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Perirhinal cortex represents nonspatial but not spatial information in rats foraging in the presence of objects: Comparison with lateral entorhinal cortex

机译:PILLHINAL CORTEX代表非缺陷但不是空间在物体存在下觅食的大鼠信息:与横向梭形皮质的比较

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摘要

The medial temporal lobe (MTL) is involved in mnemonic processing. The perirhinal cortex (PRC) plays a role in object recognition memory, while the hippocampus is required for certain forms of spatial memory and episodic memory. The lateral entorhinal cortex (LEC) receives direct projections from PRC and is one of the two major cortical inputs to the hippocampus. The transformations that occur between PRC and LEC neural representations are not well understood. Here, we show that PRC and LEC had similarly high proportions of neurons with object-related activity (PRC 52/94; LEC 72/153), as expected from their locations in the “what” pathway into the hippocampus. However, LEC unit activity showed more spatial stability than PRC unit activity. A minority of LEC neurons showed stable spatial firing fields away from objects; these firing fields strongly resembled hippocampal place fields. None of the PRC neurons showed this place-like firing. None of the PRC or LEC neurons demonstrated the high firing rates associated with interneurons in hippocampus or medial entorhinal cortex, further dissociating this information processing stream from the path-integration based, movement-related processing of the medial entorhinal cortex and hippocampus. These results provide evidence for nonspatial information processing in the PRC-LEC pathway, as well as showing a functional dissociation between PRC and LEC, with more purely nonspatial representations in PRC and combined spatial-nonspatial representations in LEC.
机译:内侧颞叶(MTL)参与助记符处理。周围神经皮层(PRC)在对象识别记忆中发挥作用,而海马是某些形式的空间记忆和情景记忆所必需的。内嗅皮层(LEC)从PRC接收直接投影,是海马体的两个主要皮质输入之一。在PRC和LEC神经表示之间发生的转换还没有被很好地理解。在这里,我们显示PRC和LEC具有与对象相关的活动的类似比例的神经元(PRC 52/94; LEC 72/153),正如它们在进入海马的“什么”途径中所预期的那样。然而,LEC单位活动显示出比PRC单位活动更多的空间稳定性。少数LEC神经元显示出远离物体的稳定的空间发射场。这些射击场非常类似于海马场所场。没有一个PRC神经元显示出这种类似地方的放电。 PRC或LEC神经元均未显示出与海马或内侧内嗅皮层中的神经元相关的高放电率,进一步使这种信息处理流与基于路径整合的内侧内嗅皮层和海马的运动相关处理无关。这些结果为PRC-LEC途径中的非空间信息处理提供了证据,并显示了PRC和LEC之间的功能分离,在PRC中具有更多纯非空间表示,在LEC中具有组合的空间-非空间表示。

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