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在视网膜膝状体轴突分离期间双眼反应丧失及视网膜会聚减少。

Loss of binocular responses and reduced retinal convergence during the period of retinogeniculate axon segregation.

作者信息

Ziburkus Jokubas, Guido William

机构信息

Department of Anatomy and Neurobiology, Virginia Commonwealth University School of Medicine, 1101 E. Marshall St., Richmond, VA 23298-0709, USA.

出版信息

J Neurophysiol. 2006 Nov;96(5):2775-84. doi: 10.1152/jn.01321.2004. Epub 2006 Aug 9.

Abstract

In the developing mammalian visual system, axon terminals from the two eyes overlap in the dorsal lateral geniculate nucleus (LGN) but then undergo a period of refinement and segregate to form distinct eye-specific domains. We report on the changes in synaptic transmission that occur in rodent LGN during the period of retinogeniculate axon segregation by using anterograde labeling techniques in conjunction with an in vitro preparation where large segments of each optic nerve are preserved. Anterograde labeling of retinal projections in early postnatal day (P) rats with cholera toxin beta subunit indicated an age-related recession in uncrossed retinal projections. Between P2 and P5 uncrossed projections occupied as much as 50% of the LGN and overlapped substantially with crossed projections. Between the first and second postnatal week uncrossed projections receded, so by P14 they assumed an adultlike profile occupying 15-20% of LGN and showed little or no overlap with crossed projections. The postsynaptic responses of LGN cells evoked by the separate stimulation of each optic nerve indicated that before P14, many relay cells were binocularly innervated and received at least four to six inputs from each eye. However, these features of retinogeniculate connectivity were transient and their attrition occurred in concert with a retraction of retinal arbors into nonoverlapping, eye-specific regions. By P18 cells were monocularly innervated and received input from one to three retinal ganglion cells. These results provide a better understanding of the underlying changes in synaptic circuitry that occur during the anatomical segregation of retinal inputs into eye-specific territories.

摘要

在发育中的哺乳动物视觉系统中,来自双眼的轴突终末在背外侧膝状核(LGN)中重叠,但随后会经历一段精细化过程并分离,形成不同的眼特异性区域。我们通过使用顺行标记技术结合一种体外制备方法(其中每条视神经的大部分都得以保留),报告了在视网膜膝状体轴突分离期间啮齿动物LGN中发生的突触传递变化。用霍乱毒素β亚基对出生后早期(P)大鼠的视网膜投射进行顺行标记,结果表明未交叉的视网膜投射存在与年龄相关的退缩。在P2至P5之间,未交叉的投射占据LGN多达50%,并与交叉投射大量重叠。在出生后的第一周和第二周之间,未交叉的投射退缩,因此到P14时,它们呈现出类似成年的形态,占据LGN的15 - 20%,并且与交叉投射几乎没有重叠。分别刺激每条视神经所诱发的LGN细胞的突触后反应表明,在P14之前,许多中继细胞接受双眼支配,并且从每只眼睛至少接收四到六个输入。然而,视网膜膝状体连接的这些特征是短暂的,它们的减少与视网膜树突回缩到不重叠的、眼特异性区域同时发生。到P18时,细胞接受单眼支配,并从一到三个视网膜神经节细胞接收输入。这些结果有助于更好地理解在视网膜输入解剖分离成眼特异性区域的过程中突触回路发生的潜在变化。

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