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首页> 外文期刊>The European Journal of Neuroscience >Topographical organization of pathways from somatosensory cortex through the pontine nuclei to tactile regions of the rat cerebellar hemispheres.
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Topographical organization of pathways from somatosensory cortex through the pontine nuclei to tactile regions of the rat cerebellar hemispheres.

机译:从体感皮质穿过桥脑核到大鼠小脑半球触觉区域的路径的地形组织。

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摘要

The granule cell layer of the cerebellar hemispheres contains a patchy and noncontinuous map of the body surface, consisting of a complex mosaic of multiple perioral tactile representations. Previous physiological studies have shown that cerebrocerebellar mossy fibre projections, conveyed through the pontine nuclei, are mapped in registration with peripheral tactile projections to the cerebellum. In contrast to the fractured cerebellar map, the primary somatosensory cortex (SI) is somatotopically organized. To understand better the map transformation occurring in cerebrocerebellar pathways, we injected axonal tracers in electrophysiologically defined locations in Sprague-Dawley rat folium crus IIa, and mapped the distribution of retrogradely labelled neurons within the pontine nuclei using three-dimensional (3-D) reconstructions. Tracer injections within the large central upper lip patch in crus IIa-labelled neurons located centrally in the pontine nuclei, primarily contralateral to the injected side. Larger injections (covering multiple crus IIa perioral representations) resulted in labelling extending only slightly beyond this region, with a higher density and more ipsilaterally labelled neurons. Combined axonal tracer injections in upper lip representations in SI and crus IIa, revealed a close spatial correspondence between the cerebropontine terminal fields and the crus IIa projecting neurons. Finally, comparisons with previously published three-dimensional distributions of pontine neurons labelled following tracer injections in face receiving regions in the paramedian lobule (downloaded from http://www.rbwb.org) revealed similar correspondence. The present data support the coherent topographical organization of cerebro-ponto-cerebellar networks previously suggested from physiological studies. We discuss the present findings in the context of transformations from cerebral somatotopic to cerebellar fractured tactile representations.
机译:小脑半球的颗粒细胞层包含体表的斑块状和不连续的图,由多个口周围触觉表示的复杂镶嵌组成。以前的生理学研究表明,通过脑桥核传递的小脑苔藓纤维突起与周围的触觉突起对准后被映射到小脑。与骨折的小脑图相反,主要的体感皮质(SI)在体位组织。为了更好地了解小脑通路中发生的图谱转化,我们在电生理学定义的Sprague-Dawley大鼠小叶IIa小体中注射了轴突示踪剂,并使用三维(3-D)重建方法绘制了桥脑核内逆行标记神经元的分布图。在Cus IIa标记的神经元(位于桥脑核中央,主要与被注射侧对侧)的大中央上唇斑块内进行示踪剂注射。较大的注射量(覆盖多个IIa口周围的结节)导致标记仅略微超出该区域,具有更高的密度和同侧标记的神经元。联合轴突示踪剂注射在SI和结节IIa中的上唇表示中,揭示了小脑桥脑末梢区域和结节IIa投射神经元之间的紧密空间对应。最后,将与示踪剂注射后的脑桥神经元的三维分布相比较,示踪剂注射在旁中叶(从http://www.rbwb.org下载)的面部接收区域。本数据支持先前从生理学研究中提出的脑桥脑小脑网络的相干地形组织。我们讨论从脑躯体转换到小脑骨折的触觉表征转换的上下文中的当前发现。

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