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Effect of increasing difficulty in standing balance tasks with visual feedback on postural sway and EMG: Complexity and performance

机译:通过视觉反馈提高站立平衡任务难度对姿势摇摆和肌电图的影响:复杂性和性能

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Studies about the relationship between complexity and performance in upright standing balance have yielded mixed results and interpretations. The aim of the present study was to assess how the increasing difficulty in standing balance task affects performance and the complexity of postural sway and neuromuscular activation. Thirty-two young healthy participants were asked to stand still on a stability platform with visual feedback in three levels of difficulty. EMG signals from gastrocnemius medialis, tibialis anterior, rectus femoris and biceps femoris were measured with surface electromyography. As task difficulty increased, the amplitude of postural sway also increased. In the antero-posterior axis, Fuzzy Entropy (complexity) of postural sway decreased from the stable condition to the medium instability condition, and increased again at the highest instability condition. Fuzzy Entropy in the medio-lateral axis was higher in the stable condition; however, no differences were observed between the two instability conditions. Lower values of Fuzzy Entropy in postural sway during stable condition correlated with greater percent increases in postural sway in medio-lateral and antero-posterior axis from the standing still condition to the highest instability condition. In addition, mean and coefficient of variation of EMG increased and Fuzzy Entropy of EMG decreased when the difficulty in standing balance tasks increased. These results suggest that the higher postural sway complexity in stable condition, the greater capacity of the postural control system to adapt to the platform instability increases. In addition, changes in the complexity of EMG modulated by task difficulty do not necessarily reflect similar changes on postural sway.
机译:有关在直立状态下保持平衡的复杂性和性能之间关系的研究得出了不同的结果和解释。本研究的目的是评估站立平衡任务中日益增加的难度如何影响性能以及姿势摇摆和神经肌肉激活的复杂性。 32名年轻健康参与者被要求在稳定平台上静止不动,并在三个难度级别上提供视觉反馈。用表面肌电图测量来自腓肠肌,胫前肌,股直肌和股二头肌的肌电信号。随着任务难度的增加,姿势摇摆的幅度也增加了。在前后轴上,姿势摇摆的模糊熵(复杂性)从稳定状态降低到中等不稳定状态,并在最高不稳定状态下再次增加。在稳定条件下,中外侧轴的模糊熵较高;但是,在两个不稳定条件之间没有观察到差异。稳定状态下姿势摇摆的模糊熵值较低,与从静止状态到最高不稳定状态的中外侧和前后轴姿势摇摆的百分比增加相关。此外,当站立平衡任务的难度增加时,肌电图的均值和变异系数增加,肌电图的模糊熵降低。这些结果表明,稳定状态下的姿势摇摆复杂度越高,姿势控制系统适应平台不稳定性的能力越大。另外,由任务难度调节的肌电图复杂性的变化并不一定反映姿势摇摆的类似变化。

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