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Validating the feedback control of intersegmental coordination by fluctuation analysis of disturbed walking

机译:通过步行不稳定性的波动分析验证节间协调的反馈控制

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A walking motion is established by feedforward control for rhythmic locomotion and feedback control for adapting to environmental variations. To identify the control variables that underlie feedback control, uncontrolled manifold (UCM) analysis has been proposed and adopted for analyzing various movements. UCM analysis searches the controlled variables by comparing the fluctuation size of segmental groups related and unrelated to the movement of candidate variables, based on the assumption that a small fluctuation size indicates a relationship with the feedback control. The present study was based on UCM analysis and evaluated fluctuation size to determine the control mechanism for walking. While walking, the subjects were subjected to floor disturbances at two different frequencies, and the fluctuation sizes of the segmental groups related to characteristic variables were calculated and compared. The characteristic variables evaluated were the motion of the center of mass, limb axis, and head, and the intersegmental coordination of segmental groups with simultaneous coupled movements. Results showed that the fluctuations in intersegmental coordination were almost equally small for any segment, while fluctuations in the other variables were large in certain segments. Moreover, a comparison of the fluctuation sizes among the evaluated variables showed that the fluctuation size for intersegmental coordination was the smallest. These results indicate a possible relationship between intersegmental coordination and the control of walking.
机译:通过有节奏的运动的前馈控制和适应环境变化的反馈控制来建立步行运动。为了识别作为反馈控制基础的控制变量,提出了非受控歧管(UCM)分析并将其用于分析各种运动。 UCM分析基于一个较小的波动幅度表示与反馈控制的关系的假设,通过比较与候选变量的运动相关和不相关的分段组的波动幅度来搜索受控变量。本研究基于UCM分析并评估了波动大小,以确定步行的控制机制。行走时,受试者会以两种不同的频率受到地板干扰,并计算和比较与特征变量相关的节段组的波动大小。评估的特征变量是质心,肢体轴和头部的运动,以及具有同时耦合运动的节段的节间协调。结果表明,段间协调的波动对于任何段几乎都一样小,而其他变量的波动在某些段上较大。此外,对评估变量之间的波动大小进行比较表明,部门间协调的波动大小最小。这些结果表明了节间协调与步行控制之间的可能关系。

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