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Statements

Subject Item
n2:RIV%2F49777513%3A23520%2F09%3A00501796%21RIV10-MSM-23520___
rdf:type
n16:Vysledek skos:Concept
dcterms:description
We present a model of homogenized cortical bone tissue to allow for multiscale modeling of diffusion-deformation phenomenon, which may serve as a basis for deeper understanding of strain generated electric potentials and processes influencing the growth and remodeling in living bone. The heterogeneous structure at the level of osteons with the dual porosity representing the canalicular network is homogenized relying on the Biot theory of the fluid saturated porous medium. The upscaled model describes macroscopic flow in the Haversian porosity induced by bone deformation. The fading memory effects apparent in the homogenized constitutive laws arise due to the microflow in the tissue matrix. The model was implemented in our finite element code. We present a model of homogenized cortical bone tissue to allow for multiscale modeling of diffusion-deformation phenomenon, which may serve as a basis for deeper understanding of strain generated electric potentials and processes influencing the growth and remodeling in living bone. The heterogeneous structure at the level of osteons with the dual porosity representing the canalicular network is homogenized relying on the Biot theory of the fluid saturated porous medium. The upscaled model describes macroscopic flow in the Haversian porosity induced by bone deformation. The fading memory effects apparent in the homogenized constitutive laws arise due to the microflow in the tissue matrix. The model was implemented in our finite element code.
dcterms:title
Multiscale modelling of compact bone based on homogenization of double porous medium Multiscale modelling of compact bone based on homogenization of double porous medium
skos:prefLabel
Multiscale modelling of compact bone based on homogenization of double porous medium Multiscale modelling of compact bone based on homogenization of double porous medium
skos:notation
RIV/49777513:23520/09:00501796!RIV10-MSM-23520___
n4:aktivita
n20:P n20:Z
n4:aktivity
P(GA106/09/0740), Z(MSM4977751303)
n4:dodaniDat
n7:2010
n4:domaciTvurceVysledku
n14:4490673 n14:1351958
n4:druhVysledku
n13:D
n4:duvernostUdaju
n22:S
n4:entitaPredkladatele
n19:predkladatel
n4:idSjednocenehoVysledku
328045
n4:idVysledku
RIV/49777513:23520/09:00501796
n4:jazykVysledku
n12:eng
n4:klicovaSlova
cortical bone; microflow; deformation; homogenization; multiscale modeling
n4:klicoveSlovo
n17:multiscale%20modeling n17:homogenization n17:microflow n17:deformation n17:cortical%20bone
n4:kontrolniKodProRIV
[4F66970E2AF6]
n4:mistoKonaniAkce
Barcelona
n4:mistoVydani
Barcelona
n4:nazevZdroje
Computational Plasticity X
n4:obor
n6:BK
n4:pocetDomacichTvurcuVysledku
2
n4:pocetTvurcuVysledku
4
n4:projekt
n15:GA106%2F09%2F0740
n4:rokUplatneniVysledku
n7:2009
n4:tvurceVysledku
Naili, Salah Lemaire, Thibault Cimrman, Robert Rohan, Eduard
n4:typAkce
n10:EUR
n4:zahajeniAkce
2009-09-04+02:00
n4:zamer
n5:MSM4977751303
s:numberOfPages
4
n21:hasPublisher
CIMNE
n8:isbn
978-84-96736-69-6
n11:organizacniJednotka
23520