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成年雄性斑胸草雀尾端大脑皮层的听觉通路及其与鸣唱系统的关系。

Auditory pathways of caudal telencephalon and their relation to the song system of adult male zebra finches.

作者信息

Vates G E, Broome B M, Mello C V, Nottebohm F

机构信息

Laboratory of Animal Behavior, The Rockefeller University, New York, New York, USA.

出版信息

J Comp Neurol. 1996 Mar 18;366(4):613-42. doi: 10.1002/(SICI)1096-9861(19960318)366:4<613::AID-CNE5>3.0.CO;2-7.

Abstract

Auditory information is critical for vocal imitation and other elements of social life in song birds. In zebra finches, neural centers that are necessary for the acquisition and production of learned vocalizations are known, and they all respond to acoustic stimulation. However, the circuits by which conspecific auditory signals are perceived, processed, and stored in long-term memory have not been well documented. In particular, no evidence exists of direct connections between auditory and vocal motor pathways, and two newly identified centers for auditory processing, caudomedial neostriatum (Ncm) and caudomedial hyperstriatum ventrale (cmHV), have no documented place among known auditory circuits. Our goal was to describe anatomically the auditory pathways in adult zebra finch males and, specifically, to show the projections by which Ncm and vocal motor centers may receive auditory input. By using injections of different kinds of neuroanatomical tracers (biotinylated dextran amines, rhodamine-linked dextran amines, biocytin, fluorogold, and rhodamine-linked latex beads), we have shown that, as in other avian groups, the neostriatal field L complex in caudal telencephalon is the primary forebrain relay for pathways originating in the auditory thalamus, i.e., the nucleus ovoidalis complex (Ov). In addition, Ncm and cmHV also receive input from the Ov complex. Ov has been broken down into two parts, the Ov "core" and "shell," which project in parallel to different targets in the caudal telencephalon. Parts of the field L complex are connected among themselves and to Ncm, cmHV, and caudolateral Hv (clHV) through a complex web of largely reciprocal pathways. In addition, clHV and parts of the field L complex project strongly to the "shelf" of neostriatum underneath the song control nucleus high vocal center (HVC) and to the "cup" of archistriatum rostrodorsal to another song-control nucleus, the robust nucleus of the archistriatum (RA). We have documented two points at which the vocal motor pathway may pick up auditory signals: the HVC-shelf interface and a projection from clHV to the nucleus interfacialis (NIf), which projects to HVC. These data represent the most complete survey to date of auditory pathways in the adult male zebra finch brain, and of their projections to motor stations of the song system.

摘要

听觉信息对于鸣禽的发声模仿及社会生活的其他方面至关重要。在斑胸草雀中,习得发声的获取和产生所必需的神经中枢已为人所知,并且它们都对听觉刺激做出反应。然而,同种听觉信号被感知、处理并存储于长期记忆中的神经回路尚未得到充分记录。特别是,尚无证据表明听觉和发声运动通路之间存在直接联系,而且两个新发现的听觉处理中枢,即尾内侧新纹状体(Ncm)和尾内侧腹侧上纹状体(cmHV),在已知的听觉回路中尚无明确位置。我们的目标是从解剖学角度描述成年雄性斑胸草雀的听觉通路,具体而言,是展示Ncm和发声运动中枢可能接收听觉输入的投射。通过注射不同种类的神经解剖学示踪剂(生物素化葡聚糖胺、罗丹明标记的葡聚糖胺、生物胞素、荧光金和罗丹明标记的乳胶珠),我们发现,与其他鸟类群体一样,尾端脑的新纹状体L复合体是源自听觉丘脑即卵圆核复合体(Ov)的通路的主要前脑中继站。此外,Ncm和cmHV也接收来自Ov复合体的输入。Ov已被分为两部分,即Ov“核心”和“壳”,它们并行投射至尾端脑的不同靶点。L复合体的部分区域通过一个主要由相互连接的复杂通路构成的网络相互连接,并与Ncm、cmHV以及尾外侧Hv(clHV)相连。此外,clHV和L复合体的部分区域强烈投射至位于鸣唱控制核高音中枢(HVC)下方的新纹状体“架”以及位于另一个鸣唱控制核即古纹状体粗核(RA)前方背侧的古纹状体“杯”。我们记录了发声运动通路可能接收听觉信号的两个点:HVC - 架界面以及从clHV到投射至HVC的界面核(NIf)的投射。这些数据代表了迄今为止对成年雄性斑胸草雀大脑中听觉通路及其向鸣唱系统运动站投射的最完整调查。

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