The neural basis of motivational influences on cognitive control

被引:37
|
作者
Parro, Cameron [1 ]
Dixon, Matthew L. [1 ]
Christoff, Kalina [1 ,2 ]
机构
[1] Univ British Columbia, Dept Psychol, Vancouver, BC, Canada
[2] Univ British Columbia, Ctr Brain Hlth, Vancouver, BC, Canada
关键词
cognitive control; control network; frontoparietal; reward; ANTERIOR CINGULATE CORTEX; DORSOLATERAL PREFRONTAL CORTEX; FRONTOPARIETAL CONTROL NETWORK; INFERIOR FRONTAL JUNCTION; ORBITOFRONTAL CORTEX; DECISION-MAKING; INTEGRATIVE THEORY; FUNCTIONAL-ORGANIZATION; COMPUTATIONAL MODELS; EXECUTIVE FUNCTIONS;
D O I
10.1002/hbm.24348
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Cognitive control mechanisms support the deliberate regulation of thought and behavior based on current goals. Recent work suggests that motivational incentives improve cognitive control and has begun to elucidate critical neural substrates. We conducted a quantitative meta-analysis of neuroimaging studies of motivated cognitive control using activation likelihood estimation (ALE) and Neurosynth to delineate the brain regions that are consistently activated across studies. The analysis included studies that investigated changes in brain activation during cognitive control tasks when reward incentives were present versus absent. The ALE analysis revealed consistent recruitment in regions associated with the frontoparietal control network including the inferior frontal sulcus and intraparietal sulcus, as well as regions associated with the salience network including the anterior insula and anterior mid-cingulate cortex. As a complementary analysis, we performed a large-scale exploratory meta-analysis using Neurosynth to identify regions that are recruited in studies using of the terms cognitive control and incentive. This analysis replicated the ALE results and also identified the rostrolateral prefrontal cortex, caudate nucleus, nucleus accumbens, medial thalamus, inferior frontal junction, premotor cortex, and hippocampus. Finally, we separately compared recruitment during cue and target periods, which tap into proactive engagement of rule-outcome associations, and the mobilization of appropriate viscero-motor states to execute a response, respectively. We found that largely distinct sets of brain regions are recruited during cue and target periods. Altogether, these findings suggest that flexible interactions between frontoparietal, salience, and dopaminergic midbrain-striatal networks may allow control demands to be precisely tailored based on expected value.
引用
收藏
页码:5097 / 5111
页数:15
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