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Anisotropic elastic properties of human femoral cortical bone and relationships with composition and microstructure in elderly

机译:人类股骨皮质骨的各向异性弹性特性及老年组成和微观结构的关系

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摘要

The strong dependence between cortical bone elasticity at the millimetre-scale (mesoscale) and cortical porosity has been evidenced by previous studies. However, bone is an anisotropic composite material made by mineral, proteins and water assembled in a hierarchical structure. Whether the variations of structural and compositional properties of bone affect the different elastic coefficients at the mesoscale is not clear. Aiming to understand the relationships between bone elastic properties and compositions and microstructure, we applied state-of-the-art experimental modalities to assess these aspects of bone characteristics. All elastic coefficients (stiffness tensor of the transverse isotropic bone material), structure of the vascular pore network, collagen and mineral properties were measured in 52 specimens from the femoral diaphysis of 26 elderly donors. Statistical analyses and micromechanical modeling showed that vascular pore volume fraction and the degree of mineralization of bone are the most important determinants of cortical bone anisotropic mesoscopic elasticity. Though significant correlations were observed between collagen properties and elasticity, their effects in bone mesoscopic elasticity were minor in our data. This work also provides a unique set of data exhibiting a range of variations of compositional and microstructural cortical bone properties in the elderly and gives strong experimental evidence and basis for further development of biomechanical models for human cortical bone.
机译:先前的研究已经证明了毫米尺度(Mescle)和皮质孔隙度的皮质骨弹性之间的强烈依赖。然而,骨是由矿物质,蛋白质和水组装成等级结构的各向异性复合材料。骨结构和组成特性的变化是否影响了Mesoscale的不同弹性系数。旨在了解骨弹性性质和组合物与组织之间的关系,我们应用最先进的实验方式来评估骨骼特征的这些方面。所有弹性系数(横向各向同性骨材料的刚度张量),血管孔隙网络结构,胶原蛋白和矿物质的结构,在52个老年人的股骨骨干的52个标本中测量。统计分析和微机械建模显示,血管孔隙体积分数和骨的矿化程度是皮质骨各向异性介性弹性的最重要的决定因素。虽然在胶原蛋白属性和弹性之间观察到显着相关性,但它们在我们的数据中的骨髓间隙弹性的效果很小。这项工作还提供了一组独特的数据,表现出老年人的组成和微观结构皮质骨质性质的一系列变化,并为人体皮质骨骼进一步发展生物力学模型提供了强大的实验证据和基础。

著录项

  • 来源
    《Acta biomaterialia》 |2019年第2019期|共13页
  • 作者单位

    Sorbonne Univ INSERM CNRS Lab Imagerie Biomed F-75006 Paris France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM LYOS UMR 1033 F-69008 Lyon France;

    Sorbonne Univ INSERM CNRS Lab Imagerie Biomed F-75006 Paris France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM LYOS UMR 1033 F-69008 Lyon France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM LYOS UMR 1033 F-69008 Lyon France;

    Univ Claude Bernard Lyon 1 Univ Lyon IFSTTAR LBMC UMR T9406 F-69622 Lyon France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM U1206 CNRS UMR 5220 INSA Lyon CREATIS F-69621;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM LYOS UMR 1033 F-69008 Lyon France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM U1206 CNRS UMR 5220 INSA Lyon CREATIS F-69621;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM U1206 CNRS UMR 5220 INSA Lyon CREATIS F-69621;

    Univ Grenoble Alpes CNRS LIPhy F-38000 Grenoble France;

    Univ Claude Bernard Lyon 1 Univ Lyon IFSTTAR LBMC UMR T9406 F-69622 Lyon France;

    Univ Claude Bernard Lyon 1 Univ Lyon INSERM U1206 CNRS UMR 5220 INSA Lyon CREATIS F-69621;

    Sorbonne Univ INSERM CNRS Lab Imagerie Biomed F-75006 Paris France;

    Sorbonne Univ INSERM CNRS Lab Imagerie Biomed F-75006 Paris France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Cortical bone; Elasticity; Microstructure; Composition; Resonant ultrasound spectroscopy;

    机译:皮质骨;弹性;微观结构;组成;谐振超声波谱;

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