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Tissue mineral density measured at the sub-millimetre scale can provide reliable statistics of elastic properties of bone matrix

机译:在亚毫米刻度测量的组织矿物密度可以提供骨基质的可靠统计数据

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摘要

Reliability of multiscale models of bone is related to the accuracy of the experimental information available on bone microstructure. X-ray-based imaging techniques allow to inspect bone structure and mineralization in vitro at the micrometre scale. However, spatial resolution achievable in vivo is much coarser and can produce blurry, uncertain information on bone microstructure. Working with uncertain data calls for new modelling paradigms able to propagate uncertainty through the scales. In this paper we investigate the effects of uncertain bone mineralization on the elastic coefficients of the bone matrix. To this aim, some stochastic concepts were developed and compared with one another in order to identify the best way to account for uncertain input data. These concepts step from a deterministic micromechanical model of bone matrix which was extended in order to account for uncertain bone composition. Uncertainty was introduced by assuming to know only mean value and dispersion of the parameters describing bone composition. Thus, these parameters were modelled as random variables and their distribution functions were obtained using the maximum entropy principle. Either the tissue mineral density (TMD) or the ensuing volume fractions of collagen and mineral were used to describe uncertain bone composition. Moreover, mean value and dispersion were estimated at the scales of either 10 or a few 100 mu m, representative of standard in vitro and in vivo spatial resolutions, respectively. Analysis of these modelling concepts suggests that TMD measured at the sub-millimetre scale can be used to obtain reliable statistical information about the elastic coefficients of bone matrix.
机译:多尺度骨骼模型的可靠性与骨髓微观结构上可用的实验信息的准确性有关。基于X射线的成像技术允许在微米级别检查骨骼结构和矿化。然而,体内可实现的空间分辨率较大,可以产生模糊,可以产生关于骨微观结构的模糊不实的信息。使用不确定的数据呼叫,以便能够通过秤传播不确定性的新建模范式。在本文中,我们研究了不确定的骨矿化对骨基质弹性系数的影响。为此目的,一些随机概念彼此开发并相互比较,以确定解释不确定输入数据的最佳方法。这些概念来自骨基质的确定性微机械模型,延长,以便考虑不确定的骨组合物。通过假设仅知道描述骨组合物的参数的平均值和分散来引入不确定性。因此,这些参数被建模为随机变量,并使用最大熵原理获得其分布函数。使用组织矿物密度(TMD)或随后的胶原和矿物质的体积分数来描述不确定的骨组合物。此外,在10或10100μm的尺度上估计平均值和分散,分别在体外和体内空间分辨率中的标准分别估计。对这些建模概念的分析表明,在亚毫米尺度上测量的TMD可用于获得关于骨基质的弹性系数的可靠统计信息。

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