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DRUG AND ALCOHOL DEPENDENCE, ISSN 0376-8716, 01/2016, Volume 158, pp. 22 - 29
Background: Conventional benzodiazepines bind non-selectively to GABA(A) receptors containing alpha 1, alpha 2, alpha 3, and alpha 5 subunits (alpha 1GABA(A),... 
Self-administration | EFFICACY | PSYCHIATRY | Benzodiazepine | PHYSICAL-DEPENDENCE | SUBSTANCE ABUSE | Progressive-ratio | AGONISTS | GABA(A) RECEPTOR SUBTYPES | Rhesus monkey | ZOLPIDEM | ABUSE | DISCRIMINATION | PHARMACOLOGY | GABA | BENZODIAZEPINE-TYPE DRUGS | Antagonist | SUBUNIT
Journal Article
Psychopharmacology, ISSN 0033-3158, 8/2012, Volume 222, Issue 4, pp. 549 - 564
Journal Article
Journal of Applied Behavior Analysis, ISSN 0021-8855, 2018, Volume 51, Issue 1, pp. 40 - 52
The properties of operant reinforcers are dynamic and dependent on a number of variables, such as schedule and effort. There has been sparse research on the... 
progressive ratio schedule | generalized conditioned reinforcement | tokens | motivating operations | REQUIREMENTS | STIMULUS PREFERENCE | OPERATIONS | PSYCHOLOGY, CLINICAL | CHIMPANZEES | ECONOMY | Psychological research | Research | Classical conditioning | Reinforcement (Psychology)
Journal Article
Journal of Psychopharmacology, ISSN 0269-8811, 6/2012, Volume 26, Issue 6, pp. 857 - 870
Journal Article
Journal of Psychopharmacology, ISSN 0269-8811, 9/2012, Volume 26, Issue 9, pp. 1231 - 1243
Clozapine and some other atypical antipsychotics (e.g. quetiapine, olanzapine) have been found to exert a characteristic profile of action on operant behaviour... 
haloperidol | progressive-ratio schedule | reinforcer efficacy | Amisulpride | aripiprazole | clozapine | rats | atypical antipsychotics | MATHEMATICAL PRINCIPLES | PSYCHIATRY | ACCUMBENS DOPAMINE DEPLETIONS | SCHIZOAFFECTIVE DISORDER | QUANTITATIVE-ANALYSIS | NEUROSCIENCES | CLINICAL NEUROLOGY | NUCLEUS-ACCUMBENS | ANTIPSYCHOTIC-DRUG | ANHEDONIA HYPOTHESIS | PHARMACOLOGY & PHARMACY | ACID-INDUCED LESIONS | INTER-TEMPORAL CHOICE | Piperazines - administration & dosage | Motor Skills - drug effects | Serotonin Antagonists - administration & dosage | Sulpiride - pharmacology | Rats, Wistar | Antipsychotic Agents - adverse effects | Clozapine - administration & dosage | Haloperidol - administration & dosage | Motor Activity - drug effects | Quinolones - pharmacology | Sulpiride - administration & dosage | Aripiprazole | Dopamine Antagonists - administration & dosage | Dose-Response Relationship, Drug | Sulpiride - analogs & derivatives | Clozapine - pharmacology | Quinolones - adverse effects | Serotonin Antagonists - adverse effects | Conditioning, Operant - drug effects | Reaction Time - drug effects | Behavior, Animal - drug effects | Female | Haloperidol - pharmacology | Sulpiride - adverse effects | Rats | Haloperidol - adverse effects | Serotonin Antagonists - pharmacology | Piperazines - adverse effects | Piperazines - pharmacology | Antipsychotic Agents - administration & dosage | Reinforcement Schedule | Quinolones - administration & dosage | Animals | Dopamine Antagonists - pharmacology | Models, Biological | Dopamine Antagonists - adverse effects | Antipsychotic Agents - pharmacology | Kinetics | Clozapine - adverse effects | Psychological aspects | Treatment outcome | Care and treatment | Antipsychotic drugs | Rattus | Physiological aspects | Dosage and administration | Comparative analysis | Testing | Drugs | olanzapine | Neuroleptics | Operant conditioning | Reinforcement | quetiapine | Mathematical models | Models | Clozapine | Haloperidol | Motor task performance
Journal Article