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大鼠小脑前核的发育:III. 小脑前壁外迁移流以及外侧网状核和楔外核

Development of the precerebellar nuclei in the rat: III. The posterior precerebellar extramural migratory stream and the lateral reticular and external cuneate nuclei.

作者信息

Altman J, Bayer S A

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Comp Neurol. 1987 Mar 22;257(4):513-28. doi: 10.1002/cne.902570404.

Abstract

Sequential thymidine radiograms from rats injected on day E15 and killed thereafter at daily intervals up to day E22 were analyzed to trace the migratory routes and settling patterns of neurons of the lateral reticular nucleus and the external cuneate nucleus. The neurons of the lateral reticular and external cuneate nuclei originate in the primary precerebellar neuroepithelium at the same site as the inferior olivary neurons but follow a different migratory route. The labeled young neurons that are produced on day E15 (the last one-third of the total) join the posterior precerebellar extramural migratory stream. The cells move circumferentially over the wall of the medulla in a ventral direction and by day E17 reach the midline and cross it beneath the inferior olive. The crossing cells apparently continue to migrate circumferentially on the opposite side. One complement of these cells begins to form a ventrolateral extramural condensation on day E19. By day E20 some cells begin to penetrate the parenchyma and settle as neurons of the lateral reticular nucleus. The settling of the lateral reticular neurons continues on the following day, and by day E22 all the cells destined for the lateral reticular nucleus have penetrated the parenchyma. A dorsomedial-to-ventrolateral neurogenetic gradient is indicated for the settling lateral reticular neurons. Another complement of migrating cells continues dorsally and forms a condensation on day E19 that we interpret as the external cuneate component of the crossed stream. These cells begin to penetrate the parenchyma on day E20, and by days E21 and E22 two components of the external cuneate nucleus are identifiable-the dorsal and ventral external cuneate nuclei. The neurons of the lateral reticular and external cuneate nuclei differ from neurons of all the other precerebellar nuclei in that their cerebellar projection is predominantly ipsilateral. We speculate that the axons of all precerebellar neurons are genetically specified to cross the midline ventrally to provide a contralateral efferent projection, but this is modified in the case of the ipsilaterally projecting lateral reticular and external cuneate neurons by the cell bodies following their neurites to the opposite side.

摘要

分析了在胚胎第15天(E15)注射的大鼠的连续胸苷放射自显影片,这些大鼠此后每天处死直至E22天,以追踪外侧网状核和楔外核神经元的迁移途径和定居模式。外侧网状核和楔外核的神经元起源于与下橄榄核神经元相同部位的初级小脑前神经上皮,但遵循不同的迁移途径。在E15天产生的标记年轻神经元(占总数的最后三分之一)加入小脑后外侧壁外迁移流。细胞沿延髓壁腹侧周向移动,到E17天时到达中线并在下橄榄核下方穿过中线。穿过中线的细胞显然继续在对侧周向迁移。这些细胞中的一部分在E19天开始在腹外侧壁外形成凝聚。到E20天时,一些细胞开始穿透实质并作为外侧网状核的神经元定居。外侧网状核神经元的定居在接下来的一天继续,到E22天时,所有注定要进入外侧网状核的细胞都已穿透实质。外侧网状核定居神经元显示出从背内侧到腹外侧的神经发生梯度。另一部分迁移细胞继续向背侧移动,并在E19天形成一个凝聚,我们将其解释为交叉流的楔外核成分。这些细胞在E20天开始穿透实质,到E21天和E22天时,楔外核的两个成分可被识别——背侧楔外核和腹侧楔外核。外侧网状核和楔外核的神经元与所有其他小脑前核的神经元不同,因为它们向小脑的投射主要是同侧的。我们推测,所有小脑前神经元的轴突在基因上被指定为腹侧穿过中线以提供对侧传出投射,但在同侧投射的外侧网状核和楔外核神经元的情况下,细胞体会跟随其神经突到对侧,从而改变这种情况。

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