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Finite Element Modeling of the Functional Spinal Unit under Compression Loads

机译:压缩负荷下功能脊柱单元的有限元建模

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The present paper implements Finite Element Analysis (FEA) models to investigate the effects of changing nucleus pulposus status on the mechanical response of the human intervertebral disc under axial compression loads. The functional unit, which includes the upper, lower vertebrae and the intervertebral disc of the lumbar region, was considered in the modeling. The material properties of the disc were modeled as linear elastic. The variations of the nucleus pulposus were studied in such disc without a nucleus pulposus with a nucleus pulposus, and with partial removal of nucleus pulposus to determine the effects of nucleus pulposus situation on the mechanics of the disc. The findings showed that the response of the disc is susceptible to the nucleus pulposus condition. The response of the model was in line with those of the literature data.
机译:本文实施了有限元分析(FEA)模型,以探讨改变核脉搏状态对轴向压缩负荷下人椎间盘机械响应的影响。 在建模中考虑了包括腰椎区域的上部,下椎骨和椎骨区域的椎间盘的功能单元。 盘的材料特性被建模为线性弹性。 在这种椎间盘中研究了核浆气的变化,没有用核浆气,部分去除核浆气,以确定细胞核浆气的影响。 研究结果表明,盘的响应易受核浆气病症的影响。 该模型的响应与文献数据的响应符合。

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