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出生后早期发育过程中的选择性侧支消除限制了大鼠锥体束神经元的皮质分布。

Selective collateral elimination in early postnatal development restricts cortical distribution of rat pyramidal tract neurones.

作者信息

Stanfield B B, O'Leary D D, Fricks C

出版信息

Nature. 1982 Jul 22;298(5872):371-3. doi: 10.1038/298371a0.

Abstract

The pyramidal tract, comprising those axons which pass from the neocortex to the medulla and spinal cord, is among the most thoroughly studied projections of the mammalian cortex. Recent studies using anterograde axon tracing techniques have provided information concerning the time course of the growth of pyramidal tract fibres, yet much remains to be learned about its development. We have now begun to study the distribution of the neurones of origin of the pyramidal tract during the postnatal development of the rat neocortex using the recently introduced retrogradely transported fluorescent marker, True blue. During the first postnatal week, injections of True blue into the pyramidal decussation result inthe labelling of pyramidal tract neurones which are distributed virtually throughout the tangential extent of layer V of the neocortex, whereas after comparable injections during the fourth postnatal week the distribution of such cells is much more restricted and remains restricted into adult life. This developmental restriction is most dramatic in the occipital cortex: during the first postnatal week many pyramidal tract neurones are found throughout the visual cortex while none is seen in this area of the adult. When True blue is injected into the pyramidal decussation during the first postnatal week and the animals are allowed to survive until the fourth postnatal week, the distribution of pyramidal tract neurones is as widespread as in the immediate postnatal period and includes the entire visual cortex. This implies that many of the neurones in the occipital cortex initially send a collateral into the pyramidal tract which is later eliminated, although the neurones themselves persist. These findings, together with similar recent observations on the development of the callosal connections, indicate that the elimination of axon collaterals may be a general feature of the development of cortical projection systems, and that such transitory collaterals may traverse considerable distances.

摘要

锥体束由从新皮质通向延髓和脊髓的轴突组成,是哺乳动物皮质中研究最为深入的投射之一。最近使用顺行轴突追踪技术的研究提供了有关锥体束纤维生长时间进程的信息,但关于其发育仍有许多有待了解之处。我们现在开始使用最近引入的逆行运输荧光标记物真蓝,研究大鼠新皮质出生后发育过程中锥体束起源神经元的分布。在出生后的第一周,将真蓝注射到锥体交叉中会导致锥体束神经元被标记,这些神经元实际上分布在新皮质第V层的整个切线范围内,而在出生后第四周进行类似注射后,此类细胞的分布则受到更多限制,并在成年期一直保持受限状态。这种发育限制在枕叶皮质最为显著:在出生后的第一周,整个视觉皮质都能发现许多锥体束神经元,而在成年动物的这个区域则看不到。当在出生后的第一周将真蓝注射到锥体交叉中,并让动物存活到出生后第四周时,锥体束神经元的分布与出生后即刻一样广泛,包括整个视觉皮质。这意味着枕叶皮质中的许多神经元最初会向锥体束发出一个侧支,这个侧支随后会被消除,尽管神经元本身会持续存在。这些发现,连同最近关于胼胝体连接发育的类似观察结果,表明轴突侧支的消除可能是皮质投射系统发育的一个普遍特征,而且这种短暂的侧支可能会穿越相当长的距离。

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