Engaging undergraduate students in a biomedical research project: a virtual collaboration across institutes under the pandemic environment

Yuezhou Wang, D. Ewert
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Abstract

In this work-in-progress (innovative practices) paper, we introduced a biomedical engineering research project to students in our primarily undergraduate institute (PUI) where sources and research activities are limited. Here, we present the motivation, background, best practices, initial assessment, and future work. Through virtual collaboration with a research institute, the project helped engage students in research activity, broaden the current scope of our project-based pedagogy, and address the typical challenges in online learning. In this semester-long project, a group of seven students from two schools developed a highly coupled Simulink model that captured the behaviors of the human cardiovascular system. The model aimed to study the aging effect of the aorta on cardiac power and blood pressure. Regarding the project design, we introduced the concept from the software engineering, i.e., “Agile Principle” and “Minimal Viable Product”. Students started to develop a working model of one component (i.e., O2 and CO2 exchange model in the tissue) from the entire system. Through multiple iterations, the model was debugged, expanded, and polished. We recognized the critical role of communication in the virtual space. Besides routine team meetings on Zoom, we also mentored students with model debugging time through the Slack platform. Students developed their professional skills through weekly learning journals where ideas, reflection, confusion can be shared with faculty. The preliminary assessment indicates positive impacts, such as growth mindset, time management, and more career options.
让本科生参与生物医学研究项目:大流行环境下跨研究所的虚拟协作
在这篇正在进行的(创新实践)论文中,我们向我们主要的本科学院(PUI)的学生介绍了一个生物医学工程研究项目,该学院的来源和研究活动有限。在这里,我们介绍了动机、背景、最佳实践、初步评估和未来的工作。通过与研究机构的虚拟合作,该项目帮助学生参与研究活动,拓宽了我们基于项目的教学法的范围,并解决了在线学习中的典型挑战。在这个长达一学期的项目中,来自两所学校的七名学生开发了一个高度耦合的Simulink模型,该模型捕捉了人类心血管系统的行为。该模型旨在研究主动脉老化对心力和血压的影响。在项目设计上,我们引入了软件工程的概念,即“敏捷原则”和“最小可行产品”。学生开始从整个系统出发,建立一个部件的工作模型(即组织中O2和CO2的交换模型)。通过多次迭代,对模型进行了调试、扩展和完善。我们认识到通信在虚拟空间中的关键作用。除了在Zoom上的日常团队会议,我们还通过Slack平台指导学生调试模型的时间。学生们通过每周的学习日志来发展他们的专业技能,在那里他们的想法、思考、困惑可以与教师分享。初步评估显示出积极的影响,如成长心态、时间管理和更多的职业选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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