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鸽子顶盖离视觉通路的组织:逆行运输研究

Organization of the tectofugal visual pathway in the pigeon: a retrograde transport study.

作者信息

Benowitz L I, Karten H J

出版信息

J Comp Neurol. 1976 Jun 15;167(4):503-20. doi: 10.1002/cne.901670407.

Abstract

In birds, superficial laminae of the optic tectum receive a massive retinal input; the tectum in turn projects upon the nucleus rotundus thalami, which then sends its efferents to the ectostriatal core of the telencephalon. To examine the detailed organization of this principal ascending visual pathway, small injections of the marker horseradish peroxidase (HRP) were placed in various sites throughout the ectostriatum (E) or nucleus rotundus (Rt) in pigeons. Analysis of the resulting patterns of retrograde labeling indicates the tectofugal pathway to be comprised of at least five different channels. Cells which lie at various depths in the stratum griseum centrale (SGC) of the tectum project upon distinct subdivisions of nucleus rotundus. Anterior portions of Rt receive input from superficial-most cells in the SGC, while medial and more caudal portions of Rt are projected upon by deeper SGC neurons. A ventral subdivision of Rt was found to receive its primary input from two pretectal nuclei. Additional inputs to all portions of Rt arise from nucleus reticularis superior thalami. The various subdivisions of rotundus in turn project upon distinct portions of the ectostriatum. Thus, the segregation between the different input classes into Rt is largely retained at the telencephalic level. In contrast, the nucleus triangularis, a dorso-medial extension of Rt which receives its input from the deepest of all SGC neurons, sends its efferents to all parts of the ectostriatum.

摘要

在鸟类中,视顶盖的浅层接受大量视网膜输入;顶盖继而投射到丘脑圆核,丘脑圆核再将其传出纤维发送到端脑的外纹状体核心。为了研究这条主要的上行视觉通路的详细组织结构,将标记物辣根过氧化物酶(HRP)微量注射到鸽子外纹状体(E)或丘脑圆核(Rt)的各个部位。对逆行标记的结果模式进行分析表明,顶盖传出通路至少由五条不同的通道组成。位于顶盖中央灰质层(SGC)不同深度的细胞投射到丘脑圆核的不同亚区。Rt的前部接受SGC最表层细胞的输入,而Rt的内侧和更靠尾侧的部分则由SGC较深层的神经元投射。发现Rt的一个腹侧亚区主要接受两个顶盖前核的输入。Rt所有部分的额外输入来自丘脑上网状核。丘脑圆核的不同亚区继而投射到外纹状体的不同部分。因此,进入Rt的不同输入类别之间的分离在端脑水平上基本得以保留。相比之下,Rt的背内侧延伸部分三角核从所有SGC神经元的最深层接收输入,其传出纤维发送到外纹状体的所有部分。

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