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皮质网络中的神经元振荡。

Neuronal oscillations in cortical networks.

作者信息

Buzsáki György, Draguhn Andreas

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers, State University of New Jersey, Newark, NJ 07102, USA.

出版信息

Science. 2004 Jun 25;304(5679):1926-9. doi: 10.1126/science.1099745.

Abstract

Clocks tick, bridges and skyscrapers vibrate, neuronal networks oscillate. Are neuronal oscillations an inevitable by-product, similar to bridge vibrations, or an essential part of the brain's design? Mammalian cortical neurons form behavior-dependent oscillating networks of various sizes, which span five orders of magnitude in frequency. These oscillations are phylogenetically preserved, suggesting that they are functionally relevant. Recent findings indicate that network oscillations bias input selection, temporally link neurons into assemblies, and facilitate synaptic plasticity, mechanisms that cooperatively support temporal representation and long-term consolidation of information.

摘要

时钟滴答作响,桥梁和摩天大楼振动,神经网络振荡。神经元振荡是一种不可避免的副产物,类似于桥梁振动,还是大脑设计的一个重要组成部分?哺乳动物的皮层神经元形成了各种大小的依赖于行为的振荡网络,其频率跨越五个数量级。这些振荡在系统发育上得以保留,这表明它们在功能上是相关的。最近的研究结果表明,网络振荡会影响输入选择,在时间上将神经元连接成集合,并促进突触可塑性,这些机制共同支持时间表征和信息的长期巩固。

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