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Lower Extremity Joint Angle Tracking with Wireless Ultrasonic Sensors during a Squat Exercise

机译:下蹲运动过程中使用无线超声波传感器进行下肢关节角度跟踪

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摘要

This paper presents an unrestrained measurement system based on a wearable wireless ultrasonic sensor network to track the lower extremity joint and trunk kinematics during a squat exercise with only one ultrasonic sensor attached to the trunk. The system consists of an ultrasound transmitter (mobile) and multiple receivers (anchors) whose positions are known. The proposed system measures the horizontal and vertical displacement, together with known joint constraints, to estimate joint flexion/extension angles using an inverse kinematic model based on the damped least-squares technique. The performance of the proposed ultrasonic measurement system was validated against a camera-based tracking system on eight healthy subjects performing a planar squat exercise. Joint angles estimated from the ultrasonic system showed a root mean square error (RMSE) of 2.85° ± 0.57° with the reference system. Statistical analysis indicated great agreements between these two systems with a Pearson's correlation coefficient (PCC) value larger than 0.99 for all joint angles' estimation. These results show that the proposed ultrasonic measurement system is useful for applications, such as rehabilitation and sports.
机译:本文提出了一种基于可穿戴无线超声传感器网络的不受约束的测量系统,该系统可在下蹲运动中跟踪下肢关节和躯干运动学,而只有一个超声传感器附接到躯干。该系统由位置已知的超声波发射器(移动式)和多个接收器(锚)组成。拟议的系统测量水平和垂直位移,以及已知的关节约束,以基于阻尼最小二乘技术的逆运动学模型来估计关节的弯曲/伸展角度。拟议的超声测量系统的性能已针对八个进行平面深蹲运动的健康受试者的基于照相机的跟踪系统进行了验证。超声系统估计的关节角与参考系统的均方根误差(RMSE)为2.85°±0.57°。统计分析表明,在所有两个关节角度的估计中,这两个系统之间的皮尔逊相关系数(PCC)值均大于0.99,这两个系统之间的一致性很高。这些结果表明,所提出的超声测量系统对于诸如康复和运动等应用是有用的。

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