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Investigation of coupled bending of the lumbar spine during dynamic axial rotation of the body

机译:人体动态轴向旋转过程中腰椎耦合弯曲的研究

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Purpose: Little is known about the coupled motions of the spine during functional dynamic motion of the body. This study investigated the in vivo characteristic motion patterns of the human lumbar spine during a dynamic axial rotation of the body. Specifically, the contribution of each motion segment to the lumbar axial rotation and the coupled bending of the vertebrae during the dynamic axial rotation of the body were analyzed. Methods: Eight asymptomatic subjects (M/F, 7/1; age, 40-60 years) were recruited. The lumbar segment of each subject was MRI scanned for construction of 3D models of the vertebrae from L2 to S1. The lumbar spine was then imaged using a dual fluoroscopic system while the subject performed a dynamic axial rotation from maximal left to maximal right in a standing position. The 3D vertebral models and the fluoroscopic images were used to reproduce the in vivo vertebral motion. In this study, we analyzed the primary left-right axial rotation, the coupled left-right bending of each vertebral segment from L2 to S1 levels. Results: The primary axial rotations of all segments (L2-S1) followed the direction of the body axial rotation. Contributions of each to the overall segment axial rotation were 6.7 ± 3.0 (27.9 %) for the L2-L3, 4.4 ± 1.2 (18.5 %) for the L3-L4, 6.4 ± 2.2 (26.7 %) for the L4-L5, and 6.4 ± 2.6 (27.0 %) for the L5-S1 vertebral motion segments. The upper segments of L2-L3 and L3-L4 demonstrated a coupled contralateral bending towards the opposite direction of the axial rotation, while the lower segments of L4-L5 and L5-S1 demonstrated a coupled ipsilateral bending motion towards the same direction of the axial rotation. Strong correlation between the primary axial rotation and the coupled bending was found at each vertebral level. We did not observe patterns of coupled flexion/extension rotation with the primary axial rotation. Conclusions: This study demonstrated that a dynamic lumbar axial rotation coupling with lateral bendings is segment-dependent and can create a coordinated dynamic coupling to maintain the global dynamic balance of the body. The results could improve our understanding of the normal physiologic lumbar axial rotation and to establish guidelines for diagnosing pathological lumbar motion.
机译:目的:对人体功能运动期间脊柱的耦合运动知之甚少。这项研究调查了人体的动态轴向旋转过程中人体腰椎的体内特征运动模式。具体而言,分析了在身体的动态轴向旋转过程中,每个运动段对腰部轴向旋转和椎骨耦合弯曲的贡献。方法:招募了八名无症状受试者(男/女,7/1;年龄,40-60岁)。 MRI扫描了每个受试者的腰节,以构建从L2到S1的椎骨3D模型。然后使用双透视系统对腰椎进行成像,而对象在站立位置执行从最大左向最大右的动态轴向旋转。 3D椎骨模型和透视图像用于再现体内椎体运动。在这项研究中,我们分析了从L2到S1水平的每个椎骨主要的左右轴向旋转,耦合的左右弯曲。结果:所有节段(L2-S1)的主要轴向旋转都遵循主体轴向旋转的方向。对于L2-L3,每个对整个段轴向旋转的贡献为6.7±3.0(27.9%),对于L3-L4是4.4±1.2(18.5%),对于L4-L5是6.4±2.2(26.7%),以及L5-S1脊椎运动节段为6.4±2.6(27.0%)。 L2-L3和L3-L4的上段显示出朝着轴向旋转的相反方向的对侧弯曲耦合,而L4-L5和L5-S1的下段显示出朝着轴向的相同方向的耦合的同侧弯曲运动。回转。在每个椎骨水平处发现了初级轴向旋转和耦合弯曲之间的强相关性。我们没有观察到屈曲/伸展旋转与主轴向旋转耦合的模式。结论:这项研究表明,具有侧向弯曲的动态腰椎轴向旋转耦合是节段依赖性的,并且可以创建协调的动态耦合以维持身体的整体动态平衡。结果可以增进我们对正常生理腰椎轴向旋转的理解,并为诊断病理性腰椎运动建立指导。

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