Location via proxy:   [ UP ]  
[Report a bug]   [Manage cookies]                
skip to main content
10.1145/566570.566652acmconferencesArticle/Chapter ViewAbstractPublication PagessiggraphConference Proceedingsconference-collections
Article

Octree textures

Published: 01 July 2002 Publication History

Abstract

Texturing using a set of two dimensional image maps is an established and widespread practice. However, it has many limitations. Parameterizing a model in texture space can be very difficult, particularly with representations such as implicit surfaces, subdivision surfaces, and very dense or detailed polygonal meshes. This paper proposes the use of a new kind of texture based on an octree, which needs no parameterization other than the surface itself, and yet has similar storage requirements to 2D maps. In addition, it offers adaptive detail, regular sampling over the surface, and continuity across surface boundaries. The paper addresses texture creation, painting, storage, processing, and rendering with octree textures.

References

[1]
K. Akeley. Realityengine graphics. Proceedings of SIGGRAPH 93, 1993.
[2]
D. Berman, J. Bartell, and D. Salesin. Multiresolution painting and compositing. Proceedings of SIGGRAPH 94, 1994.
[3]
J. Bloomenthal. Polygonization of implicit surfaces. Proceedings of SIGGRAPH 88, 1988.
[4]
E. E. Catmull. A subdivision algorithm for computer display of curved surfaces. Master's thesis, University of Utah, December 1974.
[5]
P. Cignoni, C. Montani, C. Rocchini, and R. Scopigno. A general method for preserving attribute values on simplified meshes. IEEE Visualization 1998 Proceedings, pages 59-66, 1998.
[6]
D. DeBry, J. Gibbs, D. Petty, and N. Robins. Painting and rendering textures on unparameterized models. Proceedings of SIGGRAPH 02, 2002.
[7]
R. Drebin, L. Carpenter, and P. Hanrahan. Volume rendering. Proceedings of SIGGRAPH 88, 1988.
[8]
S. F. Frisken, R. N. Perry, A. P. Rockwood, and T. R. Jones. Adaptively sampled distance fields: A general representation of shape for computer graphics. Proceedings of SIGGRAPH 00, 2000.
[9]
S. Gortler, R. Grzeszczuk, R. Szeliski, and M. Cohen. The lumigraph. Proceedings of SIGGRAPH 96, pages 43-54, 1996.
[10]
J. T. Kajiya and B. P. Von Herzen. Ray tracing volume densities. Proceedings of SIGGRAPH 84, 1984.
[11]
L. Kobbelt, M. Stamminger, and H. P. Seidel. Using subdivision on hierarchical data to reconstruct radiosity distribution. Proceedings of EUROGRAPHICS 97, 1997.
[12]
D. Laur and P. Hanrahan. Hierarchical splatting: A progressive refinement algorithm for volume rendering. Proceedings of SIGGRAPH 91, 1991.
[13]
D. Lischinski and A. Rappoport. Image-based rendering for non-diffuse synthetic scenes. Rendering Techniques 98, pages 165-174, 1998.
[14]
J Maillot, Y. Hussein, and A. Verroust. Interactive texture mapping. Proceedings of SIGGRAPH 93, 1993.
[15]
M. Maruya. Generating texture map from object-surface texture data. Proceedings of EUROGRAPHICS 95, pages 397-405, 1995.
[16]
D. R. Peachy. Solid texturing of complex surfaces. Proceedings of SIGGRAPH 85, 1985.
[17]
K. Perlin. An image synthesizer. Proceedings of SIGGRAPH 85, 1985.
[18]
H. Pfister, M. Zwicker, J. VanBaar, and M. Gross. Surfels:surface elements as rendering primitives. Proceedings of SIGGRAPH 00, 2000.
[19]
Dan Piponi and George Borshukov. Texture mapping of subdivision surfaces by model pelting and texture blending. Proceedings of SIGGRAPH 00, 2000.
[20]
P. Sander, X. Gu, S. Gortler, and H. Hoppe. Silhouette clipping. Proceedings of SIGGRAPH 00, pages 327-334, 2000.
[21]
P. Sander, J. Snyder, S. Gortler, and H. Hoppe. Texturing progressive meshes. Proceedings of SIGGRAPH 01, 2001.
[22]
M. Segal and K. Akeley. The opengl graphics system: A specification. http://www.opengl.org/Documentations/Specs.html, 1997.
[23]
M. Soucy, G. Godin, and M. Rioux. A texture mapping approach for the compression of colored 3d triangulations. The Visual Computer, pages 503-514, 1986.
[24]
M. Tamminen and H. Samet. Efficient octree conversion by connectivity labeling. Proceedings of SIGGRAPH 84, 1984.
[25]
G. Turk. Generating textures on arbitrary surfaces using reaction-diffusion. Proceedings of SIGGRAPH 91, 1991.
[26]
Li-Yi Wei and Marc Levoy. Texture synthesis over arbitrary manifold surfaces. Proceedings of SIGGRAPH 01, 2001.
[27]
L. Williams. Pyramidal parametrics. Proceedings of SIGGRAPH 83, 1983.

Cited By

View all
  • (2024)Method for the Visualization of Complex Objects Representing a Composition of Volumes and Functionally Defined SurfacesOptoelectronics, Instrumentation and Data Processing10.3103/S875669902470022560:2(190-196)Online publication date: 29-Jul-2024
  • (2015)GPU-based Parallel R-tree Construction and QueryingProceedings of the 2015 IEEE International Parallel and Distributed Processing Symposium Workshop10.1109/IPDPSW.2015.127(618-627)Online publication date: 25-May-2015
  • (2015)Interpolation and parallel adjustment of center-sampled trees with new balancing constraintsThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-014-1018-231:10(1351-1363)Online publication date: 1-Oct-2015
  • Show More Cited By

Recommendations

Comments

Information & Contributors

Information

Published In

cover image ACM Conferences
SIGGRAPH '02: Proceedings of the 29th annual conference on Computer graphics and interactive techniques
July 2002
574 pages
ISBN:1581135211
DOI:10.1145/566570
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

Sponsors

Publisher

Association for Computing Machinery

New York, NY, United States

Publication History

Published: 01 July 2002

Permissions

Request permissions for this article.

Check for updates

Author Tag

  1. volume texture

Qualifiers

  • Article

Conference

SIGGRAPH02
Sponsor:

Acceptance Rates

SIGGRAPH '02 Paper Acceptance Rate 67 of 358 submissions, 19%;
Overall Acceptance Rate 1,822 of 8,601 submissions, 21%

Contributors

Other Metrics

Bibliometrics & Citations

Bibliometrics

Article Metrics

  • Downloads (Last 12 months)10
  • Downloads (Last 6 weeks)0
Reflects downloads up to 04 Oct 2024

Other Metrics

Citations

Cited By

View all
  • (2024)Method for the Visualization of Complex Objects Representing a Composition of Volumes and Functionally Defined SurfacesOptoelectronics, Instrumentation and Data Processing10.3103/S875669902470022560:2(190-196)Online publication date: 29-Jul-2024
  • (2015)GPU-based Parallel R-tree Construction and QueryingProceedings of the 2015 IEEE International Parallel and Distributed Processing Symposium Workshop10.1109/IPDPSW.2015.127(618-627)Online publication date: 25-May-2015
  • (2015)Interpolation and parallel adjustment of center-sampled trees with new balancing constraintsThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-014-1018-231:10(1351-1363)Online publication date: 1-Oct-2015
  • (2014)Simple Octree Solution for Multi-resolution LiDAR Processing and VisualisationProceedings of the 2014 IEEE International Conference on Computer and Information Technology10.1109/CIT.2014.102(220-225)Online publication date: 11-Sep-2014
  • (2013)Modeling Textured Translucent Materials with Lazy Solid Texture SynthesisMaterial Appearance Modeling: A Data-Coherent Approach10.1007/978-3-642-35777-0_8(121-140)Online publication date: 4-May-2013
  • (2012)Recovering geometric detail by octree normal mapsTransactions on Edutainment VII10.5555/2231115.2231122(62-73)Online publication date: 1-Jan-2012
  • (2012)State of the art in photon density estimationACM SIGGRAPH 2012 Courses10.1145/2343483.2343489(1-469)Online publication date: 5-Aug-2012
  • (2012)Parameterization-Aware MIP-MappingComputer Graphics Forum10.1111/j.1467-8659.2012.03141.x31:4(1455-1463)Online publication date: 1-Jun-2012
  • (2010)Interactive Histology of Large-Scale Biomedical Image StacksIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2010.16816:6(1386-1395)Online publication date: 1-Nov-2010
  • (2009)Hierarchical Photon MappingIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2008.6715:1(49-61)Online publication date: 1-Jan-2009
  • Show More Cited By

View Options

Get Access

Login options

View options

PDF

View or Download as a PDF file.

PDF

eReader

View online with eReader.

eReader

Media

Figures

Other

Tables

Share

Share

Share this Publication link

Share on social media