首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Timing of perineuronal net development in the zebra finch song control system correlates with developmental song learning
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Timing of perineuronal net development in the zebra finch song control system correlates with developmental song learning

机译:斑马雀科歌曲控制系统中神经周围神经网络发育的时间与发育性歌曲学习相关

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摘要

The appearance of perineuronal nets (PNNs) represents one of the mechanisms that contribute to the closing of sensitive periods for neural plasticity. This relationship has mostly been studied in the ocular dominance model in rodents. Previous studies also indicated that PNN might control neural plasticity in the song control system of songbirds. To further elucidate this relationship, we quantified PNN expression and their localization around parvalbumin interneurons at key time-points during ontogeny in both male and female zebra finches, and correlated these data with the well-described development of song in this species. We also extended these analyses to the auditory system. The development of PNN during ontogeny correlated with song crystallization although the timing of PNN appearance in the four main telencephalic song control nuclei slightly varied between nuclei in agreement with the established role these nuclei play during song learning. Our data also indicate that very few PNN develop in the secondary auditory forebrain areas even in adult birds, which may allow constant adaptation to a changing acoustic environment by allowing synaptic reorganization during adulthood.
机译:神经周围神经网络(PNN)的出现代表了有助于关闭神经可塑性敏感期的机制之一。这种关系主要是在啮齿动物的眼优势模型中研究的。先前的研究还表明,PNN可能会控制鸣禽的歌曲控制系统中的神经可塑性。为了进一步阐明这种关系,我们在男性和女性斑马雀的个体发育过程中的关键时间点,对PNN表达及其在小白蛋白中间神经周围的位置进行了定量,并将这些数据与该物种中歌曲的确切描述相关联。我们还将这些分析扩展到听觉系统。尽管在四个主要端脑歌控制核中,PNN出现的时机在各个核之间略有不同,但在个体发育过程中PNN的发展与歌曲的结晶有关,这与这些核在歌曲学习过程中所发挥的作用一致。我们的数据还表明,即使在成年鸟类中,次要听觉前脑区域也很少出现PNN,这可能通过允许成年期的突触重组而不断适应不断变化的声学环境。

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