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Biomechanical analysis of lumbar interbody fusion cages with various lordotic angles: a finite element study

机译:不同脊柱前凸角度的腰椎椎间融合器的生物力学分析:有限元研究

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摘要

Inappropriate lordotic angle of lumbar fusioncage could be associated with cage damage or subsidence. The biomechanical influence of cage lordotic angle on lumbar spine has not been fully investigated. Four surgical finite element models were constructed by inserting cages with various lordotic angles at L3-L4 disc space. The four motion modes were simulated. The range of motion (ROM) decreased with increased lordotic angle of cage in flexion, extension, and rotation, whereas it was not substantially changed in bending. The maximum stress in cage decreased with increased lordotic angle of cage in all motion modes. The maximum stress in endplate at surgical level increased with increased lordotic angle of cage in flexion and rotation, whereas it was not substantially changed in extension and bending. The facet joint force (FJF) was much smaller than that for the intact conditions in extension, bending, and rotation, while it was not substantially changed in flexion. In conclusion, the ROM, stresses in the cage and endplate at surgical level are sensitive to the lordotic angle of cage. The increased cage lordotic angle may provide better stability and reduce the risk of cage damage, whereas it may increase the risk of subsidence in flexion and rotation.
机译:腰椎融合器的脊柱前凸角不合适可能与笼损或下陷有关。笼罩前凸角对腰椎的生物力学影响尚未得到充分研究。通过在L3-L4椎间盘间隙插入具有各种前凸角的笼子,构建了四个外科手术有限元模型。模拟了四种运动模式。运动范围(ROM)随保持架在弯曲,伸展和旋转中的前凸角增加而减小,而在弯曲时则没有实质性变化。在所有运动模式下,保持架的最大应力均随着保持架前凸角的增大而减小。手术水平终板中的最大应力随着笼头弯曲和旋转时脊柱前凸角的增加而增加,而在伸展和弯曲时则没有太大变化。在伸展,弯曲和旋转时,小关节力(FJF)远小于完整状态的关节力,而屈曲力却基本没有变化。总而言之,ROM,手术水平的笼子和端板应力对笼罩的脊柱前凸角度敏感。保持架前凸角的增加可能会提供更好的稳定性,并降低保持架损坏的风险,而可能会增加屈曲和旋转下陷的风险。

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