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SYNAPTIC PLASTICITY AND COMPETITION DURING OPTIC REGENERATION IN GOLDFISH TECTUM.

机译:金鱼的视神经再生过程中的突触可塑性和竞争。

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摘要

The regenerating optic projection in goldfish is a model system for studying how patterned synaptic connections are made. Ultrastructural studies are described which examine synapse formation and fiber outgrowth on tectum during optic regeneration. These were done in order to identify possible mechanisms by which the initially diffuse optic projection is spatially restricted between 30 and 60 days. An improved horseradish peroxidase labeling protocol was developed to label regenerating optic fibers on tectum and a column sampling method was used to examine the laminar distribution of optic afferents in the primary optic innervation layer of normal fish and fish regenerating for 14-240 days. Optic and non-optic fibers and synapses per column were then quantified. Two further experiments in fish regenerating during the elimination of impulse activity using tetrodotoxin (TTX) or after tectal ablation were then done to examine how the number of optic synapses is regulated.;These findings indicate optic synapses are rearranging during map refinement. This rearrangement appears to be the consequence of the elimination of optic fibers and not due to map refinement, because optic fibers were similarly eliminated under impulse blockade when map refinement has previously been shown to be inhibited with TTX. This evinces that activity determines the final outcome of synapse rearrangment. The synaptic counts in half tectum indicate that the number of postsynaptic sites available to optic fibers is constrained by tectum. Thus, regenerating optic fibers are apparently competing for a fixed number of these sites. The data are consistent with the hypothesis that these sites are made available when some optic fibers are eliminated.;Labeling showed that synaptogenesis was rapid and most optic fibers were fasciculated. Counts showed that normal numbers of optic synapses were made at 30, 60 and 240 days even though numbers of optic fibers were 9-10 times normal at 30 days and 4-5 times normal at 60 and 240 days. This was found to be unaffected by neural impulse blockade. The optic projection compressed onto half tectum also showed normal numbers of optic synapses per column indicating that about half the normal number of optic synapses is made on half tectum.
机译:金鱼中的再生光学投影是一个模型系统,用于研究如何形成图案化的突触连接。描述了超结构研究,该研究检查了视神经再生过程中顶突在突触上的形成和纤维的生长。这样做是为了确定可能的机制,通过这些机制,最初的漫射光学投影在30到60天之间会受到空间限制。开发了一种改进的辣根过氧化物酶标记方案,以标记再生的光纤在顶盖上,并使用柱采样方法检查正常鱼的初级视神经支配层中视传入神经的层状分布,并再生了14-240天。然后定量每列的光纤和非光纤和突触。然后进行了两项进一步的实验,以检验在使用河豚毒素(TTX)消除冲动活动期间或在顶盖消融后鱼类再生的过程,以检查视神经突触的数量是如何调节的;这些发现表明视神经突触在地图细化过程中正在重新排列。这种重新排列似乎是消除光纤的结果,而不是归因于地图细化,因为先前已显示出地图细化受到TTX抑制时,在脉冲阻滞下类似地消除了光纤。这表明活动决定了突触重排的最终结果。处于半顶盖的突触计数表明,光纤可利用的突触后位点的数量受到顶盖的限制。因此,再生光纤显然在竞争这些位置的固定数量。数据与以下假设相吻合:当消除某些光纤时,这些位点可用。标签显示突触发生迅速并且大多数光纤都被束缚。计数显示,在30、60和240天时,视神经突触的数目正常,即使在30天时,视神经纤维的数目是正常的9-10倍,在60和240天时视神经的数目是正常的4-5倍。发现这不受神经冲动阻滞的影响。压缩到半个顶盖上的光学投影也显示出每列正常的视神经突触数量,这表明在一半的顶盖上产生了约一半正常数目的视神经突触。

著录项

  • 作者

    HAYES, WILLIAM PAR.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Neurosciences.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 354 p.
  • 总页数 354
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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