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Multiaxial validation of a finite element model of the intervertebral disc with multigenerational fibers to establish residual strain

机译:多聚纤维建立残留菌椎间盘有限元模型的多轴验证

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摘要

Finite element models of the intervertebral disc are used to address research questions that cannot be tested through typical experimentation. A disc model requires complex geometry and tissue properties to be accurately defined to mimic the physiological disc. The physiological disc possesses residual strain in the annulus fibrosus (AF) due to osmotic swelling and due to inherently pre‐strained fibers. We developed a disc model with residual contributions due to swelling‐only, and a multigeneration model with residual contributions due to both swelling and AF fiber pre‐strain and validated it against organ‐scale uniaxial, quasi‐static and multiaxial, dynamic mechanical tests. In addition, we demonstrated the models' ability to mimic the opening angle observed following radial incision of bovine discs. Both models were validated against organ‐scale experimental data. While the swelling only model responses were within the experimental 95% confidence interval, the multigeneration model offered outcomes closer to the experimental mean and had a bovine model opening angle within one SD of the experimental mean. The better outcomes for the multigeneration model, which allowed for the inclusion of inherently pre‐strained fibers in AF, is likely due to its uniform fiber contribution throughout the AF. We conclude that the residual contribution of pre‐strained fibers in the AF should be included to best simulate the physiological disc and its behaviors.
机译:椎间盘的有限元模型用于解决无法通过典型实验测试无法测试的研究问题。光盘模型需要复杂的几何形状和组织特性,以准确地定义以模拟生理盘。由于渗透性肿胀,生理圆盘在环纤维(AF)中具有残留菌株,并且由于固有的预剥离纤维。我们开发了一种圆盘模型,由于仅膨胀,由于肿胀和AF纤维纤维预态,并且验证了具有剩余贡献的多粒模型,并验证了器官规模的单轴,准静态和多轴的动态机械测试。此外,我们证明了模型模拟了牛圆盘径向切口后观察到的开口角度的能力。两种模型都针对器官规模的实验数据验证。虽然只有模型反应在实验95%的置信区间内,但多粒模型提供了更接近实验均值的结果,并且在实验性平均值的一个SD内具有牛模型开口角度。允许在AF中包含固有的预束纤维的多粒模型的更好的结果可能是由于其在整个AF中的均匀纤维贡献。我们得出结论,应包括在AF中的预束性纤维的残余贡献,以最好地模拟生理椎间盘及其行为。

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