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首页> 外文期刊>The Journal of Comparative Neurology >Postnatal development and adult organisation of the olivocerebellar projection map in the hypogranular cerebellum of the rat.
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Postnatal development and adult organisation of the olivocerebellar projection map in the hypogranular cerebellum of the rat.

机译:鼠下丘小脑的小脑投射图的产后发育和成年组织。

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摘要

The olivocerebellar system is characterised by a precise topographical organisation, in which distinct subsets of inferior olivary axons project to neurochemically heterogeneous Purkinje cell subpopulations, arranged into parasagittally oriented compartments in the cerebellar cortex. Adult climbing fibres and Purkinje cells are linked by a one-to-one relationship, which is established during postnatal development after a transitory phase of multiple climbing fibre innervation. The elimination of redundant climbing fibre synapses is thought to be regulated by granule cell-mediated activity-dependent processes. In order to assess whether this developmental remodelling is also important for the construction of the mature olivocerebellar projection map, we examined the hypogranular cerebella of rats treated by means of methylazoxymethanol acetate (MAM) during early postnatal life, in which multiple climbing fibre innervation persists in the adult. In these animals we investigated the distribution of calcitonin gene-related peptide (CGRP)-immunoreactive olivocerebellar axons and arbours during early postnatal development, and the correspondence between climbing fibre strips and zebrin II-defined Purkinje cell bands in the adult. Our results show that: (1) the pattern of CGRP-immunoreactive climbing fibres observed during the first three postnatal weeks is not disrupted after granule cell degeneration; and (2) the alignment between olivocerebellar axon subsets and zebrin II+/- Purkinje cell compartments is normally achieved in adult rats. In contrast, the climbing fibre-Purkinje cell relationship is abnormal, and single arbours innervate restricted dendritic regions of several neighbouring target neurons. These results indicate that the normal distribution of olivocerebellar axon subsets to distinct cerebellar cortical compartments can be established independently from granule cell-mediated remodelling processes. Thus, the postnatal climbing fibre plasticity, which is needed to achieve the normal climbing fibre-Purkinje cell relationship, appears to be confined within the framework of a projection map established during earlier developmental phases.
机译:少小脑系统的特征是具有精确的地形组织,其中下橄榄轴突的不同子集投射到神经化学异质的Purkinje细胞亚群中,这些小亚群被排列在小脑皮层的翼旁定向隔室中。成人攀岩纤维和浦肯野细胞之间是一对一的联系,这种关系是在多个攀岩纤维神经支配的过渡阶段之后的产后发育过程中建立的。多余的攀登纤维突触的消除被认为是由颗粒细胞介导的活性依赖性过程调节的。为了评估这种发育重塑对于成熟的小盂小球投影图的构建是否也很重要,我们检查了出生后早期使用乙酸甲基丙二氧基甲醇酯(MAM)治疗的大鼠的小脑小脑,其中多个攀爬神经支配持续成人。在这些动物中,我们调查了降钙素基因相关肽(CGRP)免疫反应性小脑小轴突和树突在出生后早期发育中的分布,以及成年攀爬纤维条和Zebrin II定义的Purkinje细胞带之间的对应关系。我们的结果表明:(1)出生后前三周观察到的CGRP免疫反应性攀爬纤维的形态在颗粒细胞变性后没有被破坏; (2)在成年大鼠中通常实现小脑轴突亚群与zebrin II +/- Purkinje细胞区室之间的对齐。相比之下,攀登纤维-Purkinje细胞关系异常,单个树突神经支配几个相邻目标神经元的受限树突区域。这些结果表明,可以独立于颗粒细胞介导的重塑过程来建立小脑轴突亚群至不同小脑皮质区室的正态分布。因此,实现正常的攀爬纤维-Purkinje细胞关系所需的产后攀爬纤维可塑性似乎局限于早期发育阶段建立的投影图的框架内。

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