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Immediate Response Strategy and Shift to Place Strategy in Submerged T-Maze

机译:淹没式T迷宫的即时响应策略和转移放置策略

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摘要

A considerable amount of research has demonstrated that animals can use different strategies when learning about, and navigating within, their environment. Since the influential research of Packard and McGaugh (1996), it has been widely accepted that, early in learning, rats use a flexible dorsal hippocampal-dependent place strategy. As learning progresses, they switch to a less effortful and more automatic dorsolateral caudate-dependent response strategy. However, supporting literature is dominated by the use of appetitively motivated tasks, using food reward. Because motivation often plays a crucial role in guiding learning, memory, and behavior, we examined spatial learning strategies of rats in an escape-motivated submerged T-maze. In Experiment 1, we observed rapid learning and the opposite pattern as that reported in appetitively motivated tasks. Rats exhibited a response strategy early in learning before switching to a place strategy, which persisted over extensive training. In Experiment 2, we replicated Packard and McGaugh's (1996) observations, using the apparatus and procedures as in Experiment 1, but with food reward instead of water escape. Mechanisms for, and implications of, this motivational modulation of spatial learning strategy are considered.
机译:大量研究表明,动物在了解环境并在环境中导航时可以使用不同的策略。自从Packard和McGaugh(1996)进行有影响力的研究以来,人们已经广泛接受大鼠在学习的早期就使用了灵活的背侧海马依赖性放置策略。随着学习的进展,他们转向了一种省力,更自动化的依赖尾鳍的背外侧反应策略。但是,支持文献的主要工作是使用激发动机的任务,使用食物奖励。由于动机通常在指导学习,记忆和行为方面起着至关重要的作用,因此我们研究了逃逸动机淹没的T型迷宫中大鼠的空间学习策略。在实验1中,我们观察到快速学习和与积极动机的任务相反的模式。大鼠在学习初期就表现出一种反应策略,然后再切换到一个放置策略,该策略在大量的训练中仍然存在。在实验2中,我们使用实验1中的设备和程序复制了Packard和McGaugh(1996)的观察结果,但是有食物奖励而不是水逃逸。考虑了这种动机调节空间学习策略的机制及其含义。

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