 | 2011 |
| 19 |  | Balázs Domonkos,
Balázs Csébfalvi:
Evaluation of the Linear Box-Spline Filter from Trilinear Texture Samples: A Feasibility Study.
Journal of WSCG 19(2): 77-84 (2011) |
| 2010 |
| 18 |  | Balázs Domonkos,
Balázs Csébfalvi:
DC-Splines: Revisiting the Trilinear Interpolation on the Body-Centered Cubic Lattice.
VMV 2010: 275-282 |
| 17 |  | Balázs Csébfalvi:
An Evaluation of Prefiltered B-Spline Reconstruction for Quasi-Interpolation on the Body-Centered Cubic Lattice.
IEEE Trans. Vis. Comput. Graph. 16(3): 499-512 (2010) |
| 2009 |
| 16 |  | Balázs Csébfalvi,
Balázs Domonkos:
Frequency-Domain Upsampling on a Body-Centered Cubic Lattice for Efficient and High-Quality Volume Rendering.
VMV 2009: 225-232 |
| 2008 |
| 15 |  | Balázs Csébfalvi,
Balázs Domonkos:
Pass-Band Optimal Reconstruction on the Body-Centered Cubic Lattice.
VMV 2008: 71-80 |
| 14 |  | Balázs Csébfalvi:
An Evaluation of Prefiltered Reconstruction Schemes for Volume Rendering.
IEEE Trans. Vis. Comput. Graph. 14(2): 289-301 (2008) |
| 2006 |
| 13 |  | Peter Rautek,
Balázs Csébfalvi,
Sören Grimm,
Stefan Bruckner,
Eduard Gröller:
D2VR: High-Quality Volume Rendering of Projection-based Volumetric Data.
EuroVis 2006: 211-218 |
| 2005 |
| 12 |  | Balázs Csébfalvi:
Prefiltered Gaussian Reconstruction for High-Quality Rendering of Volumetric Data sampled on a Body-Centered Cubic Grid.
IEEE Visualization 2005: 40 |
| 2004 |
| 11 |  | Balázs Csébfalvi,
József Koloszár,
Zsolt Tarjan:
Vector Quantization for Feature-Preserving Volume Filtering.
VMV 2004: 363-370 |
| 10 |  | Balázs Csébfalvi:
Interactive Transfer Function Control for Monte Carlo Volume Rendering.
VolVis 2004: 33-38 |
| 2003 |
| 9 |  | Balázs Csébfalvi,
László Szirmay-Kalos:
Monte Carlo Volume Rendering.
IEEE Visualization 2003: 449-456 |
| 2002 |
| 8 |  | Armin Kanitsar,
Thomas Theußl,
Lukas Mroz,
Milos Srámek,
Anna Vilanova Bartrolí,
Balázs Csébfalvi,
Jirí Hladuvka,
Dominik Fleischmann,
Michael Knapp,
Rainer Wegenkittl,
Petr Felkel,
Stefan Guthe,
Werner Purgathofer,
Eduard Gröller:
Christmas Tree Case Study: Computed Tomography as a Tool for Mastering Complex Real World Objects with Applications in Computer Graphics.
IEEE Visualization 2002: 489-492 |
| 7 |  | Balázs Csébfalvi,
László Neumann,
Armin Kanitsar,
Eduard Gröller:
Smooth Shape-Based Interpolation using the Conjugate Gradient Method.
VMV 2002: 123-130 |
| 2001 |
| 6 |  | Balázs Csébfalvi,
Eduard Gröller:
Interactive Volume Rendering based on a "Bubble Model".
Graphics Interface 2001: 209-216 |
| 5 |  | Balázs Csébfalvi,
Lukas Mroz,
Helwig Hauser,
Andreas König,
Eduard Gröller:
Fast Visualization of Object Contours by Non-Photorealistic Volume Rendering.
Comput. Graph. Forum 20(3): 452-460 (2001) |
| 2000 |
| 4 |  | Balázs Csébfalvi,
Andreas König,
Eduard Gröller:
Fast Surface Rendering of Volumetric Data.
WSCG 2000 |
| 3 |  | László Neumann,
Balázs Csébfalvi,
Andreas König,
Eduard Gröller:
Gradient Estimation in Volume Data using 4D Linear Regression.
Comput. Graph. Forum 19(3): 351-358 (2000) |
| 1999 |
| 2 |  | László Szirmay-Kalos,
Balázs Csébfalvi,
Werner Purgathofer:
Importance driven quasi-random walk solution of the rendering equation.
Computers & Graphics 23(2): 203-211 (1999) |
| 1997 |
| 1 |  | László Szirmay-Kalos,
Tibor Fóris,
László Neumann,
Balázs Csébfalvi:
An Analysis of Quasi-Monte Carlo Integration Applied to the Transillumination Radiosity Method.
Comput. Graph. Forum 16(3): 271-282 (1997) |