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Bibliography

Major publications by the team in recent years
  • 1L. Belcour, P. Barla.

    A Practical Extension to Microfacet Theory for the Modeling of Varying Iridescence, in: ACM Transactions on Graphics, July 2017, vol. 36, no 4, 65 p. [ DOI : 10.1145/3072959.3073620 ]

    https://hal.archives-ouvertes.fr/hal-01518344
  • 2T. Crespel, P. Reuter, A. Travis, Y. Gentet, X. Granier.

    Autostereoscopic transparent display using a wedge light guide and a holographic optical element: implementation and results, in: Applied optics, November 2019, vol. 58, no 34. [ DOI : 10.1364/AO.58.00G293 ]

    https://hal.inria.fr/hal-02352672
  • 3N. Holzschuch, R. Pacanowski.

    A Two-Scale Microfacet Reflectance Model Combining Reflection and Diffraction, in: ACM Transactions on Graphics, July 2017, vol. 36, no 4, 12 p, Article 66. [ DOI : 10.1145/3072959.3073621 ]

    https://hal.inria.fr/hal-01515948
  • 4T. Lambert, P. Bénard, G. Guennebaud.

    A View-Dependent Metric for Patch-Based LOD Generation & Selection, in: Proceedings of the ACM on Computer Graphics and Interactive Techniques, May 2018, vol. 1, no 1. [ DOI : 10.1145/3203195 ]

    https://hal.inria.fr/hal-01779816
  • 5G. Nader, G. Guennebaud.

    Instant Transport Maps on 2D Grids, in: ACM Transactions on Graphics, November 2018, vol. 37, no 6, 13 p. [ DOI : 10.1145/3272127.3275091 ]

    https://hal.inria.fr/hal-01884157
Publications of the year

Doctoral Dissertations and Habilitation Theses

Articles in International Peer-Reviewed Journals

  • 7P. Bénard, A. Hertzmann.

    Line drawings from 3D models: a tutorial, in: Foundations and Trends in Computer Graphics and Vision, September 2019, vol. 11, no 1-2, 159 p, https://arxiv.org/abs/1810.01175. [ DOI : 10.1561/0600000075 ]

    https://hal.inria.fr/hal-02189483
  • 8T. Crespel, P. Reuter, A. Travis, Y. Gentet, X. Granier.

    Autostereoscopic transparent display using a wedge light guide and a holographic optical element: implementation and results, in: Applied optics, November 2019, vol. 58, no 34. [ DOI : 10.1364/AO.58.00G293 ]

    https://hal.inria.fr/hal-02352672
  • 9T. Crespel, A. Travis, P. Reuter, X. Granier.

    Wedge cameras for minimally invasive archaeology, in: Journal on Computing and Cultural Heritage, May 2019, vol. 12, no 2, pp. 14:1–14:13. [ DOI : 10.1145/3284425 ]

    https://hal.inria.fr/hal-02096396
  • 10C. Herzog, X. Granier, F. Harms, P. Zeitoun, O. de La Rochefoucauld.

    Study on contrast variations with depth in focused plenoptic cameras, in: Optics Letters, 2019, vol. 44, no 19, 4825 p. [ DOI : 10.1364/OL.44.004825 ]

    https://hal.archives-ouvertes.fr/hal-02301709
  • 11F. Zhang, H. de Ridder, P. Barla, S. Pont.

    A systematic approach to testing and predicting light-material interactions, in: Journal of Vision, April 2019, vol. 19, no 4, 11 p. [ DOI : 10.1167/19.4.11 ]

    https://hal.inria.fr/hal-02426280

International Conferences with Proceedings

  • 12M. Bati, R. Pacanowski, P. Barla.

    Comparative study of layered material models, in: Workshop on Material Appearance Modeling, Strasbourg, France, H. Rushmeier, R. Klein (editors), July 2019.

    https://hal.archives-ouvertes.fr/hal-02184562
  • 13T. Crespel, P. Reuter, X. Granier, A. Travis.

    Autostereoscopic transparent display using a wedge light guide and a holographic optical element, in: Digital Holography and Three-Dimensional Imaging, Bordeaux, France, OSA Technical Digest, Optical Society of America, May 2019, M3A.4 p. [ DOI : 10.1364/DH.2019.M3A.4 ]

    https://hal.inria.fr/hal-02129569

Internal Reports

  • 14M. Bati, R. Pacanowski, P. Barla.

    Numerical Analysis of Layered Materials Models, Institut d'Optique Graduate School ; Université de Bordeaux ; CNRS ; Inria, June 2019.

    https://hal.inria.fr/hal-02157966

Other Publications

  • 15C. Cou, M. Volait, P. Mora, X. Granier, R. Pacanowski, G. Guennebaud.

    X. Granier, M. Chayani (editors), A la redécouverte de L'hôtel particulier de Gaston Saint-Maurice Smart 3D, December 2019, Journées du consortium 3D SHS, Poster.

    https://hal.archives-ouvertes.fr/hal-02402398
  • 16C. Herzog, O. de La Rochefoucauld, F. Harms, P. Zeitoun, X. Granier.

    Unifying the refocusing algorithms and parameterizations for traditional and focused plenoptic cameras, Institute of Electrical and Electronics Engineers, May 2019, ICCP 2019 - IEEE International Conference on Computational Photography 2019, Poster.

    https://hal.inria.fr/hal-02096378
References in notes
  • 17M. Alexa, W. Matusik.

    Reliefs as images, in: ACM Trans. Graph., 2010, vol. 29, no 4.

    http://doi.acm.org/10.1145/1778765.1778797
  • 18L. Ammann, P. Barla, X. Granier, G. Guennebaud, P. Reuter.

    Surface Relief Analysis for Illustrative Shading, in: Computer Graphics Forum, June 2012, vol. 31, no 4, pp. 1481-1490. [ DOI : 10.1111/j.1467-8659.2012.03144.x ]

    http://hal.inria.fr/hal-00709492
  • 19L. Ammann, P. Barla, X. Granier, G. Guennebaud, P. Reuter.

    Surface Relief Analysis for Illustrative Shading, in: Comput. Graph. Forum, 2012, vol. 31, no 4.

    http://hal.inria.fr/hal-00709492
  • 20M. Ashikhmin, S. Premoze.

    Distribution-based BRDFs, Univ. of Utah, 2007, no unpublished.
  • 21B. Atcheson, I. Ihrke, W. Heidrich, A. Tevs, D. Bradley, M. Magnor, H.-P. Seidel.

    Time-resolved 3D Capture of Non-stationary Gas Flows, in: ACM Trans. Graph., 2008, vol. 27, no 5.
  • 22O. Bimber, R. Raskar.

    Spatial Augmented Reality: Merging Real and Virtual Worlds, A K Peters/CRC Press, 2005.
  • 23A. Bousseau, E. Chapoulie, R. Ramamoorthi, M. Agrawala.

    Optimizing Environment Maps for Material Depiction, in: Comput. Graph. Forum (Proceedings of the Eurographics Symposium on Rendering), 2011, vol. 30, no 4.

    http://www-sop.inria.fr/reves/Basilic/2011/BCRA11
  • 24S. Boyé, G. Guennebaud, C. Schlick.

    Least Squares Subdivision Surfaces, in: Comput. Graph. Forum, 2010, vol. 29, no 7, pp. 2021-2028.

    http://hal.inria.fr/inria-00524555/en
  • 25S. Bruckner, M. E. Gröller.

    Style Transfer Functions for Illustrative Volume Rendering, in: Comput. Graph. Forum, 2007, vol. 26, no 3, pp. 715-724.

    http://www.cg.tuwien.ac.at/research/publications/2007/bruckner-2007-STF/
  • 26C. Buehler, M. Bosse, L. McMillan, S. Gortler, M. Cohen.

    Unstructured lumigraph rendering, in: Proc. ACM SIGGRAPH, 2001, pp. 425-432.

    http://doi.acm.org/10.1145/383259.383309
  • 27O. Cakmakci, S. Vo, K. P. Thompson, J. P. Rolland.

    Application of radial basis functions to shape description in a dual-element off-axis eyewear display: Field-of-view limit, in: J. Society for Information Display, 2008, vol. 16, no 11, pp. 1089-1098. [ DOI : 10.1889/JSID16.11.1089 ]
  • 28E. Cerezo, F. Perez-Cazorla, X. Pueyo, F. Seron, F. X. Sillion.

    A Survey on Participating Media Rendering Techniques, in: The Visual Computer, 2005.

    http://hal.inria.fr/inria-00510151
  • 29J. Chen, X. Granier, N. Lin, Q. Peng.

    On-Line Visualization of Underground Structures using Context Features, in: Symposium on Virtual Reality Software and Technology (VRST), ACM, 2010, pp. 167-170. [ DOI : 10.1145/1889863.1889898 ]

    http://hal.inria.fr/inria-00524818/en
  • 30J. Chen, G. Guennebaud, P. Barla, X. Granier.

    Non-oriented MLS Gradient Fields, in: Computer Graphics Forum, December 2013.

    http://hal.inria.fr/hal-00857265
  • 31O. Cossairt, S. Nayar, R. Ramamoorthi.

    Light field transfer: global illumination between real and synthetic objects, in: ACM Trans. Graph., 2008, vol. 27, no 3.

    http://doi.acm.org/10.1145/1360612.1360656
  • 32F. Cuny, L. Alonso, N. Holzschuch.

    A novel approach makes higher order wavelets really efficient for radiosity, in: Comput. Graph. Forum, 2000, vol. 19, no 3, pp. 99-108.
  • 33E. D'Eon, G. Irving.

    A quantized-diffusion model for rendering translucent materials, in: ACM Trans. Graph., 2011, vol. 30, no 4.

    http://doi.acm.org/10.1145/2010324.1964951
  • 34K. J. Dana, B. van Ginneken, S. Nayar, J. J. Koenderink.

    Reflectance and texture of real-world surfaces, in: IEEE Conference on Computer Vision and Pattern Recognition (ICCV), 1997, pp. 151-157.
  • 35Y. Dong, J. Wang, F. Pellacini, X. Tong, B. Guo.

    Fabricating spatially-varying subsurface scattering, in: ACM Trans. Graph., 2010, vol. 29, no 4.

    http://doi.acm.org/10.1145/1778765.1778799
  • 36P. Dutré, K. Bala, P. Bekaert.

    Advanced Global Illumination, A.K. Peters, 2006.
  • 37K. Egan, F. Hecht, F. Durand, R. Ramamoorthi.

    Frequency analysis and sheared filtering for shadow light fields of complex occluders, in: ACM Trans. Graph., 2011, vol. 30.

    http://doi.acm.org/10.1145/1944846.1944849
  • 38K. Egan, Y.-T. Tseng, N. Holzschuch, F. Durand, R. Ramamoorthi.

    Frequency Analysis and Sheared Reconstruction for Rendering Motion Blur, in: ACM Trans. Graph., 2009, vol. 28, no 3. [ DOI : 10.1145/1531326.1531399 ]

    http://hal.inria.fr/inria-00388461/en
  • 39R. Fleming, A. Torralba, E. H. Adelson.

    Specular reflections and the perception of shape, in: J. Vis., 2004, vol. 4, no 9, pp. 798-820.

    http://journalofvision.org/4/9/10/
  • 40A. Ghosh, S. Achutha, W. Heidrich, M. O'Toole.

    BRDF Acquisition with Basis Illumination, in: IEEE International Conference on Computer Vision (ICCV), 2007, pp. 1-8.
  • 41M. Goesele, X. Granier, W. Heidrich, H.-P. Seidel.

    Accurate Light Source Acquisition and Rendering, in: ACM Trans. Graph., 2003, vol. 22, no 3, pp. 621-630. [ DOI : 10.1145/882262.882316 ]

    http://hal.inria.fr/hal-00308294
  • 42C. M. Goral, K. E. Torrance, D. P. Greenberg, B. Battaile.

    Modeling the interaction of light between diffuse surfaces, in: Proc. ACM SIGGRAPH, 1984, pp. 213-222.
  • 43M. Hasan, M. Fuchs, W. Matusik, H. Pfister, S. Rusinkiewicz.

    Physical reproduction of materials with specified subsurface scattering, in: ACM Trans. Graph., 2010, vol. 29, no 4.

    http://doi.acm.org/10.1145/1778765.1778798
  • 44P. S. Heckbert.

    Simulating Global Illumination Using Adaptative Meshing, University of California, 1991.
  • 45M. B. Hullin, M. Fuchs, I. Ihrke, H.-P. Seidel, H. P. A. Lensch.

    Fluorescent immersion range scanning, in: ACM Trans. Graph., 2008, vol. 27, no 3.

    http://doi.acm.org/10.1145/1360612.1360686
  • 46M. B. Hullin, J. Hanika, B. Ajdin, H.-P. Seidel, J. Kautz, H. P. A. Lensch.

    Acquisition and analysis of bispectral bidirectional reflectance and reradiation distribution functions, in: ACM Trans. Graph., 2010, vol. 29.

    http://doi.acm.org/10.1145/1778765.1778834
  • 47M. B. Hullin, H. P. A. Lensch, R. Raskar, H.-P. Seidel, I. Ihrke.

    Dynamic Display of BRDFs, in: Comput. Graph. Forum, 2011, vol. 30, no 2, pp. 475–483.

    http://dx.doi.org/10.1111/j.1467-8659.2011.01891.x
  • 48I. Ihrke, K. N. Kutulakos, H. P. A. Lensch, M. Magnor, W. Heidrich.

    Transparent and Specular Object Reconstruction, in: Comput. Graph. Forum, 2010, vol. 29, no 8, pp. 2400-2426.
  • 49I. Ihrke, I. Reshetouski, A. Manakov, A. Tevs, M. Wand, H.-P. Seidel.

    A Kaleidoscopic Approach to Surround Geometry and Reflectance Acquisition, in: IEEE Conf. Computer Vision and Pattern Recognition Workshops (CVPRW), IEEE Computer Society, 2012, pp. 29-36.
  • 50I. Ihrke, G. Wetzstein, W. Heidrich.

    A theory of plenoptic multiplexing, in: IEEE Conf. Computer Vision and Pattern Recognition (CVPR), IEEE Computer Society, 2010, pp. 483-490, oral.
  • 51J. T. Kajiya.

    The rendering equation, in: Proc. ACM SIGGRAPH, 1986, pp. 143-150.

    http://doi.acm.org/10.1145/15922.15902
  • 52J. Kautz, P.-P. Sloan, J. Snyder.

    Fast, arbitrary BRDF shading for low-frequency lighting using spherical harmonics, in: Proc. Eurographics workshop on Rendering (EGWR), 2002, pp. 291-296.
  • 53I. Kaya, K. P. Thompson, J. P. Rolland.

    Edge clustered fitting grids for φ-polynomial characterization of freeform optical surfaces, in: Opt. Express, 2011, vol. 19, no 27, pp. 26962-26974. [ DOI : 10.1364/OE.19.026962 ]

    http://www.opticsexpress.org/abstract.cfm?URI=oe-19-27-26962
  • 54M. Kolomenkin, I. Shimshoni, A. Tal.

    Demarcating curves for shape illustration, in: ACM Trans. Graph. (SIGGRAPH Asia), 2008, vol. 27.

    http://doi.acm.org/10.1145/1409060.1409110
  • 55M. Levoy, Z. Zhang, I. McDowall.

    Recording and controlling the 4D light field in a microscope using microlens arrays, in: J. Microscopy, 2009, vol. 235, no 2, pp. 144-162.

    http://dx.doi.org/10.1111/j.1365-2818.2009.03195.x
  • 56S. Li, G. Guennebaud, B. Yang, J. Feng.

    Predicted Virtual Soft Shadow Maps with High Quality Filtering, in: Comput. Graph. Forum, 2011, vol. 30, no 2, pp. 493-502.

    http://hal.inria.fr/inria-00566223/en
  • 57C.-K. Liang, T.-H. Lin, B.-Y. Wong, C. Liu, H. H. Chen.

    Programmable aperture photography: multiplexed light field acquisition, in: ACM Trans. Graph., 2008, vol. 27, no 3.

    http://doi.acm.org/10.1145/1360612.1360654
  • 58Y. Liu, X. Granier.

    Online Tracking of Outdoor Lighting Variations for Augmented Reality with Moving Cameras, in: IEEE Transactions on Visualization and Computer Graphics, March 2012, vol. 18, no 4, pp. 573-580. [ DOI : 10.1109/TVCG.2012.53 ]

    http://hal.inria.fr/hal-00664943
  • 59W. Matusik, H. Pfister, M. Brand, L. McMillan.

    A data-driven reflectance model, in: ACM Trans. Graph., 2003, vol. 22, no 3, pp. 759-769.

    http://doi.acm.org/10.1145/882262.882343
  • 60W. Matusik, H. Pfister.

    3D TV: a scalable system for real-time acquisition, transmission, and autostereoscopic display of dynamic scenes, in: ACM Trans. Graph., 2004, vol. 23, no 3, pp. 814-824.

    http://doi.acm.org/10.1145/1015706.1015805
  • 61G. Müller, J. Meseth, M. Sattler, R. Sarlette, R. Klein.

    Acquisition, Synthesis and Rendering of Bidirectional Texture Functions, in: Eurographics 2004, State of the Art Reports, 2004, pp. 69-94.
  • 62A. Ngan, F. Durand, W. Matusik.

    Experimental Analysis of BRDF Models, in: Proc. Eurographics Symposium on Rendering (EGSR), 2005, pp. 117-226.
  • 63F. E. Nicodemus, J. C. Richmond, J. J. Hsia, I. W. Ginsberg, T. Limperis.

    Geometrical Considerations and Nomenclature for Reflectance, National Bureau of Standards, 1977.
  • 64M. O'Toole, K. N. Kutulakos.

    Optical computing for fast light transport analysis, in: ACM Trans. Graph., 2010, vol. 29, no 6.
  • 65R. Pacanowski, X. Granier, C. Schlick, P. Poulin.

    Volumetric Vector-based Representation for Indirect Illumination Caching, in: J. Computer Science and Technology (JCST), 2010, vol. 25, no 5, pp. 925-932. [ DOI : 10.1007/s11390-010-1073-8 ]

    http://hal.inria.fr/inria-00505132/en
  • 66R. Pacanowski, O. Salazar-Celis, C. Schlick, X. Granier, P. Poulin, A. Cuyt.

    Rational BRDF, in: IEEE Transactions on Visualization and Computer Graphics, February 2012, vol. 18, no 11, pp. 1824-1835. [ DOI : 10.1109/TVCG.2012.73 ]

    http://hal.inria.fr/hal-00678885
  • 67P. Peers, D. Mahajan, B. Lamond, A. Ghosh, W. Matusik, R. Ramamoorthi, P. Debevec.

    Compressive light transport sensing, in: ACM Trans. Graph., 2009, vol. 28, no 1.
  • 68B. Petit, J.-D. Lesage, C. Menier, J. Allard, J.-S. Franco, B. Raffin, E. Boyer, F. Faure.

    Multicamera Real-Time 3D Modeling for Telepresence and Remote Collaboration, in: Int. J. digital multimedia broadcasting, 2010, vol. 2010, Article ID 247108, 12 pages. [ DOI : 10.1155/2010/247108 ]

    http://hal.inria.fr/inria-00436467
  • 69R. Ramamoorthi, P. Hanrahan.

    On the relationship between radiance and irradiance: determining the illumination from images of a convex Lambertian object, in: J. Opt. Soc. Am. A, 2001, vol. 18, no 10, pp. 2448-2459.
  • 70R. Ramamoorthi, D. Mahajan, P. Belhumeur.

    A first-order analysis of lighting, shading, and shadows, in: ACM Trans. Graph., 2007, vol. 26, no 1.

    http://doi.acm.org/10.1145/1189762.1189764
  • 71R. Raskar, J. Tumblin.

    Computational Photography: Mastering New Techniques for Lenses, Lighting, and Sensors, A K Peters/CRC Press, 2012.
  • 72E. Reinhard, W. Heidrich, P. Debevec, S. Pattanaik, G. Ward, K. Myszkowski.

    High Dynamic Range Imaging: Acquisition, Display and Image-Based Lighting, Morgan Kaufmann Publishers, 2010, 2nd edition.
  • 73P. Ren, J. Wang, J. Snyder, X. Tong, B. Guo.

    Pocket reflectometry, in: ACM Trans. Graph., 2011, vol. 30, no 4.
  • 74P. Reuter, G. Riviere, N. Couture, S. Mahut, L. Espinasse.

    ArcheoTUI-Driving virtual reassemblies with tangible 3D interaction, in: J. Computing and Cultural Heritage, 2010, vol. 3, no 2, pp. 1-13. [ DOI : 10.1145/1841317.1841319 ]

    http://hal.inria.fr/hal-00523688/en
  • 75H. E. Rushmeier, K. E. Torrance.

    The zonal method for calculating light intensities in the presence of a participating medium, in: ACM SIGGRAPH Comput. Graph., 1987, vol. 21, no 4, pp. 293-302.

    http://doi.acm.org/10.1145/37402.37436
  • 76S. Rusinkiewicz.

    A New Change of Variables for Efficient BRDF Representation, in: Proc. EGWR '98, 1998, pp. 11-22.
  • 77P. Schröder, W. Sweldens.

    Spherical wavelets: efficiently representing functions on the sphere, in: Proc. ACM SIGGRAPH, annual conference on Computer graphics and interactive techniques, 1995, pp. 161-172.

    http://doi.acm.org/10.1145/218380.218439
  • 78F. X. Sillion, C. Puech.

    Radiosity and Global Illumination, Morgan Kaufmann Publishers, 1994.
  • 79C. Soler, K. Subr, F. Durand, N. Holzschuch, F. X. Sillion.

    Fourier Depth of Field, in: ACM Transactions on Graphics, 2009, vol. 28, no 2. [ DOI : 10.1145/1516522.1516529 ]

    http://hal.inria.fr/inria-00345902
  • 80M. Stamminger, A. Scheel, X. Granier, F. Perez-Cazorla, G. Drettakis, F. X. Sillion.

    Efficient Glossy Global Illumination with Interactive Viewing, in: Computer Graphics Forum, 2000, vol. 19, no 1, pp. 13-25.
  • 81M. Stark, J. Arvo, B. Smits.

    Barycentric Parameterizations for Isotropic BRDFs, in: IEEE Trans. Vis. and Comp. Graph., 2005, vol. 11, no 2, pp. 126-138.

    http://dx.doi.org/10.1109/TVCG.2005.26
  • 82W. Thompson, R. Fleming, S. Creem-Regehr, J. K. Stefanucci.

    Visual Perception from a Computer Graphics Perspective, A K Peters/CRC Press, 2011.
  • 83Y.-T. Tsai, Z.-C. Shih.

    All-Frequency Precomputed Radiance Transfer Using Spherical Radial Basis Functions and Clustered Tensor Approximation, in: ACM Trans. Graph., 2006, vol. 25, no 3, pp. 967-976.
  • 84D. Vanderhaeghe, R. Vergne, P. Barla, W. Baxter.

    Dynamic Stylized Shading Primitives, in: Proc. Int. Symposium on Non-Photorealistic Animation and Rendering (NPAR), ACM, 2011, pp. 99-104.

    http://hal.inria.fr/hal-00617157/en
  • 85P. Vangorp, J. Laurijssen, P. Dutré.

    The influence of shape on the perception of material reflectance, in: ACM Trans. Graph., 2007, vol. 26, no 3.

    http://doi.acm.org/10.1145/1276377.1276473
  • 86E. Veach, L. J. Guibas.

    Metropolis light transport, in: Proc. SIGGRAPH '97, annual conference on Computer graphics and interactive techniques, ACM/Addison-Wesley Publishing Co., 1997, pp. 65-76.

    http://doi.acm.org/10.1145/258734.258775
  • 87R. Vergne, P. Barla, R. Fleming, X. Granier.

    Surface Flows for Image-based Shading Design, in: ACM Transactions on Graphics, August 2012, vol. 31, no 3. [ DOI : 10.1145/2185520.2185590 ]

    http://hal.inria.fr/hal-00702280
  • 88R. Vergne, R. Pacanowski, P. Barla, X. Granier, C. Schlick.

    Light warping for enhanced surface depiction, in: ACM Trans. Graph., 2009, vol. 28, no 3, 25:1 p, front cover.

    http://doi.acm.org/10.1145/1531326.1531331
  • 89R. Vergne, R. Pacanowski, P. Barla, X. Granier, C. Schlick.

    Improving Shape Depiction under Arbitrary Rendering, in: IEEE Trans. Visualization and Computer Graphics, 2011, vol. 17, no 8, pp. 1071-1081. [ DOI : 10.1109/TVCG.2010.252 ]

    http://hal.inria.fr/inria-00585144/en
  • 90R. Vergne, D. Vanderhaeghe, J. Chen, P. Barla, X. Granier, C. Schlick.

    Implicit Brushes for Stylized Line-based Rendering, in: Comput. Graph. Forum, 2011, vol. 30, no 2, pp. 513-522, 3rd best paper award. [ DOI : 10.1111/j.1467-8659.2011.01892.x ]

    http://hal.inria.fr/inria-00569958/en
  • 91F. Vincent, L. Barthe, G. Guennebaud, M. Paulin.

    Soft Textured Shadow Volume, in: Comput. Graph. Forum, 2009, vol. 28, no 4, pp. 1111-1120.

    http://hal.inria.fr/inria-00390534/en
  • 92J. Wang, Y. Dong, X. Tong, Z. Lin, B. Guo.

    Kernel Nyström method for light transport, in: ACM Trans. Graph., 2009, vol. 28, no 3.
  • 93B. Yang, J. Feng, G. Guennebaud, X. Liu.

    Packet-based Hierarchical Soft Shadow Mapping, in: Comput. Graph. Forum, 2009, vol. 28, no 4, pp. 1121-1130.

    http://hal.inria.fr/inria-00390541/en