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非平衡热力学在生物系统中因果和替代模型的合成。

Synthesis of causal and surrogate models by non-equilibrium thermodynamics in biological systems.

机构信息

Department of Extended Intelligence for Medicine, The Ishii-Ishibashi Laboratory, Keio University School of Medicine, Tokyo, Japan.

Open Systems Information Science Team, Advanced Data Science Project, RIKEN Information R&D and Strategy Headquarters, RIKEN, Tokyo, Japan.

出版信息

Sci Rep. 2024 Jan 10;14(1):1001. doi: 10.1038/s41598-024-51426-8.

Abstract

We developed a model to represent the time evolution phenomena of life through physics constraints. To do this, we took into account that living organisms are open systems that exchange messages through intracellular communication, intercellular communication and sensory systems, and introduced the concept of a message force field. As a result, we showed that the maximum entropy generation principle is valid in time evolution. Then, in order to explain life phenomena based on this principle, we modelled the living system as a nonlinear oscillator coupled by a message and derived the governing equations. The governing equations consist of two laws: one states that the systems are synchronized when the variation of the natural frequencies between them is small or the coupling strength through the message is sufficiently large, and the other states that the synchronization is broken by the proliferation of biological systems. Next, to simulate the phenomena using data obtained from observations of the temporal evolution of life, we developed an inference model that combines physics constraints and a discrete surrogate model using category theory, and simulated the phenomenon of early embryogenesis using this inference model. The results show that symmetry creation and breaking based on message force fields can be widely used to model life phenomena.

摘要

我们通过物理约束开发了一个模型来表示生命的时间演化现象。为此,我们考虑到生物体是通过细胞内通讯、细胞间通讯和感觉系统交换信息的开放系统,并引入了信息力场的概念。结果表明,最大熵产生原理在时间演化中是有效的。然后,为了根据这一原理解释生命现象,我们将生命系统建模为一个通过信息耦合的非线性振荡器,并推导出控制方程。控制方程由两个定律组成:一个定律指出,当它们之间的自然频率变化较小时或者通过信息的耦合强度足够大时,系统会同步;另一个定律指出,同步会被生物系统的增殖打破。接下来,为了使用从生命时间演化观测中获得的数据模拟现象,我们开发了一种推理模型,该模型结合了物理约束和使用范畴论的离散替代模型,并使用该推理模型模拟了早期胚胎发生现象。结果表明,基于信息力场的对称创造和破坏可以广泛用于模拟生命现象。

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