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Multidimensional Recurrence Quantification Analysis of Multi-muscle Synergy in Elderly during Standing on Slopes

机译:老年人站立时多肌肉协同作用的多维递归量化分析

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Identifying balance deficits associated with aging is critical to preventing falls in elderly people. The purpose of this study was to investigate the effects of aging on the multi-muscle synergy in lower extremities during standing on sloped surfaces. Eighteen healthy elderly subjects and 18 healthy young subjects were recruited in the experiment. Subjects were required to stand quietly on slopes at 5 different angles for 30 s with and without visual feedback. Surface electromyography signals of muscles in the lower limbs were collected simultaneously during standing. The muscle synergy of synergistic muscles and of antagonistic muscles were quantified by the parameters of multidimensional recurrence quantification analysis (MdRQA). The results showed that the dynamical synergies in synergistic and antagonistic muscle groups were significantly enhanced in elderly group, especially during standing on sloped surfaces (p < 0.05). The MdRQA parameters were significantly increased when standing without visual feedback than with visual feedback (p < 0.05). The aging and the absence of visual feedback led to more deterministic structures in the dynamical coupling of muscle activations, indicating strengthened synergistic contractions of muscles. These changes in elderly may increase the restriction on balance control and reduce the adaptability of motor system to potential external perturbations. This study shed light on the effects of aging on standing balance control and may facilitate to develop novel strategies for evaluation of aging and predication of falls.
机译:识别与衰老相关的平衡赤字对于防止老年人跌倒至关重要。这项研究的目的是研究在倾斜的表面上站立时下肢衰老对多肌协同作用的影响。实验招募了18名健康的老年受试者和18名健康的青年受试者。要求受试者在有无视觉反馈的情况下,以5个不同的角度在斜坡上静静站立30 s。站立期间同时收集下肢肌肉的表面肌电图信号。通过多维递归定量分析(MdRQA)的参数来定量协同肌肉和拮抗肌肉的肌肉协同作用。结果表明,老年人组中协同和拮抗肌肉组的动力协同作用显着增强,尤其是在倾斜表面站立时(p <0.05)。站立时没有视觉反馈时的MdRQA参数比有视觉反馈时显着增加(p <0.05)。衰老和缺乏视觉反馈导致肌肉激活的动态耦合中具有更多确定性的结构,表明肌肉的协同收缩增强。老年人的这些变化可能会增加对平衡控制的限制,并降低运动系统对潜在外部干扰的适应性。这项研究揭示了衰老对站立平衡控制的影响,并可能有助于开发评估衰老和跌倒预测的新策略。

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