首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Auditory feedback and song production do not regulate seasonal growth of song control circuits in adult white-crowned sparrows.
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Auditory feedback and song production do not regulate seasonal growth of song control circuits in adult white-crowned sparrows.

机译:听觉反馈和歌曲产生不能调节成年白冠麻雀的歌曲控制电路的季节性增长。

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An important area of research in neuroscience is understanding what properties of brain structure and function are stimulated by sensory experience and behavioral performance. We tested the roles of experience and behavior in seasonal plasticity of the neural circuits that regulate learned song behavior in adult songbirds. Neurons in these circuits receive auditory input and show selective auditory responses to conspecific song. We asked whether auditory input or song production contribute to seasonal growth of telencephalic song nuclei. Adult male Gambel's white-crowned sparrows were surgically deafened, which eliminates auditory input and greatly reduces song production. These birds were then exposed to photoperiod and hormonal conditions that regulate the growth of song nuclei. We measured the volumes of the nuclei HVC, robust nucleus of arcopallium (RA), and area X at 7 and 30 d after exposure to long days plus testosterone in deafened and normally hearing birds. We also assessed song production and examined protein kinase C (PKC) expression because previous research reported that immunostaining for PKC increases transiently after deafening. Deafening did not delay or block the growth of the song nuclei to their full breeding-condition size. PKC activity in RA was not altered by deafening in the sparrows. Song continued to be well structured for up to 10 months after deafening, but song production decreased almost eightfold. These results suggest that neither auditory input nor high rates of song production are necessary for seasonal growth of the adult song control system in this species.
机译:神经科学研究的一个重要领域是了解感觉体验和行为表现会刺激大脑结构和功能的哪些特性。我们测试了经验和行为在调节成年鸣禽中学习的歌曲行为的神经回路的季节性可塑性中的作用。这些回路中的神经元接收听觉输入并显示对同种歌曲的选择性听觉响应。我们询问听觉输入或歌曲产生是否有助于端脑歌曲核的季节性生长。成年雄性Gambel的白冠麻雀通过手术充耳不闻,这消除了听觉输入并大大降低了歌曲的产生。然后将这些鸟暴露在调节歌核生长的光周期和激素条件下。我们在耳聋和正常听力的鸟类中,暴露于长日后第7天和30天,测量了HVC核,arcopallium的健壮核(RA)和X区域的体积,以及睾丸激素。我们还评估了歌曲的产生并检查了蛋白激酶C(PKC)的表达,因为先前的研究报道耳聋后PKC的免疫染色会瞬时增加。震耳欲聋不会延迟或阻止歌曲核的生长至其完整繁殖条件的大小。麻雀的耳聋不会改变RA中的PKC活性。在震耳欲聋后的十个月内,歌曲的结构仍保持良好状态,但歌曲的制作量却下降了近八倍。这些结果表明,该物种中成年歌曲控制系统的季节性增长既不需要听觉输入也不需要很高的歌曲产生率。

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