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PDE-BASED MEDIAL AXIS EXTRACTION AND SHAPE MANIPULATION OF ARBITRARY MESHES 被引量:3

PDE-BASED MEDIAL AXIS EXTRACTION AND SHAPE MANIPULATION OF ARBITRARY MESHES
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摘要 Shape skeletonization (i.e., medial axis extraction) is powerful in many visual computing applications, such as pattern recognition, object segmentation, registration, and animation. In this paper, the authors expand the use of diffusion equations combined with distance field information to approximate medial axes of arbitrary 3D differential properties. It offers an alternative solids represented by polygonal meshes based on their but natural way for medial axis extraction for commonly used 3D polygonal models. By solving the PDE along time axis, this system can not only quickly extract diffusion-based medial axes of input meshes, but also allow users to visualize the extraction process at each time step. In addition, the proposed model provides users a set of manipulation toolkits to sculpt extracted medial axes, then use diffusion-based techniques to recover corresponding deformed shapes according to the original input datasets. This skeleton-based shape manipulation offers a fast and easy way for animation and deformation of complicated mesh objects.
出处 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2008年第4期609-625,共17页 系统科学与复杂性学报(英文版)
基金 This research was supported in part by the National Science Foundation (NSF) Information Technology Research under Grant No.IIS-0082035 the NSF under Grant No.IIS-0097646 Alfred P.Sloan Fellowship,Honda Initiation Award an appointment of Haixia Du to the NLM Research Participation Program sponsored by the National Library of Medicine and administered by the Oak Ridge Institute for Science and Education
关键词 Diffusion Equation Medial Axis Extraction PDE techniques Polygonal Meshes Shape Manipulation. 扩散方程 中间枢椎提取 PDE技术 多边形网孔
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