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使用加速度计自动估计初始和终末接触时间;在胫骨截肢者和对照组中的开发与验证。

Automated estimation of initial and terminal contact timing using accelerometers; development and validation in transtibial amputees and controls.

作者信息

Selles Ruud W, Formanoy Margriet A G, Bussmann Johannes B J, Janssens Peter J, Stam Henk J

机构信息

Department of Rehabilitation Medicine, Erasmus Medical Center, 3000 CA Rotterdam, The Netherlands.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2005 Mar;13(1):81-8. doi: 10.1109/TNSRE.2004.843176.

Abstract

The aim of this study was to develop and validate an automated accelerometry-based system for estimating initial contact (IC) and terminal contact (TC) timing information from walking patterns of healthy control subjects and transtibial amputees that can be used in daily life with minimal interference of researchers. Subjects were instrumented with two uniaxial accelerometers just below the knee while synchronized ground reaction force (GRF) recordings were used as reference measurements. An automated multiphase algorithm was developed to estimate the time of IC and TC in the acceleration signals of five healthy subjects and two transtibial amputees walking at different walking speeds. The accuracy of the detection algorithm in ten control subjects and eight transtibial amputees indicated mean errors ranging between 0.013 and 0.034 s for the TC and IC timing, with 95 % confidence interval of the individual step errors ranging between -0.062 and 0.115 s. Correlation coefficients between the estimated stance phase duration and GRF data were 0.98 and 0.97 for controls and amputees, respectively. We concluded that IC and TC can be accurately and easily measured using this system in both healthy subjects and transtibial amputees walking at different walking speeds. The system can be used in clinical situations or gait labs as well as during daily life.

摘要

本研究的目的是开发并验证一种基于自动加速度测量的系统,用于从健康对照受试者和经胫骨截肢者的步行模式中估计初始接触(IC)和终末接触(TC)的时间信息,该系统在日常生活中使用时受研究人员的干扰最小。在受试者膝盖下方安装两个单轴加速度计,同时使用同步地面反作用力(GRF)记录作为参考测量。开发了一种自动多阶段算法,以估计五名健康受试者和两名经胫骨截肢者在不同步行速度下行走时加速度信号中的IC和TC时间。在十名对照受试者和八名经胫骨截肢者中,检测算法的准确性表明,TC和IC时间的平均误差在0.013至0.034秒之间,个体步长误差的95%置信区间在-0.062至0.115秒之间。对照受试者和截肢者估计的站立期持续时间与GRF数据之间的相关系数分别为0.98和0.97。我们得出结论,使用该系统可以在不同步行速度的健康受试者和经胫骨截肢者中准确且轻松地测量IC和TC。该系统可用于临床情况或步态实验室以及日常生活中。

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