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Do the rat anterior thalamic nuclei contribute to behavioural flexibility?

机译:大鼠前粒核核心是否有助于行为灵活性?

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The rodent anterior thalamic nuclei (ATN) are vital for spatial memory. A consideration of their extensive frontal connections suggests that these nuclei may also subserve non-spatial functions. The current experiments explored the importance of the ATN for different aspects of behavioural flexibility, including their contribution to tasks typically associated with frontal cortex. In Experiment 1, rats with ATN lesions were tested on a series of response and visual discriminations in an operant box and, subsequently, in a water tank. The tasks included assessments of reversal learning as well switches between each discrimination dimension. Results revealed a mild and transient deficit on the operant task that was not specific to any stage of the procedure. In the water tank, the lesion animals were impaired on the reversal of a spatial discrimination but did not differ from controls on any other measure. Experiment 2 examined the impact of ATN damage on a rodent analogue of the 'Stoop', which assesses response choice during stimulus conflict. The lesion animals successfully acquired this task and were able to use contextual information to disambiguate conflicting cue information. However, responding during the initial presentation of conflicting cue information was affected by the lesion. Taken together, these results suggest that the ATN are not required for aspects of behavioural flexibility (discrimination learning, reversals or high-order switches) typically associated with the rat medial prefrontal cortex. The results from Experiment 2 suggest that the non-spatial functions of the ATN may be more aligned with those of the anterior cingulate cortex.
机译:啮齿动物前丘脑核(ATN)对空间记忆至关重要。考虑到其广泛的正面连接表明这些核也可以使用非空间功能。目前的实验探讨了ATN对行为灵活性的不同方面的重要性,包括它们对通常与额外皮质相关的任务的贡献。在实验1中,在操作盒中的一系列响应和视觉辨别中测试具有ATN病变的大鼠,随后在水箱中进行测试。这些任务包括在每个识别维度之间切换的反转学习的评估。结果显示了不具体到程序的任何阶段的操作任务的温和和瞬态赤字。在水箱中,病变动物对空间歧视的逆转受到损害,但没有与任何其他措施的对照不同。实验2检查了ATN损伤对“弯曲”的啮齿动物类似物的影响,评估了刺激冲突期间的反应选择。病变动物成功获得了这项任务,并能够使用上下文信息消除冲突的提示信息。但是,在初始介绍冲突的提示信息期间的响应受到病变的影响。总之,这些结果表明,通常与大鼠内侧前额外皮质皮层相关的行为灵活性(鉴别学习,逆转或高阶交换机)的方面不需要ATN。来自实验2的结果表明,ATN的非空间功能可以与前连杆皮质的那些更加对准。

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