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健康人体行走过程中膝关节和髋关节垂直刚度的同步估计

Simultaneous Estimation of the Vertical Stiffness in the Knee and Hip for Healthy Human Subjects during Walking.

作者信息

Zhao Huan, Cao Junyi, Liao Wei-Hsin

机构信息

Key Laboratory of Education Ministry for Modern Design and Rotor Bearing System, Xi'an Jiaotong University, 28 Xianning West Road, Xi'an 710049, China.

Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong 999077, China.

出版信息

Bioengineering (Basel). 2023 Feb 1;10(2):187. doi: 10.3390/bioengineering10020187.

Abstract

The stiffness of lower limb joints is a critical characteristic of walking. To investigate the potential of establishing a simple and universal model to describe the characteristics related to vertical vibration during human walking, vertical stiffness is introduced at the knee and hip. A multi-mass-spring model of the human body is established in the vertical direction. In the Fourier form, results of experiments on 14 healthy adults show that the vertical displacements of joints are a function of the leg length and walking cadence, while the ground reaction force is a function of the body weight and walking cadence. The obtained universal equations of vertical displacement and ground reaction force are employed as the input parameters to the proposed multi-mass-spring model. Thus, the vertical stiffness in the knee and hip can then be estimated simultaneously by the subject's weight, leg length, and walking cadence. The variation of vertical stiffness shows different time-varying trends in different gait phases across the entire gait cycle. Finally, the proposed model for vertical stiffness estimation is validated by the vertical oscillation of the pelvis. The average error across three gait cycles for all subjects is 20.48%, with a standard deviation of 5.44%. These results display that the vertical stiffness of knee and hip across the entire gait cycle can be directly estimated by individual parameters that are easy to measure. It provides a different view of human walking analysis and may be applied in future pathological gait recognition, bipedal robots, and lower limb exoskeletons.

摘要

下肢关节的刚度是行走的一个关键特征。为了研究建立一个简单通用模型来描述人类行走过程中与垂直振动相关特征的潜力,引入了膝关节和髋关节的垂直刚度。在垂直方向上建立了人体的多质量 - 弹簧模型。以傅里叶形式表示,对14名健康成年人的实验结果表明,关节的垂直位移是腿长和步行节奏的函数,而地面反作用力是体重和步行节奏的函数。将获得的垂直位移和地面反作用力的通用方程用作所提出的多质量 - 弹簧模型的输入参数。因此,膝关节和髋关节的垂直刚度随后可以通过受试者的体重、腿长和步行节奏同时估算出来。在整个步态周期中,垂直刚度的变化在不同步态阶段呈现出不同的时变趋势。最后,通过骨盆的垂直振荡对所提出的垂直刚度估计模型进行了验证。所有受试者在三个步态周期中的平均误差为20.48%,标准差为5.44%。这些结果表明,整个步态周期中膝关节和髋关节的垂直刚度可以通过易于测量的个体参数直接估算出来。它为人类行走分析提供了一个不同的视角,并可能应用于未来的病理步态识别、双足机器人和下肢外骨骼。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6599/9952526/f10868356afd/bioengineering-10-00187-g001.jpg

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