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由压力阻断导致的猫视神经纤维的选择性变性。

Selective degeneration of optic nerve fibres in the cat produced by a pressure block.

作者信息

Burke W, Cottee L J, Garvey J, Kumarasinghe R, Kyriacou C

出版信息

J Physiol. 1986 Jul;376:461-76. doi: 10.1113/jphysiol.1986.sp016164.

Abstract

Using a technique described previously, we have applied pressure to the optic nerve of a cat sufficient to cause conduction block of the t1 response (the response of the Y optic nerve fibres). A greater pressure, usually sufficient to cause a transient block of the t2 response (the response of the X fibres), leads to degeneration of the Y axons caudal to the block. This is demonstrated by the disappearance of the t1 response in this region after 4-5 days and by the presence in electron micrographs of degenerating large (Y) fibres. Some small fibres also show degeneration, but the medium (X) fibres are largely spared. The time course of loss of response in the Y fibres is similar whether the loss is due to a pressure block or to enucleation, suggesting that the pressure block as used by us causes a disruption of the axon. If the pressure is great enough to block part of the t2 response (X fibres) there is also a similarity in time course of loss of response to that following enucleation. Both for the enucleated and the pressure-blocked cat the t2 response fails about 1 day before the t1 response. This is in apparent disagreement with the morphological findings in the literature, confirmed here, indicating an earlier degeneration of the larger fibres. The post-synaptic response in the lateral geniculate nucleus to the t1 input (the r1 response) also fails about 1 day before the t1 response. In the visual cortex the loss of the r1 response reveals more clearly than is normally possible an r2 response, the response of the X optic radiation fibres. The response in the optic nerve or tract to a bright flash of light is dominated by the response of the Y fibres. When these are blocked the response is greatly reduced.

摘要

运用先前描述的技术,我们对猫的视神经施加压力,足以导致t1反应(Y视神经纤维的反应)传导阻滞。更大的压力,通常足以导致t2反应(X纤维的反应)短暂阻滞,会导致阻滞部位尾侧的Y轴突发生退变。这在4 - 5天后该区域t1反应消失以及电子显微镜下出现退变的大(Y)纤维中得到证实。一些小纤维也显示退变,但中等(X)纤维基本未受影响。Y纤维反应丧失的时间进程,无论这种丧失是由于压力阻滞还是眼球摘除,都是相似的,这表明我们所使用的压力阻滞导致了轴突的中断。如果压力大到足以阻滞部分t2反应(X纤维),其反应丧失的时间进程也与眼球摘除后的相似。对于眼球摘除和压力阻滞的猫,t2反应都比t1反应提前约1天消失。这显然与文献中的形态学发现不一致,此处也得到了证实,文献表明较大纤维更早退变。外侧膝状核中对t1输入的突触后反应(r1反应)也比t1反应提前约1天消失。在视觉皮层中,r1反应的丧失比正常情况更清楚地揭示了r2反应,即X视辐射纤维的反应。视神经或视束对强光闪烁的反应主要由Y纤维的反应主导。当这些纤维被阻滞时,反应会大大减弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfc4/1182809/bbfb3b297b6a/jphysiol00550-0482-a.jpg

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