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The Contribution of Network Organization and Integration to the Development of Cognitive Control

机译:网络组织和整合对认知控制发展的贡献

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摘要

Cognitive control, which continues to mature throughout adolescence, is supported by the ability for well-defined organized brain networks to flexibly integrate information. However, the development of intrinsic brain network organization and its relationship to observed improvements in cognitive control are not well understood. In the present study, we used resting state functional magnetic resonance imaging (RS-fMRI), graph theory, the antisaccade task, and rigorous head motion control to characterize and relate developmental changes in network organization, connectivity strength, and integration to inhibitory control development. Subjects were 192 10–26-y-olds who were imaged during 5 min of rest. In contrast to initial studies, our results indicate that network organization is stable throughout adolescence. However, cross-network integration, predominantly of the cingulo-opercular/salience network, increased with age. Importantly, this increased integration of the cingulo-opercular/salience network significantly moderated the robust effect of age on the latency to initiate a correct inhibitory control response. These results provide compelling evidence that the transition to adult-level inhibitory control is dependent upon the refinement and strengthening of integration between specialized networks. Our findings support a novel, two-stage model of neural development, in which networks stabilize prior to adolescence and subsequently increase their integration to support the cross-domain incorporation of information processing critical for mature cognitive control.
机译:清晰的有组织的大脑网络能够灵活地集成信息,这将支持整个青春期的认知控制。然而,内在的大脑网络组织的发展及其与观察到的认知控制改善之间的关系尚不十分清楚。在本研究中,我们使用静止状态功能磁共振成像(RS-fMRI),图论,反扫视任务和严格的头部运动控制来表征网络组织,连接强度和集成的发展变化并将其与抑制性控制发展联系起来。 。受试者为192位10-26岁的孩子,他们在休息5分钟后成像。与最初的研究相反,我们的结果表明网络组织在整个青春期都是稳定的。但是,跨网络集成(主要是扣带-耳突/显着网络)随着年龄的增长而增加。重要的是,扣带-腹膜/显着网络的这种增加的整合显着减轻了年龄对​​潜伏期的鲁棒作用,从而启动了正确的抑制控制反应。这些结果提供了令人信服的证据,证明向成人水平抑制控制的过渡取决于专业网络之间整合的细化和加强。我们的发现支持一种新的,两阶段的神经发育模型,其中网络在青春期之前稳定下来,并随后增加其集成度,以支持对成熟的认知控制至关重要的信息处理的跨域合并。

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