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首页> 外文期刊>Journal of Applied Biomechanics >Lower-Extremity Motor Synergies in Individuals With and Without Chronic Ankle Instability
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Lower-Extremity Motor Synergies in Individuals With and Without Chronic Ankle Instability

机译:具有和无慢性踝关节不稳定的个体的下肢电机协同作用

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摘要

Current theoretical models suggest that ankle sprain copers exhibit movement adaptations contributing to the avoidance of chronic ankle instability. However, few studies have examined adaptations at the level of biomechanical motor synergies. The purpose was to examine characteristics of the support moment synergy between individuals with chronic ankle instability, copers, and healthy individuals. A total of 48 individuals participated in the study. Lower-extremity kinetics and variability in the moment of force patterns were assessed during the stance phase of walking trials. The copers exhibited reductions in the support moment during the load response and preswing phase compared with the chronic ankle instability group. as well as during the terminal stance and preswing phase compared the healthy group. The copers also exhibited reductions in the hip extensor moment and ankle plantarflexion moment compared with healthy and chronic ankle instability groups during intervals of stance phase. Variability of the support moment and knee moment was greater in the copers compared with the chronic ankle instability group. Dampening of the support moment and select joint moments exhibited by the copers may indicate an adaptive mechanism to mitigate loading perturbations on the previously injured ankle. Heightened motor variability in copers may be indicative of a more adaptable motor synergy compared with individuals with chronic ankle instability.
机译:目前的理论模型表明,脚踝扭伤的高速度表现出促进避免慢性踝关节不稳定的运动适应。然而,很少有研究已经检查了生物力学电机协同效应水平的适应性。目的是审查慢性踝关节不稳定,转让者和健康个体的个体之间的支持力矩协同作用的特征。共有48人参加了该研究。在步行试验的立场阶段评估了力量模式的下肢动力学和变异性。与慢性踝易不稳定组相比,Copers在负载响应期间的支撑时刻表现出降低。以及在终端姿势和预先平衡期间比较健康的群体。与健康和慢性踝无稳定性在姿势相的间隔期间,转接器还表现出髋部伸肌矩和踝关节血管屈曲力矩的减少。与慢性踝无稳定性组相比,高速踝关节的支持力矩和膝关节的可变性更大。抑制支持力矩和选择由转接器展示的联合时刻可以表示自适应机制,以减轻先前受伤的踝关节的加载扰动。与具有慢性踝关节不稳定性的个体相比,高速的电动机可变性可以指示更适应的电动机协同作用。

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