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20192025
most citedPhysics-informed Neural Network Estimation of Material Properties in Soft Tissue Nonlinear Biomechanical Models

60 citations · 281 across the 16 of their papers we have counts for

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Showing 2019Show all

7 papers · 1 filter

physics.med-ph2019

Simulation of Cardiac Flow: Analysis of Geometry Simplification

Fanwei Kong, Christoph Augustin, Kevin Sack +1

Cardiovascular diseases (CVDs) are the leading causes of mortality worldwide. The contraction and relaxation of left ventricle (LV) is the main driving force of blood circulation.…

physics.app-ph2019★ 28 cited

Versatile stabilized finite element formulations for nearly and fully incompressible solid mechanics

Elias Karabelas, Gundolf Haase, Gernot Plank +1

Computational formulations for large strain, polyconvex, nearly incompressible elasticity have been extensively studied, but research on enhancing solution schemes that offer bette…

cs.CE2019★ 7 cited

FEniCS Mechanics: A Package for Continuum Mechanics Simulations

Miguel A. Rodriguez, Christoph M. Augustin, Shawn C. Shadden

FEniCS Mechanics is a Python package to facilitate computational mechanics simulations. The Python library dolfin, from the FEniCS Project, is used to formulate and numerically sol…

q-bio.CB2019★ 28 cited

Phosphorylation by the stress-activated MAPK Slt2 down-regulates the yeast TOR complex 2

Kristin L. Leskoske, Françoise M. Roelants, Anita Emmerstorfer-Augustin +4

Saccharomyces cerevisiae target of rapamycin (TOR) complex 2 (TORC2) is an essential regulator of plasma membrane lipid and protein homeostasis. How TORC2 activity is modulated in…

q-bio.CB2019★ 19 cited

Tracking yeast pheromone receptor Ste2 endocytosis using fluorogen-activating protein tagging

Anita Emmerstorfer-Augustin, Christoph M. Augustin, Shadi Shams +1

To observe internalization of the yeast pheromone receptor Ste2 by fluorescence microscopy in live cells in real time, we visualized only those molecules present at the cell surfac…

physics.med-ph2019★ 41 cited

Towards a Computational Framework for Modeling the Impact of Aortic Coarctations upon Left Ventricular Load

Elias Karabelas, Matthias A. F. Gsell, Christoph M. Augustin +6

Computational fluid dynamics (CFD) models of blood flow in the left ventricle (LV) and aorta are important tools for analyzing the mechanistic links between myocardial deformation…