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Song Selectivity in the Pallial-Basal Ganglia Song Circuit of Zebra Finches Raised Without Tutor Song Exposure

机译:斑马雀科雀-基底节神经节歌曲回路中的歌曲选择性无家教歌曲曝光时引发

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摘要

Acoustic experience critically influences auditory cortical development as well as emergence of highly selective auditory neurons in the songbird sensorimotor circuit. In adult zebra finches, these “song-selective” neurons respond better to the bird's own song (BOS) than to songs of other conspecifics. Birds learn their songs by memorizing a tutor's song and then matching auditory feedback of their voice to the tutor song memory. Song-selective neurons in the pallial-basal ganglia circuit called the anterior forebrain pathway (AFP) reflect the development of BOS. However, during learning, they also respond strongly to tutor song and are compromised in their adult selectivity when birds are prevented from matching BOS to tutor, suggesting that selectivity depends on tutor song learning as well as sensorimotor matching of BOS feedback to the tutor song memory. We examined the contribution of sensory learning of tutor song to song selectivity by recording from AFP neurons in birds reared without exposure to adult conspecifics. We found that AFP neurons in these “isolate” birds had highly tuned responses to isolate BOS. The selectivity was as high, and in the striato-pallidal nucleus Area X, even higher than that in normal birds, due to abnormally weak responsiveness to conspecific song. These results demonstrate that sensory learning of tutor song is not necessary for BOS tuning of AFP neurons. Because isolate birds develop their song via sensorimotor learning, our data further illustrate the importance of individual sensorimotor learning for song selectivity and provide insight into possible functions of song-selective neurons.
机译:声学经验严重影响听觉皮层的发育以及鸣鸟感觉运动回路中高选择性听觉神经元的出现。在成年斑马雀科中,这些“歌曲选择性”神经元对鸟自己的歌曲(BOS)的反应比对其他同种动物的歌曲的反应更好。鸟类通过记忆导师的歌曲,然后将其声音的听觉反馈与导师的歌曲记忆进行匹配来学习其歌曲。颅底神经节回路中称为前前脑通路(AFP)的歌曲选择性神经元反映了BOS的发展。但是,在学习过程中,当阻止鸟类将BOS与导师匹配时,它们也会对导师歌曲做出强烈反应,并折衷于成年选择性,这表明选择性取决于导师歌曲的学习以及BOS反馈与导师歌曲记忆的感觉运动匹配。 。我们通过从未暴露于成年犬种的饲养鸟类中的AFP神经元记录下来,研究了家教歌曲的感觉学习对歌曲选择性的贡献。我们发现这些“分离的”鸟类中的AFP神经元对分离的BOS具有高度调节的反应。由于对同种歌曲的反应异常弱,因此选择性很高,在纹状体-苍白核X区,甚至比正常鸟类更高。这些结果表明,对于AFP神经元的BOS调优,无需对家教歌曲进行感官学习。由于孤立的鸟类通过感觉运动学习发展其歌曲,因此我们的数据进一步说明了个体感觉运动学习对歌曲选择性的重要性,并提供了对歌曲选择性神经元可能功能的了解。

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