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非鸣唱雌性鸣禽听觉前脑中对同种鸟鸣声相对于合成声音的神经生理反应选择性。

Neurophysiological response selectivity for conspecific songs over synthetic sounds in the auditory forebrain of non-singing female songbirds.

作者信息

Hauber Mark E, Cassey Phillip, Woolley Sarah M N, Theunissen Frederic E

机构信息

Department of Psychology and Helen Wills Neuroscience Institute, University of California, Berkeley, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Jul;193(7):765-74. doi: 10.1007/s00359-007-0231-0. Epub 2007 May 15.

Abstract

Female choice plays a critical role in the evolution of male acoustic displays. Yet there is limited information on the neurophysiological basis of female songbirds' auditory recognition systems. To understand the neural mechanisms of how non-singing female songbirds perceive behaviorally relevant vocalizations, we recorded responses of single neurons to acoustic stimuli in two auditory forebrain regions, the caudal lateral mesopallium (CLM) and Field L, in anesthetized adult female zebra finches (Taeniopygia guttata). Using various metrics of response selectivity, we found consistently higher response strengths for unfamiliar conspecific songs compared to tone pips and white noise in Field L but not in CLM. We also found that neurons in the left auditory forebrain had lower response strengths to synthetics sounds, leading to overall higher neural selectivity for song in neurons of the left hemisphere. This laterality effect is consistent with previously published behavioral data in zebra finches. Overall, our results from Field L are in parallel and from CLM are in contrast with the patterns of response selectivity reported for conspecific songs over synthetic sounds in male zebra finches, suggesting some degree of sexual dimorphism of auditory perception mechanisms in songbirds.

摘要

雌性选择在雄性声学展示的进化中起着关键作用。然而,关于雌性鸣禽听觉识别系统的神经生理学基础的信息有限。为了了解非歌唱雌性鸣禽如何感知行为相关发声的神经机制,我们在麻醉的成年雌性斑胸草雀(Taeniopygia guttata)的两个听觉前脑区域,即尾侧中脑外侧核(CLM)和L区,记录了单个神经元对声学刺激的反应。使用各种反应选择性指标,我们发现,与纯音和白噪声相比,L区中对陌生同种歌曲的反应强度始终更高,而在CLM中并非如此。我们还发现,左听觉前脑的神经元对合成声音的反应强度较低,导致左半球神经元对歌曲的整体神经选择性更高。这种偏侧化效应与之前发表的斑胸草雀行为数据一致。总体而言,我们在L区的结果与雄性斑胸草雀中同种歌曲相对于合成声音的反应选择性模式相似,而在CLM中的结果则相反,这表明鸣禽的听觉感知机制存在一定程度的性别二态性。

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