Peter Ford Dominey

Affiliations: 
INSERM, Rennes, Bretagne, France 
Area:
language, robotics, neuroscience, computational modelling
Google:
"Peter Dominey"
Mean distance: 14.56 (cluster 17)
 
SNBCP
Cross-listing: CSD Tree - Robotree

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Publications

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Scleidorovich P, Weitzenfeld A, Fellous JM, et al. (2022) Integration of velocity-dependent spatio-temporal structure of place cell activation during navigation in a reservoir model of prefrontal cortex. Biological Cybernetics. 116: 585-610
Pointeau G, Mirliaz S, Mealier AL, et al. (2021) Learning to Use Narrative Function Words for the Organization and Communication of Experience. Frontiers in Psychology. 12: 591703
Fellous JM, Dominey P, Weitzenfeld A. (2020) Complex spatial navigation in animals, computational models and neuro-inspired robots. Biological Cybernetics. 114: 137-138
Cazin N, Scleidorovich P, Weitzenfeld A, et al. (2020) Real-time sensory-motor integration of hippocampal place cell replay and prefrontal sequence learning in simulated and physical rat robots for novel path optimization. Biological Cybernetics. 114: 249-268
Delgrange C, Dussoux J, Dominey PF. (2020) Usage-Based Learning in Human Interaction With an Adaptive Virtual Assistant Ieee Transactions On Cognitive and Developmental Systems. 12: 109-123
Hu Z, Yang H, Yang Y, et al. (2019) Common Neural System for Sentence and Picture Comprehension Across Languages: A Chinese-Japanese Bilingual Study. Frontiers in Human Neuroscience. 13: 380
Cazin N, Llofriu Alonso M, Scleidorovich Chiodi P, et al. (2019) Reservoir computing model of prefrontal cortex creates novel combinations of previous navigation sequences from hippocampal place-cell replay with spatial reward propagation. Plos Computational Biology. 15: e1006624
Ventre-Dominey J, Gibert G, Bosse-Platiere M, et al. (2019) Embodiment into a robot increases its acceptability. Scientific Reports. 9: 10083
Verwey WB, Jouen AL, Dominey PF, et al. (2018) Explaining the neural activity distribution associated with discrete movement sequences: Evidence for parallel functional systems. Cognitive, Affective & Behavioral Neuroscience
Moulin-Frier C, Fischer T, Petit M, et al. (2018) DAC-h3: A Proactive Robot Cognitive Architecture to Acquire and Express Knowledge About the World and the Self Ieee Transactions On Cognitive and Developmental Systems. 10: 1005-1022
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