Neural Correlates of Variations in Event Processing during Learning in Basolateral Amygdala
Open Access
- 17 February 2010
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 30 (7) , 2464-2471
- https://doi.org/10.1523/jneurosci.5781-09.2010
Abstract
The discovery that dopamine neurons signal errors in reward prediction has demonstrated that concepts empirically derived from the study of animal behavior can be used to understand the neural implementation of reward learning. Yet the learning theory models linked to phasic dopamine activity treat attention to events such as cues and rewards as static quantities; other models, such as Pearce–Hall, propose that learning might be influenced by variations in processing of these events. A key feature of these accounts is that event processing is modulated by unsigned rather than signed reward prediction errors. Here we tested whether neural activity in rat basolateral amygdala conforms to this pattern by recording single units in a behavioral task in which rewards were unexpectedly delivered or omitted. We report that neural activity at the time of reward is providing an unsigned error signal with characteristics consistent with those postulated by these models. This neural signal increased immediately after a change in reward, and stronger firing was evident whether the value of the reward increased or decreased. Further, as predicted by these models, the change in firing developed over several trials as expectations for reward were repeatedly violated. This neural signal was correlated with faster orienting to predictive cues after changes in reward, and abolition of the signal by inactivation of basolateral amygdala disrupted this change in orienting and retarded learning in response to changes in reward. These results suggest that basolateral amygdala serves a critical function in attention for learning.Keywords
This publication has 52 references indexed in Scilit:
- Two types of dopamine neuron distinctly convey positive and negative motivational signalsNature, 2009
- Distinct Subtypes of Basolateral Amygdala Taste Neurons Reflect Palatability and RewardJournal of Neuroscience, 2009
- The Globus Pallidus Sends Reward-Related Signals to the Lateral HabenulaPublished by Elsevier ,2008
- Moment-to-Moment Tracking of State Value in the AmygdalaJournal of Neuroscience, 2008
- Basolateral Amygdala Neurons Facilitate Reward-Seeking Behavior by Exciting Nucleus Accumbens NeuronsNeuron, 2008
- Neuronal Ensemble Bursting in the Basal Forebrain Encodes Salience Irrespective of ValenceNeuron, 2008
- Rapid strengthening of thalamo-amygdala synapses mediates cue–reward learningNature, 2008
- Dopamine neurons encode the better option in rats deciding between differently delayed or sized rewardsNature Neuroscience, 2007
- Expectation Modulates Neural Responses to Pleasant and Aversive Stimuli in Primate AmygdalaNeuron, 2007
- A Neural Substrate of Prediction and RewardScience, 1997