弱微波场对神经纤维影响的非热机制

M. Shneider, M. Pekker
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引用次数: 19

摘要

我们提出了弱微波场对神经纤维影响的非热机制。结果表明,在大约30 - 300 GHz的范围内,由于与电磁辐射的相互作用,膜中存在与超声振动激发有关的强烈明显的共振。这些振动产生的声压可能导致蛋白质跨膜通道的重新分配,从而改变神经网络轴突中动作电位激发的阈值。分析了电磁微波辐射对髓鞘神经纤维的各个特定区域的影响:Ranvier节点和所谓的初始段-神经元丘和覆盖髓鞘层的轴突的第一部分之间的区域。结果表明,初始节段是有髓神经纤维中最敏感的区域,动作电位通常从这里开始。
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Non-Thermal Mechanism of Weak Microwave Fields Influence on Nerve Fiber
We propose a non-thermal mechanism of weak microwave field impact on a nerve fiber. It is shown that in the range of about 30 - 300 GHz there are strongly pronounced resonances associated with the excitation of ultrasonic vibrations in the membrane as a result of interaction with electromagnetic radiation. These vibrations create acoustic pressure which may lead to the redistribution of the protein transmembrane channels, and, thus, changing the threshold of the action potential excitation in the axons of the neural network. The influence of the electromagnetic microwave radiation on various specific areas of myelin nerve fibers was analyzed: the nodes of Ranvier, and the so-called initial segment - the area between the neuron hillock and the first part of the axon covered with the myelin layer. It is shown that the initial segment is the most sensitive area of the myelined nerve fibers from which the action potential normally starts.
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