Geometric level set methods in imaging, vision, and graphics
Kaydedildi:
| Diğer Yazarlar: | , |
|---|---|
| Materyal Türü: | Livre papier |
| Dil: | Anglais |
| Baskı/Yayın Bilgisi: |
New York ; Berlin ; Heidelberg :
Springer
cop. 2003.
|
| Konular: | |
| Not: |
Autre tirage : 2006 (avec nouveau cop.) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • Geometric level set methods in imaging, vision, and graphics, Stanley Osher, Nikos Paragios, New York, Springer, 2003, 978-0-3872-1810-6 |
İçindekiler:
- I. Level set methods & Lagrangian approaches
- 1. Level set methods
- 2. Deformable models : classic, topology-adaptive and generalized formulations
- II. Edge detection & boundary extraction
- 3. Fast methods for implicit active contour models
- 4. Fast edge integration
- 5. Variational snake theory
- III. Scalar & vector image reconstruction, restoration
- 6. Multiplicative denoising and deblurring : theory and algorithms
- 7. Total variation minimization for scalar/vector regularization
- 8. Morphological global reconstruction and levelings : lattice and PDE approaches
- IV. Grouping
- 9. Fast marching techniques for visual grouping & segmentation
- 10. Multiphase object detection and image segmentation
- 11. Adaptive segmentation of vector valued images
- 12. Mumford-shah for segmentation and stereo
- V. Knowledge-based segmentation & registration
- 13. Shape analysis towards model-based segmentation
- 14. Joint image registration and segmentation
- 15. Image alignment
- VI. Motion analysis
- 16. Variational principles in optical flow estimation and tracking
- 17. Region matching and tracking under deformations or occlusions
- VII. Computational stereo & implicit surfaces
- 18. Computational stereo : a variational method
- 19. Visualization, analysis and shape reconstruction or sparse data
- 20. Variational problems and partial differential equations on implicit surfaces : bye bye triangulated surfaces ?
- VIII. Medical images analysis
- 21. Knowledge-based segmentation of medical images
- 22. Topology preserving geometric deformable models for brain reconstruction
- IX. Simulations & graphics
- 23. Editing geometric models
- 24. Simulating natural phenomena

