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Structural basis of cerebellar microcircuits in the rat

机译:大鼠小脑微电路的结构基础

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摘要

The topography of the cerebellar cortex is described by at least three different maps, with the basic units of each map termed "microzones," "patches," and "bands." These are defined, respectively, by different patterns of climbing fiber input, mossy fiber input, and Purkinje cell (PC) phenotype. Based on embryological development, the "one-map" hypothesis proposes that the basic units of each map align in the adult animal and the aim of the present study was to test this possibility. In barbiturate anesthetized adult rats, nanoinjections of bidirectional tracer (Retrobeads and biotinylated dextran amine) were made into somatotopically identified regions within the hindlimb C1 zone in copula pyramidis. Injection sites were mapped relative to PC bands defined by the molecular marker zebrin II and were correlated with the pattern of retrograde cell labeling within the inferior olive and in the basilar pontine nuclei to determine connectivity of microzones and patches, respectively, and also with the distributions of biotinylated dextran amine-labeled PC terminals in the cerebellar nuclei. Zebrin bands were found to be related to both climbing fiber and mossy fiber inputs and also to cortical representation of different parts of the ipsilateral hindpaw, indicating a precise spatial organization within cerebellar microcircuitry. This precise connectivity extends to PC terminal fields in the cerebellar nuclei and olivonuclear projections. These findings strongly support the one-map hypothesis and suggest that, at the microcircuit level of resolution, the cerebellar cortex has a common plan of spatial organization for major inputs, outputs, and PC phenotype.
机译:小脑皮层的地形由至少三个不同的图来描述,每个图的基本单位称为“微区”,“斑块”和“带”。这些分别由攀爬纤维输入,苔藓纤维输入和浦肯野细胞(PC)表型的不同模式定义。基于胚胎学的发展,“单图”假说提出了成年动物中每张图的基本单位对齐,而本研究的目的是检验这种可能性。在巴比妥酸盐麻醉的成年大鼠中,将双向示踪剂(Retrobeads和生物素化的右旋糖酐胺)的纳米注射剂制成在copcopella pyramidis后肢C1区内的体位识别区域。相对于分子标记物zebrin II定义的PC谱带绘制注射位点,并与橄榄下部和桥脑基底核内逆行细胞标记的模式相关,分别确定微区和斑块的连通性,并与分布相关小分子核中生物素化的葡聚糖胺标记的PC末端发现Zebrin带与攀爬纤维和苔藓纤维的输入有关,也与同侧后爪的不同部分的皮质表示有关,表明小脑微电路内有精确的空间组织。这种精确的连通性扩展到小脑核和卵核投射中的PC末端区域。这些发现强烈支持一图假设,并表明,在分辨率的微电路水平上,小脑皮层对于主要输入,输出和PC表型具有共同的空间组织计划。

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