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Structure-aware shape processing

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References

  1. Alhashim, I., Zhang, H., and Liu, L. 2012. Detail-replicating shape stretching. The Visual Computer 28, 12, 1153--1166.Google ScholarGoogle ScholarCross RefCross Ref
  2. Alhashim, I., Li, H., Xu, K., Cao, J., Ma, R., and Zhang, H. 2014. Topology-varying 3d shape creation via structural blending. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 33, 4. Google ScholarGoogle ScholarDigital LibraryDigital Library
  3. Aliaga, D., Rosen, P., and Bekins, D. 2007. Style grammars for interactive visualization of architecture. IEEE Trans. Vis. Comp. Graph. 13, 4, 786--797. Google ScholarGoogle ScholarDigital LibraryDigital Library
  4. Allen, B., Curless, B., and Popović, Z. 2003. The space of human body shapes: reconstruction and parameterization from range scans. ACM Trans. Graph. 22, 3, 587--594. Google ScholarGoogle ScholarDigital LibraryDigital Library
  5. Alt, H., Mehlhorn, K., Wagener, H., and Welzl, E. 1988. Congruence, similarity and symmetries of geometric objects. Discrete Comput. Geom. 3, 3, 237--256.Google ScholarGoogle ScholarDigital LibraryDigital Library
  6. Anguelov, D., Taskar, B., Chatalbashev, V., Koller, D., Gupta, D., Heitz, G., and Ng, A. 2005. Discriminative learning of markov random fields for segmentation of 3d scan data. In CVPR. Google ScholarGoogle ScholarDigital LibraryDigital Library
  7. Attene, M., Robbiano, F., Spagnuolo, M., and Falcidieno, B. 2009. Characterization of 3d shape parts for semantic annotation. Computer Aided Design 41, 10, 756--763. Google ScholarGoogle ScholarDigital LibraryDigital Library
  8. Averikou, M., Kim, V. G., Zheng, Y., and Mitra, N. J. 2014. Shapesynth: Parameterizing model collections for coupled shape exploration and synthesis. Eurographics.Google ScholarGoogle Scholar
  9. Bao, F., Schwarz, M., and Wonka, P. 2012. Procedural facade variations from a single layout. ACM Trans. Graph. Google ScholarGoogle ScholarDigital LibraryDigital Library
  10. Beneš, B., Štava, O., Měch, R., and Miller, G. 2011. Guided Procedural Modeling. In Comp. Graph. Forum, vol. 30, 325--334.Google ScholarGoogle ScholarCross RefCross Ref
  11. Bhat, P., Ingram, S., and Turk, G. 2004. Geometric texture synthesis by example. In Symp. Geometry Processing, 41--44. Google ScholarGoogle ScholarDigital LibraryDigital Library
  12. Blanz, V., and Vetter, T. 1999. A morphable model for the synthesis of 3d faces. In Computer Graphics (Proc. SIGGRAPH), 187--194. Google ScholarGoogle ScholarDigital LibraryDigital Library
  13. Bokeloh, M., Berner, A., Wand, M., Seidel, H.-P., and Schilling, A. 2009. Symmetry detection using line features. Computer Graphics Forum 28, 2, 697--706.Google ScholarGoogle ScholarCross RefCross Ref
  14. Bokeloh, M., Wand, M., and Seidel, H.-P. 2010. A connection between partial symmetry and inverse procedural modeling. ACM Trans. Graph. 29 (July), 104:1--104:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  15. Bokeloh, M., Wand, M., Koltun, V., and Seidel, H.-P. 2011. Pattern-aware shape deformation using sliding dockers. ACM Trans. Graph. 30 (Dec.), 123:1--123:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  16. Bokeloh, M., Wand, M., Seidel, H.-P., and Koltun, V. 2012. An algebraic model for parameterized shape editing. ACM Transactions on Graphics 31, 4, 78:1--78:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  17. Botsch, M., and Sorkine, O. 2008. On linear variational surface deformation methods. IEEE Transactions on Visualization and Computer Graphics 14, 1, 213--230. Google ScholarGoogle ScholarDigital LibraryDigital Library
  18. Chaudhuri, S., Kalogerakis, E., Guibas, L., and Koltun, V. 2011. Probabilistic reasoning for assembly-based 3D modeling. ACM Transactions on Graphics (Proc. SIGGRAPH) 30, 4, 35:1--35:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  19. Chen, L., and Meng, X. 2009. Anisotropic resizing of model with geometric textures. In Conf. on Geometric and Physical Modeling (SPM), ACM, New York, NY, USA, 289--294. Google ScholarGoogle ScholarDigital LibraryDigital Library
  20. Coquillart, S. 1990. Extended free-form deformation: a sculpturing tool for 3d geometric modeling. In Proc. Siggraph. Google ScholarGoogle ScholarDigital LibraryDigital Library
  21. Deng, B., Bouaziz, S., Deuss, M., Zhang, J., Schwartzburg, Y., and Pauly, M. 2013. Exploring local modifications for constrained meshes. Computer Graphics Forum (Proceedings of Eurographics 2013) 32, 2. to appear.Google ScholarGoogle Scholar
  22. Duda, R. O., Hart, P. E., and Stork, D. G. 2000. Pattern Classification (2nd Edition). Wiley-Interscience. Google ScholarGoogle ScholarDigital LibraryDigital Library
  23. Efros, A. A., and Leung, T. K. 1999. Texture synthesis by non-parametric sampling. In Proc. Int. Conf. Comp. Vision. Google ScholarGoogle ScholarDigital LibraryDigital Library
  24. Fisher, M., Savva, M., and Hanrahan, P. 2011. Characterizing structural relationships in scenes using graph kernels. ACM Trans. Graph. 30, 4, 34:1--34:12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  25. Fisher, M., Ritchie, D., Savva, M., Funkhouser, T., and Hanrahan, P. 2012. Example-based synthesis of 3d object arrangements. ACM Transactions on Graphics (SIGGRAPH Asia) 31, 6, 135:1--135:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  26. Fu, H., Cohen-Or, D., Dror, G., and Sheffer, A. 2008. Upright orientation of man-made objects. ACM Trans. Graph. 27, 3 (Aug.), 42:1--42:7. Google ScholarGoogle ScholarDigital LibraryDigital Library
  27. Funkhouser, T., Kazhdan, M., Shilane, P., Min, P., Kiefer, W., Tal, A., Rusinkiewicz, S., and Dobkin, D. 2004. Modeling by example. ACM Trans. Graph. 23, 3. Google ScholarGoogle ScholarDigital LibraryDigital Library
  28. Gal, R., and Cohen-Or, D. 2006. Salient geometric features for partial shape matching and similarity. ACM Trans. Graph. 25, 1, 130--150. Google ScholarGoogle ScholarDigital LibraryDigital Library
  29. Gal, R., Sorkine, O., Mitra, N., and Cohen-Or, D. 2009. iWires: An Analyze-and-Edit Approach to Shape Manipulation. ACM Trans. Graph. 28, 3, 33:1--33:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  30. Gelfand, N., and Guibas, L. 2004. Shape segmentation using local slippage analysis. In Proc. Symp. Geometry Processing, 214--223. Google ScholarGoogle ScholarDigital LibraryDigital Library
  31. Golovinskiy, A., and Funkhouser, T. 2009. Consistent segmentation of 3D models. Computers & Graphics (Proc. of SMI) 33, 3, 262--269. Google ScholarGoogle ScholarDigital LibraryDigital Library
  32. Grabner, H., Gall, J., and Gool, L. V. 2011. What makes a chair a chair? CVPR. Google ScholarGoogle ScholarDigital LibraryDigital Library
  33. Habbecke, M., and Kobbelt, L. 2012. Linear analysis of nonlinear constraints for interactive geometric modeling. Computer Graphics Forum 31, 2. Google ScholarGoogle ScholarDigital LibraryDigital Library
  34. Hart, J., and Flynn, O. C. P. 1997. Similarity hashing: A computer vision solution to the inverse problem of linear fractals. Fractals 5, 35--50.Google ScholarGoogle ScholarCross RefCross Ref
  35. Hertzmann, A., Jacobs, C. E., Oliver, N., Curless, B., and Salesin, D. H. 2001. Image analogies. In Proc. Siggraph 2001, 327--340. Google ScholarGoogle ScholarDigital LibraryDigital Library
  36. Hoffmann, C. M., and Joan-Arinyo, R. 2005. A brief on constraint solving. Computer-Aided Design and Applications 2, 5, 655--663.Google ScholarGoogle ScholarCross RefCross Ref
  37. Hu, R., Fan, L., and Liu, L. 2012. Co-segmentation of 3d shapes via subspace clustering. Computer Graphics Forum (Proceedings of SGP) 31, 5, 1703--1713. Google ScholarGoogle ScholarDigital LibraryDigital Library
  38. Huang, Q., Mech, R., and Carr, N. 2009. Optimizing structure preserving embedded deformation for resizing images and vector art. vol. 28, 1887--1896.Google ScholarGoogle Scholar
  39. Huang, Q., Koltun, V., and Guibas, L. 2011. Joint shape segmentation with linear programming. ACM Trans. Graph. 30, 125:1--125:12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  40. Huang, Q., Wang, F., and Guibas, L. 2014. Functional map networks for analyzing and browsing large shape collections. ACM Trans. on Graph. Google ScholarGoogle ScholarDigital LibraryDigital Library
  41. Igarashi, T., Matsuoka, S., and Tanaka, H. 1999. Teddy: A sketching interface for 3d freeform design. In Computer Graphics (Proc. ACM SIGGRAPH), 409--416. Google ScholarGoogle ScholarDigital LibraryDigital Library
  42. Ijiri, T., Owada, S., and Igarashi, T. 2006. The sketch l-system: Global control of tree modeling using free-form strokes. In Smart Graphics, 138--146.Google ScholarGoogle Scholar
  43. Ijiri, T., Měch, R., Igarashi, T., and Miller, G. 2008. An example-based procedural system for element arrangement. Computer Graphics Forum 27, 3, 429--436.Google ScholarGoogle ScholarCross RefCross Ref
  44. Jain, A., Thormählen, T., Ritschel, T., and Seidel, H.-P. 2012. Exploring shape variations by 3d-model decomposition and part-based recombination. Comp. Graph. Forum (Proc. Eurographics 2012) 31, 2, 631--640. Google ScholarGoogle ScholarDigital LibraryDigital Library
  45. Jiang, Y., Koppula, H. S., and Saxena, A. 2013. Hallucinated humans as the hidden context for labeling 3d scenes. CVPR. Google ScholarGoogle ScholarDigital LibraryDigital Library
  46. Kalogerakis, E., Hertzmann, A., and Singh, K. 2010. Learning 3d mesh segmentation and labeling. ACM Trans. Graph. 29, 3. Google ScholarGoogle ScholarDigital LibraryDigital Library
  47. Kalogerakis, E., Chaudhuri, S., Koller, D., and Koltun, V. 2012. A probabilistic model for component-based shape synthesis. ACM Transactions on Graphics 31, 4, 55:1--55:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  48. Kalojanov, J., Bokeloh, M., Wand, M., Guibas, L., Seidel, H.-P., and Slusallek, P. 2012. Microtiles: Extracting building blocks from correspondences. John Wiley & Sons, Inc., New York, NY, USA, vol. 31, 1597--1606. Google ScholarGoogle ScholarDigital LibraryDigital Library
  49. Kent, J. T., Mardia, K. V., West, J. M., and Jt, L. L. 1996. Ridge curves and shape analysis. In In The British Machine Vision Conference, 43--52.Google ScholarGoogle Scholar
  50. Kilian, M., Mitra, N. J., and Pottmann, H. 2007. Geometric modeling in shape space. ACM Transactions on Graphics (SIGGRAPH) 26, 3, #64, 1--8. Google ScholarGoogle ScholarDigital LibraryDigital Library
  51. Kim, V. G., Li, W., Mitra, N., DiVerdi, S., and Funkhouser, T. 2012. Exploring collections of 3d models using fuzzy correspondences. Trans. on Graphics (Proc. of SIGGRAPH 2012) 31, 4, 54:1--54:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  52. Kim, Y. M., Mitra, N. J., Yan, D.-M., and Guibas, L. 2012. Acquiring 3d indoor environments with variability and repetition. ACM Transactions on Graphics (SIGGRAPH Asia 31, 6, 138:1--138:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  53. Kim, V. G., Li, W., Mitra, N. J., Chaudhuri, S., DiVerdi, S., and Funkhouser, T. 2013. Learning part-based templates from large collections of 3d shapes. Trans. on Graphics (Proc. of SIGGRAPH 2013). Google ScholarGoogle ScholarDigital LibraryDigital Library
  54. Kim, V. G., Chaudhuri, S., Guibas, L., and Funkhouser, T. 2014. Shape2pose: Human-centric shape analysis. Trans. on Graphics (Proc. of SIGGRAPH 2014). Google ScholarGoogle ScholarDigital LibraryDigital Library
  55. Koller, D., and Friedman, N. 2009. Probabilistic Graphical Models. MIT Press. Google ScholarGoogle ScholarDigital LibraryDigital Library
  56. Kraevoy, V., Julius, D., and Sheffer, A. 2007. Shuffler: Modeling with interchangeable parts. In Pacific Graphics 2007.Google ScholarGoogle Scholar
  57. Kraevoy, V., Sheffer, A., Shamir, A., and Cohen-Or, D. 2008. Non-homogeneous resizing of complex models. ACM Trans. Graph. 27, 5, 1--9. Google ScholarGoogle ScholarDigital LibraryDigital Library
  58. Kumar, S., and Hebert, M. 2003. Discriminative random fields: A discriminative framework for contextual interaction in classification. In ICCV. Google ScholarGoogle ScholarDigital LibraryDigital Library
  59. Kwatra, V., Schödl, A., Essa, I., Turk, G., and Bobick, A. 2003. Graphcut textures: image and video synthesis using graph cuts. ACM Trans. Graph. 22, 3, 277--286. Google ScholarGoogle ScholarDigital LibraryDigital Library
  60. Kwatra, V., Essa, I., Bobick, A., and Kwatra, N. 2005. Texture optimization for example-based synthesis. ACM Trans. Graph. 24, 3, 795--802. Google ScholarGoogle ScholarDigital LibraryDigital Library
  61. Lafarge, F., and Alliez, P. 2013. Surface reconstruction through point set structuring. In Eurographics. to appear.Google ScholarGoogle Scholar
  62. Laga, H., Mortara, M., and Spagnuolo, M. 2013. Geometry and context for semantic correspondences and functionality recognition in man-made 3d shapes. ACM Trans. Graph. 32, 5, 150:1--150:16. Google ScholarGoogle ScholarDigital LibraryDigital Library
  63. Lagae, A., Dumont, O., and Dutré, P. 2005. Geometry synthesis by example. In Conf. Shape Modeling and Applications. Google ScholarGoogle ScholarDigital LibraryDigital Library
  64. Lai, Y.-K., Hu, S.-M., Gu, D. X., and Martin, R. R. 2005. Geometric texture synthesis and transfer via geometry images. In Symp. Solid and Physical Modeling, 15--26. Google ScholarGoogle ScholarDigital LibraryDigital Library
  65. Li, Y., Wu, X., Chrysanthou, Y., Sharf, A., Cohen-Or, D., and Mitra, N. J. 2011. Globfit: Consistently fitting primitives by discovering global relations. ACM Transactions on Graphics 30, 4, 52:1--52:12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  66. Li, Y., Wu, X., Chrysanthou, Y., Sharf, A., Cohen-Or, D., and Mitra, N. J. 2011. Globfit: Consistently fitting primitives by discovering global relations. ACM Transactions on Graphics 30, 4, 52:1--52:12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  67. Li, Y., Zheng, Q., Sharf, A., Cohen-Or, D., Chen, B., and Mitra, N. J. 2011. 2d-3d fusion for layer decomposition of urban facades. In ICCV. Google ScholarGoogle ScholarDigital LibraryDigital Library
  68. Lin, J., Cohen-Or, D., Zhang, H. R., Liang, C., Sharf, A., Deussen, O., and Chen, B. 2011. Structure-preserving retargeting of irregular 3d architecture. ACM Transactions on Graphics (Proceedings of SIGGRAPH Asia 2011) 30, 6 (dec), 183:1--183:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  69. Lipp, M., Wonka, P., and Wimmer, M. 2008. Interactive visual editing of grammars for procedural architecture. ACM Trans. Graph. 27, 3, 1--10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  70. Liu, Y., Collins, R., and Tsin, Y. 2004. A computational model for periodic pattern perception based on frieze and wallpaper groups. IEEE Transactions on Pattern Analysis and Machine Intelligence 26, 1 (March), 354--371. Google ScholarGoogle ScholarDigital LibraryDigital Library
  71. Liu, Y., Hel-Or, H., Kaplan, C. S., and Gool, L. V. 2010. Computational symmetry in computer vision and computer graphics. Foundations and Trends in Computer Graphics and Vision 5, 1--195.Google ScholarGoogle ScholarCross RefCross Ref
  72. Loy, G., and Eklundh, J. 2006. Detecting symmetry and symmetric constellations of features. In Proc. Europ. Conf. Computer Vision, 508--521. Google ScholarGoogle ScholarDigital LibraryDigital Library
  73. Loy, G., and Eklundh, J. 2007. Structuring 3D Geometry based on Symmetry and Instancing Information. PhD thesis, INP Grenoble.Google ScholarGoogle Scholar
  74. Martinet, A., Soler, C., Holzschuch, N., and Sillion, F. 2006. Accurate detection of symmetries in 3d shapes. ACM Trans. Graph. 25, 2, 439--464. Google ScholarGoogle ScholarDigital LibraryDigital Library
  75. Merrell, P., and Manocha, D. 2008. Continuous model synthesis. ACM Trans. Graph. 27, 5, 1--7. Google ScholarGoogle ScholarDigital LibraryDigital Library
  76. Merrell, P., and Manocha, D. 2009. Constraint-based model synthesis. In SPM '09: 2009 SIAM/ACM Joint Conference on Geometric and Physical Modeling, ACM, New York, NY, USA, 101--111. Google ScholarGoogle ScholarDigital LibraryDigital Library
  77. Merrell, P. 2007. Example-based model synthesis. In Symp. Interactive 3D Graphics and Games, 105--112. Google ScholarGoogle ScholarDigital LibraryDigital Library
  78. Mitra, N. J., and Pauly, M. 2008. Symmetry for architectural design. In Advances in Architectural Geometry, 13--16.Google ScholarGoogle Scholar
  79. Mitra, N. J., Guibas, L. J., and Pauly, M. 2006. Partial and approximate symmetry detection for 3d geometry. ACM Trans. Graph. 25, 3, 560--568. Google ScholarGoogle ScholarDigital LibraryDigital Library
  80. Mitra, N. J., Guibas, L., and Pauly, M. 2007. Symmetrization. vol. 26, Article 63. Google ScholarGoogle ScholarDigital LibraryDigital Library
  81. Mitra, N. J., Yang, Y.-L., Yan, D.-M., Li, W., and Agrawala, M. 2010. Illustrating how mechanical assemblies work. ACM Transactions on Graphics 29, 3. Google ScholarGoogle ScholarDigital LibraryDigital Library
  82. Mitra, N. J., Pauly, M., Wand, M., and Ceylan, D., 2012. Symmetry in 3d geometry: Extraction and applications. Eurographics State-of-the-art Report (STAR).Google ScholarGoogle Scholar
  83. Mitra, N. J., Yang, Y.-L., Yan, D.-M., Li, W., and Agrawala, M. 2013. Illustrating how mechanical assemblies work. ACM CACM Research Highlight. Google ScholarGoogle ScholarDigital LibraryDigital Library
  84. Müller, P., Wonka, P., Haegler, S., Ulmer, A., and Gool, L. V. 2006. Procedural modeling of buildings. ACM Trans. Graph. 25, 3, 614--623. Google ScholarGoogle ScholarDigital LibraryDigital Library
  85. Nguyen, M. X., Yuan, X., and Chen, B. 2005. Geometry completion and detail generation by texture synthesis. The Visual Computer 21, 9--10, 669--678.Google ScholarGoogle ScholarCross RefCross Ref
  86. Ohtake, Y., Belyaev, A., and Seidel, H.-P. 2004. Ridgevalley lines on meshes via implicit surface fitting. In Proc. Siggraph, 609--612. Google ScholarGoogle ScholarDigital LibraryDigital Library
  87. Ovsjanikov, M., Sun, J., and Guibas, L. 2008. Global intrinsic symmetries of shapes. In Eurographics Symposium on Geometry Processing (SGP). Google ScholarGoogle ScholarDigital LibraryDigital Library
  88. Ovsjanikov, M., Li, W., Guibas, L., and Mitra, N. J. 2011. Exploration of continuous variability in collections of 3d shapes. ACM Transactions on Graphics 30, 4, 33:1--33:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  89. Ovsjanikov, M., Ben-chen, M., Solomon, J., Butscher, A., and Guibas, L. 2012. Functional maps: A flexible representation of maps between shapes. SIGGRAPH. Google ScholarGoogle ScholarDigital LibraryDigital Library
  90. Parish, Y. I. H., and Müller, P. 2001. Procedural modeling of cities. In Proc. Siggraph 2001, 301--308. Google ScholarGoogle ScholarDigital LibraryDigital Library
  91. Pauly, M., Mitra, N. J., Wallner, J., Pottmann, H., and Guibas, L. 2008. Discovering structural regularity in 3D geometry. ACM Trans. Graph. 27, 3. Google ScholarGoogle ScholarDigital LibraryDigital Library
  92. Podolak, J., Shilane, P., Golovinskiy, A., Rusinkiewicz, S., and Funkhouser, T. 2006. A planar-reflective symmetry transform for 3D shapes. ACM Trans. Graph. 25, 3. Google ScholarGoogle ScholarDigital LibraryDigital Library
  93. Raviv, D., Bronstein, A. M., Bronstein, M. M., and Kimmel, R. 2010. Full and partial symmetries of non-rigid shapes. Intl. Journal of Computer Vision (IJCV) 89, 1 (August), 18--39. Google ScholarGoogle ScholarDigital LibraryDigital Library
  94. Schulz, A., Shamir, A., Levin, D., Sitthi-Amorn, P., and Matusik, W. 2014. Design and fabrication by example. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 33, 4. Google ScholarGoogle ScholarDigital LibraryDigital Library
  95. Sederberg, T. W., and Parry, S. R. 1986. Free-form deformation of solid geometric models. In Proc. Siggraph, 151--160. Google ScholarGoogle ScholarDigital LibraryDigital Library
  96. Shamir, A. 2008. A survey on mesh segmentation techniques. Computer Graphics Forum 27, 6, 1539--1556.Google ScholarGoogle ScholarCross RefCross Ref
  97. Sharf, A., Alexa, M., and Cohen-Or, D. 2004. Context-based surface completion. ACM Trans. Graph. 23, 3, 878--887. Google ScholarGoogle ScholarDigital LibraryDigital Library
  98. Shawe-taylor, J., and Cristianini, N. 2004. Kernel Methods for Pattern Analysis. Cambridge University Press. Google ScholarGoogle ScholarDigital LibraryDigital Library
  99. Shen, C.-H., Fu, H., Chen, K., and Hu, S.-M. 2012. Structure recovery by part assembly. ACM Transactions on Graphics (SIGGRAPH Asia) 31, 6, 180:1--180:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  100. Sidi, O., van Kaick, O., Kleiman, Y., Zhang, H., and Cohen-Or, D. 2011. Unsupervised co-segmentation of a set of shapes via descriptor-space spectral clustering. ACM Trans. on Graphics (Proc. SIGGRAPH Asia) 30, 6, 126:1--126:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  101. Simakov, D., Caspi, Y., Shechtman, E., and Irani, M. 2008. Summarizing visual data using bidirectional similarity. In IEEE Conf. Comp. Vision and Pattern Recognition (CVPR), 1--8.Google ScholarGoogle Scholar
  102. Simari, P., Kalogerakis, E., and Singh, K. 2006. Folding meshes: hierarchical mesh segmentation based on planar symmetry. In Proc. Symp. Geometry Processing, 111--119. Google ScholarGoogle ScholarDigital LibraryDigital Library
  103. Singh, K., and Eugene, F. 1998. Wires: a geometric deformation technique. In Proceedings of the 25th annual conference on Computer graphics and interactive techniques, ACM, New York, NY, USA, SIGGRAPH '98, 405--414. Google ScholarGoogle ScholarDigital LibraryDigital Library
  104. Sorkine, O., and Alexa, M. 2007. As-rigid-as-possible surface modeling. In Proceedings of Eurographics/ACM SIGGRAPH Symposium on Geometry Processing, 109--116. Google ScholarGoogle ScholarDigital LibraryDigital Library
  105. Stáva, O., Benes, B., Méch, R., Aliaga, D., and Krištof, P. 2010. Inverse procedural modeling by automatic generation of l-systems. Computer Graphics Forum 29, 2, 665--674.Google ScholarGoogle ScholarCross RefCross Ref
  106. Stiny, G., and Gips, J. 1971. Shape grammars and the generative specification of painting and sculpture. In IFIP Congress 71.Google ScholarGoogle Scholar
  107. Sunkel, M., Jansen, S., Wand, M., and Seidel, H.-P. 2013. A correlated parts model for object detection in large 3d scans. Computer Graphcis Forum (Special Issue of Eurographics). to appear.Google ScholarGoogle Scholar
  108. Talton, J. O., Lou, Y., Lesser, S., Duke, J., Měch, R., and Koltun, V. 2011. Metropolis procedural modeling. ACM Trans. Graph. 30 (April), 11:1--11:14. Google ScholarGoogle ScholarDigital LibraryDigital Library
  109. Talton, J., Yang, L., Kumar, R., Lim, M., Goodman, N. D., and Měch, R. 2012. Learning design patterns with bayesian grammar induction. In Proceedings of the 25th ACM Symposium on User Interface Software and Technology, ACM, New York, NY, USA, UIST '12, 63--74. Google ScholarGoogle ScholarDigital LibraryDigital Library
  110. Terzopoulos, D., Platt, J., Barr, A., and Fleischer, K. 1987. Elastically deformable models. In Proc. SIGGRAPH '87, ACM, New York, NY, USA, 205--214. Google ScholarGoogle ScholarDigital LibraryDigital Library
  111. Thompson, D. W. 1992. On Growth and Form. Dover reprint of 1942 2nd ed. (1st ed., 1917).Google ScholarGoogle Scholar
  112. Thrun, S., and Wegbreit, B. 2005. Shape from symmetry. In Proc. Int. Conf. Computer Vision. Google ScholarGoogle ScholarDigital LibraryDigital Library
  113. Umetani, N., Igarashi, T., and Mitra, N. J. 2012. Guided exploration of physically valid shapes for furniture design. ACM Transactions on Graphics 31, 4, 86:1--86:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  114. van Kaick, O., Tagliasacchi, A., Sidi, O., Zhang, H., Cohen-Or, D., Wolf, L., and Hamarneh, G. 2011. Prior knowledge for shape correspondence. Computer Graphics Forum (Special Issue of Eurographics) 30, 2, 553--562.Google ScholarGoogle ScholarCross RefCross Ref
  115. van Kaick, O., Zhang, H., Hamarneh, G., and Cohen-Or, D. 2011. A survey on shape correspondence. Computer Graphics Forum 30, 6, 1681--1707.Google ScholarGoogle ScholarCross RefCross Ref
  116. van Kaick, O., Xu, K., Zhang, H., Wang, Y., Sun, S., Shamir, A., and Cohen-Or, D. 2013. Co-hierarchical analysis of shape structures. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 32, 4, Article 69. Google ScholarGoogle ScholarDigital LibraryDigital Library
  117. Vanegas, C., Dorado, I. G., Aliaga, D., Benes, B., and Waddell, P. 2012. Inverse design of urban procedural models. ACM Transactions on Graphics 31, 6, 168:1--168:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  118. Wang, Y., Xu, K., Li, J., Zhang, H., Shamir, A., Liu, L., Cheng, Z., and Xiong, Y. 2011. Symmetry hierarchy of man-made objects. vol. 30, 287--296.Google ScholarGoogle Scholar
  119. Wang, Y., Asafi, S., van Kaick, O., Zhang, H., Cohen-Or, D., and Chen, B. 2012. Active co-analysis of a set of shapes. ACM Transactions on Graphics 31, 6. Google ScholarGoogle ScholarDigital LibraryDigital Library
  120. Wei, L., and Levoy, M. 2000. Fast texture synthesis using tree-structured vector quantization. In Proc. Siggraph 2000, 479--488. Google ScholarGoogle ScholarDigital LibraryDigital Library
  121. Wei, L., Han, J., Zhou, K., Bao, H., Guo, B., and Shum, H. 2008. Inverse texture synthesis. ACM Trans. Graph. 27, 3, 52:1--52:9. Google ScholarGoogle ScholarDigital LibraryDigital Library
  122. Wertheimer, M. 1923. Untersuchungen zur lehre von der gestalt. ii. Psychologische Forschung 4, 301--350.Google ScholarGoogle ScholarCross RefCross Ref
  123. Whiting, E., Shin, H., Wang, R., Ochsendorf, J., and Durand, F. 2012. Structural optimization of 3d masonry buildings. ACM Transactions on Graphics 31, 6. Google ScholarGoogle ScholarDigital LibraryDigital Library
  124. Wonka, P., Wimmer, M., Sillion, F., and Ribarsky, W. 2003. Instant architecture. ACM Trans. Graph. 22, 3, 669--677. Google ScholarGoogle ScholarDigital LibraryDigital Library
  125. Wu, F., Yan, D.-M., Dong, W., Zhang, X., and Wonka, P. 2014. Inverse procedural modeling of facade layouts. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 33, 4. Google ScholarGoogle ScholarDigital LibraryDigital Library
  126. Xu, K., Zhang, H., Tagliasacchi, A., Liu, L., Li, G., Meng, M., and Xiong, Y. 2009. Partial intrinsic reflectional symmetry of 3d shapes. ACM Transactions on Graphics (Special Issue of SIGGRAPH Asia) 28, 5, 138:1--138:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  127. Xu, W., Wang, J., Yin, K., Zhou, K., van de Panne, M., Chen, F., and Guo, B. 2009. Joint-aware manipulation of deformable models. ACM Trans. Graph. 28, 3, 1--9. Google ScholarGoogle ScholarDigital LibraryDigital Library
  128. Xu, K., Li, H., Zhang, H., Cohen-Or, D., Xiong, Y., and Cheng, Z. 2010. Style-content separation by anisotropic part scales. ACM Transactions on Graphics, (Proc. of SIGGRAPH Asia 2010) 29, 5. Google ScholarGoogle ScholarDigital LibraryDigital Library
  129. Xu, K., Zheng, H., Zhang, H., Cohen-Or, D., Liu, L., and Xiong, Y. 2011. Photo-inspired model-driven 3d object modeling. ACM Transactions on Graphics 30, 4, 80:1--10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  130. Xu, K., Zhang, H., Cohen-Or, D., and Chen, B. 2012. Fit and diverse: Set evolution for inspiring 3d shape galleries. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 31, 4, 57:1--57:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  131. Xu, K., Zhang, H., Jiang, W., Dyer, R., Cheng, Z., Liu, L., and Chen, B. 2012. Multi-scale partial intrinsic symmetry detection. ACM Transactions on Graphics (Special Issue of SIGGRAPH Asia) 31, 6, 181:1--181:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  132. Xu, B., Chang, W., Sheffer, A., Bousseau, A., McCrae, J., and Singh, K. 2014. True2form: 3d curve networks from 2d sketches via selective regularization. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 33, 4. Google ScholarGoogle ScholarDigital LibraryDigital Library
  133. Xu, K., Ma, R., Zhang, H., Zhu, C., Shamir, A., Cohen-Or, D., and Huang, H. 2014. Organizing heterogeneous scene collection through contextual focal points. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 33, 4. Google ScholarGoogle ScholarDigital LibraryDigital Library
  134. Yang, Y.-L., Yang, Y.-J., Pottmann, H., and Mitra, N. J. 2011. Shape space exploration of constrained meshes. ACM Trans. Graph. 30, 6 (Dec.), 124:1--124:12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  135. Yeh, Y.-T., and Měch, R. 2009. Detecting symmetries and curvilinear arrangements in vector art. Computer Graphics Forum 28, 2, 707--716.Google ScholarGoogle ScholarCross RefCross Ref
  136. Yeh, Y.-T., Breeden, K., Yang, L., Fisher, M., and Hanrahan, P. 2013. Synthesis of tiled patterns using factor graphs. ACM Transactions on Graphics, to appear. Google ScholarGoogle ScholarDigital LibraryDigital Library
  137. Yumer, M., and Kara, L. 2012. Co-abstraction of shape collections. ACM Transactions on Graphics (Proceedings of SIGGRAPH Asia 2012) 31, 158:1--158:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  138. Zeleznik, R. C., Herndon, K. P., and Hughes, J. F. 2007. Sketch: an interface for sketching 3d scenes. In ACM SIGGRAPH 2007 courses, ACM, New York, NY, USA, SIGGRAPH '07. Google ScholarGoogle ScholarDigital LibraryDigital Library
  139. Zelinka, S., and Garland, M. 2004. Similarity-based surface modelling using geodesic fans. In Proc. Symp. Geometry processing, 204--213. Google ScholarGoogle ScholarDigital LibraryDigital Library
  140. Zelinka, S., and Garland, M. 2006. Surfacing by numbers. In Graphics Interface, 107--113. Google ScholarGoogle ScholarDigital LibraryDigital Library
  141. Zhang, H., Xu, K., Jiang, W., Lin, J., Cohen-Or, D., and Chen, B. 2013. Layered analysis of irregular facades via symmetry maximization. ACM Transactions on Graphics (Special Issue of SIGGRAPH) 32, 4, 121:1--121:10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  142. Zhao, X., Tang, C.-C., Yang, Y.-L., Pottmann, H., and Mitra, N. J. 2012. Intuitive design exploration of constrained meshes. In Advances in Architectural Geometry.Google ScholarGoogle Scholar
  143. Zheng, Y., Fu, H., Cohen-Or, D., Au, O. K.-C., and Tai, C.-L. 2011. Component-wise controllers for structure-preserving shape manipulation. In Computer Graphics Forum (Proc. Eurographics).Google ScholarGoogle Scholar
  144. Zheng, Y., Chen, X., Cheng, M.-M., Zhou, K., Hu, S.-M., and Mitra, N. J. 2012. Interactive images: Cuboid proxies for smart image manipulation. ACM Transactions on Graphics 31, 4, 99:1--99:11. Google ScholarGoogle ScholarDigital LibraryDigital Library
  145. Zheng, Y., Cohen-Or, D., and Mitra, N. J. 2013. Functional substructures for part compatibility. Computer Graphics Forum, to appear.Google ScholarGoogle Scholar
  146. Zheng, Y., Cohen-Or, D., Averkiou, M., and Mitra, N. J. 2014. Recurring part arrangements in shape collections. Computer Graphics Forum (Special issue of Eurographics 2014).Google ScholarGoogle Scholar
  147. Zhou, K., Huang, X., Wang, X., Tong, Y., Desbrun, M., and Baining Guo, H.-Y. S. 2006. Mesh quilting for geometric texture synthesis. ACM Trans. Graph. 25, 3, 690--697. Google ScholarGoogle ScholarDigital LibraryDigital Library
  148. Zhu, L., Xu, W., Snyder, J., Liu, Y., Wang, G., and Guo, B. 2012. Motion-guided mechanical toy modeling. ACM Trans. Graph. 31, 6. Google ScholarGoogle ScholarDigital LibraryDigital Library

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  1. Structure-aware shape processing

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            cover image ACM Conferences
            SIGGRAPH '14: ACM SIGGRAPH 2014 Courses
            July 2014
            2191 pages
            ISBN:9781450329620
            DOI:10.1145/2614028

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            • Published: 27 July 2014

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