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空间交替能告诉我们关于压后皮质功能的哪些信息?

What does spatial alternation tell us about retrosplenial cortex function?

作者信息

Nelson Andrew J D, Powell Anna L, Holmes Joshua D, Vann Seralynne D, Aggleton John P

机构信息

School of Psychology, Cardiff University Cardiff, UK.

出版信息

Front Behav Neurosci. 2015 May 18;9:126. doi: 10.3389/fnbeh.2015.00126. eCollection 2015.

Abstract

The retrosplenial cortex supports navigation, but there are good reasons to suppose that the retrosplenial cortex has a very different role in spatial memory from that of the hippocampus and anterior thalamic nuclei. For example, retrosplenial lesions appear to have little or no effect on standard tests of spatial alternation. To examine these differences, the current study sought to determine whether the retrosplenial cortex is important for just one spatial cue type (e.g., allocentric, directional or intra-maze cues) or whether the retrosplenial cortex helps the animal switch between competing spatial strategies or competing cue types. Using T-maze alternation, retrosplenial lesion rats were challenged with situations in which the available spatial information between the sample and test phases was changed, so taxing the interaction between different cue types. Clear lesion deficits emerged when intra- and extra-maze cues were placed in conflict (by rotating the maze between the sample and choice phases), or when the animals were tested in the dark in a double-maze. Finally, temporary inactivation of the retrosplenial cortex by muscimol infusions resulted in a striking deficit on standard T-maze alternation, indicating that, over time, other sites may be able to compensate for the loss of the retrosplenial cortex. This pattern of results is consistent with the impoverished use of both allocentric and directional information, exacerbated by an impaired ability to switch between different cue types.

摘要

retrosplenial cortex支持导航,但有充分理由认为retrosplenial cortex在空间记忆中的作用与海马体和前丘脑核有很大不同。例如,retrosplenial损伤似乎对空间交替的标准测试几乎没有影响。为了研究这些差异,当前的研究试图确定retrosplenial cortex是否仅对一种空间线索类型(例如,以自我为中心的、方向性的或迷宫内线索)很重要,或者retrosplenial cortex是否帮助动物在相互竞争的空间策略或相互竞争的线索类型之间切换。使用T迷宫交替,对retrosplenial损伤的大鼠进行挑战,改变样本阶段和测试阶段之间可用的空间信息,从而考验不同线索类型之间的相互作用。当迷宫内外线索发生冲突时(通过在样本阶段和选择阶段之间旋转迷宫),或者当动物在黑暗中的双迷宫中接受测试时,明显的损伤缺陷就会出现。最后,通过注入蝇蕈醇暂时使retrosplenial cortex失活,导致标准T迷宫交替出现明显缺陷,这表明随着时间的推移,其他部位可能能够弥补retrosplenial cortex的缺失。这种结果模式与对以自我为中心和方向性信息的利用不足一致,不同线索类型之间切换能力受损加剧了这种不足。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75ba/4435072/ebef67aca0a5/fnbeh-09-00126-g001.jpg

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