Operant Conditioning of Escape Behavior in the Pond Snail, Lymnaea stagnalis(Physiology)
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概要
- 論文の詳細を見る
Operant conditioning that the pond snail, Lymnaea stagnalis, suppressed its naturally occurring behavior of escape from a water tank was examined by using a negative reinforcement (I.e. an aversive stimulus) prepared outside the tank. During the training period, the number of escapes from a tank was strongly suppressed. One of behavioral factors for this suppression was confirmed as the elongation of latency to the first escape after training. The effects on the memory retention were examined in the massed and spaced training procedures. The latter procedure interposes a rest interval between three sets of 20-min training sessions, whereas the former has the same number of training sessions with no rest interval within 60 min. The memory retention by the massed training was observed within 20 min after training. By the spaced training, the learning acquisition was found to be stronger, which was observed as the slower latency to the first escape, than by the massed training, but the longer-lasting memory retention, which had been expected first, was not formed. These results suggest that once Lymnaea recognize the external environment is safe after training, they may extinguish their memory of the past situation quickly, resulting in no or very little difference in the memory retention by two different training procedures in this operant conditioning. Together with the facts that classical conditioning and its neuronal mechanisms in Lymnaea were previously clarified, the present findings may help to address not only the neuronal basis of operant conditioning but also the relation between classical and operant conditioning.
- 社団法人日本動物学会の論文
- 1998-10-15
著者
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伊藤 悦朗
Kagawa School Of Pharmaceutical Science Tokushima Bunri University
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Ito Etsuro
北海道大学 理研究
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Ito Etsuro
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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Kobayashi Suguru
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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Kojima Satoshi
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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Sadamoto Hisayo
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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Nakamura Hiroshi
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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FUJITO Yutaka
Department of Physiology, School of Medicine, Sapporo Medical University
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Ito Etsuro
Laboratory Of Animal Behavior And Intelligence Division Of Biological Sciences Graduate School Of Sc
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Ito E
Divisions Of Biological Sciences Hokkaido University
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Kojima Satoshi
Division Of Biological Sciences Graduate School Of Science Hokkaido University:laboratory For Molecu
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榊原 学
東海大学開発工学部生物工学科
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Kawai R
Department Of Chemistry Graduate School Of Science Tokai University
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Kawai R
Tokai Univ. Kanagawa Jpn
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Yamanaka Mari
Division Of Biological Sciences Graduate School Of Science Hokkaido University:yokoyama Cytologic Pr
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Fujito Y
Department Of Physiology School Of Medicine Sapporo Medical University
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Fujito Yutaka
Department Of Physiology Sapporo Medical University School Of Medicine
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榊原 学
東海大 開発工
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SAKAKIBARA Manabu
Laboratory of Neurobiological Engineering, School of High-Technology for Human Welfare, Tokai Univer
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Sadamoto H
Tokushima Bunri University
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Sadamoto Hisayo
Division Of Innovative Research Creative Research Initiative "sousei" Hokkaido University
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Kobayashi Suguru
Tokushima Bunri University
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Yamanaka Mari
Laboratory of Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of
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Kawai Ryo
Laboratory of Neurobiological Engineering, Department of Biological Science and Technology, School o
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Kojima Shigeaki
Ocean Researcg Institute University Of Tokyo
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Ito E
Division Of Innovative Research Creative Research Initiative "sousei" Hokkaido University:
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Sakakibara Manabu
Laboratory Of Neurobiological Engineering School Of High-technology For Human Welfare Tokai Universi
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