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海马体损伤会损害大鼠在条件性延迟匹配和位置非匹配任务中的表现。

Hippocampal lesions impair performance on a conditional delayed matching and non-matching to position task in the rat.

作者信息

Sloan Hazel L, Döbrössy Màtè, Dunnett Stephen B

机构信息

Brain Repair Group, School of Biosciences, Cardiff University, Museum, Wales, UK.

出版信息

Behav Brain Res. 2006 Aug 10;171(2):240-50. doi: 10.1016/j.bbr.2006.03.042. Epub 2006 May 11.

Abstract

The hippocampus is thought to be involved in a range of cognitive processes, from the ability to acquire new memories, to the ability to learn about spatial relationships. Humans and monkeys with damage to the hippocampus are typically impaired on delayed matching to sample tasks, of which the operant delayed matching to position task (DMTP) is a rat analogue. The reported effects of hippocampal damage on DMTP vary, ranging from delay-dependent deficits to no deficit whatsoever. The present study investigates a novel memory task; the conditional delayed matching/non-matching to position task (CDM/NMTP) in the Skinner box. CDM/NMTP uses the presence of specific stimulus cues to signify whether a particular trial is matching or non-matching in nature. Thus, it incorporates both the task contingencies within one session, and supplements the requirement for remembering the side of the lever in the sample phase with attending to the stimulus and remembering the conditional discrimination for the rule. Rats were trained preoperatively and the effects of bilateral excitotoxic lesions of the hippocampus were examined on postoperative retention of the task. Rats with lesions of the hippocampus incurred a significant impairment on the task that was manifest at all delays intervals. Despite a bias towards matching during training, trials of either type were performed with equivalent accuracy and neither rule was affected differentially by the lesion. This task may prove useful in determining the cognitive roles of a range of brain areas.

摘要

海马体被认为参与了一系列认知过程,从获取新记忆的能力到了解空间关系的能力。海马体受损的人类和猴子在延迟匹配样本任务中通常会受损,其中操作性延迟位置匹配任务(DMTP)是大鼠的类似任务。报告的海马体损伤对DMTP的影响各不相同,从依赖延迟的缺陷到完全没有缺陷。本研究调查了一种新的记忆任务;斯金纳箱中的条件延迟位置匹配/非匹配任务(CDM/NMTP)。CDM/NMTP使用特定刺激线索的存在来表明特定试验在本质上是匹配还是不匹配。因此,它在一个实验环节中纳入了任务的偶然性,并通过关注刺激和记住规则的条件辨别来补充在样本阶段记住杠杆一侧的要求。术前对大鼠进行训练,并检查海马体双侧兴奋性毒性损伤对术后任务保持的影响。海马体受损的大鼠在该任务上出现了显著损伤,在所有延迟间隔都有表现。尽管在训练期间有匹配的倾向,但两种类型的试验执行的准确性相当,且两种规则都没有受到损伤的不同影响。这项任务可能被证明在确定一系列脑区的认知作用方面是有用的。

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