Marcelo Gomes Mattar, Ph.D.

Affiliations: 
2016- Neuroscience Princeton University, Princeton, NJ 
Area:
Cognitive Neuroscience, Computational Neuroscience
Website:
http://marcelomattar.com
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"Marcelo Gomes Mattar"
Mean distance: 13.41 (cluster 23)
 
SNBCP
Cross-listing: PsychTree

Parents

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Geoffrey K. Aguirre grad student 2010-2016 Penn
Sharon L. Thompson-Schill grad student 2011-2016 Penn
Danielle S. Bassett grad student 2014-2016 Penn
Nathaniel D. Daw post-doc 2016- Princeton
Mate Lengyel post-doc 2016- Cambridge

Collaborators

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Maria Olkkonen collaborator Penn
David Alexander Kahn collaborator 2011- Penn
Teresa Pegors collaborator 2014-2015 Penn
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Publications

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Tang E, Mattar MG, Giusti C, et al. (2019) Effective learning is accompanied by high-dimensional and efficient representations of neural activity. Nature Neuroscience
Lee RS, Mattar MG, Parker NF, et al. (2019) Reward prediction error does not explain movement selectivity in DMS-projecting dopamine neurons. Elife. 8
Mattar MG, Carter MV, Zebrowitz MS, et al. (2018) Individual differences in response precision correlate with adaptation bias. Journal of Vision. 18: 18
Mattar MG, Daw ND. (2018) Prioritized memory access explains planning and hippocampal replay. Nature Neuroscience. 21: 1609-1617
Mattar MG, Olkkonen M, Epstein RA, et al. (2018) Adaptation decorrelates shape representations. Nature Communications. 9: 3812
Mattar MG, Thompson-Schill SL, Bassett DS. (2018) The network architecture of value learning. Network Neuroscience (Cambridge, Mass.). 2: 128-149
Mattar MG, Wymbs NF, Bock AS, et al. (2018) Predicting future learning from baseline network architecture. Neuroimage
Reddy PG, Mattar MG, Murphy AC, et al. (2018) Brain state flexibility accompanies motor-skill acquisition. Neuroimage
Khambhati AN, Mattar MG, Wymbs NF, et al. (2017) Beyond modularity: Fine-scale mechanisms and rules for brain network reconfiguration. Neuroimage
Ashourvan A, Gu S, Mattar MG, et al. (2017) The Energy Landscape Underpinning Module Dynamics in the Human Brain Connectome. Neuroimage
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