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橄榄小脑系统对小脑核峰电位活动的突触作用。

Synaptic action of the olivocerebellar system on cerebellar nuclear spike activity.

机构信息

Department of Physiology and Neuroscience, New York University School of Medicine, New York, New York 10016, USA.

出版信息

J Neurosci. 2011 Oct 12;31(41):14708-20. doi: 10.1523/JNEUROSCI.3323-11.2011.

Abstract

Cerebellar output is necessary for the ideal implementation of many nervous system functions, particularly motor coordination. A key step toward understanding the generation of this output is characterizing the factors that shape the activity of the cerebellar nuclei (CN). There are four major sources of synaptic input that modulate CN activity; collaterals of climbing and mossy fibers are two, and the remaining two are provided by Purkinje cell (PC) axons in the form of simple spikes (SSs) and complex spikes (CSs). Most hypotheses of cerebellar function focus on SSs as the primary determinant of CN activity. However, it is likely that CSs also cause significant direct effects on CN activity, something that is rarely considered. To explore this possibility, we recorded from synaptically connected PC-CN neuron cell pairs in rats. Cross-correlograms of CS and CN activity from such recordings demonstrate that spontaneous CSs have a strong inhibitory effect on CN activity, apparently sufficient, in some cases, to trigger changes in the intrinsic excitability of the CN neuron that long outlast the underlying CS-mediated GABAergic IPSP. Furthermore, many CS-CN correlograms show an initial excitatory response, demonstrating the ability of climbing fiber collaterals to significantly excite CN neurons. A substantial fraction (24%) of correlograms displayed an excitation-inhibition sequence, providing evidence that a CN neuron often receives collaterals from the same olivocerebellar axons as innervate the PCs projecting to it. Thus, excitation followed by inhibition appears to be a hard-wired response pattern of many CN neurons to olivocerebellar activity.

摘要

小脑输出对于许多神经系统功能的理想实施是必要的,特别是运动协调。理解这种输出产生的关键步骤是描述塑造小脑核(CN)活动的因素。有四个主要的突触输入源调节 CN 活动;攀缘纤维和苔藓纤维的分支是两个,其余两个是由浦肯野细胞(PC)轴突以简单 spikes(SSs)和复杂 spikes(CSs)的形式提供的。大多数小脑功能的假说都将 SSs 作为 CN 活动的主要决定因素。然而,CSs 很可能也对 CN 活动产生显著的直接影响,这一点很少被考虑。为了探索这种可能性,我们在大鼠中记录了突触连接的 PC-CN 神经元对。来自这些记录的 CS 和 CN 活动的互相关图表明,自发的 CS 对 CN 活动有很强的抑制作用,在某些情况下,这种抑制作用显然足以触发 CN 神经元内在兴奋性的变化,这种变化持续时间远远超过潜在的 CS 介导的 GABA 能 IPSP。此外,许多 CS-CN 相关图显示出初始兴奋反应,证明了攀缘纤维分支能够显著兴奋 CN 神经元。相当一部分(24%)的相关图显示出兴奋-抑制序列,这提供了证据表明,一个 CN 神经元通常接收来自同一橄榄小脑轴突的分支,这些分支支配投射到它的 PC。因此,兴奋后抑制似乎是许多 CN 神经元对橄榄小脑活动的固有反应模式。

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