We present a simple and robust approach that utilizes planar images at different angular rotations combined with unfiltered back-projection to locate the central axes of the pulmonary arterial tree. Three-dimensional points are selected interactively by the user. The computer calculates a sub- volume unfiltered back-projection orthogonal to the vector connecting the two points and centered on the first point. Because more x-rays are absorbed at the thickest portion of the vessel, in the unfiltered back-projection, the darkest pixel is assumed to be the center of the vessel. The computer replaces this point with the newly computer-calculated point. A second back-projection is calculated around the original point orthogonal to a vector connec...
International audienceThe topologies of vascular trees embedded inside soft tissues carry important ...
International audienceObjective : A general method was developed to analyze and describe tree-like s...
By exploiting a priori knowledge of arterial shape and smoothness, subpixel accuracy reconstructions...
We present a simple and robust approach that utilizes planar images at different angular rotations c...
The objective of this study was to develop an X-ray computed tomographic method for pulmonary arteri...
Vascular structures such as the pulmonary arterial tree contain hundreds of thousands of vessel segm...
With advances in medical imaging scanners, it has become commonplace to generate large multidimensio...
AbstractAutomated feature extraction from medical images is an important task in imaging informatics...
To better understand the mechanisms of disease progression and the efficacy of interventions there i...
To better understand the mechanisms of disease progression and the efficacy of interventions there i...
ABSTRACT: This paper presents vascular tree reconstruction and artery-vein separation methods from 3...
This paper describes an algorithm for extracting pulmonary vascular trees (arteries plus veins) from...
International audienceAIM OF THE STUDY: To prove in vivo and on cadaveric lungs, the constancy of th...
Animal models and micro-CT imaging are useful for understanding the functional consequences of, and ...
Medical imaging is nowadays much more than only providing data for diagnosis. It also links 'classic...
International audienceThe topologies of vascular trees embedded inside soft tissues carry important ...
International audienceObjective : A general method was developed to analyze and describe tree-like s...
By exploiting a priori knowledge of arterial shape and smoothness, subpixel accuracy reconstructions...
We present a simple and robust approach that utilizes planar images at different angular rotations c...
The objective of this study was to develop an X-ray computed tomographic method for pulmonary arteri...
Vascular structures such as the pulmonary arterial tree contain hundreds of thousands of vessel segm...
With advances in medical imaging scanners, it has become commonplace to generate large multidimensio...
AbstractAutomated feature extraction from medical images is an important task in imaging informatics...
To better understand the mechanisms of disease progression and the efficacy of interventions there i...
To better understand the mechanisms of disease progression and the efficacy of interventions there i...
ABSTRACT: This paper presents vascular tree reconstruction and artery-vein separation methods from 3...
This paper describes an algorithm for extracting pulmonary vascular trees (arteries plus veins) from...
International audienceAIM OF THE STUDY: To prove in vivo and on cadaveric lungs, the constancy of th...
Animal models and micro-CT imaging are useful for understanding the functional consequences of, and ...
Medical imaging is nowadays much more than only providing data for diagnosis. It also links 'classic...
International audienceThe topologies of vascular trees embedded inside soft tissues carry important ...
International audienceObjective : A general method was developed to analyze and describe tree-like s...
By exploiting a priori knowledge of arterial shape and smoothness, subpixel accuracy reconstructions...