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Quantifying foot placement variability and dynamic stability of movement to assess control mechanisms during forward and lateral running

机译:量化脚的放置变化性和运动的动态稳定性,以评估向前和横向跑步过程中的控制机制

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Research has indicated that human walking is more unstable in the secondary, rather than primary plane of progression. However, the mechanisms of controlling dynamic stability in different planes of progression during running remain unknown. The aim of this study was to compare variability (standard deviation and coefficient of variation) and dynamic stability (sample entropy and local divergence exponent) in anterior-posterior and medio-lateral directions in forward and lateral running patterns. For this purpose, fifteen healthy, male participants ran in a forward and lateral direction on a treadmill at their preferred running speeds. Coordinate data of passive reflective markers attached to body segments were recorded using a motion capture system. Results indicated that: (1) there is lower dynamic stability in the primary plane of progression during both forward and lateral running suggesting that unlike walking, greater control might be required to regulate dynamic stability in the primary plane of progression during running, (2) as in walking, the control of stability in anterior-posterior and medio-lateral directions of running is dependent on the direction of progression, and (3), quantifying magnitude of variability might not be sufficient to understand control mechanisms in human movement and directly measuring dynamic stability could be an appropriate alternative. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究表明,人的行走在次要而不是主要的发展平面上更加不稳定。但是,在跑步过程中控制不同进程平面中动态稳定性的机制仍然未知。这项研究的目的是比较前后方向和横向方向在前后方向上的变化性(标准偏差和变异系数)和动态稳定性(样本熵和局部发散指数)。为此,十五名健康的男性参与者以他们喜欢的跑步速度在跑步机上向前和向侧面跑。使用运动捕捉系统记录附着在人体节段上的被动反射标记的坐标数据。结果表明:(1)在向前和横向跑步过程中,主跑步平面的动态稳定性较低,这表明与步行不同,在跑步过程中可能需要更大的控制力来调节主跑步平面的动态稳定性,(2)如在步行中一样,在跑步的前后方向和中外侧方向上对稳定性的控制取决于前进的方向,并且(3)量化变化幅度可能不足以了解人体运动的控制机制并直接进行测量动态稳定性可能是合适的选择。 (C)2015 Elsevier Ltd.保留所有权利。

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