AbstractComputer simulations play an increasingly important role in the area of medical physics, from fundamental research to patient specific treatment planning. One particular application we address in this paper is the simulation of blood flow in cerebral aneurysms in domains created from medical images. Our focus is on accurately capturing the rheology for this type of application, particularly the difference in wall shear stress between Newtonian and non-Newtonian fluids. The numerical method applied for our investigation is a performance optimized Lattice Boltzmann solver with a Carreau–Yasuda model to capture non-Newtonian rheology
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
This study deals with numerical simulation performed on pulsatile blood flow near a typicalcerebrova...
Recent years have seen a rising interest in the use of computational fluid dynamics for investigatin...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
Cerebrovascular accidents are the third most common cause of death in developed countries. Over rece...
The aim of this work was to determine whether or not Newtonian rheology assumption in image-based pa...
The human circulatory system is complex and its modelling and simulation constitute a difficult and ...
AbstractA lattice Boltzmann simulation of blood flow using the Carreau–Yasuda model to calculate the...
Cerebral aneurysms are a pathology of the cerebral vasculature in which an area of the blood vessel ...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Recent aneurysm studies have focused on the correlation between different parameters and rupture ris...
Flow dynamics, plays an important role in the pathogenesis and treatment of cerebral aneurysms. The ...
Mathematical modeling of blood flows in the arteries is an important and challenging problem. This s...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
This study deals with numerical simulation performed on pulsatile blood flow near a typicalcerebrova...
Recent years have seen a rising interest in the use of computational fluid dynamics for investigatin...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
Cerebrovascular accidents are the third most common cause of death in developed countries. Over rece...
The aim of this work was to determine whether or not Newtonian rheology assumption in image-based pa...
The human circulatory system is complex and its modelling and simulation constitute a difficult and ...
AbstractA lattice Boltzmann simulation of blood flow using the Carreau–Yasuda model to calculate the...
Cerebral aneurysms are a pathology of the cerebral vasculature in which an area of the blood vessel ...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Recent aneurysm studies have focused on the correlation between different parameters and rupture ris...
Flow dynamics, plays an important role in the pathogenesis and treatment of cerebral aneurysms. The ...
Mathematical modeling of blood flows in the arteries is an important and challenging problem. This s...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...