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首页> 外文期刊>Journal of Biomechanics >Comparison of eight published static finite element models of the intact lumbar spine: Predictive power of models improves when combined together
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Comparison of eight published static finite element models of the intact lumbar spine: Predictive power of models improves when combined together

机译:比较八个完整的腰椎静态静态有限元模型:组合在一起时,模型的预测能力得到提高

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Finite element (FE) model studies have made important contributions to our understanding of functional biomechanics of the lumbar spine. However, if a model is used to answer clinical and biomechanical questions over a certain population, their inherently large inter-subject variability has to be considered. Current FE model studies, however, generally account only for a single distinct spinal geometry with one set of material properties. This raises questions concerning their predictive power, their range of results and on their agreement with in vitro and in vivo values.Eight well-established FE models of the lumbar spine (L1-5) of different research centers around the globe were subjected to pure and combined loading modes and compared to in vitro and in vivo measurements for intervertebral rotations, disc pressures and facet joint forces.Under pure moment loading, the predicted L1-5 rotations of almost all models fell within the reported in vitro ranges, and their median values differed on average by only 2° for flexion-extension, 1° for lateral bending and 5° for axial rotation. Predicted median facet joint forces and disc pressures were also in good agreement with published median in vitro values. However, the ranges of predictions were larger and exceeded those reported in vitro, especially for the facet joint forces. For all combined loading modes, except for flexion, predicted median segmental intervertebral rotations and disc pressures were in good agreement with measured in vivo values.In light of high inter-subject variability, the generalization of results of a single model to a population remains a concern. This study demonstrated that the pooled median of individual model results, similar to a probabilistic approach, can be used as an improved predictive tool in order to estimate the response of the lumbar spine.
机译:有限元(FE)模型研究为我们对腰椎功能性生物力学的理解做出了重要贡献。但是,如果使用模型来回答特定人群的临床和生物力学问题,则必须考虑其固有的较大的受试者间变异性。但是,当前的有限元模型研究通常只考虑具有一组材料属性的单个不同的脊椎几何形状。这就产生了关于它们的预测能力,结果范围以及它们与体外和体内值的一致性的疑问。对全球不同研究中心的八个成熟的腰椎(L1-5)有限元模型进行了纯以及组合加载模式,并与体外和体内椎骨旋转,椎间盘压力和小关节力的测量结果进行比较。在纯力矩加载下,几乎所有模型的预计L1-5旋转都在报告的体外范围内,并且其中位数弯曲延伸的平均值平均仅相差2°,横向弯曲仅相差1°,轴向旋转相差5°。预测的小关节关节中位力和椎间盘压力也与已公布的体外中位值非常吻合。但是,预测范围更大,超过了体外报道的预测范围,尤其是对于小关节力。对于所有组合的加载模式,除了屈曲以外,预测的椎间盘节段中位旋转和椎间盘压力与体内测量值均符合良好。鉴于受试者之间的高变异性,单个模型的结果仍适用于总体关心。这项研究表明,与概率方法类似,单个模型结果的汇总中位数可以用作改进的预测工具,以估计腰椎的反应。

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