神经科学
唤醒
超微结构
睡眠(系统调用)
生物
缩放比例
物理
机械
解剖
数学
计算机科学
几何学
操作系统
作者
Luisa de Vivo,Michele Bellesi,William Marshall,Eric A. Bushong,Mark H. Ellisman,Giulio Tononi,Chiara Cirelli
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2017-02-02
卷期号:355 (6324): 507-510
被引量:603
标识
DOI:10.1126/science.aah5982
摘要
It is assumed that synaptic strengthening and weakening balance throughout learning to avoid runaway potentiation and memory interference. However, energetic and informational considerations suggest that potentiation should occur primarily during wake, when animals learn, and depression should occur during sleep. We measured 6920 synapses in mouse motor and sensory cortices using three-dimensional electron microscopy. The axon-spine interface (ASI) decreased ~18% after sleep compared with wake. This decrease was proportional to ASI size, which is indicative of scaling. Scaling was selective, sparing synapses that were large and lacked recycling endosomes. Similar scaling occurred for spine head volume, suggesting a distinction between weaker, more plastic synapses (~80%) and stronger, more stable synapses. These results support the hypothesis that a core function of sleep is to renormalize overall synaptic strength increased by wake.
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