[Thermodynamics and electrophysiology of the nervous system].

Q4 Medicine Neurologia-Neurocirugia Psiquiatria Pub Date : 1978-01-01
E Cesarman, N Brachfeld, B Estañol
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Abstract

This study expresses a theory designed to associate the fundamental thermodynamic concepts to the electrophysiology of the nervous system. An analogy is drawn between the thermodynamic and electrical events of the myocardial cell during its mechanical phases with those thermodynamic and electrical events of the nerve cell during conduction. Although the myocardial and nerve cells are designed to perform different functions, their processes of membrane potential activation and corresponding directions of thermodynamic and entropy changes are basically the same. A thermodynamic view of nerve cell "active" potential corresponds to a passive downhill process during which the entropy of the system (nerve cell) increases. In contrast, the so called "resting" membrane potential corresponds to an active uphill process. Thus, there is a paradox because the nerve cell is thermodynamically passive during the "active" membrane potential, whereas it is thermodynamically active during the "resting" membrane potential. It is suggested that inhibition in the nervous system may be considered a thermodinamically active process. If the negentropic process fails, the result is the malfunctioning or the final destruction of the system.

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[神经系统的热力学和电生理学]。
这项研究表达了一种理论,旨在将基本的热力学概念与神经系统的电生理联系起来。将心肌细胞在力学阶段的热力学和电事件与神经细胞在传导过程中的热力学和电事件进行类比。虽然心肌和神经细胞的功能设计不同,但它们的膜电位激活过程和相应的热力学和熵变方向基本相同。神经细胞“活跃”电位的热力学观点对应于系统(神经细胞)熵增加的被动下坡过程。相反,所谓的“静息”膜电位对应于一个活跃的上坡过程。因此,存在一个悖论,因为神经细胞在“活跃”膜电位期间是热力学被动的,而在“静止”膜电位期间是热力学活跃的。这表明,在神经系统的抑制可能被认为是一个热力学活跃的过程。如果负熵过程失败,结果就是系统的故障或最终的破坏。
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来源期刊
Neurologia-Neurocirugia Psiquiatria
Neurologia-Neurocirugia Psiquiatria Psychology-Clinical Psychology
CiteScore
0.10
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0.00%
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0
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