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Identifying Fatigue Indicators Using Gait Variability Measures: A Longitudinal Study on Elderly Brisk Walking

机译:使用步态可变性措施识别疲劳指标:对老年人轻快的纵向行走纵向研究

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摘要

Real-time detection of fatigue in the elderly during physical exercises can help identify the stability and thus falling risks which are commonly achieved by the investigation of kinematic parameters. In this study, we aimed to identify the change in gait variability parameters from inertial measurement units (IMU) during a course of 60 min brisk walking which could lay the foundation for the development of fatigue-detecting wearable sensors. Eighteen elderly people were invited to participate in the brisk walking trials for 60 min with a single IMU attached to the posterior heel region of the dominant side. Nine sets of signals, including the accelerations, angular velocities, and rotation angles of the heel in three anatomical axes, were measured and extracted at the three walking times (baseline, 30th min, and 60th min) of the trial for analysis. Sixteen of eighteen participants reported fatigue after walking, and there were significant differences in the median acceleration (p = 0.001), variability of angular velocity (p = 0.025), and range of angle rotation (p = 0.0011), in the medial–lateral direction. In addition, there were also significant differences in the heel pronation angle (p = 0.005) and variability and energy consumption of the angles in the anterior–posterior axis (p = 0.028, p = 0.028), medial–lateral axis (p = 0.014, p = 0.014), and vertical axis (p = 0.002, p < 0.001). Our study demonstrated that a single IMU on the posterior heel of the dominant side can address the variability of kinematics parameters for elderly performing prolonged brisk walking and could serve as an indicator for walking instability, and thus fatigue.
机译:物理锻炼期间老年人疲劳的实时检测可以有助于识别稳定性,从而造成常见的风险,这些风险通常通过调查运动参数来实现。在这项研究中,我们旨在在60分钟的轻快行走过程中识别来自惯性测量单元(IMU)的步态变异参数的变化,这可能为疲劳检测可穿戴传感器的发展奠定基础。邀请十八名老年人参加了60分钟的轻快步行试验,用一个IMU附着在主导侧的后跟区域。在试验的三次步行时间(基线,第30分钟和第60分钟)进行测量并提取九组信号,包括鞋跟的鞋跟的加速度,角速度和旋转角度。步行后的十六个参与者报告疲劳,中值(p = 0.001),角速度的可变性(p = 0.025),角度旋转范围(p = 0.0011),在内侧横向的范围内方向。此外,后后轴(P = 0.028,P = 0.028),内侧横向轴(P = 0.014)的角度突出(P = 0.005)和变形和能量消耗也存在显着差异(P = 0.028,P = 0.028)(P = 0.014 ,p = 0.014)和垂直轴(p = 0.002,p <0.001)。我们的研究表明,主导方面的后跟上的单个IMU可以解决老年人执行长期快速行走的运动学参数的可变性,并且可以作为行走不稳定的指标,从而疲劳。

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