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hal-00387049, version 1

Multiresolution Analysis

Georges-Pierre Bonneau () 12, Gershon Elber () 3, Stefanie Hahmann (Author to contact preferably) 24, Basile Sauvage () 2

Shape Analysis and Structuring Springer (Ed.) (2008) 83-114

Abstract: Multiresolution analysis has received considerable attention in recent years by researchers in the fields of computer graphics, geometric modeling and visualization. They are now considered a powerful tool for efficiently representing functions at multiple levels-of-detail with many inherent advantages, including compression, Level-Of-Details (LOD) display, progressive transmission and LOD editing. This survey chapter attempts to provide an overview of the recent results on the topic of multiresolution, with special focus on the work of researchers who are participating in the AIM@SHAPE European Networks of Excellence (www.aimatshape.net).

  • 1:  EVASION (INRIA Grenoble Rhône-Alpes / LJK Laboratoire Jean Kuntzmann)
  • CNRS : UMR5224 – INRIA – Laboratoire Jean Kuntzmann – Institut National Polytechnique de Grenoble (INPG) – Université Joseph Fourier - Grenoble I – Université Pierre-Mendès-France - Grenoble II
  • 2:  Laboratoire Jean Kuntzmann (LJK)
  • CNRS : UMR5224 – Université Joseph Fourier - Grenoble I – Université Pierre-Mendès-France - Grenoble II – Institut Polytechnique de Grenoble - Grenoble Institute of Technology
  • 3:  Center for Graphics and Geometric Computing (CGGC)
  • Technion - Israel Institute of Technology
  • 4:  Laboratoire de Modélisation et Calcul (LMC - IMAG)
  • CNRS : UMR5523 – Université Joseph Fourier - Grenoble I – Institut National Polytechnique de Grenoble (INPG)
  • Domain : Computer Science/Computer Graphics and Virtual Reality
    Computer Science/Computational Geometry
  • Comment : http://www.springer.com/west/home/math/analysis?SGWID=4-10044-22-173665611-detailsPage=ppmmedia|toc
 
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  • Submitted on: Friday, 22 May 2009 16:59:47
  • Updated on: Wednesday, 10 November 2010 16:00:04