DocumentCode
2081252
Title
Realistic 3D mouth animation using a minimal number of parameters
Author
Moubaraki, Lhassan ; Ohya, Jun
Author_Institution
ATR Media Integration & Commun. Res. Labs., Kyoto, Japan
fYear
1996
fDate
11-14 Nov 1996
Firstpage
201
Lastpage
206
Abstract
Our work on real-time animation enhances the realism of computer-generated faces by improving mouth modeling and allowing protrusion: 3 points on the corner of the lips are detected and the mouth model is completely controlled by the horizontal height and vertical width (h, w) of the mouth. Our approach parametrically models lip motion and mouth protrusion using parameters (h, w) and a textured realistic 3D face model. The basic idea for our approach, given parameters (h, w) is to compute the opening angle at the corner of the mouth as well as the protrusion coefficients using a radial basis function neural network, and to obtain the lip shape using a piecewise spline interpolation. Once the accurate lip shape is computed, the motion is propagated to outer contours of the mouth area based on heuristics of mouth motion and assuming a symmetry of the face. The CG rendering and implementation of our mouth animation algorithm achieves interesting results in enhancing visual realism with minimal computational expense by more accurately modeling the lip shape
Keywords
computer animation; feedforward neural nets; interpolation; rendering (computer graphics); splines (mathematics); 3D mouth animation; computer-generated faces; lip motion; mouth modeling; mouth protrusion; piecewise spline interpolation; radial basis function neural network; real-time animation; textured realistic 3D face model; Character generation; Computer networks; Face detection; Facial animation; Interpolation; Lips; Mouth; Radial basis function networks; Shape; Spline;
fLanguage
English
Publisher
ieee
Conference_Titel
Robot and Human Communication, 1996., 5th IEEE International Workshop on
Conference_Location
Tsukuba
Print_ISBN
0-7803-3253-9
Type
conf
DOI
10.1109/ROMAN.1996.568818
Filename
568818
Link To Document