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Feeding behavior of Aplysia: A model system for comparing cellular mechanisms of classical and operant conditioning

机译:海ly的喂养行为:一个模型系统,用于比较经典和操作条件的细胞机制

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Feeding behavior of Aplysia provides an excellent model system for analyzing and comparing mechanisms underlying appetitive classical conditioning and reward operant conditioning. Behavioral protocols have been developed for both forms of associative learning, both of which increase the occurrence of biting following training. Because the neural circuitry that mediates the behavior is well characterized and amenable to detailed cellular analyses, substantial progress has been made toward a comparative analysis of the cellular mechanisms underlying these two forms of associative learning. Both forms of associative learning use the same reinforcement pathway (the esophageal nerve, En) and the same reinforcement transmitter (dopamine, DA). In addition, at least one cellular locus of plasticity (cell B51) is modified by both forms of associative learning. However, the two forms of associative learning have opposite effects on B51. Classical conditioning decreases the excitability of B51, whereas operant conditioning increases the excitability of B51. Thus, the approach of using two forms of associative learning to modify a single behavior, which is mediated by an analytically tractable neural circuit, is revealing similarities and differences in the mechanisms that underlie classical and operant conditioning.
机译:海ly的进食行为提供了一个极好的模型系统,用于分析和比较具有竞争性的经典条件和奖励操作条件的机制。已经针对两种形式的联想学习开发了行为规约,这两种行为都增加了训练后咬人的可能性。由于介导该行为的神经回路具有良好的特征,并且可以进行详细的细胞分析,因此在对这两种形式的联想学习基础的细胞机制进行比较分析方面已取得了实质性进展。两种形式的联想学习都使用相同的增强途径(食道神经,En)和相同的增强递质(多巴胺,DA)。另外,通过两种形式的联想学习来修饰至少一个可塑性细胞基因座(细胞B51)。但是,两种形式的联想学习对B51具有相反的影响。经典条件降低了B51的兴奋性,而操作性条件提高了B51的兴奋性。因此,使用两种形式的联想学习来修改单一行为的方法揭示了经典和操作性条件背后的机制的相似之处和不同之处,而这种行为是由可分析处理的神经回路介导的。

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