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儿童个体内反应时变异性的默认和控制网络活动的快速变化:年龄和性别是否重要?

Fast changes in default and control network activity underlying intraindividual response time variability in childhood: Does age and sex matter?

机构信息

Laboratory of Cognitive Physiology, Scientific Research Institute of Neurosciences and Medicine, Novosibirsk, Russia.

Department of Psychology, Institute of Medicine and Psychology, Novosibirsk State University, Novosibirsk, Russia.

出版信息

Dev Psychobiol. 2023 May;65(4):e22382. doi: 10.1002/dev.22382.

DOI:10.1002/dev.22382
PMID:37073590
Abstract

Intraindividual response time variability (RTV) is considered as a general marker of neurological health. In adults, the central executive and salience networks (task-positive networks, TPN) and the default mode network (DMN) are critical for RTV. Given that RTV decreases with growing up, and that boys are likely somewhat behind girls with respect to the network development, we aimed to clarify age and sex effects. Electroencephalogram was recorded during Stroop-like test performance in 124 typically developing children aged 5-12 years. Network fluctuations were calculated as changes of current source density (CSD) in regions of interest (ROIs) from pretest to 1-s test interval. In boys, TPN activation (CSD increase in ROIs included in the TPN) was associated with lower RTV, suggesting a greater engagement of attentional control. In children younger than 9.5 years, higher response stability was associated with the predominance of TPN activation over DMN activation (CSD increase in ROIs included in the TPN > that in the DMN); this predominance increased with age, suggesting that variability among younger children may be due to network immaturity. These findings suggest that the TPN and DMN may play different roles within the network mechanisms of RTV in boys and girls and at different developmental stages.

摘要

个体内反应时间变异性 (RTV) 被认为是神经系统健康的一般标志物。在成年人中,中央执行和突显网络(任务正性网络,TPN)和默认模式网络(DMN)对于 RTV 至关重要。鉴于 RTV 随着年龄的增长而降低,并且男孩在网络发育方面可能比女孩稍落后,我们旨在阐明年龄和性别的影响。在 124 名典型发育的 5-12 岁儿童进行 Stroop 样测试期间记录了脑电图。网络波动被计算为从预测试到 1 秒测试间隔的感兴趣区域(ROI)中电流源密度(CSD)的变化。在男孩中,TPN 激活(包括在 TPN 中的 ROI 中的 CSD 增加)与较低的 RTV 相关,表明注意力控制的更大参与。在 9.5 岁以下的儿童中,更高的反应稳定性与 TPN 激活相对于 DMN 激活的优势相关(包括在 TPN 中的 ROI 中的 CSD 增加> DMN 中的 CSD 增加);这种优势随着年龄的增长而增加,这表明年幼儿童的变异性可能是由于网络不成熟。这些发现表明,TPN 和 DMN 在男孩和女孩以及不同发育阶段的 RTV 网络机制中可能发挥不同的作用。

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