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A model for the composite nanostructure of bone suggested by high-resolution transmission electron microscopy

机译:高分辨率透射电子显微镜显示的骨复合纳米结构模型

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We have imaged the spatially-preserved microtexture of biogenic apatite, retained together with its collagen template, in non-demineralized human bone using high-resolution transmission electron microscopy. Using ion-beam thinning, a specimen preparation method generally employed for inorganic minerals rather than for biological materials, we have imaged a composite nanostructure of bone not previously reported, and we propose a model for this nano-architecture that involves a box-construction of apatite plates and apatite sheets. This observation provides a new understanding of bone strength at the nanometre scale and suggests how post mortem enhancement of this texture by recrystallization probably accounts for the durability of ancient bone. Modern sheep bone (a close analogue for recently dead human bone) imaged in the same way also shows evidence of this composite architecture.
机译:我们已经使用高分辨率透射电子显微镜在未脱矿的人骨中成像了生物磷灰石的空间保留微观纹理及其胶原蛋白模板。使用离子束稀化(一种通常用于无机矿物而非生物材料的标本制备方法),我们对先前未报道的骨的复合纳米结构进行了成像,并提出了这种纳米结构的模型,该模型涉及盒的构造。磷灰石板和磷灰石板。该观察结果提供了对纳米级骨强度的新理解,并提出了通过重结晶后验尸增强这种质地的方式可能解释了古骨的耐久性。以同样的方式成像的现代绵羊骨骼(与最近死亡的人类骨骼非常相似)也显示了这种复合结构的证据。

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