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Finite element analysis of fibre-reinforced constitutive formulation of Cadisc-L

机译:Cadisc-L纤维增强本构配方的有限元分析

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The current study measures the mechanical behavior of both natural and the monobloc elastomeric disc prosthesis (CadiscTM-L) by employing a finite element method (FEM) to study the fiber-reinforced constitutive formulation provided in the literature. The three-dimensional geometry was created by computed tomography (CT) scan imaging technique. Frontal pure rotational, sagittal, and axial momentum of 7.5 N·m were applied on the top of L3 while the lower half of the L5 was fixed in all directions. This investigation was performed considering two stages: (1) intact L3–L5 lumbar spine (INT model), and (2) Cadisc implemented between L4 and L5 (IMP model). The numerical results for the INT model were validated by experimental data from the literature. Several parameters including the inter-segmental rotation, range of motion in flexion-extension, axial rotation and lateral bending were analyzed. Our numerical results show that the IMP model has a 50% reduction in the ‘range of motion’ and a 33% reduction in flexion in lateral bending compared to the INT model. These outcomes of this paper reveal the feasibility of applying a fibre-reinforced constitutive formulation to generate an accurate three-dimensional FEM model.
机译:当前的研究通过采用有限元方法(FEM)来研究文献中提供的纤维增强本构配方,从而测量天然和整体式弹性体椎间盘假体(CadiscTM-L)的机械性能。通过计算机断层扫描(CT)扫描成像技术创建了三维几何图形。在L3的顶部施加7.5 N·m的额叶纯正旋转,矢状和轴向动量,而L5的下半部在所有方向上均固定。这项研究考虑了两个阶段:(1)完整的L3-L5腰椎(INT模型),以及(2)在L4和L5之间实施的Cadisc(IMP模型)。 INT模型的数值结果已通过文献中的实验数据得到验证。分析了多个参数,包括节间旋转,屈伸运动范围,轴向旋转和横向弯曲。我们的数值结果表明,与INT模型相比,IMP模型的“运动范围”减少了50%,横向弯曲的弯曲减少了33%。本文的这些结果揭示了应用纤维增强的本构公式生成精确的三维有限元模型的可行性。

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