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猕猴(食蟹猴)内嗅皮层及相邻海马旁区域的皮质传出纤维。

Cortical efferents of the entorhinal cortex and the adjacent parahippocampal region in the monkey (Macaca fascicularis).

作者信息

Muñoz Mónica, Insausti Ricardo

机构信息

Department of Health Sciences, School of Medicine, University of Castilla-La Mancha, Avenida de Almansa s/n, 02006 Albacete, Spain.

出版信息

Eur J Neurosci. 2005 Sep;22(6):1368-88. doi: 10.1111/j.1460-9568.2005.04299.x.

Abstract

Entorhinal cortex (EC) relays information from the hippocampus to the cerebral cortex. The origin of this entorhino-cortical pathway was studied semiquantitatively and topographically with the use of 23 retrograde tracer injections in cortical areas of the frontal, temporal, and parietal lobes of the monkey. To assess possible alternative, parallel pathways, the parahippocampal region, comprised of temporal pole (TP), perirhinal (PRC), and posterior parahippocampal cortices (PPH), was included in the study. The majority of the cortical areas receive convergent projections from EC and the parahippocampal region. Strong EC layer V output is directed to temporal pole, medial frontal and orbitofrontal cortices, and the rostral part of the polysensory area of the superior temporal sulcus (sts). Moderate EC output is directed to the caudal superior temporal gyrus, area TE, and parietal cortex, and little to none to the lateral frontal cortex. With the exception of the projection to the medial frontal cortex, output from TP, PRC, and PPH surpassed that from EC, although with regional differences. TP layers II-III, V-VI project strongly to all areas injected except parietal cortex and caudal superior temporal gyrus, while PRC layers III/V-VI send strong projections to rostral parts of area TE and sts. PPH layers III/V-VI project heavily to parietal cortex and caudal superior temporal gyrus. These results suggest that the medial temporal output is primarily organized hierarchically, but at the same time, it has multiple exits of information. These parallel, alternative routes may influence local circuitry in the cerebral cortex and participate in the consolidation of declarative memory.

摘要

内嗅皮质(EC)将信息从海马体传递至大脑皮质。利用向猴子额叶、颞叶和顶叶皮质区域注射23种逆行示踪剂的方法,对内嗅 - 皮质通路的起源进行了半定量和拓扑学研究。为评估可能存在的替代平行通路,研究纳入了由颞极(TP)、梨状周围皮质(PRC)和海马旁后皮质(PPH)组成的海马旁区域。大多数皮质区域接收来自EC和海马旁区域的汇聚投射。EC第V层的强输出指向颞极、内侧额叶和眶额皮质以及颞上沟(sts)多感觉区的前部。中等强度的EC输出指向颞上回后部、TE区和顶叶皮质,而指向外侧额叶皮质的输出很少或几乎没有。除了向内侧额叶皮质的投射外,TP、PRC和PPH的输出超过了EC的输出,尽管存在区域差异。TP的第II - III层、V - VI层强烈投射到除顶叶皮质和颞上回后部之外的所有注射区域,而PRC的第III/V - VI层向TE区和sts的前部发送强投射。PPH的第III/V - VI层大量投射到顶叶皮质和颞上回后部。这些结果表明,内侧颞叶输出主要按层次组织,但同时也有多个信息输出口。这些平行的替代路径可能影响大脑皮质中的局部回路,并参与陈述性记忆的巩固。

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