DocumentCode
157959
Title
Automatic 3D change detection for glaucoma diagnosis
Author
Lu Wang ; Kallem, Vinutha ; Bansal, Mayank ; Eledath, J. ; Sawhney, Harpreet ; Pearson, D.J. ; Stone, R.A.
Author_Institution
SRI Int., Princeton, NJ, USA
fYear
2014
fDate
24-26 March 2014
Firstpage
401
Lastpage
408
Abstract
Important diagnostic criteria for glaucoma are changes in the 3D structure of the optic disc due to optic nerve damage. We propose an automatic approach for detecting these changes in 3D models reconstructed from fundus images of the same patient taken at different times. For each time session, only two uncalibated fundus images are required. The approach applies a 6-point algorithm to estimate relative camera pose assuming a constant camera focal length. To deal with the instability of 3D reconstruction associated with fundus images, our approach keeps multiple candidate reconstruction solutions for each image pair. The best 3D reconstruction is found by optimizing the 3D registration of all images after an iterative bundle adjustment that tolerates possible structure changes. The 3D structure changes are detected by evaluating the reprojection errors of feature points in image space. We validate the approach by comparing the diagnosis results with manual grading by human experts on a fundus image dataset.
Keywords
diseases; eye; image reconstruction; image registration; iterative methods; medical expert systems; medical image processing; object detection; 3D models; 3D reconstruction; 3D registration; automatic 3D change detection; camera pose; constant camera focal length; diagnostic criteria; fundus image dataset; glaucoma diagnosis; human experts; image space; iterative bundle adjustment; multiple candidate reconstruction solution; optic disc; optic nerve damage; reprojection error; uncalibated fundus image; Adaptive optics; Cameras; Image reconstruction; Optical imaging; Retina; Solid modeling; Three-dimensional displays;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of Computer Vision (WACV), 2014 IEEE Winter Conference on
Conference_Location
Steamboat Springs, CO
Type
conf
DOI
10.1109/WACV.2014.6836072
Filename
6836072
Link To Document