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Biomechanics of the anulus fibrosus and nucleus pulposus of the human lumbar intervertebral disc and the effects of degeneration.

机译:人腰椎间盘的纤维环和髓核的生物力学及其变性的影响。

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摘要

This dissertation provides an investigation and review of the material behavior of the anulus fibrosus and nucleus pulposus of the human lumbar intervertebral disc. The information, analyses, and conclusions of the studies presented reveal a new picture of the function and failure of the non-degenerate and degenerate intervertebral disc and provide a foundation which is necessary for accurate modeling of the disc.;A comprehensive series of studies on the mechanical behavior of the anulus fibrosus in tension is given. First, the tensile properties of single layer specimens of anulus are determined as a function of location within the disc to evaluate the behavior of the basic tensile structural unit of the highly organized anulus fibrosus. This is followed by a similar study on the tensile behavior of multiple layer samples which provides information regarding the interactions between each layer and anisotropy of the composite anulus. The effects of disc degeneration and aging on the tensile properties of the anulus fibrosus are also investigated to obtain a relationship between the morphological changes occurring in the anulus with degeneration and changes in its mechanical behavior.;The compressive behaviors of the anulus fibrosus under large deformations are also investigated. These material behaviors are described using a nonlinear biphasic mixture theory to evaluate the interactions between solid and fluid phases of the anulus. The effect of specimen orientation on these compressive material properties is also studied in order to evaluate the anisotropy of the anulus in confined compression. The results of this study are necessary for future modeling of the intervertebral disc with important implications for nutritional pathways.;The variety and polydispersity of the biomacromolecules comprising the nucleus pulposus gives rise to unique viscoelastic material behaviors. This dissertation investigates several forms for the relaxation spectrum in a viscoelastic model in order to obtain a model capable of describing the predominant viscoelastic behaviors of the non-degenerate and degenerate nucleus pulposus in shear. This study provides the first comprehensive series of tests on the load-deformation behavior of the nucleus pulposus.
机译:本论文对人腰椎间盘纤维环和髓核的物质行为进行了研究和综述。所提供研究的信息,分析和结论揭示了未退化和退化的椎间盘的功能和失效的新情况,并为精确建模椎间盘提供了基础。给出了纤维环在张力下的力学行为。首先,根据椎间盘内位置确定肛门环单层标本的拉伸性能,以评估高度组织的肛门环纤维的基本拉伸结构单元的行为。接下来是对多层样品拉伸性能的类似研究,该研究提供了有关每层之间的相互作用以及复合环的各向异性的信息。还研究了椎间盘退变和老化对纤维环拉伸性能的影响,从而获得了在纤维环中发生的形态学变化与退化及其力学行为之间的关系。纤维环在大变形下的压缩行为也进行了调查。这些材料的行为是使用非线性双相混合理论描述的,以评估环空固相和液相之间的相互作用。还研究了试样取向对这些压缩材料特性的影响,以评估有限压缩中环的各向异性。这项研究的结果对于未来的椎间盘建模具有重要意义,对营养途径具有重要意义。组成髓核的生物大分子的多样性和多分散性引起了独特的粘弹性物质行为。本文研究了粘弹性模型中弛豫谱的几种形式,以获得能够描述未变性和变性髓核在剪切过程中的主要粘弹性行为的模型。这项研究为髓核的载荷-变形行为提供了第一个全面的测试系列。

著录项

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Biology Anatomy.;Engineering Biomedical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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