This paper presents a statistical approach to aggregating speed and phase (directional) information for vascular segmentation of phase contrast magnetic resonance angiograms (PC-MRA). Rather than relying on speed information alone, as done by others and in our own work, we demonstrate that including phase information as a priori knowledge in a Markov random field (MRF) model can improve the quality of segmentation. This is particularly true in the region within an aneurysm where there is a heterogeneous intensity pattern and significant vascular signal loss. We propose to use a Maxwell-Gaussian mixture density to model the background signal distribution and combine this with a uniform distribution for modelling vascular signal to give a Max...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...
The increasing size and number of data sets of large four dimensional (three spatial, one temporal) ...
Abstract—A new method for visualisation and segmentation of vessel structures in 3D magnetic resonan...
In this paper, we present an approach to segmenting the brain vasculature in phase contrast magnetic...
In this paper, we present an approach to segmenting the brain vasculature in phase contrast magnetic...
Brain vessel segmentation is a fundamental component of cerebral disease screening systems. However,...
Angiographic images are routinely acquired for the medical diagnosis of arterial diseases. The digit...
This paper presents a method for three-dimensional (3D) segmentation of blood vessels, using a combi...
Automatic identification of various perfusion compartments from dynamic susceptibility contrast magn...
Automatic identification of various perfusion compartments from dynamic susceptibility contrast magn...
International audienceReliable segmentation of 3D magnetic resonance angiography (MRA) is fundamenta...
PurposePrecise quantification of cerebral arteries can help with differentiation and prognostication...
Often in neurosurgical planning a dual echo acquisition is performed that yields proton density (PD...
AbstractIn the Region Growing Algorithm (RGA) results of segmentation are totally dependent on the s...
grantor: University of TorontoA class of magnetic resonance angiography (MRA) methods, cal...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...
The increasing size and number of data sets of large four dimensional (three spatial, one temporal) ...
Abstract—A new method for visualisation and segmentation of vessel structures in 3D magnetic resonan...
In this paper, we present an approach to segmenting the brain vasculature in phase contrast magnetic...
In this paper, we present an approach to segmenting the brain vasculature in phase contrast magnetic...
Brain vessel segmentation is a fundamental component of cerebral disease screening systems. However,...
Angiographic images are routinely acquired for the medical diagnosis of arterial diseases. The digit...
This paper presents a method for three-dimensional (3D) segmentation of blood vessels, using a combi...
Automatic identification of various perfusion compartments from dynamic susceptibility contrast magn...
Automatic identification of various perfusion compartments from dynamic susceptibility contrast magn...
International audienceReliable segmentation of 3D magnetic resonance angiography (MRA) is fundamenta...
PurposePrecise quantification of cerebral arteries can help with differentiation and prognostication...
Often in neurosurgical planning a dual echo acquisition is performed that yields proton density (PD...
AbstractIn the Region Growing Algorithm (RGA) results of segmentation are totally dependent on the s...
grantor: University of TorontoA class of magnetic resonance angiography (MRA) methods, cal...
Blood flow measurements in the ascending aorta and pulmonary artery from phase-contrast magnetic res...
The increasing size and number of data sets of large four dimensional (three spatial, one temporal) ...
Abstract—A new method for visualisation and segmentation of vessel structures in 3D magnetic resonan...