Dopaminergic impact on local and global cortical circuit processing during learning.

Abstract:

:We have learned to detect, predict and behaviorally respond to important changes in our environment on short and longer time scales. Therefore, brains of humans and higher animals build upon a perceptual and semantic salience stored in their memories mainly generated by associative reinforcement learning. Functionally, the brain needs to extract and amplify a small number of features of sensory input with behavioral relevance to a particular situation in order to guide behavior. In this review, I argue that dopamine action, particularly in sensory cortex, orchestrates layer-dependent local and long-range cortical circuits integrating sensory associated bottom-up and semantically relevant top-down information, respectively. Available evidence reveals that dopamine thereby controls both the selection of perceptually or semantically salient signals as well as feedback processing from higher-order areas in the brain. Sensory cortical dopamine thereby governs the integration of selected sensory information within a behavioral context. This review proposes that dopamine enfolds this function by temporally distinct actions on particular layer-dependent local and global cortical circuits underlying the integration of sensory, and non-sensory cognitive and behavioral variables.

journal_name

Behav Brain Res

authors

Happel MF

doi

10.1016/j.bbr.2015.11.016

subject

Has Abstract

pub_date

2016-02-15 00:00:00

pages

32-41

eissn

0166-4328

issn

1872-7549

pii

S0166-4328(15)30287-4

journal_volume

299

pub_type

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