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Neuronal correlates of the dominant role of GABAergic transmission in the developing mouse locomotor circuitry

机译:神经元的相关性与大鼠运动电路中加筋器的主导作用的相关性

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GABA and glycine are the primary fast inhibitory neurotransmitters in themammalian spinal cord, but they differ in their regulatory functions, balancing neuronal excitation in the locomotor circuitry in the mammalian spinal cord. This review focuses on the unique role of GABAergic transmission during the assembly of the locomotor circuitry, fromearly embryonic stageswhenGABAA receptor-activatedmembrane depolarizations increasenetwork excitation, to the period of early postnatal development, when GABAergic inhibition plays a primary role in coordinating the patterns of locomotor-like motor activity. To gain insight into the mechanisms that underlie the dominant contribution of GABAergic transmission to network activity during that period, we examined the morphological and electrophysiological properties of a subpopulation of GABAergic commissural interneurons that fit well with their putative function as integrated components of the rhythm-coordinating networks in the mouse spinal cord.
机译:GABA和甘氨酸是术术脊髓的主要快速抑制性神经递质,但它们在其调节功能中不同,平衡哺乳动物脊髓中运动电路中的神经元励磁。本综述重点介绍了在机车电路组装过程中加工传播的独特作用,从胚胎阶段向期受体 - 活化麦白汉语去偏振,增加了产后的兴奋,在早期产后发展期间,当加蓬抑制在协调运动模式方面发挥着主要作用 - 像电机活动。要深入了解在该期间提出了枸杞传播对网络活动的主导贡献的机制,我们研究了加筋性外部群体的形态学和电生理学特性,其符合其推定功能作为节奏协调的综合组成部分鼠标脊髓中的网络。

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