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Role of ligaments and facets in lumbar spinal stability.

机译:韧带和小平面在腰椎稳定性方面的作用。

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STUDY DESIGN. The issue of segmental stability using finite element analysis was studied. Effect of ligament and facet (total and partial) removal and their geometry on segment response were studied from the viewpoint of stability. OBJECTIVES. To predict factors that may be linked to the cause of rotational instabilities, spondylolisthesis, retrospondylolisthesis, and stenosis. SUMMARY OF BACKGROUND DATA. The study provides a comprehensive study on the role of facets and ligaments and their geometry in preserving segmental stability. No previous biomechanical study has explored these issues in detail. METHODS. Three-dimensional nonlinear finite element analysis was performed on L3-L4 motion segments, with and without posterior elements (ligaments and facets), subjected to sagittal moments. Effects of ligament and facet (partial and total) removal and their orientations on segment response are examined from the viewpoint of stability. RESULTS. Ligaments play an important role in resisting flexion rotation and posterior shear whereas facets are mainly responsible for preventing large extension rotation and anterior displacement. Facet loads and stresses are high under large extension and anterior shear loading. Unlike total facetectomy, selective removal of facets does not compromise segmental stability. Facet loads are dependent on spatial orientation. CONCLUSIONS. Rotational instability in flexion or posterior displacement (retrospondylolisthesis) is unlikely without prior damage of ligaments, whereas instability in extension rotation or forward displacement (spondylolisthesis) is unlikely before facet degeneration or removal. The facet stress and displacement distribution predicts that facet osteoarthritis or hypertrophy leading to spinal stenosis is most likely under flexion-anterior shear loading. Selective facetectomy may restore spinal canal size without compromising the stability of the segment. A facet that is more sagittally oriented may be linked to the cause of spondylolisthesis, whereas a less transversely oriented facet joint may be linked to rotational instabilities in extension.
机译:学习规划。研究了使用有限元分析的分段稳定性问题。从稳定性的角度研究了韧带和小平面(全部和部分)去除及其几何形状对段响应的影响。目标预测可能与旋转不稳,脊椎滑脱,脊柱后滑脱和狭窄相关的因素。背景数据摘要。该研究提供了有关小平面和韧带及其几何形状在保持节段稳定性中的作用的综合研究。以前的生物力学研究都没有详细探讨这些问题。方法。在具有或不具有后部元素(韧带和刻面)的L3-L4运动段上进行三维非线性有限元分析,这些运动受到矢状弯矩的影响。从稳定性的角度,研究了韧带和小平面(部分和全部)去除及其方向对节段反应的影响。结果。韧带在抵抗屈曲旋转和后向剪切方面起着重要作用,而小平面则主要用于阻止大范围的延伸旋转和前移。在大延伸和前向剪切载荷下,小面载荷和应力较高。与全小面切除术不同,选择性切除小面不会损害节段稳定性。小平面载荷取决于空间方向。结论。如果不事先损伤韧带,则屈曲或后移位旋转不稳(再狭窄)是不可能的,而在小面变性或摘除之前,伸展旋转或向前移位不稳(脊椎前屈)的可能性不大。小平面应力和位移分布预测,小关节骨关节炎或肥大导致脊柱狭窄最可能发生在屈曲-前路剪切载荷下。选择性小平面切除术可在不损害节段稳定性的情况下恢复椎管大小。更加矢状定向的小平面可能与脊椎滑脱的原因有关,而横向取向较少的小平面关节可能与旋转中的旋转不稳定性有关。

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