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胚胎大鼠内囊、丘脑和大脑皮质细胞之间的连接

Connections between cells of the internal capsule, thalamus, and cerebral cortex in embryonic rat.

作者信息

Molnár Z, Cordery P

机构信息

University Laboratory of Physiology, University of Oxford, Oxford OX1 3PT, United Kingdom.

出版信息

J Comp Neurol. 1999 Oct 11;413(1):1-25. doi: 10.1002/(sici)1096-9861(19991011)413:1<1::aid-cne1>3.0.co;2-5.

Abstract

The aim of our study is to understand the development of the earliest connections in the mammalian pallium by documenting the distribution of cells and fibres labelled from the dorsal and ventral thalamus, internal capsule, perirhinal, and dorsal cortex during the period between embryonic day (E) 14 and 17 by using carbocyanine dye tracing in fixed embryonic rat brains. Dye placed in the thalamus of E14 brains backlabels cells in the thalamic reticular nucleus and within the primitive internal capsule. Both anterograde and retrograde tracing confirmed that the first corticofugal projections reach the internal capsule by E14. At E15-E16, after the first cortical plate cells have migrated into the lateral cortex, some cells of the cortical plate and subplate and marginal zone, are backlabelled from the internal capsule, but still not from the dorsal thalamus, even with very long incubation periods. Crystal placement into the perirhinal cortex at E14-E15 labels numerous cells within the internal capsule, whereas no such cells are revealed from dorsal cerebral cortex until E17, suggesting that internal capsule cells establish early connections with the perirhinal and ventral but not dorsal cortex. We propose that the growth of axons from cortex to dorsal thalamus is delayed in two regions: first from E14-E15 at the lateral entrance of the internal capsule and then, from E16, closer to the thalamus, probably within the thalamic reticular nucleus. Subplate projections reach the proximity of the diencephalon at an early stage, but they might never enter the dorsal thalamus.

摘要

我们研究的目的是,通过在固定的胚胎大鼠脑内使用花青染料示踪技术,记录胚胎第(E)14至17天期间,来自背侧和腹侧丘脑、内囊、梨状周皮质和背侧皮质的标记细胞和纤维的分布,从而了解哺乳动物大脑皮质最早连接的发育情况。将染料注入E14脑的丘脑可逆向标记丘脑网状核和原始内囊内的细胞。顺行和逆行示踪均证实,最早的皮质传出投射在E14时到达内囊。在E15 - E16,第一批皮质板细胞迁移到外侧皮质后,皮质板、亚板和边缘区的一些细胞可被内囊逆向标记,但即使孵育时间很长,仍不能被背侧丘脑逆向标记。在E14 - E15将晶体植入梨状周皮质可标记内囊内的大量细胞,而直到E17,大脑背侧皮质才出现这种标记细胞,这表明内囊细胞与梨状周皮质和腹侧皮质而非背侧皮质建立了早期连接。我们提出,从皮质到背侧丘脑的轴突生长在两个区域延迟:首先在E14 - E15时在内囊的外侧入口处,然后从E16开始,在更靠近丘脑的位置,可能在丘脑网状核内。亚板投射在早期到达间脑附近,但可能永远不会进入背侧丘脑。

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