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在大鼠中,刺激和反应类型之间的相互作用在内嗅皮层中的表现比在上游区域更为强烈。

Interactions between stimulus and response types are more strongly represented in the entorhinal cortex than in its upstream regions in rats.

机构信息

Department of Brain and Cognitive Sciences, Seoul National University, Shillim-dong, Korea.

出版信息

Elife. 2017 Dec 27;6:e32657. doi: 10.7554/eLife.32657.

Abstract

Previously we reported results which suggested that response types are critical in dissociating the lateral entorhinal cortex (LEC) from the medial entorhinal cortex (MEC) in a scene memory task (Yoo and Lee, 2017). Here, we investigated whether the perirhinal cortex (PER) and postrhinal cortex (POR), the upstream regions of the LEC and MEC, respectively, could be dissociated similarly. We conducted four tasks by combining different stimulus and response types. Our results suggest that the PER is important whenever object recognition is required and, together with prior findings, imply that PER-LEC networks are essential in goal-directed interactions with objects. The POR appears critical for recognizing visual scenes and may play key roles in scene-based navigation together with the MEC. The relative lack of functional dissociation between stimulus and response types at the PER-POR level suggests that actions conditioned on the recognition of external stimuli may be uniquely represented from the EC.

摘要

之前我们的研究结果表明,在场景记忆任务中,反应类型对于区分外侧内嗅皮层(LEC)和内侧内嗅皮层(MEC)至关重要(Yoo 和 Lee,2017)。在这里,我们研究了其上游区域——梨状皮层(PER)和后梨状皮层(POR)是否也可以类似地进行区分。我们通过结合不同的刺激和反应类型进行了四项任务。结果表明,当需要进行物体识别时,PER 非常重要,并且结合先前的发现,意味着 PER-LEC 网络对于与物体进行目标导向的交互至关重要。POR 对于识别视觉场景似乎至关重要,并且可能与 MEC 一起在基于场景的导航中发挥关键作用。在 PER-POR 水平上,刺激和反应类型之间相对缺乏功能上的分离表明,基于对外界刺激的识别而形成的条件反射可能是由 EC 独特表示的。

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