| 2008 |
| 49 | EE | Liang Chen,
Han-Wei Shen,
Gagan Agrawal:
Supporting a visualization application on a self-adapting grid middleware.
IPDPS 2008: 1-8 |
| 48 | EE | Steven Martin,
Han-Wei Shen,
Ravi Samtaney:
Efficient Rendering of Extrudable Curvilinear Volumes.
PacificVis 2008: 1-8 |
| 47 | EE | Aidong Lu,
Han-Wei Shen:
Interactive Storyboard for Overall Time-Varying Data Visualization.
PacificVis 2008: 143-150 |
| 46 | EE | Guangfeng Ji,
Han-Wei Shen,
Jinzhu Gao:
Interactive Exploration of Remote Isosurfaces with Point-Based Non-Photorealistic Rendering.
PacificVis 2008: 25-32 |
| 45 | EE | Liya Li,
Hsien-Hsi Hsieh,
Han-Wei Shen:
Illustrative Streamline Placement and Visualization.
PacificVis 2008: 79-86 |
| 44 | EE | Yuan Hong,
Han-Wei Shen:
Parallel reflective symmetry transformation for volume data.
Computers & Graphics 32(1): 41-54 (2008) |
| 43 | EE | Ying Tu,
Han-Wei Shen:
Balloon Focus: a Seamless Multi-Focus+Context Method for Treemaps.
IEEE Trans. Vis. Comput. Graph. 14(6): 1157-1164 (2008) |
| 2007 |
| 42 | EE | Chaoli Wang,
Antonio Garcia,
Han-Wei Shen:
Interactive Level-of-Detail Selection Using Image-Based Quality Metric for Large Volume Visualization.
IEEE Trans. Vis. Comput. Graph. 13(1): 122-134 (2007) |
| 41 | EE | Liya Li,
Han-Wei Shen:
Image-Based Streamline Generation and Rendering.
IEEE Trans. Vis. Comput. Graph. 13(3): 630-640 (2007) |
| 40 | EE | Ying Tu,
Han-Wei Shen:
Visualizing Changes of Hierarchical Data using Treemaps.
IEEE Trans. Vis. Comput. Graph. 13(6): 1286-1293 (2007) |
| 2006 |
| 39 | EE | James P. Ahrens,
Hank Childs,
John Clyne,
Wes Bethel,
Jian Huang,
Scott Klasky,
Kwan-Liu Ma,
Kenneth Moreland,
Michael E. Papka,
Valerio Pascucci,
Han-Wei Shen,
Debroah Silver:
Ultra-scale visualization - Workshop on ultra-scale visualization.
SC 2006: 235 |
| 38 | EE | Chaoli Wang,
Han-Wei Shen:
LOD Map - A Visual Interface for Navigating Multiresolution Volume Visualization.
IEEE Trans. Vis. Comput. Graph. 12(5): 1029-1036 (2006) |
| 37 | EE | Guangfeng Ji,
Han-Wei Shen:
Dynamic View Selection for Time-Varying Volumes.
IEEE Trans. Vis. Comput. Graph. 12(5): 1109-1116 (2006) |
| 36 | EE | Jonathan Woodring,
Han-Wei Shen:
Multi-variate, Time Varying, and Comparative Visualization with Contextual Cues.
IEEE Trans. Vis. Comput. Graph. 12(5): 909-916 (2006) |
| 2005 |
| 35 | EE | Udeepta Bordoloi,
Han-Wei Shen:
View Selection for Volume Rendering.
IEEE Visualization 2005: 62 |
| 34 | EE | Chaoli Wang,
Han-Wei Shen:
Hierarchical Navigation Interface: Leveraging Multiple Coordinated Views for Level-of-Detail Multiresolution Volume Rendering of Large Scientific Data Sets.
IV 2005: 259-267 |
| 33 | EE | Chaoli Wang,
Jinzhu Gao,
Liya Li,
Han-Wei Shen:
A Multiresolution Volume Rendering Framework for Large-Scale Time-Varying Data Visualization.
Volume Graphics 2005: 11-19 |
| 32 | EE | Bruno Raffin,
Han-Wei Shen,
Dirk Bartz:
Parallel graphics and visualization.
Parallel Computing 31(2): 147-148 (2005) |
| 31 | EE | Jinzhu Gao,
Chaoli Wang,
Liya Li,
Han-Wei Shen:
A parallel multiresolution volume rendering algorithm for large data visualization.
Parallel Computing 31(2): 185-204 (2005) |
| 30 | EE | Antonio Garcia,
Han-Wei Shen:
GPU-based 3D wavelet reconstruction with tileboarding.
The Visual Computer 21(8-10): 755-763 (2005) |
| 2004 |
| 29 | | Bruno Raffin,
Dirk Bartz,
Han-Wei Shen:
5th Eurographics/ACM SIGGRAPH Symposium on Parallel Graphics and Visualization (EGPGV 2004), 10-11 June 2004, Grenoble, France
EGPGV 2004 |
| 28 | | Chaoli Wang,
Jinzhu Gao,
Han-Wei Shen:
Parallel Multiresolution Volume Rendering of Large Data Sets with Error-Guided Load Balancing.
EGPGV 2004: 23-30 |
| 27 | EE | Jinzhu Gao,
Han-Wei Shen,
Jian Huang,
James Arthur Kohl:
Visibility Culling for Time-Varying Volume Rendering Using Temporal Occlusion Coherence.
IEEE Visualization 2004: 147-154 |
| 26 | | Guangfeng Ji,
Han-Wei Shen:
Efficient Isosurface Tracking Using Precomputed Correspondence Table.
VisSym 2004: 283-292 |
| 25 | EE | Udeepta Bordoloi,
David L. Kao,
Han-Wei Shen:
Visualization techniques for spatial probability density function data.
Data Science Journal 3: 153-162 (2004) |
| 24 | EE | Han-Wei Shen,
Guo-Shi Li,
Udeepta Bordoloi:
Interactive Visualization of Three-Dimensional Vector Fields with Flexible Appearance Control.
IEEE Trans. Vis. Comput. Graph. 10(4): 434-445 (2004) |
| 2003 |
| 23 | | Udeepta Bordoloi,
Han-Wei Shen:
Space Efficient Fast Isosurface Extraction for Large Datasets.
IEEE Visualization 2003: 201-208 |
| 22 | | Guangfeng Ji,
Han-Wei Shen,
Rephael Wenger:
Volume Tracking Using Higher Dimensional Isocontouring.
IEEE Visualization 2003: 209-216 |
| 21 | | Guo-Shi Li,
Udeepta Bordoloi,
Han-Wei Shen:
Chameleon: An interactive texture-based rendering framework for visualizing three-dimensional vector fields.
IEEE Visualization 2003: 241-248 |
| 20 | | Jinzhu Gao,
Jian Huang,
Han-Wei Shen,
James Arthur Kohl:
Visibility Culling Using Plenoptic Opacity Functions for Large Data Visualization.
IEEE Visualization 2003: 341-348 |
| 19 | | Jonathan Woodring,
Chaoli Wang,
Han-Wei Shen:
High Dimensional Direct Rendering of Time-Varying Volumetric Data.
IEEE Visualization 2003: 417-424 |
| 18 | | Jinzhu Gao,
Han-Wei Shen:
Hardware-assisted View-dependent Isosurface Extraction using Spherical Partition.
VisSym 2003 |
| 17 | EE | Jonathan Woodring,
Han-Wei Shen:
Chronovolumes: A Direct Rendering Technique for Visualizing Time-Varying Data.
Volume Graphics 2003: 27-34 |
| 2002 |
| 16 | EE | Antonio Garcia,
Han-Wei Shen:
An interleaved parallel volume renderer with PC-clusters.
EGPGV 2002: 51-59 |
| 15 | EE | Xinyue Li,
Han-Wei Shen:
Time-critical multiresolution volume rendering using 3D texture mapping hardware.
VolVis 2002: 29-36 |
| 14 | EE | Udeepta Bordoloi,
Han-Wei Shen:
Hardware Accelerated Interactive Vector Field Visualization: A level of detail approach.
Comput. Graph. Forum 21(3): (2002) |
| 2001 |
| 13 | EE | Jinzhu Gao,
Han-Wei Shen:
Parallel view-dependent isosurface extraction using multi-pass occlusion culling.
IEEE Symposium on Parallel and Large-Data Visualization and Graphics 2001: 67-74 |
| 12 | | Jinzhu Gao,
Han-Wei Shen,
Antonio Garcia:
Parallel View Dependent Isosurface Extraction for Large Scale Data Visualization.
PPSC 2001 |
| 2000 |
| 11 | EE | David Ellsworth,
Ling-Jen Chiang,
Han-Wei Shen:
Accelerating time-varying hardware volume rendering using TSP trees and color-based error metrics.
Volviz 2000: 119-128 |
| 1999 |
| 10 | | Han-Wei Shen,
Ling-Jan Chiang,
Kwan-Liu Ma:
A Fast Volume Rendering Algorithm for Time-Varying Fields Using a Time-Space Partitioning (TSP) Tree.
IEEE Visualization 1999: 371-377 |
| 1998 |
| 9 | EE | Han-Wei Shen:
Isosurface extraction in time-varying fields using a temporal hierarchical index tree.
IEEE Visualization 1998: 159-166 |
| 8 | EE | Han-Wei Shen,
David L. Kao:
A New Line Integral Convolution Algorithm for Visualizing Time-Varying Flow Fields.
IEEE Trans. Vis. Comput. Graph. 4(2): 98-108 (1998) |
| 1997 |
| 7 | EE | Han-Wei Shen,
David L. Kao:
UFLIC: a line integral convolution algorithm for visualizing unsteady flows.
IEEE Visualization 1997: 317-322 |
| 1996 |
| 6 | | Han-Wei Shen,
Charles D. Hansen,
Yarden Livnat,
Christopher R. Johnson:
Isosurfacing in Span Space with Utmost Efficiency (ISSUE).
IEEE Visualization 1996: 287-294 |
| 5 | EE | Han-Wei Shen,
Christopher R. Johnson,
Kwan-Liu Ma:
Visualizing Vector Fields Using Line Integral Convolution and Dye advection.
VVS 1996: 63- |
| 4 | EE | Yarden Livnat,
Han-Wei Shen,
Christopher R. Johnson:
A Near Optimal Isosurface Extraction Algorithm Using the Span Space.
IEEE Trans. Vis. Comput. Graph. 2(1): 73-84 (1996) |
| 3 | EE | Yarden Livnat,
Han-Wei Shen,
Christopher R. Johnson:
Correction: A Near Optimal Isosurface Extraction Algorithm Using the Span Space.
IEEE Trans. Vis. Comput. Graph. 2(2): 184 (1996) |
| 1995 |
| 2 | EE | Han-Wei Shen,
Christopher R. Johnson:
Sweeping Simplices: A Fast Iso-Surface Extraction Algorithm for Unstructured Grids.
IEEE Visualization 1995: 143-150 |
| 1994 |
| 1 | | Han-Wei Shen,
Christopher R. Johnson:
Differential Volume Rendering: A Fast Volume Visualization Technique for Flow Animation.
IEEE Visualization 1994: 180-187 |