University of Washington, Seattle, WA, USA.
Drexel University College of Medicine, Philadelphia, PA, USA.
Health Promot Pract. 2024 May;25(3):383-390. doi: 10.1177/15248399221150911. Epub 2023 Jan 26.
The Translational Science Benefit Model (TSBM) was developed to broadly capture systematic measures of health and societal benefits from scientific research, beyond traditional outcome measures. We aimed to develop a systematic process for the application of the TSBM and to then provide an example of a novel application of the TSBM to an ongoing Return-to-Learn (RTL) after youth concussion project involving partnerships with community stakeholders.
We invited investigators, project advisory board, and participants of the RTL project to participate in a modified Delphi process. We first generated a list of potential translational benefits using the indicators of the TSBM as guideposts. We then prioritized the benefits on an adapted Eisenhower matrix.
We invited 35 concussion care or research experts to participate, yielding 20 ranked translational benefits. Six of these recommendations were ranked high priority, six were regarded as investments, and eight were ranked as either low yield or low priority.
This study found that activities such as education and training of stakeholders, development of policy and consensus statements, and innovation in dissemination, were perceived as higher priority than other activities. Our approach using a modified Delphi process and incorporating the TSBM can be replicated to generate and prioritize potential benefits to society from research studies.
转化科学效益模型(TSBM)旨在广泛捕捉科学研究对健康和社会效益的系统衡量标准,超越传统的结果衡量标准。我们旨在开发一种应用 TSBM 的系统流程,然后提供一个将 TSBM 应用于正在进行的青少年脑震荡后重返学习(RTL)项目的新实例,该项目涉及与社区利益相关者的合作。
我们邀请了研究人员、项目顾问委员会和 RTL 项目的参与者参与改良 Delphi 流程。我们首先使用 TSBM 的指标生成潜在转化效益的清单。然后,我们在改良的 Eisenhower 矩阵上对效益进行优先级排序。
我们邀请了 35 名脑震荡护理或研究专家参与,提出了 20 项排名靠前的转化效益。其中 6 项被列为高度优先,6 项被视为投资,8 项被列为低收益或低优先级。
本研究发现,利益相关者的教育和培训、政策和共识声明的制定以及传播方面的创新等活动被视为比其他活动更具优先级。我们使用改良 Delphi 流程并结合 TSBM 的方法可以复制,以生成和优先考虑研究对社会的潜在效益。