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基于陆地蜗牛的振荡活动的气味偏好的内部表示和记忆形成。

Internal representation and memory formation of odor preference based on oscillatory activities in a terrestrial slug.

机构信息

Honda Research Institute Japan, Saitama 351-0188, Japan.

出版信息

Learn Mem. 2010 Jul 26;17(8):372-80. doi: 10.1101/lm.1867110. Print 2010 Aug.

Abstract

The terrestrial slug Limax exhibits a highly developed ability to learn odors with a small nervous system. When a fluorescent dye, Lucifer Yellow (LY), is injected into the slug's body cavity after odor-taste associative conditioning, a group of neurons in the procerebral (PC) lobe, an olfactory center of the slug, is labeled by LY. We examined the relationships between conditioning strategies and LY labeling. The positions of LY-labeled neurons in the PC lobe after appetitive conditioning were more apical than those after aversive conditioning and did not depend on the conditioned odor, suggesting that the biological value of odors affected the position of LY-labeled neural clusters. A simple computational model consisting of two layers of oscillators with electrical synaptic interaction was constructed based on physiological features of the PC lobe, and showed that the oscillatory phase difference between the layers contributed to determination of the positions of LY-labeled neurons, suggesting that phase difference in oscillatory activity plays a role in the association of odors and the preference for them.

摘要

陆地蜗牛 Limax 表现出高度发达的学习气味的能力,而其神经系统却相对较小。当荧光染料 Lucifer Yellow(LY)在嗅觉味觉联想条件作用后注入蜗牛的体腔时,蜗牛的前脑(PC)叶中的一组神经元会被 LY 标记。我们检查了条件作用策略与 LY 标记之间的关系。在有吸引力的条件作用后,PC 叶中 LY 标记神经元的位置比在厌恶条件作用后更高,并且不依赖于条件化的气味,这表明气味的生物价值影响了 LY 标记神经簇的位置。基于 PC 叶的生理特征,构建了一个由两层振荡器组成的简单计算模型,该模型具有电突触相互作用,表明层之间的振荡相位差有助于确定 LY 标记神经元的位置,这表明振荡活动中的相位差在气味的关联和对它们的偏好中起着作用。

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