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The ultimate intra-/extra-dimensional attentional set-shifting task for mice

机译:小鼠的终极内/超维注意力转移任务

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摘要

Background Alterations in executive control and cognitive flexibility, such as attentional set-shifting abilities, are core features of several neuropsychiatric diseases. The most widely used neuropsychological tests for the evaluation of attentional set shifting in humans are the Wisconsin Card Sorting Test and the Cambridge Neuropsychological Test Automated Battery Intra-/Extra-Dimensional set-shift task (ID/ED). These tasks have proven clinical relevance and have been successfully adapted for monkeys. However, similar tasks currently available for rodents are limited, mainly because of their manual-based testing procedures. The current limitations of rodent attentional set-shifting tasks are hampering translational advances in psychiatric medicine. Methods To closely mimic the Cambridge Neuropsychological Test Automated Battery ID/ED task in primates, we present the development of a novel operant-based two-chamber ID/ED "Operon" task for mice. Results We show the ability of this novel task to measure attentional set shifting in mice and the effects of genetic and pharmacologic manipulations of dopamine and glutamate. In genetically modified mice with reduced catechol-O- methyltransferase activity there was selective improvement on extradimensional shift abilities and impairment of serial reversal learning. Chronic administration of phencyclidine produced a selective impairment of extradimensional shift while producing a generalized decrease in latency to respond. Conclusions We demonstrate that this novel ID/ED Operon task may be an effective preclinical tool for drug testing and large genetic screening relevant to the study of executive dysfunctions and cognitive symptoms of psychiatric disorders. These findings may help elucidate the biological validity of similar findings in humans.
机译:背景执行控制的改变和认知灵活性,例如注意力转移能力,是几种神经精神疾病的核心特征。评估人类注意力集中转移的最广泛使用的神经心理学测试是威斯康星卡片分类测试和剑桥神经心理学测试自动电池内/超维集合移位任务(ID / ED)。这些任务已被证明具有临床意义,并已成功地适用于猴子。但是,当前可用于啮齿动物的类似任务受到限制,这主要是因为它们是基于手动的测试程序。啮齿动物注意力转移的当前局限性阻碍了精神医学的转化进展。方法为了密切模仿灵长类动物中的剑桥神经心理学测试自动电池ID / ED任务,我们提出了一种新型的基于操作员的两室ID / ED“ Operon”小鼠任务。结果我们证明了这项新颖任务能够测量小鼠的注意力集中转移,以及对多巴胺和谷氨酸的遗传和药理作用的影响。在具有降低的儿茶酚-O-甲基转移酶活性的转基因小鼠中,在维度外转移能力和连续逆转学习障碍方面有选择性的改善。长期服用苯环利定会选择性地损害维度外转移,同时导致反应潜伏期的普遍减少。结论我们证明了这一新颖的ID / ED手术任务可能是一种有效的临床前工具,可用于进行药物测试和大型基因筛查,与研究精神障碍的执行功能障碍和认知症状有关。这些发现可能有助于阐明人类相似发现的生物学有效性。

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