Effect of quinolinic acid-induced lesions of the nucleus accumbens core on performance on a progressive ratio schedule of reinforcement: implications for inter-temporal choice.
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Motivation and timing: clues for modeling the reward systemEffect of reinforcer magnitude on performance maintained by progressive-ratio schedules.A quantitative analysis of the effects of qualitatively different reinforcers on fixed ratio responding in inbred strains of mice.Quantitative analysis of the effect of lesions of the subthalamic nucleus on intertemporal choice: further evidence for enhancement of the incentive value of food reinforcers.External incentives and internal states guide goal-directed behavior via the differential recruitment of the nucleus accumbens and the medial prefrontal cortex.Effect of quinolinic acid-induced lesions of the subthalamic nucleus on performance on a progressive-ratio schedule of reinforcement: a quantitative analysis.Quantitative analysis of performance on a progressive-ratio schedule: effects of reinforcer type, food deprivation and acute treatment with Δ⁹-tetrahydrocannabinol (THC)Effect of disconnecting the orbital prefrontal cortex from the nucleus accumbens core on inter-temporal choice behaviour: a quantitative analysis.Mechanisms of Individual Differences in Impulsive and Risky Choice in Rats.Effects of SKF-83566 and haloperidol on performance on progressive ratio schedules maintained by sucrose and corn oil reinforcement: quantitative analysis using a new model derived from the Mathematical Principles of Reinforcement (MPR).Interactions of timing and prediction error learningA theory of behaviour on progressive ratio schedules, with applications in behavioural pharmacology.Neural substrates underlying effort, time, and risk-based decision making in motivated behavior.Nucleus accumbens neurons encode predicted and ongoing reward costs in rats.Evidence for a role of 5-HT2C receptors in the motor aspects of performance, but not the efficacy of food reinforcers, in a progressive ratio schedule.Effect of streptozotocin-induced diabetes on performance on a progressive ratio schedule.Nucleus accumbens core lesions induce sub-optimal choice and reduce sensitivity to magnitude and delay in impulsive choice tasks.Effect of orexin-B-saporin-induced lesions of the lateral hypothalamus on performance on a progressive ratio schedule.A clozapine-like effect of cyproheptadine on progressive ratio schedule performance.Effects of amisulpride and aripiprazole on progressive-ratio schedule performance: comparison with clozapine and haloperidol.
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P2860
Effect of quinolinic acid-induced lesions of the nucleus accumbens core on performance on a progressive ratio schedule of reinforcement: implications for inter-temporal choice.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 03 January 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@en
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
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type
label
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@en
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@nl
prefLabel
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@en
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@nl
P2093
P2860
P1433
P1476
Effect of quinolinic acid-indu ...... ons for inter-temporal choice.
@en
P2093
C L Hampson
C M Bradshaw
I M Anderson
T H C Cheung
P2860
P2888
P304
P356
10.1007/S00213-007-1036-0
P50
P577
2008-01-03T00:00:00Z