There are many ways to generate geometrical models for numerical simulation, and most of them start with a segmentation step to extract the boundaries of the regions of interest. This paper presents an algorithm to generate a patient-specific three-dimensional geometric model, based on a tetrahedral mesh, without an initial extraction of contours from the volumetric data. Using the information directly available in the data, such as gray levels, we built a metric to drive a mesh adaptation process. The metric is used to specify the size and orientation of the tetrahedral elements everywhere in the mesh. Our method, which produces anisotropic meshes, gives good results with synthetic and real MRI data. The resulting model quality has been ev...
A novel method for generating patient-specific high quality conforming hexahedral meshes is presente...
This paper introduces an automated medical image segmentation algorithm which can be used to locate ...
peer reviewedThe finite element method is commonly used in biomedical applications for the simulatio...
There are many ways to generate geometrical models for numerical simulation, and most of them start ...
AbstractWe describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targ...
We describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targeting an...
There are fields of engineering where accurate and personalised data are required; biomedical applic...
This paper addresses the problem of generating three-dimensional (3D) finite element (FE) meshes fro...
Abstract. There are fields of engineering where accurate and personalised data are required; biomed-...
This paper presents an algorithm to extract adaptive and quality 3D meshes directly from volumetric ...
This thesis concerns the development, analysis, and computer implementation of mesh generation algor...
Medical imaging modalities, such as computed tomography (CT) and magnetic res-onance (MR), provide 3...
The diagnostic assessment of cerebrovascular disease makes use of computational simulation as a pred...
Generating subject-specific, all-hexahedral meshes for finite element analysis continues to be of si...
Currently, anatomically consistent segmentation of vascular trees acquired with magnetic resonance i...
A novel method for generating patient-specific high quality conforming hexahedral meshes is presente...
This paper introduces an automated medical image segmentation algorithm which can be used to locate ...
peer reviewedThe finite element method is commonly used in biomedical applications for the simulatio...
There are many ways to generate geometrical models for numerical simulation, and most of them start ...
AbstractWe describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targ...
We describe a new implementation of an adaptive multi-tissue tetrahedral mesh generator targeting an...
There are fields of engineering where accurate and personalised data are required; biomedical applic...
This paper addresses the problem of generating three-dimensional (3D) finite element (FE) meshes fro...
Abstract. There are fields of engineering where accurate and personalised data are required; biomed-...
This paper presents an algorithm to extract adaptive and quality 3D meshes directly from volumetric ...
This thesis concerns the development, analysis, and computer implementation of mesh generation algor...
Medical imaging modalities, such as computed tomography (CT) and magnetic res-onance (MR), provide 3...
The diagnostic assessment of cerebrovascular disease makes use of computational simulation as a pred...
Generating subject-specific, all-hexahedral meshes for finite element analysis continues to be of si...
Currently, anatomically consistent segmentation of vascular trees acquired with magnetic resonance i...
A novel method for generating patient-specific high quality conforming hexahedral meshes is presente...
This paper introduces an automated medical image segmentation algorithm which can be used to locate ...
peer reviewedThe finite element method is commonly used in biomedical applications for the simulatio...