Marin Lauber

Marin Lauber

I am a postdoctoral researcher with a background in computational fluid-structure interaction. My doctoral thesis focused on the modeling of highly flexible structures in an unsteady turbulent flow.

Within the Holland Hybrid Heart project, I develop high-fidelity numerical models to support the design and optimization of the HHH prototypes. These models will allow the quantification and prediction of heart-device-circulation interactions under various activation and loading conditions.

Holland Hybrid Heart

seeks to create a biocompatible artificial heart using soft robotics and tissue engineering. This innovative heart aims to improve life expectancy and quality of life for heart failure patients while reducing reliance on scarce donor organs.

Stay connected on LinkedIn. For inquiries, contact us via email.

Holland Hybrid Heart

seeks to create a biocompatible artificial heart using soft robotics and tissue engineering. This innovative heart aims to improve life expectancy and quality of life for heart failure patients while reducing reliance on scarce donor organs.

Stay connected on LinkedIn. For inquiries, contact us via email.

Holland Hybrid Heart

seeks to create a biocompatible artificial heart using soft robotics and tissue engineering. This innovative heart aims to improve life expectancy and quality of life for heart failure patients while reducing reliance on scarce donor organs.

Stay connected on LinkedIn. For inquiries, contact us via email.

Holland Hybrid Heart

seeks to create a biocompatible artificial heart using soft robotics and tissue engineering. This innovative heart aims to improve life expectancy and quality of life for heart failure patients while reducing reliance on scarce donor organs.

Stay connected on LinkedIn. For inquiries, contact us via email.