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美洲大蠊巨轴突的非线性电缆特性

Nonlinear cable properties of the giant axon of the cockroach Periplaneta americana.

作者信息

Segev I, Parnas I

出版信息

J Gen Physiol. 1985 May;85(5):729-41. doi: 10.1085/jgp.85.5.729.

Abstract

The steady state nonlinear properties of the giant axon membrane of the cockroach Periplaneta americana were studied by means of intracellular electrodes. The resistivity of this membrane markedly decreases in response to small subthreshold depolarizations. The specific slope resistance is reduced by twofold at 5 mV depolarization and by a factor of 14 at 20 mV depolarization. As a result, the spatial decay, V(X), of depolarizing potentials is enhanced when compared with the passive (exponential) decay. This enhancement is maximal at a distance of 1-1.5 mm from a point of subthreshold (0-20 mV) depolarizing perturbation. At that distance, the difference between the actual potential and the potential expected in the passive axon is approximately 30%. The effects of membrane rectification on V(X) were analyzed quantitatively with a novel derivation based on Cole's theorem, which enables one to calculate V(X) directly from the input current-voltage (I0-V) relation of a long axon. It is shown that when the experimental I0-V curve is replotted as (I0Rin)-1 against V (where Rin is the input resistance at the resting potential), the integral between any two potentials (V1 greater than V2) on this curve is the distance, in units of the resting space constant, over which V1 attenuates to V2. Excellent agreement was found between the experimental V(X) and the predicted value based solely on the input I0-V relation. The results demonstrate that the rectifying properties of the giant axon membrane must be taken into account when the electrotonic spread of even small subthreshold potentials is studied, and that, in the steady state, this behavior can be extracted from measurements at a single point. The effect of rectification on synaptic efficacy is also discussed.

摘要

利用细胞内电极研究了美洲大蠊巨轴突膜的稳态非线性特性。该膜的电阻率在受到小的阈下去极化时会显著降低。在5 mV去极化时,比斜率电阻降低两倍,在20 mV去极化时降低14倍。因此,与被动(指数)衰减相比,去极化电位的空间衰减V(X)增强。这种增强在距阈下(0 - 20 mV)去极化扰动点1 - 1.5 mm处最大。在该距离处,实际电位与被动轴突中预期电位之间的差异约为30%。基于科尔定理的一种新推导对膜整流对V(X)的影响进行了定量分析,该推导能够直接从长轴突的输入电流 - 电压(I0 - V)关系计算V(X)。结果表明,当将实验I0 - V曲线重绘为(I0Rin)-1对V(其中Rin是静息电位下的输入电阻)时,该曲线上任意两个电位(V1大于V2)之间的积分是以静息空间常数为单位的距离,在此距离上V1衰减到V2。实验得到的V(X)与仅基于输入I0 - V关系预测的值之间发现了极好的一致性。结果表明,在研究即使是小的阈下电位的电紧张性扩布时,必须考虑巨轴突膜的整流特性,并且在稳态下,这种行为可以从单点测量中提取出来。还讨论了整流对突触效能的影响。

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The voltage dependence of the cardiac membrane conductance.心肌膜电导的电压依赖性。
Biophys J. 1962 Sep;2(5):381-93. doi: 10.1016/s0006-3495(62)86862-3.
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Effects of rectification on synaptic efficacy.矫正对突触效能的影响。
Biophys J. 1982 Apr;38(1):39-46. doi: 10.1016/S0006-3495(82)84528-1.
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Organization of the giant axons of the cockroach Periplaneta americana.
J Exp Biol. 1969 Jun;50(3):615-27. doi: 10.1242/jeb.50.3.615.
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Modulation of spike frequency by regions of special axonal geometry and by synaptic inputs.
J Neurophysiol. 1976 Jul;39(4):882-99. doi: 10.1152/jn.1976.39.4.882.

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