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The identification of vertical velocity profiles using an inertial sensor to investigate pre-impact detection of falls.

机译:使用惯性传感器来研究跌落的撞击前检测,从而确定垂直速度剖面。

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摘要

This study investigates distinguishing falls from normal Activities of Daily Living (ADL) by thresholding of the vertical velocity of the trunk. Also presented is the design and evaluation of a wearable inertial sensor, capable of accurately measuring these vertical velocity profiles, thus providing an alternative to optical motion capture systems. Five young healthy subjects performed a number of simulated falls and normal ADL and their trunk vertical velocities were measured by both the optical motion capture system and the inertial sensor. Through vertical velocity thresholding (VVT) of the trunk, obtained from the optical motion capture system, at -1.3 m/s, falls can be distinguished from normal ADL, with 100% accuracy and with an average of 323 ms prior to trunk impact and 140 ms prior to knee impact, in this subject group. The vertical velocity profiles obtained using the inertial sensor, were then compared to those obtained using the optical motion capture system. The signals from the inertial sensor were combined to produce vertical velocity profiles using rotational mathematics and integration. Results show high mean correlation (0.941: Coefficient of Multiple Correlations) and low mean percentage error (6.74%) between the signals generated from the inertial sensor to those from the optical motion capture system. The proposed system enables vertical velocity profiles to be measured from elderly subjects in a home environment where as this has previously been impractical.
机译:这项研究调查通过阈值的躯干的垂直速度区分跌倒与正常的日常生活活动(ADL)。还介绍了可穿戴惯性传感器的设计和评估,该传感器能够准确地测量这些垂直速度曲线,从而为光学运动捕获系统提供了替代方案。五名年轻健康受试者进行了多次模拟跌倒,并通过光学运动捕捉系统和惯性传感器测量了正常的ADL及其躯干垂直速度。通过从光学运动捕获系统获得的躯干垂直速度阈值(VVT),在-1.3 m / s的速度下,可以将坠落与正常ADL区别开,准确度为100%,在撞击躯干之前平均为323 ms,在该受试者组中,膝盖撞击前140毫秒。然后将使用惯性传感器获得的垂直速度曲线与使用光学运动捕获系统获得的垂直速度曲线进行比较。使用旋转数学和积分,将来自惯性传感器的信号合并以产生垂直速度分布。结果表明,从惯性传感器生成的信号与从光学运动捕获系统生成的信号之间,平均相关性较高(0.941:多重相关系数),而平均百分比误差较低(6.74%)。所提出的系统使得能够在家庭环境中从老年人中测量垂直速度分布,这在以前是不切实际的。

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