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小脑核中联想学习的突触机制。

Synaptic mechanisms for associative learning in the cerebellar nuclei.

机构信息

Department of Cerebellar Coordination and Cognition, Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.

Department of Neuroscience, Erasmus MC, Rotterdam, The Netherlands.

出版信息

Nat Commun. 2023 Nov 20;14(1):7459. doi: 10.1038/s41467-023-43227-w.

Abstract

Associative learning during delay eyeblink conditioning (EBC) depends on an intact cerebellum. However, the relative contribution of changes in the cerebellar nuclei to learning remains a subject of ongoing debate. In particular, little is known about the changes in synaptic inputs to cerebellar nuclei neurons that take place during EBC and how they shape the membrane potential of these neurons. Here, we probed the ability of these inputs to support associative learning in mice, and investigated structural and cell-physiological changes within the cerebellar nuclei during learning. We find that optogenetic stimulation of mossy fiber afferents to the anterior interposed nucleus (AIP) can substitute for a conditioned stimulus and is sufficient to elicit conditioned responses (CRs) that are adaptively well-timed. Further, EBC induces structural changes in mossy fiber and inhibitory inputs, but not in climbing fiber inputs, and it leads to changes in subthreshold processing of AIP neurons that correlate with conditioned eyelid movements. The changes in synaptic and spiking activity that precede the CRs allow for a decoder to distinguish trials with a CR. Our data reveal how structural and physiological modifications of synaptic inputs to cerebellar nuclei neurons can facilitate learning.

摘要

在延迟性眨眼条件反射(EBC)期间,联想学习依赖于完整的小脑。然而,小脑核中学习相关的变化的相对贡献仍然是一个正在讨论的话题。特别是,小脑核神经元在 EBC 期间的突触输入变化以及它们如何塑造这些神经元的膜电位知之甚少。在这里,我们探测了这些输入在小鼠中支持联想学习的能力,并研究了学习过程中小脑核内的结构和细胞生理变化。我们发现,对前间位核(AIP)的苔藓纤维传入进行光遗传学刺激可以替代条件刺激,足以引发适应性良好的条件反应(CR)。此外,EBC 诱导苔藓纤维和抑制性输入的结构变化,但不诱导爬行纤维输入的结构变化,并且导致 AIP 神经元的亚阈值处理发生变化,与条件性眼睑运动相关。在 CR 之前的突触和放电活动的变化允许解码器区分有 CR 的试验。我们的数据揭示了小脑核神经元的突触输入的结构和生理变化如何促进学习。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bb2/10662440/244da0d691a4/41467_2023_43227_Fig1_HTML.jpg

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