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Local sleep and learning

机译:局部睡眠和学习

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摘要

Human sleep is a global state whose functions remain unclear. During much of sleep, cortical neurons undergo slow oscillations in membrane potential, which appear in electroencephalograms as slow wave activity (SWA) of < 4 Hz(1). The amount of SWA is homeostatically regulated, increasing after wakefulness and returning to baseline during sleep(2). It has been suggested that SWA homeostasis may reflect synaptic changes underlying a cellular need for sleep(3). If this were so, inducing local synaptic changes should induce local SWA changes, and these should benefit neural function. Here we show that sleep homeostasis indeed has a local component, which can be triggered by a learning task involving specific brain regions. Furthermore, we show that the local increase in SWA after learning correlates with improved performance of the task after sleep. Thus, sleep homeostasis can be induced on a local level and can benefit performance.
机译:人类睡眠是一种全球性状态,其功能尚不清楚。在大部分睡眠中,皮质神经元的膜电位会缓慢振荡,在脑电图中会显示为<4 Hz(1)的慢波活动(SWA)。 SWA的量是稳态调节的,在清醒后增加,在睡眠期间恢复到基线(2)。有人提出,SWA稳态可能反映了细胞睡眠所需的突触变化(3)。如果是这样的话,诱导局部突触改变应诱导局部SWA改变,并且这些应当有益于神经功能。在这里,我们显示睡眠稳态确实具有局部成分,这可以由涉及特定大脑区域的学习任务触发。此外,我们表明,学习后SWA的局部增加与睡眠后任务的性能改善相关。因此,可以在局部水平上诱导睡眠稳态,并且可以有益于表现。

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