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内嗅皮层外侧对非空间和空间信息的表征。

Representation of non-spatial and spatial information in the lateral entorhinal cortex.

作者信息

Deshmukh Sachin S, Knierim James J

机构信息

Krieger Mind/Brain Institute, Johns Hopkins University Baltimore, MD, USA.

出版信息

Front Behav Neurosci. 2011 Oct 28;5:69. doi: 10.3389/fnbeh.2011.00069. eCollection 2011.

Abstract

Some theories of memory propose that the hippocampus integrates the individual items and events of experience within a contextual or spatial framework. The hippocampus receives cortical input from two major pathways: the medial entorhinal cortex (MEC) and the lateral entorhinal cortex (LEC). During exploration in an open field, the firing fields of MEC grid cells form a periodically repeating, triangular array. In contrast, LEC neurons show little spatial selectivity, and it has been proposed that the LEC may provide non-spatial input to the hippocampus. Here, we recorded MEC and LEC neurons while rats explored an open field that contained discrete objects. LEC cells fired selectively at locations relative to the objects, whereas MEC cells were weakly influenced by the objects. These results provide the first direct demonstration of a double dissociation between LEC and MEC inputs to the hippocampus under conditions of exploration typically used to study hippocampal place cells.

摘要

一些记忆理论提出,海马体在情境或空间框架内整合个体的经历项目和事件。海马体从两条主要通路接收皮质输入:内侧内嗅皮质(MEC)和外侧内嗅皮质(LEC)。在旷场探索过程中,MEC网格细胞的放电场形成周期性重复的三角形阵列。相比之下,LEC神经元表现出很少的空间选择性,有人提出LEC可能为海马体提供非空间输入。在这里,我们在大鼠探索包含离散物体的旷场时记录了MEC和LEC神经元。LEC细胞在相对于物体的位置选择性放电,而MEC细胞受物体的影响较弱。这些结果首次直接证明了在通常用于研究海马体位置细胞的探索条件下,LEC和MEC输入到海马体之间存在双重分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c6e/3203372/e4e2eb4f69a1/fnbeh-05-00069-g001.jpg

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