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At the interface of the auditory and vocal motor systems: NIf and its role in vocal processing, production and learning

机译:在听觉和声带运动系统的接口处:NIf及其在声带处理,产生和学习中的作用

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Communication between auditory and vocal motor nuclei is essential for vocal learning. In songbirds, the nucleus interfacialis of the nidopallium (NIf) is part of a sensorimotor loop, along with auditory nucleus avalanche (Av) and song system nucleus HVC, that links the auditory and song systems. Most of the auditory information comes through this sensorimotor loop, with the projection from NIf to HVC representing the largest single source of auditory information to the song system. In addition to providing the majority of HVC's auditory input, NIf is also the primary driver of spontaneous activity and premotor-like bursting during sleep in HVC. Like HVC and RA, two nuclei critical for song learning and production, NIf exhibits behavioral-state dependent auditory responses and strong motor bursts that precede song output. NIf also exhibits extended periods of fast gamma oscillations following vocal production. Based on the converging evidence from studies of physiology and functional connectivity it would be reasonable to expect NIf to play an important role in the learning, maintenance, and production of song. Surprisingly, however, lesions of NIf in adult zebra finches have no effect on song production or maintenance. Only the plastic song produced by juvenile zebra finches during the sensorimotor phase of song learning is affected by NIf lesions. In this review, we carefully examine what is known about NIf at the anatomical, physiological, and behavioral levels. We reexamine conclusions drawn from previous studies in the light of our current understanding of the song system, and establish what can be said with certainty about NIf's involvement in song learning, maintenance, and production. Finally, we review recent theories of song learning integrating possible roles for NIf within these frameworks and suggest possible parallels between NIf and sensorimotor areas that form part of the neural circuitry for speech processing in humans.
机译:听觉和声带运动核之间的交流对于声带学习至关重要。在鸣禽中,尼多美白细胞(NIf)的界面神经核与听觉雪崩(Av)和听觉神经核HVC(连接听觉和听觉系统)一起是感觉运动回路的一部分。大多数听觉信息是通过这种感觉运动回路来实现的,从NIf到HVC的投影代表了歌曲系统最大的听觉信息来源。除了提供HVC的大部分听觉输入外,NIf还是HVC睡眠期间自发活动和类似运动前爆发的主要驱动力。像HVC和RA(两个对歌曲学习和生产至关重要的核)一样,NIf表现出与行为状态有关的听觉响应,并在歌曲输出之前表现出强烈的运动爆发。 NIf在发声后还表现出长时间的快速伽马振荡。根据生理学和功能连接性研究的综合证据,可以合理地预期NIf在歌曲的学习,维护和制作中将发挥重要作用。但是,令人惊讶的是,成年斑马雀的NIf损伤对歌曲的产生或维持没有影响。 NIf病变仅影响在歌曲学习的感觉运动阶段由幼年斑马雀雀产生的塑料歌曲。在这篇综述中,我们仔细研究了有关NIf的解剖学,生理学和行为学水平。我们根据对歌曲系统的当前理解,重新审查从以前的研究中得出的结论,并确定可以肯定地说出NIF参与歌曲学习,维护和制作的过程。最后,我们回顾了歌曲学习的最新理论,这些理论整合了NIf在这些框架中的可能作用,并提出了NIf与感觉运动区域之间可能的相似之处,而感觉运动区域构成了人类语音处理神经电路的一部分。

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