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  • Samples of porcine carotid artery are examined using Tissue bath MAYFLOWER, Perfusion of tubular organs Version, Type 813/6. Pressure-diameter diagrams are obtained for fixed axial extension and volumetric flow rate. Finite element analysis of the experiment, performed using COMSOL software, indicates a negligible effect of given flow rate on the mechanical response of the tested sample. Also the effect of clamped ends is shown to be local only. Hence, static analysis in MATLAB software is performed considering the arterial segment as an incompressible hyperelastic axisymmetric tube. Residual stress at the load-free configuration is taken into account resulting in the overall stiffening of the model. Comparison of theoretical and experimental pressure-diameter curves results in the identification of material parameters using the least square method. In addition to classical hyperelastic models, such as the neo-Hookean and the Fung?s exponential, two-scale model mimicking arrangement of soft tissue is
  • Samples of porcine carotid artery are examined using Tissue bath MAYFLOWER, Perfusion of tubular organs Version, Type 813/6. Pressure-diameter diagrams are obtained for fixed axial extension and volumetric flow rate. Finite element analysis of the experiment, performed using COMSOL software, indicates a negligible effect of given flow rate on the mechanical response of the tested sample. Also the effect of clamped ends is shown to be local only. Hence, static analysis in MATLAB software is performed considering the arterial segment as an incompressible hyperelastic axisymmetric tube. Residual stress at the load-free configuration is taken into account resulting in the overall stiffening of the model. Comparison of theoretical and experimental pressure-diameter curves results in the identification of material parameters using the least square method. In addition to classical hyperelastic models, such as the neo-Hookean and the Fung?s exponential, two-scale model mimicking arrangement of soft tissue is (en)
Title
  • Modelling of the mechanical behaviour of porcine carotid artery undergoing inflation-deflation test
  • Modelling of the mechanical behaviour of porcine carotid artery undergoing inflation-deflation test (en)
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  • Modelling of the mechanical behaviour of porcine carotid artery undergoing inflation-deflation test
  • Modelling of the mechanical behaviour of porcine carotid artery undergoing inflation-deflation test (en)
skos:notation
  • RIV/49777513:23520/10:00504583!RIV11-GA0-23520___
http://linked.open...avai/riv/aktivita
http://linked.open...avai/riv/aktivity
  • P(GA106/09/0734), Z(MSM4977751303)
http://linked.open...iv/cisloPeriodika
  • 2
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  • 271981
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  • RIV/49777513:23520/10:00504583
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  • carotid artery; inflation-deflation test; modelling; hyperelasticity; parameters identification (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...odStatuVydavatele
  • CZ - Česká republika
http://linked.open...ontrolniKodProRIV
  • [F0A5ED9AA4D5]
http://linked.open...i/riv/nazevZdroje
  • Applied and Computational Mechanics
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  • 4
http://linked.open...iv/tvurceVysledku
  • Kochová, Petra
  • Kuncová, Jitka
  • Vychytil, Jan
  • Švíglerová, Jitka
  • Moravcová, Fanny
http://linked.open...n/vavai/riv/zamer
issn
  • 1802-680X
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  • 23520
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