首页> 外文期刊>The Journal of Comparative Neurology >The astrocyte network in the ventral nerve cord neuropil of the Drosophila Drosophila third‐instar larva
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The astrocyte network in the ventral nerve cord neuropil of the Drosophila Drosophila third‐instar larva

机译:在果蝇的腹腔炎中的星形胶质细胞网络果蝇果蝇幼虫三龄幼虫

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Abstract Understanding neuronal function at the local and circuit level requires understanding astrocyte function. We have provided a detailed analysis of astrocyte morphology and territory in the Drosophila third‐instar ventral nerve cord where there already exists considerable understanding of the neuronal network. Astrocyte shape varies more than previously reported; many have bilaterally symmetrical partners, many have a high percentage of their arborization in adjacent segments, and many have branches that follow structural features. Taken together, our data are consistent with, but not fully explained by, a model of a developmental growth process dominated by competitive or repulsive interactions between astrocytes. Our data suggest that the model should also include cell‐autonomous aspects, as well as the use of structural features for growth. Variation in location of arborization territory for identified astrocytes was great enough that a standardized scheme of neuropil division among the six astrocytes that populate each hemi‐segment is not possible at the third instar. The arborizations of the astrocytes can extend across neuronal functional domains. The ventral astrocyte in particular, whose territory can extend well into the proprioceptive region of the neuropil, has no obvious branching pattern that correlates with domains of particular sensory modalities, suggesting that the astrocyte would respond to neuronal activity in any of the sensory modalities, perhaps integrating across them. This study sets the stage for future studies that will generate a robust, functionally oriented connectome that includes both partners in neuronal circuits—the neurons and the glial cells, providing the foundation necessary for studies to elucidate neuron–glia interactions in this neuropil.
机译:摘要了解本地和电路级别的神经元功能需要了解星形胶质细胞功能。我们提供了对果蝇第三瞬间腹侧神经线中的星形胶质细胞形态和境内的详细分析,其中已经存在对神经元网络的相当大的了解。星形胶质细胞形状比以前报道的更多;许多人有双边对称的合作伙伴,许多人在相邻的段中具有高比例的植物群,许多人具有遵循结构特征的树枝。在一起,我们的数据符合但未完全解释,其在星形胶质细胞之间具有竞争性或排斥相互作用的发展增长过程的模型。我们的数据表明,该模型还应包括细胞自主方面,以及使用结构特征进行生长。鉴定的星形胶质细胞的植物群地区的定位变异足够大,以至于在第三龄量中填充每个半段的六个星形胶质细胞中的神经胶质细胞中的标准化方案。星形胶质细胞的植物胶合可以延伸穿过神经元功能域。特别是腹侧星形胶质细胞,其境内可以延伸到神经潜岩的丙肽区域中,没有明显的分支模式,其与特定感官模态的结构域相关,这表明星形胶质细胞会在任何感官模式中响应神经元活动,也许是整合它们。本研究设定了未来研究的阶段,这些研究将产生强大,功能导向的连接,包括神经元电路中的合作伙伴 - 神经元和神经胶质细胞,提供研究所需的基础,以阐明这种神经核素中的神经元胶质胶质相互作用。

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