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Song-selective auditory circuits in the vocal control system of the zebra finch.

机译:斑胸草雀的声音控制系统中的歌曲选择听觉电路。

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摘要

Birdsong is a learned behavior controlled by a distinct set of brain nuclei. The song nuclei known as area X, the medial nucleus of the dorsolateral thalamus (DLM), and the lateral magnocellular nucleus of the anterior neostriatum (L-MAN) form a pathway that plays an important but unknown role in song learning. One function served by this circuit might be auditory feedback, which is critical to normal song development. We used single unit recordings to demonstrate that all three of these nuclei contain auditory neurons in adult male zebra finches (Taeniopygia guttata). These neurons are song selective: they respond more robustly to the bird's own song than to songs of conspecific individuals, and they are sensitive to the temporal structure of song. Auditory neurons so highly specialized for song within a pathway required for song learning may play a role in the auditory feedback essential in song development. Recordings in the robust nucleus of the archistriatum (RA), the nucleus to which L-MAN projects, showed that RA also contains highly song-selective neurons. RA receives a direct projection from the caudal nucleus of the ventral hyperstriatum (HVc) as well as from L-MAN. We investigated the contributions of these two inputs to auditory responses of RA neurons by selectively inactivating one or both inputs. Our results suggest that there is a song-selective pathway directly from HVc to RA in addition to the circuit via L-MAN. Thus the songbird brain contains multiple auditory pathways specialized for song, and these circuits may vary in their functional importance at different stages of learning.
机译:鸟鸣是一种受学习的行为,受一组独特的脑核控制。被称为X区域的歌曲核,背外侧丘脑的内侧核(DLM)和新纹状体的外侧大细胞核(L-MAN)形成了在歌曲学习中起重要但未知作用的途径。该电路的功能之一可能是听觉反馈,这对于正常歌曲的发展至关重要。我们使用单个单位的录音来证明这三个原子核在成年雄性斑马雀(Taeniopygia guttata)中都含有听觉神经元。这些神经元具有歌曲选择性:它们对鸟类自己的歌曲的反应比对同种个体的歌曲的反应更强烈,并且它们对歌曲的时间结构敏感。在歌曲学习所需的途径内对歌曲如此高度专一的听觉神经元可能在歌曲发展中必不可少的听觉反馈中发挥作用。在L-MAN投射到的原核(RA)健壮核中的记录显示,RA还包含高度歌曲选择性的神经元。 RA从腹侧纹状体(HVc)的尾状核以及L-MAN接受直接投射。我们通过选择性地使一个或两个输入失活,研究了这两个输入对RA神经元听觉反应的贡献。我们的结果表明,除了通过L-MAN的电路外,还有直接从HVc到RA的歌曲选择路径。因此,鸣禽的大脑包含多个专门针对歌曲的听觉途径,并且这些回路在学习的不同阶段可能具有不同的功能重要性。

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    Doupe, A J; Konishi, M;

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  • 年度 1991
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