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Development and Validation of a Three-Dimensional Finite Element Model of Cervical Spine (C3-C5)

机译:颈椎三维有限元模型的开发与验证(C3-C5)

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The objective of this investigation is to develop a detailed, non-linear asymmetric three-dimensional anatomically and mechanically accurate FE model of complete middle cervical spine (C3-C5) using Hypermesh and MSC.Marc software. To achieve this goal, the components of the cervical spine are modeled using 20-noded hexagonal elements. The model includes the intervertebral disc, cortical bone, cancellous bone, endplates, and ligaments. The structure and dimensions of each spinal component are compared with experimentally measured values. In addition, the soil mechanics formulation of MSC.Marc finite element software is applied to model the mechanical behaviour of vertebrae and intervertebral discs as linear isotropic two-phase (biphasic) material. The FE simulation is conducted to investigate compression, flexionextension and rightLeft lateral bending modes. The simulation results are validated and compared closely with the published experimental data and the existing FE models. In general, results show greater flexibility in flexion and less flexibility in extension. The flexion/extension curves are asymmetric with a greater magnitude in flexion than in extension. In addition, the variations of the predicted lateral C4-C5 disc bulge are investigated and the results show that the maximum disc bulge occurs at the C4-C5 anterior location.
机译:本研究的目的是使用HyperMesh和MSC.MARC软件开发完整的中间颈椎(C3-C5)的详细,非线性不对称三维解剖学和机械准确的FE模型。为了实现这一目标,宫颈脊柱的组分是使用20点升级的六边形元素进行建模的。该模型包括椎间盘,皮质骨,松质骨,端板和韧带。将每个脊柱组分的结构和尺寸与实验测量值进行比较。此外,应用MSC.MARC的土壤力学制剂有限元软件应用于模拟椎骨和椎间盘的力学行为作为线性各向同性两相(双相)材料。进行FE模拟以调查压缩,屈曲延伸和右左侧弯曲模式。仿真结果验证并与已发布的实验数据和现有的FE模型密切相关。通常,结果在屈曲和延伸方面的柔韧性方面具有更大的灵活性。屈曲/延伸曲线是不对称的,屈曲大于屈折而不是延伸。另外,研究了预测的横向C4-C5盘凸起的变化,结果表明,最大圆盘凸起发生在C4-C5前部位置。

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