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Auditory synapses to song premotor neurons are gated off during vocalization in zebra finches

机译:在斑马雀科的发声过程中关闭了歌前运动神经元的听觉突触。

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摘要

Songbirds use auditory feedback to learn and maintain their songs, but how feedback interacts with vocal motor circuitry remains unclear. A potential site for this interaction is the song premotor nucleus HVC, which receives auditory input and contains neurons (HVCX cells) that innervate an anterior forebrain pathway (AFP) important to feedback-dependent vocal plasticity. Although the singing-related output of HVCX cells is unaltered by distorted auditory feedback (DAF), deafening gradually weakens synapses on HVCX cells, raising the possibility that they integrate feedback only at subthreshold levels during singing. Using intracellular recordings in singing zebra finches, we found that DAF failed to perturb singing-related synaptic activity of HVCX cells, although many of these cells responded to auditory stimuli in non-singing states. Moreover, in vivo multiphoton imaging revealed that deafening-induced changes to HVCX synapses require intact AFP output. These findings support a model in which the AFP accesses feedback independent of HVC.>DOI:
机译:鸣禽使用听觉反馈来学习和维护其歌曲,但是反馈如何与人声运动电路相互作用尚不清楚。这种相互作用的潜在部位是歌曲前运动核HVC,它接收听觉输入并包含神经元(HVCX细胞),神经元支配对反馈依赖的声音可塑性很重要的前脑通路(AFP)。尽管HVCX细胞的歌唱相关输出不受听觉反馈失真(DAF)的影响,但震耳欲聋逐渐减弱了HVCX细胞的突触,增加了它们在歌唱过程中仅在阈值以下水平整合反馈的可能性。使用唱歌的斑马雀的细胞内录音,我们发现DAF未能扰乱HVCX细胞的唱歌相关突触活动,尽管这些细胞中有许多在非唱歌状态下对听觉刺激作出反应。此外,体内多光子成像显示,耳聋诱导的HVCX突触变化需要完整的AFP输出。这些发现支持了AFP可以独立于HVC访问反馈的模型。> DOI:

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