【2h】

A convertible pore model of neural membrane conductance.

机译:神经膜电导的可转换孔模型。

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摘要

Instead of the single-channel pore proposed earlier [Wooldridge, D. E. (1984) Proc. Natl. Acad. Sci. USA 81, 5609-5612] for the transit of conductance ions through the neural membrane, a pore with a second channel for "influence ions" of calcium or magnesium is considered in this paper. By entering trapping centers at the closed inner ends of the new channels, the influence ions are postulated to alter the rates of chemical reactions that change the configurational state of the gates guarding the inner ends of the nearby conductance channels. This makes the permeability of the conductance channels strongly dependent on voltage. Using a four-state reaction scheme for both the sodium and potassium pore systems, a computer model of the membrane conductance is constructed. When suitable values are assigned to its parameters, the model closely reproduces the results of the Hodgkin-Huxley voltage-clamp and action potential experiments.
机译:代替较早提出的单通道孔[Wooldridge,D.E。(1984)Proc.Natl.Acad.Sci.USA 90:5873-5877。 Natl。学院科学[美国81,5609-5612],用于传导离子通过神经膜的转运,本文考虑了一个带有第二通道的孔,用于钙或镁的“影响离子”。通过在新通道的封闭内端进入捕获中心,推测影响离子会改变化学反应的速率,从而改变保护附近电导通道内端的门的构型状态。这使得电导通道的磁导率很大程度上取决于电压。使用针对钠和钾孔系统的四态反应方案,构建了膜电导的计算机模型。将合适的值分配给其参数后,该模型会密切复制霍奇金-赫克斯利电压钳和动作电位实验的结果。

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