Purpose: To propose and assess a new method that automatically extracts a three-dimensional (3D) geometric model of the thoracic aorta (TA) from 3D cine phase contrast MRI (PCMRI) acquisitions. Methods: The proposed method is composed of two steps: segmentation of the TA and creation of the 3D geometric model. The segmentation algorithm, based on Level Set, was set and applied to healthy subjects acquired in three different modalities (with and without SENSE reduction factors). Accuracy was evaluated using standard quality indices. The 3D model is characterized by the vessel surface mesh and its centerline; the comparison of models obtained from the three different datasets was also carried out in terms of radius of curvature (RC) and avera...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
INTRODUCTION Native-MR angiography (N-MRA) is considered an imaging alternative to contrast enhan...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...
Purpose: To propose and assess a new method that automatically extracts a three-dimensional (3D) geo...
International audiencePurpose: To assess if segmentation of the aorta can be accurately achieved usi...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
PurposeThe purpose of this work is to develop a fully automated pipeline to compute aorta morphology...
Segmentation of aorta and other blood vessels from standard 3D CT or MRI scans needs a lot of hand w...
Automatic Ascending Aorta Segmentation is one of the important steps towards automatic segmentation ...
Tridirectional Phase-Contrast (PC)-MRI sequences provide spatially and temporally resolved measureme...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
INTRODUCTION Native-MR angiography (N-MRA) is considered an imaging alternative to contrast enhan...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...
Purpose: To propose and assess a new method that automatically extracts a three-dimensional (3D) geo...
International audiencePurpose: To assess if segmentation of the aorta can be accurately achieved usi...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
PurposeThe purpose of this work is to develop a fully automated pipeline to compute aorta morphology...
Segmentation of aorta and other blood vessels from standard 3D CT or MRI scans needs a lot of hand w...
Automatic Ascending Aorta Segmentation is one of the important steps towards automatic segmentation ...
Tridirectional Phase-Contrast (PC)-MRI sequences provide spatially and temporally resolved measureme...
Purpose: Quantitative analysis of vascular blood-flow, acquired by phase-contrast MRI requires an ac...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
Purpose In this study we proposed a fully automated method for localizing and segmenting the ascendi...
INTRODUCTION Native-MR angiography (N-MRA) is considered an imaging alternative to contrast enhan...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...