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Finite element analysis of vertebral end-plate failure under high dynamic axial load and its relation to age.

机译:高动态轴向载荷下椎骨终板破坏的有限元分析及其与年龄的关系。

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摘要

This research was aimed to develop the analytical model of functional spinal unit with the intent of understanding the contribution of intervertebral disc condition on the failure mechanism of end-plates under high rate dynamic loading. The condition of the disc for young people is healthy as compared to old person. The simple single degree of freedom DRI (Dynamic response Index) model was utilized to measure the spinal deflection under the influence of dynamic loading is incapable of estimating the potential injury due to disc swelling. The failure considered is always the vertebral body failure due to crushing, but in reality, condition of disc plays important role in deciding the failure of the vertebrae. The detailed axis-symmetry model was utilized to understand the effect of various factors on the end-plate failure mechanism and it is observed that deflection of the end plate is critical failure criteria. The age and the peak load were found to be the significant factors dictating end-plate failure. In young people the deflection of end plate was higher as compared to the old people due to hydrated disc capable of swelling under dynamic loads.;The simplified three dimensional model of vertebral motion segment L2-L3 was developed in order to understand the effect of nucleus pulpous pressure in end-plate deflection and to incorporate this model into the DRI model in order to estimate the effect of dynamic loading on the resulting spinal injury. The three dimensional model utilizes the MADYMO material models. The relaxation modulus for the nucleus and the annulus are obtained from the published results and the material parameters were mapped from these published data. Results of a sensitivity analysis indicated the major contribution of age on the end-plate failure. The result clearly indicated the need of modifying the present way of modeling the nucleus as incompressible fluid to viscoelastic incompressible fluid.;This study indicated that failure of the end-plate was an important link in the failure mechanism of the spinal unit; this failure lead to the transmission of the disc tissue into the vertebrae and caused the burst fracture.
机译:本研究旨在建立功能性脊柱单元的分析模型,以了解在高动态载荷下椎间盘条件对终板破坏机理的贡献。与老年人相比,年轻人的光盘状况良好。简单的单自由度DRI(动态响应指数)模型用于测量在动态载荷影响下的脊柱偏转,无法估计由于椎间盘肿胀而造成的潜在伤害。所考虑的破坏总是由于挤压而导致的椎体破坏,但实际上,椎间盘的状况在决定椎骨的破坏中起着重要的作用。详细的轴对称模型被用来了解各种因素对端板破坏机理的影响,并且观察到端板的挠曲是关键的破坏准则。发现年龄和峰值载荷是决定端板故障的重要因素。在年轻人中,端板的偏转比在老年人中要大,这是因为在动态载荷下能够消肿的水合椎间盘突出。;开发了简化的椎体运动段L2-L3的三维模型,以了解核的作用端板挠曲中的牙髓压力,并将此模型合并到DRI模型中,以估计动态载荷对脊柱损伤的影响。三维模型利用了MADYMO材料模型。核和环的弛豫模量是从已公开的结果中获得的,并且材料参数是从这些已公开的数据中绘制的。敏感性分析的结果表明,年龄是终板失效的主要原因。结果清楚地表明,有必要将目前作为不可压缩流体的核建模为粘弹性不可压缩流体的方法。研究表明端板的破坏是脊柱单元破坏机制的重要环节;这种失败导致椎间盘组织进入椎骨的传播,并导致爆裂性骨折。

著录项

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Engineering Biomedical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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