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Anisotropic Multishell Analytical Modeling of an Intervertebral Disk Subjected to Axial Compression

机译:轴向压缩的椎间盘各向异性多壳分析模型

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Studies on intervertebral disk (IVD) response to various loads and postures are essential to understand disk's mechanical functions and to suggest preventive and corrective actions in the workplace. The experimental and finite-element (FE) approaches are wellsuited for these studies, but validating their findings is difficult, partly due to the lack of alternative methods. Analytical modeling could allow methodological triangulation and help validation of FE models. This paper presents an analytical method based on thin-shell, beam-on-elastic-foundation and composite materials theories to evaluate the stresses in the anulus fibrosus (AF) of an axisymmetric disk composed of multiple thin lamellae. Large deformations of the soft tissues are accounted for using an iterative method and the anisotropic material properties are derived from a published biaxial experiment. The results are compared to those obtained by FE modeling. The results demonstrate the capability of the analytical model to evaluate the stresses at any location of the simplified AF. It also demonstrates that anisotropy reduces stresses in the lamellae. This novel model is a preliminary step in developing valuable analytical models of IVDs, and represents a distinctive groundwork that is able to sustain future refinements. This paper suggests important features that may be included to improve model realism.
机译:研究椎间盘(IVD)对各种负荷和姿势的反应对于了解椎间盘的机械功能以及建议工作场所的预防和纠正措施至关重要。实验和有限元(FE)方法非常适合这些研究,但是很难验证其发现,部分原因是缺乏替代方法。分析建模可以进行方法三角剖分,并有助于验证有限元模型。本文提出了一种基于薄壳,弹性梁基础和复合材料理论的分析方法,以评估由多个薄薄板组成的轴对称圆盘在纤维环中的应力。使用迭代方法解决了软组织的大变形,并且各向异性材料的性能来自已发表的双轴实验。将结果与通过有限元建模获得的结果进行比较。结果证明了分析模型能够评估简化AF的任何位置的应力。这也证明了各向异性降低了薄片中的应力。这个新颖的模型是开发有价值的IVD分析模型的第一步,并且代表了能够维持未来改进的独特基础。本文提出了可能包含的重要特征,以改善模型的真实性。

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