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一种基于肌电频率的疲劳阈测试。

A mechanomyographic frequency-based fatigue threshold test.

机构信息

Department of Nutrition and Health Sciences, Human Performance Laboratory, 110 Ruth Leverton Hall, University of Nebraska-Lincoln, Lincoln, NE 68583-0806, United States.

出版信息

J Neurosci Methods. 2010 Mar 15;187(1):1-7. doi: 10.1016/j.jneumeth.2009.11.019. Epub 2009 Nov 27.

Abstract

UNLABELLED

Theoretically, the mechanomyographic (MMG) mean power frequency fatigue threshold (MMG MPF(FT)) describes the maximal isometric torque that can be maintained for an extended period of time with no change in the global firing rate of the unfused, activated motor units.

PURPOSE

The purposes of this study were twofold: (1) to determine if the mathematical model for estimating the electromyographic (EMG) MPF(FT) from the frequency of the EMG signal was applicable to the frequency domain of the MMG signal to estimate a new fatigue threshold called the MMG MPF(FT); and (2) to compare the mean torque levels derived from the MMG MPF(FT) test for the vastus lateralis (VL), vastus medialis (VM), and rectus femoris (RF) muscles during isometric leg extension muscle actions.

METHODS

Nine adults (4 men and 5 women; mean+/-S.D. age=21.6+/-1.2 years) performed three or four continuous, fatiguing, isometric muscle actions of the leg extensors at 30, 45, 60, and 75% of maximum voluntary isometric contraction (MVIC) to exhaustion. Surface MMG signals were recorded from the VL, VM, and RF muscles during each fatiguing isometric muscle action. The MMG MPF(FT) was defined as the y-intercept of the isometric torque versus slope coefficient (MMG MPF versus time) plot.

RESULTS

There were no significant differences among the MMG MPF(FT) values for the VL, VM, and RF (34.8+/-23.4, 32.1+/-16.1, and 31.6+/-15.2 Nm, respectively) muscles.

CONCLUSION

The MMG MPF(FT) test may provide a non-invasive method to examine the effects of various interventions on the global motor unit firing rate during isometric muscle actions.

摘要

目的

本研究旨在:(1)确定从肌电图(EMG)信号频率估算 EMG MPF(FT)的数学模型是否适用于 MMG 信号的频域,以估计一种新的称为 MMG MPF(FT)的疲劳阈值;(2)比较在等长腿伸肌动作中,从 MMG MPF(FT)测试中得出的外侧股(VL)、股直肌(VM)和股内侧肌(RF)的平均扭矩水平。

方法

9 名成年人(4 名男性和 5 名女性;平均+/-标准差年龄=21.6+/-1.2 岁)在 30%、45%、60%和 75%的最大随意等长收缩(MVIC)至疲劳的情况下,进行了三次或四次连续的、疲劳的、等长的腿部伸肌肌肉动作。在每个疲劳的等长肌肉动作期间,从 VL、VM 和 RF 肌肉记录表面 MMG 信号。MMG MPF(FT) 定义为等长扭矩与斜率系数(MMG MPF 与时间)图的截距。

结果

VL、VM 和 RF(34.8+/-23.4、32.1+/-16.1 和 31.6+/-15.2 Nm)肌肉的 MMG MPF(FT)值之间无显著差异。

结论

MMG MPF(FT)测试可能提供一种非侵入性方法来检查各种干预措施对等长肌肉动作中整体运动单位放电率的影响。

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