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兔迷走神经C纤维动作电位爆发后的缓慢钾电导。

A slow potassium conductance after action potential bursts in rabbit vagal C fibers.

作者信息

Siegel R M, Birks R I

机构信息

Department of Physiology, McGill University, Montreal, Quebec, Canada.

出版信息

Am J Physiol. 1988 Mar;254(3 Pt 2):R443-52. doi: 10.1152/ajpregu.1988.254.3.R443.

Abstract

Sucrose gap recordings were made from vagus nerve in rabbit to examine the mechanisms underlying the generation of the hyperpolarization that follows a burst of evoked action potentials in unmyelinated C fibers. Analysis of the posttetanic hyperpolarization was made by fitting the membrane potential changes with the sum of two exponential components. The posttetanic hyperpolarization consisted of two separable components with time constants of approximately 0.5 and 30 s. The slower exponentially decaying component was dependent on an increase in electrogenic sodium pumping as shown by the effect of ouabain and changes in extracellular chloride. The faster-decaying exponential component was caused by a potassium conductance as shown by the effect of varied extracellular potassium. This potassium conductance appears to be novel as its dynamics vary with the frequency and duration of the burst yet increases in reduced calcium. It is suggested that this slow decaying and modifiable potassium conductance can play a role in modulation of preganglionic and presynaptic action potential conduction.

摘要

通过记录兔迷走神经的蔗糖间隙,研究了无髓鞘C纤维诱发动作电位爆发后超极化产生的机制。通过将膜电位变化与两个指数成分之和进行拟合,对强直后超极化进行分析。强直后超极化由两个可分离的成分组成,时间常数分别约为0.5秒和30秒。如哇巴因的作用和细胞外氯离子的变化所示,较慢的指数衰减成分依赖于生电钠泵的增加。如细胞外钾离子变化的作用所示,较快衰减的指数成分是由钾电导引起的。这种钾电导似乎是新颖的,因为其动力学随爆发的频率和持续时间而变化,但在钙减少时增加。有人认为,这种缓慢衰减且可调节的钾电导可能在节前和突触前动作电位传导的调节中起作用。

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