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Computational Psychiatry (Cambridge, Mass.)|December 22, 2025
Improving the Reliability of the Pavlovian Go/No-Go Task for Computational Psychiatry ResearchSamuel Zorowitz, Gili Karni, Natalie Paredes, et al.
Journal of Cognitive Neuroscience|August 13, 2024
The Ubiquity of Time in Latent-cause InferenceDan-Mircea Mirea, Yeon Soon Shin, Sarah DuBrow, et al.
Nature Neuroscience|January 24, 2012
The impact of orbitofrontal dysfunction on cocaine addictionFederica Lucantonio, Thomas A Stalnaker, Yavin Shaham, et al.
Communications Psychology|April 27, 2025
Using computational models of learning to advance cognitive behavioral therapyIsabel M Berwian, Peter Hitchock, Sashank Pisupati, et al.
Plos Computational Biology|May 25, 2019
Representational structure or task structure? Bias in neural representational similarity analysis and a Bayesian method for reducing biasMing Bo Cai, Nicolas W Schuck, Jonathan W Pillow, et al.
Neuron|January 20, 2017
Dynamic Interaction between Reinforcement Learning and Attention in Multidimensional EnvironmentsYuan Chang Leong, Angela Radulescu, Reka Daniel, et al.
Elife|March 16, 2017
The computational nature of memory modificationSamuel J Gershman, Marie-H Monfils, Kenneth A Norman, et al.
Neuron|September 23, 2016
Human Orbitofrontal Cortex Represents a Cognitive Map of State SpaceNicolas W Schuck, Ming Bo Cai, Robert C Wilson, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 18, 2011
Ventral striatum and orbitofrontal cortex are both required for model-based, but not model-free, reinforcement learningMichael A McDannald, Federica Lucantonio, Kathryn A Burke, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 7, 2008
From fear to safety and back: reversal of fear in the human brainDaniela Schiller, Ifat Levy, Yael Niv, et al.
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