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Sensitivity of joint moments to changes in walking speed and body-weight-support are interdependent and vary across joints

机译:联合时刻对步行速度和身体重量支持变化的敏感性是相互依存的并且在关节上变化

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摘要

We investigated the effect of simultaneous changes in body-weight-support level and walking speed on mean peak internal joint moments at the ankle, knee and hip. We hypothesized that observed changes in these joint moments would be approximately linear with both body-weight-support and walking speed and would be similar across joints. Kinematic and kinetic data were collected from 8 unimpaired adult subjects walking on an instrumented treadmill while wearing a dynamically controlled overhead support harness. Subjects walked with four levels of body-weight-support (0%, 20%, 40%, and 60% of bodyweight) at three walking speeds (0.4, 0.6, and 0.8 statures/s, ranging on average from 0.7 to 1.4 m/s). Data were used to calculate mean peak joint moments across subjects for each condition. In general, subjects’ mean peak joint moments decreased linearly with decreasing walking speed and with increasing body-weight-support, except the knee extension moment, which showed a quadratic relationship with walking speed and no significant change with body-weight-support. All joint moments, with the exception of knee extension, showed a significant interaction effect between walking speed and body-weight-support, indicating that the sensitivity of these joint moments to changes in these variables was interdependent. In most cases, the ankle and hip extension moments showed the largest sensitivity to walking speed. The ankle moment was observed to have the greatest sensitivity to body-weight-support. This finding, that altering walking speed and body-weight-support level results in non-uniform changes in peak moments across joints, suggests that further research is warranted to establish the set of combined speed and support conditions that produce motor patterns supportive of normal gait retraining.
机译:我们调查了体重支持水平和步行速度的同时变化对踝关节,膝盖和臀部平均平均内部关节力矩的影响。我们假设观察到的这些关节力矩的变化在体重支持和步行速度上都近似线性,并且在各关节之间相似。运动和动力学数据是从8名未受损的成年受试者中采集的,他们穿着仪表板跑步机并戴着动态控制的头顶支撑安全带。受试者以三种步行速度(0.4、0.6和0.8个身高/ s,平均0.7到1.4 m的速度)以四种水平的体重支撑(分别为体重的0%,20%,40%和60%)行走。 / s)。数据用于计算每种情况下受试者的平均峰值关节力矩。一般而言,受试者的平均峰值关节力矩随着步行速度的降低和体重支持的增加而线性下降,但膝盖伸展力矩与步行速度呈二次关系,而体重支持则无明显变化。除膝盖伸展外,所有关节力矩均显示出步行速度与体重支持之间的显着相互作用,表明这些关节力矩对这些变量变化的敏感性是相互依赖的。在大多数情况下,踝关节和髋关节的伸展力矩对步行速度表现出最大的敏感性。观察到脚踝力矩对体重支持的敏感性最大。这一发现表明,改变步行速度和体重支持水平会导致整个关节的峰值力矩发生不均匀变化,这表明有必要进行进一步的研究来建立一套综合的速度和支持条件,以产生支持正常步态的运动模式再培训。

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