We describe the clotting process in stented aneurysms with a lattice Boltzmann (LB) model. In addition to model the haemodynamic properties of blood flow, our model includes the transport of idealized red blood cells and platelets as well as an aggregation mechanism at low shear rate. This model simulates the capabilities of a stent to initiate and maintain clotting inside an aneurysm. From the clotting fraction observed in simulation, we define a new stent performance metric and compare it with the so-called velocity reduction and shear rate reduction metrics that are based on a pure haemodynamic description
In-stent restenosis, the maladaptive response of a blood vessel to injury caused by the deployment o...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The lattice Boltzmann model is a relatively new development in computational fluid dynamics. Here we...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
The treatment of cerebral aneurisms with a porous stent has recently been proposed as a minimally in...
We present a qualitative analysis of the flow pattern in cerebral aneurysms and the effect on the ve...
AbstractIn this paper we describe an extension of the lattice Boltzmann method to simulate blood clo...
The effects of thrombosis greatly contribute to the incidence of mortality in the Western World. Un...
We consider a lattice Boltzmann simulation of blood flow in a vessel deformed by the presence of an ...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
AbstractEfficient flow of red blood cells (RBCs) and white blood cells (WBCs) through the microcircu...
With cardiovascular disease being a leading cause of death worldwide, there’s a need for improved ef...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
Blood is an important fluid for the human body. It exhibits a complex behavior in terms of rheology ...
In-stent restenosis, the maladaptive response of a blood vessel to injury caused by the deployment o...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The lattice Boltzmann model is a relatively new development in computational fluid dynamics. Here we...
The numerical simulation of thrombosis in stented aneurysms is an important issue to estimate the ef...
The treatment of cerebral aneurisms with a porous stent has recently been proposed as a minimally in...
We present a qualitative analysis of the flow pattern in cerebral aneurysms and the effect on the ve...
AbstractIn this paper we describe an extension of the lattice Boltzmann method to simulate blood clo...
The effects of thrombosis greatly contribute to the incidence of mortality in the Western World. Un...
We consider a lattice Boltzmann simulation of blood flow in a vessel deformed by the presence of an ...
This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemody...
The occlusional performance of sole endoluminal stenting of intracranial aneurysms is controversiall...
AbstractEfficient flow of red blood cells (RBCs) and white blood cells (WBCs) through the microcircu...
With cardiovascular disease being a leading cause of death worldwide, there’s a need for improved ef...
A lattice Boltzmann method for simulating the viscous flow in large distensible blood vessels is pre...
Blood is an important fluid for the human body. It exhibits a complex behavior in terms of rheology ...
In-stent restenosis, the maladaptive response of a blood vessel to injury caused by the deployment o...
Copyright © 2013 Frank Weichert et al.This is an open access article distributed under the Creative ...
The lattice Boltzmann model is a relatively new development in computational fluid dynamics. Here we...