Evaluation of a new Implicit Coupling Algorithm for the Partitioned Fluid-Structure Interaction Simulation of Bileaflet Mechanical Heart Valves
Author:
Publisher
IOP Publishing
Subject
General Medicine
Link
http://stacks.iop.org/1757-899X/10/i=1/a=012124/pdf
Reference7 articles.
1. A review of state-of-the-art numerical methods for simulating flow through mechanical heart valves
2. Analysis and Stabilization of Fluid-Structure Interaction Algorithm for Rigid-Body Motion
3. Curvilinear immersed boundary method for simulating fluid structure interaction with complex 3D rigid bodies
4. Comparison of the Hemodynamic and Thrombogenic Performance of Two Bileaflet Mechanical Heart Valves Using a CFD/FSI Model
5. The geometry of the aortic root in health, at valve disease and after valve replacement
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1. Fluid-structure interaction simulation of mechanical aortic valves: a narrative review exploring its role in total product life cycle;Frontiers in Medical Technology;2024-07-01
2. Computational fluid dynamics model to predict the dynamical behavior of the cerebrospinal fluid through implementation of physiological boundary conditions;Frontiers in Bioengineering and Biotechnology;2022-11-22
3. State-of-the-art numerical fluid–structure interaction methods for aortic and mitral heart valves simulations: A review;SIMULATION;2021-06-25
4. A fast strong coupling algorithm for the partitioned fluid–structure interaction simulation of BMHVs;Computer Methods in Biomechanics and Biomedical Engineering;2012-12
5. The upstream boundary condition influences the leaflet opening dynamics in the numerical FSI simulation of an aortic BMHV;INT J NUMER METH BIO;2012
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