首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Anatomical and functional relationships between deep cerebellar nuclei and cerebellar cortical Crus II in vivo in mice
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Anatomical and functional relationships between deep cerebellar nuclei and cerebellar cortical Crus II in vivo in mice

机译:小鼠深小脑核与小脑皮质Crus II之间的解剖学和功能关系

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We previously reported that an air-puff stimulation on the ipsilateral whisker pad evoked responses in molecular layer (ML) and Purkinje cell (PC) layer in cerebellar cortex folium Crus II. We used anterograde tracing and electrophysiological methods to investigate the anatomical and functional relationships between the trigeminal tactile response area in the cerebellar cortex Crus II and deep cerebellar nuclei (DCN) in living mice. We found that the axons of tactile activated PCs projected in anterior part (IntA) and posterior part (IntP), and dorsolateral hump (IntDL) of ipsilateral interposed cerebellar nucleus (ICN). In ICN, the tactile stimulus evoked-field potential expressed a sequence of two negative components N1 and N2, while extracellular recordings from ICN neurons revealed that an increase in spike frequency in response to tactile stimulus. When the duration of facial air-puff stimulus were >= 30 ms, stimulation off response (R-off) were observed in the ICN, but an increase in the duration of facial air-puff stimulation did not significantly affect the amplitude of R-on (N1 and N2) and R-off. The latency and time to peak of N1 in ICN were significantly shorter than that of N1 in the ML, but the latency and time to peak of N2 in ICN were significantly later than that of P1 in the ML. The present results suggest that the facial sensory information, at least in part, is transferred to ICN by PC axons from Crus II, which evokes excitation in ICN neurons. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:我们以前曾报道过,在同侧晶须垫上吹气会引起小脑皮层Crus II分子层(ML)和Purkinje细胞(PC)层的反应。我们使用顺行示踪法和电生理方法来调查活小鼠小脑皮层Crus II中的三叉神经触觉反应区域与深小脑核(DCN)之间的解剖学和功能关系。我们发现触觉激活的PC的轴突投射在同侧插入小脑核(ICN)的前部(IntA)和后部(IntP)以及背外侧驼峰(IntDL)。在ICN中,触觉刺激诱发场电位表达两个负组分N1和N2的序列,而ICN神经元的细胞外记录显示,响应触觉刺激,突波频率增加。当面部吹气刺激的持续时间> = 30 ms时,在ICN中观察到刺激关闭反应(R-off),但是面部吹气刺激的持续时间的增加并没有显着影响R-幅度开启(N1和N2)和R-off。 ICN中N1的潜伏期和到达峰的时间显着短于ML中的N1,但是ICN中N2的潜伏期和到达峰的时间显着晚于ML中的P1。目前的结果表明,面部感觉信息至少部分被来自Crus II的PC轴突转移到ICN,这引起了ICN神经元的兴奋。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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