System, method, and program product for extracting a...

Image analysis – Applications – 3-d or stereo imaging analysis

Reexamination Certificate

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Reexamination Certificate

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10696348

ABSTRACT:
Disclosed is an improved computer system, method, and program product that has one or more input devices for receiving one or more input meshes representing a three dimensional model. The three dimensional model is capable of being represented as a 2-manifold triangular mesh. A conversion process automatically converts the input mesh to a multiresolution quadrilateral-based subdivision surface (MQSS) representation.

REFERENCES:
Automatic Reconstruction of B-Spline Surfaces of Arbitrary Topological Type Matthias Eck University of Darmstadt, Hugues Hoppe Microsoft Research pp. 1-10.
Dijkstra's Algorithm by: Corman, Leiserson, Rivest, pp. 527.
A Voroni Graph, by: Okabe, et al pp. 65.
Recursively Generated B-Spline Surfaces On Arbitrary Topological Meshes by: E Catmull and J Clark, pp. 350-355.
Algorithms For The Reduction Of The Number Of Points Required To Represent A Digitized Line Or Its Caricature, by: David H. Douglas and Thomas K. Peucker, pp. 112-117.
Cut-and-Paste Editing of Multiresolution Surfaces, by Henning Biermann, Ioana Martin, Fausto Bernardini, and Denis Zorin, pp. 1-10.
Constrained Centroidal Voroni Ressellations For Surfaces, by: Qiang Du, Max D. Gunzburger and Lili Ju, pp. 1488-1506.
MeshToSS: Converting Subdivision Surfaces From Dense Meshes, by: Takashi Kanai, Keio University, Faculty of Environmental Information Endo 5322, Fujisawa-city, Kanagawa, 252-8520, Japan, pp. 325-332 (all marked 666).
Hierarchical Face Clustering On Polygonal Surfaces, by: Michael Garland, Andrew Willmott, Paul S. Heckbert, pp. 1-10.
Automatic Reconstruction of B-Spline Surfaces of Arbitrary Topological Type, by: Matthias Eck, Univerity of Darmstadt, and Hugues Hoppe, Microsoft Research, pp. 325-334.
Hierarchical Mesh Decomposition Using Fuzzy Clustering and Cuts, by: Sagi Katz and Ayellet Tal, Department of Electrical Engineering, Technion-Israel Institute of Technology, pp. 1-8.
Fitting Smooth Surfaces to Dense Polygon Meshes, by: Venkat Krishnamurthy, Marc Levoy, Computer Science Department, Stanford University, pp. 1-12.
MAPS: Multiresolution Adaptive Parameterizatio of Surfaces, by: Aaron W.F. Lee, (Princeton University) Wim Sweldens, (Bell Laboratories) Peter Schroder, (Caltech) Lawrence Cowsar, (Bell Laboratories) David Dobkin, (Princeton University), pp. 95-104.
Shape Distributions, by: Robert Osada, Thomas Funkhouser, Bernard Chazelle, and David Dobkin, pp. 1-32.
Straightest Geodesics on Polyhedral Surfaces, by: Konrad Polthier, Markus Schmies, pp. 1-16, (drawings pp. 382-383).

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