Abstract — This paper presents a method for the automatic segmentation of the lungs in X-ray computed tomography (CT) images. The proposed technique is based on the use of a robust geometric active contour that is initialized around the lungs, automatically splits in two, and performs outlier rejection during the curve evolution. The technique starts by grey-level thresholding of the images followed by edge detection. Then the edge connected points are organized into strokes and classified as valid or invalid. A confidence degree (weight) is assigned to each stroke and updated during the evolution process with the valid strokes receiving a high confidence degree and the confidence degrees of the outlier strokes tending to zero. These weight...
The objective of this paper is to develop a segmentation system in order to assist the surgeons to r...
The segmentation of lung volumes constitutes the first step for most computer-aided systems for lung...
A new segmentation technique is introduced for delineating the lung region in 3D computed tomography...
Lung segmentation in thoracic computed tomography (CT) scans is an important preprocessing step for ...
Abstract. In this paper we study the feasibility of an automated ini-tialization system for a robust...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
Abstract. Simple algorithms for segmenting healthy lung parenchyma in CT are unable to deal with hig...
This paper proposes a fully automatic algorithm for accurately segmenting lung regions in High-Resol...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
In this paper, the algorithm that can automatically segment the lung, the airway and the pulmonary v...
Automated extraction of pulmonary anatomy provides a foundation for computerized analysis of compute...
Many medical image analysis systems require segmentation of the structures of interest as a first st...
Automatic segmentation of structures with missing or invisible borders is a challenging task. Since ...
Abstract. The identification of pulmonary air bubbles might play a significant role for medical diag...
Segmentation of pulmonary X-ray computed tomography (CT) images is a precursor to most pulmonary ima...
The objective of this paper is to develop a segmentation system in order to assist the surgeons to r...
The segmentation of lung volumes constitutes the first step for most computer-aided systems for lung...
A new segmentation technique is introduced for delineating the lung region in 3D computed tomography...
Lung segmentation in thoracic computed tomography (CT) scans is an important preprocessing step for ...
Abstract. In this paper we study the feasibility of an automated ini-tialization system for a robust...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
Abstract. Simple algorithms for segmenting healthy lung parenchyma in CT are unable to deal with hig...
This paper proposes a fully automatic algorithm for accurately segmenting lung regions in High-Resol...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
In this paper, the algorithm that can automatically segment the lung, the airway and the pulmonary v...
Automated extraction of pulmonary anatomy provides a foundation for computerized analysis of compute...
Many medical image analysis systems require segmentation of the structures of interest as a first st...
Automatic segmentation of structures with missing or invisible borders is a challenging task. Since ...
Abstract. The identification of pulmonary air bubbles might play a significant role for medical diag...
Segmentation of pulmonary X-ray computed tomography (CT) images is a precursor to most pulmonary ima...
The objective of this paper is to develop a segmentation system in order to assist the surgeons to r...
The segmentation of lung volumes constitutes the first step for most computer-aided systems for lung...
A new segmentation technique is introduced for delineating the lung region in 3D computed tomography...