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控制动作电位持续时间和复极化时间的离子机制。

Ionic mechanisms controlling the action potential duration and the timing of repolarization.

作者信息

Noble D

出版信息

Jpn Heart J. 1986 Nov;27 Suppl 1:3-19.

PMID:2434679
Abstract

The T wave of the electrocardiogram is determined by differential repolarization times in different parts of the ventricle. A better fundamental understanding of this must depend on a more complete account of the membrane processes involved in repolarization. This paper deals with four processes that have been investigated or re-investigated recently. The results are illustrated by using the DiFrancesco-Noble (1985) model and its recent modifications: The potassium-dependence of the inward rectifier current, iK1 has a strong role to play in determining action potential duration and pacemaker activity in Purkinje tissue, but has a negligible role to play in sinoatrial node tissue. The potassium-dependence of other currents plays a minor role. Activation of the sodium-potassium pump current can significantly shorten the action potential and suppress pacemaker activity. The sodium-calcium exchange current can generate a small slow component of the second inward current, called i(si),a. In action potentials, such as that of rat ventricle and rabbit atrium, which show a long slow final phase of repolarization, this exchange current plays the major role in the timing of repolarization. Calcium-dependent inactivation of the calcium current may underly the strong inverse correlation between action potential duration and contraction. Recent experiments on single ventricle cells show that this phenomenon almost certainly underlies the 'staircases' of inward current and action potential duration during long trains of action potentials.

摘要

心电图的T波由心室不同部位的复极化时间差异决定。对此有更深入的基本理解必须依赖于对复极化过程中涉及的膜过程有更完整的描述。本文讨论了最近研究或重新研究的四个过程。使用迪弗朗切斯科-诺布尔(1985年)模型及其最近的修正来阐述结果:内向整流电流iK1对钾的依赖性在决定浦肯野组织的动作电位持续时间和起搏活动方面起着重要作用,但在窦房结组织中作用可忽略不计。其他电流对钾的依赖性作用较小。钠钾泵电流的激活可显著缩短动作电位并抑制起搏活动。钠钙交换电流可产生第二个内向电流的一个小的缓慢成分,称为i(si)a。在动作电位中,如大鼠心室和兔心房的动作电位,其显示出复极化的长而缓慢的终末相,这种交换电流在复极化的时间方面起主要作用。钙电流的钙依赖性失活可能是动作电位持续时间与收缩之间强烈负相关的基础。最近对单个心室细胞的实验表明,这种现象几乎肯定是长串动作电位期间内向电流和动作电位持续时间“阶梯现象”的基础。

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