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Currents from squid giant axons clamped with their action potentials

机译:鱿鱼巨型轴突的电流夹紧了它们的动作潜力

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The Hodgkin-Huxley equations1 have been used extensively to derive currents through membranes of squid giant axon. The Hodgkin-Huxley model postulates two independent ensembles of molecular channels which become accessible to K+ and Na+ ion currents respectively when they change from a closed to an open configuration. The membrane conductance is directly proportional to the number of “open” channels in each ensemble. With this arrangement, the current-voltage relationship is ohmic although the membrane conductance increases as the number of open channels increases. The rate constants for the closed-open kinetics are functions of the transmembrane potential.
机译:Hodgkin-Huxley公式1已广泛使用,以通过鱿鱼巨型轴突的膜来衍生电流。 Hodgkin-Huxley模型在从关闭到开放配置的关闭时,分别消除了两个分子通道的分子通道的独立集合。膜电导与每个集合中的“打开”通道的数量成比例。利用这种布置,电流 - 电压关系是欧姆,尽管随着打开通道的数量增加而增加,但是膜电导增加。闭路动力学的速率常数是跨膜电位的功能。

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