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人类肌肉动作电位的速度恢复周期及其对局部缺血的敏感性。

Velocity recovery cycles of human muscle action potentials and their sensitivity to ischemia.

作者信息

Z'graggen Werner J, Bostock Hugh

机构信息

Department of Neurology, Inselspital, Bern University Hospital and University of Bern, Bern, Switzerland.

出版信息

Muscle Nerve. 2009 May;39(5):616-26. doi: 10.1002/mus.21192.

Abstract

This study was undertaken to test whether recovery cycle measurements can provide useful information about the membrane potential of human muscle fibers. Multifiber responses to direct muscle stimulation through needle electrodes were recorded from the brachioradialis of healthy volunteers, and the latency changes measured as conditioning stimuli were applied at interstimulus intervals of 2-1000 ms. In all subjects, the relative refractory period (RRP), which lasted 3.27 +/- 0.45 ms (mean +/- SD, n = 12), was followed by a phase of supernormality, in which the velocity increased by 9.3 +/- 3.4% at 6.1 +/- 1.3 ms, and recovered over 1 s. A broad hump of additional supernormality was seen at around 100 ms. Extra conditioning stimuli had little effect on the early supernormality but increased the later component. The two phases of supernormality resembled early and late afterpotentials, attributable respectively to the passive decay of membrane charge and potassium accumulation in the t-tubules. Five minutes of ischemia progressively prolonged the RRP and reduced supernormality, confirming that these parameters are sensitive to membrane depolarization. Velocity recovery cycles may provide useful information about altered muscle membrane potential and t-tubule function in muscle disease. Muscle Nerve, 2008.

摘要

本研究旨在测试恢复周期测量是否能提供有关人类肌纤维膜电位的有用信息。通过针电极对健康志愿者肱桡肌进行直接肌肉刺激,记录多纤维反应,并在2 - 1000毫秒的刺激间隔施加条件刺激时测量潜伏期变化。在所有受试者中,相对不应期(RRP)持续3.27±0.45毫秒(平均值±标准差,n = 12),随后是超常期,在此期间,速度在6.1±1.3毫秒时增加了9.3±3.4%,并在1秒内恢复。在大约100毫秒时可见一个额外超常期的宽峰。额外的条件刺激对早期超常期影响不大,但增加了后期成分。超常期的两个阶段类似于早期和晚期后电位,分别归因于膜电荷的被动衰减和横管中钾的积累。五分钟的缺血逐渐延长了RRP并降低了超常期,证实这些参数对膜去极化敏感。速度恢复周期可能为肌肉疾病中肌膜电位改变和横管功能提供有用信息。《肌肉与神经》,2008年。

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