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Neuronal control of bird song production

机译:鸟歌产生的神经元控制

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摘要

Bird song represents a powerful model system for many of the important problems in behavioral neurobiology, offering both easily measured sensory and motor patterns and a discrete neural effector system. Methods were developed to record the discharge of neurons in singing birds to examine the functions of nuclei in the song control pathway previously implicated anatomically. In several cases, lesions and other techniques were employed to test predictions derived from electrode recordings. Four major findings emerge from these studies. Single-unit recordings from telencephalic nucleus hyperstriatum ventrale, pars caudale (HVc) show several classes of neurons with apparently specialized roles in song production and/or sensorimotor interaction. The nucleus interfacialis (Nlf; Nottebohm, 1980), which provides an input to HVc and is anatomically the “highest” nucleus in the descending motor pathway, is uniquely placed among vocal control nuclei to be a generator of timing cues for song. Consistent with the unidirectional connections between nuclei of the descending pathway, Nlf, HVc, and nucleus robustus archistriatalis (RA) are activated sequentially prior to sound onset. Three other nuclei with connections to or from the descending tract do not show song-related activity in the adult. Bilateral HVc recordings and peripheral disruptions of the vocal apparatus suggest that both hemispheres and syringeal halves normally make similar contributions to most if not all song syllables. The latter finding casts doubt on the analogy between neural lateralization in bird song and in human speech.
机译:鸟歌代表了行为神经生物学中许多重要问题的强大模型系统,提供了易于测量的感觉和运动模式以及离散的神经效应器系统。开发了记录歌鸟中神经元放电的方法,以检查先前在解剖学上牵涉的歌曲控制途径中核的功能。在某些情况下,采用损伤和其他技术来测试源自电极记录的预测。这些研究得出了四个主要发现。远侧脑纹状体腹侧神经节,aus caudale(HVc)的单单位录音显示了几类神经元,它们在歌曲产生和/或感觉运动相互作用中具有明显的专门作用。界面神经核(Nlf; Nottebohm,1980)为HVc提供输入,并且从解剖学上讲是下降运动路径中“最高”的细胞核,它被独特地放置在声控核中,从而成为歌唱时机提示的产生者。与下降路径的核之间的单向连接一致,Nlf,HVc和鲁棒性核(RA)会在声音发作之前先被激活。在成年人中,其他三个与下降通道有联系的核不显示与歌曲相关的活动。双边HVc录音和声带的周边破坏表明,半球和半个注射器通常对大多数(即使不是全部)歌曲音节做出相似的贡献。后者的发现使人们对鸟的歌声和人类言语的神经偏侧化之间的类比感到怀疑。

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