GPU-based interactive visualization techniques/ Daniel Weiskopf

By: Weiskopf, DanielMaterial type: TextTextSeries: (Mathematics and visualization)Publication details: Berlin: Springer, c2007Description: xv, 312 p. : ill. ; 24 cmISBN: 3540332626Subject(s): Computer graphics | Information visualization | Digital computer simulation | Information display systems | Visualization--Technique | Computer ScienceDDC classification: 510
Contents:
1 Introduction 1.1 Visualization Pipeline and Classification of Visualization Methods 1.2 GPU Rendering Pipeline 1.3 Methods and Goals 2 Visualization of 3D Scalar Fields 2.1 Optical Model for Volume Rendering 2.2 Volume Rendering Pipeline 2.3 Volume Rendering Approaches 2.4 Maintaining Constant Frame Rates in 3D Texture-Based Volume Rendering 2.5 Volume Clipping 2.6 Hierarchical Volume Visualization on GPU Clusters 2.7 Summary 3 Vector Field Visualization 3.1 Basics of Particle Tracing 3.2 Classification and Overview of Flow Visualization Methods 3.3 Semi-Lagrangian Noise and Dye Advection on Cartesian Domains 3.4 Dye Advection Based on Level-Sets 3.5 Flow Visualization on Curved Surfaces 3.6 Spacetime Framework for Time-Dependent Vector Fields 3.7 Summary 4 Perception-Oriented and Non-Photorealistic Rendering 4.1 Previous Work 4.2 Colorand the Perception of Motion 4.3 Color-Based Depth-Cueing 4.4 Non-Photorealistic Rendering of Depth Structures via Continuous Tone-Shading 4.5 Non-Photorealistic Halftoning 4.6 Summary 5 Conclusion
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General Books General Books Central Library, Sikkim University
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510 WEI/G (Browse shelf(Opens below)) Available P25401
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1 Introduction
1.1 Visualization Pipeline and Classification of Visualization Methods
1.2 GPU Rendering Pipeline
1.3 Methods and Goals
2 Visualization of 3D Scalar Fields
2.1 Optical Model for Volume Rendering
2.2 Volume Rendering Pipeline
2.3 Volume Rendering Approaches
2.4 Maintaining Constant Frame Rates in 3D Texture-Based Volume Rendering
2.5 Volume Clipping
2.6 Hierarchical Volume Visualization on GPU Clusters
2.7 Summary
3 Vector Field Visualization
3.1 Basics of Particle Tracing
3.2 Classification and Overview of Flow Visualization Methods
3.3 Semi-Lagrangian Noise and Dye Advection on Cartesian Domains
3.4 Dye Advection Based on Level-Sets
3.5 Flow Visualization on Curved Surfaces
3.6 Spacetime Framework for Time-Dependent Vector Fields
3.7 Summary
4 Perception-Oriented and Non-Photorealistic Rendering
4.1 Previous Work
4.2 Colorand the Perception of Motion
4.3 Color-Based Depth-Cueing
4.4 Non-Photorealistic Rendering of Depth Structures via Continuous Tone-Shading
4.5 Non-Photorealistic Halftoning
4.6 Summary
5 Conclusion

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