首页> 外文期刊>Behavioural Brain Research: An International Journal >Excitotoxic lesion of the perirhinal cortex impairs spatial working memory in a delayed-alternation task
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Excitotoxic lesion of the perirhinal cortex impairs spatial working memory in a delayed-alternation task

机译:周围性皮层的兴奋性毒性损害损害了延迟交替任务中的空间工作记忆

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The perirhinal cortex (PRh) is strategically located between the neocortex and memory-related structures such as the entorhinal cortex and the hippocampal formation. The pattern of strong reciprocal connections between these areas, together with experimental evidence that PRh damage induces specific memory deficits, has placed this cortical region at the center of a growing interest for its role in learning and memory mechanisms.The aim of the present study is to clarify the involvement of PRh in learning and retention in a novel experimental model of spatial working memory, the water T-maze. The data show that pre-acquisition neurotoxic PRh lesions caused task-learning deficits. This impairment was observed during the acquisition phase as well as the retrieval phase. On the other hand, a post-acquisition PRh neurotoxic lesion failed to impair the acquisition and the retrieval of the water T-maze task performed 32 day after lesion. These results suggest a possible key role of PRh in the acquisition but not in the retention of a working memory task. Furthermore, these results show that the water T-maze may be a suitable learning paradigm to study different components of learning and memory.
机译:周围神经皮质(PRh)战略性地位于新皮质和与记忆有关的结构之间,例如内嗅皮质和海马结构。这些区域之间强烈的相互联系的模式,以及PRh损伤引起特定记忆缺陷的实验证据,已使该皮质区域因其在学习和记忆机制中的作用而日益引起人们的关注。本研究的目的是为了阐明PRh在空间工作记忆的新型实验模型(水T迷宫)的学习和保留中的参与。数据显示,采集前神经毒性PRh损伤导致任务学习不足。在获取阶段和检索阶段都观察到了这种损害。另一方面,采集后的PRh神经毒性病变未能损害采集,并且在病变后32天执行水T迷宫任务的取回。这些结果表明PRh在获取过程中可能发挥关键作用,但在保持工作记忆任务方面却不起作用。此外,这些结果表明水迷宫可能是学习学习和记忆的不同组成部分的合适学习范例。

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