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Kinematics of the lumbar spine in trunk rotation: in vivo three-dimensional analysis using magnetic resonance imaging

机译:躯干旋转中腰椎的运动学:使用磁共振成像的体内三维分析

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摘要

In vivo three-dimensional (3D) kinematics of the lumbar spine has not been well evaluated by the conventional methods because of their methodological limitations, while 3D intervertebral motions have been quantitatively determined by cadaver studies. We thus developed a novel 3D analyzing system for the relative motions of individual vertebrae using 3D magnetic resonance imaging (MRI) and analyzed in vivo 3D intervertebral motions of the lumbar spine during trunk rotation. Ten healthy volunteers underwent 3D MRI of the lumbar spine in nine positions with 15° increments during trunk rotation (0°, 15°, 30°, 45°, and maximum). Relative motions of the lumbar spine were calculated by automatically superimposing a segmented 3D MRI of the vertebra in the neutral position over images of each position using the voxel-based registration method. These 3D motions were represented with 6 degrees of freedom by Euler angles and translations on the coordinate system. The mean axial rotation of ten healthy volunteers of each lumbar spinal segment in 45° trunk rotation to each side ranged from 1.2° to 1.7°. Coupled flexion with axial rotation was observed at the segments from L1/2 to L5/S1. Coupled lateral bending of the segments from L1/2 to L4/5 was in the opposite direction of the trunk rotation, while that of T12/L1 and L5/S1 was in the same direction. The direction of the coupled lateral bending in the present study was different from that in the previous cadaver study only at L4/5. This difference might result from the non-load state of the supine position in the current study and/or the non-physiological state in the cadaver study. Our system has two limitations: (1) the study was conducted with each volunteer in the supine position, and (2) because the rotation device regulated trunk rotation, trunk rotation might not have been physiological. In vivo 3D intervertebral motions of the lumbar spine during trunk rotation were evaluated using our novel motion analysis system. These data may be useful for the optimal orthopaedic management of lumbar spinal disorders.
机译:由于其方法学上的局限性,传统方法尚未很好地评估腰椎的体内三维(3D)运动学,而尸体研究已定量地确定了3D椎间运动。因此,我们使用3D磁共振成像(MRI)开发了一种用于单个椎骨相对运动的新颖3D分析系统,并分析了躯干旋转过程中腰椎的体内3D椎间运动。十名健康志愿者在躯干旋转期间(0°,15°,30°,45°和最大)在9个位置以15°增量对腰椎进行3D MRI。腰椎的相对运动是通过使用基于体素的配准方法将中性位置的椎骨的分段3D MRI自动叠加在每个位置的图像上来计算的。这些3D运动由欧拉角和坐标系统上的平移表示为6个自由度。每个腰椎节段的十名健康志愿者以45°躯干旋转至每一侧的平均轴向旋转范围为1.2°至1.7°。在从L1 / 2到L5 / S1的段观察到弯曲与轴向旋转耦合。从L1 / 2到L4 / 5的节段的横向耦合弯曲方向与躯干旋转方向相反,而T12 / L1和L5 / S1的横向弯曲方向相同。在本研究中,耦合横向弯曲的方向与以前的尸体研究仅在L4 / 5处不同。这种差异可能是由于当前研究中仰卧位的非负载状态和/或尸体研究中的非生理状态引起的。我们的系统有两个局限性:(1)这项研究是在每个志愿者都仰卧的情况下进行的;(2)由于旋转装置调节了躯干旋转,因此躯干旋转可能不是生理上的。使用我们新颖的运动分析系统评估了躯干旋转过程中腰椎的体内3D椎间运动。这些数据可能对腰椎疾病的最佳骨科治疗有用。

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