Attachment 2 PS-OC Evaluation Plan

Attach2_PS-OC evaluation plan.docx

Process and Outcomes Evaluation of NCI Physical Sciences in Oncology Centers (PS-OC) Initiative (NCI)

Attachment 2 PS-OC Evaluation Plan

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to: Jerry Lee, Jim Corrigan , NCI

From: Brian Zuckerman, STPI

CC: Christina Viola Srivastava, Mary Beth Hughes

Subject: Draft Plan for an Outcome Evaluation of the NCI’s Physical Science in Oncology Centers (PS-OC) Program

Date: March 4, 2010


The National Cancer Institute (NCI) of the National Institutes of Health (NIH) recently launched the Physical Sciences in Oncology Centers (PS-OC), a program aimed at bridging the gap between the physical sciences and oncology/cancer biology. The Science and Technology Policy Institute (STPI) has been tasked with proposing an evaluation plan for the Centers that will meet the needs of the NCI Executive Committee at Program Year 5 while informing ongoing program management. In preparation for the design task, STPI engaged in the following activities:

  1. Discussions with PS-OC program staff members;

  2. Review of available program documents including the pre-announcement workshop materials, RFA, summary statements, applications, and selected progress reports from the newly awarded centers;

  3. Interviews with five researchers who are currently conducting cancer research involving the physical sciences in order to gain insight on the current state of the field;

  4. Interviews with eight of the 12 PS-OC senior management teams (PI and co-PI);

  5. Developing a draft program logic model for the PS-OCs (attached as Appendix A).

Based on what STPI has learned to date about the program, we recommend that NCI’s evaluation needs for PS-OC can best be met through three separate but interdependent evaluation components. Specifically, STPI recommends the following:

  1. Prospective data collection on supported activities and key outputs to inform program management as well as future evaluation efforts;

  2. Structured evaluation of program design, implementation, and preliminary outcomes by an expert panel at program year 4-5 (prior to concept renewal);

  3. Summative evaluation of program outcomes at year 10 or later.

Preliminary design recommendations for each component are described below.

Component 1: Prospective Data Collection on Supported Activities and Key Outputs/Outcomes

The first recommended evaluation component is prospective data collection on activities and key outputs/outcomes. Collecting data on program activities and outputs prospectively serves several purposes: 1) activities and outputs can be monitored by program managers so that changes can be made as needed; and 2) any errors or inadequacies that are detected in the data can be addressed sooner rather than later. These advantages must be balanced against the inefficiency of collecting and analyzing information as it becomes available relative to a single retrospective data collection effort. For this reason, STPI is recommending prospective data collection for the PS-OC activities and outputs/outcomes for which data are most readily available.

Specifically, STPI recommends that information on key variables be extracted from the semi-annual Center progress reports into a more structured format as they become available. Supplementary and correlative information should also be extracted from supplementary sources (e.g. bibliometric databases) at regular intervals. The variables for which STPI recommends that data be collected prospectively are summarized in Table 1, as are the sources from which data should be extracted. These activity and output variables fall into four broad categories (knowledge generation; practice of research and collaboration; training; broader impacts) derived from the program goals and program logic (see Appendix A).

Table 1: Activity/Output/Outcome Variables for which data should be collected prospectively.

Category

Activity/Output/Outcome Variable

Data Source(s)

1. Knowledge Generation

Funded research projects by type and objectives

Progress reports

Center publications

Progress reports; SPIRES

Bibliometric data on center publications

Bibliometric databases

Key discoveries/key findings

Progress reports

Invention disclosures, patent applications, and patents

Progress reports; IP databases

New datasets developed

Progress reports

Other notable research outputs (e.g. datasets, software, protocols, models, etc.)

Progress reports

Clinical studies (if any) building upon advances

Progress reports; clinicaltrials.gov

2. Practice of research and collaboration

Center activities aimed at promoting collaboration between physical scienctists and cancer researchers

Progress reports

Participating institutions

Progress reports

Participating investigators, by institution, research project, and discipline/training

Progress reports

Formal collaborations between Center investigators

Derive from project lists and publications

Informal collaborations between Center investigators

Progress reports

Cross-Center collaborations

Progress reports

Collaborations between Center investigators and others

Progress reports

Core resources supported, by type

Progress reports

Use of core resources

Progress reports

3. Training and Outreach

Students and fellows supported

Progress reports

Participants in cross-center exchanges

Progress reports

Course materials/training modules created

Progress reports

Seminars/workshops conducted by centers

Progress reports

Other dissemination activities

Progress reports

4. Broader impacts

New solicitations for cancer research proposals using physical sciences approaches, with links to Centers (if any)

NIH administrative databases; Other funder databases

New applications to NCI for cancer research using physical sciences approaches from Center investigators, others

NIH administrative databases

New workshops/conferences/ other efforts involving physical sciences and cancer with links to Centers (if any)

NIH administrative databases; Web searches



NCI may wish to employ an independent contractor to coordinate extraction of information from progress reports and collection of supplementary data. This model has been used successfully by various Centers programs at the National Science Foundation (e.g., the Science and Technology Centers).



Component 2: Expert Panel Review at Year 4-5

The NCI Executive Committee requires evaluation prior to concept renewal at program year 5, which typically requires that evaluation efforts begin during program year 4. STPI recommends a methodologically rigorous expert panel review to assess program design, implementation, progress to date by the Centers, and potential for future success. Specifically, STPI recommends that NCI should convene a panel of experts to address the following questions:

  1. Are the program’s objectives and priorities being met by progress to date?

  2. How should the program’s priorities be changed based upon the program’s experience to date?

  3. Did the program design facilitate achieving the objectives?

  4. Are Centers the right way to achieve the program’s priorities and objectives?

  5. Have there been issues with the implementation of the Centers to date?

  6. Is the science being done at the Centers more innovative/multidisciplinary than most science happening elsewhere?

  7. Do the relationships between physical scientists and cancer researchers appear to be appropriately collaborative, with both groups making substantive contributions to the research? Are such collaborations occurring at institutions not participating in the PS-OC program?

  8. Are the training opportunities available through the Center different from training opportunities available elsewhere?

  9. Overall, does the panel believe the PS-OC program is on track to meet its goals

  10. Does the panel believe that the potential for future progress merits continued investment by NCI in the PS-OCs?


In order for the expert panel to render credible judgments, the selection of panel members is critical. Expert panel members would ideally be selected and recruited by the NCI Board of Scientific Advisors to assure scientific credibility and neutrality, though program staff could provide suggestions regarding reviewers.


In order to facilitate the panel members becoming sufficiently familiar with the PS-OCs without making excessive demands on their time, STPI recommends that most of the Year 4 Network Meeting should be devoted to the expert panel review. With the expert panel members in attendance, the Program staff and each Center should make a presentation summarizing progress to date. Following the presentations, the expert panel should meet individually with the leadership from each of the Centers to ask questions and interact one-on-one. Prior to the Network Meeting, expert panel members should also have had an opportunity to review all of the activity/output data collected as part of evaluation component 1 and the Center progress reports (as there are 12 Centers, one or two expert panel members should focus on each individual Center).


Component 3: Full Outcome Evaluation at Year 10 or Later

A full Outcome Evaluation would involve more extensive and resource-intensive collection of data on program performance and outcomes, possibly in comparison with similar efforts (although, as STPI’s initial efforts to identify examples of true collaboration between physical scientists and cancer researchers were not successful, it is difficult to imagine an appropriate comparative design). If it is decided that a full Outcome Evaluation of the PS-OCs is feasible and warranted, it should not be initiated until the program is stable in terms of design and sufficiently mature for outcomes to be fully developed. Ten years is frequently used as a rule-of-thumb for maturity of Centers programs, but in reality every program is unique. In the case of the PS-OCs, it seems prudent to wait at least until after the expert panel review and concept renewal to plan an outcome evaluation, as the program design may continue to evolve.



Appendix A: Draft Logic Model for PS-OCs

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