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鸽子(家鸽)视叶的脑内投射

Intratelencephalic projections of the visual wulst in pigeons (Columba livia).

作者信息

Shimizu T, Cox K, Karten H J

机构信息

Department of Psychology, University of South Florida, Tampa, 33620, USA.

出版信息

J Comp Neurol. 1995 Sep 4;359(4):551-72. doi: 10.1002/cne.903590404.

Abstract

The visual wulst is the telencephalic target of the thalamofugal visual pathway of birds, and thus the avian equivalent of the striate cortex of mammals. The anterograde tracer Phaseolus vulgaris leucoagglutinin was used to follow the intratelencephalic connections of the major constituents of the visual wulst in pigeons. In particular, efferent pathways from the granular layer (Intercalated nucleus of the hyperstriatum accessorium, IHA), supragranular layer (hyperstriatum accessorium, HA), and infragranular layers (hyperstriatum intercalatus superior and/or hyperstriatum dorsale, HIS/HD) were investigated. These efferent projections were confirmed by injections of the retrograde tracer cholera toxin subunit B into their terminal fields. When a deposit of the anterograde tracer was centered in IHA, which receives the visual thalamic input, efferent fibers were seen mainly dorsomedially to IHA. When a deposit of the anterograde tracer was centered in HA, efferent fibers were seen to extend mainly in three directions: 1) medially to the tractus septomesencephalicus, which sends projections to extratelencephalic visual nuclei: 2) ventrolaterally to the lateral portion of the neostriatum frontale, where there were also labeled cells after the retrograde tracer was injected in HA; and 3) ventromedially to the paleostriatal complex, which is the avian equivalent of the mammalian caudale, 5) neostriatum intermedium, 6) archistriatum intermedium, and 7) hyperstriatum laterale. Finally, HIS/HD have projections predominantly to HA and the dorsocaudal telencephalon (area corticoidea dorsolateralis and area parahippocampalis), as well as relatively minor projections to the areas which also receive projections from HA. No anterogradely labeled fibers were seen in the tractus septomesencephalicus following the tracer injections in HIS/HD. These results indicate that the visual information from the granular layer is distributed via the supragranular layer HA to multiple areas within the telencephalon, such as the neostriatum frontale and paleostriatal complex. In addition, HA is the source of an extratelencephalic projection via the tractus septomesencephalicus. Thus, the avian supragranular layer HA contains neurons which are the source of both intratelencephalic and extratelencephalic projections, whereas neurons of the mammalian cortex are segregated into two distinct layers, supragranular and infragranular layers, based on the targets of their projections. The findings are further discussed and compared to the mammalian striate cortex.

摘要

视叶厚皮质是鸟类丘脑传出视觉通路的端脑靶点,因此相当于哺乳动物的纹状皮质。使用顺行示踪剂菜豆白细胞凝集素追踪鸽子视叶厚皮质主要成分的脑内连接。特别地,研究了来自颗粒层(副新纹状体插入核,IHA)、颗粒上层(新纹状体,HA)和颗粒下层(上纹状体中间层和/或背侧上纹状体,HIS/HD)的传出通路。通过向其终末区域注射逆行示踪剂霍乱毒素B亚单位证实了这些传出投射。当顺行示踪剂沉积以接受视觉丘脑输入的IHA为中心时,传出纤维主要见于IHA的背内侧。当顺行示踪剂沉积以HA为中心时,传出纤维主要向三个方向延伸:1)向内侧至隔中脑束,该束向脑外视觉核投射;2)腹外侧至额叶新纹状体外侧部,在HA注射逆行示踪剂后该区域也有标记细胞;3)腹内侧至古纹状体复合体,其相当于哺乳动物的尾状核。最后,HIS/HD主要投射至HA和端脑背尾侧(背外侧皮质区和海马旁区),也有相对较少的投射至同样接受HA投射的区域。在HIS/HD注射示踪剂后,隔中脑束未见顺行标记纤维。这些结果表明,来自颗粒层的视觉信息通过颗粒上层HA分布至端脑内的多个区域,如额叶新纹状体和古纹状体复合体。此外,HA是通过隔中脑束进行脑外投射来源。因此,鸟类颗粒上层HA包含作为脑内和脑外投射来源的神经元,而哺乳动物皮质的神经元根据其投射靶点被分隔为两个不同的层,即颗粒上层和颗粒下层。进一步讨论了这些发现并与哺乳动物纹状皮质进行了比较。

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