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Christoph M Augustin

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Biomedizinische Technik. Biomedical Engineering|September 18, 2013
Simulating the Mechanics of Myocardial Tissue Using Strongly Scalable Parallel AlgorithmsChristoph M Augustin, Gernot Plank
Acta Biomaterialia|February 15, 2020
Computational modeling of cardiac growth and remodeling in pressure overloaded hearts-Linking microstructure to organ phenotypeJustyna A Niestrawska, Christoph M Augustin, Gernot Plank
Journal of the Mechanical Behavior of Biomedical Materials|November 24, 2020
Reconstructing vascular homeostasis by growth-based prestretch and optimal fiber depositionJiacheng Wu, Christoph M Augustin, Shawn C Shadden
International Journal for Numerical Methods in Engineering|January 12, 2016
Classical and all-floating FETI methods for the simulation of arterial tissuesChristoph M Augustin, Gerhard A Holzapfel, Olaf Steinbach
Computational Mechanics|January 25, 2020
Versatile stabilized finite element formulations for nearly and fully incompressible solid mechanicsElias Karabelas, Gundolf Haase, Gernot Plank, et al.
Molecular Biology of the Cell|September 13, 2018
Tracking yeast pheromone receptor Ste2 endocytosis using fluorogen-activating protein taggingAnita Emmerstorfer-Augustin, Christoph M Augustin, Shadi Shams, et al.
Mathematics (Basel, Switzerland)|March 17, 2022
An Integrated Workflow for Building Digital Twins of Cardiac Electromechanics-A Multi-Fidelity Approach for Personalising Active MechanicsAlexander Jung, Matthias A F Gsell, Christoph M Augustin, et al.
Computer Methods in Applied Mechanics and Engineering|April 18, 2022
An accurate, robust, and efficient finite element framework with applications to anisotropic, nearly and fully incompressible elasticityElias Karabelas, Matthias A F Gsell, Gundolf Haase, et al.
Computational Mechanics|September 20, 2022
A coupling strategy for a first 3D-1D model of the cardiovascular system to study the effects of pulse wave propagation on cardiac functionFederica Caforio, Christoph M Augustin, Jordi Alastruey, et al.
Journal of Cardiovascular Magnetic Resonance : Official Journal of the Society for Cardiovascular Magnetic Resonance|August 8, 2025
Increased extracellular volume after aortic valve replacement: a footprint of reverse ventricular remodeling that does not affect conduction velocityVladimír Sobota, Christoph M Augustin, Gernot Plank, et al.
Pageof 5

Showing results (1-10 of 46) with videos related to

Sort By:
Pageof 5
Biomedizinische Technik. Biomedical Engineering|September 18, 2013
Simulating the Mechanics of Myocardial Tissue Using Strongly Scalable Parallel AlgorithmsChristoph M Augustin, Gernot Plank
Acta Biomaterialia|February 15, 2020
Computational modeling of cardiac growth and remodeling in pressure overloaded hearts-Linking microstructure to organ phenotypeJustyna A Niestrawska, Christoph M Augustin, Gernot Plank
Journal of the Mechanical Behavior of Biomedical Materials|November 24, 2020
Reconstructing vascular homeostasis by growth-based prestretch and optimal fiber depositionJiacheng Wu, Christoph M Augustin, Shawn C Shadden
International Journal for Numerical Methods in Engineering|January 12, 2016
Classical and all-floating FETI methods for the simulation of arterial tissuesChristoph M Augustin, Gerhard A Holzapfel, Olaf Steinbach
Computational Mechanics|January 25, 2020
Versatile stabilized finite element formulations for nearly and fully incompressible solid mechanicsElias Karabelas, Gundolf Haase, Gernot Plank, et al.
Molecular Biology of the Cell|September 13, 2018
Tracking yeast pheromone receptor Ste2 endocytosis using fluorogen-activating protein taggingAnita Emmerstorfer-Augustin, Christoph M Augustin, Shadi Shams, et al.
Mathematics (Basel, Switzerland)|March 17, 2022
An Integrated Workflow for Building Digital Twins of Cardiac Electromechanics-A Multi-Fidelity Approach for Personalising Active MechanicsAlexander Jung, Matthias A F Gsell, Christoph M Augustin, et al.
Computer Methods in Applied Mechanics and Engineering|April 18, 2022
An accurate, robust, and efficient finite element framework with applications to anisotropic, nearly and fully incompressible elasticityElias Karabelas, Matthias A F Gsell, Gundolf Haase, et al.
Computational Mechanics|September 20, 2022
A coupling strategy for a first 3D-1D model of the cardiovascular system to study the effects of pulse wave propagation on cardiac functionFederica Caforio, Christoph M Augustin, Jordi Alastruey, et al.
Journal of Cardiovascular Magnetic Resonance : Official Journal of the Society for Cardiovascular Magnetic Resonance|August 8, 2025
Increased extracellular volume after aortic valve replacement: a footprint of reverse ventricular remodeling that does not affect conduction velocityVladimír Sobota, Christoph M Augustin, Gernot Plank, et al.
Pageof 5