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Multi-scale characterization of swine femoral cortical bone.

机译:猪股骨皮质骨的多尺度表征。

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Multi-scale experimental work was carried out to characterize cortical bone as a heterogeneous material with hierarchical structure, which spans from nanoscale (mineralized collagen fibril), sub-microscale (single lamella), microscale (lamellar structures), to mesoscale (cortical bone) levels. Sections from femoral cortical bone from 6, 12, and 42 months old swine were studied to quantify the age-related changes in bone structure, chemical composition, and mechanical properties. The structural changes with age from sub-microscale to mesoscale levels were investigated with scanning electron microscopy and micro-computed tomography. The chemical compositions at mesoscale were studied by ash content method and dual energy X-ray absorptiometry, and at microscale by Fourier transform infrared microspectroscopy. The mechanical properties at mesoscale were measured by tensile testing, and elastic modulus and hardness at sub-microscale were obtained using nanoindentation. The experimental results showed age-related changes in the structure and chemical composition of cortical bone. Lamellar bone was a prevalent structure in 6 months and 12 months old animals, resorption sites were most pronounced in 6 months old animals, while secondary osteons were the dominant features in 42 months old animals. Mineral content and mineral-to-organic ratio increased with age. The structural and chemical changes with age corresponded to an increase in local elastic modulus, and overall elastic modulus and ultimate tensile strength as bone matured.
机译:进行了多尺度的实验工作,将皮质骨表征为具有层次结构的异质材料,其范围从纳米级(矿化的胶原原纤维),亚微米级(单层),微米级(层状结构)到中尺度(皮质骨)水平。研究了6、12、42个月大的猪股骨皮质骨的切片,以量化与年龄相关的骨骼结构,化学成分和力学性能的变化。使用扫描电子显微镜和计算机断层扫描技术研究了随着年龄的增长从亚微尺度到中微尺度的结构变化。用灰分含量法和双能X射线吸收法研究了中尺度的化学成分,用傅里叶变换红外光谱法研究了中尺度的化学成分。通过拉伸试验测量中尺度的机械性能,并使用纳米压痕获得亚微米尺度的弹性模量和硬度。实验结果表明,与年龄相关的皮质骨结构和化学成分会发生变化。在6个月和12个月大的动物中,层状骨是普遍的结构,在6个月大的动物中,吸收部位最明显,而次生骨质是42个月大的动物的主要特征。矿物质含量和矿物质/有机物比率随年龄增长而增加。随着年龄的增长,结构和化学变化对应于局部弹性模量的增加,并且随着骨骼的成熟,整体弹性模量和极限抗拉强度也随之增加。

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