We present a qualitative analysis of the flow pattern in cerebral aneurysms and the effect on the velocity reduction of stent implantation. We use the Lattice Boltzmann (LB) method, which implements a mesoscopic dynamics of the interactions between fictitious particles. LB provides an efficient numerical solver for complex boundary problems such as the flow in cerebral aneurysms. Several numerical and empirical studies show that the flow reduction mechanism of the stent in the saccular aneurysm is not simple to understand in detail. We have focused on the flow pattern in the aneurysm dome and shown that several characteristic properties allow to predict the effect of a treatment by a stent
We numerically simulate the hemodynamics of aneurysmal flow and evaluate stent design configuration ...
Arterial bifurcation plays a key role in cardiovascular system, so studying the characteristic of th...
The purpose of this study is to develop modeling methodologies to understand how different stent voi...
The treatment of cerebral aneurisms with a porous stent has recently been proposed as a minimally in...
We describe the clotting process in stented aneurysms with a lattice Boltzmann (LB) model. In additi...
We consider a lattice Boltzmann simulation of blood flow in a vessel deformed by the presence of an ...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
Investigation on the changes of flow phenomena in saccular aneurysms at the Cerebral had been studie...
The investigation is about the flow pattern in blood vessel that has been done at the aneurysm with ...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
The objective of this study was to determine the correlation of stent strut angle to blood flow and ...
Abstract: Occlusional performance of sole endoluminal stenting of intracranial aneu-rysms is controv...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
We numerically simulate the hemodynamics of aneurysmal flow and evaluate stent design configuration ...
Arterial bifurcation plays a key role in cardiovascular system, so studying the characteristic of th...
The purpose of this study is to develop modeling methodologies to understand how different stent voi...
The treatment of cerebral aneurisms with a porous stent has recently been proposed as a minimally in...
We describe the clotting process in stented aneurysms with a lattice Boltzmann (LB) model. In additi...
We consider a lattice Boltzmann simulation of blood flow in a vessel deformed by the presence of an ...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
Investigation on the changes of flow phenomena in saccular aneurysms at the Cerebral had been studie...
The investigation is about the flow pattern in blood vessel that has been done at the aneurysm with ...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
The objective of this study was to determine the correlation of stent strut angle to blood flow and ...
Abstract: Occlusional performance of sole endoluminal stenting of intracranial aneu-rysms is controv...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
We numerically simulate the hemodynamics of aneurysmal flow and evaluate stent design configuration ...
Arterial bifurcation plays a key role in cardiovascular system, so studying the characteristic of th...
The purpose of this study is to develop modeling methodologies to understand how different stent voi...