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Choice between reinforcer delays versus choice between reinforcer magnitudes: Differential Fos expression in the orbital prefrontal cortex and nucleus accumbens core.

da Costa Araújo, S; Body, S; Torres, L Valencia; Sanchez, C M Olarte; Bak, V K; Deakin, J F W; Anderson, I M; Bradshaw, C M; Szabadi, E

Behav Brain Res. 2010;.

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Abstract

Lesions of the orbital prefrontal cortex (OPFC) and the nucleus accumbens core (AcbC) can disrupt performance in inter-temporal choice tasks, possibly by increasing the organism's sensitivity to delay and/or magnitude of reinforcement. This experiment examined whether exposure to an inter-temporal choice would induce neuronal activation in these areas, as indicated by enhanced expression of the Fos protein. Twelve rats were trained to press levers A and B under an adjusting-delay schedule in which a response on A delivered 50mul of a sucrose reinforcer after 2 or 18s, whereas a response on B delivered the same reinforcer after a delay that was adjusted in accordance with the rat's choices. Another 12 rats were trained under a similar schedule in which a response on A delivered an immediate reinforcer of size 20 or 180mul, whereas a response on B delivered an immediate reinforcer whose size was adjusted in accordance with the rat's choices. A third group received training under a schedule that did not entail variation of reinforcer size or delay, or choice between reinforcers, and a control group underwent food restriction without behavioural training. Exposure to the adjusting-delay schedule was associated with enhanced Fos expression in both the OPFC and AcbC, whereas exposure to the adjusting-magnitude schedule was associated with enhanced Fos expression in the OPFC but not the AcbC, compared to the control group. The results are consistent with previous findings that implicated the AcbC and OPFC in delay discounting, and the OPFC in sensitivity to reinforcer size.

Bibliographic metadata

Type of resource:
Content type:
Published date:
Abbreviated journal title:
ISSN:
Digital Object Identifier:
10.1016/j.bbr.2010.05.014
Pubmed Identifier:
20570596
Pii Identifier:
S0166-4328(10)00364-5
Access state:
Active

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Record metadata

Manchester eScholar ID:
uk-ac-man-scw:85477
Created by:
Deakin, Bill
Created:
4th July, 2010, 11:12:38
Last modified by:
Deakin, Bill
Last modified:
14th August, 2012, 04:19:03

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