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A Fast Strong Coupling Algorithm for the Partitioned Fluid-Structure Interaction Simulation of BMHVs." Computer Methods in Biomechanics and Biomedical Engineering 15 (2013): 1281-1312."
Variability of Computational Fluid Dynamics Solutions for Pressure and Flow in a Giant Aneurysm: the ASME 2012 Summer Bioengineering Conference CFD Challenge." Journal of Biomedical Engineering 135 (2013)."
Velocity Profiles in the Human Ductus Venosus: a Numerical Fluid Structure Interaction Study." Biomechanics and Modeling in Mechanobiology 12 (2013): 1019-1035."
Application of a Strong FSI Coupling Scheme for the Numerical Simulation of Bileaflet Mechanical Heart Valve Dynamics: Study of Wall Shear Stress on the Leaflets." Progress in Computational Fluid Dynamics 12 (2012): 68-80."
FSI-Simulation of Asymmetric Mitral Valve Dynamics During Diastolic Filling." Computer Methods in Biomechanics and Biomedical Engineering 15 (2012): 121-130."
A Strong Coupling FSI Scheme for Simulating BMHV Dynamics In 8th International Conference on CFD in Oil & Gas, Metallurgical and Process Industries., 2011.
Implicit Interaction of Two Rigid Mitral Leaflets in a Partitioned Fluid-Structure Approach In MekIT'09. Fifth national conference on Computational Mechanics, Edited by B. H. Skallerud and H. I. Andersson. Trondheim: NTNU, 2009.
Implicit Interaction of Two Rigid Mitral Leaflets in a Partitioned Fluid-Structure Approach In Talk at MekIT'09, Trondheim, May 27th., 2009.