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  • 1980-1984  (1)
  • 1975-1979  (1)
  • Concurrent schedules  (2)
  • 1
    ISSN: 1432-2072
    Keywords: Etonitazene reinforcement ; Oral selfadministration ; Food deprivation ; Food access ; Concurrent schedules ; Rats
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Recent research has shown that food deprivation increases drug self-administration in rats and rhesus monkeys. The purpose of the present study was to examine two variables related to this food-deprivation effect: maintenance of rats at reduced body weights and the absence of food. Etonitazene HCl was established as a reinforcer orally for 12 rats according to procedures previously used in experiments reported by this laboratory. Lever-pressing behavior was maintained under fixed-ratio (FR) schedules during daily 1-h sessions by etonitazene or water, which were available either concurrently or on alternating days. In the first experiment, six rats were maintained at 75% of their free-feeding weights. The effect of presenting the daily food allotment at 23, 4, 2, 1, or 0 h before their daily drug or water self-administration session was studied. When the rats were fed 23, 4, or 2 h before the session, etonitazene dipper presentations were at maximum levels and were substantially higher than for water. When the rats were fed during (0) or 1 h before the session, the number of etonitazene dipper presentations was lower, but it exceeded those for water. Under conditions of complete food satiation (0 h deprived-100% body weight), etonitazene and water dipper presentations were both low, and there were no differences between them. In the second experiment, six rats maintained at 75% of their free-feeding weights were trained to respond for etonitazene or water on alternating days. When they were subsequently food satiated (100% body weight), drug- and water-maintained behavior decreased to low levels. These rats were then deprived of food for 4 or 16 h before their daily 1-h session, and responding did not increase. Body weight did not decrease below 100%. These results suggest that maintenance at reduced body weight rather than the absence of food is the determinant of increased rates of drug-reinforced behavior.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Psychopharmacology 64 (1979), S. 1-7 
    ISSN: 1432-2072
    Keywords: Etonitazene ; Etonitazene reinforcement ; Concurrent schedules ; Choice procedures ; Rats ; Taste ; Olfaction ; Auditory stimuli ; Discriminative stimuli ; Conditioned reinforcers ; Fixed-ratio schedules
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Etonitazene and water were concurrently available to four rats during daily 1 h sessions in operant conditioning chambers equipped with two levers and two liquid dippers. A food-induced training procedure was used whereby etonitazene drinking was rapidly established by presenting rats with gradually increased drug concentrations with their daily food ration. When food was subsequently removed from the session and given post-session, etonitazene responding persisted. The rats were subsequently trained on fixed-ratio (FR) schedules with concurrent access to etonitazene and water. The number of dipper presentations compared with etonitazene concentrations (0.078–10.0 μg/ml) resulted in a typical inverted U-shaped function while etonitazene intake (μg/kg) increased directly with concentration. After drinking large quantities of etonitazene the rats showed ataxia, hyper-activity, and stereotypy. Extinction tests demonstrated that rats could discriminate between etonitazene and water on the basis of one dipper full of each liquid; the amount of etonitazene in one dipper was 0.0078 μg. Further tests showed that this discrimination was based on taste or immediate post-ingestional feedback rather than olfactory cues. An auditory stimulus was presented concurrently with responses on the drug lever; however, there was no difference in responding for the drug in the presence or absence of this stimulus except at the lowest concentration. After the extinction tests, when the lowest drug concentration was again available with concurrent water, responding was substantially higher in the presence of stimulus associated with availability of etonitazene. The results extend previous work on oral narcotic intake to a lever-press concurrent choice procedure which is sensitive to reinforcing effects of the drug at low concentrations.
    Type of Medium: Electronic Resource
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