An integrated procedure to assess knee-joint kinematics and kinetics during gait using an optoelectric system and standardized X-rays

J. Li, U.P. Wyss , P.A. Costigan , K.J. Deluzio
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引用次数: 45

Abstract

This paper describes a 3-D gait analysis system, which combines optoelectric motion tracking and a standardized X-ray procedure, to calculate the net knee-joint forces and moments of a normal subject group during walking. The optoelectric system collects kinematic data from infra-red LED markers placed at selected skin surface locations and projecting probes attached to the lower limb. A standardized X-ray procedure is used to move surface markers into their designated bony landmarks based on individual bone structure, which reduces the error caused by uncertainty of skin-surface marker locations. Based on moved-in marker information, different joint coordinate systems are proposed for kinematic and kinetic analysis of the knee joint. Normalized data of knee angles, net reaction forces and net moments from 35 young, normal subjects are presented.

使用光电系统和标准化x射线评估步态期间膝关节运动学和动力学的综合程序
本文介绍了一种结合光电运动跟踪和标准化x射线程序的三维步态分析系统,用于计算正常受试者组在行走过程中的净膝关节力和力矩。光电系统从放置在选定皮肤表面位置的红外LED标记和附着在下肢的投影探针收集运动学数据。使用标准化的x射线程序将表面标记物移动到基于个体骨骼结构的指定骨标记物中,从而减少了皮肤表面标记物位置不确定性引起的误差。基于移动标记信息,提出了不同的关节坐标系,用于膝关节的运动学和动力学分析。给出了35名年轻正常受试者的膝关节角、净反作用力和净力矩的归一化数据。
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