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Finger joint kinematics from MR images

机译:MR图像的手指关节运动学

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Accurate and quantitative analysis of human hand motion requires an understanding of the kinematics of the proximal and distal interphalangeal joints in three dimensions. This paper presents a technique to investigate in-vivo finger joint kinematics using magnetic resonance (MR) imaging. Bone surface models were extracted from MR images of the right hand of ten healthy subjects in four different postures. The relative motion of adjacent bones for all subjects was calculated and expressed as the helical axis and the angles around the axes of local bone coordinate system. The motion data indicated the change of axis orientation with flexion. After carefully selecting the subject and a pose with an appropriate flexional angle, studies determined that the mean inclination between the axes of the proximal and distal interphalangeal joints was approximately 14 [deg].
机译:对人手运动的准确和定量分析需要了解三维近端和远端间骨膜关节的运动学。本文介绍了一种使用磁共振(MR)成像来研究体内手指关节运动学的技术。在四种不同姿势中从十个健康受试者的右手的MR图像中提取骨表面模型。计算所有受试者的相邻骨骼的相对运动,并表示为螺旋轴和围绕局部骨坐标系的轴线的角度。运动数据指示弯曲轴方向的变化。在仔细选择受试者和具有适当柔性角度的姿势之后,研究确定近端和远端间关节轴之间的平均倾斜度约为14°。

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