This paper presents an automated method to segment left ventricle (LV) tissues from functional and delayed-enhancement (DE) cardiac magnetic resonance imaging (MRI) scans using a sequential multi-step approach. First, a region of interest (ROI) is computed to create a subvolume around the LV using morphological operations and image arithmetic. From the subvolume, the myocardial contours are automatically delineated using difference of Gaussians (DoG) filters and GSV snakes. These contours are used as a mask to identify pathological tissues, such as fibrosis or scar, within the DE-MRI. The presented automated technique is able to accurately delineate the myocardium and identify the pathological tissue in patient sets. The results were valida...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Proceedings of the 29th Annual International Conference of the IEEE EMBS Cité Internationale, Lyon, ...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
\u3cp\u3eWe propose a novel automatic method to segment the myocardium on late-enhancement cardiac M...
In medical diagnosis, the movement of the myocardium of left ventricle (LV) can represent the pump f...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Proceedings of the 29th Annual International Conference of the IEEE EMBS Cité Internationale, Lyon, ...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
We propose a novel automatic method to segment the myocardium on late-enhancement cardiac MR (LE CMR...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
A novel approach for the automatic segmentation has been developed to extract the epi-cardium and en...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
\u3cp\u3eWe propose a novel automatic method to segment the myocardium on late-enhancement cardiac M...
In medical diagnosis, the movement of the myocardium of left ventricle (LV) can represent the pump f...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Previously a myocardial tissue classification algorithm has been developed to locate and quantify in...
Proceedings of the 29th Annual International Conference of the IEEE EMBS Cité Internationale, Lyon, ...