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内侧和外侧内嗅皮层损伤大鼠对空间和非空间信息的处理:环境复杂性起作用。

Processing of spatial and non-spatial information in rats with lesions of the medial and lateral entorhinal cortex: Environmental complexity matters.

作者信息

Rodo Christophe, Sargolini Francesca, Save Etienne

机构信息

Aix Marseille Univ, CNRS, LNC Laboratory of Cognitive Neuroscience UMR 7291, Marseille, France.

Aix Marseille Univ, CNRS, LNC Laboratory of Cognitive Neuroscience UMR 7291, Marseille, France.

出版信息

Behav Brain Res. 2017 Mar 1;320:200-209. doi: 10.1016/j.bbr.2016.12.009. Epub 2016 Dec 9.

Abstract

The entorhinal-hippocampal circuitry has been suggested to play an important role in episodic memory but the contribution of the entorhinal cortex remains elusive. Predominant theories propose that the medial entorhinal cortex (MEC) processes spatial information whereas the lateral entorhinal cortex (LEC) processes non spatial information. A recent study using an object exploration task has suggested that the involvement of the MEC and LEC spatial and non-spatial information processing could be modulated by the amount of information to be processed, i.e. environmental complexity. To address this hypothesis we used an object exploration task in which rats with excitotoxic lesions of the MEC and LEC had to detect spatial and non-spatial novelty among a set of objects and we varied environmental complexity by decreasing the number of objects or amount of object diversity. Reducing diversity resulted in restored ability to process spatial and non-spatial information in MEC and LEC groups, respectively. Reducing the number of objects yielded restored ability to process non-spatial information in the LEC group but not the ability to process spatial information in the MEC group. The findings indicate that the MEC and LEC are not strictly necessary for spatial and non-spatial processing but that their involvement depends on the complexity of the information to be processed.

摘要

内嗅皮层 - 海马回路被认为在情景记忆中起重要作用,但内嗅皮层的具体贡献仍不明确。主流理论认为,内侧内嗅皮层(MEC)处理空间信息,而外侧内嗅皮层(LEC)处理非空间信息。最近一项使用物体探索任务的研究表明,MEC和LEC对空间和非空间信息的处理参与程度可能会受到要处理的信息量(即环境复杂性)的调节。为了验证这一假设,我们使用了一个物体探索任务,其中患有MEC和LEC兴奋性毒性损伤的大鼠必须在一组物体中检测空间和非空间新奇性,并且我们通过减少物体数量或物体多样性来改变环境复杂性。减少多样性分别导致MEC组和LEC组处理空间和非空间信息的能力恢复。减少物体数量使LEC组处理非空间信息的能力恢复,但MEC组处理空间信息的能力未恢复。这些发现表明,MEC和LEC对于空间和非空间处理并非严格必需,但它们的参与取决于要处理的信息的复杂性。

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