The influence of attention and reward on the learning of stimulus-response associations
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[1] J. DiCarlo,et al. Using goal-driven deep learning models to understand sensory cortex , 2016, Nature Neuroscience.
[2] F. Yang,et al. Reward association facilitates distractor suppression in human visual search , 2016, The European journal of neuroscience.
[3] Demis Hassabis,et al. Mastering the game of Go with deep neural networks and tree search , 2016, Nature.
[4] Joshua W. Brown,et al. Neural Mechanisms of Credit Assignment in a Multicue Environment , 2016, The Journal of Neuroscience.
[5] Victor A. F. Lamme,et al. Chapter V Different glutamate receptors convey feedforward and recurrent processing in macaque V 1 , 2016 .
[6] B. Hangya,et al. Central Cholinergic Neurons Are Rapidly Recruited by Reinforcement Feedback , 2015, Cell.
[7] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[8] M. Turatto,et al. Monetary Reward Modulates Task-Irrelevant Perceptual Learning for Invisible Stimuli , 2015, PloS one.
[9] Pieter R. Roelfsema,et al. How Attention Can Create Synaptic Tags for the Learning of Working Memories in Sequential Tasks , 2015, PLoS Comput. Biol..
[10] A. Zador,et al. Selective corticostriatal plasticity during acquisition of an auditory discrimination task , 2014, Nature.
[11] L. Chelazzi,et al. Altering Spatial Priority Maps via Reward-Based Learning , 2014, The Journal of Neuroscience.
[12] C. Pennartz,et al. A unified selection signal for attention and reward in primary visual cortex , 2013, Proceedings of the National Academy of Sciences.
[13] Matthew W Self,et al. Different glutamate receptors convey feedforward and recurrent processing in macaque V1 , 2012, Proceedings of the National Academy of Sciences.
[14] L. Chelazzi,et al. Behavioral/systems/cognitive Reward Changes Salience in Human Vision via the Anterior Cingulate , 2022 .
[15] John T Serences,et al. Population response profiles in early visual cortex are biased in favor of more valuable stimuli. , 2010, Journal of neurophysiology.
[16] Takeo Watanabe,et al. Perceptual learning rules based on reinforcers and attention , 2010, Trends in Cognitive Sciences.
[17] Takeo Watanabe,et al. Advances in visual perceptual learning and plasticity , 2010, Nature Reviews Neuroscience.
[18] L. Chelazzi,et al. Learning to Attend and to Ignore Is a Matter of Gains and Losses , 2009, Psychological science.
[19] Diego A. Gutnisky,et al. Attention Alters Visual Plasticity during Exposure-Based Learning , 2009, Current Biology.
[20] Yuka Sasaki,et al. Greater Disruption Due to Failure of Inhibitory Control on an Ambiguous Distractor , 2022 .
[21] Pieter R. Roelfsema,et al. Attention-Gated Reinforcement Learning of Internal Representations for Classification , 2005, Neural Computation.
[22] Richard S. Sutton,et al. Reinforcement Learning: An Introduction , 1998, IEEE Trans. Neural Networks.
[23] David L. Faigman,et al. Human category learning. , 2005, Annual review of psychology.
[24] Arnold W. M. Smeulders,et al. The Amsterdam Library of Object Images , 2004, International Journal of Computer Vision.
[25] Aaron R. Seitz,et al. Psychophysics: Is subliminal learning really passive? , 2003, Nature.
[26] W. Schultz. Getting Formal with Dopamine and Reward , 2002, Neuron.
[27] P. Montague,et al. Neural Economics and the Biological Substrates of Valuation , 2002, Neuron.
[28] D. Gaffan,et al. Unilateral lesions of the cholinergic basal forebrain and fornix in one hemisphere and inferior temporal cortex in the opposite hemisphere produce severe learning impairments in rhesus monkeys. , 2002, Cerebral cortex.
[29] M. Chun,et al. Selective attention modulates implicit learning , 2001, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[30] Takeo Watanabe,et al. Perceptual learning without perception , 2001, Nature.
[31] G. Orban,et al. Practising orientation identification improves orientation coding in V1 neurons , 2001, Nature.
[32] M. Merzenich,et al. Cortical remodelling induced by activity of ventral tegmental dopamine neurons , 2001, Nature.
[33] Michael L. Platt,et al. Neural correlates of decision variables in parietal cortex , 1999, Nature.
[34] M. Kilgard,et al. Cortical map reorganization enabled by nucleus basalis activity. , 1998, Science.
[35] H. Deubel,et al. Saccade target selection and object recognition: Evidence for a common attentional mechanism , 1996, Vision Research.
[36] R. Desimone,et al. Neural mechanisms of selective visual attention. , 1995, Annual review of neuroscience.
[37] S. Hochstein,et al. Attentional control of early perceptual learning. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[38] G. Bower,et al. Attention in Learning: Theory and Research , 1968 .
[39] D. M. Green,et al. Signal detection theory and psychophysics , 1966 .