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成年猫的单个运动单位在间歇性激活后所产生的力量出现长时间抑制。

Prolonged depression of force developed by single motor units after their intermittent activation in adult cats.

作者信息

Bevan L, Laouris Y, Garland S J, Reinking R M, Stuart D G

机构信息

Department of Physiology, College of Medicine, University of Arizona, Tucson 85724.

出版信息

Brain Res Bull. 1993;30(1-2):127-31. doi: 10.1016/0361-9230(93)90048-g.

Abstract

The fatigue of fast-twitch, glycolytic mammalian motor units [i.e., type FF; nomenclature of (3)] is dependent, in part, on the stimulation regimen (total number of stimuli, frequency, duty cycle, temporal patterning of stimuli, etc.) used to induce fatigue. To study the effect of the temporal pattern of the stimulus train on the rate and extend of fatigue in single FF units, one theoretically acceptable approach would be to use each motor unit as its own control: i.e., a sequential testing with two fatigue tests that differ only in the temporal organization of their stimuli. The purpose of this communication is to provide evidence that such an approach is not feasible when studying FF units, due to the delayed recovery of force following their repetitive activation. It was shown that 1/s activation of single FF units for only 15 or 45 s with intermittent 40-Hz, 300-ms duration trains significantly reduced their force response to a double-pulse shock for several hours. This finding suggests that in studies designed to test for the effects of different stimulation patterns on the fatigue of single motor units, deeply anaesthetized, reduced animal preparations are not appropriate models for the sequential application of different stimulation regimens to fast-twitch, glycolytic, mammalian motor units.

摘要

快速收缩、糖酵解型哺乳动物运动单位(即FF型;[3]中的命名法)的疲劳部分取决于用于诱导疲劳的刺激方案(刺激总数、频率、占空比、刺激的时间模式等)。为了研究刺激序列的时间模式对单个FF运动单位疲劳速率和程度的影响,一种理论上可行的方法是将每个运动单位作为自身的对照:即进行两次疲劳测试的顺序测试,这两次测试仅在刺激的时间组织上有所不同。本通讯的目的是提供证据表明,在研究FF运动单位时,由于其重复激活后力量恢复延迟,这种方法是不可行的。研究表明,用40赫兹、持续300毫秒的间歇性序列对单个FF运动单位进行仅15秒或45秒的1/s激活,会显著降低其对双脉冲电击的力量反应,且这种影响会持续数小时。这一发现表明,在旨在测试不同刺激模式对单个运动单位疲劳影响的研究中,深度麻醉、简化的动物标本不适用于对快速收缩、糖酵解型哺乳动物运动单位依次应用不同刺激方案的模型。

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