Adapting a Human Physiology Teaching Laboratory to the At-Home Education Setting.

Biomedical engineering education Pub Date : 2022-01-01 Epub Date: 2021-07-21 DOI:10.1007/s43683-021-00055-y
Victor Ong, Stanley Yamashiro
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引用次数: 1

Abstract

Teaching labs at the undergraduate level poses unique challenges to a school system forced online by COVID-19. We adapted physiology laboratories typically taught in-person to an online-only format, allowing students to measure personal health data alone. Students used available technology and low-cost devices for measuring respiratory and cardiovascular parameters and analyzed the data for differences in testing conditions such as posture and exertion. Students did not physically interact, which encouraged self-directed learning but disallowed peer-to-peer education. Pre-recorded data was utilized for ECG measurements, which streamlined the process but precluded the interactive act of experimentation. The use of low-cost devices empowered and encouraged students to take ownership of their health and form important connections between their own lives and theoretical physiology. Facilitating communication and TA preparedness is key to smoothly running the virtual lab. It will be important for future virtual labs to be designed to facilitate student interaction, include hands-on experimentation, and encourage personal investigation.

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适应家庭教育环境的人体生理学教学实验室。
本科阶段的教学实验室对因COVID-19而被迫上线的学校系统提出了独特的挑战。我们将通常亲自授课的生理学实验室调整为仅在线授课的形式,允许学生单独测量个人健康数据。学生们使用现有的技术和低成本的设备来测量呼吸和心血管参数,并分析数据在姿势和运动等测试条件下的差异。学生们没有身体上的互动,这鼓励了自主学习,但不允许对等教育。预先记录的数据被用于心电图测量,这简化了过程,但排除了实验的互动行为。使用低成本的设备使学生能够并鼓励他们掌握自己的健康,并在他们自己的生活和理论生理学之间形成重要的联系。促进沟通和助教准备是顺利运行虚拟实验室的关键。对于未来的虚拟实验室来说,重要的是设计成促进学生的互动,包括动手实验,并鼓励个人调查。
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