Schram Gernot, Pourrier Marc, Melnyk Peter, Nattel Stanley
Department of Medicine, University of Montreal, Research Center, Montreal Heart Institute, Quebec, Canada.
Circ Res. 2002 May 17;90(9):939-50. doi: 10.1161/01.res.0000018627.89528.6f.
The cardiac electrical system is designed to ensure the appropriate rate and timing of contraction in all regions of the heart, which are essential for effective cardiac function. Well-controlled cardiac electrical activity depends on specialized properties of various components of the system, including the sinoatrial node, atria, atrioventricular node, His-Purkinje system, and ventricles. Cardiac electrical specialization was first recognized in the mid 1800s, but over the past 15 years, an enormous amount has been learned about how specialization is achieved by differential expression of cardiac ion channels. More recently, many aspects of the molecular basis have been revealed. Although the field is potentially vast, an appreciation of key elements is essential for any clinician or researcher wishing to understand modern cardiac electrophysiology. This article reviews the major regionally determined features of cardiac electrical function, discusses underlying ionic bases, and summarizes present knowledge of ion channel subunit distribution in relation to functional specialization.
心脏电系统旨在确保心脏所有区域收缩的适当速率和时机,这对有效的心脏功能至关重要。良好控制的心脏电活动取决于该系统各个组成部分的特殊性质,包括窦房结、心房、房室结、希氏-浦肯野系统和心室。心脏电特化最早在19世纪中叶被认识到,但在过去15年里,人们对通过心脏离子通道的差异表达实现特化的方式有了大量了解。最近,分子基础的许多方面也已被揭示。尽管该领域可能非常广阔,但对于任何希望了解现代心脏电生理学的临床医生或研究人员来说,了解关键要素至关重要。本文回顾了心脏电功能的主要区域决定特征,讨论了潜在的离子基础,并总结了与功能特化相关的离子通道亚基分布的现有知识。