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Multi-resolution graphic representation employing at least one simplified model for interactive visualization applicatio 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06T-005/00
출원번호 US-0816687 (1992-01-02)
발명자 / 주소
  • Borrel Paul (Peekskill NY) Rossignac Jaroslaw R. (Ossining NY)
출원인 / 주소
  • International Business Machines Corporation (Armonk NY 02)
인용정보 피인용 횟수 : 57  인용 특허 : 0

초록

A method for execution by a data processor that prepares an object for display. The method includes a step of processing a first model of the object so as to produce a simplified model thereof, the step of processing including the steps of (a) superimposing a first plurality of grid cells on the fir

대표청구항

A method for execution by a data processor to prepare an object for display on a display means wherein the object is represented by a plurality of vertices and planar faces each having boundaries defined in terms of the plurality of vertices, the method comprising the steps of: generating a first mo

이 특허를 인용한 특허 (57)

  1. Alexander A. Migdal ; Alexei Lebedev ; Victor Paskhaver, Adaptive subdivision of mesh models.
  2. Nishiura, Sachiko, Apparatus and method for converting an object display description document.
  3. Klosowski, James T.; Suits, Frank; Horn, William P.; Lecina, Gerard, Apparatus, system, and method for draping annotations on to a geometric surface.
  4. Suits, Frank; Klosowski, James T.; Horn, William P.; Lecina, Gerard, Apparatus, system, and method for simplifying annotations on a geometric surface.
  5. Horikawa, Junji; Totsuka, Takashi, Approximation method of shape data, information processing apparatus and medium.
  6. Wiedemann, Melissa; Phurrough, Larry; Gratsch, Colleen Flynn; Skoblick, Richard; Lee, Harry C., Automatic image object identification using threshold gradient magnitude based on terrain type.
  7. Junji Horikawa JP; Takashi Totsuka JP, Computer animation generator.
  8. Horikawa Junji,JPX ; Totsuka Takashi,JPX, Computer animation generator creating hierarchies of models for rapid display.
  9. Chang, Chih-Kuang; Wu, Xin-Yuan; Wu, Run-Hui, Computing device and boundary line graph checking method.
  10. Kihslinger, Steven P., Direct inset beveling of geometric figures.
  11. Hardwick Jonathan C.,GBX, Dynamic load balancing among processors in a parallel computer.
  12. Horikawa Junji,JPX ; Totsuka Takashi,JPX, Image data approximation considering normal vectors.
  13. Horikawa Junji,JPX ; Totsuka Takashi,JPX, Image data approximation considering normal vectors.
  14. Isaacs Paul M., Interactively reducing polygon count in three-dimensional graphic objects.
  15. Jevans David, Mechanism for rendering scenes using an object drawing subsystem.
  16. Wiedemann, Melissa; Phurrough, Larry; Gratsch, Colleen Flynn; Skoblick, Richard; Lee, Harry C., Method and apparatus for automatic identification of linear objects in an image.
  17. Wiedemann, Melissa; Phurrough, Larry; Gratsch, Colleen Flynn; Skoblick, Richard; Lee, Harry C., Method and apparatus for automatic identification of objects in an image.
  18. Wiedemann, Melissa; Phurrough, Larry; Gratsch, Colleen Flynn; Skoblick, Richard; Lee, Harry C., Method and apparatus for automatic linear object identification using identified terrain types in images.
  19. Cason Stanley Phillip ; Musa Mark Anthony, Method and apparatus for generating a user interface from the entity/attribute/relationship model of a database.
  20. Rossignac Jaroslaw Roman, Method and apparatus for generating non-uniform resolution image data.
  21. Sanjeev N. Trika, Method and apparatus for morphing objects by subdividing and mapping portions of the objects.
  22. Sanjeev N. Trika, Method and apparatus for progressively constructing a series of morphs between two-dimensional or three-dimensional models.
  23. Jones, Michael T., Method and system for iterative morphing.
  24. Hoppe Hugues H., Method and system for view-dependent refinement of progressive meshes.
  25. Horikawa Junji,JPX ; Totsuka Takashi,JPX, Method for approximating shape data, drawing apparatus and information recording medium.
  26. Brechner Eric L. (Redmond WA) Bourassa Virgil E. (Bellevue WA), Method for creating spatially balanced bounding volume hierarchies for use in a computer generated display of a complex.
  27. Freeman, Kyle G., Method for rendering realistic terrain simulation.
  28. Bernardini Fausto ; Borrel Paul ; Menon Jai P., Methods and apparatus for performing sampling based synthesis of three-dimensional geometric models.
  29. Schneider Bengt-Olaf ; Martin Ioana M, Methods and apparatus for providing 3D viewpoint selection in a server/client arrangement.
  30. Hardwick Jonathan C.,GBX, Nested parallel 2D Delaunay triangulation method.
  31. Hu,Hui; Sun,Yi, On-line image processing and communication system.
  32. Ording, Bas; Forstall, Scott; Christie, Greg; Lemay, Stephen O.; Chaudhri, Imran, Portable electronic device with multi-touch input.
  33. Ording, Bas; Forstall, Scott; Christie, Greg; Lemay, Stephen O.; Chaudhri, Imran, Portable electronic device with multi-touch input.
  34. Taubin Gabriel ; Horn William Pettit ; Borrel Paul, Progressive compression of clustered multi-resolution polygonal models.
  35. Schneider Philip J. ; Jevans David, Quality control mechanism for three-dimensional graphics rendering.
  36. Deering, Michael F., Relative coordinates for triangle rendering.
  37. Smyrl, Eliot; Reddy, Martin, Setting level of detail transition points.
  38. Kathleen Cunningham ; Kenneth Herndon, Snapshot damage handling for rendering objects in a zooming graphical user interface.
  39. Gueziec Andre Pierre, Surface simplification preserving a solid volume.
  40. Migdal Alexander A. ; Aguera-Arcas Blaise ; Lebedev Alexei, System and method for computer modeling of 3D objects and 2D images by mesh constructions that incorporate non-spatial data such as color or texture.
  41. Migdal Alexander ; Lebedev Alexei, System and method for computer modeling of 3D objects or surfaces by mesh constructions having optimal quality character.
  42. Alexander Migdal ; Alexei Lebedev, System and method for computer modeling of 3D objects or surfaces by mesh constructions having optimal quality characteristics and dynamic resolution capabilities.
  43. Migdal Alexander ; Lebedev Alexei, System and method for computer modeling of 3D objects or surfaces by mesh constructions having optimal quality characteristics and dynamic resolution capabilities.
  44. Migdal, Alexander; Lebedev, Alexei, System and method for computer modeling of 3D objects or surfaces by mesh constructions having optimal quality characteristics and dynamic resolution capabilities.
  45. Ze Hong Zhao ; Michael T. Jones ; Lee Robert Willis, System and method for displaying different portions of an object in different levels of detail.
  46. Kindratenko, Volodymyr V.; Fenwick, Robert J., System and method for hidden object removal.
  47. Michael T. Jones, System and method for morphing based on multiple weighted parameters.
  48. Migdal Alexander ; Lebedev Alexei, System and method for rapidly generating an optimal mesh model of a 3D object or surface.
  49. Freeman Kyle G., System and method for realistic terrain simulation.
  50. Horn, William P.; Valuyeva, Julia Anatolyevna; Klosowski, James T.; Suits, Frank; Lecina, Gerard, System and method for the coordinated simplification of surface and wire-frame descriptions of a geometric model.
  51. Lengeling, Gerhard; Junghanns, Marko, System and method for touchscreen knob control.
  52. Hu, Hui; Zhang, Jun, Teleradiology systems for rendering and visualizing remotely-located volume data sets.
  53. Hu, Hui; Zhang, Jun, Teleradiology systems for rendering and visualizing remotely-located volume data sets.
  54. Chai, Young-Ho; Nam, Sang-Hun, Three-dimensional modeling apparatus and method using grid structure.
  55. Lim Hong Lip,SGX, Visibility calculations for 3D computer graphics.
  56. Lim Hong Lip,SGX ITX 1545, Visibility calculations for 3D computer graphics.
  57. Lim, Hong Lip, Visibility calculations for 3d computer graphics.
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