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控制金鱼视顶盖中其终末位置的视神经纤维之间的相互作用。

Interactions between optic fibres controlling the locations of their terminals in the goldfish optic tectum.

作者信息

Cook J E

出版信息

J Embryol Exp Morphol. 1979 Aug;52:89-103.

PMID:521756
Abstract

Removal of the caudal half of a goldfish optic tectum induces optic fibres from the entire contralateral retina to terminate retinotopically within the remaining half. This compression has been viewed by some as the result of competition between the fibres and by others as a consequence of changes, induced by the surgery, in tectal labels guiding fibres to terminal sites. To distinguish between these possibilities, the time-course of compression has been measured by electrophysiological mapping of the visual projection. In some fish, fibres terminating in the rostral half-tectum remained intact when the caudal half was removed. In others, the optic nerve was cut at the time of tectal surgery: even after its regeneration into a half-tectum, optic terminals were first detected in the regions they normally occupy. The subsequent reorganization was gradual and retinotopic order was maintained. However, it was slower where some fibres had never been cut. In a third series the nerve was cut 18 days before the tectal halving to reveal any dependence of compression on progressive changes in the halved tectum; but its time-course from nerve section was found to be independent of the time within the regeneration period at which the tectum was halved. In a fourth series the nerve was cut at the time of tectal halving and then cut again after 85--97 days when compression was complete to reveal any permanent change in the halved tectum. No change was evident: the previous compression did not preclude subsequent regeneration of an uncompressed projection and its gradual recompression as before. In a fifth series, repeated crushing of fibres normally ending in the missing caudal tectum temporarily prevented compression among the remainder, while crushing of fibres destined for rostral tectum caused transposition of the remaining projection to the rostral half. Surgically induced changes in the labels which are thought to guide growing fibres to their normal tectal regions do not account for these results. Indeed, this guidance persists unchanged for fibres regenerating a second time after compression. Since compression is delayed while certain fibres are withheld, it appears instead to be the direct result of competition between the fibres. The maintenance of retinotopic order in compression, despite unchanged tectal guidance, may require selective interactions between fibres from different retinal regions which could contribute to the refinement of the normal visual projection.

摘要

切除金鱼视顶盖的后半部分会促使来自整个对侧视网膜的视神经纤维在剩余的半侧视顶盖内按视网膜拓扑结构终止。一些人认为这种压缩是纤维之间竞争的结果,而另一些人则认为这是手术引起的视顶盖标记变化的结果,这些标记引导纤维到达终末位点。为了区分这些可能性,通过视觉投射的电生理图谱测量了压缩的时间进程。在一些鱼中,当切除后半侧视顶盖时,终止于前半侧视顶盖的纤维保持完整。在另一些鱼中,在视顶盖手术时切断视神经:即使视神经再生进入半侧视顶盖后,视终端最初仍在它们正常占据的区域被检测到。随后的重组是渐进的,并且视网膜拓扑顺序得以维持。然而,在一些纤维从未被切断的地方重组较慢。在第三个系列中,在视顶盖减半前18天切断神经,以揭示压缩是否依赖于减半视顶盖中的渐进性变化;但发现从神经切断开始的时间进程与视顶盖减半时再生期内的时间无关。在第四个系列中,在视顶盖减半时切断神经,然后在85 - 97天压缩完成后再次切断神经,以揭示减半视顶盖中是否有任何永久性变化。没有明显变化:先前的压缩并不排除未压缩投射的后续再生以及其如之前那样的逐渐重新压缩。在第五个系列中,对通常终止于缺失的后半侧视顶盖的纤维进行反复挤压,暂时阻止了其余纤维之间的压缩,而对注定要到达前半侧视顶盖的纤维进行挤压则导致剩余投射移位到前半侧。手术引起的被认为引导生长纤维到达其正常视顶盖区域的标记变化并不能解释这些结果。事实上,对于压缩后再次再生的纤维,这种引导保持不变。由于在某些纤维被抑制时压缩会延迟,所以压缩似乎反而直接是纤维之间竞争的结果。尽管视顶盖引导不变,但在压缩过程中视网膜拓扑顺序的维持可能需要来自不同视网膜区域的纤维之间的选择性相互作用,这可能有助于正常视觉投射的精细化。

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