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在大鼠海马缺失的情况下绘制用于识别和近因记忆的海马旁系统图谱。

Mapping parahippocampal systems for recognition and recency memory in the absence of the rat hippocampus.

作者信息

Kinnavane L, Amin E, Horne M, Aggleton J P

机构信息

School of Psychology, Cardiff University, 70 Park Place, Cardiff, CF10 3AT, UK; Neuroscience & Mental Health Research Institute, Cardiff University, Cardiff, UK.

出版信息

Eur J Neurosci. 2014 Dec;40(12):3720-34. doi: 10.1111/ejn.12740. Epub 2014 Sep 29.

Abstract

The present study examined immediate-early gene expression in the perirhinal cortex of rats with hippocampal lesions. The goal was to test those models of recognition memory which assume that the perirhinal cortex can function independently of the hippocampus. The c-fos gene was targeted, as its expression in the perirhinal cortex is strongly associated with recognition memory. Four groups of rats were examined. Rats with hippocampal lesions and their surgical controls were given either a recognition memory task (novel vs. familiar objects) or a relative recency task (objects with differing degrees of familiarity). Perirhinal Fos expression in the hippocampal-lesioned groups correlated with both recognition and recency performance. The hippocampal lesions, however, had no apparent effect on overall levels of perirhinal or entorhinal cortex c-fos expression in response to novel objects, with only restricted effects being seen in the recency condition. Network analyses showed that whereas the patterns of parahippocampal interactions were differentially affected by novel or familiar objects, these correlated networks were not altered by hippocampal lesions. Additional analyses in control rats revealed two modes of correlated medial temporal activation. Novel stimuli recruited the pathway from the lateral entorhinal cortex (cortical layer II or III) to hippocampal field CA3, and thence to CA1. Familiar stimuli recruited the direct pathway from the lateral entorhinal cortex (principally layer III) to CA1. The present findings not only reveal the independence from the hippocampus of some perirhinal systems associated with recognition memory, but also show how novel stimuli engage hippocampal subfields in qualitatively different ways from familiar stimuli.

摘要

本研究检测了海马损伤大鼠鼻周皮质中的即早基因表达。目的是检验那些认为鼻周皮质可独立于海马发挥功能的识别记忆模型。选取了c-fos基因作为研究对象,因为其在鼻周皮质中的表达与识别记忆密切相关。研究检测了四组大鼠。给海马损伤大鼠及其手术对照组分别给予一项识别记忆任务(新异物体与熟悉物体)或一项相对新近性任务(不同熟悉程度的物体)。海马损伤组的鼻周Fos表达与识别及新近性表现均相关。然而,海马损伤对鼻周皮质或内嗅皮质对新异物体反应时的c-fos表达总体水平并无明显影响,仅在新近性条件下观察到有限的影响。网络分析表明,虽然海马旁相互作用模式受新异或熟悉物体的影响不同,但这些相关网络并未因海马损伤而改变。对对照大鼠的进一步分析揭示了内侧颞叶相关激活的两种模式。新异刺激激活了从外侧内嗅皮质(皮质层II或III)到海马CA3区,再到CA1区的通路。熟悉刺激激活了从外侧内嗅皮质(主要是III层)到CA1区的直接通路。本研究结果不仅揭示了一些与识别记忆相关的鼻周系统独立于海马,还表明新异刺激与熟悉刺激以质的不同方式激活海马亚区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6763/4309468/779627ef6e01/ejn0040-3720-f1.jpg

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