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外侧缰状回核区损伤后海马的频率编码受损。

Impaired hippocampal rate coding after lesions of the lateral entorhinal cortex.

机构信息

Kavli Institute for Systems Neuroscience and Centre for Neural Computation, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Nat Neurosci. 2013 Aug;16(8):1085-93. doi: 10.1038/nn.3462. Epub 2013 Jul 14.

Abstract

In the hippocampus, spatial and non-spatial parameters may be represented by a dual coding scheme, in which coordinates in space are expressed by the collective firing locations of place cells and the diversity of experience at these locations is encoded by orthogonal variations in firing rates. Although the spatial signal may reflect input from medial entorhinal cortex, the sources of the variations in firing rate have not been identified. We found that rate variations in rat CA3 place cells depended on inputs from the lateral entorhinal cortex (LEC). Hippocampal rate remapping, induced by changing the shape or the color configuration of the environment, was impaired by lesions in those parts of the ipsilateral LEC that provided the densest input to the hippocampal recording position. Rate remapping was not observed in LEC itself. The findings suggest that LEC inputs are important for efficient rate coding in the hippocampus.

摘要

在海马体中,空间和非空间参数可能由双重编码方案表示,其中空间坐标由位置细胞的集体发射位置表示,而在这些位置的经验多样性则由发射率的正交变化来编码。尽管空间信号可能反映了内侧内嗅皮层的输入,但发射率变化的来源尚未确定。我们发现,大鼠 CA3 位置细胞的频率变化取决于来自外侧内嗅皮层(LEC)的输入。通过改变环境的形状或颜色配置来诱导海马体频率重映射,会被同侧 LEC 中对海马体记录位置提供最密集输入的那些部分的损伤所损害。在 LEC 本身中没有观察到频率重映射。这些发现表明,LEC 的输入对于海马体中的有效频率编码很重要。

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