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A Reflective Symmetry Descriptor for 3D Models

Published: 01 October 2003 Publication History

Abstract

Computing reflective symmetries of 2D and 3D shapes is a classical problem in computer vision and computational geometry. Most prior work has focused on finding the main axes of symmetry, or determining that none exists. In this paper we introduce a new reflective symmetry descriptor that represents a measure of reflective symmetry for an arbitrary 3D model for all planes through the model’s center of mass (even if they are not planes of symmetry). The main benefits of this new shape descriptor are that it is defined over a canonical parameterization (the sphere) and describes global properties of a 3D shape. We show how to obtain a voxel grid from arbitrary 3D shapes and, using Fourier methods, we present an algorithm computes the symmetry descriptor in O(N4 log N) time for an N × N × N voxel grid and computes a multiresolution approximation in O(N3 log N) time. In our initial experiments, we have found that the symmetry descriptor is insensitive to noise and stable under point sampling. We have also found that it performs well in shape matching tasks, providing a measure of shape similarity that is orthogonal to existing methods.

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  1. A Reflective Symmetry Descriptor for 3D Models

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      Published In

      cover image Algorithmica
      Algorithmica  Volume 38, Issue 1
      October 2003
      261 pages

      Publisher

      Springer-Verlag

      Berlin, Heidelberg

      Publication History

      Published: 01 October 2003

      Author Tags

      1. D model matching and retrieval
      2. Shape representation
      3. Symmetry detection

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      • (2022)Computational Modeling and Analysis of Seljukid Muqarnas in KayseriJournal on Computing and Cultural Heritage 10.1145/347739915:2(1-19)Online publication date: 7-Apr-2022
      • (2022)A bipartite graph approach to retrieve similar 3D models with different resolution and types of cardiomyopathiesExpert Systems with Applications: An International Journal10.1016/j.eswa.2021.116422193:COnline publication date: 1-May-2022
      • (2019)New graph distance for deformable 3D objects recognition based on triangle-stars decompositionPattern Recognition10.1016/j.patcog.2019.01.04090:C(297-307)Online publication date: 1-Jun-2019
      • (2018)Completion of cultural heritage objects with rotational symmetryProceedings of the 11th Eurographics Workshop on 3D Object Retrieval10.5555/3290638.3290653(87-93)Online publication date: 16-Apr-2018
      • (2018)Vertex‐level three‐dimensional shape deformability measurement based on line segment advectionIET Computer Vision10.1049/iet-cvi.2017.050012:4(520-526)Online publication date: 19-Feb-2018
      • (2017)A general framework for 3D model co-alignmentComputer-Aided Design10.1016/j.cad.2017.05.00190:C(59-70)Online publication date: 1-Sep-2017
      • (2017)Comparative analysis of shape descriptors for 3D objectsMultimedia Tools and Applications10.1007/s11042-016-3330-576:5(6993-7040)Online publication date: 1-Mar-2017
      • (2016)Data-driven shape analysis and processingSIGGRAPH ASIA 2016 Courses10.1145/2988458.2988473(1-38)Online publication date: 28-Nov-2016
      • (2016)Medial Meshes – A Compact and Accurate Representation of Medial Axis TransformIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2015.244808022:3(1278-1290)Online publication date: 1-Mar-2016
      • (2016)3D object understanding with 3D Convolutional Neural NetworksInformation Sciences: an International Journal10.1016/j.ins.2015.08.007366:C(188-201)Online publication date: 20-Oct-2016
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