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Development of three-dimensional motion measuring device for the human ankle joint by using parallel link mechanism

机译:利用并联机构开发人体踝关节三维运动测量装置

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This paper presents a novel ankle motion measuring device that can measure three-dimensional motions without a motion capture system (MCS). We adapted a parallel link mechanism for the device using six wire-type displacement sensors to measure the ankle joint motions in six degrees of freedom (six-DOF). We define the motions of a foot plate which is attached to a foot sole as ankle joint motions. A posture of the foot plate, i.e., the three-dimensional position (x, y, z) and rotation angle (в, ę, у/), is numerically calculated by solving the forward kinematics of the developed device. We conducted performance verification experiments of the developed device by comparing these results with those of the MCS. The experimental results show that the maximum root mean square error of the three-dimensional position and rotation angle measured by the developed device are 2.6 mm and 1.5°, respectively. This measuring performance of the developed device indicates that the ankle motion measuring device is accurate and valid. Moreover, this device enables physical therapists to easily measure ankle motions with an accuracy as high as that of an MCS.
机译:本文提出了一种新颖的踝关节运动测量设备,该设备无需运动捕获系统(MCS)即可测量三维运动。我们使用六个线型位移传感器为该设备调整了平行连杆机构,以六个自由度(六自由度)测量踝关节运动。我们将附着在脚底上的脚板的运动定义为踝关节运动。脚板的姿势,即三维位置(x,y,z)和旋转角度(φ,ę,у/),是通过求解已开发设备的正向运动学来数值计算的。通过将这些结果与MCS的结果进行比较,我们对开发的设备进行了性能验证实验。实验结果表明,所开发的装置测得的三维位置和旋转角度的最大均方根误差分别为2.6mm和1.5°。所开发的设备的这种测量性能表明脚踝运动测量设备是准确和有效的。此外,该设备使物理治疗师能够轻松以与MCS一样高的精度测量踝关节运动。

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