首页> 美国卫生研究院文献>The Journal of Neuroscience >Precise Spatial Relationships between Mossy Fibers and Climbing Fibers in Rat Cerebellar Cortical Zones
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Precise Spatial Relationships between Mossy Fibers and Climbing Fibers in Rat Cerebellar Cortical Zones

机译:大鼠小脑皮质区中苔藓纤维与攀爬纤维之间的精确空间关系

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摘要

Classically, mossy fiber and climbing fiber terminals are regarded as having very different spatial distributions in the cerebellar cortex. However, previous anatomical studies have not studied these two major cerebellar inputs with sufficient resolution to confirm this assumption. Here, we examine the detailed pattern of collateralization of both types of cerebellar afferent using small injections of the bidirectional tracer cholera toxin b subunit into the posterior cerebellum. The cortical and zonal location of these injections was characterized by mapping climbing fiber field potentials, the distribution of retrogradely labeled olivary neurons, and the intrinsic zebrin pattern of Purkinje cells.Labeled climbing fiber collaterals were distributed as longitudinal strips and were always accompanied by clusters of labeled mossy fiber rosettes in the subjacent granular layer. Two- and three-dimensional reconstructions and quantitative analysis showed that mossy fibers also collateralized to other stripe-like regions usually below Purkinje cells with the same zebrin-positive or zebrin-negative characteristics as that of the injection site and associated climbing fiber collaterals. The distribution of retrogradely labeled neurons in two major sources of mossy fibers, the lateral reticular and basilar pontine nuclei, revealed interlobular and some interzonal differences.These data indicate that nonadjacent cerebellar zones, sharing the same climbing fiber input and zebrin identity, also share a common mossy fiber input. Other cerebellar cortical regions that receive collaterals from the same mossy fibers usually also have the same zebrin signature. Together with the distribution of neurons in precerebellar centers, the findings suggest a revision of the modular hypothesis for information processing in the cerebellar cortex.
机译:传统上,苔藓纤维和攀缘纤维末端被认为在小脑皮质中具有非常不同的空间分布。但是,先前的解剖学研究尚未以足够的分辨率研究这两个主要的小脑输入,以证实这一假设。在这里,我们检查使用双向示踪霍乱毒素b亚基小脑注射到小脑后两种类型的小脑传入的抵押的详细模式。这些注射的皮层和区域位置的特征在于绘制攀爬纤维场的电位,逆行标记的橄榄神经元的分布以及浦肯野细胞的固有斑马纹模式。标记的攀爬纤维侧支呈纵条状分布,并始终伴有簇状在下面的颗粒层中标记的苔藓纤维花环。二维和三维重建以及定量分析表明,长满苔藓的纤维还分叉到通常在Purkinje细胞下方的其他条纹状区域,具有与注射部位和相关的攀缘纤维侧支相同的斑马蛋白阳性或斑马蛋白阴性特征。逆行标记的神经元在苔藓纤维的两个主要来源(网状外侧和桥状桥脑核)中的分布揭示了小叶间和一些区域间的差异,这些数据表明不相邻的小脑区共享相同的攀岩纤维输入和斑马星身份,也共享一个普通的苔藓纤维输入。从相同的苔藓纤维接受侧支的其他小脑皮质区域通常也具有相同的斑马蛋白特征。连同小脑前中心神经元的分布,研究结果表明对小脑皮层信息处理的模块化假设进行了修订。

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