Intra-operative Registration for Deep Brain ...
Document type :
Communication dans un congrès avec actes
Title :
Intra-operative Registration for Deep Brain Stimulation Procedures based on a Full Physics Head Model
Author(s) :
Bilger, Alexandre [Auteur]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Bardinet, Eric [Auteur]
Plateforme de neuroimagerie CENIR = Center for NeuroImaging Research-Human MRI Neuroimaging core facility for clinical research [ICM Paris] [CENIR]
Fernández-Vidal, Sara [Auteur]
Plateforme de neuroimagerie CENIR = Center for NeuroImaging Research-Human MRI Neuroimaging core facility for clinical research [ICM Paris] [CENIR]
Duriez, Christian [Auteur]
Laboratoire d'Informatique Fondamentale de Lille [LIFL]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Jannin, Pierre [Auteur]
Laboratoire Traitement du Signal et de l'Image [LTSI]
Cotin, Stéphane [Auteur]
Laboratoire d'Informatique Fondamentale de Lille [LIFL]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Bardinet, Eric [Auteur]
Plateforme de neuroimagerie CENIR = Center for NeuroImaging Research-Human MRI Neuroimaging core facility for clinical research [ICM Paris] [CENIR]
Fernández-Vidal, Sara [Auteur]
Plateforme de neuroimagerie CENIR = Center for NeuroImaging Research-Human MRI Neuroimaging core facility for clinical research [ICM Paris] [CENIR]
Duriez, Christian [Auteur]

Laboratoire d'Informatique Fondamentale de Lille [LIFL]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Jannin, Pierre [Auteur]
Laboratoire Traitement du Signal et de l'Image [LTSI]
Cotin, Stéphane [Auteur]
Laboratoire d'Informatique Fondamentale de Lille [LIFL]
Simulation in Healthcare using Computer Research Advances [SHACRA]
Conference title :
MICCAI 2014 Workshop on Deep Brain Stimulation Methodological Challenges - 2nd edition
City :
Boston
Country :
Etats-Unis d'Amérique
Start date of the conference :
2014-09-14
Publication date :
2014-09-14
HAL domain(s) :
Informatique [cs]/Modélisation et simulation
English abstract : [en]
Brain deformation is a factor of inaccuracy during stereotactic neurosurgeries. If this phenomenon is not considered in the pre-operative planning or intra-operatively, it could lead to surgical complications, side effects ...
Show more >Brain deformation is a factor of inaccuracy during stereotactic neurosurgeries. If this phenomenon is not considered in the pre-operative planning or intra-operatively, it could lead to surgical complications, side effects or ineffectiveness. In this paper, we present a patient-specific method to update the pre-operative planning based on a physical simulation of the brain shift. A minimization process estimates parameters of the simulation in order to compute the brain tissue deformation matching the partial data taken from intra-operative modalities. The simulation is based on a patient-specific biomechanical model of the brain and the cerebro-spinal fluid. We validate the method on a patient with a post-operative MRI.Show less >
Show more >Brain deformation is a factor of inaccuracy during stereotactic neurosurgeries. If this phenomenon is not considered in the pre-operative planning or intra-operatively, it could lead to surgical complications, side effects or ineffectiveness. In this paper, we present a patient-specific method to update the pre-operative planning based on a physical simulation of the brain shift. A minimization process estimates parameters of the simulation in order to compute the brain tissue deformation matching the partial data taken from intra-operative modalities. The simulation is based on a patient-specific biomechanical model of the brain and the cerebro-spinal fluid. We validate the method on a patient with a post-operative MRI.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
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