Chrobak James J, Amaral David G
Department of Psychology, University of Connecticut, Storrs, Connecticut 06269, USA.
J Comp Neurol. 2007 Feb 1;500(4):612-33. doi: 10.1002/cne.21200.
The organization of intrinsic connections within the entorhinal cortex was investigated in Macaca fascicularis monkeys. Anterograde tracers ((3)H-amino acids, Phaseolus vulgaris-leucoagglutinin, biotinylated dextran amine, or Fluoro-Ruby) were injected into the deep or superficial layers of the entorhinal cortex in 24 animals. These injections labeled extensive intrinsic projections that terminated throughout all layers of the entorhinal cortex. Labeling was typically continuous i.e., there was no evidence of a patchy or columnar organization. Each injection produced a rostrocaudally oriented band of labeled fibers and terminals that extended for one-third to one-half of the length of the entorhinal cortex. The more extensive distributions of labeled fibers were more typical of caudally placed injection sites. Taken together, the projections identified at least two mediolaterally differentiated bands: a lateral band that encompasses fields Elr, Elc, and the most lateral aspect of fields Ec and Ecl and a wider, medially situated band that encompasses much of fields Er, Ei, Ec, and Ecl. We obtained some evidence that field Eo constitutes a third, very medially placed band. The rostrocaudal organization of labeled fibers and the extent of labeling within the deep and superficial layers were unrelated to the laminar position of the injection. These data suggest that intrinsic associatonal connections in the monkey entorhinal cortex are organized into separate associational networks. Our findings are discussed with reference to the role of interlaminar connections in mediating physiological interactions between the neocortex and the hippocampus.
在猕猴中研究了内嗅皮质内固有连接的组织方式。向24只动物的内嗅皮质深层或浅层注射了顺行示踪剂((3)H-氨基酸、菜豆白细胞凝集素、生物素化葡聚糖胺或荧光红宝石)。这些注射标记了广泛的固有投射,这些投射终止于内嗅皮质的所有层。标记通常是连续的,即没有证据表明存在斑块状或柱状组织。每次注射都会产生一条前后方向的标记纤维和终末带,其延伸长度为内嗅皮质长度的三分之一到二分之一。标记纤维分布更广泛的情况更典型地出现在尾侧注射部位。综合来看,这些投射至少确定了两条内外侧分化带:一条外侧带,包括Elr、Elc区域以及Ec和Ecl区域的最外侧部分;一条更宽的、位于内侧的带,包括Er、Ei、Ec和Ecl区域的大部分。我们获得了一些证据表明Eo区域构成了第三条非常靠内侧的带。标记纤维的前后组织方式以及深层和浅层内标记的范围与注射的层位无关。这些数据表明,猕猴内嗅皮质中的固有联合连接被组织成了独立的联合网络。我们结合层间连接在介导新皮质和海马体之间生理相互作用中的作用对我们的发现进行了讨论。