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内嗅皮层损伤大鼠中不稳定的CA1位置细胞表征。

Unstable CA1 place cell representation in rats with entorhinal cortex lesions.

作者信息

Van Cauter Tiffany, Poucet Bruno, Save Etienne

机构信息

Laboratory of Neurobiology and Cognition, UMR 6155 CNRS-Aix-Marseille Université, Pôle 3C, 3 place Victor Hugo, 13331 Marseille Cedex 3, France.

出版信息

Eur J Neurosci. 2008 Apr;27(8):1933-46. doi: 10.1111/j.1460-9568.2008.06158.x.

Abstract

Recent studies emphasize the importance of the entorhinal cortex in spatial representation and navigation. Furthermore, evidence is accumulating to show that spatial processing depends on interactions between the entorhinal cortex and the hippocampus. To investigate these interactions, we examined the effects of entorhinal cortex lesions on the activity of hippocampal CA1 place cells. Rats received bilateral radiofrequency lesions of the entorhinal cortex or sham lesions before place cell recording. Place cells were recorded as the rats performed a pellet-chasing task in a cylinder containing three cue-objects. Entorhinal cortex lesions did not abolish place cell spatial firing but reduced noticeably discharge rate and field size. Most importantly, the lesions affected firing field stability when cells were recorded both in constant conditions and following cue manipulations (object rotation, object removal). These findings indicate that the entorhinal cortex is necessary for the stability of hippocampal representations across exposures to a familiar environment. Consistent with the recent discovery of grid cells in the medial entorhinal cortex, our results suggest that the entorhinal cortex contributes to providing a spatial framework that would enable the hippocampus to maintain stable environment-specific representations.

摘要

近期研究强调了内嗅皮层在空间表征和导航中的重要性。此外,越来越多的证据表明,空间处理依赖于内嗅皮层与海马体之间的相互作用。为了研究这些相互作用,我们检测了内嗅皮层损伤对海马CA1区位置细胞活动的影响。在记录位置细胞活动之前,大鼠接受双侧内嗅皮层的射频损伤或假损伤。当大鼠在一个装有三个提示物体的圆柱体中执行追逐小球任务时,记录位置细胞的活动。内嗅皮层损伤并未消除位置细胞的空间放电,但显著降低了放电率和感受野大小。最重要的是,当在恒定条件下以及提示操作(物体旋转、物体移除)后记录细胞时,损伤影响了放电野的稳定性。这些发现表明,内嗅皮层对于在熟悉环境中多次暴露时海马表征的稳定性是必要的。与近期在内侧内嗅皮层中发现网格细胞一致,我们的结果表明,内嗅皮层有助于提供一个空间框架,使海马体能够维持稳定的环境特异性表征。

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