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Exploring the Connectome: Petascale Volume Visualization of Microscopy Data Streams.

, , , , , , and . IEEE Computer Graphics and Applications, 33 (4): 50-61 (2013)

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GPU-based large-scale visualization., , , and . SIGGRAPH ASIA Courses, page 7:1-7:10. ACM, (2013)Ovis: A Framework for Visual Analysisof Ocean Forecast Ensembles., , , , , , , and . IEEE Trans. Vis. Comput. Graph., 20 (8): 1114-1126 (2014)Interactive Volume Exploration of Petascale Microscopy Data Streams Using a Visualization-Driven Virtual Memory Approach., , , and . IEEE Trans. Vis. Comput. Graph., 18 (12): 2285-2294 (2012)State-of-the-Art in GPU-Based Large-Scale Volume Visualization., , and . Comput. Graph. Forum, 34 (8): 13-37 (2015)Probability Maps for the Visualization of Assimilation Ensemble Flow Data., , , and . EnvirVis@EuroVis, page 43-47. Eurographics Association, (2015)Accurate Dense Stereo Reconstruction using Graphics Hardware., , , and . Eurographics (Short Presentations), Eurographics Association, (2003)Smooth Mixed-Resolution GPU Volume Rendering., , , and . VG/PBG@SIGGRAPH, page 163-170. Eurographics Association, (2008)Residency Octree: A Hybrid Approach for Scalable Web-Based Multi-Volume Rendering., , , , , , and . CoRR, (2023)Ultraliser: a framework for creating multiscale, high-fidelity and geometrically realistic 3D models for in silico neuroscience., , , , , , , , , and 3 other author(s). Briefings Bioinform., (January 2023)Time-Dependent Flow seen through Approximate Observer Killing Fields., , , and . IEEE Trans. Vis. Comput. Graph., 25 (1): 1257-1266 (2019)