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细胞电生理学对理解心电图的贡献。

Contributions of cellular electrophysiology to the understanding of the electrocardiogram.

作者信息

Surawicz B

机构信息

Krannert Institute of Cardiology, Indianapolis, Indiana 46202.

出版信息

Experientia. 1987 Oct 15;43(10):1061-8. doi: 10.1007/BF01956040.

Abstract

The understanding of cardiac action potential and membrane currents has broadened the theoretical foundation and enhanced the clinical usefulness of the electrocardiogram. An improved understanding of the morphology of the electrocardiographic waveform has resulted from: correlations between Vmax of depolarization and QRS complex, plateau of the ventricular action potential and S-T segment, terminal repolarization and T-wave, from definitions of action potential differences responsible for the T-wave, and recordings of action potential alternans. Cellular electrophysiology has contributed to the understanding of certain mechanisms of cardiac standstill. Many disturbances of conduction and refractoriness associated with ventricular arrhythmias can be attributed to the following derangements at the cellular level: slowing of terminal repolarization, development of diastolic depolarization in fibers with stable resting membrane potential, after-depolarizations, currents of injury resulting from non-uniform polarization, increased dispersion of action potential durations, and co-existence of slow conduction and short premature action potentials.

摘要

对心脏动作电位和膜电流的理解拓宽了心电图的理论基础并提高了其临床应用价值。对心电图波形形态的更好理解源于:去极化最大速率(Vmax)与QRS波群之间的相关性、心室动作电位的平台期与ST段之间的相关性、终末复极化与T波之间的相关性、对导致T波的动作电位差异的定义以及动作电位交替的记录。细胞电生理学有助于理解心脏停搏的某些机制。与室性心律失常相关的许多传导和不应期紊乱可归因于细胞水平的以下紊乱:终末复极化减慢、静息膜电位稳定的纤维中舒张期去极化的发展、后去极化、极化不均匀导致的损伤电流、动作电位持续时间的离散增加以及缓慢传导和短的早搏动作电位并存。

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