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分布式协同可塑性与小脑学习。

Distributed synergistic plasticity and cerebellar learning.

机构信息

Department of Neuroscience, Erasmus Medical Center, 3000 DR Rotterdam, The Netherlands.

出版信息

Nat Rev Neurosci. 2012 Sep;13(9):619-35. doi: 10.1038/nrn3312. Epub 2012 Aug 16.

Abstract

Studies on synaptic plasticity in the context of learning have been dominated by the view that a single, particular type of plasticity forms the underlying mechanism for a particular type of learning. However, emerging evidence shows that many forms of synaptic and intrinsic plasticity at different sites are induced conjunctively during procedural memory formation in the cerebellum. Here, we review the main forms of long-term plasticity in the cerebellar cortex that underlie motor learning. We propose that the different forms of plasticity in the granular layer and the molecular layer operate synergistically in a temporally and spatially distributed manner, so as to ultimately create optimal output for behaviour.

摘要

在学习背景下的突触可塑性研究一直以来都受到这样一种观点的主导,即一种特定类型的可塑性构成了某种特定类型学习的基础机制。然而,新出现的证据表明,在小脑程序性记忆形成过程中,不同部位的许多种突触和内在可塑性会共同被诱导。在这里,我们综述了小脑皮层中与运动学习相关的主要的长期可塑性形式。我们提出,在颗粒层和分子层中的不同形式的可塑性会以时空分布的方式协同运作,从而最终为行为创造出最佳的输出。

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