首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >In situ mechanical behavior of mineral crystals in human cortical bone under compressive load using synchrotron X-ray scattering techniques
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In situ mechanical behavior of mineral crystals in human cortical bone under compressive load using synchrotron X-ray scattering techniques

机译:使用同步加速器X射线散射技术在压缩载荷下人类皮质骨中矿物晶体的原位力学行为

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摘要

It is of great interest to delineate the effect of orientation distribution of mineral crystals on the bulk mechanical behavior of bone. Using a unique synergistic approach combining a progressive loading scheme and synchrotron X-ray scattering techniques, human cortical bone specimens were tested in compression to examine the in situ mechanical behavior of mineral crystals aligned in different orientations. The orientation distribution was quantitatively estimated by measuring the X-ray diffraction intensity from the (002) plane in mineral crystals. In addition, the average longitudinal (c-axis), transverse (a-axis), and shear strains of the subset of mineral crystals aligned in each orientation were determined by measuring the lattice deformation normal to three distinct crystallographic planes (i.e. 002, 310, and 213) in the crystals. The experimental results indicated that the in situ strain and stress of mineral crystals varied with orientations. The normal strain and stress in the longitudinally aligned mineral crystals were markedly greater than those in the transversely oriented crystals, whereas the shear stress reached a maximum for the crystals aligned in ±30° with respect to the loading direction. The maximum principal strain and stress were observed in the mineral crystals oriented along the loading axis, with a similar trend observed in the maximum shear strain and stress. By examining the in situ behavior, the contribution of mineral crystals to load bearing and the bulk behavior of bone are discussed.
机译:描绘矿物晶体的取向分布对骨骼整体力学行为的影响是非常有趣的。使用结合渐进加载方案和同步加速器X射线散射技术的独特协同方法,对人体皮质骨标本进行了压缩测试,以检查以不同方向排列的矿物晶体的原位机械行为。通过测量矿物晶体中(002)平面的X射线衍射强度来定量估计取向分布。此外,通过测量垂直于三个不同晶体学平面(即002、310)的晶格变形,可以确定沿每个方向排列的矿物晶体子集的平均纵向(c轴),横向(a轴)和剪切应变。和213)。实验结果表明,矿物晶体的原位应变和应力随取向而变化。纵向排列的矿物晶体的法向应变和应力显着大于横向排列的晶体,而相对于加载方向在±30°排列的晶体,剪切应力达到最大值。在沿加载轴取向的矿物晶体中观察到最大主应变和应力,在最大剪切应变和应力中观察到相似的趋势。通过检查原位行为,讨论了矿物晶体对承重的贡献和骨骼的整体行为。

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