Arnold Christiane, Gispert Suzana, Bonig Halvard, von Wegner Frederic, Somasundaram Sriramya, Kell Christian A
Cognitive Neuroscience Group, Brain Imaging Center, Institute for Transfusion Medicine and Immunohematology, Goethe University, Frankfurt, Germany.
Department of Neurology, Institute for Transfusion Medicine and Immunohematology, Goethe University, Frankfurt, Germany.
Cereb Cortex. 2016 Apr;26(4):1539-1557. doi: 10.1093/cercor/bhu330. Epub 2015 Jan 16.
Choosing and implementing the rules for contextually adequate behavior depends on frontostriatal interactions. Observations in Parkinson's disease and pharmacological manipulations of dopamine transmission suggest that these corticobasal loops are modulated by dopamine. To determine, therefore, the physiological contributions of dopamine to task-rule-related processing, we performed a cue-target fMRI reading paradigm in 71 healthy participants and investigated the effects of COMT Val158Met, DAT1 VNTR 9/10, and DRD2/ANKK1 polymorphisms. The DRD2/ANKK1 polymorphism did not affect results. Intermediate prefrontal dopamine concentrations in COMT Val158Met heterozygotes facilitated preparatory interactions between the mesial prefrontal cortex and the left striatum during preparation for overt reading. To our knowledge, this is the first report of an inverted U-shaped curve modulation of cognition-related brain activity by prefrontal dopamine levels. In contrast, a linear effect of COMT Val158Met and DAT1 VNTR 9/10 polymorphisms on preparatory activity in the left inferior frontal gyrus pointed to a negative interaction between tonic lateral prefrontal and phasic subcortical dopamine. The COMT Val158Met polymorphism affected also feedforward and feedback processing in the sensorimotor speech system. Our results suggest that dopamine modulates corticobasal interactions on both the cortical and subcortical level but differently depending on the specific cognitive subprocesses involved.
选择并实施情境适当行为的规则取决于额前叶与纹状体之间的相互作用。对帕金森病的观察以及对多巴胺传递的药理学操作表明,这些皮质-基底神经节环路受多巴胺调节。因此,为了确定多巴胺对与任务规则相关的加工过程的生理作用,我们对71名健康参与者进行了线索-目标功能磁共振成像阅读范式实验,并研究了儿茶酚-O-甲基转移酶(COMT)Val158Met、多巴胺转运体1(DAT1)可变数目串联重复序列(VNTR)9/10以及多巴胺D2受体(DRD2)/ANKK1多态性的影响。DRD2/ANKK1多态性未影响实验结果。在准备进行公开阅读期间,COMT Val158Met杂合子中前额叶多巴胺浓度处于中等水平,促进了内侧前额叶皮质与左侧纹状体之间的准备性相互作用。据我们所知,这是前额叶多巴胺水平对认知相关脑活动呈倒U形曲线调节的首次报道。相比之下,COMT Val158Met和DAT1 VNTR 9/10多态性对左侧额下回准备性活动的线性影响表明,紧张性外侧前额叶多巴胺与相位性皮质下多巴胺之间存在负性相互作用。COMT Val158Met多态性还影响了感觉运动言语系统中的前馈和反馈加工。我们的结果表明,多巴胺在皮质和皮质下水平均调节皮质-基底神经节相互作用,但根据所涉及的特定认知子过程的不同而有所差异。