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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Experimental brain research 77 (1989), S. 153-160 
    ISSN: 1432-1106
    Keywords: Subiculum ; Postcommissural fornix ; Precommissural fornix ; Resistance to extinction ; Partial reinforcement ; Rats
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Rats were trained to run in an alley for food reward given on every trial (Continuous Reinforcement, CR) or on a random fifty percent of trials (Partial Reinforcement, PR) and the running response was then extinguished. Sham Operated controls showed the normal partial reinforcement extinction effect (PREE) in that PR-trained animals were significantly more resistant to extinction than CR-trained animals. The PREE was abolished by a knife cut placed at the base of the lateral septum to interrupt ventral subicular fibres destined for the ventral striatum. This outcome stemmed purely from a decrease in resistance to extinction in the lesion PR group. A larger lesion that also sectioned the dorsal subicular pathway in the descending columns of the fornix left the PREE intact, though there were some signs of a reduction in its size primarily due to increased resistance to extinction in the lesion CR group. We conclude that previous reports demonstrating reduction or abolition of the PREE following conventional total septal or lateral septal lesions, may have achieved their results through damage to subicular fibres en passage through the septum.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1106
    Keywords: Hippocampus ; Subiculum ; Partial reinforcement extinction effect ; Partial reinforcement acquisition effect ; Entorhinal cortex ; botenate
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Intracerebral injections of ibotenate were used to produce, in rats, extensive cell loss in the hippocampus and dentate gyrus (complete hippocampal, CH), in the CH plus subiculum (SUB + CH), or in the subiculum plus entorhinal cortex (SUB + EC). These rats and sham-operated controls were trained to run in a straight alley for food reward delivered on a continuous (CR) or partial (PR) reinforcement schedule. In controls PR training gave rise to the well-known partial reinforcement extinction effect (PREE), i.e., greater resistance to extinction than that observed in CR-trained animals. Previous work had shown that large aspiration lesions of the hippocampal formation eliminate the PREE by increasing resistance to extinction in CR-trained animals and decreasing resistance to extinction in PR-trained animals. In the present experiments the PREE survived CH lesions, which increased resistance to extinction in both CR and PR training conditions; these effects were observed in the start and run (but not goal) sections of the alley. In contrast, subicular cell loss (in both SUB + CH and SUB + EC groups) abolished the PREE (but in the goal section only) by increasing resistance to extinction in the CR condition and decreasing resistance to extinction in the PR condition. In addition, some of the effects of PR training on start and run speeds during acquisition were altered by the CH and SUB + CH lesions. These results confirm previous data showing that the hippocampal formation plays a role in mediating the behavioural effects of PR training, but require modification of the model previously proposed to account for these data.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-1106
    Keywords: Key words Entorhinal cortex ; Subiculum ; Retrohippocampus ; Latent inhibition ; Partial reinforcement extinction effect ; Rat
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract  Experiment 1 assessed the effect of cytotoxic retrohippocampal (entorhinal and extra-subicular cortices) lesions on the development of latent inhibition (LI) using an off-the-baseline, between-subjects, conditioned emotional response paradigm. Sham-operated controls and unoperated rats that had been pre-exposed to a light stimulus prior to light-shock pairings showed less conditioned suppression towards the light stimulus than the nonpre-exposed animals, thus demonstrating LI. However, LI was not evident in rats with retrohippocampal lesions. In experiment 2, the same animals were trained to run in an straight runway for food. Half of the animals were trained under a 50% partial reinforcement schedule (i.e. they were rewarded randomly on half of the acquisition trials) and the other half were trained under a continuous reinforcement schedule (i.e. they were rewarded on every acquisition trial). When tested in extinction, animals trained on the partial reinforcement schedule showed greater persistence than animals trained on continuous reinforcement, thus demonstrating the partial reinforcement extinction effect (PREE). Rats with retrohippocampal lesions showed a PREE that was at least as clear as that seen in the sham-operated controls and in the unoperated animals. It is concluded that cytotoxic lesions of the retrohippocampal region selectively led to an abolition of LI, but spared the PREE. The present study thus provided evidence against the hypothesis that LI and the PREE share a common neural substrate.
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Springer
    Psychopharmacology 124 (1996), S. 288-290 
    ISSN: 1432-2072
    Keywords: Equithesin ; Anaesthesia ; Chloral hydrate ; Pentobarbitone ; Adynamic ileus
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract In 1977 it was reported that chloral hydrate could cause adynamic ileus in rats, leading to morbidity and death. The symptoms were a swollen abdomen, lethargy and anorexia. However, chloral hydrate is still used as an anaesthetic, particularly in Equithesin mixture. We report that Equithesin without chloral hydrate is an effective anaesthetic, with a slightly reduced potency compared to Equithesin itself, and anaesthesia may be maintained for several hours by supplemental doses.
    Type of Medium: Electronic Resource
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