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Striatal Dopamine Mediates the Interface between Motivational and Cognitive Control in Humans: Evidence from Genetic Imaging

机译:纹状体多巴胺介导人类的动机和认知控制之间的接口:来自遗传成像的证据。

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摘要

Dopamine has been hypothesized to provide the basis for the interaction between motivational and cognitive control. However, there is no evidence for this hypothesis in humans. We fill this gap by using fMRI, a novel behavioral paradigm and a common polymorphism in the DAT1 gene (SLC6A3). Carriers of the 9-repeat (9R) allele of a 40 base pair repeat polymorphism in the 3′ untranslated region of DAT1, associated with high striatal dopamine, showed greater activity in the ventromedial striatum during reward anticipation than homozygotes for the 10-repeat allele, replicating previous genetic imaging studies. The crucial novel finding is that 9R carriers also exhibited a greater influence of anticipated reward on switch costs, as well as greater activity in the dorsomedial striatum during task switching in anticipation of high reward relative to low reward. These data establish a crucial role for human striatal dopamine in the modulation of cognitive flexibility by reward anticipation, thus, elucidating the neurochemical mechanism of the interaction between motivation and cognitive control.
机译:假设多巴胺为动机和认知控制之间的相互作用提供基础。但是,在人类中没有证据支持这一假设。我们通过使用功能磁共振成像,一种新的行为范例和DAT1基因(SLC6A3)中常见的多态性填补了这一空白。 40碱基对的9重复(9R)等位基因在DAT1的3'非翻译区中重复多态性与高纹状体多巴胺有关,在奖励预期期间,腹侧纹状体的活动性高于10重复等位基因的纯合子,复制以前的遗传成像研究。至关重要的新颖发现是,9R携带者还表现出预期奖励对转换成本的更大影响,以及在任务转换期间,背靠背纹状体中的活动增加,从而预期了相对于低奖励的高奖励。这些数据通过奖励预期对人类纹状体多巴胺发挥关键作用,从而调节认知灵活性,从而阐明动机与认知控制之间相互作用的神经化学机制。

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