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小脑前核的副放电在睡眠中婴儿大鼠。

Corollary discharge in precerebellar nuclei of sleeping infant rats.

机构信息

Department of Psychological and Brain Sciences, University of Iowa, Iowa, United States.

Delta Center, University of Iowa, Iowa, United States.

出版信息

Elife. 2018 Dec 5;7:e38213. doi: 10.7554/eLife.38213.

Abstract

In week-old rats, somatosensory input arises predominantly from external stimuli or from sensory feedback (reafference) associated with myoclonic twitches during active sleep. A previous study suggested that the brainstem motor structures that produce twitches also send motor copies (or corollary discharge, CD) to the cerebellum. We tested this possibility by recording from two precerebellar nuclei-the inferior olive (IO) and lateral reticular nucleus (LRN). In most IO and LRN neurons, twitch-related activity peaked sharply around twitch onset, consistent with CD. Next, we identified twitch-production areas in the midbrain that project independently to the IO and LRN. Finally, we blocked calcium-activated slow potassium (SK) channels in the IO to explain how broadly tuned brainstem motor signals can be transformed into precise CD signals. We conclude that the precerebellar nuclei convey a diversity of sleep-related neural activity to the developing cerebellum to enable processing of convergent input from CD and reafferent signals.

摘要

在出生一周的大鼠中,躯体感觉输入主要来自外部刺激或与活跃睡眠期间肌阵挛抽搐相关的感觉反馈(重反射)。先前的研究表明,产生抽搐的脑干运动结构也会向小脑发送运动副本(或副放电,CD)。我们通过记录两个小脑前核-下橄榄核(IO)和外侧网状核(LRN)来检验这种可能性。在大多数 IO 和 LRN 神经元中,抽搐相关的活动在抽搐开始时急剧达到峰值,与 CD 一致。接下来,我们确定了投射到 IO 和 LRN 的中脑的抽搐产生区域。最后,我们阻断 IO 中的钙激活慢钾(SK)通道,以解释广泛调谐的脑干运动信号如何转化为精确的 CD 信号。我们的结论是,小脑前核将多种与睡眠相关的神经活动传递到发育中的小脑,以处理来自 CD 和重反射信号的会聚输入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7765/6281370/7e1671d31ccb/elife-38213-fig1.jpg

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