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Precise auditory-vocal mirroring in neurons for learned vocal communication

机译:神经元中精确的听觉-声音镜像,用于学习的声音交流

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Brain mechanisms for communication must establish a correspondence between sensory and motor codes used to represent the signal. One idea is that this correspondence is established at the level of single neurons that are active when the individual performs a particular gesture or observes a similar gesture performed by another individual. Although neurons that display a precise auditory-vocal correspondence could facilitate vocal communication, they have yet to be identified. Here we report that a certain class of neurons in the swamp sparrow forebrain displays a precise auditory-vocal correspondence. We show that these neurons respond in a temporally precise fashion to auditory presentation of certain note sequences in this songbird's repertoire and to similar note sequences in other birds' songs. These neurons display nearly identical patterns of activity when the bird sings the same sequence, and disrupting auditory feedback does not alter this singing-related activity, indicating it is motor in nature. Furthermore, these neurons innervate striatal structures important for song learning, raising the possibility that singing-related activity in these cells is compared to auditory feedback to guide vocal learning.
机译:交流的大脑机制必须在用于表示信号的感觉代码和运动代码之间建立对应关系。一个想法是,这种对应关系建立在单个神经元的水平上,该单个神经元在一个人执行特定手势或观察到另一个人执行的相似手势时处于活动状态。尽管显示精确的听觉-声音对应关系的神经元可以促进声音交流,但是它们尚未被识别。在这里,我们报道沼泽麻雀前脑中的某类神经元显示出精确的听觉-声音对应。我们显示这些神经元在时间上精确的方式响应此鸣禽的曲目中某些音符序列的听觉呈现,并响应其他鸟的歌曲中的类似音符序列。当鸟以相同的顺序唱歌时,这些神经元显示出几乎相同的活动模式,并且破坏听觉反馈并不会改变这种与歌唱相关的活动,表明其本质上是运动。此外,这些神经元支配着对歌曲学习很重要的纹状体结构,从而增加了将这些细胞中与歌唱相关的活动与听觉反馈进行比较以指导声音学习的可能性。

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