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在中侧内嗅皮层损伤的大鼠中使用全局或局部参考框架进行导航。

Navigation using global or local reference frames in rats with medial and lateral entorhinal cortex lesions.

机构信息

Laboratory of Cognitive Neuroscience, Marseille, France.

Laboratory of Cognitive Neuroscience, Marseille, France.

出版信息

Behav Brain Res. 2021 Sep 10;413:113448. doi: 10.1016/j.bbr.2021.113448. Epub 2021 Jul 8.

Abstract

The medial (MEC) and the lateral (LEC) regions of the entorhinal cortex send a major input to the hippocampus and have been proposed to play a foremost role in combining spatial and non-spatial attributes of episodic memory. In addition, it has been recently suggested that the MEC is involved in the processing of information in a global reference frame and the LEC in the processing of information in a local reference frame. Whether these putative functions could be generalized to navigation contexts has not been established yet. To address this hypothesis, rats with MEC or LEC NMDA-induced lesions were trained in two versions of a navigation task in the water maze, a global cue condition in which they had to use distal room cues and a local cue condition in which they had to use 3 objects placed in the pool. In the global cue condition, MEC-lesioned rats exhibited slower acquisition and were not able to precisely locate the submerged platform during the probe trial. In contrast LEC-lesioned rats exhibited control-like performance. In the local cue condition, navigational abilities were spared in both lesion groups. In addition when the 3 different objects were replaced by 3 identical objects, all groups maintained their navigation accuracy suggesting that the identity of objects is not crucial for place navigation. Overall, the results indicate that the MEC is necessary for place navigation using a global reference frame. In contrast, navigation using a local reference frame does not require the LEC nor the MEC.

摘要

内嗅皮层的内侧(MEC)和外侧(LEC)区域向海马体发送主要输入,并被提议在组合情景记忆的空间和非空间属性方面发挥主要作用。此外,最近有人提出,MEC 参与在全局参考系中处理信息,而 LEC 参与在局部参考系中处理信息。这些假定的功能是否可以推广到导航环境中尚未确定。为了验证这一假设,使用 NMDA 诱导损伤的大鼠在水迷宫中的两种导航任务版本中接受训练,一种是全局线索条件,大鼠必须使用远距离房间线索,另一种是局部线索条件,大鼠必须使用放置在水池中的 3 个物体。在全局线索条件下,MEC 损伤大鼠表现出较慢的习得速度,并且在探针试验期间无法精确定位淹没的平台。相比之下,LEC 损伤大鼠表现出类似对照的表现。在局部线索条件下,两个损伤组的导航能力都没有受到影响。此外,当 3 个不同的物体被 3 个相同的物体代替时,所有组都保持其导航准确性,表明物体的身份对于位置导航并非至关重要。总体而言,结果表明 MEC 对于使用全局参考系的位置导航是必需的。相比之下,使用局部参考系的导航不需要 LEC 也不需要 MEC。

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