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鸣禽在习得性发声识别过程中前脑听觉区域的功能差异。

Functional differences in forebrain auditory regions during learned vocal recognition in songbirds.

作者信息

Gentner Timothy Q, Hulse Stewart H, Ball Gregory F

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, 1027 E. 57th Street, Chicago, IL 60637, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2004 Dec;190(12):1001-10. doi: 10.1007/s00359-004-0556-x. Epub 2004 Sep 21.

Abstract

Converging evidence implicates the auditory forebrain regions caudal medial mesopallium (formerly cmHV) and caudal medial nidopallium in the perceptual processing of conspecific vocalizations in songbirds. Little is known however, about more specific processing within these regions especially during song-based perceptual behaviors. One hallmark of the caudal medial mesopallium and caudal medial nidopallium, areas analogous to mammalian secondary auditory cortical structures, is their robust expression of the immediate-early-gene zenk in response to conspecific songs. Using European starlings operantly trained to recognize the songs of individual conspecifics, we show that the levels and patterns of zenk protein expression in the caudal medial nidopallium and caudal medial mesopallium differ when song recognition demands are placed on the system. In the caudal medial mesopallium, expression is significantly elevated above basal levels during the recognition of familiar songs, the acquisition of novel associations for familiar songs, and the acquisition of novel song discriminations. In the caudal medial nidopallium, however, expression is significantly elevated above basal levels only during the acquisition of novel song discriminations. The results directly implicate the caudal medial nidopallium and caudal medial mesopallium in at least a portion of the auditory processes underlying vocal recognition. Moreover, the observed differences between these regions imply the functional localization (or at least the concentration) of different auditory processing mechanisms within the caudal medial nidopallium and the caudal medial mesopallium.

摘要

越来越多的证据表明,鸣禽中脑内侧尾端 pallium(以前称为 cmHV)和中脑内侧尾端 nidopallium 的听觉前脑区域参与了同种鸣声的感知处理。然而,对于这些区域内更具体的处理过程,尤其是在基于鸣声的感知行为期间,人们了解甚少。中脑内侧尾端 pallium 和中脑内侧尾端 nidopallium 类似于哺乳动物的二级听觉皮层结构,其一个显著特征是它们对同种鸣声有强烈的即刻早期基因 zenk 表达。通过对欧洲椋鸟进行操作性训练以识别个体同种的鸣声,我们发现当系统面临鸣声识别需求时,中脑内侧尾端 nidopallium 和中脑内侧尾端 pallium 中 zenk 蛋白表达的水平和模式有所不同。在中脑内侧尾端 pallium 中,在识别熟悉的鸣声、为熟悉的鸣声建立新关联以及获得新的鸣声辨别能力时,表达水平显著高于基础水平。然而,在中脑内侧尾端 nidopallium 中,只有在获得新的鸣声辨别能力时,表达水平才显著高于基础水平。这些结果直接表明中脑内侧尾端 nidopallium 和中脑内侧尾端 pallium 至少参与了鸣声识别背后的部分听觉过程。此外,这些区域之间观察到的差异意味着中脑内侧尾端 nidopallium 和中脑内侧尾端 pallium 内不同听觉处理机制的功能定位(或至少是集中)。

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