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A Role for the Striatum in Regret-related Choice Repetition.

, , , and . J. Cognitive Neuroscience, 23 (4): 845-856 (2011)

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Fast Sequences of Non-spatial State Representations in Humans, , , and . Neuron, 91 (1): 194--204 (May 30, 2017)A Role for the Striatum in Regret-related Choice Repetition., , , and . J. Cognitive Neuroscience, 23 (4): 845-856 (2011)Imaging Informational Conflict: A Functional Magnetic Resonance Imaging Study of Numerical Stroop., , , , and . J. Cognitive Neuroscience, 18 (12): 2049-2062 (2006)Dopamine, Affordance and Active Inference., , , , , , , , , and . PLoS Comput. Biol., (2012)Selective Attention Modulates Neural Substrates of Repetition Priming and "Implicit" Visual Memory: Suppressions and Enhancements Revealed by fMRI., , , , and . J. Cogn. Neurosci., 17 (8): 1245-1260 (2005)Choking on the Money, , , , , , and . Psychological Science, 20 (8): 955-962 (August 2009)Local striatal reward signals can be predicted from corticostriatal connectivity, , , , and . NeuroImage, (October 2017)fMRI Activity Patterns in Human LOC Carry Information about Object Exemplars within Category., , , , and . J. Cogn. Neurosci., 20 (2): 356-370 (2008)Fusiform Gyrus Face Selectivity Relates to Individual Differences in Facial Recognition Ability., , , , and . J. Cognitive Neuroscience, 23 (7): 1723-1740 (2011)Temporal difference models describe higher-order learning in humans, , , , , , , and . Nature, (2004)