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在哥廷根小型猪中进行的一种新型空间延迟非匹配样本(DNMS)任务。

A novel spatial Delayed Non-Match to Sample (DNMS) task in the Göttingen minipig.

作者信息

Nielsen Thomas Rune, Kornum Birgitte Rahbek, Moustgaard Anette, Gade Anders, Lind Nanna Marie, Knudsen Gitte Moos

机构信息

Neurobiology Research Unit and Center for Integrated Molecular Brain Imaging, Copenhagen University Hospital, Rigshospitalet, Blegdamsvej 9, DK-2100 Copenhagen E, Denmark.

出版信息

Behav Brain Res. 2009 Jan 3;196(1):93-8. doi: 10.1016/j.bbr.2008.07.019. Epub 2008 Jul 25.

DOI:10.1016/j.bbr.2008.07.019
PMID:18706937
Abstract

The pig (Sus scrofus) is a valuable animal for modeling human brain diseases. When evaluating animal models of many human brain disorders cognitive testing is crucial, but the pig's ability to learn the typical types of tasks used in neuropsychological testing of other species is largely unknown. The present study is the first study to evaluate the pig's ability to learn the Delayed Non-Match to Sample (DNMS) task. The pigs were trained in a maze on a spatial version of the DNMS task. Initially, the pigs were trained with a 60s delay interval between sample and test phases, and we found that the pigs required an average of 144 trials to reach criterion for learning the task, which is similar to macaque monkeys. We also found that pigs, in contrast to rats, do not have a natural tendency to alternate in their choices in the task. To evaluate the sensitivity to reduced memory function longer delay intervals (300 s and 900 s) and a scopolamine challenge were introduced. In our test condition we found a significant effect of longer delay intervals (F(2,21)=34.43, P<0.0001) and of scopolamine (F(1,14)=14.28, P=0.002) on the number of correct choices in the task. We conclude that the Göttingen minipig can solve the spatial DNMS task and that the task is sensitive to both increasing delay intervals and to scopolamine.

摘要

猪(Sus scrofus)是用于模拟人类脑部疾病的重要动物。在评估许多人类脑部疾病的动物模型时,认知测试至关重要,但猪学习其他物种神经心理学测试中常用典型任务类型的能力在很大程度上尚不清楚。本研究是第一项评估猪学习延迟非匹配样本(DNMS)任务能力的研究。猪在迷宫中接受空间版DNMS任务的训练。最初,在样本阶段和测试阶段之间给猪设置60秒的延迟间隔进行训练,我们发现猪平均需要144次试验才能达到学习该任务的标准,这与猕猴相似。我们还发现,与大鼠不同,猪在任务中的选择没有自然交替的倾向。为了评估对记忆功能减退的敏感性,引入了更长的延迟间隔(300秒和900秒)以及东莨菪碱激发试验。在我们的测试条件下,我们发现更长的延迟间隔(F(2,21)=34.43,P<0.0001)和东莨菪碱(F(1,14)=14.28,P=0.002)对任务中正确选择的数量有显著影响。我们得出结论,哥廷根小型猪可以解决空间DNMS任务,并且该任务对增加的延迟间隔和东莨菪碱均敏感。

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