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Variability in spatio-temporal pattern of trapezius activity and coordination of hand-arm muscles during a sustained repetitive dynamic task

机译:在持续重复动态任务期间,梯形春季活动和手臂肌肉协调的变化

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The spatio-temporal distribution of muscle activity has been suggested to be a determinant of fatigue development. Pursuing this hypothesis, we investigated the pattern of muscular activity in the shoulder and arm during a repetitive dynamic task performed until participants' rating of perceived exertion reached 8 on Borg's CR-10 scale. We collected high-density surface electromyogram (HD-EMG) over the upper trapezius, as well as bipolar EMG from biceps brachii, triceps brachii, deltoideus anterior, serratus anterior, upper and lower trapezius from 21 healthy women. Root-mean-square (RMS) and mean power frequency (MNF) were calculated for all EMG signals. The barycenter of RMS values over the HD-EMG grid was also determined, as well as normalized mutual information (NMI) for each pair of muscles. Cycle-to-cycle variability of these metrics was also assessed. With time, EMG RMS increased for most of the muscles, and MNF decreased. Trapezius activity became higher on the lateral side than on the medial side of the HD-EMG grid and the barycenter moved in a lateral direction. NMI between muscle pairs increased with time while its variability decreased. The variability of the metrics during the initial 10 % of task performance was not associated with the time to task termination. Our results suggest that the considerable variability in force and posture contained in the dynamic task per se masks any possible effects of differences between subjects in initial motor variability on the rate of fatigue development.
机译:已经提出了肌肉活性的时空分布是疲劳发育的决定因素。追求这一假设,在重复动态任务期间,在进行的重复动态任务期间调查了肩部和手臂的肌肉活动的模式,直到参与者的感知劳累达到8,在Borg的CR-10规模上达到8。从21个健康女性中收集来自上梯的高密度表面电象(HD-EMG),以及BICEPS BRACHII,TRISEPS BRACHII,DELIORES,SERRATUS前,上下梯度的BIPOLAR EMG。为所有EMG信号计算根均方(RMS)和平均功率频率(MNF)。还确定了HD-EMG网格上的RMS值的重心,以及每对肌肉的标准化互信息(NMI)。还评估了这些指标的循环变异性。随着时间的推移,EMG RMS适用于大部分肌肉,MNF减少。横向侧的斜角活动比HD-EMG栅格的内侧侧变得更高,并且通过横向移动。肌肉对之间的NMI随着时间的变化而增加。在初始10%任务性能期间度量的可变性与任务终止的时间无关。我们的研究结果表明,动态任务中所含的力量和姿势的相当变异性,掩盖了初始电机变异性对疲劳发育速率的初始电机变异性差异的任何可能的影响。

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