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A Systems Physiology Instructional Environment for Biomedical Engineers: a Design Grounded in the Learning Sciences

机译:生物医学工程师的系统生理学教学环境:在学习科学接地的设计

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To the extent that Biomedical Engineering (BME) is rooted in the biological and medical sciences, a core Systems Physiology course provides undergraduates with an important learning opportunity. However, the rapid evolution of BME's biological and medical foundations necessitates that beyond learning systems physiology's content and concepts, pre-professionals must learn to apply relevant aspects of systems physiology to unanticipated new tasks. The Accreditation Board for Engineering and Technology's EC-2000 criteria similarly support engineers learning to apply their knowledge. This paper describes a principled approach by which we are designing a BME instructional environment in which students learn systems physiology subject matter coupled to its application. We explain how our design principles for this instructional environment evolved from the Project-based Science pedagogical framework and a modern understanding of how people learn, and further discuss our process of participatory design, which involves individuals from both BME and the Learning Sciences. We present our progress to date, and the ideas we have distilled from this experience.
机译:到生物医学工程(BME)是植根于生物科学和医学的范围内,核心系统生理学课程向本科生提供了重要的学习机会。然而,BME的生物学和医学基础必要的快速发展是超越学习系统生理学的内容和概念,预专业人员必须学会系统生理学的相关方面适用于意料之外的新任务。认可委员会工程与技术的EC-2000标准,同样支持工程师学习,学以致用。本文介绍由我们设计,让学生学习系统生理学主题连接到它的应用BME教学环境原则的做法。我们解释了我们的设计原则,从基于项目的科学教学框架和人们如何学习现代理解这个演变教学环境,并进一步讨论如何参与我们的设计,其中包括来自BME和学习科学的个人的过程。我们提出我们迄今取得的进展,并想法,我们从这次经历蒸馏。

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