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Student Understanding of DNA Structure-Function Relationships Improves from Using 3D Learning Modules with Dynamic 3D Printed Models

机译:学生对DNA结构功能关系的理解改善了使用带有动态3D印刷模型的3D学习模块

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Understanding the relationship between molecular structure and function represents an important goal of undergraduate life sciences. Although evidence suggests that handling physical models supports gains in student understanding of structure-function relationships, such models have not been widely implemented in biochemistry classrooms. Three-dimensional (3D) printing represents an emerging cost-effective means of producing molecular models to help students investigate structure-function concepts. We developed three interactive learning modules with dynamic 3D printed models to help biochemistry students visualize biomolecular structures and address particular misconceptions. These modules targeted specific learning objectives related to DNA and RNA structure, transcription factor-DNA interactions, and DNA supercoiling dynamics. We also designed accompanying assessments to gauge student learning. Students responded favorably to the modules and showed normalized learning gains of 49% with respect to their ability to understand and relate molecular structures to biochemical functions. By incorporating accurate 3D printed structures, these modules represent a novel advance in instructional design for biomolecular visualization. We provide instructors with the materials necessary to incorporate each module in the classroom, including instructions for acquiring and distributing the models, activities, and assessments. (c) 2019 International Union of Biochemistry and Molecular Biology, 47(3):303-317, 2019.
机译:了解分子结构与功能之间的关系代表本科生生命科学的重要目标。虽然证据表明,处理物理模型支持学生对结构功能关系的认识,但这些模型尚未在生物化学课堂中广泛实施。三维(3D)印刷代表了生产分子模型的新兴成本效益手段,以帮助学生调查结构功能概念。我们开发了具有动态3D印刷模型的三个交互式学习模块,以帮助生物化学学生可视化生物分子结构和地址特定的误解。这些模块针对与DNA和RNA结构相关的特定学习目标,转录因子-DNA相互作用和DNA超级煎皮动力学。我们还设计了陪同评估学生学习的评估。学生对模块有利地回应,并展示了他们理解和将分子结构与生化功能相关的能力为49%的标准化学习衰退。通过采用精确的3D印刷结构,这些模块代表了用于生物分子可视化的教学设计中的新颖进展。我们为教师提供了在课堂中纳入每个模块所需的材料,包括获取和分发模型,活动和评估的说明。 (c)2019年国际生物化学和分子生物学联盟,47(3):303-317,2019。

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