Cardiovascular diseases are common and a special difficulty in their curing is diagnostics. Modern medical instruments can provide data that is much more adequate for computer modeling. Computer simulations of blood flow through the cardiovascular organs give powerful advantages to scientists today. The motivation for this work is raw data that our Center recently received from the University Clinical center in Heidelberg from a multislice CT scanner. In this work raw data from CT scanner was used for creating a 3D model of the aorta. In this process we used Gmsh, TetGen (Hang Si) as well as our own software tools, and the result was the 8-node (brick) mesh on which the calculation was run. The results obtained were very satisfactory so..
Copyright © 2013 E. Pavarino et al. This is an open access article distributed under the Creative Co...
Multiphysic cardiac models give accurate simulations of normal and pathologic behavior of the heart....
Computational fluid dynamics (CFD) modeling of blood flow is significant for obtaining patient-speci...
This paper describes a set of software tools which we developed for the calculation of fluid flow th...
The aim of this project was to increase the knowledge of how numerical models can be generated based...
We are developing a high-performance computer system to simulate coronary hemody-namics in the clini...
The Finite Element Method is a well-known technique, being extensively applied in different areas. S...
Cardiovascular disease has remained the leading cause of death worldwide for the past 15 years, and ...
Due to rapid advances in invasive and non-invasive imaging technology in clinical medicine, it is no...
We introduce a complete problem solving environment designed for pulsatile flows in 3D complex geome...
In recent years, the relationship between hemodynamic factors and arterial diseases has attracted nu...
Cardiovascular disease has remained the leading cause of death worldwide for the past 15 years, and ...
Three-dimensional (3-D) medical imaging creates notable opportunities as input toward engineering an...
Atherosclerosis is often diagnosed using an ultrasound (US) examination in the carotid and femoral a...
We focus on the arterial fluid mechanics of patient-specific computer modeling of blood flow in the ...
Copyright © 2013 E. Pavarino et al. This is an open access article distributed under the Creative Co...
Multiphysic cardiac models give accurate simulations of normal and pathologic behavior of the heart....
Computational fluid dynamics (CFD) modeling of blood flow is significant for obtaining patient-speci...
This paper describes a set of software tools which we developed for the calculation of fluid flow th...
The aim of this project was to increase the knowledge of how numerical models can be generated based...
We are developing a high-performance computer system to simulate coronary hemody-namics in the clini...
The Finite Element Method is a well-known technique, being extensively applied in different areas. S...
Cardiovascular disease has remained the leading cause of death worldwide for the past 15 years, and ...
Due to rapid advances in invasive and non-invasive imaging technology in clinical medicine, it is no...
We introduce a complete problem solving environment designed for pulsatile flows in 3D complex geome...
In recent years, the relationship between hemodynamic factors and arterial diseases has attracted nu...
Cardiovascular disease has remained the leading cause of death worldwide for the past 15 years, and ...
Three-dimensional (3-D) medical imaging creates notable opportunities as input toward engineering an...
Atherosclerosis is often diagnosed using an ultrasound (US) examination in the carotid and femoral a...
We focus on the arterial fluid mechanics of patient-specific computer modeling of blood flow in the ...
Copyright © 2013 E. Pavarino et al. This is an open access article distributed under the Creative Co...
Multiphysic cardiac models give accurate simulations of normal and pathologic behavior of the heart....
Computational fluid dynamics (CFD) modeling of blood flow is significant for obtaining patient-speci...