DocumentCode
1481525
Title
Segmentation of medical images using LEGION
Author
Shareef, Naeem ; Wang, DeLiang L. ; Yagel, Roni
Author_Institution
Dept. of Comput. & Inf. Sci., Ohio State Univ., Columbus, OH, USA
Volume
18
Issue
1
fYear
1999
Firstpage
74
Lastpage
91
Abstract
Advances in visualization technology and specialized graphic workstations allow clinicians to virtually interact with anatomical structures contained within sampled medical-image datasets. A hindrance to the effective use of this technology is the difficult problem of image segmentation. In this paper, the authors utilize a recently proposed oscillator network called the locally excitatory globally inhibitory oscillator network (LEGION) whose ability to achieve fast synchrony with local excitation and desynchrony with global inhibition makes it an effective computational framework for grouping similar features and segregating dissimilar ones in an image. The authors extract an algorithm from LEGION dynamics and propose an adaptive scheme for grouping. They show results of the algorithm to two-dimensional (2-D) and three-dimensional (3-D) (volume) computerized topography (CT) and magnetic resonance imaging (MRI) medical-image datasets. In addition, the authors compare their algorithm with other algorithms for medical-image segmentation, as well as with manual segmentation. LEGION´s computational and architectural properties make it a promising approach for real-time medical-image segmentation.
Keywords
biomedical MRI; computerised tomography; feature extraction; image segmentation; medical image processing; CT; LEGION; adaptive scheme; anatomical structures; computational framework; desynchrony; dissimilar features segregation; fast synchrony; local excitation; locally excitatory globally inhibitory oscillator network; magnetic resonance imaging; medical diagnostic imaging; medical images segmentation; sampled medical-image datasets; similar features grouping; specialized graphic workstations; Anatomical structure; Biomedical imaging; Computer networks; Graphics; Heuristic algorithms; Image segmentation; Local oscillators; Magnetic resonance imaging; Visualization; Workstations; Algorithms; Head; Humans; Image Processing, Computer-Assisted; Magnetic Resonance Imaging; Tomography, X-Ray Computed;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.750259
Filename
750259
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