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首页> 外文期刊>The Journal of Physiology >Membrane resistance and shunting inhibition: where biophysics meets state-dependent human neurophysiology
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Membrane resistance and shunting inhibition: where biophysics meets state-dependent human neurophysiology

机译:膜抗性和分流抑制:生物物理学与状态依赖的人类神经生理学相遇的地方

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摘要

Activation of neurons not only changes their membrane potential and firing rate but as a secondary action reduces membrane resistance. This loss of resistance, or increase of conductance, may be of central importance in non-invasive magnetic or electric stimulation of the human brain since electrical fields cause larger changes in transmembrane voltage in resting neurons with low membrane conductances than in active neurons with high conductance. This may explain why both the immediate effects and after-effects of brain stimulation are smaller or even reversed during voluntary activity compared with rest. Membrane conductance is also increased during shunting inhibition, which accompanies the classic GABA(A) IPSP. This short-circuits nearby EPSPs and is suggested here to contribute to the magnitude and time course of short-interval intracortical inhibition and intracortical facilitation.
机译:神经元的激活不仅改变了它们的膜电位和放电速率,而且作为次要作用降低了膜阻力。电阻的损失或电导的增加在人脑的非侵入性磁刺激或电刺激中可能至关重要,因为电场会导致膜电导低的静息神经元的跨膜电压变化大于电导率高的活跃神经元的跨膜电压变化。这可以解释为什么在自愿活动期间,与休息相比,大脑刺激的直接影响和后效应都较小,甚至相反。在经典的GABA(A)IPSP伴随的分流抑制过程中,膜电导也增加了。这会使附近的EPSP短路,并在此建议其有助于短间隔皮质内抑制和皮质内促进的幅度和时间过程。

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