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首页> 外文期刊>Journal of Biomechanics >Measuring joint kinematics of treadmill walking and running: Comparison between an inertial sensor based system and a camera-based system
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Measuring joint kinematics of treadmill walking and running: Comparison between an inertial sensor based system and a camera-based system

机译:测量跑步机行走和运行的关节运动学:基于惯性传感器的系统与基于相机系统的比较

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Inertial sensor systems are becoming increasingly popular for gait analysis because their use is simple and time efficient. This study aimed to compare joint kinematics measured by the inertial sensor system RehaGait (R) with those of an optoelectronic system (Vicon (R)) for treadmill walking and running. Additionally, the test re-test repeatability of kinematic waveforms and discrete parameters for the RehaGait (R) was investigated. Twenty healthy runners participated in this study. Inertial sensors and reflective markers (Plugln Gait) were attached according to respective guidelines. The two systems were started manually at the same time. Twenty consecutive strides for walking and running were recorded and each software calculated sagittal plane ankle, knee and hip kinematics. Measurements were repeated after 20 min. Ensemble means were analyzed calculating coefficients of multiple correlation for waveforms and root mean square errors (RMSE) for waveforms and discrete parameters. After correcting the offset between waveforms, the two systems/models showed good agreement with coefficients of multiple correlation above 0.950 for walking and running. RMSE of the waveforms were below 5 for walking and below 8 for running. RMSE for ranges of motion were between 4 and 9 for walking and running. Repeatability analysis of waveforms showed very good to excellent coefficients of multiple correlation (>0.937) and RMSE of 3 degrees for walking and 3-7 degrees for running. These results indicate that in healthy subjects sagittal plane joint kinematics measured with the RehaGait (R) are comparable to those using a Vicon (R) system/model and that the measured kinematics have a good repeatability, especially for walking. (C) 2017 Elsevier Ltd. All rights reserved.
机译:惯性传感器系统对于步态分析变得越来越受欢迎,因为它们的使用简单且时间效率。本研究旨在将惯性传感器系统REHAGAIT(R)与光电系统(VICON(R))测量的关节运动学进行比较,用于跑步机行走和运行。另外,研究了对运动波形的测试重复性和再生(R)的离散参数。 20名健康赛道参加了这项研究。根据各自的指导,附着惯性传感器和反射标记(插件步态)。这两个系统在手动同时启动。记录了行走和运行的二十个连续步幅,每个软件计算矢状平面踝关节,膝盖和髋关节运动学。 20分钟后重复测量。分析了集合装置的计算系数,用于波形和离散参数的波形和根均线误差(RMSE)的多相关系数。在纠正波形之间的偏移之后,两个系统/模型与步行和运行的多重相关性的系数显示出良好的吻合。波形的RMSE低于5,步行和下降8次运行。用于运动范围的RMSE在4到9之间,散步和跑步。波形的可重复性分析显示出非常好的多个相关系数(> 0.937)和3度的RMSE,用于运行3-7度。这些结果表明,在健康受试者中,用rehagait(r)测量的矢状平面关节运动学与使用VICon系统/模型的运动员相当,并且测量的运动学具有良好的重复性,特别是用于行走。 (c)2017 Elsevier Ltd.保留所有权利。

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