Delays to Reward Delivery Enhance the Preference for an Initially Less Desirable Option: Role for the Basolateral Amygdala and Retrosplenial Cortex
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Summary
It is demonstrated that delivering an initially less desirable reward after long delays subsequently increases the consumption and preference for that reward.
- Type
- article
- Published
- 2021-07-27
- Cited by
- 5
- References
- 83
- Access
- Open access
- OpenAlex
- https://openalex.org/W3183414513
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:236472356
Keywords
Basolateral amygdala, Preference, Psychology, Orbitofrontal cortex, Amygdala
References
- The basolateral amygdala in reward learning and addiction
- Contribution of the restroplenial cortex to temporal discrimination learning
- The Web-Surf Task: A Translational Model of Human Decision-Making
- Orbitofrontal Cortex and Representation of Incentive Value in Associative Learning
- The Orbitofrontal Cortex as Part of a Hierarchical Neural System Mediating Choice between Two Good Options
- Evidence for direct projections from the basal nucleus of the amygdala to retrosplenial cortex in the Macaque monkey
- Learning to maximize reward rate: a model based on semi-Markov decision processes
- Effects of dopaminergic drugs on delayed reward as a measure of impulsive behavior in rats
- Similar effects of D(1)/D(2) receptor blockade on feeding and locomotor behavior.
- What does the retrosplenial cortex do?
- A discounting framework for choice with delayed and probabilistic rewards.
- The effect of three procedures for eliminating a conditioned taste aversion in the rat
- The pharmacology of impulsive behaviour in rats: the effects of drugs on response choice with varying delays of reinforcement
- Effects of Selective Dopaminergic Compounds on a Delay Discounting Task
- Dopamine prediction error responses integrate subjective value from different reward dimensions
- A Causal Link Between Prediction Errors, Dopamine Neurons and Learning
- What the orbitofrontal cortex does not do
- Basolateral amygdala neurons facilitate reward-seeking behavior by exciting nucleus accumbens neurons
- Preference for rewards that follow greater effort and greater delay
- Sex differences in response to amphetamine in adult Long-Evans rats performing a delay-discounting task
Cited by
- Cortico-striatal beta-oscillations as a marker of learned reward value
- Methylphenidate, but not citalopram, decreases impulsive choice in rats performing a temporal discounting task
- Cortico-striatal beta oscillations as a reward-related signal
- Dynamically Adjusting Intertemporal Choice Task in Rodents
- A selective top-down pathway from anterior cingulate cortex embeds a representation of saliency in hippocampus
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