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粗角滨螺联想学习记忆过程中相关受体与运动神经元的变化

Correlated receptor and motorneuron changes during retention of associative learning of Hermissenda crassicornis.

作者信息

Takeda T, Alkon D L

出版信息

Comp Biochem Physiol A Comp Physiol. 1982;73(2):151-7. doi: 10.1016/0300-9629(82)90048-2.

Abstract
  1. Responses to light of an identified motorneuron (LP1) were recorded simultaneously with those of an identified Hermissenda photoreceptor (the lateral Type B) following three days of training with paired light and rotation. 2. These responses were significantly different when compared to responses of cells from animals trained with unpaired stimuli and from naive animals. 3. The differences of the LP1 responses can be explained as a consequence of the photoreceptor response changes. 4. The same training with paired stimuli has been shown to produce behavioural changes which satisfy criteria for vertebrate associative learning. 5. The observed neural correlates are consistent with previous findings which indicate that membrane changes within the Type B cell bodies play a causal role in associative learning of the nudibranch mollusc, Hermissenda crassicornis.
摘要
  1. 在经过三天的光与旋转配对训练后,对一个已识别的运动神经元(LP1)的光反应与一个已识别的海兔感光细胞(外侧B型)的光反应同时进行了记录。2. 与用非配对刺激训练的动物以及未受过训练的动物的细胞反应相比,这些反应有显著差异。3. LP1反应的差异可以解释为感光细胞反应变化的结果。4. 已证明,相同的配对刺激训练会产生符合脊椎动物联想学习标准的行为变化。5. 观察到的神经关联与先前的研究结果一致,这些结果表明B型细胞体内的膜变化在裸鳃亚目软体动物海兔的联想学习中起因果作用。

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