Key result
Coupling specialized solvers for fluid and solid mechanics creates a model of ventricular flow that provides enhanced insight into cardiac hemodynamics.
Population
Computational model of the human heart (virtual heart) for ventricular and vascular flow
Design
Other
Authors
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Enhances virtual modeling of ventricular hemodynamics; leaves open clinical validation before any practice impact.
A partitioned computational approach coupling fluid and solid mechanics solvers can effectively model ventricular hemodynamics and fluid-structure interactions in a virtual heart.
Schenkel et al. (2010) studied Hemodynamics and ventricular flow. Coupled fluid-structure interaction modeling was evaluated. Coupling specialized solvers for fluid and solid mechanics creates a model of ventricular flow that provides enhanced insight into cardiac hemodynamics.
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