DocumentCode :
941741
Title :
General theory of remote gaze estimation using the pupil center and corneal reflections
Author :
Guestrin, Elias Daniel ; Eizenman, Moshe
Author_Institution :
Dept. of Electr. & Comput. Eng., Inst. of Biomaterials & Biomed. Eng., Toronto, Ont., Canada
Volume :
53
Issue :
6
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
1124
Lastpage :
1133
Abstract :
This paper presents a general theory for the remote estimation of the point-of-gaze (POG) from the coordinates of the centers of the pupil and corneal reflections. Corneal reflections are produced by light sources that illuminate the eye and the centers of the pupil and corneal reflections are estimated in video images from one or more cameras. The general theory covers the full range of possible system configurations. Using one camera and one light source, the POG can be estimated only if the head is completely stationary. Using one camera and multiple light sources, the POG can be estimated with free head movements, following the completion of a multiple-point calibration procedure. When multiple cameras and multiple light sources are used, the POG can be estimated following a simple one-point calibration procedure. Experimental and simulation results suggest that the main sources of gaze estimation errors are the discrepancy between the shape of real corneas and the spherical corneal shape assumed in the general theory, and the noise in the estimation of the centers of the pupil and corneal reflections. A detailed example of a system that uses the general theory to estimate the POG on a computer screen is presented.
Keywords :
biomechanics; biomedical optical imaging; estimation theory; eye; medical image processing; corneal reflections; estimation errors; eye; free head movement; light sources; multiple-point calibration; point-of-gaze; pupil center; remote gaze estimation; video images; Acoustic reflection; Calibration; Cameras; Cornea; Estimation error; Head; Light sources; Multi-stage noise shaping; Optical reflection; Shape; Model; point of regard; pupil center and corneal reflection(s); remote gaze estimation; system configurations; video based gaze estimation; Computer Simulation; Cornea; Corneal Topography; Eye Movements; Fixation, Ocular; Humans; Image Interpretation, Computer-Assisted; Iris; Models, Biological; Ophthalmoscopy; Photometry; Pupil; Video Recording;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2005.863952
Filename :
1634506
Link To Document :
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