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基于等效系统的经股假肢腿逆动力学分析:验证与应用

Equivalent system based inverse dynamics analysis of transfemoral prosthetic legs: Validation and application.

作者信息

Sudeesh S, Shunmugam M S, Sujatha S

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai, Tamil Nadu, India.

出版信息

Proc Inst Mech Eng H. 2023 Apr;237(4):467-480. doi: 10.1177/09544119231157144. Epub 2023 Feb 28.

Abstract

Inverse dynamics analysis of prosthetic legs with polycentric knees is complex due to increased number of links. The present work proposes a simple and general method called equivalent system (ES) analysis. The ES analysis provides forces and moment at hip joint as well as at the functional knee centre (FKC), the instant centre of the polycentric knee. The input to the ES analysis is the motion data. For validation of the proposed method, synthetic motion data for the swing phase of walking with prosthetic legs having different knees are generated by simulations using ADAMS. The hip kinetics evaluated by the proposed method is compared with that from ADAMS. The root mean square errors of the ES analysis are lower than 17 (10) N for hip reaction forces and 2.6 (10) Nm for the hip moments, thereby validating the proposed method. In order to demonstrate the application of the proposed methodology, the motion data of two transfemoral amputees using single-axis and four-bar knee prostheses are obtained during gait trials. The hip kinetics as well as kinetics at FKC are computed using ES analysis. Hip power during the swing phase is also evaluated and compared. The results are presented in this paper and discussed. The ES analysis is shown to be a versatile tool to provide insights into the human-mechanism interaction.

摘要

由于连杆数量增加,具有多中心膝关节的假肢腿的逆动力学分析较为复杂。目前的工作提出了一种简单通用的方法,称为等效系统(ES)分析。ES分析可提供髋关节以及多中心膝关节的功能膝关节中心(FKC)处的力和力矩。ES分析的输入是运动数据。为了验证所提出的方法,使用ADAMS通过模拟生成了具有不同膝关节的假肢腿行走摆动阶段的合成运动数据。将所提出方法评估的髋关节动力学与ADAMS的结果进行比较。ES分析的均方根误差对于髋关节反作用力低于17(10)N,对于髋关节力矩低于2.6(10)Nm,从而验证了所提出的方法。为了证明所提出方法的应用,在步态试验期间获取了两名使用单轴和四连杆膝关节假肢的经股骨截肢者的运动数据。使用ES分析计算髋关节动力学以及FKC处的动力学。还评估并比较了摆动阶段的髋关节功率。本文展示并讨论了结果。ES分析被证明是一种通用工具,可深入了解人机交互。

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