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A mixture model with evolving mass densities for describing synthesis and resorption phenomena in bones reconstructed with bio-resorbable materials

机译:具有不断变化的质量密度的混合模型,用于描述利用生物可吸收材料重建的骨骼中的合成和吸收现象

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The multiform bio-mechanical phenomena occurring in bones grafted with the addition of artificial materials urge for the formulation of models which are sophisticated enough to describe their complexity. In the present paper we present a continuum poro-elastic mixture model in which two apparent mass densities are introduced to describe, at a macroscopic length scale, situations in which bone tissues and artificial materials coexist and interact. We focus on the final healing stage process when the bone remodelling becomes the dominant phenomenon. Artificial materials used are obviously to be bio-compatible and must resist to externally applied mechanical loads. More recently in order to favour bone tissue re-growth in grafts, which improves the long term performances of grafted bones, it has been conceived to use substitute materials which may be, similarly to bone tissue, bio-resorbed by osteoclasts and eventually replaced by newly synthesised living tissue. To account for resorption and synthesis phenomena suitable evolution equations are introduced for Lagrangian mass densities of the mixture constituents in which an integrodifferential operator defined on deformation fields appears. This operator is chosen to model some features of the coupling between mechanical compliance and biological bone tissue activity. The obtained system of integrodifferential equations is not trivial also when one considers one dimensional cases. Treating this simplified situations will allow us to individuate more easily some important remodelling scenarios. The numerical simulations which we present here show that the introduced model is promising and deserves to be developed to give previsions in more realistic applications.
机译:在骨骼中发生的多种形式的生物力学现象,再加上人工材料的加入,促使人们制定出足以描述其复杂性的复杂模型。在本文中,我们介绍了一种连续的孔隙弹性混合物模型,其中引入了两种表观质量密度,以宏观尺度描述骨组织与人造材料共存并相互作用的情况。我们将重点放在骨骼重塑成为主要现象的最终愈合阶段。显然,所使用的人造材料具有生物相容性,必须抵抗外部施加的机械负载。最近,为了促进移植物中的骨组织再生,从而改善了移植骨的长期性能,人们设想使用替代材料,该替代材料与破骨细胞相似,可以被破骨细胞生物吸收,最终被替代。新合成的活组织。为了考虑吸收和合成现象,针对混合物成分的拉格朗日质量密度引入了合适的演化方程,其中出现了在变形场上定义的积分微分算子。选择该算子来模拟机械顺应性和生物骨组织活动之间的耦合特征。当考虑一维情况时,所获得的积分微分方程组也不是简单的。处理这种简化的情况将使我们能够更轻松地区分一些重要的重塑方案。我们在此提供的数值模拟表明,引入的模型很有希望,值得发展,以便在更实际的应用中提供前提。

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