Cingulo-opercular and frontoparietal control network connectivity and executive functioning in older adults

工作记忆 心理学 认知 认知心理学 执行职能 集合(抽象数据类型) 脑岛 神经科学 计算机科学 程序设计语言
作者
Hanna K. Hausman,Cheshire Hardcastle,Alejandro Albizu,Jessica N. Kraft,Nicole D. Evangelista,Emanuel M. Boutzoukas,Kailey Langer,Andrew O’Shea,Emily J. Van Etten,Pradyumna K. Bharadwaj,Hyun Song,Samantha G. Smith,Eric C. Porges,Steven T. DeKosky,Georg A. Hishaw,Samuel S. Wu,Michael Marsiske,Ronald A. Cohen,Gene E. Alexander,Adam J. Woods
出处
期刊:GeroScience [Springer Nature]
卷期号:44 (2): 847-866 被引量:38
标识
DOI:10.1007/s11357-021-00503-1
摘要

Executive function is a cognitive domain that typically declines in non-pathological aging. Two cognitive control networks that are vulnerable to aging—the cingulo-opercular (CON) and fronto-parietal control (FPCN) networks—play a role in various aspects of executive functioning. However, it is unclear how communication within these networks at rest relates to executive function subcomponents in older adults. This study examines the associations between CON and FPCN connectivity and executive function performance in 274 older adults across working memory, inhibition, and set-shifting tasks. Average CON connectivity was associated with better working memory, inhibition, and set-shifting performance, while average FPCN connectivity was associated solely with working memory. CON region of interest analyses revealed significant connections with classical hub regions (i.e., anterior cingulate and anterior insula) for each task, language regions for verbal working memory, right hemisphere dominance for inhibitory control, and widespread network connections for set-shifting. FPCN region of interest analyses revealed largely right hemisphere fronto-parietal connections important for working memory and a few temporal lobe connections for set-shifting. These findings characterize differential brain-behavior relationships between cognitive control networks and executive function in aging. Future research should target these networks for intervention to potentially attenuate executive function decline in older adults.

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