Department of Psychiatry and Institute of Behavioral Science in Medicine, Yonsei University College of Medicine, Seoul 120-752, South Korea.
Cereb Cortex. 2014 May;24(5):1397-408. doi: 10.1093/cercor/bht008. Epub 2013 Jan 24.
Personal attitude toward ambiguity contributes to individual differences in decision making in uncertain situations. Operationally, these attitudes reflect the various coping strategies elected to overcome the limited information. A key brain region involved in cognitive control for performance adjustments is the dorsal anterior cingulate cortex (dACC). To test how dACC functional network connectivity would be modulated by uncertainty and differ between individuals, 24 healthy participants underwent functional MRI in 3 sequential runs: 1 resting-state and 2 decision-making task runs. Individuals with lower nonplanning impulsiveness made greater use of a Pass option and avoided uncertain ambiguous situations. Seed-based functional connectivity analysis during the task runs revealed that stronger activation synchrony between the left dACC and the right anterior insula correlated with greater use of a Pass response option. During the resting-state, stronger resting-state functional connectivity between the left dACC and the ventral striatum predicted the adoption of Pass as a behavioral strategy and correlated with stronger task-activated synchrony between the dACC and the right anterior insula. Our findings indicate that that the synchrony between the dACC and insula-striatal circuitry was greater in individuals with low compared with high nonplanning impulsiveness and contributed to adopting Pass as a useful behavioral strategy.
个人对模糊性的态度导致了在不确定情况下做出决策的个体差异。从操作上看,这些态度反映了为克服有限信息而选择的各种应对策略。参与认知控制以进行绩效调整的关键大脑区域是背侧前扣带皮层(dACC)。为了测试 dACC 功能网络连接如何受到不确定性的调节并在个体之间存在差异,24 名健康参与者在 3 个连续的运行中进行了功能磁共振成像:1 个静息状态和 2 个决策任务运行。非计划冲动性较低的个体更多地使用“通过”选项,并避免不确定的模糊情况。在任务运行期间进行的基于种子的功能连接分析表明,左 dACC 和右前岛叶之间更强的激活同步与更大程度地使用“通过”反应选项相关。在静息状态下,左 dACC 和腹侧纹状体之间更强的静息状态功能连接预测了“通过”作为一种行为策略的采用,并与 dACC 和右前岛叶之间更强的任务激活同步相关。我们的研究结果表明,与高非计划冲动性个体相比,低非计划冲动性个体的 dACC 和岛叶纹状体回路之间的同步性更高,并且有助于采用“通过”作为一种有用的行为策略。