弱微波对神经纤维活性的非热影响

M. Shneider, M. Pekker
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引用次数: 8

摘要

本文对非热弱微波场对神经纤维的影响作了简要的综述。对最近发表的实验结果进行了回顾和分析。提出了作者的理论,根据该理论,在大约30-300 GHz的范围内,由于与微波辐射的相互作用,与膜中超声振动的激发有关,存在强烈的明显共振。这些强迫振动产生声压,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动作电位激发的阈值。讨论了神经纤维双层脂膜的表面电荷问题。还讨论了观察所考虑的效应的各种实验。
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Non-thermal influence of a weak microwave on nerve fiber activity
This paper presents a short selective review of the non-thermal weak microwave field impact on a nerve fiber. The published results of recent experiments are reviewed and analyzed. The theory of the authors is presented, according to which there are strongly pronounced resonances in the range of about 30-300 GHz associated with the excitation of ultrasonic vibrations in the membrane as a result of interactions with the microwave radiation. These forced vibrations create acoustic pressure, which may lead to the redistribution of the protein transmembrane channels, thus changing the threshold of the action potential excitation in the axons of the neural network. The problem of surface charge on the bilayer lipid membrane of the nerve fiber is discussed. Various experiments for observing the effects considered are also discussed.
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