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A Biomechanical Study of L5-S1 Low-Grade Isthmic Spondylolisthesis Using a Personalized Finite Element Model

机译:使用个性化有限元模型的L5-S1低级白血管椎间盘中的生物力学研究

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The pars interarticularis lesions in isthmic spondylolisthesis result generally from mechanical stresses in the neural arch due to repetitive overload during daily activities or to trunk imbalance resulting from spino-pelvic morphology. The L5-pelvis junction of a low-grade isthmic spondylolisthesis patient was modeled using a personalized finite element model to investigate the biomechanical behavior of the L5-S1 motion segment. Stress distribution and facet contact pressure in the altered segment were analyzed under 500 N simulating the gravitational load. High von Mises stresses were located in the pars interarticularis, in the pedicle, and in the outer region of the annulus. A high contact pressure was obtained at the facet surfaces. Influenced by the pelvic morphology, the inclination of L5-S1 junction affects the resulting shear forces and may play a crucial role in spondylolisthesis development.
机译:Isthmic Spondylishishissis中的癌间隔病变通常来自神经拱的机械应力由于在日常活动期间的重复过载,或由脊髓盆腔形态引起的躯干不平衡。使用个性化的有限元模型建模低级白血病脊柱型患者的L5-骨盆结,以研究L5-S1运动段的生物力学行为。在模拟重力载荷的500 n下分析改变段中的应力分布和刻面接触压力。高vonmmes应力位于椎弓根和环形的外部区域中。在小平面上获得高接触压力。受盆腔形态的影响,L5-S1结的倾斜度影响所得的剪切力,并且可能在脊椎肌细胞间发育中发挥至关重要的作用。

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