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Anatomy and Function of the Primate Entorhinal Cortex.
Annual Review of Vision Science ( IF 6 ) Pub Date : 2020-09-16 , DOI: 10.1146/annurev-vision-030320-041115
Aaron D Garcia 1, 2 , Elizabeth A Buffalo 2, 3
Affiliation  

The entorhinal cortex (EC) is a critical element of the hippocampal formation located within the medial temporal lobe (MTL) in primates. The EC has historically received attention for being the primary mediator of cortical information going into and coming from the hippocampus proper. In this review, we highlight the significance of the EC as a major player in memory processing, along with other associated structures in the primate MTL. The complex, convergent topographies of cortical and subcortical input to the EC, combined with short-range intrinsic connectivity and the selective targeting of EC efferents to the hippocampus, provide evidence for subregional specialization and integration of information beyond what would be expected if this structure were a simple conduit of information for the hippocampus. Lesion studies of the EC provide evidence implicating this region as critical for memory and the flexible use of complex relational associations between experienced events. The physiology of this structure's constituent principal cells mirrors the complexity of its anatomy. EC neurons respond preferentially to aspects of memory-dependent paradigms including object, place, and time. EC neurons also show striking spatial representations as primates explore visual space, similar to those identified in rodents navigating physical space. In this review, we highlight the great strides that have been made toward furthering our understanding of the primate EC, and we identify paths forward for future experiments to provide additional insight into the role of this structure in learning and memory.

中文翻译:


灵长类动物内嗅皮层的解剖结构和功能。

内嗅皮层(EC)是位于灵长类动物内侧颞叶(MTL)内的海马结构的关键元素。从历史上讲,EC作为进入和来自海马体的皮质信息的主要介体而受到关注。在这篇综述中,我们强调了EC作为灵长类MTL中其他主要结构在内存处理中的重要角色的重要性。EC的皮质和皮质下输入的复杂,收敛的地形,再加上短距离的内在连通性以及EC向海马发出的选择性靶向,为亚区域的专业化和信息整合提供了证据,这超出了该结构的预期范围。海马的简单信息渠道。EC的病变研究提供了证据,表明该区域对于记忆和灵活使用经验事件之间复杂的关联关系至关重要。该结构的组成主细胞的生理学反映了其解剖结构的复杂性。EC神经元优先响应与记忆有关的范例,包括对象,位置和时间。当灵长类动物探索视觉空间时,EC神经元还显示出惊人的空间表示,类似于啮齿动物在物理空间中的识别。在这篇综述中,我们重点介绍了在加深我们对灵长类动物EC的理解方面所取得的巨大进步,并确定了未来实验的前进方向,以进一步了解这种结构在学习和记忆中的作用。

更新日期:2020-09-18
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