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首页> 外文期刊>Journal of Mechanics in Medicine and Biology >A QUASI-LINEAR VISCOELASTIC MODEL FOR THE PASSIVE PROPERTIES OF THE HUMAN HIP JOINT
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A QUASI-LINEAR VISCOELASTIC MODEL FOR THE PASSIVE PROPERTIES OF THE HUMAN HIP JOINT

机译:人体髋关节被动特性的拟线性粘弹性模型

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摘要

Properties of passive elastic structures constituting the human hip joint can be exploited to increase efficiency of human locomotion. As studies estimating the passive contributions to the net joint moment often disregard damping properties of the joint such contributions overestimate the energy gained during leg retraction within swing and stance phase. We built an experimental apparatus to measure moment-angle-relations during motor guided cyclic movements over a wide range of angular velocities and step-like changes in hip angle. On the basis of the experimentally gained data set the objective of this study was to model the elastic as well as the damping characteristics of the joint in the sagittal plane utilizing the Quasi-Linear Viscoelastic theory (QLV). A double exponential function was conveniently employed to describe the elastic response. The dependency of the hip joint stiffness on biarticular muscles was incorporated by repeating the measurement protocol for different knee angles. Dueto the fact that the stiffness characteristics of the elastic response were merely shifted over knee angles we introduced an equilibrium angle at the hip joint as exponential function of the knee angle eventually yielding an elastic response as a function of hip and knee angle. In order to cover the damping characteristics the reduced relaxation function comprising a continuous spectrum of relaxation was utilized. We exemplify the applicability of the QLV model on published kinematic data on human walking and estimated that approximately 27% of the energy passively stored at the hip dissipates during the gait cycle.
机译:可以利用构成人体髋关节的被动弹性结构的特性来提高人体运动的效率。由于研究估计对净关节力矩的被动贡献常常忽略了关节的阻尼特性,因此这些贡献高估了在挥杆和站立阶段的腿缩回过程中获得的能量。我们建立了一个实验仪器,可以测量在大范围的角速度和髋部角度的阶梯式变化中,在电机引导的周期性运动中的力矩角关系。基于实验获得的数据集,本研究的目的是利用准线性粘弹性理论(QLV)对矢状面中关节的弹性和阻尼特性进行建模。使用双指数函数可以方便地描述弹性响应。髋关节僵硬性对双关节肌肉的依赖性通过重复针对不同膝盖角度的测量方案而被纳入。由于弹性响应的刚度特性仅在膝盖角度上发生偏移,因此我们在髋关节处引入了一个平衡角度,作为膝盖角度的指数函数,最终产生了与臀部和膝盖角度有关的弹性响应。为了覆盖阻尼特性,利用了包括连续弛豫谱的减小的弛豫函数。我们举例说明了QLV模型在已发布的关于人体行走的运动学数据上的适用性,并估计在步态周期中,被动存储在臀部的能量中约有27%会消散。

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