Multi-scale capture of facial geometry and motion
Author(s) -
Bernd Bickel,
Mario Botsch,
Roland Angst,
Wojciech Matusik,
Miguel Á. Otaduy,
Hanspeter Pfister,
Markus Groß
Publication year - 2007
Publication title -
digital access to scholarship at harvard (dash) (harvard university)
Language(s) - English
Resource type - Conference proceedings
ISSN - 0730-0301
DOI - 10.1145/1275808.1276419
Subject(s) - computer vision , motion capture , facial motion capture , computer science , artificial intelligence , computer facial animation , wrinkle , animation , motion (physics) , face (sociological concept) , parametric statistics , facial expression , geometry , computer graphics (images) , computer animation , facial recognition system , mathematics , feature extraction , face detection , statistics , materials science , sociology , composite material , social science
We present a novel multi-scale representation and acquisition method for the animation of high-resolution facial geometry and wrinkles. We first acquire a static scan of the face including reflectance data at the highest possible quality. We then augment a traditional marker-based facial motion-capture system by two synchronized video cameras to track expression wrinkles. The resulting model consists of high-resolution geometry, motion-capture data, and expression wrinkles in 2D parametric form. This combination represents the facial shape and its salient features at multiple scales. During motion synthesis the motion-capture data deforms the high-resolution geometry using a linear shell-based mesh-deformation method. The wrinkle geometry is added to the facial base mesh using nonlinear energy optimization. We present the results of our approach for performance replay as well as for wrinkle editing.
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