首页> 外文期刊>Clinical biomechanics >Modifying center of mass trajectory during sit-to-stand tasks redistributes the mechanical demand across the lower extremity joints.
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Modifying center of mass trajectory during sit-to-stand tasks redistributes the mechanical demand across the lower extremity joints.

机译:从坐到站任务期间修改质心轨迹中心,将机械需求重新分配到下肢关节。

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摘要

OBJECTIVE: Sit-to-stand tasks are commonly facilitated by modifying the initial position of the center of mass relative to the feet. It was hypothesized that modifications in the center of mass trajectory during sit-to-stand tasks altered the total body momentum at seat departure and redistributed the lower extremity net joint moments. DESIGN: Between-task within-subject comparison was employed using a robust statistical method to accommodate for small sample size. METHODS: Six individuals performed four sit-to-stand tasks with systematic modifications in the initial center of mass position by varying the orientation of the lower extremity segments. The momentum of the center of mass and lower extremity net joint moments were quantified and compared. RESULTS: Reducing the horizontal center of mass displacement significantly reduced horizontal total body momentum required at seat departure. Sit-to-stand tasks initiated with more horizontal shank and thigh positions required significantly greater knee and hip extensor net joint moments than those with more vertical shank and thigh positions. Sit-to-stand tasks initiated with vertical shank positions also required significantly greater hip extensor net joint moments as compared to those with more horizontal shank orientations. INTERPRETATION: When changes in initial center of mass position are made, alteration in center of mass horizontal momentum and the orientation of the lower extremity segments relative to the reaction force are observed. Consequently, mechanical demand imposed on the ankle, knee, and hip joint is redistributed. The magnitude of the net joint moments is dependent on the segment orientation, the reaction force, and the adjacent net joint moment.
机译:目的:通常通过修改质心相对于脚的初始位置来促进站立训练。据推测,从坐到站任务期间重心轨迹的改变会改变座位离开时的整体动量,并重新分配下肢的净关节力矩。设计:采用健壮的统计方法,采用任务间受试者内部比较,以适应较小的样本量。方法:六名患者通过改变下肢节段的方向在初始质心位置进行了系统修改,完成了四项从坐到站的任务。量化和比较重心和下肢净关节力矩的动量。结果:减少质心位移的水平中心显着降低了座椅离开时所需的水平整体动量。从更多的水平小腿和大腿位置开始的坐立训练任务,比那些更多的垂直小腿和大腿位置的膝盖和臀部伸肌净关节力矩明显更大。与具有更多水平胫骨姿势的坐姿相比,以垂直胫骨姿势开始的坐姿站立姿势还需要更大的髋伸肌净关节力矩。解释:当改变质心的初始位置时,观察到质心水平动量和下肢节段相对于反作用力的方向发生了变化。因此,重新分配了对踝,膝和髋关节的机械需求。净关节力矩的大小取决于节段的方向,反作用力和相邻的净关节力矩。

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