Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Prefrontal cortex dopamine responds to the total valence of stimuli

View through CrossRef
The prefrontal cortex (PFC) dopamine system plays an essential role in cognitive flexibility, working memory and psychiatric disease, but determining the conditions under which dopamine in the PFC is released remains an open problem. Both rewarding and aversive stimuli have been found to trigger release, but studies have disagreed on whether the valence of a stimulus or other variables like novelty and salience are the most important. Here we report on recordings of dopamine-dependent fluorescence using a high-sensitivity dopamine indicator. We deliver an array of rewarding, aversive and mixed valence stimuli, as well as stimuli without any obvious valence. We observe that stimuli without valence, as well as the omission of expected stimuli, do not lead to large changes in fluorescence, even when these stimuli and omissions are both novel and engaging. In contrast, both rewarding and aversive stimuli lead to increases in fluorescence, with the most rewarding and most aversive stimuli leading to the largest increases. We test the effect of adding an aversive component to a rewarding stimulus and find that the increases in fluorescence are consistent with a summation of the rewarding and aversive components. We propose that dopamine release in the PFC responds to the total valence of a stimulus, in contrast with the traditional view of basal ganglia dopamine release that depends on the net valence.
Title: Prefrontal cortex dopamine responds to the total valence of stimuli
Description:
The prefrontal cortex (PFC) dopamine system plays an essential role in cognitive flexibility, working memory and psychiatric disease, but determining the conditions under which dopamine in the PFC is released remains an open problem.
Both rewarding and aversive stimuli have been found to trigger release, but studies have disagreed on whether the valence of a stimulus or other variables like novelty and salience are the most important.
Here we report on recordings of dopamine-dependent fluorescence using a high-sensitivity dopamine indicator.
We deliver an array of rewarding, aversive and mixed valence stimuli, as well as stimuli without any obvious valence.
We observe that stimuli without valence, as well as the omission of expected stimuli, do not lead to large changes in fluorescence, even when these stimuli and omissions are both novel and engaging.
In contrast, both rewarding and aversive stimuli lead to increases in fluorescence, with the most rewarding and most aversive stimuli leading to the largest increases.
We test the effect of adding an aversive component to a rewarding stimulus and find that the increases in fluorescence are consistent with a summation of the rewarding and aversive components.
We propose that dopamine release in the PFC responds to the total valence of a stimulus, in contrast with the traditional view of basal ganglia dopamine release that depends on the net valence.

Related Results

Exploring the in vivo subthreshold membrane activity of phasic firing in midbrain dopamine neurons
Exploring the in vivo subthreshold membrane activity of phasic firing in midbrain dopamine neurons
Dopamine is a key neurotransmitter that serves several essential functions in daily behaviors such as locomotion, motivation, stimulus coding, and learning. Disrupted dopamine circ...
Cerebellar modulation of frontal cortex dopamine efflux in mice: Relevance to autism and schizophrenia
Cerebellar modulation of frontal cortex dopamine efflux in mice: Relevance to autism and schizophrenia
AbstractCerebellar and frontal cortical pathologies have been commonly reported in schizophrenia, autism, and other developmental disorders. Whether there is a relationship between...
Neural synchrony between prefrontal and visual cortex supports visual working memory
Neural synchrony between prefrontal and visual cortex supports visual working memory
Abstract Working memory appears to depend on neural mechanisms that are distributed across the brain. Specifically, neural activity persists in t...
Abstract 1856: Adaptation to dopamine impairs the anti-cancer effect of ONC201 and ONC206
Abstract 1856: Adaptation to dopamine impairs the anti-cancer effect of ONC201 and ONC206
Abstract ONC201 (originally discovered as TRAIL-Inducing Compound #10 or TIC10) and analogue ONC206 have been found to induce an integrated stress response with sugg...
Selective control of working memory in prefrontal, parietal, and visual cortex
Selective control of working memory in prefrontal, parietal, and visual cortex
Abstract Cognitive control guides behavior by controlling what, where, and how information is represented in the brain. Previous work has shown p...
Dopamine
Dopamine
Abstract Dopamine is a neurotransmitter (or chemical messenger) found in diverse organisms ranging from simple invertebrates to humans. It is al...
Dopamine
Dopamine
Abstract Dopamine is a neurotransmitter (or chemical messenger) found in diverse organisms ranging from invertebrates to humans. It is also a re...
Anticipation of appetitive operant action induces sustained dopamine release in the nucleus accumbens
Anticipation of appetitive operant action induces sustained dopamine release in the nucleus accumbens
ABSTRACT The mesolimbic dopamine system is implicated in signaling reward-related information as well as in actions that generate rewarding outcomes. These implicat...

Back to Top