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Muscle fatigue and contraction intensity modulates the complexity of surface electromyography

机译:肌肉疲劳和收缩强度调节表面肌电图的复杂性

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摘要

Nonlinear dynamical techniques offer a powerful approach for the investigation of physiological time series. Multiscale entropy analyses have shown that pathological and aging systems are less complex than healthy systems and this finding has been attributed to degraded physiological control processes. A similar phenomenon may arise during fatiguing muscle contractions where surface electromyography signals undergo temporal and spectral changes that arise from the impaired regulation of muscle force production. Here we examine the affect of fatigue and contraction intensity on the short and long-term complexity of biceps brachii surface electromyography. To investigate, we used an isometric muscle fatigue protocol (parsed into three windows) and three contraction intensities (% of maximal elbow joint moment: 40%, 70% and 100%). We found that fatigue reduced the short-term complexity of biceps brachii activity during the last third of the fatiguing contraction. We also found that the complexity of surface electromyography is dependent on contraction intensity. Our results show that multiscale entropy is sensitive to muscle fatigue and contraction intensity and we argue it is imperative that both factors be considered when evaluating the complexity of surface electromyography signals. Our data contribute to a converging body of evidence showing that multiscale entropy can quantify subtle information content in physiological time series.
机译:非线性动力学技术为研究生理时间序列提供了一种有力的方法。多尺度熵分析表明,病理和衰老系统没有健康系统复杂,这一发现归因于生理控制过程的恶化。在使肌肉收缩疲劳的过程中,可能会出现类似的现象,其中表面肌电图信号会经历由于对肌肉力量产生的调节能力受损而引起的时间和频谱变化。在这里,我们检查了疲劳和收缩强度对肱二头肌肱二头肌表面肌电图短期和长期复杂性的影响。为了进行研究,我们使用了等距的肌肉疲劳方案(分为三个窗口)和三个收缩强度(最大肘关节力矩的百分比:40%,70%和100%)。我们发现疲劳降低了疲劳收缩的最后三分之一,而肱二头肌肱二头肌活动的短期复杂性降低了。我们还发现表面肌电图的复杂性取决于收缩强度。我们的结果表明,多尺度熵对肌肉疲劳和收缩强度敏感,我们认为在评估表面肌电信号的复杂性时必须同时考虑这两个因素。我们的数据有助于收集越来越多的证据,表明多尺度熵可以量化生理时间序列中的细微信息内容。

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