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Imprints of extreme prematurity on functional brain networks in school-aged children and adolescents

神经认知 默认模式网络 任务正网络 认知 心理学 工作记忆 功能连接 神经科学 队列 职能组织 发展心理学 大脑发育 睡眠剥夺对认知功能的影响 任务(项目管理) 注意力网络 听力学 大脑定位 认知心理学 基本认知任务 大脑活动与冥想 视觉注意 认知神经科学 神经功能成像
作者
Maksym Tokariev,Virve Vuontela,Anton Tokariev,Piia Lönnberg,Sture Andersson,Helena Mäenpää,Marjo Metsäranta,Aulikki Lano,Synnöve Carlson
出处
期刊:NeuroImage [Elsevier BV]
卷期号:320: 121447-121447 被引量:1
标识
DOI:10.1016/j.neuroimage.2025.121447
摘要

Cognitive functions emerge from dynamic functional interplay of cortical and subcortical areas that form networks. Preterm birth poses a risk for the formation and functionality of brain networks which may lead to severe brain dysfunctions. Infants born extremely preterm have the highest risk of developing neurocognitive impairments. However, it is still poorly understood how functional brain networks are organized and linked with the cognitive impairments in extremely prematurely born children and adolescents. We applied network-based statistics to study functional network connectivity during two brain-states, resting-state (Rest) and visuospatial working memory n-back tasks (Task), in a unique cohort of extremely preterm-born school-aged children and adolescents (n = 24, mean age 10.3 y, range 7.4-16.4 y) with normal general cognitive abilities and in their term-born peers (n = 22, mean age 9.5 y, range 7.4-13.7 y). We found significant group differences in functional connectivity strength in networks that support complex cognitive performance. The preterm group, compared with controls, modulated functional connectivity between Rest and Task differently within the dorsal attention (DAN, p = 0.016), default mode (DMN, p = 0.026) and visual (VN, p = 0.022) networks, and between DMN - DAN (p = 0.024), DMN - ventral attention network (VAN) (p = 0.035), and DMN - frontoparietal network (FPN) (p = 0.015). The groups also showed opposite age-related changes in connectivity strength within the DAN (Task, p = 0.005; Rest, p = 0.012), DMN (Task, p = 0.015) and FPN (Task, p = 0.002), and between the DAN - VAN (p = 0.047) and DAN - FPN (p = 0.009) during Rest, and FPN - VAN (p =0.028), DAN - FPN (p = 0.006), DMN - DAN (p = 0.042), DMN - VAN (p = 0.023), and DMN - FPN (p = 0.007) during Task. In controls, stronger within-network connectivity associated with better n-back task performance, whereas in the preterm group, stronger between-network connectivity associated with poorer performance. These results suggest that adjustment of functional connectivity to the cognitive demands supports successful performance in school-aged children and adolescents and that extremely preterm birth compromises the dynamics and developmental trajectories of brain networks.

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