
Andrea Michelle Green
Profile
Research expertise
- Base neuronale de contrôle sensorimoteur;
- Contributions sensorielles à l’estimation du mouvement dans l’espace;
- Apprentissage de tâches motrices et changement de comportement en fonction du contexte sensoriel;
- Modèles computationnels des systèmes neuronaux.
Affiliations and responsabilities
Research affiliations
Teaching and supervision
Teaching
Courses taught (current session only)
Programs
Student supervision
Theses and dissertation supervision (Papyrus Institutional Repository)
Contribution des signaux vestibulaires à la sélection des trajectoires lors de mouvements d’atteinte
Cycle : Master's
Grade : M. Sc.
A computational model of cortico-basal ganglia circuits for deciding between reaching actions
Cycle : Master's
Grade : M. Sc.
Evidence for a reference frame transformation of vestibular contributions to voluntary reaching movements
Cycle : Master's
Grade : M. Sc.
Projects
Research projects
NEUROPHYSIOLOGICAL AND COMPUTATIONAL STUDIES OF SPATIAL SELF- MOTION ESTIMATION AND MOTOR PLANING
Union Neurosciences et Intelligence Artificielle Québec (UNIQUE)
Neural mechanisms of embodied decision-making
Interdisciplinary studies of spatial motion estimation and motor planning
Études de la prise de décision dynamique en milieu naturel et artificiel: Une approche interdisciplinaire et intégrative
Neuronal correlates for body-centered and world-centered representations of spatial self-motion
Union Neurosciences et Intelligence Artificielle Québec (UNIQUE) / Regroupements stratégiques
Cerebral cortical neural mechanisms for feedback vs feedforward contributions to motor skill learning
NEUROPHYSIOLOGICAL AND COMPUTATIONAL STUDIES OF SPATIAL SELF- MOTION ESTIMATION AND MOTOR PLANING
Supplément COVID-19 CRSNG_Interdisciplinary studies of spatial motion estimation and motor planning
SUBVENTION D'INFRASTRUCTURE DU FRSQ POUR LE GRSNC(GROUPE DE RECHERCHE SUR LE SYSTÈME NERVEUX CENTRAL)
A transcranial magnetic stimulation setup for animal research
Infrastructure for interdisciplinary studies in embodied decisions and actions
COMPUTATIONAL STUDIES OF SPATIAL MOTION ESTIMATION AND MOTOR PLANNING IN THE PRIMATE BRAIN
NEURONAL MECHANISMS OF COMPENSATION FOR DYNAMIC FORCE FIELD PERTURBATIONS IN CEREBRAL CORTEX : ON-LINE CORRECTION, PREDICTIVE ADAPTATION, AND SKILL GENERALIZATION
NEURONAL CORRELATES FOR SPATIAL SELF-MOTION ESTIMATION AND MOTOR PLANNING
COMPUTATIONAL STUDIES OF SPATIAL MOTION ESTIMATION AND MOTOR PLANNING IN THE PRIMATE BRAIN
COMPUTATIONAL MECHANISMS FOR STORING MOTOR MEMORIES IN NOISY NEURAL CIRCUITS : HOW ACTIVITY PATTERNS ELVOLVE DURING LEARING
NEURONAL CORRELATES FOR SPATIAL SELF-MOTION ESTIMATION AND MOTOR PLANNING
BASES NEURONALES DE LA DETECTION DU MOUVEMENT DANS L'ESPACE: TRANSFORMATIONS DES SYSTEMES DE REFERENCE ET INTEGRATION SENSORIELLE
Publications and presentations
Publications
Publications choisies
- Green AM, Kalaska JF. Learning to move machines with the mind. Trends Neurosci 34: 61-75, 2011;
- Green AM, Angelaki DE. Multisensory integration: resolving sensory ambiguities to build novel representations, Current Opinion in Neurobiology 20: 353-360, 2010;
- Green AM, Angelaki DE. Internal models and neural computation in the vestibular system. Exp. Brain Res., 200: 197-222, 2010;
- Ajemian R, Green A, Bullock D, Sergio L, Kalaska J, Grossberg S. Assessing the Function of Motor Cortex: Single-Neuron Models of how Neural Response is Modulated by Limb Biomechanics, Neuron, 53: 414-428, 2008;
- Yakusheva TA, Shaikh AG, Green AM, Blazquez PM, Dickman, JD and Angelaki DE. Purkinje cells in posterior cerebellar vermis encode motion in an inertial reference frame, Neuron, 54: 973-985, 2007;
- Green AM, Meng H, Angelaki DE. A reevaluation of the inverse dynamic model for eye movements, J. Neurosci., 27: 1346-1355, 2007;
- Green AM, Shaikh AG, Angelaki DE. Sensory vestibular contributions to constructing internal models of self-motion, J. Neural Eng., 2: 164-179, 2005;
- Green AM, Angelaki DE. An integrative neural network for detecting inertial motion and head orientation. J. Neurophysiol. 92: 905-925, 2004.
- Angelaki DE, Shaikh AG, Green AM, Dickman JD. Neurons compute internal models of the physical laws of motion. Nature 430: 560-564, 2004.
- Moreau-Debord I, Martin CZ, Landry M and Green AM. Evidence for a reference frame transformation of vestibular signal contributions to voluntary reaching. J. Neurophysiol. 111: 1903-1919,2014.
Disciplines
- Neurosciences
Areas of expertise
- Neuronal Systems
- Sensorimotor Integration
- Modeling of Learning Processes
- Somatosensory System
- Locomotor Activity / Movement Disorders
- Sensation and Perception
- Neuronal Communication and Neurotransmission
- Growth Factors (Neurosciences)
- Neuronal Modeling
- Plasticity / Neuronal Regeneration
- Cell Signaling (Neurosciences)