Identifying entrustable professional activities for MD program in biochemistry—A modified Delphi approach

IF 1.2 4区 教育学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry and Molecular Biology Education Pub Date : 2023-05-06 DOI:10.1002/bmb.21736
Sujatha Rajaragupathy, Sumitra Govindarajan, Jeyachandran Ganesan, Kavitha Subramanian, Vijaya Doraiswamy, Gayathri Balasubramaniam, Meenakshi Sundaram Andra Suryanarayana, Aruna Veeruswamy
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Abstract

Entrustable professional activities (EPAs) facilitate competency-based assessments. India is on the verge of implementing competency-based training for postgraduate programs. MD degree in Biochemistry is a unique program available exclusively in India. Postgraduate programs in most specialties have started working toward EPA-based curriculum, in both India and other countries. However, EPAs for MD Biochemistry course are yet to be defined. This study aims to identify EPAs for postgraduate training program in Biochemistry. Identification and attaining consensus on the list of EPAs for MD Biochemistry curriculum was done by modified Delphi method. The study was conducted in three rounds. In round 1, tasks expected from an MD Biochemistry graduate were identified by working group followed by expert panel validation. The tasks were organized and reframed to EPAs. Two rounds of online survey were conducted to achieve a consensus on the list of EPAs. Consensus measure was calculated. A cut-off value of 80% and above was considered to reflect good consensus. The working group identified 59 tasks. This was validated by 10 experts based on which, 53 items were retained. These tasks were reframed into 27 EPAs. In round 2, 11 EPAs achieved good consensus. Among the remaining EPAs, 13 achieved consensus of 60%–80% and were selected for round 3. Five EPAs achieved good consensus in this round. A total of 16 EPAs were identified for MD Biochemistry curriculum. This study provides a frame of reference for experts to develop an EPA-based curriculum in the future.

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确定生物化学医学博士项目可信赖的专业活动——一种改进的德尔菲法
可信赖的专业活动(EPAs)促进了基于能力的评估。印度即将在研究生课程中实施以能力为基础的培训。在生物化学博士学位是一个独特的计划,专门在印度提供。在印度和其他国家,大多数专业的研究生课程已经开始向epa为基础的课程发展。然而,医学博士生物化学课程的EPAs尚未明确。本研究旨在确定生物化学研究生培养计划的epa。采用改进的德尔菲法,对医学博士生物化学课程EPAs列表进行了鉴定,并取得了共识。这项研究分三轮进行。在第一轮中,工作小组确定了生物化学博士毕业生的任务,然后由专家小组验证。这些任务被组织并重新定义为EPAs。我们进行了两轮网上调查,就环境保护措施名单达成共识。计算共识测度。临界值在80%及以上被认为反映了良好的共识。工作组确定了59项任务。经过10位专家的验证,保留了53个项目。这些任务被重组为27个环境方案。第二轮11个epa达成了良好共识。在其余的环境保护计划中,有13个达成了60%-80%的共识,并被选中进入第三轮。本轮会议达成了5个环境保护协定的良好共识。共确定了医学博士生物化学课程的16个EPAs。本研究为未来专家开发环境保护课程提供参考框架。
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来源期刊
Biochemistry and Molecular Biology Education
Biochemistry and Molecular Biology Education 生物-生化与分子生物学
CiteScore
2.60
自引率
14.30%
发文量
99
审稿时长
6-12 weeks
期刊介绍: The aim of BAMBED is to enhance teacher preparation and student learning in Biochemistry, Molecular Biology, and related sciences such as Biophysics and Cell Biology, by promoting the world-wide dissemination of educational materials. BAMBED seeks and communicates articles on many topics, including: Innovative techniques in teaching and learning. New pedagogical approaches. Research in biochemistry and molecular biology education. Reviews on emerging areas of Biochemistry and Molecular Biology to provide background for the preparation of lectures, seminars, student presentations, dissertations, etc. Historical Reviews describing "Paths to Discovery". Novel and proven laboratory experiments that have both skill-building and discovery-based characteristics. Reviews of relevant textbooks, software, and websites. Descriptions of software for educational use. Descriptions of multimedia materials such as tutorials on various aspects of biochemistry and molecular biology.
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Issue Information Cinemeducation improves early clinical exposure to inborn errors of metabolism. The development of supplemental multimedia learning modules and their impact on student learning in food biotechnology courses. Encourage self-learning and collaborative learning through gamification during COVID-19 pandemic: A case study for teaching biochemistry. A plant mutant screen CURE integrated with core biology concepts showed effectiveness in course design and students' perceived learning gains.
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