Suppr超能文献

鸣禽听觉端脑听觉处理动力学的物种差异。

Species differences in auditory processing dynamics in songbird auditory telencephalon.

作者信息

Terleph Thomas A, Mello Claudio V, Vicario David S

机构信息

Psychology Department, Rutgers University, Piscataway, NJ 08854, USA.

出版信息

Dev Neurobiol. 2007 Sep 15;67(11):1498-510. doi: 10.1002/dneu.20524.

Abstract

The caudomedial nidopallium (NCM) of songbirds is a telencephalic area involved in the auditory processing and memorization of complex vocal communication signals. We used pure tone stimuli and multiunit electrophysiological recordings in awake birds to investigate whether the basic properties of song-responding circuits in NCM differ between canaries and zebra finches, two species whose songs are markedly different in their spectral and temporal organization. We found that the responses in zebra finch NCM are characterized by broad tuning and sustained responses that may facilitate the integration of zebra finch song syllables and call notes that are of long duration and have a broad harmonic structure. In contrast, we found that the responses in canary NCM show narrower tuning and less sustained responses over the time periods analyzed. These characteristics may contribute to enhanced processing of the narrow-band whistles, rapid trills, and steep frequency modulations that are prominent features of canary song. These species differences are much less pronounced in field L2, the direct thalamorecipient region that represents a preceding station in the central avian auditory pathway. NCM responses did not differ across sexes of either species, but field L2 did show wider tuning in zebra finch females relative to males. In sum, species differences in the response properties of NCM likely reflect selectivity for the acoustic elements of each species' vocal repertoire.

摘要

鸣禽的丘脑内侧巢皮质(NCM)是一个端脑区域,参与复杂声音交流信号的听觉处理和记忆。我们在清醒的鸟类中使用纯音刺激和多单元电生理记录,以研究NCM中对鸣叫做出反应的神经回路的基本特性在金丝雀和斑胸草雀之间是否存在差异,这两个物种的鸣叫在频谱和时间组织上有显著不同。我们发现,斑胸草雀NCM中的反应具有调谐范围广和持续反应的特点,这可能有助于整合持续时间长且具有广泛谐波结构的斑胸草雀鸣声声节和叫声。相比之下,我们发现,在分析的时间段内,金丝雀NCM中的反应调谐范围更窄,持续反应更少。这些特征可能有助于增强对窄带啸声、快速颤音和陡峭频率调制的处理,这些都是金丝雀鸣叫的突出特征。在L2区,这些物种差异不太明显,L2区是直接接受丘脑投射的区域,代表鸟类中枢听觉通路中的前一级。两个物种的NCM反应在性别上没有差异,但L2区在斑胸草雀雌性中相对于雄性确实表现出更宽的调谐范围。总之,NCM反应特性的物种差异可能反映了对每个物种发声库声学元素的选择性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验