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小脑的时间节律:颗粒层中的振荡与共振

Timing in the cerebellum: oscillations and resonance in the granular layer.

作者信息

D'Angelo E, Koekkoek S K E, Lombardo P, Solinas S, Ros E, Garrido J, Schonewille M, De Zeeuw C I

机构信息

Department of Physiology, University of Pavia, CNISM (Consorzio Nazionale Interuniversitario per le Scienze Fisiche della Materia), Via Forlanini 6, I-27100, Pavia, Italy.

出版信息

Neuroscience. 2009 Sep 1;162(3):805-15. doi: 10.1016/j.neuroscience.2009.01.048. Epub 2009 Jan 31.

Abstract

The brain generates many rhythmic activities, and the olivo-cerebellar system is not an exception. In recent years, the cerebellum has revealed activities ranging from low frequency to very high-frequency oscillations. These rhythms depend on the brain functional state and are typical of certain circuit sections or specific neurons. Interestingly, the granular layer, which gates sensorimotor and cognitive signals to the cerebellar cortex, can also sustain low frequency (7-25 Hz) and perhaps higher-frequency oscillations. In this review we have considered (i) how these oscillations are generated in the granular layer network depending on intrinsic electroresponsiveness and circuit connections, (ii) how these oscillations are correlated with those in other cerebellar circuit sections, and (iii) how the oscillating cerebellum communicates with extracerebellar structures. It is suggested that the granular layer can generate oscillations that integrate well with those generated in the inferior olive, in deep-cerebellar nuclei and in Purkinje cells. These rhythms, in turn, might play a role in cognition and memory consolidation by interacting with the mechanisms of long-term synaptic plasticity.

摘要

大脑会产生多种节律性活动,橄榄小脑系统也不例外。近年来,小脑已显示出从低频到超高频振荡的活动。这些节律取决于大脑功能状态,是某些脑区或特定神经元所特有的。有趣的是,颗粒层可将感觉运动和认知信号传入小脑皮质,它也能维持低频(7-25赫兹)甚至可能更高频率的振荡。在本综述中,我们探讨了:(i)这些振荡如何在颗粒层网络中根据内在电反应性和电路连接产生;(ii)这些振荡如何与小脑其他脑区的振荡相关联;(iii)振荡的小脑如何与小脑外结构进行通信。研究表明,颗粒层能够产生与下橄榄核、小脑深部核团和浦肯野细胞所产生的振荡良好整合的振荡。反过来,这些节律可能通过与长期突触可塑性机制相互作用,在认知和记忆巩固中发挥作用。

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