• Medientyp: E-Book; Konferenzbericht
  • Titel: Scale Space and Variational Methods in Computer Vision : 5th International Conference, SSVM 2015, Lège-Cap Ferret, France, May 31 - June 4, 2015, Proceedings
  • Enthält: Scale space and partial differential equation methodsDenoising, restoration and reconstruction, segmentation and partitioning -- Flow, motion and Registration -- Photography, texture and color processing.-Shape, surface and 3D Problems -- Optimization theory and methods in imaging.
  • Beteiligte: Aujol, Jean-François [Verfasser:in]; Nikolova, Mila [Herausgeber:in]; Papadakis, Nicolas [Herausgeber:in]
  • Erschienen: Cham [u.a.]: Springer, 2015
  • Erschienen in: Lecture notes in computer science ; 9087
    Bücher
  • Umfang: Online-Ressource (XV, 716 p. 235 illus, online resource)
  • Sprache: Englisch
  • DOI: 10.1007/978-3-319-18461-6
  • ISBN: 9783319184616
  • Identifikator:
  • RVK-Notation: SS 4800 : Lecture notes in computer science
  • Schlagwörter: Maschinelles Sehen > Merkmalsextraktion > Skalenraum > Rauschunterdrückung
    Bildverarbeitung > Geometrieverarbeitung > Variationsrechnung > Level-Set-Methode
  • Entstehung:
  • Anmerkungen: Literaturangaben
  • Beschreibung: Scale space and partial differential equation methods -- Denoising, restoration and reconstruction, segmentation and partitioning -- Flow, motion and Registration -- Photography, texture and color processing.-Shape, surface and 3D Problems -- Optimization theory and methods in imaging.

    This book constitutes the refereed proceedings of the 5th International Conference on Scale Space and Variational Methods in Computer Vision, SSVM 2015, held in Lège-Cap Ferret, France, in May 2015. The 56 revised full papers presented were carefully reviewed and selected from 83 submissions. The papers are organized in the following topical sections: scale space and partial differential equation methods; denoising, restoration and reconstruction, segmentation and partitioning; flow, motion and registration; photography, texture and color processing; shape, surface and 3D problems; and optimization theory and methods in imaging.