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使用计算机建模教授肺气体交换生理学。

Teaching pulmonary gas exchange physiology using computer modeling.

作者信息

Kapitan Kent S

机构信息

Division of Pulmonary Medicine, School of Medicine, Southern Illinois University, Springfield, Illinois 62794-9636, USA.

出版信息

Adv Physiol Educ. 2008 Mar;32(1):61-4. doi: 10.1152/advan.00099.2007.

Abstract

Students often have difficulty understanding the relationship of O(2) consumption, CO(2) production, cardiac output, and distribution of ventilation-perfusion ratios in the lung to the final arterial blood gas composition. To overcome this difficulty, I have developed an interactive computer simulation of pulmonary gas exchange that is web based and allows the student to vary multiple factors simultaneously and observe the final effect on the arterial blood gas composition (available at www.siumed.edu/medicine/pulm/vqmodeling.htm). In this article, the underlying mathematics of the computer model is presented, as is the teaching strategy. The simulation is applied to a typical clinical case drawn from the intensive care unit to demonstrate the interdependence of the above factors as well as the less-appreciated importance of the Bohr and Haldane effects in clinical pulmonary medicine. The use of a computer to vary the many interacting factors involved in the arterial blood gas composition appeals to today's students and demonstrates the importance of basic physiology to the actual practice of medicine.

摘要

学生们常常难以理解肺内氧气消耗、二氧化碳产生、心输出量以及通气/血流比值分布与最终动脉血气成分之间的关系。为克服这一困难,我开发了一个基于网络的交互式计算机模拟肺气体交换程序,学生可以同时改变多个因素,并观察其对动脉血气成分的最终影响(可在www.siumed.edu/medicine/pulm/vqmodeling.htm获取)。本文介绍了该计算机模型的基础数学原理以及教学策略。该模拟应用于一个来自重症监护病房的典型临床病例,以展示上述因素的相互依存关系,以及玻尔效应和哈代效应在临床肺医学中未被充分认识的重要性。利用计算机改变动脉血气成分中涉及的诸多相互作用因素,这对当今的学生很有吸引力,并证明了基础生理学在医学实际应用中的重要性。

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