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Rapid seasonal-like regression of the adult avian song control system

机译:成人禽歌控制系统的季节性快速回归

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摘要

We analyzed how rapidly avian song control nuclei regress after testosterone (T) withdrawal. Regression of neuronal attributes resulting from T withdrawal has been observed in several animal models. The time course over which regression occurs is not known, however. To address this issue, we castrated adult male white-crowned sparrows and rapidly shifted them to short-day photoperiods after being held under breeding conditions (long-day photoperiod and systemic T exposure) for 3 weeks. We found that the volume of one song nucleus, HVC, regressed 22% within 12 h after T withdrawal. Changes in HVC neuron density after T withdrawal were dynamic; density increased at 12 h and then decreased by 4 days. HVC neuron number was reduced by 26% by 4 days. The volumes of Area X and the robust nucleus of the arcopallium (RA) were significantly regressed by 7 and 20 days, respectively. RA somatic area and neuronal spacing were significantly reduced by 2 days. The rapidity of HVC regression is unprecedented among vertebrate models of hormone-sensitive neural circuits. These results reveal that the rapid regression of the song control system provides a model for the important role sex steroid hormones play in mediating adult neural plasticity and in neuroprotection.
机译:我们分析了睾丸激素(T)撤离后禽歌控制核消退的速度有多快。在几种动物模型中都观察到了由T戒断引起的神经元属性的退化。但是,发生回归的时间过程是未知的。为了解决这个问题,我们将成年雄性白冠麻雀cast割,并在繁殖条件下(长日照和全身性T暴露)饲养3周后,迅速将它们转移到短日照。我们发现,在撤回T后12小时内,一个歌曲核HVC的体积减少了22%。 T撤退后HVC神经元密度的变化是动态的。密度在12小时时增加,然后在4天后降低。到第4天,HVC神经元数量减少了26%。 X区域的体积和arcopallium(RA)的健壮核分别分别显着降低了7天和20天。 RA体细胞面积和神经元间距显着减少了2天。在激素敏感神经回路的脊椎动物模型中,HVC回归的速度是前所未有的。这些结果表明,歌曲控制系统的快速回归为性类固醇激素在介导成人神经可塑性和神经保护中的重要作用提供了模型。

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