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Hyperquadrics for Shape Analysis of 3D Nanoscale Reconstructions of Brain Cell Nuclear Envelopes.

, , , , , , and . STAG, page 115-122. Eurographics Association, (2018)

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Tracking the Movement of Surgical Tools in a Virtual Temporal Bone Dissection Simulator., , , , and . IS4TH, volume 2673 of Lecture Notes in Computer Science, page 100-107. Springer, (2003)A framework for GPU-accelerated exploration of massive time-varying rectilinear scalar volumes., , and . Comput. Graph. Forum, 38 (3): 53-66 (2019)Interactive Mapping of Indoor Building Structures through Mobile Devices., , and . 3DV (Workshops), page 103-110. IEEE Computer Society, (2014)978-1-4799-7000-1.Interactive 3D Exploration of a Virtual Sculpture Collection: an Analysis of User Behavior in Museum Settings., , , and . GCH, page 109-118. Eurographics Association, (2016)Visual Enhancements for Improved Interactive Rendering on Light Field Displays., , , , and . Eurographics Italian Chapter Conference, page 1-7. Eurographics, (2011)Shape analysis of 3D nanoscale reconstructions of brain cell nuclear envelopes by implicit and explicit parametric representations., , , , , , , , and . Comput. Graph. X, (2019)Probabilistic Occlusion Culling using Confidence Maps for High-Quality Rendering of Large Particle Data, , , , and . IEEE transactions on visualization and computer graphics, 28 (1): 573-582 (2022)GPU Accelerated Direct Volume Rendering on an Interactive Light Field Display., , , , and . Comput. Graph. Forum, 27 (2): 231-240 (2008)Real-time Cataract Surgery Simulation for Training., , , , and . Eurographics Italian Chapter Conference, page 183-187. Eurographics, (2006)Split-Voxel: A Simple Discontinuity-Preserving Voxel Representation for Volume Rendering., , , and . Volume Graphics, page 21-28. Eurographics Association, (2010)