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首页> 外文期刊>The Journal of Comparative Neurology >Developmental changes in the distribution of NADPH-diaphorase-containing neurons in telencephalic nuclei of the zebra finch song system.
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Developmental changes in the distribution of NADPH-diaphorase-containing neurons in telencephalic nuclei of the zebra finch song system.

机译:斑胸草雀歌系统的末脑核中含有NADPH-黄递酶的神经元分布的发育变化。

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摘要

Extensive recent research has focused on the potential role of nitric oxide (NO) in synaptic plasticity. Could the capacity to synthesize NO be associated with neural and behavioral plasticity in the song system? The timing of song learning and of major developmental changes in song system anatomy are known. We searched for an association between NO and these developmental events by observing the distribution of neurons staining for NADPH-diaphorase, an enzyme used in the synthesis of NO, in the brains of zebra finches. Both male and female brains were taken at different developmental ages from day 21 to adulthood. We found that the incidence of stained neurons in the song system nuclei is lower than in surrounding areas. The incidence of staining decreases with development, with most of the decrease occurring prior to the auditory learning phase of song learning. The developmental changes were quantified for area X and found to be highly significant, with a 56% decrease in staining frequency from day 21 to adulthood in males and a 23% decrease in females for the equivalent region. We also found a sexual dimorphism in the song system of adult birds, consisting of a reduced incidence of stained neurons in song system nuclei area X, high vocal center (HVC), and nucleus robustus (RA) archistrialis in males compared with females. These findings suggest that NO is less involved in the plasticity underlying song acquisition than in the earlier formation of the song system.
机译:最近的大量研究集中于一氧化氮(NO)在突触可塑性中的潜在作用。合成NO的能力可能与歌曲系统中的神经和行为可塑性有关吗?歌曲学习的时机和歌曲系统解剖学的主要发展变化是已知的。我们通过观察斑马雀科大脑中NADPH-diaphorase染色的神经元的分布来搜索NO与这些发育事件之间的联系,NADPH-diaphorase是一种用于NO合成的酶。从第21天到成年,男性和女性大脑均处于不同的发育年龄。我们发现,歌曲系统细胞核中染色神经元的发生率低于周围区域。染色的发生率随着发展而降低,其中大多数降低发生在歌曲学习的听觉学习阶段之前。定量分析了区域X的发育变化,发现该变化非常显着,在相同区域,从第21天到成年,男性的染色频率降低了56%,女性的染色频率降低了23%。我们还发现成年鸟类的歌曲系统存在性二态性,与雌性相比,其在歌曲系统核区X,高声中枢(HVC)和鲁棒核(RA)档案中的染色神经元发生率降低。这些发现表明,与歌曲系统的早期形成相比,NO较少参与歌曲获取的可塑性。

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