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Prenatal formation of cortical input and development of cytoarchitectonic compartments in the neostriatum of the rhesus monkey

机译:猕猴新纹状体的皮质输入的产前形成和细胞结构隔室的发育

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摘要

The timing, hemispheric laterality, and mode of termination of input from the prefrontal association cortex to the neostriatum were studied in fetal and neonatal rhesus monkeys using autoradiography for tracing connections. In addition, the cytological maturation of the neostriatum was examined in Nissl-stained sections from the same and other monkeys of selected prenatal and postnatal ages. A small contingent of corticostriatal axons reaches both the caudate nucleus and the putamen by the 69th embryonic day (E69) of the 165-day gestation period in this species and steadily expands over the next 3 fetal months. Throughout this period, ipsilateral perfrontostriatal connections predominate, and only a small and variable amount of label is detectable over the contralateral neostriatum. A major feature of the developing corticostriatal projection is a transfiguration in the distribution of its terminals: from E69 to E95, cortical terminals are distributed uniformly among neostriatal neurons; beginning around E105, areas of higher and lower grain density begin to emerge until finally, by E133, 250- to 500-micrometers-wide circular and elliptically shaped label- free cores perforate a field of densely labeled cortical terminals as in the neostriatum of the adult monkey (Goldman, P. S., and W. J. H. Nauta (1977) J. Comp. Neurol. 171: 369–386). The cytoarchitectonic composition of the neostriatum also changes during gestation: from E69 through E95, the small postmitotic neurons of the immature neostriatum are packed densely and, for the most part, are distributed homogeneously; by E105, they become segregated into cellular islands consisting of densely packed neurons that are encapsulated by fiber- rich annuli and embedded in a matrix of less densely arrayed neurons. The shape and size of the islands in Nissl-stained sections correspond to label-free cores in autoradiograms of fetuses with cortical injections, while the surrounding annuli and adjacent matrix cells correspond to areas of dense accumulation of label. Thus, the formation of the corticostriatal projection in primates involves a transformation in the distribution of ingrowing terminals synchronized with changes in cellular organization of the neostriatum.
机译:使用放射自显影技术在胎儿和新生恒河猴中研究了时间,半球偏侧性以及从额叶前额皮层到新纹状体输入的终止方式。另外,在来自选定产前和产后年龄的同一只和其他猴子的尼氏染色切片中检查了新纹状体的细胞学成熟度。在该物种的165天妊娠期的第69个胚胎天(E69)之前,一小批皮质上皮轴突到达尾状核和壳状核,并在接下来的三个胎儿月中稳定扩增。在此期间,同侧前额窦连接占主导地位,在对侧新纹状体上仅可检测到少量且数量可变的标记。皮质前突投射的发展的主要特征是其末端分布的变形:从E69到E95,皮质末端在新纹状体神经元之间均匀分布。在E105周围开始出现较高和较低晶粒密度的区域,直到最后,到E133为止,宽250至500微米的圆形和椭圆形的无标签芯穿透了一个密集标记的皮质末端区域,就像在新纹状体中一样成年猴子(Goldman,PS,and WJH Nauta(1977)J. Comp。Neurol。171:369–386)。妊娠期新纹状体的细胞结构组成也发生变化:从E69到E95,未成熟新纹状体的小的有丝分裂后神经元密密麻麻地堆积,并且大部分均匀地分布。通过E105,它们被隔离到由密集堆积的神经元组成的细胞岛中,这些神经元被富含纤维的环囊包裹,并嵌入到排列密度较小的神经元矩阵中。 Nissl染色部分中岛的形状和大小对应于皮层注射胎儿放射自显影照片中无标记的核心,而周围的环空和邻近的基质细胞对应于标记密集堆积的区域。因此,在灵长类中的皮质口突起的形成涉及向内生长的末端的分布的转变,其与新纹状体的细胞组织的变化同步。

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