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The validity of spatiotemporal gait analysis using dual laser range sensors: a cross-sectional study

机译:双激光频率传感器的时空步态分析的有效性:横截面研究

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The spatiotemporal parameters were used for sophisticated gait analysis in widespread clinical use. Recently, a laser range sensor has been proposed as a new device for the spatiotemporal gait measurement. However, measurement using a single laser range sensor can only be used for short-range gait measurements because the device irradiates participants with lasers in a radial manner. For long-range gait measurement, the present study uses a modified method using dual laser range sensors installed at opposite ends of the walking path. The aim of present study was to investigate the concurrent validity of the proposed method for spatiotemporal gait measurement by comparison to a computer-based instrumented walkway system. Ten healthy participants were enrolled in this study. Ten-meter walking tests at 100, 75, and 50% of the comfortable speed were conducted to determine the concurrent validity of the proposed method compared to instrumented walkway measurements. Frequency distributions of errors for foot-contact (FC) and foot-off (FO) estimated times between the two systems were also calculated to determine the adequacy of estimation of FC and FO from three perspectives: accuracy (smallness of mean error), precision (smallness of variability), and unambiguity (monomodality of histogram). Intra-class correlation coefficient (2,1) was used to determine the concurrent validity of spatiotemporal parameters between the two systems. The results indicate that the detection times for FC and FO estimated by the proposed method did not differ from those measured by the instrumented walkway reference system. In addition, histogram for FC and FO showed monomodality. Intra-class correlation coefficients of the spatiotemporal parameters (stance time: 0.74; double support time: 0.56; stride time: 0.89; stride length: 0.83; step length: 0.71; swing time: 0.23) were not high enough. The mean errors of all spatiotemporal parameters were small. These results suggest that the proposed lacks sufficient concurrent validity for spatiotemporal gait measurement. Further improvement of this proposed system seems necessary. UMIN000032710. Registered 24 May 2018. Retrospectively registered.
机译:在广泛的临床用途中使用了时尚参数用于复杂的步态分析。最近,已经提出了激光范围传感器作为用于时空步态测量的新装置。然而,使用单个激光范围传感器的测量只能用于短程步态测量,因为该装置以径向方式照射与激光​​器的参与者。对于远程步态测量,本研究采用使用安装在步行路径的相对端的双激光范围传感器的修改方法。目前研究的目的是探讨所提出的时尚步态测量方法的并发有效性,与基于计算机的仪表走道系统的比较。在这项研究中注册了十名健康的参与者。在100,75和50%的舒适速度下进行10米行走试验,以确定所提出的方法的并发有效性与仪器走道测量相比。还计算了两种系统之间的脚接触(FC)和脚截止(FO)估计时间的频率分布,以确定FC和FO从三个视角来估计FC和FO的充分性:精度(平均误差的小),精确度(变异性小)和不曼比(直方图的单一性)。类内相关系数(2,1)用于确定两个系统之间的时空参数的并发有效性。结果表明,通过所提出的方法估计的Fc和FO估计的检测时间与由仪表走道参考系统测量的方法没有不同。此外,Fc和FO的直方图显示单级正性。阶段内相关系数的时空参数(姿势时间:0.74;双支撑时间:0.56;步幅时间:0.89;步幅长度:0.83;步长:0.71;摆动时间:0.23)不够高。所有时空参数的平均误差很小。这些结果表明,提议缺乏对时空步态测量的充分并发有效性。进一步改进该提出的系统似乎是必要的。 UMIN000032710。 2018年5月24日注册。回顾性注册。

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