DocumentCode :
61407
Title :
Superpixel Classification Based Optic Disc and Optic Cup Segmentation for Glaucoma Screening
Author :
Jun Cheng ; Jiang Liu ; Yanwu Xu ; Fengshou Yin ; Wong, Damon Wing Kee ; Ngan-Meng Tan ; Dacheng Tao ; Ching-Yu Cheng ; Tin Aung ; Tien Yin Wong
Author_Institution :
iMED Ocular Imaging Programme in Inst. for Infocomm Res., Agency for Sci., Technol. & Res., Singapore, Singapore
Volume :
32
Issue :
6
fYear :
2013
fDate :
Jun-13
Firstpage :
1019
Lastpage :
1032
Abstract :
Glaucoma is a chronic eye disease that leads to vision loss. As it cannot be cured, detecting the disease in time is important. Current tests using intraocular pressure (IOP) are not sensitive enough for population based glaucoma screening. Optic nerve head assessment in retinal fundus images is both more promising and superior. This paper proposes optic disc and optic cup segmentation using superpixel classification for glaucoma screening. In optic disc segmentation, histograms, and center surround statistics are used to classify each superpixel as disc or non-disc. A self-assessment reliability score is computed to evaluate the quality of the automated optic disc segmentation. For optic cup segmentation, in addition to the histograms and center surround statistics, the location information is also included into the feature space to boost the performance. The proposed segmentation methods have been evaluated in a database of 650 images with optic disc and optic cup boundaries manually marked by trained professionals. Experimental results show an average overlapping error of 9.5% and 24.1% in optic disc and optic cup segmentation, respectively. The results also show an increase in overlapping error as the reliability score is reduced, which justifies the effectiveness of the self-assessment. The segmented optic disc and optic cup are then used to compute the cup to disc ratio for glaucoma screening. Our proposed method achieves areas under curve of 0.800 and 0.822 in two data sets, which is higher than other methods. The methods can be used for segmentation and glaucoma screening. The self-assessment will be used as an indicator of cases with large errors and enhance the clinical deployment of the automatic segmentation and screening.
Keywords :
biomedical optical imaging; diseases; eye; feature extraction; image classification; image segmentation; medical image processing; neurophysiology; vision; automated optic disc segmentation; average overlapping error; center surround statistics; chronic eye disease; disease detection; feature space; glaucoma screening; histograms; intraocular pressure; location information; optic cup segmentation; optic nerve head assessment; retinal fundus images; self-assessment reliability score; superpixel classification; trained professionals; vision loss; Adaptive optics; Deformable models; Histograms; Image color analysis; Image segmentation; Optical imaging; Optical sensors; Glaucoma screening; optic cup segmentation; optic disc segmentation; Area Under Curve; Databases, Factual; Diagnostic Techniques, Ophthalmological; Glaucoma; Humans; Image Interpretation, Computer-Assisted; Optic Disk; Reproducibility of Results; Support Vector Machines;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2013.2247770
Filename :
6464593
Link To Document :
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