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探索乌鸦听觉中脑尾外侧核与其鸣唱系统之间的解剖学联系。

Exploring Anatomical Links Between the Crow's Nidopallium Caudolaterale and Its Song System.

作者信息

Moll Felix W, Kersten Ylva, Erdle Saskia, Nieder Andreas

机构信息

Animal Physiology Unit, Institute of Neurobiology, University of Tübingen, Tübingen, Germany.

出版信息

J Comp Neurol. 2025 Feb;533(2):e70028. doi: 10.1002/cne.70028.

Abstract

Crows are corvid songbirds that exhibit remarkable cognitive control, including their ability to vocalize on command. The activity of single neurons from the crow's associative telencephalic structure nidopallium caudolaterale (NCL) is correlated with the execution of this vocal and many non-vocal behaviors. However, whether anatomical connections directly link the crow NCL to its "song system" remains unclear. To address this, we used fluorescent tracers along with histological staining methods to characterize the connectivity of the crow's NCL in relation to its song system. Consistent with previous findings in other songbirds, we found that the NCL sends dense projections into the dorsal intermediate arcopallium (AID) directly adjacent to the song system's telencephalic motor output, the robust nucleus of the arcopallium (RA). Similarly, we demonstrate dense NCL projections into the striatum engulfing the basal ganglia song nucleus "area X." Both of these descending projections mirror the projections of the nidopallial song nucleus HVC (proper name) into RA and area X, with extremely sparse NCL fibers extending into area X. Furthermore, we characterized the distribution of cells projecting from the lateral part of the magnocellular nucleus of the anterior nidopallium (MAN) to NCL. Notably, a separate medial population of MAN cells projects to HVC. These two sets of connections-MAN to NCL and MAN to HVC-run in parallel but do not overlap. Taken together, our findings support the hypothesis that the NCL is part of a "general motor system" that parallels the song system but exhibits only minimal monosynaptic interconnections with it.

摘要

乌鸦是鸦科鸣禽,具有卓越的认知控制能力,包括按指令发声的能力。来自乌鸦联合端脑结构尾外侧巢皮质(NCL)的单个神经元活动与这种发声及许多非发声行为的执行相关。然而,NCL与乌鸦“鸣唱系统”之间的解剖学连接是否直接相关仍不清楚。为了解决这个问题,我们使用荧光示踪剂和组织学染色方法来描述乌鸦NCL与其鸣唱系统的连接情况。与之前在其他鸣禽中的发现一致,我们发现NCL向紧邻鸣唱系统端脑运动输出核团——古纹状体粗核(RA)的背侧中间弓状皮质(AID)发出密集投射。同样,我们证明NCL向纹状体发出密集投射,包绕基底神经节鸣唱核团“X区”。这两种下行投射与巢皮质鸣唱核团HVC(专有名称)向RA和X区的投射相似,只有极少量NCL纤维延伸至X区。此外,我们描述了从前巢皮质大细胞外侧核(MAN)投射到NCL的细胞分布。值得注意的是,MAN细胞的一个独立内侧群体投射到HVC。这两组连接——MAN到NCL和MAN到HVC——并行但不重叠。综上所述,我们的研究结果支持这样一种假设,即NCL是一个“一般运动系统”的一部分,该系统与鸣唱系统平行,但与之仅表现出极少的单突触互连。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e638/11806514/3c5789884faf/CNE-533-e70028-g006.jpg

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