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通过开放途径增强能力:开发本科电生理学实践的经验教训。

Building capacity through open approaches: Lessons from developing undergraduate electrophysiology practicals.

机构信息

Departamento de Fisica, Facultad de Ciencias, Universidad Nacional Autónoma de México, Ciudad de México, CDMX, 04510, Mexico.

出版信息

F1000Res. 2021 Mar 8;10:187. doi: 10.12688/f1000research.51049.1. eCollection 2021.

Abstract

Electrophysiology has a wide range of biomedical research and clinical applications. As such, education in the theoretical basis and hands-on practice of electrophysiological techniques is essential for biomedical students, including at the undergraduate level. However, offering hands-on learning experiences is particularly difficult in environments with limited resources and infrastructure. In 2017, we began a project to design and incorporate electrophysiology laboratory practicals into our Biomedical Physics undergraduate curriculum at the Universidad Nacional Autónoma de México. We describe some of the challenges we faced, how we maximized resources to overcome some of these challenges, and in particular, how we used open scholarship approaches to build both educational and research capacity. We succeeded in developing a number of experimental and data analysis practicals in electrophysiology, including electrocardiogram, electromyogram, and electrooculogram techniques. The use of open tools, open platforms, and open licenses was key to the success and broader impact of our project. We share examples of our practicals and explain how we use these activities to strengthen interdisciplinary learning, namely the application of concepts in physics to understanding functions of the human body. Open scholarship provides multiple opportunities for universities to build capacity. Our goal is to provide ideas, materials, and strategies for educators working in similar resource-limited environments.

摘要

电生理学在生物医学研究和临床应用中具有广泛的应用。因此,对于生物医学专业的学生来说,包括本科生,都需要接受电生理学理论基础和实践技能的教育。然而,在资源和基础设施有限的环境中,提供实践学习经验尤其困难。 2017 年,我们开始在墨西哥国立自治大学的生物医学物理学本科课程中设计并纳入电生理学实验室实践。我们描述了我们面临的一些挑战,以及我们如何最大限度地利用资源来克服其中的一些挑战,特别是我们如何利用开放奖学金的方法来建立教育和研究能力。 我们成功地开发了一些电生理学实验和数据分析实践,包括心电图、肌电图和眼电图技术。开放工具、开放平台和开放许可证的使用是我们项目成功和更广泛影响的关键。我们分享了我们的实践示例,并解释了我们如何利用这些活动来加强跨学科学习,即物理学概念在理解人体功能中的应用。 开放奖学金为大学提供了多种建立能力的机会。我们的目标是为在类似资源有限的环境中工作的教育工作者提供想法、材料和策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f85f/8600483/dc92be78b38b/f1000research-10-54156-g0000.jpg

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