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Towards clinical application: Repetitive sensor position re-calibration for improved reliability of gait parameters

机译:走向临床应用:重复传感器位置重新校准,以提高步态参数的可靠性

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While camera-based motion tracking systems are considered to be the gold standard for kinematic analysis, these systems are not practical in clinical practice. However, the collection of gait parameters using inertial sensors is feasible in clinical settings and less expensive, but suffers from drift error that excludes accurate analyses. The goal of this study was to apply a combination of repetitive sensor position re-calibration techniques in order to improve the intra-day and inter-day reliability of gait parameters using inertial sensors.Kinematic data of nineteen healthy elderly individuals were captured twice within the first day and once on a second day after one week using inertial sensors fixed on the subject's forefoot during gait. Parameters of walking speed, minimum foot clearance (MFC), minimum toe clearance (MTC), stride length, stance time and swing time, as well as their corresponding measures of variability were calculated. Intra-day and inter-day differences were rated using intra-class correlation coefficients (ICC(3,1)), as well as the bias and limits of agreement. The results indicate excellent reliability for all intra-day and inter-day mean parameters (ICC: MFC 0.83-stride length 0.99). While good to excellent reliability was observed during intra-day parameters of variability (ICC: walking speed 0.71-MTC 0.98), corresponding inter-day reliability ranged from poor to excellent (ICC: walking speed 0.32-MTC 0.95).In conclusion, the system is suitable for reliable measurement of mean temporo-spatial parameters and the variability of MFC and MTC. However, the system's accuracy needs to be improved before remaining parameters of variability can reliably be collected.
机译:虽然基于摄像机的运动跟踪系统被认为是运动分析的黄金标准,但这些系统在临床实践中并不实用。但是,使用惯性传感器收集步态参数在临床环境中是可行的,且价格较低,但会出现漂移误差,无法进行准确的分析。这项研究的目的是应用重复性传感器位置重新校准技术,以提高使用惯性传感器的步态参数在日间和日间的可靠性。在该运动中两次采集了19名健康的老年人的运动数据。第一天,一周后第二天第二天,在步态期间使用固定在对象前足上的惯性传感器。计算了步行速度,最小脚部间隙(MFC),最小脚趾间隙(MTC),步幅,站立时间和挥杆时间的参数,以及它们相应的可变性度量。日内和日间差异使用类内相关系数(ICC(3,1))以及偏差和一致性限制进行评分。结果表明,对于所有日内和日间平均参数(ICC:MFC 0.83步幅长度0.99),其可靠性都很高。虽然在日内变异性参数中观察到的可靠性从良好到优异(ICC:步行速度0.71-MTC 0.98),但相应的日间可靠性从差到极好(ICC:步行速度0.32-MTC 0.95)。该系统适用于可靠地测量平均时空参数以及MFC和MTC的可变性。但是,在可以可靠地收集可变性的其余参数之前,需要提高系统的准确性。

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