首页> 外文期刊>Behavioural Brain Research: An International Journal >Procedural learning and cognitive flexibility in a mouse model of restricted, repetitive behaviour.
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Procedural learning and cognitive flexibility in a mouse model of restricted, repetitive behaviour.

机译:在受限,重复行为的小鼠模型中的程序学习和认知灵活性。

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Restricted, repetitive behaviours (e.g., stereotypies, compulsions, rituals) in neurodevelopmental disorders have been linked to alterations in cortico-basal ganglia circuitry. Cognitive processes mediated by this circuitry (e.g., procedural learning, executive function) are likely to be impaired in individuals exhibiting high rates of repetitive behaviour. To test this hypothesis, we assessed both procedural learning and cognitive flexibility (reversal learning) using a T-maze task in deer mice (Peromyscus maniculatus) exhibiting various rates of repetitive behaviour (vertical jumping and backward somersaulting). These mice exhibited high rates of stereotypy when reared in standard rodent cages, and such behaviour was significantly attenuated by housing them in larger more complex environments. Mice reared in complex environments exhibited significantly better procedural and reversal learning than standard caged mice. Thus, early experience associated with the prevention and attenuation of stereotypy was associated with better striatally mediated learning and cognitive flexibility. Stereotypy score was significantly correlated with the number of errors made in reversal learning, and interacted with housing condition to affect overall cognitive performance. Our findings support the applicability of the deer mouse model of spontaneous stereotypy to a wider range of restricted, repetitive behaviour (e.g., insistence on sameness) typical of neurodevelopmental disorders.
机译:神经发育障碍中受限制的重复性行为(例如刻板印象,强迫行为,仪式)与皮质基底神经节回路的改变有关。由这种电路介导的认知过程(例如,程序学习,执行功能)可能会在表现出高重复性行为的个体中受损。为了检验该假设,我们在表现出不同重复行为速率(垂直跳跃和向后翻筋斗)的鹿小鼠(Peromyscus maniculatus)中使用T型迷宫任务评估了程序学习和认知灵活性(逆向学习)。这些小鼠在标准的啮齿动物笼中饲养时,表现出很高的成见率,并且通过将它们安置在更大,更复杂的环境中,这种行为显着减弱。与标准笼养小鼠相比,在复杂环境中饲养的小鼠表现出更好的程序和逆向学习。因此,与预防和消除陈规定型观念有关的早期经验与更好的纹状体介导的学习和认知灵活性有关。刻板印象得分与逆向学习中犯下的错误数量显着相关,并且与居住条件相互作用影响整体认知表现。我们的发现支持自发性刻板印象的鹿小鼠模型在神经发育障碍典型的更广泛的受限重复性行为(例如坚持相同性)中的适用性。

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