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- W204390423 abstract "Abstract: Various methods in the literature proposesequations to calculate thestiffness as a function of density of bone tissue such as apparent density and ashdensity among others[Helgason, Perilli, Schileo, Taddei, Brynjolfsson and Vice-conti, 2008]. Other ones present a value of an equivalent elasticity modulus, ob-tained by statistical adjustments of curves generated through mechanical compres-sion tests over various specimens[Chevalier, Pahr, Allmer, Charlebois and Zysset,2007; Cuppone, Seedhom, Berry and Ostell, 2004]. Bone tissue is a material with-different behaviors according to the scale of observation. It has a complex com-posite hierarchical structure, which is responsible for assign optimal mechanicalproperties. Its characteristics, composition and mechanical properties depend onthe level at which the material is evaluated[Fritsch and Hellmich, 2007; Hamed,Lee and Jasiuk, 2010]. This paper presents a methodology for computational me-chanical simulation of trabecular bones based on the mechanical properties of theirelements, hydroxyapatite, type I collagen and non-collagenous proteins with water,and the concentration of these ones obtained by microtomography.Keywords: Microtomography, Trabecular Bone, Properties of Materials, Biome-chanics, Computer Simulation, Finite Elements.1 IntroductionBone is a highly specialized form of conjunctive tissue whose function is to sup-port the higher vertebrates. It is a complex living tissue in which the extracellularmatrix is mineralized, providing rigidity and strength to the skeleton, but maintain-ing certain degree of elasticity. Its composition can be separated into an organic" @default.
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- W204390423 date "2011-09-01" @default.
- W204390423 modified "2023-09-24" @default.
- W204390423 title "Methodology for Numerical Simulation of Trabecular Bone Structures Mechanical Behavior" @default.
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- W204390423 doi "https://doi.org/10.3970/cmes.2011.079.159" @default.
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