首页> 外文期刊>European journal of applied physiology >Development of muscle fatigue as assessed by electromyography and mechanomyography during continuous and intermittent low-force contractions: effects of the feedback mode.
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Development of muscle fatigue as assessed by electromyography and mechanomyography during continuous and intermittent low-force contractions: effects of the feedback mode.

机译:通过肌电图和机械描记法评估的连续和间歇性低压力收缩过程中肌肉疲劳的发展:反馈模式的影响。

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The goal of the present study was to investigate the significance of low-force continuous or intermittent static contraction and feedback mode (visual or proprioceptive) on the development of muscle fatigue as assessed by electromyography (EMG) and mechanomyography (MMG). Visual (force control) and proprioceptive (displacement control) feedback was investigated during intermittent (6 s contraction, 4 s rest) and continuous static contractions at 10% and 30% of the maximum voluntary contraction (MVC). Mean force, force fluctuation, rating of perceived exertion and root mean square (RMS) and mean power frequency (MPF) of the EMG and MMG signals were analysed. The general pattern for MMG RMS and EMG RMS values and the rating of perceived exertion was an increase with contraction time, while the EMG MPF values decreased ( P<0.05). The increase in RMS values was generally more pronounced for the MMG compared with the EMG, while the decrease in MPF values was more consistent for the EMG compared with the MMGsignal. During the intermittent contractions, the main effect was on MPF for both EMG and MMG. Lower force fluctuation and larger rating of perceived exertion ( P<0.05), greater slopes of EMG and MMG RMS and MPF values versus time were observed with proprioceptive feedback compared with visual feedback. The findings suggest that (1) the EMG and MMG signals give complementary information about localised muscle fatigue at low-level contraction: they responded differently in terms of changes in the time and frequency domain during continuous contraction, while they responded in concert in the frequency domain during intermittent contractions, and (2) the different centrally mediated motor control strategies used during fatiguing contraction may be dependent upon the feedback modality.
机译:本研究的目的是调查低强度连续或间歇性静态收缩和反馈模式(视觉或本体感觉)对肌电图(EMG)和机械描记法(MMG)评估的重要性。在间歇性(6 s收缩,4 s静止)和持续静态收缩(最大自愿收缩(MVC)的10%和30%)期间,研究了视觉(力控制)和本体感受(位移控制)反馈。分析了EMG和MMG信号的平均力,力波动,感知的劳累等级和均方根(RMS)以及平均功率频率(MPF)。 MMG RMS和EMG RMS值的一般模式以及感觉到的劳累程度随收缩时间的增加而增加,而EMG MPF值则下降(P <0.05)。与EMG相比,MMG的RMS值增加通常更为明显,而与MMGsignal相比,EMG的MPF值降低更为一致。在间歇性收缩期间,EMG和MMG对MPF的主要影响。与本体视觉反馈相比,本体感觉反馈观察到较低的力波动和较大的感知劳累等级(P <0.05),EMG和MMG RMS和MPF值随时间的较大斜率。研究结果表明:(1)EMG和MMG信号可提供有关低水平收缩时局部肌肉疲劳的补充信息:在连续收缩过程中,它们在时域和频域变化方面的反应不同,而它们在频率上协调一致。 (2)在疲劳性收缩期间使用的不同的中央介导的运动控制策略可能取决于反馈方式。

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