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Postsynaptic neural activity regulates neuronal addition in the adult avian song control system

机译:突触后神经活动调节成年禽歌控制系统中神经元的添加

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摘要

A striking feature of the nervous system is that it shows extensive plasticity of structure and function that allows animals to adjust to changes in their environment. Neural activity plays a key role in mediating experience-dependent neural plasticity and, thus, creates a link between the external environment, the nervous system, and behavior. One dramatic example of neural plasticity is ongoing neurogenesis in the adult brain. The role of neural activity in modulating neuronal addition, however, has not been well studied at the level of neural circuits. The avian song control system allows us to investigate how activity influences neuronal addition to a neural circuit that regulates song, a learned sensorimotor social behavior. In adult white-crowned sparrows, new neurons are added continually to the song nucleus HVC (proper name) and project their axons to its target nucleus, the robust nucleus of the arcopallium (RA). We report here that electrical activity in RA regulates neuronal addition to HVC. Decreasing neural activity in RA by intracerebral infusion of the GABAA receptor agonist muscimol decreased the number of new HVC neurons by 56%. Our results suggest that postsynaptic electrical activity influences the addition of new neurons into a functional neural circuit in adult birds.
机译:神经系统的显着特征是它显示出广泛的结构和功能可塑性,使动物能够适应环境变化。神经活动在介导依赖于经验的神经可塑性中起着关键作用,因此在外部环境,神经系统和行为之间建立了联系。神经可塑性的一个引人注目的例子是成人大脑中正在进行的神经发生。然而,神经活动在调节神经元添加中的作用尚未在神经回路水平上得到很好的研究。禽类歌曲控制系统使我们能够研究活动如何影响神经元对调节歌曲(一种习得的感觉运动社交行为)的神经回路的影响。在成年的白冠麻雀中,新的神经元不断地被添加到歌曲核HVC(专有名称)中,并将它们的轴突投射到其目标核即弓op(RA)的健壮核上。我们在这里报告RA中的电活动调节HVC的神经元添加。通过脑内注入GABAA受体激动剂麝香酚降低RA中神经活动的程度,使新的HVC神经元数量减少了56%。我们的结果表明,突触后电活动影响成年鸟类向功能神经回路中添加新的神经元。

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