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豹蛙胚胎后期、幼体期及变态期菱脑后膜室管膜间孔的发育

The development of interependymal pores in the rhombencephalic posterior tela in late embryonic, larval and metamorphosing stages of Rana pipiens.

作者信息

Jones H C, Jopling C A

出版信息

Brain Res. 1983 Apr;283(2-3):121-30. doi: 10.1016/0165-3806(83)90168-2.

Abstract

The structure of the roof of the fourth cerebral ventricle has been studied by scanning and transmission electron microscopy in Rana pipiens from the late embryonic stages, through the larval stages to metamorphosis. Stage 20 and 21 post-hatching embryos have a rhombencephalic roof consisting of undifferentiated embryonic cells. From embryonic stage 22-25 there is progressive differentiation into choroid plexus and posterior tela ependymal cells. Between 1 and 3 interependymal pores occur in the posterior tela and there is a small incipient subarachnoid space dorsal to the posterior tela. During the larval stages, total pore number increases with larval length in a curvilinear manner, with the steepest increase occurring in the latter part of the larval stages. By metamorphosis, total pore number (50-100) approaches that found previously in the adult amphibian. The diameter of individual pores ranges from 1 to 200 microns. Small pores are more numerous than large pores at all stages and both small and large pores become more numerous as development proceeds. Large pores may form by the fusion of two or more smaller pores. It is concluded that pore formation is a gradual process with its onset in the late embryonic stage and concurrent with the onset of choroid plexus and subarachnoid space development. It is suggested that the onset of CSF secretion and circulation may take place shortly after hatching.

摘要

通过扫描电子显微镜和透射电子显微镜,对从胚胎后期到幼体阶段再到变态期的牛蛙第四脑室顶的结构进行了研究。孵化后第20和21阶段的胚胎,其菱脑顶由未分化的胚胎细胞组成。从胚胎第22 - 25阶段开始,逐渐分化为脉络丛和后室管膜细胞。在后室管膜有1至3个室管膜间孔,后室管膜背侧有一个小的初始蛛网膜下腔。在幼体阶段,总孔数随幼体长度呈曲线增加,在幼体阶段后期增加最为陡峭。到变态时,总孔数(50 - 100个)接近先前在成年两栖动物中发现的数量。单个孔的直径范围为1至200微米。在所有阶段,小孔都比大孔多,并且随着发育的进行,小孔和大孔的数量都增加。大孔可能由两个或更多较小的孔融合形成。得出的结论是,孔的形成是一个渐进的过程,始于胚胎后期,与脉络丛和蛛网膜下腔的发育同时开始。有人认为,脑脊液分泌和循环可能在孵化后不久就开始了。

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