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首页> 外文期刊>Journal of Neurophysiology >Ankle muscle stiffness in the control of balance during quiet standing.
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Ankle muscle stiffness in the control of balance during quiet standing.

机译:安静站立时,脚踝肌肉僵硬可控制平衡。

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摘要

This research presents new data and reanalyzed information to refute the criticisms of our model of stiffness control during quiet standing. A re-review of their references to biomechanical research on muscle ankle stiffness confirmed muscle stiffness estimates of the ankle series elastic elements that agreed closely with our estimates. A new technique is presented that directly estimates the muscle stiffness from the ankle moment (N. m) and sway angle (deg). The linear regression of 10 subjects standing quietly for 10 s estimated the stiffness (N x m/deg) to be safely above the gravitational spring. The R(2) scores for this linear regression averaged 0.92, confirming how closely the model approached a perfect spring that would have an R(2) = 1. These results confirm our model of a simple muscle stiffness control and refutes the criticisms.
机译:这项研究提供了新的数据和重新分析的信息,以驳斥我们对安静站立时刚度控制模型的批评。对他们对肌肉踝关节僵硬的生物力学研究的引用进行的重新审查证实了踝关节系列弹性元件的肌肉僵硬估计与我们的估计非常吻合。提出了一种新技术,该技术可以直接从脚踝力矩(N. m)和摇摆角度(deg)估计肌肉僵硬度。 10个安静地站立10 s的受试者的线性回归估计刚度(N x m / deg)安全地位于重力弹簧之上。该线性回归的R(2)得分平均为0.92,证实了模型接近具有R(2)= 1的理想弹簧的程度。这些结果证实了我们的简单肌肉僵硬控制模型,并且驳斥了批评。

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