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Null space in the Hodgkin-Huxley Equations. A critical test.

机译:Hodgkin-Huxley方程中的零空间。关键测试。

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摘要

Voltage perturbation methods based upon topological concepts are used to elicit responses from the Hodgkin-Huxley (HH) nonlinear differential equations. These responses present a critical check upon the validity of the HH model for electrical activity across squid axon membrane. It is shown that when a constant current is applied such that a stable equilibrium and rhythmic firing are present, the following predictions are inherent in the HH system of equations: (a) Small instantaneous voltage perturbations to the axon given at points along its firing spike result in phase resetting curves (when new phase versus old phase is plotted) with an average slope of 1. (b) A larger voltage perturbation (from certain points along the firing spike) results in the permanent cessation of periodic firing, with membrane voltage rapidly approaching the equilibrium value. (c) A still larger perturbation yields phase resetting curves with an average slope equal to 0. These predictions, coupled with Tasaki's experimental demonstration that squid axons in excellent condition do give repetitive firing under constant current, provide a critical test of the validity of the HH model.
机译:基于拓扑概念的电压扰动方法被用来从Hodgkin-Huxley(HH)非线性微分方程中得出响应。这些反应对鱿鱼轴突膜上的电活动的HH模型的有效性提出了严格的检查。结果表明,当施加恒定电流以实现稳定的平衡和有节奏的点火时,HH方程组固有以下预测:(a)在沿其点火尖峰的点处,对轴突产生小的瞬时电压扰动导致相位复位曲线(绘制新相与旧相时)的平均斜率为1。(b)较大的电压扰动(沿点火尖峰的某些点)会导致膜电压永久性地停止周期性点火迅速接近平衡值。 (c)更大的扰动会产生平均斜率等于0的相位重置曲线。这些预测,再加上Tasaki的实验证明,鱿鱼轴突在良好条件下的确能在恒定电流下重复发射,从而提供了一个关键的测试方法,可以验证HH模型。

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