DocumentCode
800113
Title
Efficient ocular expression analysis for synthetic reproduction
Author
Del Valle, Ana C Andrés ; Dugelay, Jean-Luc
Author_Institution
Multimedia Commun. Dept., Eurecom Inst., Sophia Antipolis, France
Volume
8
Issue
1
fYear
2006
Firstpage
70
Lastpage
80
Abstract
This paper presents an original framework that analyzes the complete ocular (eye + eyebrow) expression on video sequences to reproduce it later on synthetic three-dimensional (3-D) models in real-time. We propose a two step process to develop robust techniques for facial feature analysis aimed at working without special illumination conditions or physical constraints on the user (markers, fixed frontal pose, etc.). First, simple and efficient image-processing methods based on motion models are designed over a frontal point of view of the face. Natural and realistic intra-feature and inter-feature constraints are applied to improve the analysis results. Then, the usability of these algorithms is extended to enable the analysis regardless of the person´s pose in front of the camera. This is achieved by redefining the motion models involved over the speaker´s highly realistic synthetic representation (clone), by using a suitable observation model, and by predicting the head pose in 3-D, frame by frame.
Keywords
computer animation; feature extraction; image motion analysis; image sequences; video signal processing; computer animation; facial feature analysis; image motion analysis; image processing; inter-feature constraints; intra-feature constraints; ocular expression analysis; synthetic reproduction; synthetic three-dimensional model; video sequences; Algorithm design and analysis; Cameras; Cloning; Eyebrows; Facial features; Lighting; Predictive models; Robustness; Usability; Video sequences; Animation; Kalman filtering; communications systems; image motion analysis; image processing; machine vision; real-time systems; teleconferencing;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2005.861290
Filename
1580527
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