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首页> 外文期刊>Journal of Neurophysiology >A neuromechanical strategy for mediolateral foot placement in walking humans
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A neuromechanical strategy for mediolateral foot placement in walking humans

机译:步行人类中外侧足放置的神经力学策略

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摘要

During Unperturbed walking, greater swing-phase gluteus medius (GM) activity was associated with more lateral foot placement. Increases in GM activity were most strongly predicted by increased mediolateral displacement between the center of mass (CoM) and the contralateral stance foot. The Perturbed walking results indicated a causal relationship between stance leg mechanics and swing-phase GM activity. Perturbations that reduced the mediolateral CoM displacement from the stance foot caused reductions in swing-phase GM activity and more medial foot placement. Conversely, increases in mediolateral CoM displacement caused increased swing-phase GM activity and more lateral foot placement. Under both Unperturbed and Perturbed conditions, humans controlled their mediolateral foot placement by modulating swing-phase muscle activity in response to the mechanical state of the contralateral leg. This strategy may be disrupted in clinical populations with a reduced ability to modulate muscle activity or sense their body's mechanical state.
机译:在平稳步行过程中,较大的摆动阶段臀肌(GM)活动与更多的侧足放置相关。 GM活动的增加最强烈地通过重心(CoM)和对侧脚的对侧移位增加而预测。扰动的步行结果表明姿态腿力学与摆动相GM活动之间存在因果关系。减少从姿势脚的前外侧CoM位移的扰动导致摆动期GM活动的减少和更多的内侧脚位置。相反,中外侧CoM位移的增加导致摆动期GM活动增加和更多的侧足放置。在不受干扰和受干扰的情况下,人类都通过响应对侧腿部的机械状态来调节摆动相的肌肉活动,从而控制他们的中外侧脚的放置。这种策略可能在临床人群中受到干扰,因为其调节肌肉活动或感知其身体机械状态的能力降低。

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