首页> 美国卫生研究院文献>The Journal of Neuroscience >Complementary Functional Organization of Neuronal Activity Patterns in the Perirhinal Lateral Entorhinal and Medial Entorhinal Cortices
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Complementary Functional Organization of Neuronal Activity Patterns in the Perirhinal Lateral Entorhinal and Medial Entorhinal Cortices

机译:周围神经外侧内嗅和内侧内嗅皮层神经元活动模式的互补功能组织

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摘要

It is commonly conceived that the cortical areas of the hippocampal region are functionally divided into the perirhinal cortex (PRC) and the lateral entorhinal cortex (LEC), which selectively process object information; and the medial entorhinal cortex (MEC), which selectively processes spatial information. Contrary to this notion, in rats performing a task that demands both object and spatial information processing, single neurons in PRC, LEC, and MEC, including those in both superficial and deep cortical areas and in grid, border, and head direction cells of MEC, have a highly similar range of selectivity to object and spatial dimensions of the task. By contrast, representational similarity analysis of population activity reveals a key distinction in the organization of information in these areas, such that PRC and LEC populations prioritize object over location information, whereas MEC populations prioritize location over object information. These findings bring to the hippocampal system a growing emphasis on population analyses as a powerful tool for characterizing neural representations supporting cognition and memory.>SIGNIFICANCE STATEMENT Contrary to the common view that brain regions in the “what” and “where” streams distinctly process object and spatial cues, respectively, we found that both streams encode both object and spatial information but distinctly organize memories for objects and space. Specifically, perirhinal cortex and lateral entorhinal cortex represent objects and, within the object-specific representations, the locations where they occur. Conversely, medial entorhinal cortex represents relevant locations and, within those spatial representations, the objects that occupy them. Furthermore, these findings reach beyond simple notions of perirhinal cortex and lateral entorhinal cortex neurons as object detectors and MEC neurons as position detectors, and point to a more complex organization of memory representations within the medial temporal lobe system.
机译:通常认为,海马区的皮质区域在功能上分为周围皮层(PRC)和外侧内嗅皮层(LEC),它们选择性地处理对象信息。内侧的内嗅皮层(MEC)选择性地处理空间信息。与该概念相反,在执行需要对象和空间信息处理的任务的大鼠中,PRC,LEC和MEC中的单个神经元,包括浅层和深层皮质区域以及MEC的网格,边界和头部方向细胞中的单个神经元对任务的对象和空间维度具有高度相似的选择性范围。相比之下,对人口活动的代表性相似性分析揭示了这些地区信息组织中的关键区别,例如,PRC和LEC人口将对象优先于位置信息,而MEC人口将位置优先于对象信息。这些发现使海马系统越来越重视人口分析,将其作为表征支持认知和记忆的神经表征的有力工具。>意义声明与通常的观点相反,大脑区域位于“什么”和“ “流”分别分别处理对象和空间线索,我们发现这两种流都对对象和空间信息进行编码,但分别组织了对象和空间的记忆。具体而言,围上皮层和外侧内嗅皮层代表对象,并在特定于对象的表示中代表它们发生的位置。相反,内侧内嗅皮层代表相关位置,并在这些空间表示内代表占据它们的物体。此外,这些发现超出了作为目标检测器的周围神经皮层和外侧内嗅皮质神经元的简单概念,以及作为位置检测器的MEC神经元的简单概念,并指出了内侧颞叶系统内记忆表征的更复杂组织。

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