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猫视网膜膝状体通路中功能连接的产前发育。

Prenatal development of functional connections in the cat's retinogeniculate pathway.

作者信息

Shatz C J, Kirkwood P A

出版信息

J Neurosci. 1984 May;4(5):1378-97. doi: 10.1523/JNEUROSCI.04-05-01378.1984.

Abstract

The development of functional connections between the axons of retinal ganglion cells and the neurons of the dorsal lateral geniculate nucleus (LGNd) of fetal and neonatal cats was studied using an in vitro assay. Extracellular microelectrode recordings of single units were made from histologically identified sites in the LGNd of isolated diencephalon preparations between embryonic day 39 ( E39 ) and postnatal day 2 (P2). (Gestation is 65 days in the cat.) Postsynaptic units activated by electrical stimulation of one or both optic nerves were found at all ages tested from E39 onwards. Over 90% of the units studied in the fetal preparations received convergent excitation from both optic nerves, compared with roughly half of the units studied in the neonatal optic nerves, compared with roughly half of the units studied in the neonatal preparations. Inhibition was detected in the LGNd of the neonatal preparations, but in only the oldest of the fetal preparations ( E59 ). This physiological change from predominantly convergent excitation to an adult-like mixture of excitation and inhibition seen at birth coincides with the change from mixed to segregated afferent input from the two eyes seen anatomically ( Shatz , C. J. (1983) J. Neurosci . 3: 482-499). These results indicate that attainment of the adult pattern of retinogeniculate connectivity involves the elimination of already functional synapses.

摘要

利用体外试验研究了胎儿和新生猫视网膜神经节细胞轴突与背外侧膝状核(LGNd)神经元之间功能连接的发育情况。在胚胎第39天(E39)至出生后第2天(P2)之间,从分离的间脑制剂的LGNd中通过组织学鉴定的部位进行单细胞的细胞外微电极记录。(猫的妊娠期为65天。)从E39开始的所有测试年龄中,均发现通过电刺激一条或两条视神经激活的突触后单位。在胎儿制剂中研究的超过90%的单位接受来自两条视神经的会聚性兴奋,相比之下,在新生制剂中研究的单位约有一半是这样。在新生制剂的LGNd中检测到抑制作用,但仅在最老的胎儿制剂(E59)中检测到。从主要是会聚性兴奋到出生时出现的类似成人的兴奋与抑制混合的这种生理变化,与从解剖学上看到的来自双眼的混合传入输入到分离传入输入的变化相吻合(沙茨,C.J.(1983年)《神经科学杂志》3:482 - 499)。这些结果表明,视网膜膝状体连接的成人模式的实现涉及到对已经具有功能的突触的消除。

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The prenatal development of the cat's retinogeniculate pathway.猫视网膜膝状体通路的产前发育。
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