The functional connectivity between right insula and anterior cingulate cortex underlying the association between future self-continuity and delay discounting

功能连接 脑岛 扣带回前部 联想(心理学) 心理学 贴现 神经科学 错误相关否定性 延迟贴现 扣带皮质 岛叶皮质 皮质(解剖学) 认知心理学 认知 发展心理学 冲动性 经济 财务 中枢神经系统 心理治疗师
作者
Hengyue Zhao,Jingjing Sun,Rong Zhang,Yumeng Jiang,Yuetong Zhang,Tingyong Feng,Pan Feng
出处
期刊:Cerebral Cortex [Oxford University Press]
卷期号:34 (7)
标识
DOI:10.1093/cercor/bhae296
摘要

Abstract Delay discounting refers to the tendency of individuals to devalue future rewards as the delay in their receipt increases over time. Previous studies have indicated that future self-continuity correlates with delay discounting rates. However, the neural basis underlying the relationship between future self-continuity and delay discounting is not clear. To address this question, we used voxel-based morphometry and resting-state functional connectivity analyses to investigate the neural basis underlying the association between future self-continuity and delay discounting. Behavioral result showed that future self-continuity was positively associated with delay discounting. Voxel-based morphometry analysis result indicated that gray matter volume in the right dorsal anterior insula was positively correlated with future self-continuity. Resting-state functional connectivity analysis found that functional connectivity between the right dorsal anterior insula and anterior cingulate cortex was positively associated with future self-continuity. Mediation analysis showed that the right dorsal anterior insula–right anterior cingulate cortex functional connectivity partially mediated the relationship between future self-continuity and delay discounting. These results suggested that right dorsal anterior insula–right anterior cingulate cortex functional connectivity could be the neural basis underlying the association between future self-continuity and delay discounting. In summary, the study provided novel insights into how future self-continuity affected delay discounting and offers new explanations from a neural perspective.
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