High pulsating blood pressure and severe stenosis make fluid–structure interaction (FSI) an important role in simulating blood flow in stenotic arteries. A three-dimensional nonlinear model with FSI and a numerical method using GFD are introduced to study unsteady viscous flow in stenotic tubes with cyclic wall collapse simulating blood flow in stenotic carotid arteries. The Navier–Stokes equations are used as the governing equations for the fluid. A thin-shell model is used for the tube wall. Interaction between fluid and tube wall is treated by an incremental boundary iteration method. Elastic properties of the tube wall are determined experimentally using a polyvinyl alcohol hydrogel artery stenosis model. Cyclic tube compression and col...
2D and 3D multi-physics experiment-based nonlinear models with fluid-structure interactions (FSI) an...
Cardiovascular system abnormalities can result in serious health complications. By using the fluid–s...
The main goal of the developed theory is to formulate the biomechanical conditions (geometrical dime...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Severe stenosis may cause critical flow conditions related to artery collapse, plaque cap rupture wh...
It is a well-established fact that atherosclerosis in carotid bifurcation depends on flow parameters...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Summary A numerical and experimental investigation of steady and pulsatile flows through a tube part...
Advances in numerical simulation have allowed the investigation of complex interaction of blood flow...
Blood flow in a stenosed artery was simulated using the two-way, fluid-structural interactions in AN...
2D and 3D multi-physics experiment-based nonlinear models with fluid-structure interactions (FSI) an...
Cardiovascular system abnormalities can result in serious health complications. By using the fluid–s...
The main goal of the developed theory is to formulate the biomechanical conditions (geometrical dime...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Arterial stenoses may cause critical blood flow and wall conditions leading to clinical complication...
Severe stenosis may cause critical flow conditions related to artery collapse, plaque cap rupture wh...
It is a well-established fact that atherosclerosis in carotid bifurcation depends on flow parameters...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Blood flow in a stenosed artery was simulated using the two way, fluid-structural interactions in AN...
Summary A numerical and experimental investigation of steady and pulsatile flows through a tube part...
Advances in numerical simulation have allowed the investigation of complex interaction of blood flow...
Blood flow in a stenosed artery was simulated using the two-way, fluid-structural interactions in AN...
2D and 3D multi-physics experiment-based nonlinear models with fluid-structure interactions (FSI) an...
Cardiovascular system abnormalities can result in serious health complications. By using the fluid–s...
The main goal of the developed theory is to formulate the biomechanical conditions (geometrical dime...