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睡眠剥夺会损害大鼠中海马体介导的情境学习,但不会损害杏仁核介导的线索学习。

Sleep deprivation impairs hippocampus-mediated contextual learning but not amygdala-mediated cued learning in rats.

作者信息

Ruskin David N, Liu Caiqin, Dunn Kelly E, Bazan Nicolas G, LaHoste Gerald J

机构信息

Department of Psychology, University of New Orleans, New Orleans, LA 70148, USA.

出版信息

Eur J Neurosci. 2004 Jun;19(11):3121-4. doi: 10.1111/j.0953-816X.2004.03426.x.

Abstract

Prolonged sleep deprivation results in cognitive deficits. In rats, for example, sleep deprivation impairs spatial learning and hippocampal long-term potentiation. We tested the effects of sleep deprivation on learning in a Pavlovian fear conditioning paradigm, choosing a sleep deprivation paradigm in which REM sleep was completely prevented and non-REM sleep was strongly decreased. During conditioning, rats were given footshocks, either alone or paired with a tone, and tested 24 h later for freezing responses to the conditioning context, and to the tone in a novel environment. Whereas control animals had robust contextual learning in both background and foreground contextual conditioning paradigms, 72 h of sleep deprivation before conditioning dramatically impaired both types of contextual learning (by more than 50%) without affecting cued learning. Increasing the number of footshocks did not overcome the sleep deprivation-induced deficit. The results provide behavioural evidence that REM/non-REM sleep deprivation has neuroanatomically selective actions, differentially interfering with the neural systems underlying contextual learning (i.e. the hippocampus) and cued learning (i.e. the amygdala), and support the involvement of the hippocampus in both foreground and background contextual conditioning.

摘要

长期睡眠剥夺会导致认知缺陷。例如,在大鼠中,睡眠剥夺会损害空间学习和海马体长期增强效应。我们在巴甫洛夫恐惧条件反射范式中测试了睡眠剥夺对学习的影响,选择了一种完全阻止快速眼动睡眠且大幅减少非快速眼动睡眠的睡眠剥夺范式。在条件反射过程中,给大鼠单独施加足部电击或使其与音调配对,并在24小时后测试其对条件反射情境以及在新环境中对音调的僵住反应。对照动物在背景和前景情境条件反射范式中都有强大的情境学习能力,而在条件反射前进行72小时的睡眠剥夺会显著损害这两种情境学习(超过50%),但不影响线索学习。增加足部电击次数并不能克服睡眠剥夺引起的缺陷。这些结果提供了行为学证据,表明快速眼动/非快速眼动睡眠剥夺具有神经解剖学上的选择性作用,不同程度地干扰了情境学习(即海马体)和线索学习(即杏仁核)所涉及的神经系统,并支持海马体参与前景和背景情境条件反射。

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