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Comparison of brain monoamine content in three populations of Lymnaea that correlates with taste-aversive learning ability

机译:脑单胺含量比较三种Lymnaea群体,与味道厌恶的学习能力相关

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To find a causal mechanism of learning and memory is a heuristically important topic in neuroscience. In the pond snail Lymnaea stagnalis, the following experimental facts have accrued regarding a classical conditioning procedure known as conditioned taste aversion (CTA): (1) one-day food-deprived Dutch snails have superior CTA memory formation; (2) the one-day food-deprived snails have a low monoamine content (e.g., serotonin, dopamine, octopamine) in their central nervous system (CNS); (3) fed or five-day food-deprived snails have poorer CTA memory and a higher monoamine content; (4) the Dutch snails form better CTA memory than the Canadian TC1 strain; and, (5) the F1 cross snails between the Dutch and Canadian TC1 strains also form poor CTA memory. Here, in one-day food-deprived snails, we measured the monoamine content in the CNSs of the 3 populations. In most instances, the monoamine content of the Dutch strain was lower than in the other two populations. The F1 cross snails had the highest monoamine content. A lower monoamine content is correlated with the better CTA memory formation.
机译:寻找学习和记忆的因果机制是神经科学的启发式重要的话题。在池塘蜗牛Lymnaea Stagnalis中,以下实验事实已经累积,关于称为条件味道厌恶(CTA)的古典调理程序:(1)单日食物剥夺的荷兰蜗牛具有优异的CTA记忆形成; (2)单日食品剥夺的蜗牛在其中枢神经系统(CNS)中具有低单胺含量(例如,血清素,多巴胺,八胺); (3)美联储或五天的粮食剥夺蜗牛具有较差的CTA记忆和更高的单胺含量; (4)荷兰蜗牛比加拿大TC1应变形成更好的CTA记忆;并且(5)荷兰和加拿大TC1菌株之间的F1交叉蜗牛也形成了差的CTA记忆。在这里,在一天的食物剥夺的蜗牛中,我们测量了3个群体的CNS中的单胺含量。在大多数情况下,荷兰菌株的单胺含量低于其他两种群体。 F1交叉蜗牛具有最高的单胺含量。较低的单胺含量与更好的CTA存储器形成相关。

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