Extinction and dopamine receptor blockade after intermittent reinforcement training: Failure to observe functional equivalence
- 1 September 1980
- journal article
- research article
- Published by Springer Nature in Psychopharmacology
- Vol. 70 (1) , 19-28
- https://doi.org/10.1007/bf00432365
Abstract
Response decrements in an operant task produced by either extinction or by the dopamine receptor blocker pimozide were examined in three experiments which employed intermittent reinforcement schedules. In contrast to the congruency between these treatments previously observed following continuous reinforcement training, treatment with pimozide was markedly more effective than extinction in decreasing performance after training with variable interval, fixed interval, and fixed ratio reinforcement. The two treatments also produced substantially different patterns of responding. A shift from extinction to pimozide did not alter the progressive decline in response rate over days, but a shift from pimozide to extinction caused a pronounced increase of performance. These results indicate that the pimozide and extinction treatment did not produce functionally equivalent effects, and that the role of dopamine on reward processes should not be inferred from comparisons between pimozide and extinction.Keywords
This publication has 16 references indexed in Scilit:
- Decreased resistance to extinction after haloperidol: Implications for the role of dopamine in reinforcementPharmacology Biochemistry and Behavior, 1979
- Effect of inescapable shock on subsequent escape performance: Catecholaminergic and cholinergic mediation of response initiation and maintenancePsychopharmacology, 1979
- Effects of catecholamine manipulations on three different self-stimulation behaviorsPharmacology Biochemistry and Behavior, 1978
- Catecholamine theories of reward: A critical reviewBrain Research, 1978
- Neuroleptic-Induced "Anhedonia" in Rats: Pimozide Blocks Reward Quality of FoodScience, 1978
- Neuroleptic-induced attenuation of brain stimulation reward in rats.Journal of Comparative and Physiological Psychology, 1978
- Activation-induced restoration of sensorimotor functions in rats with dopamine-depleting brain lesions.Journal of Comparative and Physiological Psychology, 1976
- Haloperidol-induced disruption of conditioned avoidance responding: Attenuation by prior training or by anticholinergic drugsEuropean Journal of Pharmacology, 1975
- Increased Lever Pressing for Amphetamine After Pimozide in Rats: Implications for a Dopamine Theory of RewardScience, 1975
- A motivational view of learning, performance, and behavior modification.Psychological Review, 1974