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人类行为控制中的熵守恒

Entropy conservation in the control of human action.

作者信息

Hong S Lee, Newell Karl M

机构信息

Louisiana State University, 112 H.P. Long Fieldhouse, Baton Rouge, LA 70803, USA.

出版信息

Nonlinear Dynamics Psychol Life Sci. 2008 Apr;12(2):163-90.

Abstract

The human motor system is highly adaptable with the ability to adjust its movement patterns under constantly changing task and environmental constraints. In this paper we develop the position that the probabilistic nature of human action can be characterized by entropies at the level of the organism, task, and environment. Systematic changes in motor adaptation are characterized as task-organism and environment-organism tradeoffs in entropy. Such compensatory adaptations lead to a view of goal-directed motor control as the product of an underlying conservation of entropy across the task-organism-environment system. The conservation of entropy supports the view that context dependent adaptations in human goal-directed action are guided fundamentally by natural law and provides a novel means of examining human motor behavior.

摘要

人类运动系统具有高度适应性,能够在不断变化的任务和环境限制下调整其运动模式。在本文中,我们提出这样一种观点:人类行为的概率性质可以通过有机体、任务和环境层面的熵来表征。运动适应中的系统性变化被表征为熵方面的任务 - 有机体和环境 - 有机体权衡。这种补偿性适应导致一种观点,即目标导向的运动控制是任务 - 有机体 - 环境系统中潜在熵守恒的产物。熵的守恒支持了这样一种观点,即人类目标导向行为中依赖于情境的适应从根本上是由自然法则引导的,并提供了一种研究人类运动行为的新方法。

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