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使用可穿戴加速计和陀螺仪传感器进行步态姿势估计。

Gait posture estimation using wearable acceleration and gyro sensors.

机构信息

Division of Human Mechanical Systems and Design, Graduate School of Engineering, Hokkaido University, N13 W8, Kita-ku, Sapporo 060-8628, Japan.

出版信息

J Biomech. 2009 Nov 13;42(15):2486-94. doi: 10.1016/j.jbiomech.2009.07.016. Epub 2009 Aug 13.

DOI:10.1016/j.jbiomech.2009.07.016
PMID:19682694
Abstract

A method for gait analysis using wearable acceleration sensors and gyro sensors is proposed in this work. The volunteers wore sensor units that included a tri-axis acceleration sensor and three single axis gyro sensors. The angular velocity data measured by the gyro sensors were used to estimate the translational acceleration in the gait analysis. The translational acceleration was then subtracted from the acceleration sensor measurements to obtain the gravitational acceleration, giving the orientation of the lower limb segments. Segment orientation along with body measurements were used to obtain the positions of hip, knee, and ankle joints to create stick figure models of the volunteers. This method can measure the three-dimensional positions of joint centers of the hip, knee, and ankle during movement. Experiments were carried out on the normal gait of three healthy volunteers. As a result, the flexion-extension (F-E) and the adduction-abduction (A-A) joint angles of the hips and the flexion-extension (F-E) joint angles of the knees were calculated and compared with a camera motion capture system. The correlation coefficients were above 0.88 for the hip F-E, higher than 0.72 for the hip A-A, better than 0.92 for the knee F-E. A moving stick figure model of each volunteer was created to visually confirm the walking posture. Further, the knee and ankle joint trajectories in the horizontal plane showed that the left and right legs were bilaterally symmetric.

摘要

本工作提出了一种使用可穿戴加速度传感器和陀螺仪传感器进行步态分析的方法。志愿者佩戴了包含三轴加速度传感器和三个单轴陀螺仪传感器的传感器单元。陀螺仪传感器测量的角速度数据用于估计步态分析中的平移加速度。然后,从加速度传感器测量值中减去平移加速度,以获得重力加速度,从而确定下肢段的方向。结合身体测量值,使用分段方向获得髋关节、膝关节和踝关节的位置,以创建志愿者的棒图模型。该方法可以测量运动过程中髋关节、膝关节和踝关节中心的三维位置。对三名健康志愿者的正常步态进行了实验。结果,计算并比较了髋关节的屈伸(F-E)和内收外展(A-A)关节角度以及膝关节的屈伸(F-E)关节角度,并与摄像机运动捕捉系统进行了比较。髋关节 F-E 的相关系数高于 0.88,髋关节 A-A 的相关系数高于 0.72,膝关节 F-E 的相关系数高于 0.92。为每位志愿者创建了一个移动的棒图模型,以直观地确认行走姿势。此外,水平面内的膝关节和踝关节轨迹表明左右腿是双侧对称的。

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