Javascript must be enabled to continue!
Dopamine error signal to actively cope with lack of expected reward
View through CrossRef
To obtain more of a particular uncertain reward, animals must learn to actively overcome the lack of reward and adjust behavior to obtain it again. The neural mechanisms underlying such coping with reward omission remain unclear. Here, we developed a task in rats to monitor active behavioral switch toward the next reward after no reward. We found that some dopamine neurons in the ventral tegmental area exhibited increased responses to unexpected reward omission and decreased responses to unexpected reward, following the opposite responses of the well-known dopamine neurons that signal reward prediction error (RPE). The dopamine increase reflected in the nucleus accumbens correlated with behavioral adjustment to actively overcome unexpected no reward. We propose that these responses signal error to actively cope with lack of expected reward. The dopamine error signal thus cooperates with the RPE signal, enabling adaptive and robust pursuit of uncertain reward to ultimately obtain more reward.
American Association for the Advancement of Science (AAAS)
Title: Dopamine error signal to actively cope with lack of expected reward
Description:
To obtain more of a particular uncertain reward, animals must learn to actively overcome the lack of reward and adjust behavior to obtain it again.
The neural mechanisms underlying such coping with reward omission remain unclear.
Here, we developed a task in rats to monitor active behavioral switch toward the next reward after no reward.
We found that some dopamine neurons in the ventral tegmental area exhibited increased responses to unexpected reward omission and decreased responses to unexpected reward, following the opposite responses of the well-known dopamine neurons that signal reward prediction error (RPE).
The dopamine increase reflected in the nucleus accumbens correlated with behavioral adjustment to actively overcome unexpected no reward.
We propose that these responses signal error to actively cope with lack of expected reward.
The dopamine error signal thus cooperates with the RPE signal, enabling adaptive and robust pursuit of uncertain reward to ultimately obtain more reward.
Related Results
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...
An examination of how reward associations differentially facilitate and impair Stroop performance
An examination of how reward associations differentially facilitate and impair Stroop performance
Behavioral performance is improved when the color of a Stroop stimulus is tied to a potential reward but is impaired when the irrelevant word meaning is reward related. The facilit...
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...
Reward does not facilitate visual perceptual learning until sleep occurs
Reward does not facilitate visual perceptual learning until sleep occurs
ABSTRACTA growing body of evidence indicates that visual perceptual learning (VPL) is enhanced by reward provided during training. Another line of studies has shown that sleep foll...
Examining the effects of reward and punishment on incidental learning
Examining the effects of reward and punishment on incidental learning
<p>Reward has been shown to improve multiple forms of learning. However, many of these studies do not distinguish whether reward directly benefits learning or if learning is ...
Opposite initialization to novel cues in dopamine signaling in ventral and posterior striatum in mice
Opposite initialization to novel cues in dopamine signaling in ventral and posterior striatum in mice
Dopamine neurons are thought to encode novelty in addition to reward prediction error (the discrepancy between actual and predicted values). In this study, we compared dopamine act...
An examination of how reward associations facilitate and impair Stroop performance
An examination of how reward associations facilitate and impair Stroop performance
Rewarded stimuli are prioritized by the attentional system. Behavioral performance is improved when the task-relevant dimension is tied to a potential reward but is impaired when t...

