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Titlebook: Discrete Geometry for Computer Imagery; 8th International Co Gilles Bertrand,Michel Couprie,Laurent Perroton Conference proceedings 1999 Sp

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书目名称Discrete Geometry for Computer Imagery
副标题8th International Co
编辑Gilles Bertrand,Michel Couprie,Laurent Perroton
视频video
丛书名称Lecture Notes in Computer Science
图书封面Titlebook: Discrete Geometry for Computer Imagery; 8th International Co Gilles Bertrand,Michel Couprie,Laurent Perroton Conference proceedings 1999 Sp
描述These proceedings contain papers presented at the 8th Discrete Geometry for Computer Imagery conference, held 17-19, March 1999 at ESIEE, Marne-la- Vall ee. The domains of discrete geometry and computer imagery are closely related. Discrete geometry provides both theoretical and algorithmic models for the p- cessing, analysis and synthesis of images; in return computer imagery, in its variety of applications, constitutes a remarkable experimentational eld and is a source of challenging problems. The number of returning participants, the arrival each year of contributions from new laboratories and new researchers, as well as the quality and originality of the results have contributed to the success of the conference and are an - dication of the dynamism of this eld. The DGCI has become one of the major conferences related to this topic, including participating researchers and la- ratories from all over the world. Of the 41 papers received this year, 24 have been selected for presentation and 7 for poster sessions. In addition to these, four invited speakers have contributed to the conference. The site of Marne-la-Vall ee, just 20 min away from Paris, is particularly we- suited to ho
出版日期Conference proceedings 1999
关键词Artistic Imaging; Computer Graphics; Computer Imagery; Image Processing; computer; discrete geometry; topo
版次1
doihttps://doi.org/10.1007/3-540-49126-0
isbn_softcover978-3-540-65685-2
isbn_ebook978-3-540-49126-2Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer-Verlag GmbH Germany, part of Springer Nature 1999
The information of publication is updating

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0302-9743 to these, four invited speakers have contributed to the conference. The site of Marne-la-Vall ee, just 20 min away from Paris, is particularly we- suited to ho978-3-540-65685-2978-3-540-49126-2Series ISSN 0302-9743 Series E-ISSN 1611-3349
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Multiresolution Representation of Shapes Based on Cell Complexeslls. An MC describes a shape as an initial cell complex approximating it, plus a collection of generic modification patterns to such complex arranged according to a partial order. The partial order is essential to extract variable-resolution shape descriptions in real time. We show how existing mult
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Optimal Time Computation of the Tangent of a Discrete Curve: Application to the Curvaturethe study of discrete lines. By the use of the linear time segment recognition algorithm of Debled and Réveillès [.], Vialard [.] has proposed a .(.) algorithm for computing the tangent in one point of a discrete curve where . is the average length of the tangent. By applying her algorithm to . poin
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The Discrete Moments of the Circlests ..(.), defined as . can be a good approximation for ..(.). This paper gives an answer what is the order of magnitude for the difference between a real moment ..(.) and its approximation ..(.), calculated from the corresponding digital picture. Namely, we estimate . in function of the size of the
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Local Configurations of Digital Hyperplanes., we investigate the arrangement of the different combinatorial structures contained in a digital hyperplane. The regularity of this deployment is controlled by two arithmetical functions that we call .. and ... By using these two simple tools, we prove that the local configurations in a functional
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Intersection Number of Paths Lying on a Digital Surface and a New Jordan Theoremider two kinds of paths for different adjacencies, and define the algebraic number of oriented intersections between these two paths. We show that this intersection number is invariant under any homotopic transformation we apply on the two paths. Already, this intersection number allows us to prove
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