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groupe de recherche sur le système nerveux central - GRSNC

groupe de recherche sur le système nerveux central - GRSNC

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GREEN, AndreaTél. (514) 343-6111 ext 3301 PhysiologieUniversité <strong>de</strong> MontréalC.P. 6128, Succ. Centre-vil<strong>le</strong>, MontréalFax (514) 343-2111 Canada H3C 3J7URL site WWW:E-Mail: andrea.green@umontreal.ca URL personnel CV:GREEN, AndreaStatut universitaire / University statusChercheure adjointePhysiologieFaculté <strong>de</strong> mé<strong>de</strong>cineUniversité <strong>de</strong> MontréalAppartenance à d'autres <strong>groupe</strong>s / Affiliation with other groupsSociety for NeuroscienceNeural Control of Movement societyCanadian Association for NeuroscienceInstitute of E<strong>le</strong>ctrical and E<strong>le</strong>ctronics Engineers (IEEE)IEEE Engineering in Medicine and biology SocietyMembre du Groupe <strong>de</strong> <strong>recherche</strong> <strong>sur</strong> <strong>le</strong> système <strong>nerveux</strong> <strong>central</strong> (<strong>GRSNC</strong>) - FRSQFormation / TrainingB.Sc., Queen's University, E<strong>le</strong>ctrical Engineering, 1987-1991M.Sc., McGill University, E<strong>le</strong>ctrical Engineering (Transfer to Ph.D.), 1993-1996Ph.D., McGill University, Biomedical Engineering, 1996-2000Postdoctora<strong>le</strong>, Washington University, Dept. of Anatomy and Neurobiology, 2000-2005Attachée <strong>de</strong> <strong>recherche</strong>, Université <strong>de</strong> Montréal, Dépt. <strong>de</strong> physiologie, 2005-2007Orientations <strong>de</strong> la <strong>recherche</strong>• Base neurona<strong>le</strong> <strong>de</strong> contrô<strong>le</strong> sensorimoteur• Contributions sensoriel<strong>le</strong>s à l’estimation du mouvement dans l’espace• Apprentissage <strong>de</strong> tâches motrices et changement <strong>de</strong> comportement en fonction du contexte sensoriel• Modè<strong>le</strong>s computationnels <strong>de</strong>s systèmes neuronauxPrincipaux projets en cours:• Mécanismes neuronaux <strong>de</strong> compensation <strong>de</strong>s perturbations dynamiques dans <strong>le</strong> cortex cérébral et <strong>de</strong> l’apprentissage <strong>de</strong> nouvel<strong>le</strong>stâches motrices• Bases neurona<strong>le</strong>s <strong>de</strong> la détection du mouvement dans l’espace: transformation <strong>de</strong>s systèmes <strong>de</strong> référence et intégration sensoriel<strong>le</strong>• Modè<strong>le</strong>s computationnels <strong>de</strong>s contributions visuel<strong>le</strong>s et vestibulaires à l'évaluation spatia<strong>le</strong> <strong>de</strong>s mouvements dans <strong>le</strong>s trois dimensionsResearch orientations• Neural basis for sensorimotor control• Sensory contributions to spatial self-motion estimation• Motor skill <strong>le</strong>arning and modulation of behavioral performance with sensory context• Computational mo<strong>de</strong>ling of neural systemsCurrent research projects:• Neural mechanisms for motor skill <strong>le</strong>arning and compensation for novel dynamic environments in cerebral cortex• Neural basis for spatial self-motion estimation: reference frame transformations and sensory integration• Development of computational mo<strong>de</strong>ls for integrating visual and vestibular signals to estimate spatial self-motion in three-Publications choisies/Se<strong>le</strong>cted publicationsGreen A.M. and Angelaki D.E. Resolution of sensory ambiguities for gaze stabilization requires a second neural integrator. J. Neurosci. 23: 9265-9275, 2003.Green, A.M. and Angelaki, D.E. An integrative neural network for <strong>de</strong>tecting inertial motion and head orientation. J. Neurophysiol. 92: 905-925, 2004.Angelaki, D.E., Shaikh A.G., Green A.M., and Dickman J.D. Neurons compute internal mo<strong>de</strong>ls of the physical laws of motion. Nature 430: 560-564, 2004.Green, A.M., Shaikh, A.G. and Angelaki, D.E. Sensory vestibular contributions to constructing internal mo<strong>de</strong>ls of self-motion, J. Neural Eng., 2: 164-179, 2005.Yakusheva TA, Shaikh AG, Green AM, Blazquez PM, Dickman, JD and Angelaki DE. Purkinje cells in posterior cerebellar vermis enco<strong>de</strong> motion in an inertialreference frame, Neuron, 54: 973-985, 2007.Green, A.M., Meng, H. and Angelaki, D.E. A reevaluation of the inverse dynamic mo<strong>de</strong>l for eye movements, J. Neurosci., 27: 1346-1355, 2007.Ajemian, R., Green, A., Bullock, D., Sergio, L., Kalaska, J., and Grossberg, S. Assessing the Function of Motor Cortex: Sing<strong>le</strong>-Neuron Mo<strong>de</strong>ls of how NeuralResponse is Modulated by Limb Biomechanics, Neuron, 53: 414-428, 2008.Page 45

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