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G A Holzapfel

Showing results (1-10 of 32) with videos related to

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Mechanics Research Communications|June 20, 2012
Constrained Mixture Models as Tools for Testing Competing Hypotheses in Arterial Biomechanics: A Brief SurveyA Valentín, G A Holzapfel
Journal of Biomechanics|December 23, 2011
Mechanics, mechanobiology, and modeling of human abdominal aorta and aneurysmsJ D Humphrey, G A Holzapfel
Computers in Biology and Medicine|November 7, 1998
Biomechanical behavior of the arterial wall and its numerical characterizationG A Holzapfel, H W Weizsäcker
Progress in Biophysics and Molecular Biology|September 22, 2007
Smooth muscle contraction: mechanochemical formulation for homogeneous finite strainsJ Stålhand, A Klarbring, G A Holzapfel
Journal of the Mechanical Behavior of Biomedical Materials|May 28, 2016
Stress softening and permanent deformation in human aortas: Continuum and computational modeling with application to arterial clampingB Fereidoonnezhad, R Naghdabadi, G A Holzapfel
Journal of Theoretical Biology|October 16, 2010
A mechanochemical 3D continuum model for smooth muscle contraction under finite strainsJ Stålhand, A Klarbring, G A Holzapfel
European Journal of Vascular and Endovascular Surgery : the Official Journal of the European Society for Vascular Surgery|January 25, 2015
Diameter-related variations of geometrical, mechanical, and mass fraction data in the anterior portion of abdominal aortic aneurysmsJ Tong, T Cohnert, G A Holzapfel
International Journal for Numerical Methods in Biomedical Engineering|January 25, 2013
Modeling sample/patient-specific structural and diffusional responses of cartilage using DT-MRID M Pierce, T Ricken, G A Holzapfel
Annals of Biomedical Engineering|March 8, 2011
A multi-layered computational model of coupled elastin degradation, vasoactive dysfunction, and collagenous stiffening in aortic agingA Valentín, J D Humphrey, G A Holzapfel
Journal of Biomechanics|January 28, 2003
Determination of constitutive equations for human arteries from clinical dataC A J Schulze-Bauer, G A Holzapfel
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
Mechanics Research Communications|June 20, 2012
Constrained Mixture Models as Tools for Testing Competing Hypotheses in Arterial Biomechanics: A Brief SurveyA Valentín, G A Holzapfel
Journal of Biomechanics|December 23, 2011
Mechanics, mechanobiology, and modeling of human abdominal aorta and aneurysmsJ D Humphrey, G A Holzapfel
Computers in Biology and Medicine|November 7, 1998
Biomechanical behavior of the arterial wall and its numerical characterizationG A Holzapfel, H W Weizsäcker
Progress in Biophysics and Molecular Biology|September 22, 2007
Smooth muscle contraction: mechanochemical formulation for homogeneous finite strainsJ Stålhand, A Klarbring, G A Holzapfel
Journal of the Mechanical Behavior of Biomedical Materials|May 28, 2016
Stress softening and permanent deformation in human aortas: Continuum and computational modeling with application to arterial clampingB Fereidoonnezhad, R Naghdabadi, G A Holzapfel
Journal of Theoretical Biology|October 16, 2010
A mechanochemical 3D continuum model for smooth muscle contraction under finite strainsJ Stålhand, A Klarbring, G A Holzapfel
European Journal of Vascular and Endovascular Surgery : the Official Journal of the European Society for Vascular Surgery|January 25, 2015
Diameter-related variations of geometrical, mechanical, and mass fraction data in the anterior portion of abdominal aortic aneurysmsJ Tong, T Cohnert, G A Holzapfel
International Journal for Numerical Methods in Biomedical Engineering|January 25, 2013
Modeling sample/patient-specific structural and diffusional responses of cartilage using DT-MRID M Pierce, T Ricken, G A Holzapfel
Annals of Biomedical Engineering|March 8, 2011
A multi-layered computational model of coupled elastin degradation, vasoactive dysfunction, and collagenous stiffening in aortic agingA Valentín, J D Humphrey, G A Holzapfel
Journal of Biomechanics|January 28, 2003
Determination of constitutive equations for human arteries from clinical dataC A J Schulze-Bauer, G A Holzapfel
Pageof 4