Publications

Martin Falk, Sebastian Grottel, and Thomas Ertl. Interactive Image-Space Volume Visualization for Dynamic Particle Simulations. Proceedings of The Annual SIGRAD Conference, Linköping University Electronic Press, 2010. [PUMA: visus volume-visualisation visus:falkmn visus:grottel vis-ertl sfb716-d3 vis(us) visus:ertl from:mueller 2010 biovis]

Steffen Frey, Christoph Müller, Magnus Strengert, and Thomas Ertl. Concurrent CT Reconstruction and Visual Analysis Using Hybrid Multi-resolution Raycasting in a Cluster Environment. ISVC '09: Proceedings of the 5th International Symposium on Advances in Visual Computing, Springer-Verlag, 2009. [PUMA: 2009 vis(us) vis-ertl visus visus:ertl visus:freysn visus:mueller visus:strenger volume-visualisation] URL

Steffen Frey, and Thomas Ertl. Accelerating Raycasting Utilizing Volume Segmentation of Industrial CT Data. EG UK Theory and Practice of Computer Graphics, 2009. [PUMA: 2009 vis(us) vis-ertl visus visus:ertl visus:freysn volume-visualisation] URL

Steffen Frey, and Thomas Ertl. PaTraCo: A Framework Enabling the Transparent and Efficient Programming of Heterogeneous Compute Networks. Eurographics Symposium on Parallel Graphics and Visualization (EGPGV10), 2010. [PUMA: 2010 mcsimvis vis(us) vis-ertl visus visus:ertl visus:freysn volume-visualisation] URL

Markus Üffinger, Steffen Frey, and Thomas Ertl. Interactive High-Quality Visualization of Higher-Order Finite Elements. Computer Graphics Forum (CGF) Volume 29(2) (Euro Graphics 2010) Pages 115-136, (29)2010. [PUMA: 2010 nonscalar-field-vis simtech vis(us) vis-ertl vis-gis visus visus:ertl visus:freysn visus:ueffinms volume-visualisation] URL

Brendan Moloney, Marco Ament, Daniel Weiskopf, and Torsten Möller. Sort First Parallel Volume Rendering. IEEE Transactions on Visualization and Computer Graphics, (17)82011. [PUMA: 2011 vis(us) visus visus:amentmo visus:weiskopf volume-visualisation] URL

Marco Ament, Daniel Weiskopf, and Hamish Carr. Direct Interval Volume Visualization. IEEE Transactions on Visualization and Computer Graphics, (16)62010. [PUMA: 2010 sfb716-d5 vis(us) visus visus:amentmo visus:weiskopf volume-visualisation]

Marco Ament, Daniel Weiskopf, and Hamish Carr. Direct Interval Volume Visualization. IEEE Transactions on Visualization and Computer Graphics, (16)62010. [PUMA: visus:amentmo visus visus:weiskopf volume-visualisation vis(us) from:mueller 2010 sfb716-d5]

Brendan Moloney, Daniel Weiskopf, Torsten Möller, and Magnus Strengert. Scalable Sort-First Parallel Direct Volume Rendering with Dynamic Load Balancing. Eurographics Symposium on Parallel Graphics and Visualization (EGPGV07), Eurographics Association, 2007. [PUMA: 2007 vis(us) vis-gis visus visus:strenger visus:weiskopf volume-visualisation]

Eduardo Tejada, Tobias Schafhitzel, and Thomas Ertl. Hardware-accelerated point-based rendering of surfaces and volumes. Proceedings of WSCG 2007 Full Papers, 2007. [PUMA: 2007 vis(us) vis-gis visus visus:ertl visus:schafhts visus:tejada volume-visualisation]

Tobias Schafhitzel, Friedemann Rößler, Daniel Weiskopf, and Thomas Ertl. Simultaneous Visualization of Anatomical and Functional 3D Data by Combining Volume Rendering and Flow Visualization. Proceedings of SPIE Medical Imaging 2007: Visualization and Image-Guided Procedures, 2007. [PUMA: 2007 vis(us) vis-gis visus visus:ertl visus:roessler visus:schafhts visus:weiskopf volume-visualisation]

Christoph Müller, Magnus Strengert, and Thomas Ertl. Adaptive Load Balancing for Raycasting of Non-Uniformly Bricked Volumes. Journal of Parallel Computing, (3)6Elsevier, 2007. [PUMA: 2007 vis(us) vis-ertl vis-gis visus visus:ertl visus:mueller visus:strenger volume-visualisation] URL

Ralf P. Botchen, Min Chen, Daniel Weiskopf, and Thomas Ertl. GPU-assisted Multi-field Video Volume Visualization. Proceedings of the International Workshop on Volume Graphics '06, 2006. [PUMA: 2006 vis(us) vis-gis visus visus:botchen visus:ertl visus:weiskopf volume-visualisation]

Magnus Strengert, Thomas Klein, Ralf P. Botchen, Simon Stegmaier, Min Chen, and Thomas Ertl. Spectral Volume Rendering using GPU-based Raycasting. The Visual Computer, (22)82006. [PUMA: 2006 vis(us) vis-gis visus visus:botchen visus:ertl visus:klein visus:stegmase visus:strenger volume-visualisation] URL

Nikolai A. Svakhine, David S. Ebert, Eduardo Tejada, Thomas Ertl, and Kelly P. Gaither. Pre-integrated Flow Illustration for Tetrahedral Meshes. Proceedings of the International Workshop on Volume Graphics '06, 2006. [PUMA: 2006 vis(us) vis-gis visus:ertl visus:tejada volume-visualisation]

Friedemann Rößler, Eduardo Tejada, Thomas Fangmeier, Thomas Ertl, and Markus Knauff. GPU-based Multi-Volume Rendering for the Visualization of Functional Brain Images. Proceedings of SimVis 2006, 2006. [PUMA: 2006 vis(us) vis-gis visus:ertl visus:roessler visus:tejada volume-visualisation]

Sabine Iserhardt-Bauer, Peter Hastreiter, Bernd F. Tomandl, and Thomas Ertl. Evaluation of Volume Growing Based Segmentation of Intracranial Aneurysms Combined with 2D Transfer Functions. Proceedings of SimVis 2006, 2006. [PUMA: 2006 vis(us) vis-gis visus visus:ertl visus:iserhase volume-visualisation]

Christoph Müller, Magnus Strengert, and Thomas Ertl. Optimized Volume Raycasting for Graphics-Hardware-based Cluster Systems. Eurographics Symposium on Parallel Graphics and Visualization (EGPGV'06), 2006. [PUMA: 2006 vis(us) vis-ertl vis-gis visus visus:ertl visus:mueller visus:strenger volume-visualisation] URL

Alex J. Cuadros-Vargas, Luis Gustavo Nonato, Eduardo Tejada, and Thomas Ertl. Generating Segmented Tetrahedral Meshes from Regular Volume Data for Simulation and Visualization Applications. Proceedings of CompIMAGE, 2006. [PUMA: 2006 vis(us) vis-gis visus:ertl visus:tejada volume-visualisation]

Thomas Klein, Magnus Strengert, Simon Stegmaier, and Thomas Ertl. Exploiting Frame-to-Frame Coherence for Accelerating High-Quality Volume Raycasting on Graphics Hardware. In C. Silva, E. Gröller, and H. Rushmeier (Eds.), Proceedings of IEEE Visualization '05, 2005. [PUMA: 2005 vis(us) vis-gis visus visus:ertl visus:klein visus:stegmase visus:strenger volume-visualisation]