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雄性斑胸草雀鸣唱系统感觉运动结构中歌曲选择性的逐渐出现。

Gradual emergence of song selectivity in sensorimotor structures of the male zebra finch song system.

作者信息

Janata P, Margoliash D

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Neurosci. 1999 Jun 15;19(12):5108-18. doi: 10.1523/JNEUROSCI.19-12-05108.1999.

Abstract

Birdsong is a model system for understanding how motor and sensory information interact to coordinate behavior. Neurons in one potential site of sensorimotor integration, the forebrain nucleus HVc, have premotor activity during singing and auditory activity during playback of the bird's own song. It is not known whether the high degree of selectivity for learned features of song observed during playback arises in HVc or also in structures afferent to HVc. We recorded in anesthetized adult zebra finches from two structures afferent to HVc: either the nucleus interfacialis (NIf) or the L1 subdivision of the field L complex, and simultaneously from a second electrode in HVc. Correlations in the bursting pattern of ongoing activity of HVc and NIf recordings were observed; these helped to localize the first electrode to NIf recording sites. Most NIf neurons exhibited song-selective responses, but as a population, they were less selective than were HVc neurons. Most L1 neurons were not song-selective. NIf neurons have also been reported to have premotor activity during singing; thus, NIf is another potential site of auditory-motor interactions in the song system. Evidence gathered to date suggests that those brain areas in the passerine forebrain that are recruited during song production also display the most selective learned auditory responses.

摘要

鸟鸣是一种用于理解运动和感觉信息如何相互作用以协调行为的模型系统。在一个可能的感觉运动整合部位——前脑核团HVC中,神经元在歌唱时有运动前活动,在回放鸟儿自己的歌声时有听觉活动。目前尚不清楚在回放过程中观察到的对所学歌曲特征的高度选择性是出现在HVC中,还是也出现在HVC的传入结构中。我们在麻醉的成年斑胸草雀中,从两个传入HVC的结构进行记录:要么是面神经核(NIf),要么是L复合体的L1亚区,同时从HVC中的第二个电极进行记录。观察到HVC和NIf记录的持续活动爆发模式之间的相关性;这些有助于将第一个电极定位到NIf记录位点。大多数NIf神经元表现出歌曲选择性反应,但作为一个群体,它们的选择性不如HVC神经元。大多数L1神经元没有歌曲选择性。据报道,NIf神经元在歌唱时也有运动前活动;因此,NIf是歌曲系统中听觉-运动相互作用的另一个潜在部位。迄今为止收集的证据表明,在鸣唱产生过程中被激活的雀形目前脑的那些脑区,也表现出最具选择性的习得听觉反应。

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