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Konstitutivní modelování tepenné stěny
Horný, L. ; Chlup, Hynek ; Adámek, T. ; Zitny, R. ; Macková, H.
Inflation tests and uni–axial extension tests of arterial tissue were performed. Experimental data were used in nonlinear regression analysis to identify material model. Arterial tissue was assumed to be incompressible hyperelastic material. 5–parameter strain energy density function based on combination of isotropic Neo–Hookean expression and Fung–type orthotropic expression was used. Computational model for material parameters identification was based on thick–wall tube with axial pre–strains. Residual strains were included. Internal structure of arterial wall was not considered. Fitted material models correspond to experimental data very well.
Zbytková deformace v bifurkaci lidské aorty
Adámek, T. ; Horný, L. ; Chlup, Hynek ; Franta, L.
At the present paper we report values of opening angles in human aortic bifurcations. A standard method of opening angle measurement was used. Three aortas were measured. Ten samples were excised from each aorta. Three rings were obtained from abdominal aorta close to the bifurcation, arteria iliaca communis dextra and sinistra and one form the bifurcation. The last one was composed of two rings, left and rignt, which were measured together. The residual strains were occurred in human aortic bifurcations and had different values in the left and the right branch of the bifurcated artery. The results of at the bifurcation can be influenced by fact that the branches of iliac arteries are still intergrown here. Two kinds of the opening angle investigation at the bifurcation were tested, a bifurcation septum fixed method and a circular sector fixed method. But both revealed differences in the opening angle values at the bifurcation.
Určování mechanických vlastností věnčitých tepen
Beneš, J. ; Horný, L. ; Konvičková, S. ; Chlup, Hynek
Samples of human coronary arteries underwent inflation tests to obtain parameters which characterize its mechanical behavior. A pressure-diameter relationship was determined. Strain energy density function was used to model constitutive behavior. Its numerical characterization was found by regression analysis of experimental data.
Zkušenosti s tahovými zkouškami vrstev tepenné stěny
Horný, L. ; Chlup, Hynek ; Sedláček, R. ; Konvičková, S.
Uni-axial tensile tests were performed with layers of aortic wall. Specimens underwent loading in both longitudinal and circumferential directions. Experimental data were used in regression analysis which offered base for constitutive relationships. Uni-axial stress-strain relations for aortic media and adventitia were found.

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