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Adaptation of lower limb movement patterns when maintaining performance in the presence of muscle fatigue

机译:在有肌肉疲劳的情况下保持表现时下肢运动模式的适应

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Adaptations in lower limb movement patterns were examined when performance was maintained during a fatiguing repetitive loading task. Forty recreationally active male and female participants performed single-leg hopping to volitional exhaustion at 2.2 Hz to a submaximal height. Spatio-temporal characteristics, mechanical characteristics and variability of the knee-ankle and hip-knee joint couplings were determined at 20% increments during the duration of the hopping task. Variability of the knee-ankle and hip-knee couplings in the flexion/extension axis significantly increased during the loading and propulsion phases during the hopping task (p < 0.05). Performance (vertical stiffness, hopping frequency and height) did not change significantly during the task (p > 0.05), however foot contact time increased progressively during this task (p < 0.05) and maximum hop height significantly decreased after the task (p < 0.05). The observed increase in variability between adjoining lower limb segments demonstrated the ability of the neuromotor system to adapt and maintain performance even with the onset of fatigue. This finding highlights that during the performance of a rapid and repetitive loading activity, performance can be preserved when there is variability in the neuromotor system. (C) 2016 Elsevier B.V. All rights reserved.
机译:在疲劳的重复性加载任务中保持性能时,检查下肢运动模式的适应性。 40名娱乐活动活跃的男性和女性参与者以2.2 Hz的单腿跳动达到了极度疲劳,直至达到最大高度。在跳跃任务过程中,以20%的增量确定了时空特性,机械特性以及膝踝关节和髋膝关节的可变性。在跳跃阶段的加载和推进阶段,屈曲/伸展轴的膝-踝和髋-膝关节的变异性显着增加(p <0.05)。任务期间的性能(垂直刚度,跳跃频率和高度)没有显着变化(p> 0.05),但是在此任务期间脚部接触时间逐渐增加(p <0.05),任务后最大跳跃高度明显降低(p <0.05) )。观察到的相邻下肢节段之间的变异性增加表明,即使在疲劳发作时,神经运动系统也具有适应和维持运动能力。这一发现突出表明,在进行快速而重复的负荷活动期间,当神经运动系统存在变化时,可以保持性能。 (C)2016 Elsevier B.V.保留所有权利。

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