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The Supporters' Favourite is quite unusual: it's a hydrodynamic simulation of blood flow.
Her Ph.D. research dealt with biofluid mechanics, specifically numerical simulation of blood flow in plaque-inhibited carotid artery bifurcation.
We introduce and study numerically a scalable parallel finite element solver for the simulation of blood flow in compliant arteries.
We also present initial results from the application of this methodology to the three-dimensional simulation of blood flow in the heart and great vessels.
In our preliminary computational simulation of blood flow of this coupled sequential anastomoses design, the graft and the artery were adopted to be rigid vessels and the blood was assumed to be a Newtonian fluid.
In the medical field, biomechanical human models can serve as a basis for the simulation and design of orthopedic prostheses, for bone fracture planning, physical rehabilitation analysis, the simulation of blood flow, artificial blood vessels, artificial heart valves, bypass operations, and heart muscle activity, and virtual organ surgery.
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In this study, we extend the RLG method in order to perform of the simulation of blood flows with individual descriptions of red blood cells.
The Fahraeus Lindqvist effect is, for the first time, studied through three-dimensional numerical simulations of blood flow through tubes with different diameters and is shown to be directly linked to axial-migration of deformable cells.
This model is designed to overcome the numerical difficulties of three-dimensional fluid structure interaction simulations of blood flow without using the over-simplifications necessary to obtain one-dimensional blood flow models.
Simulations of blood flow in the vasculature connecting the parent vessel to the solid tumour are then performed by adapting modelling techniques from the field of petroleum engineering to this biomedical application.
In a companion paper (Lorthois et al., Neuroimage, in press), we perform the first simulations of blood flow in an anatomically accurate large human intra-cortical vascular network (~ 10000 segments), using a 1D non-linear model taking into account the complex rheological properties of blood flow in microcirculation.
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