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金鱼正常和去神经支配视盖中的自发爆发和长期局部相关性。

Spontaneous bursting and long-lived local correlation in normal and denervated tectum of goldfish.

作者信息

Lyckman A W, Meyer R L

机构信息

Developmental and Cell Biology, University of California, Irvine 92717-2275.

出版信息

J Neurobiol. 1995 Jan;26(1):109-18. doi: 10.1002/neu.480260109.

Abstract

The formation of fine retinotopic order by growing optic fibers in the goldfish is thought to be mediated by the correlated firing of optic fibers from neighboring retinal ganglion cells. Although the activity of the tectal cells must also be important for this activity-dependent refinement, few studies have analyzed the pattern and local correlation of the intrinsic activity of tectal neurons and the effect of denervation on this activity. To address this issue, spontaneous (nonoptic driven) activity was analyzed and cross-correlograms were computed between individual tectal neurons using single and double electrode extracellular recordings. Recordings were made in normally innervated tectum in which the contribution of optic activity was eliminated by short-term intraocular blockade with tetrodotoxin and in denervated tecta in which the optic nerve had been severed several weeks prior. Several observations were relevant to activity-dependent refinement: First, coupling between neighboring tectal cells is weak. Second, the time duration for local correlation is relatively long, as long as 200 ms. Third, tectal neurons exhibit spontaneous bursting. Fourth, denervation increased the level of spontaneous activity in the tectum. The increased spontaneous activity and bursting following denervation implies that tectal neurons are more excitable when optic fibers are beginning to reinnervate the tectum. This could make it possible for optic fibers to drive tectal neurons at a time when their input to individual neurons is severely weakened by a lack of spatial convergence. The weak coupling between tectal cells and the consequent long-time constant for correlated activity implies a constraint on the duration of correlated retinal activity that is used for activity-dependent refinement. Since optic fibers likely need to detect the postsynaptic activity of a local group of tectal neurons, rather than that of a single neuron, the long tectal time constant means that retinal activity need not be correlated with precision much better than 200 ms because the postsynaptic circuitry cannot generate shorter correlations.

摘要

金鱼中生长的视神经纤维形成精细的视网膜拓扑顺序被认为是由相邻视网膜神经节细胞的视神经纤维的相关放电介导的。尽管顶盖细胞的活动对于这种依赖活动的精细化也一定很重要,但很少有研究分析顶盖神经元内在活动的模式和局部相关性以及去神经支配对这种活动的影响。为了解决这个问题,使用单电极和双电极细胞外记录分析了自发(非视觉驱动)活动,并计算了单个顶盖神经元之间的互相关图。记录在正常支配的顶盖中进行,其中通过用河豚毒素进行短期眼内阻断消除了视觉活动的贡献,以及在去神经支配的顶盖中进行,其中视神经在数周前已被切断。有几个观察结果与依赖活动的精细化相关:第一,相邻顶盖细胞之间的耦合较弱。第二,局部相关性的持续时间相对较长,长达200毫秒。第三,顶盖神经元表现出自发爆发。第四,去神经支配增加了顶盖中自发活动的水平。去神经支配后自发活动和爆发的增加意味着当视神经纤维开始重新支配顶盖时,顶盖神经元更易兴奋。这使得视神经纤维有可能在其对单个神经元的输入因缺乏空间汇聚而严重减弱时驱动顶盖神经元。顶盖细胞之间的弱耦合以及相关活动的相应长时间常数意味着对用于依赖活动的精细化的相关视网膜活动持续时间的限制。由于视神经纤维可能需要检测局部一组顶盖神经元的突触后活动,而不是单个神经元的活动,顶盖的长时间常数意味着视网膜活动不需要比200毫秒有更好的精确相关性,因为突触后电路不能产生更短的相关性。

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