Complexity and significance in computer simulations of physiological systems.

Federation proceedings Pub Date : 1987-06-01
J M Kootsey
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Abstract

Complexity in a theoretical model may or may not be associated with a high level of arbitrariness, depending on how the model is constructed. In this paper I use examples from cardiac electrophysiology to illustrate two techniques for maintaining significance in complex simulations. First, the approaches of analysis and synthesis are compared as methods of constructing models of complex systems. When a model is constructed by synthesis of known principles, facts, and subunits, it may have any degree of complexity without losing significance; the same is not true for analysis models. Significance can also be maintained by assembling a limited model to test a specific hypothesis of mechanism.

生理系统计算机模拟的复杂性和意义。
理论模型中的复杂性可能与高度的随意性相关,也可能不相关,这取决于模型是如何构建的。在本文中,我用心脏电生理学的例子来说明在复杂模拟中保持意义的两种技术。首先,比较了分析方法和综合方法作为构建复杂系统模型的方法。当一个模型是由已知的原理、事实和子单元的综合构建而成时,它可以具有任何程度的复杂性而不会失去意义;对于分析模型来说,情况并非如此。通过组装一个有限的模型来检验一个特定的机制假设,也可以保持意义。
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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