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Sway‐dependent changes in standing ankle stiffness caused by muscle thixotropy

机译:肌肉触变性引起的站立式踝关节僵硬的摇摆依赖性变化

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摘要

Key points class="unordered" style="list-style-type:disc" id="tjp6984-list-0001">The passive stiffness of the calf muscles contributes to standing balance, although the properties of muscle tissue are highly labile.We investigated the effect of sway history upon intrinsic ankle stiffness and demonstrated reductions in stiffness of up to 43% during conditions of increased baseline sway.This sway dependence was most apparent when using low amplitude stiffness‐measuring perturbations, and the short‐range stiffness component was smaller during periods of high sway.These characteristics are consistent with the thixotropic properties of the calf muscles causing the observed changes in ankle stiffness.Periods of increased sway impair the passive stabilization of standing, demanding more active neural control of balance.
机译:关键点 class =“ unordered” style =“ list-style-type:disc” id =“ tjp6984-list-0001”> <!-list-behavior = unordered prefix-word = mark-type = disc max- label-size = 0-> 小腿肌肉的被动僵硬有助于站立时的平衡,尽管肌肉组织的属性非常不稳定。 我们研究了摇摆历史对固有踝关节的影响刚度,并且在基线摇摆增加的情况下,刚度降低了43%。 当使用低振幅刚度测量扰动时,这种摇摆依赖性最明显,而短程刚度分量在 这些特征与小腿肌肉的触变性相一致,导致观察到的踝部僵硬度发生变化。 摇摆的时间段会损害站立的被动稳定性,需要更积极的平衡神经控制。

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