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Techniques to assess bone ultrastructure organization: orientation and arrangement of mineralized collagen fibrils

机译:评估骨超微结构的技术:矿化胶原蛋白原纤维的取向和排列

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摘要

Bone's remarkable mechanical properties are a result of its hierarchical structure. The mineralized collagen fibrils, made up of collagen fibrils and crystal platelets, are bone's building blocks at an ultrastructural level. The organization of bone's ultrastructure with respect to the orientation and arrangement of mineralized collagen fibrils has been the matter of numerous studies based on a variety of imaging techniques in the past decades. These techniques either exploit physical principles, such as polarization, diffraction or scattering to examine bone ultrastructure orientation and arrangement, or directly image the fibrils at the sub-micrometre scale. They make use of diverse probes such as visible light, X-rays and electrons at different scales, from centimetres down to nanometres. They allow imaging of bone sections or surfaces in two dimensions or investigating bone tissue truly in three dimensions, in vivo or ex vivo, and sometimes in combination with in situ mechanical experiments. The purpose of this review is to summarize and discuss this broad range of imaging techniques and the different modalities of their use, in order to discuss their advantages and limitations for the assessment of bone ultrastructure organization with respect to the orientation and arrangement of mineralized collagen fibrils.
机译:骨骼的卓越机械性能是其分层结构的结果。矿化的胶原蛋白原纤维由胶原蛋白原纤维和晶体血小板组成,是超微结构水平上的骨骼构建基块。在过去的几十年中,基于矿化胶原蛋白原纤维的取向和排列的骨骼超微结构一直是众多研究的课题。这些技术要么利用物理原理(例如极化,衍射或散射)来检查骨骼超微结构的方向和排列,要么直接以亚微米级对原纤维成像。他们利用各种探针,例如从厘米到纳米的不同尺度的可见光,X射线和电子。它们允许在体内或离体下以二维方式对骨骼切片或表面进行成像,或以三维方式真正地研究骨骼组织,有时还可以与原位机械实验相结合。这篇综述的目的是总结和讨论这种广泛的成像技术及其使用的不同方式,以便讨论其在矿化胶原蛋白原纤维的取向和排列方面评估骨超微结构组织的优点和局限性。 。

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