DocumentCode :
1504817
Title :
Intrinsic Geometric Scale Space by Shape Diffusion
Author :
Zou, Guangyu ; Hua, Jing ; Lai, Zhaoqiang ; Gu, Xianfeng ; Dong, Ming
Author_Institution :
Wayne State Univ., Detroit, MI, USA
Volume :
15
Issue :
6
fYear :
2009
Firstpage :
1193
Lastpage :
1200
Abstract :
This paper formalizes a novel, intrinsic geometric scale space (IGSS) of 3D surface shapes. The intrinsic geometry of a surface is diffused by means of the Ricci flow for the generation of a geometric scale space. We rigorously prove that this multiscale shape representation satisfies the axiomatic causality property. Within the theoretical framework, we further present a feature-based shape representation derived from IGSS processing, which is shown to be theoretically plausible and practically effective. By integrating the concept of scale-dependent saliency into the shape description, this representation is not only highly descriptive of the local structures, but also exhibits several desired characteristics of global shape representations, such as being compact, robust to noise and computationally efficient. We demonstrate the capabilities of our approach through salient geometric feature detection and highly discriminative matching of 3D scans.
Keywords :
computer graphics; feature extraction; image matching; image representation; 3D surface shapes; Ricci flow; axiomatic causality property; feature-based shape representation; global shape representations; intrinsic geometric scale space; multiscale shape representation; salient geometric feature detection; scale-dependent saliency; shape diffusion; Computer vision; Data mining; Feature extraction; Geometry; Noise robustness; Noise shaping; Shape; Smoothing methods; Solid modeling; Surface treatment; Riemannian manifolds; Scale space; feature extraction; geometric flow;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2009.159
Filename :
5290729
Link To Document :
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