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Neural activity associated with rhythmicity of song in juvenile male and female zebra finches

机译:与少年男性和女性斑马雀的歌曲有关的神经活动

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摘要

Rhythm is an important aspect of both human speech and birdsong. Adult zebra finches show increased neural activity following exposure to arrhythmic compared to rhythmic song in regions similar to the mammalian auditory association cortex and amygdala. This pattern may indicate that birds are detecting errors in the arrhythmic song relative to their learned song template or to more general expectations of song structure. Here we exposed juvenile zebra finches to natural conspecific song (rhythmic) or song with altered inter-syllable intervals (arrhythmic) prior to or during template formation, or afterward as males are matching vocal production to a memorized song template (sensorimotor integration). Before template formation, expression of the immediate early gene ZENK was increased in the caudomedial nidopallium (NCM) of birds exposed to rhythmic relative to arrhythmic song. During template formation, ZENK expression was increased in the caudomedial mesopallium (CMM) of birds exposed to arrhythmic relative to rhythmic song. These results suggest that the youngest birds may be predisposed to respond to a more natural stimulus, and a template may be required for arrhythmic song to elicit increased neural activity. It also appears that functional development across the brain regions investigated continues to maturity.
机译:节奏是人类演讲和鸟类的一个重要方面。与类似哺乳动物听觉关联皮质和杏仁达拉相似的地区的节奏歌曲相比,成年斑马雀以下神经活动增加了心律失常。这种模式可能表明鸟类在学习歌曲模板或对歌曲结构的更普遍期望的情况下,鸟类正在检测心律失常歌曲中的错误。在这里,我们将少年斑马雀(节奏)或歌曲发生在模板形成之前或期间,或者在模板形成之前或之后,当雄性与记忆歌曲模板(SensorImotor集成)匹配的时或之后,以后,以后,以后改变音节间隔(心律失常)。在模板形成之前,在暴露于心律失常歌曲暴露于节律的剖视中(NCM)的剖腹卵磷尼(NCM)中增加了立即早期基因Zenk的表达。在模板形成期间,ZENK表达在相对于节奏歌曲暴露于心律失常的鸟类培养基(CMM)中增加。这些结果表明,最年轻的鸟类可以倾向于响应更自然的刺激,并且可能需要模板来引发增加的神经活动。它还似乎调查了大脑区域的功能发展继续到期。

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