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The influence of contraction amplitude and firing history on spike-triggered averaged trapezius motor unit potentials

机译:收缩幅度和发射历史对尖峰触发的平均斜方肌运动单位电势的影响

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摘要

The spike-triggered averaged (STA) technique was used to examine trapezius motor unit potentials and their dependence on contraction amplitude and firing history. Individual motor unit firings were identified by a fine-wire intramuscular electrode, while STA-derived potentials were extracted from the simultaneously recorded surface electromyographic (SEMG) signal. Amplitude-controlled contractions and contractions with typing tasks and mental stress were carried out. STA potentials were mostly derived from 20 s intervals of firing. Motor unit synchrony was estimated by peristimulus time histograms (PSTHs). An association between SEMG amplitude and STA-derived motor unit potentials was found: motor unit area showed a four-fold increase when SEMG amplitude increased from 1.5 to 10.5% of the root mean square-detected SEMG signal at maximal voluntary contraction (%EMGmax). Low- and higher threshold motor unit potentials, all with recruitment thresholds <10% EMGmax, had similar area at the same contraction amplitude. A significant increase in the STA-derived potentials was observed after 3 min of constant-amplitude contractions; however, this difference was reduced after 10 min and no longer present after 30 min of contraction. Motor unit synchrony accounted for, on average, 2.8% additional firings within 2 ms of the triggering motor unit. We conclude that the increase in STA-derived potentials with contraction amplitude is, to a major extent, due to motor unit synchrony, limiting the applicability of this method in postural muscles presenting wide motor unit potentials. The similar area of motor units at same SEMG amplitude may indicate that trapezius motor units recruited below 10% EMGmax are of similar size and thus not organized according to the Henneman size principle.
机译:峰值触发平均技术(STA)用于检查斜方肌运动单位电势及其对收缩幅度和发射历史的依赖性。通过细线肌内电极识别单个运动单元的点火,同时从同时记录的表面肌电图(SEMG)信号中提取STA衍生的电位。进行了振幅控制的收缩以及带有打字任务和精神压力的收缩。 STA电位主要来自20 s的发射间隔。通过刺激时间直方图(PSTH)评估运动单位的同步性。发现SEMG振幅与STA衍生的运动单位电位之间的关联:当最大自主收缩(%EMGmax)时,当SEMG振幅从检测到的均方根SEMG信号的1.5%增至10.5%时,运动单位面积显示增加了四倍。 。募集阈值<10%EMGmax的低和高阈值运动单位电位在相同的收缩幅度下具有相似的面积。在恒定振幅收缩3分钟后,观察到STA衍生的电位显着增加。但是,这种差异在10分钟后减小,而在收缩30分钟后不再存在。电机单元同步平均导致触发电机单元在2毫秒内额外触发2.8%。我们得出的结论是,STA引起的电位随收缩幅度的增加在很大程度上是由于运动单位同步引起的,从而限制了该方法在表现出较大运动单位电位的姿势肌肉中的适用性。在相同的SEMG振幅下,相似的电机单元面积可能表明,低于10%EMGmax的斜方肌电机单元具有相似的大小,因此未按照Henneman大小原则进行组织。

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