DocumentCode :
1673396
Title :
Intelligent mesh scissoring using 3D snakes
Author :
Lee, Yunjin ; Lee, Seungyong ; Shamir, Ariel ; Cohen-Or, Daniel ; Seidel, Hans-Peter
fYear :
2004
Firstpage :
279
Lastpage :
287
Abstract :
Mesh partitioning and parts extraction have become key ingredients for many mesh manipulation applications both manual and automatic. In this paper, we present an intelligent scissoring operator for meshes which supports both automatic segmentation and manual cutting. Instead of segmenting the mesh by clustering, our approach concentrates on finding and defining the contours for cutting. This approach is based on the minima rule, which states that human perception usually divides a surface into parts along the contours of concave discontinuity of the tangent plane. The technique uses feature extraction to find such candidate feature contours. Subsequently, such a contour can be selected either automatically or manually, or the user may draw a 2D line to start the scissoring process. The given open contour is completed to form a loop around a specific part of the mesh, and this loop is used as the initial position of a 3D geometric snake. The snake moves by relaxation until it settles to define the final scissoring position. This process uses several fundamental geometric mesh attributes, such as curvature and centricity, and enables both automatic segmentation and an easy-to-use intelligent-scissoring operator.
Keywords :
computational geometry; feature extraction; mesh generation; 3D geometric snake; automatic segmentation; concave discontinuity; geometric mesh; intelligent mesh scissoring; intelligent scissoring operator; manual cutting; mesh partitioning; parts extraction; tangent plane; Application software; Computer graphics; Feature extraction; Humans; Mesh generation; Partitioning algorithms; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Graphics and Applications, 2004. PG 2004. Proceedings. 12th Pacific Conference on
ISSN :
1550-4085
Print_ISBN :
0-7695-2234-3
Type :
conf
DOI :
10.1109/PCCGA.2004.1348358
Filename :
1348358
Link To Document :
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