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多孔性和矿物质含量对皮质骨弹性常数的影响:一种多尺度方法。

Effect of porosity and mineral content on the elastic constants of cortical bone: a multiscale approach.

机构信息

Department of Mechanical Engineering, University of Seville, Escuela Superior de Ingenieros, Camino de los Descubrimientos s/n, 41092, Sevilla, Spain.

出版信息

Biomech Model Mechanobiol. 2011 Jun;10(3):309-22. doi: 10.1007/s10237-010-0236-4. Epub 2010 Jul 2.

Abstract

A micromechanical multiscale model which estimates the elastic properties of cortical bone as a function of porosity and mineral content is presented. The steps of the model are divided into two main phases. In the first one, the elastic properties of the collagen fibril, collagen fiber and lamella are given. In the second phase, porosity is included in the lamella in the form of canaliculi, lacunae and Haversian canals, to provide the elastic properties of the osteonal tissue. Then, a symmetrization technique is used to estimate the transversely isotropic elasticity tensor of the osteon. Osteons are superimposed using a self-consistent scheme, and finally, the fluid filling the pores is included to estimate the elastic constants of the undrained cortical tissue. The main novelty of the model presented here is the possibility of varying the mineral content of bone, considering that mineralization begins from the inner levels, initially intrafibrillar and then interfibrillar. Correlations of the elastic properties of cortical bone obtained with this model on the one hand, and porosity and ash fraction on the other hand, are estimated.

摘要

提出了一种微机械多尺度模型,该模型可以根据孔隙率和矿物质含量来估计皮质骨的弹性特性。模型的步骤分为两个主要阶段。在第一阶段,给出了胶原原纤维、胶原纤维和板层的弹性特性。在第二阶段,以管腔、腔隙和哈弗斯管的形式将孔隙包含在板层中,以提供骨单位组织的弹性特性。然后,使用对称化技术来估计骨单位的横向各向同性弹性张量。使用自洽方案对骨单位进行叠加,最后,包含填充孔隙的流体来估计未排水皮质组织的弹性常数。这里提出的模型的主要新颖之处在于可以改变骨的矿物质含量,因为矿化从内部水平开始,最初是在原纤维内,然后是在原纤维间。估计了用该模型获得的皮质骨弹性特性与孔隙率和灰分分数之间的相关性。

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