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低力量下短时间静态和长时间动态收缩中运动单位电位速度的分布:受试者内偏度和标准差变量的应用

Distribution of motor unit potential velocities in short static and prolonged dynamic contractions at low forces: use of the within-subject's skewness and standard deviation variables.

作者信息

Klaver-Król E G, Henriquez N R, Oosterloo S J, Klaver P, Bos J M, Zwarts M J

机构信息

Department of Neurology and Clinical Neurophysiology, Hospital Group Twente, Geerdinksweg 141, Hengelo, The Netherlands.

出版信息

Eur J Appl Physiol. 2007 Nov;101(5):647-58. doi: 10.1007/s00421-007-0494-8. Epub 2007 Sep 15.

Abstract

Behaviour of motor unit potential (MUP) velocities in relation to (low) force and duration was investigated in biceps brachii muscle using a surface electrode array. Short static tests of 3.8 s (41 subjects) and prolonged dynamic tests (prolonged tests) of 4 min (30 subjects) were performed as position tasks, applying forces up to 20% of maximal voluntary contraction (MVC). Four variables, derived from the inter-peak latency technique, were used to describe changes in the surface electromyography signal: the mean muscle fibre conduction velocity (CV), the proportion between slow and fast MUPs expressed as the within-subject skewness of MUP velocities, the within-subject standard deviation of MUP velocities [SD-peak velocity (PV)], and the amount of MUPs per second (peak frequency=PF). In short static tests and the initial phase of prolonged tests, larger forces induced an increase of the CV and PF, accompanied with the shift of MUP velocities towards higher values, whereas the SD-PV did not change. During the first 1.5-2 min of the prolonged lower force levels tests (unloaded, and loaded 5 and 10% MVC) the CV and SD-PV slightly decreased and the MUP velocities shifted towards lower values; then the three variables stabilized. The PF values did not change in these tests. However, during the prolonged higher force (20% MVC) test, the CV decreased and MUP velocities shifted towards lower values without stabilization, while the SD-PV broadened and the PF decreased progressively. It is argued that these combined results reflect changes in both neural regulatory strategies and muscle membrane state.

摘要

使用表面电极阵列研究了肱二头肌中运动单位电位(MUP)速度与(低)力和持续时间的关系。进行了3.8秒的短时间静态测试(41名受试者)和4分钟的长时间动态测试(长时间测试)(30名受试者)作为定位任务,施加的力高达最大自主收缩(MVC)的20%。从峰间潜伏期技术得出的四个变量用于描述表面肌电图信号的变化:平均肌纤维传导速度(CV)、慢MUP与快MUP之间的比例(表示为MUP速度的受试者内偏度)、MUP速度的受试者内标准差[标准差-峰值速度(PV)]以及每秒的MUP数量(峰值频率=PF)。在短时间静态测试和长时间测试的初始阶段,较大的力会导致CV和PF增加,同时MUP速度向更高值偏移,而标准差-PV不变。在长时间低力水平测试(无负荷,以及5%和10%MVC负荷)的前1.5 - 2分钟内,CV和标准差-PV略有下降,MUP速度向更低值偏移;然后这三个变量稳定下来。在这些测试中PF值没有变化。然而,在长时间高力(20%MVC)测试中,CV下降,MUP速度向更低值偏移且没有稳定下来,而标准差-PV变宽,PF逐渐下降。有人认为这些综合结果反映了神经调节策略和肌膜状态的变化。

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