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Teaching cardiovascular physiology with equivalent electronic circuits in a practically oriented teaching module

机译:在面向实用的教学模块中以等效电子电路进行心血管生理学教学

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Here, we report on a new tool for teaching cardiovascular physiology and pathophysiology that promotes qualitative as well as quantitative thinking about time-dependent physiological phenomena. Quantification of steady and presteady-state (transient) cardiovascular phenomena is traditionally done by differential equations, but this is time consuming and unsuitable for most undergraduate medical students. As a result, quantitative thinking about time-dependent physiological phenomena is often not extensively dealt with in an undergraduate physiological course. However, basic concepts of steady and presteady state can be explained with relative simplicity, without the introduction of differential equation, with equivalent electronic circuits (EECs). We introduced undergraduate medical students to the concept of simulating cardiovascular phenomena with EECs. EEC simulations facilitate the understanding of simple or complex time-dependent cardiovascular physiological phenomena by stressing the analogies between EECs and physiological processes. Student perceptions on using EEC to simulate, study, and understand cardiovascular phenomena were documented over a 9-yr period, and the impact of the course on the students' knowledge of selected basic facts and concepts in cardiovascular physiology was evaluated over a 3-yr period. We conclude that EECs are a valuable tool for teaching cardiovascular physiology concepts and that EECs promote active learning.
机译:在这里,我们报告了一种用于教授心血管生理学和病理生理学的新工具,该工具可以促进对时间依赖性生理现象的定性和定量思考。传统上,通过微分方程对稳态和稳态(瞬态)心血管现象进行量化,但这非常耗时且不适用于大多数本科医学生。结果,关于时间相关的生理现象的定量思考通常在本科生的生理课程中没有得到广泛处理。但是,可以使用等效电子电路(EEC)相对简单地解释稳态和预稳态的基本概念,而无需引入微分方程。我们向本科医学生介绍了使用EEC模拟心血管现象的概念。通过强调EEC与生理过程之间的类比,EEC模拟有助于理解简单或复杂的随时间变化的心血管生理现象。在9年的时间里记录了学生对使用EEC进行模拟,研究和理解心血管现象的看法,并在3年​​的时间里评估了该课程对学生所选心血管生理学基本知识和概念的影响。期。我们得出的结论是,EEC是教授心血管生理学概念的宝贵工具,EEC可以促进主动学习。

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