Erdi P
Int J Neurosci. 1983 Sep;20(3-4):193-216. doi: 10.3109/00207458308986574.
A thermodynamic approach to understanding the brain is presented. Thermodynamics may be extended to "higher than molecule" levels. The role of the concept of entropy in thermodynamic-based nonthermodynamic systems has been discussed. Static and dynamic structures, cooperative and competitive mechanisms and some of their neurobiological applications are discussed. Postsynaptic membrane noises, dynamic synaptic activity, synaptogenesis, plasticity, retinotopy and perception have been considered as self-organizing neural structures appearing at different hierarchical levels.
本文提出了一种理解大脑的热力学方法。热力学可以扩展到“高于分子”的层面。讨论了熵的概念在基于热力学的非热力学系统中的作用。探讨了静态和动态结构、协同和竞争机制及其一些神经生物学应用。突触后膜噪声、动态突触活动、突触形成、可塑性、视网膜拓扑学和感知被视为出现在不同层次水平上的自组织神经结构。