Local implicit modeling of blood vessels ...
Document type :
Communication dans un congrès avec actes
Title :
Local implicit modeling of blood vessels for interactive simulation
Author(s) :
Yureidini, Ahmed [Auteur]
Visual Augmentation of Complex Environments [MAGRIT]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Kerrien, Erwan [Auteur]
Visual Augmentation of Complex Environments [MAGRIT]
Dequidt, Jeremie [Auteur]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Duriez, Christian [Auteur]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Cotin, Stéphane [Auteur]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Visual Augmentation of Complex Environments [MAGRIT]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Kerrien, Erwan [Auteur]
Visual Augmentation of Complex Environments [MAGRIT]
Dequidt, Jeremie [Auteur]

Simulation in Healthcare using Computer Research Advances [SHACRA]
Duriez, Christian [Auteur]

Simulation in Healthcare using Computer Research Advances [SHACRA]
Cotin, Stéphane [Auteur]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Scientific editor(s) :
Ayache
Nicholas and Delingette
Hervé and Golland
Polina and Moria
Kensaku
Nicholas and Delingette
Hervé and Golland
Polina and Moria
Kensaku
Conference title :
MICCAI - 15th International Conference on Medical Image Computing and Computer-Assisted Intervention
City :
Nice
Country :
France
Start date of the conference :
2012-10-01
Journal title :
Lecture Notes in Computer Science
Publisher :
Springer
Publication date :
2012-10-01
HAL domain(s) :
Informatique [cs]/Imagerie médicale
Informatique [cs]/Synthèse d'image et réalité virtuelle [cs.GR]
Informatique [cs]/Synthèse d'image et réalité virtuelle [cs.GR]
English abstract : [en]
In the context of computer-based simulation, contact management requires an accurate, smooth, but still efficient surface model for the blood vessels. A new implicit model is proposed, consisting of a tree of local implicit ...
Show more >In the context of computer-based simulation, contact management requires an accurate, smooth, but still efficient surface model for the blood vessels. A new implicit model is proposed, consisting of a tree of local implicit surfaces generated by skeletons ({\em blobby models}). The surface is reconstructed from data points by minimizing an energy, alternating with an original blob selection and subdivision scheme. The reconstructed models are very efficient for simulation and were shown to provide a sub-voxel approximation of the vessel surface on 5 patients.Show less >
Show more >In the context of computer-based simulation, contact management requires an accurate, smooth, but still efficient surface model for the blood vessels. A new implicit model is proposed, consisting of a tree of local implicit surfaces generated by skeletons ({\em blobby models}). The surface is reconstructed from data points by minimizing an energy, alternating with an original blob selection and subdivision scheme. The reconstructed models are very efficient for simulation and were shown to provide a sub-voxel approximation of the vessel surface on 5 patients.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
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