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Application of high-pressure Raman spectroscopy to bone biomechanics

机译:高压拉曼光谱对骨骼生物力学的应用

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摘要

Compressive stress on bone, cartilage and other tissues accompanies normal activity. While the biomechanical properties of many tissues are reasonably well-understood at many levels of structure, surprisingly little is known at the ultrastructural and crystal lattice levels. We show how the use of diamond anvil cell Raman microspectroscopy enables a deeper understanding of the response of tissue to mechanical stress. We discuss the reversible responses of deproteinated and intact bone powders to hydrostatic pressure and compare these responses to those of a model compound, synthetic carbonated apatite.
机译:对骨骼,软骨和其他组织的压缩应力伴随着正常活动。虽然许多组织的生物力学性质在许多结构水平的结构中合理地理解,但在超微结构和晶格水平上令人惊讶地众所周知。我们展示了金刚石砧座式raman微型光谱检查的使用是如何更深入地了解组织对机械应力的响应。我们讨论贫额和完整的骨粉对静压压力的可逆反应,并将这些反应与模型化合物,合成碳酸磷灰石的响应进行比较。

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