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The role of the anterior mediodorsal and parafascicular thalamus in instrumental conditioning

机译:前中部和筋膜旁丘脑在仪器调节中的作用

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摘要

The traditional animal model of instrumental behavior has focused almost exclusively on structures within the cortico-striatal network and ignored the contributions of various thalamic nuclei despite large and specific connections with each of these structures. One possible reason for this is that the thalamus has been conventionally viewed as a mediator of general processes, such as attention, arousal and movement, that are not easily separated from more cognitive aspects of instrumental behavior. Recent research has, however, begun to separate these roles. Here we review the role of three thalamic nuclei in instrumental conditioning: the anterior thalamic nuclei (ANT), the mediodorsal (MD), and parafascicular thalamic nuclei (PF). Early research suggested that ANT might regulate aspects of instrumental behavior but, on review, we suggest that the types of tasks used in these studies were more likely to recruit Pavlovian processes. Indeed lesions of ANT have been found to have no effect on performance in instrumental free-operant tasks. By contrast the mediodorsal thalamus (MD) has been found to play a specific and important role in the acquisition of goal-directed action. We propose this role is related to its connections with prelimbic cortex (PL) and present new data that directly implicates this circuit in the acquisition of goal-directed actions. Finally we review evidence suggesting the PF, although not critical for the acquisition or performance of instrumental actions, plays a specific role in regulating action flexibility.
机译:传统的工具行为动物模型几乎只关注皮质-纹状体网络内的结构,尽管与这些结构中的每一个都有特定的联系,却忽略了各种丘脑核的贡献。造成这种情况的一个可能原因是,丘脑通常被视为一般过程的介体,例如注意力,唤醒和运动,这些过程不容易与工具行为的更多认知方面分开。但是,最近的研究已经开始将这些角色分开。在这里,我们回顾了三个丘脑核在仪器调节中的作用:丘脑前核(ANT),腹中膜(MD)和束旁丘脑核(PF)。早期研究表明,ANT可能会调节工具行为的各个方面,但是,回顾一下,我们建议,这些研究中使用的任务类型更可能招募Pavlovian过程。实际上,已经发现ANT的病变对工具性自由操作任务的表现没有影响。相比之下,发现中腹丘脑(MD)在获得目标导向动作中起着特定而重要的作用。我们认为该作用与其与前肢皮层(PL)的联系有关,并提出了新数据,这些数据直接暗示了该电路与目标定向动作的获取有关。最后,我们回顾了表明PF的证据,尽管它对获取或执行工具性动作并不重要,但它在调节动作的灵活性方面起着特定的作用。

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