This paper describes strategies and techniques to perform modeling and automatic mesh generation of the aorta artery and its tunics (adventitia, media and intima walls), using open source codes. The models were constructed in the Blender package and Python scripts were used to export the data necessary for the mesh generation in TetGen. The strategies proposed are able to provide meshes of complicated and irregular volumes, with a large number of mesh elements involved (12,000,000 tetrahedrons approximately). These meshes can be used to perform computational simulations by Finite Element Method (FEM). © Published under licence by IOP Publishing Ltd
In order to perform finite element (FE) analyses of patient-specific abdominal aortic aneurysms, geo...
In recent years, the relationship between hemodynamic factors and arterial diseases has attracted nu...
We are developing a high-performance computer system to simulate coronary hemody-namics in the clini...
Three-dimensional (3-D) medical imaging creates notable opportunities as input toward engineering an...
\u3cp\u3eComputational blood flow and vessel wall mechanics simulations for vascular structures are ...
The Finite Element Method is a well-known technique, being extensively applied in different areas. S...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Copyright © 2013 E. Pavarino et al. This is an open access article distributed under the Creative Co...
Cardiovascular diseases are common and a special difficulty in their curing is diagnostics. Modern m...
Computational fluid dynamics (CFD) modeling of blood flow is significant for obtaining patient-speci...
In order to perform finite element (FE) analyses of patient-specific abdominal aortic aneurysms, geo...
In order to perform finite element (FE) analyses of patient-specific abdominal aortic aneurysms, geo...
In recent years, the relationship between hemodynamic factors and arterial diseases has attracted nu...
We are developing a high-performance computer system to simulate coronary hemody-namics in the clini...
Three-dimensional (3-D) medical imaging creates notable opportunities as input toward engineering an...
\u3cp\u3eComputational blood flow and vessel wall mechanics simulations for vascular structures are ...
The Finite Element Method is a well-known technique, being extensively applied in different areas. S...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Copyright © 2013 E. Pavarino et al. This is an open access article distributed under the Creative Co...
Cardiovascular diseases are common and a special difficulty in their curing is diagnostics. Modern m...
Computational fluid dynamics (CFD) modeling of blood flow is significant for obtaining patient-speci...
In order to perform finite element (FE) analyses of patient-specific abdominal aortic aneurysms, geo...
In order to perform finite element (FE) analyses of patient-specific abdominal aortic aneurysms, geo...
In recent years, the relationship between hemodynamic factors and arterial diseases has attracted nu...
We are developing a high-performance computer system to simulate coronary hemody-namics in the clini...