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Erschienen in: Cognitive Neurodynamics 5/2012

01.10.2012 | Research Article

Context and the renewal of conditioned taste aversion: the role of rat dorsal hippocampus examined by electrolytic lesion

verfasst von: Hiroki Fujiwara, Kosuke Sawa, Muneyoshi Takahashi, Johan Lauwereyns, Minoru Tsukada, Takeshi Aihara

Erschienen in: Cognitive Neurodynamics | Ausgabe 5/2012

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Abstract

An extinguished conditioned response can sometimes be restored. Previous research has shown that this renewal effect depends on the context in which conditioning versus extinction takes place. Here we provide evidence that the dorsal hippocampus is critically involved in the representation of context that underscores the renewal effect. We performed electrolytic lesions in dorsal hippocampus, before or after extinction, in a conditioned taste aversion paradigm with rats. Rats that underwent all conditioning, extinction and testing procedures in the same experimental context showed no renewal during testing in the original context. In contrast, rats that underwent extinction procedures in a different experimental context than the one in which they had acquired the conditioned response, showed a reliable renewal effect during testing in the original context. When electrolytic lesion was performed prior to extinction, the context-dependent renewal effect was disrupted. When electrolytic lesion was undertaken after extinction, we observed a complex pattern of data including the blockage of the conventional renewal effect, and the appearance of an unconventional renewal effect. The implications of these results are discussed with respect to current views on the role of the dorsal hippocampus in processing context information.

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Metadaten
Titel
Context and the renewal of conditioned taste aversion: the role of rat dorsal hippocampus examined by electrolytic lesion
verfasst von
Hiroki Fujiwara
Kosuke Sawa
Muneyoshi Takahashi
Johan Lauwereyns
Minoru Tsukada
Takeshi Aihara
Publikationsdatum
01.10.2012
Verlag
Springer Netherlands
Erschienen in
Cognitive Neurodynamics / Ausgabe 5/2012
Print ISSN: 1871-4080
Elektronische ISSN: 1871-4099
DOI
https://doi.org/10.1007/s11571-012-9208-y

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