首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Cycle length dependence of human action potential duration in vivo. Effects of single extrastimuli sudden sustained rate acceleration and deceleration and different steady-state frequencies.
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Cycle length dependence of human action potential duration in vivo. Effects of single extrastimuli sudden sustained rate acceleration and deceleration and different steady-state frequencies.

机译:人体内动作电位持续时间的周期长度依赖性。单个额外刺激突然持续的速率加速和减速以及不同的稳态频率的影响。

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摘要

Using a new method for long-term recording of monophasic action potentials from the human heart, we studied in 17 patients the effects on ventricular action potential duration (APD) of three clinically pertinent cycle length perturbations: (1) single extrastimuli, (2) abrupt sustained rate acceleration and deceleration, and (3) different steady-state cycle lengths. Results were: (a) APD after single extrastimuli at progressively longer cycle lengths were related to the extrastimulus cycle length with a biphasic electrical restitution curve which after an initial steep rise and a subsequent transient descent rose again more gradually to a plateau at cycle lengths above 800-1,000 ms. (b) After a sustained step decrease in cycle length, the first APD shortened abruptly while final steady-state adaptation required up to several minutes. The transition between the rapid and slow phase of APD change was characterized by a variable alternans of APD which correlated inversely with the preceding diastolic interval. (c) In the steady state, APD correlated linearly with cycle length, increasing an average of 23 ms per 100 ms cycle length increase (r = 0.995). The divergence between steady-state and non-steady-state APD, and the slowness of steady-state adaptation, are important factors to be considered in clinical electrophysiologic studies and in rate correction algorithms of APD or QT intervals, respectively.
机译:我们使用一种新方法长期记录人心脏的单相动作电位,在17位患者中研究了三种临床相关的周期长度摄动对心室动作电位持续时间(APD)的影响:(1)单个刺激,(2)突然的持续速率加速和减速,以及(3)不同的稳态周期长度。结果是:(a)在单次刺激后以更长的周期长度进行的APD与刺激的周期周期以双相电恢复曲线相关,该曲线在最初的陡峭上升和随后的短暂下降后再次逐渐上升到平台周期以上的平稳期。 800-1,000毫秒。 (b)周期长度持续减小后,第一个APD突然缩短,而最终的稳态适应则需要长达数分钟的时间。 APD改变的快速和缓慢阶段之间的过渡特征是APD的可变交替变化与前一个舒张间隔成反比。 (c)在稳定状态下,APD与周期长度线性相关,每增加100 ms周期长度平均增加23 ms(r = 0.995)。稳态和非稳态APD之间的差异以及稳态适应的缓慢是分别在临床电生理研究和APD或QT间隔的速率校正算法中要考虑的重要因素。

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