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人类胚胎中头侧神经孔的双向闭合

Bidirectional closure of the rostral neuropore in the human embryo.

作者信息

O'Rahilly R, Müller F

机构信息

Carnegie Laboratories of Embryology, University of California, Davis.

出版信息

Am J Anat. 1989 Apr;184(4):259-68. doi: 10.1002/aja.1001840402.

Abstract

The length of each neuropore was measured in 23 human embryos of stages 10-12 (about 22-26 days), and the closure of the lips of the rostral neuropore was studied in 24 embryos of stage 11 (about 24 days), with particular reference to the terminal lip. Graphic reconstructions were prepared from two particularly suitable examples, and mitotic figures were plotted for one of these. The lengths of the rostral and caudal neuropores are basically similar, but the rostral opening closes 1 day earlier and more abruptly (within a few hours) than the caudal (which takes a day). Closure of the rostral neuropore in the human embryo is bidirectional, proceeding simultaneously from 1) midbrain and diencephalon 2 and 2) the telencephalic region adjacent to the chiasmatic plate. Species differences are emphasized. Closure at the terminal lip of the neuropore is by fusion of right and left neural folds, as occurs elsewhere during primary neurulation. The rostral end of the neural plate in the median plane is, in the human embryo, at the rostral limit of the chiasmatic plate. Histological differences, however, exist between closure at the terminal lip and that at the dorsal lip: the surface epithelium plays a more significant role at the terminal lip, and the seam is more visible and presumably stronger. In future anencephaly it has been found that fusion at the terminal lip may occur, although that at the dorsal lip is deficient.

摘要

在23个10 - 12期(约22 - 26天)的人类胚胎中测量了每个神经孔的长度,并在24个11期(约24天)的胚胎中研究了头侧神经孔唇的闭合情况,特别关注终末唇。从两个特别合适的例子制作了图形重建,并为其中一个绘制了有丝分裂图。头侧和尾侧神经孔的长度基本相似,但头侧开口比尾侧(需要一天时间)提前1天且更突然地(在几小时内)闭合。人类胚胎头侧神经孔的闭合是双向的,同时从1)中脑和间脑2以及2)与视交叉板相邻的端脑区域开始。强调了物种差异。神经孔终末唇的闭合是通过左右神经褶的融合,这与初级神经胚形成过程中其他部位的情况相同。在人类胚胎中,神经板在正中平面的头端位于视交叉板的头端界限处。然而,终末唇和背侧唇的闭合在组织学上存在差异:表面上皮在终末唇发挥更重要的作用,并且接缝更明显且可能更强。在未来无脑儿的情况中,已发现终末唇可能会发生融合,尽管背侧唇的融合存在缺陷。

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