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首页> 外文期刊>Bio-medical materials and engineering >Biomechanical evaluation of four surgical scenarios of lumbar fusion with hyperlordotic interbody cage: A finite element study
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Biomechanical evaluation of four surgical scenarios of lumbar fusion with hyperlordotic interbody cage: A finite element study

机译:高级互补互窗笼腰椎融合四种外科手术的生物力学评价:有限元研究

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摘要

BACKGROUND:Lumbar spinal fusion in the interbody space is augmented with interbody fusion cages to provide structural support while arthrodesis occurs. Subsidence is a serious complication of interbody fusion. However, the biomechanical influence of anterior longitudinal ligament (ALL) and pedicle screws on subsidence has not been fully understood. OBJECTIVE:To investigate biomechanical effects of the hyperlordotic cages in different surgical conditions using finite element analysis. METHODS:Four surgical finite element (FE) models were constructed by inserting 15 degree lordosis cage at the L3-L4 disc space. The four surgical conditions were ALL intact (M1), ALL resected (M2), ALL intact and bilateral pedicle screws (M3), and ALL resected and bilateral pedicle screws (M4). Follow loads were applied at the L2 vertebral body while the inferior surface of L5 was fixed. FEA was implemented to simulate the four motion modes and biomechanical properties of four fusion scenarios with hyperlordotic interbody cage were compared. RESULTS:The range of motion (ROM) and facet joint force (FJF) at L3-L4 decreased significantly after fusion during all the motion modes. The cage stress and endplate stress at L3-L4 increased significantly after fusion during all the motion modes. The cage stress and endplate stress at L3-L4 for M3 and M4 were smaller than that for M1 and M2 during all the motion modes. The FJF at L3-L4 for M3 and M4 were smaller than that for M1 and M2 during extension, bending, and rotation. CONCLUSIONS:ALL has little effect on the biomechanics after lumbar fusion with hyperlordotic interbody cage. The bilateral pedicle screws significantly decreased the stress in cage, stress in endplate at L3-L4, and lowered facet contact force except for flexion mode. The implication is that the supplemental bilateral pedicle screws are recommended whether or not the ALL is resected.
机译:背景:椎体间隙中的腰椎脊柱融合在椎体间融合笼中加强,以提供结构支持,而关节效果发生。沉降是椎体间融合的严重复杂化。然而,未得到完全理解前纵韧带(全部)和椎弓根螺钉的生物力学影响。目的:使用有限元分析研究不同外科病症在不同手术条件下的生物力学效应。方法:通过在L3-L4磁盘空间中插入15度Lottens Cage,构建了四种外科有限元(FE)模型。四种手术条件全部完整(M1),所有切除(M2),全部完整和双侧椎弓根螺钉(M3),以及所有切除的和双侧椎弓根螺钉(M4)。遵循载荷在L2椎体上施加,而L5的下表面是固定的。实施FEA以模拟四种融合情景的四种运动模式和生物力学特性,比较了高相框互连笼。结果:在所有运动模式下融合后L3-L4的运动范围(ROM)和小相接头(FJF)显着下降。在所有运动模式下融合后L3-L4的笼应力和端板应力显着增加。对于M3和M4的L3-L4,笼应力和端板应力小于所有运动模式期间M1和M2的L3-L4。用于M3和M4的L3-L4的FJF小于延伸,弯曲和旋转期间M1和M2的FJF。结论:腰椎融合后,所有对生物力学的影响几乎没有影响高相框互联网静脉笼。双侧椎弓根螺钉显着降低了笼中的应力,L3-L4的端板上的应力,除了屈曲模式之外的小平面接触力。这一含义是,建议辅助双边椎弓根螺钉是否被切除。

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