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Sleep Deprivation Selectively Impairs Memory Consolidation for Contextual Fear Conditioning

机译:睡眠剥夺有选择地损害了上下文的内存整合 恐惧调理

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摘要

Many behavioral and electrophysiological studies in animals and humans have suggested that sleep and circadian rhythms influence memory consolidation. In rodents, hippocampus-dependent memory may be particularly sensitive to sleep deprivation after training, as spatial memory in the Morris water maze is impaired by rapid eye movement sleep deprivation following training. Spatial learning in the Morris water maze, however, requires multiple training trials and performance, as measured by time to reach the hidden platform is influenced by not only spatial learning but also procedural learning. To determine if sleep is important for the consolidation of a single-trial, hippocampus-dependent task, we sleep deprived animals for 0–5 and 5–10 h after training for contextual and cued fear conditioning. We found that sleep deprivation from 0–5 h after training for this task impaired memory consolidation for contextual fear conditioning whereas sleep deprivation from 5–10 h after training had no effect. Sleep deprivation at either time point had no effect on cued fear conditioning, a hippocampus-independent task. Previous studies have determined that memory consolidation for fear conditioning is impaired when protein kinase A and protein synthesis inhibitors are administered at the same time as when sleep deprivation is effective, suggesting that sleep deprivation may act by modifying these molecular mechanisms of memory storage.
机译:在动物和人类中进行的许多行为和电生理研究都表明,睡眠和昼夜节律会影响记忆巩固。在啮齿动物中,训练后海马依赖性记忆可能对睡眠剥夺特别敏感,因为训练后快速的眼动睡眠剥夺会损害Morris水迷宫中的空间记忆。然而,莫里斯水迷宫中的空间学习需要多次训练试验和性能,以时间衡量到达隐藏平台的过程不仅受空间学习的影响,而且受过程学习的影响。为了确定睡眠对于巩固单项海马依赖的单项试验是否重要,我们在训练了情境和暗示的恐惧条件训练后,将被剥夺的动物睡眠0–5和5–10 h。我们发现,训练完成此任务后0–5 h的睡眠剥夺会损害因情境恐惧而引起的记忆巩固,而训练后5–10 h的睡眠剥夺则没有影响。在任何一个时间点剥夺睡眠都不会影响暗示的恐惧条件,这是海马独立的任务。先前的研究已经确定,在睡眠剥夺有效的同时施用蛋白激酶A和蛋白质合成抑制剂时,恐惧调节的记忆巩固会受到损害,这表明睡眠剥夺可能通过改变记忆存储的这些分子机制起作用。

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