Computational fluid dynamics (CFD) methods can be used to compute the velocity field in patient-specific vascular geometries for pulsatile physiological flow. Those simulations require geometric and hemodynamic boundary values. The purpose of this study is to demonstrate that CFD models constructed from patient-specific magnetic resonance (MR) angiography and velocimetry data predict flow fields that are in good agreement with in vivo measurements and therefore can provide valuable information for clinicians. The effect of the inlet flow rate conditions on calculated velocity fields was investigated. We assessed the internal consistency of our approach by comparing CFD predictions of the in-plane velocity field to the corresponding in vivo ...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Introduction: Information from MR blood flow quantification can be used to evaluate patient health, ...
The significant progress in computer innovation technique, computational fluid dynamics (CFD) has be...
In cases where surgeons consider different interventional options for flow alterations in the settin...
In this study we qualitatively compare the flow structures observed in cerebral aneurysms using conv...
To perform experimental validation of computational fluid dynamics (CFD) applied to patient specific...
To perform experimental validation of computational fluid dynamics (CFD) applied to patient specific...
Cerebral aneurysms occur in 1-6% of the general population during a life-time. These aneurysms may r...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Introduction: Information from MR blood flow quantification can be used to evaluate patient health, ...
The significant progress in computer innovation technique, computational fluid dynamics (CFD) has be...
In cases where surgeons consider different interventional options for flow alterations in the settin...
In this study we qualitatively compare the flow structures observed in cerebral aneurysms using conv...
To perform experimental validation of computational fluid dynamics (CFD) applied to patient specific...
To perform experimental validation of computational fluid dynamics (CFD) applied to patient specific...
Cerebral aneurysms occur in 1-6% of the general population during a life-time. These aneurysms may r...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
A benchmark for the comparison of MRI (Magnetic Resonance Imaging) measurements and CFD (Computation...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
In recent years, simulations of the blood flow and the wall mechanics in the vascular system with pa...
The formation of aneurysms in the human brain is an important cerebrovascular disorder, which affect...
Introduction: Information from MR blood flow quantification can be used to evaluate patient health, ...