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Associative memory stored by functional novel pathway rather than modifications of preexisting neuronal pathways

机译:通过功能性新途径存储的联想记忆而不是对先前存在的神经元途径的修饰

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摘要

Associative conditioning involves changes in the processing pathways activated by sensory information to link the conditioned stimulus (CS) to the conditioned behavior. Thus, conditioning can recruit neuronal elements to form new pathways for the processing of the CS and/or can change the strength of existing pathways. Using a behavioral and systems level electrophysiological approach on a tractable invertebrate circuit generating feeding in the mollusk Lymnaea stagnalis, we identified three independent pathways for the processing of the CS amyl acetate used in appetitive conditioning. Two of these pathways, one suppressing and the other stimulating feeding, mediate responses to the CS in naive animals. The effects ofthese two pathways on feeding behavior are unaltered by conditioning. In contrast, the CS response ofa third stimulatory pathway is significantly enhanced after conditioning, becoming an importantcontributor to the overall CS response. This is unusual because, in most of the previous examples in which naive animals already respond to the CS, memory formation results from changes in the strength of pathways that mediate the existing response. Here, we show that, in the molluscan feeding system, both modified and unmodified pathways are activated in parallel by the CS after conditioning, and it is their integration that results in the conditioned response
机译:联想条件涉及感官信息激活的处理路径的变化,以将条件刺激(CS)与条件行为联系起来。因此,调理可以募集神经元元件以形成用于CS加工的新途径和/或可以改变现有途径的强度。使用行为和系统水平的电生理方法,在软体动物无胸腺发育中的摄食的无脊椎动物的电路上,我们确定了在食性调理中使用的CS乙酸戊酯的加工的三个独立途径。这些途径中的两种,一种抑制和另一种刺激进食,介导了幼稚动物对CS的反应。这两个途径对进食行为的影响不会因条件而改变。相反,调节后第三刺激途径的CS反应显着增强,成为总体CS反应的重要贡献者。这是不寻常的,因为在大多数以前的天真动物已经对CS做出反应的示例中,记忆形成是由介导现有反应的途径强度变化引起的。在这里,我们表明,在软体动物饲养系统中,条件调节后,CS会同时激活修饰的和未修饰的途径,而它们的整合导致条件响应

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