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Finite Element Analysis for Comparison of Spinous Process Osteotomies Technique with Conventional Laminectomy as Lumbar Decompression Procedure

机译:棘突截骨术与常规椎板切除术作为腰椎减压术比较的有限元分析

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Purpose The purpose of this study was to evaluate and compare the biomechanical behavior of the lumbar spine after posterior decompression with the spinous process osteotomy (SPiO) technique or the conventional laminectomy (CL) technique using a finite element (FE) model. Materials and Methods Three validated lumbar FE models (L2-5) which represented intact spine and two decompression models using SPiO and CL techniques at the L3-4 segment were developed. In each model, the ranges of motion, the maximal von Mises stress of the annulus fibrosus, and the intradiscal pressures at the index segment (L3-4) and adjacent segments (L2-3 and L4-5) under 7.5 Nm moments were analyzed. Facet contact forces were also compared among three models under the extension and torsion moments. Results Compared to the intact model, the CL and SPiO models had increased range of motion and annulus stress at both the index segment (L3-4) and the adjacent segments under flexion and torsion. However, the SPiO model demonstrated a reduced range of motion and annulus stress than the CL model. Both CL and SPiO models had an increase of facet contact force at the L3-4 segment under the torsion moment compared to that of the intact model. Under the extension moment, however, three models demonstrated a similar facet contact force even at the L3-4 model. Conclusion Both decompression methods lead to postoperative segmental instability compared to the intact model. However, SPiO technique leads to better segmental stability compared to the CL technique.
机译:目的这项研究的目的是评估和比较减压后路椎体的脊柱生物截骨术(SPiO)技术或常规椎板切除术(CL)使用有限元(FE)模型的生物力学行为。材料和方法开发了三个经过验证的代表完整脊柱的腰部FE模型(L2-5),并在L3-4段使用SPiO和CL技术开发了两个减压模型。在每个模型中,分析了7.5 Nm力矩下的运动范围,纤维环的最大冯·米塞斯应力以及指标段(L3-4)和相邻段(L2-3和L4-5)的椎间盘内压力。 。还在伸长和扭转力矩下比较了三个模型之间的小面接触力。结果与完整模型相比,CL和SPiO模型在屈曲和扭转状态下在索引段(L3-4)和相邻段的运动范围和环向应力均有所增加。但是,与CL模型相比,SPiO模型显示出减小的运动范围和环向应力。与完整模型相比,CL和SPiO模型在扭转力矩下L3-4段的小面接触力均增加。然而,在拉伸力矩下,即使在L3-4模型中,三个模型也表现出相似的小平面接触力。结论与完整模型相比,两种减压方法均导致术后节段性不稳定。但是,与CL技术相比,SPiO技术导致更好的分段稳定性。

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