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斑马鱼脊髓中模式活动的出现。

Emergence of patterned activity in the developing zebrafish spinal cord.

机构信息

Helen Wills Neuroscience Graduate Program, University of California, Berkeley, Berkeley, CA 94720, USA.

出版信息

Curr Biol. 2012 Jan 24;22(2):93-102. doi: 10.1016/j.cub.2011.12.002. Epub 2011 Dec 22.

Abstract

BACKGROUND

Developing neural networks display spontaneous and correlated rhythmic bursts of action potentials that are essential for circuit refinement. In the spinal cord, it is poorly understood how correlated activity is acquired and how its emergence relates to the formation of the spinal central pattern generator (CPG), the circuit that mediates rhythmic behaviors like walking and swimming. It is also unknown whether early, uncorrelated activity is necessary for the formation of the coordinated CPG.

RESULTS

Time-lapse imaging in the intact zebrafish embryo with the genetically encoded calcium indicator GCaMP3 revealed a rapid transition from slow, sporadic activity to fast, ipsilaterally correlated, and contralaterally anticorrelated activity, characteristic of the spinal CPG. Ipsilateral correlations were acquired through the coalescence of local microcircuits. Brief optical manipulation of activity with the light-driven pump halorhodopsin revealed that the transition to correlated activity was associated with a strengthening of ipsilateral connections, likely mediated by gap junctions. Contralateral antagonism increased in strength at the same time. The transition to coordinated activity was disrupted by long-term optical inhibition of sporadic activity in motoneurons and ventral longitudinal descending interneurons and resulted in more neurons exhibiting uncoordinated activity patterns at later time points.

CONCLUSIONS

These findings show that the CPG in the zebrafish spinal cord emerges directly from a sporadically active network as functional connectivity strengthens between local and then more distal neurons. These results also reveal that early, sporadic activity in a subset of ventral spinal neurons is required for the integration of maturing neurons into the coordinated CPG network.

摘要

背景

开发神经网络会显示自发和相关的动作电位爆发,这对于电路细化至关重要。在脊髓中,人们对相关活动是如何获得的以及其出现与脊髓中枢模式发生器(CPG)的形成有何关系知之甚少,CPG 是介导行走和游泳等节律行为的电路。也不知道早期的不相关活动是否对于协调 CPG 的形成是必要的。

结果

用基因编码钙指示剂 GCaMP3 在完整的斑马鱼胚胎中进行延时成像,显示出从缓慢、零星的活动到快速、同侧相关和对侧反相关活动的快速转变,这是脊髓 CPG 的特征。同侧相关性是通过局部微循环的合并获得的。用光驱动泵 halorhodopsin 对活动进行短暂的光学操作表明,向相关活动的转变与同侧连接的增强有关,这可能是由缝隙连接介导的。同时,对侧拮抗作用的强度也增加了。在运动神经元和腹侧纵向下行中间神经元中长时间抑制零星活动会破坏协调活动的转变,并导致更多的神经元在稍后的时间点表现出不协调的活动模式。

结论

这些发现表明,斑马鱼脊髓中的 CPG 直接从一个零星活跃的网络中出现,随着局部和更远端神经元之间的功能连接增强。这些结果还表明,一部分腹侧脊髓神经元中的早期零星活动对于将成熟神经元整合到协调的 CPG 网络中是必需的。

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