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首页> 外文期刊>The spine journal: official journal of the North American Spine Society >Characterization of articulation of the lumbar facets in the human cadaveric spine using a facet-based coordinate system
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Characterization of articulation of the lumbar facets in the human cadaveric spine using a facet-based coordinate system

机译:使用基于小平面的坐标系表征人体尸体脊柱中的腰小平面

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Background context: The three-joint-complex, which includes the two facet joints and the intervertebral disc, significantly directs the movement of the lumbar spine. When studying the biomechanics of this complex, kinematics have traditionally been measured relative to a vertebral body-based reference frame. Recently, a facet-based reference system has been used to describe the same motions, but relative to the facets. Purpose: To describe in-plane and out-of-plane motion during flexion-extension (FE), lateral bending (LB), and axial rotation (AR) in the lumbar facets of cadaveric spines. Study design: Biomechanical in vitro study. Methods: Seven fresh-frozen and noninstrumented human cadaveric lumbar spines from L1 to sacrum were tested in FE, AR, and LB. Three coordinate systems were assigned to each vertebral body from L1 to L5: one corresponding to the vertebral body reference frame (X, Y, Z) and two corresponding to the left and right facet reference frames (A, B, C). The facet-based reference frame was aligned to each facet surface to provide descriptions of in-plane (articulation) and out-of-plane (separation) motion. For each of the three modes of loading, the magnitude of the translational range of motion (ROM) vector was calculated for the three reference frames. Results: During FE, there was a significant difference in the magnitude of the translational ROM vector of the right facet as compared with the vertebral body at L1-L2. During AR, there was a significant difference between the magnitude of translational ROM vector at L2-L3, L3-L4, L4-L5, and L1-L2 trended toward significance. During LB, there was a significant difference in the magnitude of the translational ROM vector at L1-L2, L2-L3, L3-L4, and L4-L5. Conclusions: A facet-based reference frame accounts for variations in facet orientation and provides a valuable characterization of facet articulation and separation that is not possible to derive from translations in a vertebral body-based reference frame.
机译:背景技术:三关节复合体(包括两个小关节和椎间盘)明显地指导了腰椎的运动。在研究这种复合体的生物力学时,传统上是相对于基于椎体的参考系来测量运动学的。最近,基于刻面的参考系统已用于描述相同的运动,但相对于刻面。目的:描述尸体脊椎腰椎小关节的屈伸(FE),横向弯曲(LB)和轴向旋转(AR)期间的平面内和平面外运动。研究设计:生物力学体外研究。方法:在FE,AR和LB中测试了7个从L1到骨的新鲜冷冻和非仪器化人体尸体腰椎。从L1到L5为每个椎体分配了三个坐标系:一个对应于椎体参考系(X,Y,Z),两个对应于左,右小面参考系(A,B,C)。将基于小平面的参考框架与每个小平面表面对齐,以提供平面内(关节运动)和平面外(分离)运动的描述。对于三种加载方式中的每一种,都针对三个参考帧计算了运动的平移范围(ROM)向量的大小。结果:在FE期间,在L1-L2处,与椎体相比,右小平面的ROM ROM向量的大小存在显着差异。在AR期间,在L2-L3,L3-L4,L4-L5和L1-L2趋于显着的水平,翻译ROM矢量的大小之间存在显着差异。在LB期间,在L1-L2,L2-L3,L3-L4和L4-L5处,翻译ROM向量的大小存在显着差异。结论:基于小平面的参考框架解决了小平面取向的变化,并提供了无法从基于椎体的参考框架中的平移中得出的宝贵关节刻角和分离特征。

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