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从稳态自我到动态自我。

From a homeostatic to a homeodynamic self.

作者信息

Ikegami Takashi, Suzuki Keisuke

机构信息

Department of General Systems Sciences, The Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Tokyo 153-8902, Japan.

出版信息

Biosystems. 2008 Feb;91(2):388-400. doi: 10.1016/j.biosystems.2007.05.014. Epub 2007 Jul 17.

Abstract

Life as an autonomous homeostatic system is discussed. A mechanism that drives a homeostatic state to an autonomous self-moving state is examined with two computational cell models. The mechanism is met with Ashby's ultrastability, where random parameter searching is activated when a system breaks a viability constraint. Such a random search process is replaced by the membrane shape in the first model and by chaotic population dynamics in the second model. Emergence of sensors, motors and the recursive coupling between them is shown to be a natural outcome of an autonomous homeostatic system.

摘要

本文讨论了作为自主稳态系统的生命。利用两个计算细胞模型研究了一种将稳态状态驱动到自主自我运动状态的机制。该机制符合阿什比的超稳定性,即当系统打破生存约束时会激活随机参数搜索。在第一个模型中,这种随机搜索过程被膜形状所取代,在第二个模型中则被混沌种群动态所取代。传感器、马达以及它们之间的递归耦合的出现被证明是自主稳态系统的自然结果。

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