The recent advances in computational fluid dynamics (CFD) can be useful in observing the detailed hemodynamics in cerebral aneurysms for understanding not only their formation and rupture but also for clinical evaluation and treatment. However, important hemodynamic quantities are difficult to measure in vivo. In the present study, an approximate model of normal middle cerebral artery (MCA) along with two cases consisting broad and narrow saccular aneurysms are analyzed. The models are generated in ANSYS WORKBENCH and transient analysis is performed in ANSYS-CFX. The results obtained are compared for three cases and agree well with the available literature
The evaluation of cerebral hemodynamics has been a challenge for researchers and medical professiona...
Hemodynamic parameters of cerebral aneurysm play an important role in the progression, growth and ru...
Computational fluid dynamics (CFD) methods can be used to compute the velocity field in patient-spec...
Morphological characteristics associated with cerebral aneurysm formation can be used to assess aneu...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Computational fluid dynamics (CFD) is a tool with great potential in medicine. Using traditional eng...
Computational fluid dynamics (CFD) is a tool with great potential in medicine. Using traditional eng...
Cerebral aneurysms occur in 1-6% of the general population during a life-time. These aneurysms may r...
Using computational fluid dynamics (CFD) to compute the hemodynamics in cerebral aneurysms has recei...
Cerebrovascular diseases are one of the three major mortalities in Japan, such as the rupture of cer...
Abstract Aneurysms are one of the most catastrophic cerebral emergencies that causes into high mort...
The research presented in this thesis was done in the group Multiscale Modeling and Simu-lation (Dep...
Brain aneurysms cause almost 500,000 deaths in the world every year. A better understanding of brain...
Cerebral aneurysms are a pathology of the cerebral vasculature in which an area of the blood vessel ...
this paper we present a computational fluid dynamic (CFD) simulation of physiologically pulsatile fl...
The evaluation of cerebral hemodynamics has been a challenge for researchers and medical professiona...
Hemodynamic parameters of cerebral aneurysm play an important role in the progression, growth and ru...
Computational fluid dynamics (CFD) methods can be used to compute the velocity field in patient-spec...
Morphological characteristics associated with cerebral aneurysm formation can be used to assess aneu...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Computational fluid dynamics (CFD) is a tool with great potential in medicine. Using traditional eng...
Computational fluid dynamics (CFD) is a tool with great potential in medicine. Using traditional eng...
Cerebral aneurysms occur in 1-6% of the general population during a life-time. These aneurysms may r...
Using computational fluid dynamics (CFD) to compute the hemodynamics in cerebral aneurysms has recei...
Cerebrovascular diseases are one of the three major mortalities in Japan, such as the rupture of cer...
Abstract Aneurysms are one of the most catastrophic cerebral emergencies that causes into high mort...
The research presented in this thesis was done in the group Multiscale Modeling and Simu-lation (Dep...
Brain aneurysms cause almost 500,000 deaths in the world every year. A better understanding of brain...
Cerebral aneurysms are a pathology of the cerebral vasculature in which an area of the blood vessel ...
this paper we present a computational fluid dynamic (CFD) simulation of physiologically pulsatile fl...
The evaluation of cerebral hemodynamics has been a challenge for researchers and medical professiona...
Hemodynamic parameters of cerebral aneurysm play an important role in the progression, growth and ru...
Computational fluid dynamics (CFD) methods can be used to compute the velocity field in patient-spec...