Cátedra de Fisiología, Facultad de Ciencias Veterinarias, Universidad Nacional de La Plata, La Plata, Argentina.
Adv Physiol Educ. 2009 Dec;33(4):293-6. doi: 10.1152/advan.00045.2009.
Students generally approach topics in physiology as a series of unrelated phenomena that share few underlying principles. However, if students recognized that the same underlying principles can be used to explain many physiological phenomena, they may gain a more unified understanding of physiological systems. To address this concern, we developed a simple, inexpensive, and easy to build model to demonstrate the underlying principles regarding Starling's Law of the Heart as well as lung and arterial elastic recoil. A model was chosen because models significantly enhance student understanding. Working with models also encourages research-oriented learning and helps our students understand complex ideas. Students are drawn into discussion by the power of learning that is associated with manipulating and thinking about objects. Recognizing that the same underlying principles can be used to explain many physiological phenomena may help students gain a more complete understanding of physiological systems.
学生通常将生理学中的各个主题视为一系列没有关联的现象,这些现象之间很少有共同的基本原则。然而,如果学生认识到可以用相同的基本原则来解释许多生理现象,那么他们可能会对生理系统有更统一的理解。为了解决这个问题,我们开发了一个简单、廉价且易于构建的模型,用于演示有关 Starling 定律的心脏以及肺和动脉弹性回弹的基本原则。之所以选择模型,是因为模型可以显著提高学生的理解能力。使用模型还可以鼓励以研究为导向的学习,并帮助我们的学生理解复杂的概念。学生们通过与操作和思考对象相关联的学习力量被吸引到讨论中。认识到可以用相同的基本原则来解释许多生理现象,可以帮助学生更全面地理解生理系统。