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Rhythmic syllable-related activity in a songbird motor thalamic nucleus necessary for learned vocalizations

机译:学习发声所必需的鸣禽运动丘脑核中的节奏音节相关活动

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摘要

Birdsong is a complex behavior that exhibits hierarchical organization. While the representation of singing behavior and its hierarchical organization has been studied in some detail in avian cortical premotor circuits, our understanding of the role of the thalamus in adult birdsong is incomplete. Using a combination of behavioral and electrophysiological studies, we seek to expand on earlier work showing that the thalamic nucleus Uvaeformis (Uva) is necessary for the production of stereotyped, adult song in zebra finch (Taeniopygia guttata). We confirm that complete bilateral lesions of Uva abolish singing in the 'directed' social context, but find that in the 'undirected' social context, such lesions result in highly variable vocalizations similar to early babbling song in juvenile birds. Recordings of neural activity in Uva reveal strong syllable-related modulation, maximally active prior to syllable onsets and minimally active prior to syllable offsets. Furthermore, both song and Uva activity exhibit a pronounced coherent modulation at 10Hz-a pattern observed in downstream premotor areas in adult and, even more prominently, in juvenile birds. These findings are broadly consistent with the idea that Uva is critical in the sequential activation of behavioral modules in HVC.
机译:Birdsong是一种复杂的行为,表现出层次化的组织。虽然已在鸟类皮质前运动回路中对歌唱行为的表现及其等级组织进行了详细研究,但我们对丘脑在成年鸟鸣中的作用的理解尚不完善。结合行为和电生理研究,我们力求扩大早期工作的范围,这些工作表明,丘马核Uvaeformis(Uva)对于在斑雀雀(Taeniopygia guttata)中定型的成年歌曲的制作是必要的。我们确认,Uva的完整双侧病变在“定向”社交环境中被取消唱歌,但发现在“非定向”社交环境中,此类损伤导致声音变化很大,类似于幼鸟的早期呀歌。 Uva中神经活动的记录显示出与音节相关的强调制,在音节发作之前最大活跃,在音节偏移之前最小活跃。此外,歌曲和Uva的活动都表现出明显的相干调制,频率为10Hz,这是在成年鸟的下游运动前区甚至在幼鸟中更明显的模式。这些发现与Uva在HVC中行为模块的顺序激活中至关重要的想法基本一致。

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