We describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targeting anatomic modeling of Arteriovenous Malformation (AVM) for surgical simulations. Our method, initially constructs an adaptive Body-Centered Cubic (BCC) mesh of high quality elements. Then, it deforms the mesh surfaces to their corresponding physical image boundaries, hence, improving the mesh fidelity and smoothness. Our deformation scheme, which builds upon the ITK toolkit, is based on the concept of energy minimization, and relies on a multi-material point-based registration. It uses non-connectivity patterns to implicitly control the number of the extracted feature points needed for the registration, and thus, adjusts the trade-off between th...
Numerical simulations of the cardiovascular system are growing in popularity due to the increasing a...
AbstractPhysiological systems are inherently complex, involving multi-physics phenomena at a multitu...
Mesh generation is a critical step in image-based computational fluid dynamic investigation of vascu...
AbstractWe describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targ...
This thesis concerns the development, analysis, and computer implementation of mesh generation algor...
There are many ways to generate geometrical models for numerical simulation, and most of them start ...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes for bi...
Vascular diseases are known to be associated with changes in blood flow dynamics and the distributio...
International audienceSimulating the deformation of the human anatomy is a central element of Medica...
We report a general purpose mesh generator for creating finite-element surface or volumetric mesh fr...
Patient-specific finite element (FE) modelling is gaining more and more attention over the years bec...
Generating subject-specific, all-hexahedral meshes for finite element analysis continues to be of si...
peer reviewedThe finite element method is commonly used in biomedical applications for the simulatio...
As a new interdisciplinary research area, “image-based geometric modeling and mesh generation” integ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Numerical simulations of the cardiovascular system are growing in popularity due to the increasing a...
AbstractPhysiological systems are inherently complex, involving multi-physics phenomena at a multitu...
Mesh generation is a critical step in image-based computational fluid dynamic investigation of vascu...
AbstractWe describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targ...
This thesis concerns the development, analysis, and computer implementation of mesh generation algor...
There are many ways to generate geometrical models for numerical simulation, and most of them start ...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes for bi...
Vascular diseases are known to be associated with changes in blood flow dynamics and the distributio...
International audienceSimulating the deformation of the human anatomy is a central element of Medica...
We report a general purpose mesh generator for creating finite-element surface or volumetric mesh fr...
Patient-specific finite element (FE) modelling is gaining more and more attention over the years bec...
Generating subject-specific, all-hexahedral meshes for finite element analysis continues to be of si...
peer reviewedThe finite element method is commonly used in biomedical applications for the simulatio...
As a new interdisciplinary research area, “image-based geometric modeling and mesh generation” integ...
Computational blood flow and vessel wall mechanics simulations for vascular structures are becoming ...
Numerical simulations of the cardiovascular system are growing in popularity due to the increasing a...
AbstractPhysiological systems are inherently complex, involving multi-physics phenomena at a multitu...
Mesh generation is a critical step in image-based computational fluid dynamic investigation of vascu...