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首页> 外文期刊>The Journal of general physiology >Analysis of Spike Electrogenesis of Eel Electroplaques with Phase Plane and Impedance Measurements
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Analysis of Spike Electrogenesis of Eel Electroplaques with Phase Plane and Impedance Measurements

机译:相平面和阻抗测量分析鳗鱼斑块的尖峰电发生

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Eel electroplaques provide experimental conditions in which registration of phase plane trajectories ( dV/dt vs. V ) and impedance measurements with an AC Wheatstone bridge, in conjunction with spike electrogenesis describe quantitatively the ionic processes of the electrogenesis. Thus, these data employing as they do measurements of transients, permit an independent test of the validity of the assumptions which underlie the Hodgkin-Huxley equivalent circuit: independent ionic channels with fixed ionic batteries and exhibiting time-variant conductance changes with different kinetics for the different channels. The analysis accords with earlier findings on voltage-clamped electroplaques and this agreement confirms the validity of the equivalent circuit despite the fact that the current-voltage characteristics of the axons and electroplaques differ profoundly. As for squid axons, the equivalent circuit of the electroplaques has four branches: a capacity and three ionic channels. One of the latter is an invariant leak channel ( GL ) of high conductance. A K channel ( G K) is fully open at rest, but rapidly undergoes inactivation when the cell is depolarized by more than 40 mv. GL and G K have a common inside negative emf ( E K). A Na channel ( G Na) with an inside positive emf ( E Na) is closed at rest, but opens transiently upon depolarization.
机译:鳗鱼斑块提供了实验条件,在该条件下,相平面轨迹的配准(dV / dt与V)和AC惠斯通电桥的阻抗测量与尖峰电铸相结合,定量地描述了电铸的离子过程。因此,这些数据在进行瞬变测量时就可以使用,可以对霍奇金-赫克斯利等效电路基础的假设的有效性进行独立测试:具有固定离子电池的独立离子通道,并且随时间变化的电导变化具有不同的动力学。不同的渠道。该分析与关于电压钳制电斑块的早期发现相符,尽管轴突和电斑块的电流-电压特性差异很大,但该协议证实了等效电路的有效性。对于鱿鱼轴突,电斑的等效电路具有四个分支:一个容量和三个离子通道。后者之一是高电导率的不变泄漏通道(GL)。钾离子通道(G K)在休息时完全开放,但是当细胞去极化超过40毫伏时会迅速失活。 GL和G K具有共同的内部负电动势(E K)。带有正电动势(E Na)的Na通道(G Na)在静止时关闭,但在去极化时会暂时打开。

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