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Using A Soft Conformable Foot Sensor to Measure Changes in Foot Strike Angle During Running

机译:使用软形容脚传感器测量跑步期间脚踏角度的变化

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摘要

The potential association between running foot strike analysis and performance and injury metrics has created the need for reliable methods to quantify foot strike pattern outside the laboratory. Small, wireless inertial measurement units (IMUs) allow for unrestricted movement of the participants. Current IMU methods to measure foot strike pattern places small, rigid accelerometers and/or gyroscopes on the heel cap or on the instep of the shoe. The purpose of this study was to validate a thin, conformable IMU sensor placed directly on the dorsal foot surface to determine foot strike angles and pattern. Participants (n = 12) ran on a treadmill with different foot strike patterns while videography and sensor data were captured. Sensor measures were compared against traditional 2D video analysis techniques and the results showed that the sensor was able to accurately (92.2% success) distinguish between rearfoot and non-rearfoot foot strikes using an angular velocity cut-off value of 0°/s. There was also a strong and significant correlation between sensor determined foot strike angle and foot strike angle determined from videography analysis (r = 0.868, p < 0.001), although linear regression analysis showed that the sensor underestimated the foot strike angle. Conformable sensors with the ability to attach directly to the human skin could improve the tracking of human dynamics and should be further explored.
机译:运行脚罢工分析和性能和伤害指标之间的潜在关联创造了需要可靠的方法来量化实验室外的脚击模式。小型无线惯性测量单元(IMU)允许参与者的不受限制的运动。目前的IMU方法测量脚冲击模式的脚跟帽或鞋子脚背上的小,刚性加速度计和/或陀螺仪。本研究的目的是验证直接放在背部脚表面上的薄,适形的IMU传感器,以确定足部撞击角和图案。参与者(n = 12)在跑步机上运行,​​在捕获摄像机和传感器数据时,踏上脚击模式。比较传感器测量与传统的2D视频分析技术进行比较,结果表明,传感器能够准确地(92.2%的成功),使用0°/ s的角速度截止值来区分后脚和非后脚脚撞击。虽然线性回归分析表明,传感器确定从摄像性分析确定(r = 0.868,p <0.001)确定的传感器确定的脚撞击角和脚冲击角之间存在强烈的相关性,但是线性回归分析表明传感器低估了脚撞击角度。适当的传感器具有直接连接到人体皮肤的能力可以改善人类动态的跟踪,并应进一步探索。

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