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A unified selection signal for attention and reward in primary visual cortex.


ABSTRACT: Stimuli associated with high rewards evoke stronger neuronal activity than stimuli associated with lower rewards in many brain regions. It is not well understood how these reward effects influence activity in sensory cortices that represent low-level stimulus features. Here, we investigated the effects of reward information in the primary visual cortex (area V1) of monkeys. We found that the reward value of a stimulus relative to the value of other stimuli is a good predictor of V1 activity. Relative value biases the competition between stimuli, just as has been shown for selective attention. The neuronal latency of this reward value effect in V1 was similar to the latency of attentional influences. Moreover, V1 neurons with a strong value effect also exhibited a strong attention effect, which implies that relative value and top-down attention engage overlapping, if not identical, neuronal selection mechanisms. Our findings demonstrate that the effects of reward value reach down to the earliest sensory processing levels of the cerebral cortex and imply that theories about the effects of reward coding and top-down attention on visual representations should be unified.

SUBMITTER: Stanisor L 

PROVIDER: S-EPMC3670348 | biostudies-literature | 2013 May

REPOSITORIES: biostudies-literature

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A unified selection signal for attention and reward in primary visual cortex.

Stănişor Liviu L   van der Togt Chris C   Pennartz Cyriel M A CM   Roelfsema Pieter R PR  

Proceedings of the National Academy of Sciences of the United States of America 20130515 22


Stimuli associated with high rewards evoke stronger neuronal activity than stimuli associated with lower rewards in many brain regions. It is not well understood how these reward effects influence activity in sensory cortices that represent low-level stimulus features. Here, we investigated the effects of reward information in the primary visual cortex (area V1) of monkeys. We found that the reward value of a stimulus relative to the value of other stimuli is a good predictor of V1 activity. Rel  ...[more]

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2022-02-11 | PXD031598 | iProX