Annila Arto
Department of Physics, University of HelsinkiHelsinki, Finland; Department of Biosciences, University of HelsinkiHelsinki, Finland.
Front Syst Neurosci. 2016 Mar 30;10:27. doi: 10.3389/fnsys.2016.00027. eCollection 2016.
The human brain is a particularly demanding system to infer its nature from observations. Thus, there is on one hand plenty of room for theorizing and on the other hand a pressing need for a rigorous theory. We apply statistical mechanics of open systems to describe the brain as a hierarchical system in consuming free energy in least time. This holistic tenet accounts for cellular metabolism, neuronal signaling, cognitive processes all together, or any other process by a formal equation of motion that extends down to the ultimate precision of one quantum of action. According to this general thermodynamic theory cognitive processes are no different by their operational and organizational principle from other natural processes. Cognition too will emerge and evolve along path-dependent and non-determinate trajectories by consuming free energy in least time to attain thermodynamic balance within the nervous system itself and with its surrounding systems. Specifically, consciousness can be ascribed to a natural process that integrates various neural networks for coherent consumption of free energy, i.e., for meaningful deeds. The whole hierarchy of integrated systems can be formally summed up to thermodynamic entropy. The holistic tenet provides insight to the character of consciousness also by acknowledging awareness in other systems at other levels of nature's hierarchy.
从观察结果推断人类大脑的本质是一个特别具有挑战性的系统。因此,一方面有大量的理论化空间,另一方面迫切需要一个严谨的理论。我们应用开放系统的统计力学,将大脑描述为一个在最短时间内消耗自由能量的层次系统。这一整体原则通过一个形式运动方程,将细胞代谢、神经元信号传导、认知过程以及任何其他过程都整合在一起,该方程延伸到一个量子作用的最终精度。根据这一普遍的热力学理论,认知过程在其操作和组织原则上与其他自然过程并无不同。认知也将沿着路径依赖和非确定性的轨迹出现和演化,通过在最短时间内消耗自由能量,在神经系统自身及其周围系统内达到热力学平衡。具体而言,意识可以归因于一个自然过程,该过程整合各种神经网络以实现自由能量的连贯消耗,即有意义的行为。整个整合系统的层次结构可以形式上总结为热力学熵。这一整体原则还通过承认自然界层次结构其他层面上其他系统中的意识,为意识的特征提供了见解。