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R J Hartmann

Publications and source records attributed to R J Hartmann.

35 records · Page 2Linked to original sources

Use of discrimination behavior for the evaluation of toxicants.

This study involved the application of discrimination behavior for the study of effects of environmental contaminants on the behavior of laboratory animals. Polybrominated biphenyl (PBB) was evaluated for effects on the acquisition and performance of a simple auditory discrimination by rats. Methyl ethyl ketone (MEK), methyl isobutyl ketone (MIBK) and carbon monoxide (CO) were evaluated for effects on a delayed match-to-sample discrimination task in the juvenile baboon. All of the contaminants slowed response times and increased extra responses. These findings suggest that discrimination behavior may be of value for the evaluation of environmental contaminants for effects on the central nervous system.

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Effects of carbon monoxide on operant behavior of laboratory rats and baboons.

Carbon monoxide (CO) was evaluated for its effects on the operant behavior of laboratory rats and juvenile baboons. For the rat studies the procedures included a 2-min variable interval (2-min VI) or fixed interval (2-min FI) schedule of reinforcement, a 60:1 fixed ratio (FR) schedule and a multiple fixed ratio, fixed interval (FR:FI) schedule. Carbon monoxide concentrations of 50-200 ppm for 2-hr exposure periods produced minimal effects on VI rates. Response rates were increased for all animals somewhere in the concentration range of 25-200 ppm. Response rates were depressed at 500 ppm CO. Behavioral effects at 50 ppm CO were not correlated with blood CO levels. Data averaged for grops of three animals show FI rate increased slightly above controls at 50 and 100 ppm CO and decreased at 200 ppm. FR rate increased at 50 ppm and decreased at 100 and 200 ppm. For the baboon studies, a delayed match-to-sample discrimination task was used. The effects of CO (6 hr per day over a 5-day period) on the discrimination task was limited to an occasional mistake by an animal. CO did produce a slowing of the animals' response times as well as an increase of extra responses during the delay intervals. The changes in extra responses were dose related.

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Ethanol-diazepam interactions on delayed match-to-sample performance in baboons.

Four juvenile male baboons were trained on a delayed match-to-sample (MTS) discrimination task. Single administration of 0.25, 0.5, 1.0, 2.0, 4.0, and 6.0 mg/kg diazepam (DZ) resulted in a dose-related increase in mean response time (MRT), with a maximum effect at 2.0 mg/kg. Administration of 0.25 mg/kg of DZ had no effect. Response time was increased significantly by 1.0 g/kg of ethanol (EtOH) but was not affected by 0.5 g/kg EtOH. There were no significant effects on the number of correct responses. Combined treatment of 0.5 g/kg of EtOH with 1.0 mg/kg DZ produced the same increase in MRT as the DZ alone. When 1.0 g/kg EtOH was administered with 0.25 mg/kg DZ. MRT decreased which was a significant improvement in performance as compared to the increase in MRT observed with either the EtOH or the DZ alone. Combined doses of 1.0 g/kg EtOH and 0.5 mg/kg DZ produced essentially the same increases in MRT as either dose alone. Similar results were obtained when 1.0 g/kg EtOH and 1.0 mg/kg DZ were combined and the increase in MRT was about the same for DZ alone and more than twice as great for the EtOH alone. Combined administration of the drugs had no significant effects on the number of correct choices. Since the administration of a combination of a low dose of DZ with EtOH appeared to prevent the increases in MRT observed with either drug alone and there were no observable effects on the number of correct response, these effects do not appear to involve cognitive processes but might be related to excitability changes in motor systems.

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Ethanol and diazepam interactions on conflict behavior in rats.

Twenty-four adult male rats trained on the Geller-Seifter conflict procedure received: 1.0, 2.0, or 4.0 mg/kg diazepam at 15 min, 0.25, 0.5, 1.0, 2.0, or 4.0 g/kg of ethanol (EtOH) at 30 min prior to the test session, or combinations of the same diazepam doses and 0.5 g/kg of EtOH. Ethanol administration produced a significant (p less than 0.05) dose-related decrease in lever pressing during the periods prior to the introduction of the tone stimulus, compared to lever pressing during the corresponding control periods on the day prior to drug treatment. During the posttone periods 0.25 g/kg increased lever pressing (p less than 0.05), while doses of EtOH from 0.5 to 4.0 g/kg resulted in significantly lower levels of lever pressing in periods following the discontinuation of the tone. In the presence of the conflict evoking tone stimulus, rats treated with 2.0 g/kg of EtOH increased their rate of lever pressing, while animals receiving the other EtOH doses exhibited lever pressing comparable to that observed during the corresponding control periods. Administration of EtOH had no effect on the number of reinforcements received during the entire test session, except for a significant (p less than 0.05) reduction at the highest dose of 4.0 g/kg. Diazepam increased the number of reinforcements received during the entire test session as compared to those obtained during control sessions. Lever pressing was not affected by diazepam treatment during pretone or tone periods. During the posttone periods responses were significantly (p less than 0.05) increased in rats receiving the lowest dose of 1.0 mg/kg of diazepam but the other doses were without effect.(ABSTRACT TRUNCATED AT 250 WORDS)

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Interactive effects of diazepam and ethanol on baboon match-to-sample performance.

Four juvenile male baboons were trained to perform a match-to-sample (MTS) discrimination task. Diazepam (DZ) at doses of 0.5, 1.0, 2.0, 4.0, or 6.0 mg/kg resulted in a significant (p less than 0.05) increase in the mean response times (MRT) during the 2 hr test session in terms of percent change from baseline performance under nondrug conditions measured the day prior to drug treatment. Effects were maximal at 2.0 mg/kg diazepam and no further effects were observed at 4.0 or 6.0 mg/kg. Administration of 0.25 mg/kg of diazepam had no effect on MTS performance. Exposure to 0.5 g/kg of ethanol (EtOH) had no effect on response time, while 1.0 g/kg EtOH significantly (p less than 0.05) increased response time. Baboons receiving combined treatment with 0.5 or 1.0 g/kg EtOH plus 1.0 mg/kg diazepam displayed a significant (p less than 0.05) percent increase in mean response time compared to that observed under baseline conditions on the day prior to drug treatment. The 0.5 g/kg EtOH and 1.0 mg/kg diazepam combination increased MRT to an extent comparable to the effect observed at the same dose of diazepam alone. Effects observed with 1.0 mg/kg diazepam and 1.0 g/kg EtOH were similar to those produced by the DZ alone. Combinations of 0.5 g/kg EtOH and 0.5 mg/kg diazepam, 1.0 g/kg EtOH and 0.25 mg/kg diazepam, and 1.0 g/kg EtOH and 0.5 mg/kg diazepam had no significant effect on response times.(ABSTRACT TRUNCATED AT 250 WORDS)

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Ethanol and chronic diazepam interactions on conflict behavior in rats.

Four groups of five rats each received training on the Geller-Seifter procedure and then received 0.5, 1.0 or 2.0 mg/kg diazepam (DZ) or vehicle, respectively, 15 min prior to the behavior sessions for 14 days. On Day 14 of DZ treatment rats also were administered 2.0 g/kg of ethanol (EtOH) 30 min prior to testing. Significant dose-related decreases in lever pressing occurred between groups over the 13 days of DZ treatment during the pre- and posttone periods. However, a significant effect attributable to days occurred only in the pretone period. During the tone period, the dose-related effects were greater but the variability also increased and specific contrasts between individual means were not significant. The largest increases in lever pressing associated with an anxiolytic effect occurred with 1.0 mg/kg of DZ at Day 6. On Day 14, all animals received 2.0 g/kg of EtOH and their performance was compared to performance on Day 13. During the pre- and posttone periods, the EtOH resulted in significantly less lever pressing in the control, 0.5 and 2.0 mg/kg DZ groups, indicating a sedative effect. Rats treated with 1.0 mg/kg of DZ did not exhibit this EtOH reduction in lever pressing. During the tone or conflict period, a significant dose-related increase in lever pressing due to the EtOH was observed. The increase in the control group was not significant. During repeated exposure to DZ there was a small but significant decrease in number of reinforcements which was enhanced by the EtOH at the 0.5 and 2.0 mg/kg DZ doses but not at 1.0 mg/kg DZ.(ABSTRACT TRUNCATED AT 250 WORDS)

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Effects of 1,1,1-trichloroethane on a match-to-sample discrimination task in the baboon.

1,1,1-trichloroethane was evaluated for its effects on the delayed match-to-sample discrimination task in juvenile baboons. Acute 4-h exposures to 700, 1400, 1800, and 2100 ppm were conducted no more frequently than once a week. Three months later a subchronic exposure to 1200 ppm was conducted over a 7-d period in the same animals. The effects on accuracy of responding were minimal; however, 1,1,1-trichloroethane reduced the number of trials attempted by the animals, reduced the number of extra inconsequential responses during the delay intervals, and increased reaction times. The findings of these experiments illustrate the usefulness of the young baboon as a primate human surrogate model for testing this type of central nervous system depressant.

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