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A Selective Expression Manipulation with Parametric 3D Facial Modelopen access

Authors
Kang, JiwooSong, HyewonLee, KyoungohLee, Sanghoon
Issue Date
Feb-2023
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
3D facial modeling; computational parameter fitting; Correlation; Faces; Fitting; Human modeling; mesh models; Semantics; Shape; shape analysis; Solid modeling; Three-dimensional displays
Citation
IEEE Access, v.11, pp 17066 - 17084
Pages
19
Journal Title
IEEE Access
Volume
11
Start Page
17066
End Page
17084
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/152094
DOI
10.1109/ACCESS.2023.3243287
ISSN
2169-3536
2169-3536
Abstract
This paper proposes a novel method to represent expressive 3D facial shapes called the Selective Expression Manipulation (SEM) by fitting the expression coefficients of delta-blendshapes, which is the standard parametric facial model widely used in industries. SEM focuses on preserving blendshape semantics to characterize the facial shapes since the facial shape obtained by minimizing the distance to sparse facial landmarks might fail to signify a facial expression from a human being’s perspective. Assuming each delta-blendshape corresponds to a facial movement with semantic meaning, SEM finds a series of facial motions required to compose the target facial expression. In addition, SEM sequentially determines a sufficient number of expressions and coefficients closely resembling the target facial movements by introducing similarities to quantify the directional correlation of facial motions between a target and a blendshape, excluding redundant expressions in terms of motions from the neutral shape. As a result, far fewer inter-correlated expressions that significantly increase the target correlation can be obtained. Furthermore, SEM exhibits substantial improvement in accuracy, correlation, semantics, and stability in experiments over previous facial fitting schemes and state-of-the-art methods. It is demonstrated that SEM enables accurate and realistic 3D facial shape generation by semantically manipulating expression delta-blendshapes. Author
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Kang, Jiwoo
공과대학 (인공지능공학부)
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