2008 |
9 | EE | David Williams,
Sören Grimm,
Ernesto Coto,
Abdul V. Roudsari,
Haralambos Hatzakis:
Volumetric Curved Planar Reformation for Virtual Endoscopy.
IEEE Trans. Vis. Comput. Graph. 14(1): 109-119 (2008) |
2007 |
8 | EE | Ernesto Coto,
Sören Grimm,
David Williams:
O-Buffer based IFT watershed from markers for large medical datasets.
Computers & Graphics 31(6): 848-863 (2007) |
2006 |
7 | EE | Peter Rautek,
Balázs Csébfalvi,
Sören Grimm,
Stefan Bruckner,
Eduard Gröller:
D2VR: High-Quality Volume Rendering of Projection-based Volumetric Data.
EuroVis 2006: 211-218 |
6 | EE | Stefan Bruckner,
Sören Grimm,
Armin Kanitsar,
M. Eduard Gröller:
Illustrative Context-Preserving Exploration of Volume Data.
IEEE Trans. Vis. Comput. Graph. 12(6): 1559-1569 (2006) |
2005 |
5 | EE | Stefan Bruckner,
Sören Grimm,
Armin Kanitsar,
M. Eduard Gröller:
Illustrative Context-Preserving Volume Rendering.
EuroVis 2005: 69-76 |
2004 |
4 | | Sören Grimm,
Stefan Bruckner,
Armin Kanitsar,
Eduard Gröller:
Flexible Direct Multi-Volume Rendering in Dynamic Scenes.
VMV 2004: 379-386 |
3 | EE | Sören Grimm,
Stefan Bruckner,
Armin Kanitsar,
Eduard Gröller:
Memory Efficient Acceleration Structures and Techniques for CPU-Based Volume Raycasting of Large Data.
VolVis 2004: 1-8 |
2 | EE | Sören Grimm,
Stefan Bruckner,
Armin Kanitsar,
Eduard Gröller:
VOTS: VOlume doTS as a Point-Based Representation of Volumetric Data.
Comput. Graph. Forum 23(3): 661-668 (2004) |
1 | EE | Sören Grimm,
Stefan Bruckner,
Armin Kanitsar,
Eduard Gröller:
A refined data addressing and processing scheme to accelerate volume raycasting.
Computers & Graphics 28(5): 719-729 (2004) |