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12篇 您的检索式:作者名="Mioc"
    题名 作者 年代 出处 被引量
1Characterization of potassium salts of 12-tungstophosphoric acid显示文摘Holclajtner-Antunovic I Mioc U B Todorovic M 2010Materials Research Bulletin2010,45,11:1
2Molecular characterization of Cryptosporidium isolates from humans in Slovenia显示文摘Soba B Petrovec M Mioc V 0,,:1
3Genetic diversity of three donkey populations in the Croatial region 显示文摘Ivankovic A Kavar T Caput P Mioc B Pavic V Dovc P 2002Anim Genet2002,33,:1
4Equilibrium of the protonie species in hydrates of some heteropolyacids at elevated temperatures显示文摘MIOC U DAVIDOVIC M TJAPKIN N 1991Solid State Ionics1991,46,:1
5Polygon feature extraction from satellite imagery based on colour image segmentation and medial axis显示文摘Ojaswa Sharma Darka Mioc Francois Anton 2008The International Archives of the Photogrammetry Remote Sensing and Spatial Information Sciences2008,,:1
6Molecular characterisation of Cryptosporidium isolates from humans in Slovenia显示文摘Soba B Petrovec M Mioc V 2006Clin Microbiol Infect2006,12,9:1
7Magnetic resonance ima- ging in early stage charcot arthropathy: correlation of imaging find- ings and clinical symptoms显示文摘Schlossbauer T Mioc T Sommerey S 2008Eur J Med Res2008,9,:1
8Molecular characterisation of Cryptosporidium isolates from humans in Slovenia显示文摘SOBA B PETROVEC M MIOC V 2006Clin Microbiol Infect2006,12,9:1
9Genetic diversity of three donkey populations in the Croatian coastal region 显示文摘Kavar T Caput P Mioc B 2002Animal Genetics2002,33,3:1
10Molecular characterisation of Cryptosporidium isolates from humans in Slovenia显示文摘Soba B Petrovec M Mioc V 2006Clin Microbiol Infec2006,12,9:1
11Polygon Feature Extraction from Sat- eUite Imagery based on Color Image Segmentation and Medial Axis 显示文摘Sharma O Mioc D Anton F 2008The International Archives of the Photogrammetry Remote Sensing and Spatial Information Sciences2008,37,:1
12Exact Computation of the Topology and Geometric Invariants of the Voronoi Diagram of Spheres in 3D显示文摘In this paper, we are addressing the exact computation of the Delaunay graph (or quasi-triangulation) and the Voronoi diagram of spheres using Wu's algorithm. Our main contributions are first a methodology for automated derivation of invariants of the Delaunay empty circumsphere predicate for spheres and the Voronoi vertex of four spheres, then the application of this methodology to get all geometrical invariants that intervene in this problem and the exact computation of the Delaunay graph and the Voronoi diagram of spheres. To the best of our knowledge, there does not exist a comprehensive treatment of the exact computation with geometrical invariants of the Delaunay graph and the Voronoi diagram of spheres. Starting from the system of equations defining the zero-dimensional algebraic set of the problem, we are applying Wu's algorithm to transform the initial system into an equivalent Wu characteristic (triangular) set. In the corresponding system of algebraic equations, in each polynomial (except the first one), the variable with higher order from the preceding polynomial has been eliminated (by pseudo-remainder computations) and the last polynomial we obtain is a polynomial of a single variable. By regrouping all the formal coefficients for each monomial in each polynomial, we get polynomials that are invariants for the given problem. We rewrite the original system by replacing the invariant polynomials by new formal coefficients. We repeat the process until all the algebraic relationships (syzygies) between the invariants have been found by applying Wu's algorithm on the invariants. Finally, we present an incremental algorithm for the construction of Voronoi diagrams and Delaunay graphs of spheres in 3D and its application to Geodesy.Franois Anton Darka Mioc Marcelo Santos 2013Journal of Computer Science & Technology2013,28,2:0
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