The complex nature of blood flow in the human arterial system is still gaining more attention, as it has become clear that cardiovascular diseases localize in regions of complex geometry and complex flow fields. In this article, we demonstrate that the lattice Boltzmann method can serve as a mesoscopic computational hemodynamic solver. We argue that it may have benefits over the traditional Navier–Stokes techniques. The accuracy of the method is tested by studying time-dependent systolic flow in a 3D straight rigid tube at typical hemodynamic Reynolds and Womersley numbers as an unsteady flow benchmark. Simulation results of steady and unsteady flow in a model of the human aortic bifurcation reconstructed from magnetic resonance angiography...
We present a computational method for commodity hardware-based clinical cardiovascular diagnosis bas...
The lattice Boltzmann model (LBM) is a relatively new development in computational fluid dynamics. H...
AbstractEfficient flow of red blood cells (RBCs) and white blood cells (WBCs) through the microcircu...
The complex nature of blood flow in the human arterial system is still gaining more attention, as it...
Systolic blood flow has been simulated in the abdominal aorta and the superior mesenteric artery. Th...
Background: Systolic blood flow has been simulated in the abdominal aorta and the superior mesenteri...
Surgical planning as a treatment for vascular diseases requires fast blood flow simulations that are...
Accurate and reliable modeling of cardiovascular hemodynamics has the potential to improve understan...
Abstract Large-scale simulations of blood flow allow for the optimal evaluation of endothelial shear...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
poster abstractComplicated moving boundaries pose a major challenge in compu-tational fluid dynamics...
The lattice Boltzmann model is a relatively new development in computational fluid dynamics. Here we...
We simulate time harmonic flows by the lattice Boltzmann method. We propose a general scheme to choo...
Recent developments of the lattice Boltzmann method for large-scale haemodynamic applications are pr...
Arterial bifurcation plays a key role in cardiovascular system, so studying the characteristic of th...
We present a computational method for commodity hardware-based clinical cardiovascular diagnosis bas...
The lattice Boltzmann model (LBM) is a relatively new development in computational fluid dynamics. H...
AbstractEfficient flow of red blood cells (RBCs) and white blood cells (WBCs) through the microcircu...
The complex nature of blood flow in the human arterial system is still gaining more attention, as it...
Systolic blood flow has been simulated in the abdominal aorta and the superior mesenteric artery. Th...
Background: Systolic blood flow has been simulated in the abdominal aorta and the superior mesenteri...
Surgical planning as a treatment for vascular diseases requires fast blood flow simulations that are...
Accurate and reliable modeling of cardiovascular hemodynamics has the potential to improve understan...
Abstract Large-scale simulations of blood flow allow for the optimal evaluation of endothelial shear...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
poster abstractComplicated moving boundaries pose a major challenge in compu-tational fluid dynamics...
The lattice Boltzmann model is a relatively new development in computational fluid dynamics. Here we...
We simulate time harmonic flows by the lattice Boltzmann method. We propose a general scheme to choo...
Recent developments of the lattice Boltzmann method for large-scale haemodynamic applications are pr...
Arterial bifurcation plays a key role in cardiovascular system, so studying the characteristic of th...
We present a computational method for commodity hardware-based clinical cardiovascular diagnosis bas...
The lattice Boltzmann model (LBM) is a relatively new development in computational fluid dynamics. H...
AbstractEfficient flow of red blood cells (RBCs) and white blood cells (WBCs) through the microcircu...