We introduce a tool to reconstruct a geometrical surface mesh from sparse, heterogeneous, non coincidental contours and show its application to cardiac data. In recent years much research has looked at creating personalised 3D anatomical models of the heart. These models usually incorporate a geometrical reconstruction of the anatomy in order to understand better cardiovascular functions as well as predict different processes after a clinical event. The ability to accurately reconstruct heart anatomy from MRI in three dimensions commonly comes with fundamental challenges, notably the trade off between data fitting and regularization. Most current techniques requires data to be either parallel, or coincident, and bias the final result due to...
Cardiac magnetic resonance (CMR) imaging is a valuable modality in the diagnosis and characterizatio...
High-quality three-dimensional (3D) representations of cardiac anatomy and function are crucial for ...
Computer Tomography (CT) and in particular super fast, 64 and 256 detector CT has rapidly advanced o...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
Reconstructing 3D ventricular surfaces from 2D cardiac MR data is challenging due to the sparsity of...
Cardiac magnetic resonance (CMR) imaging is the one of the gold standard imaging modalities for the ...
We propose an automatic algorithm for the reconstruction of patient-specific cardiac mesh models wit...
Abstract. In this paper, we present an effective algorithm to construct a 3D shape atlas for the lef...
Reconstructing 3D ventricular surfaces from 2D cardiac MR data is challenging due to the sparsity of...
Patient-specific cardiac modeling combines geometries of the heart derived from medical images and b...
The 3D reconstruction from a single-view image is a longstanding issue in computer vision literature...
Reparameterization of surfaces is a widely used tool in computer graphics known mostly from the reme...
Reparameterization of surfaces is a widely used tool in computer graphics known mostly from the reme...
Cardiac magnetic resonance (CMR) imaging is a valuable modality in the diagnosis and characterizatio...
High-quality three-dimensional (3D) representations of cardiac anatomy and function are crucial for ...
Computer Tomography (CT) and in particular super fast, 64 and 256 detector CT has rapidly advanced o...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
We introduce a tool to build a surface mesh able to deal with sparse, heterogeneous, non-parallel, c...
Reconstructing 3D ventricular surfaces from 2D cardiac MR data is challenging due to the sparsity of...
Cardiac magnetic resonance (CMR) imaging is the one of the gold standard imaging modalities for the ...
We propose an automatic algorithm for the reconstruction of patient-specific cardiac mesh models wit...
Abstract. In this paper, we present an effective algorithm to construct a 3D shape atlas for the lef...
Reconstructing 3D ventricular surfaces from 2D cardiac MR data is challenging due to the sparsity of...
Patient-specific cardiac modeling combines geometries of the heart derived from medical images and b...
The 3D reconstruction from a single-view image is a longstanding issue in computer vision literature...
Reparameterization of surfaces is a widely used tool in computer graphics known mostly from the reme...
Reparameterization of surfaces is a widely used tool in computer graphics known mostly from the reme...
Cardiac magnetic resonance (CMR) imaging is a valuable modality in the diagnosis and characterizatio...
High-quality three-dimensional (3D) representations of cardiac anatomy and function are crucial for ...
Computer Tomography (CT) and in particular super fast, 64 and 256 detector CT has rapidly advanced o...