-0031-DRAFT-34212
NOAA-NMFS-2020-0031-DRAFT-34213
NOAA-NMFS-2020-0031-DRAFT-34214
NOAA-NMFS-2020-0031-DRAFT-34215
NOAA-NMFS-2020-0031-DRAFT-34216
NOAA-NMFS-2020-0031-DRAFT-34217
NOAA-NMFS-2020-0031-DRAFT-34218
NOAA-NMFS-2020-0031-DRAFT-34219
NOAA-NMFS-2020-0031-DRAFT-34220
NOAA-NMFS-2020-0031-DRAFT-34221
NOAA-NMFS-2020-0031-DRAFT-34222

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NOAA-NMFS-2020-0031-DRAFT-39218
NOAA-NMFS-2020-0031-DRAFT-39219
NOAA-NMFS-2020-0031-DRAFT-39220
NOAA-NMFS-2020-0031-DRAFT-39221
NOAA-NMFS-2020-0031-DRAFT-39222
NOAA-NMFS-2020-0031-DRAFT-39223
NOAA-NMFS-2020-0031-DRAFT-39224
NOAA-NMFS-2020-0031-DRAFT-39225
NOAA-NMFS-2020-0031-DRAFT-39226
NOAA-NMFS-2020-0031-DRAFT-39227
NOAA-NMFS-2020-0031-DRAFT-39228
NOAA-NMFS-2020-0031-DRAFT-39229
NOAA-NMFS-2020-0031-DRAFT-39230
NOAA-NMFS-2020-0031-DRAFT-39231
NOAA-NMFS-2020-0031-DRAFT-39232
NOAA-NMFS-2020-0031-DRAFT-39233
NOAA-NMFS-2020-0031-DRAFT-39234
NOAA-NMFS-2020-0031-DRAFT-39235
NOAA-NMFS-2020-0031-DRAFT-39237
NOAA-NMFS-2020-0031-DRAFT-39238
NOAA-NMFS-2020-0031-DRAFT-39239
NOAA-NMFS-2020-0031-DRAFT-39240
NOAA-NMFS-2020-0031-DRAFT-39242
NOAA-NMFS-2020-0031-DRAFT-39243
NOAA-NMFS-2020-0031-DRAFT-39244
NOAA-NMFS-2020-0031-DRAFT-39245
NOAA-NMFS-2020-0031-DRAFT-39246
NOAA-NMFS-2020-0031-DRAFT-39247
NOAA-NMFS-2020-0031-DRAFT-39248
NOAA-NMFS-2020-0031-DRAFT-39249
NOAA-NMFS-2020-0031-DRAFT-39250
NOAA-NMFS-2020-0031-DRAFT-39251
NOAA-NMFS-2020-0031-DRAFT-39252
NOAA-NMFS-2020-0031-DRAFT-39253
NOAA-NMFS-2020-0031-DRAFT-39254
NOAA-NMFS-2020-0031-DRAFT-39255
NOAA-NMFS-2020-0031-DRAFT-39256
NOAA-NMFS-2020-0031-DRAFT-39257
NOAA-NMFS-2020-0031-DRAFT-39258
NOAA-NMFS-2020-0031-DRAFT-39259
NOAA-NMFS-2020-0031-DRAFT-39260

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NOAA-NMFS-2020-0031-DRAFT-34223
NOAA-NMFS-2020-0031-DRAFT-34224
NOAA-NMFS-2020-0031-DRAFT-34225
NOAA-NMFS-2020-0031-DRAFT-34226
NOAA-NMFS-2020-0031-DRAFT-34227
NOAA-NMFS-2020-0031-DRAFT-34228
NOAA-NMFS-2020-0031-DRAFT-34229
NOAA-NMFS-2020-0031-DRAFT-34230
NOAA-NMFS-2020-0031-DRAFT-34231
NOAA-NMFS-2020-0031-DRAFT-34232
NOAA-NMFS-2020-0031-DRAFT-34233
NOAA-NMFS-2020-0031-DRAFT-34234
NOAA-NMFS-2020-0031-DRAFT-34235
NOAA-NMFS-2020-0031-DRAFT-34236
NOAA-NMFS-2020-0031-DRAFT-34237
NOAA-NMFS-2020-0031-DRAFT-34238
NOAA-NMFS-2020-0031-DRAFT-34239
NOAA-NMFS-2020-0031-DRAFT-34240
NOAA-NMFS-2020-0031-DRAFT-34241
NOAA-NMFS-2020-0031-DRAFT-34242
NOAA-NMFS-2020-0031-DRAFT-34243
NOAA-NMFS-2020-0031-DRAFT-34244
NOAA-NMFS-2020-0031-DRAFT-34245
NOAA-NMFS-2020-0031-DRAFT-34246
NOAA-NMFS-2020-0031-DRAFT-34247
NOAA-NMFS-2020-0031-DRAFT-34248
NOAA-NMFS-2020-0031-DRAFT-34249
NOAA-NMFS-2020-0031-DRAFT-34250
NOAA-NMFS-2020-0031-DRAFT-34251
NOAA-NMFS-2020-0031-DRAFT-34252
NOAA-NMFS-2020-0031-DRAFT-34253
NOAA-NMFS-2020-0031-DRAFT-34254
NOAA-NMFS-2020-0031-DRAFT-34255
NOAA-NMFS-2020-0031-DRAFT-34256
NOAA-NMFS-2020-0031-DRAFT-34257
NOAA-NMFS-2020-0031-DRAFT-34258
NOAA-NMFS-2020-0031-DRAFT-34259
NOAA-NMFS-2020-0031-DRAFT-34260
NOAA-NMFS-2020-0031-DRAFT-34261
NOAA-NMFS-2020-0031-DRAFT-34262
NOAA-NMFS-2020-0031-DRAFT-34263

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NOAA-NMFS-2020-0031-DRAFT-39261
NOAA-NMFS-2020-0031-DRAFT-39262
NOAA-NMFS-2020-0031-DRAFT-39263
NOAA-NMFS-2020-0031-DRAFT-39264
NOAA-NMFS-2020-0031-DRAFT-39265
NOAA-NMFS-2020-0031-DRAFT-39267
NOAA-NMFS-2020-0031-DRAFT-39268
NOAA-NMFS-2020-0031-DRAFT-39269
NOAA-NMFS-2020-0031-DRAFT-39270
NOAA-NMFS-2020-0031-DRAFT-39271
NOAA-NMFS-2020-0031-DRAFT-39272
NOAA-NMFS-2020-0031-DRAFT-39273
NOAA-NMFS-2020-0031-DRAFT-39274
NOAA-NMFS-2020-0031-DRAFT-39275
NOAA-NMFS-2020-0031-DRAFT-39276
NOAA-NMFS-2020-0031-DRAFT-39277
NOAA-NMFS-2020-0031-DRAFT-39278
NOAA-NMFS-2020-0031-DRAFT-39279
NOAA-NMFS-2020-0031-DRAFT-39280
NOAA-NMFS-2020-0031-DRAFT-39281
NOAA-NMFS-2020-0031-DRAFT-39282
NOAA-NMFS-2020-0031-DRAFT-39283
NOAA-NMFS-2020-0031-DRAFT-39284
NOAA-NMFS-2020-0031-DRAFT-39285
NOAA-NMFS-2020-0031-DRAFT-39286
NOAA-NMFS-2020-0031-DRAFT-39287
NOAA-NMFS-2020-0031-DRAFT-39288
NOAA-NMFS-2020-0031-DRAFT-39289
NOAA-NMFS-2020-0031-DRAFT-39290
NOAA-NMFS-2020-0031-DRAFT-39291
NOAA-NMFS-2020-0031-DRAFT-39292
NOAA-NMFS-2020-0031-DRAFT-39293
NOAA-NMFS-2020-0031-DRAFT-39294
NOAA-NMFS-2020-0031-DRAFT-39295
NOAA-NMFS-2020-0031-DRAFT-39296
NOAA-NMFS-2020-0031-DRAFT-39297
NOAA-NMFS-2020-0031-DRAFT-39298
NOAA-NMFS-2020-0031-DRAFT-39299
NOAA-NMFS-2020-0031-DRAFT-39300
NOAA-NMFS-2020-0031-DRAFT-39301
NOAA-NMFS-2020-0031-DRAFT-39302

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NOAA-NMFS-2020-0031-DRAFT-34264
NOAA-NMFS-2020-0031-DRAFT-34265
NOAA-NMFS-2020-0031-DRAFT-34266
NOAA-NMFS-2020-0031-DRAFT-34267
NOAA-NMFS-2020-0031-DRAFT-34268
NOAA-NMFS-2020-0031-DRAFT-34269
NOAA-NMFS-2020-0031-DRAFT-34270
NOAA-NMFS-2020-0031-DRAFT-34271
NOAA-NMFS-2020-0031-DRAFT-34272
NOAA-NMFS-2020-0031-DRAFT-34273
NOAA-NMFS-2020-0031-DRAFT-34274
NOAA-NMFS-2020-0031-DRAFT-34275
NOAA-NMFS-2020-0031-DRAFT-34276
NOAA-NMFS-2020-0031-DRAFT-34277
NOAA-NMFS-2020-0031-DRAFT-34278
NOAA-NMFS-2020-0031-DRAFT-34279
NOAA-NMFS-2020-0031-DRAFT-34280
NOAA-NMFS-2020-0031-DRAFT-34281
NOAA-NMFS-2020-0031-DRAFT-34282
NOAA-NMFS-2020-0031-DRAFT-34283
NOAA-NMFS-2020-0031-DRAFT-34284
NOAA-NMFS-2020-0031-DRAFT-34285
NOAA-NMFS-2020-0031-DRAFT-34286
NOAA-NMFS-2020-0031-DRAFT-34287
NOAA-NMFS-2020-0031-DRAFT-34288
NOAA-NMFS-2020-0031-DRAFT-34289
NOAA-NMFS-2020-0031-DRAFT-34290
NOAA-NMFS-2020-0031-DRAFT-34291
NOAA-NMFS-2020-0031-DRAFT-34292
NOAA-NMFS-2020-0031-DRAFT-34293
NOAA-NMFS-2020-0031-DRAFT-34294
NOAA-NMFS-2020-0031-DRAFT-34295
NOAA-NMFS-2020-0031-DRAFT-34296
NOAA-NMFS-2020-0031-DRAFT-34297
NOAA-NMFS-2020-0031-DRAFT-34298
NOAA-NMFS-2020-0031-DRAFT-34299
NOAA-NMFS-2020-0031-DRAFT-34300
NOAA-NMFS-2020-0031-DRAFT-34301
NOAA-NMFS-2020-0031-DRAFT-34302
NOAA-NMFS-2020-0031-DRAFT-34303
NOAA-NMFS-2020-0031-DRAFT-34304

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NOAA-NMFS-2020-0031-DRAFT-39303
NOAA-NMFS-2020-0031-DRAFT-39304
NOAA-NMFS-2020-0031-DRAFT-39305
NOAA-NMFS-2020-0031-DRAFT-39306
NOAA-NMFS-2020-0031-DRAFT-39307
NOAA-NMFS-2020-0031-DRAFT-39308
NOAA-NMFS-2020-0031-DRAFT-39309
NOAA-NMFS-2020-0031-DRAFT-39310
NOAA-NMFS-2020-0031-DRAFT-39311
NOAA-NMFS-2020-0031-DRAFT-39312
NOAA-NMFS-2020-0031-DRAFT-39313
NOAA-NMFS-2020-0031-DRAFT-39314
NOAA-NMFS-2020-0031-DRAFT-39315
NOAA-NMFS-2020-0031-DRAFT-39316
NOAA-NMFS-2020-0031-DRAFT-39318
NOAA-NMFS-2020-0031-DRAFT-39319
NOAA-NMFS-2020-0031-DRAFT-39320
NOAA-NMFS-2020-0031-DRAFT-39321
NOAA-NMFS-2020-0031-DRAFT-39322
NOAA-NMFS-2020-0031-DRAFT-39323
NOAA-NMFS-2020-0031-DRAFT-39324
NOAA-NMFS-2020-0031-DRAFT-39325
NOAA-NMFS-2020-0031-DRAFT-39326
NOAA-NMFS-2020-0031-DRAFT-39327
NOAA-NMFS-2020-0031-DRAFT-39328
NOAA-NMFS-2020-0031-DRAFT-39329
NOAA-NMFS-2020-0031-DRAFT-39330
NOAA-NMFS-2020-0031-DRAFT-39331
NOAA-NMFS-2020-0031-DRAFT-39332
NOAA-NMFS-2020-0031-DRAFT-39333
NOAA-NMFS-2020-0031-DRAFT-39334
NOAA-NMFS-2020-0031-DRAFT-39335
NOAA-NMFS-2020-0031-DRAFT-39336
NOAA-NMFS-2020-0031-DRAFT-39337
NOAA-NMFS-2020-0031-DRAFT-39338
NOAA-NMFS-2020-0031-DRAFT-39339
NOAA-NMFS-2020-0031-DRAFT-39340
NOAA-NMFS-2020-0031-DRAFT-39341
NOAA-NMFS-2020-0031-DRAFT-39342
NOAA-NMFS-2020-0031-DRAFT-39343
NOAA-NMFS-2020-0031-DRAFT-39344

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NOAA-NMFS-2020-0031-DRAFT-34305
NOAA-NMFS-2020-0031-DRAFT-34306
NOAA-NMFS-2020-0031-DRAFT-34307
NOAA-NMFS-2020-0031-DRAFT-34308
NOAA-NMFS-2020-0031-DRAFT-34309
NOAA-NMFS-2020-0031-DRAFT-34310
NOAA-NMFS-2020-0031-DRAFT-34311
NOAA-NMFS-2020-0031-DRAFT-34312
NOAA-NMFS-2020-0031-DRAFT-34313
NOAA-NMFS-2020-0031-DRAFT-34314
NOAA-NMFS-2020-0031-DRAFT-34315
NOAA-NMFS-2020-0031-DRAFT-34316
NOAA-NMFS-2020-0031-DRAFT-34317
NOAA-NMFS-2020-0031-DRAFT-34318
NOAA-NMFS-2020-0031-DRAFT-34319
NOAA-NMFS-2020-0031-DRAFT-34320
NOAA-NMFS-2020-0031-DRAFT-34321
NOAA-NMFS-2020-0031-DRAFT-34322
NOAA-NMFS-2020-0031-DRAFT-34323
NOAA-NMFS-2020-0031-DRAFT-34324
NOAA-NMFS-2020-0031-DRAFT-34325
NOAA-NMFS-2020-0031-DRAFT-34326
NOAA-NMFS-2020-0031-DRAFT-34327
NOAA-NMFS-2020-0031-DRAFT-34328
NOAA-NMFS-2020-0031-DRAFT-34329
NOAA-NMFS-2020-0031-DRAFT-34330
NOAA-NMFS-2020-0031-DRAFT-34331
NOAA-NMFS-2020-0031-DRAFT-34332
NOAA-NMFS-2020-0031-DRAFT-34333
NOAA-NMFS-2020-0031-DRAFT-34334
NOAA-NMFS-2020-0031-DRAFT-34335
NOAA-NMFS-2020-0031-DRAFT-34336
NOAA-NMFS-2020-0031-DRAFT-34337
NOAA-NMFS-2020-0031-DRAFT-34338
NOAA-NMFS-2020-0031-DRAFT-34339
NOAA-NMFS-2020-0031-DRAFT-34340
NOAA-NMFS-2020-0031-DRAFT-34341
NOAA-NMFS-2020-0031-DRAFT-34342
NOAA-NMFS-2020-0031-DRAFT-34343
NOAA-NMFS-2020-0031-DRAFT-34344
NOAA-NMFS-2020-0031-DRAFT-34345

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NOAA-NMFS-2020-0031-DRAFT-39345
NOAA-NMFS-2020-0031-DRAFT-39346
NOAA-NMFS-2020-0031-DRAFT-39347
NOAA-NMFS-2020-0031-DRAFT-39348
NOAA-NMFS-2020-0031-DRAFT-39349
NOAA-NMFS-2020-0031-DRAFT-39350
NOAA-NMFS-2020-0031-DRAFT-39351
NOAA-NMFS-2020-0031-DRAFT-39352
NOAA-NMFS-2020-0031-DRAFT-39353
NOAA-NMFS-2020-0031-DRAFT-39354
NOAA-NMFS-2020-0031-DRAFT-39355
NOAA-NMFS-2020-0031-DRAFT-39356
NOAA-NMFS-2020-0031-DRAFT-39357
NOAA-NMFS-2020-0031-DRAFT-39358
NOAA-NMFS-2020-0031-DRAFT-39359
NOAA-NMFS-2020-0031-DRAFT-39360
NOAA-NMFS-2020-0031-DRAFT-39361
NOAA-NMFS-2020-0031-DRAFT-39362
NOAA-NMFS-2020-0031-DRAFT-39363
NOAA-NMFS-2020-0031-DRAFT-39364
NOAA-NMFS-2020-0031-DRAFT-39365
NOAA-NMFS-2020-0031-DRAFT-39366
NOAA-NMFS-2020-0031-DRAFT-39367
NOAA-NMFS-2020-0031-DRAFT-39368
NOAA-NMFS-2020-0031-DRAFT-39369
NOAA-NMFS-2020-0031-DRAFT-39370
NOAA-NMFS-2020-0031-DRAFT-39371
NOAA-NMFS-2020-0031-DRAFT-39372
NOAA-NMFS-2020-0031-DRAFT-39373
NOAA-NMFS-2020-0031-DRAFT-39374
NOAA-NMFS-2020-0031-DRAFT-39375
NOAA-NMFS-2020-0031-DRAFT-39376
NOAA-NMFS-2020-0031-DRAFT-39377
NOAA-NMFS-2020-0031-DRAFT-39378
NOAA-NMFS-2020-0031-DRAFT-39380
NOAA-NMFS-2020-0031-DRAFT-39381
NOAA-NMFS-2020-0031-DRAFT-39382
NOAA-NMFS-2020-0031-DRAFT-39383
NOAA-NMFS-2020-0031-DRAFT-39384
NOAA-NMFS-2020-0031-DRAFT-39385
NOAA-NMFS-2020-0031-DRAFT-39386

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NOAA-NMFS-2020-0031-DRAFT-34346
NOAA-NMFS-2020-0031-DRAFT-34347
NOAA-NMFS-2020-0031-DRAFT-34348
NOAA-NMFS-2020-0031-DRAFT-34349
NOAA-NMFS-2020-0031-DRAFT-34350
NOAA-NMFS-2020-0031-DRAFT-34351
NOAA-NMFS-2020-0031-DRAFT-34352
NOAA-NMFS-2020-0031-DRAFT-34353
NOAA-NMFS-2020-0031-DRAFT-34354
NOAA-NMFS-2020-0031-DRAFT-34355
NOAA-NMFS-2020-0031-DRAFT-34356
NOAA-NMFS-2020-0031-DRAFT-34357
NOAA-NMFS-2020-0031-DRAFT-34358
NOAA-NMFS-2020-0031-DRAFT-34359
NOAA-NMFS-2020-0031-DRAFT-34360
NOAA-NMFS-2020-0031-DRAFT-34361
NOAA-NMFS-2020-0031-DRAFT-34362
NOAA-NMFS-2020-0031-DRAFT-34363
NOAA-NMFS-2020-0031-DRAFT-34364
NOAA-NMFS-2020-0031-DRAFT-34365
NOAA-NMFS-2020-0031-DRAFT-34366
NOAA-NMFS-2020-0031-DRAFT-34367
NOAA-NMFS-2020-0031-DRAFT-34368
NOAA-NMFS-2020-0031-DRAFT-34369
NOAA-NMFS-2020-0031-DRAFT-34370
NOAA-NMFS-2020-0031-DRAFT-34371
NOAA-NMFS-2020-0031-DRAFT-34372
NOAA-NMFS-2020-0031-DRAFT-34373
NOAA-NMFS-2020-0031-DRAFT-34374
NOAA-NMFS-2020-0031-DRAFT-34375
NOAA-NMFS-2020-0031-DRAFT-34376
NOAA-NMFS-2020-0031-DRAFT-34377
NOAA-NMFS-2020-0031-DRAFT-34378
NOAA-NMFS-2020-0031-DRAFT-34379
NOAA-NMFS-2020-0031-DRAFT-34380
NOAA-NMFS-2020-0031-DRAFT-34381
NOAA-NMFS-2020-0031-DRAFT-34382
NOAA-NMFS-2020-0031-DRAFT-34383
NOAA-NMFS-2020-0031-DRAFT-34384
NOAA-NMFS-2020-0031-DRAFT-34385
NOAA-NMFS-2020-0031-DRAFT-34386

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NOAA-NMFS-2020-0031-DRAFT-39387
NOAA-NMFS-2020-0031-DRAFT-39388
NOAA-NMFS-2020-0031-DRAFT-39389
NOAA-NMFS-2020-0031-DRAFT-39390
NOAA-NMFS-2020-0031-DRAFT-39391
NOAA-NMFS-2020-0031-DRAFT-39392
NOAA-NMFS-2020-0031-DRAFT-39393
NOAA-NMFS-2020-0031-DRAFT-39394
NOAA-NMFS-2020-0031-DRAFT-39395
NOAA-NMFS-2020-0031-DRAFT-39396
NOAA-NMFS-2020-0031-DRAFT-39397
NOAA-NMFS-2020-0031-DRAFT-39398
NOAA-NMFS-2020-0031-DRAFT-39399
NOAA-NMFS-2020-0031-DRAFT-39400
NOAA-NMFS-2020-0031-DRAFT-39401
NOAA-NMFS-2020-0031-DRAFT-39402
NOAA-NMFS-2020-0031-DRAFT-39403
NOAA-NMFS-2020-0031-DRAFT-39404
NOAA-NMFS-2020-0031-DRAFT-39405
NOAA-NMFS-2020-0031-DRAFT-39406
NOAA-NMFS-2020-0031-DRAFT-39407
NOAA-NMFS-2020-0031-DRAFT-39408
NOAA-NMFS-2020-0031-DRAFT-39409
NOAA-NMFS-2020-0031-DRAFT-39410
NOAA-NMFS-2020-0031-DRAFT-39411
NOAA-NMFS-2020-0031-DRAFT-39413
NOAA-NMFS-2020-0031-DRAFT-39414
NOAA-NMFS-2020-0031-DRAFT-39415
NOAA-NMFS-2020-0031-DRAFT-39416
NOAA-NMFS-2020-0031-DRAFT-39417
NOAA-NMFS-2020-0031-DRAFT-39418
NOAA-NMFS-2020-0031-DRAFT-39419
NOAA-NMFS-2020-0031-DRAFT-39420
NOAA-NMFS-2020-0031-DRAFT-39421
NOAA-NMFS-2020-0031-DRAFT-39422
NOAA-NMFS-2020-0031-DRAFT-39423
NOAA-NMFS-2020-0031-DRAFT-39424
NOAA-NMFS-2020-0031-DRAFT-39425
NOAA-NMFS-2020-0031-DRAFT-39426
NOAA-NMFS-2020-0031-DRAFT-39427
NOAA-NMFS-2020-0031-DRAFT-39428

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NOAA-NMFS-2020-0031-DRAFT-34387
NOAA-NMFS-2020-0031-DRAFT-34388
NOAA-NMFS-2020-0031-DRAFT-34389
NOAA-NMFS-2020-0031-DRAFT-34390
NOAA-NMFS-2020-0031-DRAFT-34391
NOAA-NMFS-2020-0031-DRAFT-34392
NOAA-NMFS-2020-0031-DRAFT-34393
NOAA-NMFS-2020-0031-DRAFT-34394
NOAA-NMFS-2020-0031-DRAFT-34395
NOAA-NMFS-2020-0031-DRAFT-34396
NOAA-NMFS-2020-0031-DRAFT-34397
NOAA-NMFS-2020-0031-DRAFT-34398
NOAA-NMFS-2020-0031-DRAFT-34399
NOAA-NMFS-2020-0031-DRAFT-34400
NOAA-NMFS-2020-0031-DRAFT-34401
NOAA-NMFS-2020-0031-DRAFT-34402
NOAA-NMFS-2020-0031-DRAFT-34403
NOAA-NMFS-2020-0031-DRAFT-34404
NOAA-NMFS-2020-0031-DRAFT-34405
NOAA-NMFS-2020-0031-DRAFT-34406
NOAA-NMFS-2020-0031-DRAFT-34407
NOAA-NMFS-2020-0031-DRAFT-34408
NOAA-NMFS-2020-0031-DRAFT-34409
NOAA-NMFS-2020-0031-DRAFT-34410
NOAA-NMFS-2020-0031-DRAFT-34411
NOAA-NMFS-2020-0031-DRAFT-34412
NOAA-NMFS-2020-0031-DRAFT-34413
NOAA-NMFS-2020-0031-DRAFT-34414
NOAA-NMFS-2020-0031-DRAFT-34415
NOAA-NMFS-2020-0031-DRAFT-34416
NOAA-NMFS-2020-0031-DRAFT-34417
NOAA-NMFS-2020-0031-DRAFT-34418
NOAA-NMFS-2020-0031-DRAFT-34419
NOAA-NMFS-2020-0031-DRAFT-34420
NOAA-NMFS-2020-0031-DRAFT-34421
NOAA-NMFS-2020-0031-DRAFT-34422
NOAA-NMFS-2020-0031-DRAFT-34423
NOAA-NMFS-2020-0031-DRAFT-34424
NOAA-NMFS-2020-0031-DRAFT-34425
NOAA-NMFS-2020-0031-DRAFT-34426
NOAA-NMFS-2020-0031-DRAFT-34427

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NOAA-NMFS-2020-0031-DRAFT-39429
NOAA-NMFS-2020-0031-DRAFT-39430
NOAA-NMFS-2020-0031-DRAFT-39431
NOAA-NMFS-2020-0031-DRAFT-39432
NOAA-NMFS-2020-0031-DRAFT-39433
NOAA-NMFS-2020-0031-DRAFT-39434
NOAA-NMFS-2020-0031-DRAFT-39435
NOAA-NMFS-2020-0031-DRAFT-39436
NOAA-NMFS-2020-0031-DRAFT-39437
NOAA-NMFS-2020-0031-DRAFT-39438
NOAA-NMFS-2020-0031-DRAFT-39439
NOAA-NMFS-2020-0031-DRAFT-39440
NOAA-NMFS-2020-0031-DRAFT-39441
NOAA-NMFS-2020-0031-DRAFT-39442
NOAA-NMFS-2020-0031-DRAFT-39443
NOAA-NMFS-2020-0031-DRAFT-39444
NOAA-NMFS-2020-0031-DRAFT-39445
NOAA-NMFS-2020-0031-DRAFT-39446
NOAA-NMFS-2020-0031-DRAFT-39447
NOAA-NMFS-2020-0031-DRAFT-39448
NOAA-NMFS-2020-0031-DRAFT-39449
NOAA-NMFS-2020-0031-DRAFT-39450
NOAA-NMFS-2020-0031-DRAFT-39451
NOAA-NMFS-2020-0031-DRAFT-39452
NOAA-NMFS-2020-0031-DRAFT-39453
NOAA-NMFS-2020-0031-DRAFT-39454
NOAA-NMFS-2020-0031-DRAFT-39455
NOAA-NMFS-2020-0031-DRAFT-39456
NOAA-NMFS-2020-0031-DRAFT-39457
NOAA-NMFS-2020-0031-DRAFT-39458
NOAA-NMFS-2020-0031-DRAFT-39459
NOAA-NMFS-2020-0031-DRAFT-39460
NOAA-NMFS-2020-0031-DRAFT-39461
NOAA-NMFS-2020-0031-DRAFT-39462
NOAA-NMFS-2020-0031-DRAFT-39463
NOAA-NMFS-2020-0031-DRAFT-39464
NOAA-NMFS-2020-0031-DRAFT-39465
NOAA-NMFS-2020-0031-DRAFT-39466
NOAA-NMFS-2020-0031-DRAFT-39467
NOAA-NMFS-2020-0031-DRAFT-39468
NOAA-NMFS-2020-0031-DRAFT-39469

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NOAA-NMFS-2020-0031-DRAFT-34428
NOAA-NMFS-2020-0031-DRAFT-34429
NOAA-NMFS-2020-0031-DRAFT-34430
NOAA-NMFS-2020-0031-DRAFT-34431
NOAA-NMFS-2020-0031-DRAFT-34432
NOAA-NMFS-2020-0031-DRAFT-34433
NOAA-NMFS-2020-0031-DRAFT-34434
NOAA-NMFS-2020-0031-DRAFT-34435
NOAA-NMFS-2020-0031-DRAFT-34436
NOAA-NMFS-2020-0031-DRAFT-34437
NOAA-NMFS-2020-0031-DRAFT-34438
NOAA-NMFS-2020-0031-DRAFT-34439
NOAA-NMFS-2020-0031-DRAFT-34440
NOAA-NMFS-2020-0031-DRAFT-34441
NOAA-NMFS-2020-0031-DRAFT-34442
NOAA-NMFS-2020-0031-DRAFT-34443
NOAA-NMFS-2020-0031-DRAFT-34444
NOAA-NMFS-2020-0031-DRAFT-34445
NOAA-NMFS-2020-0031-DRAFT-34446
NOAA-NMFS-2020-0031-DRAFT-34447
NOAA-NMFS-2020-0031-DRAFT-34448
NOAA-NMFS-2020-0031-DRAFT-34449
NOAA-NMFS-2020-0031-DRAFT-34450
NOAA-NMFS-2020-0031-DRAFT-34451
NOAA-NMFS-2020-0031-DRAFT-34452
NOAA-NMFS-2020-0031-DRAFT-34453
NOAA-NMFS-2020-0031-DRAFT-34454
NOAA-NMFS-2020-0031-DRAFT-34455
NOAA-NMFS-2020-0031-DRAFT-34456
NOAA-NMFS-2020-0031-DRAFT-34457
NOAA-NMFS-2020-0031-DRAFT-34458
NOAA-NMFS-2020-0031-DRAFT-34459
NOAA-NMFS-2020-0031-DRAFT-34460
NOAA-NMFS-2020-0031-DRAFT-34461
NOAA-NMFS-2020-0031-DRAFT-34462
NOAA-NMFS-2020-0031-DRAFT-34463
NOAA-NMFS-2020-0031-DRAFT-34464
NOAA-NMFS-2020-0031-DRAFT-34465
NOAA-NMFS-2020-0031-DRAFT-34466
NOAA-NMFS-2020-0031-DRAFT-34467
NOAA-NMFS-2020-0031-DRAFT-34468

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NOAA-NMFS-2020-0031-DRAFT-39470
NOAA-NMFS-2020-0031-DRAFT-39471
NOAA-NMFS-2020-0031-DRAFT-39472
NOAA-NMFS-2020-0031-DRAFT-39473
NOAA-NMFS-2020-0031-DRAFT-39474
NOAA-NMFS-2020-0031-DRAFT-39475
NOAA-NMFS-2020-0031-DRAFT-39476
NOAA-NMFS-2020-0031-DRAFT-39477
NOAA-NMFS-2020-0031-DRAFT-39478
NOAA-NMFS-2020-0031-DRAFT-39479
NOAA-NMFS-2020-0031-DRAFT-39480
NOAA-NMFS-2020-0031-DRAFT-39481
NOAA-NMFS-2020-0031-DRAFT-39482
NOAA-NMFS-2020-0031-DRAFT-39483
NOAA-NMFS-2020-0031-DRAFT-39484
NOAA-NMFS-2020-0031-DRAFT-39485
NOAA-NMFS-2020-0031-DRAFT-39486
NOAA-NMFS-2020-0031-DRAFT-39487
NOAA-NMFS-2020-0031-DRAFT-39488
NOAA-NMFS-2020-0031-DRAFT-39489
NOAA-NMFS-2020-0031-DRAFT-39490
NOAA-NMFS-2020-0031-DRAFT-39491
NOAA-NMFS-2020-0031-DRAFT-39492
NOAA-NMFS-2020-0031-DRAFT-39493
NOAA-NMFS-2020-0031-DRAFT-39494
NOAA-NMFS-2020-0031-DRAFT-39495
NOAA-NMFS-2020-0031-DRAFT-39496
NOAA-NMFS-2020-0031-DRAFT-39497
NOAA-NMFS-2020-0031-DRAFT-39498
NOAA-NMFS-2020-0031-DRAFT-39499
NOAA-NMFS-2020-0031-DRAFT-39500
NOAA-NMFS-2020-0031-DRAFT-39501
NOAA-NMFS-2020-0031-DRAFT-39502
NOAA-NMFS-2020-0031-DRAFT-39503
NOAA-NMFS-2020-0031-DRAFT-39504
NOAA-NMFS-2020-0031-DRAFT-39505
NOAA-NMFS-2020-0031-DRAFT-39506
NOAA-NMFS-2020-0031-DRAFT-39507
NOAA-NMFS-2020-0031-DRAFT-39508
NOAA-NMFS-2020-0031-DRAFT-39509
NOAA-NMFS-2020-0031-DRAFT-39510

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NOAA-NMFS-2020-0031-DRAFT-34469
NOAA-NMFS-2020-0031-DRAFT-34470
NOAA-NMFS-2020-0031-DRAFT-34471
NOAA-NMFS-2020-0031-DRAFT-34472
NOAA-NMFS-2020-0031-DRAFT-34473
NOAA-NMFS-2020-0031-DRAFT-34474
NOAA-NMFS-2020-0031-DRAFT-34475
NOAA-NMFS-2020-0031-DRAFT-34476
NOAA-NMFS-2020-0031-DRAFT-34477
NOAA-NMFS-2020-0031-DRAFT-34478
NOAA-NMFS-2020-0031-DRAFT-34479
NOAA-NMFS-2020-0031-DRAFT-34480
NOAA-NMFS-2020-0031-DRAFT-34481
NOAA-NMFS-2020-0031-DRAFT-34482
NOAA-NMFS-2020-0031-DRAFT-34483
NOAA-NMFS-2020-0031-DRAFT-34484
NOAA-NMFS-2020-0031-DRAFT-34485
NOAA-NMFS-2020-0031-DRAFT-34486
NOAA-NMFS-2020-0031-DRAFT-34487
NOAA-NMFS-2020-0031-DRAFT-34488
NOAA-NMFS-2020-0031-DRAFT-34489
NOAA-NMFS-2020-0031-DRAFT-34490
NOAA-NMFS-2020-0031-DRAFT-34491
NOAA-NMFS-2020-0031-DRAFT-34492
NOAA-NMFS-2020-0031-DRAFT-34493
NOAA-NMFS-2020-0031-DRAFT-34494
NOAA-NMFS-2020-0031-DRAFT-34495
NOAA-NMFS-2020-0031-DRAFT-34496
NOAA-NMFS-2020-0031-DRAFT-34497
NOAA-NMFS-2020-0031-DRAFT-34498
NOAA-NMFS-2020-0031-DRAFT-34499
NOAA-NMFS-2020-0031-DRAFT-34500
NOAA-NMFS-2020-0031-DRAFT-34501
NOAA-NMFS-2020-0031-DRAFT-34502
NOAA-NMFS-2020-0031-DRAFT-34503
NOAA-NMFS-2020-0031-DRAFT-34504
NOAA-NMFS-2020-0031-DRAFT-34505
NOAA-NMFS-2020-0031-DRAFT-34506
NOAA-NMFS-2020-0031-DRAFT-34507
NOAA-NMFS-2020-0031-DRAFT-34508
NOAA-NMFS-2020-0031-DRAFT-34509

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NOAA-NMFS-2020-0031-DRAFT-39511
NOAA-NMFS-2020-0031-DRAFT-39512
NOAA-NMFS-2020-0031-DRAFT-39513
NOAA-NMFS-2020-0031-DRAFT-39514
NOAA-NMFS-2020-0031-DRAFT-39515
NOAA-NMFS-2020-0031-DRAFT-39516
NOAA-NMFS-2020-0031-DRAFT-39517
NOAA-NMFS-2020-0031-DRAFT-39518
NOAA-NMFS-2020-0031-DRAFT-39519
NOAA-NMFS-2020-0031-DRAFT-39520
NOAA-NMFS-2020-0031-DRAFT-39521
NOAA-NMFS-2020-0031-DRAFT-39522
NOAA-NMFS-2020-0031-DRAFT-39523
NOAA-NMFS-2020-0031-DRAFT-39524
NOAA-NMFS-2020-0031-DRAFT-39525
NOAA-NMFS-2020-0031-DRAFT-39526
NOAA-NMFS-2020-0031-DRAFT-39528
NOAA-NMFS-2020-0031-DRAFT-39529
NOAA-NMFS-2020-0031-DRAFT-39530
NOAA-NMFS-2020-0031-DRAFT-39531
NOAA-NMFS-2020-0031-DRAFT-39532
NOAA-NMFS-2020-0031-DRAFT-39533
NOAA-NMFS-2020-0031-DRAFT-39534
NOAA-NMFS-2020-0031-DRAFT-39535
NOAA-NMFS-2020-0031-DRAFT-39536
NOAA-NMFS-2020-0031-DRAFT-39537
NOAA-NMFS-2020-0031-DRAFT-39538
NOAA-NMFS-2020-0031-DRAFT-39539
NOAA-NMFS-2020-0031-DRAFT-39540
NOAA-NMFS-2020-0031-DRAFT-39541
NOAA-NMFS-2020-0031-DRAFT-39542
NOAA-NMFS-2020-0031-DRAFT-39543
NOAA-NMFS-2020-0031-DRAFT-39544
NOAA-NMFS-2020-0031-DRAFT-39545
NOAA-NMFS-2020-0031-DRAFT-39546
NOAA-NMFS-2020-0031-DRAFT-39547
NOAA-NMFS-2020-0031-DRAFT-39548
NOAA-NMFS-2020-0031-DRAFT-39549
NOAA-NMFS-2020-0031-DRAFT-39550
NOAA-NMFS-2020-0031-DRAFT-39551
NOAA-NMFS-2020-0031-DRAFT-39552

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NOAA-NMFS-2020-0031-DRAFT-34510
NOAA-NMFS-2020-0031-DRAFT-34511
NOAA-NMFS-2020-0031-DRAFT-34512
NOAA-NMFS-2020-0031-DRAFT-34513
NOAA-NMFS-2020-0031-DRAFT-34514
NOAA-NMFS-2020-0031-DRAFT-34515
NOAA-NMFS-2020-0031-DRAFT-34516
NOAA-NMFS-2020-0031-DRAFT-34517
NOAA-NMFS-2020-0031-DRAFT-34518
NOAA-NMFS-2020-0031-DRAFT-34519
NOAA-NMFS-2020-0031-DRAFT-34520
NOAA-NMFS-2020-0031-DRAFT-34521
NOAA-NMFS-2020-0031-DRAFT-34522
NOAA-NMFS-2020-0031-DRAFT-34523
NOAA-NMFS-2020-0031-DRAFT-34524
NOAA-NMFS-2020-0031-DRAFT-34525
NOAA-NMFS-2020-0031-DRAFT-34526
NOAA-NMFS-2020-0031-DRAFT-34527
NOAA-NMFS-2020-0031-DRAFT-34528
NOAA-NMFS-2020-0031-DRAFT-34529
NOAA-NMFS-2020-0031-DRAFT-34530
NOAA-NMFS-2020-0031-DRAFT-34531
NOAA-NMFS-2020-0031-DRAFT-34532
NOAA-NMFS-2020-0031-DRAFT-34533
NOAA-NMFS-2020-0031-DRAFT-34534
NOAA-NMFS-2020-0031-DRAFT-34535
NOAA-NMFS-2020-0031-DRAFT-34536
NOAA-NMFS-2020-0031-DRAFT-34537
NOAA-NMFS-2020-0031-DRAFT-34538
NOAA-NMFS-2020-0031-DRAFT-34539
NOAA-NMFS-2020-0031-DRAFT-34540
NOAA-NMFS-2020-0031-DRAFT-34541
NOAA-NMFS-2020-0031-DRAFT-34542
NOAA-NMFS-2020-0031-DRAFT-34543
NOAA-NMFS-2020-0031-DRAFT-34544
NOAA-NMFS-2020-0031-DRAFT-34545
NOAA-NMFS-2020-0031-DRAFT-34546
NOAA-NMFS-2020-0031-DRAFT-34547
NOAA-NMFS-2020-0031-DRAFT-34548
NOAA-NMFS-2020-0031-DRAFT-34549
NOAA-NMFS-2020-0031-DRAFT-34550

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NOAA-NMFS-2020-0031-DRAFT-39553
NOAA-NMFS-2020-0031-DRAFT-39554
NOAA-NMFS-2020-0031-DRAFT-39555
NOAA-NMFS-2020-0031-DRAFT-39556
NOAA-NMFS-2020-0031-DRAFT-39557
NOAA-NMFS-2020-0031-DRAFT-39558
NOAA-NMFS-2020-0031-DRAFT-39559
NOAA-NMFS-2020-0031-DRAFT-39560
NOAA-NMFS-2020-0031-DRAFT-39561
NOAA-NMFS-2020-0031-DRAFT-39562
NOAA-NMFS-2020-0031-DRAFT-39563
NOAA-NMFS-2020-0031-DRAFT-39564
NOAA-NMFS-2020-0031-DRAFT-39565
NOAA-NMFS-2020-0031-DRAFT-39566
NOAA-NMFS-2020-0031-DRAFT-39567
NOAA-NMFS-2020-0031-DRAFT-39568
NOAA-NMFS-2020-0031-DRAFT-39570
NOAA-NMFS-2020-0031-DRAFT-39571
NOAA-NMFS-2020-0031-DRAFT-39572
NOAA-NMFS-2020-0031-DRAFT-39573
NOAA-NMFS-2020-0031-DRAFT-39574
NOAA-NMFS-2020-0031-DRAFT-39575
NOAA-NMFS-2020-0031-DRAFT-39576
NOAA-NMFS-2020-0031-DRAFT-39577
NOAA-NMFS-2020-0031-DRAFT-39578
NOAA-NMFS-2020-0031-DRAFT-39579
NOAA-NMFS-2020-0031-DRAFT-39580
NOAA-NMFS-2020-0031-DRAFT-39581
NOAA-NMFS-2020-0031-DRAFT-39582
NOAA-NMFS-2020-0031-DRAFT-39583
NOAA-NMFS-2020-0031-DRAFT-39584
NOAA-NMFS-2020-0031-DRAFT-39585
NOAA-NMFS-2020-0031-DRAFT-39586
NOAA-NMFS-2020-0031-DRAFT-39587
NOAA-NMFS-2020-0031-DRAFT-39588
NOAA-NMFS-2020-0031-DRAFT-39589
NOAA-NMFS-2020-0031-DRAFT-39590
NOAA-NMFS-2020-0031-DRAFT-39591
NOAA-NMFS-2020-0031-DRAFT-39592
NOAA-NMFS-2020-0031-DRAFT-39593
NOAA-NMFS-2020-0031-DRAFT-39594

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NOAA-NMFS-2020-0031-DRAFT-34551
NOAA-NMFS-2020-0031-DRAFT-34552
NOAA-NMFS-2020-0031-DRAFT-34553
NOAA-NMFS-2020-0031-DRAFT-34554
NOAA-NMFS-2020-0031-DRAFT-34555
NOAA-NMFS-2020-0031-DRAFT-34556
NOAA-NMFS-2020-0031-DRAFT-34557
NOAA-NMFS-2020-0031-DRAFT-34558
NOAA-NMFS-2020-0031-DRAFT-34559
NOAA-NMFS-2020-0031-DRAFT-34560
NOAA-NMFS-2020-0031-DRAFT-34561
NOAA-NMFS-2020-0031-DRAFT-34562
NOAA-NMFS-2020-0031-DRAFT-34563
NOAA-NMFS-2020-0031-DRAFT-34564
NOAA-NMFS-2020-0031-DRAFT-34565
NOAA-NMFS-2020-0031-DRAFT-34566
NOAA-NMFS-2020-0031-DRAFT-34567
NOAA-NMFS-2020-0031-DRAFT-34568
NOAA-NMFS-2020-0031-DRAFT-34569
NOAA-NMFS-2020-0031-DRAFT-34570
NOAA-NMFS-2020-0031-DRAFT-34571
NOAA-NMFS-2020-0031-DRAFT-34572
NOAA-NMFS-2020-0031-DRAFT-34573
NOAA-NMFS-2020-0031-DRAFT-34574
NOAA-NMFS-2020-0031-DRAFT-34575
NOAA-NMFS-2020-0031-DRAFT-34576
NOAA-NMFS-2020-0031-DRAFT-34577
NOAA-NMFS-2020-0031-DRAFT-34578
NOAA-NMFS-2020-0031-DRAFT-34579
NOAA-NMFS-2020-0031-DRAFT-34580
NOAA-NMFS-2020-0031-DRAFT-34581
NOAA-NMFS-2020-0031-DRAFT-34582
NOAA-NMFS-2020-0031-DRAFT-34583
NOAA-NMFS-2020-0031-DRAFT-34584
NOAA-NMFS-2020-0031-DRAFT-34585
NOAA-NMFS-2020-0031-DRAFT-34586
NOAA-NMFS-2020-0031-DRAFT-34587
NOAA-NMFS-2020-0031-DRAFT-34588
NOAA-NMFS-2020-0031-DRAFT-34589
NOAA-NMFS-2020-0031-DRAFT-34590
NOAA-NMFS-2020-0031-DRAFT-34591

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NOAA-NMFS-2020-0031-DRAFT-39595
NOAA-NMFS-2020-0031-DRAFT-39596
NOAA-NMFS-2020-0031-DRAFT-39597
NOAA-NMFS-2020-0031-DRAFT-39598
NOAA-NMFS-2020-0031-DRAFT-39599
NOAA-NMFS-2020-0031-DRAFT-39600
NOAA-NMFS-2020-0031-DRAFT-39601
NOAA-NMFS-2020-0031-DRAFT-39602
NOAA-NMFS-2020-0031-DRAFT-39603
NOAA-NMFS-2020-0031-DRAFT-39604
NOAA-NMFS-2020-0031-DRAFT-39605
NOAA-NMFS-2020-0031-DRAFT-39606
NOAA-NMFS-2020-0031-DRAFT-39607
NOAA-NMFS-2020-0031-DRAFT-39608
NOAA-NMFS-2020-0031-DRAFT-39609
NOAA-NMFS-2020-0031-DRAFT-39610
NOAA-NMFS-2020-0031-DRAFT-39612
NOAA-NMFS-2020-0031-DRAFT-39613
NOAA-NMFS-2020-0031-DRAFT-39614
NOAA-NMFS-2020-0031-DRAFT-39615
NOAA-NMFS-2020-0031-DRAFT-39616
NOAA-NMFS-2020-0031-DRAFT-39617
NOAA-NMFS-2020-0031-DRAFT-39618
NOAA-NMFS-2020-0031-DRAFT-39619
NOAA-NMFS-2020-0031-DRAFT-39620
NOAA-NMFS-2020-0031-DRAFT-39621
NOAA-NMFS-2020-0031-DRAFT-39622
NOAA-NMFS-2020-0031-DRAFT-39623
NOAA-NMFS-2020-0031-DRAFT-39624
NOAA-NMFS-2020-0031-DRAFT-39625
NOAA-NMFS-2020-0031-DRAFT-39626
NOAA-NMFS-2020-0031-DRAFT-39627
NOAA-NMFS-2020-0031-DRAFT-39628
NOAA-NMFS-2020-0031-DRAFT-39629
NOAA-NMFS-2020-0031-DRAFT-39630
NOAA-NMFS-2020-0031-DRAFT-39631
NOAA-NMFS-2020-0031-DRAFT-39632
NOAA-NMFS-2020-0031-DRAFT-39633
NOAA-NMFS-2020-0031-DRAFT-39634
NOAA-NMFS-2020-0031-DRAFT-39635
NOAA-NMFS-2020-0031-DRAFT-39636

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NOAA-NMFS-2020-0031-DRAFT-34592
NOAA-NMFS-2020-0031-DRAFT-34593
NOAA-NMFS-2020-0031-DRAFT-34594
NOAA-NMFS-2020-0031-DRAFT-34595
NOAA-NMFS-2020-0031-DRAFT-34596
NOAA-NMFS-2020-0031-DRAFT-34597
NOAA-NMFS-2020-0031-DRAFT-34598
NOAA-NMFS-2020-0031-DRAFT-34599
NOAA-NMFS-2020-0031-DRAFT-34600
NOAA-NMFS-2020-0031-DRAFT-34601
NOAA-NMFS-2020-0031-DRAFT-34602
NOAA-NMFS-2020-0031-DRAFT-34603
NOAA-NMFS-2020-0031-DRAFT-34604
NOAA-NMFS-2020-0031-DRAFT-34605
NOAA-NMFS-2020-0031-DRAFT-34606
NOAA-NMFS-2020-0031-DRAFT-34607
NOAA-NMFS-2020-0031-DRAFT-34608
NOAA-NMFS-2020-0031-DRAFT-34609
NOAA-NMFS-2020-0031-DRAFT-34610
NOAA-NMFS-2020-0031-DRAFT-34611
NOAA-NMFS-2020-0031-DRAFT-34612
NOAA-NMFS-2020-0031-DRAFT-34613
NOAA-NMFS-2020-0031-DRAFT-34614
NOAA-NMFS-2020-0031-DRAFT-34615
NOAA-NMFS-2020-0031-DRAFT-34616
NOAA-NMFS-2020-0031-DRAFT-34617
NOAA-NMFS-2020-0031-DRAFT-34618
NOAA-NMFS-2020-0031-DRAFT-34619
NOAA-NMFS-2020-0031-DRAFT-34620
NOAA-NMFS-2020-0031-DRAFT-34621
NOAA-NMFS-2020-0031-DRAFT-34622
NOAA-NMFS-2020-0031-DRAFT-34623
NOAA-NMFS-2020-0031-DRAFT-34624
NOAA-NMFS-2020-0031-DRAFT-34625
NOAA-NMFS-2020-0031-DRAFT-34626
NOAA-NMFS-2020-0031-DRAFT-34627
NOAA-NMFS-2020-0031-DRAFT-34628
NOAA-NMFS-2020-0031-DRAFT-34629
NOAA-NMFS-2020-0031-DRAFT-34630
NOAA-NMFS-2020-0031-DRAFT-34631
NOAA-NMFS-2020-0031-DRAFT-34632

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NOAA-NMFS-2020-0031-DRAFT-39637
NOAA-NMFS-2020-0031-DRAFT-39638
NOAA-NMFS-2020-0031-DRAFT-39639
NOAA-NMFS-2020-0031-DRAFT-39640
NOAA-NMFS-2020-0031-DRAFT-39641
NOAA-NMFS-2020-0031-DRAFT-39642
NOAA-NMFS-2020-0031-DRAFT-39643
NOAA-NMFS-2020-0031-DRAFT-39644
NOAA-NMFS-2020-0031-DRAFT-39645
NOAA-NMFS-2020-0031-DRAFT-39646
NOAA-NMFS-2020-0031-DRAFT-39647
NOAA-NMFS-2020-0031-DRAFT-39648
NOAA-NMFS-2020-0031-DRAFT-39649
NOAA-NMFS-2020-0031-DRAFT-39650
NOAA-NMFS-2020-0031-DRAFT-39651
NOAA-NMFS-2020-0031-DRAFT-39652
NOAA-NMFS-2020-0031-DRAFT-39653
NOAA-NMFS-2020-0031-DRAFT-39654
NOAA-NMFS-2020-0031-DRAFT-39655
NOAA-NMFS-2020-0031-DRAFT-39656
NOAA-NMFS-2020-0031-DRAFT-39657
NOAA-NMFS-2020-0031-DRAFT-39658
NOAA-NMFS-2020-0031-DRAFT-39659
NOAA-NMFS-2020-0031-DRAFT-39660
NOAA-NMFS-2020-0031-DRAFT-39661
NOAA-NMFS-2020-0031-DRAFT-39662
NOAA-NMFS-2020-0031-DRAFT-39663
NOAA-NMFS-2020-0031-DRAFT-39664
NOAA-NMFS-2020-0031-DRAFT-39665
NOAA-NMFS-2020-0031-DRAFT-39666
NOAA-NMFS-2020-0031-DRAFT-39667
NOAA-NMFS-2020-0031-DRAFT-39668
NOAA-NMFS-2020-0031-DRAFT-39669
NOAA-NMFS-2020-0031-DRAFT-39670
NOAA-NMFS-2020-0031-DRAFT-39671
NOAA-NMFS-2020-0031-DRAFT-39672
NOAA-NMFS-2020-0031-DRAFT-39673
NOAA-NMFS-2020-0031-DRAFT-39674
NOAA-NMFS-2020-0031-DRAFT-39675
NOAA-NMFS-2020-0031-DRAFT-39676
NOAA-NMFS-2020-0031-DRAFT-39677

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NOAA-NMFS-2020-0031-DRAFT-34633
NOAA-NMFS-2020-0031-DRAFT-34634
NOAA-NMFS-2020-0031-DRAFT-34635
NOAA-NMFS-2020-0031-DRAFT-34636
NOAA-NMFS-2020-0031-DRAFT-34637
NOAA-NMFS-2020-0031-DRAFT-34638
NOAA-NMFS-2020-0031-DRAFT-34639
NOAA-NMFS-2020-0031-DRAFT-34640
NOAA-NMFS-2020-0031-DRAFT-34641
NOAA-NMFS-2020-0031-DRAFT-34642
NOAA-NMFS-2020-0031-DRAFT-34643
NOAA-NMFS-2020-0031-DRAFT-34644
NOAA-NMFS-2020-0031-DRAFT-34645
NOAA-NMFS-2020-0031-DRAFT-34646
NOAA-NMFS-2020-0031-DRAFT-34647
NOAA-NMFS-2020-0031-DRAFT-34648
NOAA-NMFS-2020-0031-DRAFT-34649
NOAA-NMFS-2020-0031-DRAFT-34650
NOAA-NMFS-2020-0031-DRAFT-34651
NOAA-NMFS-2020-0031-DRAFT-34652
NOAA-NMFS-2020-0031-DRAFT-34653
NOAA-NMFS-2020-0031-DRAFT-34654
NOAA-NMFS-2020-0031-DRAFT-34655
NOAA-NMFS-2020-0031-DRAFT-34656
NOAA-NMFS-2020-0031-DRAFT-34657
NOAA-NMFS-2020-0031-DRAFT-34658
NOAA-NMFS-2020-0031-DRAFT-34659
NOAA-NMFS-2020-0031-DRAFT-34660
NOAA-NMFS-2020-0031-DRAFT-34661
NOAA-NMFS-2020-0031-DRAFT-34662
NOAA-NMFS-2020-0031-DRAFT-34663
NOAA-NMFS-2020-0031-DRAFT-34664
NOAA-NMFS-2020-0031-DRAFT-34665
NOAA-NMFS-2020-0031-DRAFT-34666
NOAA-NMFS-2020-0031-DRAFT-34667
NOAA-NMFS-2020-0031-DRAFT-34668
NOAA-NMFS-2020-0031-DRAFT-34669
NOAA-NMFS-2020-0031-DRAFT-34670
NOAA-NMFS-2020-0031-DRAFT-34671
NOAA-NMFS-2020-0031-DRAFT-34672
NOAA-NMFS-2020-0031-DRAFT-34673

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NOAA-NMFS-2020-0031-DRAFT-39678
NOAA-NMFS-2020-0031-DRAFT-39679
NOAA-NMFS-2020-0031-DRAFT-39680
NOAA-NMFS-2020-0031-DRAFT-39681
NOAA-NMFS-2020-0031-DRAFT-39682
NOAA-NMFS-2020-0031-DRAFT-39683
NOAA-NMFS-2020-0031-DRAFT-39684
NOAA-NMFS-2020-0031-DRAFT-39685
NOAA-NMFS-2020-0031-DRAFT-39686
NOAA-NMFS-2020-0031-DRAFT-39687
NOAA-NMFS-2020-0031-DRAFT-39688
NOAA-NMFS-2020-0031-DRAFT-39689
NOAA-NMFS-2020-0031-DRAFT-39690
NOAA-NMFS-2020-0031-DRAFT-39691
NOAA-NMFS-2020-0031-DRAFT-39692
NOAA-NMFS-2020-0031-DRAFT-39693
NOAA-NMFS-2020-0031-DRAFT-39694
NOAA-NMFS-2020-0031-DRAFT-39695
NOAA-NMFS-2020-0031-DRAFT-39696
NOAA-NMFS-2020-0031-DRAFT-39697
NOAA-NMFS-2020-0031-DRAFT-39698
NOAA-NMFS-2020-0031-DRAFT-39699
NOAA-NMFS-2020-0031-DRAFT-39700
NOAA-NMFS-2020-0031-DRAFT-39701
NOAA-NMFS-2020-0031-DRAFT-39702
NOAA-NMFS-2020-0031-DRAFT-39703
NOAA-NMFS-2020-0031-DRAFT-39704
NOAA-NMFS-2020-0031-DRAFT-39705
NOAA-NMFS-2020-0031-DRAFT-39706
NOAA-NMFS-2020-0031-DRAFT-39707
NOAA-NMFS-2020-0031-DRAFT-39708
NOAA-NMFS-2020-0031-DRAFT-39709
NOAA-NMFS-2020-0031-DRAFT-39710
NOAA-NMFS-2020-0031-DRAFT-39711
NOAA-NMFS-2020-0031-DRAFT-39712
NOAA-NMFS-2020-0031-DRAFT-39713
NOAA-NMFS-2020-0031-DRAFT-39714
NOAA-NMFS-2020-0031-DRAFT-39715
NOAA-NMFS-2020-0031-DRAFT-39716
NOAA-NMFS-2020-0031-DRAFT-39717
NOAA-NMFS-2020-0031-DRAFT-39718

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NOAA-NMFS-2020-0031-DRAFT-34674
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NOAA-NMFS-2020-0031-DRAFT-34680
NOAA-NMFS-2020-0031-DRAFT-34681
NOAA-NMFS-2020-0031-DRAFT-34682
NOAA-NMFS-2020-0031-DRAFT-34683
NOAA-NMFS-2020-0031-DRAFT-34684
NOAA-NMFS-2020-0031-DRAFT-34685
NOAA-NMFS-2020-0031-DRAFT-34686
NOAA-NMFS-2020-0031-DRAFT-34687
NOAA-NMFS-2020-0031-DRAFT-34688
NOAA-NMFS-2020-0031-DRAFT-34689
NOAA-NMFS-2020-0031-DRAFT-34690
NOAA-NMFS-2020-0031-DRAFT-34691
NOAA-NMFS-2020-0031-DRAFT-34692
NOAA-NMFS-2020-0031-DRAFT-34693
NOAA-NMFS-2020-0031-DRAFT-34694
NOAA-NMFS-2020-0031-DRAFT-34695
NOAA-NMFS-2020-0031-DRAFT-34696
NOAA-NMFS-2020-0031-DRAFT-34697
NOAA-NMFS-2020-0031-DRAFT-34698
NOAA-NMFS-2020-0031-DRAFT-34699
NOAA-NMFS-2020-0031-DRAFT-34700
NOAA-NMFS-2020-0031-DRAFT-34701
NOAA-NMFS-2020-0031-DRAFT-34702
NOAA-NMFS-2020-0031-DRAFT-34703
NOAA-NMFS-2020-0031-DRAFT-34704
NOAA-NMFS-2020-0031-DRAFT-34705
NOAA-NMFS-2020-0031-DRAFT-34706
NOAA-NMFS-2020-0031-DRAFT-34707
NOAA-NMFS-2020-0031-DRAFT-34708
NOAA-NMFS-2020-0031-DRAFT-34709
NOAA-NMFS-2020-0031-DRAFT-34710
NOAA-NMFS-2020-0031-DRAFT-34711
NOAA-NMFS-2020-0031-DRAFT-34712
NOAA-NMFS-2020-0031-DRAFT-34713
NOAA-NMFS-2020-0031-DRAFT-34714

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NOAA-NMFS-2020-0031-DRAFT-39719
NOAA-NMFS-2020-0031-DRAFT-39720
NOAA-NMFS-2020-0031-DRAFT-39721
NOAA-NMFS-2020-0031-DRAFT-39722
NOAA-NMFS-2020-0031-DRAFT-39723
NOAA-NMFS-2020-0031-DRAFT-39724
NOAA-NMFS-2020-0031-DRAFT-39725
NOAA-NMFS-2020-0031-DRAFT-39726
NOAA-NMFS-2020-0031-DRAFT-39727
NOAA-NMFS-2020-0031-DRAFT-39729
NOAA-NMFS-2020-0031-DRAFT-39730
NOAA-NMFS-2020-0031-DRAFT-39731
NOAA-NMFS-2020-0031-DRAFT-39732
NOAA-NMFS-2020-0031-DRAFT-39733
NOAA-NMFS-2020-0031-DRAFT-39734
NOAA-NMFS-2020-0031-DRAFT-39735
NOAA-NMFS-2020-0031-DRAFT-39736
NOAA-NMFS-2020-0031-DRAFT-39737
NOAA-NMFS-2020-0031-DRAFT-39738
NOAA-NMFS-2020-0031-DRAFT-39739
NOAA-NMFS-2020-0031-DRAFT-39740
NOAA-NMFS-2020-0031-DRAFT-39742
NOAA-NMFS-2020-0031-DRAFT-39743
NOAA-NMFS-2020-0031-DRAFT-39744
NOAA-NMFS-2020-0031-DRAFT-39745
NOAA-NMFS-2020-0031-DRAFT-39746
NOAA-NMFS-2020-0031-DRAFT-39747
NOAA-NMFS-2020-0031-DRAFT-39749
NOAA-NMFS-2020-0031-DRAFT-39750
NOAA-NMFS-2020-0031-DRAFT-39751
NOAA-NMFS-2020-0031-DRAFT-39752
NOAA-NMFS-2020-0031-DRAFT-39753
NOAA-NMFS-2020-0031-DRAFT-39754
NOAA-NMFS-2020-0031-DRAFT-39755
NOAA-NMFS-2020-0031-DRAFT-39756
NOAA-NMFS-2020-0031-DRAFT-39757
NOAA-NMFS-2020-0031-DRAFT-39758
NOAA-NMFS-2020-0031-DRAFT-39759
NOAA-NMFS-2020-0031-DRAFT-39760
NOAA-NMFS-2020-0031-DRAFT-39761
NOAA-NMFS-2020-0031-DRAFT-39762

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NOAA-NMFS-2020-0031-DRAFT-34715
NOAA-NMFS-2020-0031-DRAFT-34716
NOAA-NMFS-2020-0031-DRAFT-34717
NOAA-NMFS-2020-0031-DRAFT-34718
NOAA-NMFS-2020-0031-DRAFT-34719
NOAA-NMFS-2020-0031-DRAFT-34720
NOAA-NMFS-2020-0031-DRAFT-34721
NOAA-NMFS-2020-0031-DRAFT-34722
NOAA-NMFS-2020-0031-DRAFT-34723
NOAA-NMFS-2020-0031-DRAFT-34724
NOAA-NMFS-2020-0031-DRAFT-34725
NOAA-NMFS-2020-0031-DRAFT-34726
NOAA-NMFS-2020-0031-DRAFT-34727
NOAA-NMFS-2020-0031-DRAFT-34728
NOAA-NMFS-2020-0031-DRAFT-34729
NOAA-NMFS-2020-0031-DRAFT-34730
NOAA-NMFS-2020-0031-DRAFT-34731
NOAA-NMFS-2020-0031-DRAFT-34732
NOAA-NMFS-2020-0031-DRAFT-34733
NOAA-NMFS-2020-0031-DRAFT-34734
NOAA-NMFS-2020-0031-DRAFT-34735
NOAA-NMFS-2020-0031-DRAFT-34736
NOAA-NMFS-2020-0031-DRAFT-34737
NOAA-NMFS-2020-0031-DRAFT-34738
NOAA-NMFS-2020-0031-DRAFT-34739
NOAA-NMFS-2020-0031-DRAFT-34740
NOAA-NMFS-2020-0031-DRAFT-34741
NOAA-NMFS-2020-0031-DRAFT-34742
NOAA-NMFS-2020-0031-DRAFT-34743
NOAA-NMFS-2020-0031-DRAFT-34744
NOAA-NMFS-2020-0031-DRAFT-34745
NOAA-NMFS-2020-0031-DRAFT-34746
NOAA-NMFS-2020-0031-DRAFT-34747
NOAA-NMFS-2020-0031-DRAFT-34748
NOAA-NMFS-2020-0031-DRAFT-34750
NOAA-NMFS-2020-0031-DRAFT-34751
NOAA-NMFS-2020-0031-DRAFT-34752
NOAA-NMFS-2020-0031-DRAFT-34753
NOAA-NMFS-2020-0031-DRAFT-34754
NOAA-NMFS-2020-0031-DRAFT-34755
NOAA-NMFS-2020-0031-DRAFT-34756

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NOAA-NMFS-2020-0031-DRAFT-39763
NOAA-NMFS-2020-0031-DRAFT-39764
NOAA-NMFS-2020-0031-DRAFT-39765
NOAA-NMFS-2020-0031-DRAFT-39766
NOAA-NMFS-2020-0031-DRAFT-39767
NOAA-NMFS-2020-0031-DRAFT-39768
NOAA-NMFS-2020-0031-DRAFT-39769
NOAA-NMFS-2020-0031-DRAFT-39770
NOAA-NMFS-2020-0031-DRAFT-39771
NOAA-NMFS-2020-0031-DRAFT-39772
NOAA-NMFS-2020-0031-DRAFT-39773
NOAA-NMFS-2020-0031-DRAFT-39774
NOAA-NMFS-2020-0031-DRAFT-39775
NOAA-NMFS-2020-0031-DRAFT-39776
NOAA-NMFS-2020-0031-DRAFT-39777
NOAA-NMFS-2020-0031-DRAFT-39778
NOAA-NMFS-2020-0031-DRAFT-39779
NOAA-NMFS-2020-0031-DRAFT-39780
NOAA-NMFS-2020-0031-DRAFT-39781
NOAA-NMFS-2020-0031-DRAFT-39782
NOAA-NMFS-2020-0031-DRAFT-39783
NOAA-NMFS-2020-0031-DRAFT-39784
NOAA-NMFS-2020-0031-DRAFT-39785
NOAA-NMFS-2020-0031-DRAFT-39786
NOAA-NMFS-2020-0031-DRAFT-39787
NOAA-NMFS-2020-0031-DRAFT-39788
NOAA-NMFS-2020-0031-DRAFT-39789
NOAA-NMFS-2020-0031-DRAFT-39790
NOAA-NMFS-2020-0031-DRAFT-39791
NOAA-NMFS-2020-0031-DRAFT-39792
NOAA-NMFS-2020-0031-DRAFT-39793
NOAA-NMFS-2020-0031-DRAFT-39794
NOAA-NMFS-2020-0031-DRAFT-39795
NOAA-NMFS-2020-0031-DRAFT-39796
NOAA-NMFS-2020-0031-DRAFT-39797
NOAA-NMFS-2020-0031-DRAFT-39798
NOAA-NMFS-2020-0031-DRAFT-39799
NOAA-NMFS-2020-0031-DRAFT-39800
NOAA-NMFS-2020-0031-DRAFT-39801
NOAA-NMFS-2020-0031-DRAFT-39802
NOAA-NMFS-2020-0031-DRAFT-39803

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NOAA-NMFS-2020-0031-DRAFT-34757
NOAA-NMFS-2020-0031-DRAFT-34758
NOAA-NMFS-2020-0031-DRAFT-34759
NOAA-NMFS-2020-0031-DRAFT-34760
NOAA-NMFS-2020-0031-DRAFT-34761
NOAA-NMFS-2020-0031-DRAFT-34762
NOAA-NMFS-2020-0031-DRAFT-34763
NOAA-NMFS-2020-0031-DRAFT-34764
NOAA-NMFS-2020-0031-DRAFT-34765
NOAA-NMFS-2020-0031-DRAFT-34766
NOAA-NMFS-2020-0031-DRAFT-34767
NOAA-NMFS-2020-0031-DRAFT-34768
NOAA-NMFS-2020-0031-DRAFT-34769
NOAA-NMFS-2020-0031-DRAFT-34770
NOAA-NMFS-2020-0031-DRAFT-34771
NOAA-NMFS-2020-0031-DRAFT-34772
NOAA-NMFS-2020-0031-DRAFT-34773
NOAA-NMFS-2020-0031-DRAFT-34774
NOAA-NMFS-2020-0031-DRAFT-34775
NOAA-NMFS-2020-0031-DRAFT-34776
NOAA-NMFS-2020-0031-DRAFT-34777
NOAA-NMFS-2020-0031-DRAFT-34778
NOAA-NMFS-2020-0031-DRAFT-34779
NOAA-NMFS-2020-0031-DRAFT-34780
NOAA-NMFS-2020-0031-DRAFT-34781
NOAA-NMFS-2020-0031-DRAFT-34782
NOAA-NMFS-2020-0031-DRAFT-34783
NOAA-NMFS-2020-0031-DRAFT-34784
NOAA-NMFS-2020-0031-DRAFT-34785
NOAA-NMFS-2020-0031-DRAFT-34786
NOAA-NMFS-2020-0031-DRAFT-34787
NOAA-NMFS-2020-0031-DRAFT-34788
NOAA-NMFS-2020-0031-DRAFT-34789
NOAA-NMFS-2020-0031-DRAFT-34790
NOAA-NMFS-2020-0031-DRAFT-34791
NOAA-NMFS-2020-0031-DRAFT-34792
NOAA-NMFS-2020-0031-DRAFT-34793
NOAA-NMFS-2020-0031-DRAFT-34794
NOAA-NMFS-2020-0031-DRAFT-34795
NOAA-NMFS-2020-0031-DRAFT-34796
NOAA-NMFS-2020-0031-DRAFT-34797

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NOAA-NMFS-2020-0031-DRAFT-39804
NOAA-NMFS-2020-0031-DRAFT-39805
NOAA-NMFS-2020-0031-DRAFT-39806
NOAA-NMFS-2020-0031-DRAFT-39807
NOAA-NMFS-2020-0031-DRAFT-39808
NOAA-NMFS-2020-0031-DRAFT-39809
NOAA-NMFS-2020-0031-DRAFT-39810
NOAA-NMFS-2020-0031-DRAFT-39811
NOAA-NMFS-2020-0031-DRAFT-39812
NOAA-NMFS-2020-0031-DRAFT-39813
NOAA-NMFS-2020-0031-DRAFT-39814
NOAA-NMFS-2020-0031-DRAFT-39815
NOAA-NMFS-2020-0031-DRAFT-39816
NOAA-NMFS-2020-0031-DRAFT-39817
NOAA-NMFS-2020-0031-DRAFT-39818
NOAA-NMFS-2020-0031-DRAFT-39819
NOAA-NMFS-2020-0031-DRAFT-39820
NOAA-NMFS-2020-0031-DRAFT-39821
NOAA-NMFS-2020-0031-DRAFT-39822
NOAA-NMFS-2020-0031-DRAFT-39823
NOAA-NMFS-2020-0031-DRAFT-39824
NOAA-NMFS-2020-0031-DRAFT-39825
NOAA-NMFS-2020-0031-DRAFT-39826
NOAA-NMFS-2020-0031-DRAFT-39827
NOAA-NMFS-2020-0031-DRAFT-39828
NOAA-NMFS-2020-0031-DRAFT-39829
NOAA-NMFS-2020-0031-DRAFT-39830
NOAA-NMFS-2020-0031-DRAFT-39831
NOAA-NMFS-2020-0031-DRAFT-39832
NOAA-NMFS-2020-0031-DRAFT-39833
NOAA-NMFS-2020-0031-DRAFT-39834
NOAA-NMFS-2020-0031-DRAFT-39835
NOAA-NMFS-2020-0031-DRAFT-39836
NOAA-NMFS-2020-0031-DRAFT-39837
NOAA-NMFS-2020-0031-DRAFT-39838
NOAA-NMFS-2020-0031-DRAFT-39839
NOAA-NMFS-2020-0031-DRAFT-39840
NOAA-NMFS-2020-0031-DRAFT-39841
NOAA-NMFS-2020-0031-DRAFT-39842
NOAA-NMFS-2020-0031-DRAFT-39843
NOAA-NMFS-2020-0031-DRAFT-39844

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NOAA-NMFS-2020-0031-DRAFT-34798
NOAA-NMFS-2020-0031-DRAFT-34799
NOAA-NMFS-2020-0031-DRAFT-34800
NOAA-NMFS-2020-0031-DRAFT-34801
NOAA-NMFS-2020-0031-DRAFT-34802
NOAA-NMFS-2020-0031-DRAFT-34803
NOAA-NMFS-2020-0031-DRAFT-34804
NOAA-NMFS-2020-0031-DRAFT-34805
NOAA-NMFS-2020-0031-DRAFT-34806
NOAA-NMFS-2020-0031-DRAFT-34807
NOAA-NMFS-2020-0031-DRAFT-34808
NOAA-NMFS-2020-0031-DRAFT-34809
NOAA-NMFS-2020-0031-DRAFT-34810
NOAA-NMFS-2020-0031-DRAFT-34811
NOAA-NMFS-2020-0031-DRAFT-34812
NOAA-NMFS-2020-0031-DRAFT-34813
NOAA-NMFS-2020-0031-DRAFT-34814
NOAA-NMFS-2020-0031-DRAFT-34815
NOAA-NMFS-2020-0031-DRAFT-34816
NOAA-NMFS-2020-0031-DRAFT-34817
NOAA-NMFS-2020-0031-DRAFT-34818
NOAA-NMFS-2020-0031-DRAFT-34819
NOAA-NMFS-2020-0031-DRAFT-34820
NOAA-NMFS-2020-0031-DRAFT-34821
NOAA-NMFS-2020-0031-DRAFT-34822
NOAA-NMFS-2020-0031-DRAFT-34823
NOAA-NMFS-2020-0031-DRAFT-34824
NOAA-NMFS-2020-0031-DRAFT-34825
NOAA-NMFS-2020-0031-DRAFT-34826
NOAA-NMFS-2020-0031-DRAFT-34827
NOAA-NMFS-2020-0031-DRAFT-34828
NOAA-NMFS-2020-0031-DRAFT-34829
NOAA-NMFS-2020-0031-DRAFT-34830
NOAA-NMFS-2020-0031-DRAFT-34831
NOAA-NMFS-2020-0031-DRAFT-34832
NOAA-NMFS-2020-0031-DRAFT-34833
NOAA-NMFS-2020-0031-DRAFT-34834
NOAA-NMFS-2020-0031-DRAFT-34835
NOAA-NMFS-2020-0031-DRAFT-34836
NOAA-NMFS-2020-0031-DRAFT-34837
NOAA-NMFS-2020-0031-DRAFT-34838

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NOAA-NMFS-2020-0031-DRAFT-39845
NOAA-NMFS-2020-0031-DRAFT-39846
NOAA-NMFS-2020-0031-DRAFT-39847
NOAA-NMFS-2020-0031-DRAFT-39848
NOAA-NMFS-2020-0031-DRAFT-39849
NOAA-NMFS-2020-0031-DRAFT-39850
NOAA-NMFS-2020-0031-DRAFT-39851
NOAA-NMFS-2020-0031-DRAFT-39852
NOAA-NMFS-2020-0031-DRAFT-39853
NOAA-NMFS-2020-0031-DRAFT-39854
NOAA-NMFS-2020-0031-DRAFT-39855
NOAA-NMFS-2020-0031-DRAFT-39856
NOAA-NMFS-2020-0031-DRAFT-39857
NOAA-NMFS-2020-0031-DRAFT-39858
NOAA-NMFS-2020-0031-DRAFT-39859
NOAA-NMFS-2020-0031-DRAFT-39860
NOAA-NMFS-2020-0031-DRAFT-39861
NOAA-NMFS-2020-0031-DRAFT-39862
NOAA-NMFS-2020-0031-DRAFT-39863
NOAA-NMFS-2020-0031-DRAFT-39864
NOAA-NMFS-2020-0031-DRAFT-39865
NOAA-NMFS-2020-0031-DRAFT-39866
NOAA-NMFS-2020-0031-DRAFT-39867
NOAA-NMFS-2020-0031-DRAFT-39868
NOAA-NMFS-2020-0031-DRAFT-39869
NOAA-NMFS-2020-0031-DRAFT-39870
NOAA-NMFS-2020-0031-DRAFT-39871
NOAA-NMFS-2020-0031-DRAFT-39872
NOAA-NMFS-2020-0031-DRAFT-39873
NOAA-NMFS-2020-0031-DRAFT-39874
NOAA-NMFS-2020-0031-DRAFT-39875
NOAA-NMFS-2020-0031-DRAFT-39876
NOAA-NMFS-2020-0031-DRAFT-39877
NOAA-NMFS-2020-0031-DRAFT-39878
NOAA-NMFS-2020-0031-DRAFT-39879
NOAA-NMFS-2020-0031-DRAFT-39880
NOAA-NMFS-2020-0031-DRAFT-39881
NOAA-NMFS-2020-0031-DRAFT-39882
NOAA-NMFS-2020-0031-DRAFT-39883
NOAA-NMFS-2020-0031-DRAFT-39884
NOAA-NMFS-2020-0031-DRAFT-39885

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NOAA-NMFS-2020-0031-DRAFT-34839
NOAA-NMFS-2020-0031-DRAFT-34840
NOAA-NMFS-2020-0031-DRAFT-34841
NOAA-NMFS-2020-0031-DRAFT-34842
NOAA-NMFS-2020-0031-DRAFT-34843
NOAA-NMFS-2020-0031-DRAFT-34844
NOAA-NMFS-2020-0031-DRAFT-34845
NOAA-NMFS-2020-0031-DRAFT-34846
NOAA-NMFS-2020-0031-DRAFT-34847
NOAA-NMFS-2020-0031-DRAFT-34848
NOAA-NMFS-2020-0031-DRAFT-34849
NOAA-NMFS-2020-0031-DRAFT-34851
NOAA-NMFS-2020-0031-DRAFT-34852
NOAA-NMFS-2020-0031-DRAFT-34853
NOAA-NMFS-2020-0031-DRAFT-34854
NOAA-NMFS-2020-0031-DRAFT-34855
NOAA-NMFS-2020-0031-DRAFT-34856
NOAA-NMFS-2020-0031-DRAFT-34857
NOAA-NMFS-2020-0031-DRAFT-34858
NOAA-NMFS-2020-0031-DRAFT-34859
NOAA-NMFS-2020-0031-DRAFT-34860
NOAA-NMFS-2020-0031-DRAFT-34861
NOAA-NMFS-2020-0031-DRAFT-34862
NOAA-NMFS-2020-0031-DRAFT-34863
NOAA-NMFS-2020-0031-DRAFT-34864
NOAA-NMFS-2020-0031-DRAFT-34865
NOAA-NMFS-2020-0031-DRAFT-34866
NOAA-NMFS-2020-0031-DRAFT-34867
NOAA-NMFS-2020-0031-DRAFT-34868
NOAA-NMFS-2020-0031-DRAFT-34869
NOAA-NMFS-2020-0031-DRAFT-34870
NOAA-NMFS-2020-0031-DRAFT-34871
NOAA-NMFS-2020-0031-DRAFT-34872
NOAA-NMFS-2020-0031-DRAFT-34873
NOAA-NMFS-2020-0031-DRAFT-34874
NOAA-NMFS-2020-0031-DRAFT-34875
NOAA-NMFS-2020-0031-DRAFT-34876
NOAA-NMFS-2020-0031-DRAFT-34877
NOAA-NMFS-2020-0031-DRAFT-34878
NOAA-NMFS-2020-0031-DRAFT-34879
NOAA-NMFS-2020-0031-DRAFT-34880

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NOAA-NMFS-2020-0031-DRAFT-39886
NOAA-NMFS-2020-0031-DRAFT-39887
NOAA-NMFS-2020-0031-DRAFT-39888
NOAA-NMFS-2020-0031-DRAFT-39889
NOAA-NMFS-2020-0031-DRAFT-39890
NOAA-NMFS-2020-0031-DRAFT-39891
NOAA-NMFS-2020-0031-DRAFT-39892
NOAA-NMFS-2020-0031-DRAFT-39893
NOAA-NMFS-2020-0031-DRAFT-39894
NOAA-NMFS-2020-0031-DRAFT-39895
NOAA-NMFS-2020-0031-DRAFT-39896
NOAA-NMFS-2020-0031-DRAFT-39897
NOAA-NMFS-2020-0031-DRAFT-39898
NOAA-NMFS-2020-0031-DRAFT-39899
NOAA-NMFS-2020-0031-DRAFT-39900
NOAA-NMFS-2020-0031-DRAFT-39901
NOAA-NMFS-2020-0031-DRAFT-39902
NOAA-NMFS-2020-0031-DRAFT-39903
NOAA-NMFS-2020-0031-DRAFT-39904
NOAA-NMFS-2020-0031-DRAFT-39905
NOAA-NMFS-2020-0031-DRAFT-39906
NOAA-NMFS-2020-0031-DRAFT-39907
NOAA-NMFS-2020-0031-DRAFT-39908
NOAA-NMFS-2020-0031-DRAFT-39909
NOAA-NMFS-2020-0031-DRAFT-39910
NOAA-NMFS-2020-0031-DRAFT-39911
NOAA-NMFS-2020-0031-DRAFT-39912
NOAA-NMFS-2020-0031-DRAFT-39913
NOAA-NMFS-2020-0031-DRAFT-39914
NOAA-NMFS-2020-0031-DRAFT-39915
NOAA-NMFS-2020-0031-DRAFT-39916
NOAA-NMFS-2020-0031-DRAFT-39917
NOAA-NMFS-2020-0031-DRAFT-39918
NOAA-NMFS-2020-0031-DRAFT-39919
NOAA-NMFS-2020-0031-DRAFT-39920
NOAA-NMFS-2020-0031-DRAFT-39921
NOAA-NMFS-2020-0031-DRAFT-39922
NOAA-NMFS-2020-0031-DRAFT-39923
NOAA-NMFS-2020-0031-DRAFT-39924
NOAA-NMFS-2020-0031-DRAFT-39925
NOAA-NMFS-2020-0031-DRAFT-39926

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NOAA-NMFS-2020-0031-DRAFT-34881
NOAA-NMFS-2020-0031-DRAFT-34882
NOAA-NMFS-2020-0031-DRAFT-34883
NOAA-NMFS-2020-0031-DRAFT-34884
NOAA-NMFS-2020-0031-DRAFT-34885
NOAA-NMFS-2020-0031-DRAFT-34886
NOAA-NMFS-2020-0031-DRAFT-34887
NOAA-NMFS-2020-0031-DRAFT-34888
NOAA-NMFS-2020-0031-DRAFT-34889
NOAA-NMFS-2020-0031-DRAFT-34890
NOAA-NMFS-2020-0031-DRAFT-34891
NOAA-NMFS-2020-0031-DRAFT-34892
NOAA-NMFS-2020-0031-DRAFT-34893
NOAA-NMFS-2020-0031-DRAFT-34894
NOAA-NMFS-2020-0031-DRAFT-34895
NOAA-NMFS-2020-0031-DRAFT-34896
NOAA-NMFS-2020-0031-DRAFT-34897
NOAA-NMFS-2020-0031-DRAFT-34898
NOAA-NMFS-2020-0031-DRAFT-34899
NOAA-NMFS-2020-0031-DRAFT-34900
NOAA-NMFS-2020-0031-DRAFT-34901
NOAA-NMFS-2020-0031-DRAFT-34902
NOAA-NMFS-2020-0031-DRAFT-34903
NOAA-NMFS-2020-0031-DRAFT-34904
NOAA-NMFS-2020-0031-DRAFT-34905
NOAA-NMFS-2020-0031-DRAFT-34906
NOAA-NMFS-2020-0031-DRAFT-34907
NOAA-NMFS-2020-0031-DRAFT-34908
NOAA-NMFS-2020-0031-DRAFT-34909
NOAA-NMFS-2020-0031-DRAFT-34910
NOAA-NMFS-2020-0031-DRAFT-34911
NOAA-NMFS-2020-0031-DRAFT-34912
NOAA-NMFS-2020-0031-DRAFT-34913
NOAA-NMFS-2020-0031-DRAFT-34914
NOAA-NMFS-2020-0031-DRAFT-34915
NOAA-NMFS-2020-0031-DRAFT-34916
NOAA-NMFS-2020-0031-DRAFT-34917
NOAA-NMFS-2020-0031-DRAFT-34918
NOAA-NMFS-2020-0031-DRAFT-34919
NOAA-NMFS-2020-0031-DRAFT-34920
NOAA-NMFS-2020-0031-DRAFT-34921

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NOAA-NMFS-2020-0031-DRAFT-39927
NOAA-NMFS-2020-0031-DRAFT-39928
NOAA-NMFS-2020-0031-DRAFT-39929
NOAA-NMFS-2020-0031-DRAFT-39930
NOAA-NMFS-2020-0031-DRAFT-39931
NOAA-NMFS-2020-0031-DRAFT-39932
NOAA-NMFS-2020-0031-DRAFT-39933
NOAA-NMFS-2020-0031-DRAFT-39934
NOAA-NMFS-2020-0031-DRAFT-39935
NOAA-NMFS-2020-0031-DRAFT-39936
NOAA-NMFS-2020-0031-DRAFT-39937
NOAA-NMFS-2020-0031-DRAFT-39938
NOAA-NMFS-2020-0031-DRAFT-39939
NOAA-NMFS-2020-0031-DRAFT-39940
NOAA-NMFS-2020-0031-DRAFT-39941
NOAA-NMFS-2020-0031-DRAFT-39942
NOAA-NMFS-2020-0031-DRAFT-39943
NOAA-NMFS-2020-0031-DRAFT-39944
NOAA-NMFS-2020-0031-DRAFT-39945
NOAA-NMFS-2020-0031-DRAFT-39946
NOAA-NMFS-2020-0031-DRAFT-39947
NOAA-NMFS-2020-0031-DRAFT-39948
NOAA-NMFS-2020-0031-DRAFT-39949
NOAA-NMFS-2020-0031-DRAFT-39950
NOAA-NMFS-2020-0031-DRAFT-39951
NOAA-NMFS-2020-0031-DRAFT-39952
NOAA-NMFS-2020-0031-DRAFT-39953
NOAA-NMFS-2020-0031-DRAFT-39954
NOAA-NMFS-2020-0031-DRAFT-39955
NOAA-NMFS-2020-0031-DRAFT-39956
NOAA-NMFS-2020-0031-DRAFT-39957
NOAA-NMFS-2020-0031-DRAFT-39958
NOAA-NMFS-2020-0031-DRAFT-39959
NOAA-NMFS-2020-0031-DRAFT-39960
NOAA-NMFS-2020-0031-DRAFT-39961
NOAA-NMFS-2020-0031-DRAFT-39962
NOAA-NMFS-2020-0031-DRAFT-39963
NOAA-NMFS-2020-0031-DRAFT-39964
NOAA-NMFS-2020-0031-DRAFT-39965
NOAA-NMFS-2020-0031-DRAFT-39966
NOAA-NMFS-2020-0031-DRAFT-39967

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NOAA-NMFS-2020-0031-DRAFT-34922
NOAA-NMFS-2020-0031-DRAFT-34923
NOAA-NMFS-2020-0031-DRAFT-34924
NOAA-NMFS-2020-0031-DRAFT-34925
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NOAA-NMFS-2020-0031-DRAFT-34927
NOAA-NMFS-2020-0031-DRAFT-34928
NOAA-NMFS-2020-0031-DRAFT-34929
NOAA-NMFS-2020-0031-DRAFT-34930
NOAA-NMFS-2020-0031-DRAFT-34931
NOAA-NMFS-2020-0031-DRAFT-34932
NOAA-NMFS-2020-0031-DRAFT-34933
NOAA-NMFS-2020-0031-DRAFT-34934
NOAA-NMFS-2020-0031-DRAFT-34935
NOAA-NMFS-2020-0031-DRAFT-34936
NOAA-NMFS-2020-0031-DRAFT-34937
NOAA-NMFS-2020-0031-DRAFT-34938
NOAA-NMFS-2020-0031-DRAFT-34939
NOAA-NMFS-2020-0031-DRAFT-34940
NOAA-NMFS-2020-0031-DRAFT-34941
NOAA-NMFS-2020-0031-DRAFT-34942
NOAA-NMFS-2020-0031-DRAFT-34943
NOAA-NMFS-2020-0031-DRAFT-34944
NOAA-NMFS-2020-0031-DRAFT-34945
NOAA-NMFS-2020-0031-DRAFT-34946
NOAA-NMFS-2020-0031-DRAFT-34947
NOAA-NMFS-2020-0031-DRAFT-34948
NOAA-NMFS-2020-0031-DRAFT-34949
NOAA-NMFS-2020-0031-DRAFT-34950
NOAA-NMFS-2020-0031-DRAFT-34951
NOAA-NMFS-2020-0031-DRAFT-34952
NOAA-NMFS-2020-0031-DRAFT-34953
NOAA-NMFS-2020-0031-DRAFT-34954
NOAA-NMFS-2020-0031-DRAFT-34955
NOAA-NMFS-2020-0031-DRAFT-34956
NOAA-NMFS-2020-0031-DRAFT-34957
NOAA-NMFS-2020-0031-DRAFT-34958
NOAA-NMFS-2020-0031-DRAFT-34959
NOAA-NMFS-2020-0031-DRAFT-34960
NOAA-NMFS-2020-0031-DRAFT-34961
NOAA-NMFS-2020-0031-DRAFT-34962

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NOAA-NMFS-2020-0031-DRAFT-39968
NOAA-NMFS-2020-0031-DRAFT-39969
NOAA-NMFS-2020-0031-DRAFT-39970
NOAA-NMFS-2020-0031-DRAFT-39971
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NOAA-NMFS-2020-0031-DRAFT-39973
NOAA-NMFS-2020-0031-DRAFT-39974
NOAA-NMFS-2020-0031-DRAFT-39975
NOAA-NMFS-2020-0031-DRAFT-39976
NOAA-NMFS-2020-0031-DRAFT-39977
NOAA-NMFS-2020-0031-DRAFT-39978
NOAA-NMFS-2020-0031-DRAFT-39979
NOAA-NMFS-2020-0031-DRAFT-39981
NOAA-NMFS-2020-0031-DRAFT-39982
NOAA-NMFS-2020-0031-DRAFT-39983
NOAA-NMFS-2020-0031-DRAFT-39984
NOAA-NMFS-2020-0031-DRAFT-39985
NOAA-NMFS-2020-0031-DRAFT-39986
NOAA-NMFS-2020-0031-DRAFT-39987
NOAA-NMFS-2020-0031-DRAFT-39988
NOAA-NMFS-2020-0031-DRAFT-39989
NOAA-NMFS-2020-0031-DRAFT-39990
NOAA-NMFS-2020-0031-DRAFT-39991
NOAA-NMFS-2020-0031-DRAFT-39992
NOAA-NMFS-2020-0031-DRAFT-39993
NOAA-NMFS-2020-0031-DRAFT-39994
NOAA-NMFS-2020-0031-DRAFT-39995
NOAA-NMFS-2020-0031-DRAFT-39996
NOAA-NMFS-2020-0031-DRAFT-39997
NOAA-NMFS-2020-0031-DRAFT-39998
NOAA-NMFS-2020-0031-DRAFT-39999
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NOAA-NMFS-2020-0031-DRAFT-40004
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NOAA-NMFS-2020-0031-DRAFT-40007
NOAA-NMFS-2020-0031-DRAFT-40008
NOAA-NMFS-2020-0031-DRAFT-40009

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NOAA-NMFS-2020-0031-DRAFT-34963
NOAA-NMFS-2020-0031-DRAFT-34964
NOAA-NMFS-2020-0031-DRAFT-34965
NOAA-NMFS-2020-0031-DRAFT-34966
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NOAA-NMFS-2020-0031-DRAFT-34973
NOAA-NMFS-2020-0031-DRAFT-34974
NOAA-NMFS-2020-0031-DRAFT-34975
NOAA-NMFS-2020-0031-DRAFT-34976
NOAA-NMFS-2020-0031-DRAFT-34977
NOAA-NMFS-2020-0031-DRAFT-34978
NOAA-NMFS-2020-0031-DRAFT-34979
NOAA-NMFS-2020-0031-DRAFT-34980
NOAA-NMFS-2020-0031-DRAFT-34981
NOAA-NMFS-2020-0031-DRAFT-34982
NOAA-NMFS-2020-0031-DRAFT-34983
NOAA-NMFS-2020-0031-DRAFT-34984
NOAA-NMFS-2020-0031-DRAFT-34985
NOAA-NMFS-2020-0031-DRAFT-34986
NOAA-NMFS-2020-0031-DRAFT-34987
NOAA-NMFS-2020-0031-DRAFT-34988
NOAA-NMFS-2020-0031-DRAFT-34989
NOAA-NMFS-2020-0031-DRAFT-34990
NOAA-NMFS-2020-0031-DRAFT-34991
NOAA-NMFS-2020-0031-DRAFT-34992
NOAA-NMFS-2020-0031-DRAFT-34993
NOAA-NMFS-2020-0031-DRAFT-34994
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NOAA-NMFS-2020-0031-DRAFT-34997
NOAA-NMFS-2020-0031-DRAFT-34998
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NOAA-NMFS-2020-0031-DRAFT-35000
NOAA-NMFS-2020-0031-DRAFT-35001
NOAA-NMFS-2020-0031-DRAFT-35002
NOAA-NMFS-2020-0031-DRAFT-35003

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NOAA-NMFS-2020-0031-DRAFT-40010
NOAA-NMFS-2020-0031-DRAFT-40011
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NOAA-NMFS-2020-0031-DRAFT-40027
NOAA-NMFS-2020-0031-DRAFT-40028
NOAA-NMFS-2020-0031-DRAFT-40029
NOAA-NMFS-2020-0031-DRAFT-40030
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NOAA-NMFS-2020-0031-DRAFT-40032
NOAA-NMFS-2020-0031-DRAFT-40033
NOAA-NMFS-2020-0031-DRAFT-40034
NOAA-NMFS-2020-0031-DRAFT-40035
NOAA-NMFS-2020-0031-DRAFT-40036
NOAA-NMFS-2020-0031-DRAFT-40037
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NOAA-NMFS-2020-0031-DRAFT-40039
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NOAA-NMFS-2020-0031-DRAFT-40046
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NOAA-NMFS-2020-0031-DRAFT-40048
NOAA-NMFS-2020-0031-DRAFT-40049
NOAA-NMFS-2020-0031-DRAFT-40050
NOAA-NMFS-2020-0031-DRAFT-40051

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NOAA-NMFS-2020-0031-DRAFT-35004
NOAA-NMFS-2020-0031-DRAFT-35005
NOAA-NMFS-2020-0031-DRAFT-35006
NOAA-NMFS-2020-0031-DRAFT-35007
NOAA-NMFS-2020-0031-DRAFT-35008
NOAA-NMFS-2020-0031-DRAFT-35009
NOAA-NMFS-2020-0031-DRAFT-35010
NOAA-NMFS-2020-0031-DRAFT-35011
NOAA-NMFS-2020-0031-DRAFT-35012
NOAA-NMFS-2020-0031-DRAFT-35013
NOAA-NMFS-2020-0031-DRAFT-35014
NOAA-NMFS-2020-0031-DRAFT-35015
NOAA-NMFS-2020-0031-DRAFT-35016
NOAA-NMFS-2020-0031-DRAFT-35017
NOAA-NMFS-2020-0031-DRAFT-35018
NOAA-NMFS-2020-0031-DRAFT-35019
NOAA-NMFS-2020-0031-DRAFT-35020
NOAA-NMFS-2020-0031-DRAFT-35021
NOAA-NMFS-2020-0031-DRAFT-35022
NOAA-NMFS-2020-0031-DRAFT-35023
NOAA-NMFS-2020-0031-DRAFT-35024
NOAA-NMFS-2020-0031-DRAFT-35025
NOAA-NMFS-2020-0031-DRAFT-35026
NOAA-NMFS-2020-0031-DRAFT-35027
NOAA-NMFS-2020-0031-DRAFT-35028
NOAA-NMFS-2020-0031-DRAFT-35029
NOAA-NMFS-2020-0031-DRAFT-35030
NOAA-NMFS-2020-0031-DRAFT-35031
NOAA-NMFS-2020-0031-DRAFT-35032
NOAA-NMFS-2020-0031-DRAFT-35033
NOAA-NMFS-2020-0031-DRAFT-35034
NOAA-NMFS-2020-0031-DRAFT-35035
NOAA-NMFS-2020-0031-DRAFT-35036
NOAA-NMFS-2020-0031-DRAFT-35037
NOAA-NMFS-2020-0031-DRAFT-35038
NOAA-NMFS-2020-0031-DRAFT-35039
NOAA-NMFS-2020-0031-DRAFT-35040
NOAA-NMFS-2020-0031-DRAFT-35041
NOAA-NMFS-2020-0031-DRAFT-35042
NOAA-NMFS-2020-0031-DRAFT-35043
NOAA-NMFS-2020-0031-DRAFT-35044

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NOAA-NMFS-2020-0031-DRAFT-40052
NOAA-NMFS-2020-0031-DRAFT-40053
NOAA-NMFS-2020-0031-DRAFT-40054
NOAA-NMFS-2020-0031-DRAFT-40055
NOAA-NMFS-2020-0031-DRAFT-40056
NOAA-NMFS-2020-0031-DRAFT-40057
NOAA-NMFS-2020-0031-DRAFT-40058
NOAA-NMFS-2020-0031-DRAFT-40059
NOAA-NMFS-2020-0031-DRAFT-40060
NOAA-NMFS-2020-0031-DRAFT-40061
NOAA-NMFS-2020-0031-DRAFT-40062
NOAA-NMFS-2020-0031-DRAFT-40063
NOAA-NMFS-2020-0031-DRAFT-40064
NOAA-NMFS-2020-0031-DRAFT-40065
NOAA-NMFS-2020-0031-DRAFT-40066
NOAA-NMFS-2020-0031-DRAFT-40067
NOAA-NMFS-2020-0031-DRAFT-40068
NOAA-NMFS-2020-0031-DRAFT-40069
NOAA-NMFS-2020-0031-DRAFT-40070
NOAA-NMFS-2020-0031-DRAFT-40071
NOAA-NMFS-2020-0031-DRAFT-40072
NOAA-NMFS-2020-0031-DRAFT-40073
NOAA-NMFS-2020-0031-DRAFT-40074
NOAA-NMFS-2020-0031-DRAFT-40075
NOAA-NMFS-2020-0031-DRAFT-40076
NOAA-NMFS-2020-0031-DRAFT-40077
NOAA-NMFS-2020-0031-DRAFT-40078
NOAA-NMFS-2020-0031-DRAFT-40079
NOAA-NMFS-2020-0031-DRAFT-40080
NOAA-NMFS-2020-0031-DRAFT-40081
NOAA-NMFS-2020-0031-DRAFT-40082
NOAA-NMFS-2020-0031-DRAFT-40083
NOAA-NMFS-2020-0031-DRAFT-40084
NOAA-NMFS-2020-0031-DRAFT-40085
NOAA-NMFS-2020-0031-DRAFT-40086
NOAA-NMFS-2020-0031-DRAFT-40087
NOAA-NMFS-2020-0031-DRAFT-40088
NOAA-NMFS-2020-0031-DRAFT-40089
NOAA-NMFS-2020-0031-DRAFT-40090
NOAA-NMFS-2020-0031-DRAFT-40091
NOAA-NMFS-2020-0031-DRAFT-40092

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NOAA-NMFS-2020-0031-DRAFT-35045
NOAA-NMFS-2020-0031-DRAFT-35046
NOAA-NMFS-2020-0031-DRAFT-35047
NOAA-NMFS-2020-0031-DRAFT-35048
NOAA-NMFS-2020-0031-DRAFT-35049
NOAA-NMFS-2020-0031-DRAFT-35050
NOAA-NMFS-2020-0031-DRAFT-35051
NOAA-NMFS-2020-0031-DRAFT-35052
NOAA-NMFS-2020-0031-DRAFT-35053
NOAA-NMFS-2020-0031-DRAFT-35054
NOAA-NMFS-2020-0031-DRAFT-35055
NOAA-NMFS-2020-0031-DRAFT-35056
NOAA-NMFS-2020-0031-DRAFT-35057
NOAA-NMFS-2020-0031-DRAFT-35058
NOAA-NMFS-2020-0031-DRAFT-35059
NOAA-NMFS-2020-0031-DRAFT-35060
NOAA-NMFS-2020-0031-DRAFT-35061
NOAA-NMFS-2020-0031-DRAFT-35062
NOAA-NMFS-2020-0031-DRAFT-35063
NOAA-NMFS-2020-0031-DRAFT-35064
NOAA-NMFS-2020-0031-DRAFT-35065
NOAA-NMFS-2020-0031-DRAFT-35066
NOAA-NMFS-2020-0031-DRAFT-35067
NOAA-NMFS-2020-0031-DRAFT-35068
NOAA-NMFS-2020-0031-DRAFT-35069
NOAA-NMFS-2020-0031-DRAFT-35070
NOAA-NMFS-2020-0031-DRAFT-35071
NOAA-NMFS-2020-0031-DRAFT-35072
NOAA-NMFS-2020-0031-DRAFT-35073
NOAA-NMFS-2020-0031-DRAFT-35074
NOAA-NMFS-2020-0031-DRAFT-35075
NOAA-NMFS-2020-0031-DRAFT-35076
NOAA-NMFS-2020-0031-DRAFT-35077
NOAA-NMFS-2020-0031-DRAFT-35078
NOAA-NMFS-2020-0031-DRAFT-35079
NOAA-NMFS-2020-0031-DRAFT-35080
NOAA-NMFS-2020-0031-DRAFT-35081
NOAA-NMFS-2020-0031-DRAFT-35082
NOAA-NMFS-2020-0031-DRAFT-35083
NOAA-NMFS-2020-0031-DRAFT-35084
NOAA-NMFS-2020-0031-DRAFT-35085

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NOAA-NMFS-2020-0031-DRAFT-40093
NOAA-NMFS-2020-0031-DRAFT-40094
NOAA-NMFS-2020-0031-DRAFT-40096
NOAA-NMFS-2020-0031-DRAFT-40097
NOAA-NMFS-2020-0031-DRAFT-40098
NOAA-NMFS-2020-0031-DRAFT-40099
NOAA-NMFS-2020-0031-DRAFT-40100
NOAA-NMFS-2020-0031-DRAFT-40101
NOAA-NMFS-2020-0031-DRAFT-40102
NOAA-NMFS-2020-0031-DRAFT-40103
NOAA-NMFS-2020-0031-DRAFT-40104
NOAA-NMFS-2020-0031-DRAFT-40105
NOAA-NMFS-2020-0031-DRAFT-40106
NOAA-NMFS-2020-0031-DRAFT-40107
NOAA-NMFS-2020-0031-DRAFT-40108
NOAA-NMFS-2020-0031-DRAFT-40109
NOAA-NMFS-2020-0031-DRAFT-40110
NOAA-NMFS-2020-0031-DRAFT-40111
NOAA-NMFS-2020-0031-DRAFT-40112
NOAA-NMFS-2020-0031-DRAFT-40113
NOAA-NMFS-2020-0031-DRAFT-40114
NOAA-NMFS-2020-0031-DRAFT-40115
NOAA-NMFS-2020-0031-DRAFT-40116
NOAA-NMFS-2020-0031-DRAFT-40117
NOAA-NMFS-2020-0031-DRAFT-40118
NOAA-NMFS-2020-0031-DRAFT-40119
NOAA-NMFS-2020-0031-DRAFT-40121
NOAA-NMFS-2020-0031-DRAFT-40122
NOAA-NMFS-2020-0031-DRAFT-40123
NOAA-NMFS-2020-0031-DRAFT-40124
NOAA-NMFS-2020-0031-DRAFT-40125
NOAA-NMFS-2020-0031-DRAFT-40126
NOAA-NMFS-2020-0031-DRAFT-40127
NOAA-NMFS-2020-0031-DRAFT-40128
NOAA-NMFS-2020-0031-DRAFT-40129
NOAA-NMFS-2020-0031-DRAFT-40130
NOAA-NMFS-2020-0031-DRAFT-40131
NOAA-NMFS-2020-0031-DRAFT-40132
NOAA-NMFS-2020-0031-DRAFT-40133
NOAA-NMFS-2020-0031-DRAFT-40134
NOAA-NMFS-2020-0031-DRAFT-40135

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NOAA-NMFS-2020-0031-DRAFT-35086
NOAA-NMFS-2020-0031-DRAFT-35087
NOAA-NMFS-2020-0031-DRAFT-35088
NOAA-NMFS-2020-0031-DRAFT-35089
NOAA-NMFS-2020-0031-DRAFT-35090
NOAA-NMFS-2020-0031-DRAFT-35091
NOAA-NMFS-2020-0031-DRAFT-35092
NOAA-NMFS-2020-0031-DRAFT-35093
NOAA-NMFS-2020-0031-DRAFT-35094
NOAA-NMFS-2020-0031-DRAFT-35095
NOAA-NMFS-2020-0031-DRAFT-35096
NOAA-NMFS-2020-0031-DRAFT-35097
NOAA-NMFS-2020-0031-DRAFT-35098
NOAA-NMFS-2020-0031-DRAFT-35099
NOAA-NMFS-2020-0031-DRAFT-35100
NOAA-NMFS-2020-0031-DRAFT-35101
NOAA-NMFS-2020-0031-DRAFT-35102
NOAA-NMFS-2020-0031-DRAFT-35103
NOAA-NMFS-2020-0031-DRAFT-35104
NOAA-NMFS-2020-0031-DRAFT-35105
NOAA-NMFS-2020-0031-DRAFT-35106
NOAA-NMFS-2020-0031-DRAFT-35107
NOAA-NMFS-2020-0031-DRAFT-35108
NOAA-NMFS-2020-0031-DRAFT-35109
NOAA-NMFS-2020-0031-DRAFT-35110
NOAA-NMFS-2020-0031-DRAFT-35111
NOAA-NMFS-2020-0031-DRAFT-35112
NOAA-NMFS-2020-0031-DRAFT-35113
NOAA-NMFS-2020-0031-DRAFT-35114
NOAA-NMFS-2020-0031-DRAFT-35115
NOAA-NMFS-2020-0031-DRAFT-35116
NOAA-NMFS-2020-0031-DRAFT-35117
NOAA-NMFS-2020-0031-DRAFT-35118
NOAA-NMFS-2020-0031-DRAFT-35119
NOAA-NMFS-2020-0031-DRAFT-35120
NOAA-NMFS-2020-0031-DRAFT-35121
NOAA-NMFS-2020-0031-DRAFT-35122
NOAA-NMFS-2020-0031-DRAFT-35123
NOAA-NMFS-2020-0031-DRAFT-35124
NOAA-NMFS-2020-0031-DRAFT-35125
NOAA-NMFS-2020-0031-DRAFT-35126

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NOAA-NMFS-2020-0031-DRAFT-40136
NOAA-NMFS-2020-0031-DRAFT-40137
NOAA-NMFS-2020-0031-DRAFT-40138
NOAA-NMFS-2020-0031-DRAFT-40139
NOAA-NMFS-2020-0031-DRAFT-40140
NOAA-NMFS-2020-0031-DRAFT-40141
NOAA-NMFS-2020-0031-DRAFT-40142
NOAA-NMFS-2020-0031-DRAFT-40143
NOAA-NMFS-2020-0031-DRAFT-40144
NOAA-NMFS-2020-0031-DRAFT-40145
NOAA-NMFS-2020-0031-DRAFT-40146
NOAA-NMFS-2020-0031-DRAFT-40147
NOAA-NMFS-2020-0031-DRAFT-40148
NOAA-NMFS-2020-0031-DRAFT-40149
NOAA-NMFS-2020-0031-DRAFT-40150
NOAA-NMFS-2020-0031-DRAFT-40151
NOAA-NMFS-2020-0031-DRAFT-40152
NOAA-NMFS-2020-0031-DRAFT-40153
NOAA-NMFS-2020-0031-DRAFT-40154
NOAA-NMFS-2020-0031-DRAFT-40155
NOAA-NMFS-2020-0031-DRAFT-40156
NOAA-NMFS-2020-0031-DRAFT-40157
NOAA-NMFS-2020-0031-DRAFT-40158
NOAA-NMFS-2020-0031-DRAFT-40159
NOAA-NMFS-2020-0031-DRAFT-40160
NOAA-NMFS-2020-0031-DRAFT-40161
NOAA-NMFS-2020-0031-DRAFT-40162
NOAA-NMFS-2020-0031-DRAFT-40163
NOAA-NMFS-2020-0031-DRAFT-40164
NOAA-NMFS-2020-0031-DRAFT-40165
NOAA-NMFS-2020-0031-DRAFT-40166
NOAA-NMFS-2020-0031-DRAFT-40167
NOAA-NMFS-2020-0031-DRAFT-40168
NOAA-NMFS-2020-0031-DRAFT-40169
NOAA-NMFS-2020-0031-DRAFT-40170
NOAA-NMFS-2020-0031-DRAFT-40171
NOAA-NMFS-2020-0031-DRAFT-40172
NOAA-NMFS-2020-0031-DRAFT-40173
NOAA-NMFS-2020-0031-DRAFT-40174
NOAA-NMFS-2020-0031-DRAFT-40175
NOAA-NMFS-2020-0031-DRAFT-40176

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NOAA-NMFS-2020-0031-DRAFT-35127
NOAA-NMFS-2020-0031-DRAFT-35128
NOAA-NMFS-2020-0031-DRAFT-35129
NOAA-NMFS-2020-0031-DRAFT-35130
NOAA-NMFS-2020-0031-DRAFT-35131
NOAA-NMFS-2020-0031-DRAFT-35132
NOAA-NMFS-2020-0031-DRAFT-35133
NOAA-NMFS-2020-0031-DRAFT-35134
NOAA-NMFS-2020-0031-DRAFT-35135
NOAA-NMFS-2020-0031-DRAFT-35136
NOAA-NMFS-2020-0031-DRAFT-35137
NOAA-NMFS-2020-0031-DRAFT-35138
NOAA-NMFS-2020-0031-DRAFT-35139
NOAA-NMFS-2020-0031-DRAFT-35140
NOAA-NMFS-2020-0031-DRAFT-35141
NOAA-NMFS-2020-0031-DRAFT-35142
NOAA-NMFS-2020-0031-DRAFT-35143
NOAA-NMFS-2020-0031-DRAFT-35144
NOAA-NMFS-2020-0031-DRAFT-35145
NOAA-NMFS-2020-0031-DRAFT-35146
NOAA-NMFS-2020-0031-DRAFT-35147
NOAA-NMFS-2020-0031-DRAFT-35148
NOAA-NMFS-2020-0031-DRAFT-35149
NOAA-NMFS-2020-0031-DRAFT-35150
NOAA-NMFS-2020-0031-DRAFT-35151
NOAA-NMFS-2020-0031-DRAFT-35152
NOAA-NMFS-2020-0031-DRAFT-35153
NOAA-NMFS-2020-0031-DRAFT-35154
NOAA-NMFS-2020-0031-DRAFT-35155
NOAA-NMFS-2020-0031-DRAFT-35156
NOAA-NMFS-2020-0031-DRAFT-35157
NOAA-NMFS-2020-0031-DRAFT-35158
NOAA-NMFS-2020-0031-DRAFT-35159
NOAA-NMFS-2020-0031-DRAFT-35160
NOAA-NMFS-2020-0031-DRAFT-35161
NOAA-NMFS-2020-0031-DRAFT-35162
NOAA-NMFS-2020-0031-DRAFT-35163
NOAA-NMFS-2020-0031-DRAFT-35164
NOAA-NMFS-2020-0031-DRAFT-35165
NOAA-NMFS-2020-0031-DRAFT-35166
NOAA-NMFS-2020-0031-DRAFT-35167

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NOAA-NMFS-2020-0031-DRAFT-40177
NOAA-NMFS-2020-0031-DRAFT-40178
NOAA-NMFS-2020-0031-DRAFT-40179
NOAA-NMFS-2020-0031-DRAFT-40180
NOAA-NMFS-2020-0031-DRAFT-40181
NOAA-NMFS-2020-0031-DRAFT-40182
NOAA-NMFS-2020-0031-DRAFT-40183
NOAA-NMFS-2020-0031-DRAFT-40184
NOAA-NMFS-2020-0031-DRAFT-40185
NOAA-NMFS-2020-0031-DRAFT-40186
NOAA-NMFS-2020-0031-DRAFT-40187
NOAA-NMFS-2020-0031-DRAFT-40188
NOAA-NMFS-2020-0031-DRAFT-40189
NOAA-NMFS-2020-0031-DRAFT-40190
NOAA-NMFS-2020-0031-DRAFT-40191
NOAA-NMFS-2020-0031-DRAFT-40192
NOAA-NMFS-2020-0031-DRAFT-40193
NOAA-NMFS-2020-0031-DRAFT-40194
NOAA-NMFS-2020-0031-DRAFT-40195
NOAA-NMFS-2020-0031-DRAFT-40196
NOAA-NMFS-2020-0031-DRAFT-40197
NOAA-NMFS-2020-0031-DRAFT-40198
NOAA-NMFS-2020-0031-DRAFT-40199
NOAA-NMFS-2020-0031-DRAFT-40200
NOAA-NMFS-2020-0031-DRAFT-40201
NOAA-NMFS-2020-0031-DRAFT-40202
NOAA-NMFS-2020-0031-DRAFT-40203
NOAA-NMFS-2020-0031-DRAFT-40204
NOAA-NMFS-2020-0031-DRAFT-40205
NOAA-NMFS-2020-0031-DRAFT-40206
NOAA-NMFS-2020-0031-DRAFT-40207
NOAA-NMFS-2020-0031-DRAFT-40208
NOAA-NMFS-2020-0031-DRAFT-40209
NOAA-NMFS-2020-0031-DRAFT-40210
NOAA-NMFS-2020-0031-DRAFT-40211
NOAA-NMFS-2020-0031-DRAFT-40212
NOAA-NMFS-2020-0031-DRAFT-40213
NOAA-NMFS-2020-0031-DRAFT-40214
NOAA-NMFS-2020-0031-DRAFT-40215
NOAA-NMFS-2020-0031-DRAFT-40216
NOAA-NMFS-2020-0031-DRAFT-40217

Comment from Aronson, Reevyn
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NOAA-NMFS-2020-0031-DRAFT-35168
NOAA-NMFS-2020-0031-DRAFT-35169
NOAA-NMFS-2020-0031-DRAFT-35170
NOAA-NMFS-2020-0031-DRAFT-35171
NOAA-NMFS-2020-0031-DRAFT-35172
NOAA-NMFS-2020-0031-DRAFT-35173
NOAA-NMFS-2020-0031-DRAFT-35174
NOAA-NMFS-2020-0031-DRAFT-35175
NOAA-NMFS-2020-0031-DRAFT-35176
NOAA-NMFS-2020-0031-DRAFT-35177
NOAA-NMFS-2020-0031-DRAFT-35178
NOAA-NMFS-2020-0031-DRAFT-35179
NOAA-NMFS-2020-0031-DRAFT-35180
NOAA-NMFS-2020-0031-DRAFT-35181
NOAA-NMFS-2020-0031-DRAFT-35182
NOAA-NMFS-2020-0031-DRAFT-35183
NOAA-NMFS-2020-0031-DRAFT-35184
NOAA-NMFS-2020-0031-DRAFT-35185
NOAA-NMFS-2020-0031-DRAFT-35186
NOAA-NMFS-2020-0031-DRAFT-35187
NOAA-NMFS-2020-0031-DRAFT-35188
NOAA-NMFS-2020-0031-DRAFT-35189
NOAA-NMFS-2020-0031-DRAFT-35190
NOAA-NMFS-2020-0031-DRAFT-35191
NOAA-NMFS-2020-0031-DRAFT-35192
NOAA-NMFS-2020-0031-DRAFT-35193
NOAA-NMFS-2020-0031-DRAFT-35194
NOAA-NMFS-2020-0031-DRAFT-35195
NOAA-NMFS-2020-0031-DRAFT-35196
NOAA-NMFS-2020-0031-DRAFT-35197
NOAA-NMFS-2020-0031-DRAFT-35198
NOAA-NMFS-2020-0031-DRAFT-35199
NOAA-NMFS-2020-0031-DRAFT-35200
NOAA-NMFS-2020-0031-DRAFT-35201
NOAA-NMFS-2020-0031-DRAFT-35202
NOAA-NMFS-2020-0031-DRAFT-35203
NOAA-NMFS-2020-0031-DRAFT-35204
NOAA-NMFS-2020-0031-DRAFT-35205
NOAA-NMFS-2020-0031-DRAFT-35206
NOAA-NMFS-2020-0031-DRAFT-35207
NOAA-NMFS-2020-0031-DRAFT-35208

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NOAA-NMFS-2020-0031-DRAFT-40218
NOAA-NMFS-2020-0031-DRAFT-40219
NOAA-NMFS-2020-0031-DRAFT-40220
NOAA-NMFS-2020-0031-DRAFT-40221
NOAA-NMFS-2020-0031-DRAFT-40222
NOAA-NMFS-2020-0031-DRAFT-40223
NOAA-NMFS-2020-0031-DRAFT-40224
NOAA-NMFS-2020-0031-DRAFT-40225
NOAA-NMFS-2020-0031-DRAFT-40226
NOAA-NMFS-2020-0031-DRAFT-40227
NOAA-NMFS-2020-0031-DRAFT-40229
NOAA-NMFS-2020-0031-DRAFT-40230
NOAA-NMFS-2020-0031-DRAFT-40231
NOAA-NMFS-2020-0031-DRAFT-40232
NOAA-NMFS-2020-0031-DRAFT-40233
NOAA-NMFS-2020-0031-DRAFT-40234
NOAA-NMFS-2020-0031-DRAFT-40235
NOAA-NMFS-2020-0031-DRAFT-40236
NOAA-NMFS-2020-0031-DRAFT-40237
NOAA-NMFS-2020-0031-DRAFT-40238
NOAA-NMFS-2020-0031-DRAFT-40239
NOAA-NMFS-2020-0031-DRAFT-40240
NOAA-NMFS-2020-0031-DRAFT-40241
NOAA-NMFS-2020-0031-DRAFT-40242
NOAA-NMFS-2020-0031-DRAFT-40243
NOAA-NMFS-2020-0031-DRAFT-40244
NOAA-NMFS-2020-0031-DRAFT-40245
NOAA-NMFS-2020-0031-DRAFT-40246
NOAA-NMFS-2020-0031-DRAFT-40247
NOAA-NMFS-2020-0031-DRAFT-40248
NOAA-NMFS-2020-0031-DRAFT-40249
NOAA-NMFS-2020-0031-DRAFT-40250
NOAA-NMFS-2020-0031-DRAFT-40251
NOAA-NMFS-2020-0031-DRAFT-40252
NOAA-NMFS-2020-0031-DRAFT-40253
NOAA-NMFS-2020-0031-DRAFT-40254
NOAA-NMFS-2020-0031-DRAFT-40255
NOAA-NMFS-2020-0031-DRAFT-40256
NOAA-NMFS-2020-0031-DRAFT-40257
NOAA-NMFS-2020-0031-DRAFT-40258
NOAA-NMFS-2020-0031-DRAFT-40259

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NOAA-NMFS-2020-0031-DRAFT-35209
NOAA-NMFS-2020-0031-DRAFT-35210
NOAA-NMFS-2020-0031-DRAFT-35211
NOAA-NMFS-2020-0031-DRAFT-35212
NOAA-NMFS-2020-0031-DRAFT-35213
NOAA-NMFS-2020-0031-DRAFT-35214
NOAA-NMFS-2020-0031-DRAFT-35215
NOAA-NMFS-2020-0031-DRAFT-35216
NOAA-NMFS-2020-0031-DRAFT-35217
NOAA-NMFS-2020-0031-DRAFT-35218
NOAA-NMFS-2020-0031-DRAFT-35219
NOAA-NMFS-2020-0031-DRAFT-35220
NOAA-NMFS-2020-0031-DRAFT-35221
NOAA-NMFS-2020-0031-DRAFT-35222
NOAA-NMFS-2020-0031-DRAFT-35223
NOAA-NMFS-2020-0031-DRAFT-35224
NOAA-NMFS-2020-0031-DRAFT-35225
NOAA-NMFS-2020-0031-DRAFT-35226
NOAA-NMFS-2020-0031-DRAFT-35227
NOAA-NMFS-2020-0031-DRAFT-35228
NOAA-NMFS-2020-0031-DRAFT-35229
NOAA-NMFS-2020-0031-DRAFT-35230
NOAA-NMFS-2020-0031-DRAFT-35231
NOAA-NMFS-2020-0031-DRAFT-35232
NOAA-NMFS-2020-0031-DRAFT-35233
NOAA-NMFS-2020-0031-DRAFT-35234
NOAA-NMFS-2020-0031-DRAFT-35235
NOAA-NMFS-2020-0031-DRAFT-35236
NOAA-NMFS-2020-0031-DRAFT-35237
NOAA-NMFS-2020-0031-DRAFT-35238
NOAA-NMFS-2020-0031-DRAFT-35239
NOAA-NMFS-2020-0031-DRAFT-35240
NOAA-NMFS-2020-0031-DRAFT-35241
NOAA-NMFS-2020-0031-DRAFT-35242
NOAA-NMFS-2020-0031-DRAFT-35243
NOAA-NMFS-2020-0031-DRAFT-35244
NOAA-NMFS-2020-0031-DRAFT-35245
NOAA-NMFS-2020-0031-DRAFT-35246
NOAA-NMFS-2020-0031-DRAFT-35247
NOAA-NMFS-2020-0031-DRAFT-35248
NOAA-NMFS-2020-0031-DRAFT-35249

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NOAA-NMFS-2020-0031-DRAFT-40260
NOAA-NMFS-2020-0031-DRAFT-40261
NOAA-NMFS-2020-0031-DRAFT-40262
NOAA-NMFS-2020-0031-DRAFT-40263
NOAA-NMFS-2020-0031-DRAFT-40264
NOAA-NMFS-2020-0031-DRAFT-40265
NOAA-NMFS-2020-0031-DRAFT-40266
NOAA-NMFS-2020-0031-DRAFT-40267
NOAA-NMFS-2020-0031-DRAFT-40268
NOAA-NMFS-2020-0031-DRAFT-40269
NOAA-NMFS-2020-0031-DRAFT-40270
NOAA-NMFS-2020-0031-DRAFT-40271
NOAA-NMFS-2020-0031-DRAFT-40272
NOAA-NMFS-2020-0031-DRAFT-40273
NOAA-NMFS-2020-0031-DRAFT-40274
NOAA-NMFS-2020-0031-DRAFT-40275
NOAA-NMFS-2020-0031-DRAFT-40276
NOAA-NMFS-2020-0031-DRAFT-40277
NOAA-NMFS-2020-0031-DRAFT-40278
NOAA-NMFS-2020-0031-DRAFT-40279
NOAA-NMFS-2020-0031-DRAFT-40280
NOAA-NMFS-2020-0031-DRAFT-40281
NOAA-NMFS-2020-0031-DRAFT-40282
NOAA-NMFS-2020-0031-DRAFT-40283
NOAA-NMFS-2020-0031-DRAFT-40284
NOAA-NMFS-2020-0031-DRAFT-40285
NOAA-NMFS-2020-0031-DRAFT-40286
NOAA-NMFS-2020-0031-DRAFT-40287
NOAA-NMFS-2020-0031-DRAFT-40288
NOAA-NMFS-2020-0031-DRAFT-40289
NOAA-NMFS-2020-0031-DRAFT-40290
NOAA-NMFS-2020-0031-DRAFT-40291
NOAA-NMFS-2020-0031-DRAFT-40292
NOAA-NMFS-2020-0031-DRAFT-40293
NOAA-NMFS-2020-0031-DRAFT-40294
NOAA-NMFS-2020-0031-DRAFT-40295
NOAA-NMFS-2020-0031-DRAFT-40296
NOAA-NMFS-2020-0031-DRAFT-40297
NOAA-NMFS-2020-0031-DRAFT-40298
NOAA-NMFS-2020-0031-DRAFT-40299
NOAA-NMFS-2020-0031-DRAFT-40300

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NOAA-NMFS-2020-0031-DRAFT-35250
NOAA-NMFS-2020-0031-DRAFT-35251
NOAA-NMFS-2020-0031-DRAFT-35252
NOAA-NMFS-2020-0031-DRAFT-35253
NOAA-NMFS-2020-0031-DRAFT-35254
NOAA-NMFS-2020-0031-DRAFT-35255
NOAA-NMFS-2020-0031-DRAFT-35256
NOAA-NMFS-2020-0031-DRAFT-35257
NOAA-NMFS-2020-0031-DRAFT-35258
NOAA-NMFS-2020-0031-DRAFT-35259
NOAA-NMFS-2020-0031-DRAFT-35260
NOAA-NMFS-2020-0031-DRAFT-35261
NOAA-NMFS-2020-0031-DRAFT-35262
NOAA-NMFS-2020-0031-DRAFT-35263
NOAA-NMFS-2020-0031-DRAFT-35264
NOAA-NMFS-2020-0031-DRAFT-35265
NOAA-NMFS-2020-0031-DRAFT-35266
NOAA-NMFS-2020-0031-DRAFT-35267
NOAA-NMFS-2020-0031-DRAFT-35268
NOAA-NMFS-2020-0031-DRAFT-35269
NOAA-NMFS-2020-0031-DRAFT-35270
NOAA-NMFS-2020-0031-DRAFT-35271
NOAA-NMFS-2020-0031-DRAFT-35272
NOAA-NMFS-2020-0031-DRAFT-35273
NOAA-NMFS-2020-0031-DRAFT-35274
NOAA-NMFS-2020-0031-DRAFT-35275
NOAA-NMFS-2020-0031-DRAFT-35276
NOAA-NMFS-2020-0031-DRAFT-35277
NOAA-NMFS-2020-0031-DRAFT-35278
NOAA-NMFS-2020-0031-DRAFT-35279
NOAA-NMFS-2020-0031-DRAFT-35280
NOAA-NMFS-2020-0031-DRAFT-35281
NOAA-NMFS-2020-0031-DRAFT-35282
NOAA-NMFS-2020-0031-DRAFT-35283
NOAA-NMFS-2020-0031-DRAFT-35284
NOAA-NMFS-2020-0031-DRAFT-35285
NOAA-NMFS-2020-0031-DRAFT-35286
NOAA-NMFS-2020-0031-DRAFT-35287
NOAA-NMFS-2020-0031-DRAFT-35288
NOAA-NMFS-2020-0031-DRAFT-35289
NOAA-NMFS-2020-0031-DRAFT-35290

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NOAA-NMFS-2020-0031-DRAFT-40301
NOAA-NMFS-2020-0031-DRAFT-40302
NOAA-NMFS-2020-0031-DRAFT-40303
NOAA-NMFS-2020-0031-DRAFT-40305
NOAA-NMFS-2020-0031-DRAFT-40306
NOAA-NMFS-2020-0031-DRAFT-40307
NOAA-NMFS-2020-0031-DRAFT-40308
NOAA-NMFS-2020-0031-DRAFT-40309
NOAA-NMFS-2020-0031-DRAFT-40310
NOAA-NMFS-2020-0031-DRAFT-40311
NOAA-NMFS-2020-0031-DRAFT-40312
NOAA-NMFS-2020-0031-DRAFT-40313
NOAA-NMFS-2020-0031-DRAFT-40314
NOAA-NMFS-2020-0031-DRAFT-40315
NOAA-NMFS-2020-0031-DRAFT-40316
NOAA-NMFS-2020-0031-DRAFT-40317
NOAA-NMFS-2020-0031-DRAFT-40318
NOAA-NMFS-2020-0031-DRAFT-40319
NOAA-NMFS-2020-0031-DRAFT-40320
NOAA-NMFS-2020-0031-DRAFT-40321
NOAA-NMFS-2020-0031-DRAFT-40322
NOAA-NMFS-2020-0031-DRAFT-40323
NOAA-NMFS-2020-0031-DRAFT-40324
NOAA-NMFS-2020-0031-DRAFT-40325
NOAA-NMFS-2020-0031-DRAFT-40326
NOAA-NMFS-2020-0031-DRAFT-40327
NOAA-NMFS-2020-0031-DRAFT-40328
NOAA-NMFS-2020-0031-DRAFT-40329
NOAA-NMFS-2020-0031-DRAFT-40330
NOAA-NMFS-2020-0031-DRAFT-40331
NOAA-NMFS-2020-0031-DRAFT-40332
NOAA-NMFS-2020-0031-DRAFT-40333
NOAA-NMFS-2020-0031-DRAFT-40334
NOAA-NMFS-2020-0031-DRAFT-40335
NOAA-NMFS-2020-0031-DRAFT-40336
NOAA-NMFS-2020-0031-DRAFT-40337
NOAA-NMFS-2020-0031-DRAFT-40338
NOAA-NMFS-2020-0031-DRAFT-40339
NOAA-NMFS-2020-0031-DRAFT-40340
NOAA-NMFS-2020-0031-DRAFT-40341
NOAA-NMFS-2020-0031-DRAFT-40342

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-35291
NOAA-NMFS-2020-0031-DRAFT-35292
NOAA-NMFS-2020-0031-DRAFT-35293
NOAA-NMFS-2020-0031-DRAFT-35294
NOAA-NMFS-2020-0031-DRAFT-35295
NOAA-NMFS-2020-0031-DRAFT-35296
NOAA-NMFS-2020-0031-DRAFT-35297
NOAA-NMFS-2020-0031-DRAFT-35298
NOAA-NMFS-2020-0031-DRAFT-35299
NOAA-NMFS-2020-0031-DRAFT-35300
NOAA-NMFS-2020-0031-DRAFT-35301
NOAA-NMFS-2020-0031-DRAFT-35302
NOAA-NMFS-2020-0031-DRAFT-35303
NOAA-NMFS-2020-0031-DRAFT-35304
NOAA-NMFS-2020-0031-DRAFT-35305
NOAA-NMFS-2020-0031-DRAFT-35306
NOAA-NMFS-2020-0031-DRAFT-35307
NOAA-NMFS-2020-0031-DRAFT-35308
NOAA-NMFS-2020-0031-DRAFT-35309
NOAA-NMFS-2020-0031-DRAFT-35310
NOAA-NMFS-2020-0031-DRAFT-35311
NOAA-NMFS-2020-0031-DRAFT-35312
NOAA-NMFS-2020-0031-DRAFT-35313
NOAA-NMFS-2020-0031-DRAFT-35314
NOAA-NMFS-2020-0031-DRAFT-35315
NOAA-NMFS-2020-0031-DRAFT-35316
NOAA-NMFS-2020-0031-DRAFT-35317
NOAA-NMFS-2020-0031-DRAFT-35318
NOAA-NMFS-2020-0031-DRAFT-35319
NOAA-NMFS-2020-0031-DRAFT-35320
NOAA-NMFS-2020-0031-DRAFT-35321
NOAA-NMFS-2020-0031-DRAFT-35322
NOAA-NMFS-2020-0031-DRAFT-35323
NOAA-NMFS-2020-0031-DRAFT-35324
NOAA-NMFS-2020-0031-DRAFT-35325
NOAA-NMFS-2020-0031-DRAFT-35326
NOAA-NMFS-2020-0031-DRAFT-35327
NOAA-NMFS-2020-0031-DRAFT-35328
NOAA-NMFS-2020-0031-DRAFT-35329
NOAA-NMFS-2020-0031-DRAFT-35330
NOAA-NMFS-2020-0031-DRAFT-35331

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NOAA-NMFS-2020-0031-DRAFT-40343
NOAA-NMFS-2020-0031-DRAFT-40344
NOAA-NMFS-2020-0031-DRAFT-40345
NOAA-NMFS-2020-0031-DRAFT-40346
NOAA-NMFS-2020-0031-DRAFT-40347
NOAA-NMFS-2020-0031-DRAFT-40348
NOAA-NMFS-2020-0031-DRAFT-40349
NOAA-NMFS-2020-0031-DRAFT-40350
NOAA-NMFS-2020-0031-DRAFT-40351
NOAA-NMFS-2020-0031-DRAFT-40352
NOAA-NMFS-2020-0031-DRAFT-40353
NOAA-NMFS-2020-0031-DRAFT-40354
NOAA-NMFS-2020-0031-DRAFT-40355
NOAA-NMFS-2020-0031-DRAFT-40356
NOAA-NMFS-2020-0031-DRAFT-40357
NOAA-NMFS-2020-0031-DRAFT-40359
NOAA-NMFS-2020-0031-DRAFT-40360
NOAA-NMFS-2020-0031-DRAFT-40361
NOAA-NMFS-2020-0031-DRAFT-40362
NOAA-NMFS-2020-0031-DRAFT-40363
NOAA-NMFS-2020-0031-DRAFT-40364
NOAA-NMFS-2020-0031-DRAFT-40365
NOAA-NMFS-2020-0031-DRAFT-40366
NOAA-NMFS-2020-0031-DRAFT-40367
NOAA-NMFS-2020-0031-DRAFT-40368
NOAA-NMFS-2020-0031-DRAFT-40369
NOAA-NMFS-2020-0031-DRAFT-40370
NOAA-NMFS-2020-0031-DRAFT-40371
NOAA-NMFS-2020-0031-DRAFT-40372
NOAA-NMFS-2020-0031-DRAFT-40373
NOAA-NMFS-2020-0031-DRAFT-40374
NOAA-NMFS-2020-0031-DRAFT-40375
NOAA-NMFS-2020-0031-DRAFT-40376
NOAA-NMFS-2020-0031-DRAFT-40377
NOAA-NMFS-2020-0031-DRAFT-40378
NOAA-NMFS-2020-0031-DRAFT-40379
NOAA-NMFS-2020-0031-DRAFT-40380
NOAA-NMFS-2020-0031-DRAFT-40381
NOAA-NMFS-2020-0031-DRAFT-40382
NOAA-NMFS-2020-0031-DRAFT-40383
NOAA-NMFS-2020-0031-DRAFT-40384

Comment from Saffier Willis, Sharman
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NOAA-NMFS-2020-0031-DRAFT-35332
NOAA-NMFS-2020-0031-DRAFT-35333
NOAA-NMFS-2020-0031-DRAFT-35334
NOAA-NMFS-2020-0031-DRAFT-35335
NOAA-NMFS-2020-0031-DRAFT-35336
NOAA-NMFS-2020-0031-DRAFT-35337
NOAA-NMFS-2020-0031-DRAFT-35338
NOAA-NMFS-2020-0031-DRAFT-35339
NOAA-NMFS-2020-0031-DRAFT-35340
NOAA-NMFS-2020-0031-DRAFT-35341
NOAA-NMFS-2020-0031-DRAFT-35342
NOAA-NMFS-2020-0031-DRAFT-35343
NOAA-NMFS-2020-0031-DRAFT-35344
NOAA-NMFS-2020-0031-DRAFT-35345
NOAA-NMFS-2020-0031-DRAFT-35346
NOAA-NMFS-2020-0031-DRAFT-35347
NOAA-NMFS-2020-0031-DRAFT-35348
NOAA-NMFS-2020-0031-DRAFT-35349
NOAA-NMFS-2020-0031-DRAFT-35350
NOAA-NMFS-2020-0031-DRAFT-35351
NOAA-NMFS-2020-0031-DRAFT-35352
NOAA-NMFS-2020-0031-DRAFT-35353
NOAA-NMFS-2020-0031-DRAFT-35354
NOAA-NMFS-2020-0031-DRAFT-35355
NOAA-NMFS-2020-0031-DRAFT-35356
NOAA-NMFS-2020-0031-DRAFT-35357
NOAA-NMFS-2020-0031-DRAFT-35358
NOAA-NMFS-2020-0031-DRAFT-35359
NOAA-NMFS-2020-0031-DRAFT-35360
NOAA-NMFS-2020-0031-DRAFT-35361
NOAA-NMFS-2020-0031-DRAFT-35362
NOAA-NMFS-2020-0031-DRAFT-35363
NOAA-NMFS-2020-0031-DRAFT-35364
NOAA-NMFS-2020-0031-DRAFT-35365
NOAA-NMFS-2020-0031-DRAFT-35366
NOAA-NMFS-2020-0031-DRAFT-35367
NOAA-NMFS-2020-0031-DRAFT-35368
NOAA-NMFS-2020-0031-DRAFT-35369
NOAA-NMFS-2020-0031-DRAFT-35370
NOAA-NMFS-2020-0031-DRAFT-35371
NOAA-NMFS-2020-0031-DRAFT-35372

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NOAA-NMFS-2020-0031-DRAFT-40385
NOAA-NMFS-2020-0031-DRAFT-40386
NOAA-NMFS-2020-0031-DRAFT-40387
NOAA-NMFS-2020-0031-DRAFT-40388
NOAA-NMFS-2020-0031-DRAFT-40389
NOAA-NMFS-2020-0031-DRAFT-40390
NOAA-NMFS-2020-0031-DRAFT-40391
NOAA-NMFS-2020-0031-DRAFT-40392
NOAA-NMFS-2020-0031-DRAFT-40393
NOAA-NMFS-2020-0031-DRAFT-40394
NOAA-NMFS-2020-0031-DRAFT-40395
NOAA-NMFS-2020-0031-DRAFT-40396
NOAA-NMFS-2020-0031-DRAFT-40397
NOAA-NMFS-2020-0031-DRAFT-40398
NOAA-NMFS-2020-0031-DRAFT-40399
NOAA-NMFS-2020-0031-DRAFT-40400
NOAA-NMFS-2020-0031-DRAFT-40401
NOAA-NMFS-2020-0031-DRAFT-40402
NOAA-NMFS-2020-0031-DRAFT-40403
NOAA-NMFS-2020-0031-DRAFT-40404
NOAA-NMFS-2020-0031-DRAFT-40405
NOAA-NMFS-2020-0031-DRAFT-40406
NOAA-NMFS-2020-0031-DRAFT-40407
NOAA-NMFS-2020-0031-DRAFT-40408
NOAA-NMFS-2020-0031-DRAFT-40409
NOAA-NMFS-2020-0031-DRAFT-40410
NOAA-NMFS-2020-0031-DRAFT-40411
NOAA-NMFS-2020-0031-DRAFT-40412
NOAA-NMFS-2020-0031-DRAFT-40413
NOAA-NMFS-2020-0031-DRAFT-40414
NOAA-NMFS-2020-0031-DRAFT-40415
NOAA-NMFS-2020-0031-DRAFT-40416
NOAA-NMFS-2020-0031-DRAFT-40417
NOAA-NMFS-2020-0031-DRAFT-40418
NOAA-NMFS-2020-0031-DRAFT-40419
NOAA-NMFS-2020-0031-DRAFT-40420
NOAA-NMFS-2020-0031-DRAFT-40421
NOAA-NMFS-2020-0031-DRAFT-40422
NOAA-NMFS-2020-0031-DRAFT-40423
NOAA-NMFS-2020-0031-DRAFT-40424
NOAA-NMFS-2020-0031-DRAFT-40425

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NOAA-NMFS-2020-0031-DRAFT-35373
NOAA-NMFS-2020-0031-DRAFT-35374
NOAA-NMFS-2020-0031-DRAFT-35375
NOAA-NMFS-2020-0031-DRAFT-35376
NOAA-NMFS-2020-0031-DRAFT-35377
NOAA-NMFS-2020-0031-DRAFT-35378
NOAA-NMFS-2020-0031-DRAFT-35379
NOAA-NMFS-2020-0031-DRAFT-35380
NOAA-NMFS-2020-0031-DRAFT-35381
NOAA-NMFS-2020-0031-DRAFT-35382
NOAA-NMFS-2020-0031-DRAFT-35383
NOAA-NMFS-2020-0031-DRAFT-35384
NOAA-NMFS-2020-0031-DRAFT-35385
NOAA-NMFS-2020-0031-DRAFT-35386
NOAA-NMFS-2020-0031-DRAFT-35387
NOAA-NMFS-2020-0031-DRAFT-35388
NOAA-NMFS-2020-0031-DRAFT-35389
NOAA-NMFS-2020-0031-DRAFT-35390
NOAA-NMFS-2020-0031-DRAFT-35391
NOAA-NMFS-2020-0031-DRAFT-35392
NOAA-NMFS-2020-0031-DRAFT-35393
NOAA-NMFS-2020-0031-DRAFT-35394
NOAA-NMFS-2020-0031-DRAFT-35395
NOAA-NMFS-2020-0031-DRAFT-35396
NOAA-NMFS-2020-0031-DRAFT-35397
NOAA-NMFS-2020-0031-DRAFT-35398
NOAA-NMFS-2020-0031-DRAFT-35399
NOAA-NMFS-2020-0031-DRAFT-35400
NOAA-NMFS-2020-0031-DRAFT-35401
NOAA-NMFS-2020-0031-DRAFT-35402
NOAA-NMFS-2020-0031-DRAFT-35403
NOAA-NMFS-2020-0031-DRAFT-35404
NOAA-NMFS-2020-0031-DRAFT-35405
NOAA-NMFS-2020-0031-DRAFT-35406
NOAA-NMFS-2020-0031-DRAFT-35407
NOAA-NMFS-2020-0031-DRAFT-35408
NOAA-NMFS-2020-0031-DRAFT-35409
NOAA-NMFS-2020-0031-DRAFT-35410
NOAA-NMFS-2020-0031-DRAFT-35411
NOAA-NMFS-2020-0031-DRAFT-35412
NOAA-NMFS-2020-0031-DRAFT-35413

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NOAA-NMFS-2020-0031-DRAFT-40426
NOAA-NMFS-2020-0031-DRAFT-40427
NOAA-NMFS-2020-0031-DRAFT-40428
NOAA-NMFS-2020-0031-DRAFT-40429
NOAA-NMFS-2020-0031-DRAFT-40430
NOAA-NMFS-2020-0031-DRAFT-40431
NOAA-NMFS-2020-0031-DRAFT-40432
NOAA-NMFS-2020-0031-DRAFT-40433
NOAA-NMFS-2020-0031-DRAFT-40434
NOAA-NMFS-2020-0031-DRAFT-40435
NOAA-NMFS-2020-0031-DRAFT-40436
NOAA-NMFS-2020-0031-DRAFT-40437
NOAA-NMFS-2020-0031-DRAFT-40438
NOAA-NMFS-2020-0031-DRAFT-40439
NOAA-NMFS-2020-0031-DRAFT-40440
NOAA-NMFS-2020-0031-DRAFT-40441
NOAA-NMFS-2020-0031-DRAFT-40442
NOAA-NMFS-2020-0031-DRAFT-40443
NOAA-NMFS-2020-0031-DRAFT-40444
NOAA-NMFS-2020-0031-DRAFT-40445
NOAA-NMFS-2020-0031-DRAFT-40446
NOAA-NMFS-2020-0031-DRAFT-40447
NOAA-NMFS-2020-0031-DRAFT-40448
NOAA-NMFS-2020-0031-DRAFT-40449
NOAA-NMFS-2020-0031-DRAFT-40450
NOAA-NMFS-2020-0031-DRAFT-40452
NOAA-NMFS-2020-0031-DRAFT-40453
NOAA-NMFS-2020-0031-DRAFT-40454
NOAA-NMFS-2020-0031-DRAFT-40455
NOAA-NMFS-2020-0031-DRAFT-40456
NOAA-NMFS-2020-0031-DRAFT-40457
NOAA-NMFS-2020-0031-DRAFT-40458
NOAA-NMFS-2020-0031-DRAFT-40459
NOAA-NMFS-2020-0031-DRAFT-40460
NOAA-NMFS-2020-0031-DRAFT-40461
NOAA-NMFS-2020-0031-DRAFT-40462
NOAA-NMFS-2020-0031-DRAFT-40463
NOAA-NMFS-2020-0031-DRAFT-40464
NOAA-NMFS-2020-0031-DRAFT-40465
NOAA-NMFS-2020-0031-DRAFT-40466
NOAA-NMFS-2020-0031-DRAFT-40467

Comment from Peterson, Janet
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NOAA-NMFS-2020-0031-DRAFT-35414
NOAA-NMFS-2020-0031-DRAFT-35415
NOAA-NMFS-2020-0031-DRAFT-35416
NOAA-NMFS-2020-0031-DRAFT-35417
NOAA-NMFS-2020-0031-DRAFT-35418
NOAA-NMFS-2020-0031-DRAFT-35419
NOAA-NMFS-2020-0031-DRAFT-35420
NOAA-NMFS-2020-0031-DRAFT-35421
NOAA-NMFS-2020-0031-DRAFT-35422
NOAA-NMFS-2020-0031-DRAFT-35423
NOAA-NMFS-2020-0031-DRAFT-35424
NOAA-NMFS-2020-0031-DRAFT-35425
NOAA-NMFS-2020-0031-DRAFT-35426
NOAA-NMFS-2020-0031-DRAFT-35427
NOAA-NMFS-2020-0031-DRAFT-35428
NOAA-NMFS-2020-0031-DRAFT-35429
NOAA-NMFS-2020-0031-DRAFT-35430
NOAA-NMFS-2020-0031-DRAFT-35431
NOAA-NMFS-2020-0031-DRAFT-35432
NOAA-NMFS-2020-0031-DRAFT-35433
NOAA-NMFS-2020-0031-DRAFT-35434
NOAA-NMFS-2020-0031-DRAFT-35435
NOAA-NMFS-2020-0031-DRAFT-35436
NOAA-NMFS-2020-0031-DRAFT-35437
NOAA-NMFS-2020-0031-DRAFT-35438
NOAA-NMFS-2020-0031-DRAFT-35439
NOAA-NMFS-2020-0031-DRAFT-35440
NOAA-NMFS-2020-0031-DRAFT-35441
NOAA-NMFS-2020-0031-DRAFT-35442
NOAA-NMFS-2020-0031-DRAFT-35443
NOAA-NMFS-2020-0031-DRAFT-35444
NOAA-NMFS-2020-0031-DRAFT-35445
NOAA-NMFS-2020-0031-DRAFT-35446
NOAA-NMFS-2020-0031-DRAFT-35447
NOAA-NMFS-2020-0031-DRAFT-35448
NOAA-NMFS-2020-0031-DRAFT-35449
NOAA-NMFS-2020-0031-DRAFT-35450
NOAA-NMFS-2020-0031-DRAFT-35451
NOAA-NMFS-2020-0031-DRAFT-35452
NOAA-NMFS-2020-0031-DRAFT-35453
NOAA-NMFS-2020-0031-DRAFT-35454

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NOAA-NMFS-2020-0031-DRAFT-40468
NOAA-NMFS-2020-0031-DRAFT-40469
NOAA-NMFS-2020-0031-DRAFT-40470
NOAA-NMFS-2020-0031-DRAFT-40471
NOAA-NMFS-2020-0031-DRAFT-40472
NOAA-NMFS-2020-0031-DRAFT-40473
NOAA-NMFS-2020-0031-DRAFT-40474
NOAA-NMFS-2020-0031-DRAFT-40475
NOAA-NMFS-2020-0031-DRAFT-40476
NOAA-NMFS-2020-0031-DRAFT-40477
NOAA-NMFS-2020-0031-DRAFT-40478
NOAA-NMFS-2020-0031-DRAFT-40479
NOAA-NMFS-2020-0031-DRAFT-40480
NOAA-NMFS-2020-0031-DRAFT-40481
NOAA-NMFS-2020-0031-DRAFT-40482
NOAA-NMFS-2020-0031-DRAFT-40483
NOAA-NMFS-2020-0031-DRAFT-40484
NOAA-NMFS-2020-0031-DRAFT-40485
NOAA-NMFS-2020-0031-DRAFT-40486
NOAA-NMFS-2020-0031-DRAFT-40487
NOAA-NMFS-2020-0031-DRAFT-40488
NOAA-NMFS-2020-0031-DRAFT-40489
NOAA-NMFS-2020-0031-DRAFT-40490
NOAA-NMFS-2020-0031-DRAFT-40491
NOAA-NMFS-2020-0031-DRAFT-40492
NOAA-NMFS-2020-0031-DRAFT-40493
NOAA-NMFS-2020-0031-DRAFT-40494
NOAA-NMFS-2020-0031-DRAFT-40495
NOAA-NMFS-2020-0031-DRAFT-40496
NOAA-NMFS-2020-0031-DRAFT-40497
NOAA-NMFS-2020-0031-DRAFT-40498
NOAA-NMFS-2020-0031-DRAFT-40499
NOAA-NMFS-2020-0031-DRAFT-40500
NOAA-NMFS-2020-0031-DRAFT-40501
NOAA-NMFS-2020-0031-DRAFT-40502
NOAA-NMFS-2020-0031-DRAFT-40503
NOAA-NMFS-2020-0031-DRAFT-40504
NOAA-NMFS-2020-0031-DRAFT-40505
NOAA-NMFS-2020-0031-DRAFT-40506
NOAA-NMFS-2020-0031-DRAFT-40507
NOAA-NMFS-2020-0031-DRAFT-40508

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NOAA-NMFS-2020-0031-DRAFT-35455
NOAA-NMFS-2020-0031-DRAFT-35456
NOAA-NMFS-2020-0031-DRAFT-35457
NOAA-NMFS-2020-0031-DRAFT-35458
NOAA-NMFS-2020-0031-DRAFT-35459
NOAA-NMFS-2020-0031-DRAFT-35460
NOAA-NMFS-2020-0031-DRAFT-35461
NOAA-NMFS-2020-0031-DRAFT-35462
NOAA-NMFS-2020-0031-DRAFT-35463
NOAA-NMFS-2020-0031-DRAFT-35464
NOAA-NMFS-2020-0031-DRAFT-35465
NOAA-NMFS-2020-0031-DRAFT-35466
NOAA-NMFS-2020-0031-DRAFT-35467
NOAA-NMFS-2020-0031-DRAFT-35468
NOAA-NMFS-2020-0031-DRAFT-35469
NOAA-NMFS-2020-0031-DRAFT-35470
NOAA-NMFS-2020-0031-DRAFT-35471
NOAA-NMFS-2020-0031-DRAFT-35472
NOAA-NMFS-2020-0031-DRAFT-35473
NOAA-NMFS-2020-0031-DRAFT-35474
NOAA-NMFS-2020-0031-DRAFT-35475
NOAA-NMFS-2020-0031-DRAFT-35476
NOAA-NMFS-2020-0031-DRAFT-35477
NOAA-NMFS-2020-0031-DRAFT-35478
NOAA-NMFS-2020-0031-DRAFT-35479
NOAA-NMFS-2020-0031-DRAFT-35480
NOAA-NMFS-2020-0031-DRAFT-35481
NOAA-NMFS-2020-0031-DRAFT-35482
NOAA-NMFS-2020-0031-DRAFT-35483
NOAA-NMFS-2020-0031-DRAFT-35484
NOAA-NMFS-2020-0031-DRAFT-35485
NOAA-NMFS-2020-0031-DRAFT-35486
NOAA-NMFS-2020-0031-DRAFT-35487
NOAA-NMFS-2020-0031-DRAFT-35488
NOAA-NMFS-2020-0031-DRAFT-35489
NOAA-NMFS-2020-0031-DRAFT-35490
NOAA-NMFS-2020-0031-DRAFT-35491
NOAA-NMFS-2020-0031-DRAFT-35492
NOAA-NMFS-2020-0031-DRAFT-35493
NOAA-NMFS-2020-0031-DRAFT-35494
NOAA-NMFS-2020-0031-DRAFT-35495

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NOAA-NMFS-2020-0031-DRAFT-40509
NOAA-NMFS-2020-0031-DRAFT-40510
NOAA-NMFS-2020-0031-DRAFT-40511
NOAA-NMFS-2020-0031-DRAFT-40512
NOAA-NMFS-2020-0031-DRAFT-40513
NOAA-NMFS-2020-0031-DRAFT-40514
NOAA-NMFS-2020-0031-DRAFT-40515
NOAA-NMFS-2020-0031-DRAFT-40516
NOAA-NMFS-2020-0031-DRAFT-40517
NOAA-NMFS-2020-0031-DRAFT-40518
NOAA-NMFS-2020-0031-DRAFT-40519
NOAA-NMFS-2020-0031-DRAFT-40520
NOAA-NMFS-2020-0031-DRAFT-40521
NOAA-NMFS-2020-0031-DRAFT-40522
NOAA-NMFS-2020-0031-DRAFT-40523
NOAA-NMFS-2020-0031-DRAFT-40524
NOAA-NMFS-2020-0031-DRAFT-40525
NOAA-NMFS-2020-0031-DRAFT-40526
NOAA-NMFS-2020-0031-DRAFT-40527
NOAA-NMFS-2020-0031-DRAFT-40528
NOAA-NMFS-2020-0031-DRAFT-40529
NOAA-NMFS-2020-0031-DRAFT-40530
NOAA-NMFS-2020-0031-DRAFT-40531
NOAA-NMFS-2020-0031-DRAFT-40532
NOAA-NMFS-2020-0031-DRAFT-40533
NOAA-NMFS-2020-0031-DRAFT-40534
NOAA-NMFS-2020-0031-DRAFT-40536
NOAA-NMFS-2020-0031-DRAFT-40537
NOAA-NMFS-2020-0031-DRAFT-40538
NOAA-NMFS-2020-0031-DRAFT-40539
NOAA-NMFS-2020-0031-DRAFT-40540
NOAA-NMFS-2020-0031-DRAFT-40541
NOAA-NMFS-2020-0031-DRAFT-40542
NOAA-NMFS-2020-0031-DRAFT-40543
NOAA-NMFS-2020-0031-DRAFT-40544
NOAA-NMFS-2020-0031-DRAFT-40545
NOAA-NMFS-2020-0031-DRAFT-40547
NOAA-NMFS-2020-0031-DRAFT-40548
NOAA-NMFS-2020-0031-DRAFT-40549
NOAA-NMFS-2020-0031-DRAFT-40550
NOAA-NMFS-2020-0031-DRAFT-40551

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NOAA-NMFS-2020-0031-DRAFT-35496
NOAA-NMFS-2020-0031-DRAFT-35497
NOAA-NMFS-2020-0031-DRAFT-35498
NOAA-NMFS-2020-0031-DRAFT-35499
NOAA-NMFS-2020-0031-DRAFT-35500
NOAA-NMFS-2020-0031-DRAFT-35501
NOAA-NMFS-2020-0031-DRAFT-35502
NOAA-NMFS-2020-0031-DRAFT-35503
NOAA-NMFS-2020-0031-DRAFT-35504
NOAA-NMFS-2020-0031-DRAFT-35505
NOAA-NMFS-2020-0031-DRAFT-35506
NOAA-NMFS-2020-0031-DRAFT-35507
NOAA-NMFS-2020-0031-DRAFT-35508
NOAA-NMFS-2020-0031-DRAFT-35509
NOAA-NMFS-2020-0031-DRAFT-35510
NOAA-NMFS-2020-0031-DRAFT-35511
NOAA-NMFS-2020-0031-DRAFT-35512
NOAA-NMFS-2020-0031-DRAFT-35513
NOAA-NMFS-2020-0031-DRAFT-35514
NOAA-NMFS-2020-0031-DRAFT-35515
NOAA-NMFS-2020-0031-DRAFT-35516
NOAA-NMFS-2020-0031-DRAFT-35517
NOAA-NMFS-2020-0031-DRAFT-35518
NOAA-NMFS-2020-0031-DRAFT-35519
NOAA-NMFS-2020-0031-DRAFT-35520
NOAA-NMFS-2020-0031-DRAFT-35521
NOAA-NMFS-2020-0031-DRAFT-35522
NOAA-NMFS-2020-0031-DRAFT-35523
NOAA-NMFS-2020-0031-DRAFT-35524
NOAA-NMFS-2020-0031-DRAFT-35525
NOAA-NMFS-2020-0031-DRAFT-35526
NOAA-NMFS-2020-0031-DRAFT-35527
NOAA-NMFS-2020-0031-DRAFT-35528
NOAA-NMFS-2020-0031-DRAFT-35529
NOAA-NMFS-2020-0031-DRAFT-35530
NOAA-NMFS-2020-0031-DRAFT-35531
NOAA-NMFS-2020-0031-DRAFT-35532
NOAA-NMFS-2020-0031-DRAFT-35533
NOAA-NMFS-2020-0031-DRAFT-35534
NOAA-NMFS-2020-0031-DRAFT-35535
NOAA-NMFS-2020-0031-DRAFT-35536

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NOAA-NMFS-2020-0031-DRAFT-40552
NOAA-NMFS-2020-0031-DRAFT-40553
NOAA-NMFS-2020-0031-DRAFT-40554
NOAA-NMFS-2020-0031-DRAFT-40555
NOAA-NMFS-2020-0031-DRAFT-40556
NOAA-NMFS-2020-0031-DRAFT-40557
NOAA-NMFS-2020-0031-DRAFT-40558
NOAA-NMFS-2020-0031-DRAFT-40559
NOAA-NMFS-2020-0031-DRAFT-40560
NOAA-NMFS-2020-0031-DRAFT-40561
NOAA-NMFS-2020-0031-DRAFT-40562
NOAA-NMFS-2020-0031-DRAFT-40563
NOAA-NMFS-2020-0031-DRAFT-40564
NOAA-NMFS-2020-0031-DRAFT-40565
NOAA-NMFS-2020-0031-DRAFT-40566
NOAA-NMFS-2020-0031-DRAFT-40567
NOAA-NMFS-2020-0031-DRAFT-40568
NOAA-NMFS-2020-0031-DRAFT-40569
NOAA-NMFS-2020-0031-DRAFT-40570
NOAA-NMFS-2020-0031-DRAFT-40571
NOAA-NMFS-2020-0031-DRAFT-40572
NOAA-NMFS-2020-0031-DRAFT-40573
NOAA-NMFS-2020-0031-DRAFT-40574
NOAA-NMFS-2020-0031-DRAFT-40575
NOAA-NMFS-2020-0031-DRAFT-40576
NOAA-NMFS-2020-0031-DRAFT-40577
NOAA-NMFS-2020-0031-DRAFT-40578
NOAA-NMFS-2020-0031-DRAFT-40579
NOAA-NMFS-2020-0031-DRAFT-40580
NOAA-NMFS-2020-0031-DRAFT-40581
NOAA-NMFS-2020-0031-DRAFT-40582
NOAA-NMFS-2020-0031-DRAFT-40583
NOAA-NMFS-2020-0031-DRAFT-40584
NOAA-NMFS-2020-0031-DRAFT-40585
NOAA-NMFS-2020-0031-DRAFT-40586
NOAA-NMFS-2020-0031-DRAFT-40587
NOAA-NMFS-2020-0031-DRAFT-40588
NOAA-NMFS-2020-0031-DRAFT-40589
NOAA-NMFS-2020-0031-DRAFT-40590
NOAA-NMFS-2020-0031-DRAFT-40591
NOAA-NMFS-2020-0031-DRAFT-40592

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NOAA-NMFS-2020-0031-DRAFT-35537
NOAA-NMFS-2020-0031-DRAFT-35538
NOAA-NMFS-2020-0031-DRAFT-35539
NOAA-NMFS-2020-0031-DRAFT-35540
NOAA-NMFS-2020-0031-DRAFT-35541
NOAA-NMFS-2020-0031-DRAFT-35542
NOAA-NMFS-2020-0031-DRAFT-35543
NOAA-NMFS-2020-0031-DRAFT-35544
NOAA-NMFS-2020-0031-DRAFT-35545
NOAA-NMFS-2020-0031-DRAFT-35546
NOAA-NMFS-2020-0031-DRAFT-35547
NOAA-NMFS-2020-0031-DRAFT-35548
NOAA-NMFS-2020-0031-DRAFT-35549
NOAA-NMFS-2020-0031-DRAFT-35550
NOAA-NMFS-2020-0031-DRAFT-35551
NOAA-NMFS-2020-0031-DRAFT-35552
NOAA-NMFS-2020-0031-DRAFT-35553
NOAA-NMFS-2020-0031-DRAFT-35554
NOAA-NMFS-2020-0031-DRAFT-35555
NOAA-NMFS-2020-0031-DRAFT-35556
NOAA-NMFS-2020-0031-DRAFT-35557
NOAA-NMFS-2020-0031-DRAFT-35558
NOAA-NMFS-2020-0031-DRAFT-35559
NOAA-NMFS-2020-0031-DRAFT-35560
NOAA-NMFS-2020-0031-DRAFT-35561
NOAA-NMFS-2020-0031-DRAFT-35562
NOAA-NMFS-2020-0031-DRAFT-35563
NOAA-NMFS-2020-0031-DRAFT-35564
NOAA-NMFS-2020-0031-DRAFT-35565
NOAA-NMFS-2020-0031-DRAFT-35566
NOAA-NMFS-2020-0031-DRAFT-35567
NOAA-NMFS-2020-0031-DRAFT-35568
NOAA-NMFS-2020-0031-DRAFT-35569
NOAA-NMFS-2020-0031-DRAFT-35570
NOAA-NMFS-2020-0031-DRAFT-35571
NOAA-NMFS-2020-0031-DRAFT-35572
NOAA-NMFS-2020-0031-DRAFT-35573
NOAA-NMFS-2020-0031-DRAFT-35574
NOAA-NMFS-2020-0031-DRAFT-35575
NOAA-NMFS-2020-0031-DRAFT-35576
NOAA-NMFS-2020-0031-DRAFT-35577

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NOAA-NMFS-2020-0031-DRAFT-40593
NOAA-NMFS-2020-0031-DRAFT-40594
NOAA-NMFS-2020-0031-DRAFT-40595
NOAA-NMFS-2020-0031-DRAFT-40596
NOAA-NMFS-2020-0031-DRAFT-40597
NOAA-NMFS-2020-0031-DRAFT-40598
NOAA-NMFS-2020-0031-DRAFT-40599
NOAA-NMFS-2020-0031-DRAFT-40600
NOAA-NMFS-2020-0031-DRAFT-40601
NOAA-NMFS-2020-0031-DRAFT-40602
NOAA-NMFS-2020-0031-DRAFT-40603
NOAA-NMFS-2020-0031-DRAFT-40604
NOAA-NMFS-2020-0031-DRAFT-40605
NOAA-NMFS-2020-0031-DRAFT-40606
NOAA-NMFS-2020-0031-DRAFT-40607
NOAA-NMFS-2020-0031-DRAFT-40608
NOAA-NMFS-2020-0031-DRAFT-40609
NOAA-NMFS-2020-0031-DRAFT-40610
NOAA-NMFS-2020-0031-DRAFT-40611
NOAA-NMFS-2020-0031-DRAFT-40612
NOAA-NMFS-2020-0031-DRAFT-40613
NOAA-NMFS-2020-0031-DRAFT-40614
NOAA-NMFS-2020-0031-DRAFT-40615
NOAA-NMFS-2020-0031-DRAFT-40616
NOAA-NMFS-2020-0031-DRAFT-40617
NOAA-NMFS-2020-0031-DRAFT-40618
NOAA-NMFS-2020-0031-DRAFT-40619
NOAA-NMFS-2020-0031-DRAFT-40620
NOAA-NMFS-2020-0031-DRAFT-40621
NOAA-NMFS-2020-0031-DRAFT-40622
NOAA-NMFS-2020-0031-DRAFT-40623
NOAA-NMFS-2020-0031-DRAFT-40624
NOAA-NMFS-2020-0031-DRAFT-40625
NOAA-NMFS-2020-0031-DRAFT-40626
NOAA-NMFS-2020-0031-DRAFT-40627
NOAA-NMFS-2020-0031-DRAFT-40628
NOAA-NMFS-2020-0031-DRAFT-40629
NOAA-NMFS-2020-0031-DRAFT-40630
NOAA-NMFS-2020-0031-DRAFT-40631
NOAA-NMFS-2020-0031-DRAFT-40632
NOAA-NMFS-2020-0031-DRAFT-40633

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NOAA-NMFS-2020-0031-DRAFT-35578
NOAA-NMFS-2020-0031-DRAFT-35579
NOAA-NMFS-2020-0031-DRAFT-35580
NOAA-NMFS-2020-0031-DRAFT-35581
NOAA-NMFS-2020-0031-DRAFT-35582
NOAA-NMFS-2020-0031-DRAFT-35583
NOAA-NMFS-2020-0031-DRAFT-35584
NOAA-NMFS-2020-0031-DRAFT-35585
NOAA-NMFS-2020-0031-DRAFT-35586
NOAA-NMFS-2020-0031-DRAFT-35587
NOAA-NMFS-2020-0031-DRAFT-35588
NOAA-NMFS-2020-0031-DRAFT-35589
NOAA-NMFS-2020-0031-DRAFT-35590
NOAA-NMFS-2020-0031-DRAFT-35591
NOAA-NMFS-2020-0031-DRAFT-35592
NOAA-NMFS-2020-0031-DRAFT-35593
NOAA-NMFS-2020-0031-DRAFT-35594
NOAA-NMFS-2020-0031-DRAFT-35595
NOAA-NMFS-2020-0031-DRAFT-35596
NOAA-NMFS-2020-0031-DRAFT-35597
NOAA-NMFS-2020-0031-DRAFT-35598
NOAA-NMFS-2020-0031-DRAFT-35599
NOAA-NMFS-2020-0031-DRAFT-35600
NOAA-NMFS-2020-0031-DRAFT-35601
NOAA-NMFS-2020-0031-DRAFT-35602
NOAA-NMFS-2020-0031-DRAFT-35603
NOAA-NMFS-2020-0031-DRAFT-35604
NOAA-NMFS-2020-0031-DRAFT-35605
NOAA-NMFS-2020-0031-DRAFT-35606
NOAA-NMFS-2020-0031-DRAFT-35607
NOAA-NMFS-2020-0031-DRAFT-35608
NOAA-NMFS-2020-0031-DRAFT-35609
NOAA-NMFS-2020-0031-DRAFT-35610
NOAA-NMFS-2020-0031-DRAFT-35611
NOAA-NMFS-2020-0031-DRAFT-35612
NOAA-NMFS-2020-0031-DRAFT-35613
NOAA-NMFS-2020-0031-DRAFT-35614
NOAA-NMFS-2020-0031-DRAFT-35615
NOAA-NMFS-2020-0031-DRAFT-35616
NOAA-NMFS-2020-0031-DRAFT-35617
NOAA-NMFS-2020-0031-DRAFT-35618

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-40634
NOAA-NMFS-2020-0031-DRAFT-40635
NOAA-NMFS-2020-0031-DRAFT-40636
NOAA-NMFS-2020-0031-DRAFT-40637
NOAA-NMFS-2020-0031-DRAFT-40638
NOAA-NMFS-2020-0031-DRAFT-40639
NOAA-NMFS-2020-0031-DRAFT-40640
NOAA-NMFS-2020-0031-DRAFT-40641
NOAA-NMFS-2020-0031-DRAFT-40642
NOAA-NMFS-2020-0031-DRAFT-40643
NOAA-NMFS-2020-0031-DRAFT-40644
NOAA-NMFS-2020-0031-DRAFT-40645
NOAA-NMFS-2020-0031-DRAFT-40646
NOAA-NMFS-2020-0031-DRAFT-40647
NOAA-NMFS-2020-0031-DRAFT-40648
NOAA-NMFS-2020-0031-DRAFT-40649
NOAA-NMFS-2020-0031-DRAFT-40650
NOAA-NMFS-2020-0031-DRAFT-40651
NOAA-NMFS-2020-0031-DRAFT-40652
NOAA-NMFS-2020-0031-DRAFT-40653
NOAA-NMFS-2020-0031-DRAFT-40654
NOAA-NMFS-2020-0031-DRAFT-40655
NOAA-NMFS-2020-0031-DRAFT-40656
NOAA-NMFS-2020-0031-DRAFT-40657
NOAA-NMFS-2020-0031-DRAFT-40658
NOAA-NMFS-2020-0031-DRAFT-40659
NOAA-NMFS-2020-0031-DRAFT-40660
NOAA-NMFS-2020-0031-DRAFT-40661
NOAA-NMFS-2020-0031-DRAFT-40662
NOAA-NMFS-2020-0031-DRAFT-40663
NOAA-NMFS-2020-0031-DRAFT-40664
NOAA-NMFS-2020-0031-DRAFT-40665
NOAA-NMFS-2020-0031-DRAFT-40666
NOAA-NMFS-2020-0031-DRAFT-40667
NOAA-NMFS-2020-0031-DRAFT-40668
NOAA-NMFS-2020-0031-DRAFT-40669
NOAA-NMFS-2020-0031-DRAFT-40670
NOAA-NMFS-2020-0031-DRAFT-40671
NOAA-NMFS-2020-0031-DRAFT-40672
NOAA-NMFS-2020-0031-DRAFT-40673
NOAA-NMFS-2020-0031-DRAFT-40674

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NOAA-NMFS-2020-0031-DRAFT-35619
NOAA-NMFS-2020-0031-DRAFT-35620
NOAA-NMFS-2020-0031-DRAFT-35621
NOAA-NMFS-2020-0031-DRAFT-35622
NOAA-NMFS-2020-0031-DRAFT-35623
NOAA-NMFS-2020-0031-DRAFT-35624
NOAA-NMFS-2020-0031-DRAFT-35625
NOAA-NMFS-2020-0031-DRAFT-35626
NOAA-NMFS-2020-0031-DRAFT-35627
NOAA-NMFS-2020-0031-DRAFT-35628
NOAA-NMFS-2020-0031-DRAFT-35629
NOAA-NMFS-2020-0031-DRAFT-35630
NOAA-NMFS-2020-0031-DRAFT-35631
NOAA-NMFS-2020-0031-DRAFT-35632
NOAA-NMFS-2020-0031-DRAFT-35633
NOAA-NMFS-2020-0031-DRAFT-35634
NOAA-NMFS-2020-0031-DRAFT-35635
NOAA-NMFS-2020-0031-DRAFT-35636
NOAA-NMFS-2020-0031-DRAFT-35637
NOAA-NMFS-2020-0031-DRAFT-35638
NOAA-NMFS-2020-0031-DRAFT-35639
NOAA-NMFS-2020-0031-DRAFT-35640
NOAA-NMFS-2020-0031-DRAFT-35641
NOAA-NMFS-2020-0031-DRAFT-35642
NOAA-NMFS-2020-0031-DRAFT-35643
NOAA-NMFS-2020-0031-DRAFT-35644
NOAA-NMFS-2020-0031-DRAFT-35645
NOAA-NMFS-2020-0031-DRAFT-35646
NOAA-NMFS-2020-0031-DRAFT-35647
NOAA-NMFS-2020-0031-DRAFT-35648
NOAA-NMFS-2020-0031-DRAFT-35649
NOAA-NMFS-2020-0031-DRAFT-35650
NOAA-NMFS-2020-0031-DRAFT-35651
NOAA-NMFS-2020-0031-DRAFT-35652
NOAA-NMFS-2020-0031-DRAFT-35653
NOAA-NMFS-2020-0031-DRAFT-35654
NOAA-NMFS-2020-0031-DRAFT-35655
NOAA-NMFS-2020-0031-DRAFT-35656
NOAA-NMFS-2020-0031-DRAFT-35657
NOAA-NMFS-2020-0031-DRAFT-35658
NOAA-NMFS-2020-0031-DRAFT-35659

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NOAA-NMFS-2020-0031-DRAFT-40675
NOAA-NMFS-2020-0031-DRAFT-40676
NOAA-NMFS-2020-0031-DRAFT-40677
NOAA-NMFS-2020-0031-DRAFT-40678
NOAA-NMFS-2020-0031-DRAFT-40679
NOAA-NMFS-2020-0031-DRAFT-40680
NOAA-NMFS-2020-0031-DRAFT-40681
NOAA-NMFS-2020-0031-DRAFT-40682
NOAA-NMFS-2020-0031-DRAFT-40683
NOAA-NMFS-2020-0031-DRAFT-40684
NOAA-NMFS-2020-0031-DRAFT-40685
NOAA-NMFS-2020-0031-DRAFT-40686
NOAA-NMFS-2020-0031-DRAFT-40687
NOAA-NMFS-2020-0031-DRAFT-40688
NOAA-NMFS-2020-0031-DRAFT-40689
NOAA-NMFS-2020-0031-DRAFT-40690
NOAA-NMFS-2020-0031-DRAFT-40691
NOAA-NMFS-2020-0031-DRAFT-40692
NOAA-NMFS-2020-0031-DRAFT-40693
NOAA-NMFS-2020-0031-DRAFT-40694
NOAA-NMFS-2020-0031-DRAFT-40695
NOAA-NMFS-2020-0031-DRAFT-40696
NOAA-NMFS-2020-0031-DRAFT-40697
NOAA-NMFS-2020-0031-DRAFT-40698
NOAA-NMFS-2020-0031-DRAFT-40699
NOAA-NMFS-2020-0031-DRAFT-40700
NOAA-NMFS-2020-0031-DRAFT-40701
NOAA-NMFS-2020-0031-DRAFT-40702
NOAA-NMFS-2020-0031-DRAFT-40703
NOAA-NMFS-2020-0031-DRAFT-40704
NOAA-NMFS-2020-0031-DRAFT-40705
NOAA-NMFS-2020-0031-DRAFT-40706
NOAA-NMFS-2020-0031-DRAFT-40707
NOAA-NMFS-2020-0031-DRAFT-40708
NOAA-NMFS-2020-0031-DRAFT-40709
NOAA-NMFS-2020-0031-DRAFT-40710
NOAA-NMFS-2020-0031-DRAFT-40711
NOAA-NMFS-2020-0031-DRAFT-40712
NOAA-NMFS-2020-0031-DRAFT-40713
NOAA-NMFS-2020-0031-DRAFT-40714
NOAA-NMFS-2020-0031-DRAFT-40715

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Patti
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NOAA-NMFS-2020-0031-DRAFT-35660
NOAA-NMFS-2020-0031-DRAFT-35661
NOAA-NMFS-2020-0031-DRAFT-35662
NOAA-NMFS-2020-0031-DRAFT-35663
NOAA-NMFS-2020-0031-DRAFT-35664
NOAA-NMFS-2020-0031-DRAFT-35665
NOAA-NMFS-2020-0031-DRAFT-35666
NOAA-NMFS-2020-0031-DRAFT-35667
NOAA-NMFS-2020-0031-DRAFT-35668
NOAA-NMFS-2020-0031-DRAFT-35669
NOAA-NMFS-2020-0031-DRAFT-35670
NOAA-NMFS-2020-0031-DRAFT-35671
NOAA-NMFS-2020-0031-DRAFT-35672
NOAA-NMFS-2020-0031-DRAFT-35673
NOAA-NMFS-2020-0031-DRAFT-35674
NOAA-NMFS-2020-0031-DRAFT-35675
NOAA-NMFS-2020-0031-DRAFT-35676
NOAA-NMFS-2020-0031-DRAFT-35677
NOAA-NMFS-2020-0031-DRAFT-35678
NOAA-NMFS-2020-0031-DRAFT-35679
NOAA-NMFS-2020-0031-DRAFT-35680
NOAA-NMFS-2020-0031-DRAFT-35681
NOAA-NMFS-2020-0031-DRAFT-35682
NOAA-NMFS-2020-0031-DRAFT-35683
NOAA-NMFS-2020-0031-DRAFT-35684
NOAA-NMFS-2020-0031-DRAFT-35685
NOAA-NMFS-2020-0031-DRAFT-35686
NOAA-NMFS-2020-0031-DRAFT-35687
NOAA-NMFS-2020-0031-DRAFT-35688
NOAA-NMFS-2020-0031-DRAFT-35689
NOAA-NMFS-2020-0031-DRAFT-35690
NOAA-NMFS-2020-0031-DRAFT-35691
NOAA-NMFS-2020-0031-DRAFT-35692
NOAA-NMFS-2020-0031-DRAFT-35693
NOAA-NMFS-2020-0031-DRAFT-35694
NOAA-NMFS-2020-0031-DRAFT-35695
NOAA-NMFS-2020-0031-DRAFT-35696
NOAA-NMFS-2020-0031-DRAFT-35697
NOAA-NMFS-2020-0031-DRAFT-35698
NOAA-NMFS-2020-0031-DRAFT-35699
NOAA-NMFS-2020-0031-DRAFT-35700

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NOAA-NMFS-2020-0031-DRAFT-40716
NOAA-NMFS-2020-0031-DRAFT-40717
NOAA-NMFS-2020-0031-DRAFT-40718
NOAA-NMFS-2020-0031-DRAFT-40719
NOAA-NMFS-2020-0031-DRAFT-40720
NOAA-NMFS-2020-0031-DRAFT-40721
NOAA-NMFS-2020-0031-DRAFT-40722
NOAA-NMFS-2020-0031-DRAFT-40723
NOAA-NMFS-2020-0031-DRAFT-40724
NOAA-NMFS-2020-0031-DRAFT-40725
NOAA-NMFS-2020-0031-DRAFT-40726
NOAA-NMFS-2020-0031-DRAFT-40727
NOAA-NMFS-2020-0031-DRAFT-40728
NOAA-NMFS-2020-0031-DRAFT-40729
NOAA-NMFS-2020-0031-DRAFT-40730
NOAA-NMFS-2020-0031-DRAFT-40731
NOAA-NMFS-2020-0031-DRAFT-40732
NOAA-NMFS-2020-0031-DRAFT-40733
NOAA-NMFS-2020-0031-DRAFT-40734
NOAA-NMFS-2020-0031-DRAFT-40735
NOAA-NMFS-2020-0031-DRAFT-40736
NOAA-NMFS-2020-0031-DRAFT-40737
NOAA-NMFS-2020-0031-DRAFT-40738
NOAA-NMFS-2020-0031-DRAFT-40739
NOAA-NMFS-2020-0031-DRAFT-40740
NOAA-NMFS-2020-0031-DRAFT-40741
NOAA-NMFS-2020-0031-DRAFT-40742
NOAA-NMFS-2020-0031-DRAFT-40743
NOAA-NMFS-2020-0031-DRAFT-40744
NOAA-NMFS-2020-0031-DRAFT-40745
NOAA-NMFS-2020-0031-DRAFT-40746
NOAA-NMFS-2020-0031-DRAFT-40747
NOAA-NMFS-2020-0031-DRAFT-40748
NOAA-NMFS-2020-0031-DRAFT-40749
NOAA-NMFS-2020-0031-DRAFT-40750
NOAA-NMFS-2020-0031-DRAFT-40751
NOAA-NMFS-2020-0031-DRAFT-40752
NOAA-NMFS-2020-0031-DRAFT-40753
NOAA-NMFS-2020-0031-DRAFT-40754
NOAA-NMFS-2020-0031-DRAFT-40755
NOAA-NMFS-2020-0031-DRAFT-40756

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NOAA-NMFS-2020-0031-DRAFT-35701
NOAA-NMFS-2020-0031-DRAFT-35702
NOAA-NMFS-2020-0031-DRAFT-35703
NOAA-NMFS-2020-0031-DRAFT-35704
NOAA-NMFS-2020-0031-DRAFT-35705
NOAA-NMFS-2020-0031-DRAFT-35706
NOAA-NMFS-2020-0031-DRAFT-35707
NOAA-NMFS-2020-0031-DRAFT-35708
NOAA-NMFS-2020-0031-DRAFT-35709
NOAA-NMFS-2020-0031-DRAFT-35710
NOAA-NMFS-2020-0031-DRAFT-35711
NOAA-NMFS-2020-0031-DRAFT-35712
NOAA-NMFS-2020-0031-DRAFT-35713
NOAA-NMFS-2020-0031-DRAFT-35714
NOAA-NMFS-2020-0031-DRAFT-35715
NOAA-NMFS-2020-0031-DRAFT-35716
NOAA-NMFS-2020-0031-DRAFT-35717
NOAA-NMFS-2020-0031-DRAFT-35718
NOAA-NMFS-2020-0031-DRAFT-35719
NOAA-NMFS-2020-0031-DRAFT-35720
NOAA-NMFS-2020-0031-DRAFT-35721
NOAA-NMFS-2020-0031-DRAFT-35722
NOAA-NMFS-2020-0031-DRAFT-35723
NOAA-NMFS-2020-0031-DRAFT-35724
NOAA-NMFS-2020-0031-DRAFT-35725
NOAA-NMFS-2020-0031-DRAFT-35726
NOAA-NMFS-2020-0031-DRAFT-35727
NOAA-NMFS-2020-0031-DRAFT-35728
NOAA-NMFS-2020-0031-DRAFT-35729
NOAA-NMFS-2020-0031-DRAFT-35730
NOAA-NMFS-2020-0031-DRAFT-35731
NOAA-NMFS-2020-0031-DRAFT-35732
NOAA-NMFS-2020-0031-DRAFT-35733
NOAA-NMFS-2020-0031-DRAFT-35734
NOAA-NMFS-2020-0031-DRAFT-35735
NOAA-NMFS-2020-0031-DRAFT-35736
NOAA-NMFS-2020-0031-DRAFT-35737
NOAA-NMFS-2020-0031-DRAFT-35738
NOAA-NMFS-2020-0031-DRAFT-35739
NOAA-NMFS-2020-0031-DRAFT-35740
NOAA-NMFS-2020-0031-DRAFT-35741

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NOAA-NMFS-2020-0031-DRAFT-40757
NOAA-NMFS-2020-0031-DRAFT-40758
NOAA-NMFS-2020-0031-DRAFT-40759
NOAA-NMFS-2020-0031-DRAFT-40760
NOAA-NMFS-2020-0031-DRAFT-40761
NOAA-NMFS-2020-0031-DRAFT-40762
NOAA-NMFS-2020-0031-DRAFT-40763
NOAA-NMFS-2020-0031-DRAFT-40764
NOAA-NMFS-2020-0031-DRAFT-40765
NOAA-NMFS-2020-0031-DRAFT-40766
NOAA-NMFS-2020-0031-DRAFT-40767
NOAA-NMFS-2020-0031-DRAFT-40768
NOAA-NMFS-2020-0031-DRAFT-40769
NOAA-NMFS-2020-0031-DRAFT-40770
NOAA-NMFS-2020-0031-DRAFT-40771
NOAA-NMFS-2020-0031-DRAFT-40772
NOAA-NMFS-2020-0031-DRAFT-40773
NOAA-NMFS-2020-0031-DRAFT-40774
NOAA-NMFS-2020-0031-DRAFT-40775
NOAA-NMFS-2020-0031-DRAFT-40776
NOAA-NMFS-2020-0031-DRAFT-40777
NOAA-NMFS-2020-0031-DRAFT-40778
NOAA-NMFS-2020-0031-DRAFT-40779
NOAA-NMFS-2020-0031-DRAFT-40780
NOAA-NMFS-2020-0031-DRAFT-40781
NOAA-NMFS-2020-0031-DRAFT-40782
NOAA-NMFS-2020-0031-DRAFT-40783
NOAA-NMFS-2020-0031-DRAFT-40784
NOAA-NMFS-2020-0031-DRAFT-40785
NOAA-NMFS-2020-0031-DRAFT-40786
NOAA-NMFS-2020-0031-DRAFT-40787
NOAA-NMFS-2020-0031-DRAFT-40788
NOAA-NMFS-2020-0031-DRAFT-40789
NOAA-NMFS-2020-0031-DRAFT-40790
NOAA-NMFS-2020-0031-DRAFT-40791
NOAA-NMFS-2020-0031-DRAFT-40792
NOAA-NMFS-2020-0031-DRAFT-40793
NOAA-NMFS-2020-0031-DRAFT-40794
NOAA-NMFS-2020-0031-DRAFT-40795
NOAA-NMFS-2020-0031-DRAFT-40796
NOAA-NMFS-2020-0031-DRAFT-40797

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NOAA-NMFS-2020-0031-DRAFT-35742
NOAA-NMFS-2020-0031-DRAFT-35743
NOAA-NMFS-2020-0031-DRAFT-35744
NOAA-NMFS-2020-0031-DRAFT-35745
NOAA-NMFS-2020-0031-DRAFT-35746
NOAA-NMFS-2020-0031-DRAFT-35747
NOAA-NMFS-2020-0031-DRAFT-35748
NOAA-NMFS-2020-0031-DRAFT-35749
NOAA-NMFS-2020-0031-DRAFT-35750
NOAA-NMFS-2020-0031-DRAFT-35751
NOAA-NMFS-2020-0031-DRAFT-35752
NOAA-NMFS-2020-0031-DRAFT-35753
NOAA-NMFS-2020-0031-DRAFT-35754
NOAA-NMFS-2020-0031-DRAFT-35755
NOAA-NMFS-2020-0031-DRAFT-35756
NOAA-NMFS-2020-0031-DRAFT-35757
NOAA-NMFS-2020-0031-DRAFT-35758
NOAA-NMFS-2020-0031-DRAFT-35759
NOAA-NMFS-2020-0031-DRAFT-35760
NOAA-NMFS-2020-0031-DRAFT-35761
NOAA-NMFS-2020-0031-DRAFT-35762
NOAA-NMFS-2020-0031-DRAFT-35763
NOAA-NMFS-2020-0031-DRAFT-35764
NOAA-NMFS-2020-0031-DRAFT-35765
NOAA-NMFS-2020-0031-DRAFT-35766
NOAA-NMFS-2020-0031-DRAFT-35767
NOAA-NMFS-2020-0031-DRAFT-35768
NOAA-NMFS-2020-0031-DRAFT-35769
NOAA-NMFS-2020-0031-DRAFT-35770
NOAA-NMFS-2020-0031-DRAFT-35771
NOAA-NMFS-2020-0031-DRAFT-35772
NOAA-NMFS-2020-0031-DRAFT-35773
NOAA-NMFS-2020-0031-DRAFT-35774
NOAA-NMFS-2020-0031-DRAFT-35775
NOAA-NMFS-2020-0031-DRAFT-35776
NOAA-NMFS-2020-0031-DRAFT-35777
NOAA-NMFS-2020-0031-DRAFT-35778
NOAA-NMFS-2020-0031-DRAFT-35779
NOAA-NMFS-2020-0031-DRAFT-35780
NOAA-NMFS-2020-0031-DRAFT-35781
NOAA-NMFS-2020-0031-DRAFT-35782

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02/27/2021
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NOAA-NMFS-2020-0031-DRAFT-40798
NOAA-NMFS-2020-0031-DRAFT-40799
NOAA-NMFS-2020-0031-DRAFT-40800
NOAA-NMFS-2020-0031-DRAFT-40801
NOAA-NMFS-2020-0031-DRAFT-40802
NOAA-NMFS-2020-0031-DRAFT-40803
NOAA-NMFS-2020-0031-DRAFT-40804
NOAA-NMFS-2020-0031-DRAFT-40805
NOAA-NMFS-2020-0031-DRAFT-40806
NOAA-NMFS-2020-0031-DRAFT-40807
NOAA-NMFS-2020-0031-DRAFT-40808
NOAA-NMFS-2020-0031-DRAFT-40809
NOAA-NMFS-2020-0031-DRAFT-40810
NOAA-NMFS-2020-0031-DRAFT-40811
NOAA-NMFS-2020-0031-DRAFT-40812
NOAA-NMFS-2020-0031-DRAFT-40813
NOAA-NMFS-2020-0031-DRAFT-40814
NOAA-NMFS-2020-0031-DRAFT-40815
NOAA-NMFS-2020-0031-DRAFT-40816
NOAA-NMFS-2020-0031-DRAFT-40817
NOAA-NMFS-2020-0031-DRAFT-40818
NOAA-NMFS-2020-0031-DRAFT-40819
NOAA-NMFS-2020-0031-DRAFT-40820
NOAA-NMFS-2020-0031-DRAFT-40821
NOAA-NMFS-2020-0031-DRAFT-40822
NOAA-NMFS-2020-0031-DRAFT-40823
NOAA-NMFS-2020-0031-DRAFT-40824
NOAA-NMFS-2020-0031-DRAFT-40825
NOAA-NMFS-2020-0031-DRAFT-40826
NOAA-NMFS-2020-0031-DRAFT-40827
NOAA-NMFS-2020-0031-DRAFT-40828
NOAA-NMFS-2020-0031-DRAFT-40829
NOAA-NMFS-2020-0031-DRAFT-40830
NOAA-NMFS-2020-0031-DRAFT-40831
NOAA-NMFS-2020-0031-DRAFT-40832
NOAA-NMFS-2020-0031-DRAFT-40833
NOAA-NMFS-2020-0031-DRAFT-40834
NOAA-NMFS-2020-0031-DRAFT-40835
NOAA-NMFS-2020-0031-DRAFT-40836
NOAA-NMFS-2020-0031-DRAFT-40837
NOAA-NMFS-2020-0031-DRAFT-40838

Comment from Dullmeyer, Stacie
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NOAA-NMFS-2020-0031-DRAFT-35783
NOAA-NMFS-2020-0031-DRAFT-35784
NOAA-NMFS-2020-0031-DRAFT-35785
NOAA-NMFS-2020-0031-DRAFT-35786
NOAA-NMFS-2020-0031-DRAFT-35787
NOAA-NMFS-2020-0031-DRAFT-35788
NOAA-NMFS-2020-0031-DRAFT-35789
NOAA-NMFS-2020-0031-DRAFT-35790
NOAA-NMFS-2020-0031-DRAFT-35791
NOAA-NMFS-2020-0031-DRAFT-35792
NOAA-NMFS-2020-0031-DRAFT-35793
NOAA-NMFS-2020-0031-DRAFT-35794
NOAA-NMFS-2020-0031-DRAFT-35795
NOAA-NMFS-2020-0031-DRAFT-35796
NOAA-NMFS-2020-0031-DRAFT-35797
NOAA-NMFS-2020-0031-DRAFT-35798
NOAA-NMFS-2020-0031-DRAFT-35799
NOAA-NMFS-2020-0031-DRAFT-35800
NOAA-NMFS-2020-0031-DRAFT-35801
NOAA-NMFS-2020-0031-DRAFT-35802
NOAA-NMFS-2020-0031-DRAFT-35803
NOAA-NMFS-2020-0031-DRAFT-35804
NOAA-NMFS-2020-0031-DRAFT-35805
NOAA-NMFS-2020-0031-DRAFT-35806
NOAA-NMFS-2020-0031-DRAFT-35807
NOAA-NMFS-2020-0031-DRAFT-35808
NOAA-NMFS-2020-0031-DRAFT-35809
NOAA-NMFS-2020-0031-DRAFT-35810
NOAA-NMFS-2020-0031-DRAFT-35811
NOAA-NMFS-2020-0031-DRAFT-35812
NOAA-NMFS-2020-0031-DRAFT-35813
NOAA-NMFS-2020-0031-DRAFT-35814
NOAA-NMFS-2020-0031-DRAFT-35815
NOAA-NMFS-2020-0031-DRAFT-35816
NOAA-NMFS-2020-0031-DRAFT-35817
NOAA-NMFS-2020-0031-DRAFT-35818
NOAA-NMFS-2020-0031-DRAFT-35819
NOAA-NMFS-2020-0031-DRAFT-35820
NOAA-NMFS-2020-0031-DRAFT-35821
NOAA-NMFS-2020-0031-DRAFT-35822
NOAA-NMFS-2020-0031-DRAFT-35823

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NOAA-NMFS-2020-0031-DRAFT-40839
NOAA-NMFS-2020-0031-DRAFT-40840
NOAA-NMFS-2020-0031-DRAFT-40841
NOAA-NMFS-2020-0031-DRAFT-40842
NOAA-NMFS-2020-0031-DRAFT-40843
NOAA-NMFS-2020-0031-DRAFT-40844
NOAA-NMFS-2020-0031-DRAFT-40845
NOAA-NMFS-2020-0031-DRAFT-40846
NOAA-NMFS-2020-0031-DRAFT-40847
NOAA-NMFS-2020-0031-DRAFT-40848
NOAA-NMFS-2020-0031-DRAFT-40849
NOAA-NMFS-2020-0031-DRAFT-40850
NOAA-NMFS-2020-0031-DRAFT-40851
NOAA-NMFS-2020-0031-DRAFT-40852
NOAA-NMFS-2020-0031-DRAFT-40853
NOAA-NMFS-2020-0031-DRAFT-40854
NOAA-NMFS-2020-0031-DRAFT-40855
NOAA-NMFS-2020-0031-DRAFT-40856
NOAA-NMFS-2020-0031-DRAFT-40857
NOAA-NMFS-2020-0031-DRAFT-40858
NOAA-NMFS-2020-0031-DRAFT-40859
NOAA-NMFS-2020-0031-DRAFT-40860
NOAA-NMFS-2020-0031-DRAFT-40861
NOAA-NMFS-2020-0031-DRAFT-40862
NOAA-NMFS-2020-0031-DRAFT-40863
NOAA-NMFS-2020-0031-DRAFT-40864
NOAA-NMFS-2020-0031-DRAFT-40865
NOAA-NMFS-2020-0031-DRAFT-40866
NOAA-NMFS-2020-0031-DRAFT-40867
NOAA-NMFS-2020-0031-DRAFT-40868
NOAA-NMFS-2020-0031-DRAFT-40869
NOAA-NMFS-2020-0031-DRAFT-40870
NOAA-NMFS-2020-0031-DRAFT-40871
NOAA-NMFS-2020-0031-DRAFT-40872
NOAA-NMFS-2020-0031-DRAFT-40873
NOAA-NMFS-2020-0031-DRAFT-40874
NOAA-NMFS-2020-0031-DRAFT-40875
NOAA-NMFS-2020-0031-DRAFT-40876
NOAA-NMFS-2020-0031-DRAFT-40877
NOAA-NMFS-2020-0031-DRAFT-40878
NOAA-NMFS-2020-0031-DRAFT-40879

Comment from Clinch, Paul
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Received Date
02/27/2021
02/27/2021
02/27/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-40880
NOAA-NMFS-2020-0031-DRAFT-40881
NOAA-NMFS-2020-0031-DRAFT-40882
NOAA-NMFS-2020-0031-DRAFT-40883
NOAA-NMFS-2020-0031-DRAFT-40884
NOAA-NMFS-2020-0031-DRAFT-40885
NOAA-NMFS-2020-0031-DRAFT-40886
NOAA-NMFS-2020-0031-DRAFT-40887
NOAA-NMFS-2020-0031-DRAFT-40888
NOAA-NMFS-2020-0031-DRAFT-40889
NOAA-NMFS-2020-0031-DRAFT-40890
NOAA-NMFS-2020-0031-DRAFT-40891
NOAA-NMFS-2020-0031-DRAFT-40892
NOAA-NMFS-2020-0031-DRAFT-40893
NOAA-NMFS-2020-0031-DRAFT-40894
NOAA-NMFS-2020-0031-DRAFT-40895
NOAA-NMFS-2020-0031-DRAFT-40896
NOAA-NMFS-2020-0031-DRAFT-40898
NOAA-NMFS-2020-0031-DRAFT-40899
NOAA-NMFS-2020-0031-DRAFT-40900
NOAA-NMFS-2020-0031-DRAFT-40901
NOAA-NMFS-2020-0031-DRAFT-40902
NOAA-NMFS-2020-0031-DRAFT-40903
NOAA-NMFS-2020-0031-DRAFT-40904
NOAA-NMFS-2020-0031-DRAFT-40905
NOAA-NMFS-2020-0031-DRAFT-40906
NOAA-NMFS-2020-0031-DRAFT-40907
NOAA-NMFS-2020-0031-DRAFT-40908
NOAA-NMFS-2020-0031-DRAFT-40909
NOAA-NMFS-2020-0031-DRAFT-40911
NOAA-NMFS-2020-0031-DRAFT-40912
NOAA-NMFS-2020-0031-DRAFT-40913
NOAA-NMFS-2020-0031-DRAFT-40914
NOAA-NMFS-2020-0031-DRAFT-40915
NOAA-NMFS-2020-0031-DRAFT-40916
NOAA-NMFS-2020-0031-DRAFT-40917
NOAA-NMFS-2020-0031-DRAFT-40918
NOAA-NMFS-2020-0031-DRAFT-40919
NOAA-NMFS-2020-0031-DRAFT-40920
NOAA-NMFS-2020-0031-DRAFT-40921

Title
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Received Date
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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Original Document ID
NOAA-NMFS-2020-0031-DRAFT-46073
NOAA-NMFS-2020-0031-DRAFT-46074
NOAA-NMFS-2020-0031-DRAFT-46075
NOAA-NMFS-2020-0031-DRAFT-46076
NOAA-NMFS-2020-0031-DRAFT-46077
NOAA-NMFS-2020-0031-DRAFT-46078
NOAA-NMFS-2020-0031-DRAFT-46079
NOAA-NMFS-2020-0031-DRAFT-46080
NOAA-NMFS-2020-0031-DRAFT-46081
NOAA-NMFS-2020-0031-DRAFT-46082
NOAA-NMFS-2020-0031-DRAFT-46083
NOAA-NMFS-2020-0031-DRAFT-46084
NOAA-NMFS-2020-0031-DRAFT-46085
NOAA-NMFS-2020-0031-DRAFT-46086
NOAA-NMFS-2020-0031-DRAFT-46087
NOAA-NMFS-2020-0031-DRAFT-46088
NOAA-NMFS-2020-0031-DRAFT-46089
NOAA-NMFS-2020-0031-DRAFT-46090
NOAA-NMFS-2020-0031-DRAFT-46091
NOAA-NMFS-2020-0031-DRAFT-46092
NOAA-NMFS-2020-0031-DRAFT-46093
NOAA-NMFS-2020-0031-DRAFT-46094
NOAA-NMFS-2020-0031-DRAFT-46095
NOAA-NMFS-2020-0031-DRAFT-46096
NOAA-NMFS-2020-0031-DRAFT-46097
NOAA-NMFS-2020-0031-DRAFT-46098
NOAA-NMFS-2020-0031-DRAFT-46099
NOAA-NMFS-2020-0031-DRAFT-46100
NOAA-NMFS-2020-0031-DRAFT-46101
NOAA-NMFS-2020-0031-DRAFT-46102
NOAA-NMFS-2020-0031-DRAFT-46103
NOAA-NMFS-2020-0031-DRAFT-46104
NOAA-NMFS-2020-0031-DRAFT-46105
NOAA-NMFS-2020-0031-DRAFT-46106
NOAA-NMFS-2020-0031-DRAFT-46107
NOAA-NMFS-2020-0031-DRAFT-46108
NOAA-NMFS-2020-0031-DRAFT-46109
NOAA-NMFS-2020-0031-DRAFT-46110
NOAA-NMFS-2020-0031-DRAFT-46111
NOAA-NMFS-2020-0031-DRAFT-46112

Title
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02/27/2021
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NOAA-NMFS-2020-0031-DRAFT-40922
NOAA-NMFS-2020-0031-DRAFT-40923
NOAA-NMFS-2020-0031-DRAFT-40924
NOAA-NMFS-2020-0031-DRAFT-40925
NOAA-NMFS-2020-0031-DRAFT-40926
NOAA-NMFS-2020-0031-DRAFT-40927
NOAA-NMFS-2020-0031-DRAFT-40928
NOAA-NMFS-2020-0031-DRAFT-40929
NOAA-NMFS-2020-0031-DRAFT-40930
NOAA-NMFS-2020-0031-DRAFT-40932
NOAA-NMFS-2020-0031-DRAFT-40933
NOAA-NMFS-2020-0031-DRAFT-40934
NOAA-NMFS-2020-0031-DRAFT-40935
NOAA-NMFS-2020-0031-DRAFT-40936
NOAA-NMFS-2020-0031-DRAFT-40937
NOAA-NMFS-2020-0031-DRAFT-40938
NOAA-NMFS-2020-0031-DRAFT-40939
NOAA-NMFS-2020-0031-DRAFT-40940
NOAA-NMFS-2020-0031-DRAFT-40941
NOAA-NMFS-2020-0031-DRAFT-40942
NOAA-NMFS-2020-0031-DRAFT-40943
NOAA-NMFS-2020-0031-DRAFT-40944
NOAA-NMFS-2020-0031-DRAFT-40945
NOAA-NMFS-2020-0031-DRAFT-40946
NOAA-NMFS-2020-0031-DRAFT-40948
NOAA-NMFS-2020-0031-DRAFT-40949
NOAA-NMFS-2020-0031-DRAFT-40950
NOAA-NMFS-2020-0031-DRAFT-40951
NOAA-NMFS-2020-0031-DRAFT-40952
NOAA-NMFS-2020-0031-DRAFT-40953
NOAA-NMFS-2020-0031-DRAFT-40954
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NOAA-NMFS-2020-0031-DRAFT-40960
NOAA-NMFS-2020-0031-DRAFT-40961
NOAA-NMFS-2020-0031-DRAFT-40964
NOAA-NMFS-2020-0031-DRAFT-40966
NOAA-NMFS-2020-0031-DRAFT-40967

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NOAA-NMFS-2020-0031-DRAFT-46113
NOAA-NMFS-2020-0031-DRAFT-46114
NOAA-NMFS-2020-0031-DRAFT-46115
NOAA-NMFS-2020-0031-DRAFT-46116
NOAA-NMFS-2020-0031-DRAFT-46117
NOAA-NMFS-2020-0031-DRAFT-46118
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NOAA-NMFS-2020-0031-DRAFT-46120
NOAA-NMFS-2020-0031-DRAFT-46121
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NOAA-NMFS-2020-0031-DRAFT-46123
NOAA-NMFS-2020-0031-DRAFT-46124
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NOAA-NMFS-2020-0031-DRAFT-46126
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NOAA-NMFS-2020-0031-DRAFT-46128
NOAA-NMFS-2020-0031-DRAFT-46129
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NOAA-NMFS-2020-0031-DRAFT-46132
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NOAA-NMFS-2020-0031-DRAFT-46134
NOAA-NMFS-2020-0031-DRAFT-46135
NOAA-NMFS-2020-0031-DRAFT-46136
NOAA-NMFS-2020-0031-DRAFT-46137
NOAA-NMFS-2020-0031-DRAFT-46138
NOAA-NMFS-2020-0031-DRAFT-46139
NOAA-NMFS-2020-0031-DRAFT-46140
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NOAA-NMFS-2020-0031-DRAFT-46148
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NOAA-NMFS-2020-0031-DRAFT-46151
NOAA-NMFS-2020-0031-DRAFT-46152
NOAA-NMFS-2020-0031-DRAFT-46153

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NOAA-NMFS-2020-0031-DRAFT-40968
NOAA-NMFS-2020-0031-DRAFT-40969
NOAA-NMFS-2020-0031-DRAFT-40970
NOAA-NMFS-2020-0031-DRAFT-40971
NOAA-NMFS-2020-0031-DRAFT-40972
NOAA-NMFS-2020-0031-DRAFT-40973
NOAA-NMFS-2020-0031-DRAFT-40974
NOAA-NMFS-2020-0031-DRAFT-40975
NOAA-NMFS-2020-0031-DRAFT-40976
NOAA-NMFS-2020-0031-DRAFT-40977
NOAA-NMFS-2020-0031-DRAFT-40978
NOAA-NMFS-2020-0031-DRAFT-40979
NOAA-NMFS-2020-0031-DRAFT-40980
NOAA-NMFS-2020-0031-DRAFT-40981
NOAA-NMFS-2020-0031-DRAFT-40982
NOAA-NMFS-2020-0031-DRAFT-40983
NOAA-NMFS-2020-0031-DRAFT-40984
NOAA-NMFS-2020-0031-DRAFT-40985
NOAA-NMFS-2020-0031-DRAFT-40986
NOAA-NMFS-2020-0031-DRAFT-40987
NOAA-NMFS-2020-0031-DRAFT-40988
NOAA-NMFS-2020-0031-DRAFT-40989
NOAA-NMFS-2020-0031-DRAFT-40990
NOAA-NMFS-2020-0031-DRAFT-40991
NOAA-NMFS-2020-0031-DRAFT-40992
NOAA-NMFS-2020-0031-DRAFT-40993
NOAA-NMFS-2020-0031-DRAFT-40994
NOAA-NMFS-2020-0031-DRAFT-40995
NOAA-NMFS-2020-0031-DRAFT-40996
NOAA-NMFS-2020-0031-DRAFT-40997
NOAA-NMFS-2020-0031-DRAFT-40998
NOAA-NMFS-2020-0031-DRAFT-40999
NOAA-NMFS-2020-0031-DRAFT-41000
NOAA-NMFS-2020-0031-DRAFT-41001
NOAA-NMFS-2020-0031-DRAFT-41002
NOAA-NMFS-2020-0031-DRAFT-41004
NOAA-NMFS-2020-0031-DRAFT-41005
NOAA-NMFS-2020-0031-DRAFT-41006
NOAA-NMFS-2020-0031-DRAFT-41007
NOAA-NMFS-2020-0031-DRAFT-41008
NOAA-NMFS-2020-0031-DRAFT-41009

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NOAA-NMFS-2020-0031-DRAFT-46154
NOAA-NMFS-2020-0031-DRAFT-46155
NOAA-NMFS-2020-0031-DRAFT-46156
NOAA-NMFS-2020-0031-DRAFT-46157
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NOAA-NMFS-2020-0031-DRAFT-46175
NOAA-NMFS-2020-0031-DRAFT-46176
NOAA-NMFS-2020-0031-DRAFT-46177
NOAA-NMFS-2020-0031-DRAFT-46178
NOAA-NMFS-2020-0031-DRAFT-46181
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NOAA-NMFS-2020-0031-DRAFT-46194
NOAA-NMFS-2020-0031-DRAFT-46195
NOAA-NMFS-2020-0031-DRAFT-46196

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NOAA-NMFS-2020-0031-DRAFT-41010
NOAA-NMFS-2020-0031-DRAFT-41011
NOAA-NMFS-2020-0031-DRAFT-41012
NOAA-NMFS-2020-0031-DRAFT-41013
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NOAA-NMFS-2020-0031-DRAFT-41029
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NOAA-NMFS-2020-0031-DRAFT-41032
NOAA-NMFS-2020-0031-DRAFT-41033
NOAA-NMFS-2020-0031-DRAFT-41034
NOAA-NMFS-2020-0031-DRAFT-41035
NOAA-NMFS-2020-0031-DRAFT-41036
NOAA-NMFS-2020-0031-DRAFT-41037
NOAA-NMFS-2020-0031-DRAFT-41038
NOAA-NMFS-2020-0031-DRAFT-41039
NOAA-NMFS-2020-0031-DRAFT-41040
NOAA-NMFS-2020-0031-DRAFT-41041
NOAA-NMFS-2020-0031-DRAFT-41042
NOAA-NMFS-2020-0031-DRAFT-41043
NOAA-NMFS-2020-0031-DRAFT-41044
NOAA-NMFS-2020-0031-DRAFT-41045
NOAA-NMFS-2020-0031-DRAFT-41046
NOAA-NMFS-2020-0031-DRAFT-41047
NOAA-NMFS-2020-0031-DRAFT-41048
NOAA-NMFS-2020-0031-DRAFT-41049
NOAA-NMFS-2020-0031-DRAFT-41050
NOAA-NMFS-2020-0031-DRAFT-41051

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NOAA-NMFS-2020-0031-DRAFT-46197
NOAA-NMFS-2020-0031-DRAFT-46198
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NOAA-NMFS-2020-0031-DRAFT-46235
NOAA-NMFS-2020-0031-DRAFT-46236
NOAA-NMFS-2020-0031-DRAFT-46237

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NOAA-NMFS-2020-0031-DRAFT-41052
NOAA-NMFS-2020-0031-DRAFT-41053
NOAA-NMFS-2020-0031-DRAFT-41054
NOAA-NMFS-2020-0031-DRAFT-41055
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NOAA-NMFS-2020-0031-DRAFT-41060
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NOAA-NMFS-2020-0031-DRAFT-41062
NOAA-NMFS-2020-0031-DRAFT-41063
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NOAA-NMFS-2020-0031-DRAFT-41070
NOAA-NMFS-2020-0031-DRAFT-41071
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NOAA-NMFS-2020-0031-DRAFT-41073
NOAA-NMFS-2020-0031-DRAFT-41074
NOAA-NMFS-2020-0031-DRAFT-41075
NOAA-NMFS-2020-0031-DRAFT-41076
NOAA-NMFS-2020-0031-DRAFT-41077
NOAA-NMFS-2020-0031-DRAFT-41078
NOAA-NMFS-2020-0031-DRAFT-41079
NOAA-NMFS-2020-0031-DRAFT-41080
NOAA-NMFS-2020-0031-DRAFT-41081
NOAA-NMFS-2020-0031-DRAFT-41082
NOAA-NMFS-2020-0031-DRAFT-41083
NOAA-NMFS-2020-0031-DRAFT-41084
NOAA-NMFS-2020-0031-DRAFT-41085
NOAA-NMFS-2020-0031-DRAFT-41086
NOAA-NMFS-2020-0031-DRAFT-41087
NOAA-NMFS-2020-0031-DRAFT-41088
NOAA-NMFS-2020-0031-DRAFT-41089
NOAA-NMFS-2020-0031-DRAFT-41090
NOAA-NMFS-2020-0031-DRAFT-41091
NOAA-NMFS-2020-0031-DRAFT-41092

Comment from Anonymous Anonymous
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Dr Debi
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NOAA-NMFS-2020-0031-DRAFT-46238
NOAA-NMFS-2020-0031-DRAFT-46239
NOAA-NMFS-2020-0031-DRAFT-46240
NOAA-NMFS-2020-0031-DRAFT-46241
NOAA-NMFS-2020-0031-DRAFT-46242
NOAA-NMFS-2020-0031-DRAFT-46243
NOAA-NMFS-2020-0031-DRAFT-46244
NOAA-NMFS-2020-0031-DRAFT-46245
NOAA-NMFS-2020-0031-DRAFT-46246
NOAA-NMFS-2020-0031-DRAFT-46247
NOAA-NMFS-2020-0031-DRAFT-46248
NOAA-NMFS-2020-0031-DRAFT-46249
NOAA-NMFS-2020-0031-DRAFT-46250
NOAA-NMFS-2020-0031-DRAFT-46251
NOAA-NMFS-2020-0031-DRAFT-46252
NOAA-NMFS-2020-0031-DRAFT-46253
NOAA-NMFS-2020-0031-DRAFT-46254
NOAA-NMFS-2020-0031-DRAFT-46255
NOAA-NMFS-2020-0031-DRAFT-46257
NOAA-NMFS-2020-0031-DRAFT-46258
NOAA-NMFS-2020-0031-DRAFT-46259
NOAA-NMFS-2020-0031-DRAFT-46260
NOAA-NMFS-2020-0031-DRAFT-46261
NOAA-NMFS-2020-0031-DRAFT-46262
NOAA-NMFS-2020-0031-DRAFT-46263
NOAA-NMFS-2020-0031-DRAFT-46264
NOAA-NMFS-2020-0031-DRAFT-46265
NOAA-NMFS-2020-0031-DRAFT-46266
NOAA-NMFS-2020-0031-DRAFT-46267
NOAA-NMFS-2020-0031-DRAFT-46268
NOAA-NMFS-2020-0031-DRAFT-46269
NOAA-NMFS-2020-0031-DRAFT-46270
NOAA-NMFS-2020-0031-DRAFT-46271
NOAA-NMFS-2020-0031-DRAFT-46272
NOAA-NMFS-2020-0031-DRAFT-46273
NOAA-NMFS-2020-0031-DRAFT-46274
NOAA-NMFS-2020-0031-DRAFT-46275
NOAA-NMFS-2020-0031-DRAFT-46276
NOAA-NMFS-2020-0031-DRAFT-46277
NOAA-NMFS-2020-0031-DRAFT-46278
NOAA-NMFS-2020-0031-DRAFT-46279

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-41093
NOAA-NMFS-2020-0031-DRAFT-41094
NOAA-NMFS-2020-0031-DRAFT-41095
NOAA-NMFS-2020-0031-DRAFT-41096
NOAA-NMFS-2020-0031-DRAFT-41097
NOAA-NMFS-2020-0031-DRAFT-41098
NOAA-NMFS-2020-0031-DRAFT-41099
NOAA-NMFS-2020-0031-DRAFT-41100
NOAA-NMFS-2020-0031-DRAFT-41101
NOAA-NMFS-2020-0031-DRAFT-41102
NOAA-NMFS-2020-0031-DRAFT-41103
NOAA-NMFS-2020-0031-DRAFT-41104
NOAA-NMFS-2020-0031-DRAFT-41105
NOAA-NMFS-2020-0031-DRAFT-41106
NOAA-NMFS-2020-0031-DRAFT-41107
NOAA-NMFS-2020-0031-DRAFT-41108
NOAA-NMFS-2020-0031-DRAFT-41109
NOAA-NMFS-2020-0031-DRAFT-41110
NOAA-NMFS-2020-0031-DRAFT-41111
NOAA-NMFS-2020-0031-DRAFT-41112
NOAA-NMFS-2020-0031-DRAFT-41113
NOAA-NMFS-2020-0031-DRAFT-41114
NOAA-NMFS-2020-0031-DRAFT-41115
NOAA-NMFS-2020-0031-DRAFT-41116
NOAA-NMFS-2020-0031-DRAFT-41117
NOAA-NMFS-2020-0031-DRAFT-41118
NOAA-NMFS-2020-0031-DRAFT-41119
NOAA-NMFS-2020-0031-DRAFT-41120
NOAA-NMFS-2020-0031-DRAFT-41121
NOAA-NMFS-2020-0031-DRAFT-41122
NOAA-NMFS-2020-0031-DRAFT-41123
NOAA-NMFS-2020-0031-DRAFT-41124
NOAA-NMFS-2020-0031-DRAFT-41125
NOAA-NMFS-2020-0031-DRAFT-41126
NOAA-NMFS-2020-0031-DRAFT-41127
NOAA-NMFS-2020-0031-DRAFT-41128
NOAA-NMFS-2020-0031-DRAFT-41129
NOAA-NMFS-2020-0031-DRAFT-41130
NOAA-NMFS-2020-0031-DRAFT-41131
NOAA-NMFS-2020-0031-DRAFT-41132
NOAA-NMFS-2020-0031-DRAFT-41133

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-46280
NOAA-NMFS-2020-0031-DRAFT-46281
NOAA-NMFS-2020-0031-DRAFT-46282
NOAA-NMFS-2020-0031-DRAFT-46283
NOAA-NMFS-2020-0031-DRAFT-46284
NOAA-NMFS-2020-0031-DRAFT-46285
NOAA-NMFS-2020-0031-DRAFT-46286
NOAA-NMFS-2020-0031-DRAFT-46287
NOAA-NMFS-2020-0031-DRAFT-46288
NOAA-NMFS-2020-0031-DRAFT-46289
NOAA-NMFS-2020-0031-DRAFT-46290
NOAA-NMFS-2020-0031-DRAFT-46291
NOAA-NMFS-2020-0031-DRAFT-46292
NOAA-NMFS-2020-0031-DRAFT-46293
NOAA-NMFS-2020-0031-DRAFT-46294
NOAA-NMFS-2020-0031-DRAFT-46295
NOAA-NMFS-2020-0031-DRAFT-46296
NOAA-NMFS-2020-0031-DRAFT-46297
NOAA-NMFS-2020-0031-DRAFT-46298
NOAA-NMFS-2020-0031-DRAFT-46299
NOAA-NMFS-2020-0031-DRAFT-46300
NOAA-NMFS-2020-0031-DRAFT-46301
NOAA-NMFS-2020-0031-DRAFT-46302
NOAA-NMFS-2020-0031-DRAFT-46303
NOAA-NMFS-2020-0031-DRAFT-46304
NOAA-NMFS-2020-0031-DRAFT-46305
NOAA-NMFS-2020-0031-DRAFT-46306
NOAA-NMFS-2020-0031-DRAFT-46307
NOAA-NMFS-2020-0031-DRAFT-46308
NOAA-NMFS-2020-0031-DRAFT-46309
NOAA-NMFS-2020-0031-DRAFT-46310
NOAA-NMFS-2020-0031-DRAFT-46311
NOAA-NMFS-2020-0031-DRAFT-46312
NOAA-NMFS-2020-0031-DRAFT-46313
NOAA-NMFS-2020-0031-DRAFT-46314
NOAA-NMFS-2020-0031-DRAFT-46315
NOAA-NMFS-2020-0031-DRAFT-46316
NOAA-NMFS-2020-0031-DRAFT-46317
NOAA-NMFS-2020-0031-DRAFT-46318
NOAA-NMFS-2020-0031-DRAFT-46319
NOAA-NMFS-2020-0031-DRAFT-46321

Comment from Donna Sherman
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Comment from Scott Barlow
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NOAA-NMFS-2020-0031-DRAFT-41134
NOAA-NMFS-2020-0031-DRAFT-41135
NOAA-NMFS-2020-0031-DRAFT-41136
NOAA-NMFS-2020-0031-DRAFT-41137
NOAA-NMFS-2020-0031-DRAFT-41138
NOAA-NMFS-2020-0031-DRAFT-41139
NOAA-NMFS-2020-0031-DRAFT-41140
NOAA-NMFS-2020-0031-DRAFT-41141
NOAA-NMFS-2020-0031-DRAFT-41142
NOAA-NMFS-2020-0031-DRAFT-41143
NOAA-NMFS-2020-0031-DRAFT-41144
NOAA-NMFS-2020-0031-DRAFT-41145
NOAA-NMFS-2020-0031-DRAFT-41146
NOAA-NMFS-2020-0031-DRAFT-41147
NOAA-NMFS-2020-0031-DRAFT-41148
NOAA-NMFS-2020-0031-DRAFT-41149
NOAA-NMFS-2020-0031-DRAFT-41150
NOAA-NMFS-2020-0031-DRAFT-41151
NOAA-NMFS-2020-0031-DRAFT-41152
NOAA-NMFS-2020-0031-DRAFT-41153
NOAA-NMFS-2020-0031-DRAFT-41154
NOAA-NMFS-2020-0031-DRAFT-41155
NOAA-NMFS-2020-0031-DRAFT-41156
NOAA-NMFS-2020-0031-DRAFT-41157
NOAA-NMFS-2020-0031-DRAFT-41158
NOAA-NMFS-2020-0031-DRAFT-41159
NOAA-NMFS-2020-0031-DRAFT-41160
NOAA-NMFS-2020-0031-DRAFT-41161
NOAA-NMFS-2020-0031-DRAFT-41162
NOAA-NMFS-2020-0031-DRAFT-41163
NOAA-NMFS-2020-0031-DRAFT-41164
NOAA-NMFS-2020-0031-DRAFT-41165
NOAA-NMFS-2020-0031-DRAFT-41166
NOAA-NMFS-2020-0031-DRAFT-41167
NOAA-NMFS-2020-0031-DRAFT-41168
NOAA-NMFS-2020-0031-DRAFT-41169
NOAA-NMFS-2020-0031-DRAFT-41170
NOAA-NMFS-2020-0031-DRAFT-41171
NOAA-NMFS-2020-0031-DRAFT-41172
NOAA-NMFS-2020-0031-DRAFT-41173
NOAA-NMFS-2020-0031-DRAFT-41174

Comment from O'Brien, Shayne
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Comment from Gibb, Robert
Comment from Parker, Elaine

03/01/2021
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NOAA-NMFS-2020-0031-DRAFT-46322
NOAA-NMFS-2020-0031-DRAFT-46323
NOAA-NMFS-2020-0031-DRAFT-46324
NOAA-NMFS-2020-0031-DRAFT-46325
NOAA-NMFS-2020-0031-DRAFT-46326
NOAA-NMFS-2020-0031-DRAFT-46327
NOAA-NMFS-2020-0031-DRAFT-46328
NOAA-NMFS-2020-0031-DRAFT-46329
NOAA-NMFS-2020-0031-DRAFT-46330
NOAA-NMFS-2020-0031-DRAFT-46331
NOAA-NMFS-2020-0031-DRAFT-46332
NOAA-NMFS-2020-0031-DRAFT-46333
NOAA-NMFS-2020-0031-DRAFT-46334
NOAA-NMFS-2020-0031-DRAFT-46335
NOAA-NMFS-2020-0031-DRAFT-46336
NOAA-NMFS-2020-0031-DRAFT-46337
NOAA-NMFS-2020-0031-DRAFT-46338
NOAA-NMFS-2020-0031-DRAFT-46339
NOAA-NMFS-2020-0031-DRAFT-46340
NOAA-NMFS-2020-0031-DRAFT-46341
NOAA-NMFS-2020-0031-DRAFT-46342
NOAA-NMFS-2020-0031-DRAFT-46344
NOAA-NMFS-2020-0031-DRAFT-46345
NOAA-NMFS-2020-0031-DRAFT-46346
NOAA-NMFS-2020-0031-DRAFT-46347
NOAA-NMFS-2020-0031-DRAFT-46348
NOAA-NMFS-2020-0031-DRAFT-46349
NOAA-NMFS-2020-0031-DRAFT-46350
NOAA-NMFS-2020-0031-DRAFT-46351
NOAA-NMFS-2020-0031-DRAFT-46352
NOAA-NMFS-2020-0031-DRAFT-46353
NOAA-NMFS-2020-0031-DRAFT-46354
NOAA-NMFS-2020-0031-DRAFT-46355
NOAA-NMFS-2020-0031-DRAFT-46356
NOAA-NMFS-2020-0031-DRAFT-46357
NOAA-NMFS-2020-0031-DRAFT-46358
NOAA-NMFS-2020-0031-DRAFT-46359
NOAA-NMFS-2020-0031-DRAFT-46360
NOAA-NMFS-2020-0031-DRAFT-46361
NOAA-NMFS-2020-0031-DRAFT-46362
NOAA-NMFS-2020-0031-DRAFT-46363

Comment from Anonymous Anonymous
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Comment from Richard Offermann
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41175
NOAA-NMFS-2020-0031-DRAFT-41176
NOAA-NMFS-2020-0031-DRAFT-41177
NOAA-NMFS-2020-0031-DRAFT-41178
NOAA-NMFS-2020-0031-DRAFT-41179
NOAA-NMFS-2020-0031-DRAFT-41180
NOAA-NMFS-2020-0031-DRAFT-41181
NOAA-NMFS-2020-0031-DRAFT-41182
NOAA-NMFS-2020-0031-DRAFT-41183
NOAA-NMFS-2020-0031-DRAFT-41184
NOAA-NMFS-2020-0031-DRAFT-41185
NOAA-NMFS-2020-0031-DRAFT-41186
NOAA-NMFS-2020-0031-DRAFT-41187
NOAA-NMFS-2020-0031-DRAFT-41188
NOAA-NMFS-2020-0031-DRAFT-41189
NOAA-NMFS-2020-0031-DRAFT-41190
NOAA-NMFS-2020-0031-DRAFT-41191
NOAA-NMFS-2020-0031-DRAFT-41192
NOAA-NMFS-2020-0031-DRAFT-41193
NOAA-NMFS-2020-0031-DRAFT-41194
NOAA-NMFS-2020-0031-DRAFT-41195
NOAA-NMFS-2020-0031-DRAFT-41196
NOAA-NMFS-2020-0031-DRAFT-41197
NOAA-NMFS-2020-0031-DRAFT-41198
NOAA-NMFS-2020-0031-DRAFT-41199
NOAA-NMFS-2020-0031-DRAFT-41200
NOAA-NMFS-2020-0031-DRAFT-41201
NOAA-NMFS-2020-0031-DRAFT-41202
NOAA-NMFS-2020-0031-DRAFT-41203
NOAA-NMFS-2020-0031-DRAFT-41204
NOAA-NMFS-2020-0031-DRAFT-41205
NOAA-NMFS-2020-0031-DRAFT-41206
NOAA-NMFS-2020-0031-DRAFT-41207
NOAA-NMFS-2020-0031-DRAFT-41208
NOAA-NMFS-2020-0031-DRAFT-41209
NOAA-NMFS-2020-0031-DRAFT-41210
NOAA-NMFS-2020-0031-DRAFT-41211
NOAA-NMFS-2020-0031-DRAFT-41212
NOAA-NMFS-2020-0031-DRAFT-41213
NOAA-NMFS-2020-0031-DRAFT-41214
NOAA-NMFS-2020-0031-DRAFT-41215

Comment from Gajda, John
Comment from Bleckinger, dana
Comment from Alvernaz, Beth
Comment from Anonymous Anonymous
Comment from Ziemian, Joelle
Comment from Fularczyk, Margaret
Comment from Scheible, Barbara
Comment from Wilson, Sherita
Comment from Thornton, Susan
Comment from PETERSEN, ANN
Comment from Jacobs, Vickie
Comment from Brooks, Patricia
Comment from seegott, Mary
Comment from White, Michael
Comment from hall, megahn
Comment from Malinish, Judi
Comment from Gibbs, Kathleen
Comment from Ruthman, Lisa
Comment from Kelly, Jim and Nina
Comment from Martin, Karla
Comment from Corcacas, Phyllis
Comment from Bruegge, Debra
Comment from Swindell, Elak
Comment from Haverfield, heather
Comment from Ayers, Robert
Comment from Bodek, Sharon
Comment from Parapar, Alejandra
Comment from Blandford, Mark
Comment from Malyon, Ann
Comment from Hartman, Brenda
Comment from Alexander, Ralph
Comment from cachopo, patricia
Comment from Ray, Marianne
Comment from Walker, Fern
Comment from Nevins, Laura
Comment from Brockman, Blaise
Comment from Mitchell, Stacey
Comment from Lang, Erika
Comment from Peterson, Janet
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-46364
NOAA-NMFS-2020-0031-DRAFT-46365
NOAA-NMFS-2020-0031-DRAFT-46367
NOAA-NMFS-2020-0031-DRAFT-46368
NOAA-NMFS-2020-0031-DRAFT-46369
NOAA-NMFS-2020-0031-DRAFT-46370
NOAA-NMFS-2020-0031-DRAFT-46371
NOAA-NMFS-2020-0031-DRAFT-46372
NOAA-NMFS-2020-0031-DRAFT-46373
NOAA-NMFS-2020-0031-DRAFT-46374
NOAA-NMFS-2020-0031-DRAFT-46375
NOAA-NMFS-2020-0031-DRAFT-46376
NOAA-NMFS-2020-0031-DRAFT-46377
NOAA-NMFS-2020-0031-DRAFT-46378
NOAA-NMFS-2020-0031-DRAFT-46379
NOAA-NMFS-2020-0031-DRAFT-46380
NOAA-NMFS-2020-0031-DRAFT-46381
NOAA-NMFS-2020-0031-DRAFT-46382
NOAA-NMFS-2020-0031-DRAFT-46383
NOAA-NMFS-2020-0031-DRAFT-46384
NOAA-NMFS-2020-0031-DRAFT-46385
NOAA-NMFS-2020-0031-DRAFT-46386
NOAA-NMFS-2020-0031-DRAFT-46387
NOAA-NMFS-2020-0031-DRAFT-46388
NOAA-NMFS-2020-0031-DRAFT-46389
NOAA-NMFS-2020-0031-DRAFT-46390
NOAA-NMFS-2020-0031-DRAFT-46391
NOAA-NMFS-2020-0031-DRAFT-46392
NOAA-NMFS-2020-0031-DRAFT-46393
NOAA-NMFS-2020-0031-DRAFT-46394
NOAA-NMFS-2020-0031-DRAFT-46395
NOAA-NMFS-2020-0031-DRAFT-46396
NOAA-NMFS-2020-0031-DRAFT-46397
NOAA-NMFS-2020-0031-DRAFT-46398
NOAA-NMFS-2020-0031-DRAFT-46399
NOAA-NMFS-2020-0031-DRAFT-46400
NOAA-NMFS-2020-0031-DRAFT-46401
NOAA-NMFS-2020-0031-DRAFT-46402
NOAA-NMFS-2020-0031-DRAFT-46403
NOAA-NMFS-2020-0031-DRAFT-46404
NOAA-NMFS-2020-0031-DRAFT-46405

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Russell Yttri
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Comment from Anonymous Anonymous
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Comment from Kristina Younger
Comment from Meghan Lempa
Comment from Margarita Zamora
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Comment from Nancy Perry
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Comment from Diana Lunceford
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NOAA-NMFS-2020-0031-DRAFT-41216
NOAA-NMFS-2020-0031-DRAFT-41217
NOAA-NMFS-2020-0031-DRAFT-41218
NOAA-NMFS-2020-0031-DRAFT-41219
NOAA-NMFS-2020-0031-DRAFT-41220
NOAA-NMFS-2020-0031-DRAFT-41221
NOAA-NMFS-2020-0031-DRAFT-41222
NOAA-NMFS-2020-0031-DRAFT-41223
NOAA-NMFS-2020-0031-DRAFT-41224
NOAA-NMFS-2020-0031-DRAFT-41225
NOAA-NMFS-2020-0031-DRAFT-41226
NOAA-NMFS-2020-0031-DRAFT-41227
NOAA-NMFS-2020-0031-DRAFT-41228
NOAA-NMFS-2020-0031-DRAFT-41229
NOAA-NMFS-2020-0031-DRAFT-41230
NOAA-NMFS-2020-0031-DRAFT-41231
NOAA-NMFS-2020-0031-DRAFT-41232
NOAA-NMFS-2020-0031-DRAFT-41233
NOAA-NMFS-2020-0031-DRAFT-41234
NOAA-NMFS-2020-0031-DRAFT-41235
NOAA-NMFS-2020-0031-DRAFT-41236
NOAA-NMFS-2020-0031-DRAFT-41237
NOAA-NMFS-2020-0031-DRAFT-41238
NOAA-NMFS-2020-0031-DRAFT-41239
NOAA-NMFS-2020-0031-DRAFT-41240
NOAA-NMFS-2020-0031-DRAFT-41241
NOAA-NMFS-2020-0031-DRAFT-41242
NOAA-NMFS-2020-0031-DRAFT-41243
NOAA-NMFS-2020-0031-DRAFT-41244
NOAA-NMFS-2020-0031-DRAFT-41245
NOAA-NMFS-2020-0031-DRAFT-41246
NOAA-NMFS-2020-0031-DRAFT-41247
NOAA-NMFS-2020-0031-DRAFT-41248
NOAA-NMFS-2020-0031-DRAFT-41249
NOAA-NMFS-2020-0031-DRAFT-41250
NOAA-NMFS-2020-0031-DRAFT-41251
NOAA-NMFS-2020-0031-DRAFT-41252
NOAA-NMFS-2020-0031-DRAFT-41253
NOAA-NMFS-2020-0031-DRAFT-41254
NOAA-NMFS-2020-0031-DRAFT-41255
NOAA-NMFS-2020-0031-DRAFT-41256

Comment from Dillingham, Stacey
Comment from Sherman-Jones, Cynthia
Comment from Durych, Robert
Comment from Anonymous Anonymous
Comment from Turov, Ilya
Comment from Snellgrove, Dade
Comment from LoGiudice, R.
Comment from Waller, Ellen
Comment from Anonymous Anonymous
Comment from Morrison, Barb
Comment from Scheible, Barbara
Comment from Watson, Lisa
Comment from Johnson, Lee
Comment from Gajda, Jack
Comment from Schulte, Whitney
Comment from Schicker, Robert
Comment from HINDMAN, SUSAN
Comment from Anonymous Anonymous
Comment from Werner, Katherine
Comment from schreier, saul
Comment from Butler, Sam
Comment from Bridges, Linda
Comment from Wheeler, Mark
Comment from Cottrell, David
Comment from Goodin, Ben
Comment from Livesey-Fassel, Elaine
Comment from Emsley, Scott
Comment from Redman-Smith, JoAnna
Comment from Petersen, Nancy
Comment from Weber, Ahnna
Comment from Regen, Hamilton
Comment from Anonymous Anonymous
Comment from McBride, Debbie
Comment from Anonymous Anonymous
Comment from WEAVIL, RICHARD
Comment from Merica, Kay
Comment from Springer, Cynthia
Comment from EVANS, BRENDA
Comment from Berzac, Susan
Comment from Basiewicz, Kathleen
Comment from Slaughter, Margo

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NOAA-NMFS-2020-0031-DRAFT-46406
NOAA-NMFS-2020-0031-DRAFT-46407
NOAA-NMFS-2020-0031-DRAFT-46408
NOAA-NMFS-2020-0031-DRAFT-46409
NOAA-NMFS-2020-0031-DRAFT-46410
NOAA-NMFS-2020-0031-DRAFT-46411
NOAA-NMFS-2020-0031-DRAFT-46412
NOAA-NMFS-2020-0031-DRAFT-46413
NOAA-NMFS-2020-0031-DRAFT-46414
NOAA-NMFS-2020-0031-DRAFT-46415
NOAA-NMFS-2020-0031-DRAFT-46416
NOAA-NMFS-2020-0031-DRAFT-46417
NOAA-NMFS-2020-0031-DRAFT-46418
NOAA-NMFS-2020-0031-DRAFT-46419
NOAA-NMFS-2020-0031-DRAFT-46420
NOAA-NMFS-2020-0031-DRAFT-46421
NOAA-NMFS-2020-0031-DRAFT-46422
NOAA-NMFS-2020-0031-DRAFT-46423
NOAA-NMFS-2020-0031-DRAFT-46424
NOAA-NMFS-2020-0031-DRAFT-46425
NOAA-NMFS-2020-0031-DRAFT-46426
NOAA-NMFS-2020-0031-DRAFT-46427
NOAA-NMFS-2020-0031-DRAFT-46428
NOAA-NMFS-2020-0031-DRAFT-46429
NOAA-NMFS-2020-0031-DRAFT-46431
NOAA-NMFS-2020-0031-DRAFT-46432
NOAA-NMFS-2020-0031-DRAFT-46433
NOAA-NMFS-2020-0031-DRAFT-46434
NOAA-NMFS-2020-0031-DRAFT-46435
NOAA-NMFS-2020-0031-DRAFT-46436
NOAA-NMFS-2020-0031-DRAFT-46437
NOAA-NMFS-2020-0031-DRAFT-46438
NOAA-NMFS-2020-0031-DRAFT-46439
NOAA-NMFS-2020-0031-DRAFT-46440
NOAA-NMFS-2020-0031-DRAFT-46441
NOAA-NMFS-2020-0031-DRAFT-46442
NOAA-NMFS-2020-0031-DRAFT-46443
NOAA-NMFS-2020-0031-DRAFT-46444
NOAA-NMFS-2020-0031-DRAFT-46445
NOAA-NMFS-2020-0031-DRAFT-46446
NOAA-NMFS-2020-0031-DRAFT-46447

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from sheila munson
Comment from donna roddvik
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Comment from James McBride
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Comment from Libba Miller
Comment from Sylvie raffray
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NOAA-NMFS-2020-0031-DRAFT-41257
NOAA-NMFS-2020-0031-DRAFT-41258
NOAA-NMFS-2020-0031-DRAFT-41259
NOAA-NMFS-2020-0031-DRAFT-41260
NOAA-NMFS-2020-0031-DRAFT-41261
NOAA-NMFS-2020-0031-DRAFT-41262
NOAA-NMFS-2020-0031-DRAFT-41263
NOAA-NMFS-2020-0031-DRAFT-41264
NOAA-NMFS-2020-0031-DRAFT-41265
NOAA-NMFS-2020-0031-DRAFT-41266
NOAA-NMFS-2020-0031-DRAFT-41267
NOAA-NMFS-2020-0031-DRAFT-41268
NOAA-NMFS-2020-0031-DRAFT-41269
NOAA-NMFS-2020-0031-DRAFT-41270
NOAA-NMFS-2020-0031-DRAFT-41271
NOAA-NMFS-2020-0031-DRAFT-41272
NOAA-NMFS-2020-0031-DRAFT-41273
NOAA-NMFS-2020-0031-DRAFT-41274
NOAA-NMFS-2020-0031-DRAFT-41275
NOAA-NMFS-2020-0031-DRAFT-41276
NOAA-NMFS-2020-0031-DRAFT-41277
NOAA-NMFS-2020-0031-DRAFT-41278
NOAA-NMFS-2020-0031-DRAFT-41279
NOAA-NMFS-2020-0031-DRAFT-41280
NOAA-NMFS-2020-0031-DRAFT-41281
NOAA-NMFS-2020-0031-DRAFT-41282
NOAA-NMFS-2020-0031-DRAFT-41283
NOAA-NMFS-2020-0031-DRAFT-41284
NOAA-NMFS-2020-0031-DRAFT-41285
NOAA-NMFS-2020-0031-DRAFT-41286
NOAA-NMFS-2020-0031-DRAFT-41287
NOAA-NMFS-2020-0031-DRAFT-41288
NOAA-NMFS-2020-0031-DRAFT-41289
NOAA-NMFS-2020-0031-DRAFT-41290
NOAA-NMFS-2020-0031-DRAFT-41291
NOAA-NMFS-2020-0031-DRAFT-41292
NOAA-NMFS-2020-0031-DRAFT-41293
NOAA-NMFS-2020-0031-DRAFT-41294
NOAA-NMFS-2020-0031-DRAFT-41295
NOAA-NMFS-2020-0031-DRAFT-41296
NOAA-NMFS-2020-0031-DRAFT-41297

Comment from McCaw, Karen
Comment from Eldridge, Karen
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Comment from Lindsay, John
Comment from katz rose, elana
Comment from Thorne, R.
Comment from Anonymous Anonymous
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Comment from Homan, Leslie
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Comment from Watson, Chris
Comment from Barrington, Tim
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NOAA-NMFS-2020-0031-DRAFT-46448
NOAA-NMFS-2020-0031-DRAFT-46449
NOAA-NMFS-2020-0031-DRAFT-46450
NOAA-NMFS-2020-0031-DRAFT-46451
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NOAA-NMFS-2020-0031-DRAFT-46455
NOAA-NMFS-2020-0031-DRAFT-46456
NOAA-NMFS-2020-0031-DRAFT-46457
NOAA-NMFS-2020-0031-DRAFT-46458
NOAA-NMFS-2020-0031-DRAFT-46459
NOAA-NMFS-2020-0031-DRAFT-46460
NOAA-NMFS-2020-0031-DRAFT-46461
NOAA-NMFS-2020-0031-DRAFT-46462
NOAA-NMFS-2020-0031-DRAFT-46463
NOAA-NMFS-2020-0031-DRAFT-46464
NOAA-NMFS-2020-0031-DRAFT-46465
NOAA-NMFS-2020-0031-DRAFT-46466
NOAA-NMFS-2020-0031-DRAFT-46467
NOAA-NMFS-2020-0031-DRAFT-46468
NOAA-NMFS-2020-0031-DRAFT-46469
NOAA-NMFS-2020-0031-DRAFT-46470
NOAA-NMFS-2020-0031-DRAFT-46471
NOAA-NMFS-2020-0031-DRAFT-46472
NOAA-NMFS-2020-0031-DRAFT-46473
NOAA-NMFS-2020-0031-DRAFT-46474
NOAA-NMFS-2020-0031-DRAFT-46475
NOAA-NMFS-2020-0031-DRAFT-46476
NOAA-NMFS-2020-0031-DRAFT-46477
NOAA-NMFS-2020-0031-DRAFT-46478
NOAA-NMFS-2020-0031-DRAFT-46479
NOAA-NMFS-2020-0031-DRAFT-46480
NOAA-NMFS-2020-0031-DRAFT-46481
NOAA-NMFS-2020-0031-DRAFT-46482
NOAA-NMFS-2020-0031-DRAFT-46483
NOAA-NMFS-2020-0031-DRAFT-46484
NOAA-NMFS-2020-0031-DRAFT-46485
NOAA-NMFS-2020-0031-DRAFT-46486
NOAA-NMFS-2020-0031-DRAFT-46487
NOAA-NMFS-2020-0031-DRAFT-46488

Comment from Kenneth Robertson
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Comment from Christine Daum
Comment from Elke Blair

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NOAA-NMFS-2020-0031-DRAFT-41298
NOAA-NMFS-2020-0031-DRAFT-41299
NOAA-NMFS-2020-0031-DRAFT-41300
NOAA-NMFS-2020-0031-DRAFT-41301
NOAA-NMFS-2020-0031-DRAFT-41302
NOAA-NMFS-2020-0031-DRAFT-41303
NOAA-NMFS-2020-0031-DRAFT-41304
NOAA-NMFS-2020-0031-DRAFT-41305
NOAA-NMFS-2020-0031-DRAFT-41306
NOAA-NMFS-2020-0031-DRAFT-41307
NOAA-NMFS-2020-0031-DRAFT-41308
NOAA-NMFS-2020-0031-DRAFT-41309
NOAA-NMFS-2020-0031-DRAFT-41310
NOAA-NMFS-2020-0031-DRAFT-41311
NOAA-NMFS-2020-0031-DRAFT-41312
NOAA-NMFS-2020-0031-DRAFT-41313
NOAA-NMFS-2020-0031-DRAFT-41314
NOAA-NMFS-2020-0031-DRAFT-41315
NOAA-NMFS-2020-0031-DRAFT-41316
NOAA-NMFS-2020-0031-DRAFT-41317
NOAA-NMFS-2020-0031-DRAFT-41318
NOAA-NMFS-2020-0031-DRAFT-41319
NOAA-NMFS-2020-0031-DRAFT-41320
NOAA-NMFS-2020-0031-DRAFT-41321
NOAA-NMFS-2020-0031-DRAFT-41322
NOAA-NMFS-2020-0031-DRAFT-41323
NOAA-NMFS-2020-0031-DRAFT-41324
NOAA-NMFS-2020-0031-DRAFT-41325
NOAA-NMFS-2020-0031-DRAFT-41326
NOAA-NMFS-2020-0031-DRAFT-41327
NOAA-NMFS-2020-0031-DRAFT-41328
NOAA-NMFS-2020-0031-DRAFT-41329
NOAA-NMFS-2020-0031-DRAFT-41330
NOAA-NMFS-2020-0031-DRAFT-41331
NOAA-NMFS-2020-0031-DRAFT-41332
NOAA-NMFS-2020-0031-DRAFT-41333
NOAA-NMFS-2020-0031-DRAFT-41334
NOAA-NMFS-2020-0031-DRAFT-41335
NOAA-NMFS-2020-0031-DRAFT-41336
NOAA-NMFS-2020-0031-DRAFT-41337
NOAA-NMFS-2020-0031-DRAFT-41338

Comment from ziegler, russ
Comment from Bobe, Pablo
Comment from Brennan, Timothy
Comment from Gradoni, Peter
Comment from Burridge, John
Comment from Coogan, C.
Comment from Mcdowell, Kelley
Comment from Loy, Anne
Comment from Karen, Eileen
Comment from Soter, Evangeline
Comment from Tetrault, Aline
Comment from Smith, Donna
Comment from Abrams, Jon
Comment from Anonymous Anonymous
Comment from Sperry, Joy
Comment from Allen, Dana
Comment from Anonymous Anonymous
Comment from Klepek, Lisa
Comment from Anonymous Anonymous
Comment from Tomlin, Curtis
Comment from GREEN, MARTHA
Comment from Goel, Sharon
Comment from Kerns, Loretta
Comment from Smith, Leslie
Comment from Fleischer, Tim
Comment from Spear, Christy
Comment from Bellant, Charla
Comment from Lheureux, Jole
Comment from McBride, Nancy
Comment from Zolnoski, Elektra
Comment from Frank, Robert
Comment from Anonymous Anonymous
Comment from BALABANIAN, JERRY
Comment from Tillman, Barbara
Comment from Walters, Bob
Comment from Dash, Sandy
Comment from Thompson, Amanda
Comment from MacLamroc, Alan
Comment from Schaefer, Millie
Comment from Merica, F. Gene
Comment from Brinker, Debra

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NOAA-NMFS-2020-0031-DRAFT-46489
NOAA-NMFS-2020-0031-DRAFT-46490
NOAA-NMFS-2020-0031-DRAFT-46491
NOAA-NMFS-2020-0031-DRAFT-46492
NOAA-NMFS-2020-0031-DRAFT-46493
NOAA-NMFS-2020-0031-DRAFT-46494
NOAA-NMFS-2020-0031-DRAFT-46495
NOAA-NMFS-2020-0031-DRAFT-46496
NOAA-NMFS-2020-0031-DRAFT-46497
NOAA-NMFS-2020-0031-DRAFT-46498
NOAA-NMFS-2020-0031-DRAFT-46499
NOAA-NMFS-2020-0031-DRAFT-46500
NOAA-NMFS-2020-0031-DRAFT-46501
NOAA-NMFS-2020-0031-DRAFT-46502
NOAA-NMFS-2020-0031-DRAFT-46503
NOAA-NMFS-2020-0031-DRAFT-46504
NOAA-NMFS-2020-0031-DRAFT-46505
NOAA-NMFS-2020-0031-DRAFT-46506
NOAA-NMFS-2020-0031-DRAFT-46507
NOAA-NMFS-2020-0031-DRAFT-46508
NOAA-NMFS-2020-0031-DRAFT-46509
NOAA-NMFS-2020-0031-DRAFT-46510
NOAA-NMFS-2020-0031-DRAFT-46511
NOAA-NMFS-2020-0031-DRAFT-46512
NOAA-NMFS-2020-0031-DRAFT-46513
NOAA-NMFS-2020-0031-DRAFT-46514
NOAA-NMFS-2020-0031-DRAFT-46515
NOAA-NMFS-2020-0031-DRAFT-46516
NOAA-NMFS-2020-0031-DRAFT-46517
NOAA-NMFS-2020-0031-DRAFT-46518
NOAA-NMFS-2020-0031-DRAFT-46519
NOAA-NMFS-2020-0031-DRAFT-46520
NOAA-NMFS-2020-0031-DRAFT-46521
NOAA-NMFS-2020-0031-DRAFT-46522
NOAA-NMFS-2020-0031-DRAFT-46523
NOAA-NMFS-2020-0031-DRAFT-46524
NOAA-NMFS-2020-0031-DRAFT-46525
NOAA-NMFS-2020-0031-DRAFT-46526
NOAA-NMFS-2020-0031-DRAFT-46527
NOAA-NMFS-2020-0031-DRAFT-46529
NOAA-NMFS-2020-0031-DRAFT-46530

Comment from Mary Nelson
Comment from Anonymous Anonymous
Comment from Patricia Snowden
Comment from Anonymous Anonymous
Comment from Lisa Haut
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lana hughes
Comment from Lora Leland
Comment from Anonymous Anonymous
Comment from Cynthia Bernett
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Tom Pipal
Comment from betty winholtz
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carol Leuenberger
Comment from Sylvia Tolley
Comment from Lydia Leventhal
Comment from Jamie Thomas
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Ursula eisenpress
Comment from David Cencula
Comment from Anonymous Anonymous
Comment from Blair Miller
Comment from Anonymous Anonymous
Comment from J.B. Picot
Comment from Anonymous Anonymous
Comment from Norda Gromoll
Comment from Anonymous Anonymous
Comment from Rebecca Schroeder
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kyra Legaroff
Comment from lorraine roberts
Comment from Lydia Coates
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-41339
NOAA-NMFS-2020-0031-DRAFT-41340
NOAA-NMFS-2020-0031-DRAFT-41341
NOAA-NMFS-2020-0031-DRAFT-41342
NOAA-NMFS-2020-0031-DRAFT-41343
NOAA-NMFS-2020-0031-DRAFT-41344
NOAA-NMFS-2020-0031-DRAFT-41345
NOAA-NMFS-2020-0031-DRAFT-41346
NOAA-NMFS-2020-0031-DRAFT-41347
NOAA-NMFS-2020-0031-DRAFT-41348
NOAA-NMFS-2020-0031-DRAFT-41349
NOAA-NMFS-2020-0031-DRAFT-41350
NOAA-NMFS-2020-0031-DRAFT-41351
NOAA-NMFS-2020-0031-DRAFT-41352
NOAA-NMFS-2020-0031-DRAFT-41353
NOAA-NMFS-2020-0031-DRAFT-41354
NOAA-NMFS-2020-0031-DRAFT-41355
NOAA-NMFS-2020-0031-DRAFT-41356
NOAA-NMFS-2020-0031-DRAFT-41357
NOAA-NMFS-2020-0031-DRAFT-41358
NOAA-NMFS-2020-0031-DRAFT-41359
NOAA-NMFS-2020-0031-DRAFT-41360
NOAA-NMFS-2020-0031-DRAFT-41361
NOAA-NMFS-2020-0031-DRAFT-41362
NOAA-NMFS-2020-0031-DRAFT-41363
NOAA-NMFS-2020-0031-DRAFT-41364
NOAA-NMFS-2020-0031-DRAFT-41365
NOAA-NMFS-2020-0031-DRAFT-41366
NOAA-NMFS-2020-0031-DRAFT-41367
NOAA-NMFS-2020-0031-DRAFT-41368
NOAA-NMFS-2020-0031-DRAFT-41369
NOAA-NMFS-2020-0031-DRAFT-41370
NOAA-NMFS-2020-0031-DRAFT-41371
NOAA-NMFS-2020-0031-DRAFT-41372
NOAA-NMFS-2020-0031-DRAFT-41373
NOAA-NMFS-2020-0031-DRAFT-41374
NOAA-NMFS-2020-0031-DRAFT-41375
NOAA-NMFS-2020-0031-DRAFT-41376
NOAA-NMFS-2020-0031-DRAFT-41377
NOAA-NMFS-2020-0031-DRAFT-41378
NOAA-NMFS-2020-0031-DRAFT-41379

Comment from Steger, Ruth
Comment from Anonymous Anonymous
Comment from Strommen, Joanne
Comment from Feldmann, Dory
Comment from Granstedt-Hallberg, Cici
Comment from Riley, Jessica
Comment from Aronoff, Mikki
Comment from Tedeschi, Dina
Comment from Doctor, Kathleen
Comment from Post, Sherry
Comment from pan, pinkyjain
Comment from Levinson, David
Comment from Messerschmitt, Susan
Comment from Dolins, Francine
Comment from Spencer, Julie
Comment from Hansell, Connor
Comment from Watd, Dona
Comment from Tunstall, Jean
Comment from Anonymous Anonymous
Comment from Allred, Sandi
Comment from Schwimmer, Dena
Comment from Ancona, Susan
Comment from Schwartz, Marge
Comment from GRAFFEO, MARY
Comment from Nicolai, Nicola
Comment from Leff, Claudia
Comment from Henry, David
Comment from Devlin, Summer
Comment from Dunayer, Stan
Comment from Spencer, Deborah
Comment from Milliken, Gerry
Comment from Ysasi, Wendy
Comment from Dean, Rayline
Comment from Fighera, Linda
Comment from Tenneriello, Bianca
Comment from Stradtman, George
Comment from Anonymous Anonymous
Comment from Shields, Juli
Comment from Henry, Amy
Comment from Herbst, Tori
Comment from Keefe, Kristen

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NOAA-NMFS-2020-0031-DRAFT-46531
NOAA-NMFS-2020-0031-DRAFT-46532
NOAA-NMFS-2020-0031-DRAFT-46533
NOAA-NMFS-2020-0031-DRAFT-46534
NOAA-NMFS-2020-0031-DRAFT-46535
NOAA-NMFS-2020-0031-DRAFT-46536
NOAA-NMFS-2020-0031-DRAFT-46537
NOAA-NMFS-2020-0031-DRAFT-46538
NOAA-NMFS-2020-0031-DRAFT-46539
NOAA-NMFS-2020-0031-DRAFT-46540
NOAA-NMFS-2020-0031-DRAFT-46541
NOAA-NMFS-2020-0031-DRAFT-46542
NOAA-NMFS-2020-0031-DRAFT-46543
NOAA-NMFS-2020-0031-DRAFT-46544
NOAA-NMFS-2020-0031-DRAFT-46545
NOAA-NMFS-2020-0031-DRAFT-46546
NOAA-NMFS-2020-0031-DRAFT-46547
NOAA-NMFS-2020-0031-DRAFT-46548
NOAA-NMFS-2020-0031-DRAFT-46549
NOAA-NMFS-2020-0031-DRAFT-46550
NOAA-NMFS-2020-0031-DRAFT-46551
NOAA-NMFS-2020-0031-DRAFT-46552
NOAA-NMFS-2020-0031-DRAFT-46553
NOAA-NMFS-2020-0031-DRAFT-46554
NOAA-NMFS-2020-0031-DRAFT-46555
NOAA-NMFS-2020-0031-DRAFT-46556
NOAA-NMFS-2020-0031-DRAFT-46557
NOAA-NMFS-2020-0031-DRAFT-46558
NOAA-NMFS-2020-0031-DRAFT-46559
NOAA-NMFS-2020-0031-DRAFT-46561
NOAA-NMFS-2020-0031-DRAFT-46562
NOAA-NMFS-2020-0031-DRAFT-46563
NOAA-NMFS-2020-0031-DRAFT-46564
NOAA-NMFS-2020-0031-DRAFT-46565
NOAA-NMFS-2020-0031-DRAFT-46566
NOAA-NMFS-2020-0031-DRAFT-46567
NOAA-NMFS-2020-0031-DRAFT-46568
NOAA-NMFS-2020-0031-DRAFT-46569
NOAA-NMFS-2020-0031-DRAFT-46570
NOAA-NMFS-2020-0031-DRAFT-46571
NOAA-NMFS-2020-0031-DRAFT-46572

Comment from Anonymous Anonymous
Comment from Alejandra Ruiz
Comment from Emily Dervan
Comment from Anonymous Anonymous
Comment from Nan Willis
Comment from Anne Mazzone
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kathi Squires
Comment from Katherine Roberts
Comment from Anonymous Anonymous
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Comment from Lisa Witham
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Comment from Janet Carlisle
Comment from Marilynn nalbach
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Comment from Richard Greve
Comment from Joel Blumert
Comment from Anonymous Anonymous
Comment from Joanne Heiling
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Comment from Phillip Cripps
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Comment from Carol Almeida
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Comment from Michael Sarabia
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Comment from Anonymous Anonymous
Comment from Ann Allen
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Comment from Susan Tabor
Comment from Andrea Jordan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41380
NOAA-NMFS-2020-0031-DRAFT-41381
NOAA-NMFS-2020-0031-DRAFT-41382
NOAA-NMFS-2020-0031-DRAFT-41383
NOAA-NMFS-2020-0031-DRAFT-41384
NOAA-NMFS-2020-0031-DRAFT-41385
NOAA-NMFS-2020-0031-DRAFT-41386
NOAA-NMFS-2020-0031-DRAFT-41387
NOAA-NMFS-2020-0031-DRAFT-41388
NOAA-NMFS-2020-0031-DRAFT-41389
NOAA-NMFS-2020-0031-DRAFT-41390
NOAA-NMFS-2020-0031-DRAFT-41391
NOAA-NMFS-2020-0031-DRAFT-41392
NOAA-NMFS-2020-0031-DRAFT-41393
NOAA-NMFS-2020-0031-DRAFT-41394
NOAA-NMFS-2020-0031-DRAFT-41395
NOAA-NMFS-2020-0031-DRAFT-41396
NOAA-NMFS-2020-0031-DRAFT-41397
NOAA-NMFS-2020-0031-DRAFT-41398
NOAA-NMFS-2020-0031-DRAFT-41399
NOAA-NMFS-2020-0031-DRAFT-41400
NOAA-NMFS-2020-0031-DRAFT-41401
NOAA-NMFS-2020-0031-DRAFT-41402
NOAA-NMFS-2020-0031-DRAFT-41403
NOAA-NMFS-2020-0031-DRAFT-41404
NOAA-NMFS-2020-0031-DRAFT-41405
NOAA-NMFS-2020-0031-DRAFT-41406
NOAA-NMFS-2020-0031-DRAFT-41407
NOAA-NMFS-2020-0031-DRAFT-41408
NOAA-NMFS-2020-0031-DRAFT-41409
NOAA-NMFS-2020-0031-DRAFT-41410
NOAA-NMFS-2020-0031-DRAFT-41411
NOAA-NMFS-2020-0031-DRAFT-41412
NOAA-NMFS-2020-0031-DRAFT-41413
NOAA-NMFS-2020-0031-DRAFT-41414
NOAA-NMFS-2020-0031-DRAFT-41415
NOAA-NMFS-2020-0031-DRAFT-41416
NOAA-NMFS-2020-0031-DRAFT-41417
NOAA-NMFS-2020-0031-DRAFT-41418
NOAA-NMFS-2020-0031-DRAFT-41419
NOAA-NMFS-2020-0031-DRAFT-41420

Comment from Zamora, Martha
Comment from Fera, Lisa m
Comment from Gamache, Jussi
Comment from Emlet PAc, Mark
Comment from Thomas, Betty
Comment from Goell, William
Comment from Miller, Kristine
Comment from Fradkin, Allison
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Comment from Burson, Sandra
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Comment from Biggs, Amy
Comment from Parish, Nadine
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Comment from Snow, Donna
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Comment from Feuge, blake
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Comment from Anonymous Anonymous
Comment from Aub, Tom
Comment from Anonymous Anonymous
Comment from Connaught, Gary
Comment from dos santos, jamie
Comment from Puentes, Felena
Comment from Austin, Leslie
Comment from Calambro, Leslie

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NOAA-NMFS-2020-0031-DRAFT-46574
NOAA-NMFS-2020-0031-DRAFT-46575
NOAA-NMFS-2020-0031-DRAFT-46576
NOAA-NMFS-2020-0031-DRAFT-46577
NOAA-NMFS-2020-0031-DRAFT-46578
NOAA-NMFS-2020-0031-DRAFT-46579
NOAA-NMFS-2020-0031-DRAFT-46580
NOAA-NMFS-2020-0031-DRAFT-46581
NOAA-NMFS-2020-0031-DRAFT-46582
NOAA-NMFS-2020-0031-DRAFT-46583
NOAA-NMFS-2020-0031-DRAFT-46584
NOAA-NMFS-2020-0031-DRAFT-46585
NOAA-NMFS-2020-0031-DRAFT-46586
NOAA-NMFS-2020-0031-DRAFT-46587
NOAA-NMFS-2020-0031-DRAFT-46588
NOAA-NMFS-2020-0031-DRAFT-46589
NOAA-NMFS-2020-0031-DRAFT-46590
NOAA-NMFS-2020-0031-DRAFT-46591
NOAA-NMFS-2020-0031-DRAFT-46592
NOAA-NMFS-2020-0031-DRAFT-46593
NOAA-NMFS-2020-0031-DRAFT-46594
NOAA-NMFS-2020-0031-DRAFT-46595
NOAA-NMFS-2020-0031-DRAFT-46596
NOAA-NMFS-2020-0031-DRAFT-46597
NOAA-NMFS-2020-0031-DRAFT-46598
NOAA-NMFS-2020-0031-DRAFT-46599
NOAA-NMFS-2020-0031-DRAFT-46600
NOAA-NMFS-2020-0031-DRAFT-46601
NOAA-NMFS-2020-0031-DRAFT-46602
NOAA-NMFS-2020-0031-DRAFT-46603
NOAA-NMFS-2020-0031-DRAFT-46604
NOAA-NMFS-2020-0031-DRAFT-46605
NOAA-NMFS-2020-0031-DRAFT-46606
NOAA-NMFS-2020-0031-DRAFT-46607
NOAA-NMFS-2020-0031-DRAFT-46608
NOAA-NMFS-2020-0031-DRAFT-46609
NOAA-NMFS-2020-0031-DRAFT-46610
NOAA-NMFS-2020-0031-DRAFT-46611
NOAA-NMFS-2020-0031-DRAFT-46612
NOAA-NMFS-2020-0031-DRAFT-46613
NOAA-NMFS-2020-0031-DRAFT-46614

Comment from Anonymous Anonymous
Comment from Eleanor Vogt
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Comment from Paula Morgan
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Comment from Larry Weingart
Comment from Gretchen Roberts
Comment from Lily Caron
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Comment from Anonymous Anonymous
Comment from Kent Grigg
Comment from Gustaf Sarkkinen

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NOAA-NMFS-2020-0031-DRAFT-41421
NOAA-NMFS-2020-0031-DRAFT-41422
NOAA-NMFS-2020-0031-DRAFT-41423
NOAA-NMFS-2020-0031-DRAFT-41424
NOAA-NMFS-2020-0031-DRAFT-41425
NOAA-NMFS-2020-0031-DRAFT-41426
NOAA-NMFS-2020-0031-DRAFT-41427
NOAA-NMFS-2020-0031-DRAFT-41428
NOAA-NMFS-2020-0031-DRAFT-41429
NOAA-NMFS-2020-0031-DRAFT-41430
NOAA-NMFS-2020-0031-DRAFT-41431
NOAA-NMFS-2020-0031-DRAFT-41432
NOAA-NMFS-2020-0031-DRAFT-41433
NOAA-NMFS-2020-0031-DRAFT-41434
NOAA-NMFS-2020-0031-DRAFT-41435
NOAA-NMFS-2020-0031-DRAFT-41436
NOAA-NMFS-2020-0031-DRAFT-41437
NOAA-NMFS-2020-0031-DRAFT-41438
NOAA-NMFS-2020-0031-DRAFT-41439
NOAA-NMFS-2020-0031-DRAFT-41440
NOAA-NMFS-2020-0031-DRAFT-41441
NOAA-NMFS-2020-0031-DRAFT-41442
NOAA-NMFS-2020-0031-DRAFT-41443
NOAA-NMFS-2020-0031-DRAFT-41444
NOAA-NMFS-2020-0031-DRAFT-41445
NOAA-NMFS-2020-0031-DRAFT-41446
NOAA-NMFS-2020-0031-DRAFT-41447
NOAA-NMFS-2020-0031-DRAFT-41448
NOAA-NMFS-2020-0031-DRAFT-41449
NOAA-NMFS-2020-0031-DRAFT-41450
NOAA-NMFS-2020-0031-DRAFT-41451
NOAA-NMFS-2020-0031-DRAFT-41452
NOAA-NMFS-2020-0031-DRAFT-41453
NOAA-NMFS-2020-0031-DRAFT-41454
NOAA-NMFS-2020-0031-DRAFT-41455
NOAA-NMFS-2020-0031-DRAFT-41456
NOAA-NMFS-2020-0031-DRAFT-41457
NOAA-NMFS-2020-0031-DRAFT-41458
NOAA-NMFS-2020-0031-DRAFT-41459
NOAA-NMFS-2020-0031-DRAFT-41460
NOAA-NMFS-2020-0031-DRAFT-41461

Comment from Evans, Stephen
Comment from Fahrenwald, Gill
Comment from Franz, Sandra
Comment from Cohen, Charles
Comment from Gershgorin, Aleksey
Comment from Wright, Kathy
Comment from Grant, Renee
Comment from Wittmann, Sharon
Comment from Parker, Craig
Comment from Anonymous Anonymous
Comment from Nahigian, Kenneth
Comment from Suarez, Joseph
Comment from Clark, Marilyn
Comment from Knecht, Thomas
Comment from Klugiewicz, Mark
Comment from shawaker, Elizabeth
Comment from Reynolds, Helen
Comment from Gorman, Anne Marie
Comment from Goetschius, Lascinda
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Pena, Deanna
Comment from Anonymous Anonymous
Comment from Parham, Jan
Comment from Blumenthal, Robert
Comment from Michael, Melvin
Comment from cunningham, barbara
Comment from Linder, Amelia
Comment from Anonymous Anonymous
Comment from Triplett, Tia
Comment from Pierucki, Gatha
Comment from Ehnes, Tiffany
Comment from mandeville, pete
Comment from Anonymous Anonymous
Comment from Corby, Kathleen
Comment from Anonymous Anonymous
Comment from Miller, Pamela
Comment from Tronolone, Tracey
Comment from Anonymous Anonymous
Comment from Kriston, Ira
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-46615
NOAA-NMFS-2020-0031-DRAFT-46616
NOAA-NMFS-2020-0031-DRAFT-46617
NOAA-NMFS-2020-0031-DRAFT-46618
NOAA-NMFS-2020-0031-DRAFT-46619
NOAA-NMFS-2020-0031-DRAFT-46620
NOAA-NMFS-2020-0031-DRAFT-46621
NOAA-NMFS-2020-0031-DRAFT-46622
NOAA-NMFS-2020-0031-DRAFT-46623
NOAA-NMFS-2020-0031-DRAFT-46624
NOAA-NMFS-2020-0031-DRAFT-46625
NOAA-NMFS-2020-0031-DRAFT-46626
NOAA-NMFS-2020-0031-DRAFT-46627
NOAA-NMFS-2020-0031-DRAFT-46628
NOAA-NMFS-2020-0031-DRAFT-46629
NOAA-NMFS-2020-0031-DRAFT-46630
NOAA-NMFS-2020-0031-DRAFT-46631
NOAA-NMFS-2020-0031-DRAFT-46632
NOAA-NMFS-2020-0031-DRAFT-46633
NOAA-NMFS-2020-0031-DRAFT-46634
NOAA-NMFS-2020-0031-DRAFT-46635
NOAA-NMFS-2020-0031-DRAFT-46637
NOAA-NMFS-2020-0031-DRAFT-46638
NOAA-NMFS-2020-0031-DRAFT-46639
NOAA-NMFS-2020-0031-DRAFT-46640
NOAA-NMFS-2020-0031-DRAFT-46641
NOAA-NMFS-2020-0031-DRAFT-46642
NOAA-NMFS-2020-0031-DRAFT-46643
NOAA-NMFS-2020-0031-DRAFT-46644
NOAA-NMFS-2020-0031-DRAFT-46645
NOAA-NMFS-2020-0031-DRAFT-46646
NOAA-NMFS-2020-0031-DRAFT-46647
NOAA-NMFS-2020-0031-DRAFT-46648
NOAA-NMFS-2020-0031-DRAFT-46649
NOAA-NMFS-2020-0031-DRAFT-46650
NOAA-NMFS-2020-0031-DRAFT-46651
NOAA-NMFS-2020-0031-DRAFT-46652
NOAA-NMFS-2020-0031-DRAFT-46653
NOAA-NMFS-2020-0031-DRAFT-46654
NOAA-NMFS-2020-0031-DRAFT-46655
NOAA-NMFS-2020-0031-DRAFT-46656

Comment from Anonymous Anonymous
Comment from Nancy Gasperment
Comment from Karen McHugh
Comment from Dorothea Vecchiotti
Comment from Anonymous Anonymous
Comment from Gladys Gonzalez
Comment from Elaine Downer
Comment from Anonymous Anonymous
Comment from Christopher Minich
Comment from Janet Witzeman
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mark Galbraith
Comment from Anonymous Anonymous
Comment from Regina Barakat
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Sandy Williams
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kent Grigg
Comment from Lana Touchstone
Comment from Cheryl Snyder
Comment from Jamie Pfister
Comment from Anonymous Anonymous
Comment from Regina Embry
Comment from Hannahlore Trickett
Comment from susan steinbach
Comment from Elizabeth Reed
Comment from carolyn massey
Comment from Bonnie Williams
Comment from Kicab Castaneda-Mendez
Comment from Theresa Campbell
Comment from Alice Moore
Comment from Leonard Tremmel
Comment from Sheryl Becker
Comment from Dennis Hough
Comment from Anonymous Anonymous
Comment from Linda Shultis-Hoffmann
Comment from steve kent
Comment from Debbi Weiler

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NOAA-NMFS-2020-0031-DRAFT-41462
NOAA-NMFS-2020-0031-DRAFT-41463
NOAA-NMFS-2020-0031-DRAFT-41464
NOAA-NMFS-2020-0031-DRAFT-41465
NOAA-NMFS-2020-0031-DRAFT-41466
NOAA-NMFS-2020-0031-DRAFT-41467
NOAA-NMFS-2020-0031-DRAFT-41468
NOAA-NMFS-2020-0031-DRAFT-41469
NOAA-NMFS-2020-0031-DRAFT-41470
NOAA-NMFS-2020-0031-DRAFT-41471
NOAA-NMFS-2020-0031-DRAFT-41472
NOAA-NMFS-2020-0031-DRAFT-41473
NOAA-NMFS-2020-0031-DRAFT-41474
NOAA-NMFS-2020-0031-DRAFT-41475
NOAA-NMFS-2020-0031-DRAFT-41476
NOAA-NMFS-2020-0031-DRAFT-41477
NOAA-NMFS-2020-0031-DRAFT-41478
NOAA-NMFS-2020-0031-DRAFT-41479
NOAA-NMFS-2020-0031-DRAFT-41480
NOAA-NMFS-2020-0031-DRAFT-41481
NOAA-NMFS-2020-0031-DRAFT-41482
NOAA-NMFS-2020-0031-DRAFT-41483
NOAA-NMFS-2020-0031-DRAFT-41484
NOAA-NMFS-2020-0031-DRAFT-41485
NOAA-NMFS-2020-0031-DRAFT-41486
NOAA-NMFS-2020-0031-DRAFT-41487
NOAA-NMFS-2020-0031-DRAFT-41488
NOAA-NMFS-2020-0031-DRAFT-41489
NOAA-NMFS-2020-0031-DRAFT-41490
NOAA-NMFS-2020-0031-DRAFT-41491
NOAA-NMFS-2020-0031-DRAFT-41492
NOAA-NMFS-2020-0031-DRAFT-41493
NOAA-NMFS-2020-0031-DRAFT-41494
NOAA-NMFS-2020-0031-DRAFT-41495
NOAA-NMFS-2020-0031-DRAFT-41496
NOAA-NMFS-2020-0031-DRAFT-41497
NOAA-NMFS-2020-0031-DRAFT-41498
NOAA-NMFS-2020-0031-DRAFT-41499
NOAA-NMFS-2020-0031-DRAFT-41500
NOAA-NMFS-2020-0031-DRAFT-41501
NOAA-NMFS-2020-0031-DRAFT-41502

Comment from Quinn, Joan
Comment from Goin, Cody
Comment from Wang, Rebecca
Comment from Anonymous Anonymous
Comment from Juric, Eileen
Comment from Filiano, Amy
Comment from Conrad, Debbie
Comment from Crookston, John
Comment from Lassandrello, Noreen
Comment from Kennedy, Scott
Comment from Franck, Matthew
Comment from Anonymous Anonymous
Comment from Coogan, Aimee
Comment from CONLEY, D.
Comment from Siemian, Lori
Comment from Clark, Natalie
Comment from Tucker, Sally
Comment from Rutherford, Richard
Comment from Laur, Janet
Comment from Krysinski, Brian
Comment from Filip, Thomas
Comment from Harrington, Tyler
Comment from Townsend, Cheryl
Comment from Rocha, Candace
Comment from Chirpin, Robert
Comment from Dutschke, Stephen
Comment from parsell, sue
Comment from Seff, Joshua
Comment from Dickstein, Stephen
Comment from Shor, Barbara
Comment from Dadurka, Carole
Comment from Christopher, John
Comment from Riggs, Richard
Comment from Anonymous Anonymous
Comment from Vadimski-Nguyen, Linda
Comment from Blasco, Natalie
Comment from Ponchot, Susan
Comment from carmichael, c
Comment from Anonymous Anonymous
Comment from kuehn, gerard
Comment from Sivulich, Lenore

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NOAA-NMFS-2020-0031-DRAFT-46657
NOAA-NMFS-2020-0031-DRAFT-46658
NOAA-NMFS-2020-0031-DRAFT-46659
NOAA-NMFS-2020-0031-DRAFT-46660
NOAA-NMFS-2020-0031-DRAFT-46661
NOAA-NMFS-2020-0031-DRAFT-46662
NOAA-NMFS-2020-0031-DRAFT-46663
NOAA-NMFS-2020-0031-DRAFT-46664
NOAA-NMFS-2020-0031-DRAFT-46665
NOAA-NMFS-2020-0031-DRAFT-46666
NOAA-NMFS-2020-0031-DRAFT-46667
NOAA-NMFS-2020-0031-DRAFT-46668
NOAA-NMFS-2020-0031-DRAFT-46669
NOAA-NMFS-2020-0031-DRAFT-46670
NOAA-NMFS-2020-0031-DRAFT-46671
NOAA-NMFS-2020-0031-DRAFT-46672
NOAA-NMFS-2020-0031-DRAFT-46673
NOAA-NMFS-2020-0031-DRAFT-46674
NOAA-NMFS-2020-0031-DRAFT-46675
NOAA-NMFS-2020-0031-DRAFT-46676
NOAA-NMFS-2020-0031-DRAFT-46677
NOAA-NMFS-2020-0031-DRAFT-46678
NOAA-NMFS-2020-0031-DRAFT-46679
NOAA-NMFS-2020-0031-DRAFT-46680
NOAA-NMFS-2020-0031-DRAFT-46681
NOAA-NMFS-2020-0031-DRAFT-46682
NOAA-NMFS-2020-0031-DRAFT-46683
NOAA-NMFS-2020-0031-DRAFT-46684
NOAA-NMFS-2020-0031-DRAFT-46685
NOAA-NMFS-2020-0031-DRAFT-46686
NOAA-NMFS-2020-0031-DRAFT-46687
NOAA-NMFS-2020-0031-DRAFT-46688
NOAA-NMFS-2020-0031-DRAFT-46689
NOAA-NMFS-2020-0031-DRAFT-46690
NOAA-NMFS-2020-0031-DRAFT-46691
NOAA-NMFS-2020-0031-DRAFT-46692
NOAA-NMFS-2020-0031-DRAFT-46693
NOAA-NMFS-2020-0031-DRAFT-46694
NOAA-NMFS-2020-0031-DRAFT-46695
NOAA-NMFS-2020-0031-DRAFT-46696
NOAA-NMFS-2020-0031-DRAFT-46697

Comment from JEFFREY LEVITT
Comment from Wadane Haley
Comment from Anonymous Anonymous
Comment from Chantal Eldridge
Comment from Linda Murphy
Comment from Anonymous Anonymous
Comment from Cara Anderson
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Marianne Salamone
Comment from Deuel Woodward
Comment from Anonymous Anonymous
Comment from Tracy Perez
Comment from Anonymous Anonymous
Comment from Wilfred Robin
Comment from Richard Coreno
Comment from Marianne White
Comment from Mia Kitner
Comment from Sue Stoeckel
Comment from Patrick Reyna
Comment from Larry Lambeth
Comment from Kenneth Fisher
Comment from Anonymous Anonymous
Comment from Leticia Garcia
Comment from Anonymous Anonymous
Comment from Barry Smith
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Colleen Malone-Engel
Comment from David Holzman
Comment from Sumi ariely
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lajeanne Leveton
Comment from Paul Schmalzer
Comment from Anonymous Anonymous
Comment from Pamela Hamilton
Comment from Erica Brinker
Comment from Susan Porter
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41503
NOAA-NMFS-2020-0031-DRAFT-41504
NOAA-NMFS-2020-0031-DRAFT-41505
NOAA-NMFS-2020-0031-DRAFT-41506
NOAA-NMFS-2020-0031-DRAFT-41507
NOAA-NMFS-2020-0031-DRAFT-41508
NOAA-NMFS-2020-0031-DRAFT-41509
NOAA-NMFS-2020-0031-DRAFT-41510
NOAA-NMFS-2020-0031-DRAFT-41511
NOAA-NMFS-2020-0031-DRAFT-41512
NOAA-NMFS-2020-0031-DRAFT-41513
NOAA-NMFS-2020-0031-DRAFT-41514
NOAA-NMFS-2020-0031-DRAFT-41515
NOAA-NMFS-2020-0031-DRAFT-41516
NOAA-NMFS-2020-0031-DRAFT-41517
NOAA-NMFS-2020-0031-DRAFT-41518
NOAA-NMFS-2020-0031-DRAFT-41519
NOAA-NMFS-2020-0031-DRAFT-41520
NOAA-NMFS-2020-0031-DRAFT-41521
NOAA-NMFS-2020-0031-DRAFT-41522
NOAA-NMFS-2020-0031-DRAFT-41523
NOAA-NMFS-2020-0031-DRAFT-41524
NOAA-NMFS-2020-0031-DRAFT-41525
NOAA-NMFS-2020-0031-DRAFT-41526
NOAA-NMFS-2020-0031-DRAFT-41527
NOAA-NMFS-2020-0031-DRAFT-41528
NOAA-NMFS-2020-0031-DRAFT-41529
NOAA-NMFS-2020-0031-DRAFT-41530
NOAA-NMFS-2020-0031-DRAFT-41531
NOAA-NMFS-2020-0031-DRAFT-41532
NOAA-NMFS-2020-0031-DRAFT-41533
NOAA-NMFS-2020-0031-DRAFT-41534
NOAA-NMFS-2020-0031-DRAFT-41535
NOAA-NMFS-2020-0031-DRAFT-41536
NOAA-NMFS-2020-0031-DRAFT-41537
NOAA-NMFS-2020-0031-DRAFT-41538
NOAA-NMFS-2020-0031-DRAFT-41539
NOAA-NMFS-2020-0031-DRAFT-41540
NOAA-NMFS-2020-0031-DRAFT-41541
NOAA-NMFS-2020-0031-DRAFT-41542
NOAA-NMFS-2020-0031-DRAFT-41543

Comment from tessman, jacqueline
Comment from wilson, winn
Comment from Rickman, Martin
Comment from Bengston, Lynn
Comment from Crowley, Marty
Comment from Rose, Erica
Comment from Coppotelli, Fred
Comment from Coppotelli, Heide
Comment from Neubauer, Erin
Comment from kenison, thomas
Comment from spinner, lawrence
Comment from Flanders, Gail
Comment from Paterno, Joshua
Comment from Ruggeri, Wendy
Comment from Schuetz, Sue
Comment from Klapperich, Hunter
Comment from Iszauk, Steven
Comment from Traum, Norman
Comment from Coons, Carol
Comment from Bouilland, Stacy
Comment from Nelson, Michael
Comment from Anonymous Anonymous
Comment from Huber, Dr. Susan
Comment from Worker, Kevin
Comment from Fletcher, Elaine
Comment from krause, doug
Comment from Sims, Catherine
Comment from Krause, Cheryl
Comment from Weekly, Lori
Comment from Freeman, Joseph
Comment from Miklavcic, Stephanie
Comment from march, kendall
Comment from Charles, Stanley
Comment from Lewis, Jody
Comment from Anonymous Anonymous
Comment from Janke, Eilene
Comment from Schneider, Danielle
Comment from Henderson, James Michael
"Mike"
Comment from Stevenson, Janice
Comment from Neal, E.
Comment from Brown, Mary Beth

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NOAA-NMFS-2020-0031-DRAFT-46698
NOAA-NMFS-2020-0031-DRAFT-46699
NOAA-NMFS-2020-0031-DRAFT-46700
NOAA-NMFS-2020-0031-DRAFT-46701
NOAA-NMFS-2020-0031-DRAFT-46702
NOAA-NMFS-2020-0031-DRAFT-46703
NOAA-NMFS-2020-0031-DRAFT-46704
NOAA-NMFS-2020-0031-DRAFT-46705
NOAA-NMFS-2020-0031-DRAFT-46706
NOAA-NMFS-2020-0031-DRAFT-46707
NOAA-NMFS-2020-0031-DRAFT-46708
NOAA-NMFS-2020-0031-DRAFT-46710
NOAA-NMFS-2020-0031-DRAFT-46711
NOAA-NMFS-2020-0031-DRAFT-46712
NOAA-NMFS-2020-0031-DRAFT-46713
NOAA-NMFS-2020-0031-DRAFT-46714
NOAA-NMFS-2020-0031-DRAFT-46715
NOAA-NMFS-2020-0031-DRAFT-46716
NOAA-NMFS-2020-0031-DRAFT-46717
NOAA-NMFS-2020-0031-DRAFT-46718
NOAA-NMFS-2020-0031-DRAFT-46719
NOAA-NMFS-2020-0031-DRAFT-46720
NOAA-NMFS-2020-0031-DRAFT-46721
NOAA-NMFS-2020-0031-DRAFT-46722
NOAA-NMFS-2020-0031-DRAFT-46723
NOAA-NMFS-2020-0031-DRAFT-46724
NOAA-NMFS-2020-0031-DRAFT-46725
NOAA-NMFS-2020-0031-DRAFT-46726
NOAA-NMFS-2020-0031-DRAFT-46727
NOAA-NMFS-2020-0031-DRAFT-46728
NOAA-NMFS-2020-0031-DRAFT-46729
NOAA-NMFS-2020-0031-DRAFT-46730
NOAA-NMFS-2020-0031-DRAFT-46731
NOAA-NMFS-2020-0031-DRAFT-46732
NOAA-NMFS-2020-0031-DRAFT-46733
NOAA-NMFS-2020-0031-DRAFT-46734
NOAA-NMFS-2020-0031-DRAFT-46735
NOAA-NMFS-2020-0031-DRAFT-46736
NOAA-NMFS-2020-0031-DRAFT-46737
NOAA-NMFS-2020-0031-DRAFT-46738
NOAA-NMFS-2020-0031-DRAFT-46739

Comment from Chantal Eldridge
Comment from Kate Bolton
Comment from Jeff Freels
Comment from Anonymous Anonymous
Comment from Dawn Foster
Comment from Alana Willroth
Comment from Anonymous Anonymous
Comment from Kenneth Honig
Comment from Edward Roberts
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Robert Reed
Comment from eric pash
Comment from Marion Gordon
Comment from Jennifer Romans
Comment from Katharine Layton
Comment from Michael Ross
Comment from Jessica Motta
Comment from Richard Montjoy
Comment from Carol Hambrecht
Comment from Anonymous Anonymous
Comment from Lawson, Cheryl
Comment from Diana Donovan
Comment from Crowder, Steve
Comment from Deborah Richards
Comment from Anonymous Anonymous
Comment from nanci nugent
Comment from Anonymous Anonymous
Comment from Faith Thibodeau
Comment from Diane Krassenstein
Comment from Anonymous Anonymous
Comment from Dawn Stanko
Comment from Thomas Sanders
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Julia French
Comment from Anonymous Anonymous
Comment from cathyelizabeth levin
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41544
NOAA-NMFS-2020-0031-DRAFT-41545
NOAA-NMFS-2020-0031-DRAFT-41546
NOAA-NMFS-2020-0031-DRAFT-41547
NOAA-NMFS-2020-0031-DRAFT-41548
NOAA-NMFS-2020-0031-DRAFT-41549
NOAA-NMFS-2020-0031-DRAFT-41550
NOAA-NMFS-2020-0031-DRAFT-41551
NOAA-NMFS-2020-0031-DRAFT-41552
NOAA-NMFS-2020-0031-DRAFT-41553
NOAA-NMFS-2020-0031-DRAFT-41554
NOAA-NMFS-2020-0031-DRAFT-41555
NOAA-NMFS-2020-0031-DRAFT-41556
NOAA-NMFS-2020-0031-DRAFT-41557
NOAA-NMFS-2020-0031-DRAFT-41558
NOAA-NMFS-2020-0031-DRAFT-41559
NOAA-NMFS-2020-0031-DRAFT-41560
NOAA-NMFS-2020-0031-DRAFT-41561
NOAA-NMFS-2020-0031-DRAFT-41562
NOAA-NMFS-2020-0031-DRAFT-41563
NOAA-NMFS-2020-0031-DRAFT-41564
NOAA-NMFS-2020-0031-DRAFT-41565
NOAA-NMFS-2020-0031-DRAFT-41566
NOAA-NMFS-2020-0031-DRAFT-41567
NOAA-NMFS-2020-0031-DRAFT-41568
NOAA-NMFS-2020-0031-DRAFT-41569
NOAA-NMFS-2020-0031-DRAFT-41570
NOAA-NMFS-2020-0031-DRAFT-41571
NOAA-NMFS-2020-0031-DRAFT-41572
NOAA-NMFS-2020-0031-DRAFT-41573
NOAA-NMFS-2020-0031-DRAFT-41574
NOAA-NMFS-2020-0031-DRAFT-41575
NOAA-NMFS-2020-0031-DRAFT-41576
NOAA-NMFS-2020-0031-DRAFT-41577
NOAA-NMFS-2020-0031-DRAFT-41578
NOAA-NMFS-2020-0031-DRAFT-41579
NOAA-NMFS-2020-0031-DRAFT-41580
NOAA-NMFS-2020-0031-DRAFT-41581
NOAA-NMFS-2020-0031-DRAFT-41582
NOAA-NMFS-2020-0031-DRAFT-41583
NOAA-NMFS-2020-0031-DRAFT-41584

Comment from Shankling, Victoria
Comment from Conrad, Barbara
Comment from Bender, Donna
Comment from Anonymous Anonymous
Comment from Werner, Elizabeth
Comment from Morris, T
Comment from Anonymous Anonymous
Comment from rosa, lisa
Comment from Anonymous Anonymous
Comment from Allsop, Shannon
Comment from Abernathy, Cindy
Comment from Evans, Hersha
Comment from Hall, Cory
Comment from Anonymous Anonymous
Comment from Sederberg, Karyn
Comment from Albanese, Dawn
Comment from Zeller, Michael
Comment from Redd, Karen
Comment from Medlin, Nellie
Comment from Everett, John
Comment from Severino, Susan
Comment from Wright, Priscilla
Comment from Griffith, Jennifer
Comment from Mattingly, Georgia
Comment from Nordquist, Janine
Comment from Granlund, Fred
Comment from Smart, Tracy
Comment from Anthony, Michelle
Comment from Paraszewski, Joseph
Comment from Guido, Tara
Comment from Jiranek, Pamela
Comment from Yavorsky, Donna
Comment from Andreas, Leticia
Comment from Johannsen, Mary
Comment from Wagers, Catalina
Comment from Watson, Andrea
Comment from Ameen, Arshad
Comment from Wilkinson, L. L.
Comment from Hutchins, Katherine
Comment from Ashbrook, Doris
Comment from H, D

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NOAA-NMFS-2020-0031-DRAFT-46740
NOAA-NMFS-2020-0031-DRAFT-46741
NOAA-NMFS-2020-0031-DRAFT-46742
NOAA-NMFS-2020-0031-DRAFT-46743
NOAA-NMFS-2020-0031-DRAFT-46744
NOAA-NMFS-2020-0031-DRAFT-46745
NOAA-NMFS-2020-0031-DRAFT-46746
NOAA-NMFS-2020-0031-DRAFT-46747
NOAA-NMFS-2020-0031-DRAFT-46748
NOAA-NMFS-2020-0031-DRAFT-46749
NOAA-NMFS-2020-0031-DRAFT-46750
NOAA-NMFS-2020-0031-DRAFT-46751
NOAA-NMFS-2020-0031-DRAFT-46752
NOAA-NMFS-2020-0031-DRAFT-46753
NOAA-NMFS-2020-0031-DRAFT-46754
NOAA-NMFS-2020-0031-DRAFT-46755
NOAA-NMFS-2020-0031-DRAFT-46756
NOAA-NMFS-2020-0031-DRAFT-46757
NOAA-NMFS-2020-0031-DRAFT-46758
NOAA-NMFS-2020-0031-DRAFT-46759
NOAA-NMFS-2020-0031-DRAFT-46760
NOAA-NMFS-2020-0031-DRAFT-46762
NOAA-NMFS-2020-0031-DRAFT-46763
NOAA-NMFS-2020-0031-DRAFT-46764
NOAA-NMFS-2020-0031-DRAFT-46765
NOAA-NMFS-2020-0031-DRAFT-46766
NOAA-NMFS-2020-0031-DRAFT-46767
NOAA-NMFS-2020-0031-DRAFT-46768
NOAA-NMFS-2020-0031-DRAFT-46769
NOAA-NMFS-2020-0031-DRAFT-46770
NOAA-NMFS-2020-0031-DRAFT-46771
NOAA-NMFS-2020-0031-DRAFT-46772
NOAA-NMFS-2020-0031-DRAFT-46773
NOAA-NMFS-2020-0031-DRAFT-46774
NOAA-NMFS-2020-0031-DRAFT-46775
NOAA-NMFS-2020-0031-DRAFT-46776
NOAA-NMFS-2020-0031-DRAFT-46777
NOAA-NMFS-2020-0031-DRAFT-46778
NOAA-NMFS-2020-0031-DRAFT-46779
NOAA-NMFS-2020-0031-DRAFT-46780
NOAA-NMFS-2020-0031-DRAFT-46781

Comment from James Hawkins
Comment from Philip Young
Comment from Anonymous Anonymous
Comment from Maureen Sullivan
Comment from Vanessa Seay
Comment from Catherine Ream
Comment from Anonymous Anonymous
Comment from Anthony Celaya
Comment from Ruliffson Mary
Comment from Anonymous Anonymous
Comment from Clifford Provost
Comment from Melissa K
Comment from Patrick McGee
Comment from Paula Morgan
Comment from Shannon Milhaupt
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gary Ardito
Comment from Robin Terry
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Claudia Martinez
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mark Hammond
Comment from Robert Curry
Comment from Anonymous Anonymous
Comment from Cherie Hatlem
Comment from Hagit Halperin
Comment from Anonymous Anonymous
Comment from Jeffrey Eyges
Comment from Anonymous Anonymous
Comment from Pamela Hamilton
Comment from Anonymous Anonymous
Comment from Sara Leonard
Comment from Anonymous Anonymous
Comment from Bryan Wishik
Comment from Ellen Walsh
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41585
NOAA-NMFS-2020-0031-DRAFT-41586
NOAA-NMFS-2020-0031-DRAFT-41587
NOAA-NMFS-2020-0031-DRAFT-41588
NOAA-NMFS-2020-0031-DRAFT-41589
NOAA-NMFS-2020-0031-DRAFT-41590
NOAA-NMFS-2020-0031-DRAFT-41591
NOAA-NMFS-2020-0031-DRAFT-41592
NOAA-NMFS-2020-0031-DRAFT-41593
NOAA-NMFS-2020-0031-DRAFT-41594
NOAA-NMFS-2020-0031-DRAFT-41595
NOAA-NMFS-2020-0031-DRAFT-41596
NOAA-NMFS-2020-0031-DRAFT-41597
NOAA-NMFS-2020-0031-DRAFT-41598
NOAA-NMFS-2020-0031-DRAFT-41599
NOAA-NMFS-2020-0031-DRAFT-41600
NOAA-NMFS-2020-0031-DRAFT-41601
NOAA-NMFS-2020-0031-DRAFT-41602
NOAA-NMFS-2020-0031-DRAFT-41603
NOAA-NMFS-2020-0031-DRAFT-41604
NOAA-NMFS-2020-0031-DRAFT-41605
NOAA-NMFS-2020-0031-DRAFT-41606
NOAA-NMFS-2020-0031-DRAFT-41607
NOAA-NMFS-2020-0031-DRAFT-41608
NOAA-NMFS-2020-0031-DRAFT-41609
NOAA-NMFS-2020-0031-DRAFT-41610
NOAA-NMFS-2020-0031-DRAFT-41611
NOAA-NMFS-2020-0031-DRAFT-41612
NOAA-NMFS-2020-0031-DRAFT-41613
NOAA-NMFS-2020-0031-DRAFT-41614
NOAA-NMFS-2020-0031-DRAFT-41615
NOAA-NMFS-2020-0031-DRAFT-41616
NOAA-NMFS-2020-0031-DRAFT-41617
NOAA-NMFS-2020-0031-DRAFT-41618
NOAA-NMFS-2020-0031-DRAFT-41619
NOAA-NMFS-2020-0031-DRAFT-41620
NOAA-NMFS-2020-0031-DRAFT-41621
NOAA-NMFS-2020-0031-DRAFT-41622
NOAA-NMFS-2020-0031-DRAFT-41623
NOAA-NMFS-2020-0031-DRAFT-41624
NOAA-NMFS-2020-0031-DRAFT-41625

Comment from Gaskins, Bob
Comment from Coleman, Cayla
Comment from Leannah, Geralyn
Comment from Landsberg, Marisa
Comment from Hatcher, Patty
Comment from panciocco, sammia
Comment from Dumas, Marc
Comment from Hickman, Teresa
Comment from Markel, Stephen
Comment from Klein, Philip
Comment from Glaeske, Lynne
Comment from Wootan, Cathy
Comment from Anonymous Anonymous
Comment from Kloth, Vicky
Comment from Harty, Florence
Comment from Druffel, Tatiana
Comment from Shade, Priscilla
Comment from Lefever, Dimitri
Comment from Almeida-Altamirano,
Gabriela
Comment from Lambros, Kathryn
Comment from Gibbs, Keri
Comment from Anonymous Anonymous
Comment from Epatko, Mary
Comment from Lind, Michelle
Comment from Dennison, Joni
Comment from knaz, julia
Comment from Hodges, Kerry
Comment from Westphal, Jimmy
Comment from Windham, Dallas
Comment from Nordquist, Janine
Comment from Lesser, Diane
Comment from Hodges, Kerry
Comment from Galante, Susan
Comment from Randolph, Tracy
Comment from Maurer, Thomas
Comment from Knott, James
Comment from Epley, Cherie
Comment from Bish, Mina
Comment from Pellegrino, Maddox
Comment from Trescone, Thomas
Comment from Rusch, Vincent

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NOAA-NMFS-2020-0031-DRAFT-46782
NOAA-NMFS-2020-0031-DRAFT-46783
NOAA-NMFS-2020-0031-DRAFT-46784
NOAA-NMFS-2020-0031-DRAFT-46785
NOAA-NMFS-2020-0031-DRAFT-46786
NOAA-NMFS-2020-0031-DRAFT-46787
NOAA-NMFS-2020-0031-DRAFT-46788
NOAA-NMFS-2020-0031-DRAFT-46789
NOAA-NMFS-2020-0031-DRAFT-46790
NOAA-NMFS-2020-0031-DRAFT-46791
NOAA-NMFS-2020-0031-DRAFT-46792
NOAA-NMFS-2020-0031-DRAFT-46793
NOAA-NMFS-2020-0031-DRAFT-46794
NOAA-NMFS-2020-0031-DRAFT-46795
NOAA-NMFS-2020-0031-DRAFT-46796
NOAA-NMFS-2020-0031-DRAFT-46797
NOAA-NMFS-2020-0031-DRAFT-46798
NOAA-NMFS-2020-0031-DRAFT-46799
NOAA-NMFS-2020-0031-DRAFT-46800
NOAA-NMFS-2020-0031-DRAFT-46801
NOAA-NMFS-2020-0031-DRAFT-46802
NOAA-NMFS-2020-0031-DRAFT-46803
NOAA-NMFS-2020-0031-DRAFT-46804
NOAA-NMFS-2020-0031-DRAFT-46805
NOAA-NMFS-2020-0031-DRAFT-46806
NOAA-NMFS-2020-0031-DRAFT-46807
NOAA-NMFS-2020-0031-DRAFT-46808
NOAA-NMFS-2020-0031-DRAFT-46809
NOAA-NMFS-2020-0031-DRAFT-46810
NOAA-NMFS-2020-0031-DRAFT-46811
NOAA-NMFS-2020-0031-DRAFT-46812
NOAA-NMFS-2020-0031-DRAFT-46813
NOAA-NMFS-2020-0031-DRAFT-46814
NOAA-NMFS-2020-0031-DRAFT-46815
NOAA-NMFS-2020-0031-DRAFT-46816
NOAA-NMFS-2020-0031-DRAFT-46817
NOAA-NMFS-2020-0031-DRAFT-46818
NOAA-NMFS-2020-0031-DRAFT-46819
NOAA-NMFS-2020-0031-DRAFT-46820
NOAA-NMFS-2020-0031-DRAFT-46821
NOAA-NMFS-2020-0031-DRAFT-46822

Comment from Julia Hartman
Comment from Jean Wiant
Comment from Hilary Simonetti
Comment from Anonymous Anonymous
Comment from Vanessa Seay
Comment from Michal Lynch
Comment from Anonymous Anonymous
Comment from Donna Thomas
Comment from Andrea Wilson
Comment from Joan Glasser
Comment from Victor Kit
Comment from Eddie Konczal
Comment from Nancy Cormia
Comment from Gail Reutershan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from suzanne parodi
Comment from Anonymous Anonymous
Comment from Mariam Andalibi
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Terry Wolfe
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Greg Brown
Comment from Linda Peterson
Comment from Julie Motl
Comment from Anonymous Anonymous
Comment from E MacNabb
Comment from Anonymous Anonymous
Comment from Obie Hunt
Comment from Anonymous Anonymous
Comment from Margaret Hunt
Comment from Stephen Bamford
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41626
NOAA-NMFS-2020-0031-DRAFT-41627
NOAA-NMFS-2020-0031-DRAFT-41628
NOAA-NMFS-2020-0031-DRAFT-41629
NOAA-NMFS-2020-0031-DRAFT-41630
NOAA-NMFS-2020-0031-DRAFT-41631
NOAA-NMFS-2020-0031-DRAFT-41632
NOAA-NMFS-2020-0031-DRAFT-41633
NOAA-NMFS-2020-0031-DRAFT-41634
NOAA-NMFS-2020-0031-DRAFT-41635
NOAA-NMFS-2020-0031-DRAFT-41636
NOAA-NMFS-2020-0031-DRAFT-41637
NOAA-NMFS-2020-0031-DRAFT-41638
NOAA-NMFS-2020-0031-DRAFT-41639
NOAA-NMFS-2020-0031-DRAFT-41640
NOAA-NMFS-2020-0031-DRAFT-41641
NOAA-NMFS-2020-0031-DRAFT-41642
NOAA-NMFS-2020-0031-DRAFT-41643
NOAA-NMFS-2020-0031-DRAFT-41644
NOAA-NMFS-2020-0031-DRAFT-41645
NOAA-NMFS-2020-0031-DRAFT-41646
NOAA-NMFS-2020-0031-DRAFT-41647
NOAA-NMFS-2020-0031-DRAFT-41648
NOAA-NMFS-2020-0031-DRAFT-41649
NOAA-NMFS-2020-0031-DRAFT-41650
NOAA-NMFS-2020-0031-DRAFT-41651
NOAA-NMFS-2020-0031-DRAFT-41652
NOAA-NMFS-2020-0031-DRAFT-41653
NOAA-NMFS-2020-0031-DRAFT-41654
NOAA-NMFS-2020-0031-DRAFT-41655
NOAA-NMFS-2020-0031-DRAFT-41656
NOAA-NMFS-2020-0031-DRAFT-41657
NOAA-NMFS-2020-0031-DRAFT-41658
NOAA-NMFS-2020-0031-DRAFT-41659
NOAA-NMFS-2020-0031-DRAFT-41660
NOAA-NMFS-2020-0031-DRAFT-41661
NOAA-NMFS-2020-0031-DRAFT-41662
NOAA-NMFS-2020-0031-DRAFT-41663
NOAA-NMFS-2020-0031-DRAFT-41664
NOAA-NMFS-2020-0031-DRAFT-41665
NOAA-NMFS-2020-0031-DRAFT-41666

Comment from Mason, Kathy
Comment from Altana, Kim
Comment from Johanson, Kenneth
Comment from DAmbrosio, Sandy
Comment from Koehler, Christine
Comment from Mary, Ruliffson
Comment from Olsson, Krister
Comment from Roberts, Gretchen
Comment from Pratt, Wendy
Comment from Anonymous Anonymous
Comment from NOVAK, S.
Comment from Bayne, Laura
Comment from Stewart, Annie
Comment from Johnson, Stephen a
Comment from Call, Beth
Comment from NOVAK, S.
Comment from Br., M
Comment from Bilyeu, George
Comment from Swanson, Kristen
Comment from Chisari, Andrea
Comment from Jamin, Francine
Comment from Henrichon, Gina
Comment from Talbert, Zandra
Comment from Hall, Suzanne
Comment from L., Kristin
Comment from Davis, JohnP
Comment from Catlin, Christina
Comment from Peters, Kathleen
Comment from Mola, Nicole
Comment from artman, cara
Comment from Harvey, Tami
Comment from Rittenhouse, Nancy
Comment from Everton, Keith
Comment from Humphrey, Thomas
Comment from Kirshon, Bryan
Comment from young, jean
Comment from Levinson, Gilda
Comment from Dunaev, Alexander
Comment from Candela, Jackie
Comment from Metzger, Carol
Comment from Brown, Wendy

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NOAA-NMFS-2020-0031-DRAFT-46823
NOAA-NMFS-2020-0031-DRAFT-46824
NOAA-NMFS-2020-0031-DRAFT-46825
NOAA-NMFS-2020-0031-DRAFT-46826
NOAA-NMFS-2020-0031-DRAFT-46827
NOAA-NMFS-2020-0031-DRAFT-46828
NOAA-NMFS-2020-0031-DRAFT-46829
NOAA-NMFS-2020-0031-DRAFT-46831
NOAA-NMFS-2020-0031-DRAFT-46832
NOAA-NMFS-2020-0031-DRAFT-46833
NOAA-NMFS-2020-0031-DRAFT-46834
NOAA-NMFS-2020-0031-DRAFT-46835
NOAA-NMFS-2020-0031-DRAFT-46836
NOAA-NMFS-2020-0031-DRAFT-46837
NOAA-NMFS-2020-0031-DRAFT-46838
NOAA-NMFS-2020-0031-DRAFT-46839
NOAA-NMFS-2020-0031-DRAFT-46840
NOAA-NMFS-2020-0031-DRAFT-46841
NOAA-NMFS-2020-0031-DRAFT-46842
NOAA-NMFS-2020-0031-DRAFT-46843
NOAA-NMFS-2020-0031-DRAFT-46844
NOAA-NMFS-2020-0031-DRAFT-46845
NOAA-NMFS-2020-0031-DRAFT-46846
NOAA-NMFS-2020-0031-DRAFT-46847
NOAA-NMFS-2020-0031-DRAFT-46848
NOAA-NMFS-2020-0031-DRAFT-46849
NOAA-NMFS-2020-0031-DRAFT-46850
NOAA-NMFS-2020-0031-DRAFT-46851
NOAA-NMFS-2020-0031-DRAFT-46852
NOAA-NMFS-2020-0031-DRAFT-46853
NOAA-NMFS-2020-0031-DRAFT-46854
NOAA-NMFS-2020-0031-DRAFT-46855
NOAA-NMFS-2020-0031-DRAFT-46856
NOAA-NMFS-2020-0031-DRAFT-46857
NOAA-NMFS-2020-0031-DRAFT-46858
NOAA-NMFS-2020-0031-DRAFT-46859
NOAA-NMFS-2020-0031-DRAFT-46860
NOAA-NMFS-2020-0031-DRAFT-46861
NOAA-NMFS-2020-0031-DRAFT-46862
NOAA-NMFS-2020-0031-DRAFT-46863
NOAA-NMFS-2020-0031-DRAFT-46864

Comment from Arlene Dreste
Comment from Denice Cornell
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kathleen Espamer
Comment from Anonymous Anonymous
Comment from Victoria Galantino
Comment from Susan Hindman
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from anaundda elijah
Comment from Lori Rotondo
Comment from Annette Raible
Comment from Anonymous Anonymous
Comment from JILL ALIBRANDI
Comment from dagmar mclaughlin
Comment from Anonymous Anonymous
Comment from Rob Puc
Comment from Colleen Conrade
Comment from Hal Trufan
Comment from Chey Richmond
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Robert Racine
Comment from Christopher Marrs
Comment from Ananda Weerasuriya
Comment from Katherine Johnson
Comment from Charlotte Jones
Comment from Anonymous Anonymous
Comment from Jamie VanNess
Comment from Catherine Krug
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from William Achramowicz
Comment from Anonymous Anonymous
Comment from Rob Puc
Comment from Anonymous Anonymous
Comment from Terence O'Grady
Comment from Rhonda Johnson

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NOAA-NMFS-2020-0031-DRAFT-41667
NOAA-NMFS-2020-0031-DRAFT-41668
NOAA-NMFS-2020-0031-DRAFT-41669
NOAA-NMFS-2020-0031-DRAFT-41670
NOAA-NMFS-2020-0031-DRAFT-41671
NOAA-NMFS-2020-0031-DRAFT-41672
NOAA-NMFS-2020-0031-DRAFT-41673
NOAA-NMFS-2020-0031-DRAFT-41674
NOAA-NMFS-2020-0031-DRAFT-41675
NOAA-NMFS-2020-0031-DRAFT-41676
NOAA-NMFS-2020-0031-DRAFT-41677
NOAA-NMFS-2020-0031-DRAFT-41678
NOAA-NMFS-2020-0031-DRAFT-41679
NOAA-NMFS-2020-0031-DRAFT-41680
NOAA-NMFS-2020-0031-DRAFT-41681
NOAA-NMFS-2020-0031-DRAFT-41682
NOAA-NMFS-2020-0031-DRAFT-41683
NOAA-NMFS-2020-0031-DRAFT-41684
NOAA-NMFS-2020-0031-DRAFT-41685
NOAA-NMFS-2020-0031-DRAFT-41686
NOAA-NMFS-2020-0031-DRAFT-41687
NOAA-NMFS-2020-0031-DRAFT-41688
NOAA-NMFS-2020-0031-DRAFT-41689
NOAA-NMFS-2020-0031-DRAFT-41690
NOAA-NMFS-2020-0031-DRAFT-41691
NOAA-NMFS-2020-0031-DRAFT-41692
NOAA-NMFS-2020-0031-DRAFT-41693
NOAA-NMFS-2020-0031-DRAFT-41694
NOAA-NMFS-2020-0031-DRAFT-41695
NOAA-NMFS-2020-0031-DRAFT-41696
NOAA-NMFS-2020-0031-DRAFT-41697
NOAA-NMFS-2020-0031-DRAFT-41698
NOAA-NMFS-2020-0031-DRAFT-41699
NOAA-NMFS-2020-0031-DRAFT-41700
NOAA-NMFS-2020-0031-DRAFT-41701
NOAA-NMFS-2020-0031-DRAFT-41702
NOAA-NMFS-2020-0031-DRAFT-41703
NOAA-NMFS-2020-0031-DRAFT-41704
NOAA-NMFS-2020-0031-DRAFT-41705
NOAA-NMFS-2020-0031-DRAFT-41706
NOAA-NMFS-2020-0031-DRAFT-41707

Comment from McGuire, Daniel
Comment from Moore, Shabaka
Comment from Anonymous Anonymous
Comment from Christian, Janet
Comment from Bornn, Mina
Comment from Grande, Paula
Comment from Williams, Deborah
Comment from Benschoter, John
Comment from Copello, Janell
Comment from becker, lauren
Comment from Esser, Char
Comment from Siegel, Stacey
Comment from Cornelia, Jared
Comment from Braude, Michael
Comment from Pierce, Diane
Comment from Toler, Cindy
Comment from Toth, Maureen
Comment from Petitt, Holly
Comment from PRITCHARD, ALVERA
Comment from Rivalsi, Douglas &
Elvira
Comment from O'Donnell, Linda
Comment from Metzler, JoAnne
Comment from Glasscock, Rita
Comment from Van Alyne, Emily
Comment from Comstock, Laura
Comment from Carnahan, Cheryl
Comment from Devine, Lauren
Comment from Marshall, Carol
Comment from Peterson, Robin
Comment from Shively, Judy
Comment from Bock, Jerilyn
Comment from Poritzky, Robin
Comment from White, Denise
Comment from Anonymous Anonymous
Comment from Fehrmann, Marilyn
Comment from Stovall, Gloria
Comment from Struss, Barbara
Comment from Murray, Kristen
Comment from Miller, David
Comment from JOHNSON, ALICE
Comment from Brown, John

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NOAA-NMFS-2020-0031-DRAFT-46865
NOAA-NMFS-2020-0031-DRAFT-46866
NOAA-NMFS-2020-0031-DRAFT-46867
NOAA-NMFS-2020-0031-DRAFT-46868
NOAA-NMFS-2020-0031-DRAFT-46869
NOAA-NMFS-2020-0031-DRAFT-46870
NOAA-NMFS-2020-0031-DRAFT-46871
NOAA-NMFS-2020-0031-DRAFT-46872
NOAA-NMFS-2020-0031-DRAFT-46873
NOAA-NMFS-2020-0031-DRAFT-46874
NOAA-NMFS-2020-0031-DRAFT-46875
NOAA-NMFS-2020-0031-DRAFT-46876
NOAA-NMFS-2020-0031-DRAFT-46877
NOAA-NMFS-2020-0031-DRAFT-46878
NOAA-NMFS-2020-0031-DRAFT-46879
NOAA-NMFS-2020-0031-DRAFT-46880
NOAA-NMFS-2020-0031-DRAFT-46881
NOAA-NMFS-2020-0031-DRAFT-46882
NOAA-NMFS-2020-0031-DRAFT-46883
NOAA-NMFS-2020-0031-DRAFT-46884
NOAA-NMFS-2020-0031-DRAFT-46885
NOAA-NMFS-2020-0031-DRAFT-46886
NOAA-NMFS-2020-0031-DRAFT-46887
NOAA-NMFS-2020-0031-DRAFT-46888
NOAA-NMFS-2020-0031-DRAFT-46889
NOAA-NMFS-2020-0031-DRAFT-46890
NOAA-NMFS-2020-0031-DRAFT-46891
NOAA-NMFS-2020-0031-DRAFT-46892
NOAA-NMFS-2020-0031-DRAFT-46893
NOAA-NMFS-2020-0031-DRAFT-46894
NOAA-NMFS-2020-0031-DRAFT-46895
NOAA-NMFS-2020-0031-DRAFT-46896
NOAA-NMFS-2020-0031-DRAFT-46897
NOAA-NMFS-2020-0031-DRAFT-46898
NOAA-NMFS-2020-0031-DRAFT-46899
NOAA-NMFS-2020-0031-DRAFT-46900
NOAA-NMFS-2020-0031-DRAFT-46901
NOAA-NMFS-2020-0031-DRAFT-46902
NOAA-NMFS-2020-0031-DRAFT-46903
NOAA-NMFS-2020-0031-DRAFT-46904
NOAA-NMFS-2020-0031-DRAFT-46905

Comment from Anonymous Anonymous
Comment from Erolyn Green
Comment from Anonymous Anonymous
Comment from Lisa Randall
Comment from Anonymous Anonymous
Comment from Emily Metz
Comment from Christopher Dowling
Comment from Anonymous Anonymous
Comment from Gail Fleischaker
Comment from Anonymous Anonymous
Comment from Kym Waugh
Comment from Bridgett Heinly
Comment from Anonymous Anonymous
Comment from Shannon McDermott
Comment from Elizabeth Haskell
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Patrick DAnnunzio
Comment from Dian Weber
Comment from Tammera Hinshaw
Comment from Anonymous Anonymous
Comment from Cheryl Albert
Comment from Scott Powers
Comment from Gloria Picchetti
Comment from Linda O'Donnell
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from James Roberts
Comment from Anonymous Anonymous
Comment from John LaMantia
Comment from Judith Bixby
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Catherine Kowalczyk
Comment from Art Smoker
Comment from Anonymous Anonymous
Comment from ReNae Nowicki
Comment from Anonymous Anonymous
Comment from Amanda collins
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-41708
NOAA-NMFS-2020-0031-DRAFT-41709
NOAA-NMFS-2020-0031-DRAFT-41710
NOAA-NMFS-2020-0031-DRAFT-41711
NOAA-NMFS-2020-0031-DRAFT-41712
NOAA-NMFS-2020-0031-DRAFT-41713
NOAA-NMFS-2020-0031-DRAFT-41714
NOAA-NMFS-2020-0031-DRAFT-41715
NOAA-NMFS-2020-0031-DRAFT-41716
NOAA-NMFS-2020-0031-DRAFT-41717
NOAA-NMFS-2020-0031-DRAFT-41718
NOAA-NMFS-2020-0031-DRAFT-41719
NOAA-NMFS-2020-0031-DRAFT-41720
NOAA-NMFS-2020-0031-DRAFT-41721
NOAA-NMFS-2020-0031-DRAFT-41722
NOAA-NMFS-2020-0031-DRAFT-41723
NOAA-NMFS-2020-0031-DRAFT-41724
NOAA-NMFS-2020-0031-DRAFT-41725
NOAA-NMFS-2020-0031-DRAFT-41726
NOAA-NMFS-2020-0031-DRAFT-41727
NOAA-NMFS-2020-0031-DRAFT-41728
NOAA-NMFS-2020-0031-DRAFT-41729
NOAA-NMFS-2020-0031-DRAFT-41730
NOAA-NMFS-2020-0031-DRAFT-41731
NOAA-NMFS-2020-0031-DRAFT-41732
NOAA-NMFS-2020-0031-DRAFT-41733
NOAA-NMFS-2020-0031-DRAFT-41734
NOAA-NMFS-2020-0031-DRAFT-41735
NOAA-NMFS-2020-0031-DRAFT-41736
NOAA-NMFS-2020-0031-DRAFT-41737
NOAA-NMFS-2020-0031-DRAFT-41738
NOAA-NMFS-2020-0031-DRAFT-41739
NOAA-NMFS-2020-0031-DRAFT-41740
NOAA-NMFS-2020-0031-DRAFT-41741
NOAA-NMFS-2020-0031-DRAFT-41742
NOAA-NMFS-2020-0031-DRAFT-41743
NOAA-NMFS-2020-0031-DRAFT-41744
NOAA-NMFS-2020-0031-DRAFT-41745
NOAA-NMFS-2020-0031-DRAFT-41746
NOAA-NMFS-2020-0031-DRAFT-41747
NOAA-NMFS-2020-0031-DRAFT-41748

Comment from Anonymous Anonymous
Comment from Keeting, William
Comment from Smith, Debra
Comment from D, Andie
Comment from Green, Jason
Comment from Fossa, Wendy
Comment from Gonzalez, kristiin
Comment from Harvey, Sarah
Comment from Koester, Sally
Comment from Steininger, Lorenz
Comment from Canty, Marlynn
Comment from Mccoy, Joan Ellen
Comment from Cooper, RJ
Comment from Goodwin, Charles
Comment from Kerr, Gayle
Comment from Rubel, Sidra
Comment from Kunkel, Margaret
Comment from Anonymous Anonymous
Comment from Loucks II, Jeri
Comment from Debolt, Ann
Comment from Covey, Tim
Comment from claypool, Roberta
Comment from Byron, Randi
Comment from rinear, charles
Comment from Kretmar, Gerald
Comment from Kunkel, Margaret
Comment from Walters, Ernie
Comment from Anonymous Anonymous
Comment from Black, Jason
Comment from Bailie, Janae
Comment from Van Tassell, Robin
Comment from Anonymous Anonymous
Comment from Fleck, Lisa
Comment from Rose, Pat
Comment from Bradley, Barbara
Comment from Espinoza, Susan
Comment from Burch, Lilian
Comment from Anonymous Anonymous
Comment from Kerr, Sandra
Comment from Peterson, Tracey
Comment from Gibbons, Brian

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NOAA-NMFS-2020-0031-DRAFT-46906
NOAA-NMFS-2020-0031-DRAFT-46907
NOAA-NMFS-2020-0031-DRAFT-46908
NOAA-NMFS-2020-0031-DRAFT-46910
NOAA-NMFS-2020-0031-DRAFT-46911
NOAA-NMFS-2020-0031-DRAFT-46912
NOAA-NMFS-2020-0031-DRAFT-46913
NOAA-NMFS-2020-0031-DRAFT-46914
NOAA-NMFS-2020-0031-DRAFT-46915
NOAA-NMFS-2020-0031-DRAFT-46916
NOAA-NMFS-2020-0031-DRAFT-46917
NOAA-NMFS-2020-0031-DRAFT-46918
NOAA-NMFS-2020-0031-DRAFT-46919
NOAA-NMFS-2020-0031-DRAFT-46920
NOAA-NMFS-2020-0031-DRAFT-46921
NOAA-NMFS-2020-0031-DRAFT-46922
NOAA-NMFS-2020-0031-DRAFT-46923
NOAA-NMFS-2020-0031-DRAFT-46924
NOAA-NMFS-2020-0031-DRAFT-46925
NOAA-NMFS-2020-0031-DRAFT-46926
NOAA-NMFS-2020-0031-DRAFT-46927
NOAA-NMFS-2020-0031-DRAFT-46928
NOAA-NMFS-2020-0031-DRAFT-46929
NOAA-NMFS-2020-0031-DRAFT-46930
NOAA-NMFS-2020-0031-DRAFT-46931
NOAA-NMFS-2020-0031-DRAFT-46932
NOAA-NMFS-2020-0031-DRAFT-46933
NOAA-NMFS-2020-0031-DRAFT-46934
NOAA-NMFS-2020-0031-DRAFT-46935
NOAA-NMFS-2020-0031-DRAFT-46936
NOAA-NMFS-2020-0031-DRAFT-46937
NOAA-NMFS-2020-0031-DRAFT-46938
NOAA-NMFS-2020-0031-DRAFT-46939
NOAA-NMFS-2020-0031-DRAFT-46940
NOAA-NMFS-2020-0031-DRAFT-46941
NOAA-NMFS-2020-0031-DRAFT-46942
NOAA-NMFS-2020-0031-DRAFT-46943
NOAA-NMFS-2020-0031-DRAFT-46944
NOAA-NMFS-2020-0031-DRAFT-46945
NOAA-NMFS-2020-0031-DRAFT-46946
NOAA-NMFS-2020-0031-DRAFT-46947

Comment from Anonymous Anonymous
Comment from John Pielemeier
Comment from Tracey Ahring
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from KM Eichhof
Comment from Anonymous Anonymous
Comment from Perry Matlock
Comment from Steve Hess
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Denise Lytle
Comment from Patricia Schmidt
Comment from Dorothee Custer
Comment from Anonymous Anonymous
Comment from Jean Songwinds
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Comment from Anonymous Anonymous
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Comment from Mary Pattison
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Comment from Suzanne Carreker-Voigt
Comment from Sherry Toy
Comment from Wayne Kelly
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Comment from Donna Mastracchio
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Comment from Elza Corrill
Comment from Christine Olsgard
Comment from Anonymous Anonymous
Comment from Sarah Hurd
Comment from Anonymous Anonymous
Comment from Kathryn Choudhury
Comment from Robert Reed
Comment from Anonymous Anonymous
Comment from Lynn Zipse
Comment from Robert Triggs
Comment from Jack Donel

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NOAA-NMFS-2020-0031-DRAFT-41749
NOAA-NMFS-2020-0031-DRAFT-41750
NOAA-NMFS-2020-0031-DRAFT-41751
NOAA-NMFS-2020-0031-DRAFT-41752
NOAA-NMFS-2020-0031-DRAFT-41753
NOAA-NMFS-2020-0031-DRAFT-41754
NOAA-NMFS-2020-0031-DRAFT-41755
NOAA-NMFS-2020-0031-DRAFT-41756
NOAA-NMFS-2020-0031-DRAFT-41757
NOAA-NMFS-2020-0031-DRAFT-41758
NOAA-NMFS-2020-0031-DRAFT-41759
NOAA-NMFS-2020-0031-DRAFT-41760
NOAA-NMFS-2020-0031-DRAFT-41761
NOAA-NMFS-2020-0031-DRAFT-41762
NOAA-NMFS-2020-0031-DRAFT-41763
NOAA-NMFS-2020-0031-DRAFT-41764
NOAA-NMFS-2020-0031-DRAFT-41765
NOAA-NMFS-2020-0031-DRAFT-41766
NOAA-NMFS-2020-0031-DRAFT-41767
NOAA-NMFS-2020-0031-DRAFT-41768
NOAA-NMFS-2020-0031-DRAFT-41769
NOAA-NMFS-2020-0031-DRAFT-41770
NOAA-NMFS-2020-0031-DRAFT-41771
NOAA-NMFS-2020-0031-DRAFT-41772
NOAA-NMFS-2020-0031-DRAFT-41773
NOAA-NMFS-2020-0031-DRAFT-41774
NOAA-NMFS-2020-0031-DRAFT-41775
NOAA-NMFS-2020-0031-DRAFT-41776
NOAA-NMFS-2020-0031-DRAFT-41777
NOAA-NMFS-2020-0031-DRAFT-41778
NOAA-NMFS-2020-0031-DRAFT-41779
NOAA-NMFS-2020-0031-DRAFT-41780
NOAA-NMFS-2020-0031-DRAFT-41781
NOAA-NMFS-2020-0031-DRAFT-41782
NOAA-NMFS-2020-0031-DRAFT-41783
NOAA-NMFS-2020-0031-DRAFT-41784
NOAA-NMFS-2020-0031-DRAFT-41785
NOAA-NMFS-2020-0031-DRAFT-41786
NOAA-NMFS-2020-0031-DRAFT-41787
NOAA-NMFS-2020-0031-DRAFT-41788
NOAA-NMFS-2020-0031-DRAFT-41789

Comment from Brooks, Paul
Comment from Burton, Martha
Comment from Rittenhouse, Calvin
Comment from REED, DONALD
Comment from Henry, Daniel
Comment from Burnash, George
Comment from Wisch, Anita
Comment from Byers, Sherry
Comment from Klass, Naomi
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Comment from Parente, Donna
Comment from Wisch, Anita
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Comment from Neville, Paula
Comment from Haslag, Robert
Comment from Eckberg, Brenda
Comment from Nolte, Gwen
Comment from Benatar-Kotler, Belinda
Comment from Quinn, Pat
Comment from Morgan, Paula

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NOAA-NMFS-2020-0031-DRAFT-46948
NOAA-NMFS-2020-0031-DRAFT-46949
NOAA-NMFS-2020-0031-DRAFT-46950
NOAA-NMFS-2020-0031-DRAFT-46951
NOAA-NMFS-2020-0031-DRAFT-46952
NOAA-NMFS-2020-0031-DRAFT-46953
NOAA-NMFS-2020-0031-DRAFT-46954
NOAA-NMFS-2020-0031-DRAFT-46955
NOAA-NMFS-2020-0031-DRAFT-46956
NOAA-NMFS-2020-0031-DRAFT-46957
NOAA-NMFS-2020-0031-DRAFT-46958
NOAA-NMFS-2020-0031-DRAFT-46959
NOAA-NMFS-2020-0031-DRAFT-46960
NOAA-NMFS-2020-0031-DRAFT-46961
NOAA-NMFS-2020-0031-DRAFT-46962
NOAA-NMFS-2020-0031-DRAFT-46963
NOAA-NMFS-2020-0031-DRAFT-46964
NOAA-NMFS-2020-0031-DRAFT-46965
NOAA-NMFS-2020-0031-DRAFT-46966
NOAA-NMFS-2020-0031-DRAFT-46967
NOAA-NMFS-2020-0031-DRAFT-46968
NOAA-NMFS-2020-0031-DRAFT-46969
NOAA-NMFS-2020-0031-DRAFT-46970
NOAA-NMFS-2020-0031-DRAFT-46971
NOAA-NMFS-2020-0031-DRAFT-46972
NOAA-NMFS-2020-0031-DRAFT-46973
NOAA-NMFS-2020-0031-DRAFT-46974
NOAA-NMFS-2020-0031-DRAFT-46975
NOAA-NMFS-2020-0031-DRAFT-46976
NOAA-NMFS-2020-0031-DRAFT-46977
NOAA-NMFS-2020-0031-DRAFT-46978
NOAA-NMFS-2020-0031-DRAFT-46979
NOAA-NMFS-2020-0031-DRAFT-46980
NOAA-NMFS-2020-0031-DRAFT-46981
NOAA-NMFS-2020-0031-DRAFT-46982
NOAA-NMFS-2020-0031-DRAFT-46983
NOAA-NMFS-2020-0031-DRAFT-46984
NOAA-NMFS-2020-0031-DRAFT-46985
NOAA-NMFS-2020-0031-DRAFT-46986
NOAA-NMFS-2020-0031-DRAFT-46987
NOAA-NMFS-2020-0031-DRAFT-46988

Comment from Dave Lipstreu
Comment from Rema Loeb
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Comment from Evelyn Adams
Comment from Anonymous Anonymous
Comment from Stephanie Fox

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NOAA-NMFS-2020-0031-DRAFT-41790
NOAA-NMFS-2020-0031-DRAFT-41791
NOAA-NMFS-2020-0031-DRAFT-41792
NOAA-NMFS-2020-0031-DRAFT-41793
NOAA-NMFS-2020-0031-DRAFT-41794
NOAA-NMFS-2020-0031-DRAFT-41795
NOAA-NMFS-2020-0031-DRAFT-41796
NOAA-NMFS-2020-0031-DRAFT-41797
NOAA-NMFS-2020-0031-DRAFT-41798
NOAA-NMFS-2020-0031-DRAFT-41799
NOAA-NMFS-2020-0031-DRAFT-41800
NOAA-NMFS-2020-0031-DRAFT-41801
NOAA-NMFS-2020-0031-DRAFT-41802
NOAA-NMFS-2020-0031-DRAFT-41803
NOAA-NMFS-2020-0031-DRAFT-41804
NOAA-NMFS-2020-0031-DRAFT-41805
NOAA-NMFS-2020-0031-DRAFT-41806
NOAA-NMFS-2020-0031-DRAFT-41807
NOAA-NMFS-2020-0031-DRAFT-41808
NOAA-NMFS-2020-0031-DRAFT-41809
NOAA-NMFS-2020-0031-DRAFT-41810
NOAA-NMFS-2020-0031-DRAFT-41811
NOAA-NMFS-2020-0031-DRAFT-41812
NOAA-NMFS-2020-0031-DRAFT-41813
NOAA-NMFS-2020-0031-DRAFT-41814
NOAA-NMFS-2020-0031-DRAFT-41815
NOAA-NMFS-2020-0031-DRAFT-41816
NOAA-NMFS-2020-0031-DRAFT-41817
NOAA-NMFS-2020-0031-DRAFT-41818
NOAA-NMFS-2020-0031-DRAFT-41819
NOAA-NMFS-2020-0031-DRAFT-41820
NOAA-NMFS-2020-0031-DRAFT-41821
NOAA-NMFS-2020-0031-DRAFT-41822
NOAA-NMFS-2020-0031-DRAFT-41823
NOAA-NMFS-2020-0031-DRAFT-41824
NOAA-NMFS-2020-0031-DRAFT-41825
NOAA-NMFS-2020-0031-DRAFT-41826
NOAA-NMFS-2020-0031-DRAFT-41827
NOAA-NMFS-2020-0031-DRAFT-41828
NOAA-NMFS-2020-0031-DRAFT-41829
NOAA-NMFS-2020-0031-DRAFT-41830

Comment from Covello, Sue
Comment from Carroll, Tracy
Comment from Tumia, Sal
Comment from MILLER, HENRY
Comment from Alexander, Jane
Comment from Dickinson-Adams, Emily
Comment from Anonymous Anonymous
Comment from Dolloff, Jacoba
Comment from Wood, Peter
Comment from Richter, Ron
Comment from Shaughnessy, Anna
Comment from cranmer, julia
Comment from Sturt, Pamela
Comment from Andregg, S.
Comment from Meli, Salvatore
Comment from Lowe, Amanda
Comment from Thompson, Don
Comment from Thomas, Tucker
Comment from NYIKES, WILLIAM
Comment from Lewandowski, Michael
Comment from Cyr, Amy
Comment from Dearborn, Carol
Comment from McGuire, Ellie
Comment from Petruccelli, Paul
Comment from Martin, Cathy
Comment from MILLENSIFER, AIMEE
Comment from Carranco, Nora
Comment from Kessler, Roberta
Comment from Frank, Elizabeth
Comment from McGaughey, Susan
Comment from Collins, Belinda
Comment from Fernandez, Jeffrey
Comment from Lampson, John
Comment from Golembeski, Michael
Comment from roy, margo
Comment from Aylard, Adrianna
Comment from Brewer, Amanda
Comment from schnaidt, ann
Comment from Stewart, Karen
Comment from Huttner, Joseph
Comment from Burnash, George

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NOAA-NMFS-2020-0031-DRAFT-46989
NOAA-NMFS-2020-0031-DRAFT-46990
NOAA-NMFS-2020-0031-DRAFT-46991
NOAA-NMFS-2020-0031-DRAFT-46992
NOAA-NMFS-2020-0031-DRAFT-46993
NOAA-NMFS-2020-0031-DRAFT-46994
NOAA-NMFS-2020-0031-DRAFT-46995
NOAA-NMFS-2020-0031-DRAFT-46996
NOAA-NMFS-2020-0031-DRAFT-46997
NOAA-NMFS-2020-0031-DRAFT-46998
NOAA-NMFS-2020-0031-DRAFT-46999
NOAA-NMFS-2020-0031-DRAFT-47001
NOAA-NMFS-2020-0031-DRAFT-47002
NOAA-NMFS-2020-0031-DRAFT-47003
NOAA-NMFS-2020-0031-DRAFT-47004
NOAA-NMFS-2020-0031-DRAFT-47005
NOAA-NMFS-2020-0031-DRAFT-47006
NOAA-NMFS-2020-0031-DRAFT-47007
NOAA-NMFS-2020-0031-DRAFT-47008
NOAA-NMFS-2020-0031-DRAFT-47009
NOAA-NMFS-2020-0031-DRAFT-47010
NOAA-NMFS-2020-0031-DRAFT-47011
NOAA-NMFS-2020-0031-DRAFT-47012
NOAA-NMFS-2020-0031-DRAFT-47013
NOAA-NMFS-2020-0031-DRAFT-47014
NOAA-NMFS-2020-0031-DRAFT-47015
NOAA-NMFS-2020-0031-DRAFT-47016
NOAA-NMFS-2020-0031-DRAFT-47017
NOAA-NMFS-2020-0031-DRAFT-47018
NOAA-NMFS-2020-0031-DRAFT-47019
NOAA-NMFS-2020-0031-DRAFT-47020
NOAA-NMFS-2020-0031-DRAFT-47021
NOAA-NMFS-2020-0031-DRAFT-47022
NOAA-NMFS-2020-0031-DRAFT-47023
NOAA-NMFS-2020-0031-DRAFT-47024
NOAA-NMFS-2020-0031-DRAFT-47025
NOAA-NMFS-2020-0031-DRAFT-47026
NOAA-NMFS-2020-0031-DRAFT-47027
NOAA-NMFS-2020-0031-DRAFT-47028
NOAA-NMFS-2020-0031-DRAFT-47029
NOAA-NMFS-2020-0031-DRAFT-47030

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Deborah Goodman
Comment from Dawn Zegledi
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Robert McFarland
Comment from Toddy Perryman
Comment from Linda Phelan
Comment from Karina Dansie
Comment from Miriam Anderson
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Zoe Athans
Comment from Judy Roland
Comment from Anonymous Anonymous
Comment from Cordale Brown
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Elisse De Sio
Comment from Terry Vaccaro
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from sam beck
Comment from Penny jollimore
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carol Steinhart
Comment from Anonymous Anonymous
Comment from Barb Tokunaga
Comment from Karen Spring
Comment from Judy Cohen
Comment from Janis Sawyer
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Bianca Molgora
Comment from Douglas Paprocki
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41831
NOAA-NMFS-2020-0031-DRAFT-41832
NOAA-NMFS-2020-0031-DRAFT-41833
NOAA-NMFS-2020-0031-DRAFT-41834
NOAA-NMFS-2020-0031-DRAFT-41835
NOAA-NMFS-2020-0031-DRAFT-41836
NOAA-NMFS-2020-0031-DRAFT-41837
NOAA-NMFS-2020-0031-DRAFT-41838
NOAA-NMFS-2020-0031-DRAFT-41839
NOAA-NMFS-2020-0031-DRAFT-41840
NOAA-NMFS-2020-0031-DRAFT-41841
NOAA-NMFS-2020-0031-DRAFT-41842
NOAA-NMFS-2020-0031-DRAFT-41843
NOAA-NMFS-2020-0031-DRAFT-41844
NOAA-NMFS-2020-0031-DRAFT-41845
NOAA-NMFS-2020-0031-DRAFT-41846
NOAA-NMFS-2020-0031-DRAFT-41847
NOAA-NMFS-2020-0031-DRAFT-41848
NOAA-NMFS-2020-0031-DRAFT-41849
NOAA-NMFS-2020-0031-DRAFT-41850
NOAA-NMFS-2020-0031-DRAFT-41851
NOAA-NMFS-2020-0031-DRAFT-41852
NOAA-NMFS-2020-0031-DRAFT-41853
NOAA-NMFS-2020-0031-DRAFT-41854
NOAA-NMFS-2020-0031-DRAFT-41855
NOAA-NMFS-2020-0031-DRAFT-41856
NOAA-NMFS-2020-0031-DRAFT-41857
NOAA-NMFS-2020-0031-DRAFT-41858
NOAA-NMFS-2020-0031-DRAFT-41859
NOAA-NMFS-2020-0031-DRAFT-41860
NOAA-NMFS-2020-0031-DRAFT-41861
NOAA-NMFS-2020-0031-DRAFT-41862
NOAA-NMFS-2020-0031-DRAFT-41863
NOAA-NMFS-2020-0031-DRAFT-41864
NOAA-NMFS-2020-0031-DRAFT-41865
NOAA-NMFS-2020-0031-DRAFT-41866
NOAA-NMFS-2020-0031-DRAFT-41867
NOAA-NMFS-2020-0031-DRAFT-41868
NOAA-NMFS-2020-0031-DRAFT-41869
NOAA-NMFS-2020-0031-DRAFT-41870
NOAA-NMFS-2020-0031-DRAFT-41871

Comment from Kellam, Marcia
Comment from Griffin, Chas
Comment from Kump, Angela
Comment from Anderson, Carolyn
Comment from Borgeson, Dean
Comment from Hruska, T
Comment from McCoubrie, Elise
Comment from Esposito, Dan
Comment from Echo, Jennie
Comment from Steffes, Wayne
Comment from Taylor, Elaine
Comment from Adkins, Patti
Comment from Reagel, Ruth
Comment from Mariano, Susan
Comment from Fleming, Nancy
Comment from Knapp, Virginia
Comment from Ellis, Laurie
Comment from Gabbard, Bill
Comment from Fitzsimmons, Sara
Comment from Anonymous Anonymous
Comment from Gorak, Martha
Comment from Jones, Pat
Comment from Anonymous Anonymous
Comment from Smoller, Merry
Comment from Hayward, Mark
Comment from MacPhail, Kristyn
Comment from Leahy, Katherine
Comment from Whitehurst, Carol
Comment from Devine, Karla
Comment from Griffith, Deborah
Comment from Wright, Linda
Comment from Griffeth, Jackie
Comment from Guilmette, Luette
Comment from Robb, Aaeron
Comment from sloan, elaine
Comment from Gaiefsky, Cheryl
Comment from Anonymous Anonymous
Comment from Dukovich, Karen
Comment from Fleming, Nancy
Comment from Vogel, Linda
Comment from Williams, Catherine

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NOAA-NMFS-2020-0031-DRAFT-47031
NOAA-NMFS-2020-0031-DRAFT-47032
NOAA-NMFS-2020-0031-DRAFT-47033
NOAA-NMFS-2020-0031-DRAFT-47034
NOAA-NMFS-2020-0031-DRAFT-47035
NOAA-NMFS-2020-0031-DRAFT-47036
NOAA-NMFS-2020-0031-DRAFT-47037
NOAA-NMFS-2020-0031-DRAFT-47038
NOAA-NMFS-2020-0031-DRAFT-47039
NOAA-NMFS-2020-0031-DRAFT-47040
NOAA-NMFS-2020-0031-DRAFT-47041
NOAA-NMFS-2020-0031-DRAFT-47042
NOAA-NMFS-2020-0031-DRAFT-47043
NOAA-NMFS-2020-0031-DRAFT-47044
NOAA-NMFS-2020-0031-DRAFT-47045
NOAA-NMFS-2020-0031-DRAFT-47046
NOAA-NMFS-2020-0031-DRAFT-47047
NOAA-NMFS-2020-0031-DRAFT-47048
NOAA-NMFS-2020-0031-DRAFT-47049
NOAA-NMFS-2020-0031-DRAFT-47050
NOAA-NMFS-2020-0031-DRAFT-47051
NOAA-NMFS-2020-0031-DRAFT-47052
NOAA-NMFS-2020-0031-DRAFT-47053
NOAA-NMFS-2020-0031-DRAFT-47054
NOAA-NMFS-2020-0031-DRAFT-47055
NOAA-NMFS-2020-0031-DRAFT-47056
NOAA-NMFS-2020-0031-DRAFT-47057
NOAA-NMFS-2020-0031-DRAFT-47058
NOAA-NMFS-2020-0031-DRAFT-47059
NOAA-NMFS-2020-0031-DRAFT-47060
NOAA-NMFS-2020-0031-DRAFT-47061
NOAA-NMFS-2020-0031-DRAFT-47062
NOAA-NMFS-2020-0031-DRAFT-47063
NOAA-NMFS-2020-0031-DRAFT-47064
NOAA-NMFS-2020-0031-DRAFT-47065
NOAA-NMFS-2020-0031-DRAFT-47066
NOAA-NMFS-2020-0031-DRAFT-47067
NOAA-NMFS-2020-0031-DRAFT-47068
NOAA-NMFS-2020-0031-DRAFT-47069
NOAA-NMFS-2020-0031-DRAFT-47070
NOAA-NMFS-2020-0031-DRAFT-47071

Comment from Diana Zelnio
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from steve Lucas
Comment from Joel Phillips
Comment from Anonymous Anonymous
Comment from Sherri Damiani
Comment from Robyn Sharpe
Comment from Paul Petruccelli
Comment from Dale Drouin
Comment from Anonymous Anonymous
Comment from Elizabeth Wells
Comment from Carol Howell
Comment from Vanassa Lundheim
Comment from Anonymous Anonymous
Comment from Sue Covello
Comment from Rob Seltzer
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Comment from Richard Agee
Comment from Jessica Jakubanis
Comment from Anonymous Anonymous
Comment from Wendy Chrisman
Comment from Tiffany Fodero
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Comment from alexander greenwald
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Comment from Karolyn Beebe
Comment from Debbie Mahder
Comment from Anonymous Anonymous
Comment from Allan Chen
Comment from Penny Chambers
Comment from Ann Allen
Comment from Lynne Firestone
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Peter Hennessy
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-41872
NOAA-NMFS-2020-0031-DRAFT-41873
NOAA-NMFS-2020-0031-DRAFT-41874
NOAA-NMFS-2020-0031-DRAFT-41875
NOAA-NMFS-2020-0031-DRAFT-41876
NOAA-NMFS-2020-0031-DRAFT-41877
NOAA-NMFS-2020-0031-DRAFT-41878
NOAA-NMFS-2020-0031-DRAFT-41879
NOAA-NMFS-2020-0031-DRAFT-41880
NOAA-NMFS-2020-0031-DRAFT-41881
NOAA-NMFS-2020-0031-DRAFT-41882
NOAA-NMFS-2020-0031-DRAFT-41883
NOAA-NMFS-2020-0031-DRAFT-41884
NOAA-NMFS-2020-0031-DRAFT-41885
NOAA-NMFS-2020-0031-DRAFT-41886
NOAA-NMFS-2020-0031-DRAFT-41887
NOAA-NMFS-2020-0031-DRAFT-41888
NOAA-NMFS-2020-0031-DRAFT-41889
NOAA-NMFS-2020-0031-DRAFT-41890
NOAA-NMFS-2020-0031-DRAFT-41891
NOAA-NMFS-2020-0031-DRAFT-41892
NOAA-NMFS-2020-0031-DRAFT-41893
NOAA-NMFS-2020-0031-DRAFT-41894
NOAA-NMFS-2020-0031-DRAFT-41895
NOAA-NMFS-2020-0031-DRAFT-41896
NOAA-NMFS-2020-0031-DRAFT-41897
NOAA-NMFS-2020-0031-DRAFT-41898
NOAA-NMFS-2020-0031-DRAFT-41899
NOAA-NMFS-2020-0031-DRAFT-41900
NOAA-NMFS-2020-0031-DRAFT-41901
NOAA-NMFS-2020-0031-DRAFT-41902
NOAA-NMFS-2020-0031-DRAFT-41903
NOAA-NMFS-2020-0031-DRAFT-41904
NOAA-NMFS-2020-0031-DRAFT-41905
NOAA-NMFS-2020-0031-DRAFT-41906
NOAA-NMFS-2020-0031-DRAFT-41907
NOAA-NMFS-2020-0031-DRAFT-41908
NOAA-NMFS-2020-0031-DRAFT-41909
NOAA-NMFS-2020-0031-DRAFT-41910
NOAA-NMFS-2020-0031-DRAFT-41911
NOAA-NMFS-2020-0031-DRAFT-41912

Comment from Cohen, Wayne
Comment from McNally, Sue
Comment from Gilbert, April
Comment from Gordon, Gail
Comment from Sanford, Ellen
Comment from Lato, Bernadette
Comment from Margulies, Cheryl
Comment from Berman, Steve
Comment from Boltz, Randall
Comment from Straw, Rebecca
Comment from Kondreck, Janine
Comment from Falsetta, Jennifer
Comment from Salerno, Bailey
Comment from Hodges, Connie
Comment from Loomis, Jennifer
Comment from Scott, Carol
Comment from Root, Edith
Comment from Alvarado, Denise
Comment from Theye, Shelley
Comment from Brown, Robert
Comment from Wenzel, Joseph
Comment from Ward, Rosemary
Comment from Pfeiffer, Katherine
Comment from Goscilo, Margaret
Comment from Schloss, Bruno
Comment from landskroner, ron
Comment from Roa, Tania
Comment from Schwartz, Elizabeth
Comment from Fugate, Peggy
Comment from Robertson, Katherine
Comment from poulson, terry
Comment from McGee, Dennis
Comment from Sedon, Douglas
Comment from Anonymous Anonymous
Comment from Barringer, Joyce
Comment from Pierce, Shawn
Comment from Kaplan, Eliot
Comment from Salerno, Bailey
Comment from Wright, Patti
Comment from Van Alstyne, Anne
Comment from O'Rourke, Melissa

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NOAA-NMFS-2020-0031-DRAFT-47072
NOAA-NMFS-2020-0031-DRAFT-47073
NOAA-NMFS-2020-0031-DRAFT-47074
NOAA-NMFS-2020-0031-DRAFT-47075
NOAA-NMFS-2020-0031-DRAFT-47076
NOAA-NMFS-2020-0031-DRAFT-47077
NOAA-NMFS-2020-0031-DRAFT-47078
NOAA-NMFS-2020-0031-DRAFT-47079
NOAA-NMFS-2020-0031-DRAFT-47080
NOAA-NMFS-2020-0031-DRAFT-47081
NOAA-NMFS-2020-0031-DRAFT-47082
NOAA-NMFS-2020-0031-DRAFT-47083
NOAA-NMFS-2020-0031-DRAFT-47084
NOAA-NMFS-2020-0031-DRAFT-47085
NOAA-NMFS-2020-0031-DRAFT-47086
NOAA-NMFS-2020-0031-DRAFT-47087
NOAA-NMFS-2020-0031-DRAFT-47088
NOAA-NMFS-2020-0031-DRAFT-47089
NOAA-NMFS-2020-0031-DRAFT-47090
NOAA-NMFS-2020-0031-DRAFT-47091
NOAA-NMFS-2020-0031-DRAFT-47092
NOAA-NMFS-2020-0031-DRAFT-47093
NOAA-NMFS-2020-0031-DRAFT-47094
NOAA-NMFS-2020-0031-DRAFT-47095
NOAA-NMFS-2020-0031-DRAFT-47096
NOAA-NMFS-2020-0031-DRAFT-47097
NOAA-NMFS-2020-0031-DRAFT-47098
NOAA-NMFS-2020-0031-DRAFT-47099
NOAA-NMFS-2020-0031-DRAFT-47100
NOAA-NMFS-2020-0031-DRAFT-47101
NOAA-NMFS-2020-0031-DRAFT-47102
NOAA-NMFS-2020-0031-DRAFT-47103
NOAA-NMFS-2020-0031-DRAFT-47104
NOAA-NMFS-2020-0031-DRAFT-47105
NOAA-NMFS-2020-0031-DRAFT-47106
NOAA-NMFS-2020-0031-DRAFT-47107
NOAA-NMFS-2020-0031-DRAFT-47108
NOAA-NMFS-2020-0031-DRAFT-47109
NOAA-NMFS-2020-0031-DRAFT-47110
NOAA-NMFS-2020-0031-DRAFT-47111
NOAA-NMFS-2020-0031-DRAFT-47112

Comment from Karol Klein
Comment from Amber Manske
Comment from Caryl Speck
Comment from Debora Stalego
Comment from Norma Rouser
Comment from Michael Moran
Comment from Anonymous Anonymous
Comment from Sasha Kirby
Comment from Maureen Schiener
Comment from Joseph Kosuda
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Comment from Susan O'Rourke
Comment from Nancy Lewis
Comment from Jonathan Nash
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Comment from Jennifer Adams
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Comment from Beatriz Baldan
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Comment from Andre Meaux
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Comment from Stanley Wine
Comment from Janet Tice
Comment from Nancy Panetta
Comment from Deborah Lynch
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NOAA-NMFS-2020-0031-DRAFT-41913
NOAA-NMFS-2020-0031-DRAFT-41914
NOAA-NMFS-2020-0031-DRAFT-41915
NOAA-NMFS-2020-0031-DRAFT-41916
NOAA-NMFS-2020-0031-DRAFT-41917
NOAA-NMFS-2020-0031-DRAFT-41918
NOAA-NMFS-2020-0031-DRAFT-41919
NOAA-NMFS-2020-0031-DRAFT-41920
NOAA-NMFS-2020-0031-DRAFT-41921
NOAA-NMFS-2020-0031-DRAFT-41922
NOAA-NMFS-2020-0031-DRAFT-41923
NOAA-NMFS-2020-0031-DRAFT-41924
NOAA-NMFS-2020-0031-DRAFT-41925
NOAA-NMFS-2020-0031-DRAFT-41926
NOAA-NMFS-2020-0031-DRAFT-41927
NOAA-NMFS-2020-0031-DRAFT-41928
NOAA-NMFS-2020-0031-DRAFT-41929
NOAA-NMFS-2020-0031-DRAFT-41930
NOAA-NMFS-2020-0031-DRAFT-41931
NOAA-NMFS-2020-0031-DRAFT-41932
NOAA-NMFS-2020-0031-DRAFT-41933
NOAA-NMFS-2020-0031-DRAFT-41934
NOAA-NMFS-2020-0031-DRAFT-41935
NOAA-NMFS-2020-0031-DRAFT-41936
NOAA-NMFS-2020-0031-DRAFT-41937
NOAA-NMFS-2020-0031-DRAFT-41938
NOAA-NMFS-2020-0031-DRAFT-41939
NOAA-NMFS-2020-0031-DRAFT-41940
NOAA-NMFS-2020-0031-DRAFT-41941
NOAA-NMFS-2020-0031-DRAFT-41942
NOAA-NMFS-2020-0031-DRAFT-41943
NOAA-NMFS-2020-0031-DRAFT-41944
NOAA-NMFS-2020-0031-DRAFT-41945
NOAA-NMFS-2020-0031-DRAFT-41946
NOAA-NMFS-2020-0031-DRAFT-41947
NOAA-NMFS-2020-0031-DRAFT-41948
NOAA-NMFS-2020-0031-DRAFT-41949
NOAA-NMFS-2020-0031-DRAFT-41950
NOAA-NMFS-2020-0031-DRAFT-41951
NOAA-NMFS-2020-0031-DRAFT-41952
NOAA-NMFS-2020-0031-DRAFT-41953

Comment from Vreeland, Mollie
Comment from Niese, Patrick
Comment from Miller, Susan
Comment from Mangus, Tracey
Comment from Trea, Connie
Comment from levin, cathyelizabeth
Comment from Watson, Bonnie
Comment from Eckstein, Susan
Comment from Whelan, Maria
Comment from Hersey, Jane
Comment from Krucoff, Rachel
Comment from Kiriaty, Susanne
Comment from Scherpenisse, Carol
Comment from Stavis, Alex
Comment from Vallejos, James
Comment from Cregger-Marshall,
Katherine
Comment from Travis, Barb
Comment from Davis, Timothy
Comment from Wilbourn, Pam
Comment from Johnson, Carol
Comment from Anonymous Anonymous
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Comment from Schmidt, Cara
Comment from Fugate, Deborah
Comment from LAROCHELLE, JOHN
Comment from Anonymous Anonymous
Comment from Mills, Jacqueline
Comment from Sugarman, Stevie
Comment from Pham, Duyen
Comment from Traniello, Francine
Comment from Davidheiser, Donna
Comment from Payne, Geneine
Comment from Steadmon, Jason
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Comment from Lockwood, C S
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NOAA-NMFS-2020-0031-DRAFT-47113
NOAA-NMFS-2020-0031-DRAFT-47114
NOAA-NMFS-2020-0031-DRAFT-47115
NOAA-NMFS-2020-0031-DRAFT-47116
NOAA-NMFS-2020-0031-DRAFT-47117
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NOAA-NMFS-2020-0031-DRAFT-47120
NOAA-NMFS-2020-0031-DRAFT-47121
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NOAA-NMFS-2020-0031-DRAFT-47123
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NOAA-NMFS-2020-0031-DRAFT-47129
NOAA-NMFS-2020-0031-DRAFT-47130
NOAA-NMFS-2020-0031-DRAFT-47131
NOAA-NMFS-2020-0031-DRAFT-47132
NOAA-NMFS-2020-0031-DRAFT-47133
NOAA-NMFS-2020-0031-DRAFT-47134
NOAA-NMFS-2020-0031-DRAFT-47135
NOAA-NMFS-2020-0031-DRAFT-47136
NOAA-NMFS-2020-0031-DRAFT-47137
NOAA-NMFS-2020-0031-DRAFT-47138
NOAA-NMFS-2020-0031-DRAFT-47139
NOAA-NMFS-2020-0031-DRAFT-47140
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NOAA-NMFS-2020-0031-DRAFT-47144
NOAA-NMFS-2020-0031-DRAFT-47145
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NOAA-NMFS-2020-0031-DRAFT-47149
NOAA-NMFS-2020-0031-DRAFT-47150
NOAA-NMFS-2020-0031-DRAFT-47151
NOAA-NMFS-2020-0031-DRAFT-47152
NOAA-NMFS-2020-0031-DRAFT-47153
NOAA-NMFS-2020-0031-DRAFT-47154

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-41954
NOAA-NMFS-2020-0031-DRAFT-41955
NOAA-NMFS-2020-0031-DRAFT-41956
NOAA-NMFS-2020-0031-DRAFT-41957
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NOAA-NMFS-2020-0031-DRAFT-41972
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NOAA-NMFS-2020-0031-DRAFT-41974
NOAA-NMFS-2020-0031-DRAFT-41975
NOAA-NMFS-2020-0031-DRAFT-41976
NOAA-NMFS-2020-0031-DRAFT-41977
NOAA-NMFS-2020-0031-DRAFT-41978
NOAA-NMFS-2020-0031-DRAFT-41979
NOAA-NMFS-2020-0031-DRAFT-41980
NOAA-NMFS-2020-0031-DRAFT-41981
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NOAA-NMFS-2020-0031-DRAFT-41986
NOAA-NMFS-2020-0031-DRAFT-41987
NOAA-NMFS-2020-0031-DRAFT-41988
NOAA-NMFS-2020-0031-DRAFT-41989
NOAA-NMFS-2020-0031-DRAFT-41990
NOAA-NMFS-2020-0031-DRAFT-41991
NOAA-NMFS-2020-0031-DRAFT-41992
NOAA-NMFS-2020-0031-DRAFT-41993
NOAA-NMFS-2020-0031-DRAFT-41994

Comment from Taylor, Karla
Comment from capurro, lyn
Comment from Feokhari, Anton
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NOAA-NMFS-2020-0031-DRAFT-47155
NOAA-NMFS-2020-0031-DRAFT-47156
NOAA-NMFS-2020-0031-DRAFT-47157
NOAA-NMFS-2020-0031-DRAFT-47158
NOAA-NMFS-2020-0031-DRAFT-47159
NOAA-NMFS-2020-0031-DRAFT-47160
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NOAA-NMFS-2020-0031-DRAFT-47162
NOAA-NMFS-2020-0031-DRAFT-47163
NOAA-NMFS-2020-0031-DRAFT-47164
NOAA-NMFS-2020-0031-DRAFT-47165
NOAA-NMFS-2020-0031-DRAFT-47166
NOAA-NMFS-2020-0031-DRAFT-47167
NOAA-NMFS-2020-0031-DRAFT-47168
NOAA-NMFS-2020-0031-DRAFT-47169
NOAA-NMFS-2020-0031-DRAFT-47170
NOAA-NMFS-2020-0031-DRAFT-47171
NOAA-NMFS-2020-0031-DRAFT-47172
NOAA-NMFS-2020-0031-DRAFT-47173
NOAA-NMFS-2020-0031-DRAFT-47174
NOAA-NMFS-2020-0031-DRAFT-47175
NOAA-NMFS-2020-0031-DRAFT-47176
NOAA-NMFS-2020-0031-DRAFT-47178
NOAA-NMFS-2020-0031-DRAFT-47179
NOAA-NMFS-2020-0031-DRAFT-47180
NOAA-NMFS-2020-0031-DRAFT-47181
NOAA-NMFS-2020-0031-DRAFT-47182
NOAA-NMFS-2020-0031-DRAFT-47183
NOAA-NMFS-2020-0031-DRAFT-47184
NOAA-NMFS-2020-0031-DRAFT-47185
NOAA-NMFS-2020-0031-DRAFT-47186
NOAA-NMFS-2020-0031-DRAFT-47187
NOAA-NMFS-2020-0031-DRAFT-47188
NOAA-NMFS-2020-0031-DRAFT-47189
NOAA-NMFS-2020-0031-DRAFT-47190
NOAA-NMFS-2020-0031-DRAFT-47191
NOAA-NMFS-2020-0031-DRAFT-47192
NOAA-NMFS-2020-0031-DRAFT-47193
NOAA-NMFS-2020-0031-DRAFT-47194
NOAA-NMFS-2020-0031-DRAFT-47195
NOAA-NMFS-2020-0031-DRAFT-47196

Comment from Roach, Teresa
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NOAA-NMFS-2020-0031-DRAFT-41995
NOAA-NMFS-2020-0031-DRAFT-41996
NOAA-NMFS-2020-0031-DRAFT-41997
NOAA-NMFS-2020-0031-DRAFT-41998
NOAA-NMFS-2020-0031-DRAFT-41999
NOAA-NMFS-2020-0031-DRAFT-42000
NOAA-NMFS-2020-0031-DRAFT-42001
NOAA-NMFS-2020-0031-DRAFT-42002
NOAA-NMFS-2020-0031-DRAFT-42003
NOAA-NMFS-2020-0031-DRAFT-42004
NOAA-NMFS-2020-0031-DRAFT-42005
NOAA-NMFS-2020-0031-DRAFT-42006
NOAA-NMFS-2020-0031-DRAFT-42007
NOAA-NMFS-2020-0031-DRAFT-42008
NOAA-NMFS-2020-0031-DRAFT-42009
NOAA-NMFS-2020-0031-DRAFT-42010
NOAA-NMFS-2020-0031-DRAFT-42011
NOAA-NMFS-2020-0031-DRAFT-42012
NOAA-NMFS-2020-0031-DRAFT-42013
NOAA-NMFS-2020-0031-DRAFT-42014
NOAA-NMFS-2020-0031-DRAFT-42015
NOAA-NMFS-2020-0031-DRAFT-42016
NOAA-NMFS-2020-0031-DRAFT-42017
NOAA-NMFS-2020-0031-DRAFT-42018
NOAA-NMFS-2020-0031-DRAFT-42019
NOAA-NMFS-2020-0031-DRAFT-42020
NOAA-NMFS-2020-0031-DRAFT-42021
NOAA-NMFS-2020-0031-DRAFT-42022
NOAA-NMFS-2020-0031-DRAFT-42023
NOAA-NMFS-2020-0031-DRAFT-42024
NOAA-NMFS-2020-0031-DRAFT-42025
NOAA-NMFS-2020-0031-DRAFT-42026
NOAA-NMFS-2020-0031-DRAFT-42027
NOAA-NMFS-2020-0031-DRAFT-42028
NOAA-NMFS-2020-0031-DRAFT-42029
NOAA-NMFS-2020-0031-DRAFT-42030
NOAA-NMFS-2020-0031-DRAFT-42031
NOAA-NMFS-2020-0031-DRAFT-42032
NOAA-NMFS-2020-0031-DRAFT-42033
NOAA-NMFS-2020-0031-DRAFT-42034
NOAA-NMFS-2020-0031-DRAFT-42035

Comment from devinney, claudia
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Comment from Wushensky, Sharon

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NOAA-NMFS-2020-0031-DRAFT-47197
NOAA-NMFS-2020-0031-DRAFT-47198
NOAA-NMFS-2020-0031-DRAFT-47199
NOAA-NMFS-2020-0031-DRAFT-47200
NOAA-NMFS-2020-0031-DRAFT-47201
NOAA-NMFS-2020-0031-DRAFT-47202
NOAA-NMFS-2020-0031-DRAFT-47203
NOAA-NMFS-2020-0031-DRAFT-47204
NOAA-NMFS-2020-0031-DRAFT-47205
NOAA-NMFS-2020-0031-DRAFT-47206
NOAA-NMFS-2020-0031-DRAFT-47207
NOAA-NMFS-2020-0031-DRAFT-47208
NOAA-NMFS-2020-0031-DRAFT-47209
NOAA-NMFS-2020-0031-DRAFT-47210
NOAA-NMFS-2020-0031-DRAFT-47211
NOAA-NMFS-2020-0031-DRAFT-47212
NOAA-NMFS-2020-0031-DRAFT-47213
NOAA-NMFS-2020-0031-DRAFT-47214
NOAA-NMFS-2020-0031-DRAFT-47215
NOAA-NMFS-2020-0031-DRAFT-47216
NOAA-NMFS-2020-0031-DRAFT-47217
NOAA-NMFS-2020-0031-DRAFT-47218
NOAA-NMFS-2020-0031-DRAFT-47219
NOAA-NMFS-2020-0031-DRAFT-47220
NOAA-NMFS-2020-0031-DRAFT-47221
NOAA-NMFS-2020-0031-DRAFT-47222
NOAA-NMFS-2020-0031-DRAFT-47223
NOAA-NMFS-2020-0031-DRAFT-47224
NOAA-NMFS-2020-0031-DRAFT-47225
NOAA-NMFS-2020-0031-DRAFT-47226
NOAA-NMFS-2020-0031-DRAFT-47227
NOAA-NMFS-2020-0031-DRAFT-47228
NOAA-NMFS-2020-0031-DRAFT-47229
NOAA-NMFS-2020-0031-DRAFT-47230
NOAA-NMFS-2020-0031-DRAFT-47231
NOAA-NMFS-2020-0031-DRAFT-47232
NOAA-NMFS-2020-0031-DRAFT-47233
NOAA-NMFS-2020-0031-DRAFT-47234
NOAA-NMFS-2020-0031-DRAFT-47235
NOAA-NMFS-2020-0031-DRAFT-47236
NOAA-NMFS-2020-0031-DRAFT-47237

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Comment from Anonymous Anonymous
Comment from Davis, Kari
Comment from Anonymous Anonymous
Comment from Willson, Christine
Comment from Lyda Stillwell
Comment from Anonymous Anonymous
Comment from Bret Polish
Comment from carolyn massey
Comment from Beatrice Long
Comment from Sommers, Megan
Comment from Martha Swartz
Comment from Anonymous Anonymous
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Comment from Rita Mullis
Comment from Jody Vollmer
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NOAA-NMFS-2020-0031-DRAFT-42036
NOAA-NMFS-2020-0031-DRAFT-42037
NOAA-NMFS-2020-0031-DRAFT-42038
NOAA-NMFS-2020-0031-DRAFT-42039
NOAA-NMFS-2020-0031-DRAFT-42040
NOAA-NMFS-2020-0031-DRAFT-42041
NOAA-NMFS-2020-0031-DRAFT-42042
NOAA-NMFS-2020-0031-DRAFT-42043
NOAA-NMFS-2020-0031-DRAFT-42044
NOAA-NMFS-2020-0031-DRAFT-42045
NOAA-NMFS-2020-0031-DRAFT-42046
NOAA-NMFS-2020-0031-DRAFT-42047
NOAA-NMFS-2020-0031-DRAFT-42048
NOAA-NMFS-2020-0031-DRAFT-42049
NOAA-NMFS-2020-0031-DRAFT-42050
NOAA-NMFS-2020-0031-DRAFT-42051
NOAA-NMFS-2020-0031-DRAFT-42052
NOAA-NMFS-2020-0031-DRAFT-42053
NOAA-NMFS-2020-0031-DRAFT-42054
NOAA-NMFS-2020-0031-DRAFT-42055
NOAA-NMFS-2020-0031-DRAFT-42056
NOAA-NMFS-2020-0031-DRAFT-42057
NOAA-NMFS-2020-0031-DRAFT-42058
NOAA-NMFS-2020-0031-DRAFT-42059
NOAA-NMFS-2020-0031-DRAFT-42060
NOAA-NMFS-2020-0031-DRAFT-42061
NOAA-NMFS-2020-0031-DRAFT-42062
NOAA-NMFS-2020-0031-DRAFT-42063
NOAA-NMFS-2020-0031-DRAFT-42064
NOAA-NMFS-2020-0031-DRAFT-42065
NOAA-NMFS-2020-0031-DRAFT-42066
NOAA-NMFS-2020-0031-DRAFT-42067
NOAA-NMFS-2020-0031-DRAFT-42068
NOAA-NMFS-2020-0031-DRAFT-42069
NOAA-NMFS-2020-0031-DRAFT-42070
NOAA-NMFS-2020-0031-DRAFT-42071
NOAA-NMFS-2020-0031-DRAFT-42072
NOAA-NMFS-2020-0031-DRAFT-42073
NOAA-NMFS-2020-0031-DRAFT-42074
NOAA-NMFS-2020-0031-DRAFT-42075
NOAA-NMFS-2020-0031-DRAFT-42076

Comment from Leavitt, Donna
Comment from Skelton, Julia
Comment from Burger, Bitsa
Comment from Spradlin, Karen
Comment from Campbell, Donna
Comment from Harper, Barbara
Comment from Slocum, Katherine
Comment from Eisenberg, Paul
Comment from Choudhury, Syeda
Comment from Robinson, Jeanne
Comment from Steponaitis, John
Comment from Wells, Lasha
Comment from gillono, mark
Comment from Carstarphen, Kristin
Comment from Neiman, Jordan
Comment from galdo, joe
Comment from Marcozzi, Brad
Comment from Price, Judy
Comment from Spitz, Danielle
Comment from Benge, Laura
Comment from gallanosa, kristin
Comment from Gordon, Scott
Comment from Graham, Amanda
Comment from Richmond, Chey
Comment from maxfield, casee
Comment from Miller, Libba
Comment from Sheeler, Pam
Comment from Ernst, Cathie
Comment from Anonymous Anonymous
Comment from McCreary, Jan
Comment from Bevilaqua, Deborah
Comment from Obrien, Gina
Comment from Smith, Deidra
Comment from Hughes, Bonnie
Comment from Lukaszewicz, Anna
Comment from Sherman, J.P.
Comment from burkard, tracy
Comment from Roberts, Judith
Comment from Schmittauer, John
Comment from Jacob, Ron
Comment from Ellison, Cori

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NOAA-NMFS-2020-0031-DRAFT-47238
NOAA-NMFS-2020-0031-DRAFT-47239
NOAA-NMFS-2020-0031-DRAFT-47240
NOAA-NMFS-2020-0031-DRAFT-47241
NOAA-NMFS-2020-0031-DRAFT-47242
NOAA-NMFS-2020-0031-DRAFT-47243
NOAA-NMFS-2020-0031-DRAFT-47244
NOAA-NMFS-2020-0031-DRAFT-47245
NOAA-NMFS-2020-0031-DRAFT-47246
NOAA-NMFS-2020-0031-DRAFT-47247
NOAA-NMFS-2020-0031-DRAFT-47248
NOAA-NMFS-2020-0031-DRAFT-47249
NOAA-NMFS-2020-0031-DRAFT-47250
NOAA-NMFS-2020-0031-DRAFT-47251
NOAA-NMFS-2020-0031-DRAFT-47252
NOAA-NMFS-2020-0031-DRAFT-47253
NOAA-NMFS-2020-0031-DRAFT-47254
NOAA-NMFS-2020-0031-DRAFT-47255
NOAA-NMFS-2020-0031-DRAFT-47256
NOAA-NMFS-2020-0031-DRAFT-47257
NOAA-NMFS-2020-0031-DRAFT-47258
NOAA-NMFS-2020-0031-DRAFT-47259
NOAA-NMFS-2020-0031-DRAFT-47260
NOAA-NMFS-2020-0031-DRAFT-47261
NOAA-NMFS-2020-0031-DRAFT-47262
NOAA-NMFS-2020-0031-DRAFT-47263
NOAA-NMFS-2020-0031-DRAFT-47264
NOAA-NMFS-2020-0031-DRAFT-47265
NOAA-NMFS-2020-0031-DRAFT-47266
NOAA-NMFS-2020-0031-DRAFT-47267
NOAA-NMFS-2020-0031-DRAFT-47268
NOAA-NMFS-2020-0031-DRAFT-47269
NOAA-NMFS-2020-0031-DRAFT-47270
NOAA-NMFS-2020-0031-DRAFT-47271
NOAA-NMFS-2020-0031-DRAFT-47272
NOAA-NMFS-2020-0031-DRAFT-47273
NOAA-NMFS-2020-0031-DRAFT-47274
NOAA-NMFS-2020-0031-DRAFT-47275
NOAA-NMFS-2020-0031-DRAFT-47276
NOAA-NMFS-2020-0031-DRAFT-47277
NOAA-NMFS-2020-0031-DRAFT-47278

Comment from Nadine LaVonne
Comment from Kris Gata
Comment from Ilene Thompson
Comment from George Perla
Comment from Wendy Chrisman
Comment from Rosanne Tedesco
Comment from Paula Lozar
Comment from Dirk Rogers
Comment from Li Fran
Comment from Dr Smith
Comment from Mark Gowan
Comment from Carla Norton
Comment from Donna Alleyne-Chin
Comment from Margaret Hunt
Comment from Rita Boone
Comment from Adriene Barmann
Comment from Anonymous Anonymous
Comment from Surya-Patricia Hood
Comment from Stanley Stockman
Comment from Lina Palacios
Comment from Larry Birchmeyer
Comment from Wendy Jordan
Comment from QUIDA JACOBS
Comment from Jessica Weber
Comment from Robin Finley
Comment from Anonymous Anonymous
Comment from Diane Dillabough
Comment from Frann Spiess
Comment from Chelsea Hirtzel
Comment from Iwanski, Sandy
Comment from Nina French
Comment from Annie Carpenter
Comment from Shanna B
Comment from Cathy Becker
Comment from Anonymous Anonymous
Comment from Gail Larkin
Comment from Rick Romito
Comment from Michelle Wilson
Comment from Karen Fabiane
Comment from Mary Ellis
Comment from Linda Wood

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NOAA-NMFS-2020-0031-DRAFT-42077
NOAA-NMFS-2020-0031-DRAFT-42078
NOAA-NMFS-2020-0031-DRAFT-42079
NOAA-NMFS-2020-0031-DRAFT-42080
NOAA-NMFS-2020-0031-DRAFT-42081
NOAA-NMFS-2020-0031-DRAFT-42082
NOAA-NMFS-2020-0031-DRAFT-42083
NOAA-NMFS-2020-0031-DRAFT-42084
NOAA-NMFS-2020-0031-DRAFT-42085
NOAA-NMFS-2020-0031-DRAFT-42086
NOAA-NMFS-2020-0031-DRAFT-42087
NOAA-NMFS-2020-0031-DRAFT-42088
NOAA-NMFS-2020-0031-DRAFT-42089
NOAA-NMFS-2020-0031-DRAFT-42090
NOAA-NMFS-2020-0031-DRAFT-42091
NOAA-NMFS-2020-0031-DRAFT-42092
NOAA-NMFS-2020-0031-DRAFT-42093
NOAA-NMFS-2020-0031-DRAFT-42094
NOAA-NMFS-2020-0031-DRAFT-42095
NOAA-NMFS-2020-0031-DRAFT-42096
NOAA-NMFS-2020-0031-DRAFT-42097
NOAA-NMFS-2020-0031-DRAFT-42098
NOAA-NMFS-2020-0031-DRAFT-42099
NOAA-NMFS-2020-0031-DRAFT-42100
NOAA-NMFS-2020-0031-DRAFT-42101
NOAA-NMFS-2020-0031-DRAFT-42102
NOAA-NMFS-2020-0031-DRAFT-42103
NOAA-NMFS-2020-0031-DRAFT-42104
NOAA-NMFS-2020-0031-DRAFT-42105
NOAA-NMFS-2020-0031-DRAFT-42106
NOAA-NMFS-2020-0031-DRAFT-42107
NOAA-NMFS-2020-0031-DRAFT-42108
NOAA-NMFS-2020-0031-DRAFT-42109
NOAA-NMFS-2020-0031-DRAFT-42110
NOAA-NMFS-2020-0031-DRAFT-42111
NOAA-NMFS-2020-0031-DRAFT-42112
NOAA-NMFS-2020-0031-DRAFT-42113
NOAA-NMFS-2020-0031-DRAFT-42114
NOAA-NMFS-2020-0031-DRAFT-42115
NOAA-NMFS-2020-0031-DRAFT-42116
NOAA-NMFS-2020-0031-DRAFT-42117

Comment from Anonymous Anonymous
Comment from Wolf, Danielle
Comment from Brennan, Kari
Comment from reissen, gail
Comment from Anonymous Anonymous
Comment from Woods, Margaret
Comment from Magee, John
Comment from Vayda, Karen
Comment from hayward, Louise
Comment from Taylor, Jane
Comment from sturino, angelo
Comment from Coffey, Seth
Comment from McMurray, Britt
Comment from kohnken, pam
Comment from Norvell, Chelsea
Comment from Long, Paula
Comment from ogorzaly, jean
Comment from Burpo, Leslie
Comment from Fexis, Deborah
Comment from Rogers, Dana
Comment from Reisland, Melissa
Comment from Caiazzo, Joan
Comment from Lancia, Debra
Comment from Regalado, Geoff
Comment from Calderone, Diana
Comment from Cox, Nanci
Comment from Millar, Linda
Comment from Yu, Katie
Comment from Anonymous Anonymous
Comment from Mansfield, Mark
Comment from Madigan, Sally
Comment from Phillips, Theresa
Comment from Wright MD, Rhonda D.
Comment from Johnson, Nancy
Comment from Reynolds, Jeff
Comment from Whittle, Alexander
Comment from Van Every, Kathleen
Comment from Williams, Judy
Comment from Anonymous Anonymous
Comment from Gutfleisch, Ellen
Comment from D, K

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NOAA-NMFS-2020-0031-DRAFT-47279
NOAA-NMFS-2020-0031-DRAFT-47280
NOAA-NMFS-2020-0031-DRAFT-47281
NOAA-NMFS-2020-0031-DRAFT-47282
NOAA-NMFS-2020-0031-DRAFT-47283
NOAA-NMFS-2020-0031-DRAFT-47284
NOAA-NMFS-2020-0031-DRAFT-47285
NOAA-NMFS-2020-0031-DRAFT-47286
NOAA-NMFS-2020-0031-DRAFT-47287
NOAA-NMFS-2020-0031-DRAFT-47288
NOAA-NMFS-2020-0031-DRAFT-47289
NOAA-NMFS-2020-0031-DRAFT-47290
NOAA-NMFS-2020-0031-DRAFT-47291
NOAA-NMFS-2020-0031-DRAFT-47292
NOAA-NMFS-2020-0031-DRAFT-47293
NOAA-NMFS-2020-0031-DRAFT-47294
NOAA-NMFS-2020-0031-DRAFT-47295
NOAA-NMFS-2020-0031-DRAFT-47296
NOAA-NMFS-2020-0031-DRAFT-47297
NOAA-NMFS-2020-0031-DRAFT-47298
NOAA-NMFS-2020-0031-DRAFT-47299
NOAA-NMFS-2020-0031-DRAFT-47300
NOAA-NMFS-2020-0031-DRAFT-47301
NOAA-NMFS-2020-0031-DRAFT-47302
NOAA-NMFS-2020-0031-DRAFT-47303
NOAA-NMFS-2020-0031-DRAFT-47304
NOAA-NMFS-2020-0031-DRAFT-47305
NOAA-NMFS-2020-0031-DRAFT-47306
NOAA-NMFS-2020-0031-DRAFT-47307
NOAA-NMFS-2020-0031-DRAFT-47308
NOAA-NMFS-2020-0031-DRAFT-47309
NOAA-NMFS-2020-0031-DRAFT-47310
NOAA-NMFS-2020-0031-DRAFT-47311
NOAA-NMFS-2020-0031-DRAFT-47312
NOAA-NMFS-2020-0031-DRAFT-47313
NOAA-NMFS-2020-0031-DRAFT-47314
NOAA-NMFS-2020-0031-DRAFT-47315
NOAA-NMFS-2020-0031-DRAFT-47316
NOAA-NMFS-2020-0031-DRAFT-47317
NOAA-NMFS-2020-0031-DRAFT-47318
NOAA-NMFS-2020-0031-DRAFT-47319

Comment from Anonymous Anonymous
Comment from Christen King
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kirk, Timothy
Comment from Mary Danton
Comment from Anonymous Anonymous
Comment from terrulli, anthony
Comment from Stephanie Mory
Comment from Anonymous Anonymous
Comment from Cheryl Twaddell
Comment from Anonymous Anonymous
Comment from Lynda Asher
Comment from Wilson, Patricia
Comment from Dave Berkenbush
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Craig, Patrick
Comment from Anonymous Anonymous
Comment from Richard Crosland
Comment from Anonymous Anonymous
Comment from Mike Livermore
Comment from Anonymous Anonymous
Comment from Chrystine Black
Comment from Rebecca Keaton
Comment from Anonymous Anonymous
Comment from Morgan, Paula
Comment from Michael Hall
Comment from Juan menendez
Comment from RICHARD CARP
Comment from Max Barack
Comment from John Sonin
Comment from RAMOS, NATALIE
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from MS Tomasello
Comment from Anonymous Anonymous
Comment from Jamie Klem
Comment from mcafee, nico

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NOAA-NMFS-2020-0031-DRAFT-42118
NOAA-NMFS-2020-0031-DRAFT-42119
NOAA-NMFS-2020-0031-DRAFT-42120
NOAA-NMFS-2020-0031-DRAFT-42121
NOAA-NMFS-2020-0031-DRAFT-42122
NOAA-NMFS-2020-0031-DRAFT-42123
NOAA-NMFS-2020-0031-DRAFT-42124
NOAA-NMFS-2020-0031-DRAFT-42125
NOAA-NMFS-2020-0031-DRAFT-42126
NOAA-NMFS-2020-0031-DRAFT-42127
NOAA-NMFS-2020-0031-DRAFT-42128
NOAA-NMFS-2020-0031-DRAFT-42129
NOAA-NMFS-2020-0031-DRAFT-42130
NOAA-NMFS-2020-0031-DRAFT-42131
NOAA-NMFS-2020-0031-DRAFT-42132
NOAA-NMFS-2020-0031-DRAFT-42133
NOAA-NMFS-2020-0031-DRAFT-42134
NOAA-NMFS-2020-0031-DRAFT-42135
NOAA-NMFS-2020-0031-DRAFT-42136
NOAA-NMFS-2020-0031-DRAFT-42137
NOAA-NMFS-2020-0031-DRAFT-42138
NOAA-NMFS-2020-0031-DRAFT-42139
NOAA-NMFS-2020-0031-DRAFT-42140
NOAA-NMFS-2020-0031-DRAFT-42141
NOAA-NMFS-2020-0031-DRAFT-42142
NOAA-NMFS-2020-0031-DRAFT-42143
NOAA-NMFS-2020-0031-DRAFT-42144
NOAA-NMFS-2020-0031-DRAFT-42145
NOAA-NMFS-2020-0031-DRAFT-42146
NOAA-NMFS-2020-0031-DRAFT-42147
NOAA-NMFS-2020-0031-DRAFT-42148
NOAA-NMFS-2020-0031-DRAFT-42149
NOAA-NMFS-2020-0031-DRAFT-42150
NOAA-NMFS-2020-0031-DRAFT-42151
NOAA-NMFS-2020-0031-DRAFT-42152
NOAA-NMFS-2020-0031-DRAFT-42153
NOAA-NMFS-2020-0031-DRAFT-42154
NOAA-NMFS-2020-0031-DRAFT-42155
NOAA-NMFS-2020-0031-DRAFT-42156
NOAA-NMFS-2020-0031-DRAFT-42157
NOAA-NMFS-2020-0031-DRAFT-42158

Comment from rossouw, paula
Comment from Hubberd, Michael
Comment from Collar, Michelle
Comment from Payette, Sarah
Comment from Cohen, Harriet
Comment from OConnor, Shari
Comment from Christensen, Katherine
Comment from Graham, Charlie
Comment from Kosinski, Kathy
Comment from Hussain, Dina
Comment from Gregg, Rachel
Comment from Narron, Diane
Comment from Porter, Susan
Comment from Blanchett, Rick &
Nancy
Comment from Rosenberg, H.
Comment from Dixon, Angie
Comment from Walters, Cody
Comment from Jacobs, Shannon
Comment from Mackenzie, Judy
Comment from King-Chuparkoff, Cathy
Comment from Skufis, Paul
Comment from Groussman, Maria
Comment from Sublette, David7
Comment from Rehn, Debra
Comment from Carrier, Rebecca
Comment from Bullard, David H.
Comment from Anonymous Anonymous
Comment from Maloney-Tarvers, Linda V
Comment from Lewis, Debra
Comment from Bein, Ann
Comment from Church, Rhonda
Comment from Margolin, Yana
Comment from Taylor, Heather
Comment from Huffman, James
Comment from Turner, Kathleen
Comment from Breznik, Ivana
Comment from Zech, Gisela
Comment from Anonymous Anonymous
Comment from Daniels, Elliot
Comment from Judge, Melissa
Comment from Tryggeseth, Jackie

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NOAA-NMFS-2020-0031-DRAFT-47320
NOAA-NMFS-2020-0031-DRAFT-47321
NOAA-NMFS-2020-0031-DRAFT-47323
NOAA-NMFS-2020-0031-DRAFT-47324
NOAA-NMFS-2020-0031-DRAFT-47325
NOAA-NMFS-2020-0031-DRAFT-47326
NOAA-NMFS-2020-0031-DRAFT-47327
NOAA-NMFS-2020-0031-DRAFT-47328
NOAA-NMFS-2020-0031-DRAFT-47329
NOAA-NMFS-2020-0031-DRAFT-47330
NOAA-NMFS-2020-0031-DRAFT-47331
NOAA-NMFS-2020-0031-DRAFT-47332
NOAA-NMFS-2020-0031-DRAFT-47333
NOAA-NMFS-2020-0031-DRAFT-47334
NOAA-NMFS-2020-0031-DRAFT-47335
NOAA-NMFS-2020-0031-DRAFT-47336
NOAA-NMFS-2020-0031-DRAFT-47337
NOAA-NMFS-2020-0031-DRAFT-47338
NOAA-NMFS-2020-0031-DRAFT-47339
NOAA-NMFS-2020-0031-DRAFT-47340
NOAA-NMFS-2020-0031-DRAFT-47341
NOAA-NMFS-2020-0031-DRAFT-47342
NOAA-NMFS-2020-0031-DRAFT-47343
NOAA-NMFS-2020-0031-DRAFT-47344
NOAA-NMFS-2020-0031-DRAFT-47345
NOAA-NMFS-2020-0031-DRAFT-47346
NOAA-NMFS-2020-0031-DRAFT-47347
NOAA-NMFS-2020-0031-DRAFT-47348
NOAA-NMFS-2020-0031-DRAFT-47349
NOAA-NMFS-2020-0031-DRAFT-47350
NOAA-NMFS-2020-0031-DRAFT-47351
NOAA-NMFS-2020-0031-DRAFT-47352
NOAA-NMFS-2020-0031-DRAFT-47353
NOAA-NMFS-2020-0031-DRAFT-47354
NOAA-NMFS-2020-0031-DRAFT-47355
NOAA-NMFS-2020-0031-DRAFT-47356
NOAA-NMFS-2020-0031-DRAFT-47357
NOAA-NMFS-2020-0031-DRAFT-47359
NOAA-NMFS-2020-0031-DRAFT-47360
NOAA-NMFS-2020-0031-DRAFT-47361
NOAA-NMFS-2020-0031-DRAFT-47362

Comment from Anonymous Anonymous
Comment from Angela Kline
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NOAA-NMFS-2020-0031-DRAFT-42159
NOAA-NMFS-2020-0031-DRAFT-42160
NOAA-NMFS-2020-0031-DRAFT-42161
NOAA-NMFS-2020-0031-DRAFT-42162
NOAA-NMFS-2020-0031-DRAFT-42163
NOAA-NMFS-2020-0031-DRAFT-42164
NOAA-NMFS-2020-0031-DRAFT-42165
NOAA-NMFS-2020-0031-DRAFT-42166
NOAA-NMFS-2020-0031-DRAFT-42167
NOAA-NMFS-2020-0031-DRAFT-42168
NOAA-NMFS-2020-0031-DRAFT-42169
NOAA-NMFS-2020-0031-DRAFT-42170
NOAA-NMFS-2020-0031-DRAFT-42171
NOAA-NMFS-2020-0031-DRAFT-42172
NOAA-NMFS-2020-0031-DRAFT-42173
NOAA-NMFS-2020-0031-DRAFT-42174
NOAA-NMFS-2020-0031-DRAFT-42175
NOAA-NMFS-2020-0031-DRAFT-42176
NOAA-NMFS-2020-0031-DRAFT-42177
NOAA-NMFS-2020-0031-DRAFT-42178
NOAA-NMFS-2020-0031-DRAFT-42179
NOAA-NMFS-2020-0031-DRAFT-42180
NOAA-NMFS-2020-0031-DRAFT-42181
NOAA-NMFS-2020-0031-DRAFT-42182
NOAA-NMFS-2020-0031-DRAFT-42183
NOAA-NMFS-2020-0031-DRAFT-42184
NOAA-NMFS-2020-0031-DRAFT-42185
NOAA-NMFS-2020-0031-DRAFT-42186
NOAA-NMFS-2020-0031-DRAFT-42187
NOAA-NMFS-2020-0031-DRAFT-42188
NOAA-NMFS-2020-0031-DRAFT-42189
NOAA-NMFS-2020-0031-DRAFT-42190
NOAA-NMFS-2020-0031-DRAFT-42191
NOAA-NMFS-2020-0031-DRAFT-42192
NOAA-NMFS-2020-0031-DRAFT-42193
NOAA-NMFS-2020-0031-DRAFT-42194
NOAA-NMFS-2020-0031-DRAFT-42195
NOAA-NMFS-2020-0031-DRAFT-42196
NOAA-NMFS-2020-0031-DRAFT-42197
NOAA-NMFS-2020-0031-DRAFT-42198
NOAA-NMFS-2020-0031-DRAFT-42199

Comment from Mondry, Terry
Comment from Littelmann, Thomas
Comment from Catron, Samuel
Comment from Collodel, Deborah
Comment from Hoyt, B.
Comment from Dillon, Christi
Comment from Smih, Diane
Comment from Carmona, Diane
Comment from Norman, Christine
Comment from Miller, Debra
Comment from Peck, Elizabeth
Comment from Cross, Russ
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Comment from Kozakiewicz, Kimberly
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Comment from Caso, Mark
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Comment from Bray, Laura A.
Comment from Smih, Diane
Comment from Johnson, Patrice
Comment from Westfall, Marelyn
Comment from Love, Dianna
Comment from swift, robert
Comment from Curtis, Cathy
Comment from Skolnick, Kate
Comment from Elliott-Cattell, June
Comment from Higgins, Lindi
Comment from Jacobs, Vickie
Comment from Woodward, Warren
Comment from Dobroslawa, Dobi
Comment from Lin, Chingyi
Comment from Krzykowskix, Laurie
Comment from Davis, Michelle
Comment from Council, Nina
Comment from Duffy, Patty
Comment from Olson, Linda
Comment from Boyer, David
Comment from de Nijs, Sacha
Comment from Niemeyer, Wendy
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Comment from lynch, cindy

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NOAA-NMFS-2020-0031-DRAFT-47363
NOAA-NMFS-2020-0031-DRAFT-47364
NOAA-NMFS-2020-0031-DRAFT-47365
NOAA-NMFS-2020-0031-DRAFT-47366
NOAA-NMFS-2020-0031-DRAFT-47367
NOAA-NMFS-2020-0031-DRAFT-47368
NOAA-NMFS-2020-0031-DRAFT-47369
NOAA-NMFS-2020-0031-DRAFT-47370
NOAA-NMFS-2020-0031-DRAFT-47371
NOAA-NMFS-2020-0031-DRAFT-47372
NOAA-NMFS-2020-0031-DRAFT-47373
NOAA-NMFS-2020-0031-DRAFT-47374
NOAA-NMFS-2020-0031-DRAFT-47375
NOAA-NMFS-2020-0031-DRAFT-47376
NOAA-NMFS-2020-0031-DRAFT-47377
NOAA-NMFS-2020-0031-DRAFT-47378
NOAA-NMFS-2020-0031-DRAFT-47379
NOAA-NMFS-2020-0031-DRAFT-47380
NOAA-NMFS-2020-0031-DRAFT-47381
NOAA-NMFS-2020-0031-DRAFT-47382
NOAA-NMFS-2020-0031-DRAFT-47383
NOAA-NMFS-2020-0031-DRAFT-47384
NOAA-NMFS-2020-0031-DRAFT-47385
NOAA-NMFS-2020-0031-DRAFT-47386
NOAA-NMFS-2020-0031-DRAFT-47387
NOAA-NMFS-2020-0031-DRAFT-47388
NOAA-NMFS-2020-0031-DRAFT-47389
NOAA-NMFS-2020-0031-DRAFT-47390
NOAA-NMFS-2020-0031-DRAFT-47391
NOAA-NMFS-2020-0031-DRAFT-47392
NOAA-NMFS-2020-0031-DRAFT-47393
NOAA-NMFS-2020-0031-DRAFT-47394
NOAA-NMFS-2020-0031-DRAFT-47395
NOAA-NMFS-2020-0031-DRAFT-47396
NOAA-NMFS-2020-0031-DRAFT-47397
NOAA-NMFS-2020-0031-DRAFT-47398
NOAA-NMFS-2020-0031-DRAFT-47399
NOAA-NMFS-2020-0031-DRAFT-47400
NOAA-NMFS-2020-0031-DRAFT-47401
NOAA-NMFS-2020-0031-DRAFT-47402
NOAA-NMFS-2020-0031-DRAFT-47403

Comment from Adrian Smith
Comment from Freda Karpf
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Comment from Dianna Holland
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NOAA-NMFS-2020-0031-DRAFT-42200
NOAA-NMFS-2020-0031-DRAFT-42201
NOAA-NMFS-2020-0031-DRAFT-42202
NOAA-NMFS-2020-0031-DRAFT-42203
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NOAA-NMFS-2020-0031-DRAFT-42208
NOAA-NMFS-2020-0031-DRAFT-42209
NOAA-NMFS-2020-0031-DRAFT-42210
NOAA-NMFS-2020-0031-DRAFT-42211
NOAA-NMFS-2020-0031-DRAFT-42212
NOAA-NMFS-2020-0031-DRAFT-42213
NOAA-NMFS-2020-0031-DRAFT-42214
NOAA-NMFS-2020-0031-DRAFT-42215
NOAA-NMFS-2020-0031-DRAFT-42216
NOAA-NMFS-2020-0031-DRAFT-42217
NOAA-NMFS-2020-0031-DRAFT-42218
NOAA-NMFS-2020-0031-DRAFT-42219
NOAA-NMFS-2020-0031-DRAFT-42220
NOAA-NMFS-2020-0031-DRAFT-42221
NOAA-NMFS-2020-0031-DRAFT-42222
NOAA-NMFS-2020-0031-DRAFT-42223
NOAA-NMFS-2020-0031-DRAFT-42224
NOAA-NMFS-2020-0031-DRAFT-42225
NOAA-NMFS-2020-0031-DRAFT-42227
NOAA-NMFS-2020-0031-DRAFT-42228
NOAA-NMFS-2020-0031-DRAFT-42229
NOAA-NMFS-2020-0031-DRAFT-42230
NOAA-NMFS-2020-0031-DRAFT-42232
NOAA-NMFS-2020-0031-DRAFT-42233
NOAA-NMFS-2020-0031-DRAFT-42234
NOAA-NMFS-2020-0031-DRAFT-42235
NOAA-NMFS-2020-0031-DRAFT-42236
NOAA-NMFS-2020-0031-DRAFT-42238
NOAA-NMFS-2020-0031-DRAFT-42239
NOAA-NMFS-2020-0031-DRAFT-42240
NOAA-NMFS-2020-0031-DRAFT-42241
NOAA-NMFS-2020-0031-DRAFT-42242
NOAA-NMFS-2020-0031-DRAFT-42243
NOAA-NMFS-2020-0031-DRAFT-42244

Comment from Arnzen, Barbara
Comment from Hutchison, Stanley
Comment from Boothe, Dawn
Comment from Withers, Lynell
Comment from Naji, Eric
Comment from Voris, Stephanie
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-47404
NOAA-NMFS-2020-0031-DRAFT-47405
NOAA-NMFS-2020-0031-DRAFT-47406
NOAA-NMFS-2020-0031-DRAFT-47407
NOAA-NMFS-2020-0031-DRAFT-47408
NOAA-NMFS-2020-0031-DRAFT-47409
NOAA-NMFS-2020-0031-DRAFT-47410
NOAA-NMFS-2020-0031-DRAFT-47411
NOAA-NMFS-2020-0031-DRAFT-47412
NOAA-NMFS-2020-0031-DRAFT-47413
NOAA-NMFS-2020-0031-DRAFT-47414
NOAA-NMFS-2020-0031-DRAFT-47415
NOAA-NMFS-2020-0031-DRAFT-47416
NOAA-NMFS-2020-0031-DRAFT-47417
NOAA-NMFS-2020-0031-DRAFT-47418
NOAA-NMFS-2020-0031-DRAFT-47419
NOAA-NMFS-2020-0031-DRAFT-47420
NOAA-NMFS-2020-0031-DRAFT-47421
NOAA-NMFS-2020-0031-DRAFT-47422
NOAA-NMFS-2020-0031-DRAFT-47423
NOAA-NMFS-2020-0031-DRAFT-47424
NOAA-NMFS-2020-0031-DRAFT-47425
NOAA-NMFS-2020-0031-DRAFT-47426
NOAA-NMFS-2020-0031-DRAFT-47427
NOAA-NMFS-2020-0031-DRAFT-47428
NOAA-NMFS-2020-0031-DRAFT-47429
NOAA-NMFS-2020-0031-DRAFT-47430
NOAA-NMFS-2020-0031-DRAFT-47431
NOAA-NMFS-2020-0031-DRAFT-47432
NOAA-NMFS-2020-0031-DRAFT-47433
NOAA-NMFS-2020-0031-DRAFT-47434
NOAA-NMFS-2020-0031-DRAFT-47435
NOAA-NMFS-2020-0031-DRAFT-47436
NOAA-NMFS-2020-0031-DRAFT-47437
NOAA-NMFS-2020-0031-DRAFT-47438
NOAA-NMFS-2020-0031-DRAFT-47439
NOAA-NMFS-2020-0031-DRAFT-47440
NOAA-NMFS-2020-0031-DRAFT-47441
NOAA-NMFS-2020-0031-DRAFT-47442
NOAA-NMFS-2020-0031-DRAFT-47443
NOAA-NMFS-2020-0031-DRAFT-47444

Comment from Bruce Kiesel
Comment from Wayne Brunton
Comment from Christine Chmielewski
Comment from Macedonio, Mary
Comment from Ms. Long s 2nd graders
Anonymous
Comment from Linda Muntner
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Comment from Jeanne Held-Warmkessel
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NOAA-NMFS-2020-0031-DRAFT-42245
NOAA-NMFS-2020-0031-DRAFT-42246
NOAA-NMFS-2020-0031-DRAFT-42247
NOAA-NMFS-2020-0031-DRAFT-42248
NOAA-NMFS-2020-0031-DRAFT-42249
NOAA-NMFS-2020-0031-DRAFT-42250
NOAA-NMFS-2020-0031-DRAFT-42251
NOAA-NMFS-2020-0031-DRAFT-42252
NOAA-NMFS-2020-0031-DRAFT-42253
NOAA-NMFS-2020-0031-DRAFT-42254
NOAA-NMFS-2020-0031-DRAFT-42255
NOAA-NMFS-2020-0031-DRAFT-42256
NOAA-NMFS-2020-0031-DRAFT-42257
NOAA-NMFS-2020-0031-DRAFT-42258
NOAA-NMFS-2020-0031-DRAFT-42259
NOAA-NMFS-2020-0031-DRAFT-42260
NOAA-NMFS-2020-0031-DRAFT-42261
NOAA-NMFS-2020-0031-DRAFT-42262
NOAA-NMFS-2020-0031-DRAFT-42263
NOAA-NMFS-2020-0031-DRAFT-42264
NOAA-NMFS-2020-0031-DRAFT-42265
NOAA-NMFS-2020-0031-DRAFT-42266
NOAA-NMFS-2020-0031-DRAFT-42267
NOAA-NMFS-2020-0031-DRAFT-42268
NOAA-NMFS-2020-0031-DRAFT-42269
NOAA-NMFS-2020-0031-DRAFT-42270
NOAA-NMFS-2020-0031-DRAFT-42271
NOAA-NMFS-2020-0031-DRAFT-42272
NOAA-NMFS-2020-0031-DRAFT-42273
NOAA-NMFS-2020-0031-DRAFT-42274
NOAA-NMFS-2020-0031-DRAFT-42275
NOAA-NMFS-2020-0031-DRAFT-42276
NOAA-NMFS-2020-0031-DRAFT-42277
NOAA-NMFS-2020-0031-DRAFT-42278
NOAA-NMFS-2020-0031-DRAFT-42279
NOAA-NMFS-2020-0031-DRAFT-42280
NOAA-NMFS-2020-0031-DRAFT-42281
NOAA-NMFS-2020-0031-DRAFT-42282
NOAA-NMFS-2020-0031-DRAFT-42283
NOAA-NMFS-2020-0031-DRAFT-42284
NOAA-NMFS-2020-0031-DRAFT-42285

Comment from Anonymous Anonymous
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Comment from Lipka, Francine
Comment from Deutsch, Alice
Comment from Prince, Steve

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NOAA-NMFS-2020-0031-DRAFT-47445
NOAA-NMFS-2020-0031-DRAFT-47446
NOAA-NMFS-2020-0031-DRAFT-47447
NOAA-NMFS-2020-0031-DRAFT-47448
NOAA-NMFS-2020-0031-DRAFT-47449
NOAA-NMFS-2020-0031-DRAFT-47450
NOAA-NMFS-2020-0031-DRAFT-47451
NOAA-NMFS-2020-0031-DRAFT-47452
NOAA-NMFS-2020-0031-DRAFT-47453
NOAA-NMFS-2020-0031-DRAFT-47454
NOAA-NMFS-2020-0031-DRAFT-47455
NOAA-NMFS-2020-0031-DRAFT-47456
NOAA-NMFS-2020-0031-DRAFT-47457
NOAA-NMFS-2020-0031-DRAFT-47458
NOAA-NMFS-2020-0031-DRAFT-47459
NOAA-NMFS-2020-0031-DRAFT-47460
NOAA-NMFS-2020-0031-DRAFT-47461
NOAA-NMFS-2020-0031-DRAFT-47462
NOAA-NMFS-2020-0031-DRAFT-47463
NOAA-NMFS-2020-0031-DRAFT-47464
NOAA-NMFS-2020-0031-DRAFT-47465
NOAA-NMFS-2020-0031-DRAFT-47466
NOAA-NMFS-2020-0031-DRAFT-47467
NOAA-NMFS-2020-0031-DRAFT-47468
NOAA-NMFS-2020-0031-DRAFT-47469
NOAA-NMFS-2020-0031-DRAFT-47470
NOAA-NMFS-2020-0031-DRAFT-47471
NOAA-NMFS-2020-0031-DRAFT-47472
NOAA-NMFS-2020-0031-DRAFT-47473
NOAA-NMFS-2020-0031-DRAFT-47474
NOAA-NMFS-2020-0031-DRAFT-47475
NOAA-NMFS-2020-0031-DRAFT-47476
NOAA-NMFS-2020-0031-DRAFT-47477
NOAA-NMFS-2020-0031-DRAFT-47478
NOAA-NMFS-2020-0031-DRAFT-47479
NOAA-NMFS-2020-0031-DRAFT-47480
NOAA-NMFS-2020-0031-DRAFT-47481
NOAA-NMFS-2020-0031-DRAFT-47483
NOAA-NMFS-2020-0031-DRAFT-47484
NOAA-NMFS-2020-0031-DRAFT-47485
NOAA-NMFS-2020-0031-DRAFT-47486

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carpenter, Nate
Comment from Charlie Burns
Comment from Anonymous Anonymous
Comment from Sidney Pearson
Comment from Pauline DeMairo
Comment from Toby Gottfried
Comment from Daniel Weber
Comment from Eigler, Kelly
Comment from Anonymous Anonymous
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Comment from Anonymous Anonymous
Comment from Jared Hocking
Comment from Jerro, Bonnie
Comment from Anonymous Anonymous
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Comment from Rubin, Marsha
Comment from Anonymous Anonymous
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Comment from Anonymous Anonymous
Comment from Margaret Reynoso
Comment from Denise Derouen
Comment from Anonymous Anonymous
Comment from jayne lello
Comment from Wright, Kenneth
Comment from Anonymous Anonymous
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Comment from Michele Villeneuve
Comment from Pat Gibson
Comment from Harris, Kathy
Comment from Anonymous Anonymous
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Comment from SPINDLER, ALLYCE
Comment from Neil Hansen
Comment from Holland, Dianna
Comment from JESSICA FIELDEN
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NOAA-NMFS-2020-0031-DRAFT-42286
NOAA-NMFS-2020-0031-DRAFT-42287
NOAA-NMFS-2020-0031-DRAFT-42288
NOAA-NMFS-2020-0031-DRAFT-42289
NOAA-NMFS-2020-0031-DRAFT-42290
NOAA-NMFS-2020-0031-DRAFT-42291
NOAA-NMFS-2020-0031-DRAFT-42292
NOAA-NMFS-2020-0031-DRAFT-42293
NOAA-NMFS-2020-0031-DRAFT-42294
NOAA-NMFS-2020-0031-DRAFT-42295
NOAA-NMFS-2020-0031-DRAFT-42296
NOAA-NMFS-2020-0031-DRAFT-42297
NOAA-NMFS-2020-0031-DRAFT-42298
NOAA-NMFS-2020-0031-DRAFT-42299
NOAA-NMFS-2020-0031-DRAFT-42300
NOAA-NMFS-2020-0031-DRAFT-42301
NOAA-NMFS-2020-0031-DRAFT-42302
NOAA-NMFS-2020-0031-DRAFT-42303
NOAA-NMFS-2020-0031-DRAFT-42304
NOAA-NMFS-2020-0031-DRAFT-42305
NOAA-NMFS-2020-0031-DRAFT-42306
NOAA-NMFS-2020-0031-DRAFT-42307
NOAA-NMFS-2020-0031-DRAFT-42308
NOAA-NMFS-2020-0031-DRAFT-42309
NOAA-NMFS-2020-0031-DRAFT-42310
NOAA-NMFS-2020-0031-DRAFT-42311
NOAA-NMFS-2020-0031-DRAFT-42312
NOAA-NMFS-2020-0031-DRAFT-42313
NOAA-NMFS-2020-0031-DRAFT-42314
NOAA-NMFS-2020-0031-DRAFT-42315
NOAA-NMFS-2020-0031-DRAFT-42316
NOAA-NMFS-2020-0031-DRAFT-42317
NOAA-NMFS-2020-0031-DRAFT-42318
NOAA-NMFS-2020-0031-DRAFT-42319
NOAA-NMFS-2020-0031-DRAFT-42320
NOAA-NMFS-2020-0031-DRAFT-42321
NOAA-NMFS-2020-0031-DRAFT-42322
NOAA-NMFS-2020-0031-DRAFT-42323
NOAA-NMFS-2020-0031-DRAFT-42324
NOAA-NMFS-2020-0031-DRAFT-42325
NOAA-NMFS-2020-0031-DRAFT-42326

Comment from Kasnicka, Cynthia
Comment from Sotere, Valerie
Comment from Benjamin, Elaine
Comment from Hodel, Joyce
Comment from Elder, Debra
Comment from Welte, Sarah
Comment from knecht, jill
Comment from Logan, donna
Comment from Anonymous Anonymous
Comment from Davis, Ward
Comment from Wales, Jeremy
Comment from LoBiondo, Gina
Comment from Goldman, Jill
Comment from MacKelvie, Elizabeth
Comment from Dalessandro, Erin
Comment from Rome, Karen
Comment from Bonoyer, K
Comment from Anonymous Anonymous
Comment from Miller, Kathy
Comment from Copenhaver, Pat
Comment from Zurawski, Ronald
Comment from McKillip, Linda
Comment from Molina, Rick
Comment from Miiller, Victor
Comment from Lutz, Heather
Comment from Wojtalik, Alan
Comment from Anonymous Anonymous
Comment from George, John
Comment from Hall, Sue
Comment from DeLia, Tony
Comment from Chyba, Mike
Comment from Rostagno-Lasky, Michael
Comment from George, Janelle
Comment from Mariorenzi, Maria
Comment from Yazdi, Teri
Comment from Arnone, Melanie
Comment from Clark, Stephanie
Comment from Pezzicara, Amy
Comment from Tomlian, Janice
Comment from Hackett, Bonnie
Comment from Low, Sammy

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NOAA-NMFS-2020-0031-DRAFT-47487
NOAA-NMFS-2020-0031-DRAFT-47488
NOAA-NMFS-2020-0031-DRAFT-47489
NOAA-NMFS-2020-0031-DRAFT-47490
NOAA-NMFS-2020-0031-DRAFT-47491
NOAA-NMFS-2020-0031-DRAFT-47492
NOAA-NMFS-2020-0031-DRAFT-47493
NOAA-NMFS-2020-0031-DRAFT-47494
NOAA-NMFS-2020-0031-DRAFT-47495
NOAA-NMFS-2020-0031-DRAFT-47496
NOAA-NMFS-2020-0031-DRAFT-47497
NOAA-NMFS-2020-0031-DRAFT-47498
NOAA-NMFS-2020-0031-DRAFT-47499
NOAA-NMFS-2020-0031-DRAFT-47500
NOAA-NMFS-2020-0031-DRAFT-47501
NOAA-NMFS-2020-0031-DRAFT-47502
NOAA-NMFS-2020-0031-DRAFT-47503
NOAA-NMFS-2020-0031-DRAFT-47504
NOAA-NMFS-2020-0031-DRAFT-47505
NOAA-NMFS-2020-0031-DRAFT-47506
NOAA-NMFS-2020-0031-DRAFT-47507
NOAA-NMFS-2020-0031-DRAFT-47508
NOAA-NMFS-2020-0031-DRAFT-47509
NOAA-NMFS-2020-0031-DRAFT-47510
NOAA-NMFS-2020-0031-DRAFT-47511
NOAA-NMFS-2020-0031-DRAFT-47512
NOAA-NMFS-2020-0031-DRAFT-47513
NOAA-NMFS-2020-0031-DRAFT-47514
NOAA-NMFS-2020-0031-DRAFT-47515
NOAA-NMFS-2020-0031-DRAFT-47516
NOAA-NMFS-2020-0031-DRAFT-47517
NOAA-NMFS-2020-0031-DRAFT-47518
NOAA-NMFS-2020-0031-DRAFT-47519
NOAA-NMFS-2020-0031-DRAFT-47520
NOAA-NMFS-2020-0031-DRAFT-47521
NOAA-NMFS-2020-0031-DRAFT-47522
NOAA-NMFS-2020-0031-DRAFT-47523
NOAA-NMFS-2020-0031-DRAFT-47524
NOAA-NMFS-2020-0031-DRAFT-47525
NOAA-NMFS-2020-0031-DRAFT-47526
NOAA-NMFS-2020-0031-DRAFT-47527

Comment from Donna Banks
Comment from Savage, Marjorie
Comment from Anonymous Anonymous
Comment from Pasquale Vairo
Comment from Bobbitt, Lisa
Comment from Kelly Dougherty
Comment from Dana Winkler
Comment from Neitzel, Gus
Comment from Jennifer Gorgo
Comment from Dryer, Ellen
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Larry Caudill
Comment from Carmen Buono
Comment from Bacon, Scarlett
Comment from Anonymous Anonymous
Comment from Maria Dabrowski
Comment from Anonymous Anonymous
Comment from Brian Gingras
Comment from Anonymous Anonymous
Comment from Raphael Sulkovitz
Comment from Walker, Maria
Comment from Marci Robinson
Comment from MICHAEL MURRAY
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lisa Meyer
Comment from Pizzo, Marco
Comment from Kenya Pena
Comment from Inmon, Anne
Comment from Tim Pokela
Comment from Anonymous Anonymous
Comment from Borzha, Ana
Comment from Chris Tonkinson
Comment from Anonymous Anonymous
Comment from Teresa Collins
Comment from Dawn Zegledi
Comment from Anonymous Anonymous
Comment from Paul Johnson
Comment from Sheaks, Cindy
Comment from Peter Ayres

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NOAA-NMFS-2020-0031-DRAFT-42327
NOAA-NMFS-2020-0031-DRAFT-42328
NOAA-NMFS-2020-0031-DRAFT-42329
NOAA-NMFS-2020-0031-DRAFT-42330
NOAA-NMFS-2020-0031-DRAFT-42331
NOAA-NMFS-2020-0031-DRAFT-42332
NOAA-NMFS-2020-0031-DRAFT-42333
NOAA-NMFS-2020-0031-DRAFT-42334
NOAA-NMFS-2020-0031-DRAFT-42335
NOAA-NMFS-2020-0031-DRAFT-42336
NOAA-NMFS-2020-0031-DRAFT-42337
NOAA-NMFS-2020-0031-DRAFT-42338
NOAA-NMFS-2020-0031-DRAFT-42339
NOAA-NMFS-2020-0031-DRAFT-42340
NOAA-NMFS-2020-0031-DRAFT-42341
NOAA-NMFS-2020-0031-DRAFT-42342
NOAA-NMFS-2020-0031-DRAFT-42343
NOAA-NMFS-2020-0031-DRAFT-42344
NOAA-NMFS-2020-0031-DRAFT-42345
NOAA-NMFS-2020-0031-DRAFT-42346
NOAA-NMFS-2020-0031-DRAFT-42347
NOAA-NMFS-2020-0031-DRAFT-42348
NOAA-NMFS-2020-0031-DRAFT-42349
NOAA-NMFS-2020-0031-DRAFT-42350
NOAA-NMFS-2020-0031-DRAFT-42351
NOAA-NMFS-2020-0031-DRAFT-42352
NOAA-NMFS-2020-0031-DRAFT-42353
NOAA-NMFS-2020-0031-DRAFT-42354
NOAA-NMFS-2020-0031-DRAFT-42355
NOAA-NMFS-2020-0031-DRAFT-42356
NOAA-NMFS-2020-0031-DRAFT-42357
NOAA-NMFS-2020-0031-DRAFT-42358
NOAA-NMFS-2020-0031-DRAFT-42359
NOAA-NMFS-2020-0031-DRAFT-42360
NOAA-NMFS-2020-0031-DRAFT-42361
NOAA-NMFS-2020-0031-DRAFT-42362
NOAA-NMFS-2020-0031-DRAFT-42363
NOAA-NMFS-2020-0031-DRAFT-42364
NOAA-NMFS-2020-0031-DRAFT-42365
NOAA-NMFS-2020-0031-DRAFT-42366
NOAA-NMFS-2020-0031-DRAFT-42367

Comment from Cook, Anice
Comment from McLaughlin, Susan
Comment from Ryan, Carolyn
Comment from Eames, Cheryl
Comment from Peyser, Victoria
Comment from Sarne, Sabrina
Comment from Jennings, Jude
Comment from David, Terri
Comment from Parry, Alison
Comment from katz, anne
Comment from Spero, Thomas
Comment from Pighetti, Heather
Comment from A., Lauren
Comment from Green, Arden
Comment from Doyle, Carrie
Comment from Pfeifer, Nezka
Comment from Stiffler, Tonya
Comment from Catchings, Elizabeth
Comment from DeWitt, Susan
Comment from Schmidt, Christine
Comment from Heath, Susan
Comment from Kirchner, John
Comment from Gorn, Scott
Comment from Grause, J
Comment from LaSchiava, Dona
Comment from Ricewasser, Robert
Comment from Anonymous Anonymous
Comment from Konieczny, Lynn
Comment from Anonymous Anonymous
Comment from Sutton, Beth
Comment from Charrier, JL
Comment from Gijsen, Lise
Comment from Knight, Kendra
Comment from Dennis, Gudrun
Comment from Anonymous Anonymous
Comment from Turner, Kathy
Comment from Night, Talus
Comment from Harish, Anavai
Comment from Mezzapelle, Cheri
Comment from Wait, Dawn
Comment from Patton, Linda

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NOAA-NMFS-2020-0031-DRAFT-47528
NOAA-NMFS-2020-0031-DRAFT-47529
NOAA-NMFS-2020-0031-DRAFT-47530
NOAA-NMFS-2020-0031-DRAFT-47531
NOAA-NMFS-2020-0031-DRAFT-47532
NOAA-NMFS-2020-0031-DRAFT-47533
NOAA-NMFS-2020-0031-DRAFT-47534
NOAA-NMFS-2020-0031-DRAFT-47535
NOAA-NMFS-2020-0031-DRAFT-47536
NOAA-NMFS-2020-0031-DRAFT-47537
NOAA-NMFS-2020-0031-DRAFT-47538
NOAA-NMFS-2020-0031-DRAFT-47539
NOAA-NMFS-2020-0031-DRAFT-47540
NOAA-NMFS-2020-0031-DRAFT-47541
NOAA-NMFS-2020-0031-DRAFT-47542
NOAA-NMFS-2020-0031-DRAFT-47543
NOAA-NMFS-2020-0031-DRAFT-47544
NOAA-NMFS-2020-0031-DRAFT-47545
NOAA-NMFS-2020-0031-DRAFT-47546
NOAA-NMFS-2020-0031-DRAFT-47547
NOAA-NMFS-2020-0031-DRAFT-47548
NOAA-NMFS-2020-0031-DRAFT-47549
NOAA-NMFS-2020-0031-DRAFT-47550
NOAA-NMFS-2020-0031-DRAFT-47551
NOAA-NMFS-2020-0031-DRAFT-47552
NOAA-NMFS-2020-0031-DRAFT-47553
NOAA-NMFS-2020-0031-DRAFT-47554
NOAA-NMFS-2020-0031-DRAFT-47555
NOAA-NMFS-2020-0031-DRAFT-47556
NOAA-NMFS-2020-0031-DRAFT-47557
NOAA-NMFS-2020-0031-DRAFT-47558
NOAA-NMFS-2020-0031-DRAFT-47559
NOAA-NMFS-2020-0031-DRAFT-47560
NOAA-NMFS-2020-0031-DRAFT-47561
NOAA-NMFS-2020-0031-DRAFT-47562
NOAA-NMFS-2020-0031-DRAFT-47563
NOAA-NMFS-2020-0031-DRAFT-47564
NOAA-NMFS-2020-0031-DRAFT-47565
NOAA-NMFS-2020-0031-DRAFT-47566
NOAA-NMFS-2020-0031-DRAFT-47567
NOAA-NMFS-2020-0031-DRAFT-47568

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Laraine Lebron
Comment from Mary Nelson
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Joanne Molodowitz
Comment from Scaltrito, Marietta
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Joseph Rindler
Comment from Anonymous Anonymous
Comment from Laura Guttridge
Comment from Annette Tchelka
Comment from Phyllis Naef
Comment from Anonymous Anonymous
Comment from Marilyn Waltasti
Comment from Anonymous Anonymous
Comment from Marlene Testaguzza
Comment from Yineska Rollin
Comment from Dayanara De Oca
Comment from Lynne Miller
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mary Botti
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Comment from P.S. Padula
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Barbara Harrington
Comment from Bonnie Thompson
Comment from Glenda Logan
Comment from Anonymous Anonymous
Comment from Suzanne Doyle
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from John Beck
Comment from Anonymous Anonymous
Comment from Kathleen Mohning
Comment from m. baca

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NOAA-NMFS-2020-0031-DRAFT-42368
NOAA-NMFS-2020-0031-DRAFT-42369
NOAA-NMFS-2020-0031-DRAFT-42370
NOAA-NMFS-2020-0031-DRAFT-42371
NOAA-NMFS-2020-0031-DRAFT-42372
NOAA-NMFS-2020-0031-DRAFT-42373
NOAA-NMFS-2020-0031-DRAFT-42374
NOAA-NMFS-2020-0031-DRAFT-42375
NOAA-NMFS-2020-0031-DRAFT-42376
NOAA-NMFS-2020-0031-DRAFT-42377
NOAA-NMFS-2020-0031-DRAFT-42378
NOAA-NMFS-2020-0031-DRAFT-42379
NOAA-NMFS-2020-0031-DRAFT-42380
NOAA-NMFS-2020-0031-DRAFT-42381
NOAA-NMFS-2020-0031-DRAFT-42382
NOAA-NMFS-2020-0031-DRAFT-42383
NOAA-NMFS-2020-0031-DRAFT-42384
NOAA-NMFS-2020-0031-DRAFT-42385
NOAA-NMFS-2020-0031-DRAFT-42386
NOAA-NMFS-2020-0031-DRAFT-42387
NOAA-NMFS-2020-0031-DRAFT-42388
NOAA-NMFS-2020-0031-DRAFT-42389
NOAA-NMFS-2020-0031-DRAFT-42390
NOAA-NMFS-2020-0031-DRAFT-42391
NOAA-NMFS-2020-0031-DRAFT-42393
NOAA-NMFS-2020-0031-DRAFT-42394
NOAA-NMFS-2020-0031-DRAFT-42395
NOAA-NMFS-2020-0031-DRAFT-42396
NOAA-NMFS-2020-0031-DRAFT-42397
NOAA-NMFS-2020-0031-DRAFT-42398
NOAA-NMFS-2020-0031-DRAFT-42399
NOAA-NMFS-2020-0031-DRAFT-42400
NOAA-NMFS-2020-0031-DRAFT-42401
NOAA-NMFS-2020-0031-DRAFT-42402
NOAA-NMFS-2020-0031-DRAFT-42403
NOAA-NMFS-2020-0031-DRAFT-42404
NOAA-NMFS-2020-0031-DRAFT-42405
NOAA-NMFS-2020-0031-DRAFT-42406
NOAA-NMFS-2020-0031-DRAFT-42407
NOAA-NMFS-2020-0031-DRAFT-42408
NOAA-NMFS-2020-0031-DRAFT-42409

Comment from Nillo, Christina
Comment from Baxter, Suzanne
Comment from Heintz, Nancy
Comment from Hillen, Shonessi
Comment from rejsek, gary
Comment from Weldon, Wendy
Comment from Hoekstra, Nicole
Comment from Petronik, Anna
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from McMullen, Annette
Comment from Alvesteffer, Pamela
Comment from King, Christine
Comment from B., Laura
Comment from Bach, Kimberly
Comment from Garrity, Coleen
Comment from paul, ki
Comment from palomino, aydee
Comment from Yelen, Barry
Comment from Gentes, Mija
Comment from Johnson, Jackie
Comment from Lasley, Barbara
Comment from Staley, Bill
Comment from Irons, Bridget
Comment from Busby, Chris
Comment from Anonymous Anonymous
Comment from McWilliams, Michelle
Comment from Narvios, Tem
Comment from Feig, andrea
Comment from Gregorio, Penny
Comment from Haydon, Noah
Comment from Marczyk, Cathy
Comment from Morales, Marisa
Comment from Wright, Trigg
Comment from Campbell, Kimberly
Comment from Kawszan, Karen
Comment from Bojarski, Lawrence
Comment from hayward, Louise
Comment from DeLucia, Gennaro F.
Comment from Slakter, Judith
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-47569
NOAA-NMFS-2020-0031-DRAFT-47570
NOAA-NMFS-2020-0031-DRAFT-47571
NOAA-NMFS-2020-0031-DRAFT-47572
NOAA-NMFS-2020-0031-DRAFT-47573
NOAA-NMFS-2020-0031-DRAFT-47574
NOAA-NMFS-2020-0031-DRAFT-47575
NOAA-NMFS-2020-0031-DRAFT-47576
NOAA-NMFS-2020-0031-DRAFT-47577
NOAA-NMFS-2020-0031-DRAFT-47578
NOAA-NMFS-2020-0031-DRAFT-47579
NOAA-NMFS-2020-0031-DRAFT-47580
NOAA-NMFS-2020-0031-DRAFT-47581
NOAA-NMFS-2020-0031-DRAFT-47582
NOAA-NMFS-2020-0031-DRAFT-47583
NOAA-NMFS-2020-0031-DRAFT-47584
NOAA-NMFS-2020-0031-DRAFT-47585
NOAA-NMFS-2020-0031-DRAFT-47586
NOAA-NMFS-2020-0031-DRAFT-47587
NOAA-NMFS-2020-0031-DRAFT-47588
NOAA-NMFS-2020-0031-DRAFT-47589
NOAA-NMFS-2020-0031-DRAFT-47590
NOAA-NMFS-2020-0031-DRAFT-47591
NOAA-NMFS-2020-0031-DRAFT-47592
NOAA-NMFS-2020-0031-DRAFT-47594
NOAA-NMFS-2020-0031-DRAFT-47595
NOAA-NMFS-2020-0031-DRAFT-47596
NOAA-NMFS-2020-0031-DRAFT-47597
NOAA-NMFS-2020-0031-DRAFT-47598
NOAA-NMFS-2020-0031-DRAFT-47599
NOAA-NMFS-2020-0031-DRAFT-47600
NOAA-NMFS-2020-0031-DRAFT-47601
NOAA-NMFS-2020-0031-DRAFT-47602
NOAA-NMFS-2020-0031-DRAFT-47603
NOAA-NMFS-2020-0031-DRAFT-47604
NOAA-NMFS-2020-0031-DRAFT-47605
NOAA-NMFS-2020-0031-DRAFT-47606
NOAA-NMFS-2020-0031-DRAFT-47607
NOAA-NMFS-2020-0031-DRAFT-47608
NOAA-NMFS-2020-0031-DRAFT-47609
NOAA-NMFS-2020-0031-DRAFT-47610

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Leslie Hansen
Comment from Connie Rogers
Comment from Anonymous Anonymous
Comment from Lawrence Crowley
Comment from shelley mckee
Comment from Marilyn Campolettano
Comment from J. Beverly
Comment from Sharron Coontz
Comment from Richard Fehr
Comment from Anonymous Anonymous
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Comment from Anna Vidal
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Comment from Claudia Devinney
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Comment from Christopher Rose
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NOAA-NMFS-2020-0031-DRAFT-42410
NOAA-NMFS-2020-0031-DRAFT-42411
NOAA-NMFS-2020-0031-DRAFT-42412
NOAA-NMFS-2020-0031-DRAFT-42413
NOAA-NMFS-2020-0031-DRAFT-42414
NOAA-NMFS-2020-0031-DRAFT-42415
NOAA-NMFS-2020-0031-DRAFT-42416
NOAA-NMFS-2020-0031-DRAFT-42417
NOAA-NMFS-2020-0031-DRAFT-42418
NOAA-NMFS-2020-0031-DRAFT-42419
NOAA-NMFS-2020-0031-DRAFT-42420
NOAA-NMFS-2020-0031-DRAFT-42421
NOAA-NMFS-2020-0031-DRAFT-42422
NOAA-NMFS-2020-0031-DRAFT-42423
NOAA-NMFS-2020-0031-DRAFT-42424
NOAA-NMFS-2020-0031-DRAFT-42425
NOAA-NMFS-2020-0031-DRAFT-42426
NOAA-NMFS-2020-0031-DRAFT-42427
NOAA-NMFS-2020-0031-DRAFT-42428
NOAA-NMFS-2020-0031-DRAFT-42429
NOAA-NMFS-2020-0031-DRAFT-42430
NOAA-NMFS-2020-0031-DRAFT-42431
NOAA-NMFS-2020-0031-DRAFT-42432
NOAA-NMFS-2020-0031-DRAFT-42433
NOAA-NMFS-2020-0031-DRAFT-42434
NOAA-NMFS-2020-0031-DRAFT-42435
NOAA-NMFS-2020-0031-DRAFT-42436
NOAA-NMFS-2020-0031-DRAFT-42437
NOAA-NMFS-2020-0031-DRAFT-42438
NOAA-NMFS-2020-0031-DRAFT-42439
NOAA-NMFS-2020-0031-DRAFT-42440
NOAA-NMFS-2020-0031-DRAFT-42441
NOAA-NMFS-2020-0031-DRAFT-42442
NOAA-NMFS-2020-0031-DRAFT-42443
NOAA-NMFS-2020-0031-DRAFT-42444
NOAA-NMFS-2020-0031-DRAFT-42445
NOAA-NMFS-2020-0031-DRAFT-42446
NOAA-NMFS-2020-0031-DRAFT-42447
NOAA-NMFS-2020-0031-DRAFT-42448
NOAA-NMFS-2020-0031-DRAFT-42449
NOAA-NMFS-2020-0031-DRAFT-42450

Comment from Waltzer, Mark
Comment from Season, Ron
Comment from Rosas, Greg
Comment from Doyle, apri
Comment from Ponisciak, Joseph
Comment from Mancini, Alfred
Comment from Batway, Jewell
Comment from Robinson, Kathryn
Comment from Mooney, Linda
Comment from Blitzer, Mark
Comment from Gauger, Benjamin
Comment from A., Pat
Comment from Anonymous Anonymous
Comment from Luna, Kelly
Comment from Whitlock, Sue
Comment from Robertson, James
Comment from Porcelli, Maureen
Comment from Oosten Hocking, Joy
Comment from Appenzeller, Cary
Comment from Gibson, Jody
Comment from Reyes, Nimia
Comment from Boice, Ruth
Comment from Lukachy, Tami
Comment from Reinfried, Kay
Comment from Baron, Jodi
Comment from Strauss, Gregory
Comment from Tutt, Joe
Comment from Hanmer, Noah
Comment from Sayre, Peter
Comment from poland, barbara
Comment from Hight, Henrietta
Comment from Gosselin, Kathy
Comment from Bennett, Lauren K
Comment from Brennan, Matthew
Comment from Johnson, John
Comment from Freed, Alan
Comment from Singleton, Jon
Comment from Philipps, Justin
Comment from Anonymous Anonymous
Comment from Taliaferro, Jessica
Comment from Dupray, Cindy

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NOAA-NMFS-2020-0031-DRAFT-47611
NOAA-NMFS-2020-0031-DRAFT-47612
NOAA-NMFS-2020-0031-DRAFT-47613
NOAA-NMFS-2020-0031-DRAFT-47614
NOAA-NMFS-2020-0031-DRAFT-47615
NOAA-NMFS-2020-0031-DRAFT-47616
NOAA-NMFS-2020-0031-DRAFT-47617
NOAA-NMFS-2020-0031-DRAFT-47618
NOAA-NMFS-2020-0031-DRAFT-47619
NOAA-NMFS-2020-0031-DRAFT-47620
NOAA-NMFS-2020-0031-DRAFT-47621
NOAA-NMFS-2020-0031-DRAFT-47622
NOAA-NMFS-2020-0031-DRAFT-47623
NOAA-NMFS-2020-0031-DRAFT-47624
NOAA-NMFS-2020-0031-DRAFT-47625
NOAA-NMFS-2020-0031-DRAFT-47626
NOAA-NMFS-2020-0031-DRAFT-47627
NOAA-NMFS-2020-0031-DRAFT-47628
NOAA-NMFS-2020-0031-DRAFT-47629
NOAA-NMFS-2020-0031-DRAFT-47630
NOAA-NMFS-2020-0031-DRAFT-47631
NOAA-NMFS-2020-0031-DRAFT-47632
NOAA-NMFS-2020-0031-DRAFT-47633
NOAA-NMFS-2020-0031-DRAFT-47634
NOAA-NMFS-2020-0031-DRAFT-47635
NOAA-NMFS-2020-0031-DRAFT-47636
NOAA-NMFS-2020-0031-DRAFT-47637
NOAA-NMFS-2020-0031-DRAFT-47638
NOAA-NMFS-2020-0031-DRAFT-47639
NOAA-NMFS-2020-0031-DRAFT-47640
NOAA-NMFS-2020-0031-DRAFT-47641
NOAA-NMFS-2020-0031-DRAFT-47642
NOAA-NMFS-2020-0031-DRAFT-47643
NOAA-NMFS-2020-0031-DRAFT-47644
NOAA-NMFS-2020-0031-DRAFT-47645
NOAA-NMFS-2020-0031-DRAFT-47646
NOAA-NMFS-2020-0031-DRAFT-47647
NOAA-NMFS-2020-0031-DRAFT-47648
NOAA-NMFS-2020-0031-DRAFT-47649
NOAA-NMFS-2020-0031-DRAFT-47650
NOAA-NMFS-2020-0031-DRAFT-47651

Comment from Anonymous Anonymous
Comment from Sonette Tippens
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Vanessa Kong
Comment from Charles Mitchell
Comment from Kathy Rice
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Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Rose Berry
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Comment from karyn barry
Comment from Lise Maring
Comment from Teddy Su
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Comment from Michael Lieberman
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Comment from Anonymous Anonymous
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Comment from Maxine Parshall
Comment from SUSAN BURIAN
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NOAA-NMFS-2020-0031-DRAFT-42451
NOAA-NMFS-2020-0031-DRAFT-42452
NOAA-NMFS-2020-0031-DRAFT-42453
NOAA-NMFS-2020-0031-DRAFT-42454
NOAA-NMFS-2020-0031-DRAFT-42455
NOAA-NMFS-2020-0031-DRAFT-42456
NOAA-NMFS-2020-0031-DRAFT-42457
NOAA-NMFS-2020-0031-DRAFT-42458
NOAA-NMFS-2020-0031-DRAFT-42459
NOAA-NMFS-2020-0031-DRAFT-42460
NOAA-NMFS-2020-0031-DRAFT-42461
NOAA-NMFS-2020-0031-DRAFT-42462
NOAA-NMFS-2020-0031-DRAFT-42463
NOAA-NMFS-2020-0031-DRAFT-42464
NOAA-NMFS-2020-0031-DRAFT-42465
NOAA-NMFS-2020-0031-DRAFT-42466
NOAA-NMFS-2020-0031-DRAFT-42467
NOAA-NMFS-2020-0031-DRAFT-42468
NOAA-NMFS-2020-0031-DRAFT-42469
NOAA-NMFS-2020-0031-DRAFT-42470
NOAA-NMFS-2020-0031-DRAFT-42471
NOAA-NMFS-2020-0031-DRAFT-42472
NOAA-NMFS-2020-0031-DRAFT-42473
NOAA-NMFS-2020-0031-DRAFT-42474
NOAA-NMFS-2020-0031-DRAFT-42475
NOAA-NMFS-2020-0031-DRAFT-42476
NOAA-NMFS-2020-0031-DRAFT-42477
NOAA-NMFS-2020-0031-DRAFT-42478
NOAA-NMFS-2020-0031-DRAFT-42479
NOAA-NMFS-2020-0031-DRAFT-42480
NOAA-NMFS-2020-0031-DRAFT-42481
NOAA-NMFS-2020-0031-DRAFT-42482
NOAA-NMFS-2020-0031-DRAFT-42483
NOAA-NMFS-2020-0031-DRAFT-42484
NOAA-NMFS-2020-0031-DRAFT-42485
NOAA-NMFS-2020-0031-DRAFT-42486
NOAA-NMFS-2020-0031-DRAFT-42487
NOAA-NMFS-2020-0031-DRAFT-42488
NOAA-NMFS-2020-0031-DRAFT-42489
NOAA-NMFS-2020-0031-DRAFT-42490
NOAA-NMFS-2020-0031-DRAFT-42491

Comment from Ray, Laura
Comment from Nielsen, Lessli
Comment from Squire, Julie
Comment from Levins, Karen
Comment from SIPOS, STEVE
Comment from Anonymous Anonymous
Comment from Sarnacki, Al
Comment from Olenjack, Michael
Comment from Anonymous Anonymous
Comment from Gonzalez, Yazmin
Comment from Anonymous Anonymous
Comment from Peterson, Susan
Comment from Grajczyk, Joyce
Comment from Muradian, Becky
Comment from Golding, Julianna
Comment from petrillo, Diane-michele
Comment from Vadnais, Kathy
Comment from Hershey, Donald
Comment from Stone, William
Comment from Anonymous Anonymous
Comment from Schrader, Stacy
Comment from De Baca, Sylvia
Comment from Vlasopolos, Anca
Comment from Linn, Alan
Comment from Ketz-Robinson, Elizabeth
Comment from Jones-Bunn, Shawn
Comment from Fray, Linley
Comment from Wheeler, Janet
Comment from Aronson, Reevyn
Comment from Crane, Susan
Comment from DeBing, Therese
Comment from farley, barry
Comment from Rynes, Michael
Comment from Almares, Delia
Comment from Anonymous Anonymous
Comment from Orszulak, LJ
Comment from Anonymous Anonymous
Comment from Long, Janine
Comment from Thornton, Edward
Comment from Anonymous Anonymous
Comment from McCarthy, Debbie

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NOAA-NMFS-2020-0031-DRAFT-47652
NOAA-NMFS-2020-0031-DRAFT-47653
NOAA-NMFS-2020-0031-DRAFT-47654
NOAA-NMFS-2020-0031-DRAFT-47655
NOAA-NMFS-2020-0031-DRAFT-47656
NOAA-NMFS-2020-0031-DRAFT-47657
NOAA-NMFS-2020-0031-DRAFT-47658
NOAA-NMFS-2020-0031-DRAFT-47659
NOAA-NMFS-2020-0031-DRAFT-47660
NOAA-NMFS-2020-0031-DRAFT-47661
NOAA-NMFS-2020-0031-DRAFT-47662
NOAA-NMFS-2020-0031-DRAFT-47663
NOAA-NMFS-2020-0031-DRAFT-47664
NOAA-NMFS-2020-0031-DRAFT-47665
NOAA-NMFS-2020-0031-DRAFT-47666
NOAA-NMFS-2020-0031-DRAFT-47667
NOAA-NMFS-2020-0031-DRAFT-47668
NOAA-NMFS-2020-0031-DRAFT-47669
NOAA-NMFS-2020-0031-DRAFT-47670
NOAA-NMFS-2020-0031-DRAFT-47671
NOAA-NMFS-2020-0031-DRAFT-47672
NOAA-NMFS-2020-0031-DRAFT-47673
NOAA-NMFS-2020-0031-DRAFT-47674
NOAA-NMFS-2020-0031-DRAFT-47675
NOAA-NMFS-2020-0031-DRAFT-47676
NOAA-NMFS-2020-0031-DRAFT-47677
NOAA-NMFS-2020-0031-DRAFT-47678
NOAA-NMFS-2020-0031-DRAFT-47679
NOAA-NMFS-2020-0031-DRAFT-47680
NOAA-NMFS-2020-0031-DRAFT-47681
NOAA-NMFS-2020-0031-DRAFT-47682
NOAA-NMFS-2020-0031-DRAFT-47683
NOAA-NMFS-2020-0031-DRAFT-47684
NOAA-NMFS-2020-0031-DRAFT-47685
NOAA-NMFS-2020-0031-DRAFT-47686
NOAA-NMFS-2020-0031-DRAFT-47687
NOAA-NMFS-2020-0031-DRAFT-47688
NOAA-NMFS-2020-0031-DRAFT-47689
NOAA-NMFS-2020-0031-DRAFT-47690
NOAA-NMFS-2020-0031-DRAFT-47691
NOAA-NMFS-2020-0031-DRAFT-47692

Comment from Jodi Igard
Comment from Ruthann McDermott
Comment from Ruth Williams
Comment from Robin Bendler
Comment from Bret Polish
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Joseph Hess
Comment from Anonymous Anonymous
Comment from DANIEL WAITE
Comment from Anonymous Anonymous
Comment from Michelle Wenderlich
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Comment from Anonymous Anonymous
Comment from Jeffrey Freilich
Comment from Bonnie Mandel
Comment from Anonymous Anonymous
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Comment from Lisa Eisen
Comment from Tricia Thomas
Comment from Georgianna Whalen
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Comment from Caleope Bernhardt
Comment from Peter Graves
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Comment from Steve Hanlon
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Comment from Beverly Boling
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Comment from Stephen Anderson
Comment from Linda Phelan
Comment from Behnoosh Armani
Comment from Marta Dawes
Comment from Susan Lowe
Comment from Bernadette Andaloro
Comment from Mary Nagy

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NOAA-NMFS-2020-0031-DRAFT-42492
NOAA-NMFS-2020-0031-DRAFT-42493
NOAA-NMFS-2020-0031-DRAFT-42494
NOAA-NMFS-2020-0031-DRAFT-42495
NOAA-NMFS-2020-0031-DRAFT-42496
NOAA-NMFS-2020-0031-DRAFT-42497
NOAA-NMFS-2020-0031-DRAFT-42498
NOAA-NMFS-2020-0031-DRAFT-42499
NOAA-NMFS-2020-0031-DRAFT-42500
NOAA-NMFS-2020-0031-DRAFT-42501
NOAA-NMFS-2020-0031-DRAFT-42502
NOAA-NMFS-2020-0031-DRAFT-42503
NOAA-NMFS-2020-0031-DRAFT-42504
NOAA-NMFS-2020-0031-DRAFT-42505
NOAA-NMFS-2020-0031-DRAFT-42506
NOAA-NMFS-2020-0031-DRAFT-42507
NOAA-NMFS-2020-0031-DRAFT-42508
NOAA-NMFS-2020-0031-DRAFT-42509
NOAA-NMFS-2020-0031-DRAFT-42510
NOAA-NMFS-2020-0031-DRAFT-42511
NOAA-NMFS-2020-0031-DRAFT-42512
NOAA-NMFS-2020-0031-DRAFT-42513
NOAA-NMFS-2020-0031-DRAFT-42514
NOAA-NMFS-2020-0031-DRAFT-42515
NOAA-NMFS-2020-0031-DRAFT-42516
NOAA-NMFS-2020-0031-DRAFT-42517
NOAA-NMFS-2020-0031-DRAFT-42518
NOAA-NMFS-2020-0031-DRAFT-42519
NOAA-NMFS-2020-0031-DRAFT-42520
NOAA-NMFS-2020-0031-DRAFT-42521
NOAA-NMFS-2020-0031-DRAFT-42522
NOAA-NMFS-2020-0031-DRAFT-42523
NOAA-NMFS-2020-0031-DRAFT-42524
NOAA-NMFS-2020-0031-DRAFT-42525
NOAA-NMFS-2020-0031-DRAFT-42526
NOAA-NMFS-2020-0031-DRAFT-42527
NOAA-NMFS-2020-0031-DRAFT-42528
NOAA-NMFS-2020-0031-DRAFT-42529
NOAA-NMFS-2020-0031-DRAFT-42530
NOAA-NMFS-2020-0031-DRAFT-42531
NOAA-NMFS-2020-0031-DRAFT-42532

Comment from Laurie, Annie
Comment from Adams, Laura
Comment from Guidry, Gayle
Comment from Spiegel, Ilse
Comment from Wish, Wendy
Comment from Anonymous Anonymous
Comment from Muzychka, Rebecca
Comment from Reiss, Diana
Comment from Burtis, David
Comment from Anonymous Anonymous
Comment from Bank, Helene
Comment from Narvios, Raquel
Comment from Cherry, Judith
Comment from Rossner, A
Comment from Szczesniak, Dennis
Comment from Galus, Michaelene
Comment from Greenspan, Val
Comment from S., Nelson
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Comment from Topalian, Maggie
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Comment from Esposito, J
Comment from Gurdin, J. Barry
Comment from Remme, Sarah
Comment from Esposito, Thomas
Comment from Wallace, Patrice
Comment from Jefferys, Cindy
Comment from Blackburn, Paul
Comment from Allin, Roswitha
Comment from Watabayashi, Jenn
Comment from Anonymous Anonymous
Comment from Piche, Jennifer
Comment from Anonymous Anonymous
Comment from G, C
Comment from Lewis, Polly

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NOAA-NMFS-2020-0031-DRAFT-47693
NOAA-NMFS-2020-0031-DRAFT-47694
NOAA-NMFS-2020-0031-DRAFT-47695
NOAA-NMFS-2020-0031-DRAFT-47696
NOAA-NMFS-2020-0031-DRAFT-47697
NOAA-NMFS-2020-0031-DRAFT-47698
NOAA-NMFS-2020-0031-DRAFT-47699
NOAA-NMFS-2020-0031-DRAFT-47700
NOAA-NMFS-2020-0031-DRAFT-47701
NOAA-NMFS-2020-0031-DRAFT-47702
NOAA-NMFS-2020-0031-DRAFT-47703
NOAA-NMFS-2020-0031-DRAFT-47704
NOAA-NMFS-2020-0031-DRAFT-47705
NOAA-NMFS-2020-0031-DRAFT-47706
NOAA-NMFS-2020-0031-DRAFT-47707
NOAA-NMFS-2020-0031-DRAFT-47708
NOAA-NMFS-2020-0031-DRAFT-47709
NOAA-NMFS-2020-0031-DRAFT-47710
NOAA-NMFS-2020-0031-DRAFT-47711
NOAA-NMFS-2020-0031-DRAFT-47713
NOAA-NMFS-2020-0031-DRAFT-47714
NOAA-NMFS-2020-0031-DRAFT-47715
NOAA-NMFS-2020-0031-DRAFT-47716
NOAA-NMFS-2020-0031-DRAFT-47717
NOAA-NMFS-2020-0031-DRAFT-47718
NOAA-NMFS-2020-0031-DRAFT-47719
NOAA-NMFS-2020-0031-DRAFT-47720
NOAA-NMFS-2020-0031-DRAFT-47721
NOAA-NMFS-2020-0031-DRAFT-47722
NOAA-NMFS-2020-0031-DRAFT-47723
NOAA-NMFS-2020-0031-DRAFT-47724
NOAA-NMFS-2020-0031-DRAFT-47725
NOAA-NMFS-2020-0031-DRAFT-47726
NOAA-NMFS-2020-0031-DRAFT-47727
NOAA-NMFS-2020-0031-DRAFT-47728
NOAA-NMFS-2020-0031-DRAFT-47729
NOAA-NMFS-2020-0031-DRAFT-47730
NOAA-NMFS-2020-0031-DRAFT-47731
NOAA-NMFS-2020-0031-DRAFT-47732
NOAA-NMFS-2020-0031-DRAFT-47733
NOAA-NMFS-2020-0031-DRAFT-47734

Comment from Krista Hunter
Comment from Anonymous Anonymous
Comment from Charles Fitze
Comment from Alexandra Moore
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Martin Wieland
Comment from Anonymous Anonymous
Comment from John McPeek
Comment from Lyda Stillwell
Comment from Emma Ausman
Comment from Anonymous Anonymous
Comment from Joanne Perini
Comment from Hayden Frechette
Comment from Bruce Blum
Comment from Anonymous Anonymous
Comment from Raymond Arent
Comment from Meaghan Doherty
Comment from Melissa Shaffer-O'Connell
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Angela Knable
Comment from Edna Anderson
Comment from A.L. Steiner
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Robert Reed
Comment from Beth Hawes
Comment from Diane Rechner
Comment from L. Travers
Comment from Zack Greenberg
Comment from Deb Cyma
Comment from Anonymous Anonymous
Comment from Tristan Sophia
Comment from Laurie Woltman
Comment from Paula Sullivan
Comment from Anonymous Anonymous
Comment from allison alberts
Comment from Michele Piver
Comment from Susan Jordan

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NOAA-NMFS-2020-0031-DRAFT-42533
NOAA-NMFS-2020-0031-DRAFT-42534
NOAA-NMFS-2020-0031-DRAFT-42535
NOAA-NMFS-2020-0031-DRAFT-42536
NOAA-NMFS-2020-0031-DRAFT-42537
NOAA-NMFS-2020-0031-DRAFT-42538
NOAA-NMFS-2020-0031-DRAFT-42539
NOAA-NMFS-2020-0031-DRAFT-42540
NOAA-NMFS-2020-0031-DRAFT-42541
NOAA-NMFS-2020-0031-DRAFT-42542
NOAA-NMFS-2020-0031-DRAFT-42543
NOAA-NMFS-2020-0031-DRAFT-42544
NOAA-NMFS-2020-0031-DRAFT-42545
NOAA-NMFS-2020-0031-DRAFT-42546
NOAA-NMFS-2020-0031-DRAFT-42547
NOAA-NMFS-2020-0031-DRAFT-42548
NOAA-NMFS-2020-0031-DRAFT-42549
NOAA-NMFS-2020-0031-DRAFT-42550
NOAA-NMFS-2020-0031-DRAFT-42551
NOAA-NMFS-2020-0031-DRAFT-42552
NOAA-NMFS-2020-0031-DRAFT-42553
NOAA-NMFS-2020-0031-DRAFT-42554
NOAA-NMFS-2020-0031-DRAFT-42555
NOAA-NMFS-2020-0031-DRAFT-42556
NOAA-NMFS-2020-0031-DRAFT-42557
NOAA-NMFS-2020-0031-DRAFT-42558
NOAA-NMFS-2020-0031-DRAFT-42559
NOAA-NMFS-2020-0031-DRAFT-42560
NOAA-NMFS-2020-0031-DRAFT-42561
NOAA-NMFS-2020-0031-DRAFT-42562
NOAA-NMFS-2020-0031-DRAFT-42563
NOAA-NMFS-2020-0031-DRAFT-42564
NOAA-NMFS-2020-0031-DRAFT-42565
NOAA-NMFS-2020-0031-DRAFT-42566
NOAA-NMFS-2020-0031-DRAFT-42567
NOAA-NMFS-2020-0031-DRAFT-42568
NOAA-NMFS-2020-0031-DRAFT-42569
NOAA-NMFS-2020-0031-DRAFT-42570
NOAA-NMFS-2020-0031-DRAFT-42571
NOAA-NMFS-2020-0031-DRAFT-42572
NOAA-NMFS-2020-0031-DRAFT-42573

Comment from Vele, Brigid
Comment from Sells, Greg
Comment from Elia, Marguerite
Comment from Soddy, Diane
Comment from Leslie Richardson
Comment from Babineau, Mary
Comment from Salgado, Dalia
Comment from McCoy, Darilynn
Comment from Metz, Whitney
Comment from blastos, nancy
Comment from Wolfe, Charles
Comment from Javinsky, Elizabeth
Comment from Baker, Megan
Comment from Ahearn, Francis
Comment from Reynolds, Rebecca
Comment from Wendell, Patricia R.
Comment from Bocchetti, Ralph
Comment from White, Nancy
Comment from Ambrosio, Antoinette
Comment from Wilcox, David
Comment from Green, Jamie
Comment from Teder, Ann Marie
Comment from Rutzky, Ronald
Comment from Curiale, Ruth
Comment from Rose, Diann
Comment from Mattson, Lynn
Comment from Beitel, Timothy
Comment from Anonymous Anonymous
Comment from leeds, vicki
Comment from Fiddler, Kaleigh
Comment from Barnes, Noel
Comment from Frohn, Joyce
Comment from Balaban, Susan
Comment from Anonymous Anonymous
Comment from Blackwell-Marchant,
Patricia
Comment from Smith, Kelly
Comment from Anonymous Anonymous
Comment from Koff, Marilyn
Comment from Berliner, Diane
Comment from Goetz, Gary
Comment from Link-New, Virgene

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NOAA-NMFS-2020-0031-DRAFT-47735
NOAA-NMFS-2020-0031-DRAFT-47736
NOAA-NMFS-2020-0031-DRAFT-47737
NOAA-NMFS-2020-0031-DRAFT-47738
NOAA-NMFS-2020-0031-DRAFT-47739
NOAA-NMFS-2020-0031-DRAFT-47740
NOAA-NMFS-2020-0031-DRAFT-47741
NOAA-NMFS-2020-0031-DRAFT-47742
NOAA-NMFS-2020-0031-DRAFT-47743
NOAA-NMFS-2020-0031-DRAFT-47744
NOAA-NMFS-2020-0031-DRAFT-47745
NOAA-NMFS-2020-0031-DRAFT-47746
NOAA-NMFS-2020-0031-DRAFT-47747
NOAA-NMFS-2020-0031-DRAFT-47748
NOAA-NMFS-2020-0031-DRAFT-47749
NOAA-NMFS-2020-0031-DRAFT-47750
NOAA-NMFS-2020-0031-DRAFT-47751
NOAA-NMFS-2020-0031-DRAFT-47752
NOAA-NMFS-2020-0031-DRAFT-47753
NOAA-NMFS-2020-0031-DRAFT-47754
NOAA-NMFS-2020-0031-DRAFT-47755
NOAA-NMFS-2020-0031-DRAFT-47756
NOAA-NMFS-2020-0031-DRAFT-47757
NOAA-NMFS-2020-0031-DRAFT-47758
NOAA-NMFS-2020-0031-DRAFT-47759
NOAA-NMFS-2020-0031-DRAFT-47760
NOAA-NMFS-2020-0031-DRAFT-47761
NOAA-NMFS-2020-0031-DRAFT-47762
NOAA-NMFS-2020-0031-DRAFT-47763
NOAA-NMFS-2020-0031-DRAFT-47764
NOAA-NMFS-2020-0031-DRAFT-47765
NOAA-NMFS-2020-0031-DRAFT-47766
NOAA-NMFS-2020-0031-DRAFT-47767
NOAA-NMFS-2020-0031-DRAFT-47768
NOAA-NMFS-2020-0031-DRAFT-47769
NOAA-NMFS-2020-0031-DRAFT-47770
NOAA-NMFS-2020-0031-DRAFT-47771
NOAA-NMFS-2020-0031-DRAFT-47772
NOAA-NMFS-2020-0031-DRAFT-47773
NOAA-NMFS-2020-0031-DRAFT-47774
NOAA-NMFS-2020-0031-DRAFT-47775

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Janet Witzeman
Comment from Zak Mettger
Comment from Michael Smith
Comment from Anonymous Anonymous
Comment from Richard Partridge
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from William Aldrich
Comment from Elaine Russell
Comment from Richard Jackson
Comment from Anonymous Anonymous
Comment from Scott Bernstein
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Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Helen Navaline
Comment from Neil McQueen
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Comment from Marilee Nagy
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Comment from Augustin Parker
Comment from Gary Gover
Comment from Amy Freeman
Comment from Deborah Adler
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Ed Kraynak
Comment from Anonymous Anonymous
Comment from Norma. Hanson
Comment from Claudia Shapiro
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-42574
NOAA-NMFS-2020-0031-DRAFT-42575
NOAA-NMFS-2020-0031-DRAFT-42576
NOAA-NMFS-2020-0031-DRAFT-42577
NOAA-NMFS-2020-0031-DRAFT-42578
NOAA-NMFS-2020-0031-DRAFT-42579
NOAA-NMFS-2020-0031-DRAFT-42580
NOAA-NMFS-2020-0031-DRAFT-42581
NOAA-NMFS-2020-0031-DRAFT-42582
NOAA-NMFS-2020-0031-DRAFT-42583
NOAA-NMFS-2020-0031-DRAFT-42584
NOAA-NMFS-2020-0031-DRAFT-42585
NOAA-NMFS-2020-0031-DRAFT-42586
NOAA-NMFS-2020-0031-DRAFT-42587
NOAA-NMFS-2020-0031-DRAFT-42588
NOAA-NMFS-2020-0031-DRAFT-42589
NOAA-NMFS-2020-0031-DRAFT-42590
NOAA-NMFS-2020-0031-DRAFT-42591
NOAA-NMFS-2020-0031-DRAFT-42592
NOAA-NMFS-2020-0031-DRAFT-42593
NOAA-NMFS-2020-0031-DRAFT-42594
NOAA-NMFS-2020-0031-DRAFT-42595
NOAA-NMFS-2020-0031-DRAFT-42596
NOAA-NMFS-2020-0031-DRAFT-42597
NOAA-NMFS-2020-0031-DRAFT-42598
NOAA-NMFS-2020-0031-DRAFT-42599
NOAA-NMFS-2020-0031-DRAFT-42600
NOAA-NMFS-2020-0031-DRAFT-42601
NOAA-NMFS-2020-0031-DRAFT-42602
NOAA-NMFS-2020-0031-DRAFT-42603
NOAA-NMFS-2020-0031-DRAFT-42604
NOAA-NMFS-2020-0031-DRAFT-42605
NOAA-NMFS-2020-0031-DRAFT-42606
NOAA-NMFS-2020-0031-DRAFT-42608
NOAA-NMFS-2020-0031-DRAFT-42609
NOAA-NMFS-2020-0031-DRAFT-42610
NOAA-NMFS-2020-0031-DRAFT-42611
NOAA-NMFS-2020-0031-DRAFT-42612
NOAA-NMFS-2020-0031-DRAFT-42613
NOAA-NMFS-2020-0031-DRAFT-42614
NOAA-NMFS-2020-0031-DRAFT-42615

Comment from Gaudsmith, Henry
Comment from Rettig, Karin
Comment from Hall, Holly
Comment from Anonymous Anonymous
Comment from Warren, Megan
Comment from Greene, Linda
Comment from Bates, Elizabeth
Comment from heske, amanda
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Bissell, Jennifer
Comment from Ballard, Julia
Comment from Lazzara, Fran
Comment from Urbano, Tahiri
Comment from Wood, Evelyn
Comment from Jones, Angela
Comment from Wright, Joshua
Comment from Sherwood, Linda
Comment from Dunn, Ed
Comment from TARTAGLIA, DIANE
Comment from Bello, D
Comment from Sikes, Cathy
Comment from McGinn, Chris
Comment from Pellegrino, Frank
Comment from Hughes, Kevin
Comment from Anonymous Anonymous
Comment from Post, Heath
Comment from Smith, Timmie
Comment from Johnson, G. G.
Comment from McClintock, Gloria
Comment from McHendry, Kathleen
Comment from Foglia, Jo Ann
Comment from cromarty, barbara
Comment from dunn, kathy
Comment from Lang, Lynn C.
Comment from Macan, Edward
Comment from Jones, Amelia
Comment from koeck, diana
Comment from Pearson, Rick
Comment from Caputo, Michael
Comment from Lenchner, Nicholas

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NOAA-NMFS-2020-0031-DRAFT-47776
NOAA-NMFS-2020-0031-DRAFT-47777
NOAA-NMFS-2020-0031-DRAFT-47778
NOAA-NMFS-2020-0031-DRAFT-47779
NOAA-NMFS-2020-0031-DRAFT-47780
NOAA-NMFS-2020-0031-DRAFT-47781
NOAA-NMFS-2020-0031-DRAFT-47782
NOAA-NMFS-2020-0031-DRAFT-47783
NOAA-NMFS-2020-0031-DRAFT-47784
NOAA-NMFS-2020-0031-DRAFT-47785
NOAA-NMFS-2020-0031-DRAFT-47786
NOAA-NMFS-2020-0031-DRAFT-47787
NOAA-NMFS-2020-0031-DRAFT-47788
NOAA-NMFS-2020-0031-DRAFT-47789
NOAA-NMFS-2020-0031-DRAFT-47790
NOAA-NMFS-2020-0031-DRAFT-47791
NOAA-NMFS-2020-0031-DRAFT-47792
NOAA-NMFS-2020-0031-DRAFT-47793
NOAA-NMFS-2020-0031-DRAFT-47794
NOAA-NMFS-2020-0031-DRAFT-47795
NOAA-NMFS-2020-0031-DRAFT-47796
NOAA-NMFS-2020-0031-DRAFT-47797
NOAA-NMFS-2020-0031-DRAFT-47798
NOAA-NMFS-2020-0031-DRAFT-47799
NOAA-NMFS-2020-0031-DRAFT-47801
NOAA-NMFS-2020-0031-DRAFT-47802
NOAA-NMFS-2020-0031-DRAFT-47803
NOAA-NMFS-2020-0031-DRAFT-47804
NOAA-NMFS-2020-0031-DRAFT-47805
NOAA-NMFS-2020-0031-DRAFT-47806
NOAA-NMFS-2020-0031-DRAFT-47807
NOAA-NMFS-2020-0031-DRAFT-47808
NOAA-NMFS-2020-0031-DRAFT-47809
NOAA-NMFS-2020-0031-DRAFT-47810
NOAA-NMFS-2020-0031-DRAFT-47811
NOAA-NMFS-2020-0031-DRAFT-47812
NOAA-NMFS-2020-0031-DRAFT-47813
NOAA-NMFS-2020-0031-DRAFT-47814
NOAA-NMFS-2020-0031-DRAFT-47815
NOAA-NMFS-2020-0031-DRAFT-47816
NOAA-NMFS-2020-0031-DRAFT-47817

Comment from Jessica Wodinsky
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from BARBARA GRAPER
Comment from Stacey Malles
Comment from page wayne
Comment from Anonymous Anonymous
Comment from Meryl Alexander
Comment from Bennie Scott
Comment from Dreama Dandy
Comment from Lisanne Panter
Comment from Julie Sears
Comment from Janet Gawthrop
Comment from Matthew Boguske
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from Sara Schmidt
Comment from Shatoiya De La Tour
Comment from Anonymous Anonymous
Comment from David Rosenfeld
Comment from Anonymous Anonymous
Comment from Warner Smith
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Comment from Jennifer Hauge
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Comment from Richard Han
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Comment from Leo Ashton
Comment from Janet McHugh
Comment from Regina Marone
Comment from Anonymous Anonymous
Comment from Susan Lambert
Comment from Lorraine Brabham
Comment from Anonymous Anonymous
Comment from Joan Dornbusch
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-42616
NOAA-NMFS-2020-0031-DRAFT-42617
NOAA-NMFS-2020-0031-DRAFT-42618
NOAA-NMFS-2020-0031-DRAFT-42619
NOAA-NMFS-2020-0031-DRAFT-42620
NOAA-NMFS-2020-0031-DRAFT-42621
NOAA-NMFS-2020-0031-DRAFT-42622
NOAA-NMFS-2020-0031-DRAFT-42623
NOAA-NMFS-2020-0031-DRAFT-42624
NOAA-NMFS-2020-0031-DRAFT-42625
NOAA-NMFS-2020-0031-DRAFT-42626
NOAA-NMFS-2020-0031-DRAFT-42627
NOAA-NMFS-2020-0031-DRAFT-42628
NOAA-NMFS-2020-0031-DRAFT-42629
NOAA-NMFS-2020-0031-DRAFT-42630
NOAA-NMFS-2020-0031-DRAFT-42631
NOAA-NMFS-2020-0031-DRAFT-42632
NOAA-NMFS-2020-0031-DRAFT-42633
NOAA-NMFS-2020-0031-DRAFT-42634
NOAA-NMFS-2020-0031-DRAFT-42635
NOAA-NMFS-2020-0031-DRAFT-42636
NOAA-NMFS-2020-0031-DRAFT-42637
NOAA-NMFS-2020-0031-DRAFT-42638
NOAA-NMFS-2020-0031-DRAFT-42639
NOAA-NMFS-2020-0031-DRAFT-42640
NOAA-NMFS-2020-0031-DRAFT-42641
NOAA-NMFS-2020-0031-DRAFT-42642
NOAA-NMFS-2020-0031-DRAFT-42643
NOAA-NMFS-2020-0031-DRAFT-42644
NOAA-NMFS-2020-0031-DRAFT-42645
NOAA-NMFS-2020-0031-DRAFT-42646
NOAA-NMFS-2020-0031-DRAFT-42647
NOAA-NMFS-2020-0031-DRAFT-42648
NOAA-NMFS-2020-0031-DRAFT-42649
NOAA-NMFS-2020-0031-DRAFT-42650
NOAA-NMFS-2020-0031-DRAFT-42651
NOAA-NMFS-2020-0031-DRAFT-42652
NOAA-NMFS-2020-0031-DRAFT-42653
NOAA-NMFS-2020-0031-DRAFT-42654
NOAA-NMFS-2020-0031-DRAFT-42655
NOAA-NMFS-2020-0031-DRAFT-42656

Comment from hang, khai
Comment from Altaffer, Jeff
Comment from Erika Boka
Comment from CHARLEBOIS, STACIE
Comment from Vogel, Steven
Comment from Foster, Marguerite
Comment from Cornez, Sandi
Comment from Bonnell, Paula
Comment from Durbin, Kira
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Comment from Goetinck, Jean
Comment from Rollings, Rusty
Comment from Schofield, Anna
Comment from Beavers, Nancy
Comment from Conoscenti, Paula
Comment from Ghosh, Sudeshna
Comment from Crase, Steve
Comment from Anonymous Anonymous
Comment from Rosmer, David
Comment from Ardito, Gary Wolf
Comment from Wallace, Pam
Comment from Long, Eva
Comment from Banks, Janice
Comment from Karpov, Clarinda
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Comment from Costa, Sandra
Comment from Mickelsen, Patti
Comment from Cardoso, Tânia
Comment from Silverman, Barbara
Comment from camardo, mary
Comment from Verkamp, Doris
Comment from Gee, Karen
Comment from Kruckenberg, Mindy
Comment from MCNAIR, DIANA
Comment from Cohen, Judy
Comment from drescher, frances
Comment from Anonymous Anonymous
Comment from moffatt, andy
Comment from Postel, Patricia
Comment from Schultz, Denise
Comment from Seltzer, Elizabeth

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NOAA-NMFS-2020-0031-DRAFT-47818
NOAA-NMFS-2020-0031-DRAFT-47819
NOAA-NMFS-2020-0031-DRAFT-47820
NOAA-NMFS-2020-0031-DRAFT-47821
NOAA-NMFS-2020-0031-DRAFT-47822
NOAA-NMFS-2020-0031-DRAFT-47823
NOAA-NMFS-2020-0031-DRAFT-47824
NOAA-NMFS-2020-0031-DRAFT-47825
NOAA-NMFS-2020-0031-DRAFT-47826
NOAA-NMFS-2020-0031-DRAFT-47827
NOAA-NMFS-2020-0031-DRAFT-47828
NOAA-NMFS-2020-0031-DRAFT-47829
NOAA-NMFS-2020-0031-DRAFT-47830
NOAA-NMFS-2020-0031-DRAFT-47831
NOAA-NMFS-2020-0031-DRAFT-47832
NOAA-NMFS-2020-0031-DRAFT-47833
NOAA-NMFS-2020-0031-DRAFT-47834
NOAA-NMFS-2020-0031-DRAFT-47835
NOAA-NMFS-2020-0031-DRAFT-47836
NOAA-NMFS-2020-0031-DRAFT-47837
NOAA-NMFS-2020-0031-DRAFT-47838
NOAA-NMFS-2020-0031-DRAFT-47839
NOAA-NMFS-2020-0031-DRAFT-47840
NOAA-NMFS-2020-0031-DRAFT-47841
NOAA-NMFS-2020-0031-DRAFT-47842
NOAA-NMFS-2020-0031-DRAFT-47843
NOAA-NMFS-2020-0031-DRAFT-47844
NOAA-NMFS-2020-0031-DRAFT-47845
NOAA-NMFS-2020-0031-DRAFT-47846
NOAA-NMFS-2020-0031-DRAFT-47847
NOAA-NMFS-2020-0031-DRAFT-47848
NOAA-NMFS-2020-0031-DRAFT-47849
NOAA-NMFS-2020-0031-DRAFT-47850
NOAA-NMFS-2020-0031-DRAFT-47851
NOAA-NMFS-2020-0031-DRAFT-47852
NOAA-NMFS-2020-0031-DRAFT-47853
NOAA-NMFS-2020-0031-DRAFT-47854
NOAA-NMFS-2020-0031-DRAFT-47855
NOAA-NMFS-2020-0031-DRAFT-47856
NOAA-NMFS-2020-0031-DRAFT-47857
NOAA-NMFS-2020-0031-DRAFT-47858

Comment from Kristin Huntoon
Comment from Sheila Silan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from joyce kolasa
Comment from Marybeth Diss
Comment from Anonymous Anonymous
Comment from Joyce Schwartz
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
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Comment from sandra zuckerman
Comment from Anonymous Anonymous
Comment from Mary Woytysiak
Comment from Summer Mitchell
Comment from Anonymous Anonymous
Comment from Rochelle La Frinere
Comment from Lily Lau-Enright
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Comment from Maria Amado
Comment from Anonymous Anonymous
Comment from Michael Secino
Comment from Michele Temple
Comment from Anonymous Anonymous
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Comment from Gloria Uribe
Comment from Betty David
Comment from Anonymous Anonymous
Comment from Lisa Mistretta
Comment from Sue Merris
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NOAA-NMFS-2020-0031-DRAFT-42657
NOAA-NMFS-2020-0031-DRAFT-42658
NOAA-NMFS-2020-0031-DRAFT-42659
NOAA-NMFS-2020-0031-DRAFT-42660
NOAA-NMFS-2020-0031-DRAFT-42661
NOAA-NMFS-2020-0031-DRAFT-42662
NOAA-NMFS-2020-0031-DRAFT-42663
NOAA-NMFS-2020-0031-DRAFT-42664
NOAA-NMFS-2020-0031-DRAFT-42665
NOAA-NMFS-2020-0031-DRAFT-42666
NOAA-NMFS-2020-0031-DRAFT-42667
NOAA-NMFS-2020-0031-DRAFT-42668
NOAA-NMFS-2020-0031-DRAFT-42669
NOAA-NMFS-2020-0031-DRAFT-42670
NOAA-NMFS-2020-0031-DRAFT-42671
NOAA-NMFS-2020-0031-DRAFT-42672
NOAA-NMFS-2020-0031-DRAFT-42673
NOAA-NMFS-2020-0031-DRAFT-42674
NOAA-NMFS-2020-0031-DRAFT-42675
NOAA-NMFS-2020-0031-DRAFT-42676
NOAA-NMFS-2020-0031-DRAFT-42677
NOAA-NMFS-2020-0031-DRAFT-42678
NOAA-NMFS-2020-0031-DRAFT-42679
NOAA-NMFS-2020-0031-DRAFT-42680
NOAA-NMFS-2020-0031-DRAFT-42681
NOAA-NMFS-2020-0031-DRAFT-42682
NOAA-NMFS-2020-0031-DRAFT-42683
NOAA-NMFS-2020-0031-DRAFT-42684
NOAA-NMFS-2020-0031-DRAFT-42685
NOAA-NMFS-2020-0031-DRAFT-42686
NOAA-NMFS-2020-0031-DRAFT-42687
NOAA-NMFS-2020-0031-DRAFT-42688
NOAA-NMFS-2020-0031-DRAFT-42689
NOAA-NMFS-2020-0031-DRAFT-42690
NOAA-NMFS-2020-0031-DRAFT-42691
NOAA-NMFS-2020-0031-DRAFT-42692
NOAA-NMFS-2020-0031-DRAFT-42693
NOAA-NMFS-2020-0031-DRAFT-42694
NOAA-NMFS-2020-0031-DRAFT-42695
NOAA-NMFS-2020-0031-DRAFT-42696
NOAA-NMFS-2020-0031-DRAFT-42697

Comment from Anonymous Anonymous
Comment from Nizza, Simona
Comment from Galante, Theresa
Comment from bleecker, sam
Comment from Morris, Deirdre
Comment from Nihipali, Michele
Comment from Ghee, BETTY
Comment from Anonymous Anonymous
Comment from Seltzer, Devon
Comment from Mestemaker-Harris, Cathie
Comment from Delgado, Barbara
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lugg, Loren
Comment from Olson, greg
Comment from Howard, Mary
Comment from NORRIS, SANDY
Comment from Keiser, Robert
Comment from Schaub, Marsha
Comment from Snedeker, Stephanie
Comment from Anonymous Anonymous
Comment from ROSEN, RONA
Comment from Cook, Gordon
Comment from Anker, Roger
Comment from Summitt, Goldyn
Comment from Siegel, Paul
Comment from Ward, Nancy
Comment from Clark, Diane
Comment from chase, deborah
Comment from Gruver, Chere
Comment from Bryant, Lori
Comment from Anonymous Anonymous
Comment from venegas, andres
Comment from Bomarito, MaryAnn
Comment from Mezrahi, Priscilla
Comment from LoMonaco, Alexa
Comment from Smolinski, Claire
Comment from Richards, Judy
Comment from Anonymous Anonymous
Comment from Strelke, Robert
Comment from Evask, Melissa

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NOAA-NMFS-2020-0031-DRAFT-47859
NOAA-NMFS-2020-0031-DRAFT-47860
NOAA-NMFS-2020-0031-DRAFT-47861
NOAA-NMFS-2020-0031-DRAFT-47862
NOAA-NMFS-2020-0031-DRAFT-47863
NOAA-NMFS-2020-0031-DRAFT-47865
NOAA-NMFS-2020-0031-DRAFT-47866
NOAA-NMFS-2020-0031-DRAFT-47867
NOAA-NMFS-2020-0031-DRAFT-47868
NOAA-NMFS-2020-0031-DRAFT-47869
NOAA-NMFS-2020-0031-DRAFT-47870
NOAA-NMFS-2020-0031-DRAFT-47871
NOAA-NMFS-2020-0031-DRAFT-47872
NOAA-NMFS-2020-0031-DRAFT-47873
NOAA-NMFS-2020-0031-DRAFT-47874
NOAA-NMFS-2020-0031-DRAFT-47875
NOAA-NMFS-2020-0031-DRAFT-47876
NOAA-NMFS-2020-0031-DRAFT-47877
NOAA-NMFS-2020-0031-DRAFT-47878
NOAA-NMFS-2020-0031-DRAFT-47879
NOAA-NMFS-2020-0031-DRAFT-47880
NOAA-NMFS-2020-0031-DRAFT-47882
NOAA-NMFS-2020-0031-DRAFT-47883
NOAA-NMFS-2020-0031-DRAFT-47884
NOAA-NMFS-2020-0031-DRAFT-47885
NOAA-NMFS-2020-0031-DRAFT-47886
NOAA-NMFS-2020-0031-DRAFT-47887
NOAA-NMFS-2020-0031-DRAFT-47888
NOAA-NMFS-2020-0031-DRAFT-47889
NOAA-NMFS-2020-0031-DRAFT-47890
NOAA-NMFS-2020-0031-DRAFT-47891
NOAA-NMFS-2020-0031-DRAFT-47892
NOAA-NMFS-2020-0031-DRAFT-47893
NOAA-NMFS-2020-0031-DRAFT-47894
NOAA-NMFS-2020-0031-DRAFT-47895
NOAA-NMFS-2020-0031-DRAFT-47896
NOAA-NMFS-2020-0031-DRAFT-47897
NOAA-NMFS-2020-0031-DRAFT-47898
NOAA-NMFS-2020-0031-DRAFT-47899
NOAA-NMFS-2020-0031-DRAFT-47900
NOAA-NMFS-2020-0031-DRAFT-47901

Comment from Thomas Wightman
Comment from Bruce Wheeler
Comment from Anonymous Anonymous
Comment from Johanna Held
Comment from steve hopkins
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Barbara Hoch
Comment from Prince, Courtney
Comment from Labille, Julie
Comment from Janet Draper
Comment from Anonymous Anonymous
Comment from Etta Robin
Comment from Barbara Rauh
Comment from Patricia Waddleton
Comment from Anonymous Anonymous
Comment from CANDACE FISCHER
Comment from Eliot Kaplan
Comment from Diane Brown
Comment from Carrie Darling
Comment from Virginia Garesche
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Jane poklemba
Comment from Mark Lotito
Comment from Adrienne Naylor
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gerald Kretmar
Comment from Robert Kalovsky
Comment from Kristen Keefe
Comment from Elka Zwick
Comment from Anonymous Anonymous
Comment from P Turic
Comment from Judy Love
Comment from Glenda Higdon
Comment from Annie Chilcote-Carkhuff
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-42699
NOAA-NMFS-2020-0031-DRAFT-42700
NOAA-NMFS-2020-0031-DRAFT-42701
NOAA-NMFS-2020-0031-DRAFT-42702
NOAA-NMFS-2020-0031-DRAFT-42703
NOAA-NMFS-2020-0031-DRAFT-42704
NOAA-NMFS-2020-0031-DRAFT-42705
NOAA-NMFS-2020-0031-DRAFT-42706
NOAA-NMFS-2020-0031-DRAFT-42707
NOAA-NMFS-2020-0031-DRAFT-42708
NOAA-NMFS-2020-0031-DRAFT-42709
NOAA-NMFS-2020-0031-DRAFT-42710
NOAA-NMFS-2020-0031-DRAFT-42711
NOAA-NMFS-2020-0031-DRAFT-42712
NOAA-NMFS-2020-0031-DRAFT-42713
NOAA-NMFS-2020-0031-DRAFT-42714
NOAA-NMFS-2020-0031-DRAFT-42715
NOAA-NMFS-2020-0031-DRAFT-42716
NOAA-NMFS-2020-0031-DRAFT-42717
NOAA-NMFS-2020-0031-DRAFT-42718
NOAA-NMFS-2020-0031-DRAFT-42719
NOAA-NMFS-2020-0031-DRAFT-42720
NOAA-NMFS-2020-0031-DRAFT-42721
NOAA-NMFS-2020-0031-DRAFT-42722
NOAA-NMFS-2020-0031-DRAFT-42723
NOAA-NMFS-2020-0031-DRAFT-42724
NOAA-NMFS-2020-0031-DRAFT-42725
NOAA-NMFS-2020-0031-DRAFT-42726
NOAA-NMFS-2020-0031-DRAFT-42727
NOAA-NMFS-2020-0031-DRAFT-42728
NOAA-NMFS-2020-0031-DRAFT-42729
NOAA-NMFS-2020-0031-DRAFT-42730
NOAA-NMFS-2020-0031-DRAFT-42731
NOAA-NMFS-2020-0031-DRAFT-42732
NOAA-NMFS-2020-0031-DRAFT-42733
NOAA-NMFS-2020-0031-DRAFT-42734
NOAA-NMFS-2020-0031-DRAFT-42735
NOAA-NMFS-2020-0031-DRAFT-42736
NOAA-NMFS-2020-0031-DRAFT-42737
NOAA-NMFS-2020-0031-DRAFT-42738
NOAA-NMFS-2020-0031-DRAFT-42739

Comment from Stidger, Dave
Comment from Anonymous Anonymous
Comment from Bugliarelli, Diane
Comment from Anonymous Anonymous
Comment from Allman, Susan
Comment from Malara-Aiello, Grace
Comment from Nelson, S
Comment from Watson, Carol Knight
Comment from Rupp, Nancy
Comment from Gutfleisch, Ellen
Comment from Clark, Kent John
Comment from Anonymous Anonymous
Comment from Collier, Holly
Comment from Skipworth, Carl
Comment from Swoffer, Thomas
Comment from Zelinski, Dawn
Comment from Von Dohlen, Lindy A
Comment from Anonymous Anonymous
Comment from Matta, Dawn
Comment from Leibenson, Carol
Comment from Warner, Carolyn
Comment from Davitt, Margaret
Comment from Aquino, Hilary
Comment from Han, Richard
Comment from Anonymous Anonymous
Comment from Gregory, Renee
Comment from Sifuentes, D.G.
Comment from Knoff, Erik
Comment from Cemenska, Marci
Comment from Maronge, Peter
Comment from Anonymous Anonymous
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Comment from Materi, Sandra
Comment from Robinett, Joseph
Comment from rosen, rona
Comment from Flanagan-Riner, Dax
Comment from demarais, jackie
Comment from Anonymous Anonymous
Comment from AMMON, CARA
Comment from Chagnon, Jean

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NOAA-NMFS-2020-0031-DRAFT-47902
NOAA-NMFS-2020-0031-DRAFT-47903
NOAA-NMFS-2020-0031-DRAFT-47904
NOAA-NMFS-2020-0031-DRAFT-47905
NOAA-NMFS-2020-0031-DRAFT-47906
NOAA-NMFS-2020-0031-DRAFT-47907
NOAA-NMFS-2020-0031-DRAFT-47908
NOAA-NMFS-2020-0031-DRAFT-47909
NOAA-NMFS-2020-0031-DRAFT-47910
NOAA-NMFS-2020-0031-DRAFT-47911
NOAA-NMFS-2020-0031-DRAFT-47912
NOAA-NMFS-2020-0031-DRAFT-47913
NOAA-NMFS-2020-0031-DRAFT-47914
NOAA-NMFS-2020-0031-DRAFT-47915
NOAA-NMFS-2020-0031-DRAFT-47916
NOAA-NMFS-2020-0031-DRAFT-47917
NOAA-NMFS-2020-0031-DRAFT-47918
NOAA-NMFS-2020-0031-DRAFT-47919
NOAA-NMFS-2020-0031-DRAFT-47920
NOAA-NMFS-2020-0031-DRAFT-47921
NOAA-NMFS-2020-0031-DRAFT-47922
NOAA-NMFS-2020-0031-DRAFT-47923
NOAA-NMFS-2020-0031-DRAFT-47924
NOAA-NMFS-2020-0031-DRAFT-47925
NOAA-NMFS-2020-0031-DRAFT-47926
NOAA-NMFS-2020-0031-DRAFT-47927
NOAA-NMFS-2020-0031-DRAFT-47928
NOAA-NMFS-2020-0031-DRAFT-47929
NOAA-NMFS-2020-0031-DRAFT-47930
NOAA-NMFS-2020-0031-DRAFT-47931
NOAA-NMFS-2020-0031-DRAFT-47932
NOAA-NMFS-2020-0031-DRAFT-47933
NOAA-NMFS-2020-0031-DRAFT-47934
NOAA-NMFS-2020-0031-DRAFT-47935
NOAA-NMFS-2020-0031-DRAFT-47936
NOAA-NMFS-2020-0031-DRAFT-47937
NOAA-NMFS-2020-0031-DRAFT-47938
NOAA-NMFS-2020-0031-DRAFT-47939
NOAA-NMFS-2020-0031-DRAFT-47940
NOAA-NMFS-2020-0031-DRAFT-47941
NOAA-NMFS-2020-0031-DRAFT-47942

Comment from Anonymous Anonymous
Comment from Sandra Materi
Comment from Ann Barnes
Comment from Jane Bidimian
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Tom Sunlake
Comment from Leda Zimmerman
Comment from Anonymous Anonymous
Comment from Phyllis Swank
Comment from cheryl kathan
Comment from Raffaella Selvaggio
Comment from Marsha Armstrong
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carlos Mata
Comment from Sally Rings
Comment from Ann Barnes
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Comment from Gloria Muszynski
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Comment from Carolina Santiago
Comment from Kerry Dockery
Comment from Carol Batchelder
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Comment from Pamela Woods
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Comment from Lynne Jones
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Comment from Mary Valenzano
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Comment from Anonymous Anonymous
Comment from Stephen Rolston
Comment from Judith Fry
Comment from Linda Swan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-42740
NOAA-NMFS-2020-0031-DRAFT-42741
NOAA-NMFS-2020-0031-DRAFT-42742
NOAA-NMFS-2020-0031-DRAFT-42743
NOAA-NMFS-2020-0031-DRAFT-42744
NOAA-NMFS-2020-0031-DRAFT-42745
NOAA-NMFS-2020-0031-DRAFT-42746
NOAA-NMFS-2020-0031-DRAFT-42747
NOAA-NMFS-2020-0031-DRAFT-42748
NOAA-NMFS-2020-0031-DRAFT-42749
NOAA-NMFS-2020-0031-DRAFT-42750
NOAA-NMFS-2020-0031-DRAFT-42751
NOAA-NMFS-2020-0031-DRAFT-42752
NOAA-NMFS-2020-0031-DRAFT-42753
NOAA-NMFS-2020-0031-DRAFT-42754
NOAA-NMFS-2020-0031-DRAFT-42755
NOAA-NMFS-2020-0031-DRAFT-42756
NOAA-NMFS-2020-0031-DRAFT-42757
NOAA-NMFS-2020-0031-DRAFT-42758
NOAA-NMFS-2020-0031-DRAFT-42759
NOAA-NMFS-2020-0031-DRAFT-42760
NOAA-NMFS-2020-0031-DRAFT-42761
NOAA-NMFS-2020-0031-DRAFT-42762
NOAA-NMFS-2020-0031-DRAFT-42763
NOAA-NMFS-2020-0031-DRAFT-42764
NOAA-NMFS-2020-0031-DRAFT-42765
NOAA-NMFS-2020-0031-DRAFT-42766
NOAA-NMFS-2020-0031-DRAFT-42767
NOAA-NMFS-2020-0031-DRAFT-42768
NOAA-NMFS-2020-0031-DRAFT-42769
NOAA-NMFS-2020-0031-DRAFT-42770
NOAA-NMFS-2020-0031-DRAFT-42771
NOAA-NMFS-2020-0031-DRAFT-42772
NOAA-NMFS-2020-0031-DRAFT-42773
NOAA-NMFS-2020-0031-DRAFT-42774
NOAA-NMFS-2020-0031-DRAFT-42775
NOAA-NMFS-2020-0031-DRAFT-42776
NOAA-NMFS-2020-0031-DRAFT-42777
NOAA-NMFS-2020-0031-DRAFT-42778
NOAA-NMFS-2020-0031-DRAFT-42779
NOAA-NMFS-2020-0031-DRAFT-42780

Comment from Chagnon, Jean
Comment from KORTRIGHT, JILL
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Comment from Freed, Alan
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Comment from Ramey, Veronica
Comment from Plucińska, Wanda
Comment from Schümmer, Sue
Comment from Bindas, Janet
Comment from Keene, Margaret
Comment from Curry, Nathalie
Comment from Anonymous Anonymous
Comment from Doolen, Tina

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NOAA-NMFS-2020-0031-DRAFT-47943
NOAA-NMFS-2020-0031-DRAFT-47944
NOAA-NMFS-2020-0031-DRAFT-47945
NOAA-NMFS-2020-0031-DRAFT-47946
NOAA-NMFS-2020-0031-DRAFT-47947
NOAA-NMFS-2020-0031-DRAFT-47948
NOAA-NMFS-2020-0031-DRAFT-47949
NOAA-NMFS-2020-0031-DRAFT-47950
NOAA-NMFS-2020-0031-DRAFT-47951
NOAA-NMFS-2020-0031-DRAFT-47952
NOAA-NMFS-2020-0031-DRAFT-47953
NOAA-NMFS-2020-0031-DRAFT-47954
NOAA-NMFS-2020-0031-DRAFT-47955
NOAA-NMFS-2020-0031-DRAFT-47956
NOAA-NMFS-2020-0031-DRAFT-47957
NOAA-NMFS-2020-0031-DRAFT-47958
NOAA-NMFS-2020-0031-DRAFT-47959
NOAA-NMFS-2020-0031-DRAFT-47960
NOAA-NMFS-2020-0031-DRAFT-47961
NOAA-NMFS-2020-0031-DRAFT-47962
NOAA-NMFS-2020-0031-DRAFT-47963
NOAA-NMFS-2020-0031-DRAFT-47964
NOAA-NMFS-2020-0031-DRAFT-47965
NOAA-NMFS-2020-0031-DRAFT-47966
NOAA-NMFS-2020-0031-DRAFT-47967
NOAA-NMFS-2020-0031-DRAFT-47968
NOAA-NMFS-2020-0031-DRAFT-47969
NOAA-NMFS-2020-0031-DRAFT-47970
NOAA-NMFS-2020-0031-DRAFT-47971
NOAA-NMFS-2020-0031-DRAFT-47972
NOAA-NMFS-2020-0031-DRAFT-47973
NOAA-NMFS-2020-0031-DRAFT-47974
NOAA-NMFS-2020-0031-DRAFT-47975
NOAA-NMFS-2020-0031-DRAFT-47976
NOAA-NMFS-2020-0031-DRAFT-47977
NOAA-NMFS-2020-0031-DRAFT-47978
NOAA-NMFS-2020-0031-DRAFT-47979
NOAA-NMFS-2020-0031-DRAFT-47980
NOAA-NMFS-2020-0031-DRAFT-47981
NOAA-NMFS-2020-0031-DRAFT-47982
NOAA-NMFS-2020-0031-DRAFT-47984

Comment from Diana Springfield
Comment from Steve Gould
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Comment from Hillary Tiefer
Comment from Michelle Jarrard
Comment from Elisabeth Jakab
Comment from Paul Meyer
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Comment from Andrea Prieto
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Comment from Sherry Seeton
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NOAA-NMFS-2020-0031-DRAFT-42781
NOAA-NMFS-2020-0031-DRAFT-42782
NOAA-NMFS-2020-0031-DRAFT-42783
NOAA-NMFS-2020-0031-DRAFT-42784
NOAA-NMFS-2020-0031-DRAFT-42785
NOAA-NMFS-2020-0031-DRAFT-42786
NOAA-NMFS-2020-0031-DRAFT-42787
NOAA-NMFS-2020-0031-DRAFT-42788
NOAA-NMFS-2020-0031-DRAFT-42789
NOAA-NMFS-2020-0031-DRAFT-42790
NOAA-NMFS-2020-0031-DRAFT-42791
NOAA-NMFS-2020-0031-DRAFT-42792
NOAA-NMFS-2020-0031-DRAFT-42793
NOAA-NMFS-2020-0031-DRAFT-42794
NOAA-NMFS-2020-0031-DRAFT-42795
NOAA-NMFS-2020-0031-DRAFT-42796
NOAA-NMFS-2020-0031-DRAFT-42797
NOAA-NMFS-2020-0031-DRAFT-42798
NOAA-NMFS-2020-0031-DRAFT-42799
NOAA-NMFS-2020-0031-DRAFT-42800
NOAA-NMFS-2020-0031-DRAFT-42801
NOAA-NMFS-2020-0031-DRAFT-42802
NOAA-NMFS-2020-0031-DRAFT-42803
NOAA-NMFS-2020-0031-DRAFT-42804
NOAA-NMFS-2020-0031-DRAFT-42805
NOAA-NMFS-2020-0031-DRAFT-42806
NOAA-NMFS-2020-0031-DRAFT-42807
NOAA-NMFS-2020-0031-DRAFT-42808
NOAA-NMFS-2020-0031-DRAFT-42809
NOAA-NMFS-2020-0031-DRAFT-42810
NOAA-NMFS-2020-0031-DRAFT-42811
NOAA-NMFS-2020-0031-DRAFT-42812
NOAA-NMFS-2020-0031-DRAFT-42813
NOAA-NMFS-2020-0031-DRAFT-42814
NOAA-NMFS-2020-0031-DRAFT-42815
NOAA-NMFS-2020-0031-DRAFT-42816
NOAA-NMFS-2020-0031-DRAFT-42817
NOAA-NMFS-2020-0031-DRAFT-42818
NOAA-NMFS-2020-0031-DRAFT-42819
NOAA-NMFS-2020-0031-DRAFT-42820
NOAA-NMFS-2020-0031-DRAFT-42821

Comment from Gibb, Ken
Comment from Lang, Kelly
Comment from jordan, patti
Comment from Rigano, Kimberly
Comment from Weber, Nicole
Comment from Brenza, Tina
Comment from Miller, Victoria
Comment from Randolph, Doug
Comment from Chun, David
Comment from Anonymous Anonymous
Comment from Kelley, Karla
Comment from McCann, Steve
Comment from Epstein, Nance
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Comment from Bradshaw, Beverly
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Comment from Woods, Rocquelle
Comment from Maier, Megan
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Comment from Arioli, Kristin
Comment from Korner, Jeff
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Comment from Bennett, Thomas
Comment from Pedone, Chris
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Comment from Quinn, Pat
Comment from Calderone, Tom
Comment from Anonymous Anonymous
Comment from McGrath, Joan
Comment from Goldberg, Nancy
Comment from Kessler, Roberta
Comment from Hutson, Victoria
Comment from WUERSLIN, THEODORE
Comment from Laano, Laakea

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NOAA-NMFS-2020-0031-DRAFT-47985
NOAA-NMFS-2020-0031-DRAFT-47986
NOAA-NMFS-2020-0031-DRAFT-47987
NOAA-NMFS-2020-0031-DRAFT-47988
NOAA-NMFS-2020-0031-DRAFT-47989
NOAA-NMFS-2020-0031-DRAFT-47990
NOAA-NMFS-2020-0031-DRAFT-47991
NOAA-NMFS-2020-0031-DRAFT-47992
NOAA-NMFS-2020-0031-DRAFT-47993
NOAA-NMFS-2020-0031-DRAFT-47994
NOAA-NMFS-2020-0031-DRAFT-47995
NOAA-NMFS-2020-0031-DRAFT-47996
NOAA-NMFS-2020-0031-DRAFT-47997
NOAA-NMFS-2020-0031-DRAFT-47998
NOAA-NMFS-2020-0031-DRAFT-47999
NOAA-NMFS-2020-0031-DRAFT-48000
NOAA-NMFS-2020-0031-DRAFT-48001
NOAA-NMFS-2020-0031-DRAFT-48002
NOAA-NMFS-2020-0031-DRAFT-48003
NOAA-NMFS-2020-0031-DRAFT-48004
NOAA-NMFS-2020-0031-DRAFT-48005
NOAA-NMFS-2020-0031-DRAFT-48006
NOAA-NMFS-2020-0031-DRAFT-48007
NOAA-NMFS-2020-0031-DRAFT-48008
NOAA-NMFS-2020-0031-DRAFT-48009
NOAA-NMFS-2020-0031-DRAFT-48010
NOAA-NMFS-2020-0031-DRAFT-48011
NOAA-NMFS-2020-0031-DRAFT-48012
NOAA-NMFS-2020-0031-DRAFT-48013
NOAA-NMFS-2020-0031-DRAFT-48014
NOAA-NMFS-2020-0031-DRAFT-48015
NOAA-NMFS-2020-0031-DRAFT-48016
NOAA-NMFS-2020-0031-DRAFT-48017
NOAA-NMFS-2020-0031-DRAFT-48018
NOAA-NMFS-2020-0031-DRAFT-48019
NOAA-NMFS-2020-0031-DRAFT-48020
NOAA-NMFS-2020-0031-DRAFT-48021
NOAA-NMFS-2020-0031-DRAFT-48022
NOAA-NMFS-2020-0031-DRAFT-48023
NOAA-NMFS-2020-0031-DRAFT-48024
NOAA-NMFS-2020-0031-DRAFT-48025

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-42822
NOAA-NMFS-2020-0031-DRAFT-42823
NOAA-NMFS-2020-0031-DRAFT-42824
NOAA-NMFS-2020-0031-DRAFT-42825
NOAA-NMFS-2020-0031-DRAFT-42826
NOAA-NMFS-2020-0031-DRAFT-42827
NOAA-NMFS-2020-0031-DRAFT-42828
NOAA-NMFS-2020-0031-DRAFT-42829
NOAA-NMFS-2020-0031-DRAFT-42830
NOAA-NMFS-2020-0031-DRAFT-42831
NOAA-NMFS-2020-0031-DRAFT-42832
NOAA-NMFS-2020-0031-DRAFT-42833
NOAA-NMFS-2020-0031-DRAFT-42834
NOAA-NMFS-2020-0031-DRAFT-42835
NOAA-NMFS-2020-0031-DRAFT-42836
NOAA-NMFS-2020-0031-DRAFT-42837
NOAA-NMFS-2020-0031-DRAFT-42838
NOAA-NMFS-2020-0031-DRAFT-42839
NOAA-NMFS-2020-0031-DRAFT-42840
NOAA-NMFS-2020-0031-DRAFT-42841
NOAA-NMFS-2020-0031-DRAFT-42842
NOAA-NMFS-2020-0031-DRAFT-42843
NOAA-NMFS-2020-0031-DRAFT-42844
NOAA-NMFS-2020-0031-DRAFT-42845
NOAA-NMFS-2020-0031-DRAFT-42846
NOAA-NMFS-2020-0031-DRAFT-42847
NOAA-NMFS-2020-0031-DRAFT-42848
NOAA-NMFS-2020-0031-DRAFT-42849
NOAA-NMFS-2020-0031-DRAFT-42850
NOAA-NMFS-2020-0031-DRAFT-42851
NOAA-NMFS-2020-0031-DRAFT-42852
NOAA-NMFS-2020-0031-DRAFT-42853
NOAA-NMFS-2020-0031-DRAFT-42854
NOAA-NMFS-2020-0031-DRAFT-42855
NOAA-NMFS-2020-0031-DRAFT-42856
NOAA-NMFS-2020-0031-DRAFT-42857
NOAA-NMFS-2020-0031-DRAFT-42858
NOAA-NMFS-2020-0031-DRAFT-42859
NOAA-NMFS-2020-0031-DRAFT-42860
NOAA-NMFS-2020-0031-DRAFT-42861
NOAA-NMFS-2020-0031-DRAFT-42862

Comment from Anonymous Anonymous
Comment from Shultz, Jamie
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NOAA-NMFS-2020-0031-DRAFT-48026
NOAA-NMFS-2020-0031-DRAFT-48027
NOAA-NMFS-2020-0031-DRAFT-48028
NOAA-NMFS-2020-0031-DRAFT-48029
NOAA-NMFS-2020-0031-DRAFT-48030
NOAA-NMFS-2020-0031-DRAFT-48031
NOAA-NMFS-2020-0031-DRAFT-48032
NOAA-NMFS-2020-0031-DRAFT-48033
NOAA-NMFS-2020-0031-DRAFT-48034
NOAA-NMFS-2020-0031-DRAFT-48035
NOAA-NMFS-2020-0031-DRAFT-48036
NOAA-NMFS-2020-0031-DRAFT-48037
NOAA-NMFS-2020-0031-DRAFT-48038
NOAA-NMFS-2020-0031-DRAFT-48040
NOAA-NMFS-2020-0031-DRAFT-48041
NOAA-NMFS-2020-0031-DRAFT-48042
NOAA-NMFS-2020-0031-DRAFT-48043
NOAA-NMFS-2020-0031-DRAFT-48044
NOAA-NMFS-2020-0031-DRAFT-48045
NOAA-NMFS-2020-0031-DRAFT-48046
NOAA-NMFS-2020-0031-DRAFT-48047
NOAA-NMFS-2020-0031-DRAFT-48048
NOAA-NMFS-2020-0031-DRAFT-48049
NOAA-NMFS-2020-0031-DRAFT-48050
NOAA-NMFS-2020-0031-DRAFT-48051
NOAA-NMFS-2020-0031-DRAFT-48053
NOAA-NMFS-2020-0031-DRAFT-48054
NOAA-NMFS-2020-0031-DRAFT-48055
NOAA-NMFS-2020-0031-DRAFT-48056
NOAA-NMFS-2020-0031-DRAFT-48057
NOAA-NMFS-2020-0031-DRAFT-48058
NOAA-NMFS-2020-0031-DRAFT-48059
NOAA-NMFS-2020-0031-DRAFT-48060
NOAA-NMFS-2020-0031-DRAFT-48061
NOAA-NMFS-2020-0031-DRAFT-48062
NOAA-NMFS-2020-0031-DRAFT-48063
NOAA-NMFS-2020-0031-DRAFT-48064
NOAA-NMFS-2020-0031-DRAFT-48065
NOAA-NMFS-2020-0031-DRAFT-48066
NOAA-NMFS-2020-0031-DRAFT-48067
NOAA-NMFS-2020-0031-DRAFT-48068

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-42863
NOAA-NMFS-2020-0031-DRAFT-42864
NOAA-NMFS-2020-0031-DRAFT-42865
NOAA-NMFS-2020-0031-DRAFT-42866
NOAA-NMFS-2020-0031-DRAFT-42867
NOAA-NMFS-2020-0031-DRAFT-42868
NOAA-NMFS-2020-0031-DRAFT-42869
NOAA-NMFS-2020-0031-DRAFT-42870
NOAA-NMFS-2020-0031-DRAFT-42871
NOAA-NMFS-2020-0031-DRAFT-42872
NOAA-NMFS-2020-0031-DRAFT-42873
NOAA-NMFS-2020-0031-DRAFT-42874
NOAA-NMFS-2020-0031-DRAFT-42875
NOAA-NMFS-2020-0031-DRAFT-42876
NOAA-NMFS-2020-0031-DRAFT-42877
NOAA-NMFS-2020-0031-DRAFT-42878
NOAA-NMFS-2020-0031-DRAFT-42879
NOAA-NMFS-2020-0031-DRAFT-42880
NOAA-NMFS-2020-0031-DRAFT-42881
NOAA-NMFS-2020-0031-DRAFT-42882
NOAA-NMFS-2020-0031-DRAFT-42883
NOAA-NMFS-2020-0031-DRAFT-42884
NOAA-NMFS-2020-0031-DRAFT-42885
NOAA-NMFS-2020-0031-DRAFT-42886
NOAA-NMFS-2020-0031-DRAFT-42887
NOAA-NMFS-2020-0031-DRAFT-42888
NOAA-NMFS-2020-0031-DRAFT-42889
NOAA-NMFS-2020-0031-DRAFT-42890
NOAA-NMFS-2020-0031-DRAFT-42891
NOAA-NMFS-2020-0031-DRAFT-42892
NOAA-NMFS-2020-0031-DRAFT-42893
NOAA-NMFS-2020-0031-DRAFT-42894
NOAA-NMFS-2020-0031-DRAFT-42895
NOAA-NMFS-2020-0031-DRAFT-42896
NOAA-NMFS-2020-0031-DRAFT-42897
NOAA-NMFS-2020-0031-DRAFT-42898
NOAA-NMFS-2020-0031-DRAFT-42899
NOAA-NMFS-2020-0031-DRAFT-42900
NOAA-NMFS-2020-0031-DRAFT-42901
NOAA-NMFS-2020-0031-DRAFT-42902
NOAA-NMFS-2020-0031-DRAFT-42903

Comment from ISHIKI, LEILA
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NOAA-NMFS-2020-0031-DRAFT-48069
NOAA-NMFS-2020-0031-DRAFT-48070
NOAA-NMFS-2020-0031-DRAFT-48071
NOAA-NMFS-2020-0031-DRAFT-48072
NOAA-NMFS-2020-0031-DRAFT-48073
NOAA-NMFS-2020-0031-DRAFT-48074
NOAA-NMFS-2020-0031-DRAFT-48075
NOAA-NMFS-2020-0031-DRAFT-48076
NOAA-NMFS-2020-0031-DRAFT-48077
NOAA-NMFS-2020-0031-DRAFT-48078
NOAA-NMFS-2020-0031-DRAFT-48079
NOAA-NMFS-2020-0031-DRAFT-48080
NOAA-NMFS-2020-0031-DRAFT-48081
NOAA-NMFS-2020-0031-DRAFT-48082
NOAA-NMFS-2020-0031-DRAFT-48083
NOAA-NMFS-2020-0031-DRAFT-48084
NOAA-NMFS-2020-0031-DRAFT-48085
NOAA-NMFS-2020-0031-DRAFT-48086
NOAA-NMFS-2020-0031-DRAFT-48087
NOAA-NMFS-2020-0031-DRAFT-48088
NOAA-NMFS-2020-0031-DRAFT-48089
NOAA-NMFS-2020-0031-DRAFT-48090
NOAA-NMFS-2020-0031-DRAFT-48091
NOAA-NMFS-2020-0031-DRAFT-48092
NOAA-NMFS-2020-0031-DRAFT-48093
NOAA-NMFS-2020-0031-DRAFT-48094
NOAA-NMFS-2020-0031-DRAFT-48095
NOAA-NMFS-2020-0031-DRAFT-48096
NOAA-NMFS-2020-0031-DRAFT-48097
NOAA-NMFS-2020-0031-DRAFT-48098
NOAA-NMFS-2020-0031-DRAFT-48099
NOAA-NMFS-2020-0031-DRAFT-48100
NOAA-NMFS-2020-0031-DRAFT-48101
NOAA-NMFS-2020-0031-DRAFT-48102
NOAA-NMFS-2020-0031-DRAFT-48103
NOAA-NMFS-2020-0031-DRAFT-48104
NOAA-NMFS-2020-0031-DRAFT-48105
NOAA-NMFS-2020-0031-DRAFT-48106
NOAA-NMFS-2020-0031-DRAFT-48107
NOAA-NMFS-2020-0031-DRAFT-48108
NOAA-NMFS-2020-0031-DRAFT-48109

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NOAA-NMFS-2020-0031-DRAFT-42904
NOAA-NMFS-2020-0031-DRAFT-42905
NOAA-NMFS-2020-0031-DRAFT-42906
NOAA-NMFS-2020-0031-DRAFT-42907
NOAA-NMFS-2020-0031-DRAFT-42908
NOAA-NMFS-2020-0031-DRAFT-42909
NOAA-NMFS-2020-0031-DRAFT-42910
NOAA-NMFS-2020-0031-DRAFT-42911
NOAA-NMFS-2020-0031-DRAFT-42912
NOAA-NMFS-2020-0031-DRAFT-42913
NOAA-NMFS-2020-0031-DRAFT-42914
NOAA-NMFS-2020-0031-DRAFT-42915
NOAA-NMFS-2020-0031-DRAFT-42916
NOAA-NMFS-2020-0031-DRAFT-42917
NOAA-NMFS-2020-0031-DRAFT-42918
NOAA-NMFS-2020-0031-DRAFT-42919
NOAA-NMFS-2020-0031-DRAFT-42920
NOAA-NMFS-2020-0031-DRAFT-42921
NOAA-NMFS-2020-0031-DRAFT-42922
NOAA-NMFS-2020-0031-DRAFT-42923
NOAA-NMFS-2020-0031-DRAFT-42924
NOAA-NMFS-2020-0031-DRAFT-42925
NOAA-NMFS-2020-0031-DRAFT-42926
NOAA-NMFS-2020-0031-DRAFT-42927
NOAA-NMFS-2020-0031-DRAFT-42928
NOAA-NMFS-2020-0031-DRAFT-42929
NOAA-NMFS-2020-0031-DRAFT-42930
NOAA-NMFS-2020-0031-DRAFT-42931
NOAA-NMFS-2020-0031-DRAFT-42932
NOAA-NMFS-2020-0031-DRAFT-42933
NOAA-NMFS-2020-0031-DRAFT-42934
NOAA-NMFS-2020-0031-DRAFT-42935
NOAA-NMFS-2020-0031-DRAFT-42936
NOAA-NMFS-2020-0031-DRAFT-42937
NOAA-NMFS-2020-0031-DRAFT-42938
NOAA-NMFS-2020-0031-DRAFT-42939
NOAA-NMFS-2020-0031-DRAFT-42940
NOAA-NMFS-2020-0031-DRAFT-42941
NOAA-NMFS-2020-0031-DRAFT-42942
NOAA-NMFS-2020-0031-DRAFT-42943
NOAA-NMFS-2020-0031-DRAFT-42944

Comment from Schaftlein, Karin
Comment from Schaftlein, Lerry
Comment from Dickson, Carolyn
Comment from Pierucki, Jenny
Comment from Pierucki, Gatha
Comment from Turner, Jim
Comment from Thompson, TJ
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Comment from Wright, Sarah
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Comment from Budde, Sharon
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Comment from Scott, Lexie
Comment from Viragh, Brea
Comment from Olson, Leah
Comment from Sussman, Perri
Comment from Morrison, James
Comment from Kirby, Suzanne
Comment from Ianchiou, Peter
Comment from Flint, Mandie
Comment from Anonymous Anonymous
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Comment from Murdock, Lauren
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Comment from Steigerwaldt, Samantha
Comment from Hayes, Jennifer
Comment from Overstreet, Romy
Comment from Stack, Ronald
Comment from Miles, Karen
Comment from Anonymous Anonymous
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Comment from Patel, Shamil

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NOAA-NMFS-2020-0031-DRAFT-48110
NOAA-NMFS-2020-0031-DRAFT-48111
NOAA-NMFS-2020-0031-DRAFT-48112
NOAA-NMFS-2020-0031-DRAFT-48113
NOAA-NMFS-2020-0031-DRAFT-48114
NOAA-NMFS-2020-0031-DRAFT-48115
NOAA-NMFS-2020-0031-DRAFT-48116
NOAA-NMFS-2020-0031-DRAFT-48117
NOAA-NMFS-2020-0031-DRAFT-48118
NOAA-NMFS-2020-0031-DRAFT-48119
NOAA-NMFS-2020-0031-DRAFT-48120
NOAA-NMFS-2020-0031-DRAFT-48121
NOAA-NMFS-2020-0031-DRAFT-48122
NOAA-NMFS-2020-0031-DRAFT-48123
NOAA-NMFS-2020-0031-DRAFT-48124
NOAA-NMFS-2020-0031-DRAFT-48125
NOAA-NMFS-2020-0031-DRAFT-48126
NOAA-NMFS-2020-0031-DRAFT-48127
NOAA-NMFS-2020-0031-DRAFT-48128
NOAA-NMFS-2020-0031-DRAFT-48129
NOAA-NMFS-2020-0031-DRAFT-48130
NOAA-NMFS-2020-0031-DRAFT-48131
NOAA-NMFS-2020-0031-DRAFT-48132
NOAA-NMFS-2020-0031-DRAFT-48133
NOAA-NMFS-2020-0031-DRAFT-48134
NOAA-NMFS-2020-0031-DRAFT-48135
NOAA-NMFS-2020-0031-DRAFT-48136
NOAA-NMFS-2020-0031-DRAFT-48137
NOAA-NMFS-2020-0031-DRAFT-48138
NOAA-NMFS-2020-0031-DRAFT-48139
NOAA-NMFS-2020-0031-DRAFT-48140
NOAA-NMFS-2020-0031-DRAFT-48141
NOAA-NMFS-2020-0031-DRAFT-48142
NOAA-NMFS-2020-0031-DRAFT-48143
NOAA-NMFS-2020-0031-DRAFT-48144
NOAA-NMFS-2020-0031-DRAFT-48145
NOAA-NMFS-2020-0031-DRAFT-48146
NOAA-NMFS-2020-0031-DRAFT-48147
NOAA-NMFS-2020-0031-DRAFT-48148
NOAA-NMFS-2020-0031-DRAFT-48149
NOAA-NMFS-2020-0031-DRAFT-48150

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-42945
NOAA-NMFS-2020-0031-DRAFT-42946
NOAA-NMFS-2020-0031-DRAFT-42947
NOAA-NMFS-2020-0031-DRAFT-42948
NOAA-NMFS-2020-0031-DRAFT-42949
NOAA-NMFS-2020-0031-DRAFT-42950
NOAA-NMFS-2020-0031-DRAFT-42951
NOAA-NMFS-2020-0031-DRAFT-42952
NOAA-NMFS-2020-0031-DRAFT-42953
NOAA-NMFS-2020-0031-DRAFT-42954
NOAA-NMFS-2020-0031-DRAFT-42955
NOAA-NMFS-2020-0031-DRAFT-42956
NOAA-NMFS-2020-0031-DRAFT-42957
NOAA-NMFS-2020-0031-DRAFT-42958
NOAA-NMFS-2020-0031-DRAFT-42959
NOAA-NMFS-2020-0031-DRAFT-42960
NOAA-NMFS-2020-0031-DRAFT-42961
NOAA-NMFS-2020-0031-DRAFT-42962
NOAA-NMFS-2020-0031-DRAFT-42963
NOAA-NMFS-2020-0031-DRAFT-42964
NOAA-NMFS-2020-0031-DRAFT-42965
NOAA-NMFS-2020-0031-DRAFT-42966
NOAA-NMFS-2020-0031-DRAFT-42967
NOAA-NMFS-2020-0031-DRAFT-42968
NOAA-NMFS-2020-0031-DRAFT-42969
NOAA-NMFS-2020-0031-DRAFT-42970
NOAA-NMFS-2020-0031-DRAFT-42971
NOAA-NMFS-2020-0031-DRAFT-42972
NOAA-NMFS-2020-0031-DRAFT-42973
NOAA-NMFS-2020-0031-DRAFT-42974
NOAA-NMFS-2020-0031-DRAFT-42975
NOAA-NMFS-2020-0031-DRAFT-42976
NOAA-NMFS-2020-0031-DRAFT-42977
NOAA-NMFS-2020-0031-DRAFT-42978
NOAA-NMFS-2020-0031-DRAFT-42979
NOAA-NMFS-2020-0031-DRAFT-42980
NOAA-NMFS-2020-0031-DRAFT-42981
NOAA-NMFS-2020-0031-DRAFT-42982
NOAA-NMFS-2020-0031-DRAFT-42983
NOAA-NMFS-2020-0031-DRAFT-42984
NOAA-NMFS-2020-0031-DRAFT-42985

Comment from Lender, M
Comment from Lerner, Sara
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Comment from Spencer, Deborah
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Comment from Lilly, Haley
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Comment from Mace, Pat
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Comment from Woppert, Jean
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Comment from Davidson, Peter

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NOAA-NMFS-2020-0031-DRAFT-48151
NOAA-NMFS-2020-0031-DRAFT-48152
NOAA-NMFS-2020-0031-DRAFT-48153
NOAA-NMFS-2020-0031-DRAFT-48154
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NOAA-NMFS-2020-0031-DRAFT-48164
NOAA-NMFS-2020-0031-DRAFT-48165
NOAA-NMFS-2020-0031-DRAFT-48166
NOAA-NMFS-2020-0031-DRAFT-48167
NOAA-NMFS-2020-0031-DRAFT-48168
NOAA-NMFS-2020-0031-DRAFT-48169
NOAA-NMFS-2020-0031-DRAFT-48170
NOAA-NMFS-2020-0031-DRAFT-48171
NOAA-NMFS-2020-0031-DRAFT-48172
NOAA-NMFS-2020-0031-DRAFT-48173
NOAA-NMFS-2020-0031-DRAFT-48174
NOAA-NMFS-2020-0031-DRAFT-48175
NOAA-NMFS-2020-0031-DRAFT-48176
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NOAA-NMFS-2020-0031-DRAFT-48189
NOAA-NMFS-2020-0031-DRAFT-48190
NOAA-NMFS-2020-0031-DRAFT-48191

Comment from Tom Struhsaker
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NOAA-NMFS-2020-0031-DRAFT-42986
NOAA-NMFS-2020-0031-DRAFT-42987
NOAA-NMFS-2020-0031-DRAFT-42988
NOAA-NMFS-2020-0031-DRAFT-42989
NOAA-NMFS-2020-0031-DRAFT-42990
NOAA-NMFS-2020-0031-DRAFT-42991
NOAA-NMFS-2020-0031-DRAFT-42992
NOAA-NMFS-2020-0031-DRAFT-42993
NOAA-NMFS-2020-0031-DRAFT-42994
NOAA-NMFS-2020-0031-DRAFT-42995
NOAA-NMFS-2020-0031-DRAFT-42996
NOAA-NMFS-2020-0031-DRAFT-42997
NOAA-NMFS-2020-0031-DRAFT-42998
NOAA-NMFS-2020-0031-DRAFT-42999
NOAA-NMFS-2020-0031-DRAFT-43000
NOAA-NMFS-2020-0031-DRAFT-43001
NOAA-NMFS-2020-0031-DRAFT-43002
NOAA-NMFS-2020-0031-DRAFT-43003
NOAA-NMFS-2020-0031-DRAFT-43005
NOAA-NMFS-2020-0031-DRAFT-43006
NOAA-NMFS-2020-0031-DRAFT-43007
NOAA-NMFS-2020-0031-DRAFT-43008
NOAA-NMFS-2020-0031-DRAFT-43009
NOAA-NMFS-2020-0031-DRAFT-43010
NOAA-NMFS-2020-0031-DRAFT-43011
NOAA-NMFS-2020-0031-DRAFT-43012
NOAA-NMFS-2020-0031-DRAFT-43013
NOAA-NMFS-2020-0031-DRAFT-43014
NOAA-NMFS-2020-0031-DRAFT-43016
NOAA-NMFS-2020-0031-DRAFT-43017
NOAA-NMFS-2020-0031-DRAFT-43018
NOAA-NMFS-2020-0031-DRAFT-43019
NOAA-NMFS-2020-0031-DRAFT-43020
NOAA-NMFS-2020-0031-DRAFT-43021
NOAA-NMFS-2020-0031-DRAFT-43022
NOAA-NMFS-2020-0031-DRAFT-43023
NOAA-NMFS-2020-0031-DRAFT-43024
NOAA-NMFS-2020-0031-DRAFT-43025
NOAA-NMFS-2020-0031-DRAFT-43026
NOAA-NMFS-2020-0031-DRAFT-43027
NOAA-NMFS-2020-0031-DRAFT-43028

Comment from scarim, nick
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Comment from Winogrodska, Eva

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NOAA-NMFS-2020-0031-DRAFT-48192
NOAA-NMFS-2020-0031-DRAFT-48193
NOAA-NMFS-2020-0031-DRAFT-48194
NOAA-NMFS-2020-0031-DRAFT-48195
NOAA-NMFS-2020-0031-DRAFT-48196
NOAA-NMFS-2020-0031-DRAFT-48197
NOAA-NMFS-2020-0031-DRAFT-48198
NOAA-NMFS-2020-0031-DRAFT-48199
NOAA-NMFS-2020-0031-DRAFT-48200
NOAA-NMFS-2020-0031-DRAFT-48201
NOAA-NMFS-2020-0031-DRAFT-48202
NOAA-NMFS-2020-0031-DRAFT-48203
NOAA-NMFS-2020-0031-DRAFT-48204
NOAA-NMFS-2020-0031-DRAFT-48205
NOAA-NMFS-2020-0031-DRAFT-48206
NOAA-NMFS-2020-0031-DRAFT-48207
NOAA-NMFS-2020-0031-DRAFT-48208
NOAA-NMFS-2020-0031-DRAFT-48209
NOAA-NMFS-2020-0031-DRAFT-48210
NOAA-NMFS-2020-0031-DRAFT-48211
NOAA-NMFS-2020-0031-DRAFT-48212
NOAA-NMFS-2020-0031-DRAFT-48213
NOAA-NMFS-2020-0031-DRAFT-48214
NOAA-NMFS-2020-0031-DRAFT-48215
NOAA-NMFS-2020-0031-DRAFT-48216
NOAA-NMFS-2020-0031-DRAFT-48217
NOAA-NMFS-2020-0031-DRAFT-48218
NOAA-NMFS-2020-0031-DRAFT-48219
NOAA-NMFS-2020-0031-DRAFT-48220
NOAA-NMFS-2020-0031-DRAFT-48221
NOAA-NMFS-2020-0031-DRAFT-48222
NOAA-NMFS-2020-0031-DRAFT-48223
NOAA-NMFS-2020-0031-DRAFT-48224
NOAA-NMFS-2020-0031-DRAFT-48225
NOAA-NMFS-2020-0031-DRAFT-48226
NOAA-NMFS-2020-0031-DRAFT-48227
NOAA-NMFS-2020-0031-DRAFT-48228
NOAA-NMFS-2020-0031-DRAFT-48229
NOAA-NMFS-2020-0031-DRAFT-48230
NOAA-NMFS-2020-0031-DRAFT-48231
NOAA-NMFS-2020-0031-DRAFT-48232

Comment from Martin Streett
Comment from Anonymous Anonymous
Comment from Jean Tabin
Comment from Anonymous Anonymous
Comment from Marla Berry
Comment from Rob Weltner
Comment from Anonymous Anonymous
Comment from Robin Coleman
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Brett Schultz
Comment from Tom Bulger
Comment from ARNEL CATACUTAN
Comment from Lisa Eisen
Comment from Patrick Huey
Comment from Susanne Powers
Comment from Anonymous Anonymous
Comment from Wandis Wilcox
Comment from Sue McNally
Comment from Jason Gibson
Comment from Candy Brown
Comment from Anonymous Anonymous
Comment from Robert Wallace
Comment from Anonymous Anonymous
Comment from Joan Heilman
Comment from Cherryl Friedman
Comment from Corinne Blakley
Comment from Lisa Valdmets
Comment from Diana Lunceford
Comment from John Barger
Comment from Angela CHRISTOPHERSON
Comment from Anonymous Anonymous
Comment from Barbara Hart
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Christina Viljoen
Comment from Carole Klumb
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43029
NOAA-NMFS-2020-0031-DRAFT-43030
NOAA-NMFS-2020-0031-DRAFT-43031
NOAA-NMFS-2020-0031-DRAFT-43032
NOAA-NMFS-2020-0031-DRAFT-43033
NOAA-NMFS-2020-0031-DRAFT-43034
NOAA-NMFS-2020-0031-DRAFT-43035
NOAA-NMFS-2020-0031-DRAFT-43036
NOAA-NMFS-2020-0031-DRAFT-43037
NOAA-NMFS-2020-0031-DRAFT-43038
NOAA-NMFS-2020-0031-DRAFT-43039
NOAA-NMFS-2020-0031-DRAFT-43040
NOAA-NMFS-2020-0031-DRAFT-43041
NOAA-NMFS-2020-0031-DRAFT-43042
NOAA-NMFS-2020-0031-DRAFT-43043
NOAA-NMFS-2020-0031-DRAFT-43044
NOAA-NMFS-2020-0031-DRAFT-43045
NOAA-NMFS-2020-0031-DRAFT-43046
NOAA-NMFS-2020-0031-DRAFT-43047
NOAA-NMFS-2020-0031-DRAFT-43048
NOAA-NMFS-2020-0031-DRAFT-43049
NOAA-NMFS-2020-0031-DRAFT-43050
NOAA-NMFS-2020-0031-DRAFT-43051
NOAA-NMFS-2020-0031-DRAFT-43052
NOAA-NMFS-2020-0031-DRAFT-43053
NOAA-NMFS-2020-0031-DRAFT-43054
NOAA-NMFS-2020-0031-DRAFT-43055
NOAA-NMFS-2020-0031-DRAFT-43056
NOAA-NMFS-2020-0031-DRAFT-43057
NOAA-NMFS-2020-0031-DRAFT-43058
NOAA-NMFS-2020-0031-DRAFT-43059
NOAA-NMFS-2020-0031-DRAFT-43061
NOAA-NMFS-2020-0031-DRAFT-43062
NOAA-NMFS-2020-0031-DRAFT-43063
NOAA-NMFS-2020-0031-DRAFT-43064
NOAA-NMFS-2020-0031-DRAFT-43065
NOAA-NMFS-2020-0031-DRAFT-43066
NOAA-NMFS-2020-0031-DRAFT-43067
NOAA-NMFS-2020-0031-DRAFT-43068
NOAA-NMFS-2020-0031-DRAFT-43069
NOAA-NMFS-2020-0031-DRAFT-43070

Comment from Zaborowski, Bo
Comment from Martin, Michael
Comment from Mashkova, Olga
Comment from B, Lauren
Comment from Empoules, Patty
Comment from Stallard, Mary
Comment from Collins, Nathalie
Comment from Morgan, Paula
Comment from Jones, Tracy
Comment from Kummer, Ilene
Comment from Brooks, Debra
Comment from McWilliams, Michelle
Comment from Schanz, Dawn
Comment from Towner, Erline
Comment from Wait, Cheryl
Comment from SWETT, MACOE
Comment from Echelmeyer, Frank
Comment from Dannhauser, Janice
Comment from Hallwas, Sue
Comment from Goodman, Deborah
Comment from Toomey, Philip
Comment from Anonymous Anonymous
Comment from Applegate, Jaclyn
Comment from Johnson, Gregg
Comment from SCHWARTZ, TASHA
Comment from Ross, Elliot
Comment from Bury, Harry
Comment from Shinn, Michon
Comment from Anonymous Anonymous
Comment from Almeida-Altamirano,
Gabriela
Comment from Taylor, Kim
Comment from Sciarrillo, Loisann
Comment from McClurg, Daviann
Comment from Frech, Elaine
Comment from Schweitzer, Sheryl
Comment from Zwick, Jody
Comment from Crandall, AnaLisa
Comment from Marro, John
Comment from Pineda, Faye
Comment from Anonymous Anonymous
Comment from Picinska, Malgorzata

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NOAA-NMFS-2020-0031-DRAFT-48233
NOAA-NMFS-2020-0031-DRAFT-48234
NOAA-NMFS-2020-0031-DRAFT-48235
NOAA-NMFS-2020-0031-DRAFT-48236
NOAA-NMFS-2020-0031-DRAFT-48237
NOAA-NMFS-2020-0031-DRAFT-48238
NOAA-NMFS-2020-0031-DRAFT-48239
NOAA-NMFS-2020-0031-DRAFT-48240
NOAA-NMFS-2020-0031-DRAFT-48241
NOAA-NMFS-2020-0031-DRAFT-48242
NOAA-NMFS-2020-0031-DRAFT-48243
NOAA-NMFS-2020-0031-DRAFT-48244
NOAA-NMFS-2020-0031-DRAFT-48245
NOAA-NMFS-2020-0031-DRAFT-48246
NOAA-NMFS-2020-0031-DRAFT-48247
NOAA-NMFS-2020-0031-DRAFT-48248
NOAA-NMFS-2020-0031-DRAFT-48249
NOAA-NMFS-2020-0031-DRAFT-48250
NOAA-NMFS-2020-0031-DRAFT-48251
NOAA-NMFS-2020-0031-DRAFT-48252
NOAA-NMFS-2020-0031-DRAFT-48253
NOAA-NMFS-2020-0031-DRAFT-48254
NOAA-NMFS-2020-0031-DRAFT-48255
NOAA-NMFS-2020-0031-DRAFT-48256
NOAA-NMFS-2020-0031-DRAFT-48257
NOAA-NMFS-2020-0031-DRAFT-48258
NOAA-NMFS-2020-0031-DRAFT-48259
NOAA-NMFS-2020-0031-DRAFT-48260
NOAA-NMFS-2020-0031-DRAFT-48261
NOAA-NMFS-2020-0031-DRAFT-48262
NOAA-NMFS-2020-0031-DRAFT-48263
NOAA-NMFS-2020-0031-DRAFT-48264
NOAA-NMFS-2020-0031-DRAFT-48265
NOAA-NMFS-2020-0031-DRAFT-48266
NOAA-NMFS-2020-0031-DRAFT-48267
NOAA-NMFS-2020-0031-DRAFT-48268
NOAA-NMFS-2020-0031-DRAFT-48269
NOAA-NMFS-2020-0031-DRAFT-48270
NOAA-NMFS-2020-0031-DRAFT-48271
NOAA-NMFS-2020-0031-DRAFT-48272
NOAA-NMFS-2020-0031-DRAFT-48273

Comment from Anonymous Anonymous
Comment from Gail Sullivan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Stephen Dutschke
Comment from Catherine Vedder
Comment from Andy Called
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carl Brack
Comment from Howard McNinch
Comment from Grace Padelford
Comment from Anca Vlasopolos
Comment from Susanne Groenendaal
Comment from Anonymous Anonymous
Comment from Steve Nelson
Comment from Megan Harcourt
Comment from Michael Shapiro
Comment from J ODonnell
Comment from Joelle Shefts
Comment from Beverly Poncia
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carolyn Haupt
Comment from Anonymous Anonymous
Comment from Tina Yao
Comment from Nancy Gasperment
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Nicole Schildcrout-Lloyd
Comment from Anonymous Anonymous
Comment from Ryan Gardner
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Sandra Joos
Comment from karen donofrio
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from b hinson
Comment from Bob Ramlow

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NOAA-NMFS-2020-0031-DRAFT-43071
NOAA-NMFS-2020-0031-DRAFT-43072
NOAA-NMFS-2020-0031-DRAFT-43073
NOAA-NMFS-2020-0031-DRAFT-43074
NOAA-NMFS-2020-0031-DRAFT-43075
NOAA-NMFS-2020-0031-DRAFT-43076
NOAA-NMFS-2020-0031-DRAFT-43077
NOAA-NMFS-2020-0031-DRAFT-43078
NOAA-NMFS-2020-0031-DRAFT-43079
NOAA-NMFS-2020-0031-DRAFT-43080
NOAA-NMFS-2020-0031-DRAFT-43081
NOAA-NMFS-2020-0031-DRAFT-43082
NOAA-NMFS-2020-0031-DRAFT-43083
NOAA-NMFS-2020-0031-DRAFT-43084
NOAA-NMFS-2020-0031-DRAFT-43085
NOAA-NMFS-2020-0031-DRAFT-43086
NOAA-NMFS-2020-0031-DRAFT-43087
NOAA-NMFS-2020-0031-DRAFT-43088
NOAA-NMFS-2020-0031-DRAFT-43089
NOAA-NMFS-2020-0031-DRAFT-43090
NOAA-NMFS-2020-0031-DRAFT-43091
NOAA-NMFS-2020-0031-DRAFT-43092
NOAA-NMFS-2020-0031-DRAFT-43093
NOAA-NMFS-2020-0031-DRAFT-43094
NOAA-NMFS-2020-0031-DRAFT-43095
NOAA-NMFS-2020-0031-DRAFT-43097
NOAA-NMFS-2020-0031-DRAFT-43098
NOAA-NMFS-2020-0031-DRAFT-43099
NOAA-NMFS-2020-0031-DRAFT-43100
NOAA-NMFS-2020-0031-DRAFT-43101
NOAA-NMFS-2020-0031-DRAFT-43102
NOAA-NMFS-2020-0031-DRAFT-43103
NOAA-NMFS-2020-0031-DRAFT-43104
NOAA-NMFS-2020-0031-DRAFT-43105
NOAA-NMFS-2020-0031-DRAFT-43106
NOAA-NMFS-2020-0031-DRAFT-43107
NOAA-NMFS-2020-0031-DRAFT-43108
NOAA-NMFS-2020-0031-DRAFT-43109
NOAA-NMFS-2020-0031-DRAFT-43110
NOAA-NMFS-2020-0031-DRAFT-43111
NOAA-NMFS-2020-0031-DRAFT-43112

Comment from Anonymous Anonymous
Comment from McGhee, Donna
Comment from Millhollen, Pilar
Comment from DeRome, Emmett
Comment from Strain, Darren
Comment from Barcikowski, Christine
Comment from Kinnamon, Jessica
Comment from Kent, Gwendolyn
Comment from Cyriacks, Wendy
Comment from Anonymous Anonymous
Comment from Paige, Melissa
Comment from Klucsar, Barbara
Comment from Goldschen, Stacy
Comment from Babbitt, Susan
Comment from Anonymous Anonymous
Comment from Stokes, Diana
Comment from Anonymous Anonymous
Comment from Tackett, Dennis
Comment from Anonymous Anonymous
Comment from Olson, Leah
Comment from Franklin, Nancy
Comment from Green, Karen
Comment from SEMAIDA, JIM
Comment from Denko, Paul
Comment from Schmeh, Derek
Comment from Rall, Ben
Comment from Monahan, Marissa
Comment from Wettersten, Jill
Comment from Casper, Christine
Comment from THURMAN, SCOTT
Comment from Lampe, Raymond
Comment from Erazo, Lidija
Comment from Dawson, Susan
Comment from Whillock, Laurel
Comment from Anonymous Anonymous
Comment from Hardy, Ingrid
Comment from Skopic, Paul
Comment from Ritter, Valerie
Comment from Kenney, Ed
Comment from Zotos, Bonnie
Comment from klumb, carole

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NOAA-NMFS-2020-0031-DRAFT-48274
NOAA-NMFS-2020-0031-DRAFT-48275
NOAA-NMFS-2020-0031-DRAFT-48276
NOAA-NMFS-2020-0031-DRAFT-48277
NOAA-NMFS-2020-0031-DRAFT-48278
NOAA-NMFS-2020-0031-DRAFT-48279
NOAA-NMFS-2020-0031-DRAFT-48280
NOAA-NMFS-2020-0031-DRAFT-48281
NOAA-NMFS-2020-0031-DRAFT-48282
NOAA-NMFS-2020-0031-DRAFT-48283
NOAA-NMFS-2020-0031-DRAFT-48284
NOAA-NMFS-2020-0031-DRAFT-48285
NOAA-NMFS-2020-0031-DRAFT-48286
NOAA-NMFS-2020-0031-DRAFT-48287
NOAA-NMFS-2020-0031-DRAFT-48288
NOAA-NMFS-2020-0031-DRAFT-48289
NOAA-NMFS-2020-0031-DRAFT-48290
NOAA-NMFS-2020-0031-DRAFT-48291
NOAA-NMFS-2020-0031-DRAFT-48292
NOAA-NMFS-2020-0031-DRAFT-48293
NOAA-NMFS-2020-0031-DRAFT-48294
NOAA-NMFS-2020-0031-DRAFT-48295
NOAA-NMFS-2020-0031-DRAFT-48296
NOAA-NMFS-2020-0031-DRAFT-48297
NOAA-NMFS-2020-0031-DRAFT-48298
NOAA-NMFS-2020-0031-DRAFT-48299
NOAA-NMFS-2020-0031-DRAFT-48300
NOAA-NMFS-2020-0031-DRAFT-48301
NOAA-NMFS-2020-0031-DRAFT-48302
NOAA-NMFS-2020-0031-DRAFT-48303
NOAA-NMFS-2020-0031-DRAFT-48304
NOAA-NMFS-2020-0031-DRAFT-48305
NOAA-NMFS-2020-0031-DRAFT-48306
NOAA-NMFS-2020-0031-DRAFT-48307
NOAA-NMFS-2020-0031-DRAFT-48308
NOAA-NMFS-2020-0031-DRAFT-48309
NOAA-NMFS-2020-0031-DRAFT-48310
NOAA-NMFS-2020-0031-DRAFT-48311
NOAA-NMFS-2020-0031-DRAFT-48312
NOAA-NMFS-2020-0031-DRAFT-48313
NOAA-NMFS-2020-0031-DRAFT-48314

Comment from Marya Zanders
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Amy Poe
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from BETTINA LUBOFF
Comment from Patricia Williamson
Comment from jole lheureux
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mari Passananti
Comment from Anonymous Anonymous
Comment from carol ritchell
Comment from Anonymous Anonymous
Comment from Rick Sutton
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lozz Starseed
Comment from bruce raymond
Comment from Emily Dickinson-Adams
Comment from Paul Montell
Comment from Paul Meyer
Comment from Anonymous Anonymous
Comment from Marion Henderson
Comment from Anonymous Anonymous
Comment from Mary Wood-Constable
Comment from Janet Fotos
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Phillip Mixon
Comment from Anonymous Anonymous
Comment from Clare Allah
Comment from Anonymous Anonymous
Comment from Beverly Eadie
Comment from Marc Berner
Comment from Anonymous Anonymous
Comment from Antoinette Ambrosio

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NOAA-NMFS-2020-0031-DRAFT-43113
NOAA-NMFS-2020-0031-DRAFT-43114
NOAA-NMFS-2020-0031-DRAFT-43115
NOAA-NMFS-2020-0031-DRAFT-43116
NOAA-NMFS-2020-0031-DRAFT-43117
NOAA-NMFS-2020-0031-DRAFT-43118
NOAA-NMFS-2020-0031-DRAFT-43119
NOAA-NMFS-2020-0031-DRAFT-43120
NOAA-NMFS-2020-0031-DRAFT-43121
NOAA-NMFS-2020-0031-DRAFT-43122
NOAA-NMFS-2020-0031-DRAFT-43123
NOAA-NMFS-2020-0031-DRAFT-43124
NOAA-NMFS-2020-0031-DRAFT-43125
NOAA-NMFS-2020-0031-DRAFT-43126
NOAA-NMFS-2020-0031-DRAFT-43127
NOAA-NMFS-2020-0031-DRAFT-43128
NOAA-NMFS-2020-0031-DRAFT-43129
NOAA-NMFS-2020-0031-DRAFT-43130
NOAA-NMFS-2020-0031-DRAFT-43131
NOAA-NMFS-2020-0031-DRAFT-43132
NOAA-NMFS-2020-0031-DRAFT-43133
NOAA-NMFS-2020-0031-DRAFT-43134
NOAA-NMFS-2020-0031-DRAFT-43135
NOAA-NMFS-2020-0031-DRAFT-43136
NOAA-NMFS-2020-0031-DRAFT-43137
NOAA-NMFS-2020-0031-DRAFT-43138
NOAA-NMFS-2020-0031-DRAFT-43139
NOAA-NMFS-2020-0031-DRAFT-43141
NOAA-NMFS-2020-0031-DRAFT-43142
NOAA-NMFS-2020-0031-DRAFT-43143
NOAA-NMFS-2020-0031-DRAFT-43144
NOAA-NMFS-2020-0031-DRAFT-43145
NOAA-NMFS-2020-0031-DRAFT-43146
NOAA-NMFS-2020-0031-DRAFT-43147
NOAA-NMFS-2020-0031-DRAFT-43148
NOAA-NMFS-2020-0031-DRAFT-43149
NOAA-NMFS-2020-0031-DRAFT-43150
NOAA-NMFS-2020-0031-DRAFT-43151
NOAA-NMFS-2020-0031-DRAFT-43152
NOAA-NMFS-2020-0031-DRAFT-43153
NOAA-NMFS-2020-0031-DRAFT-43154

Comment from Spear, Lauren
Comment from Shields, Kathleen
Comment from How, Joan
Comment from Stanton, Mary
Comment from Anonymous Anonymous
Comment from Waldron, Tzeitel
Comment from Keinath, Marily
Comment from Derence, Lea
Comment from Buckman, Linda
Comment from Anonymous Anonymous
Comment from D'Errico, Mary
Comment from Anonymous Anonymous
Comment from Hayward, Mark
Comment from Sipos, Elizabeth
Comment from Knopf, Alexander
Comment from Anonymous Anonymous
Comment from lowrie, sarah
Comment from Kennedy, Stephanie
Comment from Buckley, Tom
Comment from Anonymous Anonymous
Comment from Schneider, Dan
Comment from Anonymous Anonymous
Comment from Alschuler, Matthew
Comment from Morgan, Sharon
Comment from Calhoun, Becky
Comment from Anonymous Anonymous
Comment from Cantara, Gary
Comment from Iannicelli, Kathie
Comment from Anonymous Anonymous
Comment from Karroum, Nassima
Comment from Yow, Ray
Comment from Collins, Joseph
Comment from Buell, Tiffany
Comment from Richardson, Lynn
Comment from Platt, Betty
Comment from Azzarello, Joseph
Comment from Bengel, James
Comment from Rein-Weston, Annie
Comment from Haseltine, Rebecca
Comment from Wolzen, Roxane
Comment from Yunker, Ellen

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NOAA-NMFS-2020-0031-DRAFT-48315
NOAA-NMFS-2020-0031-DRAFT-48316
NOAA-NMFS-2020-0031-DRAFT-48317
NOAA-NMFS-2020-0031-DRAFT-48318
NOAA-NMFS-2020-0031-DRAFT-48319
NOAA-NMFS-2020-0031-DRAFT-48320
NOAA-NMFS-2020-0031-DRAFT-48321
NOAA-NMFS-2020-0031-DRAFT-48322
NOAA-NMFS-2020-0031-DRAFT-48323
NOAA-NMFS-2020-0031-DRAFT-48324
NOAA-NMFS-2020-0031-DRAFT-48325
NOAA-NMFS-2020-0031-DRAFT-48326
NOAA-NMFS-2020-0031-DRAFT-48327
NOAA-NMFS-2020-0031-DRAFT-48328
NOAA-NMFS-2020-0031-DRAFT-48329
NOAA-NMFS-2020-0031-DRAFT-48330
NOAA-NMFS-2020-0031-DRAFT-48331
NOAA-NMFS-2020-0031-DRAFT-48332
NOAA-NMFS-2020-0031-DRAFT-48333
NOAA-NMFS-2020-0031-DRAFT-48334
NOAA-NMFS-2020-0031-DRAFT-48335
NOAA-NMFS-2020-0031-DRAFT-48336
NOAA-NMFS-2020-0031-DRAFT-48337
NOAA-NMFS-2020-0031-DRAFT-48338
NOAA-NMFS-2020-0031-DRAFT-48339
NOAA-NMFS-2020-0031-DRAFT-48340
NOAA-NMFS-2020-0031-DRAFT-48342
NOAA-NMFS-2020-0031-DRAFT-48343
NOAA-NMFS-2020-0031-DRAFT-48344
NOAA-NMFS-2020-0031-DRAFT-48345
NOAA-NMFS-2020-0031-DRAFT-48346
NOAA-NMFS-2020-0031-DRAFT-48347
NOAA-NMFS-2020-0031-DRAFT-48348
NOAA-NMFS-2020-0031-DRAFT-48349
NOAA-NMFS-2020-0031-DRAFT-48350
NOAA-NMFS-2020-0031-DRAFT-48351
NOAA-NMFS-2020-0031-DRAFT-48352
NOAA-NMFS-2020-0031-DRAFT-48353
NOAA-NMFS-2020-0031-DRAFT-48354
NOAA-NMFS-2020-0031-DRAFT-48355
NOAA-NMFS-2020-0031-DRAFT-48356

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carol Kommerstad-Reiche
Comment from Linda Judd
Comment from Maree Macpherson
Comment from Cyndee Newick
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Diane loughbom
Comment from Stephanie Smedley
Comment from Lynn Bamdas
Comment from Sandra Bundy
Comment from Robert Martin
Comment from William Nusbaum
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mark Koritz
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gregory Quinn
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gail Roberts
Comment from Amy Zink
Comment from Pete Barron
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Chris Hazynski
Comment from James Hickey
Comment from Anonymous Anonymous
Comment from Dawn Sare
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-43155
NOAA-NMFS-2020-0031-DRAFT-43156
NOAA-NMFS-2020-0031-DRAFT-43157
NOAA-NMFS-2020-0031-DRAFT-43158
NOAA-NMFS-2020-0031-DRAFT-43159
NOAA-NMFS-2020-0031-DRAFT-43160
NOAA-NMFS-2020-0031-DRAFT-43161
NOAA-NMFS-2020-0031-DRAFT-43162
NOAA-NMFS-2020-0031-DRAFT-43163
NOAA-NMFS-2020-0031-DRAFT-43164
NOAA-NMFS-2020-0031-DRAFT-43165
NOAA-NMFS-2020-0031-DRAFT-43166
NOAA-NMFS-2020-0031-DRAFT-43167
NOAA-NMFS-2020-0031-DRAFT-43168
NOAA-NMFS-2020-0031-DRAFT-43169
NOAA-NMFS-2020-0031-DRAFT-43170
NOAA-NMFS-2020-0031-DRAFT-43171
NOAA-NMFS-2020-0031-DRAFT-43172
NOAA-NMFS-2020-0031-DRAFT-43173
NOAA-NMFS-2020-0031-DRAFT-43174
NOAA-NMFS-2020-0031-DRAFT-43175
NOAA-NMFS-2020-0031-DRAFT-43176
NOAA-NMFS-2020-0031-DRAFT-43177
NOAA-NMFS-2020-0031-DRAFT-43178
NOAA-NMFS-2020-0031-DRAFT-43179
NOAA-NMFS-2020-0031-DRAFT-43180
NOAA-NMFS-2020-0031-DRAFT-43181
NOAA-NMFS-2020-0031-DRAFT-43182
NOAA-NMFS-2020-0031-DRAFT-43183
NOAA-NMFS-2020-0031-DRAFT-43184
NOAA-NMFS-2020-0031-DRAFT-43185
NOAA-NMFS-2020-0031-DRAFT-43186
NOAA-NMFS-2020-0031-DRAFT-43187
NOAA-NMFS-2020-0031-DRAFT-43188
NOAA-NMFS-2020-0031-DRAFT-43189
NOAA-NMFS-2020-0031-DRAFT-43190
NOAA-NMFS-2020-0031-DRAFT-43191
NOAA-NMFS-2020-0031-DRAFT-43192
NOAA-NMFS-2020-0031-DRAFT-43193
NOAA-NMFS-2020-0031-DRAFT-43194
NOAA-NMFS-2020-0031-DRAFT-43195

Comment from Anonymous Anonymous
Comment from Reifman, Jamie
Comment from Peterman, Michael
Comment from Williams, Terrie
Comment from Onessimo, Dean
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Holloway, Pearl
Comment from Pajer, Scott and Tricia
Comment from dowling, robert
Comment from Narkoff, Cynthia
Comment from Anonymous Anonymous
Comment from Koechner, Donna
Comment from Whitehead, Mary
Comment from King, Denise
Comment from Babbitt, Susan
Comment from Anonymous Anonymous
Comment from Arvio, Cheryl
Comment from McDonald CVT, Erin
Comment from Abbott, Eric
Comment from JENNINGS, LINDA
Comment from Mctigue, Patricia
Comment from freddie williams
Comment from Abitz, Julie
Comment from Pflugrad, Johnny
Comment from Sommerfield, Katharine
Comment from Anonymous Anonymous
Comment from Rothenberg, Renaye
Comment from Lau, Catherine
Comment from loewenstein, Cathy
Comment from Ultican, Lanna
Comment from Anonymous Anonymous
Comment from Henry, Michelle
Comment from lubow, judy
Comment from Brown, Robert
Comment from Perlmutter, Martin
Comment from Shaw, Niel
Comment from Ronnquist, Deborah
Comment from Daiss, Becky
Comment from Fitz, F
Comment from Esson, Gen

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NOAA-NMFS-2020-0031-DRAFT-48357
NOAA-NMFS-2020-0031-DRAFT-48359
NOAA-NMFS-2020-0031-DRAFT-48360
NOAA-NMFS-2020-0031-DRAFT-48361
NOAA-NMFS-2020-0031-DRAFT-48362
NOAA-NMFS-2020-0031-DRAFT-48363
NOAA-NMFS-2020-0031-DRAFT-48364
NOAA-NMFS-2020-0031-DRAFT-48365
NOAA-NMFS-2020-0031-DRAFT-48366
NOAA-NMFS-2020-0031-DRAFT-48367
NOAA-NMFS-2020-0031-DRAFT-48368
NOAA-NMFS-2020-0031-DRAFT-48369
NOAA-NMFS-2020-0031-DRAFT-48370
NOAA-NMFS-2020-0031-DRAFT-48371
NOAA-NMFS-2020-0031-DRAFT-48372
NOAA-NMFS-2020-0031-DRAFT-48373
NOAA-NMFS-2020-0031-DRAFT-48374
NOAA-NMFS-2020-0031-DRAFT-48375
NOAA-NMFS-2020-0031-DRAFT-48376
NOAA-NMFS-2020-0031-DRAFT-48379
NOAA-NMFS-2020-0031-DRAFT-48380
NOAA-NMFS-2020-0031-DRAFT-48381
NOAA-NMFS-2020-0031-DRAFT-48382
NOAA-NMFS-2020-0031-DRAFT-48383
NOAA-NMFS-2020-0031-DRAFT-48384
NOAA-NMFS-2020-0031-DRAFT-48385
NOAA-NMFS-2020-0031-DRAFT-48386
NOAA-NMFS-2020-0031-DRAFT-48387
NOAA-NMFS-2020-0031-DRAFT-48388
NOAA-NMFS-2020-0031-DRAFT-48389
NOAA-NMFS-2020-0031-DRAFT-48390
NOAA-NMFS-2020-0031-DRAFT-48391
NOAA-NMFS-2020-0031-DRAFT-48392
NOAA-NMFS-2020-0031-DRAFT-48393
NOAA-NMFS-2020-0031-DRAFT-48394
NOAA-NMFS-2020-0031-DRAFT-48395
NOAA-NMFS-2020-0031-DRAFT-48396
NOAA-NMFS-2020-0031-DRAFT-48397
NOAA-NMFS-2020-0031-DRAFT-48398
NOAA-NMFS-2020-0031-DRAFT-48399
NOAA-NMFS-2020-0031-DRAFT-48400

Comment from William Roberson
Comment from J Anderson
Comment from Anonymous Anonymous
Comment from Joyce Parr, Carrie
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Comment from Butler, Tommi
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Comment from Anonymous Anonymous
Comment from Agramonte , Amy
Comment from Picard, Guillaume
Comment from Christine Sepulveda
Comment from Jamie Thomas
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Comment from Kerry Burkhardt
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Comment from Julia Hartman
Comment from Gloria Navan
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Comment from Beverly deGero
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Comment from Sharon McCarthy
Comment from Lynne Wolf
Comment from LeAnn Bjelle
Comment from Carole Pappas
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Comment from Catherine Ream
Comment from Dolores Welty
Comment from Anonymous Anonymous
Comment from Christine Hampton
Comment from Cheryl Rowe
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from George Craciun
Comment from Leila Mohseni
Comment from Anonymous Anonymous
Comment from Heather Wickings
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43196
NOAA-NMFS-2020-0031-DRAFT-43197
NOAA-NMFS-2020-0031-DRAFT-43198
NOAA-NMFS-2020-0031-DRAFT-43199
NOAA-NMFS-2020-0031-DRAFT-43200
NOAA-NMFS-2020-0031-DRAFT-43201
NOAA-NMFS-2020-0031-DRAFT-43202
NOAA-NMFS-2020-0031-DRAFT-43203
NOAA-NMFS-2020-0031-DRAFT-43204
NOAA-NMFS-2020-0031-DRAFT-43205
NOAA-NMFS-2020-0031-DRAFT-43206
NOAA-NMFS-2020-0031-DRAFT-43207
NOAA-NMFS-2020-0031-DRAFT-43208
NOAA-NMFS-2020-0031-DRAFT-43209
NOAA-NMFS-2020-0031-DRAFT-43210
NOAA-NMFS-2020-0031-DRAFT-43211
NOAA-NMFS-2020-0031-DRAFT-43212
NOAA-NMFS-2020-0031-DRAFT-43213
NOAA-NMFS-2020-0031-DRAFT-43214
NOAA-NMFS-2020-0031-DRAFT-43215
NOAA-NMFS-2020-0031-DRAFT-43216
NOAA-NMFS-2020-0031-DRAFT-43217
NOAA-NMFS-2020-0031-DRAFT-43218
NOAA-NMFS-2020-0031-DRAFT-43219
NOAA-NMFS-2020-0031-DRAFT-43220
NOAA-NMFS-2020-0031-DRAFT-43221
NOAA-NMFS-2020-0031-DRAFT-43222
NOAA-NMFS-2020-0031-DRAFT-43223
NOAA-NMFS-2020-0031-DRAFT-43224
NOAA-NMFS-2020-0031-DRAFT-43225
NOAA-NMFS-2020-0031-DRAFT-43226
NOAA-NMFS-2020-0031-DRAFT-43227
NOAA-NMFS-2020-0031-DRAFT-43228
NOAA-NMFS-2020-0031-DRAFT-43229
NOAA-NMFS-2020-0031-DRAFT-43230
NOAA-NMFS-2020-0031-DRAFT-43231
NOAA-NMFS-2020-0031-DRAFT-43232
NOAA-NMFS-2020-0031-DRAFT-43233
NOAA-NMFS-2020-0031-DRAFT-43234
NOAA-NMFS-2020-0031-DRAFT-43235
NOAA-NMFS-2020-0031-DRAFT-43236

Comment from McCane, Barbara
Comment from Smith, Nancy
Comment from McCleary, Harriet
Comment from Pew, Don
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from levin, monnie
Comment from Randolph, Tracy
Comment from Anonymous Anonymous
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Comment from Jerome, Lana
Comment from Baldwin, B E
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Comment from Shillito, Jan
Comment from McCommon, Kelly

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NOAA-NMFS-2020-0031-DRAFT-48401
NOAA-NMFS-2020-0031-DRAFT-48402
NOAA-NMFS-2020-0031-DRAFT-48403
NOAA-NMFS-2020-0031-DRAFT-48404
NOAA-NMFS-2020-0031-DRAFT-48405
NOAA-NMFS-2020-0031-DRAFT-48407
NOAA-NMFS-2020-0031-DRAFT-48408
NOAA-NMFS-2020-0031-DRAFT-48409
NOAA-NMFS-2020-0031-DRAFT-48410
NOAA-NMFS-2020-0031-DRAFT-48411
NOAA-NMFS-2020-0031-DRAFT-48412
NOAA-NMFS-2020-0031-DRAFT-48414
NOAA-NMFS-2020-0031-DRAFT-48415
NOAA-NMFS-2020-0031-DRAFT-48416
NOAA-NMFS-2020-0031-DRAFT-48417
NOAA-NMFS-2020-0031-DRAFT-48418
NOAA-NMFS-2020-0031-DRAFT-48419
NOAA-NMFS-2020-0031-DRAFT-48420
NOAA-NMFS-2020-0031-DRAFT-48421
NOAA-NMFS-2020-0031-DRAFT-48422
NOAA-NMFS-2020-0031-DRAFT-48423
NOAA-NMFS-2020-0031-DRAFT-48424
NOAA-NMFS-2020-0031-DRAFT-48425
NOAA-NMFS-2020-0031-DRAFT-48426
NOAA-NMFS-2020-0031-DRAFT-48427
NOAA-NMFS-2020-0031-DRAFT-48428
NOAA-NMFS-2020-0031-DRAFT-48429
NOAA-NMFS-2020-0031-DRAFT-48430
NOAA-NMFS-2020-0031-DRAFT-48431
NOAA-NMFS-2020-0031-DRAFT-48432
NOAA-NMFS-2020-0031-DRAFT-48433
NOAA-NMFS-2020-0031-DRAFT-48434
NOAA-NMFS-2020-0031-DRAFT-48435
NOAA-NMFS-2020-0031-DRAFT-48436
NOAA-NMFS-2020-0031-DRAFT-48437
NOAA-NMFS-2020-0031-DRAFT-48439
NOAA-NMFS-2020-0031-DRAFT-48440
NOAA-NMFS-2020-0031-DRAFT-48441
NOAA-NMFS-2020-0031-DRAFT-48442
NOAA-NMFS-2020-0031-DRAFT-48443
NOAA-NMFS-2020-0031-DRAFT-48444

Comment from Gail Wing
Comment from Anonymous Anonymous
Comment from Elizabeth Thorpe
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Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43237
NOAA-NMFS-2020-0031-DRAFT-43238
NOAA-NMFS-2020-0031-DRAFT-43239
NOAA-NMFS-2020-0031-DRAFT-43240
NOAA-NMFS-2020-0031-DRAFT-43241
NOAA-NMFS-2020-0031-DRAFT-43242
NOAA-NMFS-2020-0031-DRAFT-43243
NOAA-NMFS-2020-0031-DRAFT-43244
NOAA-NMFS-2020-0031-DRAFT-43245
NOAA-NMFS-2020-0031-DRAFT-43246
NOAA-NMFS-2020-0031-DRAFT-43247
NOAA-NMFS-2020-0031-DRAFT-43248
NOAA-NMFS-2020-0031-DRAFT-43249
NOAA-NMFS-2020-0031-DRAFT-43250
NOAA-NMFS-2020-0031-DRAFT-43251
NOAA-NMFS-2020-0031-DRAFT-43252
NOAA-NMFS-2020-0031-DRAFT-43253
NOAA-NMFS-2020-0031-DRAFT-43254
NOAA-NMFS-2020-0031-DRAFT-43255
NOAA-NMFS-2020-0031-DRAFT-43256
NOAA-NMFS-2020-0031-DRAFT-43257
NOAA-NMFS-2020-0031-DRAFT-43258
NOAA-NMFS-2020-0031-DRAFT-43259
NOAA-NMFS-2020-0031-DRAFT-43260
NOAA-NMFS-2020-0031-DRAFT-43261
NOAA-NMFS-2020-0031-DRAFT-43262
NOAA-NMFS-2020-0031-DRAFT-43263
NOAA-NMFS-2020-0031-DRAFT-43264
NOAA-NMFS-2020-0031-DRAFT-43265
NOAA-NMFS-2020-0031-DRAFT-43266
NOAA-NMFS-2020-0031-DRAFT-43267
NOAA-NMFS-2020-0031-DRAFT-43268
NOAA-NMFS-2020-0031-DRAFT-43269
NOAA-NMFS-2020-0031-DRAFT-43270
NOAA-NMFS-2020-0031-DRAFT-43271
NOAA-NMFS-2020-0031-DRAFT-43272
NOAA-NMFS-2020-0031-DRAFT-43274
NOAA-NMFS-2020-0031-DRAFT-43275
NOAA-NMFS-2020-0031-DRAFT-43276
NOAA-NMFS-2020-0031-DRAFT-43277
NOAA-NMFS-2020-0031-DRAFT-43278

Comment from Cifaldi, Margret
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Comment from Buydos, Geary

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NOAA-NMFS-2020-0031-DRAFT-48445
NOAA-NMFS-2020-0031-DRAFT-48446
NOAA-NMFS-2020-0031-DRAFT-48447
NOAA-NMFS-2020-0031-DRAFT-48448
NOAA-NMFS-2020-0031-DRAFT-48449
NOAA-NMFS-2020-0031-DRAFT-48450
NOAA-NMFS-2020-0031-DRAFT-48451
NOAA-NMFS-2020-0031-DRAFT-48452
NOAA-NMFS-2020-0031-DRAFT-48453
NOAA-NMFS-2020-0031-DRAFT-48454
NOAA-NMFS-2020-0031-DRAFT-48455
NOAA-NMFS-2020-0031-DRAFT-48456
NOAA-NMFS-2020-0031-DRAFT-48457
NOAA-NMFS-2020-0031-DRAFT-48458
NOAA-NMFS-2020-0031-DRAFT-48459
NOAA-NMFS-2020-0031-DRAFT-48460
NOAA-NMFS-2020-0031-DRAFT-48461
NOAA-NMFS-2020-0031-DRAFT-48462
NOAA-NMFS-2020-0031-DRAFT-48463
NOAA-NMFS-2020-0031-DRAFT-48464
NOAA-NMFS-2020-0031-DRAFT-48465
NOAA-NMFS-2020-0031-DRAFT-48466
NOAA-NMFS-2020-0031-DRAFT-48467
NOAA-NMFS-2020-0031-DRAFT-48468
NOAA-NMFS-2020-0031-DRAFT-48469
NOAA-NMFS-2020-0031-DRAFT-48470
NOAA-NMFS-2020-0031-DRAFT-48471
NOAA-NMFS-2020-0031-DRAFT-48472
NOAA-NMFS-2020-0031-DRAFT-48473
NOAA-NMFS-2020-0031-DRAFT-48474
NOAA-NMFS-2020-0031-DRAFT-48476
NOAA-NMFS-2020-0031-DRAFT-48477
NOAA-NMFS-2020-0031-DRAFT-48478
NOAA-NMFS-2020-0031-DRAFT-48479
NOAA-NMFS-2020-0031-DRAFT-48480
NOAA-NMFS-2020-0031-DRAFT-48481
NOAA-NMFS-2020-0031-DRAFT-48482
NOAA-NMFS-2020-0031-DRAFT-48483
NOAA-NMFS-2020-0031-DRAFT-48485
NOAA-NMFS-2020-0031-DRAFT-48486
NOAA-NMFS-2020-0031-DRAFT-48487

Comment from Lydia Mayhood
Comment from Sophie Herndon
Comment from Kathy Smith
Comment from Anonymous Anonymous
Comment from Derrick Ryan
Comment from Anonymous Anonymous
Comment from Ericka Kohn
Comment from Pamela Myhree
Comment from Nancy McLean
Comment from Sallie Donkin
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from jean zanow
Comment from Alyson Winters
Comment from Catherine Ward-Long
Comment from Anonymous Anonymous
Comment from Donna Markham
Comment from LEAH JACOBS
Comment from marcia sliwinski
Comment from Lee Bible
Comment from Anonymous Anonymous
Comment from Kate Mullan
Comment from Elloie Jeter
Comment from Anonymous Anonymous
Comment from Summer Crabtree
Comment from Rachael Riccobene
Comment from Nancy Walsh
Comment from Teri Smyth
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mark March
Comment from Anonymous Anonymous
Comment from Len Carella
Comment from Anonymous Anonymous
Comment from Wendy Joffe
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43279
NOAA-NMFS-2020-0031-DRAFT-43280
NOAA-NMFS-2020-0031-DRAFT-43281
NOAA-NMFS-2020-0031-DRAFT-43282
NOAA-NMFS-2020-0031-DRAFT-43283
NOAA-NMFS-2020-0031-DRAFT-43284
NOAA-NMFS-2020-0031-DRAFT-43285
NOAA-NMFS-2020-0031-DRAFT-43286
NOAA-NMFS-2020-0031-DRAFT-43287
NOAA-NMFS-2020-0031-DRAFT-43288
NOAA-NMFS-2020-0031-DRAFT-43289
NOAA-NMFS-2020-0031-DRAFT-43290
NOAA-NMFS-2020-0031-DRAFT-43291
NOAA-NMFS-2020-0031-DRAFT-43292
NOAA-NMFS-2020-0031-DRAFT-43293
NOAA-NMFS-2020-0031-DRAFT-43294
NOAA-NMFS-2020-0031-DRAFT-43295
NOAA-NMFS-2020-0031-DRAFT-43296
NOAA-NMFS-2020-0031-DRAFT-43297
NOAA-NMFS-2020-0031-DRAFT-43298
NOAA-NMFS-2020-0031-DRAFT-43299
NOAA-NMFS-2020-0031-DRAFT-43300
NOAA-NMFS-2020-0031-DRAFT-43301
NOAA-NMFS-2020-0031-DRAFT-43302
NOAA-NMFS-2020-0031-DRAFT-43303
NOAA-NMFS-2020-0031-DRAFT-43304
NOAA-NMFS-2020-0031-DRAFT-43305
NOAA-NMFS-2020-0031-DRAFT-43306
NOAA-NMFS-2020-0031-DRAFT-43307
NOAA-NMFS-2020-0031-DRAFT-43308
NOAA-NMFS-2020-0031-DRAFT-43309
NOAA-NMFS-2020-0031-DRAFT-43311
NOAA-NMFS-2020-0031-DRAFT-43312
NOAA-NMFS-2020-0031-DRAFT-43313
NOAA-NMFS-2020-0031-DRAFT-43314
NOAA-NMFS-2020-0031-DRAFT-43315
NOAA-NMFS-2020-0031-DRAFT-43316
NOAA-NMFS-2020-0031-DRAFT-43317
NOAA-NMFS-2020-0031-DRAFT-43318
NOAA-NMFS-2020-0031-DRAFT-43319
NOAA-NMFS-2020-0031-DRAFT-43320

Comment from Krieger, Karen
Comment from Mitchell, Michelle
Comment from York, Jo
Comment from Nell, Lori
Comment from Desmond, Jeanette
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from McCommon, Kelly
Comment from Keller, Jack
Comment from Duckworth, Nadine
Comment from Desmond, Jeanette
Comment from Salva, Laura
Comment from Powell, Antonia
Comment from Anonymous Anonymous
Comment from Slakter, Judith
Comment from Anonymous Anonymous
Comment from maker, janet
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Gitt, Ricky
Comment from Savige, David
Comment from Holcomb, A. Anne
Comment from Anonymous Anonymous
Comment from Rolofson, Tom
Comment from LaStrapes, Pat
Comment from Hawkins, A J
Comment from Ray, Jack
Comment from Latham, Lynne
Comment from Dresser, Marilyn
Comment from Hamilton, Michele
Comment from Anonymous Anonymous
Comment from Crawford, Jason
Comment from Marchetti, Robert
Comment from Bossert, Kristen
Comment from Taylor, Donald
Comment from Dekanich, Annette
Comment from Pollock, Dan
Comment from Hayman, Lauren
Comment from Muszynski, Gloria
Comment from Goldstein, Helen
Comment from Steiner Bowyer, Sallye

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NOAA-NMFS-2020-0031-DRAFT-48488
NOAA-NMFS-2020-0031-DRAFT-48489
NOAA-NMFS-2020-0031-DRAFT-48490
NOAA-NMFS-2020-0031-DRAFT-48491
NOAA-NMFS-2020-0031-DRAFT-48492
NOAA-NMFS-2020-0031-DRAFT-48493
NOAA-NMFS-2020-0031-DRAFT-48494
NOAA-NMFS-2020-0031-DRAFT-48495
NOAA-NMFS-2020-0031-DRAFT-48496
NOAA-NMFS-2020-0031-DRAFT-48497
NOAA-NMFS-2020-0031-DRAFT-48498
NOAA-NMFS-2020-0031-DRAFT-48499
NOAA-NMFS-2020-0031-DRAFT-48500
NOAA-NMFS-2020-0031-DRAFT-48501
NOAA-NMFS-2020-0031-DRAFT-48502
NOAA-NMFS-2020-0031-DRAFT-48503
NOAA-NMFS-2020-0031-DRAFT-48504
NOAA-NMFS-2020-0031-DRAFT-48505
NOAA-NMFS-2020-0031-DRAFT-48506
NOAA-NMFS-2020-0031-DRAFT-48507
NOAA-NMFS-2020-0031-DRAFT-48508
NOAA-NMFS-2020-0031-DRAFT-48509
NOAA-NMFS-2020-0031-DRAFT-48510
NOAA-NMFS-2020-0031-DRAFT-48511
NOAA-NMFS-2020-0031-DRAFT-48512
NOAA-NMFS-2020-0031-DRAFT-48513
NOAA-NMFS-2020-0031-DRAFT-48514
NOAA-NMFS-2020-0031-DRAFT-48515
NOAA-NMFS-2020-0031-DRAFT-48516
NOAA-NMFS-2020-0031-DRAFT-48517
NOAA-NMFS-2020-0031-DRAFT-48518
NOAA-NMFS-2020-0031-DRAFT-48519
NOAA-NMFS-2020-0031-DRAFT-48520
NOAA-NMFS-2020-0031-DRAFT-48521
NOAA-NMFS-2020-0031-DRAFT-48522
NOAA-NMFS-2020-0031-DRAFT-48523
NOAA-NMFS-2020-0031-DRAFT-48524
NOAA-NMFS-2020-0031-DRAFT-48525
NOAA-NMFS-2020-0031-DRAFT-48526
NOAA-NMFS-2020-0031-DRAFT-48527
NOAA-NMFS-2020-0031-DRAFT-48528

Comment from Anonymous Anonymous
Comment from Francine Lipka
Comment from VICKY COSGROVE
Comment from Patricia Mckelvie
Comment from b hinson
Comment from Anonymous Anonymous
Comment from Chey Richmond
Comment from Elsie Knab
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Dawn Riley
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mariateresa Canosa
Comment from Anonymous Anonymous
Comment from Mark Redmond
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Helen Findley
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Marisol Prins
Comment from Patrice Tullai
Comment from Ann Marie
Comment from Anonymous Anonymous
Comment from Rahul Iyer
Comment from Jeffrey Dix
Comment from Suzan Woychuk
Comment from Elizabeth Turner
Comment from Robert Frank
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Janet Ty
Comment from Anonymous Anonymous
Comment from James Gazzale
Comment from TOM ENGLISH
Comment from Mark Soenksen
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Alisa Battaglia

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NOAA-NMFS-2020-0031-DRAFT-43321
NOAA-NMFS-2020-0031-DRAFT-43322
NOAA-NMFS-2020-0031-DRAFT-43323
NOAA-NMFS-2020-0031-DRAFT-43324
NOAA-NMFS-2020-0031-DRAFT-43325
NOAA-NMFS-2020-0031-DRAFT-43326
NOAA-NMFS-2020-0031-DRAFT-43327
NOAA-NMFS-2020-0031-DRAFT-43328
NOAA-NMFS-2020-0031-DRAFT-43329
NOAA-NMFS-2020-0031-DRAFT-43330
NOAA-NMFS-2020-0031-DRAFT-43331
NOAA-NMFS-2020-0031-DRAFT-43332
NOAA-NMFS-2020-0031-DRAFT-43333
NOAA-NMFS-2020-0031-DRAFT-43334
NOAA-NMFS-2020-0031-DRAFT-43335
NOAA-NMFS-2020-0031-DRAFT-43336
NOAA-NMFS-2020-0031-DRAFT-43337
NOAA-NMFS-2020-0031-DRAFT-43338
NOAA-NMFS-2020-0031-DRAFT-43339
NOAA-NMFS-2020-0031-DRAFT-43340
NOAA-NMFS-2020-0031-DRAFT-43341
NOAA-NMFS-2020-0031-DRAFT-43342
NOAA-NMFS-2020-0031-DRAFT-43343
NOAA-NMFS-2020-0031-DRAFT-43344
NOAA-NMFS-2020-0031-DRAFT-43345
NOAA-NMFS-2020-0031-DRAFT-43346
NOAA-NMFS-2020-0031-DRAFT-43347
NOAA-NMFS-2020-0031-DRAFT-43348
NOAA-NMFS-2020-0031-DRAFT-43349
NOAA-NMFS-2020-0031-DRAFT-43350
NOAA-NMFS-2020-0031-DRAFT-43351
NOAA-NMFS-2020-0031-DRAFT-43352
NOAA-NMFS-2020-0031-DRAFT-43353
NOAA-NMFS-2020-0031-DRAFT-43354
NOAA-NMFS-2020-0031-DRAFT-43355
NOAA-NMFS-2020-0031-DRAFT-43356
NOAA-NMFS-2020-0031-DRAFT-43357
NOAA-NMFS-2020-0031-DRAFT-43358
NOAA-NMFS-2020-0031-DRAFT-43359
NOAA-NMFS-2020-0031-DRAFT-43360
NOAA-NMFS-2020-0031-DRAFT-43361

Comment from Martin, Raymond
Comment from KLEIN, DOUGLAS
Comment from Anonymous Anonymous
Comment from Reed, Taylor
Comment from Abbott, Alison
Comment from Bradley, Al
Comment from Wilson, Kimberly
Comment from O'Keefe, Dan
Comment from Mackenroth, Robin
Comment from Sewald, Michelle
Comment from DeGroot, Tiff
Comment from Kane, Pamela
Comment from Schneider, Barbara
Comment from Skopic, Nina
Comment from cioci, jan
Comment from van de Waarsenburg, Marc
Comment from Traube, Patty
Comment from Magliocca, Barbara
Comment from Colton, Cammy
Comment from Anonymous Anonymous
Comment from Lee, Susie
Comment from Anonymous Anonymous
Comment from Clark Jr, James A
Comment from Kozel, Jean
Comment from Bell, Deon
Comment from Renteria, Veronica
Comment from Locker, Georgia
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Olson, Arlene
Comment from Igard, Jodi
Comment from Anonymous Anonymous
Comment from Friedenson, Louise
Comment from Anderson, Linda
Comment from Byrne, Charles
Comment from Cunningham, Glenn
Comment from Anonymous Anonymous
Comment from Segal, Bobbi
Comment from Manganello, Marilyn
Comment from g, j
Comment from Fostel, Karen

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NOAA-NMFS-2020-0031-DRAFT-48529
NOAA-NMFS-2020-0031-DRAFT-48530
NOAA-NMFS-2020-0031-DRAFT-48531
NOAA-NMFS-2020-0031-DRAFT-48532
NOAA-NMFS-2020-0031-DRAFT-48533
NOAA-NMFS-2020-0031-DRAFT-48534
NOAA-NMFS-2020-0031-DRAFT-48535
NOAA-NMFS-2020-0031-DRAFT-48536
NOAA-NMFS-2020-0031-DRAFT-48537
NOAA-NMFS-2020-0031-DRAFT-48538
NOAA-NMFS-2020-0031-DRAFT-48539
NOAA-NMFS-2020-0031-DRAFT-48540
NOAA-NMFS-2020-0031-DRAFT-48541
NOAA-NMFS-2020-0031-DRAFT-48542
NOAA-NMFS-2020-0031-DRAFT-48543
NOAA-NMFS-2020-0031-DRAFT-48544
NOAA-NMFS-2020-0031-DRAFT-48545
NOAA-NMFS-2020-0031-DRAFT-48546
NOAA-NMFS-2020-0031-DRAFT-48547
NOAA-NMFS-2020-0031-DRAFT-48548
NOAA-NMFS-2020-0031-DRAFT-48549
NOAA-NMFS-2020-0031-DRAFT-48550
NOAA-NMFS-2020-0031-DRAFT-48551
NOAA-NMFS-2020-0031-DRAFT-48552
NOAA-NMFS-2020-0031-DRAFT-48553
NOAA-NMFS-2020-0031-DRAFT-48554
NOAA-NMFS-2020-0031-DRAFT-48555
NOAA-NMFS-2020-0031-DRAFT-48556
NOAA-NMFS-2020-0031-DRAFT-48557
NOAA-NMFS-2020-0031-DRAFT-48558
NOAA-NMFS-2020-0031-DRAFT-48559
NOAA-NMFS-2020-0031-DRAFT-48560
NOAA-NMFS-2020-0031-DRAFT-48561
NOAA-NMFS-2020-0031-DRAFT-48562
NOAA-NMFS-2020-0031-DRAFT-48563
NOAA-NMFS-2020-0031-DRAFT-48564
NOAA-NMFS-2020-0031-DRAFT-48565
NOAA-NMFS-2020-0031-DRAFT-48566
NOAA-NMFS-2020-0031-DRAFT-48567
NOAA-NMFS-2020-0031-DRAFT-48568
NOAA-NMFS-2020-0031-DRAFT-48569

Comment from Susan McCarthy
Comment from Stephen Connor
Comment from Anonymous Anonymous
Comment from Janet Forbes
Comment from Anonymous Anonymous
Comment from Victoria Urias
Comment from Margaret Beckman
Comment from Anonymous Anonymous
Comment from Frances Parsons
Comment from Anonymous Anonymous
Comment from BRENDA MARTIN
Comment from Ann Myers
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from CINDY PORTER
Comment from Anonymous Anonymous
Comment from Sondra Boes
Comment from Deirdre Brennan
Comment from Anonymous Anonymous
Comment from Frank Tucciarone
Comment from Zinnia Politzer
Comment from Jimmie Lunsford
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Valerie Clark
Comment from Anonymous Anonymous
Comment from Lawrence Plummer
Comment from Warwick Hansell
Comment from Anonymous Anonymous
Comment from Grace Agnew
Comment from Anonymous Anonymous
Comment from Melissa Prescott
Comment from Monique Coffey
Comment from Anonymous Anonymous
Comment from Lynn Thornton
Comment from Anonymous Anonymous
Comment from Sheila Gebart
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43362
NOAA-NMFS-2020-0031-DRAFT-43363
NOAA-NMFS-2020-0031-DRAFT-43364
NOAA-NMFS-2020-0031-DRAFT-43365
NOAA-NMFS-2020-0031-DRAFT-43366
NOAA-NMFS-2020-0031-DRAFT-43367
NOAA-NMFS-2020-0031-DRAFT-43368
NOAA-NMFS-2020-0031-DRAFT-43369
NOAA-NMFS-2020-0031-DRAFT-43370
NOAA-NMFS-2020-0031-DRAFT-43371
NOAA-NMFS-2020-0031-DRAFT-43372
NOAA-NMFS-2020-0031-DRAFT-43373
NOAA-NMFS-2020-0031-DRAFT-43374
NOAA-NMFS-2020-0031-DRAFT-43375
NOAA-NMFS-2020-0031-DRAFT-43376
NOAA-NMFS-2020-0031-DRAFT-43377
NOAA-NMFS-2020-0031-DRAFT-43378
NOAA-NMFS-2020-0031-DRAFT-43379
NOAA-NMFS-2020-0031-DRAFT-43380
NOAA-NMFS-2020-0031-DRAFT-43381
NOAA-NMFS-2020-0031-DRAFT-43382
NOAA-NMFS-2020-0031-DRAFT-43383
NOAA-NMFS-2020-0031-DRAFT-43384
NOAA-NMFS-2020-0031-DRAFT-43385
NOAA-NMFS-2020-0031-DRAFT-43386
NOAA-NMFS-2020-0031-DRAFT-43387
NOAA-NMFS-2020-0031-DRAFT-43388
NOAA-NMFS-2020-0031-DRAFT-43389
NOAA-NMFS-2020-0031-DRAFT-43390
NOAA-NMFS-2020-0031-DRAFT-43391
NOAA-NMFS-2020-0031-DRAFT-43392
NOAA-NMFS-2020-0031-DRAFT-43393
NOAA-NMFS-2020-0031-DRAFT-43394
NOAA-NMFS-2020-0031-DRAFT-43395
NOAA-NMFS-2020-0031-DRAFT-43396
NOAA-NMFS-2020-0031-DRAFT-43397
NOAA-NMFS-2020-0031-DRAFT-43398
NOAA-NMFS-2020-0031-DRAFT-43399
NOAA-NMFS-2020-0031-DRAFT-43400
NOAA-NMFS-2020-0031-DRAFT-43401
NOAA-NMFS-2020-0031-DRAFT-43402

Comment from h, j
Comment from Brunskill, Nan
Comment from Anonymous Anonymous
Comment from Paspalas, Julia
Comment from Stevenson-King, Annie
Comment from Holden, Donna
Comment from Gestes, Lillian
Comment from Kaleel, Joseph
Comment from Weber, Joy
Comment from Gonzalez, William G
Comment from Hemmila, Rodney
Comment from Hallmark, Jena
Comment from Shasky, Mike
Comment from Epley, Cherie
Comment from Seegott, Mary
Comment from Anonymous Anonymous
Comment from Temin, Larry
Comment from Kline, Denise
Comment from Anonymous Anonymous
Comment from Huber, Ivan
Comment from Barfknecht, Marci
Comment from BELTER, JERRY
Comment from Costolo, Elaine
Comment from Michaelis, MaryLynn
Comment from Price, Don
Comment from Ennis, Donna
Comment from Faller, Lisabeth
Comment from Spahn, Katie
Comment from St. John, Clayton
Comment from Tame, Paul
Comment from D’Alessandro, Keith
Comment from Jenkins, Brigitte
Comment from Bronstein, Deborah
Comment from Olavarrieta, Martha
Comment from O’Neill, Tiffany
Comment from Anonymous Anonymous
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Comment from Cataldo, Rosanne
Comment from Schoenbachler, Lisa
Comment from Thompson, Dennis
Comment from Paker, Bulent

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NOAA-NMFS-2020-0031-DRAFT-48570
NOAA-NMFS-2020-0031-DRAFT-48571
NOAA-NMFS-2020-0031-DRAFT-48572
NOAA-NMFS-2020-0031-DRAFT-48573
NOAA-NMFS-2020-0031-DRAFT-48574
NOAA-NMFS-2020-0031-DRAFT-48575
NOAA-NMFS-2020-0031-DRAFT-48576
NOAA-NMFS-2020-0031-DRAFT-48577
NOAA-NMFS-2020-0031-DRAFT-48578
NOAA-NMFS-2020-0031-DRAFT-48579
NOAA-NMFS-2020-0031-DRAFT-48580
NOAA-NMFS-2020-0031-DRAFT-48581
NOAA-NMFS-2020-0031-DRAFT-48582
NOAA-NMFS-2020-0031-DRAFT-48583
NOAA-NMFS-2020-0031-DRAFT-48584
NOAA-NMFS-2020-0031-DRAFT-48585
NOAA-NMFS-2020-0031-DRAFT-48586
NOAA-NMFS-2020-0031-DRAFT-48587
NOAA-NMFS-2020-0031-DRAFT-48588
NOAA-NMFS-2020-0031-DRAFT-48589
NOAA-NMFS-2020-0031-DRAFT-48590
NOAA-NMFS-2020-0031-DRAFT-48591
NOAA-NMFS-2020-0031-DRAFT-48592
NOAA-NMFS-2020-0031-DRAFT-48593
NOAA-NMFS-2020-0031-DRAFT-48594
NOAA-NMFS-2020-0031-DRAFT-48595
NOAA-NMFS-2020-0031-DRAFT-48596
NOAA-NMFS-2020-0031-DRAFT-48597
NOAA-NMFS-2020-0031-DRAFT-48598
NOAA-NMFS-2020-0031-DRAFT-48599
NOAA-NMFS-2020-0031-DRAFT-48600
NOAA-NMFS-2020-0031-DRAFT-48601
NOAA-NMFS-2020-0031-DRAFT-48602
NOAA-NMFS-2020-0031-DRAFT-48603
NOAA-NMFS-2020-0031-DRAFT-48604
NOAA-NMFS-2020-0031-DRAFT-48605
NOAA-NMFS-2020-0031-DRAFT-48606
NOAA-NMFS-2020-0031-DRAFT-48607
NOAA-NMFS-2020-0031-DRAFT-48608
NOAA-NMFS-2020-0031-DRAFT-48609
NOAA-NMFS-2020-0031-DRAFT-48610

Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-43403
NOAA-NMFS-2020-0031-DRAFT-43404
NOAA-NMFS-2020-0031-DRAFT-43405
NOAA-NMFS-2020-0031-DRAFT-43406
NOAA-NMFS-2020-0031-DRAFT-43408
NOAA-NMFS-2020-0031-DRAFT-43409
NOAA-NMFS-2020-0031-DRAFT-43410
NOAA-NMFS-2020-0031-DRAFT-43411
NOAA-NMFS-2020-0031-DRAFT-43412
NOAA-NMFS-2020-0031-DRAFT-43413
NOAA-NMFS-2020-0031-DRAFT-43414
NOAA-NMFS-2020-0031-DRAFT-43415
NOAA-NMFS-2020-0031-DRAFT-43416
NOAA-NMFS-2020-0031-DRAFT-43417
NOAA-NMFS-2020-0031-DRAFT-43418
NOAA-NMFS-2020-0031-DRAFT-43419
NOAA-NMFS-2020-0031-DRAFT-43420
NOAA-NMFS-2020-0031-DRAFT-43421
NOAA-NMFS-2020-0031-DRAFT-43422
NOAA-NMFS-2020-0031-DRAFT-43423
NOAA-NMFS-2020-0031-DRAFT-43424
NOAA-NMFS-2020-0031-DRAFT-43425
NOAA-NMFS-2020-0031-DRAFT-43426
NOAA-NMFS-2020-0031-DRAFT-43427
NOAA-NMFS-2020-0031-DRAFT-43428
NOAA-NMFS-2020-0031-DRAFT-43429
NOAA-NMFS-2020-0031-DRAFT-43430
NOAA-NMFS-2020-0031-DRAFT-43431
NOAA-NMFS-2020-0031-DRAFT-43432
NOAA-NMFS-2020-0031-DRAFT-43433
NOAA-NMFS-2020-0031-DRAFT-43434
NOAA-NMFS-2020-0031-DRAFT-43435
NOAA-NMFS-2020-0031-DRAFT-43436
NOAA-NMFS-2020-0031-DRAFT-43437
NOAA-NMFS-2020-0031-DRAFT-43438
NOAA-NMFS-2020-0031-DRAFT-43439
NOAA-NMFS-2020-0031-DRAFT-43440
NOAA-NMFS-2020-0031-DRAFT-43441
NOAA-NMFS-2020-0031-DRAFT-43442
NOAA-NMFS-2020-0031-DRAFT-43443
NOAA-NMFS-2020-0031-DRAFT-43445

Comment from Anonymous Anonymous
Comment from Stirling, Gail
Comment from Pullen, Rev. Sher
Comment from Houser, Donald
Comment from Abby, Kathy
Comment from Nowak, Joseph
Comment from Tollison, Joanne
Comment from Lalumiere, Valerie
Comment from Gregory, Chilton
Comment from Medlin, Barry
Comment from Langelier, Karen
Comment from Anonymous Anonymous
Comment from Sheridan, Anne
Comment from McGee, Maureen
Comment from sands, gloria
Comment from Hamilton, Lisa
Comment from Anonymous Anonymous
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Comment from Ridgway, Gregory
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Comment from Wertz, Deborah
Comment from Newsom, Deirdre
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Comment from Knapp, Tracy
Comment from Deroy, Aleta
Comment from Hawkins, Marta
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Comment from Howard, Judith
Comment from Swint, Dorothea
Comment from Howard, Judith
Comment from Callahan, Kara
Comment from reingold, robert
Comment from Anonymous Anonymous
Comment from Doig, Dona
Comment from Serylo, Sharon
Comment from ERCEG, GEORGE

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NOAA-NMFS-2020-0031-DRAFT-48611
NOAA-NMFS-2020-0031-DRAFT-48612
NOAA-NMFS-2020-0031-DRAFT-48613
NOAA-NMFS-2020-0031-DRAFT-48614
NOAA-NMFS-2020-0031-DRAFT-48615
NOAA-NMFS-2020-0031-DRAFT-48616
NOAA-NMFS-2020-0031-DRAFT-48617
NOAA-NMFS-2020-0031-DRAFT-48618
NOAA-NMFS-2020-0031-DRAFT-48619
NOAA-NMFS-2020-0031-DRAFT-48620
NOAA-NMFS-2020-0031-DRAFT-48621
NOAA-NMFS-2020-0031-DRAFT-48622
NOAA-NMFS-2020-0031-DRAFT-48623
NOAA-NMFS-2020-0031-DRAFT-48624
NOAA-NMFS-2020-0031-DRAFT-48625
NOAA-NMFS-2020-0031-DRAFT-48626
NOAA-NMFS-2020-0031-DRAFT-48627
NOAA-NMFS-2020-0031-DRAFT-48628
NOAA-NMFS-2020-0031-DRAFT-48629
NOAA-NMFS-2020-0031-DRAFT-48630
NOAA-NMFS-2020-0031-DRAFT-48631
NOAA-NMFS-2020-0031-DRAFT-48632
NOAA-NMFS-2020-0031-DRAFT-48633
NOAA-NMFS-2020-0031-DRAFT-48634
NOAA-NMFS-2020-0031-DRAFT-48635
NOAA-NMFS-2020-0031-DRAFT-48636
NOAA-NMFS-2020-0031-DRAFT-48637
NOAA-NMFS-2020-0031-DRAFT-48638
NOAA-NMFS-2020-0031-DRAFT-48639
NOAA-NMFS-2020-0031-DRAFT-48640
NOAA-NMFS-2020-0031-DRAFT-48641
NOAA-NMFS-2020-0031-DRAFT-48642
NOAA-NMFS-2020-0031-DRAFT-48643
NOAA-NMFS-2020-0031-DRAFT-48644
NOAA-NMFS-2020-0031-DRAFT-48645
NOAA-NMFS-2020-0031-DRAFT-48646
NOAA-NMFS-2020-0031-DRAFT-48647
NOAA-NMFS-2020-0031-DRAFT-48649
NOAA-NMFS-2020-0031-DRAFT-48650
NOAA-NMFS-2020-0031-DRAFT-48651
NOAA-NMFS-2020-0031-DRAFT-48652

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from M S
Comment from Teresa Bartley
Comment from O Lewis
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Comment from Anna Bergalis
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Comment from Mary Stanton
Comment from Susan Evans
Comment from Ron Season
Comment from Anonymous Anonymous
Comment from Ed Zych
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Comment from Debbie Prawer
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NOAA-NMFS-2020-0031-DRAFT-43446
NOAA-NMFS-2020-0031-DRAFT-43447
NOAA-NMFS-2020-0031-DRAFT-43448
NOAA-NMFS-2020-0031-DRAFT-43449
NOAA-NMFS-2020-0031-DRAFT-43450
NOAA-NMFS-2020-0031-DRAFT-43451
NOAA-NMFS-2020-0031-DRAFT-43452
NOAA-NMFS-2020-0031-DRAFT-43453
NOAA-NMFS-2020-0031-DRAFT-43454
NOAA-NMFS-2020-0031-DRAFT-43455
NOAA-NMFS-2020-0031-DRAFT-43456
NOAA-NMFS-2020-0031-DRAFT-43457
NOAA-NMFS-2020-0031-DRAFT-43458
NOAA-NMFS-2020-0031-DRAFT-43459
NOAA-NMFS-2020-0031-DRAFT-43460
NOAA-NMFS-2020-0031-DRAFT-43461
NOAA-NMFS-2020-0031-DRAFT-43462
NOAA-NMFS-2020-0031-DRAFT-43463
NOAA-NMFS-2020-0031-DRAFT-43464
NOAA-NMFS-2020-0031-DRAFT-43465
NOAA-NMFS-2020-0031-DRAFT-43466
NOAA-NMFS-2020-0031-DRAFT-43468
NOAA-NMFS-2020-0031-DRAFT-43469
NOAA-NMFS-2020-0031-DRAFT-43470
NOAA-NMFS-2020-0031-DRAFT-43471
NOAA-NMFS-2020-0031-DRAFT-43473
NOAA-NMFS-2020-0031-DRAFT-43474
NOAA-NMFS-2020-0031-DRAFT-43475
NOAA-NMFS-2020-0031-DRAFT-43476
NOAA-NMFS-2020-0031-DRAFT-43477
NOAA-NMFS-2020-0031-DRAFT-43478
NOAA-NMFS-2020-0031-DRAFT-43479
NOAA-NMFS-2020-0031-DRAFT-43480
NOAA-NMFS-2020-0031-DRAFT-43481
NOAA-NMFS-2020-0031-DRAFT-43482
NOAA-NMFS-2020-0031-DRAFT-43483
NOAA-NMFS-2020-0031-DRAFT-43484
NOAA-NMFS-2020-0031-DRAFT-43485
NOAA-NMFS-2020-0031-DRAFT-43486
NOAA-NMFS-2020-0031-DRAFT-43487
NOAA-NMFS-2020-0031-DRAFT-43488

Comment from Craig, Heidi
Comment from Dubman, amy
Comment from Dubman, amy
Comment from Spain, Madeline
Comment from Anonymous Anonymous
Comment from Monday, Kristin
Comment from Nassikas, Christine
Comment from Schindler, John
Comment from Anonymous Anonymous
Comment from Watson, Madison
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Comment from Sutherland, Shari
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Comment from Barlow, Steven
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Comment from Tine, Priscilla
Comment from colonoy, pamela
Comment from Tine, Priscilla
Comment from benkert, cynthia
Comment from Knoppers, Sherry

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NOAA-NMFS-2020-0031-DRAFT-48653
NOAA-NMFS-2020-0031-DRAFT-48654
NOAA-NMFS-2020-0031-DRAFT-48655
NOAA-NMFS-2020-0031-DRAFT-48656
NOAA-NMFS-2020-0031-DRAFT-48657
NOAA-NMFS-2020-0031-DRAFT-48658
NOAA-NMFS-2020-0031-DRAFT-48659
NOAA-NMFS-2020-0031-DRAFT-48660
NOAA-NMFS-2020-0031-DRAFT-48661
NOAA-NMFS-2020-0031-DRAFT-48662
NOAA-NMFS-2020-0031-DRAFT-48663
NOAA-NMFS-2020-0031-DRAFT-48664
NOAA-NMFS-2020-0031-DRAFT-48665
NOAA-NMFS-2020-0031-DRAFT-48666
NOAA-NMFS-2020-0031-DRAFT-48667
NOAA-NMFS-2020-0031-DRAFT-48668
NOAA-NMFS-2020-0031-DRAFT-48669
NOAA-NMFS-2020-0031-DRAFT-48670
NOAA-NMFS-2020-0031-DRAFT-48671
NOAA-NMFS-2020-0031-DRAFT-48672
NOAA-NMFS-2020-0031-DRAFT-48673
NOAA-NMFS-2020-0031-DRAFT-48674
NOAA-NMFS-2020-0031-DRAFT-48675
NOAA-NMFS-2020-0031-DRAFT-48676
NOAA-NMFS-2020-0031-DRAFT-48677
NOAA-NMFS-2020-0031-DRAFT-48678
NOAA-NMFS-2020-0031-DRAFT-48679
NOAA-NMFS-2020-0031-DRAFT-48680
NOAA-NMFS-2020-0031-DRAFT-48681
NOAA-NMFS-2020-0031-DRAFT-48682
NOAA-NMFS-2020-0031-DRAFT-48683
NOAA-NMFS-2020-0031-DRAFT-48684
NOAA-NMFS-2020-0031-DRAFT-48685
NOAA-NMFS-2020-0031-DRAFT-48686
NOAA-NMFS-2020-0031-DRAFT-48687
NOAA-NMFS-2020-0031-DRAFT-48688
NOAA-NMFS-2020-0031-DRAFT-48689
NOAA-NMFS-2020-0031-DRAFT-48690
NOAA-NMFS-2020-0031-DRAFT-48691
NOAA-NMFS-2020-0031-DRAFT-48692
NOAA-NMFS-2020-0031-DRAFT-48693

Comment from Lisa Landsverk
Comment from Anonymous Anonymous
Comment from Ken Klaas
Comment from Stephanie Pratt
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Comment from Leah Bush
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Comment from DoRi Miles
Comment from Catherine Ward-Long
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Comment from Louise Chadborne
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Comment from joan turner
Comment from Dominic Libby
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Comment from steven korson
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Comment from Richard Peterson
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Comment from sasha silverstein
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NOAA-NMFS-2020-0031-DRAFT-43489
NOAA-NMFS-2020-0031-DRAFT-43490
NOAA-NMFS-2020-0031-DRAFT-43491
NOAA-NMFS-2020-0031-DRAFT-43492
NOAA-NMFS-2020-0031-DRAFT-43493
NOAA-NMFS-2020-0031-DRAFT-43494
NOAA-NMFS-2020-0031-DRAFT-43495
NOAA-NMFS-2020-0031-DRAFT-43496
NOAA-NMFS-2020-0031-DRAFT-43497
NOAA-NMFS-2020-0031-DRAFT-43498
NOAA-NMFS-2020-0031-DRAFT-43499
NOAA-NMFS-2020-0031-DRAFT-43500
NOAA-NMFS-2020-0031-DRAFT-43501
NOAA-NMFS-2020-0031-DRAFT-43502
NOAA-NMFS-2020-0031-DRAFT-43503
NOAA-NMFS-2020-0031-DRAFT-43504
NOAA-NMFS-2020-0031-DRAFT-43505
NOAA-NMFS-2020-0031-DRAFT-43506
NOAA-NMFS-2020-0031-DRAFT-43507
NOAA-NMFS-2020-0031-DRAFT-43508
NOAA-NMFS-2020-0031-DRAFT-43509
NOAA-NMFS-2020-0031-DRAFT-43510
NOAA-NMFS-2020-0031-DRAFT-43511
NOAA-NMFS-2020-0031-DRAFT-43512
NOAA-NMFS-2020-0031-DRAFT-43513
NOAA-NMFS-2020-0031-DRAFT-43514
NOAA-NMFS-2020-0031-DRAFT-43515
NOAA-NMFS-2020-0031-DRAFT-43517
NOAA-NMFS-2020-0031-DRAFT-43518
NOAA-NMFS-2020-0031-DRAFT-43519
NOAA-NMFS-2020-0031-DRAFT-43520
NOAA-NMFS-2020-0031-DRAFT-43521
NOAA-NMFS-2020-0031-DRAFT-43522
NOAA-NMFS-2020-0031-DRAFT-43523
NOAA-NMFS-2020-0031-DRAFT-43524
NOAA-NMFS-2020-0031-DRAFT-43525
NOAA-NMFS-2020-0031-DRAFT-43526
NOAA-NMFS-2020-0031-DRAFT-43527
NOAA-NMFS-2020-0031-DRAFT-43528
NOAA-NMFS-2020-0031-DRAFT-43529
NOAA-NMFS-2020-0031-DRAFT-43530

Comment from Kazak, Ilene
Comment from Thomas, Carol
Comment from Anonymous Anonymous
Comment from Morano Brown, Darleen
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Comment from Pealer, Renate
Comment from PHILLIPS, CHERYL
Comment from Salgado, Dalia
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Comment from Anonymous Anonymous
Comment from Cannon, Marley
Comment from Davidson, Amber
Comment from Moricas, Lindsay
Comment from McDonald, Barbara
Comment from Jenkins, Priscilla
Comment from Curtis, Janell
Comment from Girard, Anne Marie
Comment from Grace, George
Comment from Maltagliati, Gloria
Comment from Minsky, Nina
Comment from Budoff, Roslynn
Comment from gabriele, makenzie
Comment from Fisher, Laurie
Comment from POTTOK, ARLENE
Comment from Meck, Wanda
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Straub, Marcus
Comment from Robinson, Kathryn
Comment from King, Linda

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NOAA-NMFS-2020-0031-DRAFT-48694
NOAA-NMFS-2020-0031-DRAFT-48695
NOAA-NMFS-2020-0031-DRAFT-48696
NOAA-NMFS-2020-0031-DRAFT-48697
NOAA-NMFS-2020-0031-DRAFT-48698
NOAA-NMFS-2020-0031-DRAFT-48699
NOAA-NMFS-2020-0031-DRAFT-48700
NOAA-NMFS-2020-0031-DRAFT-48701
NOAA-NMFS-2020-0031-DRAFT-48702
NOAA-NMFS-2020-0031-DRAFT-48703
NOAA-NMFS-2020-0031-DRAFT-48704
NOAA-NMFS-2020-0031-DRAFT-48705
NOAA-NMFS-2020-0031-DRAFT-48706
NOAA-NMFS-2020-0031-DRAFT-48707
NOAA-NMFS-2020-0031-DRAFT-48708
NOAA-NMFS-2020-0031-DRAFT-48709
NOAA-NMFS-2020-0031-DRAFT-48710
NOAA-NMFS-2020-0031-DRAFT-48711
NOAA-NMFS-2020-0031-DRAFT-48712
NOAA-NMFS-2020-0031-DRAFT-48713
NOAA-NMFS-2020-0031-DRAFT-48714
NOAA-NMFS-2020-0031-DRAFT-48715
NOAA-NMFS-2020-0031-DRAFT-48716
NOAA-NMFS-2020-0031-DRAFT-48717
NOAA-NMFS-2020-0031-DRAFT-48718
NOAA-NMFS-2020-0031-DRAFT-48719
NOAA-NMFS-2020-0031-DRAFT-48720
NOAA-NMFS-2020-0031-DRAFT-48721
NOAA-NMFS-2020-0031-DRAFT-48722
NOAA-NMFS-2020-0031-DRAFT-48723
NOAA-NMFS-2020-0031-DRAFT-48724
NOAA-NMFS-2020-0031-DRAFT-48725
NOAA-NMFS-2020-0031-DRAFT-48726
NOAA-NMFS-2020-0031-DRAFT-48727
NOAA-NMFS-2020-0031-DRAFT-48728
NOAA-NMFS-2020-0031-DRAFT-48729
NOAA-NMFS-2020-0031-DRAFT-48730
NOAA-NMFS-2020-0031-DRAFT-48731
NOAA-NMFS-2020-0031-DRAFT-48732
NOAA-NMFS-2020-0031-DRAFT-48733
NOAA-NMFS-2020-0031-DRAFT-48734

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Dean Webb
Comment from Donna Cox
Comment from Kris Pagenkopf
Comment from Anonymous Anonymous
Comment from Elizabeth Ramsey
Comment from Gabriela Sosa
Comment from Jean Frederick
Comment from Aaron Ucko
Comment from Carol Gray
Comment from Rachel Cox
Comment from kate Allen
Comment from Steve Robey
Comment from robert cobb
Comment from Jessica Pate
Comment from Sheilagh Bergeron
Comment from Jane Rodgers
Comment from Harry Milkman
Comment from David G
Comment from Rick Romito
Comment from Christine Despres
Comment from Anonymous Anonymous
Comment from Geoffrey Ogden

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NOAA-NMFS-2020-0031-DRAFT-43531
NOAA-NMFS-2020-0031-DRAFT-43532
NOAA-NMFS-2020-0031-DRAFT-43533
NOAA-NMFS-2020-0031-DRAFT-43534
NOAA-NMFS-2020-0031-DRAFT-43535
NOAA-NMFS-2020-0031-DRAFT-43536
NOAA-NMFS-2020-0031-DRAFT-43538
NOAA-NMFS-2020-0031-DRAFT-43539
NOAA-NMFS-2020-0031-DRAFT-43540
NOAA-NMFS-2020-0031-DRAFT-43541
NOAA-NMFS-2020-0031-DRAFT-43542
NOAA-NMFS-2020-0031-DRAFT-43543
NOAA-NMFS-2020-0031-DRAFT-43544
NOAA-NMFS-2020-0031-DRAFT-43545
NOAA-NMFS-2020-0031-DRAFT-43546
NOAA-NMFS-2020-0031-DRAFT-43547
NOAA-NMFS-2020-0031-DRAFT-43548
NOAA-NMFS-2020-0031-DRAFT-43549
NOAA-NMFS-2020-0031-DRAFT-43550
NOAA-NMFS-2020-0031-DRAFT-43551
NOAA-NMFS-2020-0031-DRAFT-43552
NOAA-NMFS-2020-0031-DRAFT-43553
NOAA-NMFS-2020-0031-DRAFT-43554
NOAA-NMFS-2020-0031-DRAFT-43555
NOAA-NMFS-2020-0031-DRAFT-43556
NOAA-NMFS-2020-0031-DRAFT-43557
NOAA-NMFS-2020-0031-DRAFT-43558
NOAA-NMFS-2020-0031-DRAFT-43559
NOAA-NMFS-2020-0031-DRAFT-43560
NOAA-NMFS-2020-0031-DRAFT-43561
NOAA-NMFS-2020-0031-DRAFT-43562
NOAA-NMFS-2020-0031-DRAFT-43563
NOAA-NMFS-2020-0031-DRAFT-43564
NOAA-NMFS-2020-0031-DRAFT-43565
NOAA-NMFS-2020-0031-DRAFT-43566
NOAA-NMFS-2020-0031-DRAFT-43567
NOAA-NMFS-2020-0031-DRAFT-43568
NOAA-NMFS-2020-0031-DRAFT-43569
NOAA-NMFS-2020-0031-DRAFT-43570
NOAA-NMFS-2020-0031-DRAFT-43571
NOAA-NMFS-2020-0031-DRAFT-43572

Comment from Marler, Cody
Comment from Huddlestone, Laura
Comment from Anonymous Anonymous
Comment from Karp, Laurie
Comment from Anonymous Anonymous
Comment from Fletcher, Elaine
Comment from Snyder+-+Ret.+CO+Mayor,
Hon +Tiffany
Comment from o, K
Comment from Mazias, Melissa
Comment from Anonymous Anonymous
Comment from Nemeth, Elisabeth
Comment from Goode, Eva
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from McGlaughlin, Paige
Comment from Hyson, Donald
Comment from Giesing, Paula
Comment from Anonymous Anonymous
Comment from Edwards, Joy
Comment from Ald, Steven
Comment from fusaro, sienna
Comment from Anonymous Anonymous
Comment from Gerber, Jennifer
Comment from Sawyer, Nigel
Comment from carne, carol
Comment from woolley, m
Comment from Anonymous Anonymous
Comment from Wall, Shannon
Comment from Burke, Maureen
Comment from Dalton, Marsha
Comment from Anonymous Anonymous
Comment from Ward, Sheila
Comment from Harmon, Tommy
Comment from Pressimone, Melissa
Comment from Mamoyac, Joy
Comment from King, Theodore
Comment from Caprio, Valeri
Comment from Hanson, Kathy
Comment from Anonymous Anonymous
Comment from Wilkinson, L. L.
Comment from Vlcek, Janice

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NOAA-NMFS-2020-0031-DRAFT-48735
NOAA-NMFS-2020-0031-DRAFT-48736
NOAA-NMFS-2020-0031-DRAFT-48737
NOAA-NMFS-2020-0031-DRAFT-48738
NOAA-NMFS-2020-0031-DRAFT-48739
NOAA-NMFS-2020-0031-DRAFT-48740
NOAA-NMFS-2020-0031-DRAFT-48741
NOAA-NMFS-2020-0031-DRAFT-48742
NOAA-NMFS-2020-0031-DRAFT-48743
NOAA-NMFS-2020-0031-DRAFT-48744
NOAA-NMFS-2020-0031-DRAFT-48745
NOAA-NMFS-2020-0031-DRAFT-48746
NOAA-NMFS-2020-0031-DRAFT-48747
NOAA-NMFS-2020-0031-DRAFT-48748
NOAA-NMFS-2020-0031-DRAFT-48749
NOAA-NMFS-2020-0031-DRAFT-48750
NOAA-NMFS-2020-0031-DRAFT-48751
NOAA-NMFS-2020-0031-DRAFT-48752
NOAA-NMFS-2020-0031-DRAFT-48753
NOAA-NMFS-2020-0031-DRAFT-48754
NOAA-NMFS-2020-0031-DRAFT-48755
NOAA-NMFS-2020-0031-DRAFT-48756
NOAA-NMFS-2020-0031-DRAFT-48757
NOAA-NMFS-2020-0031-DRAFT-48758
NOAA-NMFS-2020-0031-DRAFT-48759
NOAA-NMFS-2020-0031-DRAFT-48760
NOAA-NMFS-2020-0031-DRAFT-48761
NOAA-NMFS-2020-0031-DRAFT-48762
NOAA-NMFS-2020-0031-DRAFT-48763
NOAA-NMFS-2020-0031-DRAFT-48764
NOAA-NMFS-2020-0031-DRAFT-48765
NOAA-NMFS-2020-0031-DRAFT-48766
NOAA-NMFS-2020-0031-DRAFT-48767
NOAA-NMFS-2020-0031-DRAFT-48768
NOAA-NMFS-2020-0031-DRAFT-48769
NOAA-NMFS-2020-0031-DRAFT-48770
NOAA-NMFS-2020-0031-DRAFT-48771
NOAA-NMFS-2020-0031-DRAFT-48772
NOAA-NMFS-2020-0031-DRAFT-48773
NOAA-NMFS-2020-0031-DRAFT-48774
NOAA-NMFS-2020-0031-DRAFT-48775

Comment from Nancy Gasperment
Comment from Kerry Edmunds
Comment from Denise Ress
Comment from Dara Rider
Comment from Ethel Usaraga
Comment from Harriett Jones
Comment from Clayton Jones
Comment from Phyllis Huang
Comment from Diane Klump
Comment from Tina Bartlett
Comment from Elizabeth Hartrick
Comment from Wayne Harris
Comment from Lisa Castillo
Comment from John Dylla
Comment from James Melloh
Comment from Christine Doering
Comment from Maria Varrone
Comment from Anonymous Anonymous
Comment from Trish Hicks
Comment from Anonymous Anonymous
Comment from Shirley Bensetler
Comment from Cohn Nancy
Comment from Christopher Kearney
Comment from Anonymous Anonymous
Comment from Cynthia Opderbeck
Comment from Sarah Powell
Comment from Lynn Funkhouser
Comment from Anonymous Anonymous
Comment from Anna Bergalis
Comment from Judith Fry
Comment from Ken Ferris
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Sharon Russick
Comment from Tiffany Schiff
Comment from Marta Calleja
Comment from Anonymous Anonymous
Comment from Roberta Thompson-Hopkins
Comment from Kathlene Henry-Gorman
Comment from Nancy Goldberg
Comment from Brian Gingras

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NOAA-NMFS-2020-0031-DRAFT-43573
NOAA-NMFS-2020-0031-DRAFT-43574
NOAA-NMFS-2020-0031-DRAFT-43575
NOAA-NMFS-2020-0031-DRAFT-43576
NOAA-NMFS-2020-0031-DRAFT-43577
NOAA-NMFS-2020-0031-DRAFT-43578
NOAA-NMFS-2020-0031-DRAFT-43579
NOAA-NMFS-2020-0031-DRAFT-43580
NOAA-NMFS-2020-0031-DRAFT-43581
NOAA-NMFS-2020-0031-DRAFT-43582
NOAA-NMFS-2020-0031-DRAFT-43583
NOAA-NMFS-2020-0031-DRAFT-43584
NOAA-NMFS-2020-0031-DRAFT-43585
NOAA-NMFS-2020-0031-DRAFT-43586
NOAA-NMFS-2020-0031-DRAFT-43587
NOAA-NMFS-2020-0031-DRAFT-43588
NOAA-NMFS-2020-0031-DRAFT-43589
NOAA-NMFS-2020-0031-DRAFT-43590
NOAA-NMFS-2020-0031-DRAFT-43591
NOAA-NMFS-2020-0031-DRAFT-43592
NOAA-NMFS-2020-0031-DRAFT-43593
NOAA-NMFS-2020-0031-DRAFT-43594
NOAA-NMFS-2020-0031-DRAFT-43595
NOAA-NMFS-2020-0031-DRAFT-43596
NOAA-NMFS-2020-0031-DRAFT-43597
NOAA-NMFS-2020-0031-DRAFT-43598
NOAA-NMFS-2020-0031-DRAFT-43599
NOAA-NMFS-2020-0031-DRAFT-43600
NOAA-NMFS-2020-0031-DRAFT-43601
NOAA-NMFS-2020-0031-DRAFT-43602
NOAA-NMFS-2020-0031-DRAFT-43603
NOAA-NMFS-2020-0031-DRAFT-43604
NOAA-NMFS-2020-0031-DRAFT-43605
NOAA-NMFS-2020-0031-DRAFT-43606
NOAA-NMFS-2020-0031-DRAFT-43607
NOAA-NMFS-2020-0031-DRAFT-43608
NOAA-NMFS-2020-0031-DRAFT-43609
NOAA-NMFS-2020-0031-DRAFT-43610
NOAA-NMFS-2020-0031-DRAFT-43611
NOAA-NMFS-2020-0031-DRAFT-43612
NOAA-NMFS-2020-0031-DRAFT-43613

Comment from rosenblum, robert
Comment from Johnson, Elsa
Comment from Garbrick, Kathe
Comment from Peters, Lynn
Comment from SORENSEN, PAUL
Comment from SORENSEN, PAUL
Comment from Cozzolino, Sofia
Comment from Bordelon, Tika
Comment from Janicki, Diane
Comment from Marks, Donna
Comment from Germain, Debra
Comment from Salazar, Lisa
Comment from Anonymous Anonymous
Comment from Wetter, Martha
Comment from Reid, Karen
Comment from Kramek, Cathy
Comment from Duryea, Oakley
Comment from Anonymous Anonymous
Comment from Koff, Marilyn
Comment from Englander, Jana
Comment from Bundrick, Susan
Comment from Bohannon, Phyllis
Comment from Landrum, Cheryl
Comment from Krzeminski, Phillip
Comment from Anonymous Anonymous
Comment from Hartmann, Christie
Comment from Phillips, Janice
Comment from Sullivan, Theresa
Comment from Clark, Sandra
Comment from Spaethe, David
Comment from Lopez, Josefina
Comment from Tao, Carol
Comment from Paruchuri, Rama K
Comment from Anonymous Anonymous
Comment from Martins-Fernandes, AnaPaula
Comment from ODonnell, J
Comment from Nazzaro, Patricia
Comment from Anonymous Anonymous
Comment from Ross, Melanie
Comment from Cook, Mary
Comment from Baer, Robert

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NOAA-NMFS-2020-0031-DRAFT-48776
NOAA-NMFS-2020-0031-DRAFT-48777
NOAA-NMFS-2020-0031-DRAFT-48778
NOAA-NMFS-2020-0031-DRAFT-48779
NOAA-NMFS-2020-0031-DRAFT-48780
NOAA-NMFS-2020-0031-DRAFT-48781
NOAA-NMFS-2020-0031-DRAFT-48782
NOAA-NMFS-2020-0031-DRAFT-48783
NOAA-NMFS-2020-0031-DRAFT-48784
NOAA-NMFS-2020-0031-DRAFT-48785
NOAA-NMFS-2020-0031-DRAFT-48786
NOAA-NMFS-2020-0031-DRAFT-48787
NOAA-NMFS-2020-0031-DRAFT-48788
NOAA-NMFS-2020-0031-DRAFT-48789
NOAA-NMFS-2020-0031-DRAFT-48790
NOAA-NMFS-2020-0031-DRAFT-48791
NOAA-NMFS-2020-0031-DRAFT-48792
NOAA-NMFS-2020-0031-DRAFT-48793
NOAA-NMFS-2020-0031-DRAFT-48794
NOAA-NMFS-2020-0031-DRAFT-48795
NOAA-NMFS-2020-0031-DRAFT-48796
NOAA-NMFS-2020-0031-DRAFT-48797
NOAA-NMFS-2020-0031-DRAFT-48798
NOAA-NMFS-2020-0031-DRAFT-48799
NOAA-NMFS-2020-0031-DRAFT-48800
NOAA-NMFS-2020-0031-DRAFT-48801
NOAA-NMFS-2020-0031-DRAFT-48802
NOAA-NMFS-2020-0031-DRAFT-48803
NOAA-NMFS-2020-0031-DRAFT-48804
NOAA-NMFS-2020-0031-DRAFT-48805
NOAA-NMFS-2020-0031-DRAFT-48806
NOAA-NMFS-2020-0031-DRAFT-48807
NOAA-NMFS-2020-0031-DRAFT-48808
NOAA-NMFS-2020-0031-DRAFT-48809
NOAA-NMFS-2020-0031-DRAFT-48810
NOAA-NMFS-2020-0031-DRAFT-48811
NOAA-NMFS-2020-0031-DRAFT-48812
NOAA-NMFS-2020-0031-DRAFT-48813
NOAA-NMFS-2020-0031-DRAFT-48814
NOAA-NMFS-2020-0031-DRAFT-48815
NOAA-NMFS-2020-0031-DRAFT-48816

Comment from Wendy Rosenfeld
Comment from Shel Neu
Comment from Margo Santoro
Comment from Michelle Schesny
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from antoinette valdez
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kelly Brannigan
Comment from Rosemary Hewett
Comment from Donald Peyton
Comment from Catherine Adams
Comment from Anita Laskaris
Comment from Anna Stein
Comment from Karen Shoop
Comment from Anonymous Anonymous
Comment from Erin Maciejewski
Comment from Patricia Burke
Comment from Anonymous Anonymous
Comment from Bianca Molgora
Comment from Christopher Berg
Comment from Kathy Silvey
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Francine Sutton
Comment from Carolyn Rader
Comment from Margie Hancock
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Pearl Foster
Comment from William Boteler
Comment from Claudine Farro
Comment from Mary Dorfman
Comment from Anonymous Anonymous
Comment from Julie Busch
Comment from Edward Lemieux
Comment from Anonymous Anonymous
Comment from christine etapa

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NOAA-NMFS-2020-0031-DRAFT-43614
NOAA-NMFS-2020-0031-DRAFT-43615
NOAA-NMFS-2020-0031-DRAFT-43616
NOAA-NMFS-2020-0031-DRAFT-43617
NOAA-NMFS-2020-0031-DRAFT-43618
NOAA-NMFS-2020-0031-DRAFT-43619
NOAA-NMFS-2020-0031-DRAFT-43620
NOAA-NMFS-2020-0031-DRAFT-43621
NOAA-NMFS-2020-0031-DRAFT-43622
NOAA-NMFS-2020-0031-DRAFT-43623
NOAA-NMFS-2020-0031-DRAFT-43624
NOAA-NMFS-2020-0031-DRAFT-43625
NOAA-NMFS-2020-0031-DRAFT-43626
NOAA-NMFS-2020-0031-DRAFT-43627
NOAA-NMFS-2020-0031-DRAFT-43628
NOAA-NMFS-2020-0031-DRAFT-43629
NOAA-NMFS-2020-0031-DRAFT-43630
NOAA-NMFS-2020-0031-DRAFT-43631
NOAA-NMFS-2020-0031-DRAFT-43632
NOAA-NMFS-2020-0031-DRAFT-43633
NOAA-NMFS-2020-0031-DRAFT-43634
NOAA-NMFS-2020-0031-DRAFT-43635
NOAA-NMFS-2020-0031-DRAFT-43636
NOAA-NMFS-2020-0031-DRAFT-43637
NOAA-NMFS-2020-0031-DRAFT-43638
NOAA-NMFS-2020-0031-DRAFT-43639
NOAA-NMFS-2020-0031-DRAFT-43640
NOAA-NMFS-2020-0031-DRAFT-43641
NOAA-NMFS-2020-0031-DRAFT-43642
NOAA-NMFS-2020-0031-DRAFT-43643
NOAA-NMFS-2020-0031-DRAFT-43644
NOAA-NMFS-2020-0031-DRAFT-43645
NOAA-NMFS-2020-0031-DRAFT-43646
NOAA-NMFS-2020-0031-DRAFT-43647
NOAA-NMFS-2020-0031-DRAFT-43648
NOAA-NMFS-2020-0031-DRAFT-43649
NOAA-NMFS-2020-0031-DRAFT-43650
NOAA-NMFS-2020-0031-DRAFT-43651
NOAA-NMFS-2020-0031-DRAFT-43652
NOAA-NMFS-2020-0031-DRAFT-43653
NOAA-NMFS-2020-0031-DRAFT-43654

Comment from Hernandez, Tanya
Comment from Hilf, Linda
Comment from Flanders, Lloyd
Comment from Lohnes, Vida
Comment from Calbreath, Linda
Comment from Peterson, Bill
Comment from Petro, Pat
Comment from Shalat, Harriet
Comment from Reese, Tabitha
Comment from Kravcov Malcolm, Karen
Comment from Thiel, Daniela
Comment from Jennings, Scott
Comment from Anonymous Anonymous
Comment from Murtaza, Muhammad
Comment from Coker, Pamela
Comment from Moceri, Eileen
Comment from Anonymous Anonymous
Comment from Pivaral, Omar
Comment from sirias, christine
Comment from Dearmendi, Janii
Comment from Anonymous Anonymous
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Comment from Hryc, Michele
Comment from Ward, Michael
Comment from Takahashi, Jim
Comment from Jessen, Bridgette
Comment from Anonymous Anonymous
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Comment from Klett, Richard
Comment from Bottorff, Virginia
Comment from Coen, Robert
Comment from Anonymous Anonymous
Comment from Middlesteadt, Laura
Comment from Garrett, Rebecca
Comment from Brubaker, Ruth
Comment from Anonymous Anonymous
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NOAA-NMFS-2020-0031-DRAFT-48817
NOAA-NMFS-2020-0031-DRAFT-48818
NOAA-NMFS-2020-0031-DRAFT-48819
NOAA-NMFS-2020-0031-DRAFT-48820
NOAA-NMFS-2020-0031-DRAFT-48821
NOAA-NMFS-2020-0031-DRAFT-48822
NOAA-NMFS-2020-0031-DRAFT-48823
NOAA-NMFS-2020-0031-DRAFT-48824
NOAA-NMFS-2020-0031-DRAFT-48825
NOAA-NMFS-2020-0031-DRAFT-48826
NOAA-NMFS-2020-0031-DRAFT-48827
NOAA-NMFS-2020-0031-DRAFT-48828
NOAA-NMFS-2020-0031-DRAFT-48829
NOAA-NMFS-2020-0031-DRAFT-48830
NOAA-NMFS-2020-0031-DRAFT-48831
NOAA-NMFS-2020-0031-DRAFT-48832
NOAA-NMFS-2020-0031-DRAFT-48833
NOAA-NMFS-2020-0031-DRAFT-48834
NOAA-NMFS-2020-0031-DRAFT-48835
NOAA-NMFS-2020-0031-DRAFT-48836
NOAA-NMFS-2020-0031-DRAFT-48837
NOAA-NMFS-2020-0031-DRAFT-48838
NOAA-NMFS-2020-0031-DRAFT-48839
NOAA-NMFS-2020-0031-DRAFT-48840
NOAA-NMFS-2020-0031-DRAFT-48841
NOAA-NMFS-2020-0031-DRAFT-48842
NOAA-NMFS-2020-0031-DRAFT-48843
NOAA-NMFS-2020-0031-DRAFT-48844
NOAA-NMFS-2020-0031-DRAFT-48845
NOAA-NMFS-2020-0031-DRAFT-48846
NOAA-NMFS-2020-0031-DRAFT-48847
NOAA-NMFS-2020-0031-DRAFT-48848
NOAA-NMFS-2020-0031-DRAFT-48849
NOAA-NMFS-2020-0031-DRAFT-48850
NOAA-NMFS-2020-0031-DRAFT-48851
NOAA-NMFS-2020-0031-DRAFT-48852
NOAA-NMFS-2020-0031-DRAFT-48853
NOAA-NMFS-2020-0031-DRAFT-48854
NOAA-NMFS-2020-0031-DRAFT-48855
NOAA-NMFS-2020-0031-DRAFT-48856
NOAA-NMFS-2020-0031-DRAFT-48857

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Julie Clayman
Comment from Kathleen Cochran
Comment from Jon Hall
Comment from Anonymous Anonymous
Comment from Timothy Swistak
Comment from Anna Victoria
Comment from Suzanne Ecklund
Comment from Karen McGreevy
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Ron Price
Comment from Anonymous Anonymous
Comment from Stephanie Jones
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Susi Higgins
Comment from Anonymous Anonymous
Comment from Diane Ensign
Comment from Anonymous Anonymous
Comment from Bob Sipe
Comment from Joyce Nicholson
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Laura Robinson
Comment from Douglas Sphar
Comment from Laura Troll
Comment from Donna Hibbard
Comment from Hartson Doak
Comment from Marilyn Heiman
Comment from David Kelley
Comment from Deaux, Robin
Comment from Shore, Nancy
Comment from Anonymous Anonymous
Comment from William Woodward
Comment from FERNANDES, isabelle
Comment from Rose Gerstner

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NOAA-NMFS-2020-0031-DRAFT-43655
NOAA-NMFS-2020-0031-DRAFT-43656
NOAA-NMFS-2020-0031-DRAFT-43657
NOAA-NMFS-2020-0031-DRAFT-43658
NOAA-NMFS-2020-0031-DRAFT-43659
NOAA-NMFS-2020-0031-DRAFT-43660
NOAA-NMFS-2020-0031-DRAFT-43661
NOAA-NMFS-2020-0031-DRAFT-43662
NOAA-NMFS-2020-0031-DRAFT-43663
NOAA-NMFS-2020-0031-DRAFT-43664
NOAA-NMFS-2020-0031-DRAFT-43665
NOAA-NMFS-2020-0031-DRAFT-43666
NOAA-NMFS-2020-0031-DRAFT-43667
NOAA-NMFS-2020-0031-DRAFT-43668
NOAA-NMFS-2020-0031-DRAFT-43669
NOAA-NMFS-2020-0031-DRAFT-43670
NOAA-NMFS-2020-0031-DRAFT-43671
NOAA-NMFS-2020-0031-DRAFT-43672
NOAA-NMFS-2020-0031-DRAFT-43673
NOAA-NMFS-2020-0031-DRAFT-43674
NOAA-NMFS-2020-0031-DRAFT-43675
NOAA-NMFS-2020-0031-DRAFT-43676
NOAA-NMFS-2020-0031-DRAFT-43677
NOAA-NMFS-2020-0031-DRAFT-43678
NOAA-NMFS-2020-0031-DRAFT-43679
NOAA-NMFS-2020-0031-DRAFT-43680
NOAA-NMFS-2020-0031-DRAFT-43681
NOAA-NMFS-2020-0031-DRAFT-43682
NOAA-NMFS-2020-0031-DRAFT-43683
NOAA-NMFS-2020-0031-DRAFT-43684
NOAA-NMFS-2020-0031-DRAFT-43685
NOAA-NMFS-2020-0031-DRAFT-43686
NOAA-NMFS-2020-0031-DRAFT-43687
NOAA-NMFS-2020-0031-DRAFT-43688
NOAA-NMFS-2020-0031-DRAFT-43689
NOAA-NMFS-2020-0031-DRAFT-43690
NOAA-NMFS-2020-0031-DRAFT-43691
NOAA-NMFS-2020-0031-DRAFT-43692
NOAA-NMFS-2020-0031-DRAFT-43693
NOAA-NMFS-2020-0031-DRAFT-43694
NOAA-NMFS-2020-0031-DRAFT-43695

Comment from Kenny, Delia
Comment from Warren, Barbara
Comment from Banner, Rebecca
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Diamond, Nichole
Comment from Psychas, Sherry
Comment from Schaffner, Joan
Comment from Warburton, Jane
Comment from Quizi, Norma
Comment from Freedman, Michael
Comment from Ross, Nikisha
Comment from Lynn, S
Comment from Berg, Pamela
Comment from Ginepro, Janet
Comment from mielke, b
Comment from mielke, jeanine
Comment from Wojtalik, Nikki
Comment from Tomori, James
Comment from Cagey, Sharon
Comment from REA, KARA
Comment from Embry, Regina
Comment from reilly, mackenzie
Comment from Gabriel, Carolyn
Comment from Garcia, Leah
Comment from Xoz, Dennis
Comment from Kofsky, Alexander
Comment from Berkowitz, Henry
Comment from Harrison, Abby
Comment from Eckman, Harry
Comment from Lary, Melanie
Comment from Doubleday, Lynn
Comment from Fitzpatrick, Cynthia
Comment from Narvaez, Laetitia
Comment from Albert, Jean-Marie
Comment from Peterson, Richard
Comment from Glenn, Laura
Comment from Frenning Kossuth, Ann
Comment from Amlie, Brandt
Comment from Fancher, Mary
Comment from Camp, Linda

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NOAA-NMFS-2020-0031-DRAFT-48858
NOAA-NMFS-2020-0031-DRAFT-48859
NOAA-NMFS-2020-0031-DRAFT-48860
NOAA-NMFS-2020-0031-DRAFT-48861
NOAA-NMFS-2020-0031-DRAFT-48862
NOAA-NMFS-2020-0031-DRAFT-48863
NOAA-NMFS-2020-0031-DRAFT-48864
NOAA-NMFS-2020-0031-DRAFT-48865
NOAA-NMFS-2020-0031-DRAFT-48866
NOAA-NMFS-2020-0031-DRAFT-48867
NOAA-NMFS-2020-0031-DRAFT-48868
NOAA-NMFS-2020-0031-DRAFT-48869
NOAA-NMFS-2020-0031-DRAFT-48870
NOAA-NMFS-2020-0031-DRAFT-48871
NOAA-NMFS-2020-0031-DRAFT-48872
NOAA-NMFS-2020-0031-DRAFT-48873
NOAA-NMFS-2020-0031-DRAFT-48874
NOAA-NMFS-2020-0031-DRAFT-48875
NOAA-NMFS-2020-0031-DRAFT-48876
NOAA-NMFS-2020-0031-DRAFT-48877
NOAA-NMFS-2020-0031-DRAFT-48878
NOAA-NMFS-2020-0031-DRAFT-48879
NOAA-NMFS-2020-0031-DRAFT-48880
NOAA-NMFS-2020-0031-DRAFT-48881
NOAA-NMFS-2020-0031-DRAFT-48882
NOAA-NMFS-2020-0031-DRAFT-48883
NOAA-NMFS-2020-0031-DRAFT-48884
NOAA-NMFS-2020-0031-DRAFT-48885
NOAA-NMFS-2020-0031-DRAFT-48886
NOAA-NMFS-2020-0031-DRAFT-48887
NOAA-NMFS-2020-0031-DRAFT-48888
NOAA-NMFS-2020-0031-DRAFT-48889
NOAA-NMFS-2020-0031-DRAFT-48890
NOAA-NMFS-2020-0031-DRAFT-48891
NOAA-NMFS-2020-0031-DRAFT-48892
NOAA-NMFS-2020-0031-DRAFT-48893
NOAA-NMFS-2020-0031-DRAFT-48894
NOAA-NMFS-2020-0031-DRAFT-48895
NOAA-NMFS-2020-0031-DRAFT-48896
NOAA-NMFS-2020-0031-DRAFT-48897
NOAA-NMFS-2020-0031-DRAFT-48898

Comment from David White
Comment from Lisa Fink
Comment from Linda Leonard
Comment from Lisa Celli
Comment from Kathy lawless
Comment from Herschel Surdam
Comment from Susan Proietta
Comment from Robert Triggs
Comment from Elizabeth Way
Comment from Alicia Liang
Comment from Kathryn Chung
Comment from Judy Schwartz
Comment from Mary Schmidt
Comment from Linda Sheehy
Comment from Jessica Weber
Comment from Angela Kelly
Comment from Christie Ruppel
Comment from Aviva Shliselberg
Comment from Medora Van Denburgh
Comment from LindaLee McEachronTaylor
Comment from Katie Hertfelder
Comment from Diana Alourdas
Comment from Robin Terry
Comment from Patricia Evans
Comment from Blythe Hutchins
Comment from Annemarie Avanti
Comment from Susan Rives-Denight
Comment from Allen Altman
Comment from Margie Hancock
Comment from Brian Truax
Comment from Marguerite Abramo
Comment from Laurel Eckert
Comment from Jane Murphy
Comment from Edgar Carpenter
Comment from Meredith Tyburczy
Comment from Lisa Caver
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Deborah Tash
Comment from Kimberly Schmidt
Comment from Chara Mandile

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NOAA-NMFS-2020-0031-DRAFT-43696
NOAA-NMFS-2020-0031-DRAFT-43697
NOAA-NMFS-2020-0031-DRAFT-43698
NOAA-NMFS-2020-0031-DRAFT-43699
NOAA-NMFS-2020-0031-DRAFT-43700
NOAA-NMFS-2020-0031-DRAFT-43701
NOAA-NMFS-2020-0031-DRAFT-43702
NOAA-NMFS-2020-0031-DRAFT-43703
NOAA-NMFS-2020-0031-DRAFT-43704
NOAA-NMFS-2020-0031-DRAFT-43705
NOAA-NMFS-2020-0031-DRAFT-43706
NOAA-NMFS-2020-0031-DRAFT-43707
NOAA-NMFS-2020-0031-DRAFT-43708
NOAA-NMFS-2020-0031-DRAFT-43709
NOAA-NMFS-2020-0031-DRAFT-43710
NOAA-NMFS-2020-0031-DRAFT-43711
NOAA-NMFS-2020-0031-DRAFT-43712
NOAA-NMFS-2020-0031-DRAFT-43713
NOAA-NMFS-2020-0031-DRAFT-43714
NOAA-NMFS-2020-0031-DRAFT-43715
NOAA-NMFS-2020-0031-DRAFT-43716
NOAA-NMFS-2020-0031-DRAFT-43717
NOAA-NMFS-2020-0031-DRAFT-43718
NOAA-NMFS-2020-0031-DRAFT-43719
NOAA-NMFS-2020-0031-DRAFT-43720
NOAA-NMFS-2020-0031-DRAFT-43721
NOAA-NMFS-2020-0031-DRAFT-43722
NOAA-NMFS-2020-0031-DRAFT-43723
NOAA-NMFS-2020-0031-DRAFT-43724
NOAA-NMFS-2020-0031-DRAFT-43725
NOAA-NMFS-2020-0031-DRAFT-43726
NOAA-NMFS-2020-0031-DRAFT-43727
NOAA-NMFS-2020-0031-DRAFT-43728
NOAA-NMFS-2020-0031-DRAFT-43729
NOAA-NMFS-2020-0031-DRAFT-43730
NOAA-NMFS-2020-0031-DRAFT-43731
NOAA-NMFS-2020-0031-DRAFT-43732
NOAA-NMFS-2020-0031-DRAFT-43733
NOAA-NMFS-2020-0031-DRAFT-43734
NOAA-NMFS-2020-0031-DRAFT-43735
NOAA-NMFS-2020-0031-DRAFT-43736

Comment from Hart, Patrick
Comment from Hourigan, Stacey
Comment from Auger, Sylvie
Comment from Branco, Andréa
Comment from woolley, m
Comment from Lindley, Gail
Comment from Hansell, Warwick
Comment from Mendoza, Nancy
Comment from Ramirez, Raymundo
Comment from Krager, Mary
Comment from Rudolph, JoEllen
Comment from Chang, Beth
Comment from Pineda, Annalee
Comment from Sieck, Pamela
Comment from Federman, Barbara
Comment from Schannach, Mary
Comment from Puerta, Jeanne
Comment from KATAYAMA, MIKI
Comment from russo, barbara
Comment from Dykstra, Sandra
Comment from Armstrong, Debra
Comment from Ashworth, Ken
Comment from Bobe, Pablo
Comment from Downing, Jennifer
Comment from Anderson, Julie
Comment from uffer, Janet
Comment from Awsiukiewicz, Eileen
Comment from schaudt, leah
Comment from Nollan, Dr. Valeria
Comment from Critzer, Judy
Comment from Jones, Kathryn
Comment from Glenn, Laura
Comment from shapiro, ellene
Comment from Lindsey, Michelle
Comment from Yeo, J
Comment from Nelson, Brett
Comment from s, c
Comment from Pasqualini, Jude
Comment from Sowder, Nancy
Comment from Benatar-Kotler, Belinda
Comment from Buehler, Lisa

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NOAA-NMFS-2020-0031-DRAFT-48899
NOAA-NMFS-2020-0031-DRAFT-48900
NOAA-NMFS-2020-0031-DRAFT-48901
NOAA-NMFS-2020-0031-DRAFT-48902
NOAA-NMFS-2020-0031-DRAFT-48903
NOAA-NMFS-2020-0031-DRAFT-48905
NOAA-NMFS-2020-0031-DRAFT-48906
NOAA-NMFS-2020-0031-DRAFT-48907
NOAA-NMFS-2020-0031-DRAFT-48908
NOAA-NMFS-2020-0031-DRAFT-48909
NOAA-NMFS-2020-0031-DRAFT-48910
NOAA-NMFS-2020-0031-DRAFT-48911
NOAA-NMFS-2020-0031-DRAFT-48912
NOAA-NMFS-2020-0031-DRAFT-48913
NOAA-NMFS-2020-0031-DRAFT-48914
NOAA-NMFS-2020-0031-DRAFT-48915
NOAA-NMFS-2020-0031-DRAFT-48916
NOAA-NMFS-2020-0031-DRAFT-48917
NOAA-NMFS-2020-0031-DRAFT-48918
NOAA-NMFS-2020-0031-DRAFT-48919
NOAA-NMFS-2020-0031-DRAFT-48920
NOAA-NMFS-2020-0031-DRAFT-48921
NOAA-NMFS-2020-0031-DRAFT-48922
NOAA-NMFS-2020-0031-DRAFT-48923
NOAA-NMFS-2020-0031-DRAFT-48924
NOAA-NMFS-2020-0031-DRAFT-48925
NOAA-NMFS-2020-0031-DRAFT-48926
NOAA-NMFS-2020-0031-DRAFT-48927
NOAA-NMFS-2020-0031-DRAFT-48928
NOAA-NMFS-2020-0031-DRAFT-48929
NOAA-NMFS-2020-0031-DRAFT-48930
NOAA-NMFS-2020-0031-DRAFT-48931
NOAA-NMFS-2020-0031-DRAFT-48932
NOAA-NMFS-2020-0031-DRAFT-48933
NOAA-NMFS-2020-0031-DRAFT-48934
NOAA-NMFS-2020-0031-DRAFT-48935
NOAA-NMFS-2020-0031-DRAFT-48936
NOAA-NMFS-2020-0031-DRAFT-48937
NOAA-NMFS-2020-0031-DRAFT-48938
NOAA-NMFS-2020-0031-DRAFT-48939
NOAA-NMFS-2020-0031-DRAFT-48940

Comment from John Millar
Comment from Judith Boyd
Comment from Nicole LaMotte
Comment from margo wyse
Comment from Judy McGann
Comment from Nick McNaughton
Comment from Patricia Dishman
Comment from Ellen Rice
Comment from Peter Tafuri
Comment from Katalin Weisz
Comment from Mark Soenksen
Comment from Marion Albu
Comment from Joan Seguin
Comment from Elizabeth Raymond
Comment from Janet Romano
Comment from Anonymous Anonymous
Comment from Jeri Romero
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Betty Sabo
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Kyenne Williams
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Deirdre Fitzsimmons
Comment from Don Pew
Comment from Carol Collins
Comment from Kim Begay
Comment from Wilson, Ivalee
Comment from Vidya Sivan
Comment from Kathleen Godiksen

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NOAA-NMFS-2020-0031-DRAFT-43737
NOAA-NMFS-2020-0031-DRAFT-43738
NOAA-NMFS-2020-0031-DRAFT-43739
NOAA-NMFS-2020-0031-DRAFT-43740
NOAA-NMFS-2020-0031-DRAFT-43741
NOAA-NMFS-2020-0031-DRAFT-43742
NOAA-NMFS-2020-0031-DRAFT-43743
NOAA-NMFS-2020-0031-DRAFT-43744
NOAA-NMFS-2020-0031-DRAFT-43745
NOAA-NMFS-2020-0031-DRAFT-43746
NOAA-NMFS-2020-0031-DRAFT-43747
NOAA-NMFS-2020-0031-DRAFT-43748
NOAA-NMFS-2020-0031-DRAFT-43749
NOAA-NMFS-2020-0031-DRAFT-43750
NOAA-NMFS-2020-0031-DRAFT-43751
NOAA-NMFS-2020-0031-DRAFT-43752
NOAA-NMFS-2020-0031-DRAFT-43753
NOAA-NMFS-2020-0031-DRAFT-43754
NOAA-NMFS-2020-0031-DRAFT-43755
NOAA-NMFS-2020-0031-DRAFT-43756
NOAA-NMFS-2020-0031-DRAFT-43757
NOAA-NMFS-2020-0031-DRAFT-43758
NOAA-NMFS-2020-0031-DRAFT-43759
NOAA-NMFS-2020-0031-DRAFT-43760
NOAA-NMFS-2020-0031-DRAFT-43761
NOAA-NMFS-2020-0031-DRAFT-43762
NOAA-NMFS-2020-0031-DRAFT-43763
NOAA-NMFS-2020-0031-DRAFT-43764
NOAA-NMFS-2020-0031-DRAFT-43765
NOAA-NMFS-2020-0031-DRAFT-43766
NOAA-NMFS-2020-0031-DRAFT-43767
NOAA-NMFS-2020-0031-DRAFT-43768
NOAA-NMFS-2020-0031-DRAFT-43769
NOAA-NMFS-2020-0031-DRAFT-43770
NOAA-NMFS-2020-0031-DRAFT-43771
NOAA-NMFS-2020-0031-DRAFT-43772
NOAA-NMFS-2020-0031-DRAFT-43773
NOAA-NMFS-2020-0031-DRAFT-43774
NOAA-NMFS-2020-0031-DRAFT-43775
NOAA-NMFS-2020-0031-DRAFT-43776
NOAA-NMFS-2020-0031-DRAFT-43777

Comment from Meinert, Margaret
Comment from Cetrulo, Cindy
Comment from Stebbins, Sara
Comment from Roth, Victoria
Comment from kijak, regina
Comment from Buckley, Danielle
Comment from Lenway, Maria
Comment from Morgan, Paula
Comment from Mestemaker-Harris, Cathie
Comment from Kovshun, Rita
Comment from McCrary, Richard
Comment from Karpel, Jan
Comment from Cormons, Matt
Comment from Peterson, Richard
Comment from Gacond, Chantal
Comment from Yungclas, Allison
Comment from sanford, karen
Comment from conselyea, jannis
Comment from Adams, Paula
Comment from Leavitt, Karen
Comment from Yater, Joan
Comment from Schneider, Danielle
Comment from Hearst, Karen
Comment from Foley, Carol
Comment from Jones, Eric
Comment from Thorn, Debbie
Comment from Yungclas, Allison
Comment from Kozakiewicz, Steve
Comment from Ren, Sylvia
Comment from Cora, Georgette
Comment from Yungclas, Allison
Comment from Halligan, Sue
Comment from Colby, Helen
Comment from Thorn, Debbie
Comment from Trimarco, V
Comment from Sargent, Michael
Comment from Drohan, Ryan
Comment from Wagner, Elissa
Comment from Morris, Greg
Comment from Anonymous Anonymous
Comment from Christy, Elizabeth

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NOAA-NMFS-2020-0031-DRAFT-48941
NOAA-NMFS-2020-0031-DRAFT-48942
NOAA-NMFS-2020-0031-DRAFT-48943
NOAA-NMFS-2020-0031-DRAFT-48944
NOAA-NMFS-2020-0031-DRAFT-48945
NOAA-NMFS-2020-0031-DRAFT-48947
NOAA-NMFS-2020-0031-DRAFT-48948
NOAA-NMFS-2020-0031-DRAFT-48949
NOAA-NMFS-2020-0031-DRAFT-48950
NOAA-NMFS-2020-0031-DRAFT-48951
NOAA-NMFS-2020-0031-DRAFT-48952
NOAA-NMFS-2020-0031-DRAFT-48953
NOAA-NMFS-2020-0031-DRAFT-48954
NOAA-NMFS-2020-0031-DRAFT-48955
NOAA-NMFS-2020-0031-DRAFT-48956
NOAA-NMFS-2020-0031-DRAFT-48957
NOAA-NMFS-2020-0031-DRAFT-48958
NOAA-NMFS-2020-0031-DRAFT-48959
NOAA-NMFS-2020-0031-DRAFT-48960
NOAA-NMFS-2020-0031-DRAFT-48961
NOAA-NMFS-2020-0031-DRAFT-48962
NOAA-NMFS-2020-0031-DRAFT-48963
NOAA-NMFS-2020-0031-DRAFT-48964
NOAA-NMFS-2020-0031-DRAFT-48965
NOAA-NMFS-2020-0031-DRAFT-48966
NOAA-NMFS-2020-0031-DRAFT-48967
NOAA-NMFS-2020-0031-DRAFT-48968
NOAA-NMFS-2020-0031-DRAFT-48969
NOAA-NMFS-2020-0031-DRAFT-48970
NOAA-NMFS-2020-0031-DRAFT-48971
NOAA-NMFS-2020-0031-DRAFT-48972
NOAA-NMFS-2020-0031-DRAFT-48973
NOAA-NMFS-2020-0031-DRAFT-48974
NOAA-NMFS-2020-0031-DRAFT-48975
NOAA-NMFS-2020-0031-DRAFT-48976
NOAA-NMFS-2020-0031-DRAFT-48977
NOAA-NMFS-2020-0031-DRAFT-48978
NOAA-NMFS-2020-0031-DRAFT-48979
NOAA-NMFS-2020-0031-DRAFT-48980
NOAA-NMFS-2020-0031-DRAFT-48981
NOAA-NMFS-2020-0031-DRAFT-48982

Comment from Jan Jorczak
Comment from Nord, Randall
Comment from Gail Koza
Comment from Peggy Loveless
Comment from Conley, Denise
Comment from David Friedman
Comment from May, Michele
Comment from Cari Brookbanks
Comment from Nancy Rockwell
Comment from Julie Miller
Comment from Elizabeth Cruickshank
Comment from Jacquie Murphy
Comment from Rhonda pulliam
Comment from So Allen
Comment from Anonymous Anonymous
Comment from Carla DeCrona
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Cindy Wright
Comment from jennifer riker
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Sara Hale
Comment from Patricia DeLuca
Comment from Scott Barlow
Comment from Suzanne Ecklund
Comment from Susan Didrichsen
Comment from Russell Collins
Comment from Nancy Martin
Comment from Vanessa Davis
Comment from gwen foehner
Comment from June Balish
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-43778
NOAA-NMFS-2020-0031-DRAFT-43779
NOAA-NMFS-2020-0031-DRAFT-43780
NOAA-NMFS-2020-0031-DRAFT-43781
NOAA-NMFS-2020-0031-DRAFT-43782
NOAA-NMFS-2020-0031-DRAFT-43783
NOAA-NMFS-2020-0031-DRAFT-43784
NOAA-NMFS-2020-0031-DRAFT-43785
NOAA-NMFS-2020-0031-DRAFT-43786
NOAA-NMFS-2020-0031-DRAFT-43787
NOAA-NMFS-2020-0031-DRAFT-43789
NOAA-NMFS-2020-0031-DRAFT-43790
NOAA-NMFS-2020-0031-DRAFT-43791
NOAA-NMFS-2020-0031-DRAFT-43792
NOAA-NMFS-2020-0031-DRAFT-43793
NOAA-NMFS-2020-0031-DRAFT-43794
NOAA-NMFS-2020-0031-DRAFT-43795
NOAA-NMFS-2020-0031-DRAFT-43796
NOAA-NMFS-2020-0031-DRAFT-43797
NOAA-NMFS-2020-0031-DRAFT-43798
NOAA-NMFS-2020-0031-DRAFT-43799
NOAA-NMFS-2020-0031-DRAFT-43800
NOAA-NMFS-2020-0031-DRAFT-43801
NOAA-NMFS-2020-0031-DRAFT-43802
NOAA-NMFS-2020-0031-DRAFT-43803
NOAA-NMFS-2020-0031-DRAFT-43804
NOAA-NMFS-2020-0031-DRAFT-43805
NOAA-NMFS-2020-0031-DRAFT-43806
NOAA-NMFS-2020-0031-DRAFT-43807
NOAA-NMFS-2020-0031-DRAFT-43808
NOAA-NMFS-2020-0031-DRAFT-43809
NOAA-NMFS-2020-0031-DRAFT-43810
NOAA-NMFS-2020-0031-DRAFT-43811
NOAA-NMFS-2020-0031-DRAFT-43812
NOAA-NMFS-2020-0031-DRAFT-43813
NOAA-NMFS-2020-0031-DRAFT-43814
NOAA-NMFS-2020-0031-DRAFT-43815
NOAA-NMFS-2020-0031-DRAFT-43816
NOAA-NMFS-2020-0031-DRAFT-43817
NOAA-NMFS-2020-0031-DRAFT-43818
NOAA-NMFS-2020-0031-DRAFT-43819

Comment from Jasper, Marilyn
Comment from Conway, Samdra
Comment from Perkins, Lynne
Comment from Anonymous Anonymous
Comment from Buckingham, Laurence
Comment from Smith, Wendy
Comment from Lepple, Christopher
Comment from Papoutsi, Eva
Comment from M., Keiko
Comment from Edwards, Jessica
Comment from Heck, Kerry
Comment from BORDA, STEPHANI
Comment from Naidu, Soumya
Comment from Dee, Laurice
Comment from Linarez, Karen
Comment from Worley, Norma J Worley
Comment from Svoboda, Cheryl
Comment from Stotz, Gail
Comment from Wade, Kimberly
Comment from Reiser, Reba
Comment from Lehr, Rachael
Comment from Landsverk, Lisa
Comment from Schoeder, Nicole
Comment from Perdios, Dan
Comment from Horne, Brandy
Comment from New, Patricia
Comment from Silver, Amanda
Comment from Worcester, Chris
Comment from Barre, Matthew
Comment from Knauber jr, Robert
Comment from Sifuentes, D.G.
Comment from miller, janet
Comment from Whitelock, James
Comment from Martin, Julie
Comment from Benson, Alice
Comment from Whipple, Lisa
Comment from Anonymous Anonymous
Comment from Lyons, Margaret
Comment from Anonymous Anonymous
Comment from Leppo, Bob
Comment from Whipple, Lisa

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NOAA-NMFS-2020-0031-DRAFT-48983
NOAA-NMFS-2020-0031-DRAFT-48984
NOAA-NMFS-2020-0031-DRAFT-48985
NOAA-NMFS-2020-0031-DRAFT-48986
NOAA-NMFS-2020-0031-DRAFT-48987
NOAA-NMFS-2020-0031-DRAFT-48988
NOAA-NMFS-2020-0031-DRAFT-48989
NOAA-NMFS-2020-0031-DRAFT-48990
NOAA-NMFS-2020-0031-DRAFT-48991
NOAA-NMFS-2020-0031-DRAFT-48992
NOAA-NMFS-2020-0031-DRAFT-48993
NOAA-NMFS-2020-0031-DRAFT-48994
NOAA-NMFS-2020-0031-DRAFT-48995
NOAA-NMFS-2020-0031-DRAFT-48996
NOAA-NMFS-2020-0031-DRAFT-48997
NOAA-NMFS-2020-0031-DRAFT-48998
NOAA-NMFS-2020-0031-DRAFT-48999
NOAA-NMFS-2020-0031-DRAFT-49000
NOAA-NMFS-2020-0031-DRAFT-49001
NOAA-NMFS-2020-0031-DRAFT-49002
NOAA-NMFS-2020-0031-DRAFT-49004
NOAA-NMFS-2020-0031-DRAFT-49005
NOAA-NMFS-2020-0031-DRAFT-49006
NOAA-NMFS-2020-0031-DRAFT-49007
NOAA-NMFS-2020-0031-DRAFT-49008
NOAA-NMFS-2020-0031-DRAFT-49009
NOAA-NMFS-2020-0031-DRAFT-49010
NOAA-NMFS-2020-0031-DRAFT-49011
NOAA-NMFS-2020-0031-DRAFT-49012
NOAA-NMFS-2020-0031-DRAFT-49013
NOAA-NMFS-2020-0031-DRAFT-49015
NOAA-NMFS-2020-0031-DRAFT-49016
NOAA-NMFS-2020-0031-DRAFT-49017
NOAA-NMFS-2020-0031-DRAFT-49018
NOAA-NMFS-2020-0031-DRAFT-49019
NOAA-NMFS-2020-0031-DRAFT-49020
NOAA-NMFS-2020-0031-DRAFT-49021
NOAA-NMFS-2020-0031-DRAFT-49022
NOAA-NMFS-2020-0031-DRAFT-49023
NOAA-NMFS-2020-0031-DRAFT-49024
NOAA-NMFS-2020-0031-DRAFT-49025

Comment from Don Lipmanson
Comment from Molly Michelson
Comment from Sara Leonard
Comment from Carol Batchelder
Comment from angela healy
Comment from Anne Hutchins
Comment from Samuel Eaton
Comment from Pamela Yates
Comment from Ruthie Bernaert
Comment from Janet McKee
Comment from Ken Anderson
Comment from Nanette Soistman
Comment from Kathleen Eaton
Comment from Gail Atkins
Comment from Susanna Askins
Comment from Liz Bode
Comment from Jonathan Kennedy
Comment from Peggy Kocoras
Comment from Temma Tainow
Comment from Michelle Sewald
Comment from GERARD VACHEZ
Comment from Bruce HIGGINS
Comment from Sylvie de Parny
Comment from Diane Lebedeff
Comment from Cathy menendian
Comment from Michele Neville
Comment from Claudia Ezinicki
Comment from DAVID HUTCHINS
Comment from p Marks
Comment from Roberta Gerber
Comment from Anonymous Anonymous
Comment from Katie breen
Comment from Jean Dibble
Comment from Marian Dubovik
Comment from Donna Butler
Comment from Heather Rafferty
Comment from Elinor Dankner
Comment from Dionne Polk
Comment from Deborah Allison
Comment from Elisabeth Armendarez
Comment from Christa Neuber

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-43820
NOAA-NMFS-2020-0031-DRAFT-43821
NOAA-NMFS-2020-0031-DRAFT-43822
NOAA-NMFS-2020-0031-DRAFT-43823
NOAA-NMFS-2020-0031-DRAFT-43824
NOAA-NMFS-2020-0031-DRAFT-43825
NOAA-NMFS-2020-0031-DRAFT-43826
NOAA-NMFS-2020-0031-DRAFT-43827
NOAA-NMFS-2020-0031-DRAFT-43828
NOAA-NMFS-2020-0031-DRAFT-43829
NOAA-NMFS-2020-0031-DRAFT-43830
NOAA-NMFS-2020-0031-DRAFT-43831
NOAA-NMFS-2020-0031-DRAFT-43832
NOAA-NMFS-2020-0031-DRAFT-43833
NOAA-NMFS-2020-0031-DRAFT-43834
NOAA-NMFS-2020-0031-DRAFT-43835
NOAA-NMFS-2020-0031-DRAFT-43836
NOAA-NMFS-2020-0031-DRAFT-43837
NOAA-NMFS-2020-0031-DRAFT-43838
NOAA-NMFS-2020-0031-DRAFT-43839
NOAA-NMFS-2020-0031-DRAFT-43840
NOAA-NMFS-2020-0031-DRAFT-43841
NOAA-NMFS-2020-0031-DRAFT-43842
NOAA-NMFS-2020-0031-DRAFT-43843
NOAA-NMFS-2020-0031-DRAFT-43844
NOAA-NMFS-2020-0031-DRAFT-43845
NOAA-NMFS-2020-0031-DRAFT-43846
NOAA-NMFS-2020-0031-DRAFT-43847
NOAA-NMFS-2020-0031-DRAFT-43848
NOAA-NMFS-2020-0031-DRAFT-43849
NOAA-NMFS-2020-0031-DRAFT-43850
NOAA-NMFS-2020-0031-DRAFT-43851
NOAA-NMFS-2020-0031-DRAFT-43852
NOAA-NMFS-2020-0031-DRAFT-43853
NOAA-NMFS-2020-0031-DRAFT-43854
NOAA-NMFS-2020-0031-DRAFT-43855
NOAA-NMFS-2020-0031-DRAFT-43856
NOAA-NMFS-2020-0031-DRAFT-43857
NOAA-NMFS-2020-0031-DRAFT-43858
NOAA-NMFS-2020-0031-DRAFT-43859
NOAA-NMFS-2020-0031-DRAFT-43860

Comment from Chin, Jason
Comment from Holcomb, William
Comment from Grigorian, Renee
Comment from Anonymous Anonymous
Comment from Nunez, Stephanie
Comment from van brown, juli
Comment from CASWELL, SUSAN
Comment from Stevens, John David
Comment from Irish, Erica
Comment from Thurlow, Jeffrey
Comment from Valero, Maudie
Comment from Carlson, Terri M
Comment from Black, Michelle
Comment from Lozon, Rob
Comment from Lease, Anthony
Comment from Marquet, Jane
Comment from Anonymous Anonymous
Comment from Hayes, Jessica
Comment from Boyes, Eva
Comment from Kulp, Jeff
Comment from Maldonado, Ellie
Comment from Anonymous Anonymous
Comment from Arvin, Golzar
Comment from Thaler, Gary
Comment from Zumbo, Emma
Comment from Sullivan, Mary
Comment from Puca, Laurie
Comment from Anonymous Anonymous
Comment from Rogers, Nancy
Comment from Abramson, Raccia
Comment from Kujala, Karen
Comment from Takush, Kathie
Comment from Berthiaume, Erica
Comment from Tuyuc, Danny
Comment from Ramirez, Ellie
Comment from Anonymous Anonymous
Comment from Wong, Taryn
Comment from Matsunaga, Carlee
Comment from Ramirez, Megan
Comment from Stroede, Alana
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-49026
NOAA-NMFS-2020-0031-DRAFT-49027
NOAA-NMFS-2020-0031-DRAFT-49028
NOAA-NMFS-2020-0031-DRAFT-49029
NOAA-NMFS-2020-0031-DRAFT-49030
NOAA-NMFS-2020-0031-DRAFT-49031
NOAA-NMFS-2020-0031-DRAFT-49032
NOAA-NMFS-2020-0031-DRAFT-49033
NOAA-NMFS-2020-0031-DRAFT-49034
NOAA-NMFS-2020-0031-DRAFT-49035
NOAA-NMFS-2020-0031-DRAFT-49037
NOAA-NMFS-2020-0031-DRAFT-49038
NOAA-NMFS-2020-0031-DRAFT-49039
NOAA-NMFS-2020-0031-DRAFT-49040
NOAA-NMFS-2020-0031-DRAFT-49041
NOAA-NMFS-2020-0031-DRAFT-49042
NOAA-NMFS-2020-0031-DRAFT-49043
NOAA-NMFS-2020-0031-DRAFT-49045
NOAA-NMFS-2020-0031-DRAFT-49046
NOAA-NMFS-2020-0031-DRAFT-49047
NOAA-NMFS-2020-0031-DRAFT-49048
NOAA-NMFS-2020-0031-DRAFT-49049
NOAA-NMFS-2020-0031-DRAFT-49050
NOAA-NMFS-2020-0031-DRAFT-49051
NOAA-NMFS-2020-0031-DRAFT-49052
NOAA-NMFS-2020-0031-DRAFT-49053
NOAA-NMFS-2020-0031-DRAFT-49054
NOAA-NMFS-2020-0031-DRAFT-49055
NOAA-NMFS-2020-0031-DRAFT-49056
NOAA-NMFS-2020-0031-DRAFT-49057
NOAA-NMFS-2020-0031-DRAFT-49058
NOAA-NMFS-2020-0031-DRAFT-49059
NOAA-NMFS-2020-0031-DRAFT-49060
NOAA-NMFS-2020-0031-DRAFT-49061
NOAA-NMFS-2020-0031-DRAFT-49062
NOAA-NMFS-2020-0031-DRAFT-49063
NOAA-NMFS-2020-0031-DRAFT-49064
NOAA-NMFS-2020-0031-DRAFT-49065
NOAA-NMFS-2020-0031-DRAFT-49066
NOAA-NMFS-2020-0031-DRAFT-49067
NOAA-NMFS-2020-0031-DRAFT-49068

Comment from Bill O'Brien
Comment from Richard Alley
Comment from Elizabeth Raymond
Comment from Anthony Maista
Comment from Carole Wilson
Comment from Helen May
Comment from J ODonnell
Comment from Carol Stevens
Comment from Krista Dana
Comment from Anonymous Anonymous
Comment from SHAUNA PERENON
Comment from Mike Peale
Comment from Jane Schnee
Comment from H S
Comment from Sherita Wilson
Comment from illisa kelman
Comment from Patricia New
Comment from Eric Voorhies
Comment from Gloria Morrison
Comment from Judy Shammas
Comment from Francisco Mercado
Comment from Rayline Dean
Comment from Macy Placide
Comment from Gail Zwerman
Comment from Susan Palma
Comment from Angela Brancati
Comment from Monique Skaggs
Comment from Anonymous Anonymous
Comment from Orysia Twerdochlib
Comment from Jeffrey Colledge
Comment from N. Dumser
Comment from Phoebe McLeod
Comment from Joe Roy
Comment from sara hopewell
Comment from Lisa Dash
Comment from Patricia Doyle
Comment from Donna Oliver
Comment from Karen Bonnell
Comment from Dudley Lindsley
Comment from Yvonne Snyder
Comment from Dawn Treanor

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NOAA-NMFS-2020-0031-DRAFT-43861
NOAA-NMFS-2020-0031-DRAFT-43862
NOAA-NMFS-2020-0031-DRAFT-43863
NOAA-NMFS-2020-0031-DRAFT-43864
NOAA-NMFS-2020-0031-DRAFT-43865
NOAA-NMFS-2020-0031-DRAFT-43866
NOAA-NMFS-2020-0031-DRAFT-43867
NOAA-NMFS-2020-0031-DRAFT-43868
NOAA-NMFS-2020-0031-DRAFT-43869
NOAA-NMFS-2020-0031-DRAFT-43870
NOAA-NMFS-2020-0031-DRAFT-43871
NOAA-NMFS-2020-0031-DRAFT-43872
NOAA-NMFS-2020-0031-DRAFT-43873
NOAA-NMFS-2020-0031-DRAFT-43874
NOAA-NMFS-2020-0031-DRAFT-43875
NOAA-NMFS-2020-0031-DRAFT-43876
NOAA-NMFS-2020-0031-DRAFT-43877
NOAA-NMFS-2020-0031-DRAFT-43878
NOAA-NMFS-2020-0031-DRAFT-43879
NOAA-NMFS-2020-0031-DRAFT-43880
NOAA-NMFS-2020-0031-DRAFT-43881
NOAA-NMFS-2020-0031-DRAFT-43882
NOAA-NMFS-2020-0031-DRAFT-43883
NOAA-NMFS-2020-0031-DRAFT-43884
NOAA-NMFS-2020-0031-DRAFT-43885
NOAA-NMFS-2020-0031-DRAFT-43886
NOAA-NMFS-2020-0031-DRAFT-43887
NOAA-NMFS-2020-0031-DRAFT-43888
NOAA-NMFS-2020-0031-DRAFT-43889
NOAA-NMFS-2020-0031-DRAFT-43890
NOAA-NMFS-2020-0031-DRAFT-43891
NOAA-NMFS-2020-0031-DRAFT-43892
NOAA-NMFS-2020-0031-DRAFT-43893
NOAA-NMFS-2020-0031-DRAFT-43894
NOAA-NMFS-2020-0031-DRAFT-43895
NOAA-NMFS-2020-0031-DRAFT-43896
NOAA-NMFS-2020-0031-DRAFT-43897
NOAA-NMFS-2020-0031-DRAFT-43898
NOAA-NMFS-2020-0031-DRAFT-43899
NOAA-NMFS-2020-0031-DRAFT-43900
NOAA-NMFS-2020-0031-DRAFT-43901

Comment from M., Keiko
Comment from Garlit, Donald
Comment from Johnson, Robert
Comment from Klein, Linda
Comment from Anonymous Anonymous
Comment from Lee, Victoria
Comment from Williams, Nalan
Comment from Igari, Ellena
Comment from Hilliard, Corey
Comment from Gross, Alex
Comment from Brown, Bonnie
Comment from Anonymous Anonymous
Comment from Aboff, Amelia
Comment from Kovarik, Christiane
Comment from Anonymous Anonymous
Comment from Wasley, Maureen
Comment from DeMetz, Lisa
Comment from Landsberg, Marisa
Comment from Landsberg, Marisa
Comment from Sturt, Pamela
Comment from Kasnicka, Cynthia
Comment from East, Terri
Comment from Marshall, Nick
Comment from Anonymous Anonymous
Comment from Brachel, Tiana
Comment from Anonymous Anonymous
Comment from Andrews, Cathy
Comment from Teevan, John
Comment from Anonymous Anonymous
Comment from Borne, Samuel
Comment from Austin, Sarah
Comment from Kistner, Ken
Comment from Anonymous Anonymous
Comment from Anglin, Eileen
Comment from Jennings, Linda
Comment from Anonymous Anonymous
Comment from Lewis, Gloria
Comment from FIRCHOW, ERIC
Comment from Anonymous Anonymous
Comment from Becker, Sheryl
Comment from Weir, Jessica

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NOAA-NMFS-2020-0031-DRAFT-49069
NOAA-NMFS-2020-0031-DRAFT-49070
NOAA-NMFS-2020-0031-DRAFT-49071
NOAA-NMFS-2020-0031-DRAFT-49072
NOAA-NMFS-2020-0031-DRAFT-49073
NOAA-NMFS-2020-0031-DRAFT-49074
NOAA-NMFS-2020-0031-DRAFT-49075
NOAA-NMFS-2020-0031-DRAFT-49076
NOAA-NMFS-2020-0031-DRAFT-49077
NOAA-NMFS-2020-0031-DRAFT-49078
NOAA-NMFS-2020-0031-DRAFT-49079
NOAA-NMFS-2020-0031-DRAFT-49080
NOAA-NMFS-2020-0031-DRAFT-49081
NOAA-NMFS-2020-0031-DRAFT-49082
NOAA-NMFS-2020-0031-DRAFT-49083
NOAA-NMFS-2020-0031-DRAFT-49084
NOAA-NMFS-2020-0031-DRAFT-49085
NOAA-NMFS-2020-0031-DRAFT-49086
NOAA-NMFS-2020-0031-DRAFT-49087
NOAA-NMFS-2020-0031-DRAFT-49088
NOAA-NMFS-2020-0031-DRAFT-49089
NOAA-NMFS-2020-0031-DRAFT-49090
NOAA-NMFS-2020-0031-DRAFT-49091
NOAA-NMFS-2020-0031-DRAFT-49092
NOAA-NMFS-2020-0031-DRAFT-49093
NOAA-NMFS-2020-0031-DRAFT-49094
NOAA-NMFS-2020-0031-DRAFT-49095
NOAA-NMFS-2020-0031-DRAFT-49096
NOAA-NMFS-2020-0031-DRAFT-49097
NOAA-NMFS-2020-0031-DRAFT-49098
NOAA-NMFS-2020-0031-DRAFT-49099
NOAA-NMFS-2020-0031-DRAFT-49100
NOAA-NMFS-2020-0031-DRAFT-49101
NOAA-NMFS-2020-0031-DRAFT-49102
NOAA-NMFS-2020-0031-DRAFT-49103
NOAA-NMFS-2020-0031-DRAFT-49104
NOAA-NMFS-2020-0031-DRAFT-49105
NOAA-NMFS-2020-0031-DRAFT-49106
NOAA-NMFS-2020-0031-DRAFT-49107
NOAA-NMFS-2020-0031-DRAFT-49108
NOAA-NMFS-2020-0031-DRAFT-49109

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Maria Cetrola
Comment from Paula Doyle
Comment from Anonymous Anonymous
Comment from Ann Kindfield
Comment from Anonymous Anonymous
Comment from Louise Kane
Comment from Mark Soenksen
Comment from LAURIE MARSHALL
Comment from Joanne Ouellette
Comment from Mary Andal
Comment from Anonymous Anonymous
Comment from Arlene Dreste
Comment from Karen Rivers
Comment from Eddie Pittmon
Comment from Carol Ward
Comment from Lynn Lang
Comment from Teri Smyth
Comment from Anonymous Anonymous
Comment from Richard Martin
Comment from Matt Borland
Comment from Steven Ramsey
Comment from Richard Burnett
Comment from Michelle Wilson
Comment from Susan Fraser
Comment from Truett Byrom
Comment from Christine Johnson
Comment from S. Jordan
Comment from Susan Borys
Comment from Robert Gibb
Comment from Pamela Miller
Comment from LESLIE LAWRENCE
Comment from Vicki Bowman
Comment from Bonnie New
Comment from Anonymous Anonymous
Comment from Maryann Barulich
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-43902
NOAA-NMFS-2020-0031-DRAFT-43903
NOAA-NMFS-2020-0031-DRAFT-43904
NOAA-NMFS-2020-0031-DRAFT-43905
NOAA-NMFS-2020-0031-DRAFT-43906
NOAA-NMFS-2020-0031-DRAFT-43907
NOAA-NMFS-2020-0031-DRAFT-43908
NOAA-NMFS-2020-0031-DRAFT-43909
NOAA-NMFS-2020-0031-DRAFT-43910
NOAA-NMFS-2020-0031-DRAFT-43911
NOAA-NMFS-2020-0031-DRAFT-43912
NOAA-NMFS-2020-0031-DRAFT-43913
NOAA-NMFS-2020-0031-DRAFT-43914
NOAA-NMFS-2020-0031-DRAFT-43915
NOAA-NMFS-2020-0031-DRAFT-43916
NOAA-NMFS-2020-0031-DRAFT-43917
NOAA-NMFS-2020-0031-DRAFT-43918
NOAA-NMFS-2020-0031-DRAFT-43919
NOAA-NMFS-2020-0031-DRAFT-43920
NOAA-NMFS-2020-0031-DRAFT-43921
NOAA-NMFS-2020-0031-DRAFT-43922
NOAA-NMFS-2020-0031-DRAFT-43923
NOAA-NMFS-2020-0031-DRAFT-43924
NOAA-NMFS-2020-0031-DRAFT-43925
NOAA-NMFS-2020-0031-DRAFT-43926
NOAA-NMFS-2020-0031-DRAFT-43927
NOAA-NMFS-2020-0031-DRAFT-43928
NOAA-NMFS-2020-0031-DRAFT-43929
NOAA-NMFS-2020-0031-DRAFT-43930
NOAA-NMFS-2020-0031-DRAFT-43931
NOAA-NMFS-2020-0031-DRAFT-43932
NOAA-NMFS-2020-0031-DRAFT-43933
NOAA-NMFS-2020-0031-DRAFT-43934
NOAA-NMFS-2020-0031-DRAFT-43935
NOAA-NMFS-2020-0031-DRAFT-43936
NOAA-NMFS-2020-0031-DRAFT-43937
NOAA-NMFS-2020-0031-DRAFT-43938
NOAA-NMFS-2020-0031-DRAFT-43939
NOAA-NMFS-2020-0031-DRAFT-43940
NOAA-NMFS-2020-0031-DRAFT-43941
NOAA-NMFS-2020-0031-DRAFT-43942

Comment from Ewh, Sophie
Comment from Denholtz, Alexandra
Comment from Boura, Theodora
Comment from Pryka, Isaac
Comment from Luther, K
Comment from Riddell, Andrew
Comment from Taleck, Grant
Comment from Petro, Pat
Comment from Luchau, Nicole
Comment from Anonymous Anonymous
Comment from Dennis, MarianKitty
Comment from Parker, Katie
Comment from okolowicz, sofia
Comment from Anonymous Anonymous
Comment from Petersen, Gerri
Comment from Abell, Dennis
Comment from Fife, Amy
Comment from Anonymous Anonymous
Comment from Fife, Amy
Comment from Leitner, Shannon
Comment from Cho, Tony
Comment from Anonymous Anonymous
Comment from Wang, Ashley
Comment from Atkins, Taren
Comment from Magne, Kathy
Comment from Barcellona, Nancy
Comment from Koch, Victoria
Comment from Chevalier, Haakon
Comment from Cyma, Deb
Comment from Tizedes, Hannah
Comment from Gurney, Hugh
Comment from Galera Jiménez, Gema
Lorena
Comment from Kat, Thomas
Comment from Stanaitis, Penny
Comment from Siri, Cydney
Comment from Johnstone, Jacqui
Comment from Bourquin, Mélanie
Comment from Fusco, Vin
Comment from Reekers, Christina
Comment from Wilson, Holly
Comment from Mills, Marlene

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NOAA-NMFS-2020-0031-DRAFT-49110
NOAA-NMFS-2020-0031-DRAFT-49111
NOAA-NMFS-2020-0031-DRAFT-49112
NOAA-NMFS-2020-0031-DRAFT-49113
NOAA-NMFS-2020-0031-DRAFT-49114
NOAA-NMFS-2020-0031-DRAFT-49115
NOAA-NMFS-2020-0031-DRAFT-49116
NOAA-NMFS-2020-0031-DRAFT-49117
NOAA-NMFS-2020-0031-DRAFT-49118
NOAA-NMFS-2020-0031-DRAFT-49119
NOAA-NMFS-2020-0031-DRAFT-49120
NOAA-NMFS-2020-0031-DRAFT-49121
NOAA-NMFS-2020-0031-DRAFT-49122
NOAA-NMFS-2020-0031-DRAFT-49123
NOAA-NMFS-2020-0031-DRAFT-49124
NOAA-NMFS-2020-0031-DRAFT-49125
NOAA-NMFS-2020-0031-DRAFT-49126
NOAA-NMFS-2020-0031-DRAFT-49127
NOAA-NMFS-2020-0031-DRAFT-49128
NOAA-NMFS-2020-0031-DRAFT-49129
NOAA-NMFS-2020-0031-DRAFT-49130
NOAA-NMFS-2020-0031-DRAFT-49131
NOAA-NMFS-2020-0031-DRAFT-49132
NOAA-NMFS-2020-0031-DRAFT-49133
NOAA-NMFS-2020-0031-DRAFT-49134
NOAA-NMFS-2020-0031-DRAFT-49135
NOAA-NMFS-2020-0031-DRAFT-49136
NOAA-NMFS-2020-0031-DRAFT-49138
NOAA-NMFS-2020-0031-DRAFT-49139
NOAA-NMFS-2020-0031-DRAFT-49140
NOAA-NMFS-2020-0031-DRAFT-49141
NOAA-NMFS-2020-0031-DRAFT-49142
NOAA-NMFS-2020-0031-DRAFT-49143
NOAA-NMFS-2020-0031-DRAFT-49144
NOAA-NMFS-2020-0031-DRAFT-49145
NOAA-NMFS-2020-0031-DRAFT-49146
NOAA-NMFS-2020-0031-DRAFT-49147
NOAA-NMFS-2020-0031-DRAFT-49148
NOAA-NMFS-2020-0031-DRAFT-49149
NOAA-NMFS-2020-0031-DRAFT-49150
NOAA-NMFS-2020-0031-DRAFT-49151

Comment from Janie Chodosh
Comment from Anonymous Anonymous
Comment from Nancy Lewis
Comment from Heather Denney
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Renee Lacy
Comment from Anonymous Anonymous
Comment from Kyle Crider
Comment from Anonymous Anonymous
Comment from Dorothea Swint
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mary Boudreau
Comment from Anonymous Anonymous
Comment from Eric Voorhies
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from John Felton
Comment from Lee Bunyard
Comment from tara wheeler
Comment from Lisha Doucet
Comment from Meaghan Leavitt
Comment from Laree Farmer
Comment from Eric McLaughlin
Comment from Cindy Childers
Comment from Cherie Warner
Comment from Shari Kelts
Comment from Sean O'Dell
Comment from Joe Balsamo
Comment from Fran Seldin
Comment from Shirley Collins
Comment from Christine Gillis
Comment from Paige Harrison
Comment from Maureen Swiss
Comment from Anonymous Anonymous
Comment from Nora de Gillespie
Comment from Gail Musante

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NOAA-NMFS-2020-0031-DRAFT-43943
NOAA-NMFS-2020-0031-DRAFT-43944
NOAA-NMFS-2020-0031-DRAFT-43945
NOAA-NMFS-2020-0031-DRAFT-43946
NOAA-NMFS-2020-0031-DRAFT-43947
NOAA-NMFS-2020-0031-DRAFT-43948
NOAA-NMFS-2020-0031-DRAFT-43949
NOAA-NMFS-2020-0031-DRAFT-43950
NOAA-NMFS-2020-0031-DRAFT-43951
NOAA-NMFS-2020-0031-DRAFT-43952
NOAA-NMFS-2020-0031-DRAFT-43953
NOAA-NMFS-2020-0031-DRAFT-43954
NOAA-NMFS-2020-0031-DRAFT-43955
NOAA-NMFS-2020-0031-DRAFT-43956
NOAA-NMFS-2020-0031-DRAFT-43957
NOAA-NMFS-2020-0031-DRAFT-43958
NOAA-NMFS-2020-0031-DRAFT-43959
NOAA-NMFS-2020-0031-DRAFT-43960
NOAA-NMFS-2020-0031-DRAFT-43961
NOAA-NMFS-2020-0031-DRAFT-43962
NOAA-NMFS-2020-0031-DRAFT-43963
NOAA-NMFS-2020-0031-DRAFT-43964
NOAA-NMFS-2020-0031-DRAFT-43965
NOAA-NMFS-2020-0031-DRAFT-43966
NOAA-NMFS-2020-0031-DRAFT-43967
NOAA-NMFS-2020-0031-DRAFT-43968
NOAA-NMFS-2020-0031-DRAFT-43969
NOAA-NMFS-2020-0031-DRAFT-43970
NOAA-NMFS-2020-0031-DRAFT-43971
NOAA-NMFS-2020-0031-DRAFT-43972
NOAA-NMFS-2020-0031-DRAFT-43973
NOAA-NMFS-2020-0031-DRAFT-43974
NOAA-NMFS-2020-0031-DRAFT-43975
NOAA-NMFS-2020-0031-DRAFT-43976
NOAA-NMFS-2020-0031-DRAFT-43977
NOAA-NMFS-2020-0031-DRAFT-43978
NOAA-NMFS-2020-0031-DRAFT-43979
NOAA-NMFS-2020-0031-DRAFT-43980
NOAA-NMFS-2020-0031-DRAFT-43981
NOAA-NMFS-2020-0031-DRAFT-43982
NOAA-NMFS-2020-0031-DRAFT-43983

Comment from Ross, Michael
Comment from Vazquez, Stephany
Comment from Jenks, Ramona
Comment from Musialowski, Monique
Comment from Anonymous Anonymous
Comment from Carson, Jennifer
Comment from Salazar, Lisa
Comment from Awsiukiewicz, Eileen
Comment from Taylor, Graceanne
Comment from Petro, Pat
Comment from Heere, Daria
Comment from weiss, sabina
Comment from Garlit, Donald
Comment from Tracey, Colleen
Comment from Stanley, Alison
Comment from Posnett, Stacey
Comment from McKeen, Elizabeth
Comment from Molina, Leonor
Comment from Stan, Nicolette
Comment from Waine, Linda
Comment from Parks, Kendall
Comment from Kujala, Karen
Comment from Beauchamp, Catherine
Comment from Anonymous Anonymous
Comment from Richardson, Joan
Comment from Yeh, Youching
Comment from Barger, John
Comment from Swanson, Robin Rae
Comment from Fischer, Shannon
Comment from Chiarello, Melissa
Comment from Carlisle, Damien
Comment from Stavis, Alex
Comment from Garman, Tammy
Comment from Lavery, Linda
Comment from Robinson, Amanda
Comment from Anonymous Anonymous
Comment from Papoutsi, Eva
Comment from Cunningham, Storm
Comment from Anonymous Anonymous
Comment from Marx, Jennifer
Comment from cortese, Christopher

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NOAA-NMFS-2020-0031-DRAFT-49152
NOAA-NMFS-2020-0031-DRAFT-49153
NOAA-NMFS-2020-0031-DRAFT-49154
NOAA-NMFS-2020-0031-DRAFT-49156
NOAA-NMFS-2020-0031-DRAFT-49157
NOAA-NMFS-2020-0031-DRAFT-49158
NOAA-NMFS-2020-0031-DRAFT-49159
NOAA-NMFS-2020-0031-DRAFT-49160
NOAA-NMFS-2020-0031-DRAFT-49161
NOAA-NMFS-2020-0031-DRAFT-49162
NOAA-NMFS-2020-0031-DRAFT-49163
NOAA-NMFS-2020-0031-DRAFT-49164
NOAA-NMFS-2020-0031-DRAFT-49165
NOAA-NMFS-2020-0031-DRAFT-49166
NOAA-NMFS-2020-0031-DRAFT-49167
NOAA-NMFS-2020-0031-DRAFT-49168
NOAA-NMFS-2020-0031-DRAFT-49169
NOAA-NMFS-2020-0031-DRAFT-49170
NOAA-NMFS-2020-0031-DRAFT-49171
NOAA-NMFS-2020-0031-DRAFT-49172
NOAA-NMFS-2020-0031-DRAFT-49173
NOAA-NMFS-2020-0031-DRAFT-49174
NOAA-NMFS-2020-0031-DRAFT-49175
NOAA-NMFS-2020-0031-DRAFT-49176
NOAA-NMFS-2020-0031-DRAFT-49177
NOAA-NMFS-2020-0031-DRAFT-49178
NOAA-NMFS-2020-0031-DRAFT-49179
NOAA-NMFS-2020-0031-DRAFT-49180
NOAA-NMFS-2020-0031-DRAFT-49181
NOAA-NMFS-2020-0031-DRAFT-49183
NOAA-NMFS-2020-0031-DRAFT-49184
NOAA-NMFS-2020-0031-DRAFT-49185
NOAA-NMFS-2020-0031-DRAFT-49186
NOAA-NMFS-2020-0031-DRAFT-49187
NOAA-NMFS-2020-0031-DRAFT-49188
NOAA-NMFS-2020-0031-DRAFT-49189
NOAA-NMFS-2020-0031-DRAFT-49190
NOAA-NMFS-2020-0031-DRAFT-49191
NOAA-NMFS-2020-0031-DRAFT-49192
NOAA-NMFS-2020-0031-DRAFT-49193
NOAA-NMFS-2020-0031-DRAFT-49194

Comment from Bob Davis
Comment from Kate Ashley
Comment from Janet Zeh
Comment from Kevin Brown
Comment from Marc Fleisher
Comment from Arthur Schurr
Comment from Diane Fahey
Comment from George Bond
Comment from Karen Starr
Comment from Jane Branyan
Comment from Candace Rocha
Comment from Ronald Schlesinger
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Randi Byron
Comment from William Boteler
Comment from Lisa Zver
Comment from Anonymous Anonymous
Comment from wendy ordway
Comment from Terry Tedesco
Comment from KM Eichhof
Comment from Grace Malara-Aiello
Comment from Jane Branyan
Comment from Katherine Patterson
Comment from David Gallardo
Comment from Sheila Silan
Comment from Mike Solloa
Comment from Daniel Kurz
Comment from Louise Frontiero
Comment from David Rosenfeld
Comment from Doreen Mann
Comment from Jeanne Baker
Comment from jane drexler
Comment from Rebecca Hansen
Comment from Thomas Hart
Comment from ANDREW HOFFMAN
Comment from Taylor Thomas
Comment from Marcella Crane
Comment from Laura Alleman
Comment from Thomas Sanders

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NOAA-NMFS-2020-0031-DRAFT-43984
NOAA-NMFS-2020-0031-DRAFT-43985
NOAA-NMFS-2020-0031-DRAFT-43986
NOAA-NMFS-2020-0031-DRAFT-43987
NOAA-NMFS-2020-0031-DRAFT-43988
NOAA-NMFS-2020-0031-DRAFT-43989
NOAA-NMFS-2020-0031-DRAFT-43990
NOAA-NMFS-2020-0031-DRAFT-43991
NOAA-NMFS-2020-0031-DRAFT-43992
NOAA-NMFS-2020-0031-DRAFT-43993
NOAA-NMFS-2020-0031-DRAFT-43994
NOAA-NMFS-2020-0031-DRAFT-43995
NOAA-NMFS-2020-0031-DRAFT-43996
NOAA-NMFS-2020-0031-DRAFT-43997
NOAA-NMFS-2020-0031-DRAFT-43998
NOAA-NMFS-2020-0031-DRAFT-43999
NOAA-NMFS-2020-0031-DRAFT-44000
NOAA-NMFS-2020-0031-DRAFT-44001
NOAA-NMFS-2020-0031-DRAFT-44002
NOAA-NMFS-2020-0031-DRAFT-44003
NOAA-NMFS-2020-0031-DRAFT-44004
NOAA-NMFS-2020-0031-DRAFT-44005
NOAA-NMFS-2020-0031-DRAFT-44006
NOAA-NMFS-2020-0031-DRAFT-44007
NOAA-NMFS-2020-0031-DRAFT-44008
NOAA-NMFS-2020-0031-DRAFT-44009
NOAA-NMFS-2020-0031-DRAFT-44010
NOAA-NMFS-2020-0031-DRAFT-44011
NOAA-NMFS-2020-0031-DRAFT-44012
NOAA-NMFS-2020-0031-DRAFT-44013
NOAA-NMFS-2020-0031-DRAFT-44014
NOAA-NMFS-2020-0031-DRAFT-44015
NOAA-NMFS-2020-0031-DRAFT-44016
NOAA-NMFS-2020-0031-DRAFT-44017
NOAA-NMFS-2020-0031-DRAFT-44018
NOAA-NMFS-2020-0031-DRAFT-44019
NOAA-NMFS-2020-0031-DRAFT-44020
NOAA-NMFS-2020-0031-DRAFT-44021
NOAA-NMFS-2020-0031-DRAFT-44022
NOAA-NMFS-2020-0031-DRAFT-44023
NOAA-NMFS-2020-0031-DRAFT-44024

Comment from Passty, J.
Comment from CARY, SONYA
Comment from Evans, Katherine
Comment from Wright, Penelope
Comment from Ricciardi, Lori
Comment from Rayfield, Kristin
Comment from Musialowski, Monique
Comment from Anonymous Anonymous
Comment from Grill, Warren
Comment from Kube, Janine
Comment from Wakefield, Raphael
Comment from Cleveland, Jill
Comment from Stark, Robert
Comment from Levitt, Lacey
Comment from Creech, Carol
Comment from Anonymous Anonymous
Comment from Barberi, Thomas
Comment from Halloran, Michael
Comment from Anonymous Anonymous
Comment from Brown, Johanna
Comment from Anonymous Anonymous
Comment from Amon, Meredith
Comment from Anonymous Anonymous
Comment from schatvet, steve
Comment from Clough, Francine
Comment from White, Scott
Comment from Gonzales Jr., Frank
Comment from Roberts, Amy
Comment from Adkins, Karen
Comment from Richmond, Terri
Comment from Jones, Stephanie
Comment from Anonymous Anonymous
Comment from Rolbeck, Mike
Comment from Pokropek, Catherine
Comment from Feichter, Steffanie
Comment from Martin, Ben
Comment from Streich, Kim
Comment from Dankner, Elinor
Comment from Anonymous Anonymous
Comment from Banks, Rochelle
Comment from B, Maressa

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NOAA-NMFS-2020-0031-DRAFT-49195
NOAA-NMFS-2020-0031-DRAFT-49196
NOAA-NMFS-2020-0031-DRAFT-49197
NOAA-NMFS-2020-0031-DRAFT-49198
NOAA-NMFS-2020-0031-DRAFT-49199
NOAA-NMFS-2020-0031-DRAFT-49200
NOAA-NMFS-2020-0031-DRAFT-49201
NOAA-NMFS-2020-0031-DRAFT-49202
NOAA-NMFS-2020-0031-DRAFT-49203
NOAA-NMFS-2020-0031-DRAFT-49204
NOAA-NMFS-2020-0031-DRAFT-49205
NOAA-NMFS-2020-0031-DRAFT-49206
NOAA-NMFS-2020-0031-DRAFT-49207
NOAA-NMFS-2020-0031-DRAFT-49208
NOAA-NMFS-2020-0031-DRAFT-49209
NOAA-NMFS-2020-0031-DRAFT-49210
NOAA-NMFS-2020-0031-DRAFT-49211
NOAA-NMFS-2020-0031-DRAFT-49212
NOAA-NMFS-2020-0031-DRAFT-49213
NOAA-NMFS-2020-0031-DRAFT-49214
NOAA-NMFS-2020-0031-DRAFT-49215
NOAA-NMFS-2020-0031-DRAFT-49216
NOAA-NMFS-2020-0031-DRAFT-49217
NOAA-NMFS-2020-0031-DRAFT-49218
NOAA-NMFS-2020-0031-DRAFT-49219
NOAA-NMFS-2020-0031-DRAFT-49220
NOAA-NMFS-2020-0031-DRAFT-49221
NOAA-NMFS-2020-0031-DRAFT-49222
NOAA-NMFS-2020-0031-DRAFT-49223
NOAA-NMFS-2020-0031-DRAFT-49224
NOAA-NMFS-2020-0031-DRAFT-49225
NOAA-NMFS-2020-0031-DRAFT-49226
NOAA-NMFS-2020-0031-DRAFT-49227
NOAA-NMFS-2020-0031-DRAFT-49228
NOAA-NMFS-2020-0031-DRAFT-49229
NOAA-NMFS-2020-0031-DRAFT-49230
NOAA-NMFS-2020-0031-DRAFT-49231
NOAA-NMFS-2020-0031-DRAFT-49232
NOAA-NMFS-2020-0031-DRAFT-49233
NOAA-NMFS-2020-0031-DRAFT-49234
NOAA-NMFS-2020-0031-DRAFT-49235

Comment from Arlene Zuckerman
Comment from Ken Ross
Comment from Miriam Warwick
Comment from Judith Embry
Comment from Mary Rose
Comment from Greta Schiller
Comment from Anonymous Anonymous
Comment from Lll d
Comment from Liz Redwing
Comment from Doreen Mann
Comment from Michelle Malaspino
Comment from Melissa Biel
Comment from Sue VanDerzee
Comment from Joseph Lavine
Comment from Donald Herring
Comment from Palmeta Baier
Comment from Anonymous Anonymous
Comment from Lynn Raiser
Comment from Iris Taylor
Comment from Douglas Roberson
Comment from Doreen Mann
Comment from TRACY JONES
Comment from Claire Werner
Comment from Kathetine Napolitani
Comment from Linda Nicholas
Comment from Anonymous Anonymous
Comment from Michael Zeanah
Comment from Morel, Joséphine
Comment from Mang, J.D.
Comment from Andrew Lenz
Comment from Moore, Ava
Comment from Marlene Miller
Comment from gail ohara
Comment from Shirley Midyette
Comment from Julie Elson
Comment from Herschel Flowers
Comment from Patricia Ferguson
Comment from Penelope Ward
Comment from diana kolaski
Comment from Dan Perdios
Comment from Melva Meyer

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NOAA-NMFS-2020-0031-DRAFT-44025
NOAA-NMFS-2020-0031-DRAFT-44026
NOAA-NMFS-2020-0031-DRAFT-44027
NOAA-NMFS-2020-0031-DRAFT-44028
NOAA-NMFS-2020-0031-DRAFT-44029
NOAA-NMFS-2020-0031-DRAFT-44030
NOAA-NMFS-2020-0031-DRAFT-44031
NOAA-NMFS-2020-0031-DRAFT-44032
NOAA-NMFS-2020-0031-DRAFT-44033
NOAA-NMFS-2020-0031-DRAFT-44034
NOAA-NMFS-2020-0031-DRAFT-44035
NOAA-NMFS-2020-0031-DRAFT-44036
NOAA-NMFS-2020-0031-DRAFT-44037
NOAA-NMFS-2020-0031-DRAFT-44038
NOAA-NMFS-2020-0031-DRAFT-44039
NOAA-NMFS-2020-0031-DRAFT-44040
NOAA-NMFS-2020-0031-DRAFT-44041
NOAA-NMFS-2020-0031-DRAFT-44042
NOAA-NMFS-2020-0031-DRAFT-44043
NOAA-NMFS-2020-0031-DRAFT-44044
NOAA-NMFS-2020-0031-DRAFT-44045
NOAA-NMFS-2020-0031-DRAFT-44046
NOAA-NMFS-2020-0031-DRAFT-44047
NOAA-NMFS-2020-0031-DRAFT-44048
NOAA-NMFS-2020-0031-DRAFT-44049
NOAA-NMFS-2020-0031-DRAFT-44050
NOAA-NMFS-2020-0031-DRAFT-44051
NOAA-NMFS-2020-0031-DRAFT-44052
NOAA-NMFS-2020-0031-DRAFT-44053
NOAA-NMFS-2020-0031-DRAFT-44054
NOAA-NMFS-2020-0031-DRAFT-44055
NOAA-NMFS-2020-0031-DRAFT-44056
NOAA-NMFS-2020-0031-DRAFT-44057
NOAA-NMFS-2020-0031-DRAFT-44058
NOAA-NMFS-2020-0031-DRAFT-44059
NOAA-NMFS-2020-0031-DRAFT-44060
NOAA-NMFS-2020-0031-DRAFT-44061
NOAA-NMFS-2020-0031-DRAFT-44062
NOAA-NMFS-2020-0031-DRAFT-44063
NOAA-NMFS-2020-0031-DRAFT-44064
NOAA-NMFS-2020-0031-DRAFT-44065

Comment from Katz, Ruth
Comment from Callahan, Amalie
Comment from Okone, Brandon
Comment from cioci, jan
Comment from Sardineer, AnnMarie
Comment from Mancuso, Bernee
Comment from Anonymous Anonymous
Comment from White, Laura
Comment from Bearman, Shannon
Comment from Nattrass, Suzanne
Comment from Franceschini, Mary
Comment from Garceau, Marcia
Comment from Burr-Lonnon, Jacqueline
Comment from Anonymous Anonymous
Comment from FIGUEROA, dANIEL
Comment from Yellis, Stefanie
Comment from Anonymous Anonymous
Comment from Covelli, Barbara
Comment from Dunford, Diane
Comment from Fay, P N
Comment from Cornett, Gary
Comment from Anonymous Anonymous
Comment from Moog, Lori
Comment from Schuman, Laura
Comment from GROSE, HARRIET
Comment from Wang, Kathy
Comment from Betti, Mark
Comment from Perfrement, Eileen
Comment from von Bronk, Eva-Maria
Comment from Kawecki, Robin
Comment from Boswell, Thomas
Comment from phelps, janice
Comment from Purvis, Barbara
Comment from Anonymous Anonymous
Comment from Degenhart, DM
Comment from jacques, sally
Comment from Kovarik, Donna
Comment from Anonymous Anonymous
Comment from delPino, Rosemary
Comment from Pointer, Nancy
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-49236
NOAA-NMFS-2020-0031-DRAFT-49237
NOAA-NMFS-2020-0031-DRAFT-49238
NOAA-NMFS-2020-0031-DRAFT-49239
NOAA-NMFS-2020-0031-DRAFT-49240
NOAA-NMFS-2020-0031-DRAFT-49241
NOAA-NMFS-2020-0031-DRAFT-49242
NOAA-NMFS-2020-0031-DRAFT-49243
NOAA-NMFS-2020-0031-DRAFT-49244
NOAA-NMFS-2020-0031-DRAFT-49245
NOAA-NMFS-2020-0031-DRAFT-49246
NOAA-NMFS-2020-0031-DRAFT-49247
NOAA-NMFS-2020-0031-DRAFT-49248
NOAA-NMFS-2020-0031-DRAFT-49249
NOAA-NMFS-2020-0031-DRAFT-49250
NOAA-NMFS-2020-0031-DRAFT-49251
NOAA-NMFS-2020-0031-DRAFT-49252
NOAA-NMFS-2020-0031-DRAFT-49253
NOAA-NMFS-2020-0031-DRAFT-49254
NOAA-NMFS-2020-0031-DRAFT-49255
NOAA-NMFS-2020-0031-DRAFT-49256
NOAA-NMFS-2020-0031-DRAFT-49257
NOAA-NMFS-2020-0031-DRAFT-49258
NOAA-NMFS-2020-0031-DRAFT-49259
NOAA-NMFS-2020-0031-DRAFT-49260
NOAA-NMFS-2020-0031-DRAFT-49261
NOAA-NMFS-2020-0031-DRAFT-49262
NOAA-NMFS-2020-0031-DRAFT-49263
NOAA-NMFS-2020-0031-DRAFT-49264
NOAA-NMFS-2020-0031-DRAFT-49265
NOAA-NMFS-2020-0031-DRAFT-49266
NOAA-NMFS-2020-0031-DRAFT-49267
NOAA-NMFS-2020-0031-DRAFT-49269
NOAA-NMFS-2020-0031-DRAFT-49270
NOAA-NMFS-2020-0031-DRAFT-49271
NOAA-NMFS-2020-0031-DRAFT-49272
NOAA-NMFS-2020-0031-DRAFT-49273
NOAA-NMFS-2020-0031-DRAFT-49274
NOAA-NMFS-2020-0031-DRAFT-49275
NOAA-NMFS-2020-0031-DRAFT-49276
NOAA-NMFS-2020-0031-DRAFT-49277

Comment from Kimberly Vaz
Comment from Al Giles
Comment from Gregory Esteve
Comment from Ken Brown
Comment from dana Bleckinger
Comment from Cindy Takaht
Comment from Melissa Prescott
Comment from Albert Snow
Comment from Linda Bruce
Comment from Wendy Brown
Comment from Anonymous Anonymous
Comment from Pamela Finnegan
Comment from Irene de Forges
Comment from Robin Lorentzen
Comment from Cheryl Wooten
Comment from Jamila Garrecht
Comment from Kalika Stern
Comment from Jane Abbey
Comment from DANIEL FAISAL
Comment from Dana Luebke
Comment from Ellis Woodward
Comment from Gene Fox
Comment from vicki hughes
Comment from Catherine Vedder
Comment from Nicole LaMotte
Comment from Kathryn Murphy
Comment from Andrew Gallagher
Comment from Stephanie Domian
Comment from Albert Meadowcroft
Comment from Amy McPherson-Wiman
Comment from Claire Prevos
Comment from Faith Delaney
Comment from Joseph Corbett
Comment from Marion Copeland
Comment from Jamie Thomas
Comment from Antoinette Daab
Comment from Joyce Olsen
Comment from Rachel Roman
Comment from Jeremy Benjamin
Comment from BARBARA MCKEE
Comment from Sherry Dunn

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NOAA-NMFS-2020-0031-DRAFT-44066
NOAA-NMFS-2020-0031-DRAFT-44067
NOAA-NMFS-2020-0031-DRAFT-44068
NOAA-NMFS-2020-0031-DRAFT-44069
NOAA-NMFS-2020-0031-DRAFT-44070
NOAA-NMFS-2020-0031-DRAFT-44071
NOAA-NMFS-2020-0031-DRAFT-44072
NOAA-NMFS-2020-0031-DRAFT-44073
NOAA-NMFS-2020-0031-DRAFT-44074
NOAA-NMFS-2020-0031-DRAFT-44075
NOAA-NMFS-2020-0031-DRAFT-44076
NOAA-NMFS-2020-0031-DRAFT-44077
NOAA-NMFS-2020-0031-DRAFT-44078
NOAA-NMFS-2020-0031-DRAFT-44079
NOAA-NMFS-2020-0031-DRAFT-44080
NOAA-NMFS-2020-0031-DRAFT-44081
NOAA-NMFS-2020-0031-DRAFT-44082
NOAA-NMFS-2020-0031-DRAFT-44083
NOAA-NMFS-2020-0031-DRAFT-44084
NOAA-NMFS-2020-0031-DRAFT-44085
NOAA-NMFS-2020-0031-DRAFT-44087
NOAA-NMFS-2020-0031-DRAFT-44088
NOAA-NMFS-2020-0031-DRAFT-44089
NOAA-NMFS-2020-0031-DRAFT-44090
NOAA-NMFS-2020-0031-DRAFT-44091
NOAA-NMFS-2020-0031-DRAFT-44092
NOAA-NMFS-2020-0031-DRAFT-44093
NOAA-NMFS-2020-0031-DRAFT-44094
NOAA-NMFS-2020-0031-DRAFT-44095
NOAA-NMFS-2020-0031-DRAFT-44096
NOAA-NMFS-2020-0031-DRAFT-44097
NOAA-NMFS-2020-0031-DRAFT-44098
NOAA-NMFS-2020-0031-DRAFT-44099
NOAA-NMFS-2020-0031-DRAFT-44100
NOAA-NMFS-2020-0031-DRAFT-44101
NOAA-NMFS-2020-0031-DRAFT-44102
NOAA-NMFS-2020-0031-DRAFT-44103
NOAA-NMFS-2020-0031-DRAFT-44104
NOAA-NMFS-2020-0031-DRAFT-44105
NOAA-NMFS-2020-0031-DRAFT-44106
NOAA-NMFS-2020-0031-DRAFT-44107

Comment from viers, joan
Comment from Stempin, Myles Michael
Comment from Hall, Victoria
Comment from Seabert, Cindy
Comment from Trattner, Adrienne
Comment from Zrobek, Ann
Comment from Goodrich, D'Arcy
Comment from Hodsoll, Mimi
Comment from Anonymous Anonymous
Comment from Primrose, Joy
Comment from Kowalczyk, Katherine
Comment from Brockdorf, Yulia
Comment from Mallin, Eric
Comment from Carter, Janet
Comment from Newton, Laura
Comment from Anonymous Anonymous
Comment from Friedman, Judy
Comment from Noroian, Cheryl
Comment from Anonymous Anonymous
Comment from Hodsoll, Mimi
Comment from Dumler, Robin
Comment from Robson, Ella
Comment from Hodsoll, Mimi
Comment from QUINNAN, CONNIE
Comment from S, Cassy
Comment from MacKelvie, Elizabeth
Comment from Fuqua, Chad
Comment from R. Sandy, Leo
Comment from Chuter, Kathleen
Comment from Shabbott, Mary
Comment from stidham, teri
Comment from Klahn, Kat
Comment from Arguello-Incer, Pablo
Comment from Anonymous Anonymous
Comment from hart, kathy
Comment from EBERT, REGAN
Comment from Podlesak, Patricia
Comment from Hou, Sandra
Comment from Simpson, Jill
Comment from McKee, Wendy
Comment from Kuschel, Sandra

03/01/2021
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NOAA-NMFS-2020-0031-DRAFT-49278
NOAA-NMFS-2020-0031-DRAFT-49279
NOAA-NMFS-2020-0031-DRAFT-49280
NOAA-NMFS-2020-0031-DRAFT-49281
NOAA-NMFS-2020-0031-DRAFT-49282
NOAA-NMFS-2020-0031-DRAFT-49283
NOAA-NMFS-2020-0031-DRAFT-49284
NOAA-NMFS-2020-0031-DRAFT-49285
NOAA-NMFS-2020-0031-DRAFT-49286
NOAA-NMFS-2020-0031-DRAFT-49287
NOAA-NMFS-2020-0031-DRAFT-49288
NOAA-NMFS-2020-0031-DRAFT-49289
NOAA-NMFS-2020-0031-DRAFT-49290
NOAA-NMFS-2020-0031-DRAFT-49291
NOAA-NMFS-2020-0031-DRAFT-49292
NOAA-NMFS-2020-0031-DRAFT-49293
NOAA-NMFS-2020-0031-DRAFT-49294
NOAA-NMFS-2020-0031-DRAFT-49295
NOAA-NMFS-2020-0031-DRAFT-49296
NOAA-NMFS-2020-0031-DRAFT-49297
NOAA-NMFS-2020-0031-DRAFT-49298
NOAA-NMFS-2020-0031-DRAFT-49299
NOAA-NMFS-2020-0031-DRAFT-49300
NOAA-NMFS-2020-0031-DRAFT-49301
NOAA-NMFS-2020-0031-DRAFT-49302
NOAA-NMFS-2020-0031-DRAFT-49303
NOAA-NMFS-2020-0031-DRAFT-49304
NOAA-NMFS-2020-0031-DRAFT-49305
NOAA-NMFS-2020-0031-DRAFT-49306
NOAA-NMFS-2020-0031-DRAFT-49307
NOAA-NMFS-2020-0031-DRAFT-49308
NOAA-NMFS-2020-0031-DRAFT-49309
NOAA-NMFS-2020-0031-DRAFT-49310
NOAA-NMFS-2020-0031-DRAFT-49311
NOAA-NMFS-2020-0031-DRAFT-49312
NOAA-NMFS-2020-0031-DRAFT-49313
NOAA-NMFS-2020-0031-DRAFT-49314
NOAA-NMFS-2020-0031-DRAFT-49316
NOAA-NMFS-2020-0031-DRAFT-49317
NOAA-NMFS-2020-0031-DRAFT-49318
NOAA-NMFS-2020-0031-DRAFT-49319

Comment from Clayton Jones
Comment from Raymond Pugliesi
Comment from Linda Meiberg
Comment from Alicia Liang
Comment from Andrea Swiedler
Comment from dawn sartori
Comment from Christina Wilgren
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Janice Ferrier
Comment from Lily Chiu
Comment from Kristina Wunder
Comment from Bob-Marie Rayburn
Comment from Tom Butch
Comment from Elena Jurgela
Comment from Matthew Kauffman
Comment from Amy Kritz
Comment from Karen DeSalvo
Comment from Elizabeth Falkenthal
Comment from Clover Krajicek
Comment from Wilifred Alire
Comment from Bruce Rosen
Comment from Cindy Lance
Comment from Barbara Harpe
Comment from Tammy Duran
Comment from Gerald Brookman
Comment from Terry Glauser
Comment from gary cohen
Comment from Karen McHugh
Comment from Elizabeth Davis
Comment from Rhonda Johnson
Comment from Andrea Lynch
Comment from Lindsay Mugglestone
Comment from Kathleen Doctor
Comment from Mary Johnson
Comment from Ann Wiseman
Comment from James Taft
Comment from Anonymous Anonymous
Comment from Pat Morales
Comment from Judy Hollingsworth
Comment from Elizabeth Davis

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NOAA-NMFS-2020-0031-DRAFT-44108
NOAA-NMFS-2020-0031-DRAFT-44109
NOAA-NMFS-2020-0031-DRAFT-44110
NOAA-NMFS-2020-0031-DRAFT-44111
NOAA-NMFS-2020-0031-DRAFT-44112
NOAA-NMFS-2020-0031-DRAFT-44113
NOAA-NMFS-2020-0031-DRAFT-44114
NOAA-NMFS-2020-0031-DRAFT-44115
NOAA-NMFS-2020-0031-DRAFT-44116
NOAA-NMFS-2020-0031-DRAFT-44117
NOAA-NMFS-2020-0031-DRAFT-44118
NOAA-NMFS-2020-0031-DRAFT-44119
NOAA-NMFS-2020-0031-DRAFT-44120
NOAA-NMFS-2020-0031-DRAFT-44121
NOAA-NMFS-2020-0031-DRAFT-44122
NOAA-NMFS-2020-0031-DRAFT-44123
NOAA-NMFS-2020-0031-DRAFT-44124
NOAA-NMFS-2020-0031-DRAFT-44125
NOAA-NMFS-2020-0031-DRAFT-44126
NOAA-NMFS-2020-0031-DRAFT-44127
NOAA-NMFS-2020-0031-DRAFT-44128
NOAA-NMFS-2020-0031-DRAFT-44129
NOAA-NMFS-2020-0031-DRAFT-44130
NOAA-NMFS-2020-0031-DRAFT-44131
NOAA-NMFS-2020-0031-DRAFT-44132
NOAA-NMFS-2020-0031-DRAFT-44133
NOAA-NMFS-2020-0031-DRAFT-44134
NOAA-NMFS-2020-0031-DRAFT-44135
NOAA-NMFS-2020-0031-DRAFT-44136
NOAA-NMFS-2020-0031-DRAFT-44137
NOAA-NMFS-2020-0031-DRAFT-44138
NOAA-NMFS-2020-0031-DRAFT-44139
NOAA-NMFS-2020-0031-DRAFT-44140
NOAA-NMFS-2020-0031-DRAFT-44141
NOAA-NMFS-2020-0031-DRAFT-44142
NOAA-NMFS-2020-0031-DRAFT-44143
NOAA-NMFS-2020-0031-DRAFT-44144
NOAA-NMFS-2020-0031-DRAFT-44145
NOAA-NMFS-2020-0031-DRAFT-44146
NOAA-NMFS-2020-0031-DRAFT-44147
NOAA-NMFS-2020-0031-DRAFT-44148

Comment from Johnson, Joyce
Comment from Wu, Blake
Comment from Reynolds, Greg
Comment from Atknson, Rhys
Comment from McLean, Kenneth
Comment from Cariglia, Renee
Comment from Hurtt, Kimberly
Comment from Anonymous Anonymous
Comment from Erlick, Rob
Comment from Anonymous Anonymous
Comment from Rakow, Tamara
Comment from Heath, Linda
Comment from Morrison, Tonya
Comment from Anonymous Anonymous
Comment from Trajanovska, Michelle
Comment from Ford, Peggy
Comment from Anonymous Anonymous
Comment from Foster, Victoria
Comment from Anonymous Anonymous
Comment from Cervene, Amy
Comment from Anonymous Anonymous
Comment from Steffen, Maria
Comment from Shaw, Kelly
Comment from Red, Pure
Comment from Martino, Rosanne
Comment from Rangne, Monica
Comment from DiMartino, Penny
Comment from williams-orlando, marilyn
Comment from Morgan, Katie
Comment from Wiley, Jane
Comment from Mcgrath, Sue
Comment from McDonnell, Joyce
Comment from Anonymous Anonymous
Comment from Keating, C
Comment from Lee, Rex
Comment from Gallardo, Kathie
Comment from Kammerud, Lance
Comment from Anonymous Anonymous
Comment from Wallof, Julie
Comment from Cornelius, Linda
Comment from Ruzek, Heidi

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NOAA-NMFS-2020-0031-DRAFT-49320
NOAA-NMFS-2020-0031-DRAFT-49321
NOAA-NMFS-2020-0031-DRAFT-49322
NOAA-NMFS-2020-0031-DRAFT-49323
NOAA-NMFS-2020-0031-DRAFT-49324
NOAA-NMFS-2020-0031-DRAFT-49325
NOAA-NMFS-2020-0031-DRAFT-49326
NOAA-NMFS-2020-0031-DRAFT-49327
NOAA-NMFS-2020-0031-DRAFT-49328
NOAA-NMFS-2020-0031-DRAFT-49329
NOAA-NMFS-2020-0031-DRAFT-49330
NOAA-NMFS-2020-0031-DRAFT-49331
NOAA-NMFS-2020-0031-DRAFT-49332
NOAA-NMFS-2020-0031-DRAFT-49333
NOAA-NMFS-2020-0031-DRAFT-49334
NOAA-NMFS-2020-0031-DRAFT-49335
NOAA-NMFS-2020-0031-DRAFT-49336
NOAA-NMFS-2020-0031-DRAFT-49337
NOAA-NMFS-2020-0031-DRAFT-49338
NOAA-NMFS-2020-0031-DRAFT-49339
NOAA-NMFS-2020-0031-DRAFT-49340
NOAA-NMFS-2020-0031-DRAFT-49341
NOAA-NMFS-2020-0031-DRAFT-49342
NOAA-NMFS-2020-0031-DRAFT-49343
NOAA-NMFS-2020-0031-DRAFT-49344
NOAA-NMFS-2020-0031-DRAFT-49345
NOAA-NMFS-2020-0031-DRAFT-49346
NOAA-NMFS-2020-0031-DRAFT-49347
NOAA-NMFS-2020-0031-DRAFT-49348
NOAA-NMFS-2020-0031-DRAFT-49349
NOAA-NMFS-2020-0031-DRAFT-49350
NOAA-NMFS-2020-0031-DRAFT-49351
NOAA-NMFS-2020-0031-DRAFT-49352
NOAA-NMFS-2020-0031-DRAFT-49353
NOAA-NMFS-2020-0031-DRAFT-49354
NOAA-NMFS-2020-0031-DRAFT-49355
NOAA-NMFS-2020-0031-DRAFT-49357
NOAA-NMFS-2020-0031-DRAFT-49358
NOAA-NMFS-2020-0031-DRAFT-49359
NOAA-NMFS-2020-0031-DRAFT-49360
NOAA-NMFS-2020-0031-DRAFT-49361

Comment from Elaine de Reyna
Comment from Frederick Blosser
Comment from Christine Sell
Comment from susan nutter
Comment from Marietta Montaine
Comment from Randi Saslow
Comment from Patricia Blackwell-Marchant
Comment from Tracey Katsouros
Comment from Marc Wertheimer
Comment from Faith Herschler
Comment from Jessica Cresseveur
Comment from Jamie Green
Comment from Sandra Knutson
Comment from M. Ericsen
Comment from Michael King
Comment from Amy St Jean
Comment from Debra Elder
Comment from Carin Baer
Comment from Yelena Ratush
Comment from terr badger
Comment from Malvina Landau-Blake
Comment from Patricia Palermo
Comment from M. Ericsen
Comment from Karen OBrien
Comment from Sharon Garlena
Comment from Colleen McKenna
Comment from Robin Elliott
Comment from Melissa Sampson
Comment from Anne Post
Comment from Candace Bassat
Comment from Susan Ryan
Comment from Kay Reinfried
Comment from Walter Erhorn
Comment from Melvin Bautista
Comment from Kay Rinaldi
Comment from Natalie Clark
Comment from Diana Donovan
Comment from John Reiger
Comment from Virgil Pauls
Comment from Mark Mazhnyy
Comment from Carson Martin

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NOAA-NMFS-2020-0031-DRAFT-44149
NOAA-NMFS-2020-0031-DRAFT-44150
NOAA-NMFS-2020-0031-DRAFT-44151
NOAA-NMFS-2020-0031-DRAFT-44152
NOAA-NMFS-2020-0031-DRAFT-44153
NOAA-NMFS-2020-0031-DRAFT-44154
NOAA-NMFS-2020-0031-DRAFT-44155
NOAA-NMFS-2020-0031-DRAFT-44157
NOAA-NMFS-2020-0031-DRAFT-44158
NOAA-NMFS-2020-0031-DRAFT-44159
NOAA-NMFS-2020-0031-DRAFT-44160
NOAA-NMFS-2020-0031-DRAFT-44161
NOAA-NMFS-2020-0031-DRAFT-44162
NOAA-NMFS-2020-0031-DRAFT-44163
NOAA-NMFS-2020-0031-DRAFT-44164
NOAA-NMFS-2020-0031-DRAFT-44165
NOAA-NMFS-2020-0031-DRAFT-44166
NOAA-NMFS-2020-0031-DRAFT-44167
NOAA-NMFS-2020-0031-DRAFT-44168
NOAA-NMFS-2020-0031-DRAFT-44169
NOAA-NMFS-2020-0031-DRAFT-44170
NOAA-NMFS-2020-0031-DRAFT-44171
NOAA-NMFS-2020-0031-DRAFT-44172
NOAA-NMFS-2020-0031-DRAFT-44173
NOAA-NMFS-2020-0031-DRAFT-44174
NOAA-NMFS-2020-0031-DRAFT-44175
NOAA-NMFS-2020-0031-DRAFT-44176
NOAA-NMFS-2020-0031-DRAFT-44177
NOAA-NMFS-2020-0031-DRAFT-44178
NOAA-NMFS-2020-0031-DRAFT-44179
NOAA-NMFS-2020-0031-DRAFT-44180
NOAA-NMFS-2020-0031-DRAFT-44181
NOAA-NMFS-2020-0031-DRAFT-44182
NOAA-NMFS-2020-0031-DRAFT-44183
NOAA-NMFS-2020-0031-DRAFT-44184
NOAA-NMFS-2020-0031-DRAFT-44185
NOAA-NMFS-2020-0031-DRAFT-44186
NOAA-NMFS-2020-0031-DRAFT-44187
NOAA-NMFS-2020-0031-DRAFT-44188
NOAA-NMFS-2020-0031-DRAFT-44189
NOAA-NMFS-2020-0031-DRAFT-44190

Comment from Elfin, Julie
Comment from Anonymous Anonymous
Comment from McConnell, Ellen
Comment from Siferd, Ginny
Comment from Rupar, Randyl
Comment from Johnson, Vicki
Comment from Ross, Suzanne
Comment from Reichel-Halverson, Susan
Comment from Torget, Marie
Comment from dos santos, jamie
Comment from Dexter, Ellen
Comment from Miller, Carol
Comment from zahler, gary
Comment from Stevenson, Julia
Comment from Link, Christa
Comment from Nelson, Michelle
Comment from Schemer, Gwenn
Comment from Slakter, Judith
Comment from Taylor, K
Comment from West, Carrie
Comment from Anonymous Anonymous
Comment from Lawrence, Rob
Comment from Volz, Candace
Comment from Moy, Kristine
Comment from Axt, Phyllis
Comment from Hayman, Lauren
Comment from Francis, Mark
Comment from Kirchdoerfer, Karen
Comment from Borgen, Lynn
Comment from Earp, Marsha
Comment from Emerson, C
Comment from Wallace, Lee
Comment from Resh, Brian
Comment from Pettinato, Angele
Comment from MEDINA, MARIO
Comment from Anonymous Anonymous
Comment from Fedel, Sabrina
Comment from Anonymous Anonymous
Comment from Urbanovich, Mary
Comment from zucker, m. lee
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-49362
NOAA-NMFS-2020-0031-DRAFT-49363
NOAA-NMFS-2020-0031-DRAFT-49364
NOAA-NMFS-2020-0031-DRAFT-49365
NOAA-NMFS-2020-0031-DRAFT-49366
NOAA-NMFS-2020-0031-DRAFT-49367
NOAA-NMFS-2020-0031-DRAFT-49368
NOAA-NMFS-2020-0031-DRAFT-49369
NOAA-NMFS-2020-0031-DRAFT-49370
NOAA-NMFS-2020-0031-DRAFT-49372
NOAA-NMFS-2020-0031-DRAFT-49373
NOAA-NMFS-2020-0031-DRAFT-49374
NOAA-NMFS-2020-0031-DRAFT-49375
NOAA-NMFS-2020-0031-DRAFT-49376
NOAA-NMFS-2020-0031-DRAFT-49377
NOAA-NMFS-2020-0031-DRAFT-49378
NOAA-NMFS-2020-0031-DRAFT-49379
NOAA-NMFS-2020-0031-DRAFT-49380
NOAA-NMFS-2020-0031-DRAFT-49381
NOAA-NMFS-2020-0031-DRAFT-49382
NOAA-NMFS-2020-0031-DRAFT-49383
NOAA-NMFS-2020-0031-DRAFT-49384
NOAA-NMFS-2020-0031-DRAFT-49385
NOAA-NMFS-2020-0031-DRAFT-49386
NOAA-NMFS-2020-0031-DRAFT-49387
NOAA-NMFS-2020-0031-DRAFT-49388
NOAA-NMFS-2020-0031-DRAFT-49389
NOAA-NMFS-2020-0031-DRAFT-49390
NOAA-NMFS-2020-0031-DRAFT-49391
NOAA-NMFS-2020-0031-DRAFT-49392
NOAA-NMFS-2020-0031-DRAFT-49393
NOAA-NMFS-2020-0031-DRAFT-49394
NOAA-NMFS-2020-0031-DRAFT-49395
NOAA-NMFS-2020-0031-DRAFT-49396
NOAA-NMFS-2020-0031-DRAFT-49397
NOAA-NMFS-2020-0031-DRAFT-49398
NOAA-NMFS-2020-0031-DRAFT-49399
NOAA-NMFS-2020-0031-DRAFT-49400
NOAA-NMFS-2020-0031-DRAFT-49401
NOAA-NMFS-2020-0031-DRAFT-49402
NOAA-NMFS-2020-0031-DRAFT-49403

Comment from Thomas Lemberg
Comment from Anonymous Anonymous
Comment from jim hite
Comment from Gavin Dillard
Comment from Michael Tucker
Comment from Ginger Geronimo
Comment from Jay Satterwhite
Comment from Lorelei Elkins
Comment from Cheryl Fergeson
Comment from annette vasile
Comment from gary cohen
Comment from Barbara Tillman
Comment from Nanda Zimmerman
Comment from Gene Wheeler
Comment from Susan Busch
Comment from Elly Ross
Comment from Susan Lefler
Comment from Dennis Hough
Comment from Michael Adler
Comment from Nancy Miller
Comment from Lauren A.
Comment from Maria Gil-del-Real
Comment from Quinn Baranski
Comment from Michael Halloran
Comment from Larry Lewis
Comment from Mary Dunlap
Comment from Alice Suso
Comment from Lori Girshick
Comment from Joanne Godzicki
Comment from Mitch Cohen
Comment from Kathleen Holman
Comment from Heather Denney
Comment from Tina Overland
Comment from Bonnie RN
Comment from Michael Roehm
Comment from Thomas Sanders
Comment from Jeanne Stillman
Comment from Jean Chagnon
Comment from Carmen Machado
Comment from Nancy Bushnell
Comment from Darcy Symes

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NOAA-NMFS-2020-0031-DRAFT-44191
NOAA-NMFS-2020-0031-DRAFT-44192
NOAA-NMFS-2020-0031-DRAFT-44193
NOAA-NMFS-2020-0031-DRAFT-44195
NOAA-NMFS-2020-0031-DRAFT-44196
NOAA-NMFS-2020-0031-DRAFT-44197
NOAA-NMFS-2020-0031-DRAFT-44198
NOAA-NMFS-2020-0031-DRAFT-44199
NOAA-NMFS-2020-0031-DRAFT-44200
NOAA-NMFS-2020-0031-DRAFT-44201
NOAA-NMFS-2020-0031-DRAFT-44202
NOAA-NMFS-2020-0031-DRAFT-44203
NOAA-NMFS-2020-0031-DRAFT-44204
NOAA-NMFS-2020-0031-DRAFT-44205
NOAA-NMFS-2020-0031-DRAFT-44206
NOAA-NMFS-2020-0031-DRAFT-44207
NOAA-NMFS-2020-0031-DRAFT-44208
NOAA-NMFS-2020-0031-DRAFT-44209
NOAA-NMFS-2020-0031-DRAFT-44210
NOAA-NMFS-2020-0031-DRAFT-44211
NOAA-NMFS-2020-0031-DRAFT-44212
NOAA-NMFS-2020-0031-DRAFT-44213
NOAA-NMFS-2020-0031-DRAFT-44214
NOAA-NMFS-2020-0031-DRAFT-44215
NOAA-NMFS-2020-0031-DRAFT-44216
NOAA-NMFS-2020-0031-DRAFT-44217
NOAA-NMFS-2020-0031-DRAFT-44218
NOAA-NMFS-2020-0031-DRAFT-44219
NOAA-NMFS-2020-0031-DRAFT-44220
NOAA-NMFS-2020-0031-DRAFT-44221
NOAA-NMFS-2020-0031-DRAFT-44222
NOAA-NMFS-2020-0031-DRAFT-44223
NOAA-NMFS-2020-0031-DRAFT-44224
NOAA-NMFS-2020-0031-DRAFT-44225
NOAA-NMFS-2020-0031-DRAFT-44226
NOAA-NMFS-2020-0031-DRAFT-44227
NOAA-NMFS-2020-0031-DRAFT-44228
NOAA-NMFS-2020-0031-DRAFT-44229
NOAA-NMFS-2020-0031-DRAFT-44230
NOAA-NMFS-2020-0031-DRAFT-44231
NOAA-NMFS-2020-0031-DRAFT-44232

Comment from Hathaway, Melissa
Comment from murphy, liz
Comment from Hansen, Joan
Comment from Ballard, Kim
Comment from Smallman, Dee
Comment from Anonymous Anonymous
Comment from Hansen, Amy
Comment from Anonymous Anonymous
Comment from Jackson, Lori
Comment from Chatel, Donna
Comment from Lirones, Margaret
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Carlson, Peggy
Comment from Kelley, David
Comment from Anonymous Anonymous
Comment from Jennings, Gary
Comment from Balish, June
Comment from Bender, Leslie
Comment from Cunningham, Jennifer
Comment from Andaloro, Bernadette
Comment from Becker, Leslie
Comment from Anonymous Anonymous
Comment from Clark, Maxine
Comment from Othrow, Marge
Comment from Moore, Kathie
Comment from King, Kari
Comment from Fiorillo, Sandra
Comment from Russo, Kerri
Comment from Wiseman, Elizabeth
Comment from Anonymous Anonymous
Comment from Kovshun, Rita
Comment from Stemwell, Christina
Comment from Fischer, Wendy and Dan
Comment from Brett, Bonnie
Comment from Bruno, Vicki
Comment from Ciancone, Gabriella
Comment from Lee, Mark
Comment from Mooney, Bob
Comment from Schlatter, Jeanne
Comment from Alessandra, Danielle

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NOAA-NMFS-2020-0031-DRAFT-49405
NOAA-NMFS-2020-0031-DRAFT-49406
NOAA-NMFS-2020-0031-DRAFT-49407
NOAA-NMFS-2020-0031-DRAFT-49408
NOAA-NMFS-2020-0031-DRAFT-49409
NOAA-NMFS-2020-0031-DRAFT-49410
NOAA-NMFS-2020-0031-DRAFT-49411
NOAA-NMFS-2020-0031-DRAFT-49412
NOAA-NMFS-2020-0031-DRAFT-49413
NOAA-NMFS-2020-0031-DRAFT-49414
NOAA-NMFS-2020-0031-DRAFT-49416
NOAA-NMFS-2020-0031-DRAFT-49417
NOAA-NMFS-2020-0031-DRAFT-49418
NOAA-NMFS-2020-0031-DRAFT-49419
NOAA-NMFS-2020-0031-DRAFT-49420
NOAA-NMFS-2020-0031-DRAFT-49421
NOAA-NMFS-2020-0031-DRAFT-49422
NOAA-NMFS-2020-0031-DRAFT-49423
NOAA-NMFS-2020-0031-DRAFT-49424
NOAA-NMFS-2020-0031-DRAFT-49425
NOAA-NMFS-2020-0031-DRAFT-49426
NOAA-NMFS-2020-0031-DRAFT-49427
NOAA-NMFS-2020-0031-DRAFT-49428
NOAA-NMFS-2020-0031-DRAFT-49429
NOAA-NMFS-2020-0031-DRAFT-49430
NOAA-NMFS-2020-0031-DRAFT-49431
NOAA-NMFS-2020-0031-DRAFT-49432
NOAA-NMFS-2020-0031-DRAFT-49433
NOAA-NMFS-2020-0031-DRAFT-49434
NOAA-NMFS-2020-0031-DRAFT-49435
NOAA-NMFS-2020-0031-DRAFT-49436
NOAA-NMFS-2020-0031-DRAFT-49437
NOAA-NMFS-2020-0031-DRAFT-49438
NOAA-NMFS-2020-0031-DRAFT-49439
NOAA-NMFS-2020-0031-DRAFT-49440
NOAA-NMFS-2020-0031-DRAFT-49441
NOAA-NMFS-2020-0031-DRAFT-49442
NOAA-NMFS-2020-0031-DRAFT-49443
NOAA-NMFS-2020-0031-DRAFT-49444
NOAA-NMFS-2020-0031-DRAFT-49445
NOAA-NMFS-2020-0031-DRAFT-49446

Comment from Michaell Allen
Comment from Paula Morgan
Comment from Myra Toth
Comment from Paul LaFontaine
Comment from Eve Waterman
Comment from Dawn Stanko
Comment from Colette Chance
Comment from m'lou christ
Comment from Kate Ashley
Comment from Edward Spevak
Comment from Anonymous Anonymous
Comment from Debra Wilks
Comment from Dawn Mason-Lutsky
Comment from Susan Fladager
Comment from Kathy Sugarman
Comment from Deb Delsole
Comment from Wendy Bernier
Comment from David Klass
Comment from Marcia Benes
Comment from Mary Pagan
Comment from Steven Fenster
Comment from Anonymous Anonymous
Comment from Stuart Weiss
Comment from Julie Slavet
Comment from Amanda Young
Comment from Mary OConnor
Comment from John Valentine
Comment from Bonnie Williams
Comment from Anna Stein
Comment from Linda Martinez
Comment from Andrew Dunne
Comment from Carly Owens
Comment from Timothy McLaughlin
Comment from Thomas Conroy
Comment from Jeffrey Dix
Comment from Jacqui Lipschitz
Comment from Kelly Fiske
Comment from Hilary Capstick
Comment from Patricia Cruse
Comment from Randall Foreman
Comment from Heidi Steffy

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NOAA-NMFS-2020-0031-DRAFT-44233
NOAA-NMFS-2020-0031-DRAFT-44234
NOAA-NMFS-2020-0031-DRAFT-44235
NOAA-NMFS-2020-0031-DRAFT-44236
NOAA-NMFS-2020-0031-DRAFT-44237
NOAA-NMFS-2020-0031-DRAFT-44238
NOAA-NMFS-2020-0031-DRAFT-44239
NOAA-NMFS-2020-0031-DRAFT-44240
NOAA-NMFS-2020-0031-DRAFT-44241
NOAA-NMFS-2020-0031-DRAFT-44242
NOAA-NMFS-2020-0031-DRAFT-44243
NOAA-NMFS-2020-0031-DRAFT-44244
NOAA-NMFS-2020-0031-DRAFT-44245
NOAA-NMFS-2020-0031-DRAFT-44246
NOAA-NMFS-2020-0031-DRAFT-44247
NOAA-NMFS-2020-0031-DRAFT-44248
NOAA-NMFS-2020-0031-DRAFT-44249
NOAA-NMFS-2020-0031-DRAFT-44250
NOAA-NMFS-2020-0031-DRAFT-44251
NOAA-NMFS-2020-0031-DRAFT-44252
NOAA-NMFS-2020-0031-DRAFT-44253
NOAA-NMFS-2020-0031-DRAFT-44254
NOAA-NMFS-2020-0031-DRAFT-44255
NOAA-NMFS-2020-0031-DRAFT-44256
NOAA-NMFS-2020-0031-DRAFT-44257
NOAA-NMFS-2020-0031-DRAFT-44258
NOAA-NMFS-2020-0031-DRAFT-44259
NOAA-NMFS-2020-0031-DRAFT-44260
NOAA-NMFS-2020-0031-DRAFT-44261
NOAA-NMFS-2020-0031-DRAFT-44262
NOAA-NMFS-2020-0031-DRAFT-44263
NOAA-NMFS-2020-0031-DRAFT-44264
NOAA-NMFS-2020-0031-DRAFT-44265
NOAA-NMFS-2020-0031-DRAFT-44266
NOAA-NMFS-2020-0031-DRAFT-44267
NOAA-NMFS-2020-0031-DRAFT-44268
NOAA-NMFS-2020-0031-DRAFT-44269
NOAA-NMFS-2020-0031-DRAFT-44270
NOAA-NMFS-2020-0031-DRAFT-44271
NOAA-NMFS-2020-0031-DRAFT-44272
NOAA-NMFS-2020-0031-DRAFT-44273

Comment from kruggel, cyndee
Comment from Ding, Angela
Comment from Anonymous Anonymous
Comment from MacCrimmon, Katherine
Comment from Greidinger, Iris
Comment from Coe, Jane
Comment from Sillasen, Becky
Comment from Zalaznick, Jessica
Comment from Pelton, Drew
Comment from craven, cheryl
Comment from Rohn, Diane
Comment from Selquist, Donna
Comment from Baker, Megan
Comment from Roche, Lauretta
Comment from Horter, Patricia
Comment from Colgrove, Joan
Comment from Belew, Lynette
Comment from Glasser, Joan
Comment from antoinette, ibanès
Comment from McCarter, Angel
Comment from Boccalon, Jana
Comment from Nina Huber
Comment from Kawada, Megan
Comment from Yanez, Andrea
Comment from Tan, Hiedi
Comment from Miller, Jennifer
Comment from Breaux, Janice
Comment from Bergen, Peggy
Comment from Williams, Lori
Comment from Anonymous Anonymous
Comment from Czarnecki, Roberta R
Comment from Morton, Dennis
Comment from Saito, Tiemi
Comment from Spencer, Deborah
Comment from Self, Diane
Comment from Harder, Kate
Comment from shalaew, steve
Comment from Anonymous Anonymous
Comment from Seegler, Monika
Comment from shalaew, barbara
Comment from Temes, Alan

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NOAA-NMFS-2020-0031-DRAFT-49447
NOAA-NMFS-2020-0031-DRAFT-49448
NOAA-NMFS-2020-0031-DRAFT-49449
NOAA-NMFS-2020-0031-DRAFT-49451
NOAA-NMFS-2020-0031-DRAFT-49452
NOAA-NMFS-2020-0031-DRAFT-49453
NOAA-NMFS-2020-0031-DRAFT-49454
NOAA-NMFS-2020-0031-DRAFT-49455
NOAA-NMFS-2020-0031-DRAFT-49456
NOAA-NMFS-2020-0031-DRAFT-49457
NOAA-NMFS-2020-0031-DRAFT-49458
NOAA-NMFS-2020-0031-DRAFT-49459
NOAA-NMFS-2020-0031-DRAFT-49460
NOAA-NMFS-2020-0031-DRAFT-49461
NOAA-NMFS-2020-0031-DRAFT-49462
NOAA-NMFS-2020-0031-DRAFT-49463
NOAA-NMFS-2020-0031-DRAFT-49464
NOAA-NMFS-2020-0031-DRAFT-49465
NOAA-NMFS-2020-0031-DRAFT-49466
NOAA-NMFS-2020-0031-DRAFT-49467
NOAA-NMFS-2020-0031-DRAFT-49468
NOAA-NMFS-2020-0031-DRAFT-49469
NOAA-NMFS-2020-0031-DRAFT-49470
NOAA-NMFS-2020-0031-DRAFT-49471
NOAA-NMFS-2020-0031-DRAFT-49472
NOAA-NMFS-2020-0031-DRAFT-49473
NOAA-NMFS-2020-0031-DRAFT-49474
NOAA-NMFS-2020-0031-DRAFT-49475
NOAA-NMFS-2020-0031-DRAFT-49476
NOAA-NMFS-2020-0031-DRAFT-49477
NOAA-NMFS-2020-0031-DRAFT-49479
NOAA-NMFS-2020-0031-DRAFT-49480
NOAA-NMFS-2020-0031-DRAFT-49481
NOAA-NMFS-2020-0031-DRAFT-49482
NOAA-NMFS-2020-0031-DRAFT-49483
NOAA-NMFS-2020-0031-DRAFT-49484
NOAA-NMFS-2020-0031-DRAFT-49485
NOAA-NMFS-2020-0031-DRAFT-49486
NOAA-NMFS-2020-0031-DRAFT-49487
NOAA-NMFS-2020-0031-DRAFT-49488
NOAA-NMFS-2020-0031-DRAFT-49489

Comment from Robert Swett
Comment from Anonymous Anonymous
Comment from Michael Logan
Comment from Tony Segura
Comment from Sue Geiger
Comment from Jay Nilva
Comment from Lee Carson
Comment from Thomas Sanders
Comment from Kathleen Lovan
Comment from Chelly Chevres
Comment from Jean Naples
Comment from Linda Seaver
Comment from Robert Findlay
Comment from Martin Russell
Comment from David Nash
Comment from Marcella Hammond
Comment from Pauline Flynn
Comment from Rhonda Johnson
Comment from Jacqui Lipschitz
Comment from Leslie Richardson
Comment from June Tullman
Comment from Alex Branger
Comment from AMANDA STONEBANK
Comment from Ken Schefter
Comment from Lisa Norman
Comment from Marca Leigh
Comment from Regina Lagrasta
Comment from Antonia Gary
Comment from Debra Raymond
Comment from Timothy Tndc
Comment from Madalynn Carey
Comment from Stefanie Kaku
Comment from kathy haverkamp
Comment from Barb Crumpacker
Comment from Gordon Burghardt
Comment from Carol Baumann
Comment from Elizabeth McSweeney
Comment from Brian Slosek
Comment from Lisa Natale
Comment from Helen Webb
Comment from Kevin Bannon

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NOAA-NMFS-2020-0031-DRAFT-44274
NOAA-NMFS-2020-0031-DRAFT-44275
NOAA-NMFS-2020-0031-DRAFT-44276
NOAA-NMFS-2020-0031-DRAFT-44277
NOAA-NMFS-2020-0031-DRAFT-44278
NOAA-NMFS-2020-0031-DRAFT-44279
NOAA-NMFS-2020-0031-DRAFT-44280
NOAA-NMFS-2020-0031-DRAFT-44281
NOAA-NMFS-2020-0031-DRAFT-44282
NOAA-NMFS-2020-0031-DRAFT-44283
NOAA-NMFS-2020-0031-DRAFT-44284
NOAA-NMFS-2020-0031-DRAFT-44285
NOAA-NMFS-2020-0031-DRAFT-44286
NOAA-NMFS-2020-0031-DRAFT-44287
NOAA-NMFS-2020-0031-DRAFT-44288
NOAA-NMFS-2020-0031-DRAFT-44289
NOAA-NMFS-2020-0031-DRAFT-44290
NOAA-NMFS-2020-0031-DRAFT-44291
NOAA-NMFS-2020-0031-DRAFT-44292
NOAA-NMFS-2020-0031-DRAFT-44293
NOAA-NMFS-2020-0031-DRAFT-44294
NOAA-NMFS-2020-0031-DRAFT-44295
NOAA-NMFS-2020-0031-DRAFT-44296
NOAA-NMFS-2020-0031-DRAFT-44297
NOAA-NMFS-2020-0031-DRAFT-44298
NOAA-NMFS-2020-0031-DRAFT-44299
NOAA-NMFS-2020-0031-DRAFT-44300
NOAA-NMFS-2020-0031-DRAFT-44301
NOAA-NMFS-2020-0031-DRAFT-44302
NOAA-NMFS-2020-0031-DRAFT-44303
NOAA-NMFS-2020-0031-DRAFT-44304
NOAA-NMFS-2020-0031-DRAFT-44305
NOAA-NMFS-2020-0031-DRAFT-44306
NOAA-NMFS-2020-0031-DRAFT-44307
NOAA-NMFS-2020-0031-DRAFT-44308
NOAA-NMFS-2020-0031-DRAFT-44309
NOAA-NMFS-2020-0031-DRAFT-44310
NOAA-NMFS-2020-0031-DRAFT-44311
NOAA-NMFS-2020-0031-DRAFT-44312
NOAA-NMFS-2020-0031-DRAFT-44313
NOAA-NMFS-2020-0031-DRAFT-44314

Comment from Middleton, Ann
Comment from Gordon-Watson, Lynne
Comment from Foster, Jessica
Comment from Coski, John
Comment from Barber, Lynda
Comment from Heron, Deborah
Comment from Roach, Teresa
Comment from Blanc, Annie
Comment from Pacifico, Antonio
Comment from Ankkuri-Fagan, Johanna
Comment from Anonymous Anonymous
Comment from CALLEN, MARY
Comment from Anonymous Anonymous
Comment from Houchins, Charlene
Comment from Stalker, Megan
Comment from Knapp, Bonita
Comment from mitchell, Jane
Comment from Kennedy, Stephanie
Comment from Lauren, Robyn
Comment from Bargery, Laura
Comment from Leonis, Carol
Comment from Stevenson, Ian
Comment from Markides, Christina
Comment from Anonymous Anonymous
Comment from Hallman, Janice
Comment from Winstead, Annie
Comment from Winstead, Cody
Comment from Bernett, Cynthia
Comment from Miles, Karen
Comment from Vigil, Matthew
Comment from Kalinowski, Sharon
Comment from Greene, J
Comment from Bennington, Shiki
Comment from Judge, Carla
Comment from Anonymous Anonymous
Comment from DiBernardo, Deborah
Comment from Czapkowicz, John
Comment from schreffelr, susan
Comment from Lull, Dawn
Comment from Blakeslee, Gayle
Comment from Strom, Kirsten

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NOAA-NMFS-2020-0031-DRAFT-49490
NOAA-NMFS-2020-0031-DRAFT-49491
NOAA-NMFS-2020-0031-DRAFT-49492
NOAA-NMFS-2020-0031-DRAFT-49493
NOAA-NMFS-2020-0031-DRAFT-49494
NOAA-NMFS-2020-0031-DRAFT-49495
NOAA-NMFS-2020-0031-DRAFT-49496
NOAA-NMFS-2020-0031-DRAFT-49497
NOAA-NMFS-2020-0031-DRAFT-49498
NOAA-NMFS-2020-0031-DRAFT-49499
NOAA-NMFS-2020-0031-DRAFT-49501
NOAA-NMFS-2020-0031-DRAFT-49503
NOAA-NMFS-2020-0031-DRAFT-49504
NOAA-NMFS-2020-0031-DRAFT-49505
NOAA-NMFS-2020-0031-DRAFT-49506
NOAA-NMFS-2020-0031-DRAFT-49507
NOAA-NMFS-2020-0031-DRAFT-49508
NOAA-NMFS-2020-0031-DRAFT-49509
NOAA-NMFS-2020-0031-DRAFT-49511
NOAA-NMFS-2020-0031-DRAFT-49512
NOAA-NMFS-2020-0031-DRAFT-49513
NOAA-NMFS-2020-0031-DRAFT-49514
NOAA-NMFS-2020-0031-DRAFT-49515
NOAA-NMFS-2020-0031-DRAFT-49516
NOAA-NMFS-2020-0031-DRAFT-49517
NOAA-NMFS-2020-0031-DRAFT-49518
NOAA-NMFS-2020-0031-DRAFT-49519
NOAA-NMFS-2020-0031-DRAFT-49520
NOAA-NMFS-2020-0031-DRAFT-49521
NOAA-NMFS-2020-0031-DRAFT-49522
NOAA-NMFS-2020-0031-DRAFT-49523
NOAA-NMFS-2020-0031-DRAFT-49524
NOAA-NMFS-2020-0031-DRAFT-49526
NOAA-NMFS-2020-0031-DRAFT-49527
NOAA-NMFS-2020-0031-DRAFT-49528
NOAA-NMFS-2020-0031-DRAFT-49529
NOAA-NMFS-2020-0031-DRAFT-49530
NOAA-NMFS-2020-0031-DRAFT-49531
NOAA-NMFS-2020-0031-DRAFT-49532
NOAA-NMFS-2020-0031-DRAFT-49533
NOAA-NMFS-2020-0031-DRAFT-49534

Comment from Faith Delaney
Comment from Anonymous Anonymous
Comment from Robert Stark
Comment from Connie Meadows
Comment from Cynthia Opderbeck
Comment from Kris Bisgard
Comment from Mary Shabbott
Comment from Debra Renfrew
Comment from Victori Rubietta
Comment from Yume Herod
Comment from Julie Roedel
Comment from Kim Westlake
Comment from Daniel Kozminski
Comment from Matt Damon
Comment from Linda Swan
Comment from Kimberly Kalishek
Comment from Renee Landuyt
Comment from Bev Vanderstar
Comment from Carolyn Bennatti
Comment from Kristy Munden
Comment from Diane Barbera
Comment from Joe sans
Comment from William Montgomery
Comment from Lauren Mason
Comment from Ben Ruwe
Comment from Anonymous Anonymous
Comment from Victori Rubietta
Comment from Karen MacGee
Comment from Lori Kuebler
Comment from Allison Scanlon
Comment from Trisha Sherman
Comment from Warren Pope
Comment from Bettina Bowers
Comment from Marjorie Browning
Comment from Marc Berner
Comment from Alice Neuhauser
Comment from Alicia Rogers
Comment from Nancy Goldman
Comment from tye block
Comment from saraphine metis
Comment from John Curreri

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NOAA-NMFS-2020-0031-DRAFT-44315
NOAA-NMFS-2020-0031-DRAFT-44316
NOAA-NMFS-2020-0031-DRAFT-44317
NOAA-NMFS-2020-0031-DRAFT-44318
NOAA-NMFS-2020-0031-DRAFT-44319
NOAA-NMFS-2020-0031-DRAFT-44320
NOAA-NMFS-2020-0031-DRAFT-44321
NOAA-NMFS-2020-0031-DRAFT-44322
NOAA-NMFS-2020-0031-DRAFT-44323
NOAA-NMFS-2020-0031-DRAFT-44324
NOAA-NMFS-2020-0031-DRAFT-44325
NOAA-NMFS-2020-0031-DRAFT-44326
NOAA-NMFS-2020-0031-DRAFT-44327
NOAA-NMFS-2020-0031-DRAFT-44328
NOAA-NMFS-2020-0031-DRAFT-44329
NOAA-NMFS-2020-0031-DRAFT-44330
NOAA-NMFS-2020-0031-DRAFT-44331
NOAA-NMFS-2020-0031-DRAFT-44332
NOAA-NMFS-2020-0031-DRAFT-44333
NOAA-NMFS-2020-0031-DRAFT-44334
NOAA-NMFS-2020-0031-DRAFT-44335
NOAA-NMFS-2020-0031-DRAFT-44336
NOAA-NMFS-2020-0031-DRAFT-44337
NOAA-NMFS-2020-0031-DRAFT-44338
NOAA-NMFS-2020-0031-DRAFT-44339
NOAA-NMFS-2020-0031-DRAFT-44340
NOAA-NMFS-2020-0031-DRAFT-44341
NOAA-NMFS-2020-0031-DRAFT-44342
NOAA-NMFS-2020-0031-DRAFT-44343
NOAA-NMFS-2020-0031-DRAFT-44344
NOAA-NMFS-2020-0031-DRAFT-44345
NOAA-NMFS-2020-0031-DRAFT-44346
NOAA-NMFS-2020-0031-DRAFT-44347
NOAA-NMFS-2020-0031-DRAFT-44348
NOAA-NMFS-2020-0031-DRAFT-44349
NOAA-NMFS-2020-0031-DRAFT-44350
NOAA-NMFS-2020-0031-DRAFT-44351
NOAA-NMFS-2020-0031-DRAFT-44352
NOAA-NMFS-2020-0031-DRAFT-44353
NOAA-NMFS-2020-0031-DRAFT-44354
NOAA-NMFS-2020-0031-DRAFT-44355

Comment from McCoy, Amy
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Twardy, Diane
Comment from Rogulski, Barbara
Comment from Burgan, Renee
Comment from McLean, Cynthia
Comment from GASPAR, SUZANNE
Comment from Anonymous Anonymous
Comment from Cubillos, Ignacio
Comment from Perras-Sanchez, Brandon
Comment from schultz, margaret
Comment from Harris, Jamie
Comment from Parlove, Katherine
Comment from Kettlety, Kathy
Comment from Barrick, Nadine
Comment from Butler, Bill
Comment from gautreaux, jaleh
Comment from Finley, Debbie
Comment from Martin, L
Comment from Phillips, Susan
Comment from Anonymous Anonymous
Comment from Gwynn, Bonita
Comment from Bates, James
Comment from Marcolli, Frances
Comment from Baldwin, Tanya
Comment from Nelligan, Kate
Comment from S, N
Comment from bullen, susan
Comment from Mason, Jacqueline
Comment from Polczynski, Jamie
Comment from Kuzma, Diane
Comment from Rivera, Claudia
Comment from Welte, Stuart
Comment from Sanford, Ellen
Comment from Sams, Barbara
Comment from Martin, PJ
Comment from Bottorff, Virginia
Comment from Quigley, Louise
Comment from conniff, yuko
Comment from Duffy, Z

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NOAA-NMFS-2020-0031-DRAFT-49535
NOAA-NMFS-2020-0031-DRAFT-49536
NOAA-NMFS-2020-0031-DRAFT-49537
NOAA-NMFS-2020-0031-DRAFT-49538
NOAA-NMFS-2020-0031-DRAFT-49539
NOAA-NMFS-2020-0031-DRAFT-49541
NOAA-NMFS-2020-0031-DRAFT-49542
NOAA-NMFS-2020-0031-DRAFT-49543
NOAA-NMFS-2020-0031-DRAFT-49544
NOAA-NMFS-2020-0031-DRAFT-49545
NOAA-NMFS-2020-0031-DRAFT-49546
NOAA-NMFS-2020-0031-DRAFT-49547
NOAA-NMFS-2020-0031-DRAFT-49548
NOAA-NMFS-2020-0031-DRAFT-49549
NOAA-NMFS-2020-0031-DRAFT-49550
NOAA-NMFS-2020-0031-DRAFT-49551
NOAA-NMFS-2020-0031-DRAFT-49554
NOAA-NMFS-2020-0031-DRAFT-49555
NOAA-NMFS-2020-0031-DRAFT-49556
NOAA-NMFS-2020-0031-DRAFT-49557
NOAA-NMFS-2020-0031-DRAFT-49558
NOAA-NMFS-2020-0031-DRAFT-49559
NOAA-NMFS-2020-0031-DRAFT-49560
NOAA-NMFS-2020-0031-DRAFT-49561
NOAA-NMFS-2020-0031-DRAFT-49562
NOAA-NMFS-2020-0031-DRAFT-49563
NOAA-NMFS-2020-0031-DRAFT-49564
NOAA-NMFS-2020-0031-DRAFT-49565
NOAA-NMFS-2020-0031-DRAFT-49566
NOAA-NMFS-2020-0031-DRAFT-49567
NOAA-NMFS-2020-0031-DRAFT-49568
NOAA-NMFS-2020-0031-DRAFT-49569
NOAA-NMFS-2020-0031-DRAFT-49570
NOAA-NMFS-2020-0031-DRAFT-49571
NOAA-NMFS-2020-0031-DRAFT-49572
NOAA-NMFS-2020-0031-DRAFT-49573
NOAA-NMFS-2020-0031-DRAFT-49574
NOAA-NMFS-2020-0031-DRAFT-49575
NOAA-NMFS-2020-0031-DRAFT-49576
NOAA-NMFS-2020-0031-DRAFT-49577
NOAA-NMFS-2020-0031-DRAFT-49578

Comment from rita zielinski
Comment from Eva Marks-Curatolo
Comment from Anonymous Anonymous
Comment from jon Anderholm
Comment from Mark Reback
Comment from Nawal Tamimi
Comment from lisa Jacobson
Comment from Sylvia Silberger
Comment from John Murray
Comment from Cheryl Metzger
Comment from Audrey , Moulinet
Comment from Monge, Julia
Comment from Morgane, Miodek
Comment from Jim Steitz
Comment from Deborah Collodel
Comment from Deborah Thelen
Comment from Darryl San Souci
Comment from Marilyn Davis
Comment from Elizabeth Ashby
Comment from Griffith Davies
Comment from szu burgess
Comment from Ken Ferris
Comment from Sheila Enright
Comment from Gerald Shaia
Comment from Maureen Coughlin
Comment from Jaime Grimwood
Comment from Ronald Rauber
Comment from Ginny Mair
Comment from Diana Cartier
Comment from Karla McNamara
Comment from Dana Cohen
Comment from Susan Rodriguez
Comment from Brian Weatherby
Comment from Amanda Graham
Comment from VeZolles Celeste
Comment from Deb Breslow
Comment from Norman Frank
Comment from Emanuel Falcone
Comment from JOE BEZOTSKY
Comment from Jean Tabin
Comment from Jeff Keswick

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NOAA-NMFS-2020-0031-DRAFT-44356
NOAA-NMFS-2020-0031-DRAFT-44357
NOAA-NMFS-2020-0031-DRAFT-44358
NOAA-NMFS-2020-0031-DRAFT-44359
NOAA-NMFS-2020-0031-DRAFT-44360
NOAA-NMFS-2020-0031-DRAFT-44361
NOAA-NMFS-2020-0031-DRAFT-44362
NOAA-NMFS-2020-0031-DRAFT-44363
NOAA-NMFS-2020-0031-DRAFT-44364
NOAA-NMFS-2020-0031-DRAFT-44365
NOAA-NMFS-2020-0031-DRAFT-44366
NOAA-NMFS-2020-0031-DRAFT-44367
NOAA-NMFS-2020-0031-DRAFT-44368
NOAA-NMFS-2020-0031-DRAFT-44369
NOAA-NMFS-2020-0031-DRAFT-44370
NOAA-NMFS-2020-0031-DRAFT-44371
NOAA-NMFS-2020-0031-DRAFT-44372
NOAA-NMFS-2020-0031-DRAFT-44373
NOAA-NMFS-2020-0031-DRAFT-44375
NOAA-NMFS-2020-0031-DRAFT-44376
NOAA-NMFS-2020-0031-DRAFT-44377
NOAA-NMFS-2020-0031-DRAFT-44378
NOAA-NMFS-2020-0031-DRAFT-44379
NOAA-NMFS-2020-0031-DRAFT-44380
NOAA-NMFS-2020-0031-DRAFT-44381
NOAA-NMFS-2020-0031-DRAFT-44382
NOAA-NMFS-2020-0031-DRAFT-44383
NOAA-NMFS-2020-0031-DRAFT-44384
NOAA-NMFS-2020-0031-DRAFT-44385
NOAA-NMFS-2020-0031-DRAFT-44386
NOAA-NMFS-2020-0031-DRAFT-44387
NOAA-NMFS-2020-0031-DRAFT-44388
NOAA-NMFS-2020-0031-DRAFT-44389
NOAA-NMFS-2020-0031-DRAFT-44390
NOAA-NMFS-2020-0031-DRAFT-44391
NOAA-NMFS-2020-0031-DRAFT-44392
NOAA-NMFS-2020-0031-DRAFT-44393
NOAA-NMFS-2020-0031-DRAFT-44394
NOAA-NMFS-2020-0031-DRAFT-44395
NOAA-NMFS-2020-0031-DRAFT-44396
NOAA-NMFS-2020-0031-DRAFT-44397

Comment from Stansfield, Jack
Comment from Johnson, Justin
Comment from Orvin, Allison
Comment from Jones, Amy
Comment from Spratley, Rich
Comment from Mylott, Sharon
Comment from Betts, Amy
Comment from Obert, Carla
Comment from Zeman, Brian
Comment from Gather, Sandra
Comment from Nemeth, Elisabeth
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Nemeth, Elisabeth
Comment from Nemeth, Elisabeth
Comment from Magie, Bambi
Comment from Whitaker, Cari
Comment from reiburn, sandy
Comment from reiburn, jay
Comment from Woodman, Gillian
Comment from Bauma, Troy
Comment from Groutage, Deborah
Comment from Wolfson, Andrea
Comment from Gemmell, Doug
Comment from Levy, Claire
Comment from ogorzaly, jean
Comment from Dougherty, Kathleen
Comment from Fowlkes, Lisa
Comment from Anonymous Anonymous
Comment from Roth, Elizabeth
Comment from Rosmer, David
Comment from Bartlett, Janice
Comment from Essig, Grae
Comment from Anonymous Anonymous
Comment from Preinesberger, Helga
Comment from Propen, Bev
Comment from Anonymous Anonymous
Comment from Lozon, Kristina
Comment from Chandler, Tracey
Comment from Turbush, Heather
Comment from Garbrick, Kathe

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NOAA-NMFS-2020-0031-DRAFT-49579
NOAA-NMFS-2020-0031-DRAFT-49580
NOAA-NMFS-2020-0031-DRAFT-49581
NOAA-NMFS-2020-0031-DRAFT-49582
NOAA-NMFS-2020-0031-DRAFT-49583
NOAA-NMFS-2020-0031-DRAFT-49584
NOAA-NMFS-2020-0031-DRAFT-49585
NOAA-NMFS-2020-0031-DRAFT-49586
NOAA-NMFS-2020-0031-DRAFT-49587
NOAA-NMFS-2020-0031-DRAFT-49588
NOAA-NMFS-2020-0031-DRAFT-49589
NOAA-NMFS-2020-0031-DRAFT-49590
NOAA-NMFS-2020-0031-DRAFT-49591
NOAA-NMFS-2020-0031-DRAFT-49592
NOAA-NMFS-2020-0031-DRAFT-49593
NOAA-NMFS-2020-0031-DRAFT-49594
NOAA-NMFS-2020-0031-DRAFT-49595
NOAA-NMFS-2020-0031-DRAFT-49596
NOAA-NMFS-2020-0031-DRAFT-49597
NOAA-NMFS-2020-0031-DRAFT-49598
NOAA-NMFS-2020-0031-DRAFT-49599
NOAA-NMFS-2020-0031-DRAFT-49600
NOAA-NMFS-2020-0031-DRAFT-49601
NOAA-NMFS-2020-0031-DRAFT-49602
NOAA-NMFS-2020-0031-DRAFT-49603
NOAA-NMFS-2020-0031-DRAFT-49604
NOAA-NMFS-2020-0031-DRAFT-49605
NOAA-NMFS-2020-0031-DRAFT-49606
NOAA-NMFS-2020-0031-DRAFT-49607
NOAA-NMFS-2020-0031-DRAFT-49608
NOAA-NMFS-2020-0031-DRAFT-49609
NOAA-NMFS-2020-0031-DRAFT-49610
NOAA-NMFS-2020-0031-DRAFT-49611
NOAA-NMFS-2020-0031-DRAFT-49612
NOAA-NMFS-2020-0031-DRAFT-49613
NOAA-NMFS-2020-0031-DRAFT-49614
NOAA-NMFS-2020-0031-DRAFT-49615
NOAA-NMFS-2020-0031-DRAFT-49616
NOAA-NMFS-2020-0031-DRAFT-49617
NOAA-NMFS-2020-0031-DRAFT-49618
NOAA-NMFS-2020-0031-DRAFT-49619

Comment from Greg Gazzana
Comment from Clarence Sutton
Comment from Andrew Henry
Comment from szu burgess
Comment from Margaret Keene
Comment from Anthony Weil
Comment from Gloria Towers
Comment from Cody Dolnick
Comment from Terrance Zable
Comment from Leona Klerer
Comment from Lorraine Busby
Comment from Janna Olson
Comment from Jacquelyn Barnes
Comment from szu burgess
Comment from Robert Anderson
Comment from Barbara Swyden
Comment from Barbara Hart
Comment from Bruce Hlodnicki
Comment from DoRi Miles
Comment from Stacy Temeyer
Comment from Joseph Fysz
Comment from Anonymous Anonymous
Comment from Barbara Peterson
Comment from Russ Kirkpatrick
Comment from David Snope
Comment from Emilie Spring
Comment from Andrew Barsom
Comment from Gill Fahrenwald
Comment from Denise Ress
Comment from John Barger
Comment from Diane Morrill
Comment from Susan Tosi
Comment from Michael Gocinski
Comment from Braxton Worth
Comment from szu burgess
Comment from jason warrington
Comment from Holly Ducharme
Comment from Colonel Meyer
Comment from Matthew Callaway
Comment from Julie walters
Comment from Angela Brancati

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NOAA-NMFS-2020-0031-DRAFT-44398
NOAA-NMFS-2020-0031-DRAFT-44399
NOAA-NMFS-2020-0031-DRAFT-44400
NOAA-NMFS-2020-0031-DRAFT-44401
NOAA-NMFS-2020-0031-DRAFT-44402
NOAA-NMFS-2020-0031-DRAFT-44403
NOAA-NMFS-2020-0031-DRAFT-44404
NOAA-NMFS-2020-0031-DRAFT-44405
NOAA-NMFS-2020-0031-DRAFT-44406
NOAA-NMFS-2020-0031-DRAFT-44407
NOAA-NMFS-2020-0031-DRAFT-44408
NOAA-NMFS-2020-0031-DRAFT-44409
NOAA-NMFS-2020-0031-DRAFT-44410
NOAA-NMFS-2020-0031-DRAFT-44411
NOAA-NMFS-2020-0031-DRAFT-44412
NOAA-NMFS-2020-0031-DRAFT-44413
NOAA-NMFS-2020-0031-DRAFT-44415
NOAA-NMFS-2020-0031-DRAFT-44416
NOAA-NMFS-2020-0031-DRAFT-44418
NOAA-NMFS-2020-0031-DRAFT-44419
NOAA-NMFS-2020-0031-DRAFT-44420
NOAA-NMFS-2020-0031-DRAFT-44421
NOAA-NMFS-2020-0031-DRAFT-44422
NOAA-NMFS-2020-0031-DRAFT-44423
NOAA-NMFS-2020-0031-DRAFT-44424
NOAA-NMFS-2020-0031-DRAFT-44425
NOAA-NMFS-2020-0031-DRAFT-44426
NOAA-NMFS-2020-0031-DRAFT-44427
NOAA-NMFS-2020-0031-DRAFT-44428
NOAA-NMFS-2020-0031-DRAFT-44429
NOAA-NMFS-2020-0031-DRAFT-44430
NOAA-NMFS-2020-0031-DRAFT-44431
NOAA-NMFS-2020-0031-DRAFT-44432
NOAA-NMFS-2020-0031-DRAFT-44433
NOAA-NMFS-2020-0031-DRAFT-44434
NOAA-NMFS-2020-0031-DRAFT-44435
NOAA-NMFS-2020-0031-DRAFT-44436
NOAA-NMFS-2020-0031-DRAFT-44437
NOAA-NMFS-2020-0031-DRAFT-44438
NOAA-NMFS-2020-0031-DRAFT-44439
NOAA-NMFS-2020-0031-DRAFT-44440

Comment from Anonymous Anonymous
Comment from Harpole, Thane
Comment from hale, kim
Comment from Scuzzese, Bette
Comment from Anonymous Anonymous
Comment from Naidu, Sonia
Comment from Bush, Constance
Comment from lheureux, jole
Comment from Grimes, Tara
Comment from Mansour, Raed
Comment from Becker, Robin
Comment from Zoll, Donna
Comment from Gore, Robert
Comment from Landman, Cinnamon
Comment from Pellittiere, Josette
Comment from Swirczynski, Jim and Sophie
Comment from Kissick, Juliana
Comment from Singer, Peter
Comment from Stone, Amber
Comment from Anonymous Anonymous
Comment from Winchester, Helen
Comment from Staley, Roberta
Comment from Ham, Christine
Comment from Glasgow, Marilyn
Comment from Viesser, Marcel
Comment from Jones, Debra
Comment from Bouillet, Dominique
Comment from Maruki-Fox, Setsuko
Comment from Maruki-Fox, Setsuko
Comment from Mahlberg, Casi
Comment from Quackenbush, Bonny
Comment from Hamilton, Mitchell
Comment from Pena, Nelson
Comment from Westwood, Dale
Comment from Evans, Ramona
Comment from Sheetz, Tina
Comment from vayu, satya
Comment from Mastracchio, Donna
Comment from Cornez, Sandi
Comment from Tremblay, Manon
Comment from Auer, Patricia

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NOAA-NMFS-2020-0031-DRAFT-49620
NOAA-NMFS-2020-0031-DRAFT-49621
NOAA-NMFS-2020-0031-DRAFT-49622
NOAA-NMFS-2020-0031-DRAFT-49623
NOAA-NMFS-2020-0031-DRAFT-49624
NOAA-NMFS-2020-0031-DRAFT-49625
NOAA-NMFS-2020-0031-DRAFT-49626
NOAA-NMFS-2020-0031-DRAFT-49627
NOAA-NMFS-2020-0031-DRAFT-49628
NOAA-NMFS-2020-0031-DRAFT-49629
NOAA-NMFS-2020-0031-DRAFT-49630
NOAA-NMFS-2020-0031-DRAFT-49631
NOAA-NMFS-2020-0031-DRAFT-49632
NOAA-NMFS-2020-0031-DRAFT-49633
NOAA-NMFS-2020-0031-DRAFT-49634
NOAA-NMFS-2020-0031-DRAFT-49635
NOAA-NMFS-2020-0031-DRAFT-49636
NOAA-NMFS-2020-0031-DRAFT-49637
NOAA-NMFS-2020-0031-DRAFT-49638
NOAA-NMFS-2020-0031-DRAFT-49639
NOAA-NMFS-2020-0031-DRAFT-49640
NOAA-NMFS-2020-0031-DRAFT-49641
NOAA-NMFS-2020-0031-DRAFT-49642
NOAA-NMFS-2020-0031-DRAFT-49643
NOAA-NMFS-2020-0031-DRAFT-49644
NOAA-NMFS-2020-0031-DRAFT-49645
NOAA-NMFS-2020-0031-DRAFT-49646
NOAA-NMFS-2020-0031-DRAFT-49647
NOAA-NMFS-2020-0031-DRAFT-49648
NOAA-NMFS-2020-0031-DRAFT-49649
NOAA-NMFS-2020-0031-DRAFT-49650
NOAA-NMFS-2020-0031-DRAFT-49651
NOAA-NMFS-2020-0031-DRAFT-49652
NOAA-NMFS-2020-0031-DRAFT-49653
NOAA-NMFS-2020-0031-DRAFT-49654
NOAA-NMFS-2020-0031-DRAFT-49655
NOAA-NMFS-2020-0031-DRAFT-49656
NOAA-NMFS-2020-0031-DRAFT-49657
NOAA-NMFS-2020-0031-DRAFT-49658
NOAA-NMFS-2020-0031-DRAFT-49659
NOAA-NMFS-2020-0031-DRAFT-49660

Comment from Angel Hissley
Comment from Lindsay Myers
Comment from Susan Dawson
Comment from Dianne Doochin
Comment from E Ellis
Comment from Ramsay Kieffer
Comment from Dale Bonge
Comment from Rosiris Paniagua
Comment from Jennifer Mechling
Comment from Sharon Els
Comment from Kelly Berdeaux
Comment from Gail Caswell
Comment from Irina Pashinina
Comment from Cathy Nieman
Comment from szu burgess
Comment from Paul Naylor
Comment from T Roland
Comment from l lubonty
Comment from joyce cotter
Comment from Donald Williams
Comment from Tina Max
Comment from ALEXANDRA DiGiacomo
Comment from Doris Butterfield
Comment from George Craciun
Comment from Cindy Schultz
Comment from Edwin Aiken
Comment from Mary Germano
Comment from Gayle Rosenberry
Comment from Janet Teffer
Comment from William Montgomery
Comment from Carol Boethel
Comment from Tasha Elizabeth
Comment from dawn kenyon
Comment from Janice Higgins
Comment from Jo Feldman
Comment from Diane Bostic
Comment from Tara Warfield
Comment from Tabitha Donaghue
Comment from Giancarlo Falco
Comment from Danielle McHoul
Comment from Cindy Ray

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NOAA-NMFS-2020-0031-DRAFT-44441
NOAA-NMFS-2020-0031-DRAFT-44442
NOAA-NMFS-2020-0031-DRAFT-44443
NOAA-NMFS-2020-0031-DRAFT-44444
NOAA-NMFS-2020-0031-DRAFT-44445
NOAA-NMFS-2020-0031-DRAFT-44446
NOAA-NMFS-2020-0031-DRAFT-44447
NOAA-NMFS-2020-0031-DRAFT-44448
NOAA-NMFS-2020-0031-DRAFT-44449
NOAA-NMFS-2020-0031-DRAFT-44450
NOAA-NMFS-2020-0031-DRAFT-44451
NOAA-NMFS-2020-0031-DRAFT-44452
NOAA-NMFS-2020-0031-DRAFT-44453
NOAA-NMFS-2020-0031-DRAFT-44454
NOAA-NMFS-2020-0031-DRAFT-44455
NOAA-NMFS-2020-0031-DRAFT-44456
NOAA-NMFS-2020-0031-DRAFT-44457
NOAA-NMFS-2020-0031-DRAFT-44458
NOAA-NMFS-2020-0031-DRAFT-44459
NOAA-NMFS-2020-0031-DRAFT-44460
NOAA-NMFS-2020-0031-DRAFT-44461
NOAA-NMFS-2020-0031-DRAFT-44462
NOAA-NMFS-2020-0031-DRAFT-44463
NOAA-NMFS-2020-0031-DRAFT-44464
NOAA-NMFS-2020-0031-DRAFT-44465
NOAA-NMFS-2020-0031-DRAFT-44466
NOAA-NMFS-2020-0031-DRAFT-44467
NOAA-NMFS-2020-0031-DRAFT-44468
NOAA-NMFS-2020-0031-DRAFT-44469
NOAA-NMFS-2020-0031-DRAFT-44470
NOAA-NMFS-2020-0031-DRAFT-44471
NOAA-NMFS-2020-0031-DRAFT-44472
NOAA-NMFS-2020-0031-DRAFT-44473
NOAA-NMFS-2020-0031-DRAFT-44474
NOAA-NMFS-2020-0031-DRAFT-44475
NOAA-NMFS-2020-0031-DRAFT-44477
NOAA-NMFS-2020-0031-DRAFT-44478
NOAA-NMFS-2020-0031-DRAFT-44479
NOAA-NMFS-2020-0031-DRAFT-44480
NOAA-NMFS-2020-0031-DRAFT-44481
NOAA-NMFS-2020-0031-DRAFT-44482

Comment from Leary, Ellen
Comment from Amarillas, Cristina
Comment from Read, Stuart
Comment from Sharaf, Erin
Comment from McTague, Melissa
Comment from Leccese, Moncia
Comment from Vinton, Janine
Comment from Rosa, Michael
Comment from Hansen, Joan
Comment from Klose, Joanna
Comment from Huisken, Ginger Marie
Comment from Anonymous Anonymous
Comment from Brown, Danielle
Comment from Anonymous Anonymous
Comment from Sunderland, Jennifer
Comment from Anonymous Anonymous
Comment from Marsh, Kylie
Comment from DeFelice, Paula
Comment from lamberti, christopher
Comment from Mann-Hielscher, Galia
Comment from Kong, Vanessa
Comment from M, June
Comment from Stelter, Joan
Comment from Rodriguez Rosa, Pedro
Comment from Patel, Dolly
Comment from Patel, Vidhi
Comment from Patel, Neyati
Comment from Patel, Shreya
Comment from Anonymous Anonymous
Comment from patel, neha
Comment from Patel, Divya
Comment from Anonymous Anonymous
Comment from Currier, Meagan
Comment from Alves, Mariana Cristina
Comment from Daigle, Nicole
Comment from McClure, Jean
Comment from Foss, P. M.
Comment from Bonoyer, K
Comment from Anonymous Anonymous
Comment from Brodhag, Jack
Comment from Bruce, Judy

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NOAA-NMFS-2020-0031-DRAFT-49661
NOAA-NMFS-2020-0031-DRAFT-49662
NOAA-NMFS-2020-0031-DRAFT-49663
NOAA-NMFS-2020-0031-DRAFT-49664
NOAA-NMFS-2020-0031-DRAFT-49665
NOAA-NMFS-2020-0031-DRAFT-49666
NOAA-NMFS-2020-0031-DRAFT-49667
NOAA-NMFS-2020-0031-DRAFT-49668
NOAA-NMFS-2020-0031-DRAFT-49669
NOAA-NMFS-2020-0031-DRAFT-49670
NOAA-NMFS-2020-0031-DRAFT-49671
NOAA-NMFS-2020-0031-DRAFT-49672
NOAA-NMFS-2020-0031-DRAFT-49673
NOAA-NMFS-2020-0031-DRAFT-49674
NOAA-NMFS-2020-0031-DRAFT-49675
NOAA-NMFS-2020-0031-DRAFT-49676
NOAA-NMFS-2020-0031-DRAFT-49677
NOAA-NMFS-2020-0031-DRAFT-49678
NOAA-NMFS-2020-0031-DRAFT-49679
NOAA-NMFS-2020-0031-DRAFT-49680
NOAA-NMFS-2020-0031-DRAFT-49681
NOAA-NMFS-2020-0031-DRAFT-49682
NOAA-NMFS-2020-0031-DRAFT-49683
NOAA-NMFS-2020-0031-DRAFT-49684
NOAA-NMFS-2020-0031-DRAFT-49685
NOAA-NMFS-2020-0031-DRAFT-49686
NOAA-NMFS-2020-0031-DRAFT-49687
NOAA-NMFS-2020-0031-DRAFT-49688
NOAA-NMFS-2020-0031-DRAFT-49689
NOAA-NMFS-2020-0031-DRAFT-49690
NOAA-NMFS-2020-0031-DRAFT-49691
NOAA-NMFS-2020-0031-DRAFT-49692
NOAA-NMFS-2020-0031-DRAFT-49693
NOAA-NMFS-2020-0031-DRAFT-49694
NOAA-NMFS-2020-0031-DRAFT-49695
NOAA-NMFS-2020-0031-DRAFT-49696
NOAA-NMFS-2020-0031-DRAFT-49697
NOAA-NMFS-2020-0031-DRAFT-49698
NOAA-NMFS-2020-0031-DRAFT-49699
NOAA-NMFS-2020-0031-DRAFT-49700
NOAA-NMFS-2020-0031-DRAFT-49701

Comment from RICHARD KETTYLE
Comment from Wendy Ryden
Comment from Ken Bowman
Comment from Kristin Pratt
Comment from Cameron Binkley
Comment from Craig Kleber
Comment from Kimberly Flowers
Comment from Susan Ford
Comment from Michael McCartin
Comment from Barbara Kelly
Comment from Corinna Hasbach
Comment from Michael Zuckerman
Comment from Elizabeth Cherubin
Comment from Anonymous Anonymous
Comment from Mary Yeck
Comment from Mark Irving
Comment from Suzanne charle
Comment from Patricia Radder
Comment from Melody lambeth
Comment from William Ryerson
Comment from Harvey Kaiser
Comment from Shawn Tays
Comment from Liz Murphy
Comment from https://www.inmad.pl/
Comment from Ronald Silver
Comment from Diane Bostic
Comment from Donna Walker
Comment from George Picchioni
Comment from Doug Roaten
Comment from Nancy Schultz
Comment from Emily Alpert
Comment from edward dolan
Comment from Mary Jenks
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NOAA-NMFS-2020-0031-DRAFT-44483
NOAA-NMFS-2020-0031-DRAFT-44484
NOAA-NMFS-2020-0031-DRAFT-44485
NOAA-NMFS-2020-0031-DRAFT-44486
NOAA-NMFS-2020-0031-DRAFT-44487
NOAA-NMFS-2020-0031-DRAFT-44488
NOAA-NMFS-2020-0031-DRAFT-44489
NOAA-NMFS-2020-0031-DRAFT-44490
NOAA-NMFS-2020-0031-DRAFT-44491
NOAA-NMFS-2020-0031-DRAFT-44492
NOAA-NMFS-2020-0031-DRAFT-44493
NOAA-NMFS-2020-0031-DRAFT-44494
NOAA-NMFS-2020-0031-DRAFT-44495
NOAA-NMFS-2020-0031-DRAFT-44496
NOAA-NMFS-2020-0031-DRAFT-44497
NOAA-NMFS-2020-0031-DRAFT-44498
NOAA-NMFS-2020-0031-DRAFT-44499
NOAA-NMFS-2020-0031-DRAFT-44500
NOAA-NMFS-2020-0031-DRAFT-44501
NOAA-NMFS-2020-0031-DRAFT-44502
NOAA-NMFS-2020-0031-DRAFT-44503
NOAA-NMFS-2020-0031-DRAFT-44504
NOAA-NMFS-2020-0031-DRAFT-44505
NOAA-NMFS-2020-0031-DRAFT-44506
NOAA-NMFS-2020-0031-DRAFT-44507
NOAA-NMFS-2020-0031-DRAFT-44508
NOAA-NMFS-2020-0031-DRAFT-44509
NOAA-NMFS-2020-0031-DRAFT-44510
NOAA-NMFS-2020-0031-DRAFT-44511
NOAA-NMFS-2020-0031-DRAFT-44512
NOAA-NMFS-2020-0031-DRAFT-44513
NOAA-NMFS-2020-0031-DRAFT-44514
NOAA-NMFS-2020-0031-DRAFT-44515
NOAA-NMFS-2020-0031-DRAFT-44516
NOAA-NMFS-2020-0031-DRAFT-44517
NOAA-NMFS-2020-0031-DRAFT-44518
NOAA-NMFS-2020-0031-DRAFT-44519
NOAA-NMFS-2020-0031-DRAFT-44520
NOAA-NMFS-2020-0031-DRAFT-44521
NOAA-NMFS-2020-0031-DRAFT-44522
NOAA-NMFS-2020-0031-DRAFT-44523

Comment from Eversley, Ocean
Comment from Patterson, Carol
Comment from Patterson, Carol
Comment from Santa, Kerstin
Comment from Flores, Leslie
Comment from Conlin, Frank
Comment from Benjamin-Alcayaga, Pamela
S
Comment from Peoples, Brian
Comment from Mayhew, Sarah
Comment from Monahan, Marissa
Comment from Benedis, Brooke
Comment from Janus, Bill
Comment from Smith, Sandra
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from augoustinos, tanya
Comment from Wohlberg, Robert
Comment from Salvarelli, Marie
Comment from Flower, Maggie
Comment from Foerster, Lori
Comment from Nilsson, Derinda
Comment from Moog, Lori
Comment from Clemens, Pat
Comment from Anonymous Anonymous
Comment from Jenner, Eric
Comment from Anonymous Anonymous
Comment from MAKA, JANUSZ
Comment from Anonymous Anonymous
Comment from Ellis, Debbie
Comment from Fitzpatrick, Cynthia
Comment from Anonymous Anonymous
Comment from cohen, naomi
Comment from Anonymous Anonymous
Comment from Desmarais, Lauri
Comment from matthews, Kathie
Comment from Mansfield, Linda
Comment from Allen PhD DVM, Julia N
Comment from Spencer, Deborah
Comment from Abbott, Melinda
Comment from McLean, Kenneth

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NOAA-NMFS-2020-0031-DRAFT-49702
NOAA-NMFS-2020-0031-DRAFT-49703
NOAA-NMFS-2020-0031-DRAFT-49704
NOAA-NMFS-2020-0031-DRAFT-49705
NOAA-NMFS-2020-0031-DRAFT-49706
NOAA-NMFS-2020-0031-DRAFT-49707
NOAA-NMFS-2020-0031-DRAFT-49708
NOAA-NMFS-2020-0031-DRAFT-49709
NOAA-NMFS-2020-0031-DRAFT-49710
NOAA-NMFS-2020-0031-DRAFT-49711
NOAA-NMFS-2020-0031-DRAFT-49712
NOAA-NMFS-2020-0031-DRAFT-49713
NOAA-NMFS-2020-0031-DRAFT-49714
NOAA-NMFS-2020-0031-DRAFT-49715
NOAA-NMFS-2020-0031-DRAFT-49716
NOAA-NMFS-2020-0031-DRAFT-49717
NOAA-NMFS-2020-0031-DRAFT-49718
NOAA-NMFS-2020-0031-DRAFT-49719
NOAA-NMFS-2020-0031-DRAFT-49720
NOAA-NMFS-2020-0031-DRAFT-49721
NOAA-NMFS-2020-0031-DRAFT-49722
NOAA-NMFS-2020-0031-DRAFT-49723
NOAA-NMFS-2020-0031-DRAFT-49724
NOAA-NMFS-2020-0031-DRAFT-49725
NOAA-NMFS-2020-0031-DRAFT-49726
NOAA-NMFS-2020-0031-DRAFT-49727
NOAA-NMFS-2020-0031-DRAFT-49728
NOAA-NMFS-2020-0031-DRAFT-49729
NOAA-NMFS-2020-0031-DRAFT-49730
NOAA-NMFS-2020-0031-DRAFT-49731
NOAA-NMFS-2020-0031-DRAFT-49732
NOAA-NMFS-2020-0031-DRAFT-49733
NOAA-NMFS-2020-0031-DRAFT-49735
NOAA-NMFS-2020-0031-DRAFT-49736
NOAA-NMFS-2020-0031-DRAFT-49737
NOAA-NMFS-2020-0031-DRAFT-49738
NOAA-NMFS-2020-0031-DRAFT-49739
NOAA-NMFS-2020-0031-DRAFT-49740
NOAA-NMFS-2020-0031-DRAFT-49741
NOAA-NMFS-2020-0031-DRAFT-49742
NOAA-NMFS-2020-0031-DRAFT-49743

Comment from Mai Hermann
Comment from Gail Plitnik
Comment from Roger May
Comment from Elena Starr
Comment from James Moran
Comment from Pete Sandifer
Comment from Brad Moss
Comment from Deb Buckler
Comment from Teri Camelio-sullivan
Comment from Tami Folkenflik
Comment from Guen Han
Comment from Jane Montonen
Comment from Hal Forsen
Comment from chantal Herron
Comment from John Laing
Comment from Kathleen Shann
Comment from Ceren Farr
Comment from Maria Asteinza
Comment from Sasha Kirby
Comment from Colonel Meyer
Comment from James Murphy
Comment from Geoffrey Brooks
Comment from Michael DeChant
Comment from Corinne Case
Comment from Karynn Merkel
Comment from Brigid McCormick
Comment from Kathleen Snedeker
Comment from Christine Gasco
Comment from Brenda Sharp
Comment from Donald Barker
Comment from Matt LaPlante
Comment from Margaret Silver
Comment from Michael Dutton
Comment from Teresa Edmonds
Comment from Mikki Royce
Comment from Jean Tabin
Comment from Susan Tomaselli
Comment from James Taft
Comment from Neill Clenaghan
Comment from Nan Singh-Bowman
Comment from Susan Hawkins

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NOAA-NMFS-2020-0031-DRAFT-44524
NOAA-NMFS-2020-0031-DRAFT-44525
NOAA-NMFS-2020-0031-DRAFT-44526
NOAA-NMFS-2020-0031-DRAFT-44527
NOAA-NMFS-2020-0031-DRAFT-44528
NOAA-NMFS-2020-0031-DRAFT-44529
NOAA-NMFS-2020-0031-DRAFT-44530
NOAA-NMFS-2020-0031-DRAFT-44531
NOAA-NMFS-2020-0031-DRAFT-44532
NOAA-NMFS-2020-0031-DRAFT-44533
NOAA-NMFS-2020-0031-DRAFT-44534
NOAA-NMFS-2020-0031-DRAFT-44535
NOAA-NMFS-2020-0031-DRAFT-44536
NOAA-NMFS-2020-0031-DRAFT-44537
NOAA-NMFS-2020-0031-DRAFT-44538
NOAA-NMFS-2020-0031-DRAFT-44539
NOAA-NMFS-2020-0031-DRAFT-44540
NOAA-NMFS-2020-0031-DRAFT-44541
NOAA-NMFS-2020-0031-DRAFT-44542
NOAA-NMFS-2020-0031-DRAFT-44543
NOAA-NMFS-2020-0031-DRAFT-44544
NOAA-NMFS-2020-0031-DRAFT-44545
NOAA-NMFS-2020-0031-DRAFT-44546
NOAA-NMFS-2020-0031-DRAFT-44547
NOAA-NMFS-2020-0031-DRAFT-44548
NOAA-NMFS-2020-0031-DRAFT-44549
NOAA-NMFS-2020-0031-DRAFT-44550
NOAA-NMFS-2020-0031-DRAFT-44551
NOAA-NMFS-2020-0031-DRAFT-44552
NOAA-NMFS-2020-0031-DRAFT-44553
NOAA-NMFS-2020-0031-DRAFT-44554
NOAA-NMFS-2020-0031-DRAFT-44555
NOAA-NMFS-2020-0031-DRAFT-44556
NOAA-NMFS-2020-0031-DRAFT-44557
NOAA-NMFS-2020-0031-DRAFT-44559
NOAA-NMFS-2020-0031-DRAFT-44560
NOAA-NMFS-2020-0031-DRAFT-44561
NOAA-NMFS-2020-0031-DRAFT-44562
NOAA-NMFS-2020-0031-DRAFT-44563
NOAA-NMFS-2020-0031-DRAFT-44564
NOAA-NMFS-2020-0031-DRAFT-44565

Comment from Anonymous Anonymous
Comment from SCHARNAGEL, JASON
Comment from Martin, Lisa
Comment from Edwards, Julie
Comment from Roberts, Elizabeth
Comment from Obr, Brooks
Comment from Gorgo, Jennifer
Comment from Atkins, Gail
Comment from butterfield, patricia
Comment from Anonymous Anonymous
Comment from Paveglio, Mary
Comment from Boehm, Janet
Comment from Gibson, Scott
Comment from TATE, NANCY
Comment from Jenkins, Donna
Comment from Anonymous Anonymous
Comment from Kim, John
Comment from Berchert, James
Comment from Voss, Vivian
Comment from Preston, Lynne
Comment from Ossenheimer, Merry
Comment from chandel, courtney
Comment from Lashaway, Lisa
Comment from Soutor, Jennifer
Comment from Anonymous Anonymous
Comment from McElroy, Sharyn
Comment from de Forges, Irène
Comment from Gx, Perry
Comment from Anonymous Anonymous
Comment from Felice, Deni
Comment from Anonymous Anonymous
Comment from Burks, Michael
Comment from Clarke, Aisha
Comment from Walsh, CD
Comment from Ishigo, Hiroko
Comment from Stillman, ron
Comment from Hebel, Kate
Comment from Wright, Darcy
Comment from Snyder, Hernani
Comment from Migliore, Bonita
Comment from Elrod, Preston

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NOAA-NMFS-2020-0031-DRAFT-49744
NOAA-NMFS-2020-0031-DRAFT-49745
NOAA-NMFS-2020-0031-DRAFT-49746
NOAA-NMFS-2020-0031-DRAFT-49747
NOAA-NMFS-2020-0031-DRAFT-49748
NOAA-NMFS-2020-0031-DRAFT-49749
NOAA-NMFS-2020-0031-DRAFT-49750
NOAA-NMFS-2020-0031-DRAFT-49751
NOAA-NMFS-2020-0031-DRAFT-49752
NOAA-NMFS-2020-0031-DRAFT-49753
NOAA-NMFS-2020-0031-DRAFT-49754
NOAA-NMFS-2020-0031-DRAFT-49755
NOAA-NMFS-2020-0031-DRAFT-49756
NOAA-NMFS-2020-0031-DRAFT-49757
NOAA-NMFS-2020-0031-DRAFT-49758
NOAA-NMFS-2020-0031-DRAFT-49759
NOAA-NMFS-2020-0031-DRAFT-49760
NOAA-NMFS-2020-0031-DRAFT-49761
NOAA-NMFS-2020-0031-DRAFT-49762
NOAA-NMFS-2020-0031-DRAFT-49763
NOAA-NMFS-2020-0031-DRAFT-49764
NOAA-NMFS-2020-0031-DRAFT-49765
NOAA-NMFS-2020-0031-DRAFT-49766
NOAA-NMFS-2020-0031-DRAFT-49767
NOAA-NMFS-2020-0031-DRAFT-49768
NOAA-NMFS-2020-0031-DRAFT-49770
NOAA-NMFS-2020-0031-DRAFT-49771
NOAA-NMFS-2020-0031-DRAFT-49772
NOAA-NMFS-2020-0031-DRAFT-49773
NOAA-NMFS-2020-0031-DRAFT-49774
NOAA-NMFS-2020-0031-DRAFT-49775
NOAA-NMFS-2020-0031-DRAFT-49776
NOAA-NMFS-2020-0031-DRAFT-49777
NOAA-NMFS-2020-0031-DRAFT-49778
NOAA-NMFS-2020-0031-DRAFT-49779
NOAA-NMFS-2020-0031-DRAFT-49780
NOAA-NMFS-2020-0031-DRAFT-49781
NOAA-NMFS-2020-0031-DRAFT-49782
NOAA-NMFS-2020-0031-DRAFT-49783
NOAA-NMFS-2020-0031-DRAFT-49784
NOAA-NMFS-2020-0031-DRAFT-49785

Comment from Mary Rose
Comment from Jen Dunn
Comment from Nicole Deter
Comment from Dr Dunn
Comment from Esther Weaver
Comment from Anonymous Anonymous
Comment from Gina Epley
Comment from Rosemarie Nielsen
Comment from Lary McKee
Comment from joan Peaslee
Comment from Robert Rivera
Comment from Marcia Schmelzer
Comment from Eleanor Weisman
Comment from Harriett Pooler
Comment from Elizabeth Weavil
Comment from Julia Martin
Comment from Ruth Arnone
Comment from Tina Criscione
Comment from jai parekh
Comment from Linda Bridges
Comment from Ana Herold
Comment from Nichole Graeber
Comment from Charlotte Pisoni
Comment from MIRIAM MORAN
Comment from Rosemary Futrovsky
Comment from Cheryl Tremblay
Comment from William Cromwick
Comment from Lisa Perry
Comment from Leslie Miller
Comment from Oakley Duryea
Comment from Sharyn Dreyer
Comment from Sheilagh Bergeron
Comment from Jennifer Hagens
Comment from Paul Emerson
Comment from Karen Galecki
Comment from Kim Altana
Comment from Sheree Slone
Comment from Maria Cadillac
Comment from Scott Wahlstrom
Comment from Barbara Gagnon
Comment from Marcus Maloney

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NOAA-NMFS-2020-0031-DRAFT-44566
NOAA-NMFS-2020-0031-DRAFT-44567
NOAA-NMFS-2020-0031-DRAFT-44569
NOAA-NMFS-2020-0031-DRAFT-44570
NOAA-NMFS-2020-0031-DRAFT-44571
NOAA-NMFS-2020-0031-DRAFT-44572
NOAA-NMFS-2020-0031-DRAFT-44573
NOAA-NMFS-2020-0031-DRAFT-44574
NOAA-NMFS-2020-0031-DRAFT-44575
NOAA-NMFS-2020-0031-DRAFT-44576
NOAA-NMFS-2020-0031-DRAFT-44577
NOAA-NMFS-2020-0031-DRAFT-44578
NOAA-NMFS-2020-0031-DRAFT-44579
NOAA-NMFS-2020-0031-DRAFT-44580
NOAA-NMFS-2020-0031-DRAFT-44581
NOAA-NMFS-2020-0031-DRAFT-44582
NOAA-NMFS-2020-0031-DRAFT-44583
NOAA-NMFS-2020-0031-DRAFT-44584
NOAA-NMFS-2020-0031-DRAFT-44585
NOAA-NMFS-2020-0031-DRAFT-44586
NOAA-NMFS-2020-0031-DRAFT-44587
NOAA-NMFS-2020-0031-DRAFT-44588
NOAA-NMFS-2020-0031-DRAFT-44589
NOAA-NMFS-2020-0031-DRAFT-44590
NOAA-NMFS-2020-0031-DRAFT-44591
NOAA-NMFS-2020-0031-DRAFT-44592
NOAA-NMFS-2020-0031-DRAFT-44593
NOAA-NMFS-2020-0031-DRAFT-44594
NOAA-NMFS-2020-0031-DRAFT-44595
NOAA-NMFS-2020-0031-DRAFT-44596
NOAA-NMFS-2020-0031-DRAFT-44598
NOAA-NMFS-2020-0031-DRAFT-44599
NOAA-NMFS-2020-0031-DRAFT-44600
NOAA-NMFS-2020-0031-DRAFT-44601
NOAA-NMFS-2020-0031-DRAFT-44602
NOAA-NMFS-2020-0031-DRAFT-44603
NOAA-NMFS-2020-0031-DRAFT-44604
NOAA-NMFS-2020-0031-DRAFT-44605
NOAA-NMFS-2020-0031-DRAFT-44606
NOAA-NMFS-2020-0031-DRAFT-44607
NOAA-NMFS-2020-0031-DRAFT-44608

Comment from Anonymous Anonymous
Comment from Cox, Carol
Comment from Cuneo, Sherrell
Comment from Red, Pure
Comment from McKee, Sally
Comment from HUTCHINS, RENEE
Comment from Morsellino, Arlene
Comment from Zirakian, Diane
Comment from Lee, Jill
Comment from Anonymous Anonymous
Comment from Biggs, Sally
Comment from Cammarata, Donn
Comment from golick, jan
Comment from Sturt, Pamela
Comment from malcher, denise
Comment from Webb, Carol
Comment from Anonymous Anonymous
Comment from Holmes, Carolyn
Comment from Rose, Skye
Comment from Myers, Ann
Comment from Kane, JENNIFER
Comment from Harmatz, Jen
Comment from Smith, Bonnie J.
Comment from Pech, Jim
Comment from Bernardo, Kathleen
Comment from Silvano, Liliana
Comment from DeGerolamo, Jennifer
Comment from Haflich, Anne
Comment from Shanahan, Mark
Comment from Cunningham, Susan
Comment from Thomas, Timothy
Comment from Wheeler, Vicki
Comment from Jones, Tony
Comment from Carbone, Christopher
Comment from Irvin, Yvonne
Comment from Anonymous Anonymous
Comment from Tulo, Jennifer
Comment from Henckel, Judith
Comment from Lewis, William
Comment from Cerretani, Holly
Comment from Eisen, Harvey

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NOAA-NMFS-2020-0031-DRAFT-49787
NOAA-NMFS-2020-0031-DRAFT-49788
NOAA-NMFS-2020-0031-DRAFT-49789
NOAA-NMFS-2020-0031-DRAFT-49790
NOAA-NMFS-2020-0031-DRAFT-49791
NOAA-NMFS-2020-0031-DRAFT-49792
NOAA-NMFS-2020-0031-DRAFT-49793
NOAA-NMFS-2020-0031-DRAFT-49794
NOAA-NMFS-2020-0031-DRAFT-49795
NOAA-NMFS-2020-0031-DRAFT-49796
NOAA-NMFS-2020-0031-DRAFT-49798
NOAA-NMFS-2020-0031-DRAFT-49799
NOAA-NMFS-2020-0031-DRAFT-49800
NOAA-NMFS-2020-0031-DRAFT-49801
NOAA-NMFS-2020-0031-DRAFT-49802
NOAA-NMFS-2020-0031-DRAFT-49803
NOAA-NMFS-2020-0031-DRAFT-49804
NOAA-NMFS-2020-0031-DRAFT-49805
NOAA-NMFS-2020-0031-DRAFT-49806
NOAA-NMFS-2020-0031-DRAFT-49808
NOAA-NMFS-2020-0031-DRAFT-49809
NOAA-NMFS-2020-0031-DRAFT-49810
NOAA-NMFS-2020-0031-DRAFT-49811
NOAA-NMFS-2020-0031-DRAFT-49812
NOAA-NMFS-2020-0031-DRAFT-49813
NOAA-NMFS-2020-0031-DRAFT-49814
NOAA-NMFS-2020-0031-DRAFT-49815
NOAA-NMFS-2020-0031-DRAFT-49816
NOAA-NMFS-2020-0031-DRAFT-49817
NOAA-NMFS-2020-0031-DRAFT-49818
NOAA-NMFS-2020-0031-DRAFT-49819
NOAA-NMFS-2020-0031-DRAFT-49820
NOAA-NMFS-2020-0031-DRAFT-49821
NOAA-NMFS-2020-0031-DRAFT-49822
NOAA-NMFS-2020-0031-DRAFT-49823
NOAA-NMFS-2020-0031-DRAFT-49824
NOAA-NMFS-2020-0031-DRAFT-49825
NOAA-NMFS-2020-0031-DRAFT-49826
NOAA-NMFS-2020-0031-DRAFT-49827
NOAA-NMFS-2020-0031-DRAFT-49828
NOAA-NMFS-2020-0031-DRAFT-49829

Comment from Susan Wechsler
Comment from Johann Sproule
Comment from Jean Saja
Comment from Mynka Draper
Comment from Kris Lacy
Comment from Suzanne Bompensa
Comment from Tony Gibart
Comment from Ruth Quinones
Comment from Linda Rudman
Comment from Jim Lykins
Comment from Sallie Delahoussaye
Comment from Terri Dumala
Comment from Elaine Eudy
Comment from david Wilson
Comment from DAVID PREECE
Comment from Ken Rosen
Comment from Paula Lima
Comment from Dottie Sober
Comment from Michele Monforte
Comment from Patty Roszko
Comment from Myrna Torrie
Comment from kathleen king
Comment from stacey francis
Comment from Karen Duckwall
Comment from Anonymous Anonymous
Comment from Karen Deckel
Comment from Jeffery Morgenthaler
Comment from Paula Cummings
Comment from Katherine Brown
Comment from Linda Rudman
Comment from Cathy Becker
Comment from Charles Cassagnol
Comment from David Webb
Comment from Virginia Leslie
Comment from Joel DeStefano
Comment from Tom Wicker
Comment from Barbara Burton
Comment from Nancy Fahey
Comment from Allison Jones
Comment from John Furlong
Comment from Roth Woods

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44609
NOAA-NMFS-2020-0031-DRAFT-44610
NOAA-NMFS-2020-0031-DRAFT-44611
NOAA-NMFS-2020-0031-DRAFT-44612
NOAA-NMFS-2020-0031-DRAFT-44613
NOAA-NMFS-2020-0031-DRAFT-44614
NOAA-NMFS-2020-0031-DRAFT-44615
NOAA-NMFS-2020-0031-DRAFT-44616
NOAA-NMFS-2020-0031-DRAFT-44617
NOAA-NMFS-2020-0031-DRAFT-44618
NOAA-NMFS-2020-0031-DRAFT-44619
NOAA-NMFS-2020-0031-DRAFT-44620
NOAA-NMFS-2020-0031-DRAFT-44621
NOAA-NMFS-2020-0031-DRAFT-44622
NOAA-NMFS-2020-0031-DRAFT-44623
NOAA-NMFS-2020-0031-DRAFT-44624
NOAA-NMFS-2020-0031-DRAFT-44625
NOAA-NMFS-2020-0031-DRAFT-44626
NOAA-NMFS-2020-0031-DRAFT-44627
NOAA-NMFS-2020-0031-DRAFT-44628
NOAA-NMFS-2020-0031-DRAFT-44629
NOAA-NMFS-2020-0031-DRAFT-44630
NOAA-NMFS-2020-0031-DRAFT-44631
NOAA-NMFS-2020-0031-DRAFT-44632
NOAA-NMFS-2020-0031-DRAFT-44633
NOAA-NMFS-2020-0031-DRAFT-44635
NOAA-NMFS-2020-0031-DRAFT-44636
NOAA-NMFS-2020-0031-DRAFT-44637
NOAA-NMFS-2020-0031-DRAFT-44638
NOAA-NMFS-2020-0031-DRAFT-44639
NOAA-NMFS-2020-0031-DRAFT-44640
NOAA-NMFS-2020-0031-DRAFT-44641
NOAA-NMFS-2020-0031-DRAFT-44642
NOAA-NMFS-2020-0031-DRAFT-44643
NOAA-NMFS-2020-0031-DRAFT-44644
NOAA-NMFS-2020-0031-DRAFT-44645
NOAA-NMFS-2020-0031-DRAFT-44646
NOAA-NMFS-2020-0031-DRAFT-44647
NOAA-NMFS-2020-0031-DRAFT-44648
NOAA-NMFS-2020-0031-DRAFT-44649
NOAA-NMFS-2020-0031-DRAFT-44650

Comment from Nelson, Helen
Comment from Anonymous Anonymous
Comment from Rodgers, Julie
Comment from Korner, Jeff
Comment from Stegman, Cathy &
Todd Stegman
Comment from Khadka, Ayushma
Comment from Beck, Dave
Comment from Okone, Brandon
Comment from Clark, Kristina
Comment from madden, Kendra
Comment from Harlib, Amy
Comment from Coughlin, Laureen
Comment from Emmer, Matthew
Comment from Chapman, Bridget
Comment from Ortiz, Leticia
Comment from Ortiz, Victor
Comment from grabsch, dagmar
Comment from Schreiber, Janet
Comment from Thompson, Sally
Comment from Waggener, Janis
Comment from Rosenblum, Allan
Comment from Anonymous Anonymous
Comment from Montague, Edna
Comment from Anonymous Anonymous
Comment from Jolivette, Jane
Comment from Skibinski, Lynn
Comment from Cutts, Bruce
Comment from valencia, rio
Comment from Minsky, Nina
Comment from Roberts, Donna
Comment from Koff, Marilyn
Comment from Pedersen, Debra
Comment from Cambouris, Jeanne
Comment from Karth, Etta
Comment from Baker, Megan
Comment from Santiago-Floyd, Mary
Comment from Furutate, Midori
Comment from Anonymous Anonymous
Comment from Armenteros, Clara
Comment from ABBOTT, ROBERT
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-49830
NOAA-NMFS-2020-0031-DRAFT-49831
NOAA-NMFS-2020-0031-DRAFT-49832
NOAA-NMFS-2020-0031-DRAFT-49833
NOAA-NMFS-2020-0031-DRAFT-49834
NOAA-NMFS-2020-0031-DRAFT-49835
NOAA-NMFS-2020-0031-DRAFT-49836
NOAA-NMFS-2020-0031-DRAFT-49837
NOAA-NMFS-2020-0031-DRAFT-49838
NOAA-NMFS-2020-0031-DRAFT-49839
NOAA-NMFS-2020-0031-DRAFT-49840
NOAA-NMFS-2020-0031-DRAFT-49841
NOAA-NMFS-2020-0031-DRAFT-49843
NOAA-NMFS-2020-0031-DRAFT-49844
NOAA-NMFS-2020-0031-DRAFT-49845
NOAA-NMFS-2020-0031-DRAFT-49846
NOAA-NMFS-2020-0031-DRAFT-49847
NOAA-NMFS-2020-0031-DRAFT-49848
NOAA-NMFS-2020-0031-DRAFT-49849
NOAA-NMFS-2020-0031-DRAFT-49850
NOAA-NMFS-2020-0031-DRAFT-49851
NOAA-NMFS-2020-0031-DRAFT-49852
NOAA-NMFS-2020-0031-DRAFT-49853
NOAA-NMFS-2020-0031-DRAFT-49854
NOAA-NMFS-2020-0031-DRAFT-49855
NOAA-NMFS-2020-0031-DRAFT-49856
NOAA-NMFS-2020-0031-DRAFT-49857
NOAA-NMFS-2020-0031-DRAFT-49858
NOAA-NMFS-2020-0031-DRAFT-49859
NOAA-NMFS-2020-0031-DRAFT-49860
NOAA-NMFS-2020-0031-DRAFT-49862
NOAA-NMFS-2020-0031-DRAFT-49863
NOAA-NMFS-2020-0031-DRAFT-49864
NOAA-NMFS-2020-0031-DRAFT-49865
NOAA-NMFS-2020-0031-DRAFT-49866
NOAA-NMFS-2020-0031-DRAFT-49867
NOAA-NMFS-2020-0031-DRAFT-49868
NOAA-NMFS-2020-0031-DRAFT-49869
NOAA-NMFS-2020-0031-DRAFT-49870
NOAA-NMFS-2020-0031-DRAFT-49871
NOAA-NMFS-2020-0031-DRAFT-49872

Comment from Terri Resley
Comment from Anonymous Anonymous
Comment from Elaine Walker
Comment from Charlene Kerchevall
Comment from Kristine Moy
Comment from Laurie Lagoe
Comment from Rev. Cline
Comment from Carol Prunhuber
Comment from Catharine McEachern
Comment from Tristan Sophia
Comment from Kari Mueller
Comment from AnnaLea Elliott
Comment from Isabella Ornaf
Comment from Donna Cristo
Comment from Julia Hathaway
Comment from carole scott
Comment from robin nadel
Comment from Wendi Favreau
Comment from Scott Powers
Comment from carolyn stankowitz
Comment from MARY EMERICH
Comment from Alix Bowman
Comment from William Anderson
Comment from Christina Tomlinson
Comment from Jaime Ramos
Comment from Geri Marshall
Comment from Douglas Roberson
Comment from Victoria Sola
Comment from Barbara Blount-Powell
Comment from MS Tomasello
Comment from Anissa , Guettiche
Comment from Alisa Risso
Comment from O'Brien, Karen
Comment from O'Brien, William
Comment from George Alderson
Comment from Ray, Leslie
Comment from Scheuer, Matt
Comment from Jorge Andromidas
Comment from Richard Berman
Comment from Tania Dimov
Comment from Larry Trochtenberg

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44651
NOAA-NMFS-2020-0031-DRAFT-44652
NOAA-NMFS-2020-0031-DRAFT-44653
NOAA-NMFS-2020-0031-DRAFT-44654
NOAA-NMFS-2020-0031-DRAFT-44655
NOAA-NMFS-2020-0031-DRAFT-44656
NOAA-NMFS-2020-0031-DRAFT-44657
NOAA-NMFS-2020-0031-DRAFT-44658
NOAA-NMFS-2020-0031-DRAFT-44659
NOAA-NMFS-2020-0031-DRAFT-44660
NOAA-NMFS-2020-0031-DRAFT-44661
NOAA-NMFS-2020-0031-DRAFT-44662
NOAA-NMFS-2020-0031-DRAFT-44663
NOAA-NMFS-2020-0031-DRAFT-44664
NOAA-NMFS-2020-0031-DRAFT-44665
NOAA-NMFS-2020-0031-DRAFT-44666
NOAA-NMFS-2020-0031-DRAFT-44667
NOAA-NMFS-2020-0031-DRAFT-44668
NOAA-NMFS-2020-0031-DRAFT-44669
NOAA-NMFS-2020-0031-DRAFT-44670
NOAA-NMFS-2020-0031-DRAFT-44671
NOAA-NMFS-2020-0031-DRAFT-44672
NOAA-NMFS-2020-0031-DRAFT-44673
NOAA-NMFS-2020-0031-DRAFT-44674
NOAA-NMFS-2020-0031-DRAFT-44676
NOAA-NMFS-2020-0031-DRAFT-44677
NOAA-NMFS-2020-0031-DRAFT-44678
NOAA-NMFS-2020-0031-DRAFT-44679
NOAA-NMFS-2020-0031-DRAFT-44681
NOAA-NMFS-2020-0031-DRAFT-44682
NOAA-NMFS-2020-0031-DRAFT-44683
NOAA-NMFS-2020-0031-DRAFT-44684
NOAA-NMFS-2020-0031-DRAFT-44685
NOAA-NMFS-2020-0031-DRAFT-44686
NOAA-NMFS-2020-0031-DRAFT-44687
NOAA-NMFS-2020-0031-DRAFT-44688
NOAA-NMFS-2020-0031-DRAFT-44689
NOAA-NMFS-2020-0031-DRAFT-44690
NOAA-NMFS-2020-0031-DRAFT-44691
NOAA-NMFS-2020-0031-DRAFT-44692
NOAA-NMFS-2020-0031-DRAFT-44693

Comment from Anonymous Anonymous
Comment from Charter, Donna
Comment from Perala, Connie
Comment from Garretson, Jean
Comment from Clark, Tammy
Comment from Ham, Michele
Comment from MEDINA, MARIO
Comment from Borzik, Joette
Comment from Anonymous Anonymous
Comment from Sherman, Roger
Comment from McFadden, Stephanie
Comment from Anonymous Anonymous
Comment from Grunspan, Larry
Comment from Cohen, Natalie
Comment from Russell, Vicky
Comment from Campbell, Therese
Comment from Diaz, Gabriela
Comment from Lane, Laurie
Comment from Kuester, Keitha
Comment from Wolf, Rohana
Comment from Pellman, Julie
Comment from Anonymous Anonymous
Comment from F., Angie
Comment from Ishmael, Elizabeth
Comment from Ricard, Darleen
Comment from Whitley, Tracey
Comment from Anonymous Anonymous
Comment from Dionisio-Bachi, Christine
Comment from Hipszky, Ginger
Comment from Stewart, Christine
Comment from Allison, Connie
Comment from Hudson, T
Comment from Collins, Laura
Comment from Krueger, Gloria
Comment from Withnall, Emily
Comment from Peters, Valerie
Comment from Bachi, David
Comment from Dransfield, Andrea
Comment from lenard, dena
Comment from Black, Elizabeth Lea
Comment from Ryan, Diane

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NOAA-NMFS-2020-0031-DRAFT-49873
NOAA-NMFS-2020-0031-DRAFT-49874
NOAA-NMFS-2020-0031-DRAFT-49875
NOAA-NMFS-2020-0031-DRAFT-49876
NOAA-NMFS-2020-0031-DRAFT-49877
NOAA-NMFS-2020-0031-DRAFT-49878
NOAA-NMFS-2020-0031-DRAFT-49879
NOAA-NMFS-2020-0031-DRAFT-49880
NOAA-NMFS-2020-0031-DRAFT-49881
NOAA-NMFS-2020-0031-DRAFT-49882
NOAA-NMFS-2020-0031-DRAFT-49883
NOAA-NMFS-2020-0031-DRAFT-49884
NOAA-NMFS-2020-0031-DRAFT-49885
NOAA-NMFS-2020-0031-DRAFT-49886
NOAA-NMFS-2020-0031-DRAFT-49887
NOAA-NMFS-2020-0031-DRAFT-49888
NOAA-NMFS-2020-0031-DRAFT-49889
NOAA-NMFS-2020-0031-DRAFT-49890
NOAA-NMFS-2020-0031-DRAFT-49891
NOAA-NMFS-2020-0031-DRAFT-49892
NOAA-NMFS-2020-0031-DRAFT-49893
NOAA-NMFS-2020-0031-DRAFT-49894
NOAA-NMFS-2020-0031-DRAFT-49895
NOAA-NMFS-2020-0031-DRAFT-49896
NOAA-NMFS-2020-0031-DRAFT-49897
NOAA-NMFS-2020-0031-DRAFT-49898
NOAA-NMFS-2020-0031-DRAFT-49899
NOAA-NMFS-2020-0031-DRAFT-49900
NOAA-NMFS-2020-0031-DRAFT-49901
NOAA-NMFS-2020-0031-DRAFT-49902
NOAA-NMFS-2020-0031-DRAFT-49903
NOAA-NMFS-2020-0031-DRAFT-49904
NOAA-NMFS-2020-0031-DRAFT-49905
NOAA-NMFS-2020-0031-DRAFT-49906
NOAA-NMFS-2020-0031-DRAFT-49907
NOAA-NMFS-2020-0031-DRAFT-49908
NOAA-NMFS-2020-0031-DRAFT-49909
NOAA-NMFS-2020-0031-DRAFT-49910
NOAA-NMFS-2020-0031-DRAFT-49911
NOAA-NMFS-2020-0031-DRAFT-49912
NOAA-NMFS-2020-0031-DRAFT-49913

Comment from karen horton
Comment from nanci nugent
Comment from Lynnette Spratley
Comment from Cindy Lance
Comment from WALTER EMERICH
Comment from B. Lemonik
Comment from Oscar Zamora
Comment from Carol Patton
Comment from Lyda Stillwell
Comment from Lillian Hyland
Comment from Shane Wade
Comment from Joy Davis
Comment from Carlos Arnold
Comment from Kathleen Lewis
Comment from Judith Weis
Comment from Jan Edmunds
Comment from Rozalind Smith
Comment from Laura Howes
Comment from Barry Goldfarb
Comment from Cindy Schultz
Comment from Stacy Lepkowski
Comment from Paul Bolden
Comment from Judith Garson
Comment from Richard Eyck
Comment from Yefim Maizel
Comment from Ruth Mara
Comment from Francis Orozco
Comment from Dorothy Knudson
Comment from Michael Stewart
Comment from Roel Bergema
Comment from So Allen
Comment from Tina baker
Comment from Jenifer Vaughan
Comment from Ellen Walsh
Comment from Anonymous Anonymous
Comment from Michael Peterman
Comment from Mike Souza
Comment from Andrew Jones
Comment from Marcia Godich
Comment from HENRY MILLER
Comment from Donalyn Gross

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NOAA-NMFS-2020-0031-DRAFT-44694
NOAA-NMFS-2020-0031-DRAFT-44695
NOAA-NMFS-2020-0031-DRAFT-44696
NOAA-NMFS-2020-0031-DRAFT-44697
NOAA-NMFS-2020-0031-DRAFT-44698
NOAA-NMFS-2020-0031-DRAFT-44699
NOAA-NMFS-2020-0031-DRAFT-44700
NOAA-NMFS-2020-0031-DRAFT-44701
NOAA-NMFS-2020-0031-DRAFT-44702
NOAA-NMFS-2020-0031-DRAFT-44703
NOAA-NMFS-2020-0031-DRAFT-44704
NOAA-NMFS-2020-0031-DRAFT-44705
NOAA-NMFS-2020-0031-DRAFT-44706
NOAA-NMFS-2020-0031-DRAFT-44707
NOAA-NMFS-2020-0031-DRAFT-44708
NOAA-NMFS-2020-0031-DRAFT-44709
NOAA-NMFS-2020-0031-DRAFT-44710
NOAA-NMFS-2020-0031-DRAFT-44711
NOAA-NMFS-2020-0031-DRAFT-44712
NOAA-NMFS-2020-0031-DRAFT-44713
NOAA-NMFS-2020-0031-DRAFT-44715
NOAA-NMFS-2020-0031-DRAFT-44716
NOAA-NMFS-2020-0031-DRAFT-44717
NOAA-NMFS-2020-0031-DRAFT-44718
NOAA-NMFS-2020-0031-DRAFT-44719
NOAA-NMFS-2020-0031-DRAFT-44720
NOAA-NMFS-2020-0031-DRAFT-44721
NOAA-NMFS-2020-0031-DRAFT-44722
NOAA-NMFS-2020-0031-DRAFT-44723
NOAA-NMFS-2020-0031-DRAFT-44724
NOAA-NMFS-2020-0031-DRAFT-44725
NOAA-NMFS-2020-0031-DRAFT-44726
NOAA-NMFS-2020-0031-DRAFT-44727
NOAA-NMFS-2020-0031-DRAFT-44728
NOAA-NMFS-2020-0031-DRAFT-44729
NOAA-NMFS-2020-0031-DRAFT-44730
NOAA-NMFS-2020-0031-DRAFT-44731
NOAA-NMFS-2020-0031-DRAFT-44732
NOAA-NMFS-2020-0031-DRAFT-44733
NOAA-NMFS-2020-0031-DRAFT-44734
NOAA-NMFS-2020-0031-DRAFT-44735

Comment from R, Lynn
Comment from Anonymous Anonymous
Comment from Garbrick, Kathe
Comment from Gaffney, Vicki
Comment from Bassman, Jana
Comment from Quigley, Lori
Comment from Armstrong, Chrishall
Comment from Marshall, Erin
Comment from Jason, Annemarie
Comment from Janssen, Hillie
Comment from vibber, van
Comment from Cole, Hannah
Comment from Scott, Raeann
Comment from Bottorff, Virginia
Comment from Bertelsen, Jeannet
Comment from Luciano, Deborah
Comment from Bender, Robert
Comment from Cushing, Wendy
Comment from Taylor, Mary Ann
Comment from Lanzarotta, Mary
Comment from McGinnis, Nikki
Comment from Mason, Tracey
Comment from Waterman, Glenna
Comment from Smith, Jennifer
Comment from Riendeau, Gwenevier
Comment from Watson, Carol Knight
Comment from Cassidy, Jessica
Comment from Pristin, Dmitry
Comment from kowalski, josephine
Comment from Mackiewicz, Frances
Comment from Mays, Kathryn
Comment from McLarnon, Tracy
Comment from Harrington, Michelle
Comment from Arnold, Kathleen
Comment from Silberberg, Martin
Comment from Brown, Maggi
Comment from Anonymous Anonymous
Comment from Morrow, Karen
Comment from Anonymous Anonymous
Comment from Murphy, Judith
Comment from Weaver, Tammy

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NOAA-NMFS-2020-0031-DRAFT-49914
NOAA-NMFS-2020-0031-DRAFT-49915
NOAA-NMFS-2020-0031-DRAFT-49916
NOAA-NMFS-2020-0031-DRAFT-49917
NOAA-NMFS-2020-0031-DRAFT-49918
NOAA-NMFS-2020-0031-DRAFT-49919
NOAA-NMFS-2020-0031-DRAFT-49920
NOAA-NMFS-2020-0031-DRAFT-49922
NOAA-NMFS-2020-0031-DRAFT-49923
NOAA-NMFS-2020-0031-DRAFT-49924
NOAA-NMFS-2020-0031-DRAFT-49925
NOAA-NMFS-2020-0031-DRAFT-49926
NOAA-NMFS-2020-0031-DRAFT-49927
NOAA-NMFS-2020-0031-DRAFT-49928
NOAA-NMFS-2020-0031-DRAFT-49929
NOAA-NMFS-2020-0031-DRAFT-49930
NOAA-NMFS-2020-0031-DRAFT-49931
NOAA-NMFS-2020-0031-DRAFT-49932
NOAA-NMFS-2020-0031-DRAFT-49933
NOAA-NMFS-2020-0031-DRAFT-49934
NOAA-NMFS-2020-0031-DRAFT-49935
NOAA-NMFS-2020-0031-DRAFT-49936
NOAA-NMFS-2020-0031-DRAFT-49937
NOAA-NMFS-2020-0031-DRAFT-49938
NOAA-NMFS-2020-0031-DRAFT-49939
NOAA-NMFS-2020-0031-DRAFT-49940
NOAA-NMFS-2020-0031-DRAFT-49941
NOAA-NMFS-2020-0031-DRAFT-49942
NOAA-NMFS-2020-0031-DRAFT-49943
NOAA-NMFS-2020-0031-DRAFT-49944
NOAA-NMFS-2020-0031-DRAFT-49945
NOAA-NMFS-2020-0031-DRAFT-49946
NOAA-NMFS-2020-0031-DRAFT-49947
NOAA-NMFS-2020-0031-DRAFT-49948
NOAA-NMFS-2020-0031-DRAFT-49949
NOAA-NMFS-2020-0031-DRAFT-49950
NOAA-NMFS-2020-0031-DRAFT-49951
NOAA-NMFS-2020-0031-DRAFT-49952
NOAA-NMFS-2020-0031-DRAFT-49953
NOAA-NMFS-2020-0031-DRAFT-49954
NOAA-NMFS-2020-0031-DRAFT-49955

Comment from KAREN SMITH
Comment from Ed Perry
Comment from Barbara Brown
Comment from Camille McPhee
Comment from DiMatteo, Dre
Comment from DiMatteo, Dre
Comment from Michele Roberts
Comment from Jim Clapp
Comment from Julia Black
Comment from Roberta Parrish
Comment from DANIEL WAITE
Comment from Matthew Grussing
Comment from Trish stevens
Comment from Kim Wick
Comment from Nancy Perkins
Comment from Paige Harrison
Comment from tess Fraad
Comment from Christopher Michaels
Comment from Donita Sparks
Comment from Debra Skup
Comment from Susan McGraw-Keber
Comment from Pat Pike-Dimel
Comment from Kathy Traver
Comment from Karen Wagner
Comment from Abigail Gindele
Comment from Noreen lassandrello
Comment from Bret Sher
Comment from Rosemary Caolo
Comment from Diane Weinstein
Comment from KELLY BARRIOS
Comment from Rhonda Robinson
Comment from Deborah Allison
Comment from Eve Botelho
Comment from Kkm H
Comment from Susan Mohler
Comment from Hugh Harwell
Comment from julia knaz
Comment from Michelle Sewald
Comment from Chad Johnson
Comment from Diane Knight
Comment from Tom Sharkey

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NOAA-NMFS-2020-0031-DRAFT-44736
NOAA-NMFS-2020-0031-DRAFT-44737
NOAA-NMFS-2020-0031-DRAFT-44738
NOAA-NMFS-2020-0031-DRAFT-44739
NOAA-NMFS-2020-0031-DRAFT-44740
NOAA-NMFS-2020-0031-DRAFT-44741
NOAA-NMFS-2020-0031-DRAFT-44743
NOAA-NMFS-2020-0031-DRAFT-44744
NOAA-NMFS-2020-0031-DRAFT-44745
NOAA-NMFS-2020-0031-DRAFT-44746
NOAA-NMFS-2020-0031-DRAFT-44748
NOAA-NMFS-2020-0031-DRAFT-44749
NOAA-NMFS-2020-0031-DRAFT-44750
NOAA-NMFS-2020-0031-DRAFT-44751
NOAA-NMFS-2020-0031-DRAFT-44752
NOAA-NMFS-2020-0031-DRAFT-44753
NOAA-NMFS-2020-0031-DRAFT-44754
NOAA-NMFS-2020-0031-DRAFT-44755
NOAA-NMFS-2020-0031-DRAFT-44756
NOAA-NMFS-2020-0031-DRAFT-44757
NOAA-NMFS-2020-0031-DRAFT-44758
NOAA-NMFS-2020-0031-DRAFT-44759
NOAA-NMFS-2020-0031-DRAFT-44760
NOAA-NMFS-2020-0031-DRAFT-44761
NOAA-NMFS-2020-0031-DRAFT-44762
NOAA-NMFS-2020-0031-DRAFT-44763
NOAA-NMFS-2020-0031-DRAFT-44765
NOAA-NMFS-2020-0031-DRAFT-44766
NOAA-NMFS-2020-0031-DRAFT-44767
NOAA-NMFS-2020-0031-DRAFT-44768
NOAA-NMFS-2020-0031-DRAFT-44769
NOAA-NMFS-2020-0031-DRAFT-44770
NOAA-NMFS-2020-0031-DRAFT-44771
NOAA-NMFS-2020-0031-DRAFT-44772
NOAA-NMFS-2020-0031-DRAFT-44773
NOAA-NMFS-2020-0031-DRAFT-44774
NOAA-NMFS-2020-0031-DRAFT-44775
NOAA-NMFS-2020-0031-DRAFT-44776
NOAA-NMFS-2020-0031-DRAFT-44777
NOAA-NMFS-2020-0031-DRAFT-44778
NOAA-NMFS-2020-0031-DRAFT-44779

Comment from Anonymous Anonymous
Comment from Totty, Mary
Comment from Thorpe, Autumn
Comment from DeLuna, Yvonne
Comment from Fochs, Ryan
Comment from Macnamara, Alicia
Comment from Morley, Krista
Comment from Durkin, Samuel
Comment from Foster, Barbara
Comment from Mead-Campion, Dana
Comment from Teel, Shannon
Comment from Rodriguez, Rebeca
Comment from Takatsch, Julie
Comment from Ford, Deryl
Comment from Sperry, Linda
Comment from Morgan, Nancy
Comment from rankin, william
Comment from Polley, Daniel
Comment from Stone, Steve
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Tuznik, Natascha
Comment from Walton, Christine
Comment from Ziegler, Kim
Comment from Montell, Paul
Comment from Lewis, Verlene
Comment from Frot, Pierre-Emmanuel
Comment from Mayer, Karol
Comment from Ringland, Lezlie
Comment from Takaichi, Sue
Comment from Anonymous Anonymous
Comment from Lowrey, Jan
Comment from Anonymous Anonymous
Comment from Hani, Ki
Comment from Obr, Brooks
Comment from Tschirhart, Richard
Comment from Anonymous Anonymous
Comment from Hummers, JoAnn
Comment from Lancaster, Alicia
Comment from Carideo, Ida
Comment from McVey, Barbara

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NOAA-NMFS-2020-0031-DRAFT-49956
NOAA-NMFS-2020-0031-DRAFT-49957
NOAA-NMFS-2020-0031-DRAFT-49958
NOAA-NMFS-2020-0031-DRAFT-49959
NOAA-NMFS-2020-0031-DRAFT-49960
NOAA-NMFS-2020-0031-DRAFT-49961
NOAA-NMFS-2020-0031-DRAFT-49963
NOAA-NMFS-2020-0031-DRAFT-49964
NOAA-NMFS-2020-0031-DRAFT-49965
NOAA-NMFS-2020-0031-DRAFT-49966
NOAA-NMFS-2020-0031-DRAFT-49967
NOAA-NMFS-2020-0031-DRAFT-49968
NOAA-NMFS-2020-0031-DRAFT-49969
NOAA-NMFS-2020-0031-DRAFT-49970
NOAA-NMFS-2020-0031-DRAFT-49971
NOAA-NMFS-2020-0031-DRAFT-49972
NOAA-NMFS-2020-0031-DRAFT-49973
NOAA-NMFS-2020-0031-DRAFT-49974
NOAA-NMFS-2020-0031-DRAFT-49975
NOAA-NMFS-2020-0031-DRAFT-49976
NOAA-NMFS-2020-0031-DRAFT-49977
NOAA-NMFS-2020-0031-DRAFT-49978
NOAA-NMFS-2020-0031-DRAFT-49979
NOAA-NMFS-2020-0031-DRAFT-49980
NOAA-NMFS-2020-0031-DRAFT-49981
NOAA-NMFS-2020-0031-DRAFT-49982
NOAA-NMFS-2020-0031-DRAFT-49983
NOAA-NMFS-2020-0031-DRAFT-49984
NOAA-NMFS-2020-0031-DRAFT-49985
NOAA-NMFS-2020-0031-DRAFT-49986
NOAA-NMFS-2020-0031-DRAFT-49987
NOAA-NMFS-2020-0031-DRAFT-49988
NOAA-NMFS-2020-0031-DRAFT-49989
NOAA-NMFS-2020-0031-DRAFT-49990
NOAA-NMFS-2020-0031-DRAFT-49991
NOAA-NMFS-2020-0031-DRAFT-49992
NOAA-NMFS-2020-0031-DRAFT-49993
NOAA-NMFS-2020-0031-DRAFT-49994
NOAA-NMFS-2020-0031-DRAFT-49995
NOAA-NMFS-2020-0031-DRAFT-49997
NOAA-NMFS-2020-0031-DRAFT-49998

Comment from Karen Coppock
Comment from Peter Mark
Comment from Lauren Murdock
Comment from Joy Marzolf
Comment from Margaret Goodman
Comment from Michael Oblander
Comment from Alexandra Sweitzer
Comment from Susan Dorchin
Comment from Cecelia Wankel
Comment from Scarlett Bacon
Comment from M Rivera
Comment from Pat Erickson
Comment from Ed Haff
Comment from Paula Powers
Comment from Michele Roberts
Comment from Terry Tedesco
Comment from NORA HILFINGER
Comment from Patricia Santos
Comment from Todd Heiler
Comment from Mike Vanlandingham
Comment from Catherine Ayoub
Comment from David Finke
Comment from Donald Williams
Comment from David Schwartz
Comment from Sylvia Vairo
Comment from Karen Mumford
Comment from Jeanne Larson
Comment from Ken Horkavy
Comment from Ann Cunningham
Comment from Jim Swirczynski
Comment from Joan Seguin
Comment from Lisa Witham
Comment from Marla Miller
Comment from Adam DOnofrio
Comment from Jesse Bernhardt
Comment from Randi Saslow
Comment from Scott Bishop
Comment from Phyllis Huang
Comment from Thomas Sanders
Comment from Blair Kangley
Comment from Anne Lazarus

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NOAA-NMFS-2020-0031-DRAFT-44780
NOAA-NMFS-2020-0031-DRAFT-44781
NOAA-NMFS-2020-0031-DRAFT-44782
NOAA-NMFS-2020-0031-DRAFT-44783
NOAA-NMFS-2020-0031-DRAFT-44784
NOAA-NMFS-2020-0031-DRAFT-44785
NOAA-NMFS-2020-0031-DRAFT-44786
NOAA-NMFS-2020-0031-DRAFT-44787
NOAA-NMFS-2020-0031-DRAFT-44788
NOAA-NMFS-2020-0031-DRAFT-44789
NOAA-NMFS-2020-0031-DRAFT-44790
NOAA-NMFS-2020-0031-DRAFT-44791
NOAA-NMFS-2020-0031-DRAFT-44792
NOAA-NMFS-2020-0031-DRAFT-44793
NOAA-NMFS-2020-0031-DRAFT-44794
NOAA-NMFS-2020-0031-DRAFT-44795
NOAA-NMFS-2020-0031-DRAFT-44796
NOAA-NMFS-2020-0031-DRAFT-44797
NOAA-NMFS-2020-0031-DRAFT-44798
NOAA-NMFS-2020-0031-DRAFT-44799
NOAA-NMFS-2020-0031-DRAFT-44800
NOAA-NMFS-2020-0031-DRAFT-44801
NOAA-NMFS-2020-0031-DRAFT-44802
NOAA-NMFS-2020-0031-DRAFT-44803
NOAA-NMFS-2020-0031-DRAFT-44804
NOAA-NMFS-2020-0031-DRAFT-44805
NOAA-NMFS-2020-0031-DRAFT-44806
NOAA-NMFS-2020-0031-DRAFT-44807
NOAA-NMFS-2020-0031-DRAFT-44808
NOAA-NMFS-2020-0031-DRAFT-44809
NOAA-NMFS-2020-0031-DRAFT-44810
NOAA-NMFS-2020-0031-DRAFT-44811
NOAA-NMFS-2020-0031-DRAFT-44812
NOAA-NMFS-2020-0031-DRAFT-44813
NOAA-NMFS-2020-0031-DRAFT-44814
NOAA-NMFS-2020-0031-DRAFT-44815
NOAA-NMFS-2020-0031-DRAFT-44816
NOAA-NMFS-2020-0031-DRAFT-44817
NOAA-NMFS-2020-0031-DRAFT-44818
NOAA-NMFS-2020-0031-DRAFT-44819
NOAA-NMFS-2020-0031-DRAFT-44820

Comment from Alfreds, Arthur
Comment from Fife, Samantha
Comment from Lewis, Linka
Comment from Hogan, Peter
Comment from Anonymous Anonymous
Comment from Fife, James
Comment from Santoro, Andrea
Comment from Reed, Tabitha
Comment from Benatar-Kotler, Belinda
Comment from Anonymous Anonymous
Comment from Murphy, Amber
Comment from Pike, Darren
Comment from Schmidt, Jacqueline
Comment from murphy, cynthia
Comment from Schaller, Wilma
Comment from Sikorski, Robert
Comment from Malyon, Ann
Comment from Wright, Martha
Comment from McConkey, Kimberly
Comment from Polley, Daniel
Comment from Anonymous Anonymous
Comment from Premutati, Ally
Comment from Groome, Malcolm
Comment from Ellis, Maureen
Comment from Anonymous Anonymous
Comment from Gray, Tracu
Comment from Sparkes, Robert
Comment from McBath, Ryan
Comment from Anonymous Anonymous
Comment from Gergel, Inna
Comment from Anonymous Anonymous
Comment from Bryner, Erick
Comment from Baker, Megan
Comment from Winter, Blake
Comment from Jesse, Chuck
Comment from Casino, Judith
Comment from Walker, Jeannie
Comment from goldsmith, lynne
Comment from Foster, John
Comment from Lebich, William
Comment from Glick, Melissa

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NOAA-NMFS-2020-0031-DRAFT-49999
NOAA-NMFS-2020-0031-DRAFT-50000
NOAA-NMFS-2020-0031-DRAFT-50001
NOAA-NMFS-2020-0031-DRAFT-50002
NOAA-NMFS-2020-0031-DRAFT-50003
NOAA-NMFS-2020-0031-DRAFT-50004
NOAA-NMFS-2020-0031-DRAFT-50005
NOAA-NMFS-2020-0031-DRAFT-50006
NOAA-NMFS-2020-0031-DRAFT-50007
NOAA-NMFS-2020-0031-DRAFT-50008
NOAA-NMFS-2020-0031-DRAFT-50009
NOAA-NMFS-2020-0031-DRAFT-50010
NOAA-NMFS-2020-0031-DRAFT-50011
NOAA-NMFS-2020-0031-DRAFT-50012
NOAA-NMFS-2020-0031-DRAFT-50013
NOAA-NMFS-2020-0031-DRAFT-50014
NOAA-NMFS-2020-0031-DRAFT-50015
NOAA-NMFS-2020-0031-DRAFT-50016
NOAA-NMFS-2020-0031-DRAFT-50017
NOAA-NMFS-2020-0031-DRAFT-50018
NOAA-NMFS-2020-0031-DRAFT-50019
NOAA-NMFS-2020-0031-DRAFT-50020
NOAA-NMFS-2020-0031-DRAFT-50021
NOAA-NMFS-2020-0031-DRAFT-50022
NOAA-NMFS-2020-0031-DRAFT-50023
NOAA-NMFS-2020-0031-DRAFT-50024
NOAA-NMFS-2020-0031-DRAFT-50025
NOAA-NMFS-2020-0031-DRAFT-50026
NOAA-NMFS-2020-0031-DRAFT-50027
NOAA-NMFS-2020-0031-DRAFT-50028
NOAA-NMFS-2020-0031-DRAFT-50029
NOAA-NMFS-2020-0031-DRAFT-50030
NOAA-NMFS-2020-0031-DRAFT-50031
NOAA-NMFS-2020-0031-DRAFT-50032
NOAA-NMFS-2020-0031-DRAFT-50033
NOAA-NMFS-2020-0031-DRAFT-50034
NOAA-NMFS-2020-0031-DRAFT-50035
NOAA-NMFS-2020-0031-DRAFT-50036
NOAA-NMFS-2020-0031-DRAFT-50037
NOAA-NMFS-2020-0031-DRAFT-50038
NOAA-NMFS-2020-0031-DRAFT-50039

Comment from Elizabeth Lindorff
Comment from Phyllis Melodia
Comment from Carl Gaines
Comment from Steven Collins
Comment from Anonymous Anonymous
Comment from Melissa Bauer
Comment from Shanna Damien
Comment from Terry Bergeron
Comment from Christy Moneymaker
Comment from cave man
Comment from Cathy Martin
Comment from Sally Reynolds
Comment from Jeffrey DeCristofaro
Comment from Danya kuperstein
Comment from Karen Pecsok
Comment from William Brockman
Comment from Nick Hennessy
Comment from Jay Jones
Comment from Jeanne Larson
Comment from Debra Berlan
Comment from julia knaz
Comment from Thomas Artin
Comment from Yvonne Albrecht
Comment from Stephen Courim
Comment from Melene Rose
Comment from Natalia Stadelbauer
Comment from Nina Tatlock
Comment from Barbara Stenross
Comment from Joel Jensen
Comment from Arthur Friedman
Comment from Renee Koenitzer
Comment from margaret tatum
Comment from Darci Halloran
Comment from Tami Omeson
Comment from b leved
Comment from K Krupinski
Comment from Donna Butler
Comment from Victoria Cross
Comment from Glenn Hicks
Comment from Doris Luther
Comment from Harry Heiden

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NOAA-NMFS-2020-0031-DRAFT-44821
NOAA-NMFS-2020-0031-DRAFT-44822
NOAA-NMFS-2020-0031-DRAFT-44823
NOAA-NMFS-2020-0031-DRAFT-44824
NOAA-NMFS-2020-0031-DRAFT-44825
NOAA-NMFS-2020-0031-DRAFT-44826
NOAA-NMFS-2020-0031-DRAFT-44827
NOAA-NMFS-2020-0031-DRAFT-44828
NOAA-NMFS-2020-0031-DRAFT-44829
NOAA-NMFS-2020-0031-DRAFT-44830
NOAA-NMFS-2020-0031-DRAFT-44831
NOAA-NMFS-2020-0031-DRAFT-44832
NOAA-NMFS-2020-0031-DRAFT-44833
NOAA-NMFS-2020-0031-DRAFT-44835
NOAA-NMFS-2020-0031-DRAFT-44836
NOAA-NMFS-2020-0031-DRAFT-44837
NOAA-NMFS-2020-0031-DRAFT-44838
NOAA-NMFS-2020-0031-DRAFT-44839
NOAA-NMFS-2020-0031-DRAFT-44840
NOAA-NMFS-2020-0031-DRAFT-44841
NOAA-NMFS-2020-0031-DRAFT-44842
NOAA-NMFS-2020-0031-DRAFT-44843
NOAA-NMFS-2020-0031-DRAFT-44844
NOAA-NMFS-2020-0031-DRAFT-44845
NOAA-NMFS-2020-0031-DRAFT-44846
NOAA-NMFS-2020-0031-DRAFT-44847
NOAA-NMFS-2020-0031-DRAFT-44848
NOAA-NMFS-2020-0031-DRAFT-44849
NOAA-NMFS-2020-0031-DRAFT-44850
NOAA-NMFS-2020-0031-DRAFT-44851
NOAA-NMFS-2020-0031-DRAFT-44852
NOAA-NMFS-2020-0031-DRAFT-44853
NOAA-NMFS-2020-0031-DRAFT-44854
NOAA-NMFS-2020-0031-DRAFT-44855
NOAA-NMFS-2020-0031-DRAFT-44856
NOAA-NMFS-2020-0031-DRAFT-44857
NOAA-NMFS-2020-0031-DRAFT-44858
NOAA-NMFS-2020-0031-DRAFT-44859
NOAA-NMFS-2020-0031-DRAFT-44860
NOAA-NMFS-2020-0031-DRAFT-44861
NOAA-NMFS-2020-0031-DRAFT-44862

Comment from Meute, Nancy
Comment from Krasner, Shay
Comment from McKinney, Orville
Comment from Drozd, Karen
Comment from Townsend, Sarah
Comment from Branson, Jack
Comment from smith, w.
Comment from Vincent, Robin
Comment from Piekarz, Gwen
Comment from Anonymous Anonymous
Comment from Swanson, Debra
Comment from Broudy, Marie
Comment from Carlson, Christine
Comment from Ables, Harriet
Comment from St. Pierre, Stephen
Comment from Arnold-Ratliff, Anne
Wishart from Torres-Krushinski,
Comment
Alexandra
Comment from Anonymous Anonymous
Comment from Nash, Tom
Comment from Grubbs, Donna
Comment from Esposito, Karen
Comment from Wilson, Gloria
Comment from Johnson, Deborah
Comment from Reichert, Charlotte
Comment from Reese, Alex
Comment from Mirmak, Dorothy
Comment from Anonymous Anonymous
Comment from D'Avanzo, Yvonne
Comment from Kitto, Martin
Comment from Celli, Sandra
Comment from Kronzek, Allan
Comment from Skudra, Renee
Comment from Goldstein, Gailen
Comment from SEARLE, SUSAN
Comment from Forbes, William
Comment from Wanenmacher, Erika
Comment from Caillouette, Christina
Comment from Kordes, Maria
Comment from fox, patricia
Comment from Oba, Peggy
Comment from Ponder, Susan

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NOAA-NMFS-2020-0031-DRAFT-50040
NOAA-NMFS-2020-0031-DRAFT-50041
NOAA-NMFS-2020-0031-DRAFT-50042
NOAA-NMFS-2020-0031-DRAFT-50043
NOAA-NMFS-2020-0031-DRAFT-50044
NOAA-NMFS-2020-0031-DRAFT-50045
NOAA-NMFS-2020-0031-DRAFT-50046
NOAA-NMFS-2020-0031-DRAFT-50047
NOAA-NMFS-2020-0031-DRAFT-50049
NOAA-NMFS-2020-0031-DRAFT-50050
NOAA-NMFS-2020-0031-DRAFT-50051
NOAA-NMFS-2020-0031-DRAFT-50052
NOAA-NMFS-2020-0031-DRAFT-50053
NOAA-NMFS-2020-0031-DRAFT-50054
NOAA-NMFS-2020-0031-DRAFT-50055
NOAA-NMFS-2020-0031-DRAFT-50056
NOAA-NMFS-2020-0031-DRAFT-50057
NOAA-NMFS-2020-0031-DRAFT-50058
NOAA-NMFS-2020-0031-DRAFT-50059
NOAA-NMFS-2020-0031-DRAFT-50060
NOAA-NMFS-2020-0031-DRAFT-50061
NOAA-NMFS-2020-0031-DRAFT-50062
NOAA-NMFS-2020-0031-DRAFT-50063
NOAA-NMFS-2020-0031-DRAFT-50064
NOAA-NMFS-2020-0031-DRAFT-50065
NOAA-NMFS-2020-0031-DRAFT-50066
NOAA-NMFS-2020-0031-DRAFT-50067
NOAA-NMFS-2020-0031-DRAFT-50068
NOAA-NMFS-2020-0031-DRAFT-50069
NOAA-NMFS-2020-0031-DRAFT-50070
NOAA-NMFS-2020-0031-DRAFT-50072
NOAA-NMFS-2020-0031-DRAFT-50073
NOAA-NMFS-2020-0031-DRAFT-50074
NOAA-NMFS-2020-0031-DRAFT-50075
NOAA-NMFS-2020-0031-DRAFT-50076
NOAA-NMFS-2020-0031-DRAFT-50077
NOAA-NMFS-2020-0031-DRAFT-50078
NOAA-NMFS-2020-0031-DRAFT-50079
NOAA-NMFS-2020-0031-DRAFT-50080
NOAA-NMFS-2020-0031-DRAFT-50081
NOAA-NMFS-2020-0031-DRAFT-50082

Comment from Delaina Rupp
Comment from Gordon Cook
Comment from Robert Burkowski
Comment from Jamie Thomas
Comment from Jeff Hammock
Comment from Celeste Hong
Comment from Lois Buenau
Comment from Bruce Krawisz
Comment from George Perla
Comment from Jerry Banks
Comment from Robert Long
Comment from Richard Pietraccini
Comment from Christine Drea
Comment from James Henriksen
Comment from Beth Werner
Comment from I. Engle
Comment from Patricia Brooks
Comment from Thomas Conroy
Comment from Marsha Hicks
Comment from Deb Sandalwood
Comment from Jane Church
Comment from Lise Emond
Comment from Michael Noack
Comment from Curt Bohlen
Comment from Phil Fitzgerald
Comment from Elizabeth Chiribi
Comment from Lajeanne Leveton
Comment from Joanne Tenney
Comment from REV. NUNES
Comment from Margie Hancock
Comment from Barbara Kyse
Comment from Bernice Santos
Comment from Karen Anderson
Comment from Laura Silverman
Comment from Robert Musil
Comment from Lora Meisner
Comment from Jerry Banks
Comment from Jennifer Josephy
Comment from Ramona Jackson
Comment from Johann Schumacher
Comment from Ali Van Zee

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44863
NOAA-NMFS-2020-0031-DRAFT-44864
NOAA-NMFS-2020-0031-DRAFT-44865
NOAA-NMFS-2020-0031-DRAFT-44866
NOAA-NMFS-2020-0031-DRAFT-44867
NOAA-NMFS-2020-0031-DRAFT-44868
NOAA-NMFS-2020-0031-DRAFT-44869
NOAA-NMFS-2020-0031-DRAFT-44870
NOAA-NMFS-2020-0031-DRAFT-44871
NOAA-NMFS-2020-0031-DRAFT-44872
NOAA-NMFS-2020-0031-DRAFT-44873
NOAA-NMFS-2020-0031-DRAFT-44874
NOAA-NMFS-2020-0031-DRAFT-44875
NOAA-NMFS-2020-0031-DRAFT-44876
NOAA-NMFS-2020-0031-DRAFT-44877
NOAA-NMFS-2020-0031-DRAFT-44878
NOAA-NMFS-2020-0031-DRAFT-44879
NOAA-NMFS-2020-0031-DRAFT-44880
NOAA-NMFS-2020-0031-DRAFT-44881
NOAA-NMFS-2020-0031-DRAFT-44882
NOAA-NMFS-2020-0031-DRAFT-44883
NOAA-NMFS-2020-0031-DRAFT-44884
NOAA-NMFS-2020-0031-DRAFT-44885
NOAA-NMFS-2020-0031-DRAFT-44886
NOAA-NMFS-2020-0031-DRAFT-44887
NOAA-NMFS-2020-0031-DRAFT-44888
NOAA-NMFS-2020-0031-DRAFT-44889
NOAA-NMFS-2020-0031-DRAFT-44890
NOAA-NMFS-2020-0031-DRAFT-44891
NOAA-NMFS-2020-0031-DRAFT-44892
NOAA-NMFS-2020-0031-DRAFT-44893
NOAA-NMFS-2020-0031-DRAFT-44894
NOAA-NMFS-2020-0031-DRAFT-44895
NOAA-NMFS-2020-0031-DRAFT-44896
NOAA-NMFS-2020-0031-DRAFT-44897
NOAA-NMFS-2020-0031-DRAFT-44898
NOAA-NMFS-2020-0031-DRAFT-44899
NOAA-NMFS-2020-0031-DRAFT-44900
NOAA-NMFS-2020-0031-DRAFT-44901
NOAA-NMFS-2020-0031-DRAFT-44902
NOAA-NMFS-2020-0031-DRAFT-44903

Comment from Bradshaw, Laura
Comment from ogorzaly, claire
Comment from ogorzaly, jean
Comment from Brower, Kim
Comment from Jackson, Joel & Susan
Comment from Doyka, Christine
Comment from Treppeda, Cassandra
Comment from Kohn, Ellen
Comment from Barbezat, Mary
Comment from Meza-Steel, Rosi
Comment from Linder, Amelia
Comment from Meza-Steel, Rosi
Comment from Anonymous Anonymous
Comment from Scioscia, Jacquelyn
Comment from Van Dyke, Carl
Comment from Calvelage, Anthony
Comment from Dieringer, Irini
Comment from ELKINS, R.J.
Comment from Trykowski, Denay
Comment from Ungar, Autumn
Comment from Shelby, BC
Comment from Grimes, Thomas
Comment from Murphy, Michelle
Comment from Neft, Robin
Comment from Hosmer, Katie
Comment from Stahl, Lisa
Comment from Anonymous Anonymous
Comment from Berg, Sheryl
Comment from Lewis, D
Comment from Anonymous Anonymous
Comment from Blanchard, Betsy
Comment from Kutz, Susan
Comment from Heilig, Jennifer
Comment from Sieks, Elizabeth
Comment from Anonymous Anonymous
Comment from Williams, Sheryl
Comment from Brown, Maryetta
Comment from Hockenbrouch, Anne
Comment from Padelford, Grace
Comment from Converse, Blaine
Comment from Converse, Blaine

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50083
NOAA-NMFS-2020-0031-DRAFT-50084
NOAA-NMFS-2020-0031-DRAFT-50085
NOAA-NMFS-2020-0031-DRAFT-50086
NOAA-NMFS-2020-0031-DRAFT-50087
NOAA-NMFS-2020-0031-DRAFT-50088
NOAA-NMFS-2020-0031-DRAFT-50089
NOAA-NMFS-2020-0031-DRAFT-50090
NOAA-NMFS-2020-0031-DRAFT-50091
NOAA-NMFS-2020-0031-DRAFT-50092
NOAA-NMFS-2020-0031-DRAFT-50093
NOAA-NMFS-2020-0031-DRAFT-50094
NOAA-NMFS-2020-0031-DRAFT-50095
NOAA-NMFS-2020-0031-DRAFT-50096
NOAA-NMFS-2020-0031-DRAFT-50097
NOAA-NMFS-2020-0031-DRAFT-50098
NOAA-NMFS-2020-0031-DRAFT-50099
NOAA-NMFS-2020-0031-DRAFT-50100
NOAA-NMFS-2020-0031-DRAFT-50101
NOAA-NMFS-2020-0031-DRAFT-50102
NOAA-NMFS-2020-0031-DRAFT-50103
NOAA-NMFS-2020-0031-DRAFT-50104
NOAA-NMFS-2020-0031-DRAFT-50105
NOAA-NMFS-2020-0031-DRAFT-50106
NOAA-NMFS-2020-0031-DRAFT-50107
NOAA-NMFS-2020-0031-DRAFT-50108
NOAA-NMFS-2020-0031-DRAFT-50109
NOAA-NMFS-2020-0031-DRAFT-50110
NOAA-NMFS-2020-0031-DRAFT-50111
NOAA-NMFS-2020-0031-DRAFT-50112
NOAA-NMFS-2020-0031-DRAFT-50113
NOAA-NMFS-2020-0031-DRAFT-50114
NOAA-NMFS-2020-0031-DRAFT-50115
NOAA-NMFS-2020-0031-DRAFT-50116
NOAA-NMFS-2020-0031-DRAFT-50117
NOAA-NMFS-2020-0031-DRAFT-50118
NOAA-NMFS-2020-0031-DRAFT-50119
NOAA-NMFS-2020-0031-DRAFT-50120
NOAA-NMFS-2020-0031-DRAFT-50121
NOAA-NMFS-2020-0031-DRAFT-50122
NOAA-NMFS-2020-0031-DRAFT-50123

Comment from Gerald Gabel
Comment from Leslie Brown
Comment from Bjorn Mollersten
Comment from Theresa Campbell
Comment from Dorene Randall
Comment from ellen witte
Comment from Susan Vogel-Hudgins
Comment from r tippens
Comment from Dana Doliber
Comment from Ruth Dyke
Comment from Gerald Gabel
Comment from Elizabeth Garratt
Comment from Uly Silkey
Comment from Gail Sullivan
Comment from Paul Gagliano
Comment from Michael Moy
Comment from Melissa Grondin
Comment from Carol Argenziano
Comment from Dan Pepin
Comment from Donna D'Finigt
Comment from Andrea Wasserman
Comment from Bradley Holmes
Comment from Karen Sewick
Comment from Ed Mosimann
Comment from Nancy Yarosis
Comment from Frances M
Comment from Alice Neuhauser
Comment from Cris Anderson
Comment from Elizabeth Horvath
Comment from Brian Gingras
Comment from Barry De Jasu
Comment from Heather Gentile
Comment from Martha Perlmutter
Comment from Angela Jensen
Comment from pat berger
Comment from G WOODWARD
Comment from Amy M
Comment from Mark Reback
Comment from Mark van Rossen
Comment from Gene Marault
Comment from Patricia White

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44904
NOAA-NMFS-2020-0031-DRAFT-44905
NOAA-NMFS-2020-0031-DRAFT-44906
NOAA-NMFS-2020-0031-DRAFT-44907
NOAA-NMFS-2020-0031-DRAFT-44908
NOAA-NMFS-2020-0031-DRAFT-44909
NOAA-NMFS-2020-0031-DRAFT-44910
NOAA-NMFS-2020-0031-DRAFT-44911
NOAA-NMFS-2020-0031-DRAFT-44912
NOAA-NMFS-2020-0031-DRAFT-44913
NOAA-NMFS-2020-0031-DRAFT-44914
NOAA-NMFS-2020-0031-DRAFT-44915
NOAA-NMFS-2020-0031-DRAFT-44916
NOAA-NMFS-2020-0031-DRAFT-44917
NOAA-NMFS-2020-0031-DRAFT-44918
NOAA-NMFS-2020-0031-DRAFT-44919
NOAA-NMFS-2020-0031-DRAFT-44920
NOAA-NMFS-2020-0031-DRAFT-44921
NOAA-NMFS-2020-0031-DRAFT-44922
NOAA-NMFS-2020-0031-DRAFT-44923
NOAA-NMFS-2020-0031-DRAFT-44924
NOAA-NMFS-2020-0031-DRAFT-44925
NOAA-NMFS-2020-0031-DRAFT-44926
NOAA-NMFS-2020-0031-DRAFT-44927
NOAA-NMFS-2020-0031-DRAFT-44928
NOAA-NMFS-2020-0031-DRAFT-44929
NOAA-NMFS-2020-0031-DRAFT-44930
NOAA-NMFS-2020-0031-DRAFT-44931
NOAA-NMFS-2020-0031-DRAFT-44932
NOAA-NMFS-2020-0031-DRAFT-44933
NOAA-NMFS-2020-0031-DRAFT-44934
NOAA-NMFS-2020-0031-DRAFT-44935
NOAA-NMFS-2020-0031-DRAFT-44936
NOAA-NMFS-2020-0031-DRAFT-44937
NOAA-NMFS-2020-0031-DRAFT-44938
NOAA-NMFS-2020-0031-DRAFT-44939
NOAA-NMFS-2020-0031-DRAFT-44940
NOAA-NMFS-2020-0031-DRAFT-44941
NOAA-NMFS-2020-0031-DRAFT-44942
NOAA-NMFS-2020-0031-DRAFT-44943
NOAA-NMFS-2020-0031-DRAFT-44944

Comment from Uecker, Jamie
Comment from Long, James
Comment from Carbone, Christopher
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Jeffers, Jacqueline
Comment from Khin, Teyzardanti
Comment from Langlois, Renee
Comment from Anonymous Anonymous
Comment from Witter, Sarah
Comment from Beatham, Beverly
Comment from J, Buddy
Comment from Austin, Shane
Comment from Napier, Leesa
Comment from Anonymous Anonymous
Comment from Long, Laura
Comment from Engelkemeir, Jeanne
Comment from Israel, Lesley
Comment from Storm, Laurie
Comment from Anonymous Anonymous
Comment from Lozon, Rob
Comment from Heuser, William
Comment from Berkon, Marilyn
Comment from Carlson, Julie
Comment from Anonymous Anonymous
Comment from Oates, Judy
Comment from Garbrick, Kathe
Comment from Nuovo, Trina
Comment from Barack, Max
Comment from Klenk, D
Comment from Laplante, Dianne
Comment from Hickman, Karol
Comment from Lorkiewicz, Candace
Comment from Newman, Sally
Comment from knaack, dennis
Comment from Miller, Theresa
Comment from Anonymous Anonymous
Comment from Morgan, Ellen
Comment from Curtin, Theodore
Comment from strich, nancy

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NOAA-NMFS-2020-0031-DRAFT-50124
NOAA-NMFS-2020-0031-DRAFT-50125
NOAA-NMFS-2020-0031-DRAFT-50126
NOAA-NMFS-2020-0031-DRAFT-50127
NOAA-NMFS-2020-0031-DRAFT-50128
NOAA-NMFS-2020-0031-DRAFT-50129
NOAA-NMFS-2020-0031-DRAFT-50130
NOAA-NMFS-2020-0031-DRAFT-50131
NOAA-NMFS-2020-0031-DRAFT-50132
NOAA-NMFS-2020-0031-DRAFT-50133
NOAA-NMFS-2020-0031-DRAFT-50134
NOAA-NMFS-2020-0031-DRAFT-50135
NOAA-NMFS-2020-0031-DRAFT-50136
NOAA-NMFS-2020-0031-DRAFT-50137
NOAA-NMFS-2020-0031-DRAFT-50138
NOAA-NMFS-2020-0031-DRAFT-50139
NOAA-NMFS-2020-0031-DRAFT-50140
NOAA-NMFS-2020-0031-DRAFT-50141
NOAA-NMFS-2020-0031-DRAFT-50142
NOAA-NMFS-2020-0031-DRAFT-50143
NOAA-NMFS-2020-0031-DRAFT-50144
NOAA-NMFS-2020-0031-DRAFT-50145
NOAA-NMFS-2020-0031-DRAFT-50146
NOAA-NMFS-2020-0031-DRAFT-50147
NOAA-NMFS-2020-0031-DRAFT-50148
NOAA-NMFS-2020-0031-DRAFT-50149
NOAA-NMFS-2020-0031-DRAFT-50150
NOAA-NMFS-2020-0031-DRAFT-50151
NOAA-NMFS-2020-0031-DRAFT-50152
NOAA-NMFS-2020-0031-DRAFT-50154
NOAA-NMFS-2020-0031-DRAFT-50155
NOAA-NMFS-2020-0031-DRAFT-50156
NOAA-NMFS-2020-0031-DRAFT-50157
NOAA-NMFS-2020-0031-DRAFT-50158
NOAA-NMFS-2020-0031-DRAFT-50159
NOAA-NMFS-2020-0031-DRAFT-50160
NOAA-NMFS-2020-0031-DRAFT-50161
NOAA-NMFS-2020-0031-DRAFT-50162
NOAA-NMFS-2020-0031-DRAFT-50163
NOAA-NMFS-2020-0031-DRAFT-50164
NOAA-NMFS-2020-0031-DRAFT-50165

Comment from Jayson Minio
Comment from Patricia Taylor
Comment from Eileen Prefontaine
Comment from Laura Nowack
Comment from Dan McCoy
Comment from Tamyra Wallace
Comment from Joseph Corbett
Comment from Pearl Holloway
Comment from Carol Batchelder
Comment from Barbara Fernandez
Comment from Joan Ouellette
Comment from s klof
Comment from Ernesto Marquez
Comment from Rex Franklyn
Comment from Bert Barry
Comment from Barry Zuckerman
Comment from Dara Rider
Comment from Henry Clement
Comment from Janis Millu
Comment from Colonel Meyer
Comment from Lloyd Hedger
Comment from Audrey Brownell
Comment from aida suidan
Comment from Leonard Epstein
Comment from Troy Tackett
Comment from Deirdre Morris
Comment from Michael Halloran
Comment from Neal Umphred
Comment from Lisa Niebling
Comment from Lorraine Avallone
Comment from Robert Reis
Comment from Patricia Gehring
Comment from Meha Kamdar
Comment from Steven Nelson
Comment from Susan Bernat
Comment from Ingrid Eichenbaum
Comment from Norman Herron
Comment from Nancy Dawley
Comment from Shirley Phillips
Comment from LISA HEY
Comment from Mary Armstrong

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NOAA-NMFS-2020-0031-DRAFT-44945
NOAA-NMFS-2020-0031-DRAFT-44946
NOAA-NMFS-2020-0031-DRAFT-44947
NOAA-NMFS-2020-0031-DRAFT-44948
NOAA-NMFS-2020-0031-DRAFT-44949
NOAA-NMFS-2020-0031-DRAFT-44950
NOAA-NMFS-2020-0031-DRAFT-44951
NOAA-NMFS-2020-0031-DRAFT-44952
NOAA-NMFS-2020-0031-DRAFT-44953
NOAA-NMFS-2020-0031-DRAFT-44954
NOAA-NMFS-2020-0031-DRAFT-44955
NOAA-NMFS-2020-0031-DRAFT-44956
NOAA-NMFS-2020-0031-DRAFT-44957
NOAA-NMFS-2020-0031-DRAFT-44958
NOAA-NMFS-2020-0031-DRAFT-44959
NOAA-NMFS-2020-0031-DRAFT-44960
NOAA-NMFS-2020-0031-DRAFT-44961
NOAA-NMFS-2020-0031-DRAFT-44962
NOAA-NMFS-2020-0031-DRAFT-44963
NOAA-NMFS-2020-0031-DRAFT-44964
NOAA-NMFS-2020-0031-DRAFT-44965
NOAA-NMFS-2020-0031-DRAFT-44966
NOAA-NMFS-2020-0031-DRAFT-44967
NOAA-NMFS-2020-0031-DRAFT-44968
NOAA-NMFS-2020-0031-DRAFT-44969
NOAA-NMFS-2020-0031-DRAFT-44970
NOAA-NMFS-2020-0031-DRAFT-44971
NOAA-NMFS-2020-0031-DRAFT-44972
NOAA-NMFS-2020-0031-DRAFT-44973
NOAA-NMFS-2020-0031-DRAFT-44974
NOAA-NMFS-2020-0031-DRAFT-44975
NOAA-NMFS-2020-0031-DRAFT-44976
NOAA-NMFS-2020-0031-DRAFT-44977
NOAA-NMFS-2020-0031-DRAFT-44978
NOAA-NMFS-2020-0031-DRAFT-44979
NOAA-NMFS-2020-0031-DRAFT-44980
NOAA-NMFS-2020-0031-DRAFT-44981
NOAA-NMFS-2020-0031-DRAFT-44982
NOAA-NMFS-2020-0031-DRAFT-44983
NOAA-NMFS-2020-0031-DRAFT-44984
NOAA-NMFS-2020-0031-DRAFT-44985

Comment from Rechs, David
Comment from Davis, Mark
Comment from Anonymous Anonymous
Comment from Boothe, Dawn
Comment from Oggiono, Nanette
Comment from DiCarrado, Thomas
Comment from Troll, Janice
Comment from Hopkins, Rachel
Comment from Pesko, Michael
Comment from Bright Procopio, Kathleen
Comment from Karrington, Tessa
Comment from Karrington, Faith
Comment from Karrington, Destiny
Comment from Ballah, Joan
Comment from Baxter, Michelle
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from antonacci, t.
Comment from Flum, Cathy
Comment from Jackson, C. J.
Comment from Fisher, Melanie
Comment from Stevens, Fee
Comment from Henry, Mark
Comment from Adams, Marsha
Comment from Kaslander, Carol
Comment from Duncan, Denny
Comment from Gorman, K
Comment from Kanar, Henry
Comment from LaBish, David
Comment from Carr, Sarah
Comment from Reed, Heather
Comment from Martino, Rosanne
Comment from Deal, Mariko
Comment from Lerma, Stella
Comment from Elliott, Lynn
Comment from Raper, Connie
Comment from Palmer, Susan
Comment from Anonymous Anonymous
Comment from Johnson, Adrian
Comment from Hull, Cynthia
Comment from Anonymous Anonymous

03/01/2021
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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50166
NOAA-NMFS-2020-0031-DRAFT-50167
NOAA-NMFS-2020-0031-DRAFT-50168
NOAA-NMFS-2020-0031-DRAFT-50169
NOAA-NMFS-2020-0031-DRAFT-50170
NOAA-NMFS-2020-0031-DRAFT-50171
NOAA-NMFS-2020-0031-DRAFT-50173
NOAA-NMFS-2020-0031-DRAFT-50174
NOAA-NMFS-2020-0031-DRAFT-50175
NOAA-NMFS-2020-0031-DRAFT-50176
NOAA-NMFS-2020-0031-DRAFT-50177
NOAA-NMFS-2020-0031-DRAFT-50178
NOAA-NMFS-2020-0031-DRAFT-50179
NOAA-NMFS-2020-0031-DRAFT-50180
NOAA-NMFS-2020-0031-DRAFT-50181
NOAA-NMFS-2020-0031-DRAFT-50182
NOAA-NMFS-2020-0031-DRAFT-50183
NOAA-NMFS-2020-0031-DRAFT-50184
NOAA-NMFS-2020-0031-DRAFT-50185
NOAA-NMFS-2020-0031-DRAFT-50186
NOAA-NMFS-2020-0031-DRAFT-50187
NOAA-NMFS-2020-0031-DRAFT-50188
NOAA-NMFS-2020-0031-DRAFT-50189
NOAA-NMFS-2020-0031-DRAFT-50190
NOAA-NMFS-2020-0031-DRAFT-50191
NOAA-NMFS-2020-0031-DRAFT-50192
NOAA-NMFS-2020-0031-DRAFT-50193
NOAA-NMFS-2020-0031-DRAFT-50194
NOAA-NMFS-2020-0031-DRAFT-50195
NOAA-NMFS-2020-0031-DRAFT-50196
NOAA-NMFS-2020-0031-DRAFT-50197
NOAA-NMFS-2020-0031-DRAFT-50198
NOAA-NMFS-2020-0031-DRAFT-50199
NOAA-NMFS-2020-0031-DRAFT-50200
NOAA-NMFS-2020-0031-DRAFT-50201
NOAA-NMFS-2020-0031-DRAFT-50202
NOAA-NMFS-2020-0031-DRAFT-50203
NOAA-NMFS-2020-0031-DRAFT-50204
NOAA-NMFS-2020-0031-DRAFT-50205
NOAA-NMFS-2020-0031-DRAFT-50206
NOAA-NMFS-2020-0031-DRAFT-50207

Comment from Pamela Kane
Comment from Adam Trauger
Comment from Bruce Grobman
Comment from Eileen Mitro
Comment from Karen Yarnell
Comment from Jessica Cresseveur
Comment from Judy Moran
Comment from Kenrad Pederson
Comment from Lisa Toth
Comment from Tozzer, Brent
Comment from WILLIAM KOHLER
Comment from Clark, Irina
Comment from NM Porter
Comment from Robert Janusko
Comment from Francine Traniello
Comment from Jean Perry-Jones
Comment from Joseph Nowak
Comment from Paul Emerson
Comment from Nasrin Mazuji
Comment from Duane Kebschull
Comment from Peggy Lyle
Comment from Gerald Kolbe
Comment from C. Smiley
Comment from Laurena Johnson
Comment from kathleen king
Comment from Mai Hermann
Comment from rodney hemmila
Comment from Gerald Wambach
Comment from Marilyn Shugart
Comment from Karen Cowen
Comment from Richard Wilkins
Comment from Eileen Sendrey
Comment from Elizabeth Miyamoto
Comment from Dennis Dougherty
Comment from Robert Gondell
Comment from Lauren L
Comment from Colleen Lobel
Comment from Kathleen Casson
Comment from Tim Porter
Comment from Karen McHugh
Comment from Nora Gibson

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44986
NOAA-NMFS-2020-0031-DRAFT-44987
NOAA-NMFS-2020-0031-DRAFT-44988
NOAA-NMFS-2020-0031-DRAFT-44989
NOAA-NMFS-2020-0031-DRAFT-44990
NOAA-NMFS-2020-0031-DRAFT-44991
NOAA-NMFS-2020-0031-DRAFT-44992
NOAA-NMFS-2020-0031-DRAFT-44993
NOAA-NMFS-2020-0031-DRAFT-44994
NOAA-NMFS-2020-0031-DRAFT-44995
NOAA-NMFS-2020-0031-DRAFT-44996
NOAA-NMFS-2020-0031-DRAFT-44997
NOAA-NMFS-2020-0031-DRAFT-44998
NOAA-NMFS-2020-0031-DRAFT-44999
NOAA-NMFS-2020-0031-DRAFT-45000
NOAA-NMFS-2020-0031-DRAFT-45001
NOAA-NMFS-2020-0031-DRAFT-45002
NOAA-NMFS-2020-0031-DRAFT-45003
NOAA-NMFS-2020-0031-DRAFT-45004
NOAA-NMFS-2020-0031-DRAFT-45005
NOAA-NMFS-2020-0031-DRAFT-45006
NOAA-NMFS-2020-0031-DRAFT-45007
NOAA-NMFS-2020-0031-DRAFT-45008
NOAA-NMFS-2020-0031-DRAFT-45009
NOAA-NMFS-2020-0031-DRAFT-45010
NOAA-NMFS-2020-0031-DRAFT-45011
NOAA-NMFS-2020-0031-DRAFT-45012
NOAA-NMFS-2020-0031-DRAFT-45013
NOAA-NMFS-2020-0031-DRAFT-45014
NOAA-NMFS-2020-0031-DRAFT-45015
NOAA-NMFS-2020-0031-DRAFT-45016
NOAA-NMFS-2020-0031-DRAFT-45017
NOAA-NMFS-2020-0031-DRAFT-45018
NOAA-NMFS-2020-0031-DRAFT-45019
NOAA-NMFS-2020-0031-DRAFT-45020
NOAA-NMFS-2020-0031-DRAFT-45021
NOAA-NMFS-2020-0031-DRAFT-45022
NOAA-NMFS-2020-0031-DRAFT-45023
NOAA-NMFS-2020-0031-DRAFT-45024
NOAA-NMFS-2020-0031-DRAFT-45025
NOAA-NMFS-2020-0031-DRAFT-45026

Comment from Scott, John
Comment from Shepard, Richard
Comment from Ehrlich, Isaac
Comment from Cheitlin, Melvin D.
Comment from Heath, Edele
Comment from Bartlett, Janice
Comment from D. Walker, Verla
Comment from Lamarche, Michele
Comment from Baird, Rachel Elion
Comment from Gil, Vanessa
Comment from Kirn, Roberta
Comment from Anonymous Anonymous
Comment from Fotis, Linda
Comment from Hasbach, Corinna
Comment from Anonymous Anonymous
Comment from Ezanno, Philippe
Comment from Tucker, Philip
Comment from Foster, Robin
Comment from Revak, Carol
Comment from Lazar, Peter
Comment from CASAGRANDE IV, ANDY
BRANDY
Comment from Lauren, Michele
Comment from Alsafi, Catherine
Comment from Reble, Debra
Comment from Menendian, Cathy
Comment from Freeman, Leslie
Comment from la torre, jennifer
Comment from Anonymous Anonymous
Comment from la torre, jennifer
Comment from Brown, Maryetta
Comment from Suhr, Fred
Comment from Chapman, Christy
Comment from Anonymous Anonymous
Comment from Yankoviak, Steven
Comment from Soens, Meg
Comment from Burga, Shirley
Comment from Leathem, Thomas
Comment from Montonen, Jane
Comment from Anonymous Anonymous
Comment from Foroutan, Bijan
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50208
NOAA-NMFS-2020-0031-DRAFT-50209
NOAA-NMFS-2020-0031-DRAFT-50210
NOAA-NMFS-2020-0031-DRAFT-50212
NOAA-NMFS-2020-0031-DRAFT-50213
NOAA-NMFS-2020-0031-DRAFT-50214
NOAA-NMFS-2020-0031-DRAFT-50215
NOAA-NMFS-2020-0031-DRAFT-50216
NOAA-NMFS-2020-0031-DRAFT-50217
NOAA-NMFS-2020-0031-DRAFT-50218
NOAA-NMFS-2020-0031-DRAFT-50219
NOAA-NMFS-2020-0031-DRAFT-50220
NOAA-NMFS-2020-0031-DRAFT-50221
NOAA-NMFS-2020-0031-DRAFT-50222
NOAA-NMFS-2020-0031-DRAFT-50223
NOAA-NMFS-2020-0031-DRAFT-50224
NOAA-NMFS-2020-0031-DRAFT-50225
NOAA-NMFS-2020-0031-DRAFT-50226
NOAA-NMFS-2020-0031-DRAFT-50227
NOAA-NMFS-2020-0031-DRAFT-50228
NOAA-NMFS-2020-0031-DRAFT-50229
NOAA-NMFS-2020-0031-DRAFT-50230
NOAA-NMFS-2020-0031-DRAFT-50231
NOAA-NMFS-2020-0031-DRAFT-50232
NOAA-NMFS-2020-0031-DRAFT-50233
NOAA-NMFS-2020-0031-DRAFT-50234
NOAA-NMFS-2020-0031-DRAFT-50235
NOAA-NMFS-2020-0031-DRAFT-50236
NOAA-NMFS-2020-0031-DRAFT-50237
NOAA-NMFS-2020-0031-DRAFT-50238
NOAA-NMFS-2020-0031-DRAFT-50239
NOAA-NMFS-2020-0031-DRAFT-50240
NOAA-NMFS-2020-0031-DRAFT-50242
NOAA-NMFS-2020-0031-DRAFT-50243
NOAA-NMFS-2020-0031-DRAFT-50244
NOAA-NMFS-2020-0031-DRAFT-50245
NOAA-NMFS-2020-0031-DRAFT-50246
NOAA-NMFS-2020-0031-DRAFT-50247
NOAA-NMFS-2020-0031-DRAFT-50248
NOAA-NMFS-2020-0031-DRAFT-50249
NOAA-NMFS-2020-0031-DRAFT-50250

Comment from Alicia Caton
Comment from Scott Sinclair
Comment from Joanne Marcus
Comment from Steve Mattan
Comment from Catherine DeGraw
Comment from Will Ware
Comment from willie hinze
Comment from Mary McGeary
Comment from Deirdre Fitzsimmons
Comment from Thomas Artin
Comment from Margaret Hunt
Comment from jason husby
Comment from Richard Bailey
Comment from DONNA ALLEYNE-CHIN
Comment from John Walker
Comment from Elizabeth Slikas
Comment from Kathy Lucy
Comment from Erica Minglis
Comment from Stephanie Selznick
Comment from Deanne Hart
Comment from Christine Bogdanowicz
Comment from Sharon Burge
Comment from Diane Glim
Comment from Lisa Nativi
Comment from Gretchen Dysart
Comment from M Stanley
Comment from ava bariana
Comment from Crystal Rector
Comment from Steve Gray
Comment from Scott Weiser
Comment from Eugene Brusin
Comment from Richard Harden
Comment from Gerald Orcholski
Comment from Renee Milkie
Comment from Harry Heiden
Comment from Colleen Lobel
Comment from Patricia DeLuca
Comment from Sarah ECKBERG-STEVENS
Comment from Marilyn Ricci
Comment from Jamie Thomas
Comment from MARK SONDERSKOV

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NOAA-NMFS-2020-0031-DRAFT-45027
NOAA-NMFS-2020-0031-DRAFT-45028
NOAA-NMFS-2020-0031-DRAFT-45029
NOAA-NMFS-2020-0031-DRAFT-45030
NOAA-NMFS-2020-0031-DRAFT-45031
NOAA-NMFS-2020-0031-DRAFT-45032
NOAA-NMFS-2020-0031-DRAFT-45033
NOAA-NMFS-2020-0031-DRAFT-45034
NOAA-NMFS-2020-0031-DRAFT-45035
NOAA-NMFS-2020-0031-DRAFT-45036
NOAA-NMFS-2020-0031-DRAFT-45037
NOAA-NMFS-2020-0031-DRAFT-45038
NOAA-NMFS-2020-0031-DRAFT-45039
NOAA-NMFS-2020-0031-DRAFT-45040
NOAA-NMFS-2020-0031-DRAFT-45041
NOAA-NMFS-2020-0031-DRAFT-45042
NOAA-NMFS-2020-0031-DRAFT-45043
NOAA-NMFS-2020-0031-DRAFT-45044
NOAA-NMFS-2020-0031-DRAFT-45045
NOAA-NMFS-2020-0031-DRAFT-45046
NOAA-NMFS-2020-0031-DRAFT-45047
NOAA-NMFS-2020-0031-DRAFT-45048
NOAA-NMFS-2020-0031-DRAFT-45049
NOAA-NMFS-2020-0031-DRAFT-45050
NOAA-NMFS-2020-0031-DRAFT-45051
NOAA-NMFS-2020-0031-DRAFT-45052
NOAA-NMFS-2020-0031-DRAFT-45053
NOAA-NMFS-2020-0031-DRAFT-45054
NOAA-NMFS-2020-0031-DRAFT-45055
NOAA-NMFS-2020-0031-DRAFT-45056
NOAA-NMFS-2020-0031-DRAFT-45057
NOAA-NMFS-2020-0031-DRAFT-45058
NOAA-NMFS-2020-0031-DRAFT-45059
NOAA-NMFS-2020-0031-DRAFT-45060
NOAA-NMFS-2020-0031-DRAFT-45061
NOAA-NMFS-2020-0031-DRAFT-45062
NOAA-NMFS-2020-0031-DRAFT-45063
NOAA-NMFS-2020-0031-DRAFT-45064
NOAA-NMFS-2020-0031-DRAFT-45065
NOAA-NMFS-2020-0031-DRAFT-45067
NOAA-NMFS-2020-0031-DRAFT-45069

Comment from Wright, Madeline
Comment from Halfyard, Quentin
Comment from Sims, Mary
Comment from Riday, Carolyn
Comment from Blakeslee, Gayle
Comment from Shashidhar, Megha
Comment from Baradgie, Noelle
Comment from LaBudie, Richard
Comment from Reilly, Judith
Comment from Nerl, Kendra Alexiis
Comment from Yoshino, Trudie
Comment from Scalzitti, Jana
Comment from Port, Julie
Comment from KOLLMAN, LINDA
Comment from Anonymous Anonymous
Comment from Benatar-Kotler, Belinda
Comment from Gregory, Michael
Comment from York, Christine
Comment from Anonymous Anonymous
Comment from Rosenkranz, Ann
Comment from Lawrence, Christy
Comment from Amidon, Jay
Comment from Hanley, Sheila
Comment from Dell'Acqua, Nadia
Comment from Ginsberg, David
Comment from Scarritt, Sara
Comment from Bottorff, Virginia
Comment from Davis, Nicole
Comment from Bolick, Charles R.
Comment from Union, Kimberly
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Orick, Debi
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50251
NOAA-NMFS-2020-0031-DRAFT-50252
NOAA-NMFS-2020-0031-DRAFT-50254
NOAA-NMFS-2020-0031-DRAFT-50255
NOAA-NMFS-2020-0031-DRAFT-50256
NOAA-NMFS-2020-0031-DRAFT-50257
NOAA-NMFS-2020-0031-DRAFT-50258
NOAA-NMFS-2020-0031-DRAFT-50259
NOAA-NMFS-2020-0031-DRAFT-50260
NOAA-NMFS-2020-0031-DRAFT-50261
NOAA-NMFS-2020-0031-DRAFT-50262
NOAA-NMFS-2020-0031-DRAFT-50263
NOAA-NMFS-2020-0031-DRAFT-50265
NOAA-NMFS-2020-0031-DRAFT-50266
NOAA-NMFS-2020-0031-DRAFT-50267
NOAA-NMFS-2020-0031-DRAFT-50268
NOAA-NMFS-2020-0031-DRAFT-50269
NOAA-NMFS-2020-0031-DRAFT-50270
NOAA-NMFS-2020-0031-DRAFT-50271
NOAA-NMFS-2020-0031-DRAFT-50272
NOAA-NMFS-2020-0031-DRAFT-50273
NOAA-NMFS-2020-0031-DRAFT-50274
NOAA-NMFS-2020-0031-DRAFT-50275
NOAA-NMFS-2020-0031-DRAFT-50276
NOAA-NMFS-2020-0031-DRAFT-50277
NOAA-NMFS-2020-0031-DRAFT-50278
NOAA-NMFS-2020-0031-DRAFT-50279
NOAA-NMFS-2020-0031-DRAFT-50280
NOAA-NMFS-2020-0031-DRAFT-50281
NOAA-NMFS-2020-0031-DRAFT-50282
NOAA-NMFS-2020-0031-DRAFT-50283
NOAA-NMFS-2020-0031-DRAFT-50284
NOAA-NMFS-2020-0031-DRAFT-50285
NOAA-NMFS-2020-0031-DRAFT-50286
NOAA-NMFS-2020-0031-DRAFT-50287
NOAA-NMFS-2020-0031-DRAFT-50288
NOAA-NMFS-2020-0031-DRAFT-50289
NOAA-NMFS-2020-0031-DRAFT-50290
NOAA-NMFS-2020-0031-DRAFT-50291
NOAA-NMFS-2020-0031-DRAFT-50292
NOAA-NMFS-2020-0031-DRAFT-50293

Comment from Alex Harris
Comment from JOHN PRYBYLSKI
Comment from Colin Kay
Comment from Paul Lerman
Comment from Lynne Teplin
Comment from Doreen Mann
Comment from Sue Stanton
Comment from Chris Bush
Comment from Daniel Marcy
Comment from Tammy Lettieri
Comment from Devon Benton
Comment from Sheila Erlbaum
Comment from Ralph Emerson
Comment from Maria Ram
Comment from Fallon Ryan
Comment from K Krupinski
Comment from Karishma Brough
Comment from Joe Lopze
Comment from Claudia Damon
Comment from Kathleen Medina
Comment from Chelsee Boehm
Comment from sandra mooney
Comment from Carol Rosas
Comment from alice trexler
Comment from Millie Mondragon
Comment from Deborah Gandolfo
Comment from Naomi Klass
Comment from Patrick Canty
Comment from Gino Czaster
Comment from Diana Ames
Comment from Robert Applebaum
Comment from Selina Harris
Comment from Claudia Lamoreaux
Comment from yolande Derenesse
Comment from Peter Ayres
Comment from Dale Riehart
Comment from Karen Gaylin
Comment from Martha Kelem
Comment from Marguerite Cambria
Comment from Donna Grant
Comment from Nina Aronoff

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NOAA-NMFS-2020-0031-DRAFT-45070
NOAA-NMFS-2020-0031-DRAFT-45072
NOAA-NMFS-2020-0031-DRAFT-45073
NOAA-NMFS-2020-0031-DRAFT-45074
NOAA-NMFS-2020-0031-DRAFT-45075
NOAA-NMFS-2020-0031-DRAFT-45076
NOAA-NMFS-2020-0031-DRAFT-45077
NOAA-NMFS-2020-0031-DRAFT-45079
NOAA-NMFS-2020-0031-DRAFT-45080
NOAA-NMFS-2020-0031-DRAFT-45081
NOAA-NMFS-2020-0031-DRAFT-45082
NOAA-NMFS-2020-0031-DRAFT-45083
NOAA-NMFS-2020-0031-DRAFT-45084
NOAA-NMFS-2020-0031-DRAFT-45085
NOAA-NMFS-2020-0031-DRAFT-45086
NOAA-NMFS-2020-0031-DRAFT-45087
NOAA-NMFS-2020-0031-DRAFT-45088
NOAA-NMFS-2020-0031-DRAFT-45089
NOAA-NMFS-2020-0031-DRAFT-45091
NOAA-NMFS-2020-0031-DRAFT-45093
NOAA-NMFS-2020-0031-DRAFT-45094
NOAA-NMFS-2020-0031-DRAFT-45095
NOAA-NMFS-2020-0031-DRAFT-45096
NOAA-NMFS-2020-0031-DRAFT-45097
NOAA-NMFS-2020-0031-DRAFT-45098
NOAA-NMFS-2020-0031-DRAFT-45099
NOAA-NMFS-2020-0031-DRAFT-45100
NOAA-NMFS-2020-0031-DRAFT-45101
NOAA-NMFS-2020-0031-DRAFT-45102
NOAA-NMFS-2020-0031-DRAFT-45104
NOAA-NMFS-2020-0031-DRAFT-45105
NOAA-NMFS-2020-0031-DRAFT-45106
NOAA-NMFS-2020-0031-DRAFT-45107
NOAA-NMFS-2020-0031-DRAFT-45108
NOAA-NMFS-2020-0031-DRAFT-45109
NOAA-NMFS-2020-0031-DRAFT-45111
NOAA-NMFS-2020-0031-DRAFT-45112
NOAA-NMFS-2020-0031-DRAFT-45113
NOAA-NMFS-2020-0031-DRAFT-45114
NOAA-NMFS-2020-0031-DRAFT-45115
NOAA-NMFS-2020-0031-DRAFT-45116

Comment from Anonymous Anonymous
Comment from Travers, Holly
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Leiseroff, Miriam
Comment from Leiseroff, Miriam
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Joseph Mol
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Mollack, Jean
Comment from Keating, Kathy
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50294
NOAA-NMFS-2020-0031-DRAFT-50295
NOAA-NMFS-2020-0031-DRAFT-50296
NOAA-NMFS-2020-0031-DRAFT-50297
NOAA-NMFS-2020-0031-DRAFT-50298
NOAA-NMFS-2020-0031-DRAFT-50299
NOAA-NMFS-2020-0031-DRAFT-50300
NOAA-NMFS-2020-0031-DRAFT-50301
NOAA-NMFS-2020-0031-DRAFT-50303
NOAA-NMFS-2020-0031-DRAFT-50304
NOAA-NMFS-2020-0031-DRAFT-50305
NOAA-NMFS-2020-0031-DRAFT-50306
NOAA-NMFS-2020-0031-DRAFT-50307
NOAA-NMFS-2020-0031-DRAFT-50308
NOAA-NMFS-2020-0031-DRAFT-50309
NOAA-NMFS-2020-0031-DRAFT-50310
NOAA-NMFS-2020-0031-DRAFT-50311
NOAA-NMFS-2020-0031-DRAFT-50312
NOAA-NMFS-2020-0031-DRAFT-50313
NOAA-NMFS-2020-0031-DRAFT-50314
NOAA-NMFS-2020-0031-DRAFT-50315
NOAA-NMFS-2020-0031-DRAFT-50316
NOAA-NMFS-2020-0031-DRAFT-50317
NOAA-NMFS-2020-0031-DRAFT-50318
NOAA-NMFS-2020-0031-DRAFT-50319
NOAA-NMFS-2020-0031-DRAFT-50320
NOAA-NMFS-2020-0031-DRAFT-50321
NOAA-NMFS-2020-0031-DRAFT-50322
NOAA-NMFS-2020-0031-DRAFT-50323
NOAA-NMFS-2020-0031-DRAFT-50324
NOAA-NMFS-2020-0031-DRAFT-50325
NOAA-NMFS-2020-0031-DRAFT-50326
NOAA-NMFS-2020-0031-DRAFT-50327
NOAA-NMFS-2020-0031-DRAFT-50328
NOAA-NMFS-2020-0031-DRAFT-50329
NOAA-NMFS-2020-0031-DRAFT-50330
NOAA-NMFS-2020-0031-DRAFT-50331
NOAA-NMFS-2020-0031-DRAFT-50332
NOAA-NMFS-2020-0031-DRAFT-50333
NOAA-NMFS-2020-0031-DRAFT-50334
NOAA-NMFS-2020-0031-DRAFT-50335

Comment from Maureen Gwynn
Comment from Melissa Bishop
Comment from Dorothy Nirenstein
Comment from Irene Duffy
Comment from Vira Confectioner
Comment from Bruce Rodgers
Comment from Michael Lombardi
Comment from Jeannie Frank
Comment from Phyllis White
Comment from suzanne gaspar
Comment from NANCY GODWIN
Comment from Daniel Aunkst
Comment from Stephen Antoniadis
Comment from Pamela Miller
Comment from William Jones
Comment from heather newell
Comment from Suzanne Barns
Comment from Lillyam Barberi
Comment from Natalie Blasco
Comment from Richard Rusnak
Comment from Paul Zamek
Comment from Andrew Lorton
Comment from Ernst Bauer
Comment from f t
Comment from Diana wright
Comment from Erica Minglis
Comment from Astrid Jarvis
Comment from Melissa Albano-Barth
Comment from Pamela Hamilton
Comment from liz murphy
Comment from Meg Titus
Comment from Judith Light
Comment from Meryle Korn
Comment from Matt Reola
Comment from darynne Jessler
Comment from Paul Needles
Comment from Mary Puccini
Comment from Tai Summers-McGuinness
Comment from Victoria Sadoff
Comment from gina anson
Comment from Nevena Georgieva

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NOAA-NMFS-2020-0031-DRAFT-45117
NOAA-NMFS-2020-0031-DRAFT-45118
NOAA-NMFS-2020-0031-DRAFT-45119
NOAA-NMFS-2020-0031-DRAFT-45120
NOAA-NMFS-2020-0031-DRAFT-45121
NOAA-NMFS-2020-0031-DRAFT-45122
NOAA-NMFS-2020-0031-DRAFT-45123
NOAA-NMFS-2020-0031-DRAFT-45124
NOAA-NMFS-2020-0031-DRAFT-45125
NOAA-NMFS-2020-0031-DRAFT-45126
NOAA-NMFS-2020-0031-DRAFT-45127
NOAA-NMFS-2020-0031-DRAFT-45128
NOAA-NMFS-2020-0031-DRAFT-45129
NOAA-NMFS-2020-0031-DRAFT-45130
NOAA-NMFS-2020-0031-DRAFT-45131
NOAA-NMFS-2020-0031-DRAFT-45132
NOAA-NMFS-2020-0031-DRAFT-45133
NOAA-NMFS-2020-0031-DRAFT-45134
NOAA-NMFS-2020-0031-DRAFT-45135
NOAA-NMFS-2020-0031-DRAFT-45136
NOAA-NMFS-2020-0031-DRAFT-45137
NOAA-NMFS-2020-0031-DRAFT-45138
NOAA-NMFS-2020-0031-DRAFT-45139
NOAA-NMFS-2020-0031-DRAFT-45140
NOAA-NMFS-2020-0031-DRAFT-45141
NOAA-NMFS-2020-0031-DRAFT-45142
NOAA-NMFS-2020-0031-DRAFT-45143
NOAA-NMFS-2020-0031-DRAFT-45144
NOAA-NMFS-2020-0031-DRAFT-45145
NOAA-NMFS-2020-0031-DRAFT-45146
NOAA-NMFS-2020-0031-DRAFT-45147
NOAA-NMFS-2020-0031-DRAFT-45148
NOAA-NMFS-2020-0031-DRAFT-45149
NOAA-NMFS-2020-0031-DRAFT-45150
NOAA-NMFS-2020-0031-DRAFT-45151
NOAA-NMFS-2020-0031-DRAFT-45152
NOAA-NMFS-2020-0031-DRAFT-45153
NOAA-NMFS-2020-0031-DRAFT-45154
NOAA-NMFS-2020-0031-DRAFT-45155
NOAA-NMFS-2020-0031-DRAFT-45156
NOAA-NMFS-2020-0031-DRAFT-45157

Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Crandall, AJ
Comment from Delprete, Joanne
Comment from Bradford, Alesha
Comment from MacLean, Mary
Comment from Anonymous Anonymous
Comment from Wong, Penny
Comment from Dubovsky, Kristin
Comment from Showalter, Tara
Comment from Oglesbt, Sam
Comment from Harrington, Devon
Comment from Zimmerman, Leda
Comment from Lammers, Matt
Comment from Stevens, Daphne
Comment from Wallen, Lawrence
Comment from Arney, Jennifer
Comment from Harwell, Hugh
Comment from Morgan, Paula
Comment from Serra, Thomas and Linda
Comment from Console, Robert
Comment from Hitchcock, Virginia
Comment from Souto, Leo
Comment from Dorfman, Peter
Comment from Cotton, Christine
Comment from Repensek, Gail
Comment from O'Rourke, Susan
Comment from Steinberg, Jane
Comment from Gingras, Brian
Comment from Gechter, Jerry
Comment from Show, Enviro
Comment from Collins, Barbara
Comment from Cullen, Noreen
Comment from Fairless, Judy
Comment from Thonet, Kathi
Comment from Alston, Edith
Comment from McNeal, Sarah
Comment from Hargrave, Karen

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NOAA-NMFS-2020-0031-DRAFT-50336
NOAA-NMFS-2020-0031-DRAFT-50337
NOAA-NMFS-2020-0031-DRAFT-50338
NOAA-NMFS-2020-0031-DRAFT-50339
NOAA-NMFS-2020-0031-DRAFT-50340
NOAA-NMFS-2020-0031-DRAFT-50341
NOAA-NMFS-2020-0031-DRAFT-50342
NOAA-NMFS-2020-0031-DRAFT-50343
NOAA-NMFS-2020-0031-DRAFT-50344
NOAA-NMFS-2020-0031-DRAFT-50345
NOAA-NMFS-2020-0031-DRAFT-50346
NOAA-NMFS-2020-0031-DRAFT-50347
NOAA-NMFS-2020-0031-DRAFT-50348
NOAA-NMFS-2020-0031-DRAFT-50349
NOAA-NMFS-2020-0031-DRAFT-50350
NOAA-NMFS-2020-0031-DRAFT-50351
NOAA-NMFS-2020-0031-DRAFT-50352
NOAA-NMFS-2020-0031-DRAFT-50353
NOAA-NMFS-2020-0031-DRAFT-50354
NOAA-NMFS-2020-0031-DRAFT-50355
NOAA-NMFS-2020-0031-DRAFT-50356
NOAA-NMFS-2020-0031-DRAFT-50357
NOAA-NMFS-2020-0031-DRAFT-50358
NOAA-NMFS-2020-0031-DRAFT-50359
NOAA-NMFS-2020-0031-DRAFT-50361
NOAA-NMFS-2020-0031-DRAFT-50362
NOAA-NMFS-2020-0031-DRAFT-50363
NOAA-NMFS-2020-0031-DRAFT-50364
NOAA-NMFS-2020-0031-DRAFT-50365
NOAA-NMFS-2020-0031-DRAFT-50366
NOAA-NMFS-2020-0031-DRAFT-50367
NOAA-NMFS-2020-0031-DRAFT-50368
NOAA-NMFS-2020-0031-DRAFT-50369
NOAA-NMFS-2020-0031-DRAFT-50370
NOAA-NMFS-2020-0031-DRAFT-50371
NOAA-NMFS-2020-0031-DRAFT-50372
NOAA-NMFS-2020-0031-DRAFT-50373
NOAA-NMFS-2020-0031-DRAFT-50374
NOAA-NMFS-2020-0031-DRAFT-50375
NOAA-NMFS-2020-0031-DRAFT-50376
NOAA-NMFS-2020-0031-DRAFT-50377

Comment from caren ziegler
Comment from Lora Smith
Comment from Charlotte Nuessle
Comment from Yun Lee
Comment from Dona Farishta
Comment from Paul Dendy
Comment from Annette Ondre-Wysocki
Comment from Patricia Frederick
Comment from Maria Mantilla
Comment from Terri Tylo
Comment from Richard Bentley
Comment from Morgan Cormia
Comment from Sheila McGorman
Comment from jon Anderholm
Comment from Mauricio Rendon
Comment from Laura Horowitz
Comment from Laura Horowitz
Comment from Sharon Russick
Comment from Michelle Co
Comment from William Ryerson
Comment from Freda Karpf
Comment from David Clapper
Comment from Celeste Howard
Comment from Jennifer Oppenheim
Comment from Anne McLaughlin
Comment from Kara Kuo
Comment from Amanda King
Comment from William Ryerson
Comment from Michelle Unger
Comment from Kim Ramert
Comment from l. Wolf
Comment from Chad Evans
Comment from Michele Hondo
Comment from Macy Placide
Comment from Simone Williams
Comment from Daniel Heyduk
Comment from Margaret Winstanley
Comment from Michael Norden
Comment from Lauretta Roche
Comment from Anonymous Anonymous
Comment from Blair Kangley

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NOAA-NMFS-2020-0031-DRAFT-45158
NOAA-NMFS-2020-0031-DRAFT-45159
NOAA-NMFS-2020-0031-DRAFT-45161
NOAA-NMFS-2020-0031-DRAFT-45162
NOAA-NMFS-2020-0031-DRAFT-45163
NOAA-NMFS-2020-0031-DRAFT-45164
NOAA-NMFS-2020-0031-DRAFT-45165
NOAA-NMFS-2020-0031-DRAFT-45166
NOAA-NMFS-2020-0031-DRAFT-45167
NOAA-NMFS-2020-0031-DRAFT-45168
NOAA-NMFS-2020-0031-DRAFT-45169
NOAA-NMFS-2020-0031-DRAFT-45170
NOAA-NMFS-2020-0031-DRAFT-45171
NOAA-NMFS-2020-0031-DRAFT-45172
NOAA-NMFS-2020-0031-DRAFT-45173
NOAA-NMFS-2020-0031-DRAFT-45174
NOAA-NMFS-2020-0031-DRAFT-45175
NOAA-NMFS-2020-0031-DRAFT-45176
NOAA-NMFS-2020-0031-DRAFT-45177
NOAA-NMFS-2020-0031-DRAFT-45178
NOAA-NMFS-2020-0031-DRAFT-45179
NOAA-NMFS-2020-0031-DRAFT-45180
NOAA-NMFS-2020-0031-DRAFT-45181
NOAA-NMFS-2020-0031-DRAFT-45182
NOAA-NMFS-2020-0031-DRAFT-45183
NOAA-NMFS-2020-0031-DRAFT-45184
NOAA-NMFS-2020-0031-DRAFT-45185
NOAA-NMFS-2020-0031-DRAFT-45186
NOAA-NMFS-2020-0031-DRAFT-45187
NOAA-NMFS-2020-0031-DRAFT-45188
NOAA-NMFS-2020-0031-DRAFT-45189
NOAA-NMFS-2020-0031-DRAFT-45190
NOAA-NMFS-2020-0031-DRAFT-45191
NOAA-NMFS-2020-0031-DRAFT-45192
NOAA-NMFS-2020-0031-DRAFT-45193
NOAA-NMFS-2020-0031-DRAFT-45194
NOAA-NMFS-2020-0031-DRAFT-45195
NOAA-NMFS-2020-0031-DRAFT-45196
NOAA-NMFS-2020-0031-DRAFT-45197
NOAA-NMFS-2020-0031-DRAFT-45198
NOAA-NMFS-2020-0031-DRAFT-45199

Comment from Fine, Michael
Comment from Lang, Liana
Comment from Chast, Eric
Comment from Quinn, Charles and Diana
Comment from Reisinger, Jean
Comment from Myers, Jeanne C
Comment from Freeman, Beth Jane
Comment from Puc, Rob
Comment from Palla, Paul
Comment from Little, Christina
Comment from Bajaj, Ashok and Kiran
Comment from Przybysz, Slowomir and
irene
Comment from Hendrick, Dud
Comment from Milano, Joseph and Mary
Comment from Bajaj, Ashok and Kiran
Comment from Bajaj, Ashok and Kiran
Comment from Milano, Joseph and Mary
Comment from Steinberg, Arlene
Comment from Propen, Bev
Comment from Allara, David
Comment from Estok, Karen
Comment from Watkins, Kathryn
Comment from Henriques, Heloisa
Comment from Mattos, Claudio
Comment from Mattos, Heloisa
Comment from Anonymous Anonymous
Comment from Simoes, Claudio
Comment from Downing, Jennifer
Comment from Salvatore, Hannah
Comment from Naples, Jean
Comment from Lukowitz, Wendy
Comment from Dillabough, Diane
Comment from Henriques, Heloisa
Comment from Mattos, Claudio
Comment from Mattos, Heloisa
Comment from Simoes, Claudio
Comment from Dean, Shelagh
Comment from Anonymous Anonymous
Comment from DiTullio, Dennis
Comment from Rowland, Erin
Comment from Miller, David

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NOAA-NMFS-2020-0031-DRAFT-50378
NOAA-NMFS-2020-0031-DRAFT-50379
NOAA-NMFS-2020-0031-DRAFT-50380
NOAA-NMFS-2020-0031-DRAFT-50381
NOAA-NMFS-2020-0031-DRAFT-50382
NOAA-NMFS-2020-0031-DRAFT-50383
NOAA-NMFS-2020-0031-DRAFT-50384
NOAA-NMFS-2020-0031-DRAFT-50385
NOAA-NMFS-2020-0031-DRAFT-50386
NOAA-NMFS-2020-0031-DRAFT-50387
NOAA-NMFS-2020-0031-DRAFT-50388
NOAA-NMFS-2020-0031-DRAFT-50389
NOAA-NMFS-2020-0031-DRAFT-50390
NOAA-NMFS-2020-0031-DRAFT-50391
NOAA-NMFS-2020-0031-DRAFT-50392
NOAA-NMFS-2020-0031-DRAFT-50393
NOAA-NMFS-2020-0031-DRAFT-50394
NOAA-NMFS-2020-0031-DRAFT-50395
NOAA-NMFS-2020-0031-DRAFT-50396
NOAA-NMFS-2020-0031-DRAFT-50397
NOAA-NMFS-2020-0031-DRAFT-50398
NOAA-NMFS-2020-0031-DRAFT-50399
NOAA-NMFS-2020-0031-DRAFT-50400
NOAA-NMFS-2020-0031-DRAFT-50401
NOAA-NMFS-2020-0031-DRAFT-50402
NOAA-NMFS-2020-0031-DRAFT-50403
NOAA-NMFS-2020-0031-DRAFT-50404
NOAA-NMFS-2020-0031-DRAFT-50405
NOAA-NMFS-2020-0031-DRAFT-50406
NOAA-NMFS-2020-0031-DRAFT-50407
NOAA-NMFS-2020-0031-DRAFT-50408
NOAA-NMFS-2020-0031-DRAFT-50409
NOAA-NMFS-2020-0031-DRAFT-50410
NOAA-NMFS-2020-0031-DRAFT-50411
NOAA-NMFS-2020-0031-DRAFT-50412
NOAA-NMFS-2020-0031-DRAFT-50413
NOAA-NMFS-2020-0031-DRAFT-50414
NOAA-NMFS-2020-0031-DRAFT-50415
NOAA-NMFS-2020-0031-DRAFT-50416
NOAA-NMFS-2020-0031-DRAFT-50417
NOAA-NMFS-2020-0031-DRAFT-50418

Comment from Veronica Michael
Comment from David Clapper
Comment from Celeste Howard
Comment from bert corley
Comment from James Hildebrand
Comment from John Kinsella
Comment from Lynn Killam
Comment from Michael Norden
Comment from Anonymous Anonymous
Comment from Lorenz Steininger
Comment from Norman Sandel
Comment from Sasha Kirby
Comment from Linda Willaby
Comment from Pat Bryan
Comment from Patrick Butler
Comment from Melissa Frank
Comment from Linda Murphy
Comment from Martha Ferris
Comment from Nora Murphy
Comment from Judy Everett
Comment from Amanda Yoder
Comment from Peggy Gilges
Comment from Cynthia Hicks
Comment from Eleanor Dowson
Comment from Paul Greenfield
Comment from Anonymous Anonymous
Comment from James Stuhlmacher
Comment from Yefim Maizel
Comment from Lisa Goldberg
Comment from Paul Tobin
Comment from Annie Bien
Comment from Susan Levin
Comment from jane biggins
Comment from JL Angell
Comment from Elaine katz
Comment from Lisa Krieger
Comment from Richard Surdyk
Comment from Gail Zwerman
Comment from Ruth Williams
Comment from Carl Hoffmeister
Comment from Leda Gray

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NOAA-NMFS-2020-0031-DRAFT-45200
NOAA-NMFS-2020-0031-DRAFT-45202
NOAA-NMFS-2020-0031-DRAFT-45203
NOAA-NMFS-2020-0031-DRAFT-45204
NOAA-NMFS-2020-0031-DRAFT-45205
NOAA-NMFS-2020-0031-DRAFT-45206
NOAA-NMFS-2020-0031-DRAFT-45207
NOAA-NMFS-2020-0031-DRAFT-45208
NOAA-NMFS-2020-0031-DRAFT-45209
NOAA-NMFS-2020-0031-DRAFT-45210
NOAA-NMFS-2020-0031-DRAFT-45211
NOAA-NMFS-2020-0031-DRAFT-45212
NOAA-NMFS-2020-0031-DRAFT-45213
NOAA-NMFS-2020-0031-DRAFT-45214
NOAA-NMFS-2020-0031-DRAFT-45215
NOAA-NMFS-2020-0031-DRAFT-45216
NOAA-NMFS-2020-0031-DRAFT-45217
NOAA-NMFS-2020-0031-DRAFT-45218
NOAA-NMFS-2020-0031-DRAFT-45219
NOAA-NMFS-2020-0031-DRAFT-45220
NOAA-NMFS-2020-0031-DRAFT-45221
NOAA-NMFS-2020-0031-DRAFT-45222
NOAA-NMFS-2020-0031-DRAFT-45223
NOAA-NMFS-2020-0031-DRAFT-45224
NOAA-NMFS-2020-0031-DRAFT-45226
NOAA-NMFS-2020-0031-DRAFT-45227
NOAA-NMFS-2020-0031-DRAFT-45228
NOAA-NMFS-2020-0031-DRAFT-45229
NOAA-NMFS-2020-0031-DRAFT-45230
NOAA-NMFS-2020-0031-DRAFT-45231
NOAA-NMFS-2020-0031-DRAFT-45232
NOAA-NMFS-2020-0031-DRAFT-45233
NOAA-NMFS-2020-0031-DRAFT-45234
NOAA-NMFS-2020-0031-DRAFT-45235
NOAA-NMFS-2020-0031-DRAFT-45236
NOAA-NMFS-2020-0031-DRAFT-45237
NOAA-NMFS-2020-0031-DRAFT-45238
NOAA-NMFS-2020-0031-DRAFT-45239
NOAA-NMFS-2020-0031-DRAFT-45240
NOAA-NMFS-2020-0031-DRAFT-45241
NOAA-NMFS-2020-0031-DRAFT-45242

Comment from Neilly, Susan
Comment from Hennessy, Eileen
Comment from Agerbak, Linda
Comment from Patti, DICK
Comment from Bajaj, Ashok and Kiran
Comment from Milano, Joseph and Mary
Comment from Anonymous Anonymous
Comment from Mast, Jim
Comment from Sherman, Venessa
Comment from Thayer, Lori
Comment from A. Todd
Comment from Howard, Cynthia
Comment from Kepner, Dennis And Susan
Comment from Anonymous Anonymous
Comment from Boenish, Robert
Comment from VanBrocklin, Matthew
Comment from Glover, Tim
Comment from Lateiner, Ulysses
Comment from Winterer, Katrin
Comment from Holloway, Saundra
Comment from OConnor, Carolyn
Comment from Schlemel, Pierre
Comment from Rakowsky, Judith
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Ross, Justine
Comment from Fender, Flo
Comment from Kaplan, Eliot
Comment from Owens Viani, Lisa
Comment from Perinchief, Jana
Comment from Whiteside, Frances
Comment from Brotman, Sally
Comment from Anonymous Anonymous
Comment from Roa, Tania
Comment from Anonymous Anonymous
Comment from Osgood, Pamela
Comment from Anonymous Anonymous
Comment from Campbell, Dudley and
Candace
Comment from Raymond, Wendy
Comment from vegvari, ted
Comment from Anonymous Anonymous

03/01/2021
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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50419
NOAA-NMFS-2020-0031-DRAFT-50420
NOAA-NMFS-2020-0031-DRAFT-50421
NOAA-NMFS-2020-0031-DRAFT-50422
NOAA-NMFS-2020-0031-DRAFT-50423
NOAA-NMFS-2020-0031-DRAFT-50424
NOAA-NMFS-2020-0031-DRAFT-50425
NOAA-NMFS-2020-0031-DRAFT-50426
NOAA-NMFS-2020-0031-DRAFT-50427
NOAA-NMFS-2020-0031-DRAFT-50428
NOAA-NMFS-2020-0031-DRAFT-50429
NOAA-NMFS-2020-0031-DRAFT-50430
NOAA-NMFS-2020-0031-DRAFT-50431
NOAA-NMFS-2020-0031-DRAFT-50432
NOAA-NMFS-2020-0031-DRAFT-50433
NOAA-NMFS-2020-0031-DRAFT-50434
NOAA-NMFS-2020-0031-DRAFT-50435
NOAA-NMFS-2020-0031-DRAFT-50436
NOAA-NMFS-2020-0031-DRAFT-50437
NOAA-NMFS-2020-0031-DRAFT-50438
NOAA-NMFS-2020-0031-DRAFT-50439
NOAA-NMFS-2020-0031-DRAFT-50440
NOAA-NMFS-2020-0031-DRAFT-50441
NOAA-NMFS-2020-0031-DRAFT-50442
NOAA-NMFS-2020-0031-DRAFT-50443
NOAA-NMFS-2020-0031-DRAFT-50444
NOAA-NMFS-2020-0031-DRAFT-50445
NOAA-NMFS-2020-0031-DRAFT-50446
NOAA-NMFS-2020-0031-DRAFT-50447
NOAA-NMFS-2020-0031-DRAFT-50448
NOAA-NMFS-2020-0031-DRAFT-50449
NOAA-NMFS-2020-0031-DRAFT-50450
NOAA-NMFS-2020-0031-DRAFT-50451
NOAA-NMFS-2020-0031-DRAFT-50452
NOAA-NMFS-2020-0031-DRAFT-50453
NOAA-NMFS-2020-0031-DRAFT-50454
NOAA-NMFS-2020-0031-DRAFT-50455
NOAA-NMFS-2020-0031-DRAFT-50456
NOAA-NMFS-2020-0031-DRAFT-50457
NOAA-NMFS-2020-0031-DRAFT-50458
NOAA-NMFS-2020-0031-DRAFT-50459

Comment from Gary Gover
Comment from Marilyn Mick
Comment from Patricia Rossi
Comment from Elaine katz
Comment from Susan CLARK
Comment from Valerie Lovejoy
Comment from Rhonda pulliam
Comment from Bruce Hoeksema
Comment from Carl Hoffmeister
Comment from Susan Schlessinger
Comment from Deimile Mockus
Comment from Anonymous Anonymous
Comment from STANLEY GORALCZYK
Comment from Art Shervs
Comment from Elaine katz
Comment from Janet Bachelor
Comment from Melissa Norman
Comment from Albert Wilson
Comment from Elizabeth Wikle
Comment from Monica Tutkowski
Comment from Donna Surles
Comment from Michelle Benes
Comment from Anonymous Anonymous
Comment from Mary Pattison
Comment from Nancy Carl
Comment from Dan Perdios
Comment from Anonymous Anonymous
Comment from Graf, Brigitte
Comment from Herbert, Sandrine
Comment from Keith, Amy
Comment from Natalie Grigsby
Comment from James Ropicki
Comment from Susan Vogt
Comment from Marya Zanders
Comment from Dian Keller
Comment from PAUL KIM
Comment from Steve Schueth
Comment from Veronica Velasquez
Comment from Paul Williams
Comment from Arthur Schurr
Comment from Mary Doubleday

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45243
NOAA-NMFS-2020-0031-DRAFT-45245
NOAA-NMFS-2020-0031-DRAFT-45246
NOAA-NMFS-2020-0031-DRAFT-45247
NOAA-NMFS-2020-0031-DRAFT-45248
NOAA-NMFS-2020-0031-DRAFT-45249
NOAA-NMFS-2020-0031-DRAFT-45250
NOAA-NMFS-2020-0031-DRAFT-45251
NOAA-NMFS-2020-0031-DRAFT-45252
NOAA-NMFS-2020-0031-DRAFT-45253
NOAA-NMFS-2020-0031-DRAFT-45254
NOAA-NMFS-2020-0031-DRAFT-45255
NOAA-NMFS-2020-0031-DRAFT-45256
NOAA-NMFS-2020-0031-DRAFT-45257
NOAA-NMFS-2020-0031-DRAFT-45258
NOAA-NMFS-2020-0031-DRAFT-45259
NOAA-NMFS-2020-0031-DRAFT-45260
NOAA-NMFS-2020-0031-DRAFT-45261
NOAA-NMFS-2020-0031-DRAFT-45262
NOAA-NMFS-2020-0031-DRAFT-45263
NOAA-NMFS-2020-0031-DRAFT-45264
NOAA-NMFS-2020-0031-DRAFT-45265
NOAA-NMFS-2020-0031-DRAFT-45266
NOAA-NMFS-2020-0031-DRAFT-45267
NOAA-NMFS-2020-0031-DRAFT-45268
NOAA-NMFS-2020-0031-DRAFT-45269
NOAA-NMFS-2020-0031-DRAFT-45270
NOAA-NMFS-2020-0031-DRAFT-45271
NOAA-NMFS-2020-0031-DRAFT-45272
NOAA-NMFS-2020-0031-DRAFT-45273
NOAA-NMFS-2020-0031-DRAFT-45274
NOAA-NMFS-2020-0031-DRAFT-45275
NOAA-NMFS-2020-0031-DRAFT-45276
NOAA-NMFS-2020-0031-DRAFT-45277
NOAA-NMFS-2020-0031-DRAFT-45278
NOAA-NMFS-2020-0031-DRAFT-45279
NOAA-NMFS-2020-0031-DRAFT-45280
NOAA-NMFS-2020-0031-DRAFT-45281
NOAA-NMFS-2020-0031-DRAFT-45282
NOAA-NMFS-2020-0031-DRAFT-45283
NOAA-NMFS-2020-0031-DRAFT-45284

Comment from Pavey, Brenna
Comment from Cowans, Diana
Comment from Cecil, Dechenne
Comment from Hernandez, Ms. Maria Celia
Comment from Anonymous Anonymous
Comment from Busler, Niles
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Steele, Jenifer
Comment from Obedzinski, Linda
Comment from Miller, Bob
Comment from Morad, Samson
Comment from Collins, Jan
Comment from Lundstrom, Kristin
Comment from Sullivan, Timothy
Comment from Dixon, Diane
Comment from lewis, cynthia
Comment from Garrison, Harry
Comment from Anonymous Anonymous
Comment from Budde, Sharon
Comment from Chiusano, Kristina
Comment from Hernandez, Ms. Maria Celia
Comment from Ashton, Debra
Comment from Simon, Tia
Comment from Warner, Carolyn
Comment from Anonymous Anonymous
Comment from Masters, Mary
Comment from Christ, Elisabeth
Comment from Bussing, Lenore
Comment from Hanford, Jana
Comment from Anonymous Anonymous
Comment from Denton, April B.
Comment from Anonymous Anonymous
Comment from Jacobs, Nancy
Comment from Souto, Leo
Comment from Jet, Retro
Comment from Thonet, Kathi
Comment from Hendershott, Tracy
Comment from Janzen, Gayle
Comment from Wilson, M
Comment from McLaughlin, Julia

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NOAA-NMFS-2020-0031-DRAFT-50460
NOAA-NMFS-2020-0031-DRAFT-50461
NOAA-NMFS-2020-0031-DRAFT-50462
NOAA-NMFS-2020-0031-DRAFT-50463
NOAA-NMFS-2020-0031-DRAFT-50464
NOAA-NMFS-2020-0031-DRAFT-50465
NOAA-NMFS-2020-0031-DRAFT-50466
NOAA-NMFS-2020-0031-DRAFT-50467
NOAA-NMFS-2020-0031-DRAFT-50468
NOAA-NMFS-2020-0031-DRAFT-50469
NOAA-NMFS-2020-0031-DRAFT-50470
NOAA-NMFS-2020-0031-DRAFT-50471
NOAA-NMFS-2020-0031-DRAFT-50472
NOAA-NMFS-2020-0031-DRAFT-50473
NOAA-NMFS-2020-0031-DRAFT-50474
NOAA-NMFS-2020-0031-DRAFT-50475
NOAA-NMFS-2020-0031-DRAFT-50476
NOAA-NMFS-2020-0031-DRAFT-50477
NOAA-NMFS-2020-0031-DRAFT-50478
NOAA-NMFS-2020-0031-DRAFT-50479
NOAA-NMFS-2020-0031-DRAFT-50480
NOAA-NMFS-2020-0031-DRAFT-50482
NOAA-NMFS-2020-0031-DRAFT-50483
NOAA-NMFS-2020-0031-DRAFT-50484
NOAA-NMFS-2020-0031-DRAFT-50485
NOAA-NMFS-2020-0031-DRAFT-50486
NOAA-NMFS-2020-0031-DRAFT-50487
NOAA-NMFS-2020-0031-DRAFT-50488
NOAA-NMFS-2020-0031-DRAFT-50489
NOAA-NMFS-2020-0031-DRAFT-50490
NOAA-NMFS-2020-0031-DRAFT-50491
NOAA-NMFS-2020-0031-DRAFT-50492
NOAA-NMFS-2020-0031-DRAFT-50493
NOAA-NMFS-2020-0031-DRAFT-50494
NOAA-NMFS-2020-0031-DRAFT-50495
NOAA-NMFS-2020-0031-DRAFT-50496
NOAA-NMFS-2020-0031-DRAFT-50497
NOAA-NMFS-2020-0031-DRAFT-50498
NOAA-NMFS-2020-0031-DRAFT-50499
NOAA-NMFS-2020-0031-DRAFT-50500
NOAA-NMFS-2020-0031-DRAFT-50501

Comment from Mary Nuss
Comment from Sandra Marciante
Comment from patrick BOOT
Comment from C. Brezina
Comment from Sudi McCollum
Comment from Valerie Horne
Comment from Ralph Konchar
Comment from Joseph Rosta
Comment from Edward. Wolfsohn
Comment from Jill B.
Comment from Allen Altman
Comment from Laura Boley
Comment from chris ottosen
Comment from Lorrene Lucas
Comment from Linda Shirey
Comment from lisa graves
Comment from Linda Rea
Comment from Esther Prexl
Comment from Phyl Morello
Comment from Kkm H
Comment from Sherita Wilson
Comment from Honis Mary
Comment from Richard Popchak
Comment from Lynne Teplin
Comment from Jean Cameron
Comment from Julie Dunn
Comment from William McGoldrick
Comment from Emily Lucero
Comment from Mike Schuster
Comment from Lisa Tibbetts
Comment from Sheree Bala
Comment from Laura Waite
Comment from Nancy Meehan
Comment from Sharon greenrod
Comment from David Douglas
Comment from Timothy OConnor
Comment from Shirley Mccarthy
Comment from Judith Lang
Comment from Zandra Talbert
Comment from Steve Hanlon
Comment from Amie Corrado-Babe

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NOAA-NMFS-2020-0031-DRAFT-45285
NOAA-NMFS-2020-0031-DRAFT-45286
NOAA-NMFS-2020-0031-DRAFT-45287
NOAA-NMFS-2020-0031-DRAFT-45288
NOAA-NMFS-2020-0031-DRAFT-45289
NOAA-NMFS-2020-0031-DRAFT-45290
NOAA-NMFS-2020-0031-DRAFT-45291
NOAA-NMFS-2020-0031-DRAFT-45292
NOAA-NMFS-2020-0031-DRAFT-45293
NOAA-NMFS-2020-0031-DRAFT-45294
NOAA-NMFS-2020-0031-DRAFT-45295
NOAA-NMFS-2020-0031-DRAFT-45296
NOAA-NMFS-2020-0031-DRAFT-45297
NOAA-NMFS-2020-0031-DRAFT-45298
NOAA-NMFS-2020-0031-DRAFT-45299
NOAA-NMFS-2020-0031-DRAFT-45300
NOAA-NMFS-2020-0031-DRAFT-45301
NOAA-NMFS-2020-0031-DRAFT-45302
NOAA-NMFS-2020-0031-DRAFT-45303
NOAA-NMFS-2020-0031-DRAFT-45304
NOAA-NMFS-2020-0031-DRAFT-45306
NOAA-NMFS-2020-0031-DRAFT-45307
NOAA-NMFS-2020-0031-DRAFT-45308
NOAA-NMFS-2020-0031-DRAFT-45309
NOAA-NMFS-2020-0031-DRAFT-45310
NOAA-NMFS-2020-0031-DRAFT-45311
NOAA-NMFS-2020-0031-DRAFT-45314
NOAA-NMFS-2020-0031-DRAFT-45315
NOAA-NMFS-2020-0031-DRAFT-45316
NOAA-NMFS-2020-0031-DRAFT-45317
NOAA-NMFS-2020-0031-DRAFT-45318
NOAA-NMFS-2020-0031-DRAFT-45319
NOAA-NMFS-2020-0031-DRAFT-45320
NOAA-NMFS-2020-0031-DRAFT-45321
NOAA-NMFS-2020-0031-DRAFT-45322
NOAA-NMFS-2020-0031-DRAFT-45323
NOAA-NMFS-2020-0031-DRAFT-45324
NOAA-NMFS-2020-0031-DRAFT-45325
NOAA-NMFS-2020-0031-DRAFT-45326
NOAA-NMFS-2020-0031-DRAFT-45327
NOAA-NMFS-2020-0031-DRAFT-45328

Comment from Farrell, Jim
Comment from Shirey, Linda
Comment from Anonymous Anonymous
Comment from Woodward, Warren
Comment from Zondervan, Quinton
Comment from Kiriaty, Susanne
Comment from Gest, Jean Fuller
Comment from Hammond, Stephanie
Comment from Loosli, Ed
Comment from Face, Valerie
Comment from Blackstone, Linore
Comment from Smith, Betsy
Comment from Sargent, Cathy
Comment from Anonymous Anonymous
Comment from Huggins, William
Comment from McCall, A
Comment from Rooney, Rita
Comment from Simurro, Cie
Comment from Gray, Kristin
Comment from Merrick, Elizabeth
Comment from JANS, Sheila
Comment from Anonymous Anonymous
Comment from Sorrells, James
Comment from Morgan, Paula
Comment from Johnson, Kiara
Comment from McDonald, Cory
Comment from Glover, Tim
Comment from Nitz, Jennifer
Comment from Foster, Dawn
Comment from Thayer, Lori
Comment from Bonner, Tracey
Comment from Anonymous Anonymous
Comment from Bonnington, Joan
Comment from Walsh, Marce
Comment from harris, kym
Comment from Hubberd, Michael
Comment from Zimmer, Catherine
Comment from Tasheff, Petra
Comment from Eddy, William
Comment from Donoghue-Eddy, Margaret
Comment from Metzger, Luke

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NOAA-NMFS-2020-0031-DRAFT-50502
NOAA-NMFS-2020-0031-DRAFT-50503
NOAA-NMFS-2020-0031-DRAFT-50504
NOAA-NMFS-2020-0031-DRAFT-50505
NOAA-NMFS-2020-0031-DRAFT-50506
NOAA-NMFS-2020-0031-DRAFT-50507
NOAA-NMFS-2020-0031-DRAFT-50508
NOAA-NMFS-2020-0031-DRAFT-50509
NOAA-NMFS-2020-0031-DRAFT-50510
NOAA-NMFS-2020-0031-DRAFT-50511
NOAA-NMFS-2020-0031-DRAFT-50512
NOAA-NMFS-2020-0031-DRAFT-50513
NOAA-NMFS-2020-0031-DRAFT-50514
NOAA-NMFS-2020-0031-DRAFT-50515
NOAA-NMFS-2020-0031-DRAFT-50516
NOAA-NMFS-2020-0031-DRAFT-50517
NOAA-NMFS-2020-0031-DRAFT-50518
NOAA-NMFS-2020-0031-DRAFT-50519
NOAA-NMFS-2020-0031-DRAFT-50520
NOAA-NMFS-2020-0031-DRAFT-50521
NOAA-NMFS-2020-0031-DRAFT-50522
NOAA-NMFS-2020-0031-DRAFT-50523
NOAA-NMFS-2020-0031-DRAFT-50524
NOAA-NMFS-2020-0031-DRAFT-50525
NOAA-NMFS-2020-0031-DRAFT-50526
NOAA-NMFS-2020-0031-DRAFT-50527
NOAA-NMFS-2020-0031-DRAFT-50528
NOAA-NMFS-2020-0031-DRAFT-50529
NOAA-NMFS-2020-0031-DRAFT-50530
NOAA-NMFS-2020-0031-DRAFT-50531
NOAA-NMFS-2020-0031-DRAFT-50532
NOAA-NMFS-2020-0031-DRAFT-50533
NOAA-NMFS-2020-0031-DRAFT-50534
NOAA-NMFS-2020-0031-DRAFT-50535
NOAA-NMFS-2020-0031-DRAFT-50536
NOAA-NMFS-2020-0031-DRAFT-50537
NOAA-NMFS-2020-0031-DRAFT-50538
NOAA-NMFS-2020-0031-DRAFT-50539
NOAA-NMFS-2020-0031-DRAFT-50540
NOAA-NMFS-2020-0031-DRAFT-50541
NOAA-NMFS-2020-0031-DRAFT-50542

Comment from Steve Sheehy
Comment from Lidia Lucaciu
Comment from Cristina Fiorillo
Comment from Mary Planding
Comment from Richard Han
Comment from Merry Guben
Comment from Silvana Borrelli
Comment from Donald Watson
Comment from Linda Flannery
Comment from Kathleen Johnson
Comment from Laura Guttridge
Comment from Lyn Lowry
Comment from Dorothea Swint
Comment from Pamela Defilippo
Comment from Josephine Rust
Comment from Anonymous Anonymous
Comment from Ellen Ayalin
Comment from Michael Barnes
Comment from Joan Butcher
Comment from Anne Robison
Comment from Ericka Abrams
Comment from Stephen Anderson
Comment from Christi Tarallo
Comment from GEORGE HURST
Comment from Alan Linville
Comment from Joanna Kling
Comment from Gertrude Battaly
Comment from JILL ALIBRANDI
Comment from K R
Comment from Jennifer svenson
Comment from Helene Whitson
Comment from Lawrence Crowley
Comment from Anonymous Anonymous
Comment from Cheryl Metzger
Comment from P.S. Padula
Comment from Rebecca Rabinowitz
Comment from Edith Kelman
Comment from Molly Swabb
Comment from Barry Stover
Comment from Edmund Weston
Comment from stephen jones

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45329
NOAA-NMFS-2020-0031-DRAFT-45330
NOAA-NMFS-2020-0031-DRAFT-45331
NOAA-NMFS-2020-0031-DRAFT-45332
NOAA-NMFS-2020-0031-DRAFT-45333
NOAA-NMFS-2020-0031-DRAFT-45334
NOAA-NMFS-2020-0031-DRAFT-45335
NOAA-NMFS-2020-0031-DRAFT-45336
NOAA-NMFS-2020-0031-DRAFT-45337
NOAA-NMFS-2020-0031-DRAFT-45338
NOAA-NMFS-2020-0031-DRAFT-45339
NOAA-NMFS-2020-0031-DRAFT-45340
NOAA-NMFS-2020-0031-DRAFT-45341
NOAA-NMFS-2020-0031-DRAFT-45342
NOAA-NMFS-2020-0031-DRAFT-45343
NOAA-NMFS-2020-0031-DRAFT-45344
NOAA-NMFS-2020-0031-DRAFT-45345
NOAA-NMFS-2020-0031-DRAFT-45346
NOAA-NMFS-2020-0031-DRAFT-45347
NOAA-NMFS-2020-0031-DRAFT-45348
NOAA-NMFS-2020-0031-DRAFT-45349
NOAA-NMFS-2020-0031-DRAFT-45350
NOAA-NMFS-2020-0031-DRAFT-45351
NOAA-NMFS-2020-0031-DRAFT-45352
NOAA-NMFS-2020-0031-DRAFT-45353
NOAA-NMFS-2020-0031-DRAFT-45354
NOAA-NMFS-2020-0031-DRAFT-45355
NOAA-NMFS-2020-0031-DRAFT-45356
NOAA-NMFS-2020-0031-DRAFT-45357
NOAA-NMFS-2020-0031-DRAFT-45358
NOAA-NMFS-2020-0031-DRAFT-45359
NOAA-NMFS-2020-0031-DRAFT-45360
NOAA-NMFS-2020-0031-DRAFT-45361
NOAA-NMFS-2020-0031-DRAFT-45362
NOAA-NMFS-2020-0031-DRAFT-45363
NOAA-NMFS-2020-0031-DRAFT-45364
NOAA-NMFS-2020-0031-DRAFT-45365
NOAA-NMFS-2020-0031-DRAFT-45366
NOAA-NMFS-2020-0031-DRAFT-45367
NOAA-NMFS-2020-0031-DRAFT-45368
NOAA-NMFS-2020-0031-DRAFT-45369

Comment from Carter, Kirby
Comment from Campbell, Dudley and
Candace
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Jacques, Karen
Comment from Gordon, Lonnie
Comment from Knecht, Thomas
Comment from Katz, Marla
Comment from Carley, Cynthia
Comment from Steele, Jenifer
Comment from Raymond, Gary
Comment from Lucchini, Jillian
Comment from Coppersmith, Jessica
Comment from Harrie, Susan
Comment from Stirpe, D
Comment from Smith, Cristina
Comment from Dresser, Marilyn
Comment from Dresser, Marilyn
Comment from lewis, cynthia
Comment from Levin, Richard
Comment from Williams, Gerry
Comment from Tallal, Jimy
Comment from Marshall, Sheila
Comment from Jacques, Karen
Comment from High, Eleanor
Comment from Red, Pure
Comment from Ricci, Lynn
Comment from Lang, Liana
Comment from Lathan, Nancy
Comment from Lasseter PhD, Richard
Comment from Anonymous Anonymous
Comment from Walsh, Marce
Comment from Wilson, Sharon K
Comment from Fletcher, Paddy
Comment from Cobb, Sandra
Comment from Cooley, Marian
Comment from Farwell, Laura
Comment from Palla, Paul
Comment from Anonymous Anonymous
Comment from Foster, Dawn
Comment from Anonymous Anonymous

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50543
NOAA-NMFS-2020-0031-DRAFT-50544
NOAA-NMFS-2020-0031-DRAFT-50545
NOAA-NMFS-2020-0031-DRAFT-50546
NOAA-NMFS-2020-0031-DRAFT-50547
NOAA-NMFS-2020-0031-DRAFT-50548
NOAA-NMFS-2020-0031-DRAFT-50549
NOAA-NMFS-2020-0031-DRAFT-50550
NOAA-NMFS-2020-0031-DRAFT-50551
NOAA-NMFS-2020-0031-DRAFT-50552
NOAA-NMFS-2020-0031-DRAFT-50553
NOAA-NMFS-2020-0031-DRAFT-50554
NOAA-NMFS-2020-0031-DRAFT-50555
NOAA-NMFS-2020-0031-DRAFT-50556
NOAA-NMFS-2020-0031-DRAFT-50557
NOAA-NMFS-2020-0031-DRAFT-50558
NOAA-NMFS-2020-0031-DRAFT-50559
NOAA-NMFS-2020-0031-DRAFT-50560
NOAA-NMFS-2020-0031-DRAFT-50561
NOAA-NMFS-2020-0031-DRAFT-50562
NOAA-NMFS-2020-0031-DRAFT-50563
NOAA-NMFS-2020-0031-DRAFT-50564
NOAA-NMFS-2020-0031-DRAFT-50565
NOAA-NMFS-2020-0031-DRAFT-50566
NOAA-NMFS-2020-0031-DRAFT-50567
NOAA-NMFS-2020-0031-DRAFT-50568
NOAA-NMFS-2020-0031-DRAFT-50569
NOAA-NMFS-2020-0031-DRAFT-50570
NOAA-NMFS-2020-0031-DRAFT-50571
NOAA-NMFS-2020-0031-DRAFT-50573
NOAA-NMFS-2020-0031-DRAFT-50574
NOAA-NMFS-2020-0031-DRAFT-50575
NOAA-NMFS-2020-0031-DRAFT-50576
NOAA-NMFS-2020-0031-DRAFT-50577
NOAA-NMFS-2020-0031-DRAFT-50578
NOAA-NMFS-2020-0031-DRAFT-50579
NOAA-NMFS-2020-0031-DRAFT-50580
NOAA-NMFS-2020-0031-DRAFT-50581
NOAA-NMFS-2020-0031-DRAFT-50582
NOAA-NMFS-2020-0031-DRAFT-50583
NOAA-NMFS-2020-0031-DRAFT-50584

Comment from Tiffany Ehnes
Comment from Marianne Corona
Comment from Anonymous Anonymous
Comment from Lynne Jones
Comment from Jo Rhoades
Comment from Sherron Stark
Comment from Kent Clark
Comment from Margaret Fularczyk
Comment from Laurie Spraga
Comment from Brian Florian
Comment from Pamela Reber
Comment from Marc Hachey
Comment from Crickett Miller
Comment from Nicole Mola
Comment from Dawn Lewis
Comment from Sarah Lawson
Comment from Ellen Gutfleisch
Comment from Anonymous Anonymous
Comment from Jill Singer
Comment from Judith Foran
Comment from Rhoda Levine
Comment from Gloria Morrison
Comment from John Gieser
Comment from Robin Lorentzen
Comment from Annisa Luginbill
Comment from Sarah Hurd
Comment from Emily Dickinson-Adams
Comment from Anonymous Anonymous
Comment from Ruth Brennan
Comment from Susan Dickerson
Comment from Robert Feuchter
Comment from Carolyn Dickson
Comment from jed fuhrman
Comment from Amy Young
Comment from Mel Apodaca
Comment from Stacy James
Comment from Deirdre Fowler
Comment from Sonnia Alfonso
Comment from MARK BEST
Comment from Sabrina Sarne
Comment from Susan Lowe

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45370
NOAA-NMFS-2020-0031-DRAFT-45372
NOAA-NMFS-2020-0031-DRAFT-45373
NOAA-NMFS-2020-0031-DRAFT-45374
NOAA-NMFS-2020-0031-DRAFT-45375
NOAA-NMFS-2020-0031-DRAFT-45376
NOAA-NMFS-2020-0031-DRAFT-45377
NOAA-NMFS-2020-0031-DRAFT-45378
NOAA-NMFS-2020-0031-DRAFT-45379
NOAA-NMFS-2020-0031-DRAFT-45380
NOAA-NMFS-2020-0031-DRAFT-45381
NOAA-NMFS-2020-0031-DRAFT-45383
NOAA-NMFS-2020-0031-DRAFT-45384
NOAA-NMFS-2020-0031-DRAFT-45385
NOAA-NMFS-2020-0031-DRAFT-45387
NOAA-NMFS-2020-0031-DRAFT-45388
NOAA-NMFS-2020-0031-DRAFT-45389
NOAA-NMFS-2020-0031-DRAFT-45390
NOAA-NMFS-2020-0031-DRAFT-45391
NOAA-NMFS-2020-0031-DRAFT-45392
NOAA-NMFS-2020-0031-DRAFT-45393
NOAA-NMFS-2020-0031-DRAFT-45394
NOAA-NMFS-2020-0031-DRAFT-45395
NOAA-NMFS-2020-0031-DRAFT-45396
NOAA-NMFS-2020-0031-DRAFT-45397
NOAA-NMFS-2020-0031-DRAFT-45398
NOAA-NMFS-2020-0031-DRAFT-45399
NOAA-NMFS-2020-0031-DRAFT-45400
NOAA-NMFS-2020-0031-DRAFT-45401
NOAA-NMFS-2020-0031-DRAFT-45402
NOAA-NMFS-2020-0031-DRAFT-45403
NOAA-NMFS-2020-0031-DRAFT-45404
NOAA-NMFS-2020-0031-DRAFT-45407
NOAA-NMFS-2020-0031-DRAFT-45408
NOAA-NMFS-2020-0031-DRAFT-45411
NOAA-NMFS-2020-0031-DRAFT-45412
NOAA-NMFS-2020-0031-DRAFT-45414
NOAA-NMFS-2020-0031-DRAFT-45415
NOAA-NMFS-2020-0031-DRAFT-45416
NOAA-NMFS-2020-0031-DRAFT-45417
NOAA-NMFS-2020-0031-DRAFT-45419

Comment from Hull, Gary
Comment from Anonymous Anonymous
Comment from Symington, CS
Comment from fisher, c
Comment from Anonymous Anonymous
Comment from Loosli, Ed
Comment from Skalecki, Joseph
Comment from Briskin, Jordan
Comment from Argo, Allison
Comment from Anonymous Anonymous
Comment from Champion, Erich
Comment from Mast, Jim
Comment from Bowman, Gerald
Comment from Sachs, Linda
Comment from Freeman, Beth Jane
Comment from Parapar, Alejandra
Comment from Bonnington, Joan
Comment from Bonner, Tracey
Comment from Fletcher, Carol
Comment from Gutek, Michele
Comment from YOung, Cynthia
Comment from Kosowicz, Aleks
Comment from Propen, Bev
Comment from kolchins, patricia
Comment from Johnson, Bonnie
Comment from Waterworth, Laura
Comment from Linker, Linda
Comment from Anonymous Anonymous
Comment from march, kendall
Comment from Cizauskas, Renee
Comment from Richardson, Rebecca
Comment from Canham, Stephen
Comment from Brandt, Cathy
Comment from Anonymous Anonymous
Comment from harris, kym
Comment from Sawyer, Caryl
Comment from Palmgren, Tris
Comment from Tipton, Bruce
Comment from Kunkel, Margaret
Comment from Schott, Sandy
Comment from Schuyler, Linda

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NOAA-NMFS-2020-0031-DRAFT-50585
NOAA-NMFS-2020-0031-DRAFT-50586
NOAA-NMFS-2020-0031-DRAFT-50587
NOAA-NMFS-2020-0031-DRAFT-50588
NOAA-NMFS-2020-0031-DRAFT-50589
NOAA-NMFS-2020-0031-DRAFT-50590
NOAA-NMFS-2020-0031-DRAFT-50591
NOAA-NMFS-2020-0031-DRAFT-50592
NOAA-NMFS-2020-0031-DRAFT-50593
NOAA-NMFS-2020-0031-DRAFT-50595
NOAA-NMFS-2020-0031-DRAFT-50596
NOAA-NMFS-2020-0031-DRAFT-50597
NOAA-NMFS-2020-0031-DRAFT-50598
NOAA-NMFS-2020-0031-DRAFT-50599
NOAA-NMFS-2020-0031-DRAFT-50600
NOAA-NMFS-2020-0031-DRAFT-50601
NOAA-NMFS-2020-0031-DRAFT-50602
NOAA-NMFS-2020-0031-DRAFT-50603
NOAA-NMFS-2020-0031-DRAFT-50604
NOAA-NMFS-2020-0031-DRAFT-50605
NOAA-NMFS-2020-0031-DRAFT-50606
NOAA-NMFS-2020-0031-DRAFT-50607
NOAA-NMFS-2020-0031-DRAFT-50608
NOAA-NMFS-2020-0031-DRAFT-50609
NOAA-NMFS-2020-0031-DRAFT-50610
NOAA-NMFS-2020-0031-DRAFT-50611
NOAA-NMFS-2020-0031-DRAFT-50612
NOAA-NMFS-2020-0031-DRAFT-50613
NOAA-NMFS-2020-0031-DRAFT-50614
NOAA-NMFS-2020-0031-DRAFT-50615
NOAA-NMFS-2020-0031-DRAFT-50616
NOAA-NMFS-2020-0031-DRAFT-50617
NOAA-NMFS-2020-0031-DRAFT-50618
NOAA-NMFS-2020-0031-DRAFT-50619
NOAA-NMFS-2020-0031-DRAFT-50620
NOAA-NMFS-2020-0031-DRAFT-50621
NOAA-NMFS-2020-0031-DRAFT-50622
NOAA-NMFS-2020-0031-DRAFT-50623
NOAA-NMFS-2020-0031-DRAFT-50624
NOAA-NMFS-2020-0031-DRAFT-50625
NOAA-NMFS-2020-0031-DRAFT-50626

Comment from Norma Kline
Comment from Jennifer Will
Comment from Marilyn McMullen
Comment from Richard Strowd
Comment from Judith Waite
Comment from Elizabeth Butler
Comment from Michael Lieberman
Comment from Donald Dicken
Comment from Maria M
Comment from Ashley Winkler
Comment from Holly Luban
Comment from Stephanie Huntington
Comment from Anna Simle
Comment from Hank Schlinger
Comment from DANIEL WAITE
Comment from Yefim Maizel
Comment from Sally Marone
Comment from Leonora Xhrouet
Comment from Ruwan Salgado
Comment from Henry Mobley
Comment from OCTAVIA PLUMMER
Comment from gordon illg
Comment from Eithne Clarke
Comment from Debbie Reichow
Comment from Steven Handwerker
Comment from Catherine King-Chuparkoff
Comment from Joan Walker
Comment from Kathy Dahl-Bredine
Comment from Ruth Curiale
Comment from Laura Overmann
Comment from Dianne Roberts
Comment from Terry Lowman
Comment from Autumn Garcia
Comment from Keiko Barrett
Comment from Joan Flynn
Comment from Debbie Hunt
Comment from Rosemary Pasquarello
Comment from Anonymous Anonymous
Comment from Carole Hiering
Comment from Kathleen Ruiz
Comment from robert johnson

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NOAA-NMFS-2020-0031-DRAFT-45420
NOAA-NMFS-2020-0031-DRAFT-45421
NOAA-NMFS-2020-0031-DRAFT-45423
NOAA-NMFS-2020-0031-DRAFT-45424
NOAA-NMFS-2020-0031-DRAFT-45426
NOAA-NMFS-2020-0031-DRAFT-45427
NOAA-NMFS-2020-0031-DRAFT-45428
NOAA-NMFS-2020-0031-DRAFT-45429
NOAA-NMFS-2020-0031-DRAFT-45430
NOAA-NMFS-2020-0031-DRAFT-45431
NOAA-NMFS-2020-0031-DRAFT-45432
NOAA-NMFS-2020-0031-DRAFT-45434
NOAA-NMFS-2020-0031-DRAFT-45435
NOAA-NMFS-2020-0031-DRAFT-45436
NOAA-NMFS-2020-0031-DRAFT-45437
NOAA-NMFS-2020-0031-DRAFT-45438
NOAA-NMFS-2020-0031-DRAFT-45439
NOAA-NMFS-2020-0031-DRAFT-45440
NOAA-NMFS-2020-0031-DRAFT-45441
NOAA-NMFS-2020-0031-DRAFT-45442
NOAA-NMFS-2020-0031-DRAFT-45443
NOAA-NMFS-2020-0031-DRAFT-45444
NOAA-NMFS-2020-0031-DRAFT-45445
NOAA-NMFS-2020-0031-DRAFT-45446
NOAA-NMFS-2020-0031-DRAFT-45447
NOAA-NMFS-2020-0031-DRAFT-45448
NOAA-NMFS-2020-0031-DRAFT-45450
NOAA-NMFS-2020-0031-DRAFT-45452
NOAA-NMFS-2020-0031-DRAFT-45453
NOAA-NMFS-2020-0031-DRAFT-45454
NOAA-NMFS-2020-0031-DRAFT-45455
NOAA-NMFS-2020-0031-DRAFT-45456
NOAA-NMFS-2020-0031-DRAFT-45457
NOAA-NMFS-2020-0031-DRAFT-45458
NOAA-NMFS-2020-0031-DRAFT-45459
NOAA-NMFS-2020-0031-DRAFT-45460
NOAA-NMFS-2020-0031-DRAFT-45461
NOAA-NMFS-2020-0031-DRAFT-45462
NOAA-NMFS-2020-0031-DRAFT-45463
NOAA-NMFS-2020-0031-DRAFT-45464
NOAA-NMFS-2020-0031-DRAFT-45465

Comment from Simone, Beverly
Comment from Leon, Mary A
Comment from Stauber, Dave
Comment from Finlon, Maureen
Comment from Ridenour, Patty
Comment from Christensen, Margaret
Comment from Spong, Timothy
Comment from Carrell, James
Comment from lindemann, Kathryn
Comment from Fornagiel, Valeri
Comment from Rodriguez, Susan
Comment from Gomez, Julissa
Comment from Glover, Tim
Comment from Olsen, Corey E.
Comment from Asbury, Sherry
Comment from Estok, Karen
Comment from Okroi, Robert
Comment from Zoll, Donna
Comment from Campbell, Dudley and
Candace
Comment from Vintilla, Joanna
Comment from Anonymous Anonymous
Comment from Troxell, Shawn
Comment from Naples, Jean
Comment from Acerro, Theresa
Comment from Miller, K.T.
Comment from Stoakes, Mike
Comment from O'Rourke, Susan
Comment from Benedict, Derek
Comment from Bajaj, Ashok and Kiran
Comment from Bajaj, Ashok and Kiran
Comment from Anonymous Anonymous
Comment from Milano, Joseph and Mary
Comment from Bajaj, Ashok and Kiran
Comment from Bajaj, Ashok and Kiran
Comment from Anonymous Anonymous
Comment from Milano, Joseph and Mary
Comment from Frattaroli, Frank
Comment from Carey, Elisabeth
Comment from Hammond, Stephanie
Comment from Buck, Julia
Comment from Busler, Niles

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NOAA-NMFS-2020-0031-DRAFT-50627
NOAA-NMFS-2020-0031-DRAFT-50628
NOAA-NMFS-2020-0031-DRAFT-50629
NOAA-NMFS-2020-0031-DRAFT-50630
NOAA-NMFS-2020-0031-DRAFT-50631
NOAA-NMFS-2020-0031-DRAFT-50632
NOAA-NMFS-2020-0031-DRAFT-50633
NOAA-NMFS-2020-0031-DRAFT-50634
NOAA-NMFS-2020-0031-DRAFT-50635
NOAA-NMFS-2020-0031-DRAFT-50636
NOAA-NMFS-2020-0031-DRAFT-50637
NOAA-NMFS-2020-0031-DRAFT-50638
NOAA-NMFS-2020-0031-DRAFT-50639
NOAA-NMFS-2020-0031-DRAFT-50640
NOAA-NMFS-2020-0031-DRAFT-50641
NOAA-NMFS-2020-0031-DRAFT-50642
NOAA-NMFS-2020-0031-DRAFT-50643
NOAA-NMFS-2020-0031-DRAFT-50644
NOAA-NMFS-2020-0031-DRAFT-50645
NOAA-NMFS-2020-0031-DRAFT-50646
NOAA-NMFS-2020-0031-DRAFT-50648
NOAA-NMFS-2020-0031-DRAFT-50649
NOAA-NMFS-2020-0031-DRAFT-50650
NOAA-NMFS-2020-0031-DRAFT-50651
NOAA-NMFS-2020-0031-DRAFT-50652
NOAA-NMFS-2020-0031-DRAFT-50653
NOAA-NMFS-2020-0031-DRAFT-50654
NOAA-NMFS-2020-0031-DRAFT-50655
NOAA-NMFS-2020-0031-DRAFT-50657
NOAA-NMFS-2020-0031-DRAFT-50658
NOAA-NMFS-2020-0031-DRAFT-50659
NOAA-NMFS-2020-0031-DRAFT-50660
NOAA-NMFS-2020-0031-DRAFT-50661
NOAA-NMFS-2020-0031-DRAFT-50662
NOAA-NMFS-2020-0031-DRAFT-50663
NOAA-NMFS-2020-0031-DRAFT-50664
NOAA-NMFS-2020-0031-DRAFT-50665
NOAA-NMFS-2020-0031-DRAFT-50666
NOAA-NMFS-2020-0031-DRAFT-50668
NOAA-NMFS-2020-0031-DRAFT-50669
NOAA-NMFS-2020-0031-DRAFT-50670

Comment from Olivia Austen
Comment from Joyce Greenberg
Comment from Bruce Melius
Comment from Merlin Wilson
Comment from Angela Genovese
Comment from Marjorie Browning
Comment from Terry Callahan
Comment from Katherine McKenna
Comment from Tina Colafranceschi
Comment from Alexander Grant
Comment from Diane loughbom
Comment from Linda Friedman
Comment from Craig Lerner
Comment from Julia Travers
Comment from Monica Mabry
Comment from Pete Wash
Comment from Denise Aubry
Comment from Monique Guignard-Spielberg
Comment from Bob Hannigan
Comment from Kevin McAlister
Comment from Ann Hancock
Comment from Dionna Campbell
Comment from Dominick Lafiura
Comment from Jan Weisel
Comment from Liz Amsde
Comment from Deirdre Riley
Comment from Kevin Richeson
Comment from Shea Nace
Comment from Kelli Lent
Comment from Michael Ludgate
Comment from Rochelle Cohen
Comment from Helga LaCava
Comment from Eleanor Dowson
Comment from Diana Liriano
Comment from George Rubio-Boitel
Comment from Larry Lambeth
Comment from Sandra Materi
Comment from William Bacon
Comment from Sally Woodard
Comment from Michaela Morris
Comment from John Wyatt

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45466
NOAA-NMFS-2020-0031-DRAFT-45468
NOAA-NMFS-2020-0031-DRAFT-45469
NOAA-NMFS-2020-0031-DRAFT-45470
NOAA-NMFS-2020-0031-DRAFT-45471
NOAA-NMFS-2020-0031-DRAFT-45472
NOAA-NMFS-2020-0031-DRAFT-45473
NOAA-NMFS-2020-0031-DRAFT-45474
NOAA-NMFS-2020-0031-DRAFT-45476
NOAA-NMFS-2020-0031-DRAFT-45477
NOAA-NMFS-2020-0031-DRAFT-45478
NOAA-NMFS-2020-0031-DRAFT-45479
NOAA-NMFS-2020-0031-DRAFT-45480
NOAA-NMFS-2020-0031-DRAFT-45481
NOAA-NMFS-2020-0031-DRAFT-45482
NOAA-NMFS-2020-0031-DRAFT-45483
NOAA-NMFS-2020-0031-DRAFT-45487
NOAA-NMFS-2020-0031-DRAFT-45488
NOAA-NMFS-2020-0031-DRAFT-45490
NOAA-NMFS-2020-0031-DRAFT-45491

Comment from Anonymous Anonymous
Comment from Dugan, Pamela
Comment from golion, isabelle
Comment from Frisch, Dorothy
Comment from Rhein, Sandy
Comment from Fischer, Elaine
Comment from Pavey, Brenna
Comment from Questar, V
Comment from Smith, S.
Comment from Precourt, Bernice
Comment from Anonymous Anonymous
Comment from Buckland, Waltraud
Comment from Masterson, Lori
Comment from Trantules, Susan
Comment from repp, susan
Comment from Clark, Diane
Comment from Folmer, A
Comment from Rice, Michelle
Comment from Fitzpatrick, John
Comment from knapik, greg

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50671
NOAA-NMFS-2020-0031-DRAFT-50672
NOAA-NMFS-2020-0031-DRAFT-50673
NOAA-NMFS-2020-0031-DRAFT-50674
NOAA-NMFS-2020-0031-DRAFT-50675
NOAA-NMFS-2020-0031-DRAFT-50676
NOAA-NMFS-2020-0031-DRAFT-50677
NOAA-NMFS-2020-0031-DRAFT-50678
NOAA-NMFS-2020-0031-DRAFT-50679
NOAA-NMFS-2020-0031-DRAFT-50681
NOAA-NMFS-2020-0031-DRAFT-50682
NOAA-NMFS-2020-0031-DRAFT-50683
NOAA-NMFS-2020-0031-DRAFT-50684
NOAA-NMFS-2020-0031-DRAFT-50685
NOAA-NMFS-2020-0031-DRAFT-50686
NOAA-NMFS-2020-0031-DRAFT-50687
NOAA-NMFS-2020-0031-DRAFT-50688
NOAA-NMFS-2020-0031-DRAFT-50689
NOAA-NMFS-2020-0031-DRAFT-50690
NOAA-NMFS-2020-0031-DRAFT-50691

02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45492

Comment from Davis, Elizabeth

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50692

02/28/2021
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NOAA-NMFS-2020-0031-DRAFT-45493
NOAA-NMFS-2020-0031-DRAFT-45495
NOAA-NMFS-2020-0031-DRAFT-45496
NOAA-NMFS-2020-0031-DRAFT-45497
NOAA-NMFS-2020-0031-DRAFT-45498
NOAA-NMFS-2020-0031-DRAFT-45499
NOAA-NMFS-2020-0031-DRAFT-45500
NOAA-NMFS-2020-0031-DRAFT-45501
NOAA-NMFS-2020-0031-DRAFT-45502
NOAA-NMFS-2020-0031-DRAFT-45503
NOAA-NMFS-2020-0031-DRAFT-45504
NOAA-NMFS-2020-0031-DRAFT-45506
NOAA-NMFS-2020-0031-DRAFT-45507
NOAA-NMFS-2020-0031-DRAFT-45508
NOAA-NMFS-2020-0031-DRAFT-45509
NOAA-NMFS-2020-0031-DRAFT-45510
NOAA-NMFS-2020-0031-DRAFT-45511
NOAA-NMFS-2020-0031-DRAFT-45512
NOAA-NMFS-2020-0031-DRAFT-45513

Comment from Olsen, Pamela Joan
Comment from chrisler, meg
Comment from Swain, Joan
Comment from Cano, Nadine
Comment from GASPAR, SUZANNE
Comment from Gitlin, Susan
Comment from Hickey, Mary
Comment from Alberts, Norman
Comment from Weaver, Sayre
Comment from Manley, Lynn
Comment from Cleaver, HARRY
Comment from Cummings, Loretta
Comment from Fay, Kevin
Comment from Fiedler, David
Comment from Kalbac, P.
Comment from SUNDBERG, SENTA
Comment from Hill, Marianne
Comment from Out, Pet
Comment from Greene, J

03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50693
NOAA-NMFS-2020-0031-DRAFT-50694
NOAA-NMFS-2020-0031-DRAFT-50695
NOAA-NMFS-2020-0031-DRAFT-50696
NOAA-NMFS-2020-0031-DRAFT-50697
NOAA-NMFS-2020-0031-DRAFT-50698
NOAA-NMFS-2020-0031-DRAFT-50699
NOAA-NMFS-2020-0031-DRAFT-50702
NOAA-NMFS-2020-0031-DRAFT-50703
NOAA-NMFS-2020-0031-DRAFT-50704
NOAA-NMFS-2020-0031-DRAFT-50705
NOAA-NMFS-2020-0031-DRAFT-50706
NOAA-NMFS-2020-0031-DRAFT-50707
NOAA-NMFS-2020-0031-DRAFT-50708
NOAA-NMFS-2020-0031-DRAFT-50709
NOAA-NMFS-2020-0031-DRAFT-50710
NOAA-NMFS-2020-0031-DRAFT-50711
NOAA-NMFS-2020-0031-DRAFT-50712
NOAA-NMFS-2020-0031-DRAFT-50713

Comment from John Atkins
Comment from Summer Buzzell
Comment from Anne Fowler
Comment from JoAnne Larsen
Comment from Erik Natti
Comment from Francine Brown
Comment from Diana Donovan
Comment from Corey Schade
Comment from Thomas Kuspiel
Comment from Terry Gunning
Comment from Holly Putman
Comment from Lorenz Steininger
Comment from Ted Clark
Comment from Elvier Yemaya
Comment from John Blaha
Comment from B. Rahn
Comment from Michelle Bizzell
Comment from Alex Berger
Comment from Jeri Romero
Comment from Anonymous Anonymous
Comment from Savannah, Ogeechee, Satilla
Riverkeepers and Altamaha Coastkeeper
Comment from Allen Altman
Comment from Jean Chagnon
Comment from Carol Rothbell
Comment from Larissa Matthews
Comment from Janet Robinette
Comment from Beverly Boling
Comment from Sonja Wong
Comment from Carole Smudin
Comment from Kim Sweitzer
Comment from Lupe Torre
Comment from James Mulcare
Comment from Carol Coons
Comment from Gary Herwig
Comment from Caroline Sweeney
Comment from Don Bush
Comment from andrew kaplan
Comment from Joseph Spurgas
Comment from Jennifer Downing
Comment from Karin Labby

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02/28/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45514
NOAA-NMFS-2020-0031-DRAFT-45515
NOAA-NMFS-2020-0031-DRAFT-45516
NOAA-NMFS-2020-0031-DRAFT-45518
NOAA-NMFS-2020-0031-DRAFT-45519
NOAA-NMFS-2020-0031-DRAFT-45521
NOAA-NMFS-2020-0031-DRAFT-45522
NOAA-NMFS-2020-0031-DRAFT-45523
NOAA-NMFS-2020-0031-DRAFT-45524
NOAA-NMFS-2020-0031-DRAFT-45526
NOAA-NMFS-2020-0031-DRAFT-45527
NOAA-NMFS-2020-0031-DRAFT-45528
NOAA-NMFS-2020-0031-DRAFT-45529
NOAA-NMFS-2020-0031-DRAFT-45530
NOAA-NMFS-2020-0031-DRAFT-45531
NOAA-NMFS-2020-0031-DRAFT-45532
NOAA-NMFS-2020-0031-DRAFT-45533
NOAA-NMFS-2020-0031-DRAFT-45534
NOAA-NMFS-2020-0031-DRAFT-45535
NOAA-NMFS-2020-0031-DRAFT-45536
NOAA-NMFS-2020-0031-DRAFT-45540
NOAA-NMFS-2020-0031-DRAFT-45541
NOAA-NMFS-2020-0031-DRAFT-45543
NOAA-NMFS-2020-0031-DRAFT-45544
NOAA-NMFS-2020-0031-DRAFT-45546
NOAA-NMFS-2020-0031-DRAFT-45547
NOAA-NMFS-2020-0031-DRAFT-45548
NOAA-NMFS-2020-0031-DRAFT-45549
NOAA-NMFS-2020-0031-DRAFT-45550
NOAA-NMFS-2020-0031-DRAFT-45551
NOAA-NMFS-2020-0031-DRAFT-45552
NOAA-NMFS-2020-0031-DRAFT-45553
NOAA-NMFS-2020-0031-DRAFT-45554
NOAA-NMFS-2020-0031-DRAFT-45555
NOAA-NMFS-2020-0031-DRAFT-45556
NOAA-NMFS-2020-0031-DRAFT-45557
NOAA-NMFS-2020-0031-DRAFT-45558
NOAA-NMFS-2020-0031-DRAFT-45560
NOAA-NMFS-2020-0031-DRAFT-45561
NOAA-NMFS-2020-0031-DRAFT-45563
NOAA-NMFS-2020-0031-DRAFT-45564

Comment from Anonymous Anonymous
Comment from Logue, Danielle
Comment from Canham, Stephen
Comment from Hondros-McCarthy, Cormac
Comment from Diederich, Kristen
Comment from bronson, jonette
Comment from Anonymous Anonymous
Comment from Wagner, Susan
Comment from Kuehn, Beth
Comment from Chickowsky, Caroll
Comment from Christo, Debbie
Comment from kern, janet
Comment from Anonymous Anonymous
Comment from Robles, Kristen
Comment from Twomey, Lyssa
Comment from Snavely, Marie
Comment from Stewart, Jeff
Comment from Bergazin, Debra
Comment from Heithaus, Melissa
Comment from Sherman, Judith
Comment from Baus, Robert
Comment from Rothrock, Leilani
Comment from katz, puczmik
Comment from Strauss, Susan
Comment from Querner, Kathleen
Comment from Malven, Tania
Comment from Yamauchi, Emi
Comment from Khalsa, Dr. Mha Atma S
Comment from Grace, Donna
Comment from Johnson, Lisa
Comment from Houghton, Christopher
Comment from Hart, Kelly
Comment from Smith, Valerie
Comment from Anonymous Anonymous
Comment from Quatrale, Lisa
Comment from Nelson, William
Comment from Anonymous Anonymous
Comment from Jasper, Marilyn
Comment from Johnstone, JOdy
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50714
NOAA-NMFS-2020-0031-DRAFT-50715
NOAA-NMFS-2020-0031-DRAFT-50716
NOAA-NMFS-2020-0031-DRAFT-50717
NOAA-NMFS-2020-0031-DRAFT-50718
NOAA-NMFS-2020-0031-DRAFT-50719
NOAA-NMFS-2020-0031-DRAFT-50720
NOAA-NMFS-2020-0031-DRAFT-50721
NOAA-NMFS-2020-0031-DRAFT-50722
NOAA-NMFS-2020-0031-DRAFT-50723
NOAA-NMFS-2020-0031-DRAFT-50724
NOAA-NMFS-2020-0031-DRAFT-50725
NOAA-NMFS-2020-0031-DRAFT-50726
NOAA-NMFS-2020-0031-DRAFT-50727
NOAA-NMFS-2020-0031-DRAFT-50728
NOAA-NMFS-2020-0031-DRAFT-50729
NOAA-NMFS-2020-0031-DRAFT-50730
NOAA-NMFS-2020-0031-DRAFT-50731
NOAA-NMFS-2020-0031-DRAFT-50732
NOAA-NMFS-2020-0031-DRAFT-50733
NOAA-NMFS-2020-0031-DRAFT-50734
NOAA-NMFS-2020-0031-DRAFT-50735
NOAA-NMFS-2020-0031-DRAFT-50736
NOAA-NMFS-2020-0031-DRAFT-50737
NOAA-NMFS-2020-0031-DRAFT-50738
NOAA-NMFS-2020-0031-DRAFT-50739
NOAA-NMFS-2020-0031-DRAFT-50740
NOAA-NMFS-2020-0031-DRAFT-50741
NOAA-NMFS-2020-0031-DRAFT-50742
NOAA-NMFS-2020-0031-DRAFT-50744
NOAA-NMFS-2020-0031-DRAFT-50745
NOAA-NMFS-2020-0031-DRAFT-50746
NOAA-NMFS-2020-0031-DRAFT-50747
NOAA-NMFS-2020-0031-DRAFT-50748
NOAA-NMFS-2020-0031-DRAFT-50749
NOAA-NMFS-2020-0031-DRAFT-50750
NOAA-NMFS-2020-0031-DRAFT-50751
NOAA-NMFS-2020-0031-DRAFT-50752
NOAA-NMFS-2020-0031-DRAFT-50753
NOAA-NMFS-2020-0031-DRAFT-50754
NOAA-NMFS-2020-0031-DRAFT-50756

Comment from Gail Yborra
Comment from Susan Ash
Comment from Hilary Capstick
Comment from Edward Jepson
Comment from Lee Patrizzi
Comment from Charlotte Cook
Comment from Rosemarie Smallcombe
Comment from Taylor, Brittany
Comment from Liz piercey
Comment from Kim Sweitzer
Comment from Joseph Corbett
Comment from fran merker
Comment from Patricia Haines
Comment from Keith Comess
Comment from Tara Flores-Corum
Comment from Patricia Mathis
Comment from Joan Conca
Comment from Catherine Owen
Comment from Hanne Nielsen
Comment from James Hadcroft
Comment from Katherine Kowalczyk
Comment from Hank Schlinger
Comment from Margaret Newhart
Comment from Joan Conca
Comment from John Teevan
Comment from Robin Craft
Comment from Michael Olenjack
Comment from Nancy Honeychuck
Comment from Lisa Adams
Comment from Nicholas Bridgett
Comment from Catherine George
Comment from David Brultz
Comment from Bill Gardner
Comment from Samantha Bush
Comment from Jan Modjeski
Comment from Augustin Parker
Comment from Leslee Duncan
Comment from April margison
Comment from Lorraine Moore
Comment from Sandra Naidich
Comment from Robert Scharefer

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02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45566
NOAA-NMFS-2020-0031-DRAFT-45568
NOAA-NMFS-2020-0031-DRAFT-45569
NOAA-NMFS-2020-0031-DRAFT-45572
NOAA-NMFS-2020-0031-DRAFT-45575
NOAA-NMFS-2020-0031-DRAFT-45576
NOAA-NMFS-2020-0031-DRAFT-45577
NOAA-NMFS-2020-0031-DRAFT-45578
NOAA-NMFS-2020-0031-DRAFT-45579
NOAA-NMFS-2020-0031-DRAFT-45581
NOAA-NMFS-2020-0031-DRAFT-45582
NOAA-NMFS-2020-0031-DRAFT-45583
NOAA-NMFS-2020-0031-DRAFT-45584
NOAA-NMFS-2020-0031-DRAFT-45585
NOAA-NMFS-2020-0031-DRAFT-45586
NOAA-NMFS-2020-0031-DRAFT-45587
NOAA-NMFS-2020-0031-DRAFT-45588
NOAA-NMFS-2020-0031-DRAFT-45593
NOAA-NMFS-2020-0031-DRAFT-45594
NOAA-NMFS-2020-0031-DRAFT-45597
NOAA-NMFS-2020-0031-DRAFT-45599
NOAA-NMFS-2020-0031-DRAFT-45600
NOAA-NMFS-2020-0031-DRAFT-45601
NOAA-NMFS-2020-0031-DRAFT-45603
NOAA-NMFS-2020-0031-DRAFT-45604
NOAA-NMFS-2020-0031-DRAFT-45605
NOAA-NMFS-2020-0031-DRAFT-45606
NOAA-NMFS-2020-0031-DRAFT-45607
NOAA-NMFS-2020-0031-DRAFT-45608
NOAA-NMFS-2020-0031-DRAFT-45610
NOAA-NMFS-2020-0031-DRAFT-45611
NOAA-NMFS-2020-0031-DRAFT-45612
NOAA-NMFS-2020-0031-DRAFT-45613
NOAA-NMFS-2020-0031-DRAFT-45614
NOAA-NMFS-2020-0031-DRAFT-45615
NOAA-NMFS-2020-0031-DRAFT-45616
NOAA-NMFS-2020-0031-DRAFT-45617
NOAA-NMFS-2020-0031-DRAFT-45618
NOAA-NMFS-2020-0031-DRAFT-45619
NOAA-NMFS-2020-0031-DRAFT-45620
NOAA-NMFS-2020-0031-DRAFT-45621

Comment from Hallee, Anne
Comment from Anonymous Anonymous
Comment from Renzi, Carla
Comment from Lukowitz, Wendy
Comment from Kring, Juli
Comment from Anonymous Anonymous
Comment from Janes, Raymond
Comment from Welte, Valarie
Comment from Whitford, Tracy
Comment from Scott, Gemma
Comment from Geiger, Marcia
Comment from Anonymous Anonymous
Comment from Boone, Jim
Comment from Caflisch, Frances
Comment from Stransky, Diana
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lojowsky, Karel
Comment from Richardson, Matt
Comment from Evans, Jackie
Comment from Moskal, Maryanna
Comment from Babiak, Katherine
Comment from Walker, John
Comment from Smith, Vicki
Comment from Show, Enviro
Comment from Rupp, Robin
Comment from Essig, Holly
Comment from Brooks, Deb
Comment from Randall, Dorene
Comment from Leavenworth, William
Comment from upshaw, amanda
Comment from upshaw, amanda
Comment from Sheffield, Susan
Comment from Rodrigo, Herman
Comment from Ryan, Lauren
Comment from Coleman Souhrada, Susan
Comment from Garlingetti, G.
Comment from HUMPHRIES, COLLEEN
Comment from Kramer-Dodd, Gay
Comment from Emerson, Ralph
Comment from Baus, Robert

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NOAA-NMFS-2020-0031-DRAFT-50757
NOAA-NMFS-2020-0031-DRAFT-50758
NOAA-NMFS-2020-0031-DRAFT-50759
NOAA-NMFS-2020-0031-DRAFT-50760
NOAA-NMFS-2020-0031-DRAFT-50761
NOAA-NMFS-2020-0031-DRAFT-50762
NOAA-NMFS-2020-0031-DRAFT-50763
NOAA-NMFS-2020-0031-DRAFT-50764
NOAA-NMFS-2020-0031-DRAFT-50765
NOAA-NMFS-2020-0031-DRAFT-50766
NOAA-NMFS-2020-0031-DRAFT-50767
NOAA-NMFS-2020-0031-DRAFT-50768
NOAA-NMFS-2020-0031-DRAFT-50769
NOAA-NMFS-2020-0031-DRAFT-50770
NOAA-NMFS-2020-0031-DRAFT-50771
NOAA-NMFS-2020-0031-DRAFT-50772
NOAA-NMFS-2020-0031-DRAFT-50773
NOAA-NMFS-2020-0031-DRAFT-50774
NOAA-NMFS-2020-0031-DRAFT-50775
NOAA-NMFS-2020-0031-DRAFT-50776
NOAA-NMFS-2020-0031-DRAFT-50777
NOAA-NMFS-2020-0031-DRAFT-50778
NOAA-NMFS-2020-0031-DRAFT-50779
NOAA-NMFS-2020-0031-DRAFT-50780
NOAA-NMFS-2020-0031-DRAFT-50781
NOAA-NMFS-2020-0031-DRAFT-50783
NOAA-NMFS-2020-0031-DRAFT-50784
NOAA-NMFS-2020-0031-DRAFT-50785
NOAA-NMFS-2020-0031-DRAFT-50786
NOAA-NMFS-2020-0031-DRAFT-50787
NOAA-NMFS-2020-0031-DRAFT-50788
NOAA-NMFS-2020-0031-DRAFT-50789
NOAA-NMFS-2020-0031-DRAFT-50790
NOAA-NMFS-2020-0031-DRAFT-50791
NOAA-NMFS-2020-0031-DRAFT-50792
NOAA-NMFS-2020-0031-DRAFT-50793
NOAA-NMFS-2020-0031-DRAFT-50794
NOAA-NMFS-2020-0031-DRAFT-50795
NOAA-NMFS-2020-0031-DRAFT-50796
NOAA-NMFS-2020-0031-DRAFT-50797
NOAA-NMFS-2020-0031-DRAFT-50798

Comment from John Bello
Comment from Lorri Gustafson
Comment from Barbara Koles
Comment from Barry De Jasu
Comment from Lisa Parks
Comment from Traci Turner
Comment from Kathleen Finnerty
Comment from Bob Ramlow
Comment from P.E. Crawford
Comment from Cynthia coley
Comment from Pat Button
Comment from Aaron Ucko
Comment from Janice Dlugosz
Comment from Julie Miller
Comment from Catherine Vedder
Comment from Thomas Lane
Comment from Susan Kulikowski
Comment from Sandy Stuhaan
Comment from Brenda Nieland
Comment from Nancy-liane burger
Comment from Anonymous Anonymous
Comment from William Elder
Comment from Suzanne Lepple
Comment from Barbara Sorgeler
Comment from Alla Sobel
Comment from william Prokop
Comment from Kerri Kiernan
Comment from Derinda Nilsson
Comment from bruce hirayama
Comment from Mary Thibaudeau
Comment from Howard Petlack
Comment from Donald Mackay
Comment from Judith Detert-Moriarty
Comment from Mary Venos
Comment from BILL D'ONNELL
Comment from Paula Tytlar
Comment from Darren Strain
Comment from Jana Jacobson
Comment from Maryann Wardach
Comment from maryanne pilgram
Comment from S. Chapek

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NOAA-NMFS-2020-0031-DRAFT-45622
NOAA-NMFS-2020-0031-DRAFT-45623
NOAA-NMFS-2020-0031-DRAFT-45624
NOAA-NMFS-2020-0031-DRAFT-45626
NOAA-NMFS-2020-0031-DRAFT-45627
NOAA-NMFS-2020-0031-DRAFT-45628
NOAA-NMFS-2020-0031-DRAFT-45629
NOAA-NMFS-2020-0031-DRAFT-45630
NOAA-NMFS-2020-0031-DRAFT-45631
NOAA-NMFS-2020-0031-DRAFT-45632
NOAA-NMFS-2020-0031-DRAFT-45633
NOAA-NMFS-2020-0031-DRAFT-45634
NOAA-NMFS-2020-0031-DRAFT-45635
NOAA-NMFS-2020-0031-DRAFT-45636
NOAA-NMFS-2020-0031-DRAFT-45637
NOAA-NMFS-2020-0031-DRAFT-45638
NOAA-NMFS-2020-0031-DRAFT-45639
NOAA-NMFS-2020-0031-DRAFT-45640
NOAA-NMFS-2020-0031-DRAFT-45641
NOAA-NMFS-2020-0031-DRAFT-45642
NOAA-NMFS-2020-0031-DRAFT-45643
NOAA-NMFS-2020-0031-DRAFT-45645
NOAA-NMFS-2020-0031-DRAFT-45646
NOAA-NMFS-2020-0031-DRAFT-45647
NOAA-NMFS-2020-0031-DRAFT-45649
NOAA-NMFS-2020-0031-DRAFT-45650
NOAA-NMFS-2020-0031-DRAFT-45651
NOAA-NMFS-2020-0031-DRAFT-45652
NOAA-NMFS-2020-0031-DRAFT-45653
NOAA-NMFS-2020-0031-DRAFT-45654
NOAA-NMFS-2020-0031-DRAFT-45655
NOAA-NMFS-2020-0031-DRAFT-45656
NOAA-NMFS-2020-0031-DRAFT-45657
NOAA-NMFS-2020-0031-DRAFT-45658
NOAA-NMFS-2020-0031-DRAFT-45659
NOAA-NMFS-2020-0031-DRAFT-45660
NOAA-NMFS-2020-0031-DRAFT-45661
NOAA-NMFS-2020-0031-DRAFT-45662
NOAA-NMFS-2020-0031-DRAFT-45663
NOAA-NMFS-2020-0031-DRAFT-45665
NOAA-NMFS-2020-0031-DRAFT-45666

Comment from Budniak, Michael
Comment from Hood, Vivian
Comment from Kamler, Cindy
Comment from Gerard, Ira
Comment from Wamba, Katrina
Comment from Tarbox, Ellen
Comment from McKee, Lary
Comment from Anonymous
Comment from Yanez, Guadalupe
Comment from Sites, Sandra
Comment from Stone, Jim
Comment from Scafidi, Angela
Comment from Holden, Lisa Gaye
Comment from Mattson, Lynn
Comment from Spong, Timothy
Comment from Heithaus, Melissa
Comment from Schott, Sandy
Comment from Anonymous Anonymous
Comment from Hall, Wendy
Comment from Fenter, Evelyn
Comment from Stavis, Alex
Comment from Martellaro, Karen
Comment from Masching, Amy
Comment from Morris, Debra
Comment from Hamilton, Mary and G. R.
Comment from Martin, Stacy
Comment from Dickie, Linda
Comment from Gilleland, Louanne
Comment from Jernberg, Karen
Comment from Cummings, Heather
Comment from Morsellino, Arlene
Comment from Anonymous Anonymous
Comment from Wellman, Gay
Comment from Clark, Joyce
Comment from Vandal-Hillman, Carole
Comment from Green, Patrick
Comment from Kosiba, Daniel
Comment from Campagna, Damon
Comment from Chan, Priya
Comment from Holmberg, Bevin
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50799
NOAA-NMFS-2020-0031-DRAFT-50800
NOAA-NMFS-2020-0031-DRAFT-50801
NOAA-NMFS-2020-0031-DRAFT-50802
NOAA-NMFS-2020-0031-DRAFT-50803
NOAA-NMFS-2020-0031-DRAFT-50804
NOAA-NMFS-2020-0031-DRAFT-50805
NOAA-NMFS-2020-0031-DRAFT-50806
NOAA-NMFS-2020-0031-DRAFT-50807
NOAA-NMFS-2020-0031-DRAFT-50808
NOAA-NMFS-2020-0031-DRAFT-50809
NOAA-NMFS-2020-0031-DRAFT-50810
NOAA-NMFS-2020-0031-DRAFT-50811
NOAA-NMFS-2020-0031-DRAFT-50812
NOAA-NMFS-2020-0031-DRAFT-50813
NOAA-NMFS-2020-0031-DRAFT-50814
NOAA-NMFS-2020-0031-DRAFT-50815
NOAA-NMFS-2020-0031-DRAFT-50816
NOAA-NMFS-2020-0031-DRAFT-50817
NOAA-NMFS-2020-0031-DRAFT-50818
NOAA-NMFS-2020-0031-DRAFT-50819
NOAA-NMFS-2020-0031-DRAFT-50820
NOAA-NMFS-2020-0031-DRAFT-50821
NOAA-NMFS-2020-0031-DRAFT-50822
NOAA-NMFS-2020-0031-DRAFT-50823
NOAA-NMFS-2020-0031-DRAFT-50824
NOAA-NMFS-2020-0031-DRAFT-50825
NOAA-NMFS-2020-0031-DRAFT-50826
NOAA-NMFS-2020-0031-DRAFT-50827
NOAA-NMFS-2020-0031-DRAFT-50828
NOAA-NMFS-2020-0031-DRAFT-50829
NOAA-NMFS-2020-0031-DRAFT-50830
NOAA-NMFS-2020-0031-DRAFT-50831
NOAA-NMFS-2020-0031-DRAFT-50832
NOAA-NMFS-2020-0031-DRAFT-50833
NOAA-NMFS-2020-0031-DRAFT-50834
NOAA-NMFS-2020-0031-DRAFT-50835
NOAA-NMFS-2020-0031-DRAFT-50836
NOAA-NMFS-2020-0031-DRAFT-50837
NOAA-NMFS-2020-0031-DRAFT-50838
NOAA-NMFS-2020-0031-DRAFT-50839

Comment from Gail Battaglia
Comment from Karen Wilson
Comment from Michael Weaver
Comment from Donna Tilden
Comment from Carol Anastasi
Comment from Katherine Kowalczyk
Comment from George Migliaccio
Comment from Jessica Jakubanis
Comment from Susan Dolin
Comment from margaret donovan
Comment from Jerry Davies
Comment from ADAM BERNSTEIN
Comment from Carol Whitehurst
Comment from Martha Siegel
Comment from Tracy Malone
Comment from Lauren L
Comment from Catherine Hensley
Comment from Malcolm Groome
Comment from Sandra Varvel
Comment from Tansy Woods
Comment from Sharon Garlena
Comment from A VS
Comment from Faith Franck
Comment from Darlene Mahanke
Comment from LAURIE MARSHALL
Comment from Aron Silberg
Comment from Yvonne Townsley
Comment from heidi Ahlstrand
Comment from Joan Pritchard
Comment from James Mullins
Comment from Anonymous Anonymous
Comment from Lillian Stone
Comment from Theresa Morris
Comment from Irmgard Gutersohn
Comment from Polly Haynes
Comment from Tiffany Buell
Comment from Karen Matthews
Comment from Kerry Mackin
Comment from Tania Dimov
Comment from Kelly Carlisle
Comment from Jessica Jakubanis

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NOAA-NMFS-2020-0031-DRAFT-45667
NOAA-NMFS-2020-0031-DRAFT-45668
NOAA-NMFS-2020-0031-DRAFT-45669
NOAA-NMFS-2020-0031-DRAFT-45670
NOAA-NMFS-2020-0031-DRAFT-45671
NOAA-NMFS-2020-0031-DRAFT-45672
NOAA-NMFS-2020-0031-DRAFT-45673
NOAA-NMFS-2020-0031-DRAFT-45674
NOAA-NMFS-2020-0031-DRAFT-45675
NOAA-NMFS-2020-0031-DRAFT-45676
NOAA-NMFS-2020-0031-DRAFT-45677
NOAA-NMFS-2020-0031-DRAFT-45679
NOAA-NMFS-2020-0031-DRAFT-45680
NOAA-NMFS-2020-0031-DRAFT-45681
NOAA-NMFS-2020-0031-DRAFT-45682
NOAA-NMFS-2020-0031-DRAFT-45684
NOAA-NMFS-2020-0031-DRAFT-45685
NOAA-NMFS-2020-0031-DRAFT-45686
NOAA-NMFS-2020-0031-DRAFT-45687
NOAA-NMFS-2020-0031-DRAFT-45688
NOAA-NMFS-2020-0031-DRAFT-45689
NOAA-NMFS-2020-0031-DRAFT-45690
NOAA-NMFS-2020-0031-DRAFT-45691
NOAA-NMFS-2020-0031-DRAFT-45692
NOAA-NMFS-2020-0031-DRAFT-45696
NOAA-NMFS-2020-0031-DRAFT-45697
NOAA-NMFS-2020-0031-DRAFT-45698
NOAA-NMFS-2020-0031-DRAFT-45699
NOAA-NMFS-2020-0031-DRAFT-45700
NOAA-NMFS-2020-0031-DRAFT-45701
NOAA-NMFS-2020-0031-DRAFT-45702
NOAA-NMFS-2020-0031-DRAFT-45703
NOAA-NMFS-2020-0031-DRAFT-45704
NOAA-NMFS-2020-0031-DRAFT-45705
NOAA-NMFS-2020-0031-DRAFT-45706
NOAA-NMFS-2020-0031-DRAFT-45707
NOAA-NMFS-2020-0031-DRAFT-45708
NOAA-NMFS-2020-0031-DRAFT-45709
NOAA-NMFS-2020-0031-DRAFT-45710
NOAA-NMFS-2020-0031-DRAFT-45711
NOAA-NMFS-2020-0031-DRAFT-45712

Comment from Moreau, Candice
Comment from Bernier, Rosemary
Comment from Anonymous Anonymous
Comment from Kennedy, Colleen
Comment from King, Karen
Comment from Chesworth, Michael
Comment from Kinney, Elizabeth
Comment from Darovic, Elizabeth
Comment from Bender, Sharon
Comment from Sarry, Sandra
Comment from Wallace, Erlynn
Comment from Feiffer, Kate
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Lorentzen, Eric
Comment from Chagnon, Jean
Comment from Anonymous
Comment from Faulks, Lea
Comment from Nugent, Carol
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Parker, Karen
Comment from Kite, Lee
Comment from Anonymous Anonymous
Comment from ferguson, lora
Comment from Anonymous Anonymous
Comment from Caton, Annie
Comment from Dykstra, Sandra
Comment from Marshall, Nick
Comment from Lynch, Maddie
Comment from Wishnie-Edwards, Ben
Comment from McIntosh, Shelby
Comment from Heffron, Kata
Comment from FALCON, MARIA
Comment from Koller, Pam

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NOAA-NMFS-2020-0031-DRAFT-50840
NOAA-NMFS-2020-0031-DRAFT-50841
NOAA-NMFS-2020-0031-DRAFT-50842
NOAA-NMFS-2020-0031-DRAFT-50843
NOAA-NMFS-2020-0031-DRAFT-50844
NOAA-NMFS-2020-0031-DRAFT-50845
NOAA-NMFS-2020-0031-DRAFT-50846
NOAA-NMFS-2020-0031-DRAFT-50847
NOAA-NMFS-2020-0031-DRAFT-50848
NOAA-NMFS-2020-0031-DRAFT-50849
NOAA-NMFS-2020-0031-DRAFT-50850
NOAA-NMFS-2020-0031-DRAFT-50851
NOAA-NMFS-2020-0031-DRAFT-50852
NOAA-NMFS-2020-0031-DRAFT-50853
NOAA-NMFS-2020-0031-DRAFT-50854
NOAA-NMFS-2020-0031-DRAFT-50855
NOAA-NMFS-2020-0031-DRAFT-50856
NOAA-NMFS-2020-0031-DRAFT-50857
NOAA-NMFS-2020-0031-DRAFT-50858
NOAA-NMFS-2020-0031-DRAFT-50859
NOAA-NMFS-2020-0031-DRAFT-50860
NOAA-NMFS-2020-0031-DRAFT-50861
NOAA-NMFS-2020-0031-DRAFT-50862
NOAA-NMFS-2020-0031-DRAFT-50863
NOAA-NMFS-2020-0031-DRAFT-50864
NOAA-NMFS-2020-0031-DRAFT-50865
NOAA-NMFS-2020-0031-DRAFT-50866
NOAA-NMFS-2020-0031-DRAFT-50867
NOAA-NMFS-2020-0031-DRAFT-50868
NOAA-NMFS-2020-0031-DRAFT-50869
NOAA-NMFS-2020-0031-DRAFT-50870
NOAA-NMFS-2020-0031-DRAFT-50871
NOAA-NMFS-2020-0031-DRAFT-50872
NOAA-NMFS-2020-0031-DRAFT-50873
NOAA-NMFS-2020-0031-DRAFT-50874
NOAA-NMFS-2020-0031-DRAFT-50875
NOAA-NMFS-2020-0031-DRAFT-50876
NOAA-NMFS-2020-0031-DRAFT-50877
NOAA-NMFS-2020-0031-DRAFT-50878
NOAA-NMFS-2020-0031-DRAFT-50879
NOAA-NMFS-2020-0031-DRAFT-50880

Comment from Kathleen Mireault
Comment from Mark Wheeler
Comment from Hillary Maurer
Comment from Edward gruver
Comment from GERARD VACHEZ
Comment from Kathleen Bernardo
Comment from Kendra Snyder
Comment from Jeannette Thompson
Comment from Joan Rossignol
Comment from Carolyn Latierra
Comment from Michelle McKenney
Comment from Ann Sardineer
Comment from GF Wade
Comment from Vidya Sivan
Comment from Fred Akers
Comment from Kristin Rosenqvist
Comment from Valerie Felicione
Comment from Sharon Firesheets
Comment from Medora Van Denburgh
Comment from Lynda Kieffer
Comment from Dalia Salgado
Comment from Laurie Toner
Comment from Monica Licwinko
Comment from Karen Quay
Comment from Craig Geiger
Comment from Mandy Tshibangu
Comment from Michelle Booth
Comment from Anonymous Anonymous
Comment from Barbara Smith
Comment from Melanie Stopyra
Comment from C.C. Hollis-Franklyn
Comment from Dan Silver
Comment from VALLYN ANDERSON
Comment from S. Chapek
Comment from Marci Robinson
Comment from Gene Fox
Comment from Karen Suit
Comment from Roel Bergema
Comment from Amy King
Comment from Elizabeth Jacobowitz
Comment from Robert Crenshaw

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NOAA-NMFS-2020-0031-DRAFT-45713
NOAA-NMFS-2020-0031-DRAFT-45714
NOAA-NMFS-2020-0031-DRAFT-45715
NOAA-NMFS-2020-0031-DRAFT-45716
NOAA-NMFS-2020-0031-DRAFT-45717
NOAA-NMFS-2020-0031-DRAFT-45718
NOAA-NMFS-2020-0031-DRAFT-45719
NOAA-NMFS-2020-0031-DRAFT-45720
NOAA-NMFS-2020-0031-DRAFT-45721
NOAA-NMFS-2020-0031-DRAFT-45722
NOAA-NMFS-2020-0031-DRAFT-45724
NOAA-NMFS-2020-0031-DRAFT-45725
NOAA-NMFS-2020-0031-DRAFT-45728
NOAA-NMFS-2020-0031-DRAFT-45729
NOAA-NMFS-2020-0031-DRAFT-45730
NOAA-NMFS-2020-0031-DRAFT-45731
NOAA-NMFS-2020-0031-DRAFT-45732
NOAA-NMFS-2020-0031-DRAFT-45733
NOAA-NMFS-2020-0031-DRAFT-45734
NOAA-NMFS-2020-0031-DRAFT-45735
NOAA-NMFS-2020-0031-DRAFT-45736
NOAA-NMFS-2020-0031-DRAFT-45738
NOAA-NMFS-2020-0031-DRAFT-45739
NOAA-NMFS-2020-0031-DRAFT-45741
NOAA-NMFS-2020-0031-DRAFT-45742
NOAA-NMFS-2020-0031-DRAFT-45743
NOAA-NMFS-2020-0031-DRAFT-45744
NOAA-NMFS-2020-0031-DRAFT-45745
NOAA-NMFS-2020-0031-DRAFT-45746
NOAA-NMFS-2020-0031-DRAFT-45748
NOAA-NMFS-2020-0031-DRAFT-45749
NOAA-NMFS-2020-0031-DRAFT-45750
NOAA-NMFS-2020-0031-DRAFT-45752
NOAA-NMFS-2020-0031-DRAFT-45754
NOAA-NMFS-2020-0031-DRAFT-45755
NOAA-NMFS-2020-0031-DRAFT-45756
NOAA-NMFS-2020-0031-DRAFT-45757
NOAA-NMFS-2020-0031-DRAFT-45760
NOAA-NMFS-2020-0031-DRAFT-45762
NOAA-NMFS-2020-0031-DRAFT-45763
NOAA-NMFS-2020-0031-DRAFT-45764

Comment from Mazzola, Lisa
Comment from Wood, Karen
Comment from Wells, Lasha
Comment from Anonymous Anonymous
Comment from Redford, Rebecca
Comment from Flood, Kathryn
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Zufi, Judith
Comment from Bond, Karen
Comment from Berkeley, Carol
Comment from O'Rourke, Ellen
Comment from kenny, james
Comment from Wilson, Michael
Comment from Gorn, Scott
Comment from Anonymous Anonymous
Comment from Brusin, Eugene
Comment from Scott, Star
Comment from Anonymous Anonymous
Comment from Sacchetti, diane
Comment from Embry, Judith
Comment from burger, wolfgang
Comment from Millington, Marnie
Comment from Kring, Juli
Comment from Baker, Megan
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Tison, Kathryn
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-50881
NOAA-NMFS-2020-0031-DRAFT-50882
NOAA-NMFS-2020-0031-DRAFT-50883
NOAA-NMFS-2020-0031-DRAFT-50884
NOAA-NMFS-2020-0031-DRAFT-50885
NOAA-NMFS-2020-0031-DRAFT-50886
NOAA-NMFS-2020-0031-DRAFT-50887
NOAA-NMFS-2020-0031-DRAFT-50888
NOAA-NMFS-2020-0031-DRAFT-50889
NOAA-NMFS-2020-0031-DRAFT-50890
NOAA-NMFS-2020-0031-DRAFT-50891
NOAA-NMFS-2020-0031-DRAFT-50892
NOAA-NMFS-2020-0031-DRAFT-50893
NOAA-NMFS-2020-0031-DRAFT-50894
NOAA-NMFS-2020-0031-DRAFT-50895
NOAA-NMFS-2020-0031-DRAFT-50896
NOAA-NMFS-2020-0031-DRAFT-50897
NOAA-NMFS-2020-0031-DRAFT-50898
NOAA-NMFS-2020-0031-DRAFT-50899
NOAA-NMFS-2020-0031-DRAFT-50900
NOAA-NMFS-2020-0031-DRAFT-50901
NOAA-NMFS-2020-0031-DRAFT-50902
NOAA-NMFS-2020-0031-DRAFT-50903
NOAA-NMFS-2020-0031-DRAFT-50904
NOAA-NMFS-2020-0031-DRAFT-50905
NOAA-NMFS-2020-0031-DRAFT-50906
NOAA-NMFS-2020-0031-DRAFT-50907
NOAA-NMFS-2020-0031-DRAFT-50908
NOAA-NMFS-2020-0031-DRAFT-50909
NOAA-NMFS-2020-0031-DRAFT-50910
NOAA-NMFS-2020-0031-DRAFT-50911
NOAA-NMFS-2020-0031-DRAFT-50912
NOAA-NMFS-2020-0031-DRAFT-50913
NOAA-NMFS-2020-0031-DRAFT-50914
NOAA-NMFS-2020-0031-DRAFT-50915
NOAA-NMFS-2020-0031-DRAFT-50916
NOAA-NMFS-2020-0031-DRAFT-50917
NOAA-NMFS-2020-0031-DRAFT-50918
NOAA-NMFS-2020-0031-DRAFT-50920
NOAA-NMFS-2020-0031-DRAFT-50921
NOAA-NMFS-2020-0031-DRAFT-50922

Comment from Erica Minglis
Comment from Michelle Mehlhorn
Comment from Peggy Detmers
Comment from Kim Giannotti
Comment from Kelly Allison
Comment from Carol Keiter
Comment from Lacey Hicks
Comment from Janis Mooradian
Comment from Dianne Brooks
Comment from Cynthia McMath
Comment from Johnny Pflugrad
Comment from Susan Siniard
Comment from Nancy Dudley
Comment from Gail Ward
Comment from Barbara Fernandez
Comment from Linda Shirey
Comment from Susan Yarnell
Comment from Margie Palmer
Comment from Marcine McBride
Comment from Silvana Depetris
Comment from Carney, Becky
Comment from Barb Crumpacker
Comment from Susan Bradshaw
Comment from Olivia Ambrogio
Comment from Kari Percival
Comment from Sylvia Rodriguez
Comment from Shira Miess
Comment from Eugene Bae
Comment from Marlene Testaguzza
Comment from Kat Howren
Comment from Boril Iordanov
Comment from Joyce Olsen
Comment from Matt Stedman
Comment from Richard Peterson
Comment from Richard Jones
Comment from Judy Michaels
Comment from Tara D
Comment from Moira Farrell
Comment from Stephanie Taub
Comment from Richard Pendarvis
Comment from Yemel Bryan

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NOAA-NMFS-2020-0031-DRAFT-45765
NOAA-NMFS-2020-0031-DRAFT-45766
NOAA-NMFS-2020-0031-DRAFT-45767
NOAA-NMFS-2020-0031-DRAFT-45768
NOAA-NMFS-2020-0031-DRAFT-45769
NOAA-NMFS-2020-0031-DRAFT-45771
NOAA-NMFS-2020-0031-DRAFT-45772
NOAA-NMFS-2020-0031-DRAFT-45773
NOAA-NMFS-2020-0031-DRAFT-45774
NOAA-NMFS-2020-0031-DRAFT-45775
NOAA-NMFS-2020-0031-DRAFT-45777
NOAA-NMFS-2020-0031-DRAFT-45778
NOAA-NMFS-2020-0031-DRAFT-45779
NOAA-NMFS-2020-0031-DRAFT-45781
NOAA-NMFS-2020-0031-DRAFT-45783
NOAA-NMFS-2020-0031-DRAFT-45785
NOAA-NMFS-2020-0031-DRAFT-45786
NOAA-NMFS-2020-0031-DRAFT-45787
NOAA-NMFS-2020-0031-DRAFT-45788
NOAA-NMFS-2020-0031-DRAFT-45789
NOAA-NMFS-2020-0031-DRAFT-45790
NOAA-NMFS-2020-0031-DRAFT-45791
NOAA-NMFS-2020-0031-DRAFT-45792
NOAA-NMFS-2020-0031-DRAFT-45793
NOAA-NMFS-2020-0031-DRAFT-45794
NOAA-NMFS-2020-0031-DRAFT-45795
NOAA-NMFS-2020-0031-DRAFT-45796
NOAA-NMFS-2020-0031-DRAFT-45797
NOAA-NMFS-2020-0031-DRAFT-45798
NOAA-NMFS-2020-0031-DRAFT-45799
NOAA-NMFS-2020-0031-DRAFT-45800
NOAA-NMFS-2020-0031-DRAFT-45801
NOAA-NMFS-2020-0031-DRAFT-45802
NOAA-NMFS-2020-0031-DRAFT-45803
NOAA-NMFS-2020-0031-DRAFT-45805
NOAA-NMFS-2020-0031-DRAFT-45806
NOAA-NMFS-2020-0031-DRAFT-45807
NOAA-NMFS-2020-0031-DRAFT-45810
NOAA-NMFS-2020-0031-DRAFT-45811
NOAA-NMFS-2020-0031-DRAFT-45812
NOAA-NMFS-2020-0031-DRAFT-45813

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NOAA-NMFS-2020-0031-DRAFT-50923
NOAA-NMFS-2020-0031-DRAFT-50924
NOAA-NMFS-2020-0031-DRAFT-50925
NOAA-NMFS-2020-0031-DRAFT-50926
NOAA-NMFS-2020-0031-DRAFT-50927
NOAA-NMFS-2020-0031-DRAFT-50928
NOAA-NMFS-2020-0031-DRAFT-50929
NOAA-NMFS-2020-0031-DRAFT-50930
NOAA-NMFS-2020-0031-DRAFT-50931
NOAA-NMFS-2020-0031-DRAFT-50932
NOAA-NMFS-2020-0031-DRAFT-50933
NOAA-NMFS-2020-0031-DRAFT-50936
NOAA-NMFS-2020-0031-DRAFT-50937
NOAA-NMFS-2020-0031-DRAFT-50938
NOAA-NMFS-2020-0031-DRAFT-50939
NOAA-NMFS-2020-0031-DRAFT-50940
NOAA-NMFS-2020-0031-DRAFT-50941
NOAA-NMFS-2020-0031-DRAFT-50942
NOAA-NMFS-2020-0031-DRAFT-50943
NOAA-NMFS-2020-0031-DRAFT-50944
NOAA-NMFS-2020-0031-DRAFT-50945
NOAA-NMFS-2020-0031-DRAFT-50946
NOAA-NMFS-2020-0031-DRAFT-50947
NOAA-NMFS-2020-0031-DRAFT-50948
NOAA-NMFS-2020-0031-DRAFT-50949
NOAA-NMFS-2020-0031-DRAFT-50950
NOAA-NMFS-2020-0031-DRAFT-50951
NOAA-NMFS-2020-0031-DRAFT-50952
NOAA-NMFS-2020-0031-DRAFT-50954
NOAA-NMFS-2020-0031-DRAFT-50955
NOAA-NMFS-2020-0031-DRAFT-50956
NOAA-NMFS-2020-0031-DRAFT-50957
NOAA-NMFS-2020-0031-DRAFT-50958
NOAA-NMFS-2020-0031-DRAFT-50959
NOAA-NMFS-2020-0031-DRAFT-50960
NOAA-NMFS-2020-0031-DRAFT-50961
NOAA-NMFS-2020-0031-DRAFT-50962
NOAA-NMFS-2020-0031-DRAFT-50963
NOAA-NMFS-2020-0031-DRAFT-50964
NOAA-NMFS-2020-0031-DRAFT-50965
NOAA-NMFS-2020-0031-DRAFT-50966

Comment from Gary Moore
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NOAA-NMFS-2020-0031-DRAFT-45815
NOAA-NMFS-2020-0031-DRAFT-45816
NOAA-NMFS-2020-0031-DRAFT-45818
NOAA-NMFS-2020-0031-DRAFT-45819
NOAA-NMFS-2020-0031-DRAFT-45820
NOAA-NMFS-2020-0031-DRAFT-45823
NOAA-NMFS-2020-0031-DRAFT-45824
NOAA-NMFS-2020-0031-DRAFT-45825
NOAA-NMFS-2020-0031-DRAFT-45826
NOAA-NMFS-2020-0031-DRAFT-45827
NOAA-NMFS-2020-0031-DRAFT-45829
NOAA-NMFS-2020-0031-DRAFT-45830
NOAA-NMFS-2020-0031-DRAFT-45831
NOAA-NMFS-2020-0031-DRAFT-45832
NOAA-NMFS-2020-0031-DRAFT-45833
NOAA-NMFS-2020-0031-DRAFT-45834
NOAA-NMFS-2020-0031-DRAFT-45835
NOAA-NMFS-2020-0031-DRAFT-45836
NOAA-NMFS-2020-0031-DRAFT-45838
NOAA-NMFS-2020-0031-DRAFT-45839
NOAA-NMFS-2020-0031-DRAFT-45840
NOAA-NMFS-2020-0031-DRAFT-45841
NOAA-NMFS-2020-0031-DRAFT-45842
NOAA-NMFS-2020-0031-DRAFT-45843
NOAA-NMFS-2020-0031-DRAFT-45844
NOAA-NMFS-2020-0031-DRAFT-45845
NOAA-NMFS-2020-0031-DRAFT-45847
NOAA-NMFS-2020-0031-DRAFT-45848
NOAA-NMFS-2020-0031-DRAFT-45849
NOAA-NMFS-2020-0031-DRAFT-45850
NOAA-NMFS-2020-0031-DRAFT-45851
NOAA-NMFS-2020-0031-DRAFT-45852
NOAA-NMFS-2020-0031-DRAFT-45854
NOAA-NMFS-2020-0031-DRAFT-45855
NOAA-NMFS-2020-0031-DRAFT-45856
NOAA-NMFS-2020-0031-DRAFT-45858
NOAA-NMFS-2020-0031-DRAFT-45859
NOAA-NMFS-2020-0031-DRAFT-45861
NOAA-NMFS-2020-0031-DRAFT-45863
NOAA-NMFS-2020-0031-DRAFT-45865
NOAA-NMFS-2020-0031-DRAFT-45866

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NOAA-NMFS-2020-0031-DRAFT-50967
NOAA-NMFS-2020-0031-DRAFT-50968
NOAA-NMFS-2020-0031-DRAFT-50969
NOAA-NMFS-2020-0031-DRAFT-50970
NOAA-NMFS-2020-0031-DRAFT-50971
NOAA-NMFS-2020-0031-DRAFT-50972
NOAA-NMFS-2020-0031-DRAFT-50973
NOAA-NMFS-2020-0031-DRAFT-50974
NOAA-NMFS-2020-0031-DRAFT-50975
NOAA-NMFS-2020-0031-DRAFT-50976
NOAA-NMFS-2020-0031-DRAFT-50977
NOAA-NMFS-2020-0031-DRAFT-50978
NOAA-NMFS-2020-0031-DRAFT-50979
NOAA-NMFS-2020-0031-DRAFT-50980
NOAA-NMFS-2020-0031-DRAFT-50981
NOAA-NMFS-2020-0031-DRAFT-50982
NOAA-NMFS-2020-0031-DRAFT-50983
NOAA-NMFS-2020-0031-DRAFT-50984
NOAA-NMFS-2020-0031-DRAFT-50985
NOAA-NMFS-2020-0031-DRAFT-50987
NOAA-NMFS-2020-0031-DRAFT-50988
NOAA-NMFS-2020-0031-DRAFT-50989
NOAA-NMFS-2020-0031-DRAFT-50990
NOAA-NMFS-2020-0031-DRAFT-50991
NOAA-NMFS-2020-0031-DRAFT-50992
NOAA-NMFS-2020-0031-DRAFT-50993
NOAA-NMFS-2020-0031-DRAFT-50994
NOAA-NMFS-2020-0031-DRAFT-50995
NOAA-NMFS-2020-0031-DRAFT-50996
NOAA-NMFS-2020-0031-DRAFT-50997
NOAA-NMFS-2020-0031-DRAFT-50998
NOAA-NMFS-2020-0031-DRAFT-50999
NOAA-NMFS-2020-0031-DRAFT-51000
NOAA-NMFS-2020-0031-DRAFT-51001
NOAA-NMFS-2020-0031-DRAFT-51002
NOAA-NMFS-2020-0031-DRAFT-51003
NOAA-NMFS-2020-0031-DRAFT-51004
NOAA-NMFS-2020-0031-DRAFT-51005
NOAA-NMFS-2020-0031-DRAFT-51006
NOAA-NMFS-2020-0031-DRAFT-51007
NOAA-NMFS-2020-0031-DRAFT-51008

Comment from lorie busby
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NOAA-NMFS-2020-0031-DRAFT-45867
NOAA-NMFS-2020-0031-DRAFT-45868
NOAA-NMFS-2020-0031-DRAFT-45869
NOAA-NMFS-2020-0031-DRAFT-45870
NOAA-NMFS-2020-0031-DRAFT-45871
NOAA-NMFS-2020-0031-DRAFT-45872
NOAA-NMFS-2020-0031-DRAFT-45873
NOAA-NMFS-2020-0031-DRAFT-45874
NOAA-NMFS-2020-0031-DRAFT-45875
NOAA-NMFS-2020-0031-DRAFT-45876
NOAA-NMFS-2020-0031-DRAFT-45879
NOAA-NMFS-2020-0031-DRAFT-45881
NOAA-NMFS-2020-0031-DRAFT-45882
NOAA-NMFS-2020-0031-DRAFT-45883
NOAA-NMFS-2020-0031-DRAFT-45885
NOAA-NMFS-2020-0031-DRAFT-45886
NOAA-NMFS-2020-0031-DRAFT-45887
NOAA-NMFS-2020-0031-DRAFT-45888
NOAA-NMFS-2020-0031-DRAFT-45891
NOAA-NMFS-2020-0031-DRAFT-45892
NOAA-NMFS-2020-0031-DRAFT-45893
NOAA-NMFS-2020-0031-DRAFT-45894
NOAA-NMFS-2020-0031-DRAFT-45895
NOAA-NMFS-2020-0031-DRAFT-45896
NOAA-NMFS-2020-0031-DRAFT-45897
NOAA-NMFS-2020-0031-DRAFT-45900
NOAA-NMFS-2020-0031-DRAFT-45902
NOAA-NMFS-2020-0031-DRAFT-45903
NOAA-NMFS-2020-0031-DRAFT-45905
NOAA-NMFS-2020-0031-DRAFT-45907
NOAA-NMFS-2020-0031-DRAFT-45909
NOAA-NMFS-2020-0031-DRAFT-45911
NOAA-NMFS-2020-0031-DRAFT-45912
NOAA-NMFS-2020-0031-DRAFT-45913
NOAA-NMFS-2020-0031-DRAFT-45915
NOAA-NMFS-2020-0031-DRAFT-45916
NOAA-NMFS-2020-0031-DRAFT-45917
NOAA-NMFS-2020-0031-DRAFT-45918
NOAA-NMFS-2020-0031-DRAFT-45920
NOAA-NMFS-2020-0031-DRAFT-45923
NOAA-NMFS-2020-0031-DRAFT-45924

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NOAA-NMFS-2020-0031-DRAFT-51009
NOAA-NMFS-2020-0031-DRAFT-51010
NOAA-NMFS-2020-0031-DRAFT-51011
NOAA-NMFS-2020-0031-DRAFT-51012
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NOAA-NMFS-2020-0031-DRAFT-51018
NOAA-NMFS-2020-0031-DRAFT-51019
NOAA-NMFS-2020-0031-DRAFT-51020
NOAA-NMFS-2020-0031-DRAFT-51021
NOAA-NMFS-2020-0031-DRAFT-51022
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NOAA-NMFS-2020-0031-DRAFT-51024
NOAA-NMFS-2020-0031-DRAFT-51025
NOAA-NMFS-2020-0031-DRAFT-51026
NOAA-NMFS-2020-0031-DRAFT-51027
NOAA-NMFS-2020-0031-DRAFT-51028
NOAA-NMFS-2020-0031-DRAFT-51029
NOAA-NMFS-2020-0031-DRAFT-51030
NOAA-NMFS-2020-0031-DRAFT-51031
NOAA-NMFS-2020-0031-DRAFT-51032
NOAA-NMFS-2020-0031-DRAFT-51033
NOAA-NMFS-2020-0031-DRAFT-51034
NOAA-NMFS-2020-0031-DRAFT-51035
NOAA-NMFS-2020-0031-DRAFT-51036
NOAA-NMFS-2020-0031-DRAFT-51037
NOAA-NMFS-2020-0031-DRAFT-51038
NOAA-NMFS-2020-0031-DRAFT-51039
NOAA-NMFS-2020-0031-DRAFT-51040
NOAA-NMFS-2020-0031-DRAFT-51041
NOAA-NMFS-2020-0031-DRAFT-51042
NOAA-NMFS-2020-0031-DRAFT-51043
NOAA-NMFS-2020-0031-DRAFT-51044
NOAA-NMFS-2020-0031-DRAFT-51045
NOAA-NMFS-2020-0031-DRAFT-51046
NOAA-NMFS-2020-0031-DRAFT-51047
NOAA-NMFS-2020-0031-DRAFT-51048
NOAA-NMFS-2020-0031-DRAFT-51049

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NOAA-NMFS-2020-0031-DRAFT-45925
NOAA-NMFS-2020-0031-DRAFT-45928
NOAA-NMFS-2020-0031-DRAFT-45929
NOAA-NMFS-2020-0031-DRAFT-45931
NOAA-NMFS-2020-0031-DRAFT-45932
NOAA-NMFS-2020-0031-DRAFT-45935
NOAA-NMFS-2020-0031-DRAFT-45936
NOAA-NMFS-2020-0031-DRAFT-45937
NOAA-NMFS-2020-0031-DRAFT-45938
NOAA-NMFS-2020-0031-DRAFT-45940
NOAA-NMFS-2020-0031-DRAFT-45941
NOAA-NMFS-2020-0031-DRAFT-45943
NOAA-NMFS-2020-0031-DRAFT-45944
NOAA-NMFS-2020-0031-DRAFT-45945
NOAA-NMFS-2020-0031-DRAFT-45946
NOAA-NMFS-2020-0031-DRAFT-45947
NOAA-NMFS-2020-0031-DRAFT-45948
NOAA-NMFS-2020-0031-DRAFT-45952
NOAA-NMFS-2020-0031-DRAFT-45953
NOAA-NMFS-2020-0031-DRAFT-45954
NOAA-NMFS-2020-0031-DRAFT-45955
NOAA-NMFS-2020-0031-DRAFT-45957
NOAA-NMFS-2020-0031-DRAFT-45958
NOAA-NMFS-2020-0031-DRAFT-45960
NOAA-NMFS-2020-0031-DRAFT-45961
NOAA-NMFS-2020-0031-DRAFT-45962
NOAA-NMFS-2020-0031-DRAFT-45963
NOAA-NMFS-2020-0031-DRAFT-45965
NOAA-NMFS-2020-0031-DRAFT-45966
NOAA-NMFS-2020-0031-DRAFT-45967
NOAA-NMFS-2020-0031-DRAFT-45968
NOAA-NMFS-2020-0031-DRAFT-45969
NOAA-NMFS-2020-0031-DRAFT-45970
NOAA-NMFS-2020-0031-DRAFT-45972
NOAA-NMFS-2020-0031-DRAFT-45973
NOAA-NMFS-2020-0031-DRAFT-45974
NOAA-NMFS-2020-0031-DRAFT-45975
NOAA-NMFS-2020-0031-DRAFT-45976
NOAA-NMFS-2020-0031-DRAFT-45977
NOAA-NMFS-2020-0031-DRAFT-45978
NOAA-NMFS-2020-0031-DRAFT-45979

Comment from Anonymous Anonymous
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Comment from Frederick Glazier
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Comment from Lucia Rothman-Denes
Comment from Anonymous Anonymous
Comment from Sue McNally
Comment from Anonymous Anonymous
Comment from Dennis Tackett

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NOAA-NMFS-2020-0031-DRAFT-51050
NOAA-NMFS-2020-0031-DRAFT-51051
NOAA-NMFS-2020-0031-DRAFT-51052
NOAA-NMFS-2020-0031-DRAFT-51053
NOAA-NMFS-2020-0031-DRAFT-51054
NOAA-NMFS-2020-0031-DRAFT-51055
NOAA-NMFS-2020-0031-DRAFT-51056
NOAA-NMFS-2020-0031-DRAFT-51057
NOAA-NMFS-2020-0031-DRAFT-51058
NOAA-NMFS-2020-0031-DRAFT-51059
NOAA-NMFS-2020-0031-DRAFT-51061
NOAA-NMFS-2020-0031-DRAFT-51062
NOAA-NMFS-2020-0031-DRAFT-51063
NOAA-NMFS-2020-0031-DRAFT-51064
NOAA-NMFS-2020-0031-DRAFT-51065
NOAA-NMFS-2020-0031-DRAFT-51066
NOAA-NMFS-2020-0031-DRAFT-51067
NOAA-NMFS-2020-0031-DRAFT-51068
NOAA-NMFS-2020-0031-DRAFT-51069
NOAA-NMFS-2020-0031-DRAFT-51070
NOAA-NMFS-2020-0031-DRAFT-51072
NOAA-NMFS-2020-0031-DRAFT-51073
NOAA-NMFS-2020-0031-DRAFT-51074
NOAA-NMFS-2020-0031-DRAFT-51075
NOAA-NMFS-2020-0031-DRAFT-51076
NOAA-NMFS-2020-0031-DRAFT-51077
NOAA-NMFS-2020-0031-DRAFT-51078
NOAA-NMFS-2020-0031-DRAFT-51079
NOAA-NMFS-2020-0031-DRAFT-51080
NOAA-NMFS-2020-0031-DRAFT-51081
NOAA-NMFS-2020-0031-DRAFT-51082
NOAA-NMFS-2020-0031-DRAFT-51083
NOAA-NMFS-2020-0031-DRAFT-51084
NOAA-NMFS-2020-0031-DRAFT-51085
NOAA-NMFS-2020-0031-DRAFT-51086
NOAA-NMFS-2020-0031-DRAFT-51087
NOAA-NMFS-2020-0031-DRAFT-51088
NOAA-NMFS-2020-0031-DRAFT-51089
NOAA-NMFS-2020-0031-DRAFT-51090
NOAA-NMFS-2020-0031-DRAFT-51091
NOAA-NMFS-2020-0031-DRAFT-51092

Comment from John Whyman
Comment from Heather Rafferty
Comment from Felisa Klubes
Comment from Denise White
Comment from Barbara Hughes
Comment from Earl Cole
Comment from Gina Norton
Comment from Anonymous Anonymous
Comment from Brigitte Jenkins
Comment from Michael Sullivan
Comment from Deborah Reiter
Comment from Josh Walker
Comment from Lisa Manthey
Comment from Elizabeth Nussbaumer
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Comment from Sarah Yonder
Comment from Linda Howie
Comment from Marilyn Siddiqi
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Comment from Ronald Shenberger
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Comment from James Holbrook
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Comment from Mary Lewis
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Comment from Anne Rettenmair
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Comment from vana spear
Comment from Beth Levin
Comment from Rebecca McBride
Comment from Eileen Conner
Comment from BARBARA MICHELINI
Comment from Robert Jackson
Comment from Frank Ortiz
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Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-45980
NOAA-NMFS-2020-0031-DRAFT-45981
NOAA-NMFS-2020-0031-DRAFT-45982
NOAA-NMFS-2020-0031-DRAFT-45983
NOAA-NMFS-2020-0031-DRAFT-45984
NOAA-NMFS-2020-0031-DRAFT-45985
NOAA-NMFS-2020-0031-DRAFT-45986
NOAA-NMFS-2020-0031-DRAFT-45987
NOAA-NMFS-2020-0031-DRAFT-45989
NOAA-NMFS-2020-0031-DRAFT-45990
NOAA-NMFS-2020-0031-DRAFT-45991
NOAA-NMFS-2020-0031-DRAFT-45992
NOAA-NMFS-2020-0031-DRAFT-45993
NOAA-NMFS-2020-0031-DRAFT-45994
NOAA-NMFS-2020-0031-DRAFT-45995
NOAA-NMFS-2020-0031-DRAFT-45996
NOAA-NMFS-2020-0031-DRAFT-45999
NOAA-NMFS-2020-0031-DRAFT-46000
NOAA-NMFS-2020-0031-DRAFT-46001
NOAA-NMFS-2020-0031-DRAFT-46002
NOAA-NMFS-2020-0031-DRAFT-46003
NOAA-NMFS-2020-0031-DRAFT-46004
NOAA-NMFS-2020-0031-DRAFT-46005
NOAA-NMFS-2020-0031-DRAFT-46007
NOAA-NMFS-2020-0031-DRAFT-46008
NOAA-NMFS-2020-0031-DRAFT-46009
NOAA-NMFS-2020-0031-DRAFT-46010
NOAA-NMFS-2020-0031-DRAFT-46012
NOAA-NMFS-2020-0031-DRAFT-46013
NOAA-NMFS-2020-0031-DRAFT-46014
NOAA-NMFS-2020-0031-DRAFT-46015
NOAA-NMFS-2020-0031-DRAFT-46016
NOAA-NMFS-2020-0031-DRAFT-46017
NOAA-NMFS-2020-0031-DRAFT-46018
NOAA-NMFS-2020-0031-DRAFT-46019
NOAA-NMFS-2020-0031-DRAFT-46021
NOAA-NMFS-2020-0031-DRAFT-46022
NOAA-NMFS-2020-0031-DRAFT-46023
NOAA-NMFS-2020-0031-DRAFT-46024
NOAA-NMFS-2020-0031-DRAFT-46025
NOAA-NMFS-2020-0031-DRAFT-46026

Comment from Gina Petty
Comment from Terrell, Bonnie
Comment from Hancock, Georgia
Comment from Nealis, Tammy
Comment from Dekom, Rachel
Comment from Margaret Smith
Comment from Beckham, Carol
Comment from Frank Vaydik
Comment from Colonel Meyer
Comment from Anonymous Anonymous
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Comment from Chantal livernois
Comment from Anonymous Anonymous
Comment from Steve Rosin
Comment from Deirdre Wild
Comment from Michelle Mitchell
Comment from Marsha Wiseltier
Comment from Tracy Schalk
Comment from suzanne watson
Comment from Rob Carter
Comment from Merlin Emrys
Comment from ed palacio
Comment from Douglas Robinson
Comment from Margaret Moore
Comment from Julia Petipas
Comment from Bob Crone
Comment from Jason Green
Comment from Kathy Kowalchick
Comment from John Merriman
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Comment from Lisa Salazar
Comment from Yvonne Fedeyko-Kirby
Comment from Christie Dunning
Comment from linda albarran
Comment from Richard Perez
Comment from Anonymous Anonymous
Comment from Zachary Mayer
Comment from Anonymous Anonymous
Comment from Kathleen Palimeri
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-51094
NOAA-NMFS-2020-0031-DRAFT-51095
NOAA-NMFS-2020-0031-DRAFT-51096
NOAA-NMFS-2020-0031-DRAFT-51097
NOAA-NMFS-2020-0031-DRAFT-51098
NOAA-NMFS-2020-0031-DRAFT-51099
NOAA-NMFS-2020-0031-DRAFT-51100
NOAA-NMFS-2020-0031-DRAFT-51101
NOAA-NMFS-2020-0031-DRAFT-51102
NOAA-NMFS-2020-0031-DRAFT-51103
NOAA-NMFS-2020-0031-DRAFT-51105
NOAA-NMFS-2020-0031-DRAFT-51106
NOAA-NMFS-2020-0031-DRAFT-51107
NOAA-NMFS-2020-0031-DRAFT-51108
NOAA-NMFS-2020-0031-DRAFT-51109
NOAA-NMFS-2020-0031-DRAFT-51110
NOAA-NMFS-2020-0031-DRAFT-51111
NOAA-NMFS-2020-0031-DRAFT-51112
NOAA-NMFS-2020-0031-DRAFT-51113
NOAA-NMFS-2020-0031-DRAFT-51114
NOAA-NMFS-2020-0031-DRAFT-51115
NOAA-NMFS-2020-0031-DRAFT-51117
NOAA-NMFS-2020-0031-DRAFT-51118
NOAA-NMFS-2020-0031-DRAFT-51119
NOAA-NMFS-2020-0031-DRAFT-51120
NOAA-NMFS-2020-0031-DRAFT-51121
NOAA-NMFS-2020-0031-DRAFT-51122
NOAA-NMFS-2020-0031-DRAFT-51123
NOAA-NMFS-2020-0031-DRAFT-51124
NOAA-NMFS-2020-0031-DRAFT-51125
NOAA-NMFS-2020-0031-DRAFT-51126
NOAA-NMFS-2020-0031-DRAFT-51127
NOAA-NMFS-2020-0031-DRAFT-51128
NOAA-NMFS-2020-0031-DRAFT-51129
NOAA-NMFS-2020-0031-DRAFT-51130
NOAA-NMFS-2020-0031-DRAFT-51131
NOAA-NMFS-2020-0031-DRAFT-51132
NOAA-NMFS-2020-0031-DRAFT-51133
NOAA-NMFS-2020-0031-DRAFT-51134
NOAA-NMFS-2020-0031-DRAFT-51135
NOAA-NMFS-2020-0031-DRAFT-51136

Comment from Kyle Embler
Comment from Dorothea Leicher
Comment from Diana Avila
Comment from Patricia Sharp
Comment from Robert Feuchter
Comment from Linda Bescript
Comment from Cindy Kirgis
Comment from june avignone
Comment from Ron Mittan
Comment from Charles Wightman
Comment from Donalyn Gross
Comment from David G
Comment from Paul Naylor
Comment from Georgiann Young
Comment from Nathan Nielsen
Comment from kaufmann, debi
Comment from Elizabeth Brown
Comment from Tayala, Cheryl
Comment from Hal Trufan
Comment from Nicole Uhing
Comment from Terry Vaccaro
Comment from Romula Navarro
Comment from Anonymous Anonymous
Comment from Debi Holt
Comment from Lynne Graburn
Comment from JC Corcoran
Comment from Warwick Hansell
Comment from C. Smiley
Comment from Linda Mannheim
Comment from Rebecca Theim
Comment from Gerald Brookman
Comment from Martha Ellison
Comment from Anonymous Anonymous
Comment from Ali Van Zee
Comment from Patrick Lynch
Comment from Evan McDermit
Comment from Lindsay Mugglestone
Comment from kathy haverkamp
Comment from Keith DAlessandro
Comment from J.P. Sherman
Comment from Amanda Kenny

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NOAA-NMFS-2020-0031-DRAFT-46027
NOAA-NMFS-2020-0031-DRAFT-46028
NOAA-NMFS-2020-0031-DRAFT-46029
NOAA-NMFS-2020-0031-DRAFT-46030
NOAA-NMFS-2020-0031-DRAFT-46031
NOAA-NMFS-2020-0031-DRAFT-46034
NOAA-NMFS-2020-0031-DRAFT-46035
NOAA-NMFS-2020-0031-DRAFT-46037
NOAA-NMFS-2020-0031-DRAFT-46038
NOAA-NMFS-2020-0031-DRAFT-46039
NOAA-NMFS-2020-0031-DRAFT-46040
NOAA-NMFS-2020-0031-DRAFT-46041
NOAA-NMFS-2020-0031-DRAFT-46042
NOAA-NMFS-2020-0031-DRAFT-46043
NOAA-NMFS-2020-0031-DRAFT-46044
NOAA-NMFS-2020-0031-DRAFT-46045
NOAA-NMFS-2020-0031-DRAFT-46046
NOAA-NMFS-2020-0031-DRAFT-46047
NOAA-NMFS-2020-0031-DRAFT-46048
NOAA-NMFS-2020-0031-DRAFT-46049
NOAA-NMFS-2020-0031-DRAFT-46050
NOAA-NMFS-2020-0031-DRAFT-46051
NOAA-NMFS-2020-0031-DRAFT-46052
NOAA-NMFS-2020-0031-DRAFT-46053
NOAA-NMFS-2020-0031-DRAFT-46054
NOAA-NMFS-2020-0031-DRAFT-46055
NOAA-NMFS-2020-0031-DRAFT-46056
NOAA-NMFS-2020-0031-DRAFT-46057
NOAA-NMFS-2020-0031-DRAFT-46058
NOAA-NMFS-2020-0031-DRAFT-46059
NOAA-NMFS-2020-0031-DRAFT-46061
NOAA-NMFS-2020-0031-DRAFT-46062
NOAA-NMFS-2020-0031-DRAFT-46063
NOAA-NMFS-2020-0031-DRAFT-46064
NOAA-NMFS-2020-0031-DRAFT-46065
NOAA-NMFS-2020-0031-DRAFT-46066
NOAA-NMFS-2020-0031-DRAFT-46067
NOAA-NMFS-2020-0031-DRAFT-46068
NOAA-NMFS-2020-0031-DRAFT-46069
NOAA-NMFS-2020-0031-DRAFT-46070
NOAA-NMFS-2020-0031-DRAFT-46071

Comment from Laura Rojo-LaRue
Comment from Anonymous Anonymous
Comment from T Carey
Comment from Marina Barry
Comment from Anonymous Anonymous
Comment from Diane Schulbach
Comment from Steven Tuttle
Comment from Swergold, Ethan
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Comment from Norman Fisher
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Comment from Katherine Boas
Comment from Alan Oresky
Comment from Anonymous Anonymous

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NOAA-NMFS-2020-0031-DRAFT-51137
NOAA-NMFS-2020-0031-DRAFT-51138
NOAA-NMFS-2020-0031-DRAFT-51139
NOAA-NMFS-2020-0031-DRAFT-51140
NOAA-NMFS-2020-0031-DRAFT-51141
NOAA-NMFS-2020-0031-DRAFT-51142
NOAA-NMFS-2020-0031-DRAFT-51143
NOAA-NMFS-2020-0031-DRAFT-51144
NOAA-NMFS-2020-0031-DRAFT-51145
NOAA-NMFS-2020-0031-DRAFT-51146
NOAA-NMFS-2020-0031-DRAFT-51147
NOAA-NMFS-2020-0031-DRAFT-51148
NOAA-NMFS-2020-0031-DRAFT-51149
NOAA-NMFS-2020-0031-DRAFT-51150
NOAA-NMFS-2020-0031-DRAFT-51151
NOAA-NMFS-2020-0031-DRAFT-51152
NOAA-NMFS-2020-0031-DRAFT-51153
NOAA-NMFS-2020-0031-DRAFT-51154
NOAA-NMFS-2020-0031-DRAFT-51155
NOAA-NMFS-2020-0031-DRAFT-51156
NOAA-NMFS-2020-0031-DRAFT-51157
NOAA-NMFS-2020-0031-DRAFT-51158
NOAA-NMFS-2020-0031-DRAFT-51159
NOAA-NMFS-2020-0031-DRAFT-51160
NOAA-NMFS-2020-0031-DRAFT-51161
NOAA-NMFS-2020-0031-DRAFT-51162
NOAA-NMFS-2020-0031-DRAFT-51163
NOAA-NMFS-2020-0031-DRAFT-51164
NOAA-NMFS-2020-0031-DRAFT-51165
NOAA-NMFS-2020-0031-DRAFT-51166
NOAA-NMFS-2020-0031-DRAFT-51167
NOAA-NMFS-2020-0031-DRAFT-51168
NOAA-NMFS-2020-0031-DRAFT-51170
NOAA-NMFS-2020-0031-DRAFT-51171
NOAA-NMFS-2020-0031-DRAFT-51172
NOAA-NMFS-2020-0031-DRAFT-51173
NOAA-NMFS-2020-0031-DRAFT-51174
NOAA-NMFS-2020-0031-DRAFT-51175
NOAA-NMFS-2020-0031-DRAFT-51176
NOAA-NMFS-2020-0031-DRAFT-51177
NOAA-NMFS-2020-0031-DRAFT-51178

Comment from Erica Griffin
Comment from Oliver Smith
Comment from Dave Whipple
Comment from Sharon Garlena
Comment from Cara Anderson
Comment from Arci Jimenez
Comment from Tori Herbst
Comment from Michael Brandes
Comment from Pilar Maschi
Comment from Sandra Moskovitz
Comment from Mary Kraeszig
Comment from Janet Tice
Comment from Christine DAmico
Comment from Donette Erdmann
Comment from Linda Messatzzia
Comment from Karen OBrien
Comment from Dawn Pares
Comment from Marilyn Mick
Comment from Carmen Machado
Comment from Les Rout
Comment from Richard Fish
Comment from Anonymous Anonymous
Comment from Vidya Sivan
Comment from Adrian Bergeron
Comment from Chris Bihler
Comment from Maria Balicka
Comment from David Clapper
Comment from Kimberly Schmidt
Comment from janet maker
Comment from Deborah Spencer
Comment from sonja franz
Comment from Edye Calderon
Comment from Mary Parodi
Comment from Ruth Griffiths
Comment from Ben Earle
Comment from Sarah Straus
Comment from Rona Leventhal
Comment from Cheryl Arvio
Comment from Doug Frug
Comment from Debbie Sierchio
Comment from Matthew Emmer

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-46072

Comment from Anonymous Anonymous

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51179

Comment from Janis Millu

Received Date Original Document ID

Title

Received Date Original Document ID

Title

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51180
NOAA-NMFS-2020-0031-DRAFT-51182
NOAA-NMFS-2020-0031-DRAFT-51183

Comment from S.L. May
Comment from Linda Waine
Comment from Amalia Stamatelatos

02/26/2021
02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26068
NOAA-NMFS-2020-0031-DRAFT-26137
NOAA-NMFS-2020-0031-DRAFT-26163

Comment from Keyes, Alice
Comment from Beal, Sonny
Comment from Braddy, Darian

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51184

Comment from Elizabeth Connelly

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26189

03/01/2021
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NOAA-NMFS-2020-0031-DRAFT-51185
NOAA-NMFS-2020-0031-DRAFT-51187
NOAA-NMFS-2020-0031-DRAFT-51188
NOAA-NMFS-2020-0031-DRAFT-51189
NOAA-NMFS-2020-0031-DRAFT-51191
NOAA-NMFS-2020-0031-DRAFT-51192
NOAA-NMFS-2020-0031-DRAFT-51193
NOAA-NMFS-2020-0031-DRAFT-51194

Comment from Oliver Beqaj
Comment from Arthur Goldsmith
Comment from Sandy DAmbrosio
Comment from Alaine Plourde
Comment from Courtney Flanagan
Comment from Michael Sarabia
Comment from Dale Lockridge
Comment from William McDowell

02/26/2021
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02/26/2021
02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26601
NOAA-NMFS-2020-0031-DRAFT-26649
NOAA-NMFS-2020-0031-DRAFT-26652
NOAA-NMFS-2020-0031-DRAFT-26679
NOAA-NMFS-2020-0031-DRAFT-26713
NOAA-NMFS-2020-0031-DRAFT-26727
NOAA-NMFS-2020-0031-DRAFT-26747
NOAA-NMFS-2020-0031-DRAFT-26759

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51195

Comment from William McAllister

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26758

03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51196
NOAA-NMFS-2020-0031-DRAFT-51197
NOAA-NMFS-2020-0031-DRAFT-51198
NOAA-NMFS-2020-0031-DRAFT-51199

Comment from Edward Cammann
Comment from Gerry Williams
Comment from Riki Beck
Comment from Frederick Semel

02/26/2021
02/26/2021
02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26764
NOAA-NMFS-2020-0031-DRAFT-26766
NOAA-NMFS-2020-0031-DRAFT-26788
NOAA-NMFS-2020-0031-DRAFT-26792

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51200

Comment from Linda DiGusta

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26804

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51202

Comment from Peggie Vincent

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26846

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51203

Comment from GLENN DONNAHOE

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26861

Comment from Jonathan Mitchell
Comment from Science Eye & also
Environmental Conservation Organization
Comment from Burk, Tonia

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51204
NOAA-NMFS-2020-0031-DRAFT-51205
NOAA-NMFS-2020-0031-DRAFT-51206
NOAA-NMFS-2020-0031-DRAFT-51207
NOAA-NMFS-2020-0031-DRAFT-51208
NOAA-NMFS-2020-0031-DRAFT-51209
NOAA-NMFS-2020-0031-DRAFT-51210
NOAA-NMFS-2020-0031-DRAFT-51211
NOAA-NMFS-2020-0031-DRAFT-51212
NOAA-NMFS-2020-0031-DRAFT-51213
NOAA-NMFS-2020-0031-DRAFT-51214
NOAA-NMFS-2020-0031-DRAFT-51215
NOAA-NMFS-2020-0031-DRAFT-51216
NOAA-NMFS-2020-0031-DRAFT-51217
NOAA-NMFS-2020-0031-DRAFT-51218
NOAA-NMFS-2020-0031-DRAFT-51219

Comment from Luci Evanston
Comment from H Lee
Comment from Lisa Keim
Comment from Andreia Shotwell
Comment from Mary Thornton
Comment from Lajeanne Leveton
Comment from Glenda Lilling
Comment from James Moran
Comment from Andrew Ritter
Comment from Leslie Valentine
Comment from Marilyn dobbins
Comment from Neal Steiner
Comment from lynn pax
Comment from Annie McMahon
Comment from thomas moore
Comment from Daniella Markheim

02/26/2021
02/26/2021
02/26/2021
02/26/2021
02/26/2021
02/26/2021
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02/26/2021
02/26/2021
02/26/2021
02/26/2021
02/26/2021
02/26/2021

NOAA-NMFS-2020-0031-DRAFT-26864
NOAA-NMFS-2020-0031-DRAFT-26866
NOAA-NMFS-2020-0031-DRAFT-26815
NOAA-NMFS-2020-0031-DRAFT-26831
NOAA-NMFS-2020-0031-DRAFT-26834
NOAA-NMFS-2020-0031-DRAFT-27011
NOAA-NMFS-2020-0031-DRAFT-27287
NOAA-NMFS-2020-0031-DRAFT-27315
NOAA-NMFS-2020-0031-DRAFT-26930
NOAA-NMFS-2020-0031-DRAFT-27068
NOAA-NMFS-2020-0031-DRAFT-27057
NOAA-NMFS-2020-0031-DRAFT-27070
NOAA-NMFS-2020-0031-DRAFT-27802
NOAA-NMFS-2020-0031-DRAFT-27857
NOAA-NMFS-2020-0031-DRAFT-28028
NOAA-NMFS-2020-0031-DRAFT-28058

Comment from Humane Society Legislative Fund
Comment from Jaffe, Cale
Comment from Kate Hale-Wilson
Comment from Christina Diebold
Comment from Anna Drummond
Comment from Barbara Harper
Comment from Russell, Stephen
Comment from Christin Eigenmann
Comment from Willey IV, Walter
Comment from Linda Badham
Comment from O'Connor, Quinn Josephine
Comment from Francis , Arnold
Comment from Anonymous Anonymous
Comment from Tomkiewicz, Thomas
Comment from Dworsky, Isaac
Comment from Drew Martin

Comment from Cape Cod Commercial
Fishermen's Alliance
Comment from Bayley, David
Comment from Kelleher, Daniel
Comment from Lance Kammerud
Comment from Thurlow jr, Jeffrey
Comment from Antje Fray
Comment from Charles Smith
Comment from Mary Walls
Comment from Melanie Wentz
Comment from Massachusetts Lobstermen's
Association
Comment from Donahue, Alan
Comment from Dranetz , Anita
Comment from Anonymous Anonymous
Comment from Meryle A. Korn

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51220
NOAA-NMFS-2020-0031-DRAFT-51221
NOAA-NMFS-2020-0031-DRAFT-51222
NOAA-NMFS-2020-0031-DRAFT-51224
NOAA-NMFS-2020-0031-DRAFT-51225
NOAA-NMFS-2020-0031-DRAFT-51226
NOAA-NMFS-2020-0031-DRAFT-51228
NOAA-NMFS-2020-0031-DRAFT-51229
NOAA-NMFS-2020-0031-DRAFT-51230
NOAA-NMFS-2020-0031-DRAFT-51231
NOAA-NMFS-2020-0031-DRAFT-51232
NOAA-NMFS-2020-0031-DRAFT-51233
NOAA-NMFS-2020-0031-DRAFT-51234
NOAA-NMFS-2020-0031-DRAFT-51235
NOAA-NMFS-2020-0031-DRAFT-51236
NOAA-NMFS-2020-0031-DRAFT-51237
NOAA-NMFS-2020-0031-DRAFT-51238
NOAA-NMFS-2020-0031-DRAFT-51239
NOAA-NMFS-2020-0031-DRAFT-51241
NOAA-NMFS-2020-0031-DRAFT-51242
NOAA-NMFS-2020-0031-DRAFT-51243
NOAA-NMFS-2020-0031-DRAFT-51244
NOAA-NMFS-2020-0031-DRAFT-51245
NOAA-NMFS-2020-0031-DRAFT-51246
NOAA-NMFS-2020-0031-DRAFT-51247
NOAA-NMFS-2020-0031-DRAFT-51248
NOAA-NMFS-2020-0031-DRAFT-51249
NOAA-NMFS-2020-0031-DRAFT-51250
NOAA-NMFS-2020-0031-DRAFT-51251
NOAA-NMFS-2020-0031-DRAFT-51252
NOAA-NMFS-2020-0031-DRAFT-51253
NOAA-NMFS-2020-0031-DRAFT-51254
NOAA-NMFS-2020-0031-DRAFT-51255
NOAA-NMFS-2020-0031-DRAFT-51256
NOAA-NMFS-2020-0031-DRAFT-51257
NOAA-NMFS-2020-0031-DRAFT-51259
NOAA-NMFS-2020-0031-DRAFT-51260
NOAA-NMFS-2020-0031-DRAFT-51261
NOAA-NMFS-2020-0031-DRAFT-51263
NOAA-NMFS-2020-0031-DRAFT-51264
NOAA-NMFS-2020-0031-DRAFT-51265

Comment from Margot Wiener
Comment from Cathie Leslie
Comment from Thomas King
Comment from Curtis Barnett
Comment from Tamara Cain
Comment from Mark Caso
Comment from Ashley Walima
Comment from Joseph Boone
Comment from James Marsden
Comment from Barbara Rauh
Comment from Linda Riebel
Comment from Jessica Reyes
Comment from Mary Carrick
Comment from Mary Venos
Comment from vicki gannon
Comment from Beverly Conroy
Comment from Grace Pan
Comment from Pam Turbeville
Comment from Scott Devries
Comment from Carol Ramo
Comment from Susan Porter
Comment from Ellen Sansone
Comment from Robert Gantt
Comment from lin farley
Comment from Warren Kerrigan
Comment from Annie Caton
Comment from Sheila Martin
Comment from Elaine Sperbeck
Comment from Mr. Kirk
Comment from David Huynh
Comment from Cassandra Fazio
Comment from Daniel Hunter
Comment from Jody Goldstein
Comment from Stephen Rosen
Comment from MARK OFFERMAN
Comment from Odile Ayral
Comment from Constantine Bogios
Comment from Carlie Doebereiner
Comment from Kathy Ruopp
Comment from Andrea Chisari
Comment from Donald Dobesh

02/26/2021
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02/28/2021
02/28/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-28351
NOAA-NMFS-2020-0031-DRAFT-28381
NOAA-NMFS-2020-0031-DRAFT-28498
NOAA-NMFS-2020-0031-DRAFT-28559
NOAA-NMFS-2020-0031-DRAFT-29405
NOAA-NMFS-2020-0031-DRAFT-29115
NOAA-NMFS-2020-0031-DRAFT-29520
NOAA-NMFS-2020-0031-DRAFT-29856
NOAA-NMFS-2020-0031-DRAFT-29989
NOAA-NMFS-2020-0031-DRAFT-30271
NOAA-NMFS-2020-0031-DRAFT-30286
NOAA-NMFS-2020-0031-DRAFT-30513
NOAA-NMFS-2020-0031-DRAFT-29588
NOAA-NMFS-2020-0031-DRAFT-30852
NOAA-NMFS-2020-0031-DRAFT-31084
NOAA-NMFS-2020-0031-DRAFT-33497
NOAA-NMFS-2020-0031-DRAFT-32899
NOAA-NMFS-2020-0031-DRAFT-33763
NOAA-NMFS-2020-0031-DRAFT-34749
NOAA-NMFS-2020-0031-DRAFT-36641
NOAA-NMFS-2020-0031-DRAFT-34850
NOAA-NMFS-2020-0031-DRAFT-36175
NOAA-NMFS-2020-0031-DRAFT-36340
NOAA-NMFS-2020-0031-DRAFT-36349
NOAA-NMFS-2020-0031-DRAFT-36237
NOAA-NMFS-2020-0031-DRAFT-37015
NOAA-NMFS-2020-0031-DRAFT-37431
NOAA-NMFS-2020-0031-DRAFT-22758
NOAA-NMFS-2020-0031-DRAFT-23724
NOAA-NMFS-2020-0031-DRAFT-23889
NOAA-NMFS-2020-0031-DRAFT-24848
NOAA-NMFS-2020-0031-DRAFT-25384
NOAA-NMFS-2020-0031-DRAFT-26752
NOAA-NMFS-2020-0031-DRAFT-44417
NOAA-NMFS-2020-0031-DRAFT-45747
NOAA-NMFS-2020-0031-DRAFT-47358
NOAA-NMFS-2020-0031-DRAFT-50253
NOAA-NMFS-2020-0031-DRAFT-51271
NOAA-NMFS-2020-0031-DRAFT-51942
NOAA-NMFS-2020-0031-DRAFT-52333
NOAA-NMFS-2020-0031-DRAFT-53910

Comment from Anonymous Anonymous
Comment from Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Milan, Kyle
Comment from Anonymous Anonymous
Comment from Surfrider Foundation Georgia
Comment from Jerry Banks
Comment from Elizabeth mostov
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from Helene Frankel
Comment from Anonymous Anonymous
Comment from Elaine Becker
Comment from Kaur, Simardeep
Comment from Michael Conn
Comment from Jim Steitz
Comment from Anonymous Anonymous
Comment from Anonymous
Comment from peter jockel
Comment from fi, D
Comment from Hansen, Erik
Comment from Hobby, John
Comment from Susan Downes-Borko
Comment from Anonymous Anonymous
Comment from Wood, Ardis
Comment from LoMonaco, Alexa
Comment from Justin Papkee
Comment from Herb, Dan
Comment from Knight, Eric
Comment from Brooks, Laurin
Comment from Glen Anderson
Comment from Swergold, Ethan
Comment from Anonymous
Comment from Anonymous Anonymous
Comment from Churchill, Diana
Comment from FRASER, Jane
Comment from Janet Lynch
Comment from Steve Englebright
Comment from Anderson, Faye

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51266
NOAA-NMFS-2020-0031-DRAFT-51267
NOAA-NMFS-2020-0031-DRAFT-51268
NOAA-NMFS-2020-0031-DRAFT-51269
NOAA-NMFS-2020-0031-DRAFT-51270
NOAA-NMFS-2020-0031-DRAFT-51272
NOAA-NMFS-2020-0031-DRAFT-51273
NOAA-NMFS-2020-0031-DRAFT-51274
NOAA-NMFS-2020-0031-DRAFT-51275
NOAA-NMFS-2020-0031-DRAFT-51276
NOAA-NMFS-2020-0031-DRAFT-51277
NOAA-NMFS-2020-0031-DRAFT-51278
NOAA-NMFS-2020-0031-DRAFT-51279
NOAA-NMFS-2020-0031-DRAFT-51280
NOAA-NMFS-2020-0031-DRAFT-51283
NOAA-NMFS-2020-0031-DRAFT-51284
NOAA-NMFS-2020-0031-DRAFT-51285
NOAA-NMFS-2020-0031-DRAFT-51286
NOAA-NMFS-2020-0031-DRAFT-51287
NOAA-NMFS-2020-0031-DRAFT-51288
NOAA-NMFS-2020-0031-DRAFT-51289
NOAA-NMFS-2020-0031-DRAFT-51290
NOAA-NMFS-2020-0031-DRAFT-51291
NOAA-NMFS-2020-0031-DRAFT-51292
NOAA-NMFS-2020-0031-DRAFT-51293
NOAA-NMFS-2020-0031-DRAFT-51294
NOAA-NMFS-2020-0031-DRAFT-51296
NOAA-NMFS-2020-0031-DRAFT-51297
NOAA-NMFS-2020-0031-DRAFT-51298
NOAA-NMFS-2020-0031-DRAFT-51299
NOAA-NMFS-2020-0031-DRAFT-51300
NOAA-NMFS-2020-0031-DRAFT-51301
NOAA-NMFS-2020-0031-DRAFT-51302
NOAA-NMFS-2020-0031-DRAFT-51303
NOAA-NMFS-2020-0031-DRAFT-51304
NOAA-NMFS-2020-0031-DRAFT-51305
NOAA-NMFS-2020-0031-DRAFT-51306
NOAA-NMFS-2020-0031-DRAFT-51307
NOAA-NMFS-2020-0031-DRAFT-51308
NOAA-NMFS-2020-0031-DRAFT-51309
NOAA-NMFS-2020-0031-DRAFT-51310

Comment from janice phelps
Comment from Blaze Bhence
Comment from Deirdre Morris
Comment from Jeannie Frank
Comment from Kathy Anderson
Comment from James Knott
Comment from Anonymous Anonymous
Comment from alicia jackson
Comment from Rebecca Kimsey
Comment from Erik Nordman
Comment from Rosemarie grubba
Comment from Uly Silkey
Comment from Jamie Greer
Comment from Daniel Polley
Comment from Marcie Mott
Comment from Katherine Wolfe
Comment from Napombhejara, Jerry
Comment from Al Giles
Comment from Sanger, Thomas
Comment from Laurence Cocco
Comment from Karla Devine
Comment from Gaff, Mal
Comment from Joy Zadaca
Comment from Dave Searles
Comment from Catherine Saint-Clair
Comment from Mike Shields
Comment from Lindsay Dadko
Comment from Kepler, Shelly
Comment from Mike Whelan
Comment from Libby Sosa
Comment from O’Halloran, Kathleen
Comment from Glandon, Clarice
Comment from al rogat
Comment from Jagusiak, Edward
Comment from Tom Tripp
Comment from Alison Zyla
Comment from Sheri Snyder
Comment from William Montgomery
Comment from Virginia Sanchez
Comment from Terry Eaton
Comment from Uhing, Nicole

03/01/2021
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02/27/2021
02/27/2021
02/27/2021

NOAA-NMFS-2020-0031-DRAFT-53998
NOAA-NMFS-2020-0031-DRAFT-54411
NOAA-NMFS-2020-0031-DRAFT-13946
NOAA-NMFS-2020-0031-DRAFT-14414
NOAA-NMFS-2020-0031-DRAFT-22916
NOAA-NMFS-2020-0031-DRAFT-23355
NOAA-NMFS-2020-0031-DRAFT-23515
NOAA-NMFS-2020-0031-DRAFT-23919
NOAA-NMFS-2020-0031-DRAFT-23952
NOAA-NMFS-2020-0031-DRAFT-23954
NOAA-NMFS-2020-0031-DRAFT-24860
NOAA-NMFS-2020-0031-DRAFT-26816
NOAA-NMFS-2020-0031-DRAFT-26920
NOAA-NMFS-2020-0031-DRAFT-45244
NOAA-NMFS-2020-0031-DRAFT-49842
NOAA-NMFS-2020-0031-DRAFT-51093
NOAA-NMFS-2020-0031-DRAFT-51116
NOAA-NMFS-2020-0031-DRAFT-51169
NOAA-NMFS-2020-0031-DRAFT-51181
NOAA-NMFS-2020-0031-DRAFT-51223
NOAA-NMFS-2020-0031-DRAFT-51227
NOAA-NMFS-2020-0031-DRAFT-51262
NOAA-NMFS-2020-0031-DRAFT-51281
NOAA-NMFS-2020-0031-DRAFT-51295
NOAA-NMFS-2020-0031-DRAFT-51311
NOAA-NMFS-2020-0031-DRAFT-51332
NOAA-NMFS-2020-0031-DRAFT-51406
NOAA-NMFS-2020-0031-DRAFT-37606
NOAA-NMFS-2020-0031-DRAFT-38912
NOAA-NMFS-2020-0031-DRAFT-38917
NOAA-NMFS-2020-0031-DRAFT-38957
NOAA-NMFS-2020-0031-DRAFT-38967
NOAA-NMFS-2020-0031-DRAFT-38982
NOAA-NMFS-2020-0031-DRAFT-39001
NOAA-NMFS-2020-0031-DRAFT-39018
NOAA-NMFS-2020-0031-DRAFT-39107
NOAA-NMFS-2020-0031-DRAFT-39122
NOAA-NMFS-2020-0031-DRAFT-39143
NOAA-NMFS-2020-0031-DRAFT-39266
NOAA-NMFS-2020-0031-DRAFT-39236
NOAA-NMFS-2020-0031-DRAFT-39741

Comment from Bort, Jacqueline
Comment from Michaela Morris
Comment from chris kehrer
Comment from Preston Robertson
Comment from Amanda Cotton
Comment from Blue Harvest Fisheries
Comment from Stuart Pimm
Comment from Ernst, Mayor John
Comment from Holland, State Rep Betsy
Comment from Buckner, Rep. Debbie
Comment from Candis Whitney
Comment from Cousens , David
Comment from Dawn Euer
Comment from Tripp , Krista
Comment from Julie Mayfield - State Senator
Comment from Katie Stanovich
Comment from Cara Donovan
Comment from Mariah Newman
Comment from Bridget Collins
Comment from Lucy Palmer
Comment from Katrina Morris
Comment from Jon Adams
Comment from Brian Meade
Comment from Jillian Bjorn-Caron
Comment from Olivia Castro
Comment from Anna Morris
Comment from Meghan Donovan
Comment from Rosen, Steve
Comment from Adriana Nunez
Comment from Cates, Lucas
Comment from Perkins, Greg
Comment from Whalen, Daniel
Comment from Joshua , Allen
Comment from Anonymous Anonymous
Comment from DROUIN, JORDAN
Comment from Dunbar, Justin
Comment from Lunt, Cody
Comment from Martin, Chris
Comment from Adriene David
Comment from Anonymous Anonymous
Comment from Susan Steinhauser

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51312
NOAA-NMFS-2020-0031-DRAFT-51313
NOAA-NMFS-2020-0031-DRAFT-51314
NOAA-NMFS-2020-0031-DRAFT-51315
NOAA-NMFS-2020-0031-DRAFT-51316
NOAA-NMFS-2020-0031-DRAFT-51317
NOAA-NMFS-2020-0031-DRAFT-51318
NOAA-NMFS-2020-0031-DRAFT-51319
NOAA-NMFS-2020-0031-DRAFT-51320
NOAA-NMFS-2020-0031-DRAFT-51321
NOAA-NMFS-2020-0031-DRAFT-51322
NOAA-NMFS-2020-0031-DRAFT-51323
NOAA-NMFS-2020-0031-DRAFT-51324
NOAA-NMFS-2020-0031-DRAFT-51325
NOAA-NMFS-2020-0031-DRAFT-51326
NOAA-NMFS-2020-0031-DRAFT-51327
NOAA-NMFS-2020-0031-DRAFT-51328
NOAA-NMFS-2020-0031-DRAFT-51330
NOAA-NMFS-2020-0031-DRAFT-51331
NOAA-NMFS-2020-0031-DRAFT-51333
NOAA-NMFS-2020-0031-DRAFT-51334
NOAA-NMFS-2020-0031-DRAFT-51336
NOAA-NMFS-2020-0031-DRAFT-51337
NOAA-NMFS-2020-0031-DRAFT-51338
NOAA-NMFS-2020-0031-DRAFT-51339
NOAA-NMFS-2020-0031-DRAFT-51340
NOAA-NMFS-2020-0031-DRAFT-51341
NOAA-NMFS-2020-0031-DRAFT-51342
NOAA-NMFS-2020-0031-DRAFT-51343
NOAA-NMFS-2020-0031-DRAFT-51344
NOAA-NMFS-2020-0031-DRAFT-51345
NOAA-NMFS-2020-0031-DRAFT-51346
NOAA-NMFS-2020-0031-DRAFT-51347
NOAA-NMFS-2020-0031-DRAFT-51348
NOAA-NMFS-2020-0031-DRAFT-51349
NOAA-NMFS-2020-0031-DRAFT-51350
NOAA-NMFS-2020-0031-DRAFT-51351
NOAA-NMFS-2020-0031-DRAFT-51352
NOAA-NMFS-2020-0031-DRAFT-51353
NOAA-NMFS-2020-0031-DRAFT-51354
NOAA-NMFS-2020-0031-DRAFT-51355

Comment from Sonja Barton
Comment from Blair Miller
Comment from Schlatter, Denise
Comment from Dave Potter
Comment from Duncan, Corinna
Comment from BILL D'ONNELL
Comment from Mangels, Christopher
Comment from Patricia Savage
Comment from maureen madden
Comment from Vargas, Mary
Comment from John McNally
Comment from Holly Cooper
Comment from Maureen Conway
Comment from Phyllis Schmidt
Comment from Skll, Jacqui
Comment from Sg gs
Comment from Diana Sanderson
Comment from Denise Couey
Comment from Potgieter, Stephanie
Comment from Gene cochran
Comment from Sernel, Elliott
Comment from Maxine Bernstein
Comment from Sylvia Duncan
Comment from Loretta Lehman
Comment from Lukowitz, Wendy
Comment from Eric Ross
Comment from Paul Massei
Comment from Tanya Hallquist
Comment from Strand, Lisa
Comment from William Gonzalez
Comment from Larry Anderson
Comment from Nicholas Frangakis
Comment from Alund, Pamela
Comment from Anne Van Alstyne
Comment from Sur, Penny
Comment from Harrington, Devon
Comment from Radha Shenoy
Comment from Christina Crosby
Comment from Brenda Hattisburg
Comment from Michael Fine
Comment from saraphine metis

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NOAA-NMFS-2020-0031-DRAFT-39980
NOAA-NMFS-2020-0031-DRAFT-40020
NOAA-NMFS-2020-0031-DRAFT-40095
NOAA-NMFS-2020-0031-DRAFT-40120
NOAA-NMFS-2020-0031-DRAFT-40228
NOAA-NMFS-2020-0031-DRAFT-38101
NOAA-NMFS-2020-0031-DRAFT-38165
NOAA-NMFS-2020-0031-DRAFT-38362
NOAA-NMFS-2020-0031-DRAFT-38456
NOAA-NMFS-2020-0031-DRAFT-38489
NOAA-NMFS-2020-0031-DRAFT-38525
NOAA-NMFS-2020-0031-DRAFT-38624
NOAA-NMFS-2020-0031-DRAFT-38712
NOAA-NMFS-2020-0031-DRAFT-38737
NOAA-NMFS-2020-0031-DRAFT-38741
NOAA-NMFS-2020-0031-DRAFT-38790
NOAA-NMFS-2020-0031-DRAFT-38838
NOAA-NMFS-2020-0031-DRAFT-38840
NOAA-NMFS-2020-0031-DRAFT-39168
NOAA-NMFS-2020-0031-DRAFT-39171
NOAA-NMFS-2020-0031-DRAFT-39241
NOAA-NMFS-2020-0031-DRAFT-39317
NOAA-NMFS-2020-0031-DRAFT-39379
NOAA-NMFS-2020-0031-DRAFT-39412
NOAA-NMFS-2020-0031-DRAFT-39527
NOAA-NMFS-2020-0031-DRAFT-39569
NOAA-NMFS-2020-0031-DRAFT-39611
NOAA-NMFS-2020-0031-DRAFT-39728
NOAA-NMFS-2020-0031-DRAFT-39748
NOAA-NMFS-2020-0031-DRAFT-40451
NOAA-NMFS-2020-0031-DRAFT-40535
NOAA-NMFS-2020-0031-DRAFT-40546
NOAA-NMFS-2020-0031-DRAFT-40897
NOAA-NMFS-2020-0031-DRAFT-40910
NOAA-NMFS-2020-0031-DRAFT-40304
NOAA-NMFS-2020-0031-DRAFT-40358
NOAA-NMFS-2020-0031-DRAFT-40931
NOAA-NMFS-2020-0031-DRAFT-40947
NOAA-NMFS-2020-0031-DRAFT-40962
NOAA-NMFS-2020-0031-DRAFT-40963
NOAA-NMFS-2020-0031-DRAFT-40965

Comment from Dennison , Connor
Comment from Miller, Zach
Comment from arthurs, ann
Comment from Wigglesworth, Shelley
Comment from Commisso, Sabrina
Comment from heidi Ahlstrand
Comment from Anonymous
Comment from Diana Forman
Comment from Baines, Robert
Comment from Riccio, Jeffrey
Comment from DROUIN, JOHN
Comment from Lussier, Ian
Comment from Scola, Chris
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from NY4WHALES
Comment from Todd, Joshua
Comment from Cunningham, Jack
Comment from Emery, Dustin
Comment from Holmes , Jeremy
Comment from Andrews, Daniel
Comment from Walsh, Mike
Comment from Harjula, Erick
Comment from Walsh, Lynda
Comment from Alley, Jeffrey
Comment from Nader, George
Comment from Conant , Jeffrey
Comment from Jones, Eric
Comment from Jones, Stuart
Comment from jones, stuart
Comment from Eric Keen
Comment from Watt, Jacob
Comment from Gordius, Brian
Comment from Odom, Phil
Comment from Clemons, Matthew
Comment from Moody, Rick
Comment from myers, jennifer

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NOAA-NMFS-2020-0031-DRAFT-51356
NOAA-NMFS-2020-0031-DRAFT-51357
NOAA-NMFS-2020-0031-DRAFT-51358
NOAA-NMFS-2020-0031-DRAFT-51359
NOAA-NMFS-2020-0031-DRAFT-51360
NOAA-NMFS-2020-0031-DRAFT-51361
NOAA-NMFS-2020-0031-DRAFT-51362
NOAA-NMFS-2020-0031-DRAFT-51363
NOAA-NMFS-2020-0031-DRAFT-51364
NOAA-NMFS-2020-0031-DRAFT-51365
NOAA-NMFS-2020-0031-DRAFT-51366
NOAA-NMFS-2020-0031-DRAFT-51367
NOAA-NMFS-2020-0031-DRAFT-51368
NOAA-NMFS-2020-0031-DRAFT-51369
NOAA-NMFS-2020-0031-DRAFT-51370
NOAA-NMFS-2020-0031-DRAFT-51371
NOAA-NMFS-2020-0031-DRAFT-51372
NOAA-NMFS-2020-0031-DRAFT-51373
NOAA-NMFS-2020-0031-DRAFT-51374
NOAA-NMFS-2020-0031-DRAFT-51375
NOAA-NMFS-2020-0031-DRAFT-51376
NOAA-NMFS-2020-0031-DRAFT-51377
NOAA-NMFS-2020-0031-DRAFT-51378
NOAA-NMFS-2020-0031-DRAFT-51379
NOAA-NMFS-2020-0031-DRAFT-51380
NOAA-NMFS-2020-0031-DRAFT-51381
NOAA-NMFS-2020-0031-DRAFT-51382
NOAA-NMFS-2020-0031-DRAFT-51383
NOAA-NMFS-2020-0031-DRAFT-51384
NOAA-NMFS-2020-0031-DRAFT-51385
NOAA-NMFS-2020-0031-DRAFT-51386
NOAA-NMFS-2020-0031-DRAFT-51387
NOAA-NMFS-2020-0031-DRAFT-51388
NOAA-NMFS-2020-0031-DRAFT-51389
NOAA-NMFS-2020-0031-DRAFT-51390
NOAA-NMFS-2020-0031-DRAFT-51391
NOAA-NMFS-2020-0031-DRAFT-51392
NOAA-NMFS-2020-0031-DRAFT-51393
NOAA-NMFS-2020-0031-DRAFT-51394

Comment from Joel Quaintance
Comment from Ross, Sue
Comment from antoinette valdez
Comment from William Kenney
Comment from kearns, patric
Comment from barbara steinberg
Comment from Hijar, Shirley
Comment from Linda Taffet
Comment from Houser, Osalyn
Comment from Scott Burger
Comment from Gigi vento
Comment from Rodney Boyd
Comment from Rhoda Levine
Comment from Tesoriero, Patricia
Comment from Barbara Stevenson
Comment from Jan Modjeski
Comment from bill James
Comment from Mansfield, Linda
Comment from Hoai Pham
Comment from barbara steinberg
Comment from Bannon, Kevin
Comment from Lyn Mont
Comment from Kaslander, Carol
Comment from Alison Zyla
Comment from Anne West
Comment from Lee Wallace
Comment from Jackie Pomies
Comment from Rocha, Candace
Comment from Debra Vitola
Comment from M D
Comment from Jeromy Henderson
Comment from Hamby, Greg
Comment from Oksana Becker
Comment from Vic Bostock
Comment from Santos, Kim
Comment from George Bittner
Comment from Kamal-Eldin, Tania
Comment from Amy Stoller
Comment from Lynn Costa

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NOAA-NMFS-2020-0031-DRAFT-41003
NOAA-NMFS-2020-0031-DRAFT-41021
NOAA-NMFS-2020-0031-DRAFT-42207
NOAA-NMFS-2020-0031-DRAFT-42392
NOAA-NMFS-2020-0031-DRAFT-42607
NOAA-NMFS-2020-0031-DRAFT-42698
NOAA-NMFS-2020-0031-DRAFT-42226
NOAA-NMFS-2020-0031-DRAFT-42231
NOAA-NMFS-2020-0031-DRAFT-42237
NOAA-NMFS-2020-0031-DRAFT-43004
NOAA-NMFS-2020-0031-DRAFT-43015
NOAA-NMFS-2020-0031-DRAFT-43096
NOAA-NMFS-2020-0031-DRAFT-43060
NOAA-NMFS-2020-0031-DRAFT-43140
NOAA-NMFS-2020-0031-DRAFT-43273
NOAA-NMFS-2020-0031-DRAFT-43310
NOAA-NMFS-2020-0031-DRAFT-43407
NOAA-NMFS-2020-0031-DRAFT-43537
NOAA-NMFS-2020-0031-DRAFT-44156
NOAA-NMFS-2020-0031-DRAFT-43444
NOAA-NMFS-2020-0031-DRAFT-43467
NOAA-NMFS-2020-0031-DRAFT-43472
NOAA-NMFS-2020-0031-DRAFT-43516
NOAA-NMFS-2020-0031-DRAFT-43788
NOAA-NMFS-2020-0031-DRAFT-44086
NOAA-NMFS-2020-0031-DRAFT-44194
NOAA-NMFS-2020-0031-DRAFT-44597
NOAA-NMFS-2020-0031-DRAFT-44634
NOAA-NMFS-2020-0031-DRAFT-44747
NOAA-NMFS-2020-0031-DRAFT-44675
NOAA-NMFS-2020-0031-DRAFT-44680
NOAA-NMFS-2020-0031-DRAFT-44714
NOAA-NMFS-2020-0031-DRAFT-45068
NOAA-NMFS-2020-0031-DRAFT-45071
NOAA-NMFS-2020-0031-DRAFT-45103
NOAA-NMFS-2020-0031-DRAFT-45110
NOAA-NMFS-2020-0031-DRAFT-45160
NOAA-NMFS-2020-0031-DRAFT-45201
NOAA-NMFS-2020-0031-DRAFT-45225

Comment from Varner, Alexander
Comment from Diemand, Grace
Comment from D, Caileigh
Comment from Kraus, Scott
Comment from Magidson, Pam
Comment from Thomas, Andrew
Comment from Hatch, Shane
Comment from Hatch, Shane
Comment from Leah Weisburd
Comment from Anonymous Anonymous
Comment from Graitcer, Philip
Comment from Smith, Richard
Comment from Barton, Peter
Comment from Clemons, James
Comment from Sowder, Brenna
Comment from Thomas, Phillip
Comment from Lazaro, Craig
Comment from Anonymous Anonymous
Comment from Mary Kramek
Comment from Anonymous
Comment from Crone, Martie
Comment from Anonymous
Comment from MAHONEY, CHAD
Comment from Miller, Ira
Comment from Weed, Raymond
Comment from Brown, Hunt
Comment from Jones, Sydney
Comment from Liz Cook
Comment from Kacey Morris
Comment from Hansen, Julie
Comment from Kristofferson, Cathy
Comment from Merrill, Jack
Comment from Ellen Bunker
Comment from Fossett, Darrell
Comment from Donnell, Zach
Comment from Cervantes, Ismael
Comment from Lehman, Loretta
Comment from Finnegan-Topitzer, Johanna
Comment from Westkaemper, Kelly

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51395

Comment from Angela CHRISTOPHERSON 02/28/2021

NOAA-NMFS-2020-0031-DRAFT-44374

Comment from Brodeur, Peter

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NOAA-NMFS-2020-0031-DRAFT-51396
NOAA-NMFS-2020-0031-DRAFT-51397
NOAA-NMFS-2020-0031-DRAFT-51398
NOAA-NMFS-2020-0031-DRAFT-51399
NOAA-NMFS-2020-0031-DRAFT-51400
NOAA-NMFS-2020-0031-DRAFT-51401
NOAA-NMFS-2020-0031-DRAFT-51402
NOAA-NMFS-2020-0031-DRAFT-51403
NOAA-NMFS-2020-0031-DRAFT-51404
NOAA-NMFS-2020-0031-DRAFT-51405
NOAA-NMFS-2020-0031-DRAFT-51407
NOAA-NMFS-2020-0031-DRAFT-51408
NOAA-NMFS-2020-0031-DRAFT-51409
NOAA-NMFS-2020-0031-DRAFT-51410
NOAA-NMFS-2020-0031-DRAFT-51411
NOAA-NMFS-2020-0031-DRAFT-51412
NOAA-NMFS-2020-0031-DRAFT-51413
NOAA-NMFS-2020-0031-DRAFT-51414
NOAA-NMFS-2020-0031-DRAFT-51415
NOAA-NMFS-2020-0031-DRAFT-51416
NOAA-NMFS-2020-0031-DRAFT-51417
NOAA-NMFS-2020-0031-DRAFT-51418
NOAA-NMFS-2020-0031-DRAFT-51419
NOAA-NMFS-2020-0031-DRAFT-51420
NOAA-NMFS-2020-0031-DRAFT-51421
NOAA-NMFS-2020-0031-DRAFT-51422
NOAA-NMFS-2020-0031-DRAFT-51423
NOAA-NMFS-2020-0031-DRAFT-51424
NOAA-NMFS-2020-0031-DRAFT-51425
NOAA-NMFS-2020-0031-DRAFT-51426
NOAA-NMFS-2020-0031-DRAFT-51427
NOAA-NMFS-2020-0031-DRAFT-51428
NOAA-NMFS-2020-0031-DRAFT-51429
NOAA-NMFS-2020-0031-DRAFT-51430
NOAA-NMFS-2020-0031-DRAFT-51431
NOAA-NMFS-2020-0031-DRAFT-51432
NOAA-NMFS-2020-0031-DRAFT-51433
NOAA-NMFS-2020-0031-DRAFT-51434
NOAA-NMFS-2020-0031-DRAFT-51435
NOAA-NMFS-2020-0031-DRAFT-51436
NOAA-NMFS-2020-0031-DRAFT-51437

Comment from Michael Hoover
Comment from Filippa, ANgela
Comment from George Bourlotos
Comment from Michael Giansiracusa
Comment from Simon Vance
Comment from Joshua Farrell
Comment from Perry, Marie
Comment from Margie Hancock
Comment from Deedi dayan
Comment from zucker, m. lee
Comment from Simpson, Andrea
Comment from Pete Falca
Comment from Cathleen Burns
Comment from Lisa Miller
Comment from James Graham
Comment from Hanford, Gail
Comment from Lisa Zato
Comment from cathi soule
Comment from Scott Heinze
Comment from Como, Linda
Comment from Susan Perez
Comment from Eric Voorhies
Comment from Nicholson, Sarah
Comment from Anonymous Anonymous
Comment from Abigail Villodas
Comment from Fesi, Annemarie
Comment from Pamela Allee
Comment from Hank Saunders
Comment from Nixon, Diane
Comment from Loretta Beaulieu
Comment from Beverly Simone
Comment from Tom Erwin
Comment from Paul Doscher
Comment from Nadeen Rich
Comment from Mathes, Don
Comment from Teresa Wrightson
Comment from Paul Meyer
Comment from Tracey Whitley
Comment from Shandra Koler
Comment from Pete Falca
Comment from Colleen Bergh

02/28/2021
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NOAA-NMFS-2020-0031-DRAFT-44414
NOAA-NMFS-2020-0031-DRAFT-44476
NOAA-NMFS-2020-0031-DRAFT-44558
NOAA-NMFS-2020-0031-DRAFT-44568
NOAA-NMFS-2020-0031-DRAFT-45305
NOAA-NMFS-2020-0031-DRAFT-45312
NOAA-NMFS-2020-0031-DRAFT-45313
NOAA-NMFS-2020-0031-DRAFT-45413
NOAA-NMFS-2020-0031-DRAFT-45485
NOAA-NMFS-2020-0031-DRAFT-45489
NOAA-NMFS-2020-0031-DRAFT-45525
NOAA-NMFS-2020-0031-DRAFT-45694
NOAA-NMFS-2020-0031-DRAFT-45695
NOAA-NMFS-2020-0031-DRAFT-45758
NOAA-NMFS-2020-0031-DRAFT-45780
NOAA-NMFS-2020-0031-DRAFT-45864
NOAA-NMFS-2020-0031-DRAFT-45933
NOAA-NMFS-2020-0031-DRAFT-45934
NOAA-NMFS-2020-0031-DRAFT-45950
NOAA-NMFS-2020-0031-DRAFT-45951
NOAA-NMFS-2020-0031-DRAFT-45959
NOAA-NMFS-2020-0031-DRAFT-45971
NOAA-NMFS-2020-0031-DRAFT-45988
NOAA-NMFS-2020-0031-DRAFT-45997
NOAA-NMFS-2020-0031-DRAFT-45998
NOAA-NMFS-2020-0031-DRAFT-46006
NOAA-NMFS-2020-0031-DRAFT-46011
NOAA-NMFS-2020-0031-DRAFT-46020
NOAA-NMFS-2020-0031-DRAFT-46033
NOAA-NMFS-2020-0031-DRAFT-46032
NOAA-NMFS-2020-0031-DRAFT-46036
NOAA-NMFS-2020-0031-DRAFT-46060
NOAA-NMFS-2020-0031-DRAFT-46179
NOAA-NMFS-2020-0031-DRAFT-46180
NOAA-NMFS-2020-0031-DRAFT-46256
NOAA-NMFS-2020-0031-DRAFT-46320
NOAA-NMFS-2020-0031-DRAFT-46343
NOAA-NMFS-2020-0031-DRAFT-46366
NOAA-NMFS-2020-0031-DRAFT-46430
NOAA-NMFS-2020-0031-DRAFT-46528
NOAA-NMFS-2020-0031-DRAFT-46560

Comment from Jessica Dickens
Comment from Lobster Express Inc
Comment from Anonymous
Comment from Lazaro, Sarah
Comment from Moros, Mike
Comment from Urquhart, Christopher
Comment from Hickey, Jennifer
Comment from kHOSHFAHM, Kathy
Comment from Greenwold, Beverly
Comment from Johns, Becky
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Anonymous
Comment from Simpson, Tucker
Comment from Anonymous
Comment from Schoppee, Austin
Comment from Mitschele , Jason
Comment from Macri, Nicolás
Comment from Hooper, Anthony
Comment from Anonymous
Comment from Whitener, Zach
Comment from Wu, Lillian
Comment from Bean, Andy
Comment from New England Aquarium
Comment from Irving, Ryan
Comment from Floyd, Michael
Comment from Samuels, Matt
Comment from Radford, Josh
Comment from Anonymous
Comment from Sturks, James
Comment from Troadec, Halle
Comment from Jennifer Taylor
Comment from Anonymous
Comment from Bemis, Tyler
Comment from Smith, Charles
Comment from Gallerani, Margaret
Comment from Sullivan, Kathleen
Comment from Dorr, Ryan
Comment from Gilbert, Steve
Comment from Woodward, Maggie

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NOAA-NMFS-2020-0031-DRAFT-51438
NOAA-NMFS-2020-0031-DRAFT-51439
NOAA-NMFS-2020-0031-DRAFT-51440
NOAA-NMFS-2020-0031-DRAFT-51441
NOAA-NMFS-2020-0031-DRAFT-51442
NOAA-NMFS-2020-0031-DRAFT-51443
NOAA-NMFS-2020-0031-DRAFT-51444
NOAA-NMFS-2020-0031-DRAFT-51445
NOAA-NMFS-2020-0031-DRAFT-51446
NOAA-NMFS-2020-0031-DRAFT-51447

Comment from Amy Dosser
Comment from Briana Purcell
Comment from James Hartley
Comment from Anita Burton
Comment from allison alberts
Comment from Roberta campbell
Comment from juli van brown
Comment from Mark Messing
Comment from Yaraly Espinoza
Comment from Caroline Richardson

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-47322
NOAA-NMFS-2020-0031-DRAFT-47482
NOAA-NMFS-2020-0031-DRAFT-47177
NOAA-NMFS-2020-0031-DRAFT-47593
NOAA-NMFS-2020-0031-DRAFT-28091
NOAA-NMFS-2020-0031-DRAFT-25114
NOAA-NMFS-2020-0031-DRAFT-49769
NOAA-NMFS-2020-0031-DRAFT-49807
NOAA-NMFS-2020-0031-DRAFT-49500
NOAA-NMFS-2020-0031-DRAFT-49861

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51448

Comment from Marianne Hoffman

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49921

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51449
NOAA-NMFS-2020-0031-DRAFT-51450
NOAA-NMFS-2020-0031-DRAFT-51451
NOAA-NMFS-2020-0031-DRAFT-51452
NOAA-NMFS-2020-0031-DRAFT-51453
NOAA-NMFS-2020-0031-DRAFT-51454
NOAA-NMFS-2020-0031-DRAFT-51455
NOAA-NMFS-2020-0031-DRAFT-51456
NOAA-NMFS-2020-0031-DRAFT-51457
NOAA-NMFS-2020-0031-DRAFT-51458
NOAA-NMFS-2020-0031-DRAFT-51459
NOAA-NMFS-2020-0031-DRAFT-51460

Comment from John Thomas
Comment from Terry Wolfe
Comment from Leslie Valentine
Comment from Susanna Askins
Comment from Steve Shuput
Comment from Kathy Jost-Keating
Comment from Eric McLaughlin
Comment from April Gornik
Comment from Beverly Skelton
Comment from Mary Butler
Comment from Joan Conca
Comment from Allen Altman

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49962
NOAA-NMFS-2020-0031-DRAFT-49996
NOAA-NMFS-2020-0031-DRAFT-50048
NOAA-NMFS-2020-0031-DRAFT-50071
NOAA-NMFS-2020-0031-DRAFT-50153
NOAA-NMFS-2020-0031-DRAFT-50172
NOAA-NMFS-2020-0031-DRAFT-50211
NOAA-NMFS-2020-0031-DRAFT-50241
NOAA-NMFS-2020-0031-DRAFT-50264
NOAA-NMFS-2020-0031-DRAFT-50302
NOAA-NMFS-2020-0031-DRAFT-50481
NOAA-NMFS-2020-0031-DRAFT-50572

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51461

Comment from Keri Smith

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50594

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51462
NOAA-NMFS-2020-0031-DRAFT-51463
NOAA-NMFS-2020-0031-DRAFT-51464
NOAA-NMFS-2020-0031-DRAFT-51465
NOAA-NMFS-2020-0031-DRAFT-51466
NOAA-NMFS-2020-0031-DRAFT-51467
NOAA-NMFS-2020-0031-DRAFT-51468
NOAA-NMFS-2020-0031-DRAFT-51469
NOAA-NMFS-2020-0031-DRAFT-51470
NOAA-NMFS-2020-0031-DRAFT-51471
NOAA-NMFS-2020-0031-DRAFT-51472
NOAA-NMFS-2020-0031-DRAFT-51473
NOAA-NMFS-2020-0031-DRAFT-51475
NOAA-NMFS-2020-0031-DRAFT-51476
NOAA-NMFS-2020-0031-DRAFT-51477

Comment from Monja Lacasse
Comment from Denise Williamson
Comment from Ashley Foulk
Comment from Joe Quirk
Comment from Kristin Reed
Comment from Bernadette Payne
Comment from AIleen Glynn
Comment from John Blaha
Comment from Terry Warkentine
Comment from Rande Mandelblatt
Comment from Meryle Korn
Comment from gary rejsek
Comment from Sigmund Finman
Comment from Sheila Spencer
Comment from Anonymous Anonymous

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
02/19/2021
02/18/2021
02/10/2021
02/10/2021
02/09/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50647
NOAA-NMFS-2020-0031-DRAFT-50656
NOAA-NMFS-2020-0031-DRAFT-50667
NOAA-NMFS-2020-0031-DRAFT-50680
NOAA-NMFS-2020-0031-DRAFT-50700
NOAA-NMFS-2020-0031-DRAFT-50701
NOAA-NMFS-2020-0031-DRAFT-54853
NOAA-NMFS-2020-0031-DRAFT-49003
NOAA-NMFS-2020-0031-DRAFT-21946
NOAA-NMFS-2020-0031-DRAFT-20312
NOAA-NMFS-2020-0031-DRAFT-13202
NOAA-NMFS-2020-0031-DRAFT-13125
NOAA-NMFS-2020-0031-DRAFT-12463
NOAA-NMFS-2020-0031-DRAFT-50743
NOAA-NMFS-2020-0031-DRAFT-50755

Comment from Pontius, Edward
Comment from Daniels, Jessica
Comment from barbara skapa
Comment from Pat Doherty
Comment from Anonymous Anonymous
Comment from stephen ross
Comment from Dr. Ken Linderman
Comment from Pamela Lyons Gromen
Comment from Olaf Aprans
Comment from McDonald, Joseph
Comment from Veterans for Clean Water
Program, Savannah Riverkeeper
Comment from Ready Seafood
Comment from Susan Millward
Comment from Welles, Virginia
Comment from Thompson, Frank
Comment from Samuels, Sadie
Comment from Butler, NC State Rep. Deborah
Comment from Klein, Brandon
Comment from Stolen, Megan
Comment from Lane, Nathaniel
Comment from Julie Ferreira
Comment from Lobster Inc.
Comment from Morey, Marcia
Comment from Georgia DNR, Wildlife Resources
Division
Comment from EPA
Comment from Ingalls, Charles
Comment from Pellechia, Andrew
Comment from Northeast Seafood Coalition
Comment from Willey, Thom
Comment from Tozier, Keven
Comment from Jeremy Gragert
Comment from Anonymous
Comment from Lynch, Janet
Comment from Gerard Gaudin
Comment from vicki Anderson
Comment from Lee Schondorf
Comment from Gerard Gaudin
Comment from Maine Lobster Dealers
Association
Comment from Ingalls, robert

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51478
NOAA-NMFS-2020-0031-DRAFT-51479
NOAA-NMFS-2020-0031-DRAFT-51480
NOAA-NMFS-2020-0031-DRAFT-51481
NOAA-NMFS-2020-0031-DRAFT-51482
NOAA-NMFS-2020-0031-DRAFT-51483
NOAA-NMFS-2020-0031-DRAFT-51484
NOAA-NMFS-2020-0031-DRAFT-51485
NOAA-NMFS-2020-0031-DRAFT-51486

Comment from Robert Mayworth
Comment from nikki nicola
Comment from Gary Miller
Comment from Melissa Bishop
Comment from Horen, Cathy
Comment from Dennis Rogers
Comment from Blum, Antoinet
Comment from Alice Felix
Comment from Harriett Pooler

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50919
NOAA-NMFS-2020-0031-DRAFT-50934
NOAA-NMFS-2020-0031-DRAFT-50935
NOAA-NMFS-2020-0031-DRAFT-50986
NOAA-NMFS-2020-0031-DRAFT-51186
NOAA-NMFS-2020-0031-DRAFT-51190
NOAA-NMFS-2020-0031-DRAFT-51201
NOAA-NMFS-2020-0031-DRAFT-51258
NOAA-NMFS-2020-0031-DRAFT-51474

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51487

Comment from Paula Summers

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51611

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51488
NOAA-NMFS-2020-0031-DRAFT-51489
NOAA-NMFS-2020-0031-DRAFT-51490
NOAA-NMFS-2020-0031-DRAFT-51491
NOAA-NMFS-2020-0031-DRAFT-51492
NOAA-NMFS-2020-0031-DRAFT-51493
NOAA-NMFS-2020-0031-DRAFT-51494
NOAA-NMFS-2020-0031-DRAFT-51495
NOAA-NMFS-2020-0031-DRAFT-51496
NOAA-NMFS-2020-0031-DRAFT-51497
NOAA-NMFS-2020-0031-DRAFT-51498
NOAA-NMFS-2020-0031-DRAFT-51499
NOAA-NMFS-2020-0031-DRAFT-51500
NOAA-NMFS-2020-0031-DRAFT-51501
NOAA-NMFS-2020-0031-DRAFT-51502
NOAA-NMFS-2020-0031-DRAFT-51503
NOAA-NMFS-2020-0031-DRAFT-51504
NOAA-NMFS-2020-0031-DRAFT-51505
NOAA-NMFS-2020-0031-DRAFT-51506
NOAA-NMFS-2020-0031-DRAFT-51507
NOAA-NMFS-2020-0031-DRAFT-51508
NOAA-NMFS-2020-0031-DRAFT-51509
NOAA-NMFS-2020-0031-DRAFT-51510
NOAA-NMFS-2020-0031-DRAFT-51511
NOAA-NMFS-2020-0031-DRAFT-51512
NOAA-NMFS-2020-0031-DRAFT-51513
NOAA-NMFS-2020-0031-DRAFT-51514
NOAA-NMFS-2020-0031-DRAFT-51515
NOAA-NMFS-2020-0031-DRAFT-51516
NOAA-NMFS-2020-0031-DRAFT-51517

Comment from Uly Silkey
Comment from Hilary Simonetti
Comment from Adrian Robertson
Comment from Mercy Sidbury
Comment from Valerie Holland
Comment from Samuel Newman
Comment from Janice Dion
Comment from Virginia Snider
Comment from John Markham
Comment from Ashley Rivera
Comment from Anonymous Anonymous
Comment from Wanda Graff
Comment from Michael Sobkowiak
Comment from Brian Picard
Comment from Lois White
Comment from Marcy Gordon
Comment from Wayne Teel
Comment from Christopher Benjamin
Comment from Anonymous Anonymous
Comment from Kelly Baber
Comment from sharon parker
Comment from Terry Warkentine
Comment from Sandra Cobb
Comment from Christopher Newman
Comment from C Clark
Comment from Jane Ellenberg
Comment from Margery Ellison
Comment from drs jackson
Comment from Anna Bergalis
Comment from Candice Lowery

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51640
NOAA-NMFS-2020-0031-DRAFT-51656
NOAA-NMFS-2020-0031-DRAFT-50782
NOAA-NMFS-2020-0031-DRAFT-51104
NOAA-NMFS-2020-0031-DRAFT-51282
NOAA-NMFS-2020-0031-DRAFT-51871
NOAA-NMFS-2020-0031-DRAFT-51992
NOAA-NMFS-2020-0031-DRAFT-52021
NOAA-NMFS-2020-0031-DRAFT-52157
NOAA-NMFS-2020-0031-DRAFT-52168
NOAA-NMFS-2020-0031-DRAFT-54947

Comment from Crowell, Kenneth
Comment from Eaton, Julie
Comment from F/V Anvil
Comment from Arpayoglou, Irene
Comment from Wolk, Pearson
Comment from Murphy, Cameron
Comment from Jones, Stuart
Comment from Women Working for Oceans W2O
Comment from Muniz, Michelle
Comment from Public Employees for
Environmental Responsibility
Comment from O'Donnell, Conor
Comment from Bolin , Jefferson
Comment from Angus King
Comment from Rosemarie Santiesteban
Comment from Frank Dame
Comment from Alice Keyes
Comment from Natural Resources Defense
Council
Comment from Southern Environmental Law
Center
Comment from Town of Stonington
Comment from SeaWorld Parks & Entertainment
DCousens Whale TRP PR Comments

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51518
NOAA-NMFS-2020-0031-DRAFT-51521
NOAA-NMFS-2020-0031-DRAFT-51522
NOAA-NMFS-2020-0031-DRAFT-51523
NOAA-NMFS-2020-0031-DRAFT-51524
NOAA-NMFS-2020-0031-DRAFT-51525
NOAA-NMFS-2020-0031-DRAFT-51526
NOAA-NMFS-2020-0031-DRAFT-51527
NOAA-NMFS-2020-0031-DRAFT-51528
NOAA-NMFS-2020-0031-DRAFT-51529
NOAA-NMFS-2020-0031-DRAFT-51530
NOAA-NMFS-2020-0031-DRAFT-51531
NOAA-NMFS-2020-0031-DRAFT-51532
NOAA-NMFS-2020-0031-DRAFT-51534
NOAA-NMFS-2020-0031-DRAFT-51535
NOAA-NMFS-2020-0031-DRAFT-51536
NOAA-NMFS-2020-0031-DRAFT-51537
NOAA-NMFS-2020-0031-DRAFT-51538
NOAA-NMFS-2020-0031-DRAFT-51539
NOAA-NMFS-2020-0031-DRAFT-51540
NOAA-NMFS-2020-0031-DRAFT-51541
NOAA-NMFS-2020-0031-DRAFT-51542
NOAA-NMFS-2020-0031-DRAFT-51543
NOAA-NMFS-2020-0031-DRAFT-51544
NOAA-NMFS-2020-0031-DRAFT-51545
NOAA-NMFS-2020-0031-DRAFT-51546
NOAA-NMFS-2020-0031-DRAFT-51547
NOAA-NMFS-2020-0031-DRAFT-51548
NOAA-NMFS-2020-0031-DRAFT-51549
NOAA-NMFS-2020-0031-DRAFT-51550
NOAA-NMFS-2020-0031-DRAFT-51551
NOAA-NMFS-2020-0031-DRAFT-51552
NOAA-NMFS-2020-0031-DRAFT-51553
NOAA-NMFS-2020-0031-DRAFT-51554
NOAA-NMFS-2020-0031-DRAFT-51555
NOAA-NMFS-2020-0031-DRAFT-51556
NOAA-NMFS-2020-0031-DRAFT-51557
NOAA-NMFS-2020-0031-DRAFT-51558
NOAA-NMFS-2020-0031-DRAFT-51559
NOAA-NMFS-2020-0031-DRAFT-51560
NOAA-NMFS-2020-0031-DRAFT-51561

Comment from Rosalie McMenamin
Comment from Don Tittle
Comment from Steven Carpenter
Comment from Christine Drea
Comment from Elliot Daniels
Comment from Laura Schuman
Comment from Terry Derchia
Comment from Richard Amerling
Comment from Robyn Warne
Comment from Philip Louie
Comment from Wynima Cavagnaro
Comment from Brian Christian
Comment from Aurelie Ward
Comment from Kathy McGrogan
Comment from Iliana Lopez
Comment from Margot VanEtten
Comment from pam brocious
Comment from Doug Kelley
Comment from Mary Bristow
Comment from Mark Bradley
Comment from Susan Sheakley
Comment from Kun Kang
Comment from Peter O'Hara
Comment from Elizabeth smith
Comment from Maria Correia
Comment from Eric Magers
Comment from Francine Traniello
Comment from Marc Hachey
Comment from Margaret Silver
Comment from Kerry Hodges
Comment from Philip Louie
Comment from Sandra Breakfield
Comment from Daphne Endress
Comment from Mike Abler
Comment from David Savige
Comment from kathy mesch
Comment from Jennifer Santos
Comment from Nick Epstein
Comment from Susan Ford
Comment from Katie Wood
Comment from Kerry Hodges

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51562
NOAA-NMFS-2020-0031-DRAFT-51563
NOAA-NMFS-2020-0031-DRAFT-51564
NOAA-NMFS-2020-0031-DRAFT-51565
NOAA-NMFS-2020-0031-DRAFT-51566
NOAA-NMFS-2020-0031-DRAFT-51567
NOAA-NMFS-2020-0031-DRAFT-51568
NOAA-NMFS-2020-0031-DRAFT-51569
NOAA-NMFS-2020-0031-DRAFT-51570
NOAA-NMFS-2020-0031-DRAFT-51571
NOAA-NMFS-2020-0031-DRAFT-51572
NOAA-NMFS-2020-0031-DRAFT-51573
NOAA-NMFS-2020-0031-DRAFT-51574
NOAA-NMFS-2020-0031-DRAFT-51575
NOAA-NMFS-2020-0031-DRAFT-51576
NOAA-NMFS-2020-0031-DRAFT-51577
NOAA-NMFS-2020-0031-DRAFT-51578
NOAA-NMFS-2020-0031-DRAFT-51579
NOAA-NMFS-2020-0031-DRAFT-51580
NOAA-NMFS-2020-0031-DRAFT-51581
NOAA-NMFS-2020-0031-DRAFT-51582
NOAA-NMFS-2020-0031-DRAFT-51583
NOAA-NMFS-2020-0031-DRAFT-51584
NOAA-NMFS-2020-0031-DRAFT-51585
NOAA-NMFS-2020-0031-DRAFT-51586
NOAA-NMFS-2020-0031-DRAFT-51587
NOAA-NMFS-2020-0031-DRAFT-51588
NOAA-NMFS-2020-0031-DRAFT-51589
NOAA-NMFS-2020-0031-DRAFT-51590
NOAA-NMFS-2020-0031-DRAFT-51591
NOAA-NMFS-2020-0031-DRAFT-51592
NOAA-NMFS-2020-0031-DRAFT-51593
NOAA-NMFS-2020-0031-DRAFT-51594
NOAA-NMFS-2020-0031-DRAFT-51595
NOAA-NMFS-2020-0031-DRAFT-51596
NOAA-NMFS-2020-0031-DRAFT-51597
NOAA-NMFS-2020-0031-DRAFT-51598
NOAA-NMFS-2020-0031-DRAFT-51599
NOAA-NMFS-2020-0031-DRAFT-51600
NOAA-NMFS-2020-0031-DRAFT-51601
NOAA-NMFS-2020-0031-DRAFT-51602

Comment from Frank DePinto
Comment from Robert Cameron
Comment from K R
Comment from Clint Landeen
Comment from Colleen Kelly
Comment from Alfred Mancini
Comment from Martha Ennis
Comment from Donald Watson
Comment from Lary McKee
Comment from elizabeth gardner
Comment from Michael Hinshaw
Comment from David Adler
Comment from Marta Dawes
Comment from Jan Salas
Comment from David Dewenter
Comment from Mary Brennan
Comment from AIleen Glynn
Comment from John Edwards
Comment from Sybille Vital
Comment from JOHN LAROCHELLE
Comment from Susan Lowe
Comment from Daniel Gonzales
Comment from Christopher Evans
Comment from Aguilera Kat
Comment from Dr Ret
Comment from Joanne Godzicki
Comment from Sirina Sucklal
Comment from Heidi Cleven
Comment from Maureen Kill
Comment from Jeffrey Meyers
Comment from Cranden, Erica
Comment from Bryan Wyberg
Comment from Kim Weindorf
Comment from Frame, Deborah
Comment from Pete Falca
Comment from Van Zee, Ali
Comment from Terry Vollmer
Comment from Hilary Capstick
Comment from Carlos Ortega
Comment from Cooper, James
Comment from Dana Sanchez

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51603
NOAA-NMFS-2020-0031-DRAFT-51604
NOAA-NMFS-2020-0031-DRAFT-51605
NOAA-NMFS-2020-0031-DRAFT-51606
NOAA-NMFS-2020-0031-DRAFT-51607
NOAA-NMFS-2020-0031-DRAFT-51608
NOAA-NMFS-2020-0031-DRAFT-51609
NOAA-NMFS-2020-0031-DRAFT-51610
NOAA-NMFS-2020-0031-DRAFT-51612
NOAA-NMFS-2020-0031-DRAFT-51613
NOAA-NMFS-2020-0031-DRAFT-51614
NOAA-NMFS-2020-0031-DRAFT-51615
NOAA-NMFS-2020-0031-DRAFT-51616
NOAA-NMFS-2020-0031-DRAFT-51617
NOAA-NMFS-2020-0031-DRAFT-51618
NOAA-NMFS-2020-0031-DRAFT-51619
NOAA-NMFS-2020-0031-DRAFT-51620

Comment from Mary Allen
Comment from Holly Kukkonen
Comment from Tina Messamore
Comment from Marchant, Lynn
Comment from Beth Severance
Comment from Maria Yepes
Comment from clemmey, elizabeth
Comment from Paul Sanderson
Comment from DAVIDSON, ANNIE
Comment from Daniel Harris
Comment from Rudolph Ripp
Comment from Nost, Ulla
Comment from Julie Martin
Comment from Stephanie Fox
Comment from Mary Sloan
Comment from Susanna Levin
Comment from Ham, Hugo

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51621

Comment from Annette Luffman-Johnson

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51622
NOAA-NMFS-2020-0031-DRAFT-51623
NOAA-NMFS-2020-0031-DRAFT-51624
NOAA-NMFS-2020-0031-DRAFT-51625
NOAA-NMFS-2020-0031-DRAFT-51626
NOAA-NMFS-2020-0031-DRAFT-51627
NOAA-NMFS-2020-0031-DRAFT-51628
NOAA-NMFS-2020-0031-DRAFT-51629
NOAA-NMFS-2020-0031-DRAFT-51630
NOAA-NMFS-2020-0031-DRAFT-51631
NOAA-NMFS-2020-0031-DRAFT-51632
NOAA-NMFS-2020-0031-DRAFT-51633
NOAA-NMFS-2020-0031-DRAFT-51634
NOAA-NMFS-2020-0031-DRAFT-51635
NOAA-NMFS-2020-0031-DRAFT-51636
NOAA-NMFS-2020-0031-DRAFT-51637
NOAA-NMFS-2020-0031-DRAFT-51638
NOAA-NMFS-2020-0031-DRAFT-51639
NOAA-NMFS-2020-0031-DRAFT-51642
NOAA-NMFS-2020-0031-DRAFT-51643
NOAA-NMFS-2020-0031-DRAFT-51644
NOAA-NMFS-2020-0031-DRAFT-51645

Comment from marilyn gockowski
Comment from BRETT KENGOR
Comment from Benatar-Kotler, Belinda
Comment from g clemson
Comment from Mary Fudeman
Comment from Eileen Schram
Comment from Jeannine Guerci
Comment from Judd, Barbara
Comment from Guy Zahller
Comment from Sybil Morgan
Comment from bruce hirayama
Comment from Jacquelyn Barnes
Comment from Bruno, Margaret
Comment from Shela Hadley
Comment from Willa Falk
Comment from Bivona, Denise
Comment from Georgia Goldfarb
Comment from Mills, Laurel
Comment from Kerri Piazza
Comment from amy sultan
Comment from Caroline Kern
Comment from Armbruster, Diane

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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51646
NOAA-NMFS-2020-0031-DRAFT-51647
NOAA-NMFS-2020-0031-DRAFT-51648
NOAA-NMFS-2020-0031-DRAFT-51649
NOAA-NMFS-2020-0031-DRAFT-51650
NOAA-NMFS-2020-0031-DRAFT-51651
NOAA-NMFS-2020-0031-DRAFT-51652
NOAA-NMFS-2020-0031-DRAFT-51653
NOAA-NMFS-2020-0031-DRAFT-51654
NOAA-NMFS-2020-0031-DRAFT-51655
NOAA-NMFS-2020-0031-DRAFT-51657
NOAA-NMFS-2020-0031-DRAFT-51658
NOAA-NMFS-2020-0031-DRAFT-51659
NOAA-NMFS-2020-0031-DRAFT-51660
NOAA-NMFS-2020-0031-DRAFT-51661
NOAA-NMFS-2020-0031-DRAFT-51662
NOAA-NMFS-2020-0031-DRAFT-51663
NOAA-NMFS-2020-0031-DRAFT-51664
NOAA-NMFS-2020-0031-DRAFT-51665
NOAA-NMFS-2020-0031-DRAFT-51666
NOAA-NMFS-2020-0031-DRAFT-51667
NOAA-NMFS-2020-0031-DRAFT-51668
NOAA-NMFS-2020-0031-DRAFT-51669
NOAA-NMFS-2020-0031-DRAFT-51670
NOAA-NMFS-2020-0031-DRAFT-51671
NOAA-NMFS-2020-0031-DRAFT-51672
NOAA-NMFS-2020-0031-DRAFT-51673
NOAA-NMFS-2020-0031-DRAFT-51674
NOAA-NMFS-2020-0031-DRAFT-51675
NOAA-NMFS-2020-0031-DRAFT-51676
NOAA-NMFS-2020-0031-DRAFT-51677
NOAA-NMFS-2020-0031-DRAFT-51678
NOAA-NMFS-2020-0031-DRAFT-51679
NOAA-NMFS-2020-0031-DRAFT-51680
NOAA-NMFS-2020-0031-DRAFT-51681
NOAA-NMFS-2020-0031-DRAFT-51682
NOAA-NMFS-2020-0031-DRAFT-51683
NOAA-NMFS-2020-0031-DRAFT-51684
NOAA-NMFS-2020-0031-DRAFT-51685
NOAA-NMFS-2020-0031-DRAFT-51686
NOAA-NMFS-2020-0031-DRAFT-51687

Comment from Eithne Clarke
Comment from Richard Desantis
Comment from sheila munson
Comment from Ashley Erisman
Comment from Guidoboni, Shirley
Comment from Donna Polson
Comment from John Everett
Comment from Reed, Mary
Comment from Lauren Tartaglia
Comment from Reed, Mary
Comment from Joseph Leedy
Comment from Jerry Oliver
Comment from Rosati, Pat
Comment from Kathleen Roche
Comment from Becky Daiss
Comment from gina anson
Comment from Mary Lebert
Comment from Dennis Hough
Comment from Smiley, Rob
Comment from Paul Lapidus
Comment from M S
Comment from Trout, Larry
Comment from Dena Hernandez-Kosche
Comment from Babcock, Miles
Comment from Norma. Hanson
Comment from Deborah Spencer
Comment from Justin Chernow
Comment from Countryman-Mills, G.
Comment from Laura Divenere
Comment from Mary Wheat
Comment from ellen witte
Comment from JoAnne Cohen
Comment from McGee, Maureen
Comment from Heather Davis
Comment from Sherri Moody
Comment from Bell, Milena
Comment from Candy Ross
Comment from bell, marshall
Comment from Victoria Randall
Comment from Marchick Richard
Comment from David Holzman

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51688
NOAA-NMFS-2020-0031-DRAFT-51689
NOAA-NMFS-2020-0031-DRAFT-51690
NOAA-NMFS-2020-0031-DRAFT-51691
NOAA-NMFS-2020-0031-DRAFT-51692
NOAA-NMFS-2020-0031-DRAFT-51693
NOAA-NMFS-2020-0031-DRAFT-51694
NOAA-NMFS-2020-0031-DRAFT-51695
NOAA-NMFS-2020-0031-DRAFT-51696
NOAA-NMFS-2020-0031-DRAFT-51697
NOAA-NMFS-2020-0031-DRAFT-51698
NOAA-NMFS-2020-0031-DRAFT-51699
NOAA-NMFS-2020-0031-DRAFT-51700
NOAA-NMFS-2020-0031-DRAFT-51701
NOAA-NMFS-2020-0031-DRAFT-51702
NOAA-NMFS-2020-0031-DRAFT-51703
NOAA-NMFS-2020-0031-DRAFT-51704
NOAA-NMFS-2020-0031-DRAFT-51705
NOAA-NMFS-2020-0031-DRAFT-51706
NOAA-NMFS-2020-0031-DRAFT-51707
NOAA-NMFS-2020-0031-DRAFT-51708
NOAA-NMFS-2020-0031-DRAFT-51709
NOAA-NMFS-2020-0031-DRAFT-51710
NOAA-NMFS-2020-0031-DRAFT-51711
NOAA-NMFS-2020-0031-DRAFT-51712
NOAA-NMFS-2020-0031-DRAFT-51713
NOAA-NMFS-2020-0031-DRAFT-51714
NOAA-NMFS-2020-0031-DRAFT-51715
NOAA-NMFS-2020-0031-DRAFT-51716
NOAA-NMFS-2020-0031-DRAFT-51717
NOAA-NMFS-2020-0031-DRAFT-51718
NOAA-NMFS-2020-0031-DRAFT-51719
NOAA-NMFS-2020-0031-DRAFT-51720
NOAA-NMFS-2020-0031-DRAFT-51721
NOAA-NMFS-2020-0031-DRAFT-51722
NOAA-NMFS-2020-0031-DRAFT-51723
NOAA-NMFS-2020-0031-DRAFT-51724
NOAA-NMFS-2020-0031-DRAFT-51725
NOAA-NMFS-2020-0031-DRAFT-51726
NOAA-NMFS-2020-0031-DRAFT-51727
NOAA-NMFS-2020-0031-DRAFT-51728

Comment from Landers, Catherine
Comment from Eddie Pittmon
Comment from James Hartley
Comment from Darrell Schmidt
Comment from Chara Mandile
Comment from VanVliet, Nagisa
Comment from Edward Sullivan
Comment from Nancy Harter
Comment from Broda, Patricia
Comment from Brandon Juhl
Comment from Lemire, Kara
Comment from Hollie Hollon
Comment from Darlene Schanfald
Comment from Joanne Hahn
Comment from Thomas Wiewandt
Comment from John Colgan-Davis
Comment from Gary Ardito
Comment from Ronna DeLoe
Comment from Copley Smoak
Comment from Ruthann McDermott
Comment from dani brusius
Comment from Rhoda Levine
Comment from Bob Hollon
Comment from Melissa Arra
Comment from Amy Freeman
Comment from Sally Maish
Comment from Mitchell Deighan
Comment from Deirdre Fitzsimmons
Comment from Patrick Eggleston
Comment from Carolyn Strange
Comment from CARL CLARK
Comment from James Miles
Comment from Emily Rosenmeier
Comment from Daniel Morneau
Comment from Carolyn Summers
Comment from AnnMarie Hudson
Comment from Carlene Moscatt
Comment from Mary Hamm
Comment from Robert Keiser
Comment from Quentin Fischer
Comment from Mary Green

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51729
NOAA-NMFS-2020-0031-DRAFT-51730
NOAA-NMFS-2020-0031-DRAFT-51731
NOAA-NMFS-2020-0031-DRAFT-51732
NOAA-NMFS-2020-0031-DRAFT-51733
NOAA-NMFS-2020-0031-DRAFT-51734
NOAA-NMFS-2020-0031-DRAFT-51735
NOAA-NMFS-2020-0031-DRAFT-51736
NOAA-NMFS-2020-0031-DRAFT-51737
NOAA-NMFS-2020-0031-DRAFT-51738
NOAA-NMFS-2020-0031-DRAFT-51739
NOAA-NMFS-2020-0031-DRAFT-51740
NOAA-NMFS-2020-0031-DRAFT-51741
NOAA-NMFS-2020-0031-DRAFT-51742
NOAA-NMFS-2020-0031-DRAFT-51743
NOAA-NMFS-2020-0031-DRAFT-51744
NOAA-NMFS-2020-0031-DRAFT-51745
NOAA-NMFS-2020-0031-DRAFT-51746
NOAA-NMFS-2020-0031-DRAFT-51747
NOAA-NMFS-2020-0031-DRAFT-51748
NOAA-NMFS-2020-0031-DRAFT-51750
NOAA-NMFS-2020-0031-DRAFT-51751
NOAA-NMFS-2020-0031-DRAFT-51752
NOAA-NMFS-2020-0031-DRAFT-51753
NOAA-NMFS-2020-0031-DRAFT-51754
NOAA-NMFS-2020-0031-DRAFT-51755
NOAA-NMFS-2020-0031-DRAFT-51756
NOAA-NMFS-2020-0031-DRAFT-51757
NOAA-NMFS-2020-0031-DRAFT-51758
NOAA-NMFS-2020-0031-DRAFT-51759
NOAA-NMFS-2020-0031-DRAFT-51760
NOAA-NMFS-2020-0031-DRAFT-51761
NOAA-NMFS-2020-0031-DRAFT-51762
NOAA-NMFS-2020-0031-DRAFT-51763
NOAA-NMFS-2020-0031-DRAFT-51764
NOAA-NMFS-2020-0031-DRAFT-51765
NOAA-NMFS-2020-0031-DRAFT-51766
NOAA-NMFS-2020-0031-DRAFT-51767
NOAA-NMFS-2020-0031-DRAFT-51768
NOAA-NMFS-2020-0031-DRAFT-51769
NOAA-NMFS-2020-0031-DRAFT-51770

Comment from Janet Monfredini
Comment from Jean Andrews
Comment from Joan Glasser
Comment from William Boteler
Comment from Eric Weiss
Comment from Nicole Deter
Comment from Rhonda pulliam
Comment from Linda Tesser
Comment from Ankea Kkoutas
Comment from Don Thomsen
Comment from Elisabeth Armendarez
Comment from Bruce Schacht
Comment from thomas nolan
Comment from JOANN PICHIARELLO
Comment from Christa Lopez
Comment from Lou Reznew
Comment from Alex Savory
Comment from Steve Kline
Comment from Mari Dominguez
Comment from Tracey Fried-Kasofsky
Comment from Rhoda Levine
Comment from Wayne Heckman
Comment from Eloise Maughan
Comment from Donna Thelander
Comment from Lacey Hicks
Comment from Erica Munn
Comment from Kevin Popeck
Comment from Louise Perret
Comment from Nancy Clark
Comment from Jodie Zupancic
Comment from Seth Bright
Comment from janet maker
Comment from Dianne Douglas
Comment from Candida Grant
Comment from Clement Thurn
Comment from Allen Krantz
Comment from gm whiting
Comment from Jodie Zupancic
Comment from Priscilla Barone
Comment from Stephen Dutschke
Comment from Brian Gray

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51771
NOAA-NMFS-2020-0031-DRAFT-51772
NOAA-NMFS-2020-0031-DRAFT-51773
NOAA-NMFS-2020-0031-DRAFT-51774
NOAA-NMFS-2020-0031-DRAFT-51775
NOAA-NMFS-2020-0031-DRAFT-51776
NOAA-NMFS-2020-0031-DRAFT-51777
NOAA-NMFS-2020-0031-DRAFT-51778
NOAA-NMFS-2020-0031-DRAFT-51779
NOAA-NMFS-2020-0031-DRAFT-51780
NOAA-NMFS-2020-0031-DRAFT-51781
NOAA-NMFS-2020-0031-DRAFT-51782
NOAA-NMFS-2020-0031-DRAFT-51783
NOAA-NMFS-2020-0031-DRAFT-51784
NOAA-NMFS-2020-0031-DRAFT-51785
NOAA-NMFS-2020-0031-DRAFT-51786
NOAA-NMFS-2020-0031-DRAFT-51787
NOAA-NMFS-2020-0031-DRAFT-51788
NOAA-NMFS-2020-0031-DRAFT-51789
NOAA-NMFS-2020-0031-DRAFT-51790
NOAA-NMFS-2020-0031-DRAFT-51791
NOAA-NMFS-2020-0031-DRAFT-51792
NOAA-NMFS-2020-0031-DRAFT-51793
NOAA-NMFS-2020-0031-DRAFT-51794
NOAA-NMFS-2020-0031-DRAFT-51795
NOAA-NMFS-2020-0031-DRAFT-51796
NOAA-NMFS-2020-0031-DRAFT-51797
NOAA-NMFS-2020-0031-DRAFT-51798
NOAA-NMFS-2020-0031-DRAFT-51799
NOAA-NMFS-2020-0031-DRAFT-51800
NOAA-NMFS-2020-0031-DRAFT-51801
NOAA-NMFS-2020-0031-DRAFT-51802
NOAA-NMFS-2020-0031-DRAFT-51803
NOAA-NMFS-2020-0031-DRAFT-51804
NOAA-NMFS-2020-0031-DRAFT-51805
NOAA-NMFS-2020-0031-DRAFT-51806
NOAA-NMFS-2020-0031-DRAFT-51807
NOAA-NMFS-2020-0031-DRAFT-51808
NOAA-NMFS-2020-0031-DRAFT-51809
NOAA-NMFS-2020-0031-DRAFT-51810
NOAA-NMFS-2020-0031-DRAFT-51811

Comment from Eleanor Dowson
Comment from Wayne Steffes
Comment from Sandi Aden
Comment from Linda Hillman
Comment from Helen Gennari
Comment from John Finazzo
Comment from John Dylla
Comment from Susan Schmidt
Comment from Maryann Kauffman
Comment from Debbie Schwer
Comment from Joan Sitomer
Comment from Janell Curtis
Comment from marcia sliwinski
Comment from Richard Barker
Comment from Darryl San Souci
Comment from Macaire Grambauer
Comment from Eugene Brusin
Comment from Linda Evinger
Comment from Zuzka Eggena
Comment from Edward Sullivan
Comment from Ann Williams
Comment from Cara Busch
Comment from Jana Perinchief
Comment from Claudia Sprinkle
Comment from Faith Herschler
Comment from Kim Seger
Comment from Debora Hojda
Comment from John Albertini
Comment from Carol Easton
Comment from Christine Gallagher
Comment from Inna Gergel
Comment from Nancy Gregory
Comment from Dennis Lear
Comment from rio valencia
Comment from Carol Collins
Comment from William McGoldrick
Comment from Patrick Doyle
Comment from Marcine McBride
Comment from Christine Gallagher
Comment from Richard Smith
Comment from Donna Mulvey

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51812
NOAA-NMFS-2020-0031-DRAFT-51813
NOAA-NMFS-2020-0031-DRAFT-51814
NOAA-NMFS-2020-0031-DRAFT-51815
NOAA-NMFS-2020-0031-DRAFT-51816
NOAA-NMFS-2020-0031-DRAFT-51817
NOAA-NMFS-2020-0031-DRAFT-51818
NOAA-NMFS-2020-0031-DRAFT-51820
NOAA-NMFS-2020-0031-DRAFT-51821
NOAA-NMFS-2020-0031-DRAFT-51822
NOAA-NMFS-2020-0031-DRAFT-51824
NOAA-NMFS-2020-0031-DRAFT-51825
NOAA-NMFS-2020-0031-DRAFT-51826
NOAA-NMFS-2020-0031-DRAFT-51827
NOAA-NMFS-2020-0031-DRAFT-51828
NOAA-NMFS-2020-0031-DRAFT-51829
NOAA-NMFS-2020-0031-DRAFT-51830
NOAA-NMFS-2020-0031-DRAFT-51831
NOAA-NMFS-2020-0031-DRAFT-51832
NOAA-NMFS-2020-0031-DRAFT-51833
NOAA-NMFS-2020-0031-DRAFT-51834
NOAA-NMFS-2020-0031-DRAFT-51835
NOAA-NMFS-2020-0031-DRAFT-51836
NOAA-NMFS-2020-0031-DRAFT-51837
NOAA-NMFS-2020-0031-DRAFT-51838
NOAA-NMFS-2020-0031-DRAFT-51839
NOAA-NMFS-2020-0031-DRAFT-51840
NOAA-NMFS-2020-0031-DRAFT-51841
NOAA-NMFS-2020-0031-DRAFT-51842
NOAA-NMFS-2020-0031-DRAFT-51843
NOAA-NMFS-2020-0031-DRAFT-51844
NOAA-NMFS-2020-0031-DRAFT-51845
NOAA-NMFS-2020-0031-DRAFT-51846
NOAA-NMFS-2020-0031-DRAFT-51847
NOAA-NMFS-2020-0031-DRAFT-51848
NOAA-NMFS-2020-0031-DRAFT-51849
NOAA-NMFS-2020-0031-DRAFT-51850
NOAA-NMFS-2020-0031-DRAFT-51851
NOAA-NMFS-2020-0031-DRAFT-51852
NOAA-NMFS-2020-0031-DRAFT-51853
NOAA-NMFS-2020-0031-DRAFT-51854

Comment from Julia Jackson
Comment from Bash Judy
Comment from Sandy Maranesi
Comment from Romula Navarro
Comment from Gerard Corsini
Comment from Ken McKay
Comment from Caragh McCallion
Comment from Mary Germain
Comment from Gail Klein
Comment from Deborah Gandolfo
Comment from Mary Smith
Comment from Sandra Franz
Comment from Susan Bradshaw
Comment from Sherry Eaves
Comment from Kathleen Coffman
Comment from Watts, Josiah
Comment from Kathryn Burns
Comment from Richards, Laura
Comment from Cindy Kirgis
Comment from Westler, Marc
Comment from Mobley, Henry
Comment from Janet Lynch
Comment from Handa, Sharon
Comment from Cathey, Margaret
Comment from Sandgrund, Robert
Comment from Royce-Wilder, Carol
Comment from Cassidy, Lucy
Comment from Talkowski, Roman
Comment from Lake, Sue
Comment from Bilodeau, Janet
Comment from Triplett, Tia
Comment from Sawyer, Caryl
Comment from Kruse, Michelle
Comment from Stephen Bailey
Comment from judith cohen
Comment from Sara Miller
Comment from Donna Jenny
Comment from Obr, Brooks
Comment from Ronda Reynolds
Comment from Brian Gingras
Comment from Robert Giambruno

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51855
NOAA-NMFS-2020-0031-DRAFT-51856
NOAA-NMFS-2020-0031-DRAFT-51857
NOAA-NMFS-2020-0031-DRAFT-51858
NOAA-NMFS-2020-0031-DRAFT-51859
NOAA-NMFS-2020-0031-DRAFT-51860
NOAA-NMFS-2020-0031-DRAFT-51861
NOAA-NMFS-2020-0031-DRAFT-51862
NOAA-NMFS-2020-0031-DRAFT-51863
NOAA-NMFS-2020-0031-DRAFT-51864
NOAA-NMFS-2020-0031-DRAFT-51865
NOAA-NMFS-2020-0031-DRAFT-51866
NOAA-NMFS-2020-0031-DRAFT-51867
NOAA-NMFS-2020-0031-DRAFT-51868
NOAA-NMFS-2020-0031-DRAFT-51869
NOAA-NMFS-2020-0031-DRAFT-51870
NOAA-NMFS-2020-0031-DRAFT-51872
NOAA-NMFS-2020-0031-DRAFT-51873
NOAA-NMFS-2020-0031-DRAFT-51874
NOAA-NMFS-2020-0031-DRAFT-51875
NOAA-NMFS-2020-0031-DRAFT-51876
NOAA-NMFS-2020-0031-DRAFT-51877
NOAA-NMFS-2020-0031-DRAFT-51878
NOAA-NMFS-2020-0031-DRAFT-51879
NOAA-NMFS-2020-0031-DRAFT-51880
NOAA-NMFS-2020-0031-DRAFT-51881
NOAA-NMFS-2020-0031-DRAFT-51882
NOAA-NMFS-2020-0031-DRAFT-51883
NOAA-NMFS-2020-0031-DRAFT-51884
NOAA-NMFS-2020-0031-DRAFT-51885
NOAA-NMFS-2020-0031-DRAFT-51886
NOAA-NMFS-2020-0031-DRAFT-51887
NOAA-NMFS-2020-0031-DRAFT-51888
NOAA-NMFS-2020-0031-DRAFT-51889
NOAA-NMFS-2020-0031-DRAFT-51890
NOAA-NMFS-2020-0031-DRAFT-51891
NOAA-NMFS-2020-0031-DRAFT-51892
NOAA-NMFS-2020-0031-DRAFT-51893
NOAA-NMFS-2020-0031-DRAFT-51894
NOAA-NMFS-2020-0031-DRAFT-51895
NOAA-NMFS-2020-0031-DRAFT-51896

Comment from kirk, wendy
Comment from Cristine Barsanti
Comment from Nicole Dick
Comment from Jim Drevescraft
Comment from Gran Wilson
Comment from Brooks, Carrie
Comment from Susan Querze
Comment from Santiago , Magda
Comment from Petty, Kevin
Comment from Hryc, Michele
Comment from Carter, Karen
Comment from Tami Reckler-Smith
Comment from Molly Huddleston
Comment from Loeppert, Sara
Comment from Colleen Kelly
Comment from Gina Gatto
Comment from McLaughlin, Susan
Comment from Carol Nix
Comment from Bob Sipe
Comment from Withers, Lynell
Comment from Tonia Neal
Comment from CYMROT, ALEXANDRIA
Comment from Bremier, PJ
Comment from Maxwell Fogleman
Comment from Bremier, Valary
Comment from Jim Peugh
Comment from CYMROT, ALEXANDRIA
Comment from Miller, JerriLyn
Comment from Susan St.Denis-Searle
Comment from field, marcia
Comment from Miltner, Brooke
Comment from Drummond , Joanne
Comment from Lauren Tartaglia
Comment from Brown, Megann
Comment from Renee Naymick
Comment from Debra Greenberg
Comment from Shampney, Mary
Comment from Jeanne Larson
Comment from susan Coffi
Comment from Strong, Brennan
Comment from Sonia King

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51897
NOAA-NMFS-2020-0031-DRAFT-51898
NOAA-NMFS-2020-0031-DRAFT-51899
NOAA-NMFS-2020-0031-DRAFT-51900
NOAA-NMFS-2020-0031-DRAFT-51901
NOAA-NMFS-2020-0031-DRAFT-51902
NOAA-NMFS-2020-0031-DRAFT-51903
NOAA-NMFS-2020-0031-DRAFT-51904
NOAA-NMFS-2020-0031-DRAFT-51905
NOAA-NMFS-2020-0031-DRAFT-51906
NOAA-NMFS-2020-0031-DRAFT-51907
NOAA-NMFS-2020-0031-DRAFT-51908
NOAA-NMFS-2020-0031-DRAFT-51909
NOAA-NMFS-2020-0031-DRAFT-51910
NOAA-NMFS-2020-0031-DRAFT-51911
NOAA-NMFS-2020-0031-DRAFT-51912
NOAA-NMFS-2020-0031-DRAFT-51913
NOAA-NMFS-2020-0031-DRAFT-51914
NOAA-NMFS-2020-0031-DRAFT-51915
NOAA-NMFS-2020-0031-DRAFT-51916
NOAA-NMFS-2020-0031-DRAFT-51917
NOAA-NMFS-2020-0031-DRAFT-51918
NOAA-NMFS-2020-0031-DRAFT-51919
NOAA-NMFS-2020-0031-DRAFT-51920
NOAA-NMFS-2020-0031-DRAFT-51921
NOAA-NMFS-2020-0031-DRAFT-51922
NOAA-NMFS-2020-0031-DRAFT-51923
NOAA-NMFS-2020-0031-DRAFT-51924
NOAA-NMFS-2020-0031-DRAFT-51925
NOAA-NMFS-2020-0031-DRAFT-51926
NOAA-NMFS-2020-0031-DRAFT-51927
NOAA-NMFS-2020-0031-DRAFT-51928
NOAA-NMFS-2020-0031-DRAFT-51929
NOAA-NMFS-2020-0031-DRAFT-51930
NOAA-NMFS-2020-0031-DRAFT-51931
NOAA-NMFS-2020-0031-DRAFT-51932
NOAA-NMFS-2020-0031-DRAFT-51933
NOAA-NMFS-2020-0031-DRAFT-51934
NOAA-NMFS-2020-0031-DRAFT-51935
NOAA-NMFS-2020-0031-DRAFT-51936
NOAA-NMFS-2020-0031-DRAFT-51937

Comment from Gustafsen, April
Comment from Lynch, Meredith
Comment from Holly Crawford
Comment from Danielson, Lea
Comment from Bailey, Robin
Comment from William Anderson
Comment from Beverly Thomas
Comment from Newhagen, Jill
Comment from Chirgwin, Dariusz
Comment from Don Swall
Comment from Reichow, Debbie
Comment from Halegua, Mike
Comment from Dreher, Evelyn
Comment from Gansky, Gary
Comment from Courtney Kimmel
Comment from Judith Zarin
Comment from Schivley, Donna
Comment from Lorraine Heagy
Comment from Carlene Meeker
Comment from Cathleen Burns
Comment from Omar, Janna
Comment from Barbara Andrew
Comment from Sugarman, Stevie
Comment from Evi Skidmore
Comment from DeMartino, Heather
Comment from Goodrich, Lisa
Comment from Steve Hugelmann
Comment from Virginia Oldham
Comment from Shelton, Lois
Comment from Schuhrke, Nancy
Comment from Everton, Keith
Comment from Sherry Vatter
Comment from Howard, Pamela
Comment from Bacria, Mirela
Comment from Duriseti, Ram
Comment from Elizabeth Connelly
Comment from Diane Guernsey
Comment from Burnham , Alesa
Comment from Susan Babbitt
Comment from McNeese, Amanda
Comment from Jerry Eskew

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51938
NOAA-NMFS-2020-0031-DRAFT-51939
NOAA-NMFS-2020-0031-DRAFT-51940
NOAA-NMFS-2020-0031-DRAFT-51941
NOAA-NMFS-2020-0031-DRAFT-51943
NOAA-NMFS-2020-0031-DRAFT-51944
NOAA-NMFS-2020-0031-DRAFT-51945
NOAA-NMFS-2020-0031-DRAFT-51946
NOAA-NMFS-2020-0031-DRAFT-51947
NOAA-NMFS-2020-0031-DRAFT-51948
NOAA-NMFS-2020-0031-DRAFT-51949
NOAA-NMFS-2020-0031-DRAFT-51950
NOAA-NMFS-2020-0031-DRAFT-51951
NOAA-NMFS-2020-0031-DRAFT-51952
NOAA-NMFS-2020-0031-DRAFT-51953
NOAA-NMFS-2020-0031-DRAFT-51954
NOAA-NMFS-2020-0031-DRAFT-51955
NOAA-NMFS-2020-0031-DRAFT-51956
NOAA-NMFS-2020-0031-DRAFT-51957
NOAA-NMFS-2020-0031-DRAFT-51958
NOAA-NMFS-2020-0031-DRAFT-51959
NOAA-NMFS-2020-0031-DRAFT-51960
NOAA-NMFS-2020-0031-DRAFT-51961
NOAA-NMFS-2020-0031-DRAFT-51962
NOAA-NMFS-2020-0031-DRAFT-51963
NOAA-NMFS-2020-0031-DRAFT-51964
NOAA-NMFS-2020-0031-DRAFT-51965
NOAA-NMFS-2020-0031-DRAFT-51966
NOAA-NMFS-2020-0031-DRAFT-51967
NOAA-NMFS-2020-0031-DRAFT-51968
NOAA-NMFS-2020-0031-DRAFT-51969
NOAA-NMFS-2020-0031-DRAFT-51970
NOAA-NMFS-2020-0031-DRAFT-51971
NOAA-NMFS-2020-0031-DRAFT-51972
NOAA-NMFS-2020-0031-DRAFT-51973
NOAA-NMFS-2020-0031-DRAFT-51974
NOAA-NMFS-2020-0031-DRAFT-51975
NOAA-NMFS-2020-0031-DRAFT-51976
NOAA-NMFS-2020-0031-DRAFT-51977
NOAA-NMFS-2020-0031-DRAFT-51978
NOAA-NMFS-2020-0031-DRAFT-51979

Comment from Vivian Dowell
Comment from Bryan Anthony
Comment from Darcy Gaechter
Comment from andrea Dezendorf
Comment from Kathleen Bernardo
Comment from James Herther
Comment from Gloria Diggle
Comment from Andrea Higgins
Comment from Barbara Abraham
Comment from Karyn Morales
Comment from Robert Jacobson
Comment from John Uscian
Comment from Margaret Raynolds
Comment from Natalie Aharonian
Comment from Julie Nolon
Comment from Judy Fairless
Comment from John Massman
Comment from Phyllis Schmidt
Comment from Reb Babcock
Comment from Paul Collins
Comment from Dirk Reed
Comment from nanci nugent
Comment from John Fuhrer
Comment from Pierre Del Prato
Comment from Judy Trohkimoinen
Comment from Victoria Brandon
Comment from Stephen Rosen
Comment from Meredith Kent-Berman
Comment from Susan Bradshaw
Comment from veronica romero
Comment from Maureen Webb
Comment from Mary Couture
Comment from B Winklet
Comment from John Hilson
Comment from Lisa Holden
Comment from Walt Luerken
Comment from Lourdes Guzman
Comment from Thomas Rewoldt
Comment from Gabriela Romanow
Comment from Rick Geyer
Comment from Long Pham

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51980
NOAA-NMFS-2020-0031-DRAFT-51981
NOAA-NMFS-2020-0031-DRAFT-51982
NOAA-NMFS-2020-0031-DRAFT-51983
NOAA-NMFS-2020-0031-DRAFT-51984
NOAA-NMFS-2020-0031-DRAFT-51985
NOAA-NMFS-2020-0031-DRAFT-51986
NOAA-NMFS-2020-0031-DRAFT-51987
NOAA-NMFS-2020-0031-DRAFT-51988
NOAA-NMFS-2020-0031-DRAFT-51989
NOAA-NMFS-2020-0031-DRAFT-51990
NOAA-NMFS-2020-0031-DRAFT-51991
NOAA-NMFS-2020-0031-DRAFT-51993
NOAA-NMFS-2020-0031-DRAFT-51994
NOAA-NMFS-2020-0031-DRAFT-51995
NOAA-NMFS-2020-0031-DRAFT-51996
NOAA-NMFS-2020-0031-DRAFT-51998
NOAA-NMFS-2020-0031-DRAFT-51999
NOAA-NMFS-2020-0031-DRAFT-52000
NOAA-NMFS-2020-0031-DRAFT-52001
NOAA-NMFS-2020-0031-DRAFT-52002
NOAA-NMFS-2020-0031-DRAFT-52003
NOAA-NMFS-2020-0031-DRAFT-52004
NOAA-NMFS-2020-0031-DRAFT-52005
NOAA-NMFS-2020-0031-DRAFT-52006
NOAA-NMFS-2020-0031-DRAFT-52007
NOAA-NMFS-2020-0031-DRAFT-52008
NOAA-NMFS-2020-0031-DRAFT-52009
NOAA-NMFS-2020-0031-DRAFT-52010
NOAA-NMFS-2020-0031-DRAFT-52011
NOAA-NMFS-2020-0031-DRAFT-52012
NOAA-NMFS-2020-0031-DRAFT-52013
NOAA-NMFS-2020-0031-DRAFT-52014
NOAA-NMFS-2020-0031-DRAFT-52015
NOAA-NMFS-2020-0031-DRAFT-52016
NOAA-NMFS-2020-0031-DRAFT-52017
NOAA-NMFS-2020-0031-DRAFT-52018
NOAA-NMFS-2020-0031-DRAFT-52019
NOAA-NMFS-2020-0031-DRAFT-52020
NOAA-NMFS-2020-0031-DRAFT-52022
NOAA-NMFS-2020-0031-DRAFT-52023

Comment from Angela Brancati
Comment from Sharon RotheS
Comment from Jason Kedmenec
Comment from AnnMarie Hudson
Comment from Olga Strickland
Comment from Marc Silverman
Comment from Romalda Allsup
Comment from Ron Price
Comment from Dacia Murphy
Comment from Kathy Kelly
Comment from Mickey White
Comment from Michael Renfrow
Comment from Kristi Wilson
Comment from Susan Yarnell
Comment from JC Corcoran
Comment from Joshua Asel
Comment from janet maker
Comment from Mary Cernak
Comment from Lou Reznew
Comment from Irene Brennan
Comment from Ronnie Smith
Comment from Scott Jennings
Comment from Eli Celli
Comment from Omar Siddique
Comment from Rudy Ramp
Comment from Catherine Milovina
Comment from jim tuthill
Comment from Ann Sinica
Comment from Jim Forbes
Comment from Jill Turco
Comment from Susan Freel
Comment from Brian Wind
Comment from Glenna Waterman
Comment from John Teevan
Comment from Velda Smith
Comment from John Kosiorek
Comment from Carolyn Johnson
Comment from Michelle Unger
Comment from Charles Cassagnol
Comment from Barbara Denslow
Comment from Karen Olden

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03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52024
NOAA-NMFS-2020-0031-DRAFT-52025
NOAA-NMFS-2020-0031-DRAFT-52026
NOAA-NMFS-2020-0031-DRAFT-52027
NOAA-NMFS-2020-0031-DRAFT-52028
NOAA-NMFS-2020-0031-DRAFT-52029
NOAA-NMFS-2020-0031-DRAFT-52030
NOAA-NMFS-2020-0031-DRAFT-52031
NOAA-NMFS-2020-0031-DRAFT-52032
NOAA-NMFS-2020-0031-DRAFT-52033
NOAA-NMFS-2020-0031-DRAFT-52034
NOAA-NMFS-2020-0031-DRAFT-52035
NOAA-NMFS-2020-0031-DRAFT-52036
NOAA-NMFS-2020-0031-DRAFT-52037
NOAA-NMFS-2020-0031-DRAFT-52038
NOAA-NMFS-2020-0031-DRAFT-52039
NOAA-NMFS-2020-0031-DRAFT-52040
NOAA-NMFS-2020-0031-DRAFT-52041
NOAA-NMFS-2020-0031-DRAFT-52042
NOAA-NMFS-2020-0031-DRAFT-52043
NOAA-NMFS-2020-0031-DRAFT-52044
NOAA-NMFS-2020-0031-DRAFT-52045
NOAA-NMFS-2020-0031-DRAFT-52046
NOAA-NMFS-2020-0031-DRAFT-52047
NOAA-NMFS-2020-0031-DRAFT-52048
NOAA-NMFS-2020-0031-DRAFT-52049
NOAA-NMFS-2020-0031-DRAFT-52050
NOAA-NMFS-2020-0031-DRAFT-52051
NOAA-NMFS-2020-0031-DRAFT-52052
NOAA-NMFS-2020-0031-DRAFT-52053
NOAA-NMFS-2020-0031-DRAFT-52054
NOAA-NMFS-2020-0031-DRAFT-52055
NOAA-NMFS-2020-0031-DRAFT-52057
NOAA-NMFS-2020-0031-DRAFT-52058
NOAA-NMFS-2020-0031-DRAFT-52059
NOAA-NMFS-2020-0031-DRAFT-52060
NOAA-NMFS-2020-0031-DRAFT-52061
NOAA-NMFS-2020-0031-DRAFT-52062
NOAA-NMFS-2020-0031-DRAFT-52063
NOAA-NMFS-2020-0031-DRAFT-52064
NOAA-NMFS-2020-0031-DRAFT-52065

Comment from dorothy kethler
Comment from Lisa Rosenfield
Comment from Melissa Grondin
Comment from Silvia Noell
Comment from Carol Batchelder
Comment from John Gurvitch
Comment from Chris Bush
Comment from Gloria Uribe
Comment from Gene Marault
Comment from Mariann Adcock
Comment from Joan Stanton
Comment from Dennis Schvejda
Comment from Michael Collado
Comment from Michael Smith
Comment from Cathy Wootan
Comment from Steve Green
Comment from Debora Hojda
Comment from Georgia Shankel
Comment from JILL ALIBRANDI
Comment from Rosemary Lojo
Comment from Shirley Wooden
Comment from Paul Wainwright
Comment from Ken Martin
Comment from Renee Kermeen
Comment from Leslie Richardson
Comment from Michael Caputo
Comment from Louise LaFrancis
Comment from Linda Seaver
Comment from James Hoose
Comment from Susan Harby
Comment from Kimberly Bostwick
Comment from Mary Sloan
Comment from Stephanie Edwards
Comment from Rosi Martin
Comment from Theresa Pirkle
Comment from Shiela Cockshott
Comment from Marguery Zucker
Comment from Belinda Rogers
Comment from Sha Bee
Comment from Caitlyn DeMann
Comment from Nadine Larsen

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52066
NOAA-NMFS-2020-0031-DRAFT-52067
NOAA-NMFS-2020-0031-DRAFT-52068
NOAA-NMFS-2020-0031-DRAFT-52069
NOAA-NMFS-2020-0031-DRAFT-52070
NOAA-NMFS-2020-0031-DRAFT-52071
NOAA-NMFS-2020-0031-DRAFT-52072
NOAA-NMFS-2020-0031-DRAFT-52073

Comment from Kathy Crose
Comment from RedElisa Mendoza
Comment from Sylvia Tolley
Comment from Jackie Pomies
Comment from Susan LoFurno
Comment from Sagen Smith
Comment from Lorraine Manon
Comment from Steve Green

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52074

Comment from Annette Luffman-Johnson

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52075
NOAA-NMFS-2020-0031-DRAFT-52076
NOAA-NMFS-2020-0031-DRAFT-52077
NOAA-NMFS-2020-0031-DRAFT-52078
NOAA-NMFS-2020-0031-DRAFT-52079
NOAA-NMFS-2020-0031-DRAFT-52080
NOAA-NMFS-2020-0031-DRAFT-52081
NOAA-NMFS-2020-0031-DRAFT-52082
NOAA-NMFS-2020-0031-DRAFT-52083
NOAA-NMFS-2020-0031-DRAFT-52084
NOAA-NMFS-2020-0031-DRAFT-52085
NOAA-NMFS-2020-0031-DRAFT-52086
NOAA-NMFS-2020-0031-DRAFT-52087
NOAA-NMFS-2020-0031-DRAFT-52088
NOAA-NMFS-2020-0031-DRAFT-52089
NOAA-NMFS-2020-0031-DRAFT-52090
NOAA-NMFS-2020-0031-DRAFT-52091
NOAA-NMFS-2020-0031-DRAFT-52092
NOAA-NMFS-2020-0031-DRAFT-52093
NOAA-NMFS-2020-0031-DRAFT-52094
NOAA-NMFS-2020-0031-DRAFT-52095
NOAA-NMFS-2020-0031-DRAFT-52096
NOAA-NMFS-2020-0031-DRAFT-52097
NOAA-NMFS-2020-0031-DRAFT-52098
NOAA-NMFS-2020-0031-DRAFT-52099
NOAA-NMFS-2020-0031-DRAFT-52100
NOAA-NMFS-2020-0031-DRAFT-52101
NOAA-NMFS-2020-0031-DRAFT-52102
NOAA-NMFS-2020-0031-DRAFT-52103
NOAA-NMFS-2020-0031-DRAFT-52104
NOAA-NMFS-2020-0031-DRAFT-52105

Comment from Michael Feld
Comment from Nadine Larsen
Comment from jonette bronson
Comment from Mona Benedetto
Comment from Constance Marbach
Comment from Bryan Wishik
Comment from Maureen Vanderbosch
Comment from Alexia Alvarez
Comment from Ericka Abrams
Comment from Grisell Garcia
Comment from Nadine Larsen
Comment from jack Stockslager
Comment from Debora Michel
Comment from Richard Spotts
Comment from Marsha Halper
Comment from Nancy Cormia
Comment from Janet Tice
Comment from Weslie Phillips
Comment from Joan Agro
Comment from Emanuel Falcone
Comment from Judith Julian
Comment from Jeane Casey
Comment from LISA STIMPSON
Comment from Deb Christensen
Comment from Debbie Friesen
Comment from Barbara Keller
Comment from Martina Clark
Comment from Gary Hull
Comment from Bill Lindner
Comment from Evan Fulmer
Comment from Gary Dowling

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52106
NOAA-NMFS-2020-0031-DRAFT-52107
NOAA-NMFS-2020-0031-DRAFT-52108
NOAA-NMFS-2020-0031-DRAFT-52109
NOAA-NMFS-2020-0031-DRAFT-52110
NOAA-NMFS-2020-0031-DRAFT-52111
NOAA-NMFS-2020-0031-DRAFT-52112
NOAA-NMFS-2020-0031-DRAFT-52113
NOAA-NMFS-2020-0031-DRAFT-52114
NOAA-NMFS-2020-0031-DRAFT-52115
NOAA-NMFS-2020-0031-DRAFT-52116
NOAA-NMFS-2020-0031-DRAFT-52117
NOAA-NMFS-2020-0031-DRAFT-52118
NOAA-NMFS-2020-0031-DRAFT-52119
NOAA-NMFS-2020-0031-DRAFT-52120
NOAA-NMFS-2020-0031-DRAFT-52121
NOAA-NMFS-2020-0031-DRAFT-52122
NOAA-NMFS-2020-0031-DRAFT-52123
NOAA-NMFS-2020-0031-DRAFT-52124
NOAA-NMFS-2020-0031-DRAFT-52125
NOAA-NMFS-2020-0031-DRAFT-52126
NOAA-NMFS-2020-0031-DRAFT-52127
NOAA-NMFS-2020-0031-DRAFT-52128
NOAA-NMFS-2020-0031-DRAFT-52129
NOAA-NMFS-2020-0031-DRAFT-52130
NOAA-NMFS-2020-0031-DRAFT-52131
NOAA-NMFS-2020-0031-DRAFT-52132
NOAA-NMFS-2020-0031-DRAFT-52133
NOAA-NMFS-2020-0031-DRAFT-52134
NOAA-NMFS-2020-0031-DRAFT-52135
NOAA-NMFS-2020-0031-DRAFT-52136
NOAA-NMFS-2020-0031-DRAFT-52137
NOAA-NMFS-2020-0031-DRAFT-52138
NOAA-NMFS-2020-0031-DRAFT-52139
NOAA-NMFS-2020-0031-DRAFT-52140
NOAA-NMFS-2020-0031-DRAFT-52141
NOAA-NMFS-2020-0031-DRAFT-52142
NOAA-NMFS-2020-0031-DRAFT-52143
NOAA-NMFS-2020-0031-DRAFT-52144
NOAA-NMFS-2020-0031-DRAFT-52145
NOAA-NMFS-2020-0031-DRAFT-52146

Comment from quinten putnam
Comment from steve schatvet
Comment from Estelle Voeller
Comment from Stephanie Jerome
Comment from Barbara Trypaluk
Comment from vana spear
Comment from Michael Schmotzer
Comment from Marilyn Fritz
Comment from Betty Stuff
Comment from Bruce Triplett
Comment from Terry Bulla
Comment from Kathy simonik
Comment from Robert Redmond
Comment from Matthew Bielen
Comment from Rosemary DolanLesh
Comment from Jared Cornelia
Comment from Nancy Burke
Comment from Sharon Longyear
Comment from James Abendroth
Comment from Meg Hanrahan
Comment from Jini Fisher
Comment from Ben Goodin
Comment from Joy Turlo
Comment from Stephen Lieber
Comment from Marita Woods
Comment from Kimberly Crane
Comment from robin morton
Comment from Miranda Vorhees
Comment from Ellen Segal
Comment from Emanuel Falcone
Comment from Deborah Spencer
Comment from Paul Vincennie
Comment from Gail Roberts
Comment from Karen Gaylin
Comment from Tamara Manhard
Comment from pat lukensmeyer
Comment from Michael Watson
Comment from Paulette Allison
Comment from Kathleen Lee
Comment from Kevin Caravati
Comment from Jan Emerson

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52147
NOAA-NMFS-2020-0031-DRAFT-52148
NOAA-NMFS-2020-0031-DRAFT-52149
NOAA-NMFS-2020-0031-DRAFT-52150
NOAA-NMFS-2020-0031-DRAFT-52151
NOAA-NMFS-2020-0031-DRAFT-52152
NOAA-NMFS-2020-0031-DRAFT-52153
NOAA-NMFS-2020-0031-DRAFT-52154
NOAA-NMFS-2020-0031-DRAFT-52155
NOAA-NMFS-2020-0031-DRAFT-52156
NOAA-NMFS-2020-0031-DRAFT-52158
NOAA-NMFS-2020-0031-DRAFT-52159
NOAA-NMFS-2020-0031-DRAFT-52160
NOAA-NMFS-2020-0031-DRAFT-52161
NOAA-NMFS-2020-0031-DRAFT-52162
NOAA-NMFS-2020-0031-DRAFT-52163
NOAA-NMFS-2020-0031-DRAFT-52164
NOAA-NMFS-2020-0031-DRAFT-52165
NOAA-NMFS-2020-0031-DRAFT-52166
NOAA-NMFS-2020-0031-DRAFT-52167
NOAA-NMFS-2020-0031-DRAFT-52169
NOAA-NMFS-2020-0031-DRAFT-52170
NOAA-NMFS-2020-0031-DRAFT-52171
NOAA-NMFS-2020-0031-DRAFT-52172
NOAA-NMFS-2020-0031-DRAFT-52173
NOAA-NMFS-2020-0031-DRAFT-52174
NOAA-NMFS-2020-0031-DRAFT-52175
NOAA-NMFS-2020-0031-DRAFT-52176
NOAA-NMFS-2020-0031-DRAFT-52177
NOAA-NMFS-2020-0031-DRAFT-52178
NOAA-NMFS-2020-0031-DRAFT-52179
NOAA-NMFS-2020-0031-DRAFT-52180
NOAA-NMFS-2020-0031-DRAFT-52181
NOAA-NMFS-2020-0031-DRAFT-52182
NOAA-NMFS-2020-0031-DRAFT-52183
NOAA-NMFS-2020-0031-DRAFT-52184
NOAA-NMFS-2020-0031-DRAFT-52185
NOAA-NMFS-2020-0031-DRAFT-52186
NOAA-NMFS-2020-0031-DRAFT-52187
NOAA-NMFS-2020-0031-DRAFT-52188
NOAA-NMFS-2020-0031-DRAFT-52189

Comment from Dawn Keur
Comment from Jennifer Bradford
Comment from Petra Braun
Comment from Benjamin Rodriguez
Comment from DAVID KASTELINE
Comment from Christopher Brown
Comment from judy pizarro
Comment from Mary Maness
Comment from Margaret Shekell
Comment from Benedict Di Salvo
Comment from Christina Nillo
Comment from James Patton
Comment from Karen Hauser
Comment from stacey francis
Comment from Leslie Mlawski
Comment from Susan Montague
Comment from Linda Shifflett
Comment from Barbara Hood
Comment from Karen Roos
Comment from Tami Phelps
Comment from Harry Blumenthal
Comment from Jessica Schiffman
Comment from Carrie Darling
Comment from Amber Haseltine
Comment from Nan Singh-Bowman
Comment from Ronald Carver
Comment from judy pizarro
Comment from Karen Taylor
Comment from Carol Gordon
Comment from Michael Henderson
Comment from Bret Smith
Comment from Barbara Hynak
Comment from Tom Rarey
Comment from Vidya Sivan
Comment from Larry Trout
Comment from Therese DeBing
Comment from Barbara Angulo
Comment from rob fursich
Comment from Karen King
Comment from Piers Strailey
Comment from Alan Gonzalez

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52190
NOAA-NMFS-2020-0031-DRAFT-52191
NOAA-NMFS-2020-0031-DRAFT-52192
NOAA-NMFS-2020-0031-DRAFT-52193
NOAA-NMFS-2020-0031-DRAFT-52194
NOAA-NMFS-2020-0031-DRAFT-52195
NOAA-NMFS-2020-0031-DRAFT-52196
NOAA-NMFS-2020-0031-DRAFT-52197
NOAA-NMFS-2020-0031-DRAFT-52198
NOAA-NMFS-2020-0031-DRAFT-52199
NOAA-NMFS-2020-0031-DRAFT-52200
NOAA-NMFS-2020-0031-DRAFT-52201
NOAA-NMFS-2020-0031-DRAFT-52202
NOAA-NMFS-2020-0031-DRAFT-52203
NOAA-NMFS-2020-0031-DRAFT-52204
NOAA-NMFS-2020-0031-DRAFT-52205
NOAA-NMFS-2020-0031-DRAFT-52206
NOAA-NMFS-2020-0031-DRAFT-52207
NOAA-NMFS-2020-0031-DRAFT-52208
NOAA-NMFS-2020-0031-DRAFT-52209
NOAA-NMFS-2020-0031-DRAFT-52210
NOAA-NMFS-2020-0031-DRAFT-52211
NOAA-NMFS-2020-0031-DRAFT-52212
NOAA-NMFS-2020-0031-DRAFT-52213
NOAA-NMFS-2020-0031-DRAFT-52214
NOAA-NMFS-2020-0031-DRAFT-52215
NOAA-NMFS-2020-0031-DRAFT-52216
NOAA-NMFS-2020-0031-DRAFT-52217
NOAA-NMFS-2020-0031-DRAFT-52218
NOAA-NMFS-2020-0031-DRAFT-52219
NOAA-NMFS-2020-0031-DRAFT-52220
NOAA-NMFS-2020-0031-DRAFT-52221
NOAA-NMFS-2020-0031-DRAFT-52222
NOAA-NMFS-2020-0031-DRAFT-52223
NOAA-NMFS-2020-0031-DRAFT-52224
NOAA-NMFS-2020-0031-DRAFT-52225
NOAA-NMFS-2020-0031-DRAFT-52226
NOAA-NMFS-2020-0031-DRAFT-52227
NOAA-NMFS-2020-0031-DRAFT-52228
NOAA-NMFS-2020-0031-DRAFT-52229
NOAA-NMFS-2020-0031-DRAFT-52230

Comment from Harold Hubbard
Comment from Cindy Wright
Comment from Miku Lenentine
Comment from Ram-Prasad, Sheela
Comment from Mark Blitzer
Comment from Karen Spradlin
Comment from White, Corinne
Comment from Patty Baker
Comment from Van Slyke , Margot
Comment from Crane, Mark
Comment from Paul jerskey
Comment from Guerin, Karen
Comment from Kristin Ziama
Comment from Haldeman, Katie
Comment from Grabsch, Dagmar
Comment from Runsak, Kim
Comment from Ellen Kabat
Comment from Gorgo, Jennifer
Comment from Edgington, Tonya
Comment from selig, heidi
Comment from Bruce Kiesel
Comment from Steven Roberts
Comment from Eschmeyer, Gail
Comment from Nancy Keiter
Comment from David Nash
Comment from Rhonda Johnson
Comment from PRESSER, irving
Comment from Michael Norden
Comment from Kyle, Kathy
Comment from Jeremy Benjamin
Comment from Shumer, Julie
Comment from Pinand, Harry
Comment from Pranab Banerjee
Comment from christine waddell
Comment from Scarlata, Rachel
Comment from PRESSER, irving
Comment from corpuz, johanna
Comment from C. Menn
Comment from Bryan, Karen
Comment from Reed, Donna
Comment from Scherl, Marvin

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52232
NOAA-NMFS-2020-0031-DRAFT-52233
NOAA-NMFS-2020-0031-DRAFT-52234
NOAA-NMFS-2020-0031-DRAFT-52235
NOAA-NMFS-2020-0031-DRAFT-52236
NOAA-NMFS-2020-0031-DRAFT-52237
NOAA-NMFS-2020-0031-DRAFT-52238
NOAA-NMFS-2020-0031-DRAFT-52239
NOAA-NMFS-2020-0031-DRAFT-52240
NOAA-NMFS-2020-0031-DRAFT-52241
NOAA-NMFS-2020-0031-DRAFT-52242
NOAA-NMFS-2020-0031-DRAFT-52243
NOAA-NMFS-2020-0031-DRAFT-52244
NOAA-NMFS-2020-0031-DRAFT-52245
NOAA-NMFS-2020-0031-DRAFT-52246
NOAA-NMFS-2020-0031-DRAFT-52247
NOAA-NMFS-2020-0031-DRAFT-52248
NOAA-NMFS-2020-0031-DRAFT-52249
NOAA-NMFS-2020-0031-DRAFT-52250
NOAA-NMFS-2020-0031-DRAFT-52251
NOAA-NMFS-2020-0031-DRAFT-52252
NOAA-NMFS-2020-0031-DRAFT-52253
NOAA-NMFS-2020-0031-DRAFT-52254
NOAA-NMFS-2020-0031-DRAFT-52255
NOAA-NMFS-2020-0031-DRAFT-52256
NOAA-NMFS-2020-0031-DRAFT-52257
NOAA-NMFS-2020-0031-DRAFT-52258
NOAA-NMFS-2020-0031-DRAFT-52259
NOAA-NMFS-2020-0031-DRAFT-52260
NOAA-NMFS-2020-0031-DRAFT-52261
NOAA-NMFS-2020-0031-DRAFT-52262
NOAA-NMFS-2020-0031-DRAFT-52263
NOAA-NMFS-2020-0031-DRAFT-52264
NOAA-NMFS-2020-0031-DRAFT-52265
NOAA-NMFS-2020-0031-DRAFT-52266
NOAA-NMFS-2020-0031-DRAFT-52267
NOAA-NMFS-2020-0031-DRAFT-52268
NOAA-NMFS-2020-0031-DRAFT-52269
NOAA-NMFS-2020-0031-DRAFT-52270
NOAA-NMFS-2020-0031-DRAFT-52271
NOAA-NMFS-2020-0031-DRAFT-52272

Comment from Deborah Perrero
Comment from Stephen Sachs
Comment from Jacqueline Bort
Comment from Cole, Dori
Comment from Patricia Vickers
Comment from Simmons Buntin
Comment from Daniels, Courtney
Comment from Sarah Auclair
Comment from Shirley Mccarthy
Comment from Embry, Regina
Comment from Pirrung, Erica
Comment from Jazmine Harvey
Comment from Esther, Libby E
Comment from Rosiris Paniagua
Comment from Debbie Bonnet
Comment from Lathan, Dyanne
Comment from Niles, Karen
Comment from Herrera , Alexandra
Comment from Teresa Case
Comment from Miller, Michaela
Comment from Liberti, Linda Marie
Comment from Frederick, Patricia
Comment from Johnson, Roy
Comment from Charles Taormina
Comment from Bernard Thomas
Comment from Barulich, Maryann
Comment from Ellen Weisnecker
Comment from Ruhiyyih Tolton
Comment from chantal Herron
Comment from Dresch, Phaedra
Comment from Liz Bode
Comment from Lisa Isley
Comment from Weber, Sandra
Comment from calhoun, gail
Comment from Pedulla , Liz
Comment from Gary Maedl
Comment from Linda Tonnesen
Comment from Beaudoin, D
Comment from Frank, Jeannie
Comment from Kari Brennan
Comment from Alise Widmer

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52273
NOAA-NMFS-2020-0031-DRAFT-52274
NOAA-NMFS-2020-0031-DRAFT-52275
NOAA-NMFS-2020-0031-DRAFT-52276
NOAA-NMFS-2020-0031-DRAFT-52277
NOAA-NMFS-2020-0031-DRAFT-52278
NOAA-NMFS-2020-0031-DRAFT-52279
NOAA-NMFS-2020-0031-DRAFT-52280
NOAA-NMFS-2020-0031-DRAFT-52281
NOAA-NMFS-2020-0031-DRAFT-52282
NOAA-NMFS-2020-0031-DRAFT-52283
NOAA-NMFS-2020-0031-DRAFT-52284
NOAA-NMFS-2020-0031-DRAFT-52285
NOAA-NMFS-2020-0031-DRAFT-52286
NOAA-NMFS-2020-0031-DRAFT-52287
NOAA-NMFS-2020-0031-DRAFT-52288
NOAA-NMFS-2020-0031-DRAFT-52289
NOAA-NMFS-2020-0031-DRAFT-52290
NOAA-NMFS-2020-0031-DRAFT-52291
NOAA-NMFS-2020-0031-DRAFT-52292
NOAA-NMFS-2020-0031-DRAFT-52293
NOAA-NMFS-2020-0031-DRAFT-52294
NOAA-NMFS-2020-0031-DRAFT-52295
NOAA-NMFS-2020-0031-DRAFT-52296
NOAA-NMFS-2020-0031-DRAFT-52297
NOAA-NMFS-2020-0031-DRAFT-52298
NOAA-NMFS-2020-0031-DRAFT-52299
NOAA-NMFS-2020-0031-DRAFT-52300
NOAA-NMFS-2020-0031-DRAFT-52301
NOAA-NMFS-2020-0031-DRAFT-52302
NOAA-NMFS-2020-0031-DRAFT-52303
NOAA-NMFS-2020-0031-DRAFT-52304
NOAA-NMFS-2020-0031-DRAFT-52305
NOAA-NMFS-2020-0031-DRAFT-52306
NOAA-NMFS-2020-0031-DRAFT-52307
NOAA-NMFS-2020-0031-DRAFT-52308
NOAA-NMFS-2020-0031-DRAFT-52309
NOAA-NMFS-2020-0031-DRAFT-52310
NOAA-NMFS-2020-0031-DRAFT-52311
NOAA-NMFS-2020-0031-DRAFT-52312
NOAA-NMFS-2020-0031-DRAFT-52313

Comment from Victor Escobar
Comment from Anthony Vessicchio
Comment from Lumina Greenway
Comment from Sue Janssen
Comment from Anne Parzick
Comment from Arthur Alfreds
Comment from terr badger
Comment from David Anderson
Comment from mike butkiewicz
Comment from Erin Taylor
Comment from Norman Baker
Comment from Bekki Bearheart
Comment from Bret Smith
Comment from Pete Sinica
Comment from Vicky Brandt
Comment from Carol Brighton
Comment from Mel Libman
Comment from Nancy Heck
Comment from Linda Horn
Comment from Terry Karjalainen
Comment from Randolph Schoedler
Comment from Jeni Frazee
Comment from Larry Trochtenberg
Comment from Marion Subjenski
Comment from Susan Querze
Comment from Lisa Toohey
Comment from Virginia Brown
Comment from Paul Ghenoiu
Comment from Sondra Vitols
Comment from Lawrence Crowley
Comment from Gina Paige
Comment from Michelle Buerger
Comment from Teresa Mays
Comment from Barbara Beierl
Comment from sandra garcia
Comment from Diane Lebedeff
Comment from Carol Bloom
Comment from Kathleen Eaton
Comment from sara rahbar
Comment from Jan Modjeski
Comment from Amy Dosser

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52314
NOAA-NMFS-2020-0031-DRAFT-52315
NOAA-NMFS-2020-0031-DRAFT-52316
NOAA-NMFS-2020-0031-DRAFT-52317
NOAA-NMFS-2020-0031-DRAFT-52318
NOAA-NMFS-2020-0031-DRAFT-52319
NOAA-NMFS-2020-0031-DRAFT-52320
NOAA-NMFS-2020-0031-DRAFT-52321
NOAA-NMFS-2020-0031-DRAFT-52323
NOAA-NMFS-2020-0031-DRAFT-52324
NOAA-NMFS-2020-0031-DRAFT-52325
NOAA-NMFS-2020-0031-DRAFT-52326
NOAA-NMFS-2020-0031-DRAFT-52327
NOAA-NMFS-2020-0031-DRAFT-52328
NOAA-NMFS-2020-0031-DRAFT-52329
NOAA-NMFS-2020-0031-DRAFT-52330
NOAA-NMFS-2020-0031-DRAFT-52331
NOAA-NMFS-2020-0031-DRAFT-52332
NOAA-NMFS-2020-0031-DRAFT-52334
NOAA-NMFS-2020-0031-DRAFT-52335
NOAA-NMFS-2020-0031-DRAFT-52336
NOAA-NMFS-2020-0031-DRAFT-52337
NOAA-NMFS-2020-0031-DRAFT-52338
NOAA-NMFS-2020-0031-DRAFT-52339
NOAA-NMFS-2020-0031-DRAFT-52340
NOAA-NMFS-2020-0031-DRAFT-52341
NOAA-NMFS-2020-0031-DRAFT-52342
NOAA-NMFS-2020-0031-DRAFT-52343
NOAA-NMFS-2020-0031-DRAFT-52344
NOAA-NMFS-2020-0031-DRAFT-52345
NOAA-NMFS-2020-0031-DRAFT-52346
NOAA-NMFS-2020-0031-DRAFT-52347
NOAA-NMFS-2020-0031-DRAFT-52348
NOAA-NMFS-2020-0031-DRAFT-52349
NOAA-NMFS-2020-0031-DRAFT-52350
NOAA-NMFS-2020-0031-DRAFT-52351
NOAA-NMFS-2020-0031-DRAFT-52352
NOAA-NMFS-2020-0031-DRAFT-52353
NOAA-NMFS-2020-0031-DRAFT-52355
NOAA-NMFS-2020-0031-DRAFT-52356
NOAA-NMFS-2020-0031-DRAFT-52357

Comment from Setsuko Maruki-Fox
Comment from Susan Querze
Comment from Gina Norton
Comment from Tara McBride
Comment from Nadeen Rich
Comment from Janis Turek
Comment from Karolyn Beebe
Comment from Gene Fox
Comment from tevet tee
Comment from James Klein
Comment from Lorraine Avallone
Comment from Dan McCurdy
Comment from Francisco Salazar
Comment from Adam DOnofrio
Comment from Kathleen Snedeker
Comment from Cynthia Smith-Stein
Comment from Nancy Hauer
Comment from Eric Lane
Comment from Andy Lynn
Comment from William Sarovec
Comment from Robin Umbley
Comment from Howard Klein
Comment from Johanna Hantel
Comment from Constance Almy
Comment from SUZANNE LEFAUCHEUX
Comment from k s
Comment from Shirley Ann
Comment from Laurie Neill
Comment from Jayne Fry
Comment from Janet Handford
Comment from Julia Arafa
Comment from henry Biggins
Comment from Susan Berzac
Comment from sara rahbar
Comment from Gabi Teed
Comment from Virginia LeBlanc
Comment from Heidi Steffy
Comment from Richard Taylor
Comment from Elisabeth Carroll
Comment from David Buck
Comment from Tami Omeson

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52358
NOAA-NMFS-2020-0031-DRAFT-52359
NOAA-NMFS-2020-0031-DRAFT-52360
NOAA-NMFS-2020-0031-DRAFT-52361
NOAA-NMFS-2020-0031-DRAFT-52362
NOAA-NMFS-2020-0031-DRAFT-52363
NOAA-NMFS-2020-0031-DRAFT-52364
NOAA-NMFS-2020-0031-DRAFT-52365
NOAA-NMFS-2020-0031-DRAFT-52366
NOAA-NMFS-2020-0031-DRAFT-52367
NOAA-NMFS-2020-0031-DRAFT-52368
NOAA-NMFS-2020-0031-DRAFT-52369
NOAA-NMFS-2020-0031-DRAFT-52370
NOAA-NMFS-2020-0031-DRAFT-52372
NOAA-NMFS-2020-0031-DRAFT-52373
NOAA-NMFS-2020-0031-DRAFT-52374
NOAA-NMFS-2020-0031-DRAFT-52375
NOAA-NMFS-2020-0031-DRAFT-52376
NOAA-NMFS-2020-0031-DRAFT-52377
NOAA-NMFS-2020-0031-DRAFT-52378
NOAA-NMFS-2020-0031-DRAFT-52379
NOAA-NMFS-2020-0031-DRAFT-52380
NOAA-NMFS-2020-0031-DRAFT-52382
NOAA-NMFS-2020-0031-DRAFT-52383
NOAA-NMFS-2020-0031-DRAFT-52384
NOAA-NMFS-2020-0031-DRAFT-52385
NOAA-NMFS-2020-0031-DRAFT-52386
NOAA-NMFS-2020-0031-DRAFT-52387
NOAA-NMFS-2020-0031-DRAFT-52388
NOAA-NMFS-2020-0031-DRAFT-52389
NOAA-NMFS-2020-0031-DRAFT-52390
NOAA-NMFS-2020-0031-DRAFT-52391
NOAA-NMFS-2020-0031-DRAFT-52392
NOAA-NMFS-2020-0031-DRAFT-52393
NOAA-NMFS-2020-0031-DRAFT-52394
NOAA-NMFS-2020-0031-DRAFT-52395
NOAA-NMFS-2020-0031-DRAFT-52396
NOAA-NMFS-2020-0031-DRAFT-52397
NOAA-NMFS-2020-0031-DRAFT-52398
NOAA-NMFS-2020-0031-DRAFT-52399
NOAA-NMFS-2020-0031-DRAFT-52400

Comment from Gavin Kramer
Comment from Linda Elbow
Comment from Juanita Rinas
Comment from Renata Kuchinsky
Comment from Cynthia Smith
Comment from pete childs
Comment from Michael Lombardi
Comment from Mike Kelly
Comment from Bryce Perog
Comment from Stuart Mork
Comment from David Guleke
Comment from Evelyn Griffin
Comment from Janet Handford
Comment from Amber Davidson
Comment from Faith Franck
Comment from Elsy Shallman
Comment from Tara D
Comment from Jamie Greer
Comment from C. Lean
Comment from Madelaine Haberman
Comment from Tammy Lettieri
Comment from Elaine Benjamin
Comment from Angela Kline
Comment from Chris Moran
Comment from Barbara Sorgeler
Comment from Corinna Hasbach
Comment from terry robinson
Comment from Dale Lenat
Comment from Jeff Biss
Comment from Laura Dodge
Comment from David Snope
Comment from Daniel Goldberg
Comment from Peter Harrell
Comment from Nancy Humphrey
Comment from Barbara Campbell
Comment from Judy Johnston
Comment from Joelle Porter
Comment from Don Barth
Comment from N Coyle
Comment from caroline fairless
Comment from JL Angell

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52401
NOAA-NMFS-2020-0031-DRAFT-52402
NOAA-NMFS-2020-0031-DRAFT-52403
NOAA-NMFS-2020-0031-DRAFT-52404
NOAA-NMFS-2020-0031-DRAFT-52405
NOAA-NMFS-2020-0031-DRAFT-52406
NOAA-NMFS-2020-0031-DRAFT-52407
NOAA-NMFS-2020-0031-DRAFT-52408
NOAA-NMFS-2020-0031-DRAFT-52409
NOAA-NMFS-2020-0031-DRAFT-52410
NOAA-NMFS-2020-0031-DRAFT-52411
NOAA-NMFS-2020-0031-DRAFT-52412
NOAA-NMFS-2020-0031-DRAFT-52413
NOAA-NMFS-2020-0031-DRAFT-52414
NOAA-NMFS-2020-0031-DRAFT-52415
NOAA-NMFS-2020-0031-DRAFT-52416
NOAA-NMFS-2020-0031-DRAFT-52417
NOAA-NMFS-2020-0031-DRAFT-52418
NOAA-NMFS-2020-0031-DRAFT-52419
NOAA-NMFS-2020-0031-DRAFT-52420
NOAA-NMFS-2020-0031-DRAFT-52421
NOAA-NMFS-2020-0031-DRAFT-52422
NOAA-NMFS-2020-0031-DRAFT-52423
NOAA-NMFS-2020-0031-DRAFT-52424
NOAA-NMFS-2020-0031-DRAFT-52425
NOAA-NMFS-2020-0031-DRAFT-52427
NOAA-NMFS-2020-0031-DRAFT-52428
NOAA-NMFS-2020-0031-DRAFT-52429
NOAA-NMFS-2020-0031-DRAFT-52430
NOAA-NMFS-2020-0031-DRAFT-52431
NOAA-NMFS-2020-0031-DRAFT-52432
NOAA-NMFS-2020-0031-DRAFT-52433
NOAA-NMFS-2020-0031-DRAFT-52435
NOAA-NMFS-2020-0031-DRAFT-52436
NOAA-NMFS-2020-0031-DRAFT-52437
NOAA-NMFS-2020-0031-DRAFT-52438
NOAA-NMFS-2020-0031-DRAFT-52439
NOAA-NMFS-2020-0031-DRAFT-52440
NOAA-NMFS-2020-0031-DRAFT-52441
NOAA-NMFS-2020-0031-DRAFT-52442
NOAA-NMFS-2020-0031-DRAFT-52443

Comment from Mimi Abers
Comment from Orrin Merritt
Comment from Ellaine Janicki
Comment from Judy Brouillette
Comment from Gail Worrell
Comment from Batsheva Kasdan
Comment from Chris Van hook
Comment from Debbie Jensen
Comment from Francisco Koch
Comment from Todd Davis
Comment from Maria Williamson
Comment from Roxann Floyd
Comment from Sherri Fugit
Comment from Maria Deutsch
Comment from Robert Mitch
Comment from Shelby Hood
Comment from Michael Follman
Comment from Mary Stanton
Comment from Juliann Strom
Comment from Eric Lehman
Comment from Fran Daversa
Comment from Christine Arroyo
Comment from Linda Givens
Comment from Debbie Bonnet
Comment from Daljeet Sandhu
Comment from Tammy Bullock
Comment from Beth Nilva
Comment from Kimberly Kolpin
Comment from Sara Dell
Comment from Joan Rossignol
Comment from Victor Soule
Comment from Art Shervs
Comment from Tami Omeson
Comment from Kenneth James
Comment from Jennifer Haines
Comment from Shannon Allsop
Comment from LEAH JACOBS
Comment from Barbara Beierl
Comment from Kathleen Cresswell
Comment from Ann Cunningham
Comment from MARK BEST

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52444
NOAA-NMFS-2020-0031-DRAFT-52445
NOAA-NMFS-2020-0031-DRAFT-52446
NOAA-NMFS-2020-0031-DRAFT-52447
NOAA-NMFS-2020-0031-DRAFT-52448
NOAA-NMFS-2020-0031-DRAFT-52449
NOAA-NMFS-2020-0031-DRAFT-52450
NOAA-NMFS-2020-0031-DRAFT-52451
NOAA-NMFS-2020-0031-DRAFT-52452
NOAA-NMFS-2020-0031-DRAFT-52453
NOAA-NMFS-2020-0031-DRAFT-52454
NOAA-NMFS-2020-0031-DRAFT-52455
NOAA-NMFS-2020-0031-DRAFT-52456
NOAA-NMFS-2020-0031-DRAFT-52457
NOAA-NMFS-2020-0031-DRAFT-52458
NOAA-NMFS-2020-0031-DRAFT-52459
NOAA-NMFS-2020-0031-DRAFT-52460
NOAA-NMFS-2020-0031-DRAFT-52461
NOAA-NMFS-2020-0031-DRAFT-52462
NOAA-NMFS-2020-0031-DRAFT-52463
NOAA-NMFS-2020-0031-DRAFT-52464
NOAA-NMFS-2020-0031-DRAFT-52465
NOAA-NMFS-2020-0031-DRAFT-52466
NOAA-NMFS-2020-0031-DRAFT-52467
NOAA-NMFS-2020-0031-DRAFT-52468
NOAA-NMFS-2020-0031-DRAFT-52469
NOAA-NMFS-2020-0031-DRAFT-52470
NOAA-NMFS-2020-0031-DRAFT-52471
NOAA-NMFS-2020-0031-DRAFT-52472
NOAA-NMFS-2020-0031-DRAFT-52473
NOAA-NMFS-2020-0031-DRAFT-52474
NOAA-NMFS-2020-0031-DRAFT-52475
NOAA-NMFS-2020-0031-DRAFT-52476
NOAA-NMFS-2020-0031-DRAFT-52477
NOAA-NMFS-2020-0031-DRAFT-52478
NOAA-NMFS-2020-0031-DRAFT-52479
NOAA-NMFS-2020-0031-DRAFT-52480
NOAA-NMFS-2020-0031-DRAFT-52481
NOAA-NMFS-2020-0031-DRAFT-52482
NOAA-NMFS-2020-0031-DRAFT-52483
NOAA-NMFS-2020-0031-DRAFT-52484

Comment from Elsa Johnson
Comment from nancy deblanco
Comment from Kristyn MacPhail
Comment from Susan Lilley
Comment from Larisa Long
Comment from Anita Laskaris
Comment from melissa lunny
Comment from Michael DeLoye
Comment from Elisabeth Carr-Jones
Comment from dee Brooks
Comment from Anca Vlasopolos
Comment from Melissa Heithaus
Comment from Ruth Raynes
Comment from Judy Carlson
Comment from Deborah Semo
Comment from Annette Kaohelaulii
Comment from Janeene Porcher
Comment from Dawn Longo
Comment from Thomas Ruhl
Comment from Denise Ross
Comment from Virginia Snider
Comment from Carol Couch
Comment from Laurie Sampson
Comment from Cheryl Pokomo
Comment from Anita Shuey
Comment from doug krause
Comment from Robert Fuchs
Comment from Donna Andrews
Comment from karen horton
Comment from Joni Karnopp
Comment from Patricia Vineski
Comment from Marie Young
Comment from Kathy McConnell
Comment from Saran K.
Comment from Veronica Michael
Comment from Janet Fotos
Comment from John Lawrence
Comment from Darwin Kellicut
Comment from James Mathews
Comment from Kelly Berdeaux
Comment from Jim Neal

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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52485
NOAA-NMFS-2020-0031-DRAFT-52486
NOAA-NMFS-2020-0031-DRAFT-52487
NOAA-NMFS-2020-0031-DRAFT-52488
NOAA-NMFS-2020-0031-DRAFT-52489
NOAA-NMFS-2020-0031-DRAFT-52490
NOAA-NMFS-2020-0031-DRAFT-52491
NOAA-NMFS-2020-0031-DRAFT-52492
NOAA-NMFS-2020-0031-DRAFT-52493
NOAA-NMFS-2020-0031-DRAFT-52494
NOAA-NMFS-2020-0031-DRAFT-52495
NOAA-NMFS-2020-0031-DRAFT-52496
NOAA-NMFS-2020-0031-DRAFT-52497
NOAA-NMFS-2020-0031-DRAFT-52498
NOAA-NMFS-2020-0031-DRAFT-52499
NOAA-NMFS-2020-0031-DRAFT-52500
NOAA-NMFS-2020-0031-DRAFT-52501
NOAA-NMFS-2020-0031-DRAFT-52502
NOAA-NMFS-2020-0031-DRAFT-52503
NOAA-NMFS-2020-0031-DRAFT-52504
NOAA-NMFS-2020-0031-DRAFT-52505
NOAA-NMFS-2020-0031-DRAFT-52506
NOAA-NMFS-2020-0031-DRAFT-52507
NOAA-NMFS-2020-0031-DRAFT-52508
NOAA-NMFS-2020-0031-DRAFT-52509
NOAA-NMFS-2020-0031-DRAFT-52510
NOAA-NMFS-2020-0031-DRAFT-52511
NOAA-NMFS-2020-0031-DRAFT-52512
NOAA-NMFS-2020-0031-DRAFT-52513
NOAA-NMFS-2020-0031-DRAFT-52514
NOAA-NMFS-2020-0031-DRAFT-52515
NOAA-NMFS-2020-0031-DRAFT-52516
NOAA-NMFS-2020-0031-DRAFT-52517
NOAA-NMFS-2020-0031-DRAFT-52518
NOAA-NMFS-2020-0031-DRAFT-52519
NOAA-NMFS-2020-0031-DRAFT-52520
NOAA-NMFS-2020-0031-DRAFT-52521
NOAA-NMFS-2020-0031-DRAFT-52522
NOAA-NMFS-2020-0031-DRAFT-52524
NOAA-NMFS-2020-0031-DRAFT-52525
NOAA-NMFS-2020-0031-DRAFT-52526

Comment from Jeff Kulp
Comment from Tony Meinerding
Comment from Julie Dominian
Comment from Edward Temple
Comment from Lenore Dowling
Comment from Nicole Durden-Mundy
Comment from Edward Reichman
Comment from Daniel Cole
Comment from Fran Smyth
Comment from Holly Ducharme
Comment from Lepore, Megan
Comment from Jim Steitz
Comment from Linda Shultis-Hoffmann
Comment from Lewis, Quinn
Comment from Robin Steeves
Comment from Carter, Kirby
Comment from Margaret Sawyer
Comment from john naylor
Comment from Minocha, Udit
Comment from Jan Salas
Comment from Lynne robertson
Comment from Jenifer Johnson
Comment from Shereen Gillette
Comment from Matt Loper
Comment from Tom Fehsenfeld
Comment from Pat Wolff
Comment from Galina krichmar
Comment from Anonymous Anonymous
Comment from Sandra Joos
Comment from Cynthia Blackledge
Comment from Steven Nelson
Comment from Shamus Nilan
Comment from Pamela Kane
Comment from Michael Nelson
Comment from Cheryl Shushan
Comment from Jeannie Frank
Comment from ISABEL CERVERA
Comment from Martin Rickman
Comment from Stephen Mead
Comment from Steve Perron
Comment from Karen Testa

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52527
NOAA-NMFS-2020-0031-DRAFT-52528
NOAA-NMFS-2020-0031-DRAFT-52529
NOAA-NMFS-2020-0031-DRAFT-52530
NOAA-NMFS-2020-0031-DRAFT-52531
NOAA-NMFS-2020-0031-DRAFT-52532
NOAA-NMFS-2020-0031-DRAFT-52533
NOAA-NMFS-2020-0031-DRAFT-52534
NOAA-NMFS-2020-0031-DRAFT-52535
NOAA-NMFS-2020-0031-DRAFT-52536
NOAA-NMFS-2020-0031-DRAFT-52537
NOAA-NMFS-2020-0031-DRAFT-52538
NOAA-NMFS-2020-0031-DRAFT-52539
NOAA-NMFS-2020-0031-DRAFT-52540
NOAA-NMFS-2020-0031-DRAFT-52541
NOAA-NMFS-2020-0031-DRAFT-52542
NOAA-NMFS-2020-0031-DRAFT-52543
NOAA-NMFS-2020-0031-DRAFT-52544
NOAA-NMFS-2020-0031-DRAFT-52545
NOAA-NMFS-2020-0031-DRAFT-52546
NOAA-NMFS-2020-0031-DRAFT-52547
NOAA-NMFS-2020-0031-DRAFT-52548
NOAA-NMFS-2020-0031-DRAFT-52549
NOAA-NMFS-2020-0031-DRAFT-52550
NOAA-NMFS-2020-0031-DRAFT-52551
NOAA-NMFS-2020-0031-DRAFT-52552
NOAA-NMFS-2020-0031-DRAFT-52553
NOAA-NMFS-2020-0031-DRAFT-52554
NOAA-NMFS-2020-0031-DRAFT-52555
NOAA-NMFS-2020-0031-DRAFT-52556
NOAA-NMFS-2020-0031-DRAFT-52557
NOAA-NMFS-2020-0031-DRAFT-52559
NOAA-NMFS-2020-0031-DRAFT-52560
NOAA-NMFS-2020-0031-DRAFT-52561
NOAA-NMFS-2020-0031-DRAFT-52562
NOAA-NMFS-2020-0031-DRAFT-52563
NOAA-NMFS-2020-0031-DRAFT-52564
NOAA-NMFS-2020-0031-DRAFT-52565
NOAA-NMFS-2020-0031-DRAFT-52566
NOAA-NMFS-2020-0031-DRAFT-52567
NOAA-NMFS-2020-0031-DRAFT-52568

Comment from Tara Brooks
Comment from WENDY FOSSA
Comment from Rick Savage
Comment from Ivan Flow
Comment from Judith Werr
Comment from J. Woodworth
Comment from Christine Viramontes
Comment from Jean Zotter
Comment from Annie James
Comment from Keith VanAmburgh
Comment from Tammy Ebers-Radtke
Comment from John Dulik
Comment from april joines
Comment from Gabriella Turek
Comment from Deirdre Callan
Comment from Charity Moschopoulos
Comment from Valerie Holland
Comment from Patricia Brech
Comment from Gilligan, Teresa
Comment from Katie Clifford
Comment from Donna Thelander
Comment from Jean Rodriguez
Comment from Baker, Darlene
Comment from Rick Geyer
Comment from Cole, John
Comment from Crane, Jeff
Comment from Jill Wittenbrader
Comment from Pavone, Melissa
Comment from Adrianna Aylard
Comment from Tracy Troth
Comment from leverett, elizabeth
Comment from Dreher, Diana
Comment from kaleh, judith
Comment from Carrell, James
Comment from Glasscock, Rita
Comment from Woods, Barb
Comment from Lambert, Joyce
Comment from Hughett, Beverly
Comment from McFadden, Brenda
Comment from Adkins, Patti
Comment from Eldridge , Denice

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52569
NOAA-NMFS-2020-0031-DRAFT-52570
NOAA-NMFS-2020-0031-DRAFT-52571
NOAA-NMFS-2020-0031-DRAFT-52572
NOAA-NMFS-2020-0031-DRAFT-52573
NOAA-NMFS-2020-0031-DRAFT-52574
NOAA-NMFS-2020-0031-DRAFT-52575
NOAA-NMFS-2020-0031-DRAFT-52578
NOAA-NMFS-2020-0031-DRAFT-52579

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52580

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52581
NOAA-NMFS-2020-0031-DRAFT-52582
NOAA-NMFS-2020-0031-DRAFT-52583
NOAA-NMFS-2020-0031-DRAFT-52584
NOAA-NMFS-2020-0031-DRAFT-52585
NOAA-NMFS-2020-0031-DRAFT-52586
NOAA-NMFS-2020-0031-DRAFT-52587
NOAA-NMFS-2020-0031-DRAFT-52588
NOAA-NMFS-2020-0031-DRAFT-52589
NOAA-NMFS-2020-0031-DRAFT-52590
NOAA-NMFS-2020-0031-DRAFT-52591
NOAA-NMFS-2020-0031-DRAFT-52592
NOAA-NMFS-2020-0031-DRAFT-52593
NOAA-NMFS-2020-0031-DRAFT-52594
NOAA-NMFS-2020-0031-DRAFT-52595
NOAA-NMFS-2020-0031-DRAFT-52596
NOAA-NMFS-2020-0031-DRAFT-52597
NOAA-NMFS-2020-0031-DRAFT-52598
NOAA-NMFS-2020-0031-DRAFT-52599
NOAA-NMFS-2020-0031-DRAFT-52600
NOAA-NMFS-2020-0031-DRAFT-52601
NOAA-NMFS-2020-0031-DRAFT-52602
NOAA-NMFS-2020-0031-DRAFT-52603
NOAA-NMFS-2020-0031-DRAFT-52604
NOAA-NMFS-2020-0031-DRAFT-52605
NOAA-NMFS-2020-0031-DRAFT-52606
NOAA-NMFS-2020-0031-DRAFT-52607
NOAA-NMFS-2020-0031-DRAFT-52608
NOAA-NMFS-2020-0031-DRAFT-52609
NOAA-NMFS-2020-0031-DRAFT-52610

Comment from Davis, Lisa E
Comment from SCHONFELD, FELICE
Comment from ritchell, carol
Comment from Suzanne Bediz
Comment from Orem, Jennifer
Comment from Marsico, William
Comment from Collins, Patricia
Comment from Debbie Ebling
Comment from SBS Challinor
Comment from Romona CzichosSlaughter
Comment from Peggy Jakopak
Comment from Janice Hallman
Comment from William Wakerley
Comment from Thomas Pintagro
Comment from Wilda Komora
Comment from Laurel Watson
Comment from Ann Downey
Comment from Frank Blake
Comment from robert johnson
Comment from William Montgomery
Comment from Eileen Scholl
Comment from Emily Willoughby
Comment from Rosemary Futrovsky
Comment from Patti Blevins
Comment from Rob Barron
Comment from Deanna Pucci
Comment from Ann Downey
Comment from Michael Sarabia
Comment from Raphael Sulkovitz
Comment from Jean Allgood
Comment from Beth Dupell
Comment from Marlene Miller
Comment from Denice Cornell
Comment from Susan Hampel
Comment from Shanti Copeland
Comment from John Dalla
Comment from Julia Ballard
Comment from Derinda Nilsson
Comment from Kathleen Medina
Comment from Edward Ragan

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52611
NOAA-NMFS-2020-0031-DRAFT-52612
NOAA-NMFS-2020-0031-DRAFT-52613
NOAA-NMFS-2020-0031-DRAFT-52614
NOAA-NMFS-2020-0031-DRAFT-52615
NOAA-NMFS-2020-0031-DRAFT-52616
NOAA-NMFS-2020-0031-DRAFT-52617
NOAA-NMFS-2020-0031-DRAFT-52618
NOAA-NMFS-2020-0031-DRAFT-52619
NOAA-NMFS-2020-0031-DRAFT-52620
NOAA-NMFS-2020-0031-DRAFT-52621
NOAA-NMFS-2020-0031-DRAFT-52622
NOAA-NMFS-2020-0031-DRAFT-52623
NOAA-NMFS-2020-0031-DRAFT-52624
NOAA-NMFS-2020-0031-DRAFT-52625
NOAA-NMFS-2020-0031-DRAFT-52626
NOAA-NMFS-2020-0031-DRAFT-52627
NOAA-NMFS-2020-0031-DRAFT-52628
NOAA-NMFS-2020-0031-DRAFT-52629
NOAA-NMFS-2020-0031-DRAFT-52630
NOAA-NMFS-2020-0031-DRAFT-52631
NOAA-NMFS-2020-0031-DRAFT-52632
NOAA-NMFS-2020-0031-DRAFT-52633
NOAA-NMFS-2020-0031-DRAFT-52634
NOAA-NMFS-2020-0031-DRAFT-52635
NOAA-NMFS-2020-0031-DRAFT-52636
NOAA-NMFS-2020-0031-DRAFT-52637
NOAA-NMFS-2020-0031-DRAFT-52638
NOAA-NMFS-2020-0031-DRAFT-52639
NOAA-NMFS-2020-0031-DRAFT-52640
NOAA-NMFS-2020-0031-DRAFT-52641
NOAA-NMFS-2020-0031-DRAFT-52642
NOAA-NMFS-2020-0031-DRAFT-52643
NOAA-NMFS-2020-0031-DRAFT-52644
NOAA-NMFS-2020-0031-DRAFT-52645
NOAA-NMFS-2020-0031-DRAFT-52646
NOAA-NMFS-2020-0031-DRAFT-52647
NOAA-NMFS-2020-0031-DRAFT-52648
NOAA-NMFS-2020-0031-DRAFT-52650
NOAA-NMFS-2020-0031-DRAFT-52651
NOAA-NMFS-2020-0031-DRAFT-52652

Comment from Marey Cohen
Comment from Diana Drucker
Comment from Ryan Gardner
Comment from Joy Turlo
Comment from Oly bravo
Comment from Diane Diernbach
Comment from Anonymous Anonymous
Comment from Alan Carter
Comment from Lynn Merle
Comment from Fay Payton
Comment from Michael DeLoye
Comment from Alex Harris
Comment from Jacqueline Nardi
Comment from Karen Sinclair
Comment from Debra Marge
Comment from Tom Tripp
Comment from Shani Schulman
Comment from a w
Comment from Sharon Orser
Comment from Vivian Bartlett
Comment from Thom Sherman
Comment from Mary Planding
Comment from Mary Levan
Comment from Leanne Friedman
Comment from Mark Fields
Comment from Amy Robinson-Klucher
Comment from Richita Anderson
Comment from Douglas Kinney
Comment from Mark Tellier
Comment from Randy Harrison
Comment from Elizabeth Garratt
Comment from Nancy Stimac
Comment from Karen Weigand
Comment from Martha Perlmutter
Comment from Ginny Johnson
Comment from Sally Warner
Comment from Kurt Cruger
Comment from nanci nugent
Comment from Lucinda Tucker
Comment from Susan Querze
Comment from Gerry Pericles

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03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52653
NOAA-NMFS-2020-0031-DRAFT-52654
NOAA-NMFS-2020-0031-DRAFT-52655
NOAA-NMFS-2020-0031-DRAFT-52656
NOAA-NMFS-2020-0031-DRAFT-52657
NOAA-NMFS-2020-0031-DRAFT-52658
NOAA-NMFS-2020-0031-DRAFT-52659
NOAA-NMFS-2020-0031-DRAFT-52660
NOAA-NMFS-2020-0031-DRAFT-52661
NOAA-NMFS-2020-0031-DRAFT-52662
NOAA-NMFS-2020-0031-DRAFT-52663
NOAA-NMFS-2020-0031-DRAFT-52664
NOAA-NMFS-2020-0031-DRAFT-52665
NOAA-NMFS-2020-0031-DRAFT-52666
NOAA-NMFS-2020-0031-DRAFT-52667
NOAA-NMFS-2020-0031-DRAFT-52668
NOAA-NMFS-2020-0031-DRAFT-52669
NOAA-NMFS-2020-0031-DRAFT-52670
NOAA-NMFS-2020-0031-DRAFT-52671
NOAA-NMFS-2020-0031-DRAFT-52672
NOAA-NMFS-2020-0031-DRAFT-52673
NOAA-NMFS-2020-0031-DRAFT-52674
NOAA-NMFS-2020-0031-DRAFT-52675
NOAA-NMFS-2020-0031-DRAFT-52676
NOAA-NMFS-2020-0031-DRAFT-52677
NOAA-NMFS-2020-0031-DRAFT-52678
NOAA-NMFS-2020-0031-DRAFT-52679
NOAA-NMFS-2020-0031-DRAFT-52680
NOAA-NMFS-2020-0031-DRAFT-52681
NOAA-NMFS-2020-0031-DRAFT-52682
NOAA-NMFS-2020-0031-DRAFT-52683
NOAA-NMFS-2020-0031-DRAFT-52684
NOAA-NMFS-2020-0031-DRAFT-52685
NOAA-NMFS-2020-0031-DRAFT-52686
NOAA-NMFS-2020-0031-DRAFT-52687
NOAA-NMFS-2020-0031-DRAFT-52688
NOAA-NMFS-2020-0031-DRAFT-52689
NOAA-NMFS-2020-0031-DRAFT-52690
NOAA-NMFS-2020-0031-DRAFT-52691
NOAA-NMFS-2020-0031-DRAFT-52692
NOAA-NMFS-2020-0031-DRAFT-52693

Comment from Jim Brunton
Comment from Laura Belgiorno
Comment from Tami Omeson
Comment from Judy Jolin
Comment from Laura Redwine
Comment from Debbie Snow
Comment from Jill Green
Comment from Michael Watson
Comment from Linda Hendrix
Comment from Steve Graff
Comment from Lauren Mitchell
Comment from Jacqueline Nardi
Comment from Tatiana Medina
Comment from Candice Lowery
Comment from nathan schaefer
Comment from Susan Lambert
Comment from David Isler
Comment from Karen Spiegel
Comment from bert corley
Comment from Mark Mansfield
Comment from Robert Miles
Comment from Elaine Becker
Comment from William Ryerson
Comment from Laura Manz
Comment from Sharon Rich
Comment from Caroline haines
Comment from Judith FalckMaddsen
Comment from Steve Graff
Comment from Susan Lefler
Comment from Charlotte Nuessle
Comment from Daniel Kozminski
Comment from Tim leighton
Comment from Rheama Koonce
Comment from Helen Schafer
Comment from Tynan Wyatt
Comment from Gina Petty
Comment from Claudia Ezinicki
Comment from James Klein
Comment from Deborah Livingston
Comment from Washa, Rachel
Comment from Lindsay Mugglestone

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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52695
NOAA-NMFS-2020-0031-DRAFT-52696
NOAA-NMFS-2020-0031-DRAFT-52697
NOAA-NMFS-2020-0031-DRAFT-52698
NOAA-NMFS-2020-0031-DRAFT-52699
NOAA-NMFS-2020-0031-DRAFT-52700
NOAA-NMFS-2020-0031-DRAFT-52701
NOAA-NMFS-2020-0031-DRAFT-52702
NOAA-NMFS-2020-0031-DRAFT-52703
NOAA-NMFS-2020-0031-DRAFT-52704
NOAA-NMFS-2020-0031-DRAFT-52705
NOAA-NMFS-2020-0031-DRAFT-52706
NOAA-NMFS-2020-0031-DRAFT-52707
NOAA-NMFS-2020-0031-DRAFT-52708
NOAA-NMFS-2020-0031-DRAFT-52709
NOAA-NMFS-2020-0031-DRAFT-52710
NOAA-NMFS-2020-0031-DRAFT-52711
NOAA-NMFS-2020-0031-DRAFT-52712
NOAA-NMFS-2020-0031-DRAFT-52713
NOAA-NMFS-2020-0031-DRAFT-52714
NOAA-NMFS-2020-0031-DRAFT-52715
NOAA-NMFS-2020-0031-DRAFT-52716
NOAA-NMFS-2020-0031-DRAFT-52717
NOAA-NMFS-2020-0031-DRAFT-52718
NOAA-NMFS-2020-0031-DRAFT-52719
NOAA-NMFS-2020-0031-DRAFT-52720
NOAA-NMFS-2020-0031-DRAFT-52722
NOAA-NMFS-2020-0031-DRAFT-52723
NOAA-NMFS-2020-0031-DRAFT-52724
NOAA-NMFS-2020-0031-DRAFT-52725
NOAA-NMFS-2020-0031-DRAFT-52726
NOAA-NMFS-2020-0031-DRAFT-52727
NOAA-NMFS-2020-0031-DRAFT-52728
NOAA-NMFS-2020-0031-DRAFT-52729
NOAA-NMFS-2020-0031-DRAFT-52730
NOAA-NMFS-2020-0031-DRAFT-52731
NOAA-NMFS-2020-0031-DRAFT-52733
NOAA-NMFS-2020-0031-DRAFT-52734
NOAA-NMFS-2020-0031-DRAFT-52735
NOAA-NMFS-2020-0031-DRAFT-52736
NOAA-NMFS-2020-0031-DRAFT-52737

Comment from Andrea Jansky
Comment from Barbara MacAlpine
Comment from Carla Albers
Comment from Steven Black
Comment from Teresa Bartley
Comment from James Robertson
Comment from Robert Gerosa
Comment from les roberts
Comment from Heather Henthorne
Comment from Michael Grosso
Comment from Edwin Aiken
Comment from Peter Bailey
Comment from Palmeta Baier
Comment from Daniel Morneau
Comment from Gail Worrell
Comment from James OFlaherty
Comment from Nancy Juskowich
Comment from Beth Levin
Comment from Michael Gregoire
Comment from Kari Dennis
Comment from Jill Linzee
Comment from Stephen Courim
Comment from Vanessa Seay
Comment from donna hopkins
Comment from April Kohles
Comment from Thi TonOlshaskie
Comment from Kimberly Brandimarte
Comment from Rebecca McDonough
Comment from NINI BLOCH
Comment from Lisa Whipple
Comment from William Sarovec
Comment from AnaLisa Crandall
Comment from Fiona H
Comment from Ruth Quinones
Comment from Mary Holst
Comment from cindy chuplis
Comment from Aurelie Ward
Comment from Diane Verna
Comment from LIDA SKRZYPCZAK
Comment from Lisa Clement
Comment from Larry Stoodt

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52738
NOAA-NMFS-2020-0031-DRAFT-52739
NOAA-NMFS-2020-0031-DRAFT-52741
NOAA-NMFS-2020-0031-DRAFT-52742
NOAA-NMFS-2020-0031-DRAFT-52743
NOAA-NMFS-2020-0031-DRAFT-52744
NOAA-NMFS-2020-0031-DRAFT-52745
NOAA-NMFS-2020-0031-DRAFT-52746
NOAA-NMFS-2020-0031-DRAFT-52747
NOAA-NMFS-2020-0031-DRAFT-52748
NOAA-NMFS-2020-0031-DRAFT-52749
NOAA-NMFS-2020-0031-DRAFT-52750
NOAA-NMFS-2020-0031-DRAFT-52751
NOAA-NMFS-2020-0031-DRAFT-52752
NOAA-NMFS-2020-0031-DRAFT-52753
NOAA-NMFS-2020-0031-DRAFT-52754
NOAA-NMFS-2020-0031-DRAFT-52755
NOAA-NMFS-2020-0031-DRAFT-52756
NOAA-NMFS-2020-0031-DRAFT-52757
NOAA-NMFS-2020-0031-DRAFT-52758
NOAA-NMFS-2020-0031-DRAFT-52759
NOAA-NMFS-2020-0031-DRAFT-52760
NOAA-NMFS-2020-0031-DRAFT-52761
NOAA-NMFS-2020-0031-DRAFT-52762
NOAA-NMFS-2020-0031-DRAFT-52763
NOAA-NMFS-2020-0031-DRAFT-52764
NOAA-NMFS-2020-0031-DRAFT-52765
NOAA-NMFS-2020-0031-DRAFT-52766
NOAA-NMFS-2020-0031-DRAFT-52767
NOAA-NMFS-2020-0031-DRAFT-52768
NOAA-NMFS-2020-0031-DRAFT-52769
NOAA-NMFS-2020-0031-DRAFT-52770
NOAA-NMFS-2020-0031-DRAFT-52771
NOAA-NMFS-2020-0031-DRAFT-52772
NOAA-NMFS-2020-0031-DRAFT-52773
NOAA-NMFS-2020-0031-DRAFT-52774
NOAA-NMFS-2020-0031-DRAFT-52775
NOAA-NMFS-2020-0031-DRAFT-52776
NOAA-NMFS-2020-0031-DRAFT-52777
NOAA-NMFS-2020-0031-DRAFT-52778
NOAA-NMFS-2020-0031-DRAFT-52779

Comment from Harold Brundage
Comment from Peter Lizotte
Comment from Bill Mecham
Comment from Paula Conoscenti
Comment from Tracy kanno
Comment from Lu Dodson
Comment from Amber Christian
Comment from T Gogan
Comment from Linda Phelan
Comment from Holly Wilson
Comment from Stephanie Jones
Comment from Natalie DeBoer
Comment from Linda Savage
Comment from Ralph Lopez
Comment from Mary Guillet
Comment from Rob Seltzer
Comment from Douglas Rives
Comment from Karen Wilson
Comment from Cindy Childers
Comment from Sharon Lewis
Comment from Christina Schlueter
Comment from Bethany Clark
Comment from Lorrence Mahaffy
Comment from Ralph Lopez
Comment from les roberts
Comment from Pec Indman
Comment from Elaine Kruse
Comment from Marilyn Trybus
Comment from Carol Hall
Comment from Gavin Dillard
Comment from Jeanine mielke
Comment from Donna Banks
Comment from Lorna Mccaslin
Comment from Jessica Stewart
Comment from Bonnie MacRaith
Comment from Lyn Miller
Comment from Annette Raible
Comment from Kent Oldfield
Comment from Silvia Hall
Comment from Sue Bassett
Comment from Ellie McGuire

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03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52780
NOAA-NMFS-2020-0031-DRAFT-52781
NOAA-NMFS-2020-0031-DRAFT-52782
NOAA-NMFS-2020-0031-DRAFT-52783
NOAA-NMFS-2020-0031-DRAFT-52784
NOAA-NMFS-2020-0031-DRAFT-52785
NOAA-NMFS-2020-0031-DRAFT-52786
NOAA-NMFS-2020-0031-DRAFT-52787
NOAA-NMFS-2020-0031-DRAFT-52788
NOAA-NMFS-2020-0031-DRAFT-52789
NOAA-NMFS-2020-0031-DRAFT-52790
NOAA-NMFS-2020-0031-DRAFT-52791
NOAA-NMFS-2020-0031-DRAFT-52792
NOAA-NMFS-2020-0031-DRAFT-52793
NOAA-NMFS-2020-0031-DRAFT-52794
NOAA-NMFS-2020-0031-DRAFT-52795
NOAA-NMFS-2020-0031-DRAFT-52796
NOAA-NMFS-2020-0031-DRAFT-52797
NOAA-NMFS-2020-0031-DRAFT-52798
NOAA-NMFS-2020-0031-DRAFT-52799
NOAA-NMFS-2020-0031-DRAFT-52800
NOAA-NMFS-2020-0031-DRAFT-52801
NOAA-NMFS-2020-0031-DRAFT-52802
NOAA-NMFS-2020-0031-DRAFT-52803
NOAA-NMFS-2020-0031-DRAFT-52804
NOAA-NMFS-2020-0031-DRAFT-52805
NOAA-NMFS-2020-0031-DRAFT-52806
NOAA-NMFS-2020-0031-DRAFT-52807
NOAA-NMFS-2020-0031-DRAFT-52808
NOAA-NMFS-2020-0031-DRAFT-52809
NOAA-NMFS-2020-0031-DRAFT-52810
NOAA-NMFS-2020-0031-DRAFT-52811
NOAA-NMFS-2020-0031-DRAFT-52812
NOAA-NMFS-2020-0031-DRAFT-52813
NOAA-NMFS-2020-0031-DRAFT-52814
NOAA-NMFS-2020-0031-DRAFT-52815
NOAA-NMFS-2020-0031-DRAFT-52816
NOAA-NMFS-2020-0031-DRAFT-52817
NOAA-NMFS-2020-0031-DRAFT-52818
NOAA-NMFS-2020-0031-DRAFT-52819
NOAA-NMFS-2020-0031-DRAFT-52820

Comment from Jamie geller
Comment from Jessie Hawkins
Comment from Donald Dobesh
Comment from jeannette gavin
Comment from Riaz Moledina
Comment from Janet Draper
Comment from les roberts
Comment from Roxann Floyd
Comment from Jamie Fairchild
Comment from Carole Pappas
Comment from Kimberly Owens
Comment from Earl Frounfelter
Comment from Charles Casper
Comment from Richard Peterson
Comment from HAnk Elliott
Comment from Marilyn Garrett
Comment from Faith Freewoman
Comment from James Moran
Comment from Meredith Hayward
Comment from Susan Johnson
Comment from Tim Norton
Comment from Juan Gonzalez
Comment from Robert Johnson
Comment from Sandra Britton
Comment from Long Pham
Comment from Sue Morris
Comment from Carole Bodner
Comment from Mike Souza
Comment from Aimee Darrow
Comment from David Mussina
Comment from Carolyn Crow
Comment from Donna Mastracchio
Comment from Elaine Eudy
Comment from Evelyn Campbell
Comment from Linda Gertig
Comment from Kris Pagenkopf
Comment from Gail Gaebe
Comment from Melanie Jones
Comment from Michael Watson
Comment from Karen Langlais
Comment from Mary Jackson

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52821
NOAA-NMFS-2020-0031-DRAFT-52822
NOAA-NMFS-2020-0031-DRAFT-52823
NOAA-NMFS-2020-0031-DRAFT-52824
NOAA-NMFS-2020-0031-DRAFT-52825
NOAA-NMFS-2020-0031-DRAFT-52826
NOAA-NMFS-2020-0031-DRAFT-52827
NOAA-NMFS-2020-0031-DRAFT-52828
NOAA-NMFS-2020-0031-DRAFT-52829
NOAA-NMFS-2020-0031-DRAFT-52830
NOAA-NMFS-2020-0031-DRAFT-52831
NOAA-NMFS-2020-0031-DRAFT-52832
NOAA-NMFS-2020-0031-DRAFT-52834
NOAA-NMFS-2020-0031-DRAFT-52835
NOAA-NMFS-2020-0031-DRAFT-52836
NOAA-NMFS-2020-0031-DRAFT-52837
NOAA-NMFS-2020-0031-DRAFT-52838
NOAA-NMFS-2020-0031-DRAFT-52839
NOAA-NMFS-2020-0031-DRAFT-52840
NOAA-NMFS-2020-0031-DRAFT-52841
NOAA-NMFS-2020-0031-DRAFT-52842
NOAA-NMFS-2020-0031-DRAFT-52843
NOAA-NMFS-2020-0031-DRAFT-52844
NOAA-NMFS-2020-0031-DRAFT-52845
NOAA-NMFS-2020-0031-DRAFT-52846
NOAA-NMFS-2020-0031-DRAFT-52847
NOAA-NMFS-2020-0031-DRAFT-52848
NOAA-NMFS-2020-0031-DRAFT-52849
NOAA-NMFS-2020-0031-DRAFT-52850
NOAA-NMFS-2020-0031-DRAFT-52851
NOAA-NMFS-2020-0031-DRAFT-52852
NOAA-NMFS-2020-0031-DRAFT-52853
NOAA-NMFS-2020-0031-DRAFT-52854
NOAA-NMFS-2020-0031-DRAFT-52855
NOAA-NMFS-2020-0031-DRAFT-52856
NOAA-NMFS-2020-0031-DRAFT-52857
NOAA-NMFS-2020-0031-DRAFT-52858
NOAA-NMFS-2020-0031-DRAFT-52859
NOAA-NMFS-2020-0031-DRAFT-52860
NOAA-NMFS-2020-0031-DRAFT-52861
NOAA-NMFS-2020-0031-DRAFT-52862

Comment from Susan Delles
Comment from Bob Ayers
Comment from dick Patti
Comment from Steve Rosin
Comment from Jered Cargman
Comment from cynthia dietzmann
Comment from V Venskowski
Comment from robert davidson
Comment from Cindy Horn
Comment from Julie Wade
Comment from Sherry Toy
Comment from Denise Rossi
Comment from Karen Maguire
Comment from Thomas Giblin
Comment from Chris Worcester
Comment from Elisabeth Armendarez
Comment from William Barnes
Comment from constance walker
Comment from Cathy Greer
Comment from James Swaner
Comment from Naomi Zurcher
Comment from Neal Umphred
Comment from George Bramwell
Comment from Denise Schlener
Comment from V Venskowski
Comment from Jane Spini
Comment from Bonnie RN
Comment from randy sailer
Comment from Joii Resnick
Comment from SuZanne Sullivan
Comment from Dennis Clark
Comment from Linda Waine
Comment from Garry Taroli
Comment from Alan Carter
Comment from Mary Smith
Comment from Annie McCann
Comment from Donna Reed
Comment from Dorothy Brown
Comment from Gaia Cole
Comment from Rabbi PLotkin
Comment from Anne Kobayashi

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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52863
NOAA-NMFS-2020-0031-DRAFT-52864
NOAA-NMFS-2020-0031-DRAFT-52865
NOAA-NMFS-2020-0031-DRAFT-52866
NOAA-NMFS-2020-0031-DRAFT-52867
NOAA-NMFS-2020-0031-DRAFT-52868
NOAA-NMFS-2020-0031-DRAFT-52869
NOAA-NMFS-2020-0031-DRAFT-52870
NOAA-NMFS-2020-0031-DRAFT-52871
NOAA-NMFS-2020-0031-DRAFT-52872
NOAA-NMFS-2020-0031-DRAFT-52873
NOAA-NMFS-2020-0031-DRAFT-52874
NOAA-NMFS-2020-0031-DRAFT-52875
NOAA-NMFS-2020-0031-DRAFT-52876
NOAA-NMFS-2020-0031-DRAFT-52877
NOAA-NMFS-2020-0031-DRAFT-52878
NOAA-NMFS-2020-0031-DRAFT-52879
NOAA-NMFS-2020-0031-DRAFT-52880
NOAA-NMFS-2020-0031-DRAFT-52881
NOAA-NMFS-2020-0031-DRAFT-52882
NOAA-NMFS-2020-0031-DRAFT-52884
NOAA-NMFS-2020-0031-DRAFT-52885
NOAA-NMFS-2020-0031-DRAFT-52886
NOAA-NMFS-2020-0031-DRAFT-52887
NOAA-NMFS-2020-0031-DRAFT-52888
NOAA-NMFS-2020-0031-DRAFT-52889
NOAA-NMFS-2020-0031-DRAFT-52890
NOAA-NMFS-2020-0031-DRAFT-52891
NOAA-NMFS-2020-0031-DRAFT-52892
NOAA-NMFS-2020-0031-DRAFT-52893
NOAA-NMFS-2020-0031-DRAFT-52894
NOAA-NMFS-2020-0031-DRAFT-52895
NOAA-NMFS-2020-0031-DRAFT-52896
NOAA-NMFS-2020-0031-DRAFT-52897
NOAA-NMFS-2020-0031-DRAFT-52898
NOAA-NMFS-2020-0031-DRAFT-52899
NOAA-NMFS-2020-0031-DRAFT-52901
NOAA-NMFS-2020-0031-DRAFT-52902
NOAA-NMFS-2020-0031-DRAFT-52903
NOAA-NMFS-2020-0031-DRAFT-52904
NOAA-NMFS-2020-0031-DRAFT-52905

Comment from Edwin Aiken
Comment from Bruce Ross
Comment from Kendrick Wilson
Comment from Douglas McCormick
Comment from clifford myers
Comment from Kari Mueller
Comment from Ana Hess
Comment from Robert Rigos
Comment from Colonel Meyer
Comment from lorraine foster
Comment from Arthur Haberberger
Comment from Donna Parente
Comment from dick Patti
Comment from Leech, Lisa
Comment from Appel, Patricia
Comment from gerald gouge
Comment from Elizabeth Day
Comment from Carl Grimm
Comment from Charlotte Nuessle
Comment from m, r
Comment from h, j
Comment from Barber, Astrata
Comment from Kerry Dockery
Comment from Clendenen, Beth
Comment from Mari Elvi
Comment from Arthur Leibowitz
Comment from F, Lisa
Comment from Schalin, Amaryntha
Comment from Yunker, Mary
Comment from Kajencki, Olivia
Comment from Peter Mark
Comment from Fierro, Tallia
Comment from Cochran , Katie
Comment from Linda Sturdy
Comment from Kyle Peterson
Comment from Einbund, Robin
Comment from Juliet Pearson
Comment from Briar Mitchell
Comment from Caitlin Burke
Comment from Sands, Lisa
Comment from Carol Baier

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03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52906
NOAA-NMFS-2020-0031-DRAFT-52907
NOAA-NMFS-2020-0031-DRAFT-52908
NOAA-NMFS-2020-0031-DRAFT-52909
NOAA-NMFS-2020-0031-DRAFT-52910
NOAA-NMFS-2020-0031-DRAFT-52911
NOAA-NMFS-2020-0031-DRAFT-52912
NOAA-NMFS-2020-0031-DRAFT-52913
NOAA-NMFS-2020-0031-DRAFT-52914
NOAA-NMFS-2020-0031-DRAFT-52915
NOAA-NMFS-2020-0031-DRAFT-52916
NOAA-NMFS-2020-0031-DRAFT-52917
NOAA-NMFS-2020-0031-DRAFT-52918
NOAA-NMFS-2020-0031-DRAFT-52919
NOAA-NMFS-2020-0031-DRAFT-52920
NOAA-NMFS-2020-0031-DRAFT-52921
NOAA-NMFS-2020-0031-DRAFT-52922
NOAA-NMFS-2020-0031-DRAFT-52923
NOAA-NMFS-2020-0031-DRAFT-52924
NOAA-NMFS-2020-0031-DRAFT-52925
NOAA-NMFS-2020-0031-DRAFT-52926
NOAA-NMFS-2020-0031-DRAFT-52927
NOAA-NMFS-2020-0031-DRAFT-52928
NOAA-NMFS-2020-0031-DRAFT-52929
NOAA-NMFS-2020-0031-DRAFT-52930
NOAA-NMFS-2020-0031-DRAFT-52931
NOAA-NMFS-2020-0031-DRAFT-52932
NOAA-NMFS-2020-0031-DRAFT-52933
NOAA-NMFS-2020-0031-DRAFT-52934

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52935

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52936
NOAA-NMFS-2020-0031-DRAFT-52937
NOAA-NMFS-2020-0031-DRAFT-52938
NOAA-NMFS-2020-0031-DRAFT-52939
NOAA-NMFS-2020-0031-DRAFT-52940
NOAA-NMFS-2020-0031-DRAFT-52941
NOAA-NMFS-2020-0031-DRAFT-52942
NOAA-NMFS-2020-0031-DRAFT-52943
NOAA-NMFS-2020-0031-DRAFT-52944
NOAA-NMFS-2020-0031-DRAFT-52945

Comment from De Cannart, Marie-Kell
Comment from hill, Elizabeth
Comment from Maria Bustamante
Comment from Ricco, Debra
Comment from Douglas Woersching
Comment from Tabitha Thomasson
Comment from Perl, Jen
Comment from McCauley, Leah
Comment from Dietrich, Kellie
Comment from Robert Hays
Comment from Demers, Kerry
Comment from Gabriela Romanow
Comment from Shelley Driskell
Comment from DK Bolen
Comment from Rita Glasscock
Comment from Jane Schnee
Comment from Adi S
Comment from Gerry Manning
Comment from Joan Walker
Comment from jean zanow
Comment from T C
Comment from David Sweet
Comment from James Dixon
Comment from Steve Sheehy
Comment from Li Guan
Comment from Elyse Clark
Comment from David Ellison
Comment from George Ludwig
Comment from Roth Woods
Comment from Patricia BlackwellMarchant
Comment from Dave Searles
Comment from Dawn Kosec
Comment from Lydia Mourenza
Comment from leslie spoon
Comment from Catherine Opper
Comment from Colleen Farmer
Comment from Douglas Rasmussen
Comment from Ronna Kabler
Comment from Kristin Schmidt
Comment from Cristina Fiorillo

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52946
NOAA-NMFS-2020-0031-DRAFT-52947
NOAA-NMFS-2020-0031-DRAFT-52948
NOAA-NMFS-2020-0031-DRAFT-52950
NOAA-NMFS-2020-0031-DRAFT-52951
NOAA-NMFS-2020-0031-DRAFT-52952
NOAA-NMFS-2020-0031-DRAFT-52953
NOAA-NMFS-2020-0031-DRAFT-52954
NOAA-NMFS-2020-0031-DRAFT-52955
NOAA-NMFS-2020-0031-DRAFT-52956
NOAA-NMFS-2020-0031-DRAFT-52957
NOAA-NMFS-2020-0031-DRAFT-52958
NOAA-NMFS-2020-0031-DRAFT-52959
NOAA-NMFS-2020-0031-DRAFT-52960
NOAA-NMFS-2020-0031-DRAFT-52961
NOAA-NMFS-2020-0031-DRAFT-52962
NOAA-NMFS-2020-0031-DRAFT-52963
NOAA-NMFS-2020-0031-DRAFT-52964
NOAA-NMFS-2020-0031-DRAFT-52965
NOAA-NMFS-2020-0031-DRAFT-52966
NOAA-NMFS-2020-0031-DRAFT-52967
NOAA-NMFS-2020-0031-DRAFT-52968
NOAA-NMFS-2020-0031-DRAFT-52969
NOAA-NMFS-2020-0031-DRAFT-52970
NOAA-NMFS-2020-0031-DRAFT-52971
NOAA-NMFS-2020-0031-DRAFT-52972

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52973

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52974
NOAA-NMFS-2020-0031-DRAFT-52975
NOAA-NMFS-2020-0031-DRAFT-52976
NOAA-NMFS-2020-0031-DRAFT-52977
NOAA-NMFS-2020-0031-DRAFT-52978
NOAA-NMFS-2020-0031-DRAFT-52979
NOAA-NMFS-2020-0031-DRAFT-52980
NOAA-NMFS-2020-0031-DRAFT-52981
NOAA-NMFS-2020-0031-DRAFT-52982
NOAA-NMFS-2020-0031-DRAFT-52983
NOAA-NMFS-2020-0031-DRAFT-52984
NOAA-NMFS-2020-0031-DRAFT-52985
NOAA-NMFS-2020-0031-DRAFT-52986

Comment from Diane Harder
Comment from Claire Joaquin
Comment from Nandita Shah
Comment from Alyson Rode
Comment from victoria boucher
Comment from Kyle Embler
Comment from Glada Elems
Comment from nanci nugent
Comment from Bridgette Jessen
Comment from Daniel Figueroa
Comment from joan turner
Comment from Vincent Fonseca
Comment from Sara Leonard
Comment from Keith VanAmburgh
Comment from Sharon Wesoky
Comment from GLORIA SHARP
Comment from Ken Kudelchuk
Comment from Shelby Flint
Comment from Erika Beqaj
Comment from mark youd
Comment from Dawn-Marie Staccia
Comment from William Jerrems
Comment from Mary Stanton
Comment from Beverly Harris
Comment from Nancy Braun
Comment from Jeanine mielke
Comment from Catherine KingChuparkoff
Comment from Lisa Natale
Comment from Nicole Kamin
Comment from Robert Gibb
Comment from Heidi Ludwick
Comment from Abigail Rome
Comment from Sandra Ford
Comment from Tom Butch
Comment from Martin Graf
Comment from Jan Hall
Comment from Frank Jaskulski
Comment from Lisa Natale
Comment from Donna Lewis
Comment from Mary Maher

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52987
NOAA-NMFS-2020-0031-DRAFT-52988
NOAA-NMFS-2020-0031-DRAFT-52989
NOAA-NMFS-2020-0031-DRAFT-52990
NOAA-NMFS-2020-0031-DRAFT-52991
NOAA-NMFS-2020-0031-DRAFT-52992
NOAA-NMFS-2020-0031-DRAFT-52993
NOAA-NMFS-2020-0031-DRAFT-52994
NOAA-NMFS-2020-0031-DRAFT-52995
NOAA-NMFS-2020-0031-DRAFT-52996
NOAA-NMFS-2020-0031-DRAFT-52997
NOAA-NMFS-2020-0031-DRAFT-52998
NOAA-NMFS-2020-0031-DRAFT-52999
NOAA-NMFS-2020-0031-DRAFT-53000
NOAA-NMFS-2020-0031-DRAFT-53001
NOAA-NMFS-2020-0031-DRAFT-53002
NOAA-NMFS-2020-0031-DRAFT-53003
NOAA-NMFS-2020-0031-DRAFT-53004
NOAA-NMFS-2020-0031-DRAFT-53005
NOAA-NMFS-2020-0031-DRAFT-53008
NOAA-NMFS-2020-0031-DRAFT-53009
NOAA-NMFS-2020-0031-DRAFT-53010
NOAA-NMFS-2020-0031-DRAFT-53011
NOAA-NMFS-2020-0031-DRAFT-53012
NOAA-NMFS-2020-0031-DRAFT-53013
NOAA-NMFS-2020-0031-DRAFT-53014
NOAA-NMFS-2020-0031-DRAFT-53015
NOAA-NMFS-2020-0031-DRAFT-53016
NOAA-NMFS-2020-0031-DRAFT-53017
NOAA-NMFS-2020-0031-DRAFT-53018
NOAA-NMFS-2020-0031-DRAFT-53019

Comment from Dawn-Marie Staccia
Comment from Richard Hart
Comment from Deborah Johnny
Comment from George Ellington
Comment from F Fitz
Comment from Stephanie Mistretta
Comment from Devon Kendall
Comment from lorraine gaines
Comment from Jaime Margiotta
Comment from paul potts
Comment from Tammy Slack
Comment from V. Alexiades
Comment from Jennifer Hibpshman
Comment from Marc Fleisher
Comment from Maureen North
Comment from Linda Janota
Comment from Mary Hovey
Comment from Janine Vinton
Comment from Linda Shirey
Comment from Malcolm Glass
Comment from Cheryl Fontaine
Comment from Melissa K
Comment from A.L. Steiner
Comment from Daniel Kurz
Comment from Cheryl Sheldon
Comment from Alan Johnson
Comment from Sandy Scruggs
Comment from Arthur Miller
Comment from Mary Price
Comment from William Welkowitz
Comment from Michael Johan

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53020

Comment from CHRISTOS KAPETANAKOS

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53021
NOAA-NMFS-2020-0031-DRAFT-53022
NOAA-NMFS-2020-0031-DRAFT-53023
NOAA-NMFS-2020-0031-DRAFT-53024
NOAA-NMFS-2020-0031-DRAFT-53025
NOAA-NMFS-2020-0031-DRAFT-53026
NOAA-NMFS-2020-0031-DRAFT-53027
NOAA-NMFS-2020-0031-DRAFT-53028

Comment from Karen Zack
Comment from Patricia May
Comment from Elizabeth Darovic
Comment from Nalan Williams
Comment from Shannon Milhaupt
Comment from Carol Whitehurst
Comment from Peggy Burns
Comment from diane cote

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53029
NOAA-NMFS-2020-0031-DRAFT-53030
NOAA-NMFS-2020-0031-DRAFT-53031
NOAA-NMFS-2020-0031-DRAFT-53032
NOAA-NMFS-2020-0031-DRAFT-53033
NOAA-NMFS-2020-0031-DRAFT-53034
NOAA-NMFS-2020-0031-DRAFT-53036
NOAA-NMFS-2020-0031-DRAFT-53037
NOAA-NMFS-2020-0031-DRAFT-53038
NOAA-NMFS-2020-0031-DRAFT-53039
NOAA-NMFS-2020-0031-DRAFT-53040
NOAA-NMFS-2020-0031-DRAFT-53041
NOAA-NMFS-2020-0031-DRAFT-53042
NOAA-NMFS-2020-0031-DRAFT-53043
NOAA-NMFS-2020-0031-DRAFT-53044
NOAA-NMFS-2020-0031-DRAFT-53045
NOAA-NMFS-2020-0031-DRAFT-53046
NOAA-NMFS-2020-0031-DRAFT-53047
NOAA-NMFS-2020-0031-DRAFT-53048
NOAA-NMFS-2020-0031-DRAFT-53049
NOAA-NMFS-2020-0031-DRAFT-53050
NOAA-NMFS-2020-0031-DRAFT-53051
NOAA-NMFS-2020-0031-DRAFT-53052
NOAA-NMFS-2020-0031-DRAFT-53053
NOAA-NMFS-2020-0031-DRAFT-53054
NOAA-NMFS-2020-0031-DRAFT-53055
NOAA-NMFS-2020-0031-DRAFT-53056
NOAA-NMFS-2020-0031-DRAFT-53057
NOAA-NMFS-2020-0031-DRAFT-53058
NOAA-NMFS-2020-0031-DRAFT-53059
NOAA-NMFS-2020-0031-DRAFT-53060
NOAA-NMFS-2020-0031-DRAFT-53061
NOAA-NMFS-2020-0031-DRAFT-53062
NOAA-NMFS-2020-0031-DRAFT-53063
NOAA-NMFS-2020-0031-DRAFT-53064
NOAA-NMFS-2020-0031-DRAFT-53065
NOAA-NMFS-2020-0031-DRAFT-53066
NOAA-NMFS-2020-0031-DRAFT-53067
NOAA-NMFS-2020-0031-DRAFT-53068
NOAA-NMFS-2020-0031-DRAFT-53069
NOAA-NMFS-2020-0031-DRAFT-53070

Comment from Betty Paterson
Comment from Connie Zales
Comment from janet maker
Comment from Chad Johnson
Comment from Julie Kirsh
Comment from Lara Hutchin
Comment from Kevin O'Donnell
Comment from Tina Edmond
Comment from Lois White
Comment from James Hartley
Comment from Lise Hull
Comment from Tracy Marotta
Comment from Rebecca Augustin
Comment from Melissa Bishop
Comment from Lana hughes
Comment from Jana Jacobson
Comment from Elizabeth Johnson
Comment from Steve Zimet
Comment from Gerald Wambach
Comment from Martha Siegel
Comment from Judy Penna
Comment from Rudolph Ripp
Comment from Caryl Speck
Comment from Elaine Cook
Comment from Dr Lawson
Comment from Christine Walton
Comment from Shawn Dugan
Comment from Leslie Roessler
Comment from Daniel O'Brien
Comment from Sharon Rich
Comment from Cary Frazee
Comment from Hilda Gilman
Comment from Miriam Baum
Comment from Lisa Critchlow
Comment from James Nielsen
Comment from Michael Chamberlain
Comment from Shawn Dugan
Comment from Kathleen Heisey
Comment from Portland Coates
Comment from Tina Brown
Comment from Pamela Lyons

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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53071
NOAA-NMFS-2020-0031-DRAFT-53072
NOAA-NMFS-2020-0031-DRAFT-53073
NOAA-NMFS-2020-0031-DRAFT-53074
NOAA-NMFS-2020-0031-DRAFT-53075
NOAA-NMFS-2020-0031-DRAFT-53076
NOAA-NMFS-2020-0031-DRAFT-53077
NOAA-NMFS-2020-0031-DRAFT-53078
NOAA-NMFS-2020-0031-DRAFT-53079
NOAA-NMFS-2020-0031-DRAFT-53080
NOAA-NMFS-2020-0031-DRAFT-53081
NOAA-NMFS-2020-0031-DRAFT-53082
NOAA-NMFS-2020-0031-DRAFT-53083
NOAA-NMFS-2020-0031-DRAFT-53084
NOAA-NMFS-2020-0031-DRAFT-53086
NOAA-NMFS-2020-0031-DRAFT-53087
NOAA-NMFS-2020-0031-DRAFT-53088
NOAA-NMFS-2020-0031-DRAFT-53089
NOAA-NMFS-2020-0031-DRAFT-53090
NOAA-NMFS-2020-0031-DRAFT-53091
NOAA-NMFS-2020-0031-DRAFT-53092
NOAA-NMFS-2020-0031-DRAFT-53093
NOAA-NMFS-2020-0031-DRAFT-53094
NOAA-NMFS-2020-0031-DRAFT-53095
NOAA-NMFS-2020-0031-DRAFT-53096
NOAA-NMFS-2020-0031-DRAFT-53097
NOAA-NMFS-2020-0031-DRAFT-53098
NOAA-NMFS-2020-0031-DRAFT-53099
NOAA-NMFS-2020-0031-DRAFT-53100
NOAA-NMFS-2020-0031-DRAFT-53101
NOAA-NMFS-2020-0031-DRAFT-53102
NOAA-NMFS-2020-0031-DRAFT-53103
NOAA-NMFS-2020-0031-DRAFT-53104
NOAA-NMFS-2020-0031-DRAFT-53105
NOAA-NMFS-2020-0031-DRAFT-53106
NOAA-NMFS-2020-0031-DRAFT-53107
NOAA-NMFS-2020-0031-DRAFT-53108
NOAA-NMFS-2020-0031-DRAFT-53109
NOAA-NMFS-2020-0031-DRAFT-53110
NOAA-NMFS-2020-0031-DRAFT-53111
NOAA-NMFS-2020-0031-DRAFT-53112

Comment from Laurie Conroy
Comment from Kimberly Morrill
Comment from Alexandra Sweitzer
Comment from Susan Fraser
Comment from Andrew Hopen
Comment from Richard Fehr
Comment from Melvin Hoot
Comment from Mitchell Deighan
Comment from Steven Fenster
Comment from Betty Dean
Comment from kristine cervini
Comment from Paul Vesper
Comment from Cathy Thornburn
Comment from Dorothea Leicher
Comment from NORMAN HANSEN
Comment from Traci Chanaca
Comment from Cathie Bell
Comment from Shawn Hall
Comment from Johanna Hantel
Comment from Richard Perkowski
Comment from Shani Schulman
Comment from Jonathan Kennedy
Comment from gary rejsek
Comment from Annette Benton
Comment from Susan Aarons
Comment from Anonymous Anonymous
Comment from Debora Hojda
Comment from Bobbi Segal
Comment from Tina hauer
Comment from Mary Martin
Comment from julie pepaprd
Comment from Archna Oberoi
Comment from K M
Comment from Veena Singwi
Comment from Jerry Gremling
Comment from John Taylor
Comment from Bruce Kelley
Comment from Constance Lorig
Comment from Anita Wisch
Comment from Carol Halberstadt
Comment from Gail Cheeseman

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53113
NOAA-NMFS-2020-0031-DRAFT-53114
NOAA-NMFS-2020-0031-DRAFT-53115
NOAA-NMFS-2020-0031-DRAFT-53116
NOAA-NMFS-2020-0031-DRAFT-53117
NOAA-NMFS-2020-0031-DRAFT-53118
NOAA-NMFS-2020-0031-DRAFT-53119
NOAA-NMFS-2020-0031-DRAFT-53120
NOAA-NMFS-2020-0031-DRAFT-53121
NOAA-NMFS-2020-0031-DRAFT-53122
NOAA-NMFS-2020-0031-DRAFT-53123
NOAA-NMFS-2020-0031-DRAFT-53124
NOAA-NMFS-2020-0031-DRAFT-53125
NOAA-NMFS-2020-0031-DRAFT-53126
NOAA-NMFS-2020-0031-DRAFT-53127
NOAA-NMFS-2020-0031-DRAFT-53128
NOAA-NMFS-2020-0031-DRAFT-53129
NOAA-NMFS-2020-0031-DRAFT-53131
NOAA-NMFS-2020-0031-DRAFT-53132
NOAA-NMFS-2020-0031-DRAFT-53133
NOAA-NMFS-2020-0031-DRAFT-53134
NOAA-NMFS-2020-0031-DRAFT-53135
NOAA-NMFS-2020-0031-DRAFT-53136
NOAA-NMFS-2020-0031-DRAFT-53137
NOAA-NMFS-2020-0031-DRAFT-53138
NOAA-NMFS-2020-0031-DRAFT-53139
NOAA-NMFS-2020-0031-DRAFT-53140
NOAA-NMFS-2020-0031-DRAFT-53141
NOAA-NMFS-2020-0031-DRAFT-53143
NOAA-NMFS-2020-0031-DRAFT-53144
NOAA-NMFS-2020-0031-DRAFT-53145
NOAA-NMFS-2020-0031-DRAFT-53146
NOAA-NMFS-2020-0031-DRAFT-53147
NOAA-NMFS-2020-0031-DRAFT-53148
NOAA-NMFS-2020-0031-DRAFT-53149
NOAA-NMFS-2020-0031-DRAFT-53150
NOAA-NMFS-2020-0031-DRAFT-53151
NOAA-NMFS-2020-0031-DRAFT-53152
NOAA-NMFS-2020-0031-DRAFT-53153
NOAA-NMFS-2020-0031-DRAFT-53154
NOAA-NMFS-2020-0031-DRAFT-53155

Comment from Kristen C
Comment from Beverly Solomon
Comment from Marnie Gaede
Comment from Gail Fleischaker
Comment from Carolyn Crawford
Comment from Jan Clark
Comment from April Parkins
Comment from Valeria Mola
Comment from David Broer-leroux
Comment from Destry Segawa
Comment from Susan Lefler
Comment from Linda Deming
Comment from Raymond Young
Comment from Judi Robinson-Kerr
Comment from Daniel Solow
Comment from Sharon Lindsley
Comment from JoAnn McFarland
Comment from RS Pierrepont
Comment from Brian Gagnon
Comment from Gerald Orcholski
Comment from Clover Krajicek
Comment from Melissa DiCarlo
Comment from David Judd
Comment from Karen Stewart
Comment from Sarah Brown
Comment from Karen Slote
Comment from Patrice Van Rossum
Comment from Christopher Moyer
Comment from Barry Smith
Comment from Rita Raftery
Comment from Barbara Kopelman
Comment from Brenda Roy
Comment from F Meek
Comment from Lozz Starseed
Comment from Rachel Vandinter
Comment from Janice Kropczynski
Comment from Francene Kilichowski
Comment from Amanda Dewey
Comment from Melissa Hathaway
Comment from Paul Vesper
Comment from Sandra Kerr

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53156
NOAA-NMFS-2020-0031-DRAFT-53157
NOAA-NMFS-2020-0031-DRAFT-53158
NOAA-NMFS-2020-0031-DRAFT-53159
NOAA-NMFS-2020-0031-DRAFT-53160
NOAA-NMFS-2020-0031-DRAFT-53162
NOAA-NMFS-2020-0031-DRAFT-53163
NOAA-NMFS-2020-0031-DRAFT-53164
NOAA-NMFS-2020-0031-DRAFT-53165
NOAA-NMFS-2020-0031-DRAFT-53166
NOAA-NMFS-2020-0031-DRAFT-53167
NOAA-NMFS-2020-0031-DRAFT-53168
NOAA-NMFS-2020-0031-DRAFT-53169
NOAA-NMFS-2020-0031-DRAFT-53170
NOAA-NMFS-2020-0031-DRAFT-53171
NOAA-NMFS-2020-0031-DRAFT-53172
NOAA-NMFS-2020-0031-DRAFT-53173
NOAA-NMFS-2020-0031-DRAFT-53174
NOAA-NMFS-2020-0031-DRAFT-53175
NOAA-NMFS-2020-0031-DRAFT-53176
NOAA-NMFS-2020-0031-DRAFT-53177
NOAA-NMFS-2020-0031-DRAFT-53178
NOAA-NMFS-2020-0031-DRAFT-53179
NOAA-NMFS-2020-0031-DRAFT-53180
NOAA-NMFS-2020-0031-DRAFT-53181
NOAA-NMFS-2020-0031-DRAFT-53182
NOAA-NMFS-2020-0031-DRAFT-53183
NOAA-NMFS-2020-0031-DRAFT-53184
NOAA-NMFS-2020-0031-DRAFT-53185
NOAA-NMFS-2020-0031-DRAFT-53186
NOAA-NMFS-2020-0031-DRAFT-53187
NOAA-NMFS-2020-0031-DRAFT-53188
NOAA-NMFS-2020-0031-DRAFT-53189
NOAA-NMFS-2020-0031-DRAFT-53190
NOAA-NMFS-2020-0031-DRAFT-53191
NOAA-NMFS-2020-0031-DRAFT-53192
NOAA-NMFS-2020-0031-DRAFT-53193
NOAA-NMFS-2020-0031-DRAFT-53194
NOAA-NMFS-2020-0031-DRAFT-53195
NOAA-NMFS-2020-0031-DRAFT-53196
NOAA-NMFS-2020-0031-DRAFT-53197

Comment from Sissi Asperti
Comment from James Talbot
Comment from Cathy Revis
Comment from SONIA SCHMIDT
Comment from Pia Vartabedian
Comment from miller, donna
Comment from Chuckran, Matthew
Comment from Atkinson, Steve
Comment from Smith, Douglass
Comment from Bergeron, Sheilagh
Comment from Porwit, Gosia
Comment from Simonetti, Hilary
Comment from Granato, L
Comment from Karst , Cynthia
Comment from Larson, Jean
Comment from Bilodeau-Lanne, Michelle
Comment from Amato, Kathleen
Comment from Luckenbach, Susan
Comment from Larkin , Sheila
Comment from Swigert, Sheila
Comment from Magee, John
Comment from Garrett, Katren
Comment from Carmen Nichols
Comment from Marilyn Martin
Comment from Jim Loveland
Comment from Holly Barr
Comment from pamela Durkalski
Comment from Donald Barker
Comment from Alan Striga
Comment from Barbara Stenross
Comment from Suzanne Carreker-Voigt
Comment from J Jung
Comment from Barbara Sitler
Comment from Sue Rosenbach
Comment from David Brockett
Comment from Vivian Caylor
Comment from Corinne McAfee
Comment from Shirley Mccarthy
Comment from Deirdre Fitzsimmons
Comment from Sue Rosenbach
Comment from Karen Bunch

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53198
NOAA-NMFS-2020-0031-DRAFT-53199
NOAA-NMFS-2020-0031-DRAFT-53200
NOAA-NMFS-2020-0031-DRAFT-53201
NOAA-NMFS-2020-0031-DRAFT-53202
NOAA-NMFS-2020-0031-DRAFT-53203
NOAA-NMFS-2020-0031-DRAFT-53204
NOAA-NMFS-2020-0031-DRAFT-53205
NOAA-NMFS-2020-0031-DRAFT-53206
NOAA-NMFS-2020-0031-DRAFT-53207
NOAA-NMFS-2020-0031-DRAFT-53208
NOAA-NMFS-2020-0031-DRAFT-53209
NOAA-NMFS-2020-0031-DRAFT-53210
NOAA-NMFS-2020-0031-DRAFT-53211
NOAA-NMFS-2020-0031-DRAFT-53212
NOAA-NMFS-2020-0031-DRAFT-53213
NOAA-NMFS-2020-0031-DRAFT-53214
NOAA-NMFS-2020-0031-DRAFT-53215
NOAA-NMFS-2020-0031-DRAFT-53216
NOAA-NMFS-2020-0031-DRAFT-53217
NOAA-NMFS-2020-0031-DRAFT-53218
NOAA-NMFS-2020-0031-DRAFT-53219
NOAA-NMFS-2020-0031-DRAFT-53220
NOAA-NMFS-2020-0031-DRAFT-53221
NOAA-NMFS-2020-0031-DRAFT-53222
NOAA-NMFS-2020-0031-DRAFT-53223
NOAA-NMFS-2020-0031-DRAFT-53224
NOAA-NMFS-2020-0031-DRAFT-53225
NOAA-NMFS-2020-0031-DRAFT-53226
NOAA-NMFS-2020-0031-DRAFT-53227
NOAA-NMFS-2020-0031-DRAFT-53228
NOAA-NMFS-2020-0031-DRAFT-53229
NOAA-NMFS-2020-0031-DRAFT-53230
NOAA-NMFS-2020-0031-DRAFT-53231
NOAA-NMFS-2020-0031-DRAFT-53232
NOAA-NMFS-2020-0031-DRAFT-53233
NOAA-NMFS-2020-0031-DRAFT-53234
NOAA-NMFS-2020-0031-DRAFT-53235
NOAA-NMFS-2020-0031-DRAFT-53236
NOAA-NMFS-2020-0031-DRAFT-53237
NOAA-NMFS-2020-0031-DRAFT-53238

Comment from Donald Barker
Comment from Cleveland Tom
Comment from Liz Field
Comment from Leonard Epstein
Comment from Martin Jacobson
Comment from Karen McGreevy
Comment from Ward Giblin
Comment from Dennis Rogers
Comment from Tracy Grandison
Comment from Triumph Corp
Comment from MeriBeth Koch
Comment from Amber Sumrall
Comment from DAVID KASTELINE
Comment from James Hartley
Comment from Steve Zimet
Comment from Kimberly Troxell
Comment from Karla Arceneaux
Comment from stephanie miller
Comment from Dominic melita
Comment from Triumph Corp
Comment from Bryn HammarstromRN
Comment from Tim Barrington
Comment from Rhetta Walter
Comment from David Miliotis
Comment from Ellen Weisnecker
Comment from Elizabeth Trought
Comment from neil illiano
Comment from Lezlie Ringland
Comment from Triumph Corp
Comment from Marina Cappas
Comment from Linda Lippner
Comment from Iris Carman
Comment from Pamylle Greinke
Comment from Maryann Barulich
Comment from A Diamond
Comment from LORRAINE KATZBERG
Comment from Robert Schongalla
Comment from Dara Rider
Comment from Chauncey Bancroft
Comment from Lisa Giuliano
Comment from Nancy Loftin

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53239
NOAA-NMFS-2020-0031-DRAFT-53240
NOAA-NMFS-2020-0031-DRAFT-53241
NOAA-NMFS-2020-0031-DRAFT-53242
NOAA-NMFS-2020-0031-DRAFT-53243
NOAA-NMFS-2020-0031-DRAFT-53244
NOAA-NMFS-2020-0031-DRAFT-53245
NOAA-NMFS-2020-0031-DRAFT-53246
NOAA-NMFS-2020-0031-DRAFT-53247
NOAA-NMFS-2020-0031-DRAFT-53248
NOAA-NMFS-2020-0031-DRAFT-53249
NOAA-NMFS-2020-0031-DRAFT-53251
NOAA-NMFS-2020-0031-DRAFT-53252
NOAA-NMFS-2020-0031-DRAFT-53253
NOAA-NMFS-2020-0031-DRAFT-53254
NOAA-NMFS-2020-0031-DRAFT-53255
NOAA-NMFS-2020-0031-DRAFT-53256
NOAA-NMFS-2020-0031-DRAFT-53257
NOAA-NMFS-2020-0031-DRAFT-53258
NOAA-NMFS-2020-0031-DRAFT-53259
NOAA-NMFS-2020-0031-DRAFT-53260
NOAA-NMFS-2020-0031-DRAFT-53261
NOAA-NMFS-2020-0031-DRAFT-53262
NOAA-NMFS-2020-0031-DRAFT-53263
NOAA-NMFS-2020-0031-DRAFT-53264
NOAA-NMFS-2020-0031-DRAFT-53265
NOAA-NMFS-2020-0031-DRAFT-53266
NOAA-NMFS-2020-0031-DRAFT-53267
NOAA-NMFS-2020-0031-DRAFT-53268
NOAA-NMFS-2020-0031-DRAFT-53269
NOAA-NMFS-2020-0031-DRAFT-53270
NOAA-NMFS-2020-0031-DRAFT-53271
NOAA-NMFS-2020-0031-DRAFT-53272
NOAA-NMFS-2020-0031-DRAFT-53273
NOAA-NMFS-2020-0031-DRAFT-53274
NOAA-NMFS-2020-0031-DRAFT-53275
NOAA-NMFS-2020-0031-DRAFT-53276
NOAA-NMFS-2020-0031-DRAFT-53277
NOAA-NMFS-2020-0031-DRAFT-53278
NOAA-NMFS-2020-0031-DRAFT-53279
NOAA-NMFS-2020-0031-DRAFT-53280

Comment from Jimmie Lunsford
Comment from Frank Boggio
Comment from Thomas Bailey
Comment from Matt Meier
Comment from Jennifer Downing
Comment from Sharon Longyear
Comment from Alice Gard
Comment from Thomas Klepacky
Comment from Victoria Shankling
Comment from Barry De Jasu
Comment from Gary Wattles
Comment from GEORGE ERCEG
Comment from Christine Jacobs
Comment from Janice Beyer
Comment from Pamela Gibberman
Comment from Amy Hopkins
Comment from Koral Campbell
Comment from shaikha alfuwairis
Comment from Eileen Fazzini
Comment from Lauri Moon
Comment from Laurie King
Comment from Liz Field
Comment from Robyn DeCiccio
Comment from J Anderson
Comment from Due Long
Comment from Clifton Ware
Comment from Jane Newmark
Comment from wendy weiner
Comment from Judith Ackerman
Comment from Claire Powell
Comment from timothy villalobos
Comment from Victoria Laird
Comment from nancy moore
Comment from Daniel Morneau
Comment from Wayne Harris
Comment from Lynn Richardson
Comment from Bill Rosenthal
Comment from Sarah Dorst
Comment from Donna Thomas
Comment from Meredith Russo
Comment from Robbi Chisholm

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53281
NOAA-NMFS-2020-0031-DRAFT-53282
NOAA-NMFS-2020-0031-DRAFT-53283
NOAA-NMFS-2020-0031-DRAFT-53284
NOAA-NMFS-2020-0031-DRAFT-53285
NOAA-NMFS-2020-0031-DRAFT-53286
NOAA-NMFS-2020-0031-DRAFT-53287
NOAA-NMFS-2020-0031-DRAFT-53288
NOAA-NMFS-2020-0031-DRAFT-53289
NOAA-NMFS-2020-0031-DRAFT-53290
NOAA-NMFS-2020-0031-DRAFT-53291
NOAA-NMFS-2020-0031-DRAFT-53292
NOAA-NMFS-2020-0031-DRAFT-53293
NOAA-NMFS-2020-0031-DRAFT-53294
NOAA-NMFS-2020-0031-DRAFT-53295
NOAA-NMFS-2020-0031-DRAFT-53296
NOAA-NMFS-2020-0031-DRAFT-53297
NOAA-NMFS-2020-0031-DRAFT-53298
NOAA-NMFS-2020-0031-DRAFT-53299
NOAA-NMFS-2020-0031-DRAFT-53300
NOAA-NMFS-2020-0031-DRAFT-53301
NOAA-NMFS-2020-0031-DRAFT-53302
NOAA-NMFS-2020-0031-DRAFT-53303
NOAA-NMFS-2020-0031-DRAFT-53304
NOAA-NMFS-2020-0031-DRAFT-53305
NOAA-NMFS-2020-0031-DRAFT-53306
NOAA-NMFS-2020-0031-DRAFT-53307
NOAA-NMFS-2020-0031-DRAFT-53308
NOAA-NMFS-2020-0031-DRAFT-53309
NOAA-NMFS-2020-0031-DRAFT-53310
NOAA-NMFS-2020-0031-DRAFT-53311
NOAA-NMFS-2020-0031-DRAFT-53312
NOAA-NMFS-2020-0031-DRAFT-53313
NOAA-NMFS-2020-0031-DRAFT-53314
NOAA-NMFS-2020-0031-DRAFT-53315
NOAA-NMFS-2020-0031-DRAFT-53316
NOAA-NMFS-2020-0031-DRAFT-53317
NOAA-NMFS-2020-0031-DRAFT-53318
NOAA-NMFS-2020-0031-DRAFT-53319
NOAA-NMFS-2020-0031-DRAFT-53320
NOAA-NMFS-2020-0031-DRAFT-53321

Comment from Wendy Raymond
Comment from Terry Tedesco
Comment from joan Peaslee
Comment from Linda Tonnesen
Comment from Charles Ford
Comment from Tim Barrington
Comment from Jone wenger
Comment from jean publiee
Comment from Amy Roberts
Comment from Monica Graff
Comment from Carol Lang
Comment from Paula Shafransky
Comment from Stepheny McGraw
Comment from Margo Wilson
Comment from Lance Kammerud
Comment from Aimee Abalo
Comment from Chris Hazynski
Comment from Todd Monson
Comment from Hayden Frechette
Comment from Robert Villasenor
Comment from henry Biggins
Comment from Pamela Carter
Comment from WILLIAM MCNEFF
Comment from Diane Ethridge
Comment from Amy Johannesen
Comment from Christie Greene
Comment from Amanda Freitas
Comment from Allen Krantz
Comment from Rob Roberto
Comment from Betty Marr
Comment from Wendy Niemeyer
Comment from Gretchen Dysart
Comment from Lacey Levitt
Comment from Jodi Rodar
Comment from jen perl
Comment from John Petsco
Comment from saraphine metis
Comment from Edward Temple
Comment from Natalie Van Leekwijck
Comment from Lacey Hicks
Comment from Lori Kegler

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53322
NOAA-NMFS-2020-0031-DRAFT-53323
NOAA-NMFS-2020-0031-DRAFT-53324
NOAA-NMFS-2020-0031-DRAFT-53325
NOAA-NMFS-2020-0031-DRAFT-53326
NOAA-NMFS-2020-0031-DRAFT-53327
NOAA-NMFS-2020-0031-DRAFT-53328
NOAA-NMFS-2020-0031-DRAFT-53329
NOAA-NMFS-2020-0031-DRAFT-53330
NOAA-NMFS-2020-0031-DRAFT-53331
NOAA-NMFS-2020-0031-DRAFT-53332
NOAA-NMFS-2020-0031-DRAFT-53333
NOAA-NMFS-2020-0031-DRAFT-53334
NOAA-NMFS-2020-0031-DRAFT-53335
NOAA-NMFS-2020-0031-DRAFT-53336
NOAA-NMFS-2020-0031-DRAFT-53337
NOAA-NMFS-2020-0031-DRAFT-53338
NOAA-NMFS-2020-0031-DRAFT-53339
NOAA-NMFS-2020-0031-DRAFT-53340
NOAA-NMFS-2020-0031-DRAFT-53341
NOAA-NMFS-2020-0031-DRAFT-53342
NOAA-NMFS-2020-0031-DRAFT-53343
NOAA-NMFS-2020-0031-DRAFT-53344
NOAA-NMFS-2020-0031-DRAFT-53345
NOAA-NMFS-2020-0031-DRAFT-53346
NOAA-NMFS-2020-0031-DRAFT-53347
NOAA-NMFS-2020-0031-DRAFT-53348
NOAA-NMFS-2020-0031-DRAFT-53349
NOAA-NMFS-2020-0031-DRAFT-53350
NOAA-NMFS-2020-0031-DRAFT-53351
NOAA-NMFS-2020-0031-DRAFT-53352
NOAA-NMFS-2020-0031-DRAFT-53353
NOAA-NMFS-2020-0031-DRAFT-53354
NOAA-NMFS-2020-0031-DRAFT-53355
NOAA-NMFS-2020-0031-DRAFT-53356
NOAA-NMFS-2020-0031-DRAFT-53357
NOAA-NMFS-2020-0031-DRAFT-53358
NOAA-NMFS-2020-0031-DRAFT-53360
NOAA-NMFS-2020-0031-DRAFT-53361
NOAA-NMFS-2020-0031-DRAFT-53362
NOAA-NMFS-2020-0031-DRAFT-53363

Comment from Sandy DAmbrosio
Comment from ELOISE PETERSON
Comment from Arthur Haberberger
Comment from Patricia Baptiste
Comment from Penny Chambers
Comment from Bechi Currier
Comment from Andrew Jackson
Comment from Robert Metell
Comment from Carol Devore
Comment from Melissa Bauer
Comment from Linda Savage
Comment from Heidi Ziemer
Comment from William McGoldrick
Comment from Virginia Snider
Comment from John Furlong
Comment from Janice Webster
Comment from Becky Daiss
Comment from Claudia Ford
Comment from K G
Comment from Aurelie Ward
Comment from Becki Leigh
Comment from Linda Savage
Comment from Gina Norton
Comment from Nadja Payne
Comment from Leer Rich
Comment from SANDY NORRIS
Comment from Anne Haflich
Comment from Irene Mills
Comment from Gail Heath
Comment from Rosina I
Comment from suzanne gaspar
Comment from John Delgado
Comment from Stanley Charles
Comment from Deirdre Brennan
Comment from MaryAnne Herbel
Comment from Gwen Davis
Comment from Jessie Vosti
Comment from linda sullivan
Comment from Barbara Marcellino
Comment from John Lynch
Comment from Angela Hayes

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53364
NOAA-NMFS-2020-0031-DRAFT-53365
NOAA-NMFS-2020-0031-DRAFT-53366
NOAA-NMFS-2020-0031-DRAFT-53367
NOAA-NMFS-2020-0031-DRAFT-53368
NOAA-NMFS-2020-0031-DRAFT-53369
NOAA-NMFS-2020-0031-DRAFT-53370
NOAA-NMFS-2020-0031-DRAFT-53371
NOAA-NMFS-2020-0031-DRAFT-53373
NOAA-NMFS-2020-0031-DRAFT-53374
NOAA-NMFS-2020-0031-DRAFT-53375
NOAA-NMFS-2020-0031-DRAFT-53376
NOAA-NMFS-2020-0031-DRAFT-53377
NOAA-NMFS-2020-0031-DRAFT-53378
NOAA-NMFS-2020-0031-DRAFT-53379
NOAA-NMFS-2020-0031-DRAFT-53380
NOAA-NMFS-2020-0031-DRAFT-53381
NOAA-NMFS-2020-0031-DRAFT-53382
NOAA-NMFS-2020-0031-DRAFT-53383
NOAA-NMFS-2020-0031-DRAFT-53384
NOAA-NMFS-2020-0031-DRAFT-53385
NOAA-NMFS-2020-0031-DRAFT-53386
NOAA-NMFS-2020-0031-DRAFT-53387
NOAA-NMFS-2020-0031-DRAFT-53388
NOAA-NMFS-2020-0031-DRAFT-53389
NOAA-NMFS-2020-0031-DRAFT-53390
NOAA-NMFS-2020-0031-DRAFT-53391
NOAA-NMFS-2020-0031-DRAFT-53392
NOAA-NMFS-2020-0031-DRAFT-53393
NOAA-NMFS-2020-0031-DRAFT-53394
NOAA-NMFS-2020-0031-DRAFT-53395
NOAA-NMFS-2020-0031-DRAFT-53396
NOAA-NMFS-2020-0031-DRAFT-53397
NOAA-NMFS-2020-0031-DRAFT-53398
NOAA-NMFS-2020-0031-DRAFT-53399
NOAA-NMFS-2020-0031-DRAFT-53400
NOAA-NMFS-2020-0031-DRAFT-53401
NOAA-NMFS-2020-0031-DRAFT-53402
NOAA-NMFS-2020-0031-DRAFT-53403
NOAA-NMFS-2020-0031-DRAFT-53404
NOAA-NMFS-2020-0031-DRAFT-53405

Comment from Mary Harte
Comment from Lynn Sentenn
Comment from Mary Rivas
Comment from martha cataldo
Comment from margo wyse
Comment from Nicholas Frederick
Comment from Phyl Morello
Comment from Andre Meaux
Comment from Chris Saia
Comment from Radha Shenoy
Comment from John Wyatt
Comment from Ellen Williamson
Comment from nanci nugent
Comment from Scott Price
Comment from Kristine Riccardi
Comment from Tom Haney
Comment from Scott Baumann
Comment from Grace Kim
Comment from Deborah Spencer
Comment from Robin Seeley
Comment from Julius Salinas
Comment from Patricia Heiden
Comment from Louise Friedenson
Comment from hannah doberne
Comment from Ben Stoddart
Comment from Barbara Midtbo
Comment from Donna Varcoe
Comment from william mittig
Comment from Anne Barr
Comment from Amy Seifried
Comment from Paula Stober
Comment from Jill Leite
Comment from Daniela Goncalves
Comment from Patricia Rohling
Comment from Susan Galante
Comment from Terrence Logue
Comment from Chris Gossard
Comment from Kim Koza
Comment from Pamylle Greinke
Comment from Pam Young
Comment from David Crawford

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53406
NOAA-NMFS-2020-0031-DRAFT-53407
NOAA-NMFS-2020-0031-DRAFT-53408
NOAA-NMFS-2020-0031-DRAFT-53409
NOAA-NMFS-2020-0031-DRAFT-53410
NOAA-NMFS-2020-0031-DRAFT-53411
NOAA-NMFS-2020-0031-DRAFT-53412
NOAA-NMFS-2020-0031-DRAFT-53413
NOAA-NMFS-2020-0031-DRAFT-53414
NOAA-NMFS-2020-0031-DRAFT-53415
NOAA-NMFS-2020-0031-DRAFT-53416
NOAA-NMFS-2020-0031-DRAFT-53417
NOAA-NMFS-2020-0031-DRAFT-53418
NOAA-NMFS-2020-0031-DRAFT-53419
NOAA-NMFS-2020-0031-DRAFT-53420
NOAA-NMFS-2020-0031-DRAFT-53421
NOAA-NMFS-2020-0031-DRAFT-53422
NOAA-NMFS-2020-0031-DRAFT-53423
NOAA-NMFS-2020-0031-DRAFT-53424
NOAA-NMFS-2020-0031-DRAFT-53425
NOAA-NMFS-2020-0031-DRAFT-53426
NOAA-NMFS-2020-0031-DRAFT-53427
NOAA-NMFS-2020-0031-DRAFT-53428
NOAA-NMFS-2020-0031-DRAFT-53429
NOAA-NMFS-2020-0031-DRAFT-53430
NOAA-NMFS-2020-0031-DRAFT-53431
NOAA-NMFS-2020-0031-DRAFT-53432
NOAA-NMFS-2020-0031-DRAFT-53433
NOAA-NMFS-2020-0031-DRAFT-53434
NOAA-NMFS-2020-0031-DRAFT-53435
NOAA-NMFS-2020-0031-DRAFT-53436
NOAA-NMFS-2020-0031-DRAFT-53437
NOAA-NMFS-2020-0031-DRAFT-53438
NOAA-NMFS-2020-0031-DRAFT-53439
NOAA-NMFS-2020-0031-DRAFT-53440
NOAA-NMFS-2020-0031-DRAFT-53441
NOAA-NMFS-2020-0031-DRAFT-53442
NOAA-NMFS-2020-0031-DRAFT-53443
NOAA-NMFS-2020-0031-DRAFT-53444
NOAA-NMFS-2020-0031-DRAFT-53445
NOAA-NMFS-2020-0031-DRAFT-53446

Comment from Marlen Cruz
Comment from Laura Redwine
Comment from Bruno Rescigna
Comment from Sophia McAllister
Comment from Barry Smith
Comment from pam brocious
Comment from Pete Barron
Comment from Cheryl Mogul
Comment from Kirk Pessner
Comment from Jon Hudson
Comment from Rhonda pulliam
Comment from Melissa Bronder
Comment from Wilma Schaller
Comment from Neil Shargel
Comment from Susan Lee
Comment from Diane Anderson
Comment from Jason Chinn
Comment from Brenda Haig
Comment from Irene Osborn
Comment from Linda Gertig
Comment from Catherine Kowalczyk
Comment from Charles Bolick
Comment from Lori Carpenter
Comment from Joan Sander
Comment from Jake Shirmer
Comment from John Ryan
Comment from Kim Fowler
Comment from Mary Lotts
Comment from Kenya Pena
Comment from Denise Rossi
Comment from Kathleen Rodrigues
Comment from Judy White
Comment from Esther Weaver
Comment from LILLIAN MAHANEY
Comment from Susan Powers
Comment from Gail Fleischaker
Comment from Thoams Lesh
Comment from Carol Goslant
Comment from Kathy Bradley
Comment from Mia Lancaster
Comment from Jacob Pendlebury

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53447
NOAA-NMFS-2020-0031-DRAFT-53448
NOAA-NMFS-2020-0031-DRAFT-53449
NOAA-NMFS-2020-0031-DRAFT-53450
NOAA-NMFS-2020-0031-DRAFT-53451
NOAA-NMFS-2020-0031-DRAFT-53452
NOAA-NMFS-2020-0031-DRAFT-53453
NOAA-NMFS-2020-0031-DRAFT-53454
NOAA-NMFS-2020-0031-DRAFT-53455
NOAA-NMFS-2020-0031-DRAFT-53456
NOAA-NMFS-2020-0031-DRAFT-53457
NOAA-NMFS-2020-0031-DRAFT-53458
NOAA-NMFS-2020-0031-DRAFT-53459
NOAA-NMFS-2020-0031-DRAFT-53460
NOAA-NMFS-2020-0031-DRAFT-53461
NOAA-NMFS-2020-0031-DRAFT-53462
NOAA-NMFS-2020-0031-DRAFT-53463
NOAA-NMFS-2020-0031-DRAFT-53464
NOAA-NMFS-2020-0031-DRAFT-53465
NOAA-NMFS-2020-0031-DRAFT-53466
NOAA-NMFS-2020-0031-DRAFT-53467
NOAA-NMFS-2020-0031-DRAFT-53468
NOAA-NMFS-2020-0031-DRAFT-53469
NOAA-NMFS-2020-0031-DRAFT-53470
NOAA-NMFS-2020-0031-DRAFT-53471
NOAA-NMFS-2020-0031-DRAFT-53472
NOAA-NMFS-2020-0031-DRAFT-53474
NOAA-NMFS-2020-0031-DRAFT-53475
NOAA-NMFS-2020-0031-DRAFT-53476
NOAA-NMFS-2020-0031-DRAFT-53477
NOAA-NMFS-2020-0031-DRAFT-53478
NOAA-NMFS-2020-0031-DRAFT-53479
NOAA-NMFS-2020-0031-DRAFT-53480
NOAA-NMFS-2020-0031-DRAFT-53481
NOAA-NMFS-2020-0031-DRAFT-53482
NOAA-NMFS-2020-0031-DRAFT-53483
NOAA-NMFS-2020-0031-DRAFT-53484
NOAA-NMFS-2020-0031-DRAFT-53485
NOAA-NMFS-2020-0031-DRAFT-53486
NOAA-NMFS-2020-0031-DRAFT-53487
NOAA-NMFS-2020-0031-DRAFT-53488

Comment from Longin Kaczmarsky
Comment from Robert Strelke
Comment from Sara Hart
Comment from Carl Taeusch
Comment from Peter Dombrowski
Comment from Tiffany Schiff
Comment from Eugenie Holmes
Comment from A Winser
Comment from Liz piercey
Comment from Longin Kaczmarsky
Comment from Eileen Conner
Comment from James Hildebrand
Comment from LAURIE ZASTROW
Comment from Bernadette Hengstebeck
Comment from Cheryl Neely
Comment from Thomas Martin
Comment from annette walsh
Comment from Connie Guyon
Comment from Corum Vickie
Comment from Joelle Shefts
Comment from Tiffany Deal
Comment from Gerritt Baker-Smith
Comment from Elena Rumiantseva
Comment from Gabrielle Blake
Comment from Brandon Kozak
Comment from Brianna Losoya-Evora
Comment from Lynn Gottschalk
Comment from Daniel Eastman
Comment from william richards
Comment from Keasha Cagle
Comment from Tiffany Deal
Comment from amy pick
Comment from Thomas Martin
Comment from Juliet Waldron
Comment from Michael Smith
Comment from Robert Mutascio
Comment from Joan Glasser
Comment from Merry Guben
Comment from Iris Shpak
Comment from Paul Jacobson
Comment from LM Drucker

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53489
NOAA-NMFS-2020-0031-DRAFT-53490
NOAA-NMFS-2020-0031-DRAFT-53491
NOAA-NMFS-2020-0031-DRAFT-53492
NOAA-NMFS-2020-0031-DRAFT-53493
NOAA-NMFS-2020-0031-DRAFT-53494
NOAA-NMFS-2020-0031-DRAFT-53495
NOAA-NMFS-2020-0031-DRAFT-53496
NOAA-NMFS-2020-0031-DRAFT-53497
NOAA-NMFS-2020-0031-DRAFT-53498
NOAA-NMFS-2020-0031-DRAFT-53499
NOAA-NMFS-2020-0031-DRAFT-53500
NOAA-NMFS-2020-0031-DRAFT-53501
NOAA-NMFS-2020-0031-DRAFT-53502
NOAA-NMFS-2020-0031-DRAFT-53503
NOAA-NMFS-2020-0031-DRAFT-53504
NOAA-NMFS-2020-0031-DRAFT-53505
NOAA-NMFS-2020-0031-DRAFT-53506
NOAA-NMFS-2020-0031-DRAFT-53507
NOAA-NMFS-2020-0031-DRAFT-53508
NOAA-NMFS-2020-0031-DRAFT-53509
NOAA-NMFS-2020-0031-DRAFT-53510
NOAA-NMFS-2020-0031-DRAFT-53511
NOAA-NMFS-2020-0031-DRAFT-53512
NOAA-NMFS-2020-0031-DRAFT-53513
NOAA-NMFS-2020-0031-DRAFT-53514
NOAA-NMFS-2020-0031-DRAFT-53515
NOAA-NMFS-2020-0031-DRAFT-53516
NOAA-NMFS-2020-0031-DRAFT-53517
NOAA-NMFS-2020-0031-DRAFT-53518
NOAA-NMFS-2020-0031-DRAFT-53519
NOAA-NMFS-2020-0031-DRAFT-53521
NOAA-NMFS-2020-0031-DRAFT-53522
NOAA-NMFS-2020-0031-DRAFT-53523
NOAA-NMFS-2020-0031-DRAFT-53524
NOAA-NMFS-2020-0031-DRAFT-53525
NOAA-NMFS-2020-0031-DRAFT-53526
NOAA-NMFS-2020-0031-DRAFT-53527
NOAA-NMFS-2020-0031-DRAFT-53528
NOAA-NMFS-2020-0031-DRAFT-53529
NOAA-NMFS-2020-0031-DRAFT-53530

Comment from Theresa Johnson
Comment from John Sutherland
Comment from Paul Bechtel
Comment from Paul Wellin
Comment from Omar Siddique
Comment from Nancy Mcbride
Comment from Pamela Westgate
Comment from Marianna Mayer
Comment from Calvin Jones
Comment from N Burrows
Comment from Patricia Foschi
Comment from Brennan, Margot
Comment from Kittrell, Sarah
Comment from Jamie Shields
Comment from Laura Elmaker
Comment from Potter, Davina
Comment from John Peterson
Comment from Rustyy Glicksman
Comment from Christopher Houghton
Comment from Fitch, Kaitlin
Comment from Rebecca Augustin
Comment from Whalen, Maureen
Comment from Harvey Kaiser
Comment from Sanchez, Sylvia
Comment from Lana Schmitt
Comment from Allan Chen
Comment from Galvin , Josephine
Comment from Goodman, Eileen
Comment from Silcox, Chris
Comment from Jaderberg, Diane
Comment from Crystal Rector
Comment from Beverly Poncia
Comment from Deborah Dickinson
Comment from Madalynn Carey
Comment from susan taylor
Comment from Edward Gentzler
Comment from Robert Kennedy
Comment from Shanna Damien
Comment from Lana Schmitt
Comment from Amelia Boyer
Comment from Holly Barr

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53531
NOAA-NMFS-2020-0031-DRAFT-53532
NOAA-NMFS-2020-0031-DRAFT-53533
NOAA-NMFS-2020-0031-DRAFT-53534
NOAA-NMFS-2020-0031-DRAFT-53535
NOAA-NMFS-2020-0031-DRAFT-53536
NOAA-NMFS-2020-0031-DRAFT-53537
NOAA-NMFS-2020-0031-DRAFT-53538
NOAA-NMFS-2020-0031-DRAFT-53539
NOAA-NMFS-2020-0031-DRAFT-53540
NOAA-NMFS-2020-0031-DRAFT-53542
NOAA-NMFS-2020-0031-DRAFT-53543
NOAA-NMFS-2020-0031-DRAFT-53544
NOAA-NMFS-2020-0031-DRAFT-53545
NOAA-NMFS-2020-0031-DRAFT-53546

Comment from Jean Johnston
Comment from Peter Sigmann
Comment from Lori Moog
Comment from Leslie Kelly
Comment from Linda Gray
Comment from Rev. Coughlin
Comment from Susan Weber
Comment from Sandra Naidich
Comment from Sandy DAmbrosio
Comment from Frances Rove
Comment from casee maxfield
Comment from Kenneth Fisher
Comment from Aggie Shapiro
Comment from Karen Deddeh
Comment from barbara cunningham

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53547

Comment from Melissa Shaffer-O'Connell

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53548
NOAA-NMFS-2020-0031-DRAFT-53549
NOAA-NMFS-2020-0031-DRAFT-53550
NOAA-NMFS-2020-0031-DRAFT-53551
NOAA-NMFS-2020-0031-DRAFT-53552
NOAA-NMFS-2020-0031-DRAFT-53553
NOAA-NMFS-2020-0031-DRAFT-53554
NOAA-NMFS-2020-0031-DRAFT-53555
NOAA-NMFS-2020-0031-DRAFT-53556
NOAA-NMFS-2020-0031-DRAFT-53557
NOAA-NMFS-2020-0031-DRAFT-53558
NOAA-NMFS-2020-0031-DRAFT-53559
NOAA-NMFS-2020-0031-DRAFT-53560
NOAA-NMFS-2020-0031-DRAFT-53561
NOAA-NMFS-2020-0031-DRAFT-53562
NOAA-NMFS-2020-0031-DRAFT-53563
NOAA-NMFS-2020-0031-DRAFT-53564
NOAA-NMFS-2020-0031-DRAFT-53565
NOAA-NMFS-2020-0031-DRAFT-53566
NOAA-NMFS-2020-0031-DRAFT-53567
NOAA-NMFS-2020-0031-DRAFT-53568
NOAA-NMFS-2020-0031-DRAFT-53569
NOAA-NMFS-2020-0031-DRAFT-53570
NOAA-NMFS-2020-0031-DRAFT-53571

Comment from Mariana Caraveo
Comment from Mary Couture
Comment from Becky McKee
Comment from Roel Cantu
Comment from Priscilla Wright
Comment from Karen Spradlin
Comment from Michele Ochsner
Comment from Linda Thompson
Comment from Vivian Woo
Comment from Bryn Frederickson
Comment from Ellen Zapf
Comment from Cynthia Kennedy
Comment from Danielle Shannon
Comment from Nancy Dillard
Comment from Sandra Britton
Comment from Anne Huber
Comment from Susan Miller
Comment from Jill Brown
Comment from Judy Young
Comment from Jan Clae
Comment from Bruce Danyluk
Comment from Annie McCann
Comment from Barbara Glassheim
Comment from James Sliger

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53572
NOAA-NMFS-2020-0031-DRAFT-53573
NOAA-NMFS-2020-0031-DRAFT-53574
NOAA-NMFS-2020-0031-DRAFT-53575
NOAA-NMFS-2020-0031-DRAFT-53576
NOAA-NMFS-2020-0031-DRAFT-53577
NOAA-NMFS-2020-0031-DRAFT-53578
NOAA-NMFS-2020-0031-DRAFT-53579
NOAA-NMFS-2020-0031-DRAFT-53580
NOAA-NMFS-2020-0031-DRAFT-53581
NOAA-NMFS-2020-0031-DRAFT-53582
NOAA-NMFS-2020-0031-DRAFT-53583
NOAA-NMFS-2020-0031-DRAFT-53584
NOAA-NMFS-2020-0031-DRAFT-53585
NOAA-NMFS-2020-0031-DRAFT-53586
NOAA-NMFS-2020-0031-DRAFT-53587
NOAA-NMFS-2020-0031-DRAFT-53588
NOAA-NMFS-2020-0031-DRAFT-53589
NOAA-NMFS-2020-0031-DRAFT-53590
NOAA-NMFS-2020-0031-DRAFT-53591
NOAA-NMFS-2020-0031-DRAFT-53593
NOAA-NMFS-2020-0031-DRAFT-53594
NOAA-NMFS-2020-0031-DRAFT-53595
NOAA-NMFS-2020-0031-DRAFT-53596
NOAA-NMFS-2020-0031-DRAFT-53597
NOAA-NMFS-2020-0031-DRAFT-53598
NOAA-NMFS-2020-0031-DRAFT-53599
NOAA-NMFS-2020-0031-DRAFT-53600
NOAA-NMFS-2020-0031-DRAFT-53601
NOAA-NMFS-2020-0031-DRAFT-53602
NOAA-NMFS-2020-0031-DRAFT-53603
NOAA-NMFS-2020-0031-DRAFT-53604
NOAA-NMFS-2020-0031-DRAFT-53605
NOAA-NMFS-2020-0031-DRAFT-53606
NOAA-NMFS-2020-0031-DRAFT-53607
NOAA-NMFS-2020-0031-DRAFT-53608
NOAA-NMFS-2020-0031-DRAFT-53609
NOAA-NMFS-2020-0031-DRAFT-53610
NOAA-NMFS-2020-0031-DRAFT-53611
NOAA-NMFS-2020-0031-DRAFT-53612
NOAA-NMFS-2020-0031-DRAFT-53613

Comment from Don Dicken
Comment from Crystal Mitchell
Comment from Cheryl Dean
Comment from William Anderson
Comment from Margaret Burns
Comment from Janice Carlucci
Comment from Abigail Krivak
Comment from Ellen Collins
Comment from Emily Metz
Comment from Misa Y
Comment from M K
Comment from EILEEN MASSEY
Comment from Rhonda pulliam
Comment from Jamie Quednau
Comment from Tanya Gilula
Comment from gibson reynolds
Comment from Barbara Zavilowicz
Comment from Linda Hall
Comment from Adam DOnofrio
Comment from Jennifer Roady
Comment from Judith Allen
Comment from Laurel Kearns
Comment from Rich InLove
Comment from Colleen Kelly
Comment from Jan Cunningham
Comment from Strachan Pindar
Comment from Jeff Garmon
Comment from claire phillips
Comment from Melvin Cheitlin
Comment from Jacquelyn Scioscia
Comment from Jessica Cresseveur
Comment from Michael Fine
Comment from sandra osser-gaspar
Comment from Gra Diemand
Comment from Ann Rogerson
Comment from Valerie McCarty
Comment from James Southerland
Comment from Francisco Mercado
Comment from linda pink
Comment from Luwana dyer
Comment from Metta Lieb

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03/01/2021
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03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53614
NOAA-NMFS-2020-0031-DRAFT-53615
NOAA-NMFS-2020-0031-DRAFT-53616
NOAA-NMFS-2020-0031-DRAFT-53617
NOAA-NMFS-2020-0031-DRAFT-53618
NOAA-NMFS-2020-0031-DRAFT-53619
NOAA-NMFS-2020-0031-DRAFT-53620
NOAA-NMFS-2020-0031-DRAFT-53621
NOAA-NMFS-2020-0031-DRAFT-53622
NOAA-NMFS-2020-0031-DRAFT-53623
NOAA-NMFS-2020-0031-DRAFT-53624
NOAA-NMFS-2020-0031-DRAFT-53625
NOAA-NMFS-2020-0031-DRAFT-53626
NOAA-NMFS-2020-0031-DRAFT-53627
NOAA-NMFS-2020-0031-DRAFT-53628
NOAA-NMFS-2020-0031-DRAFT-53629
NOAA-NMFS-2020-0031-DRAFT-53630
NOAA-NMFS-2020-0031-DRAFT-53631
NOAA-NMFS-2020-0031-DRAFT-53632
NOAA-NMFS-2020-0031-DRAFT-53633
NOAA-NMFS-2020-0031-DRAFT-53634
NOAA-NMFS-2020-0031-DRAFT-53635
NOAA-NMFS-2020-0031-DRAFT-53636
NOAA-NMFS-2020-0031-DRAFT-53637
NOAA-NMFS-2020-0031-DRAFT-53638
NOAA-NMFS-2020-0031-DRAFT-53639
NOAA-NMFS-2020-0031-DRAFT-53640
NOAA-NMFS-2020-0031-DRAFT-53641
NOAA-NMFS-2020-0031-DRAFT-53642
NOAA-NMFS-2020-0031-DRAFT-53643
NOAA-NMFS-2020-0031-DRAFT-53644
NOAA-NMFS-2020-0031-DRAFT-53645
NOAA-NMFS-2020-0031-DRAFT-53646
NOAA-NMFS-2020-0031-DRAFT-53647
NOAA-NMFS-2020-0031-DRAFT-53648
NOAA-NMFS-2020-0031-DRAFT-53649
NOAA-NMFS-2020-0031-DRAFT-53650
NOAA-NMFS-2020-0031-DRAFT-53651
NOAA-NMFS-2020-0031-DRAFT-53652
NOAA-NMFS-2020-0031-DRAFT-53653
NOAA-NMFS-2020-0031-DRAFT-53655

Comment from Erica Jourdan
Comment from Ellen Saunders
Comment from JESSICA FIELDEN
Comment from Wendelin Giebel
Comment from Greg Espe
Comment from Elaine Johnson
Comment from Yvonne Coffey
Comment from Joseph Azzarello
Comment from Heidi Fielding
Comment from WENDY FOSSA
Comment from Jennifer Doob
Comment from Bruce Cohen
Comment from Carol Steinhart
Comment from Eugene Perkins
Comment from Colonel Meyer
Comment from Pamela Dowd
Comment from Margaret Caulder
Comment from Maya Kurtz
Comment from Megan Faber
Comment from James Dawson
Comment from Stephen Edinger
Comment from Rae Furcha
Comment from Iris Yermak
Comment from Patricia Reed
Comment from Gregory Hill
Comment from Rob Barron
Comment from Barbara Hines
Comment from john thomas
Comment from Lisa Seitz
Comment from Nicola Nicolai
Comment from Adele Myers
Comment from Jane Bidinian
Comment from Trish Hicks
Comment from Marjorie Rathbone
Comment from Teresa Mays
Comment from Bonnie RN
Comment from Valerie Collins
Comment from Denise Hosta
Comment from Shira Miess
Comment from Walt Luerken
Comment from Doris Luther

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53656
NOAA-NMFS-2020-0031-DRAFT-53657
NOAA-NMFS-2020-0031-DRAFT-53658
NOAA-NMFS-2020-0031-DRAFT-53659
NOAA-NMFS-2020-0031-DRAFT-53660
NOAA-NMFS-2020-0031-DRAFT-53661
NOAA-NMFS-2020-0031-DRAFT-53662
NOAA-NMFS-2020-0031-DRAFT-53663
NOAA-NMFS-2020-0031-DRAFT-53665
NOAA-NMFS-2020-0031-DRAFT-53666
NOAA-NMFS-2020-0031-DRAFT-53667
NOAA-NMFS-2020-0031-DRAFT-53668
NOAA-NMFS-2020-0031-DRAFT-53669
NOAA-NMFS-2020-0031-DRAFT-53670
NOAA-NMFS-2020-0031-DRAFT-53671
NOAA-NMFS-2020-0031-DRAFT-53672
NOAA-NMFS-2020-0031-DRAFT-53673
NOAA-NMFS-2020-0031-DRAFT-53674
NOAA-NMFS-2020-0031-DRAFT-53675
NOAA-NMFS-2020-0031-DRAFT-53676
NOAA-NMFS-2020-0031-DRAFT-53677
NOAA-NMFS-2020-0031-DRAFT-53678
NOAA-NMFS-2020-0031-DRAFT-53679
NOAA-NMFS-2020-0031-DRAFT-53680
NOAA-NMFS-2020-0031-DRAFT-53681
NOAA-NMFS-2020-0031-DRAFT-53682
NOAA-NMFS-2020-0031-DRAFT-53683
NOAA-NMFS-2020-0031-DRAFT-53684
NOAA-NMFS-2020-0031-DRAFT-53685
NOAA-NMFS-2020-0031-DRAFT-53686
NOAA-NMFS-2020-0031-DRAFT-53687
NOAA-NMFS-2020-0031-DRAFT-53688
NOAA-NMFS-2020-0031-DRAFT-53689
NOAA-NMFS-2020-0031-DRAFT-53690
NOAA-NMFS-2020-0031-DRAFT-53691
NOAA-NMFS-2020-0031-DRAFT-53692
NOAA-NMFS-2020-0031-DRAFT-53693
NOAA-NMFS-2020-0031-DRAFT-53694
NOAA-NMFS-2020-0031-DRAFT-53695
NOAA-NMFS-2020-0031-DRAFT-53696
NOAA-NMFS-2020-0031-DRAFT-53698

Comment from henry Biggins
Comment from Susan Goldin
Comment from Silvana Depetris
Comment from Helen Findley
Comment from lauren horwitz
Comment from Greg Weber
Comment from Terri David
Comment from A. Hart
Comment from Shelley Driskell
Comment from Theodore Bouloukos
Comment from Cheryl Sheldon
Comment from Lisa Acher
Comment from dawn kenyon
Comment from Ellen Peterson
Comment from Margaret Silver
Comment from Patrick Doyle
Comment from Lori Girshick
Comment from Lori Pellizzari
Comment from judy pizarro
Comment from Rustyy Glicksman
Comment from Suzanne Botts
Comment from Karen Hiller
Comment from Susan Lubianez
Comment from Shea Rowan
Comment from Carol Helm
Comment from Gabriela Romanow
Comment from Anne Hoop
Comment from Angela Duronio
Comment from Allison Davis
Comment from Patricia Keoughan
Comment from James Hadcroft
Comment from Brian Gibbons
Comment from Barbara Methvin
Comment from James Klein
Comment from Jean Thompson
Comment from Glenda Logan
Comment from Olga Gonzalez
Comment from Ines Moorhouse
Comment from Dennis Ledden
Comment from Hal Glidden
Comment from Judith Embry

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53699
NOAA-NMFS-2020-0031-DRAFT-53701
NOAA-NMFS-2020-0031-DRAFT-53702
NOAA-NMFS-2020-0031-DRAFT-53703
NOAA-NMFS-2020-0031-DRAFT-53704
NOAA-NMFS-2020-0031-DRAFT-53705
NOAA-NMFS-2020-0031-DRAFT-53706
NOAA-NMFS-2020-0031-DRAFT-53707
NOAA-NMFS-2020-0031-DRAFT-53708
NOAA-NMFS-2020-0031-DRAFT-53709
NOAA-NMFS-2020-0031-DRAFT-53710
NOAA-NMFS-2020-0031-DRAFT-53711
NOAA-NMFS-2020-0031-DRAFT-53712
NOAA-NMFS-2020-0031-DRAFT-53713
NOAA-NMFS-2020-0031-DRAFT-53714
NOAA-NMFS-2020-0031-DRAFT-53715
NOAA-NMFS-2020-0031-DRAFT-53716
NOAA-NMFS-2020-0031-DRAFT-53717
NOAA-NMFS-2020-0031-DRAFT-53718
NOAA-NMFS-2020-0031-DRAFT-53719
NOAA-NMFS-2020-0031-DRAFT-53720
NOAA-NMFS-2020-0031-DRAFT-53721
NOAA-NMFS-2020-0031-DRAFT-53722
NOAA-NMFS-2020-0031-DRAFT-53723
NOAA-NMFS-2020-0031-DRAFT-53724
NOAA-NMFS-2020-0031-DRAFT-53725
NOAA-NMFS-2020-0031-DRAFT-53726
NOAA-NMFS-2020-0031-DRAFT-53727
NOAA-NMFS-2020-0031-DRAFT-53728
NOAA-NMFS-2020-0031-DRAFT-53729
NOAA-NMFS-2020-0031-DRAFT-53730
NOAA-NMFS-2020-0031-DRAFT-53731
NOAA-NMFS-2020-0031-DRAFT-53732
NOAA-NMFS-2020-0031-DRAFT-53733
NOAA-NMFS-2020-0031-DRAFT-53734
NOAA-NMFS-2020-0031-DRAFT-53736
NOAA-NMFS-2020-0031-DRAFT-53737
NOAA-NMFS-2020-0031-DRAFT-53738
NOAA-NMFS-2020-0031-DRAFT-53739
NOAA-NMFS-2020-0031-DRAFT-53740
NOAA-NMFS-2020-0031-DRAFT-53741

Comment from Laurel Facey
Comment from Esther Prexl
Comment from Evelyn Adams
Comment from Richard Harden
Comment from Katherine Mayers
Comment from Beverly Barbosa
Comment from Susan Lambert
Comment from Sandra Falcon
Comment from Marci Cochran
Comment from Kim Seger
Comment from Sarah Bauman
Comment from Julia Hartman
Comment from Lisa Caldwell
Comment from ISABEL CERVERA
Comment from caroline CONNOR
Comment from Nancy Hall
Comment from Ruliffson Mary
Comment from KIM EMERSON
Comment from Mindie Sivey
Comment from Gerald Wambach
Comment from Jennifer Rials
Comment from Marjorie Holcombe
Comment from Laura Tartaglia
Comment from Catherine Saint-Clair
Comment from Michael Lawrence
Comment from V. Euripides
Comment from Tracy Foster
Comment from Lisa Piner
Comment from H.M. Sustaita
Comment from natalia barriola
Comment from Christi DeMark
Comment from Howard Petlack
Comment from Barby Ulmer
Comment from Sharon Fetter
Comment from Walter Erhorn
Comment from Brad Rea
Comment from kellyann morander
Comment from Jeanne Tweedy
Comment from Gail Snyder
Comment from Maria Jablonska
Comment from Mike Fegan

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53742
NOAA-NMFS-2020-0031-DRAFT-53743
NOAA-NMFS-2020-0031-DRAFT-53744
NOAA-NMFS-2020-0031-DRAFT-53745
NOAA-NMFS-2020-0031-DRAFT-53746
NOAA-NMFS-2020-0031-DRAFT-53747
NOAA-NMFS-2020-0031-DRAFT-53748
NOAA-NMFS-2020-0031-DRAFT-53749
NOAA-NMFS-2020-0031-DRAFT-53750
NOAA-NMFS-2020-0031-DRAFT-53751
NOAA-NMFS-2020-0031-DRAFT-53752
NOAA-NMFS-2020-0031-DRAFT-53753
NOAA-NMFS-2020-0031-DRAFT-53754
NOAA-NMFS-2020-0031-DRAFT-53755
NOAA-NMFS-2020-0031-DRAFT-53756
NOAA-NMFS-2020-0031-DRAFT-53757
NOAA-NMFS-2020-0031-DRAFT-53758
NOAA-NMFS-2020-0031-DRAFT-53759
NOAA-NMFS-2020-0031-DRAFT-53760
NOAA-NMFS-2020-0031-DRAFT-53761
NOAA-NMFS-2020-0031-DRAFT-53762
NOAA-NMFS-2020-0031-DRAFT-53763
NOAA-NMFS-2020-0031-DRAFT-53764
NOAA-NMFS-2020-0031-DRAFT-53765
NOAA-NMFS-2020-0031-DRAFT-53766
NOAA-NMFS-2020-0031-DRAFT-53767
NOAA-NMFS-2020-0031-DRAFT-53768
NOAA-NMFS-2020-0031-DRAFT-53770
NOAA-NMFS-2020-0031-DRAFT-53771
NOAA-NMFS-2020-0031-DRAFT-53772
NOAA-NMFS-2020-0031-DRAFT-53773
NOAA-NMFS-2020-0031-DRAFT-53774
NOAA-NMFS-2020-0031-DRAFT-53775
NOAA-NMFS-2020-0031-DRAFT-53776
NOAA-NMFS-2020-0031-DRAFT-53777
NOAA-NMFS-2020-0031-DRAFT-53778
NOAA-NMFS-2020-0031-DRAFT-53779
NOAA-NMFS-2020-0031-DRAFT-53780
NOAA-NMFS-2020-0031-DRAFT-53781
NOAA-NMFS-2020-0031-DRAFT-53782
NOAA-NMFS-2020-0031-DRAFT-53783

Comment from stephen Stone
Comment from B Van Camp
Comment from Laurie Malin
Comment from Maurice Samuels
Comment from Andrea Schnitzler
Comment from Diane Franson
Comment from Monica Trujillo
Comment from Zola Packman
Comment from MARTIN EHLEN
Comment from Catherine Holzman
Comment from Patricia Frederick
Comment from Jana McGee
Comment from Alexandra McCardell
Comment from Andrea Zemel
Comment from Janet Bernhard
Comment from charles rinear
Comment from Sandy Menden
Comment from Kathleen Mireault
Comment from Beverly Solomon
Comment from jonette bronson
Comment from Elizabeth Roberts
Comment from Etta Robin
Comment from bart rivezzi
Comment from Victoria Olson
Comment from Jennifer Scott
Comment from David Schnitzler
Comment from J. Beverly
Comment from Katrin Winterer
Comment from Cheryl Sheldon
Comment from Elizabeth Roberts
Comment from Eva Landeo
Comment from Maria Asteinza
Comment from Sophia McAllister
Comment from Barbara Cross-Tedesco
Comment from Brittany Barringer
Comment from Barbara Glaeser
Comment from Charlotte Reichert
Comment from Beverly Solomon
Comment from Boyce Sherwin
Comment from Alex Savory
Comment from Ken Anderson

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53784
NOAA-NMFS-2020-0031-DRAFT-53785
NOAA-NMFS-2020-0031-DRAFT-53786
NOAA-NMFS-2020-0031-DRAFT-53787
NOAA-NMFS-2020-0031-DRAFT-53788
NOAA-NMFS-2020-0031-DRAFT-53790
NOAA-NMFS-2020-0031-DRAFT-53791
NOAA-NMFS-2020-0031-DRAFT-53792
NOAA-NMFS-2020-0031-DRAFT-53793
NOAA-NMFS-2020-0031-DRAFT-53794
NOAA-NMFS-2020-0031-DRAFT-53795
NOAA-NMFS-2020-0031-DRAFT-53796
NOAA-NMFS-2020-0031-DRAFT-53797
NOAA-NMFS-2020-0031-DRAFT-53798
NOAA-NMFS-2020-0031-DRAFT-53799
NOAA-NMFS-2020-0031-DRAFT-53801
NOAA-NMFS-2020-0031-DRAFT-53802
NOAA-NMFS-2020-0031-DRAFT-53803
NOAA-NMFS-2020-0031-DRAFT-53804
NOAA-NMFS-2020-0031-DRAFT-53805
NOAA-NMFS-2020-0031-DRAFT-53806
NOAA-NMFS-2020-0031-DRAFT-53807
NOAA-NMFS-2020-0031-DRAFT-53808
NOAA-NMFS-2020-0031-DRAFT-53809
NOAA-NMFS-2020-0031-DRAFT-53810
NOAA-NMFS-2020-0031-DRAFT-53811
NOAA-NMFS-2020-0031-DRAFT-53812
NOAA-NMFS-2020-0031-DRAFT-53813
NOAA-NMFS-2020-0031-DRAFT-53814
NOAA-NMFS-2020-0031-DRAFT-53815
NOAA-NMFS-2020-0031-DRAFT-53816
NOAA-NMFS-2020-0031-DRAFT-53817
NOAA-NMFS-2020-0031-DRAFT-53818
NOAA-NMFS-2020-0031-DRAFT-53819
NOAA-NMFS-2020-0031-DRAFT-53820
NOAA-NMFS-2020-0031-DRAFT-53821
NOAA-NMFS-2020-0031-DRAFT-53822
NOAA-NMFS-2020-0031-DRAFT-53823
NOAA-NMFS-2020-0031-DRAFT-53824
NOAA-NMFS-2020-0031-DRAFT-53825
NOAA-NMFS-2020-0031-DRAFT-53826

Comment from Lynette Ridder
Comment from Susan Rives-Denight
Comment from Cindy Reid
Comment from Karen Spehar
Comment from Anne Gagnon
Comment from Karin Hansen
Comment from Gregory Scott
Comment from Michalle Gleason
Comment from Lanette Rapp
Comment from Elizabeth Golden
Comment from Ellen Osborne
Comment from Peter Crean
Comment from Wendy Stevens
Comment from Philip Selleck
Comment from Richard Tarnawski
Comment from Karen Lund
Comment from Linda Jennings
Comment from Frances Bryant
Comment from Bob Sipe
Comment from George Marsh
Comment from Betsy Daniels
Comment from Lisa Smith
Comment from Jean Saja
Comment from Elena Knox
Comment from KAREN HODGES
Comment from Ellen Osborne
Comment from ronald fuchs
Comment from Cecile Ervin
Comment from Danielle Miele
Comment from David Coleman
Comment from Ann Downey
Comment from Greg Nicholas
Comment from Mohnack, Patty
Comment from Hanse , Joan
Comment from Eileen Bender
Comment from Anna Ferguson
Comment from ajaj, laura
Comment from Dikeman, Michael
Comment from margaret donovan
Comment from Donna Charter
Comment from Ludmilla Ilieff

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03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53827
NOAA-NMFS-2020-0031-DRAFT-53828
NOAA-NMFS-2020-0031-DRAFT-53829
NOAA-NMFS-2020-0031-DRAFT-53830
NOAA-NMFS-2020-0031-DRAFT-53831
NOAA-NMFS-2020-0031-DRAFT-53832
NOAA-NMFS-2020-0031-DRAFT-53833
NOAA-NMFS-2020-0031-DRAFT-53834
NOAA-NMFS-2020-0031-DRAFT-53835
NOAA-NMFS-2020-0031-DRAFT-53836
NOAA-NMFS-2020-0031-DRAFT-53837
NOAA-NMFS-2020-0031-DRAFT-53838
NOAA-NMFS-2020-0031-DRAFT-53839
NOAA-NMFS-2020-0031-DRAFT-53840
NOAA-NMFS-2020-0031-DRAFT-53841
NOAA-NMFS-2020-0031-DRAFT-53842
NOAA-NMFS-2020-0031-DRAFT-53843
NOAA-NMFS-2020-0031-DRAFT-53844
NOAA-NMFS-2020-0031-DRAFT-53845
NOAA-NMFS-2020-0031-DRAFT-53846
NOAA-NMFS-2020-0031-DRAFT-53847
NOAA-NMFS-2020-0031-DRAFT-53848
NOAA-NMFS-2020-0031-DRAFT-53850
NOAA-NMFS-2020-0031-DRAFT-53851
NOAA-NMFS-2020-0031-DRAFT-53852
NOAA-NMFS-2020-0031-DRAFT-53853
NOAA-NMFS-2020-0031-DRAFT-53854
NOAA-NMFS-2020-0031-DRAFT-53855
NOAA-NMFS-2020-0031-DRAFT-53856
NOAA-NMFS-2020-0031-DRAFT-53857
NOAA-NMFS-2020-0031-DRAFT-53859
NOAA-NMFS-2020-0031-DRAFT-53860
NOAA-NMFS-2020-0031-DRAFT-53861
NOAA-NMFS-2020-0031-DRAFT-53862
NOAA-NMFS-2020-0031-DRAFT-53863
NOAA-NMFS-2020-0031-DRAFT-53864
NOAA-NMFS-2020-0031-DRAFT-53865
NOAA-NMFS-2020-0031-DRAFT-53866
NOAA-NMFS-2020-0031-DRAFT-53867
NOAA-NMFS-2020-0031-DRAFT-53868
NOAA-NMFS-2020-0031-DRAFT-53869

Comment from Tina Brown
Comment from Asato, Jennifer
Comment from Van Dien, Linda
Comment from cheryl watters
Comment from Cummins, Samantha
Comment from Robert Martin
Comment from DONOVAN, CHARLENE
Comment from Redman-Smith, JoAnna
Comment from Schlansky, L. Beth
Comment from Paulk, Jessic
Comment from Lisa Tretheway
Comment from Trophy, Amber
Comment from Mal Gaff
Comment from Melissa calocerinos
Comment from Gerald Walsh
Comment from David Whiteman
Comment from Beth Seiler
Comment from Carl Prellwitz
Comment from Kathleen Shea
Comment from Scott Heinze
Comment from Jeffrey Bains
Comment from Jeffrey Bains
Comment from Cristina Fiorillo
Comment from Rusty Jackson
Comment from Lisha Doucet
Comment from hadlock whale
Comment from Suzanne Kindland
Comment from Kathleen Jacecko
Comment from Kimberly Hoffman
Comment from Mary wishnosky
Comment from Pamela Cubberly
Comment from Penny Hammack
Comment from Douglas Cooke
Comment from Diana Snow
Comment from Jody Tatum
Comment from Scott Jennings
Comment from Midori Nakayama
Comment from Riley Canada
Comment from Tim Duda
Comment from Georgia Shankel
Comment from Teresia LaFleur

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53870
NOAA-NMFS-2020-0031-DRAFT-53871
NOAA-NMFS-2020-0031-DRAFT-53872
NOAA-NMFS-2020-0031-DRAFT-53873
NOAA-NMFS-2020-0031-DRAFT-53874
NOAA-NMFS-2020-0031-DRAFT-53875
NOAA-NMFS-2020-0031-DRAFT-53876
NOAA-NMFS-2020-0031-DRAFT-53877
NOAA-NMFS-2020-0031-DRAFT-53878
NOAA-NMFS-2020-0031-DRAFT-53879
NOAA-NMFS-2020-0031-DRAFT-53880
NOAA-NMFS-2020-0031-DRAFT-53881
NOAA-NMFS-2020-0031-DRAFT-53882
NOAA-NMFS-2020-0031-DRAFT-53883
NOAA-NMFS-2020-0031-DRAFT-53884
NOAA-NMFS-2020-0031-DRAFT-53886
NOAA-NMFS-2020-0031-DRAFT-53887
NOAA-NMFS-2020-0031-DRAFT-53888
NOAA-NMFS-2020-0031-DRAFT-53889
NOAA-NMFS-2020-0031-DRAFT-53890
NOAA-NMFS-2020-0031-DRAFT-53891
NOAA-NMFS-2020-0031-DRAFT-53892
NOAA-NMFS-2020-0031-DRAFT-53893
NOAA-NMFS-2020-0031-DRAFT-53894
NOAA-NMFS-2020-0031-DRAFT-53895
NOAA-NMFS-2020-0031-DRAFT-53896
NOAA-NMFS-2020-0031-DRAFT-53897
NOAA-NMFS-2020-0031-DRAFT-53898
NOAA-NMFS-2020-0031-DRAFT-53899
NOAA-NMFS-2020-0031-DRAFT-53900
NOAA-NMFS-2020-0031-DRAFT-53901
NOAA-NMFS-2020-0031-DRAFT-53902
NOAA-NMFS-2020-0031-DRAFT-53903
NOAA-NMFS-2020-0031-DRAFT-53904
NOAA-NMFS-2020-0031-DRAFT-53905
NOAA-NMFS-2020-0031-DRAFT-53906
NOAA-NMFS-2020-0031-DRAFT-53907
NOAA-NMFS-2020-0031-DRAFT-53908
NOAA-NMFS-2020-0031-DRAFT-53909
NOAA-NMFS-2020-0031-DRAFT-53911
NOAA-NMFS-2020-0031-DRAFT-53912

Comment from Elizabeth Leitao
Comment from Meaghan Leavitt
Comment from Jacquelyn Barnes
Comment from Beverly Poncia
Comment from Frances Heath
Comment from Alice Felix
Comment from Nancy Rupp
Comment from Ellen Laverdure
Comment from Douglas Cooke
Comment from Cynthia Crittenton
Comment from Christine Wrazen
Comment from Wendy Bowman
Comment from kim java
Comment from Aaron Nolcox-Porter
Comment from Marci Robinson
Comment from Diane Pierce
Comment from Norma Odell
Comment from Richard Perkowski
Comment from Patti Miller
Comment from Brenda Smith
Comment from Greg Nielson
Comment from Francie Fillatti
Comment from Sophie Herndon
Comment from Knight, Eric
Comment from Sheila Tran
Comment from Nahum Nicholas
Comment from Don Allard
Comment from MARIA RODRIGUEZ
Comment from Debra Renfrew
Comment from Tim Barrington
Comment from Kevin Brehm
Comment from Sara Kane
Comment from Jeanne Moskal
Comment from Chri Stoltzner
Comment from Leslie Kuhn
Comment from Christine Fergusson
Comment from John Doucette
Comment from Judi Poulson
Comment from Paul Wilkins
Comment from Margaret Morgan
Comment from Rebecca Stone-Ready

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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53913
NOAA-NMFS-2020-0031-DRAFT-53914
NOAA-NMFS-2020-0031-DRAFT-53915
NOAA-NMFS-2020-0031-DRAFT-53916
NOAA-NMFS-2020-0031-DRAFT-53917
NOAA-NMFS-2020-0031-DRAFT-53918
NOAA-NMFS-2020-0031-DRAFT-53919
NOAA-NMFS-2020-0031-DRAFT-53921
NOAA-NMFS-2020-0031-DRAFT-53922
NOAA-NMFS-2020-0031-DRAFT-53923
NOAA-NMFS-2020-0031-DRAFT-53924
NOAA-NMFS-2020-0031-DRAFT-53925
NOAA-NMFS-2020-0031-DRAFT-53926
NOAA-NMFS-2020-0031-DRAFT-53927
NOAA-NMFS-2020-0031-DRAFT-53928
NOAA-NMFS-2020-0031-DRAFT-53929
NOAA-NMFS-2020-0031-DRAFT-53930
NOAA-NMFS-2020-0031-DRAFT-53931
NOAA-NMFS-2020-0031-DRAFT-53932
NOAA-NMFS-2020-0031-DRAFT-53933
NOAA-NMFS-2020-0031-DRAFT-53934
NOAA-NMFS-2020-0031-DRAFT-53935
NOAA-NMFS-2020-0031-DRAFT-53936
NOAA-NMFS-2020-0031-DRAFT-53937
NOAA-NMFS-2020-0031-DRAFT-53938
NOAA-NMFS-2020-0031-DRAFT-53939
NOAA-NMFS-2020-0031-DRAFT-53940
NOAA-NMFS-2020-0031-DRAFT-53941
NOAA-NMFS-2020-0031-DRAFT-53942
NOAA-NMFS-2020-0031-DRAFT-53943
NOAA-NMFS-2020-0031-DRAFT-53944
NOAA-NMFS-2020-0031-DRAFT-53945
NOAA-NMFS-2020-0031-DRAFT-53946
NOAA-NMFS-2020-0031-DRAFT-53947
NOAA-NMFS-2020-0031-DRAFT-53948
NOAA-NMFS-2020-0031-DRAFT-53949
NOAA-NMFS-2020-0031-DRAFT-53950
NOAA-NMFS-2020-0031-DRAFT-53951
NOAA-NMFS-2020-0031-DRAFT-53952
NOAA-NMFS-2020-0031-DRAFT-53953
NOAA-NMFS-2020-0031-DRAFT-53954

Comment from Geoffrey McCluskey
Comment from Leon Schmidt
Comment from Susan Eubin
Comment from Michele Ochsner
Comment from Pilar Quintana
Comment from Richard Guier
Comment from Lanny Fiorillo
Comment from John Bradshaw
Comment from Eric Edwards
Comment from Nancy Mead
Comment from Vidya Sivan
Comment from Billie Abbott
Comment from Lynn Richardson
Comment from SUSAN BURIAN
Comment from Patricia Heron
Comment from Larry Weingart
Comment from s l
Comment from Jennifer Kraemer
Comment from Gloria Shen
Comment from Susan Lowe
Comment from Phyl Morello
Comment from Tina Wilson
Comment from doug franklin
Comment from George Grant
Comment from DAWNE SANTOPIETRO
Comment from Alice Petesen
Comment from patricia sullivan
Comment from Laurie Thompson
Comment from Bernie Gonzales
Comment from Dave Lipstreu
Comment from Pat Ellison
Comment from Jane Zimmerman
Comment from Ellen DeMarco
Comment from Krista Krista
Comment from Shirley Hale
Comment from Sharon McNamara
Comment from Judy Green
Comment from Ulle Ruben
Comment from Tiffany Grant
Comment from Kelly Fiske
Comment from Jamie Shields

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53955
NOAA-NMFS-2020-0031-DRAFT-53956
NOAA-NMFS-2020-0031-DRAFT-53957
NOAA-NMFS-2020-0031-DRAFT-53958
NOAA-NMFS-2020-0031-DRAFT-53959
NOAA-NMFS-2020-0031-DRAFT-53961
NOAA-NMFS-2020-0031-DRAFT-53962
NOAA-NMFS-2020-0031-DRAFT-53963
NOAA-NMFS-2020-0031-DRAFT-53964
NOAA-NMFS-2020-0031-DRAFT-53965
NOAA-NMFS-2020-0031-DRAFT-53966
NOAA-NMFS-2020-0031-DRAFT-53967
NOAA-NMFS-2020-0031-DRAFT-53968
NOAA-NMFS-2020-0031-DRAFT-53969
NOAA-NMFS-2020-0031-DRAFT-53970
NOAA-NMFS-2020-0031-DRAFT-53971
NOAA-NMFS-2020-0031-DRAFT-53972
NOAA-NMFS-2020-0031-DRAFT-53973
NOAA-NMFS-2020-0031-DRAFT-53974
NOAA-NMFS-2020-0031-DRAFT-53975
NOAA-NMFS-2020-0031-DRAFT-53976
NOAA-NMFS-2020-0031-DRAFT-53977
NOAA-NMFS-2020-0031-DRAFT-53978
NOAA-NMFS-2020-0031-DRAFT-53979
NOAA-NMFS-2020-0031-DRAFT-53980
NOAA-NMFS-2020-0031-DRAFT-53981
NOAA-NMFS-2020-0031-DRAFT-53982
NOAA-NMFS-2020-0031-DRAFT-53983
NOAA-NMFS-2020-0031-DRAFT-53984
NOAA-NMFS-2020-0031-DRAFT-53985
NOAA-NMFS-2020-0031-DRAFT-53986
NOAA-NMFS-2020-0031-DRAFT-53987
NOAA-NMFS-2020-0031-DRAFT-53988
NOAA-NMFS-2020-0031-DRAFT-53990
NOAA-NMFS-2020-0031-DRAFT-53991
NOAA-NMFS-2020-0031-DRAFT-53992
NOAA-NMFS-2020-0031-DRAFT-53993
NOAA-NMFS-2020-0031-DRAFT-53994
NOAA-NMFS-2020-0031-DRAFT-53995
NOAA-NMFS-2020-0031-DRAFT-53997
NOAA-NMFS-2020-0031-DRAFT-53999

Comment from Joshua Paterno
Comment from Gabriel Amaro
Comment from Kevin Brown
Comment from Jason Kemple
Comment from Debbie Schwer
Comment from Kathy Spera
Comment from Orlando Melendez
Comment from Michael Eversmier
Comment from Katherine Hanly
Comment from Glenda Lilling
Comment from Carol Loomis
Comment from Lisa Mistretta
Comment from Susan Levin
Comment from Lee White
Comment from Amber Sumrall
Comment from Patricia Richard-Amato
Comment from Jamie santos
Comment from Eric Edwards
Comment from Lou Reznew
Comment from Tammy Bransford
Comment from fay forman
Comment from Cherine Bauer
Comment from Taryn Braband
Comment from Roger May
Comment from Julio Andujar
Comment from John Provencher
Comment from Todd Priest
Comment from VeZolles Celeste
Comment from Bobbie Howard
Comment from robert davidson
Comment from ROBERT KOCH
Comment from Michael Malone
Comment from Marion Lakatos
Comment from Anonymous Anonymous
Comment from Wendy Schneider
Comment from Jeffery Morgenthaler
Comment from Mark Hixon
Comment from Janice Kropczynski
Comment from Karen Redd
Comment from Peter Tafuri
Comment from Paula Summers

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54000
NOAA-NMFS-2020-0031-DRAFT-54003
NOAA-NMFS-2020-0031-DRAFT-54004
NOAA-NMFS-2020-0031-DRAFT-54005
NOAA-NMFS-2020-0031-DRAFT-54006
NOAA-NMFS-2020-0031-DRAFT-54007
NOAA-NMFS-2020-0031-DRAFT-54008
NOAA-NMFS-2020-0031-DRAFT-54009
NOAA-NMFS-2020-0031-DRAFT-54010
NOAA-NMFS-2020-0031-DRAFT-54011
NOAA-NMFS-2020-0031-DRAFT-54013
NOAA-NMFS-2020-0031-DRAFT-54014
NOAA-NMFS-2020-0031-DRAFT-54015
NOAA-NMFS-2020-0031-DRAFT-54016
NOAA-NMFS-2020-0031-DRAFT-54018
NOAA-NMFS-2020-0031-DRAFT-54019
NOAA-NMFS-2020-0031-DRAFT-54020
NOAA-NMFS-2020-0031-DRAFT-54021
NOAA-NMFS-2020-0031-DRAFT-54022
NOAA-NMFS-2020-0031-DRAFT-54023
NOAA-NMFS-2020-0031-DRAFT-54024
NOAA-NMFS-2020-0031-DRAFT-54025
NOAA-NMFS-2020-0031-DRAFT-54026
NOAA-NMFS-2020-0031-DRAFT-54027
NOAA-NMFS-2020-0031-DRAFT-54028
NOAA-NMFS-2020-0031-DRAFT-54029
NOAA-NMFS-2020-0031-DRAFT-54030
NOAA-NMFS-2020-0031-DRAFT-54031
NOAA-NMFS-2020-0031-DRAFT-54032
NOAA-NMFS-2020-0031-DRAFT-54033
NOAA-NMFS-2020-0031-DRAFT-54035
NOAA-NMFS-2020-0031-DRAFT-54036
NOAA-NMFS-2020-0031-DRAFT-54037
NOAA-NMFS-2020-0031-DRAFT-54038
NOAA-NMFS-2020-0031-DRAFT-54039
NOAA-NMFS-2020-0031-DRAFT-54040
NOAA-NMFS-2020-0031-DRAFT-54041
NOAA-NMFS-2020-0031-DRAFT-54042
NOAA-NMFS-2020-0031-DRAFT-54043
NOAA-NMFS-2020-0031-DRAFT-54044
NOAA-NMFS-2020-0031-DRAFT-54045

Comment from Gerald Walsh
Comment from Rebecca Bowles
Comment from Lauren Tartaglia
Comment from Nancy Agacinski
Comment from Ellen Callahan
Comment from bart rivezzi
Comment from Steve Englebright
Comment from Dawn Reed
Comment from Kathleen Eaton
Comment from Carl Oerke
Comment from Carlisle Ellis
Comment from Mary Guard
Comment from stacey francis
Comment from Amanda Young
Comment from Taryn Geer
Comment from Julie Baker
Comment from Mo Kafka
Comment from Marck Oconnell
Comment from sue parsell
Comment from Fletcher, Rose
Comment from Wilkin, Sue
Comment from P, Cindy
Comment from London , Joy
Comment from Reyes-Illg, Gwendolen
Comment from Sabine Williams
Comment from Robert Keim
Comment from Christy Matherne
Comment from Gentry, Sandra
Comment from Austin, Lorraine
Comment from Dickinson-Adams, Emily
Comment from Raymond Marshall
Comment from Kathleen Kiselewich
Comment from Sharon McNamara
Comment from Gwendolyn Harper
Comment from Steven Kennie
Comment from Andrew Karen
Comment from Michael Tucker
Comment from Detlef Joerss
Comment from William Claiborn
Comment from Jennifer Will
Comment from Bret Smith

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54046
NOAA-NMFS-2020-0031-DRAFT-54047
NOAA-NMFS-2020-0031-DRAFT-54049
NOAA-NMFS-2020-0031-DRAFT-54050
NOAA-NMFS-2020-0031-DRAFT-54051
NOAA-NMFS-2020-0031-DRAFT-54052
NOAA-NMFS-2020-0031-DRAFT-54053
NOAA-NMFS-2020-0031-DRAFT-54054
NOAA-NMFS-2020-0031-DRAFT-54055
NOAA-NMFS-2020-0031-DRAFT-54057
NOAA-NMFS-2020-0031-DRAFT-54058
NOAA-NMFS-2020-0031-DRAFT-54059
NOAA-NMFS-2020-0031-DRAFT-54060
NOAA-NMFS-2020-0031-DRAFT-54061
NOAA-NMFS-2020-0031-DRAFT-54062
NOAA-NMFS-2020-0031-DRAFT-54063
NOAA-NMFS-2020-0031-DRAFT-54064
NOAA-NMFS-2020-0031-DRAFT-54065
NOAA-NMFS-2020-0031-DRAFT-54067
NOAA-NMFS-2020-0031-DRAFT-54068
NOAA-NMFS-2020-0031-DRAFT-54069
NOAA-NMFS-2020-0031-DRAFT-54070
NOAA-NMFS-2020-0031-DRAFT-54071
NOAA-NMFS-2020-0031-DRAFT-54072
NOAA-NMFS-2020-0031-DRAFT-54073
NOAA-NMFS-2020-0031-DRAFT-54074
NOAA-NMFS-2020-0031-DRAFT-54075
NOAA-NMFS-2020-0031-DRAFT-54076
NOAA-NMFS-2020-0031-DRAFT-54077
NOAA-NMFS-2020-0031-DRAFT-54078
NOAA-NMFS-2020-0031-DRAFT-54079
NOAA-NMFS-2020-0031-DRAFT-54080
NOAA-NMFS-2020-0031-DRAFT-54081
NOAA-NMFS-2020-0031-DRAFT-54082
NOAA-NMFS-2020-0031-DRAFT-54083
NOAA-NMFS-2020-0031-DRAFT-54084
NOAA-NMFS-2020-0031-DRAFT-54085
NOAA-NMFS-2020-0031-DRAFT-54086
NOAA-NMFS-2020-0031-DRAFT-54087
NOAA-NMFS-2020-0031-DRAFT-54088
NOAA-NMFS-2020-0031-DRAFT-54089

Comment from Donald Evans
Comment from Patricia DeLuca
Comment from Lesley Brill
Comment from Mark Wheeler
Comment from Jane Van Praag
Comment from Andre Meaux
Comment from Kate Kenner
Comment from Virginia Dwyer
Comment from Denise White
Comment from Marce Walsh
Comment from Daniel J.
Comment from Charles Wightman
Comment from Laura Waterworth
Comment from Anonymous Anonymous
Comment from Barbara Franklin
Comment from Peter Dooley
Comment from Sandy Menden
Comment from Annie. Ryan
Comment from Richard Spotts
Comment from Esther Garvett
Comment from Linda Buckingham
Comment from Catherine Bylinowski
Comment from Mary Tuma
Comment from Daniel O'Brien
Comment from Betty Brooks
Comment from julie harrison
Comment from Earl Grove
Comment from Regan Roos
Comment from Lou Reznew
Comment from Candace Russell
Comment from Jody Kim-Eng
Comment from JJ Flowers
Comment from Peggy Patti
Comment from Roslyn Simon
Comment from Cheri Johnson
Comment from Terry Bergeron
Comment from r d
Comment from Bret Sher
Comment from Gregory Barton
Comment from Sandra Stofan
Comment from Jessica Merrill

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54090
NOAA-NMFS-2020-0031-DRAFT-54091
NOAA-NMFS-2020-0031-DRAFT-54092
NOAA-NMFS-2020-0031-DRAFT-54093
NOAA-NMFS-2020-0031-DRAFT-54094
NOAA-NMFS-2020-0031-DRAFT-54095
NOAA-NMFS-2020-0031-DRAFT-54096
NOAA-NMFS-2020-0031-DRAFT-54097
NOAA-NMFS-2020-0031-DRAFT-54098
NOAA-NMFS-2020-0031-DRAFT-54099
NOAA-NMFS-2020-0031-DRAFT-54100
NOAA-NMFS-2020-0031-DRAFT-54101
NOAA-NMFS-2020-0031-DRAFT-54102
NOAA-NMFS-2020-0031-DRAFT-54103
NOAA-NMFS-2020-0031-DRAFT-54104
NOAA-NMFS-2020-0031-DRAFT-54105
NOAA-NMFS-2020-0031-DRAFT-54106
NOAA-NMFS-2020-0031-DRAFT-54107
NOAA-NMFS-2020-0031-DRAFT-54108
NOAA-NMFS-2020-0031-DRAFT-54109
NOAA-NMFS-2020-0031-DRAFT-54110
NOAA-NMFS-2020-0031-DRAFT-54111
NOAA-NMFS-2020-0031-DRAFT-54113
NOAA-NMFS-2020-0031-DRAFT-54114
NOAA-NMFS-2020-0031-DRAFT-54115
NOAA-NMFS-2020-0031-DRAFT-54116
NOAA-NMFS-2020-0031-DRAFT-54117
NOAA-NMFS-2020-0031-DRAFT-54118
NOAA-NMFS-2020-0031-DRAFT-54119
NOAA-NMFS-2020-0031-DRAFT-54120
NOAA-NMFS-2020-0031-DRAFT-54121
NOAA-NMFS-2020-0031-DRAFT-54122
NOAA-NMFS-2020-0031-DRAFT-54123
NOAA-NMFS-2020-0031-DRAFT-54124
NOAA-NMFS-2020-0031-DRAFT-54126
NOAA-NMFS-2020-0031-DRAFT-54127
NOAA-NMFS-2020-0031-DRAFT-54128
NOAA-NMFS-2020-0031-DRAFT-54130
NOAA-NMFS-2020-0031-DRAFT-54131
NOAA-NMFS-2020-0031-DRAFT-54132
NOAA-NMFS-2020-0031-DRAFT-54133

Comment from DJ Fura
Comment from John Capece
Comment from Elana Eli
Comment from K. Youmans
Comment from Emily Estrada
Comment from Melanie Stopyra
Comment from Diana Williams
Comment from Susan Palma
Comment from Bridgett Heinly
Comment from Kevin Wiker
Comment from Jody Lewis
Comment from Lynda Edwards
Comment from paul potts
Comment from B Van Camp
Comment from Robyn Hallonquist
Comment from Charlie Bergstedt
Comment from Rustyy Glicksman
Comment from Lilli Ross
Comment from LeRene Ahart
Comment from Eric Arroyo
Comment from Laura LaVertu
Comment from Howard Rouser
Comment from Karen Spradlin
Comment from Susan DiMoia
Comment from Jean Dibble
Comment from Lauren Linda
Comment from Eugene Brusin
Comment from David Holingue
Comment from Steven Carpenter
Comment from Rita Fahrner
Comment from Laura Lambert
Comment from Joanna Welch
Comment from DEBRA STEWART
Comment from Richard Stehlik
Comment from Sarah Schiller
Comment from John Kunz
Comment from jenn fields
Comment from Karen DeSalvo
Comment from Barbara Chaffin
Comment from Maxine Bernstein
Comment from Sarah Beck

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03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54134
NOAA-NMFS-2020-0031-DRAFT-54135
NOAA-NMFS-2020-0031-DRAFT-54136
NOAA-NMFS-2020-0031-DRAFT-54137
NOAA-NMFS-2020-0031-DRAFT-54139
NOAA-NMFS-2020-0031-DRAFT-54140
NOAA-NMFS-2020-0031-DRAFT-54141
NOAA-NMFS-2020-0031-DRAFT-54142
NOAA-NMFS-2020-0031-DRAFT-54143
NOAA-NMFS-2020-0031-DRAFT-54144
NOAA-NMFS-2020-0031-DRAFT-54145
NOAA-NMFS-2020-0031-DRAFT-54146
NOAA-NMFS-2020-0031-DRAFT-54148
NOAA-NMFS-2020-0031-DRAFT-54149
NOAA-NMFS-2020-0031-DRAFT-54150
NOAA-NMFS-2020-0031-DRAFT-54151
NOAA-NMFS-2020-0031-DRAFT-54152
NOAA-NMFS-2020-0031-DRAFT-54153
NOAA-NMFS-2020-0031-DRAFT-54154
NOAA-NMFS-2020-0031-DRAFT-54155
NOAA-NMFS-2020-0031-DRAFT-54156
NOAA-NMFS-2020-0031-DRAFT-54157
NOAA-NMFS-2020-0031-DRAFT-54158
NOAA-NMFS-2020-0031-DRAFT-54159
NOAA-NMFS-2020-0031-DRAFT-54160
NOAA-NMFS-2020-0031-DRAFT-54161
NOAA-NMFS-2020-0031-DRAFT-54162
NOAA-NMFS-2020-0031-DRAFT-54163
NOAA-NMFS-2020-0031-DRAFT-54164
NOAA-NMFS-2020-0031-DRAFT-54165
NOAA-NMFS-2020-0031-DRAFT-54166
NOAA-NMFS-2020-0031-DRAFT-54167
NOAA-NMFS-2020-0031-DRAFT-54168
NOAA-NMFS-2020-0031-DRAFT-54169
NOAA-NMFS-2020-0031-DRAFT-54170
NOAA-NMFS-2020-0031-DRAFT-54172
NOAA-NMFS-2020-0031-DRAFT-54173
NOAA-NMFS-2020-0031-DRAFT-54174
NOAA-NMFS-2020-0031-DRAFT-54176
NOAA-NMFS-2020-0031-DRAFT-54177
NOAA-NMFS-2020-0031-DRAFT-54178

Comment from Brett Dennison
Comment from Erika Schiegg
Comment from Joni Brennan
Comment from Jeff Montejo
Comment from Peggy Kocoras
Comment from HENRY MILLER
Comment from Bonnie Barfield
Comment from Richard Kite
Comment from Carol Shelton
Comment from Garry Taroli
Comment from cathyelizabeth levin
Comment from M Stanley
Comment from john naylor
Comment from Laurie Leland
Comment from Michael Lawrence
Comment from James Peloquen
Comment from Lisa Gherardi
Comment from Clary Neil
Comment from Judith Weis
Comment from Julie Roe
Comment from Susan Tucker
Comment from Louis Landesman
Comment from casee maxfield
Comment from Benjamin Martin
Comment from Dirk Reed
Comment from peterson, april
Comment from Watson, Rey
Comment from Siewert, Barbara
Comment from kIshigo, Hiroko
Comment from Jensen , Judith
Comment from Brooks Obr
Comment from Charlotte Fremaux
Comment from sheheen, virginia
Comment from Priscilla mezrahi
Comment from schriener, leslie
Comment from MacDonald , Dianne
Comment from Noland, John
Comment from Sue Jarrard
Comment from Daniel Sude
Comment from Emmanuel Ramirez
Comment from Irene Heitsch

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54179
NOAA-NMFS-2020-0031-DRAFT-54180
NOAA-NMFS-2020-0031-DRAFT-54181
NOAA-NMFS-2020-0031-DRAFT-54182
NOAA-NMFS-2020-0031-DRAFT-54183
NOAA-NMFS-2020-0031-DRAFT-54184
NOAA-NMFS-2020-0031-DRAFT-54185
NOAA-NMFS-2020-0031-DRAFT-54186
NOAA-NMFS-2020-0031-DRAFT-54187
NOAA-NMFS-2020-0031-DRAFT-54188
NOAA-NMFS-2020-0031-DRAFT-54189
NOAA-NMFS-2020-0031-DRAFT-54190
NOAA-NMFS-2020-0031-DRAFT-54191
NOAA-NMFS-2020-0031-DRAFT-54192
NOAA-NMFS-2020-0031-DRAFT-54193
NOAA-NMFS-2020-0031-DRAFT-54194
NOAA-NMFS-2020-0031-DRAFT-54195
NOAA-NMFS-2020-0031-DRAFT-54197
NOAA-NMFS-2020-0031-DRAFT-54198
NOAA-NMFS-2020-0031-DRAFT-54199
NOAA-NMFS-2020-0031-DRAFT-54200
NOAA-NMFS-2020-0031-DRAFT-54201
NOAA-NMFS-2020-0031-DRAFT-54202
NOAA-NMFS-2020-0031-DRAFT-54203
NOAA-NMFS-2020-0031-DRAFT-54204
NOAA-NMFS-2020-0031-DRAFT-54205
NOAA-NMFS-2020-0031-DRAFT-54206
NOAA-NMFS-2020-0031-DRAFT-54207
NOAA-NMFS-2020-0031-DRAFT-54208
NOAA-NMFS-2020-0031-DRAFT-54210
NOAA-NMFS-2020-0031-DRAFT-54211
NOAA-NMFS-2020-0031-DRAFT-54212
NOAA-NMFS-2020-0031-DRAFT-54213
NOAA-NMFS-2020-0031-DRAFT-54214
NOAA-NMFS-2020-0031-DRAFT-54217
NOAA-NMFS-2020-0031-DRAFT-54218
NOAA-NMFS-2020-0031-DRAFT-54219
NOAA-NMFS-2020-0031-DRAFT-54220
NOAA-NMFS-2020-0031-DRAFT-54221
NOAA-NMFS-2020-0031-DRAFT-54222
NOAA-NMFS-2020-0031-DRAFT-54223

Comment from David Elfin
Comment from Laura Horowitz
Comment from Christine Reeder
Comment from Sara Sanford
Comment from Georgia Locker
Comment from Bob Sipe
Comment from Eric Speed
Comment from Kat Noll
Comment from Morgan Lazenby
Comment from Aly Fogel
Comment from Joan Tordenti
Comment from James Hollis
Comment from Dawn Clarke
Comment from Charles Worley
Comment from Robert Manning
Comment from Tim Ryan
Comment from Samuel Aley
Comment from Maurice Samuels
Comment from Sarah Demarest
Comment from Matt Reola
Comment from Jennifer Abernathy
Comment from Anonymous Anonymous
Comment from Johanna Held
Comment from James Byers
Comment from Cynthia Lehman
Comment from Lisa LeBlanc
Comment from Julie Brickell
Comment from Mark Cotterman
Comment from Sylvia Vairo
Comment from Janeene Porcher
Comment from jim Barber
Comment from Tom Erwin
Comment from Crystal Mitchell
Comment from Jan Salas
Comment from Tina Wilson
Comment from Richard Shannahan
Comment from David Sickles
Comment from Dana Roberts
Comment from Robert Veltkamp
Comment from Cynthia Morarend
Comment from Mary Hebblewhite

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54224
NOAA-NMFS-2020-0031-DRAFT-54225
NOAA-NMFS-2020-0031-DRAFT-54226
NOAA-NMFS-2020-0031-DRAFT-54227
NOAA-NMFS-2020-0031-DRAFT-54229
NOAA-NMFS-2020-0031-DRAFT-54230
NOAA-NMFS-2020-0031-DRAFT-54231
NOAA-NMFS-2020-0031-DRAFT-54232
NOAA-NMFS-2020-0031-DRAFT-54233
NOAA-NMFS-2020-0031-DRAFT-54234
NOAA-NMFS-2020-0031-DRAFT-54235
NOAA-NMFS-2020-0031-DRAFT-54236
NOAA-NMFS-2020-0031-DRAFT-54237
NOAA-NMFS-2020-0031-DRAFT-54238
NOAA-NMFS-2020-0031-DRAFT-54239
NOAA-NMFS-2020-0031-DRAFT-54240
NOAA-NMFS-2020-0031-DRAFT-54241
NOAA-NMFS-2020-0031-DRAFT-54242
NOAA-NMFS-2020-0031-DRAFT-54243
NOAA-NMFS-2020-0031-DRAFT-54244
NOAA-NMFS-2020-0031-DRAFT-54245
NOAA-NMFS-2020-0031-DRAFT-54246
NOAA-NMFS-2020-0031-DRAFT-54247
NOAA-NMFS-2020-0031-DRAFT-54248
NOAA-NMFS-2020-0031-DRAFT-54249
NOAA-NMFS-2020-0031-DRAFT-54250
NOAA-NMFS-2020-0031-DRAFT-54251
NOAA-NMFS-2020-0031-DRAFT-54252
NOAA-NMFS-2020-0031-DRAFT-54253
NOAA-NMFS-2020-0031-DRAFT-54254
NOAA-NMFS-2020-0031-DRAFT-54255
NOAA-NMFS-2020-0031-DRAFT-54256
NOAA-NMFS-2020-0031-DRAFT-54258
NOAA-NMFS-2020-0031-DRAFT-54259
NOAA-NMFS-2020-0031-DRAFT-54260
NOAA-NMFS-2020-0031-DRAFT-54261
NOAA-NMFS-2020-0031-DRAFT-54262
NOAA-NMFS-2020-0031-DRAFT-54263
NOAA-NMFS-2020-0031-DRAFT-54264
NOAA-NMFS-2020-0031-DRAFT-54265
NOAA-NMFS-2020-0031-DRAFT-54266

Comment from Karen Hay
Comment from Karl Steudel
Comment from Suzanne Schenkel
Comment from Lisa Kestel
Comment from MARY SCIAMBRA
Comment from Amy Stoller
Comment from Matthew Young
Comment from Gary Cantara
Comment from Aaron Ucko
Comment from Sharon Handa
Comment from Jeffrey Dravis
Comment from Donna Renninger
Comment from Susan Fraser
Comment from Reeve Love
Comment from Sue Ross
Comment from Cheryl Scher
Comment from Juliann Pinto
Comment from Taryn Geer
Comment from Ann Sardineer
Comment from Sabine Williams
Comment from Dale Anania
Comment from Etta Robin
Comment from Charles Fitze
Comment from J L
Comment from Erin Moore
Comment from Ruliffson Mary
Comment from Cheryl Margulies
Comment from Caroline Miller
Comment from Linda Tabb
Comment from ROBERT KOCH
Comment from ah ho
Comment from Uta Cortimilia
Comment from Trafton, Caitlin
Comment from MOSTOV, frances
Comment from Jamie Thomas
Comment from Donna Knipp
Comment from Ray Derrickson
Comment from Webb, Shawncey
Comment from Payne, Bernadette
Comment from Low, Sanford
Comment from James Marsden

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54267
NOAA-NMFS-2020-0031-DRAFT-54268
NOAA-NMFS-2020-0031-DRAFT-54269
NOAA-NMFS-2020-0031-DRAFT-54270
NOAA-NMFS-2020-0031-DRAFT-54271
NOAA-NMFS-2020-0031-DRAFT-54273
NOAA-NMFS-2020-0031-DRAFT-54275
NOAA-NMFS-2020-0031-DRAFT-54276
NOAA-NMFS-2020-0031-DRAFT-54277
NOAA-NMFS-2020-0031-DRAFT-54278
NOAA-NMFS-2020-0031-DRAFT-54279
NOAA-NMFS-2020-0031-DRAFT-54280
NOAA-NMFS-2020-0031-DRAFT-54281
NOAA-NMFS-2020-0031-DRAFT-54282
NOAA-NMFS-2020-0031-DRAFT-54283
NOAA-NMFS-2020-0031-DRAFT-54284
NOAA-NMFS-2020-0031-DRAFT-54285
NOAA-NMFS-2020-0031-DRAFT-54286
NOAA-NMFS-2020-0031-DRAFT-54287
NOAA-NMFS-2020-0031-DRAFT-54288
NOAA-NMFS-2020-0031-DRAFT-54289
NOAA-NMFS-2020-0031-DRAFT-54290
NOAA-NMFS-2020-0031-DRAFT-54291
NOAA-NMFS-2020-0031-DRAFT-54292
NOAA-NMFS-2020-0031-DRAFT-54293
NOAA-NMFS-2020-0031-DRAFT-54295
NOAA-NMFS-2020-0031-DRAFT-54296
NOAA-NMFS-2020-0031-DRAFT-54297
NOAA-NMFS-2020-0031-DRAFT-54298
NOAA-NMFS-2020-0031-DRAFT-54299
NOAA-NMFS-2020-0031-DRAFT-54300
NOAA-NMFS-2020-0031-DRAFT-54301
NOAA-NMFS-2020-0031-DRAFT-54302
NOAA-NMFS-2020-0031-DRAFT-54303
NOAA-NMFS-2020-0031-DRAFT-54304
NOAA-NMFS-2020-0031-DRAFT-54305
NOAA-NMFS-2020-0031-DRAFT-54306
NOAA-NMFS-2020-0031-DRAFT-54307
NOAA-NMFS-2020-0031-DRAFT-54308
NOAA-NMFS-2020-0031-DRAFT-54309
NOAA-NMFS-2020-0031-DRAFT-54310

Comment from Musser, J
Comment from Marya Zanders
Comment from Craig Kaspark
Comment from OReilly, Meghan
Comment from Victoria Galantino
Comment from Meaux, Andre
Comment from Vici Wolff
Comment from Walker, Carol
Comment from bruce raymond
Comment from Tom Tripp
Comment from Brian Sesack
Comment from Rosen, Barbara
Comment from DONOVAN, CHARLENE
Comment from Randall, Melissa
Comment from Sandy Dalcais
Comment from Martin, Patty
Comment from Brooks, Kimberly
Comment from Michael Orloff
Comment from Benita Campbell
Comment from Paul Mayer
Comment from Surban, Anna
Comment from Bryant, Lori
Comment from Mike Rossi
Comment from WIGHTMAN, Richard
Comment from JEFFREY JACKSON
Comment from Barros, Michelle
Comment from Jan Repp
Comment from Carole Smudin
Comment from Corcuera, Nelson
Comment from Jennifer Andrews
Comment from Jeanine mielke
Comment from jai parekh
Comment from Marilee Nagy
Comment from Kelley Richard
Comment from Nancy Cowan
Comment from Harvey Spears
Comment from Debra Jurey
Comment from Rita Reed
Comment from Doug Alderson
Comment from Kent McGill
Comment from Jon Lenchner

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54311

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54312
NOAA-NMFS-2020-0031-DRAFT-54313
NOAA-NMFS-2020-0031-DRAFT-54314
NOAA-NMFS-2020-0031-DRAFT-54315
NOAA-NMFS-2020-0031-DRAFT-54316
NOAA-NMFS-2020-0031-DRAFT-54317
NOAA-NMFS-2020-0031-DRAFT-54318
NOAA-NMFS-2020-0031-DRAFT-54319
NOAA-NMFS-2020-0031-DRAFT-54320
NOAA-NMFS-2020-0031-DRAFT-54321
NOAA-NMFS-2020-0031-DRAFT-54322
NOAA-NMFS-2020-0031-DRAFT-54323
NOAA-NMFS-2020-0031-DRAFT-54324
NOAA-NMFS-2020-0031-DRAFT-54325
NOAA-NMFS-2020-0031-DRAFT-54326
NOAA-NMFS-2020-0031-DRAFT-54327
NOAA-NMFS-2020-0031-DRAFT-54328
NOAA-NMFS-2020-0031-DRAFT-54329
NOAA-NMFS-2020-0031-DRAFT-54330
NOAA-NMFS-2020-0031-DRAFT-54331
NOAA-NMFS-2020-0031-DRAFT-54332
NOAA-NMFS-2020-0031-DRAFT-54333
NOAA-NMFS-2020-0031-DRAFT-54334
NOAA-NMFS-2020-0031-DRAFT-54335
NOAA-NMFS-2020-0031-DRAFT-54336
NOAA-NMFS-2020-0031-DRAFT-54337
NOAA-NMFS-2020-0031-DRAFT-54338
NOAA-NMFS-2020-0031-DRAFT-54339
NOAA-NMFS-2020-0031-DRAFT-54341
NOAA-NMFS-2020-0031-DRAFT-54342
NOAA-NMFS-2020-0031-DRAFT-54343
NOAA-NMFS-2020-0031-DRAFT-54344
NOAA-NMFS-2020-0031-DRAFT-54346
NOAA-NMFS-2020-0031-DRAFT-54347
NOAA-NMFS-2020-0031-DRAFT-54348
NOAA-NMFS-2020-0031-DRAFT-54349
NOAA-NMFS-2020-0031-DRAFT-54350
NOAA-NMFS-2020-0031-DRAFT-54351
NOAA-NMFS-2020-0031-DRAFT-54352

03.01.21 NRDC Letter Re North Atlantic
Right Whale Conservation Framework
Comment from Lee Johnston
Comment from Martha Swartz
Comment from Chey Richmond
Comment from Curt Bohlen
Comment from Elaine Berg
Comment from Paula Willebrands
Comment from Ronald Hubert
Comment from Melissa van Wijk
Comment from M D
Comment from Boucher, Michael
Comment from Harmon, Susan
Comment from Snyder, Amanda
Comment from Glischinski, Nicole
Comment from Salter, Amanda
Comment from Raggio, Dante
Comment from Mary Puglia
Comment from Parrie Henderson
Comment from Kevin Schader
Comment from Andreini, Marie Jane
Comment from Luanglue, Melissa
Comment from Breton, Colette
Comment from Beck, Nathan
Comment from Duggo, Patricia
Comment from Calkins, Diane
Comment from Peggy Malnati
Comment from Don Dicken
Comment from Mark Baker
Comment from Katrin Winterer
Comment from Gina Macias
Comment from William Achramowicz
Comment from Nevena Georgieva
Comment from Patricia Snowden
Comment from Norm Seelbinder
Comment from Barbara Garcia
Comment from Peter Crean
Comment from Priscilla mezrahi
Comment from Florence Vannoni
Comment from Berte Rosin
Comment from Ralph Ferrara

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NOAA-NMFS-2020-0031-DRAFT-54353
NOAA-NMFS-2020-0031-DRAFT-54354
NOAA-NMFS-2020-0031-DRAFT-54355
NOAA-NMFS-2020-0031-DRAFT-54356
NOAA-NMFS-2020-0031-DRAFT-54357
NOAA-NMFS-2020-0031-DRAFT-54358
NOAA-NMFS-2020-0031-DRAFT-54359
NOAA-NMFS-2020-0031-DRAFT-54360
NOAA-NMFS-2020-0031-DRAFT-54361
NOAA-NMFS-2020-0031-DRAFT-54362
NOAA-NMFS-2020-0031-DRAFT-54363
NOAA-NMFS-2020-0031-DRAFT-54364
NOAA-NMFS-2020-0031-DRAFT-54365
NOAA-NMFS-2020-0031-DRAFT-54366
NOAA-NMFS-2020-0031-DRAFT-54367
NOAA-NMFS-2020-0031-DRAFT-54368
NOAA-NMFS-2020-0031-DRAFT-54369
NOAA-NMFS-2020-0031-DRAFT-54370
NOAA-NMFS-2020-0031-DRAFT-54371
NOAA-NMFS-2020-0031-DRAFT-54372
NOAA-NMFS-2020-0031-DRAFT-54373
NOAA-NMFS-2020-0031-DRAFT-54374
NOAA-NMFS-2020-0031-DRAFT-54375
NOAA-NMFS-2020-0031-DRAFT-54376
NOAA-NMFS-2020-0031-DRAFT-54377
NOAA-NMFS-2020-0031-DRAFT-54378
NOAA-NMFS-2020-0031-DRAFT-54379
NOAA-NMFS-2020-0031-DRAFT-54380
NOAA-NMFS-2020-0031-DRAFT-54381
NOAA-NMFS-2020-0031-DRAFT-54382
NOAA-NMFS-2020-0031-DRAFT-54383
NOAA-NMFS-2020-0031-DRAFT-54385
NOAA-NMFS-2020-0031-DRAFT-54386
NOAA-NMFS-2020-0031-DRAFT-54387
NOAA-NMFS-2020-0031-DRAFT-54388
NOAA-NMFS-2020-0031-DRAFT-54389
NOAA-NMFS-2020-0031-DRAFT-54391
NOAA-NMFS-2020-0031-DRAFT-54392
NOAA-NMFS-2020-0031-DRAFT-54393
NOAA-NMFS-2020-0031-DRAFT-54395
NOAA-NMFS-2020-0031-DRAFT-54396

Comment from Marta Francis
Comment from Donna Koechner
Comment from Lisa Butler
Comment from Martina Porras
Comment from Jackie Brewster
Comment from Anonymous
Comment from Katharine Skolnick
Comment from LILLIAN MAHANEY
Comment from Ann Hollowell
Comment from dick Patti
Comment from Pam Woodard
Comment from Ellen DeMarco
Comment from Babette Craddock
Comment from Rhodie Jorgenson
Comment from Brenda Smith
Comment from Katie Levine
Comment from Richard Godinez
Comment from Geoffrey McCluskey
Comment from Francie Mitchell
Comment from John Borland
Comment from Dana Greathouse
Comment from Sam Garbi
Comment from Nancy Heck
Comment from Franco De Nicola
Comment from patricia winters
Comment from Laurie Gussak
Comment from Joan Seguin
Comment from Sister Kinney
Comment from Margret Schreck
Comment from Joel Maguire
Comment from Anonymous Anonymous
Comment from Mary Judge
Comment from Mari Kozlowski
Comment from Nancy Cushwa
Comment from Maureen lynch
Comment from Susan Powers
Comment from Jackie Pomies
Comment from doug pynn
Comment from Ellen Phillips
Comment from Laura Aurilio
Comment from Michael Gemmell

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54397
NOAA-NMFS-2020-0031-DRAFT-54398
NOAA-NMFS-2020-0031-DRAFT-54400
NOAA-NMFS-2020-0031-DRAFT-54401
NOAA-NMFS-2020-0031-DRAFT-54402
NOAA-NMFS-2020-0031-DRAFT-54403
NOAA-NMFS-2020-0031-DRAFT-54405
NOAA-NMFS-2020-0031-DRAFT-54406
NOAA-NMFS-2020-0031-DRAFT-54407
NOAA-NMFS-2020-0031-DRAFT-54408
NOAA-NMFS-2020-0031-DRAFT-54409
NOAA-NMFS-2020-0031-DRAFT-54410
NOAA-NMFS-2020-0031-DRAFT-54412
NOAA-NMFS-2020-0031-DRAFT-54413
NOAA-NMFS-2020-0031-DRAFT-54415
NOAA-NMFS-2020-0031-DRAFT-54416
NOAA-NMFS-2020-0031-DRAFT-54417
NOAA-NMFS-2020-0031-DRAFT-54418
NOAA-NMFS-2020-0031-DRAFT-54419
NOAA-NMFS-2020-0031-DRAFT-54421
NOAA-NMFS-2020-0031-DRAFT-54422
NOAA-NMFS-2020-0031-DRAFT-54423
NOAA-NMFS-2020-0031-DRAFT-54425
NOAA-NMFS-2020-0031-DRAFT-54426
NOAA-NMFS-2020-0031-DRAFT-54427
NOAA-NMFS-2020-0031-DRAFT-54428
NOAA-NMFS-2020-0031-DRAFT-54429
NOAA-NMFS-2020-0031-DRAFT-54430
NOAA-NMFS-2020-0031-DRAFT-54431
NOAA-NMFS-2020-0031-DRAFT-54432
NOAA-NMFS-2020-0031-DRAFT-54433
NOAA-NMFS-2020-0031-DRAFT-54434
NOAA-NMFS-2020-0031-DRAFT-54436
NOAA-NMFS-2020-0031-DRAFT-54437
NOAA-NMFS-2020-0031-DRAFT-54438
NOAA-NMFS-2020-0031-DRAFT-54439
NOAA-NMFS-2020-0031-DRAFT-54440
NOAA-NMFS-2020-0031-DRAFT-54441
NOAA-NMFS-2020-0031-DRAFT-54442
NOAA-NMFS-2020-0031-DRAFT-54443
NOAA-NMFS-2020-0031-DRAFT-54444

Comment from Catherine Lambeth
Comment from Barbara Collins
Comment from Melissa Ambrose
Comment from Susan Lilly
Comment from Gigi Dunn
Comment from Claudia Leff
Comment from Michael King
Comment from Rick Priebe
Comment from Pranab Banerjee
Comment from Mary Gutierrez
Comment from Rita McCabe
Comment from BRUCE HADBURG
Comment from Thomas Warner
Comment from Kerri Piazza
Comment from Bettie Reina
Comment from Gary Maedl
Comment from Gail Sullivan
Comment from Lesley Brill
Comment from Sharon Marchisello
Comment from doug franklin
Comment from Thomas Filip
Comment from Susan Berry
Comment from Patricia Doyle
Comment from Donna Parente
Comment from William Shelton
Comment from Stephanie Shine
Comment from Carolyn Johnson
Comment from Kent McGill
Comment from Lawrence Crowley
Comment from Jessica Cresseveur
Comment from Donette Erdmann
Comment from Alice Nicholson
Comment from william nyikes
Comment from Rita Sheehan
Comment from Katherine Hamill
Comment from Crispin Pierce
Comment from Elihu Cohen
Comment from Marianne Bentley
Comment from Marcia Field
Comment from Pauline Burak
Comment from Laura Fisher

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54445
NOAA-NMFS-2020-0031-DRAFT-54446
NOAA-NMFS-2020-0031-DRAFT-54447
NOAA-NMFS-2020-0031-DRAFT-54448
NOAA-NMFS-2020-0031-DRAFT-54449
NOAA-NMFS-2020-0031-DRAFT-54450
NOAA-NMFS-2020-0031-DRAFT-54451
NOAA-NMFS-2020-0031-DRAFT-54452
NOAA-NMFS-2020-0031-DRAFT-54453
NOAA-NMFS-2020-0031-DRAFT-54455
NOAA-NMFS-2020-0031-DRAFT-54457
NOAA-NMFS-2020-0031-DRAFT-54458
NOAA-NMFS-2020-0031-DRAFT-54459
NOAA-NMFS-2020-0031-DRAFT-54460
NOAA-NMFS-2020-0031-DRAFT-54462
NOAA-NMFS-2020-0031-DRAFT-54463
NOAA-NMFS-2020-0031-DRAFT-54464
NOAA-NMFS-2020-0031-DRAFT-54465
NOAA-NMFS-2020-0031-DRAFT-54466
NOAA-NMFS-2020-0031-DRAFT-54467
NOAA-NMFS-2020-0031-DRAFT-54468
NOAA-NMFS-2020-0031-DRAFT-54469
NOAA-NMFS-2020-0031-DRAFT-54470
NOAA-NMFS-2020-0031-DRAFT-54471
NOAA-NMFS-2020-0031-DRAFT-54472
NOAA-NMFS-2020-0031-DRAFT-54473
NOAA-NMFS-2020-0031-DRAFT-54474
NOAA-NMFS-2020-0031-DRAFT-54475
NOAA-NMFS-2020-0031-DRAFT-54476
NOAA-NMFS-2020-0031-DRAFT-54477
NOAA-NMFS-2020-0031-DRAFT-54478
NOAA-NMFS-2020-0031-DRAFT-54479
NOAA-NMFS-2020-0031-DRAFT-54480
NOAA-NMFS-2020-0031-DRAFT-54481
NOAA-NMFS-2020-0031-DRAFT-54482
NOAA-NMFS-2020-0031-DRAFT-54483
NOAA-NMFS-2020-0031-DRAFT-54484
NOAA-NMFS-2020-0031-DRAFT-54485
NOAA-NMFS-2020-0031-DRAFT-54486
NOAA-NMFS-2020-0031-DRAFT-54487
NOAA-NMFS-2020-0031-DRAFT-54488

Comment from Barbara Mintz
Comment from Sally Hinshaw
Comment from Ted Cheeseman
Comment from Erica Allen
Comment from John Shannon
Comment from Arline Fass
Comment from Steven Lindstrom
Comment from Robert Reed
Comment from Constance Lorig
Comment from Jackie Alberg
Comment from Kyle Crocker
Comment from Amy Dowsett
Comment from Sandy Williams
Comment from Darnell Barsness
Comment from James Applewhite
Comment from John Limbach
Comment from Judy Fairless
Comment from Candace Bassat
Comment from Elke Baitis
Comment from Ashley Mitchell
Comment from Ellen Morgan
Comment from K. Youmans
Comment from Carol Ayala
Comment from Anne White
Comment from James Sterner
Comment from Cynthia McKeen
Comment from Gregg Johnson
Comment from Shannon Allsop
Comment from Nan beatty
Comment from Miles ashton
Comment from Haltom, Allison
Comment from Murphy, David
Comment from Wanda Plucinski
Comment from putnam, quinten
Comment from Barringer, Joyce
Comment from Wylie, Mary
Comment from Quinlivan, Diane
Comment from Desiree Weston
Comment from Dorothy Wilson
Comment from Tetreault, Doreen
Comment from Robert Hudson

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03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54489
NOAA-NMFS-2020-0031-DRAFT-54490
NOAA-NMFS-2020-0031-DRAFT-54491
NOAA-NMFS-2020-0031-DRAFT-54492
NOAA-NMFS-2020-0031-DRAFT-54494
NOAA-NMFS-2020-0031-DRAFT-54495
NOAA-NMFS-2020-0031-DRAFT-54496
NOAA-NMFS-2020-0031-DRAFT-54497
NOAA-NMFS-2020-0031-DRAFT-54498
NOAA-NMFS-2020-0031-DRAFT-54499
NOAA-NMFS-2020-0031-DRAFT-54500
NOAA-NMFS-2020-0031-DRAFT-54501
NOAA-NMFS-2020-0031-DRAFT-54502
NOAA-NMFS-2020-0031-DRAFT-54503
NOAA-NMFS-2020-0031-DRAFT-54504
NOAA-NMFS-2020-0031-DRAFT-54505
NOAA-NMFS-2020-0031-DRAFT-54506
NOAA-NMFS-2020-0031-DRAFT-54507
NOAA-NMFS-2020-0031-DRAFT-54508
NOAA-NMFS-2020-0031-DRAFT-54509
NOAA-NMFS-2020-0031-DRAFT-54510
NOAA-NMFS-2020-0031-DRAFT-54511
NOAA-NMFS-2020-0031-DRAFT-54512
NOAA-NMFS-2020-0031-DRAFT-54513
NOAA-NMFS-2020-0031-DRAFT-54514
NOAA-NMFS-2020-0031-DRAFT-54515
NOAA-NMFS-2020-0031-DRAFT-54516
NOAA-NMFS-2020-0031-DRAFT-54517
NOAA-NMFS-2020-0031-DRAFT-54518
NOAA-NMFS-2020-0031-DRAFT-54519
NOAA-NMFS-2020-0031-DRAFT-54520
NOAA-NMFS-2020-0031-DRAFT-54521
NOAA-NMFS-2020-0031-DRAFT-54522
NOAA-NMFS-2020-0031-DRAFT-54523
NOAA-NMFS-2020-0031-DRAFT-54524
NOAA-NMFS-2020-0031-DRAFT-54525
NOAA-NMFS-2020-0031-DRAFT-54527
NOAA-NMFS-2020-0031-DRAFT-54528
NOAA-NMFS-2020-0031-DRAFT-54529
NOAA-NMFS-2020-0031-DRAFT-54530
NOAA-NMFS-2020-0031-DRAFT-54531

Comment from Elizabeth. Jones
Comment from Walters , Bryana
Comment from Francisco Salazar
Comment from Jamie Kyser
Comment from Cathy McDow
Comment from Rachel Resnikoff
Comment from James Byers
Comment from Joshua Miller
Comment from Anonymous Anonymous
Comment from Lynn Kifer
Comment from Patricia Coscia
Comment from Monica Graff
Comment from Mitch M
Comment from Gaia Schubert
Comment from David Rechs
Comment from Janet Fotos
Comment from Marney Reed
Comment from Alena Cook
Comment from Tina Whitley
Comment from Judy Greenfield
Comment from Judi Poulson
Comment from Jeanne Daly
Comment from Carol Maghakian
Comment from jaclyn gadd
Comment from Christina Stafford
Comment from Sarah Bauman
Comment from Mark Lender
Comment from Thomas Giblin
Comment from Becky Daiss
Comment from Joanne Pennington
Comment from Emily Manthei
Comment from Frank Boggio
Comment from Cathy Martin
Comment from Candice Leverett
Comment from Jon Haskins
Comment from Lessli Nielsen
Comment from Rajat Kapoor
Comment from susanne madden
Comment from Martha Ellison
Comment from Christina Crosby
Comment from NICOLE MOORE

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03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54532
NOAA-NMFS-2020-0031-DRAFT-54533
NOAA-NMFS-2020-0031-DRAFT-54535
NOAA-NMFS-2020-0031-DRAFT-54536
NOAA-NMFS-2020-0031-DRAFT-54537
NOAA-NMFS-2020-0031-DRAFT-54538
NOAA-NMFS-2020-0031-DRAFT-54539
NOAA-NMFS-2020-0031-DRAFT-54540
NOAA-NMFS-2020-0031-DRAFT-54541
NOAA-NMFS-2020-0031-DRAFT-54542
NOAA-NMFS-2020-0031-DRAFT-54543
NOAA-NMFS-2020-0031-DRAFT-54544
NOAA-NMFS-2020-0031-DRAFT-54546
NOAA-NMFS-2020-0031-DRAFT-54547
NOAA-NMFS-2020-0031-DRAFT-54548
NOAA-NMFS-2020-0031-DRAFT-54549
NOAA-NMFS-2020-0031-DRAFT-54550
NOAA-NMFS-2020-0031-DRAFT-54551
NOAA-NMFS-2020-0031-DRAFT-54552
NOAA-NMFS-2020-0031-DRAFT-54553
NOAA-NMFS-2020-0031-DRAFT-54554
NOAA-NMFS-2020-0031-DRAFT-54555
NOAA-NMFS-2020-0031-DRAFT-54556
NOAA-NMFS-2020-0031-DRAFT-54557
NOAA-NMFS-2020-0031-DRAFT-54558
NOAA-NMFS-2020-0031-DRAFT-54559
NOAA-NMFS-2020-0031-DRAFT-54560
NOAA-NMFS-2020-0031-DRAFT-54561
NOAA-NMFS-2020-0031-DRAFT-54562
NOAA-NMFS-2020-0031-DRAFT-54563
NOAA-NMFS-2020-0031-DRAFT-54564
NOAA-NMFS-2020-0031-DRAFT-54565
NOAA-NMFS-2020-0031-DRAFT-54566
NOAA-NMFS-2020-0031-DRAFT-54567
NOAA-NMFS-2020-0031-DRAFT-54569
NOAA-NMFS-2020-0031-DRAFT-54570
NOAA-NMFS-2020-0031-DRAFT-54571
NOAA-NMFS-2020-0031-DRAFT-54572
NOAA-NMFS-2020-0031-DRAFT-54574
NOAA-NMFS-2020-0031-DRAFT-54575
NOAA-NMFS-2020-0031-DRAFT-54576

Comment from Sean Adel
Comment from candace l
Comment from Asker, Diana
Comment from Russell Weisz
Comment from Kathleen Medina
Comment from Andrea Chisari
Comment from Victoria Randall
Comment from Kate Crabb
Comment from Judy Moran
Comment from Aimee Miller
Comment from Robert Book
Comment from Matt Loper
Comment from Gina Whitlock
Comment from Charles Steele
Comment from Georgia Shankel
Comment from Lena Fransioli
Comment from Anna Schmidt
Comment from Andrew Willman
Comment from Debra Maitre
Comment from Mary Christman
Comment from Brian Gorra
Comment from Melissa Bronder
Comment from Tracy Marotta
Comment from Jacqueline Eliopoulos
Comment from Myrian Monnet
Comment from Jeanne Piehl
Comment from Marina Mooney
Comment from M S
Comment from Deb Christensen
Comment from Christina Tomlinson
Comment from Tammy Downing
Comment from Alan Canfield
Comment from James Mulcare
Comment from Natalie DeBoer
Comment from Martin Tripp
Comment from Andrew Lenz
Comment from Desiree Weston
Comment from Hannahlore Trickett
Comment from Scott Crockett
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54577
NOAA-NMFS-2020-0031-DRAFT-54578
NOAA-NMFS-2020-0031-DRAFT-54579
NOAA-NMFS-2020-0031-DRAFT-54580
NOAA-NMFS-2020-0031-DRAFT-54581
NOAA-NMFS-2020-0031-DRAFT-54582
NOAA-NMFS-2020-0031-DRAFT-54583
NOAA-NMFS-2020-0031-DRAFT-54584
NOAA-NMFS-2020-0031-DRAFT-54585
NOAA-NMFS-2020-0031-DRAFT-54586
NOAA-NMFS-2020-0031-DRAFT-54587
NOAA-NMFS-2020-0031-DRAFT-54588
NOAA-NMFS-2020-0031-DRAFT-54589
NOAA-NMFS-2020-0031-DRAFT-54590
NOAA-NMFS-2020-0031-DRAFT-54591
NOAA-NMFS-2020-0031-DRAFT-54592
NOAA-NMFS-2020-0031-DRAFT-54593
NOAA-NMFS-2020-0031-DRAFT-54594
NOAA-NMFS-2020-0031-DRAFT-54595
NOAA-NMFS-2020-0031-DRAFT-54596
NOAA-NMFS-2020-0031-DRAFT-54597
NOAA-NMFS-2020-0031-DRAFT-54598
NOAA-NMFS-2020-0031-DRAFT-54599
NOAA-NMFS-2020-0031-DRAFT-54600
NOAA-NMFS-2020-0031-DRAFT-54601
NOAA-NMFS-2020-0031-DRAFT-54602
NOAA-NMFS-2020-0031-DRAFT-54603
NOAA-NMFS-2020-0031-DRAFT-54604
NOAA-NMFS-2020-0031-DRAFT-54606
NOAA-NMFS-2020-0031-DRAFT-54607
NOAA-NMFS-2020-0031-DRAFT-54608
NOAA-NMFS-2020-0031-DRAFT-54609
NOAA-NMFS-2020-0031-DRAFT-54610
NOAA-NMFS-2020-0031-DRAFT-54611
NOAA-NMFS-2020-0031-DRAFT-54612
NOAA-NMFS-2020-0031-DRAFT-54613
NOAA-NMFS-2020-0031-DRAFT-54614
NOAA-NMFS-2020-0031-DRAFT-54615
NOAA-NMFS-2020-0031-DRAFT-54616
NOAA-NMFS-2020-0031-DRAFT-54617
NOAA-NMFS-2020-0031-DRAFT-54618

Comment from Elihu Cohen
Comment from Lois Silberstein
Comment from Chris Hazynski
Comment from Jeanette Shutay
Comment from Don Nardone
Comment from Marsha Jarvis
Comment from Marla Berry
Comment from Sherron Bull
Comment from Esther Welsh
Comment from E Paxson
Comment from Carlie Doebereiner
Comment from Kate McQueen
Comment from Judy wibel
Comment from Jeff Boals
Comment from Anne Greene
Comment from MariLynn Herman
Comment from Joyce Schwartz
Comment from Peter Burval
Comment from harris, lois
Comment from Adrian Bergeron
Comment from Anonymous Anonymous
Comment from Nick Watson
Comment from Richard Lee
Comment from Evelyn Bailey
Comment from James Mulcare
Comment from Claudia Martinez
Comment from El Pe
Comment from Michele St Peter
Comment from Jennifer Taylor
Comment from Clive Smith
Comment from Maureen Gibson
Comment from Stacey Larson
Comment from Cecilia Burns
Comment from Karissa Zastrow
Comment from Christine Dougherty
Comment from Zola Packman
Comment from Arthur Fornari
Comment from Sonia King
Comment from Harold Brundage
Comment from Barbara Beierl
Comment from Jennifer Miller

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03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54619
NOAA-NMFS-2020-0031-DRAFT-54620
NOAA-NMFS-2020-0031-DRAFT-54621
NOAA-NMFS-2020-0031-DRAFT-54622
NOAA-NMFS-2020-0031-DRAFT-54623
NOAA-NMFS-2020-0031-DRAFT-54624
NOAA-NMFS-2020-0031-DRAFT-54625
NOAA-NMFS-2020-0031-DRAFT-54626
NOAA-NMFS-2020-0031-DRAFT-54628
NOAA-NMFS-2020-0031-DRAFT-54629
NOAA-NMFS-2020-0031-DRAFT-54630
NOAA-NMFS-2020-0031-DRAFT-54631
NOAA-NMFS-2020-0031-DRAFT-54632
NOAA-NMFS-2020-0031-DRAFT-54633
NOAA-NMFS-2020-0031-DRAFT-54634
NOAA-NMFS-2020-0031-DRAFT-54635
NOAA-NMFS-2020-0031-DRAFT-54636
NOAA-NMFS-2020-0031-DRAFT-54637
NOAA-NMFS-2020-0031-DRAFT-54638
NOAA-NMFS-2020-0031-DRAFT-54639
NOAA-NMFS-2020-0031-DRAFT-54640
NOAA-NMFS-2020-0031-DRAFT-54641
NOAA-NMFS-2020-0031-DRAFT-54642
NOAA-NMFS-2020-0031-DRAFT-54643
NOAA-NMFS-2020-0031-DRAFT-54644
NOAA-NMFS-2020-0031-DRAFT-54645
NOAA-NMFS-2020-0031-DRAFT-54646
NOAA-NMFS-2020-0031-DRAFT-54648
NOAA-NMFS-2020-0031-DRAFT-54649
NOAA-NMFS-2020-0031-DRAFT-54650
NOAA-NMFS-2020-0031-DRAFT-54651
NOAA-NMFS-2020-0031-DRAFT-54652
NOAA-NMFS-2020-0031-DRAFT-54653
NOAA-NMFS-2020-0031-DRAFT-54654
NOAA-NMFS-2020-0031-DRAFT-54655
NOAA-NMFS-2020-0031-DRAFT-54656
NOAA-NMFS-2020-0031-DRAFT-54657
NOAA-NMFS-2020-0031-DRAFT-54658
NOAA-NMFS-2020-0031-DRAFT-54659
NOAA-NMFS-2020-0031-DRAFT-54660
NOAA-NMFS-2020-0031-DRAFT-54661

Comment from Anonymous Anonymous
Comment from Marina Barry
Comment from Susan Johnston
Comment from Lynne Waymon
Comment from Cynthia Opderbeck
Comment from Dave Lipstreu
Comment from Shirley Mccarthy
Comment from Tad Swackhammer
Comment from Nancy Gregory
Comment from Judith Weis
Comment from Teresia LaFleur
Comment from Ralf Schuetz
Comment from Ruthie Bernaert
Comment from John Cohen
Comment from Sondra Boes
Comment from Terry Tedesco
Comment from Steven Korson
Comment from Kenneth Barter
Comment from turner, sharon
Comment from Becker, Elaine
Comment from Martinez, Sandra
Comment from Savard, Judy
Comment from Marion Lakatos
Comment from Jack Gajda
Comment from Sheryl Becker
Comment from Rainbow Di Benedetto
Comment from Anna Schwadron
Comment from Ken Carrell
Comment from Carole Arbour
Comment from NM Porter
Comment from Ron De Stefano
Comment from wendy Morris
Comment from mike butkiewicz
Comment from Gail Koza
Comment from mindy maxwell
Comment from Henry Furtick
Comment from M. Struble
Comment from Steve Disch
Comment from Kathleen Menke
Comment from Vicki Wilson
Comment from Sandra Woodall

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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54662
NOAA-NMFS-2020-0031-DRAFT-54665
NOAA-NMFS-2020-0031-DRAFT-54666
NOAA-NMFS-2020-0031-DRAFT-54668
NOAA-NMFS-2020-0031-DRAFT-54669
NOAA-NMFS-2020-0031-DRAFT-54670
NOAA-NMFS-2020-0031-DRAFT-54671
NOAA-NMFS-2020-0031-DRAFT-54672
NOAA-NMFS-2020-0031-DRAFT-54673
NOAA-NMFS-2020-0031-DRAFT-54674
NOAA-NMFS-2020-0031-DRAFT-54675
NOAA-NMFS-2020-0031-DRAFT-54676
NOAA-NMFS-2020-0031-DRAFT-54677
NOAA-NMFS-2020-0031-DRAFT-54678
NOAA-NMFS-2020-0031-DRAFT-54679
NOAA-NMFS-2020-0031-DRAFT-54680
NOAA-NMFS-2020-0031-DRAFT-54681
NOAA-NMFS-2020-0031-DRAFT-54682
NOAA-NMFS-2020-0031-DRAFT-54683
NOAA-NMFS-2020-0031-DRAFT-54684
NOAA-NMFS-2020-0031-DRAFT-54685
NOAA-NMFS-2020-0031-DRAFT-54686
NOAA-NMFS-2020-0031-DRAFT-54688
NOAA-NMFS-2020-0031-DRAFT-54690
NOAA-NMFS-2020-0031-DRAFT-54691
NOAA-NMFS-2020-0031-DRAFT-54692

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54693

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54694
NOAA-NMFS-2020-0031-DRAFT-54695
NOAA-NMFS-2020-0031-DRAFT-54696
NOAA-NMFS-2020-0031-DRAFT-54697
NOAA-NMFS-2020-0031-DRAFT-54698
NOAA-NMFS-2020-0031-DRAFT-54699
NOAA-NMFS-2020-0031-DRAFT-54700
NOAA-NMFS-2020-0031-DRAFT-54701
NOAA-NMFS-2020-0031-DRAFT-54702
NOAA-NMFS-2020-0031-DRAFT-54703
NOAA-NMFS-2020-0031-DRAFT-54704
NOAA-NMFS-2020-0031-DRAFT-54705
NOAA-NMFS-2020-0031-DRAFT-54706

Comment from Heather Marsh
Comment from Veronica Bourassa
Comment from Frederick Glazier
Comment from Janice Zelazo
Comment from Alida Mau
Comment from N Hochman
Comment from Mary Tuma
Comment from Catherine George
Comment from Cathie Kwasneski
Comment from John Wyatt
Comment from Diane Anderson
Comment from Constance Franklin
Comment from Debra Gagliano
Comment from Donald Mackay
Comment from Beverly Evjen
Comment from Ramona Hillier-O'Hara
Comment from Tina Ann
Comment from Ashley carlson
Comment from J. Beverly
Comment from MARK SONDERSKOV
Comment from Felicia Lewis
Comment from Rick Romito
Comment from Elvi Bjorkquist
Comment from Janeene Porcher
Comment from Dennis Hanratty
Comment from Donna Moore
Comment from Rebecca MaysVandewater
Comment from Melissa Hathaway
Comment from Susan Weems
Comment from Karen Anderson
Comment from Debbie Stadler
Comment from Julie Berberi
Comment from Mr Bowman
Comment from Sandra Burnett
Comment from Jeri Romero
Comment from Ana Reeder
Comment from Cassidy Brush
Comment from Kelly Taylor
Comment from Carol Ramo
Comment from Ruth Shults

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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54707
NOAA-NMFS-2020-0031-DRAFT-54708
NOAA-NMFS-2020-0031-DRAFT-54709
NOAA-NMFS-2020-0031-DRAFT-54710
NOAA-NMFS-2020-0031-DRAFT-54711
NOAA-NMFS-2020-0031-DRAFT-54713
NOAA-NMFS-2020-0031-DRAFT-54714
NOAA-NMFS-2020-0031-DRAFT-54715
NOAA-NMFS-2020-0031-DRAFT-54716
NOAA-NMFS-2020-0031-DRAFT-54717
NOAA-NMFS-2020-0031-DRAFT-54718
NOAA-NMFS-2020-0031-DRAFT-54719
NOAA-NMFS-2020-0031-DRAFT-54720
NOAA-NMFS-2020-0031-DRAFT-54721
NOAA-NMFS-2020-0031-DRAFT-54722
NOAA-NMFS-2020-0031-DRAFT-54723
NOAA-NMFS-2020-0031-DRAFT-54725
NOAA-NMFS-2020-0031-DRAFT-54726
NOAA-NMFS-2020-0031-DRAFT-54727
NOAA-NMFS-2020-0031-DRAFT-54728
NOAA-NMFS-2020-0031-DRAFT-54730
NOAA-NMFS-2020-0031-DRAFT-54731
NOAA-NMFS-2020-0031-DRAFT-54732
NOAA-NMFS-2020-0031-DRAFT-54733
NOAA-NMFS-2020-0031-DRAFT-54734
NOAA-NMFS-2020-0031-DRAFT-54735

Comment from Robert Bench
Comment from Mcdonald, Catie
Comment from VeZolles Celeste
Comment from JEREMY FROST
Comment from Christina Lee
Comment from Leann Huber
Comment from Anonymous Anonymous
Comment from Theresa Vaughn
Comment from Victoria Cross
Comment from Gretchen Byrne
Comment from Beth McGowan
Comment from Kevin Hines
Comment from kristin andersen
Comment from Pamela Woods
Comment from Robin Brown
Comment from Frances Rove
Comment from Judy Mickey
Comment from Helgaleena H
Comment from Sylvia Mccune
Comment from Michele B
Comment from Wendy Bruget
Comment from Nancy Mcbride
Comment from Paul Gregory
Comment from Edmund Weisberg
Comment from Barbara Clewett
Comment from Molly Malone

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54736

Comment from Sarah ECKBERG-STEVENS

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54738
NOAA-NMFS-2020-0031-DRAFT-54739
NOAA-NMFS-2020-0031-DRAFT-54740
NOAA-NMFS-2020-0031-DRAFT-54741
NOAA-NMFS-2020-0031-DRAFT-54742
NOAA-NMFS-2020-0031-DRAFT-54743
NOAA-NMFS-2020-0031-DRAFT-54744
NOAA-NMFS-2020-0031-DRAFT-54745
NOAA-NMFS-2020-0031-DRAFT-54747
NOAA-NMFS-2020-0031-DRAFT-54748
NOAA-NMFS-2020-0031-DRAFT-54749
NOAA-NMFS-2020-0031-DRAFT-54750
NOAA-NMFS-2020-0031-DRAFT-54751

Comment from Lori Manfreda
Comment from Anne Winicki
Comment from Shelley Minden
Comment from Victoria Silver
Comment from Nicholas Huss
Comment from Jon Gordon
Comment from David Sweet
Comment from Misti Reif
Comment from Daniel Kurz
Comment from Lynn Paloski
Comment from Judith basye
Comment from John Kay
Comment from Christy Butterworth

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03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54753
NOAA-NMFS-2020-0031-DRAFT-54754
NOAA-NMFS-2020-0031-DRAFT-54755
NOAA-NMFS-2020-0031-DRAFT-54756
NOAA-NMFS-2020-0031-DRAFT-54758
NOAA-NMFS-2020-0031-DRAFT-54759
NOAA-NMFS-2020-0031-DRAFT-54760
NOAA-NMFS-2020-0031-DRAFT-54761
NOAA-NMFS-2020-0031-DRAFT-54762
NOAA-NMFS-2020-0031-DRAFT-54763
NOAA-NMFS-2020-0031-DRAFT-54764
NOAA-NMFS-2020-0031-DRAFT-54765
NOAA-NMFS-2020-0031-DRAFT-54766
NOAA-NMFS-2020-0031-DRAFT-54768
NOAA-NMFS-2020-0031-DRAFT-54769
NOAA-NMFS-2020-0031-DRAFT-54770
NOAA-NMFS-2020-0031-DRAFT-54771
NOAA-NMFS-2020-0031-DRAFT-54773
NOAA-NMFS-2020-0031-DRAFT-54774
NOAA-NMFS-2020-0031-DRAFT-54775
NOAA-NMFS-2020-0031-DRAFT-54776
NOAA-NMFS-2020-0031-DRAFT-54777
NOAA-NMFS-2020-0031-DRAFT-54779
NOAA-NMFS-2020-0031-DRAFT-54780
NOAA-NMFS-2020-0031-DRAFT-54781
NOAA-NMFS-2020-0031-DRAFT-54782
NOAA-NMFS-2020-0031-DRAFT-54783
NOAA-NMFS-2020-0031-DRAFT-54784
NOAA-NMFS-2020-0031-DRAFT-54785
NOAA-NMFS-2020-0031-DRAFT-54786
NOAA-NMFS-2020-0031-DRAFT-54787
NOAA-NMFS-2020-0031-DRAFT-54788
NOAA-NMFS-2020-0031-DRAFT-54789
NOAA-NMFS-2020-0031-DRAFT-54791
NOAA-NMFS-2020-0031-DRAFT-54792
NOAA-NMFS-2020-0031-DRAFT-54793
NOAA-NMFS-2020-0031-DRAFT-54794
NOAA-NMFS-2020-0031-DRAFT-54795
NOAA-NMFS-2020-0031-DRAFT-54796
NOAA-NMFS-2020-0031-DRAFT-54797
NOAA-NMFS-2020-0031-DRAFT-54798

Comment from Susan Bailey
Comment from Richard Godinez
Comment from Vickie Wagner
Comment from Lynn Eland
Comment from Kim Beeler
Comment from Jan Hamilton-Sherwonit
Comment from Chris Van hook
Comment from Hank Schlinger
Comment from Tanara Saarinen
Comment from Beth Levin
Comment from Mills, Marlene
Comment from Lee, Darcie
Comment from Hoyer, Robert
Comment from Amato , Neilia
Comment from Cuneo, Nicole
Comment from Rolla, Theresa
Comment from Gutierrez, Ibeth
Comment from Ancel-Wisner, Annette
Comment from McClarren, Janet Mila
Comment from Todd, Sandy James
Comment from Lettman, Amy
Comment from james field
Comment from Aloysius Wald
Comment from Erica Hollander
Comment from Liz Eisenbeis
Comment from Caroline Liquori
Comment from Mary Eastman
Comment from M. Patterson
Comment from JACQUELINE KRAMER
Comment from Mary Kerins
Comment from Garry Taroli
Comment from Thomas Durst
Comment from Elaine Edell
Comment from Lauri Desmarais
Comment from Taylor Limberg
Comment from Clover Krajicek
Comment from Sue Bassett
Comment from Frank Blake
Comment from Ralph Valencia
Comment from Don Swall
Comment from Eric Lane

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03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54799
NOAA-NMFS-2020-0031-DRAFT-54800
NOAA-NMFS-2020-0031-DRAFT-54801
NOAA-NMFS-2020-0031-DRAFT-54802
NOAA-NMFS-2020-0031-DRAFT-54803
NOAA-NMFS-2020-0031-DRAFT-54804
NOAA-NMFS-2020-0031-DRAFT-54805
NOAA-NMFS-2020-0031-DRAFT-54807
NOAA-NMFS-2020-0031-DRAFT-54808
NOAA-NMFS-2020-0031-DRAFT-54809
NOAA-NMFS-2020-0031-DRAFT-54810
NOAA-NMFS-2020-0031-DRAFT-54811
NOAA-NMFS-2020-0031-DRAFT-54812
NOAA-NMFS-2020-0031-DRAFT-54813
NOAA-NMFS-2020-0031-DRAFT-54814
NOAA-NMFS-2020-0031-DRAFT-54815
NOAA-NMFS-2020-0031-DRAFT-54816
NOAA-NMFS-2020-0031-DRAFT-54817
NOAA-NMFS-2020-0031-DRAFT-54818
NOAA-NMFS-2020-0031-DRAFT-54819
NOAA-NMFS-2020-0031-DRAFT-54820
NOAA-NMFS-2020-0031-DRAFT-54821
NOAA-NMFS-2020-0031-DRAFT-54822
NOAA-NMFS-2020-0031-DRAFT-54823
NOAA-NMFS-2020-0031-DRAFT-54824
NOAA-NMFS-2020-0031-DRAFT-54825
NOAA-NMFS-2020-0031-DRAFT-54826
NOAA-NMFS-2020-0031-DRAFT-54827
NOAA-NMFS-2020-0031-DRAFT-54828
NOAA-NMFS-2020-0031-DRAFT-54829
NOAA-NMFS-2020-0031-DRAFT-54830
NOAA-NMFS-2020-0031-DRAFT-54831
NOAA-NMFS-2020-0031-DRAFT-54832
NOAA-NMFS-2020-0031-DRAFT-54833
NOAA-NMFS-2020-0031-DRAFT-54834
NOAA-NMFS-2020-0031-DRAFT-54835
NOAA-NMFS-2020-0031-DRAFT-54836
NOAA-NMFS-2020-0031-DRAFT-54837
NOAA-NMFS-2020-0031-DRAFT-54838
NOAA-NMFS-2020-0031-DRAFT-54840
NOAA-NMFS-2020-0031-DRAFT-54841

Comment from Christopher Nye
Comment from Samantha Solomon
Comment from Nancy Dillard
Comment from Carmen Nichols
Comment from Theodore Burger
Comment from Margaret Campbell
Comment from Marilyn McMullen
Comment from Jeanne Powell
Comment from Carter, Casey
Comment from Charlotte Nuessle
Comment from Gary Paudler
Comment from Steve Robey
Comment from Anonymous Anonymous
Comment from Steven Barlow
Comment from Josh Schafer
Comment from Lin Heidt
Comment from Stephanie Lovell
Comment from Anonymous Anonymous
Comment from Georgeta Burca
Comment from Kim leonard
Comment from Daphne Endress
Comment from roger schmidt
Comment from Edward Scott
Comment from Nick Brannan
Comment from Michael Giansiracusa
Comment from bernardo mujica
Comment from Laura Benge
Comment from GEORGE ERCEG
Comment from Nancy Stamm
Comment from Jim Clapp
Comment from William Leavenworth
Comment from Debra Saude
Comment from jess odoski
Comment from Kate Ashley
Comment from Karen Robbins
Comment from Meredith Needham
Comment from Laurie Cooper
Comment from William Conger
Comment from Linda Peterson
Comment from Kathleen Hynes
Comment from Richard Wilkins

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
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03/01/2021
03/01/2021
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03/01/2021
03/01/2021
03/01/2021
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03/01/2021
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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54842
NOAA-NMFS-2020-0031-DRAFT-54843
NOAA-NMFS-2020-0031-DRAFT-54844
NOAA-NMFS-2020-0031-DRAFT-54845
NOAA-NMFS-2020-0031-DRAFT-54846
NOAA-NMFS-2020-0031-DRAFT-54847
NOAA-NMFS-2020-0031-DRAFT-54849
NOAA-NMFS-2020-0031-DRAFT-54850
NOAA-NMFS-2020-0031-DRAFT-54851
NOAA-NMFS-2020-0031-DRAFT-54852
NOAA-NMFS-2020-0031-DRAFT-54854
NOAA-NMFS-2020-0031-DRAFT-54855
NOAA-NMFS-2020-0031-DRAFT-54856
NOAA-NMFS-2020-0031-DRAFT-54857
NOAA-NMFS-2020-0031-DRAFT-54858
NOAA-NMFS-2020-0031-DRAFT-54859
NOAA-NMFS-2020-0031-DRAFT-54862
NOAA-NMFS-2020-0031-DRAFT-54863
NOAA-NMFS-2020-0031-DRAFT-54864
NOAA-NMFS-2020-0031-DRAFT-54865
NOAA-NMFS-2020-0031-DRAFT-54866
NOAA-NMFS-2020-0031-DRAFT-54867
NOAA-NMFS-2020-0031-DRAFT-54868
NOAA-NMFS-2020-0031-DRAFT-54869
NOAA-NMFS-2020-0031-DRAFT-54870
NOAA-NMFS-2020-0031-DRAFT-54871
NOAA-NMFS-2020-0031-DRAFT-54873
NOAA-NMFS-2020-0031-DRAFT-54874
NOAA-NMFS-2020-0031-DRAFT-54875
NOAA-NMFS-2020-0031-DRAFT-54876
NOAA-NMFS-2020-0031-DRAFT-54877
NOAA-NMFS-2020-0031-DRAFT-54878
NOAA-NMFS-2020-0031-DRAFT-54879
NOAA-NMFS-2020-0031-DRAFT-54880
NOAA-NMFS-2020-0031-DRAFT-54881
NOAA-NMFS-2020-0031-DRAFT-54882
NOAA-NMFS-2020-0031-DRAFT-54883
NOAA-NMFS-2020-0031-DRAFT-54884
NOAA-NMFS-2020-0031-DRAFT-54885
NOAA-NMFS-2020-0031-DRAFT-54886
NOAA-NMFS-2020-0031-DRAFT-54887

Comment from Daniel Harris
Comment from Joan Smelkinson
Comment from Robin Brown
Comment from Lauren Appling
Comment from Michael Busby
Comment from Steven Nelson
Comment from Meg Hanrahan
Comment from Mark Fleming
Comment from Brenda Hartman
Comment from Patti Davis
Comment from Anita Garrison
Comment from Anonymous Anonymous
Comment from Sarah McKee
Comment from Lisa Togni
Comment from Victoria Heil
Comment from Irene Brennan
Comment from Belinda Mabry
Comment from Lynda Means
Comment from Diana Cowans
Comment from Margaret Hunt
Comment from Colleen Lobel
Comment from Trish Gilbert
Comment from Steve Gross
Comment from Mara Sansevero
Comment from Chansonette Buck
Comment from Andreanecia Morris
Comment from August Oberti
Comment from vana spear
Comment from Lureen Ferretti
Comment from Stephanie Stone
Comment from Maureen lynch
Comment from Babs Marchand
Comment from Victoria Wallington
Comment from Robert Wallace
Comment from Kyrie Elesion
Comment from Celia O'Kelley
Comment from Howard Gundlach
Comment from Jose Diaz
Comment from Nancy Boyce
Comment from Robert Brown
Comment from Judith DeAntonellis

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54888
NOAA-NMFS-2020-0031-DRAFT-54889
NOAA-NMFS-2020-0031-DRAFT-54890
NOAA-NMFS-2020-0031-DRAFT-54891
NOAA-NMFS-2020-0031-DRAFT-54892
NOAA-NMFS-2020-0031-DRAFT-54893
NOAA-NMFS-2020-0031-DRAFT-54894
NOAA-NMFS-2020-0031-DRAFT-54895
NOAA-NMFS-2020-0031-DRAFT-54896
NOAA-NMFS-2020-0031-DRAFT-54897
NOAA-NMFS-2020-0031-DRAFT-54898
NOAA-NMFS-2020-0031-DRAFT-54899
NOAA-NMFS-2020-0031-DRAFT-54900
NOAA-NMFS-2020-0031-DRAFT-54901
NOAA-NMFS-2020-0031-DRAFT-54902
NOAA-NMFS-2020-0031-DRAFT-54903
NOAA-NMFS-2020-0031-DRAFT-54904
NOAA-NMFS-2020-0031-DRAFT-54906
NOAA-NMFS-2020-0031-DRAFT-54907
NOAA-NMFS-2020-0031-DRAFT-54908
NOAA-NMFS-2020-0031-DRAFT-54909
NOAA-NMFS-2020-0031-DRAFT-54910

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54911

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54912
NOAA-NMFS-2020-0031-DRAFT-54913
NOAA-NMFS-2020-0031-DRAFT-54914
NOAA-NMFS-2020-0031-DRAFT-54916
NOAA-NMFS-2020-0031-DRAFT-54917
NOAA-NMFS-2020-0031-DRAFT-54918
NOAA-NMFS-2020-0031-DRAFT-54919
NOAA-NMFS-2020-0031-DRAFT-54920
NOAA-NMFS-2020-0031-DRAFT-54921
NOAA-NMFS-2020-0031-DRAFT-54922
NOAA-NMFS-2020-0031-DRAFT-54923
NOAA-NMFS-2020-0031-DRAFT-54924
NOAA-NMFS-2020-0031-DRAFT-54926
NOAA-NMFS-2020-0031-DRAFT-54927
NOAA-NMFS-2020-0031-DRAFT-54928
NOAA-NMFS-2020-0031-DRAFT-54929
NOAA-NMFS-2020-0031-DRAFT-54930

Comment from Kerri Kiernan
Comment from Cathy Barton
Comment from Nicholas Cartabona
Comment from Wendy Wittl
Comment from Catherine Holzman
Comment from Tara Adams
Comment from Phillip Hope
Comment from Mills, Marlene
Comment from josie Lopez
Comment from Nicholas Cartabona
Comment from Karen Burnette
Comment from Shirley Collins
Comment from Janet Hellweg
Comment from Nicholas Cartabona
Comment from Mary Mathena
Comment from NINI BLOCH
Comment from Laurie Izzo
Comment from Jean King
Comment from Ann Thryft
Comment from Lori Esposito
Comment from patricia holbrook
Comment from Alfred Klosterman
Comment from Coastwise Consulting
Anonymous
Comment from Wendolyn Hill
Comment from Janet Fotos
Comment from Robert Gantt
Comment from Rodney Whisenhunt
Comment from Barry Stover
Comment from Pamylle Greinke
Comment from John Paone
Comment from fran field
Comment from Carrie Foster-Campbell
Comment from Alejandra Suarez
Comment from Glenna Waterman
Comment from Ramsay Kieffer
Comment from Lakota Crystal
Comment from Paola Benassi
Comment from Irene Bucko
Comment from John Mora
Comment from Beverly Tiemann

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03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54931
NOAA-NMFS-2020-0031-DRAFT-54932
NOAA-NMFS-2020-0031-DRAFT-54933
NOAA-NMFS-2020-0031-DRAFT-54934
NOAA-NMFS-2020-0031-DRAFT-54935
NOAA-NMFS-2020-0031-DRAFT-54936
NOAA-NMFS-2020-0031-DRAFT-54937
NOAA-NMFS-2020-0031-DRAFT-54938
NOAA-NMFS-2020-0031-DRAFT-54939
NOAA-NMFS-2020-0031-DRAFT-54940
NOAA-NMFS-2020-0031-DRAFT-54941
NOAA-NMFS-2020-0031-DRAFT-54942

Comment from Barbara Hood
Comment from Desiree Weston
Comment from Marie pappas
Comment from Vincent Fonseca
Comment from Joanne Cockerill
Comment from Smith, Angela
Comment from Barbra K
Comment from Tobia, Tony
Comment from Rob Roberto
Comment from Jaremy Lynch
Comment from Susan Wechsler
Comment from Katherine Wright

03/24/2021

NOAA-NMFS-2020-0031-DRAFT-54946

01/01/2021
01/01/2021
01/04/2021
01/06/2021
01/07/2021
01/08/2021

NOAA-NMFS-2020-0031-DRAFT-0005
NOAA-NMFS-2020-0031-DRAFT-0006
NOAA-NMFS-2020-0031-DRAFT-0007
NOAA-NMFS-2020-0031-DRAFT-0008
NOAA-NMFS-2020-0031-DRAFT-0009
NOAA-NMFS-2020-0031-DRAFT-0010

New Document created by Coogan,
Colleen Catherine (NOAA)
Comment from John Nicastro
Comment from Harvey Yenkinson
Comment from Joe Mama
Comment from N/A N/A
Comment from Rollerson, Paige
Comment from WILLIAMS, JOHN

01/08/2021

NOAA-NMFS-2020-0031-DRAFT-0011

Rutkowski Oceana Comment on ALWTRP

01/08/2021
01/10/2021
01/12/2021
01/12/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/20/2021
01/14/2021
01/19/2021
01/19/2021
01/22/2021
01/22/2021
01/22/2021
01/20/2021
01/20/2021

NOAA-NMFS-2020-0031-DRAFT-0013
NOAA-NMFS-2020-0031-DRAFT-0014
NOAA-NMFS-2020-0031-DRAFT-0015
NOAA-NMFS-2020-0031-DRAFT-0016
NOAA-NMFS-2020-0031-DRAFT-5165
NOAA-NMFS-2020-0031-DRAFT-5136
NOAA-NMFS-2020-0031-DRAFT-5175
NOAA-NMFS-2020-0031-DRAFT-5160
NOAA-NMFS-2020-0031-DRAFT-5176
NOAA-NMFS-2020-0031-DRAFT-5178
NOAA-NMFS-2020-0031-DRAFT-5182
NOAA-NMFS-2020-0031-DRAFT-0017
NOAA-NMFS-2020-0031-DRAFT-5133
NOAA-NMFS-2020-0031-DRAFT-5132
NOAA-NMFS-2020-0031-DRAFT-5315
NOAA-NMFS-2020-0031-DRAFT-5296
NOAA-NMFS-2020-0031-DRAFT-5283
NOAA-NMFS-2020-0031-DRAFT-5134
NOAA-NMFS-2020-0031-DRAFT-5157

Fletcher Comments on ALWTRP
Comment from Seana Parker-Dalton
Comment from Anonymous
Comment from Desert Star Systems LLC
Comment from Anonymous
Comment from Anonymous
Comment from Marc Palombo
Comment from Mary Branch
Comment from Branch, Mary
Comment from Branch, Mary
Comment from Lasseter, Richard
Comment from Anonymous Anonymous
Comment from Zachary Plopper
Comment from Annalisa Tuel
Comment from Klass, Naomi
Comment from Ivie, Cecyl
Comment from Petras, Carrington
Comment from Bray, Jarod
Comment from LaBella, Katherine

01/20/2021
01/21/2021

NOAA-NMFS-2020-0031-DRAFT-5172
NOAA-NMFS-2020-0031-DRAFT-5196

01/21/2021

NOAA-NMFS-2020-0031-DRAFT-5195

01/21/2021
01/25/2021
01/22/2021
01/22/2021
01/23/2021
01/23/2021
01/25/2021
01/25/2021
01/26/2021
01/18/2021
01/26/2021
01/26/2021
01/26/2021
01/27/2021
01/15/2021
01/27/2021
01/28/2021
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01/28/2021
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01/28/2021
01/29/2021
01/29/2021
01/30/2021
01/31/2021
01/31/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/02/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-5194
NOAA-NMFS-2020-0031-DRAFT-5580
NOAA-NMFS-2020-0031-DRAFT-5347
NOAA-NMFS-2020-0031-DRAFT-5351
NOAA-NMFS-2020-0031-DRAFT-5393
NOAA-NMFS-2020-0031-DRAFT-5398
NOAA-NMFS-2020-0031-DRAFT-5686
NOAA-NMFS-2020-0031-DRAFT-5687
NOAA-NMFS-2020-0031-DRAFT-5735
NOAA-NMFS-2020-0031-DRAFT-5050
NOAA-NMFS-2020-0031-DRAFT-5736
NOAA-NMFS-2020-0031-DRAFT-5737
NOAA-NMFS-2020-0031-DRAFT-5738
NOAA-NMFS-2020-0031-DRAFT-5826
NOAA-NMFS-2020-0031-DRAFT-0018
NOAA-NMFS-2020-0031-DRAFT-5959
NOAA-NMFS-2020-0031-DRAFT-6121
NOAA-NMFS-2020-0031-DRAFT-6123
NOAA-NMFS-2020-0031-DRAFT-6124
NOAA-NMFS-2020-0031-DRAFT-6125
NOAA-NMFS-2020-0031-DRAFT-6127
NOAA-NMFS-2020-0031-DRAFT-6129
NOAA-NMFS-2020-0031-DRAFT-6139
NOAA-NMFS-2020-0031-DRAFT-6179
NOAA-NMFS-2020-0031-DRAFT-6200
NOAA-NMFS-2020-0031-DRAFT-6212
NOAA-NMFS-2020-0031-DRAFT-6238
NOAA-NMFS-2020-0031-DRAFT-6265
NOAA-NMFS-2020-0031-DRAFT-6271
NOAA-NMFS-2020-0031-DRAFT-6272
NOAA-NMFS-2020-0031-DRAFT-6420
NOAA-NMFS-2020-0031-DRAFT-6460
NOAA-NMFS-2020-0031-DRAFT-6477
NOAA-NMFS-2020-0031-DRAFT-6479
NOAA-NMFS-2020-0031-DRAFT-6525
NOAA-NMFS-2020-0031-DRAFT-6620
NOAA-NMFS-2020-0031-DRAFT-6728

Comment from Jarod Bray
Comment from Terrick, Traci
Comment from H2O Captain Eco-Tour
Private Boat Excursions
Comment from Mills , Jacqueline
Comment from Pilarova, Veronika
Comment from Bossert , Kristen
Comment from Hilf, Linda
Comment from Anonymous Anonymous
Comment from Ciocci, Michael
Comment from Repensek , Gail
Comment from Byrnes, Kathleen
Comment from Jean Public
Comment from Robert MacLean
Comment from Simmons, Thomas
Comment from Rubin, Leah
Comment from Meyer-Gutbrod, Erin
Comment from Boenish, Robert
Comment from James Mulcare
Comment from Alexander Costidis
Comment from Daniels, Jamie
Comment from Scalcione, Donna
Comment from stockwell, richard
Comment from Silver, Darcy
Comment from Mills , Jacqueline
Comment from Lawrence , Christine
Comment from MENIN SR, GAEY
Comment from Michael Kapp
Comment from Maria Blaszczyk
Comment from Ann Lindberg
Comment from Barans, Charles
Comment from Meg Hoyle
Comment from Will walkthedog
Comment from Carol HILL
Comment from Laura Buchinger
Comment from Rivera, Antonio
Comment from Christine Ventura
Comment from Nancy Argenziano
Comment from Patricia Gerresheim
Comment from Eve Vogel
Comment from Barbara Woolley

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02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6754
NOAA-NMFS-2020-0031-DRAFT-6789
NOAA-NMFS-2020-0031-DRAFT-6809
NOAA-NMFS-2020-0031-DRAFT-6830
NOAA-NMFS-2020-0031-DRAFT-6831
NOAA-NMFS-2020-0031-DRAFT-6833
NOAA-NMFS-2020-0031-DRAFT-6842
NOAA-NMFS-2020-0031-DRAFT-6848
NOAA-NMFS-2020-0031-DRAFT-6849
NOAA-NMFS-2020-0031-DRAFT-6851
NOAA-NMFS-2020-0031-DRAFT-6855
NOAA-NMFS-2020-0031-DRAFT-6857
NOAA-NMFS-2020-0031-DRAFT-6859
NOAA-NMFS-2020-0031-DRAFT-6863
NOAA-NMFS-2020-0031-DRAFT-6866
NOAA-NMFS-2020-0031-DRAFT-6867
NOAA-NMFS-2020-0031-DRAFT-6868
NOAA-NMFS-2020-0031-DRAFT-6869
NOAA-NMFS-2020-0031-DRAFT-6871
NOAA-NMFS-2020-0031-DRAFT-6894
NOAA-NMFS-2020-0031-DRAFT-6895
NOAA-NMFS-2020-0031-DRAFT-6903
NOAA-NMFS-2020-0031-DRAFT-6905
NOAA-NMFS-2020-0031-DRAFT-6913
NOAA-NMFS-2020-0031-DRAFT-6914
NOAA-NMFS-2020-0031-DRAFT-6922
NOAA-NMFS-2020-0031-DRAFT-6923
NOAA-NMFS-2020-0031-DRAFT-6926
NOAA-NMFS-2020-0031-DRAFT-6927
NOAA-NMFS-2020-0031-DRAFT-6929
NOAA-NMFS-2020-0031-DRAFT-6930
NOAA-NMFS-2020-0031-DRAFT-6933
NOAA-NMFS-2020-0031-DRAFT-6939
NOAA-NMFS-2020-0031-DRAFT-6945
NOAA-NMFS-2020-0031-DRAFT-6949
NOAA-NMFS-2020-0031-DRAFT-6954
NOAA-NMFS-2020-0031-DRAFT-6955
NOAA-NMFS-2020-0031-DRAFT-6961
NOAA-NMFS-2020-0031-DRAFT-6964
NOAA-NMFS-2020-0031-DRAFT-6969
NOAA-NMFS-2020-0031-DRAFT-6976

Comment from Greg Hamby
Comment from Mark Perry
Comment from Ellen Gordon
Comment from Robert Brown
Comment from Janet Heinle
Comment from sandra iseman
Comment from Jonathan Mitchell
Comment from Leo R. Sandy
Comment from Rebecca Christoffel
Comment from Doreen Tignanelli
Comment from Heidi ahlstrand
Comment from Grace Holden
Comment from Jennifer Reinish
Comment from Mary Walls
Comment from sonya chan
Comment from Robin Pappas
Comment from Judy Irving
Comment from Jana Perinchief
Comment from Bridgett Heinly
Comment from randy sailer
Comment from JoAnne Larsen
Comment from Michael Stock
Comment from Tracey Bonner
Comment from ALAN BOSCH
Comment from Jeff Fromberg
Comment from Dwight Marshall
Comment from Mary Ann Leitch
Comment from gilles dubois
Comment from Bonnie MacRaith
Comment from Margo Salone
Comment from Bob Prokopczyk
Comment from Dan Fogarty
Comment from margo wyse
Comment from Leslie Lazzo
Comment from Angela Brace
Comment from Linda Badham
Comment from Richard Riggs
Comment from Susan Krause
Comment from Richard Clark
Comment from Robert Reed
Comment from J Lasahn

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-6987
NOAA-NMFS-2020-0031-DRAFT-6989
NOAA-NMFS-2020-0031-DRAFT-6991
NOAA-NMFS-2020-0031-DRAFT-6993
NOAA-NMFS-2020-0031-DRAFT-7000
NOAA-NMFS-2020-0031-DRAFT-7003
NOAA-NMFS-2020-0031-DRAFT-7005
NOAA-NMFS-2020-0031-DRAFT-7010
NOAA-NMFS-2020-0031-DRAFT-7014
NOAA-NMFS-2020-0031-DRAFT-7017
NOAA-NMFS-2020-0031-DRAFT-7024
NOAA-NMFS-2020-0031-DRAFT-7031
NOAA-NMFS-2020-0031-DRAFT-7032
NOAA-NMFS-2020-0031-DRAFT-7037
NOAA-NMFS-2020-0031-DRAFT-7042
NOAA-NMFS-2020-0031-DRAFT-7043
NOAA-NMFS-2020-0031-DRAFT-7053
NOAA-NMFS-2020-0031-DRAFT-7060
NOAA-NMFS-2020-0031-DRAFT-7062
NOAA-NMFS-2020-0031-DRAFT-7063
NOAA-NMFS-2020-0031-DRAFT-7077
NOAA-NMFS-2020-0031-DRAFT-7078
NOAA-NMFS-2020-0031-DRAFT-7084
NOAA-NMFS-2020-0031-DRAFT-7095
NOAA-NMFS-2020-0031-DRAFT-7109
NOAA-NMFS-2020-0031-DRAFT-7113
NOAA-NMFS-2020-0031-DRAFT-7144
NOAA-NMFS-2020-0031-DRAFT-7146
NOAA-NMFS-2020-0031-DRAFT-7148
NOAA-NMFS-2020-0031-DRAFT-7152
NOAA-NMFS-2020-0031-DRAFT-7156
NOAA-NMFS-2020-0031-DRAFT-7163
NOAA-NMFS-2020-0031-DRAFT-7169
NOAA-NMFS-2020-0031-DRAFT-7171
NOAA-NMFS-2020-0031-DRAFT-7196
NOAA-NMFS-2020-0031-DRAFT-7212
NOAA-NMFS-2020-0031-DRAFT-7225
NOAA-NMFS-2020-0031-DRAFT-7231
NOAA-NMFS-2020-0031-DRAFT-7233
NOAA-NMFS-2020-0031-DRAFT-7235
NOAA-NMFS-2020-0031-DRAFT-7255

Comment from Susan Weems
Comment from dorothy blake
Comment from Donna Delisi
Comment from Pamela Rogers
Comment from Pam Evans
Comment from Carter Neal
Comment from Emily Sagovac
Comment from Sally Jacques
Comment from doug krause
Comment from Judi Calvi
Comment from Sylvana Arguello
Comment from Georgia Shankel
Comment from Steven Morris
Comment from Tia Simon
Comment from DEBORAH SMITH
Comment from Julia Couchman
Comment from KENDRICK MILLER
Comment from Amy Harlib
Comment from Nancy Schultz
Comment from Charles Smith
Comment from john mattinen
Comment from Lynn Costa
Comment from Robert Posch
Comment from Annie Vola
Comment from Rob Jursa
Comment from Anna Brewer
Comment from Katharine Odell
Comment from Maxwell Fogleman
Comment from k. francis
Comment from Anonymous Anonymous
Comment from Lynn Wilbur
Comment from G. Simmons
Comment from Laura Blanchette
Comment from chris ottosen
Comment from Marguery Lee Zucker
Comment from Karen Anderson
Comment from Anonymous Anonymous
Comment from Nico Duon
Comment from Kellen Dunn
Comment from nicolas duon
Comment from Elizabeth Elder

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7258
NOAA-NMFS-2020-0031-DRAFT-7266
NOAA-NMFS-2020-0031-DRAFT-7278
NOAA-NMFS-2020-0031-DRAFT-7280
NOAA-NMFS-2020-0031-DRAFT-7197
NOAA-NMFS-2020-0031-DRAFT-7290
NOAA-NMFS-2020-0031-DRAFT-7292
NOAA-NMFS-2020-0031-DRAFT-7326
NOAA-NMFS-2020-0031-DRAFT-7328
NOAA-NMFS-2020-0031-DRAFT-7332
NOAA-NMFS-2020-0031-DRAFT-7336
NOAA-NMFS-2020-0031-DRAFT-7353
NOAA-NMFS-2020-0031-DRAFT-7355
NOAA-NMFS-2020-0031-DRAFT-7362
NOAA-NMFS-2020-0031-DRAFT-7370
NOAA-NMFS-2020-0031-DRAFT-7371
NOAA-NMFS-2020-0031-DRAFT-7374
NOAA-NMFS-2020-0031-DRAFT-7375
NOAA-NMFS-2020-0031-DRAFT-7418
NOAA-NMFS-2020-0031-DRAFT-7456
NOAA-NMFS-2020-0031-DRAFT-7496
NOAA-NMFS-2020-0031-DRAFT-7531
NOAA-NMFS-2020-0031-DRAFT-7567
NOAA-NMFS-2020-0031-DRAFT-7577
NOAA-NMFS-2020-0031-DRAFT-7585

02/03/2021

NOAA-NMFS-2020-0031-DRAFT-7639

02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021

NOAA-NMFS-2020-0031-DRAFT-7678
NOAA-NMFS-2020-0031-DRAFT-7681
NOAA-NMFS-2020-0031-DRAFT-7698
NOAA-NMFS-2020-0031-DRAFT-7722
NOAA-NMFS-2020-0031-DRAFT-7725
NOAA-NMFS-2020-0031-DRAFT-7731
NOAA-NMFS-2020-0031-DRAFT-7787
NOAA-NMFS-2020-0031-DRAFT-7795
NOAA-NMFS-2020-0031-DRAFT-7809
NOAA-NMFS-2020-0031-DRAFT-7832
NOAA-NMFS-2020-0031-DRAFT-7835
NOAA-NMFS-2020-0031-DRAFT-7848
NOAA-NMFS-2020-0031-DRAFT-7860
NOAA-NMFS-2020-0031-DRAFT-7866

Comment from Robyn Deveney
Comment from Garry Taroli
Comment from Arden Green
Comment from Emily Dickinson-Adams
Comment from Marguery Lee Zucker
Comment from Anonymous Anonymous
Comment from Andrea Wolfson
Comment from Sue Harris
Comment from Tony Vecchio
Comment from Peter Broderson
Comment from Juli Kring
Comment from Barbara Harper
Comment from jacqueline wolfe
Comment from Carol Harris
Comment from robin morton
Comment from Robert Badcock
Comment from Charles Greene
Comment from Evelyn Coltman
Comment from Dana Oholorogg
Comment from Sheila Morgan
Comment from Alan McConigly
Comment from Carl Oerke Jr
Comment from Louise Kane
Comment from anthony Montapert
Comment from alice Jena
Comment from MICHAEL and DENISE
RESNICK
Comment from Constance Garcia-Barrio
Comment from Leslene Dunn
Comment from Melanie Wentz
Comment from rochelle ellison
Comment from Love Howard
Comment from Charles Barker
Comment from Don Schwartz
Comment from Deborah Voves
Comment from Vesna Glavina
Comment from Kathi Ridgway
Comment from sarah sowambur
Comment from Delphine Holman
Comment from Joanne Lingerfelt
Comment from clifford chapman

02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/04/2021
02/05/2021
02/05/2021
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02/05/2021
02/05/2021
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02/05/2021
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02/03/2021
02/05/2021
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02/06/2021
02/06/2021
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02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/06/2021
02/07/2021
02/07/2021
02/07/2021

NOAA-NMFS-2020-0031-DRAFT-7938
NOAA-NMFS-2020-0031-DRAFT-7983
NOAA-NMFS-2020-0031-DRAFT-8031
NOAA-NMFS-2020-0031-DRAFT-8073
NOAA-NMFS-2020-0031-DRAFT-8077
NOAA-NMFS-2020-0031-DRAFT-8083
NOAA-NMFS-2020-0031-DRAFT-8091
NOAA-NMFS-2020-0031-DRAFT-8133
NOAA-NMFS-2020-0031-DRAFT-8151
NOAA-NMFS-2020-0031-DRAFT-8168
NOAA-NMFS-2020-0031-DRAFT-8208
NOAA-NMFS-2020-0031-DRAFT-8246
NOAA-NMFS-2020-0031-DRAFT-8252
NOAA-NMFS-2020-0031-DRAFT-8295
NOAA-NMFS-2020-0031-DRAFT-8298
NOAA-NMFS-2020-0031-DRAFT-8300
NOAA-NMFS-2020-0031-DRAFT-8303
NOAA-NMFS-2020-0031-DRAFT-8304
NOAA-NMFS-2020-0031-DRAFT-8310
NOAA-NMFS-2020-0031-DRAFT-8344
NOAA-NMFS-2020-0031-DRAFT-8297
NOAA-NMFS-2020-0031-DRAFT-7453
NOAA-NMFS-2020-0031-DRAFT-8390
NOAA-NMFS-2020-0031-DRAFT-8403
NOAA-NMFS-2020-0031-DRAFT-8443
NOAA-NMFS-2020-0031-DRAFT-8464
NOAA-NMFS-2020-0031-DRAFT-8481
NOAA-NMFS-2020-0031-DRAFT-8532
NOAA-NMFS-2020-0031-DRAFT-8602
NOAA-NMFS-2020-0031-DRAFT-8611
NOAA-NMFS-2020-0031-DRAFT-8616
NOAA-NMFS-2020-0031-DRAFT-8685
NOAA-NMFS-2020-0031-DRAFT-8702
NOAA-NMFS-2020-0031-DRAFT-8718
NOAA-NMFS-2020-0031-DRAFT-8772
NOAA-NMFS-2020-0031-DRAFT-8805
NOAA-NMFS-2020-0031-DRAFT-8809
NOAA-NMFS-2020-0031-DRAFT-8819
NOAA-NMFS-2020-0031-DRAFT-8865
NOAA-NMFS-2020-0031-DRAFT-8894
NOAA-NMFS-2020-0031-DRAFT-8904

Comment from Lindsay Schoen Lane
Comment from Diana Douglas
Comment from Mary Moderacki
Comment from Laraine Lebron
Comment from Dan Richman
Comment from Tamara Rakic
Comment from Mary Dosch
Comment from Holly Rose
Comment from Elizabeth Garratt
Comment from Lotte Larsson
Comment from Pam Mettier
Comment from Linda Carroll
Comment from Blake Wu
Alex Costidis
Scott Barton PR Comments
Wiliam McLellan
Comment from Scott Melick
Comment from Raul.M. Grijalve
Comment from Nicole Schildcrout-Lloyd
Comment from Kelli Reynolds
Robert Rutkowski 2nd comment
Comment from Sigrid Ramos
Comment from Diane Gaw
Comment from maria lopes
Comment from Peter Feka
Comment from Dobi Dobroslawa
Comment from Charrie Janzen
Comment from Drew Martin
Comment from Thomas Sanders
Comment from Marilyn Rock
Comment from Freya Harris
Comment from Kay Campbell
Comment from Trish Hussey
Comment from Mary Pringle
Comment from marilyn evenson
Comment from karen kindel
Comment from Jasmine Littleson
Comment from Gertrude Battaly
Comment from Victoria Milne
Comment from Lyra Brennan
Comment from Evelyn Cronise

02/07/2021
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02/14/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/09/2021

NOAA-NMFS-2020-0031-DRAFT-8906
NOAA-NMFS-2020-0031-DRAFT-8961
NOAA-NMFS-2020-0031-DRAFT-8966
NOAA-NMFS-2020-0031-DRAFT-8987
NOAA-NMFS-2020-0031-DRAFT-8988
NOAA-NMFS-2020-0031-DRAFT-8994
NOAA-NMFS-2020-0031-DRAFT-9006
NOAA-NMFS-2020-0031-DRAFT-9023
NOAA-NMFS-2020-0031-DRAFT-9075
NOAA-NMFS-2020-0031-DRAFT-9090
NOAA-NMFS-2020-0031-DRAFT-9135
NOAA-NMFS-2020-0031-DRAFT-9146
NOAA-NMFS-2020-0031-DRAFT-9155
NOAA-NMFS-2020-0031-DRAFT-9157
NOAA-NMFS-2020-0031-DRAFT-9202
NOAA-NMFS-2020-0031-DRAFT-9217
NOAA-NMFS-2020-0031-DRAFT-9223
NOAA-NMFS-2020-0031-DRAFT-9224
NOAA-NMFS-2020-0031-DRAFT-9251
NOAA-NMFS-2020-0031-DRAFT-9303
NOAA-NMFS-2020-0031-DRAFT-9329
NOAA-NMFS-2020-0031-DRAFT-9336
NOAA-NMFS-2020-0031-DRAFT-9483
NOAA-NMFS-2020-0031-DRAFT-9615
NOAA-NMFS-2020-0031-DRAFT-10048
NOAA-NMFS-2020-0031-DRAFT-10108
NOAA-NMFS-2020-0031-DRAFT-10264
NOAA-NMFS-2020-0031-DRAFT-10374
NOAA-NMFS-2020-0031-DRAFT-10413
NOAA-NMFS-2020-0031-DRAFT-10478
NOAA-NMFS-2020-0031-DRAFT-13369
NOAA-NMFS-2020-0031-DRAFT-13427
NOAA-NMFS-2020-0031-DRAFT-10846
NOAA-NMFS-2020-0031-DRAFT-14243
NOAA-NMFS-2020-0031-DRAFT-10988
NOAA-NMFS-2020-0031-DRAFT-11038
NOAA-NMFS-2020-0031-DRAFT-11077
NOAA-NMFS-2020-0031-DRAFT-11168
NOAA-NMFS-2020-0031-DRAFT-11171
NOAA-NMFS-2020-0031-DRAFT-11175
NOAA-NMFS-2020-0031-DRAFT-11368

Comment from Duressa Pujat
Comment from Betty Kaine
Comment from John Dziak
Comment from Molly McCoy
Comment from Nicole Downing
Comment from Ann Oliver
Comment from Melissa Reed
Comment from jenne sindoni
Comment from Will Walkthedog
Comment from Jenifer Steele
Comment from RuthAnn Pottinger
Comment from Holly Gallo
Comment from Robert Norton
Comment from Margaret Halbeisen
Comment from Karen Burroughs
Comment from Jasmine Davidson
Comment from David Holzman
Comment from Peter Anonymous
Comment from Michele Woodburn
Comment from Dana Campbell
Comment from Jeanne Musgrove
Comment from Turner, Deanna
Comment from Joyce Weir
Comment from Michael House
Comment from Barbara Russek
Comment from Mary DeVoe
Comment from Marc Fleisher
Comment from Mary Finsterwalder
Comment from John Paone
Comment from Sandra Webb
Comment from Anonymous Anonymous
Comment from Anonymous Anonymous
Comment from David Schwartz
Comment from David Dow
Comment from Susan Pierson
Comment from Cynthia Opderbeck
Comment from Patrick Paine
Comment from arlie siebert
Comment from Lora Leland
Comment from Vincent McKay
Comment from Aaron Miller

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02/09/2021
02/17/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/18/2021
02/18/2021
02/09/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-11373
NOAA-NMFS-2020-0031-DRAFT-11385
NOAA-NMFS-2020-0031-DRAFT-14881
NOAA-NMFS-2020-0031-DRAFT-11414
NOAA-NMFS-2020-0031-DRAFT-11455
NOAA-NMFS-2020-0031-DRAFT-11534
NOAA-NMFS-2020-0031-DRAFT-11609
NOAA-NMFS-2020-0031-DRAFT-11615
NOAA-NMFS-2020-0031-DRAFT-11617
NOAA-NMFS-2020-0031-DRAFT-11632
NOAA-NMFS-2020-0031-DRAFT-15523
NOAA-NMFS-2020-0031-DRAFT-15528
NOAA-NMFS-2020-0031-DRAFT-11710
NOAA-NMFS-2020-0031-DRAFT-17029

02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17137

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
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02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-18400
NOAA-NMFS-2020-0031-DRAFT-18399
NOAA-NMFS-2020-0031-DRAFT-18397
NOAA-NMFS-2020-0031-DRAFT-18331
NOAA-NMFS-2020-0031-DRAFT-18311
NOAA-NMFS-2020-0031-DRAFT-18230
NOAA-NMFS-2020-0031-DRAFT-18193
NOAA-NMFS-2020-0031-DRAFT-18179
NOAA-NMFS-2020-0031-DRAFT-18172
NOAA-NMFS-2020-0031-DRAFT-18167
NOAA-NMFS-2020-0031-DRAFT-18166
NOAA-NMFS-2020-0031-DRAFT-18135
NOAA-NMFS-2020-0031-DRAFT-18133
NOAA-NMFS-2020-0031-DRAFT-18052
NOAA-NMFS-2020-0031-DRAFT-17981
NOAA-NMFS-2020-0031-DRAFT-17942
NOAA-NMFS-2020-0031-DRAFT-17904
NOAA-NMFS-2020-0031-DRAFT-17847
NOAA-NMFS-2020-0031-DRAFT-17840
NOAA-NMFS-2020-0031-DRAFT-17795
NOAA-NMFS-2020-0031-DRAFT-17780
NOAA-NMFS-2020-0031-DRAFT-17759
NOAA-NMFS-2020-0031-DRAFT-17734
NOAA-NMFS-2020-0031-DRAFT-17697
NOAA-NMFS-2020-0031-DRAFT-17693

Comment from Anca Vlasopolos
Comment from David Edwards
DB public comment
Comment from Brady, Paula
Comment from Norm Doebel
Comment from Doug Steves
Comment from Terri Coppersmith
Comment from Kate Ashley
Comment from Leslie O'Neil
Comment from Martita Lopez
SW public comment
MS public comment
Comment from Sarah Lifton
KM public comment
Acadia Institute of Oceanography
student letters
Comment from Judith Nichols
Comment from elana Rose
Comment from DAVID HARBIN
Comment from Gloria McClintock
Comment from Emma Cady
Comment from Roger Hallsten
Comment from Delphine Reynier
Comment from Sue Kelso Haines
Comment from Bernadette Webster
Comment from michele kritsky
Comment from Kathleen Shea
Comment from Donna Mulvey
Comment from Daniel Vallero
Comment from Kerry Krebill
Comment from Marietta Scaltrito
Comment from Melissa Polick
Comment from Tami Lukachy
Comment from Nancy Porter
Comment from Margaret Breen
Comment from Sandra Daenzer
Comment from Dawn Matta
Comment from Danette Delconte
Comment from Danielle Schneider
Comment from James Cooke
Comment from Kathleen SEWRIGHT

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02/18/2021
02/09/2021
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02/19/2021
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02/09/2021
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02/09/2021
02/09/2021
02/09/2021
02/09/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-17658
NOAA-NMFS-2020-0031-DRAFT-17640
NOAA-NMFS-2020-0031-DRAFT-17631
NOAA-NMFS-2020-0031-DRAFT-17611
NOAA-NMFS-2020-0031-DRAFT-17605
NOAA-NMFS-2020-0031-DRAFT-17460
NOAA-NMFS-2020-0031-DRAFT-17428
NOAA-NMFS-2020-0031-DRAFT-17336
NOAA-NMFS-2020-0031-DRAFT-17215
NOAA-NMFS-2020-0031-DRAFT-17088
NOAA-NMFS-2020-0031-DRAFT-17082
NOAA-NMFS-2020-0031-DRAFT-17062
NOAA-NMFS-2020-0031-DRAFT-17003
NOAA-NMFS-2020-0031-DRAFT-12052
NOAA-NMFS-2020-0031-DRAFT-12135
NOAA-NMFS-2020-0031-DRAFT-21317
NOAA-NMFS-2020-0031-DRAFT-21403
NOAA-NMFS-2020-0031-DRAFT-21544
NOAA-NMFS-2020-0031-DRAFT-21547
NOAA-NMFS-2020-0031-DRAFT-21668
NOAA-NMFS-2020-0031-DRAFT-21669
NOAA-NMFS-2020-0031-DRAFT-21671
NOAA-NMFS-2020-0031-DRAFT-21672
NOAA-NMFS-2020-0031-DRAFT-21673
NOAA-NMFS-2020-0031-DRAFT-21674
NOAA-NMFS-2020-0031-DRAFT-21675
NOAA-NMFS-2020-0031-DRAFT-21776
NOAA-NMFS-2020-0031-DRAFT-21778
NOAA-NMFS-2020-0031-DRAFT-21784
NOAA-NMFS-2020-0031-DRAFT-12270
NOAA-NMFS-2020-0031-DRAFT-21865
NOAA-NMFS-2020-0031-DRAFT-21866
NOAA-NMFS-2020-0031-DRAFT-12316
NOAA-NMFS-2020-0031-DRAFT-12341
NOAA-NMFS-2020-0031-DRAFT-12474
NOAA-NMFS-2020-0031-DRAFT-12577
NOAA-NMFS-2020-0031-DRAFT-12667
NOAA-NMFS-2020-0031-DRAFT-12692
NOAA-NMFS-2020-0031-DRAFT-16965
NOAA-NMFS-2020-0031-DRAFT-16856
NOAA-NMFS-2020-0031-DRAFT-16790

Comment from Cherie Rachel
Comment from Danni Iosello
Comment from Kevin Crupi
Comment from Sandy Rhein
Comment from David Cencula
Comment from A Callan
Comment from Caroline Armon
Comment from Karen O'Brien
Comment from Jeannie Latimer
Comment from Bette Holland
Comment from Eileen Hennessy
Comment from Morgan Moralez
Comment from Pamela Goodman
Comment from Courtney Zyeda Cole
Comment from K Griffin
Comment from Elaine Becker
Comment from Serena Klempin
Comment from Aaron Miller
Comment from Charisse Sproha
Comment from Katie Stalcup
Comment from Pat Petro
Comment from Sullivan-Lord, Rachel
Comment from Gharakhani, Vivian
Comment from massey, joe
Comment from Catherine Uden
Comment from Pagliuca, Carolyn
Comment from Diana Harding
Comment from Griffith, Charlotte
Comment from Gualtieri, Stephanie
Comment from Mary Graffagnino
Comment from Krivo, Maureen
Comment from Cruz, Leticia
Comment from Shoshana Osofsky
Comment from Deborah Lyons
Comment from Elizabeth Jolin
Comment from Missy Kendrick
Comment from Nathan Iyer
Comment from Darcee Vorndran
Comment from Brown, Derek
Comment from Denis Tidrick
Comment from Davenport, Bobby

02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16753
NOAA-NMFS-2020-0031-DRAFT-16696
NOAA-NMFS-2020-0031-DRAFT-16618

02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16469

02/18/2021
02/09/2021
02/09/2021
02/09/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
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02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/10/2021
02/11/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-16338
NOAA-NMFS-2020-0031-DRAFT-12985
NOAA-NMFS-2020-0031-DRAFT-12996
NOAA-NMFS-2020-0031-DRAFT-13003
NOAA-NMFS-2020-0031-DRAFT-13132
NOAA-NMFS-2020-0031-DRAFT-13189
NOAA-NMFS-2020-0031-DRAFT-13251
NOAA-NMFS-2020-0031-DRAFT-13292
NOAA-NMFS-2020-0031-DRAFT-13305
NOAA-NMFS-2020-0031-DRAFT-13338
NOAA-NMFS-2020-0031-DRAFT-13353
NOAA-NMFS-2020-0031-DRAFT-13363
NOAA-NMFS-2020-0031-DRAFT-13371
NOAA-NMFS-2020-0031-DRAFT-13388
NOAA-NMFS-2020-0031-DRAFT-13424
NOAA-NMFS-2020-0031-DRAFT-13435
NOAA-NMFS-2020-0031-DRAFT-13442
NOAA-NMFS-2020-0031-DRAFT-13444
NOAA-NMFS-2020-0031-DRAFT-13458
NOAA-NMFS-2020-0031-DRAFT-13469
NOAA-NMFS-2020-0031-DRAFT-13476
NOAA-NMFS-2020-0031-DRAFT-13477
NOAA-NMFS-2020-0031-DRAFT-13498
NOAA-NMFS-2020-0031-DRAFT-13499
NOAA-NMFS-2020-0031-DRAFT-13500
NOAA-NMFS-2020-0031-DRAFT-13501
NOAA-NMFS-2020-0031-DRAFT-13502
NOAA-NMFS-2020-0031-DRAFT-13503
NOAA-NMFS-2020-0031-DRAFT-13531
NOAA-NMFS-2020-0031-DRAFT-13557
NOAA-NMFS-2020-0031-DRAFT-13692
NOAA-NMFS-2020-0031-DRAFT-13722
NOAA-NMFS-2020-0031-DRAFT-13757

02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13764

02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13775

Comment from Gregory Linn
Comment from Sierra Lefebvre
Comment from Arch Lamb
Georgia_Conservancy_NOAA_Right_Wh
ale_Take_Reduction
Comment from Bobbee Murr
Comment from Betsy Smith
Comment from Claire Sefiane
Comment from Patrice Curedale
Comment from Jean Naples
Comment from Jim Steitz
Comment from Turner, Deanna
Comment from Anonymous Anonymous
Comment from Barbara Bradley
Comment from Lisa Dill
Comment from Evangeline Alexander
Comment from MICHAEL MESSMER
Comment from Shaun Dillon
Comment from Rachel Bramson
Comment from Wendy Drexler
Comment from John J Munro III
Comment from suzanne besaw
Comment from michael paige
Comment from Rosemary Conroy
Comment from Joanne Ravgiala
Comment from Margaret O'Neil
Comment from Teper, Doug
Comment from Bryce Lehner
Comment from Isaac Wolfson
Comment from Conner McGarry
Comment from Jozef Zekanoski
Comment from Marcus Klevan
Comment from Dianna Schulte
Comment from Daryn Clevesy
Comment from Rosemarie Santiesteban
Comment from segars, al
Comment from Kate McPherson
Comment from Rose, Kevin
Comment from Anulewicz, State
Representative Teri
Comment from Evans, Stacey

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02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/16/2021
02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14303
NOAA-NMFS-2020-0031-DRAFT-14329
NOAA-NMFS-2020-0031-DRAFT-14330
NOAA-NMFS-2020-0031-DRAFT-14337
NOAA-NMFS-2020-0031-DRAFT-14342
NOAA-NMFS-2020-0031-DRAFT-14362
NOAA-NMFS-2020-0031-DRAFT-14381
NOAA-NMFS-2020-0031-DRAFT-14394
NOAA-NMFS-2020-0031-DRAFT-14415

02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14420

02/16/2021
02/16/2021
02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14423
NOAA-NMFS-2020-0031-DRAFT-14441
NOAA-NMFS-2020-0031-DRAFT-14450

02/16/2021

NOAA-NMFS-2020-0031-DRAFT-14468

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/16/2021
02/16/2021
02/16/2021
02/16/2021
02/16/2021
02/17/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16199
NOAA-NMFS-2020-0031-DRAFT-16198
NOAA-NMFS-2020-0031-DRAFT-16193
NOAA-NMFS-2020-0031-DRAFT-16154
NOAA-NMFS-2020-0031-DRAFT-16150
NOAA-NMFS-2020-0031-DRAFT-14566
NOAA-NMFS-2020-0031-DRAFT-14569
NOAA-NMFS-2020-0031-DRAFT-14571
NOAA-NMFS-2020-0031-DRAFT-14574
NOAA-NMFS-2020-0031-DRAFT-14577
NOAA-NMFS-2020-0031-DRAFT-14617
NOAA-NMFS-2020-0031-DRAFT-16132
NOAA-NMFS-2020-0031-DRAFT-16113
NOAA-NMFS-2020-0031-DRAFT-16056
NOAA-NMFS-2020-0031-DRAFT-16012
NOAA-NMFS-2020-0031-DRAFT-16011

02/18/2021

NOAA-NMFS-2020-0031-DRAFT-16005

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15950
NOAA-NMFS-2020-0031-DRAFT-15944
NOAA-NMFS-2020-0031-DRAFT-15936
NOAA-NMFS-2020-0031-DRAFT-15911
NOAA-NMFS-2020-0031-DRAFT-15884
NOAA-NMFS-2020-0031-DRAFT-15854
NOAA-NMFS-2020-0031-DRAFT-15828

Comment from Daly, Tom
Comment from Anonymous Anonymous
Comment from Gary Fowler
Comment from Mark Palaez
Comment from Allen, Rep. Erick
Comment from Anonymous
Comment from Anonymous Anonymous
Comment from Gail Padgett
Comment from Ines Nedelcovic
Comment from JESSICA HOWELLEDWARDS
Comment from Bartlett, Mary
Comment from Victor Masnyj
Comment from Townsend, Mary
Comment from Oliver, Rep Mary
Margaret
Comment from Rolanda Ritzman
Comment from LK WOODRUFF
Comment from Gordon Steingart
Comment from Lobsterman, Maine
Comment from Diane English
Comment from bev lips
Comment from Sarah Austin
Comment from Anthony Cusimano
Comment from Charles Talley
Comment from John David Stevens
Comment from Wendy Van Dyke
Comment from James Sorrells
Comment from William yaroch
Comment from Chris Pedone
Comment from Rhesa Olsen
Comment from Dennis Jennings
Comment from Dennis and Susan
Kepner
Comment from Robin Down
Comment from Paula Morgan
Comment from Terrance Hutchinson
Comment from Sandy Sundquist
Comment from Penelope Wong
Comment from Beverly Solomon
Comment from MELISSA LUDTKE

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02/18/2021
02/17/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/17/2021
02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-14675
NOAA-NMFS-2020-0031-DRAFT-15704
NOAA-NMFS-2020-0031-DRAFT-14755
NOAA-NMFS-2020-0031-DRAFT-15549
NOAA-NMFS-2020-0031-DRAFT-15545
NOAA-NMFS-2020-0031-DRAFT-15462
NOAA-NMFS-2020-0031-DRAFT-15452
NOAA-NMFS-2020-0031-DRAFT-15442
NOAA-NMFS-2020-0031-DRAFT-15435
NOAA-NMFS-2020-0031-DRAFT-15403
NOAA-NMFS-2020-0031-DRAFT-15373
NOAA-NMFS-2020-0031-DRAFT-15176
NOAA-NMFS-2020-0031-DRAFT-15098
NOAA-NMFS-2020-0031-DRAFT-15097
NOAA-NMFS-2020-0031-DRAFT-15094
NOAA-NMFS-2020-0031-DRAFT-15091
NOAA-NMFS-2020-0031-DRAFT-15085
NOAA-NMFS-2020-0031-DRAFT-15074

02/17/2021

NOAA-NMFS-2020-0031-DRAFT-15071

02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/22/2021
02/18/2021
02/17/2021
02/17/2021

NOAA-NMFS-2020-0031-DRAFT-15069
NOAA-NMFS-2020-0031-DRAFT-15068
NOAA-NMFS-2020-0031-DRAFT-15065
NOAA-NMFS-2020-0031-DRAFT-15064
NOAA-NMFS-2020-0031-DRAFT-15059
NOAA-NMFS-2020-0031-DRAFT-15056
NOAA-NMFS-2020-0031-DRAFT-15054
NOAA-NMFS-2020-0031-DRAFT-15048
NOAA-NMFS-2020-0031-DRAFT-15045
NOAA-NMFS-2020-0031-DRAFT-15043
NOAA-NMFS-2020-0031-DRAFT-15031
NOAA-NMFS-2020-0031-DRAFT-15027
NOAA-NMFS-2020-0031-DRAFT-14960
NOAA-NMFS-2020-0031-DRAFT-14934
NOAA-NMFS-2020-0031-DRAFT-14919
NOAA-NMFS-2020-0031-DRAFT-14918
NOAA-NMFS-2020-0031-DRAFT-14857
NOAA-NMFS-2020-0031-DRAFT-22761
NOAA-NMFS-2020-0031-DRAFT-21112
NOAA-NMFS-2020-0031-DRAFT-15070
NOAA-NMFS-2020-0031-DRAFT-15067

Comment from Marga Frantz
Comment from Skelly, William
Comment from Logan Spratt
Comment from Anonymous Anonymous
Comment from Daniell Gilbert
Comment from Nina Minsky
Comment from Theresa Scherf
Comment from Susan Inman
Comment from Mary Parham
Comment from Mike Hatcher
Comment from Robert Puca
Comment from Burke, Barbara
Comment from Candis Whitney
Comment from Rachel Silverstein, Ph.D
Comment from Karen Swain
Comment from Hermina Glass-Hill
Comment from Dolores Pino
Comment from Michael Mihalas
Comment from Sandra FernandezAchenbach
Comment from nancy blastos
Comment from Alex Petersen
Comment from Alison Zyla
Comment from Joyce Morrison
Comment from Jeanette Spreemann
Comment from Joann Ramos
Comment from Anonymous Anonymous
Comment from Krista Early
Comment from The Trammell Law Firm
Comment from St. Marys EarthKeepers
Comment from Jean Dempsey
Comment from Daves, Nancy
Comment from Mark Hixon
Comment from Nora Schaper
Comment from Tonya Bonitatibus
Comment from Jenifer Hilburn
Comment from Jacques, Karen
Comment from Fernald, Bruce
Comment from Jennifer Christiano
Comment from Greer Griffith
Comment from Paul Gonin

02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/17/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021

NOAA-NMFS-2020-0031-DRAFT-15063
NOAA-NMFS-2020-0031-DRAFT-15061
NOAA-NMFS-2020-0031-DRAFT-15060
NOAA-NMFS-2020-0031-DRAFT-15058
NOAA-NMFS-2020-0031-DRAFT-15057
NOAA-NMFS-2020-0031-DRAFT-15055
NOAA-NMFS-2020-0031-DRAFT-20941
NOAA-NMFS-2020-0031-DRAFT-20936
NOAA-NMFS-2020-0031-DRAFT-20901
NOAA-NMFS-2020-0031-DRAFT-20834
NOAA-NMFS-2020-0031-DRAFT-20794
NOAA-NMFS-2020-0031-DRAFT-20741
NOAA-NMFS-2020-0031-DRAFT-20730
NOAA-NMFS-2020-0031-DRAFT-20723
NOAA-NMFS-2020-0031-DRAFT-18790
NOAA-NMFS-2020-0031-DRAFT-20562
NOAA-NMFS-2020-0031-DRAFT-20506
NOAA-NMFS-2020-0031-DRAFT-20470
NOAA-NMFS-2020-0031-DRAFT-20457
NOAA-NMFS-2020-0031-DRAFT-20454
NOAA-NMFS-2020-0031-DRAFT-20409
NOAA-NMFS-2020-0031-DRAFT-20408
NOAA-NMFS-2020-0031-DRAFT-20406
NOAA-NMFS-2020-0031-DRAFT-20395
NOAA-NMFS-2020-0031-DRAFT-20353
NOAA-NMFS-2020-0031-DRAFT-20310
NOAA-NMFS-2020-0031-DRAFT-20274
NOAA-NMFS-2020-0031-DRAFT-20098

02/18/2021

NOAA-NMFS-2020-0031-DRAFT-20058

02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/18/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021

NOAA-NMFS-2020-0031-DRAFT-19192
NOAA-NMFS-2020-0031-DRAFT-19203
NOAA-NMFS-2020-0031-DRAFT-19238
NOAA-NMFS-2020-0031-DRAFT-19257
NOAA-NMFS-2020-0031-DRAFT-19440
NOAA-NMFS-2020-0031-DRAFT-19496
NOAA-NMFS-2020-0031-DRAFT-21867
NOAA-NMFS-2020-0031-DRAFT-21868
NOAA-NMFS-2020-0031-DRAFT-21869
NOAA-NMFS-2020-0031-DRAFT-21870
NOAA-NMFS-2020-0031-DRAFT-21871

Comment from Yuval Baharav
Comment from Linda C Hall, PhD
Comment from Debra Wills
Comment from Danielle Barcilon
Comment from Deborah Fugate
Comment from Aileen Will
Comment from Phyllis Lau
Comment from I.J. DuBois
Comment from Carol Sadowski
Comment from Karen Estok
Comment from Sheri Price
Comment from Jeffrey Blackman
Comment from Heather Brandli
Comment from ronald bulman
Comment from Michael Hawkey
Comment from Mark Stover
Comment from Lynn Wright
Comment from Shirley Schue
Comment from Mari Elvi
Comment from Maria Morris
Comment from Glenn Kreger
Comment from Sharyn Magee
Comment from Joan Ernst
Comment from Jackie Foster
Comment from Tracey Bonner
Comment from Glenda Beal
Comment from Hermine Willey
Comment from Michelle BafikVehslage
Comment from Reverend Nathan
Jimenez
Comment from Jean Naples
Comment from Lisa Woodside Woodside
Comment from Dave Kisor
Comment from Stephen Godfrey
Comment from Katherine Gould Martin
Comment from Bonnie Ryan
Comment from Jackson, Kim
Comment from Christopher, Barbara
Comment from Anonymous
Comment from Bray, Jarod
Comment from Krivo, Jared

02/19/2021

NOAA-NMFS-2020-0031-DRAFT-21872

02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/19/2021
02/18/2021
02/19/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/20/2021
02/21/2021
02/21/2021
02/21/2021
02/21/2021
02/21/2021
02/21/2021
02/21/2021
03/01/2021
02/21/2021
02/21/2021
02/21/2021

NOAA-NMFS-2020-0031-DRAFT-21886
NOAA-NMFS-2020-0031-DRAFT-21893
NOAA-NMFS-2020-0031-DRAFT-21905
NOAA-NMFS-2020-0031-DRAFT-21906
NOAA-NMFS-2020-0031-DRAFT-21907
NOAA-NMFS-2020-0031-DRAFT-21908
NOAA-NMFS-2020-0031-DRAFT-21924
NOAA-NMFS-2020-0031-DRAFT-21928
NOAA-NMFS-2020-0031-DRAFT-21952
NOAA-NMFS-2020-0031-DRAFT-21956
NOAA-NMFS-2020-0031-DRAFT-19614
NOAA-NMFS-2020-0031-DRAFT-22038
NOAA-NMFS-2020-0031-DRAFT-22039
NOAA-NMFS-2020-0031-DRAFT-22070
NOAA-NMFS-2020-0031-DRAFT-22082
NOAA-NMFS-2020-0031-DRAFT-22111
NOAA-NMFS-2020-0031-DRAFT-22281
NOAA-NMFS-2020-0031-DRAFT-22372
NOAA-NMFS-2020-0031-DRAFT-22373
NOAA-NMFS-2020-0031-DRAFT-22374
NOAA-NMFS-2020-0031-DRAFT-22375
NOAA-NMFS-2020-0031-DRAFT-22376
NOAA-NMFS-2020-0031-DRAFT-22377
NOAA-NMFS-2020-0031-DRAFT-22378
NOAA-NMFS-2020-0031-DRAFT-22379
NOAA-NMFS-2020-0031-DRAFT-22380
NOAA-NMFS-2020-0031-DRAFT-22381
NOAA-NMFS-2020-0031-DRAFT-22383
NOAA-NMFS-2020-0031-DRAFT-45930
NOAA-NMFS-2020-0031-DRAFT-22384
NOAA-NMFS-2020-0031-DRAFT-22385
NOAA-NMFS-2020-0031-DRAFT-22386

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-45927

03/01/2021
02/21/2021
02/21/2021
03/01/2021
02/21/2021

NOAA-NMFS-2020-0031-DRAFT-45926
NOAA-NMFS-2020-0031-DRAFT-22387
NOAA-NMFS-2020-0031-DRAFT-22388
NOAA-NMFS-2020-0031-DRAFT-45922
NOAA-NMFS-2020-0031-DRAFT-22389

Comment from Bowman Cutway,
Heather
Comment from Hart, Hayden
Comment from Nieuwkerk, Eben
Comment from Fisher, Lee
Comment from Julia Koets
Comment from Fisher, Gina
Comment from Balser, Andrew
Comment from cannon, park
Comment from Alan Inzerillo
Comment from Morrill, William
Comment from Anonymous
Comment from Donna VonBargen
Comment from Johnson, Hannah
Comment from Anonymous
Comment from faulkingham, herman
Comment from Miller, Chris
Comment from Campbell, Kay
Comment from Alley, Blake
Comment from Libby, gary
Comment from vyce, justin
Comment from ritchie, kevin
Comment from Faulkingham, Billy Bob
Comment from O’Connell, Jim
Comment from Johnson, Charles
Comment from Franks, Rachel
Comment from Blackwood , Royce
Comment from Warden, Katherine
Comment from Bordenkircher, Danette
Comment from Francis , Sugum
Comment from Anonymous Anonymous
Comment from M, J
Comment from Sturgeon, Andrea
Comment from Bafer, AJ
Comment from Atlantic Scientific Review
Group
Comment from Anonymous
Comment from Schierloh, Michael
Comment from Andreatta, Maria
Comment from Pinkham, Rob
Comment from McPherson, Cathy

03/01/2021
03/01/2021
02/22/2021
02/22/2021
02/22/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
02/22/2021
03/01/2021
03/01/2021
03/01/2021
02/22/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45921
NOAA-NMFS-2020-0031-DRAFT-45919
NOAA-NMFS-2020-0031-DRAFT-22395
NOAA-NMFS-2020-0031-DRAFT-22396
NOAA-NMFS-2020-0031-DRAFT-22397
NOAA-NMFS-2020-0031-DRAFT-45914
NOAA-NMFS-2020-0031-DRAFT-45910
NOAA-NMFS-2020-0031-DRAFT-45906
NOAA-NMFS-2020-0031-DRAFT-45904
NOAA-NMFS-2020-0031-DRAFT-22434
NOAA-NMFS-2020-0031-DRAFT-45901
NOAA-NMFS-2020-0031-DRAFT-45899
NOAA-NMFS-2020-0031-DRAFT-45898
NOAA-NMFS-2020-0031-DRAFT-22448
NOAA-NMFS-2020-0031-DRAFT-45890
NOAA-NMFS-2020-0031-DRAFT-45889
NOAA-NMFS-2020-0031-DRAFT-45884
NOAA-NMFS-2020-0031-DRAFT-45880
NOAA-NMFS-2020-0031-DRAFT-45878
NOAA-NMFS-2020-0031-DRAFT-45877
NOAA-NMFS-2020-0031-DRAFT-45862
NOAA-NMFS-2020-0031-DRAFT-45860
NOAA-NMFS-2020-0031-DRAFT-45857
NOAA-NMFS-2020-0031-DRAFT-45853
NOAA-NMFS-2020-0031-DRAFT-45846
NOAA-NMFS-2020-0031-DRAFT-45837
NOAA-NMFS-2020-0031-DRAFT-45828
NOAA-NMFS-2020-0031-DRAFT-45822
NOAA-NMFS-2020-0031-DRAFT-45821
NOAA-NMFS-2020-0031-DRAFT-45817
NOAA-NMFS-2020-0031-DRAFT-45814
NOAA-NMFS-2020-0031-DRAFT-45809
NOAA-NMFS-2020-0031-DRAFT-45808
NOAA-NMFS-2020-0031-DRAFT-45804
NOAA-NMFS-2020-0031-DRAFT-45782
NOAA-NMFS-2020-0031-DRAFT-45784
NOAA-NMFS-2020-0031-DRAFT-45776
NOAA-NMFS-2020-0031-DRAFT-45770

02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45761

02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45759

Comment from Genthner, Philip
Comment from Chipman , Chris
Comment from Hassan, Mazen
Comment from Samuel Sautaux
Comment from Howard , Shawn
Comment from Pinkham, Rob
Comment from Guyton, Carl
Comment from joyce, jason
Comment from Elisofon, Elin
Comment from Gail Bagley
Comment from Majumder, Sharanya
Comment from G. Gray, Dudley
Comment from Anderson, Dean
Comment from Merrick, Richard
Comment from Knowlton, Matthew
Comment from Zahira, Najma
Comment from Moody , Brian
Comment from Olsen, Mark
Comment from DiGiulio, Beth
Comment from Devens, David
Comment from Aggarwal, Chandan
Comment from Koerber, Kris
Comment from Moore, Chris
Comment from Skrod, Matthew
Comment from bruns, john
Comment from Rodriguez, Jeremy
Comment from Hanrahan, Michael
Comment from Lewis, Troy
Comment from Trahan, Jackson
Comment from Flores, Scarlette
Comment from Ziegler, Sydnie
Comment from Light, David
Comment from Dent, Alexandra
Comment from Poelzl, Volker
Comment from Wright, Bryden
Comment from Anderle, Micah
Comment from Dator, Grant
Comment from Scott, Lily
Comment from Environmental Review,
Inc
Comment from Temsamani, Aurelie

02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45753
NOAA-NMFS-2020-0031-DRAFT-45751
NOAA-NMFS-2020-0031-DRAFT-45740
NOAA-NMFS-2020-0031-DRAFT-45737
NOAA-NMFS-2020-0031-DRAFT-45727
NOAA-NMFS-2020-0031-DRAFT-45726
NOAA-NMFS-2020-0031-DRAFT-45723
NOAA-NMFS-2020-0031-DRAFT-45693
NOAA-NMFS-2020-0031-DRAFT-45683
NOAA-NMFS-2020-0031-DRAFT-45678
NOAA-NMFS-2020-0031-DRAFT-45664
NOAA-NMFS-2020-0031-DRAFT-45648
NOAA-NMFS-2020-0031-DRAFT-45644
NOAA-NMFS-2020-0031-DRAFT-45625
NOAA-NMFS-2020-0031-DRAFT-45609

02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45602

02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45598
NOAA-NMFS-2020-0031-DRAFT-45596
NOAA-NMFS-2020-0031-DRAFT-45595
NOAA-NMFS-2020-0031-DRAFT-45592
NOAA-NMFS-2020-0031-DRAFT-45591
NOAA-NMFS-2020-0031-DRAFT-45590
NOAA-NMFS-2020-0031-DRAFT-45589
NOAA-NMFS-2020-0031-DRAFT-45580
NOAA-NMFS-2020-0031-DRAFT-45574
NOAA-NMFS-2020-0031-DRAFT-45573
NOAA-NMFS-2020-0031-DRAFT-45571
NOAA-NMFS-2020-0031-DRAFT-45570
NOAA-NMFS-2020-0031-DRAFT-45567
NOAA-NMFS-2020-0031-DRAFT-45565
NOAA-NMFS-2020-0031-DRAFT-45562
NOAA-NMFS-2020-0031-DRAFT-45559
NOAA-NMFS-2020-0031-DRAFT-45545
NOAA-NMFS-2020-0031-DRAFT-45542
NOAA-NMFS-2020-0031-DRAFT-45539
NOAA-NMFS-2020-0031-DRAFT-45538
NOAA-NMFS-2020-0031-DRAFT-45537
NOAA-NMFS-2020-0031-DRAFT-45520
NOAA-NMFS-2020-0031-DRAFT-45517
NOAA-NMFS-2020-0031-DRAFT-45505

Comment from Lobsterman, Maine
Comment from Elsbecker, Emma
Comment from Osman, Emily
Comment from Wiseman, Abigail
Comment from Cohen, Wayne
Comment from O'Rourke, Ellen
Comment from Merryman, Jim
Comment from Kennedy, Jennifer
Comment from Lorentzen, Eric
Comment from Meredith LaLumia
Comment from Gilman, Kimberly
Comment from Osgood, Richard
Comment from Lateiner, Ulysses
Comment from Marshall, Pamela
Comment from KASTEL, DIANE
Comment from Hernandez, Ms. Maria
Celia
Comment from Lemoine, David
Comment from Wolf, Robert
Comment from Lawler, Carolyn
Comment from Corina Browarnik
Comment from McGraw -Keber, Susan
Comment from Scott, Eleanore
Comment from Dunham, Daryl
Comment from Windsor, West
Comment from Todd, John
Comment from Mouse, Mickey
Comment from Norton, Tyler
Comment from DeSalvo, Joseph
Comment from Riccio, Jeff
Comment from Katusha, Barbara
Comment from Gage, Odin
Comment from Collier, Claudia
Comment from Dick, Rebecca
Comment from Shirey, Linda
Comment from Palladino, Joann
Comment from Frey, Brenda
Comment from Rudolph, JoEllen
Comment from Malyon, Ann
Comment from Gray, Gail
Comment from Subjenski, Marion

02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-45494
NOAA-NMFS-2020-0031-DRAFT-45486
NOAA-NMFS-2020-0031-DRAFT-45484
NOAA-NMFS-2020-0031-DRAFT-45475
NOAA-NMFS-2020-0031-DRAFT-45467
NOAA-NMFS-2020-0031-DRAFT-45451
NOAA-NMFS-2020-0031-DRAFT-45449
NOAA-NMFS-2020-0031-DRAFT-45433
NOAA-NMFS-2020-0031-DRAFT-45425
NOAA-NMFS-2020-0031-DRAFT-45422
NOAA-NMFS-2020-0031-DRAFT-45418
NOAA-NMFS-2020-0031-DRAFT-45410
NOAA-NMFS-2020-0031-DRAFT-45409
NOAA-NMFS-2020-0031-DRAFT-45406
NOAA-NMFS-2020-0031-DRAFT-45405
NOAA-NMFS-2020-0031-DRAFT-45386
NOAA-NMFS-2020-0031-DRAFT-45382
NOAA-NMFS-2020-0031-DRAFT-45371

Comment from LeQuire-Schott, Toni
Comment from wheeler, tara
Comment from Estok, Karen
Comment from Schochet, Joy
Comment from Perkins, Jane
Comment from Thomas , Danielle
Comment from Winchester, Sam
Comment from Raymond, Sherrie
Comment from Kersula, Michael
Comment from Moore, Erin
Comment from Motta, Denise
Comment from Hall, Richard
Comment from DeLamater, Adair
Comment from Whiteside, Frances
Comment from Meeks, Mark
Comment from Baxter, Judith
Comment from Huggins, William
Comment from Striegel, Maryann

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51520

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51749

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51641

Comment from Massachusetts Division of
Marine Fisheries

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-50360

Comment from Maine Center for Coastal
Fisheries

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49552

Comment from The Pew Charitable
Trusts

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49553

Comment from Center for Biological
Diversity

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49510

Comment from Ide, Councilmember
Jennifer

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49415

Comment from Aquarium Conservation
Partnership

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49268

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-45908
NOAA-NMFS-2020-0031-DRAFT-45939
NOAA-NMFS-2020-0031-DRAFT-45942
NOAA-NMFS-2020-0031-DRAFT-45949
NOAA-NMFS-2020-0031-DRAFT-45956
NOAA-NMFS-2020-0031-DRAFT-45964

210226_NEFMC to
GARFO_RW_PR_Comment
Davis and Laporte Rewilding Institute

Comment from Cetacean Society
International
Comment from Pinkham, Rob
Comment from Unzueta, Amy
Comment from Beal, Kimberley
Comment from mullen, Lorraine/paul
Comment from Kurowski , Paige
Comment from McWeeny, William

03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51819
NOAA-NMFS-2020-0031-DRAFT-51823

Comment from Soares, Bryan
Comment from Oceana

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51533

Comment from Whale and Dolphin
Conservation, Inc.

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51329

03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51335
NOAA-NMFS-2020-0031-DRAFT-51240

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51071

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-51060
NOAA-NMFS-2020-0031-DRAFT-46573
NOAA-NMFS-2020-0031-DRAFT-50953
NOAA-NMFS-2020-0031-DRAFT-52322
NOAA-NMFS-2020-0031-DRAFT-46636
NOAA-NMFS-2020-0031-DRAFT-52371

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52354

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-46709
NOAA-NMFS-2020-0031-DRAFT-46761
NOAA-NMFS-2020-0031-DRAFT-52381
NOAA-NMFS-2020-0031-DRAFT-46830
NOAA-NMFS-2020-0031-DRAFT-51519
NOAA-NMFS-2020-0031-DRAFT-46909
NOAA-NMFS-2020-0031-DRAFT-47000
NOAA-NMFS-2020-0031-DRAFT-47126
NOAA-NMFS-2020-0031-DRAFT-47712
NOAA-NMFS-2020-0031-DRAFT-47800
NOAA-NMFS-2020-0031-DRAFT-47864

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-47881

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-47983

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-48039

03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-48052
NOAA-NMFS-2020-0031-DRAFT-52426

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52576

03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-52577
NOAA-NMFS-2020-0031-DRAFT-52900
NOAA-NMFS-2020-0031-DRAFT-54171

Comment from Robichaux,
Representative Mary
Comment from Mobley, Clay
Comment from Throgmorton , Roderick
Comment from North Carolina General
Assembly
Comment from Williams, Deborah
Comment from Chad Gamage
Comment from Bell, Thomas
Comment from Carr, Brian
Comment from Page, Nick
Comment from Ryan, Doreen
Comment from Conservation Law
Foundation
Comment from Koerber, Fred
Comment from McNickles, Karie
Comment from Taylor Lobster Company
Comment from Hallowell , Jamien
Comment from Young, Scott
Comment from Tamagini, Sheryle
Comment from Wolowicz, Mike
Comment from Rich , Sherman
Comment from Nichols, William
Comment from Hamilton, Suzanne
Comment from Anonymous
Comment from Aquarium Conservation
Partnership
Comment from Kelsey, Chris
Comment from Ms. Farrow's 5th graders
Anonymous
Comment from Todd, Mary
Comment from Wainright, Sam
Comment from University of Maine
Lobster Institute
Comment from Conover, Joshua
Comment from Anonymous
Comment from fletcher, Robert

21-03-01 MMC to Pentony 2021 NARW
TRP Amendment Rule
Rep Oliver comments on alwtrt rule

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54175

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54294

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54340

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54216

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54209

03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54394
NOAA-NMFS-2020-0031-DRAFT-54424
NOAA-NMFS-2020-0031-DRAFT-54456
NOAA-NMFS-2020-0031-DRAFT-54454

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54461

Georgia_Conservancy_NOAA_Right_Wh
ale_Take_Reduction (2)

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54420

Comment from S.Rosen, F/V Minnamurra

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54414
NOAA-NMFS-2020-0031-DRAFT-54945
NOAA-NMFS-2020-0031-DRAFT-54534
NOAA-NMFS-2020-0031-DRAFT-54384
NOAA-NMFS-2020-0031-DRAFT-54228
NOAA-NMFS-2020-0031-DRAFT-54257

Comment from Sullivan, Adrienne
Comment from Blue Planet Strategies
Comment from Georgia Aquarium Inc.
Comment from Maine Lobstering Union
Comment from Thompson, Jacob
Comment from Trafton, Caitlin

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54034

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54048
NOAA-NMFS-2020-0031-DRAFT-53849
NOAA-NMFS-2020-0031-DRAFT-53858
NOAA-NMFS-2020-0031-DRAFT-53885
NOAA-NMFS-2020-0031-DRAFT-53654
NOAA-NMFS-2020-0031-DRAFT-53664
NOAA-NMFS-2020-0031-DRAFT-53697
NOAA-NMFS-2020-0031-DRAFT-53700
NOAA-NMFS-2020-0031-DRAFT-53592

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54943

Comment from Multiple: Catawba
Riverkeeper, Mountain True, Haw River
Assembly, Cape Fear River Watch

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53735
NOAA-NMFS-2020-0031-DRAFT-53769
NOAA-NMFS-2020-0031-DRAFT-53800
NOAA-NMFS-2020-0031-DRAFT-53359
NOAA-NMFS-2020-0031-DRAFT-53130

Comment from Barrett-Pereira, Thiago
Comment from Sibbald, Derrick
Comment from Zoutis, Thomas
Comment from Ricciardi, Cara
Comment from Gilley , David

03.01.21 NRDC Letter Re North Atlantic
Right Whale Conservation Framework
Comment from Frank Rouse
Comment from International Fund for
Animal Welfare (IFAW)
brennan strong comments on rule
Candis whitney comments on trp rule
jake Murray comments on ALwtrp rule
Scott Barton alwtrp comments

Comment from Natural Resources
Defense Council
Comment from Kissimmee Waterkeeper
Comment from MMC
Comment from Joy, Samuel
Comment from Lemoine, David
Comment from Joyce, Joshua
Comment from Lyons, Derek
Comment from Martin, Rob
Comment from Hodgson, Rebekah
Comment from cheney, mark

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53142

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53161

Comment from Atlantic States Marine
Fisheries Commission
Comment from Morris, Greg

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54925

Comment from Coastwise Consulting, Inc

03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54915
NOAA-NMFS-2020-0031-DRAFT-54905
NOAA-NMFS-2020-0031-DRAFT-54872

Comment from Kevin Patton
Comment from Gibbs , Ian
Comment from Williams, Donald

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54861

03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54860
NOAA-NMFS-2020-0031-DRAFT-48341
NOAA-NMFS-2020-0031-DRAFT-48358
NOAA-NMFS-2020-0031-DRAFT-54848
NOAA-NMFS-2020-0031-DRAFT-48377
NOAA-NMFS-2020-0031-DRAFT-48378
NOAA-NMFS-2020-0031-DRAFT-48406
NOAA-NMFS-2020-0031-DRAFT-54839
NOAA-NMFS-2020-0031-DRAFT-48413
NOAA-NMFS-2020-0031-DRAFT-48438
NOAA-NMFS-2020-0031-DRAFT-48475
NOAA-NMFS-2020-0031-DRAFT-48484
NOAA-NMFS-2020-0031-DRAFT-54806
NOAA-NMFS-2020-0031-DRAFT-54790
NOAA-NMFS-2020-0031-DRAFT-54778
NOAA-NMFS-2020-0031-DRAFT-54772
NOAA-NMFS-2020-0031-DRAFT-54757
NOAA-NMFS-2020-0031-DRAFT-54752
NOAA-NMFS-2020-0031-DRAFT-48648
NOAA-NMFS-2020-0031-DRAFT-54746
NOAA-NMFS-2020-0031-DRAFT-54737
NOAA-NMFS-2020-0031-DRAFT-54724
NOAA-NMFS-2020-0031-DRAFT-48904
NOAA-NMFS-2020-0031-DRAFT-48946
NOAA-NMFS-2020-0031-DRAFT-54712
NOAA-NMFS-2020-0031-DRAFT-49014
NOAA-NMFS-2020-0031-DRAFT-49036
NOAA-NMFS-2020-0031-DRAFT-49044
NOAA-NMFS-2020-0031-DRAFT-54689
NOAA-NMFS-2020-0031-DRAFT-54687

Comment from New Hampshire Fish and
Game Department
Comment from Rackliff, Hannah
Comment from Nugent , Ross
Comment from Moffet, Lawrence
Comment from Brice, Elijah
Comment from Anonymous
Comment from Spalding, Andy
Comment from Lish, Christopher
Comment from Anonymous
Comment from Grist, Sue
Comment from Lally , Katie
Comment from Hynd , Nick
Comment from Anonymous
Comment from Joy, Paul G.
Comment from Anonymous
Comment from Parkington , Damian
Comment from Hargrove, Will
Comment from Norton, Jonathan
Comment from M B
Comment from Murgo, Kenneth
Comment from Oceana
Comment from Oceana
Comment from Oceana
Comment from Anonymous
Comment from Strout , Taylor
Comment from Oceana
Comment from Walker , Seth
Comment from Faulkingham , Michael
Comment from Leverett, Mara Lyn
Comment from Gilley, Matt
Comment from Oceana

Comment from Maine Department of
Marine Resources
Comment from Oceana
Comment from Alley, Arlin
Comment from Tompkins, Karen
Comment from Anonymous
Comment from Ryan, Pat
Comment from Travers, David
Comment from Nations, Ken
Comment from Todd, John
Comment from Harrison, Pricey
Comment from Knight, Sereena
Comment from Town of Vinalhaven
Comment from Ames, Ryan
Comment from Anonymous
Comment from Moran, John
Comment from Johnson , Daniel
Comment from SkillinSkillin, Jason
Comment from Ballesteros, Marisol
Comment from Mallow, Rep Derek
Comment from Schofield, Rep. Kim

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49137

03/01/2021
03/01/2021
03/01/2021
02/28/2021
02/28/2021
02/28/2021
02/28/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
02/28/2021
03/01/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-54664
NOAA-NMFS-2020-0031-DRAFT-49155
NOAA-NMFS-2020-0031-DRAFT-49182
NOAA-NMFS-2020-0031-DRAFT-45092
NOAA-NMFS-2020-0031-DRAFT-45090
NOAA-NMFS-2020-0031-DRAFT-45078
NOAA-NMFS-2020-0031-DRAFT-45066
NOAA-NMFS-2020-0031-DRAFT-49315
NOAA-NMFS-2020-0031-DRAFT-49356
NOAA-NMFS-2020-0031-DRAFT-49371
NOAA-NMFS-2020-0031-DRAFT-49404
NOAA-NMFS-2020-0031-DRAFT-49450
NOAA-NMFS-2020-0031-DRAFT-49478
NOAA-NMFS-2020-0031-DRAFT-49502
NOAA-NMFS-2020-0031-DRAFT-49525
NOAA-NMFS-2020-0031-DRAFT-49540
NOAA-NMFS-2020-0031-DRAFT-44834
NOAA-NMFS-2020-0031-DRAFT-49734
NOAA-NMFS-2020-0031-DRAFT-44764

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-49786

Comment from Maine Legislature's Joint
Standing Committee on Marine
Resources

03/01/2021
02/28/2021

NOAA-NMFS-2020-0031-DRAFT-49797
NOAA-NMFS-2020-0031-DRAFT-44742

Comment from Williams, Rep. Al
Comment from Welling, Aaron

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54944

Comment from WHALE SAFE USA &
RICHARD Maximus Strahan & MAN
AGAINST XTINCTION

01/18/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-4972
NOAA-NMFS-2020-0031-DRAFT-54729
NOAA-NMFS-2020-0031-DRAFT-54667
NOAA-NMFS-2020-0031-DRAFT-54647
NOAA-NMFS-2020-0031-DRAFT-54627
NOAA-NMFS-2020-0031-DRAFT-54605
NOAA-NMFS-2020-0031-DRAFT-54573

Comment from Rebecca Theim
Comment from Andrew Werthmann
Comment from Pat Doherty
Comment from Delano, Wayne
Comment from Oceana
Comment from Adler - Curley, Kimberly
Comment from swicker, scott

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54568

03/01/2021
01/18/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54545
NOAA-NMFS-2020-0031-DRAFT-4978
NOAA-NMFS-2020-0031-DRAFT-54493

Comment from Marine Resources Council
of East Florida, Inc.
Comment from Werner, Timothy
Comment from Glenn Compton
Comment from Farris, Cameron

01/18/2021
03/01/2021
03/01/2021
03/01/2021
01/20/2021
03/01/2021
03/01/2021
01/21/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
01/21/2021
03/01/2021
01/21/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021
03/01/2021

NOAA-NMFS-2020-0031-DRAFT-5047
NOAA-NMFS-2020-0031-DRAFT-54435
NOAA-NMFS-2020-0031-DRAFT-54404
NOAA-NMFS-2020-0031-DRAFT-54399
NOAA-NMFS-2020-0031-DRAFT-5169
NOAA-NMFS-2020-0031-DRAFT-54390
NOAA-NMFS-2020-0031-DRAFT-54345
NOAA-NMFS-2020-0031-DRAFT-5198
NOAA-NMFS-2020-0031-DRAFT-54274
NOAA-NMFS-2020-0031-DRAFT-54272
NOAA-NMFS-2020-0031-DRAFT-54215
NOAA-NMFS-2020-0031-DRAFT-54196
NOAA-NMFS-2020-0031-DRAFT-54138
NOAA-NMFS-2020-0031-DRAFT-54147
NOAA-NMFS-2020-0031-DRAFT-54129
NOAA-NMFS-2020-0031-DRAFT-54125
NOAA-NMFS-2020-0031-DRAFT-54112
NOAA-NMFS-2020-0031-DRAFT-54066
NOAA-NMFS-2020-0031-DRAFT-54056
NOAA-NMFS-2020-0031-DRAFT-54017
NOAA-NMFS-2020-0031-DRAFT-5203
NOAA-NMFS-2020-0031-DRAFT-54012
NOAA-NMFS-2020-0031-DRAFT-5205
NOAA-NMFS-2020-0031-DRAFT-54002
NOAA-NMFS-2020-0031-DRAFT-54001
NOAA-NMFS-2020-0031-DRAFT-53996
NOAA-NMFS-2020-0031-DRAFT-54526
NOAA-NMFS-2020-0031-DRAFT-53989
NOAA-NMFS-2020-0031-DRAFT-53960
NOAA-NMFS-2020-0031-DRAFT-53920
NOAA-NMFS-2020-0031-DRAFT-53789
NOAA-NMFS-2020-0031-DRAFT-53541
NOAA-NMFS-2020-0031-DRAFT-53520
NOAA-NMFS-2020-0031-DRAFT-53372
NOAA-NMFS-2020-0031-DRAFT-53473
NOAA-NMFS-2020-0031-DRAFT-52883
NOAA-NMFS-2020-0031-DRAFT-52833
NOAA-NMFS-2020-0031-DRAFT-52740
NOAA-NMFS-2020-0031-DRAFT-52732
NOAA-NMFS-2020-0031-DRAFT-52721
NOAA-NMFS-2020-0031-DRAFT-52649

Comment from Mark Overbaugh
Comment from McDonald , Joseph
Comment from Anonymous
Comment from Joyce, Elijah
Comment from Mills , Jacqueline
Comment from Delano, Dustin
Comment from Hunt, Michael
Comment from Victoria Chavez
Comment from Mullin, Denneyse
Comment from Anonymous
Comment from Martin, Emily
Comment from Baines, Cole
Comment from Michaela Morris
Comment from Faulkingham, Carrie
Comment from Anonymous
Comment from A, CM
Comment from Colbeth, Derek
Comment from Anonymous
Comment from Knight, Kate-Lyn
Comment from F/V Carol Ann
Comment from Peter Cutting
Comment from Libby, Jeffrey
Comment from Gina Garey
Comment from Mataronas, Gregory
Comment from Pidden, Christopher
Comment from Hutchinson, Susan
Comment from Nikole Ordway
Comment from Anonymous
Comment from Joy , Amelia
Comment from Anonymous
Comment from Heal, Nicholas
Comment from Whetham, Henry
Comment from Vinson, Nancy
Comment from I.J. DuBois
Comment from murphy, amy
Comment from MacVane , Henry
Comment from Nichols, Kyle
Comment from Tucker, Chris
Comment from Atwood, Travis
Comment from Myrick, David
Comment from Brooks, Daniel

03/01/2021
01/22/2021
03/01/2021
01/23/2021

NOAA-NMFS-2020-0031-DRAFT-52558
NOAA-NMFS-2020-0031-DRAFT-5344
NOAA-NMFS-2020-0031-DRAFT-52434
NOAA-NMFS-2020-0031-DRAFT-5364

Comment from Anonymous
Comment from Bradbury, Jeanne
Comment from Vance, Robert
Comment from John Kinsella

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53250

Comment from American Clean Power
Association

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-53085

01/24/2021
03/01/2021
03/01/2021
01/23/2021
03/01/2021
03/01/2021
03/01/2021
01/23/2021
03/01/2021
03/01/2021
03/01/2021
01/24/2021
03/01/2021
01/25/2021
01/25/2021
01/25/2021
01/26/2021
01/25/2021
01/29/2021
02/03/2021
02/03/2021
02/03/2021
02/03/2021
02/10/2021
02/11/2021
02/11/2021

NOAA-NMFS-2020-0031-DRAFT-5412
NOAA-NMFS-2020-0031-DRAFT-53035
NOAA-NMFS-2020-0031-DRAFT-53007
NOAA-NMFS-2020-0031-DRAFT-5392
NOAA-NMFS-2020-0031-DRAFT-53006
NOAA-NMFS-2020-0031-DRAFT-52949
NOAA-NMFS-2020-0031-DRAFT-52694
NOAA-NMFS-2020-0031-DRAFT-5402
NOAA-NMFS-2020-0031-DRAFT-52523
NOAA-NMFS-2020-0031-DRAFT-52231
NOAA-NMFS-2020-0031-DRAFT-52056
NOAA-NMFS-2020-0031-DRAFT-5418
NOAA-NMFS-2020-0031-DRAFT-51997
NOAA-NMFS-2020-0031-DRAFT-5583
NOAA-NMFS-2020-0031-DRAFT-5602
NOAA-NMFS-2020-0031-DRAFT-5691
NOAA-NMFS-2020-0031-DRAFT-5732
NOAA-NMFS-2020-0031-DRAFT-5697
NOAA-NMFS-2020-0031-DRAFT-6155
NOAA-NMFS-2020-0031-DRAFT-6874
NOAA-NMFS-2020-0031-DRAFT-6882
NOAA-NMFS-2020-0031-DRAFT-7554
NOAA-NMFS-2020-0031-DRAFT-7381
NOAA-NMFS-2020-0031-DRAFT-13609
NOAA-NMFS-2020-0031-DRAFT-13711
NOAA-NMFS-2020-0031-DRAFT-13684

02/11/2021

NOAA-NMFS-2020-0031-DRAFT-13721

02/11/2021
02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13888
NOAA-NMFS-2020-0031-DRAFT-13939

02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13964

02/12/2021

NOAA-NMFS-2020-0031-DRAFT-13990

Comment from Atlantic Offshore
Lobstermen's Association
Comment from Mattie Whitesell
Comment from Anonymous
Comment from Lawson Hackett, Penny
Comment from Andrew Applegate
Comment from Anonymous
Comment from Pat Doherty
Comment from Jeffrey Solow
Comment from Phillip Null
Comment from Keith Rittmaster
Comment from Karen Francoeur
Comment from Bret Sparks
Comment from David Thomas
Comment from Ben Watson
Comment from Judi Gavalas
Comment from Dow, David
Comment from Brandon Burr
Comment from Samantha Whitcraft
Comment from Karen King
Comment from Jarod Bray
Comment from bob ottosen
Comment from Brandie Deal
Comment from Dr Kristi Dunn
Comment from Richard Curtis
Comment from deborah rivel
Comment from Mary Edna Fraser
Comment from Kyle Hudick
Comment from Bernadette SullivanEricson
Comment from Angela Wilson
Comment from Mazer, Bambie
Comment from Hayes Environmental
Consulting
Comment from Charles McMillan

02/13/2021
02/13/2021
02/14/2021
02/14/2021
02/15/2021
02/15/2021
02/15/2021
02/15/2021
02/16/2021
02/22/2021
02/22/2021
02/16/2021
02/16/2021
02/22/2021
02/22/2021
03/01/2021
02/22/2021

NOAA-NMFS-2020-0031-DRAFT-14079
NOAA-NMFS-2020-0031-DRAFT-14088
NOAA-NMFS-2020-0031-DRAFT-14270
NOAA-NMFS-2020-0031-DRAFT-14222
NOAA-NMFS-2020-0031-DRAFT-14310
NOAA-NMFS-2020-0031-DRAFT-14312
NOAA-NMFS-2020-0031-DRAFT-14318
NOAA-NMFS-2020-0031-DRAFT-14355
NOAA-NMFS-2020-0031-DRAFT-14573
NOAA-NMFS-2020-0031-DRAFT-22529
NOAA-NMFS-2020-0031-DRAFT-22657
NOAA-NMFS-2020-0031-DRAFT-14460
NOAA-NMFS-2020-0031-DRAFT-14570
NOAA-NMFS-2020-0031-DRAFT-22684
NOAA-NMFS-2020-0031-DRAFT-22729
NOAA-NMFS-2020-0031-DRAFT-54663
NOAA-NMFS-2020-0031-DRAFT-22745

03/01/2021

NOAA-NMFS-2020-0031-DRAFT-54767

02/22/2021
02/22/2021
02/22/2021
02/22/2021
02/22/2021
02/22/2021
02/22/2021
02/22/2021

NOAA-NMFS-2020-0031-DRAFT-22755
NOAA-NMFS-2020-0031-DRAFT-22756
NOAA-NMFS-2020-0031-DRAFT-22757
NOAA-NMFS-2020-0031-DRAFT-22762
NOAA-NMFS-2020-0031-DRAFT-22763
NOAA-NMFS-2020-0031-DRAFT-22764
NOAA-NMFS-2020-0031-DRAFT-22759
NOAA-NMFS-2020-0031-DRAFT-22760

02/23/2021

NOAA-NMFS-2020-0031-DRAFT-22811

02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021

NOAA-NMFS-2020-0031-DRAFT-22785
NOAA-NMFS-2020-0031-DRAFT-22800
NOAA-NMFS-2020-0031-DRAFT-22815
NOAA-NMFS-2020-0031-DRAFT-22816
NOAA-NMFS-2020-0031-DRAFT-22878
NOAA-NMFS-2020-0031-DRAFT-22986
NOAA-NMFS-2020-0031-DRAFT-23000
NOAA-NMFS-2020-0031-DRAFT-22917
NOAA-NMFS-2020-0031-DRAFT-22918
NOAA-NMFS-2020-0031-DRAFT-22973
NOAA-NMFS-2020-0031-DRAFT-22989
NOAA-NMFS-2020-0031-DRAFT-22994

Comment from Linda Fraser
Comment from Sophie Priebe
Comment from Bob Marshburn
Comment from Priscilla Guiney
Comment from Ashley Lucero
Comment from Jacob Hudnall
Comment from William Schlesinger
Comment from Elizabeth Day
Comment from Samuel Borne
Comment from Ashton, David
Comment from Knowlton, Albert
Comment from Shane Carter
Comment from Emily Q
Comment from hussey, nat
Comment from Moore, Michael
Comment from Anonymous
Comment from Steele, Gary
Comment from The Maine Lobstermen’s
Association, Inc.
Comment from BettyAnn Benware
Comment from Hodgdon, Tyler
Comment from Corbally, Caroline
Comment from Youens, Rachel
Comment from Lebling, Erika
Comment from Clayton, William
Comment from O'Brien, CJ
Comment from Donnell , Cindy
Comment from Blue-Green Connections
Anonymous
Comment from kaselauskas, david
Comment from RUSSELL, STEPHEN
Comment from Greening Georgia
Comment from N/A, N/A
Comment from Wotan, Andrea
Comment from Ethridge Griffin
Comment from Jen Lomberk
Comment from Moorehead, Sarah
Comment from Greeley, Dudley
Comment from Bogle, Rick
Comment from Koceja, Diane
Comment from Holzman, Steve

02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/23/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021

NOAA-NMFS-2020-0031-DRAFT-23082
NOAA-NMFS-2020-0031-DRAFT-23081
NOAA-NMFS-2020-0031-DRAFT-23084
NOAA-NMFS-2020-0031-DRAFT-23085
NOAA-NMFS-2020-0031-DRAFT-23088
NOAA-NMFS-2020-0031-DRAFT-23087
NOAA-NMFS-2020-0031-DRAFT-23090
NOAA-NMFS-2020-0031-DRAFT-23091
NOAA-NMFS-2020-0031-DRAFT-23096
NOAA-NMFS-2020-0031-DRAFT-23092
NOAA-NMFS-2020-0031-DRAFT-23093
NOAA-NMFS-2020-0031-DRAFT-23094
NOAA-NMFS-2020-0031-DRAFT-23095
NOAA-NMFS-2020-0031-DRAFT-23097
NOAA-NMFS-2020-0031-DRAFT-23108
NOAA-NMFS-2020-0031-DRAFT-23204
NOAA-NMFS-2020-0031-DRAFT-23326
NOAA-NMFS-2020-0031-DRAFT-23332
NOAA-NMFS-2020-0031-DRAFT-23352
NOAA-NMFS-2020-0031-DRAFT-23362
NOAA-NMFS-2020-0031-DRAFT-23425
NOAA-NMFS-2020-0031-DRAFT-23528
NOAA-NMFS-2020-0031-DRAFT-23538
NOAA-NMFS-2020-0031-DRAFT-23592
NOAA-NMFS-2020-0031-DRAFT-23598
NOAA-NMFS-2020-0031-DRAFT-23639
NOAA-NMFS-2020-0031-DRAFT-23652
NOAA-NMFS-2020-0031-DRAFT-23715
NOAA-NMFS-2020-0031-DRAFT-23716
NOAA-NMFS-2020-0031-DRAFT-23726

02/24/2021

NOAA-NMFS-2020-0031-DRAFT-23717

02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
02/24/2021
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NOAA-NMFS-2020-0031-DRAFT-23718
NOAA-NMFS-2020-0031-DRAFT-23719
NOAA-NMFS-2020-0031-DRAFT-23722
NOAA-NMFS-2020-0031-DRAFT-23723
NOAA-NMFS-2020-0031-DRAFT-23725
NOAA-NMFS-2020-0031-DRAFT-23727
NOAA-NMFS-2020-0031-DRAFT-23730
NOAA-NMFS-2020-0031-DRAFT-23728
NOAA-NMFS-2020-0031-DRAFT-23729

Comment from Carroll, Ryan
Comment from Young, S
Comment from Berry, Gardner
Comment from Breton, Glenace
Comment from Anonymous
Comment from Warrington, Christina
Comment from Pesko, Pat
Comment from Wilson, Dana
Comment from Bridget Childers
Comment from Reiss , Diana
Comment from Henretty, Julie
Comment from Barton, Bethany
Comment from Turner , Galen
Comment from Snow, Lucas
Comment from Cloutier, Tom
Comment from Anonymous
Comment from Gridley, Bruce
Comment from Putnam, Jeff
Comment from Earl, David
Comment from Earl, David
Comment from Anonymous
Comment from Ian Quartin
Comment from Martha Donnell
Comment from Lunt, Zachary
Comment from Allen, Joseph
Comment from Anonymous
Comment from Rhangos, Eleanor
Comment from Dow, George
Comment from Marhefka, Kathy
Comment from Carlie Cooper
Comment from Hancock Point Kayak
Tours and Schoodic Maine Guide
Comment from Anonymous
Comment from Snow, Nathaniel
Comment from Tasheff, Steve
Comment from Anonymous
Comment from hardy, ben
Comment from Theresa Mercer
Comment from Lea Schroeder
Comment from Anonymous
Comment from Simmons , Robert

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NOAA-NMFS-2020-0031-DRAFT-23746
NOAA-NMFS-2020-0031-DRAFT-23761
NOAA-NMFS-2020-0031-DRAFT-23792
NOAA-NMFS-2020-0031-DRAFT-23793
NOAA-NMFS-2020-0031-DRAFT-23841
NOAA-NMFS-2020-0031-DRAFT-23890
NOAA-NMFS-2020-0031-DRAFT-23923
NOAA-NMFS-2020-0031-DRAFT-23857
NOAA-NMFS-2020-0031-DRAFT-23796
NOAA-NMFS-2020-0031-DRAFT-23799
NOAA-NMFS-2020-0031-DRAFT-23807
NOAA-NMFS-2020-0031-DRAFT-23817
NOAA-NMFS-2020-0031-DRAFT-23819
NOAA-NMFS-2020-0031-DRAFT-23827
NOAA-NMFS-2020-0031-DRAFT-23836
NOAA-NMFS-2020-0031-DRAFT-23875
NOAA-NMFS-2020-0031-DRAFT-23899
NOAA-NMFS-2020-0031-DRAFT-23920
NOAA-NMFS-2020-0031-DRAFT-23888
NOAA-NMFS-2020-0031-DRAFT-23896
NOAA-NMFS-2020-0031-DRAFT-24276
NOAA-NMFS-2020-0031-DRAFT-24287
NOAA-NMFS-2020-0031-DRAFT-24593
NOAA-NMFS-2020-0031-DRAFT-24591
NOAA-NMFS-2020-0031-DRAFT-24594
NOAA-NMFS-2020-0031-DRAFT-24846
NOAA-NMFS-2020-0031-DRAFT-24849
NOAA-NMFS-2020-0031-DRAFT-24850
NOAA-NMFS-2020-0031-DRAFT-24851
NOAA-NMFS-2020-0031-DRAFT-24852
NOAA-NMFS-2020-0031-DRAFT-24853
NOAA-NMFS-2020-0031-DRAFT-24880
NOAA-NMFS-2020-0031-DRAFT-24335
NOAA-NMFS-2020-0031-DRAFT-24337

Comment from Anonymous
Comment from Glover, Kevin
Comment from Merrill , Jack
Comment from Moore , John
Comment from jeff chanton
Comment from Julia Illar
Comment from Kiersten DeLong
Comment from William Covert
Comment from Jordan, John
Comment from Ashton, Debra
Comment from Walsh, Tim
Comment from Nunan, Chris
Comment from Weed, Ben
Comment from feroldi, eric
Comment from Meschino , Eric
Comment from Tierney, Griffin
Comment from Rachel Broumas
Comment from Amanda Rea
Comment from Anonymous
Comment from Mouer, Nora
Comment from Briar Ownby-Connolly
Comment from Julianna Kowal
Comment from Cassady Whaley
Comment from Anonymous Anonymous
Comment from Michael Jarbeau
Comment from Takiah A
Comment from Drake, Jarrett
Comment from Elizabeth Tautges
Comment from Anonymous
Comment from Anderson, Mike
Comment from Herb, Michael
Comment from Shari Anker
Comment from Brown, Alex
Comment from Donnell, robert

02/25/2021

NOAA-NMFS-2020-0031-DRAFT-24338

Comment from Savannah Real Producers

02/25/2021

NOAA-NMFS-2020-0031-DRAFT-24540

02/25/2021
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02/25/2021

NOAA-NMFS-2020-0031-DRAFT-24590
NOAA-NMFS-2020-0031-DRAFT-24592
NOAA-NMFS-2020-0031-DRAFT-24595

Comment from Southeast Adventure
Outfitters
Comment from Masterson, Holly
Comment from Crowell, Marnie
Comment from Julia Pickard

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NOAA-NMFS-2020-0031-DRAFT-24857
NOAA-NMFS-2020-0031-DRAFT-24854
NOAA-NMFS-2020-0031-DRAFT-24855
NOAA-NMFS-2020-0031-DRAFT-24856
NOAA-NMFS-2020-0031-DRAFT-24858
NOAA-NMFS-2020-0031-DRAFT-25113
NOAA-NMFS-2020-0031-DRAFT-25115
NOAA-NMFS-2020-0031-DRAFT-25116
NOAA-NMFS-2020-0031-DRAFT-25119
NOAA-NMFS-2020-0031-DRAFT-25120
NOAA-NMFS-2020-0031-DRAFT-25117
NOAA-NMFS-2020-0031-DRAFT-25118
NOAA-NMFS-2020-0031-DRAFT-25121
NOAA-NMFS-2020-0031-DRAFT-25122
NOAA-NMFS-2020-0031-DRAFT-25123
NOAA-NMFS-2020-0031-DRAFT-25125
NOAA-NMFS-2020-0031-DRAFT-25126
NOAA-NMFS-2020-0031-DRAFT-25128

02/26/2021

NOAA-NMFS-2020-0031-DRAFT-25129

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NOAA-NMFS-2020-0031-DRAFT-25130
NOAA-NMFS-2020-0031-DRAFT-25131
NOAA-NMFS-2020-0031-DRAFT-25132
NOAA-NMFS-2020-0031-DRAFT-25133
NOAA-NMFS-2020-0031-DRAFT-25292
NOAA-NMFS-2020-0031-DRAFT-25383
NOAA-NMFS-2020-0031-DRAFT-25775
NOAA-NMFS-2020-0031-DRAFT-25913
NOAA-NMFS-2020-0031-DRAFT-25914
NOAA-NMFS-2020-0031-DRAFT-25924
NOAA-NMFS-2020-0031-DRAFT-25521
NOAA-NMFS-2020-0031-DRAFT-25638
NOAA-NMFS-2020-0031-DRAFT-25772
NOAA-NMFS-2020-0031-DRAFT-25773
NOAA-NMFS-2020-0031-DRAFT-25774
NOAA-NMFS-2020-0031-DRAFT-25804
NOAA-NMFS-2020-0031-DRAFT-25912

Comment from Judy Wang
Comment from McGowan, Shelley
Comment from Wright, Dayvion
Comment from Lemieux, Nick
Comment from Hutchins, Edward
Comment from Clarke, Maiah
Comment from Ware, Timesha
Comment from Dishmon, Jordan
Comment from Sewell, Jaylen
Comment from Clax, Savannah
Comment from Sydney Madden
Comment from Paula Martin
Comment from Taylor Smith
Comment from Love, Jayme
Comment from Anonymous
Comment from Saul, Lillian
Comment from Davis, Erik
Comment from Volmar, Lady
Comment from Drenner, Representative
Karla
Comment from Anonymous
Comment from Lunt, David W.
Comment from Burns, William
Comment from Rivera, Ashly
Comment from Fluker, F
Comment from Gilley, Hugh
Comment from Tela Fields-Reynolds
Comment from McCarthy, Johnny
Comment from Bridge, Bailey
Comment from Hammond, Erianna
Comment from Bradstreet, Mark
Comment from Sze, Maya
Comment from Anonymous
Comment from Lawlor, Bryan
Comment from Arredondo, Mia
Comment from James, Amiya
Comment from Lodge, Rich


File Typeapplication/pdf
File TitleFinal Environmental Impact Statement, Regulatory Impact Review, and Final Regulato
SubjectALWTRP, North Atlantic Right Whale, humpback whale, fin whale, minke whale, Atlantic large whale, entanglement risk, risk reduct
AuthorNOAA Fisheries, Greater Atlantic Region
File Modified2021-06-28
File Created2021-06-22

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