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首页> 外文期刊>Journal of Biomechanics >Use of dual Euler angles to quantify the three-dimensional joint motion and its application to the ankle joint complex.
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Use of dual Euler angles to quantify the three-dimensional joint motion and its application to the ankle joint complex.

机译:使用双重欧拉角来量化三维关节运动及其在踝关节复合物中的应用。

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摘要

This paper presents a modified Euler angles method, dual Euler angles approach, to describe general spatial human joint motions. In dual Euler angles approach, the three-dimensional joint motion is considered as three successive screw motions with respect to the axes of the moving segment coordinate system; accordingly, the screw motion displacements are represented by dual Euler angles. The algorithm for calculating dual Euler angles from coordinates of markers on the moving segment is also provided in this study. As an example, the proposed method is applied to describe motions of ankle joint complex during dorsiflexion-plantarflexion. A Flock of Birds electromagnetic tracking device (FOB) was used to measure joint motion in vivo. Preliminary accuracy tests on a gimbal structure demonstrate that the mean errors of dual Euler angles evaluated by using source data from FOB are less than 1 degrees for rotations and 1mm for translations, respectively. Based on the pilot study, FOB is feasible for quantifying human joint motions using dual Euler angles approach.
机译:本文提出了一种改进的欧拉角方法,即双重欧拉角方法,来描述一般的人类空间关节运动。在双欧拉角方法中,三维关节运动被视为相对于运动段坐标系轴的三个连续的螺杆运动。因此,螺杆运动位移由双欧拉角表示。这项研究还提供了根据运动段上的标记坐标计算双欧拉角的算法。例如,该方法可用于描述背屈-足底屈曲过程中踝关节复合体的运动。鸟群电磁跟踪装置(FOB)用于测量体内关节运动。对万向架结构的初步精度测试表明,使用来自FOB的源数据评估的双欧拉角平均误差分别小于1度旋转和1毫米平移。根据初步研究,FOB可用于使用双欧拉角方法量化人体关节运动。

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