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适用于鱿鱼轴突低频阻抗的钾离子传导现象。

K+ conduction phenomena applicable to the low frequency impedance of squid axon.

作者信息

Grisell R D, Fishman H M

出版信息

J Membr Biol. 1979 Apr 12;46(1):1-25. doi: 10.1007/BF01959972.

Abstract

The observation of peaking in power spectra of K current noise in squid axon (Fishman, H.M, Moore, L.E., Poussart, D.J.M. 1975, J. Membrane Biol. 24:305) led to the calculation of low frequency K conduction feature in the impedance (admittance) which was confirmed (Fishman, H.M., Poussart, D.J.M., Moore, L.E. & Siebenga, E., 1977, J. Membrane Biol. 32:255). This paper analyzes two physical phenomena, one within and the other outside of the excitable membrane, that might account for the low frequency impedance (admittance) feature. The accumulation of potassium ions in a space outside the axon in conjunction with diffusion through the Schwann cell layer produces a low-frequency mode that is similar in some respects to that observed experimentally. Alternatively, a hypothetical inactivation process, with a voltage-dependent time constant, associated with conduction in potassium channels gives a better account of the data. Either or both of these phenomena could be involved in producing the low-frequency impedance behavior in the squid axon.

摘要

对鱿鱼轴突中钾电流噪声功率谱峰值的观察(Fishman, H.M, Moore, L.E., Poussart, D.J.M. 1975, 《膜生物学杂志》24:305)促使人们计算了阻抗(导纳)中的低频钾传导特征,这一结果得到了证实(Fishman, H.M., Poussart, D.J.M., Moore, L.E. & Siebenga, E., 1977, 《膜生物学杂志》32:255)。本文分析了两种物理现象,一种发生在可兴奋膜内部,另一种发生在其外部,它们可能解释了低频阻抗(导纳)特征。轴突外部空间中钾离子的积累以及通过雪旺细胞层的扩散产生了一种低频模式,该模式在某些方面与实验观察到的模式相似。另外,一个与钾通道传导相关的、具有电压依赖性时间常数的假设性失活过程能更好地解释这些数据。这两种现象中的一种或两种都可能参与产生鱿鱼轴突中的低频阻抗行为。

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