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Technology-Based Complex Motor Tasks Assessment: A 6-DOF Inertial-Based System Versus a Gold-Standard Optoelectronic-Based One

机译:基于技术的复杂电机任务评估:基于6-DOF的基于惯性系统与金标光电子基于基于的系统

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摘要

Currently, the gold-standard method of assessing human motion is by means of optoelectronic analysis systems. However, such systems have some drawbacks (time-consuming procedure, specialized room, expensive,..) and therefore other analysis systems are gaining in importance. Here, we report a novel inertial-sensor based system (Movit System G1, by Captiks) with an innovative calibration, testing its strengths and weaknesses when compared to an optoelectronic gold standard one (Vicon, by Oxford Metrics). In particular, the validation was executed with different subjects performing different motor exercises: walking (Test 1) and joint movements (Test 2). Gathered data from measurements were anlayzed to evidence accuracy and reliability of the inertial-sensor based system, and the statistical agreement between the two measuring approaches. Results demonstrated a very good measurement accuracy of the inertial-based system for hip, knee and ankle’s ROMs in the sagittal plane during walking (RMSE <2.66°, PCC >0.97), and for joint movements in all planes (RMSE <3.46°, PCC >0.94). In addition, the two systems performed with a good agreement (the percentage errors of spatio-temporal parameters were lower than 5%, except for double support which was equal to 8.6%). The reliability was proved for the most gait parameters and joints.
机译:目前,评估人类运动的金标准方法是通过光电分析系统。然而,这种系统具有一些缺点(耗时的程序,专用房间,昂贵的,..因此,其他分析系统的重要性也在。在这里,我们报告了一种新颖的基于惯性传感器的系统(Movit System G1,Captiks),其具有创新的校准,与光电金标准(VICON)相比,测试其优点和缺点(牛津度量)。特别是,使用不同的电机执行验证:行走(测试1)和关节运动(测试2)。从测量中收集的数据是基于惯性传感器的系统的证据准确性和可靠性,以及两种测量方法之间的统计协议。结果在步行(RMSE <2.66°,PCC> 0.97)期间,在矢状平面中的臀部,膝关节和踝关节摩擦系统的基于惯性系统的测量精度非常好的测量精度,以及所有平面的关节运动(RMSE <3.46°, PCC> 0.94)。此外,具有良好协议的两个系统(时空参数的百分比误差低于5%,除了等于8.6%的双支撑性除外)。为最具步态和关节证明了可靠性。

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