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Review of 'Universal' Rules Governing Bone Composition, Organization, and Elasticity Across Organizational Hierarchies

机译:审查有关组织层次结构的骨组成,组织和弹性的“通用”规则

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"Universal" organizational patterns in bone are reviewed and presented, in terms of mathematically expressed rules concerning the composition and elasticity of a large variety of tissues. Firstly, experimental data sets gained from dehydration-demineralization tests, dehydration-deorganification tests, and dehydration-ashing tests are thoroughly analyzed. On this basis, bilinear relations can be identified, between the mass density of the extracellular bone matrix on the one hand, and the apparent mass densities of its basic constituents (water, hydroxyapatite, and organic matter), on the other hand. Secondly, the question as to how hydroxyapatite is distributed in bone tissue is addressed. To that end, mass and volume measurements gained from wet, dehydrated, and demineralized tissue samples, as well as optical densities provided by transmission electron microscopy, are studied, confirming a rule on how the mineral is partitioned between fibrillar and extrafibrillar spaces in the ultrastructure of bone. Thirdly, a swelling rule for hydrating collagen is validated through processing of experimental data from X-ray diffraction, vacuum drying, and mass measurements, quantifying the change of the bone tissue composition upon hydration. And fourthly, application of the mass conservation law to extracellular bone matrix considered as closed thermodynamic system, allows for studying the change of bone tissue composition during mineralization. Finally, these compositional rules, which are shown to be "universally" valid throughout the vertebrate kingdom, enter a micromechanical homogenization scheme for upscaling the experimentally accessible elastic properties of the elementary mechanical building blocks of bone (hydroxy apatite minerals, type I collagen, and water with non-collageneous organics) to the macroscopic scale of cortical and trabecular bone.
机译:根据涉及多种组织的组成和弹性的数学表达规则,回顾并介绍了骨骼中的“通用”组织模式。首先,对从脱水-脱矿化试验,脱水-脱组织试验和脱水灰化试验获得的实验数据进行了全面分析。在此基础上,一方面可以确定细胞外骨基质的质量密度与其基本成分(水,羟磷灰石和有机物)的表观质量密度之间的双线性关系。其次,解决了关于羟基磷灰石如何在骨组织中分布的问题。为此,研究了从湿的,脱水的和脱矿质的组织样品中获得的质量和体积测量值,以及透射电子显微镜提供的光学密度,从而确定了矿物如何在超微结构的原纤维和原纤维空间之间分配的规则。骨头第三,通过处理来自X射线衍射,真空干燥和质量测量的实验数据验证了水合胶原的溶胀规则,量化了水合时骨组织组成的变化。第四,将质量守恒定律应用于被认为是封闭的热力学系统的细胞外骨基质,可以研究矿化过程中骨组织组成的变化。最后,这些组成规则(在整个脊椎动物界中被普遍证明是“普遍”有效的)进入了微机械均质化方案,以扩大骨骼的基本机械构件(羟基磷灰石矿物,I型胶原和水和非胶原有机物)到皮质和小梁骨的宏观尺度。

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