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Cerebellar cortical neurons misplaced in the white matter due to disturbed migration during development of human brain

机译:小脑皮质神经元在白质中因人脑发育过程中的迁移受干扰而错位

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The normal laminar organisation of the cerebellar cortex is the result of the precisely controlled migration, differentiation and maturation of the neurons. Occasionally the migrating neurons lose their proper way of migration and form nests of grey matter in the improper place. The aim of this study was to investigate the morphological features of the lost neurons in the cerebellar white matter during development, with particular emphasis on their localisation, arrangement and differentiation. We analyzed 31 fetal and infantile brains, aged from 28 gestational weeks to 18 postnatal months. We observed different morphological patterns of cerebellar heterotopias. Clusters of grey matter reflecting the cerebellar cortical pattern with well-defined molecular layer and altered granular and Purkinje cells were most frequently observed. The compact heterotopias were composed of bands or whirls of spindle and round granule cells situated closely together, while Purkinje neurons were completely disorganised. The ectopic cortex in the white matter with a normal layered structure containing all the components of the cerebellar cortex was localised by the large vessels. Aggregations of Purkinje cells scattered in the white matter without accompanying granule cells were observed. The evaluation of the biological features of the misplaced cerebellar cortical components showed high activity of neurons.
机译:小脑皮质的正常层状组织是精确控制的神经元迁移,分化和成熟的结果。有时,迁移的神经元失去了正确的迁移方式,并在不适当的地方形成了灰质的巢。这项研究的目的是调查在发展过程中小脑白质中丢失的神经元的形态特征,特别是它们的定位,排列和分化。我们分析了31个胎儿和婴儿的大脑,年龄从28个孕周到出生后18个月。我们观察到小脑异位症的不同形态学模式。最常观察到的灰色物质簇反映了小脑皮质模式,并具有明确的分子层以及改变的颗粒细胞和浦肯野细胞。紧密的异位症由紧密排列在一起的纺锤体和圆形颗粒细胞的条带或漩涡组成,而浦肯野神经元则完全杂乱无章。白质中的异位皮层具有正常的层状结构,其中包含小脑皮层的所有组成部分,位于大血管内。观察到分散在白质中而没有伴随颗粒细胞的浦肯野细胞聚集。小脑皮层组件错位的生物学特征的评估显示神经元的高活性。

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