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哺乳动物神经系统可能的微波机制。

Possible microwave mechanisms of the mammalian nervous system.

作者信息

Stocklin P L, Stocklin B F

出版信息

TIT J Life Sci. 1979;9(1-2):29-51.

PMID:545749
Abstract

The hypothesis is examined that the living mammal generates and uses electromagnetic waves in the lower microwave frequency region as an integral part of the functioning of central and peripheral nervous systems. Analysis of the potential energy of a protein integral to the neural membrane compared to that of an extracellular positive ion yields major known features of action potential generation, and identification of the integral protein as a microwave emitter and absorber by changes in rotational energy state. Prolate spheroidal analysis of the adult human brain/skull cavity shows capability to support modes in the range 200 MHz to 3 GHz; spatial mode properties correspond to gross anatomy and neuromorphology of the brain. Phase-lock loop interaction between lower microwave modes and action potential conduction results in pulse microwave/action potential generation observable by EEG instrumentation as brain waves; alpha waves occur if the corpus callosum is the major neural tract involved. Spatially consistent Lorentz forces of standing microwaves provide physical basis for correspondence of spatial properties of microwave modes with brain anatomy, and for the formation of myelin sheath and the nodes of Ranvier on larger neurons.

摘要

有一种假说得到了检验,即活体哺乳动物会产生并利用较低微波频率区域的电磁波,作为中枢和外周神经系统功能不可或缺的一部分。将神经膜中一种蛋白质的势能与细胞外正离子的势能进行比较,分析得出了动作电位产生的主要已知特征,并通过旋转能态的变化确定该整合蛋白为微波发射器和吸收器。对成人大脑/颅腔进行长椭球体分析表明,其能够支持200兆赫至3吉赫范围内的模式;空间模式特性与大脑的大体解剖结构和神经形态学相对应。较低微波模式与动作电位传导之间的锁相环相互作用导致产生脉冲微波/动作电位,脑电图仪器可将其作为脑电波观测到;如果胼胝体是主要涉及的神经束,则会出现阿尔法波。驻波微波在空间上一致的洛伦兹力为微波模式的空间特性与大脑解剖结构的对应关系,以及较大神经元上髓鞘和郎飞结的形成提供了物理基础。

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