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M.Sc. Jonathan Krauß

Veröffentlichungen


  Alle Veröffentlichungen, sortiert nach Jahren

          2024  2023  2022  [Alle]


Ausgewählte Veröffentlichungen

Journal Articles (3)

J.-E. Duhme, J. Krauß, and A. Loewe.
Modeling Human Ventricular Cardiomyocyte Force-Frequency Relationship.
In Current Directions in Biomedical Engineering, vol. 10(4) , pp. 212-215, 2024
  PDF      
C. B. Espinosa, J. Sánchez, S. Appel, S. Becker, J. Krauß, P. M. Díaz, L. Unger, M. Houillon, and A. Loewe.
A Cyclical Fast Iterative Method for Simulating Reentries in Cardiac Electrophysiology Using an Eikonal-Based Model.
In eprint, 2024
  PDF    
J. Fröhlich, T. Gerach, J. Krauß, A. Loewe, L. Stengel, and C. Wieners.
Numerical evaluation of elasto‐mechanical and visco‐elastic electro‐mechanical models of the human heart.
In GAMM-Mitteilungen, vol. 46(3-4) , 2024
  PDF      

Conference Contributions (4)

J. Krauß, T. Gerach, and A. Loewe.
Comparison of Pericardium Modeling Approaches for Mechanical Whole Heart Simulations.
In 2023 Computing in Cardiology (CinC)(10363691) , pp. 1-4, 2023
  PDF      
J. Krauß, T. Gerach, and A. Loewe.
Effects of Ventricular Myofiber Orientation on Mechanical Function in Human Heart Simulations.
In 2022 Computing in Cardiology Conference, vol. 49, 2022
  PDF      
T. Gerach, J. Krauß, S. Schuler, and A. Loewe.
Whole Heart Simulation of Severe Aortic Stenosis Using a Lumped Parameter Model of Heart Valve Dynamics.
In 2023 Computing in Cardiology (CinC)(10363691) , pp. 1-4, 2023
  PDF      
S. Appel, T. Gerach, J. Krauß, and A. Loewe.
Potential Role of Stretch-Activated Channels in the Pathogenesis of Atrial Fibrillation.
  PDF    


Auszeichnungen

Auszeichnung für das beste Poster, Cardiac Physiome Workshop 2024, Freiburg
Jonathan Krauß, Cristian Barrios, Stephanie Appel, Axel Loewe:
mit dem Poster "Impact of Scar Size and Location on Ejection Fraction"

Maastricht Simulation Award, Konferenz „Computing in Cardiology“ 2023 in Atlanta (USA)
Tobias Gerach, Jonathan Krauss, Steffen Schuler, Axel Loewe
Whole Heart Simulation of Severe Aortic Stenosis Using a Lumped Parameter Model of Heart Valve Dynamics