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Biomechanical Analysis for Low Lumbar SpineSegment Fusion with Different Cage Locations

机译:不同笼形位置的低腰椎节段融合的生物力学分析

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Aims: This paper aims to investigate the influence of cage location on the biomechanical behavior of lumbar spine with Transforaminal Lumbar Interbody Fusion (TLIF).Methodology: Firstly, a three-dimensional finite element (FE) model for L4-L5 low lumbar spine segment is established based on computed tomography scan images of a 30-year-old healthy male volunteer. Flexion, extension, lateral bending and torsion motions are simulated and compared with in-vitro cadaveric test data in the literature to validate the lumbar spine FE model. The intact spine model is then modified to TLIF model with one cage insertion under three different implant angles (30°, 45° and 60°).Results: Numerical results show that after fusion treatment the stress increases dramatically, and mainly distributes on cage and pedicle screw-rod system. Though 45° fusion does not have the lowest von Mises stress at the pedicle screw-rod system and the cage, it is still within an allowable strength limit. Besides, 45° fusion has the best balanced stability in four basic physiological motions. So if only one cage uses, the 45° posterior location may be more suitable for L4-L5 interbody fusion than 30° and 60° location.Conclusion: If only one cage uses, the 45° posterior location may be more suitable for L4-L5 interbody fusion than 30° and 60° location.
机译:目的:研究椎间孔经椎间孔椎体间融合术(TLIF)对保持架位置对腰椎生物力学行为的影响。方法:首先,针对L4-L5低腰椎节段的三维有限元(FE)模型根据一名30岁健康男性志愿者的计算机断层扫描图像建立。模拟屈曲,伸展,横向弯曲和扭转运动,并与文献中的体外尸体测试数据进行比较,以验证腰椎有限元模型。然后将完整的脊柱模型修改为TLIF模型,在三个不同的植入角度(30°,45°和60°)下一个笼子插入。结果:数值结果表明,融合治疗后应力显着增加,并且主要分布在笼子和椎弓根螺钉系统。尽管45°融合在椎弓根螺钉杆系统和保持架上没有最低的冯·米塞斯应力,但仍在允许的强度范围内。此外,45°融合在四个基本生理运动中具有最佳的平衡稳定性。因此,如果仅使用一个笼子,则45°的后部位置可能比30°和60°的位置更适合L4-L5椎间融合。结论:如果仅使用一个笼子,则45°的后部位置可能更适合L4- L5椎间融合比30°和60°位置高。

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