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浦肯野细胞激活后小脑核中反弹放电介导的运动反应的强度和时机。

Strength and timing of motor responses mediated by rebound firing in the cerebellar nuclei after Purkinje cell activation.

机构信息

Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences Amsterdam, Netherlands.

出版信息

Front Neural Circuits. 2013 Aug 21;7:133. doi: 10.3389/fncir.2013.00133. eCollection 2013.

Abstract

The cerebellum refines the accuracy and timing of motor performance. How it encodes information to perform these functions is a major topic of interest. We performed whole cell and extracellular recordings of Purkinje cells (PCs) and cerebellar nuclei neurons (CNs) in vivo, while activating PCs with light in transgenic mice. We show for the first time that graded activation of PCs translates into proportional CN inhibition and induces rebound activity in CNs, which is followed by graded motor contractions timed to the cessation of the stimulus. Moreover, activation of PC ensembles led to disinhibition of climbing fiber activity, which coincided with rebound activity in CNs. Our data indicate that cessation of concerted activity in ensembles of PCs can regulate both timing and strength of movements via control of rebound activity in CNs.

摘要

小脑可以提高运动表现的准确性和及时性。小脑如何对信息进行编码以执行这些功能是一个主要的研究课题。我们在转基因小鼠中通过光刺激来进行全细胞和细胞外记录,以记录浦肯野细胞(PCs)和小脑核神经元(CNs)的活动。我们首次表明,PCs 的分级激活会转化为 CN 抑制的比例性增加,并在 CNs 中引起反弹活动,随后会出现与刺激停止时间相匹配的分级运动收缩。此外,PC 集合的激活导致 climbing fiber 活动的去抑制,这与 CNs 中的反弹活动同时发生。我们的数据表明,PC 集合的协同活动的停止可以通过控制 CNs 中的反弹活动来调节运动的时间和强度。

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