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Elastic moduli of untreated, demineralized and deproteinized cortical bone: Validation of a theoretical model of bone as an interpenetrating composite material

机译:未经处理,去矿物质和去蛋白的皮质骨的弹性模量:骨作为互穿复合材料的理论模型的验证

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摘要

A theoretical experimentally based multi-scale model of the elastic response of cortical bone is presented. It portrays the hierarchical structure of bone as a composite with interpenetrating biopolymers (collagen and non-collagenous proteins) and minerals (hydroxyapatite), together with void spaces (porosity). The model involves a bottom-up approach and employs micromechanics and classical lamination theories of composite materials. Experiments on cortical bone samples from bovine femur include completely demineralized and deproteinized bones as well as untreated bone samples. Porosity and microstructure are characterized using optical and scanning electron microscopy, and micro-computed tomography. Compression testing is used to measure longitudinal and transverse elastic moduli of all three bone types. The characterization of structure and properties of these three bone states provides a deeper understanding of the contributions of the individual components of bone to its elastic response and allows fine tuning of modeling assumptions. Very good agreement is found between theoretical modeling and compression testing results, confirming the validity of the interpretation of bone as an interpenetrating composite material.
机译:提出了理论上基于实验的皮质骨弹性反应的多尺度模型。它将骨骼的层次结构描绘为具有互穿性的生物聚合物(胶原蛋白和非胶原蛋白)和矿物质(羟基磷灰石)以及空隙(多孔性)的复合材料。该模型涉及自下而上的方法,并采用了微力学和复合材料的经典层压理论。对来自牛股骨的皮质骨样品进行的实验包括完全脱盐和脱蛋白的骨骼以及未经处理的骨样品。孔隙率和微观结构使用光学和扫描电子显微镜以及显微计算机断层扫描进行表征。压缩测试用于测量所有三种骨骼类型的纵向和横向弹性模量。这三种骨骼状态的结构和特性的表征提供了对骨骼各个组成部分对其弹性响应的贡献的更深入的了解,并允许对模型假设进行微调。理论模型和压缩测试结果之间找到了很好的一致性,证实了将骨解释为互穿复合材料的有效性。

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