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人体运动系统的阶跃反应作为儿童姿势稳定性的衡量指标。

Step Response of Human Motor System as a Measure of Postural Stability in Children.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2020 Apr;28(4):895-903. doi: 10.1109/TNSRE.2020.2974784. Epub 2020 Feb 19.

Abstract

Postural sway is a product of the neuromuscular system that is commonly used in contemporary labs and clinics for the assessment of postural stability. In this study, we analyzed the transient responses of the neuromuscular system during the rise-on-toes (ROT) movement in eighteen 11 yrs old girls. Their center of pressure (COP) trajectories were recorded with standard force-platform during the transition from quiet stance to standing on toes. To assess the robustness of children's postural stability, we compared the ROT trajectories while the movement was performed with and without vision. Our results confirmed that the dynamic characteristics of the COP step response were significantly modified by visual feedback. In particular, the ROT test performed with eyes closed (EC) was characterized by a four-fold increase of COP chaotic oscillations at the target (tiptoe) position. This resulted in a substantial increase in the movement's index of difficulty (ID) thus to achieve adequate accuracy of the target-oriented movement the COP velocity was decreased accordingly. This inherent strategy of the brain controller allowed for precise positioning of the COP within the reduced size of the target. In conclusion, the dynamics of the ROT movement is always precisely adjusted to the stability of the upright posture, and thus, the dynamic characteristics of the COP step response are also sensitive measures of postural stability and the ROT can be recommended as a useful test for this assessment in the general population.

摘要

姿势摆动是神经系统肌肉系统的产物,常用于当代实验室和诊所来评估姿势稳定性。在这项研究中,我们分析了 18 名 11 岁女孩在脚趾离地(ROT)运动中的神经系统肌肉系统的瞬态反应。在从安静站立过渡到脚趾站立的过程中,他们的压力中心(COP)轨迹是通过标准测力板记录的。为了评估儿童姿势稳定性的稳健性,我们比较了在有和没有视觉反馈的情况下进行 ROT 轨迹的情况。我们的结果证实,COP 阶跃响应的动态特征受到视觉反馈的显著影响。特别是,闭眼(EC)进行的 ROT 测试在目标(脚趾)位置处的 COP 混沌振荡增加了四倍。这导致运动难度指数(ID)显著增加,因此为了实现目标导向运动的足够准确性,相应地降低了 COP 速度。大脑控制器的这种固有策略允许 COP 在目标减小的范围内进行精确定位。总之,ROT 运动的动力学总是精确地调整到直立姿势的稳定性,因此,COP 阶跃响应的动态特征也是姿势稳定性的敏感测量指标,ROT 可以作为一般人群进行这种评估的有用测试。

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