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恒河猴枕叶皮质连接的分层起源与终止

Laminar origins and terminations of cortical connections of the occipital lobe in the rhesus monkey.

作者信息

Rockland K S, Pandya D N

出版信息

Brain Res. 1979 Dec 21;179(1):3-20. doi: 10.1016/0006-8993(79)90485-2.

Abstract

Cortical connections within the occipital lobe (areas 17, 18 and 19) of the rhesus monkey are investigated with the autoradiographic and horseradish peroxidase procedures. Two efferent systems, each with a specific laminar organization, are observed. (1) Rostrally directed connections, from area 17 to 18, area 18 to 19 and area 19 to the inferotemporal region (area TE), originate from neurons in layer IIIc (and, in area 19, from a small complement of neurons in layer Va), and terminate in and around layer IV. (2) In contrast, connections in the reverse direction ('caudally directed' connections), from area TE to 19, area 19 to 18, and area 18 to 17, originate from neurons in layers Vb, VI and, to a lesser extent, IIIa, and terminate mainly in layer I. In addition, the laminar organization of several intrinsic and callosal connections are observed. In trinsic connections within areas 18 and 19 originate from neurons in layers IIIc and, to a lesser extent, Va, and terminate in vertical bands in layers I to IV. Callosal connections from areas 18, 19, and the caudal inferotemporal region originate from neurons mainly in layer IIIc. From areas 18 and 19, these callosal connections terminate in vertical bands in layers I through IV. Thus, different cortical projection systems are characterized by specific laminar distributions of efferent terminations as well as of their neurons of origin.

摘要

运用放射自显影术和辣根过氧化物酶法对恒河猴枕叶(17区、18区和19区)内的皮质连接进行了研究。观察到两个传出系统,每个系统都有特定的分层组织。(1)向前的连接,从17区到18区、18区到19区以及19区到颞下区域(TE区),起源于IIIc层的神经元(在19区,还起源于少量Va层的神经元),并终止于IV层及其周围。(2)相反,反向连接(“向后的连接”),从TE区到19区、19区到18区以及18区到17区,起源于Vb层、VI层以及在较小程度上的IIIa层的神经元,主要终止于I层。此外,还观察到了几种固有连接和胼胝体连接的分层组织。18区和19区内的固有连接起源于IIIc层以及在较小程度上的Va层的神经元,并终止于I层至IV层的垂直带。来自18区、19区和颞下尾侧区域的胼胝体连接主要起源于IIIc层的神经元。从18区和19区发出的这些胼胝体连接终止于I层至IV层的垂直带。因此,不同的皮质投射系统的特征在于传出终末以及其起源神经元的特定分层分布。

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