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Hierarchical integrated and segregated processing in the functional brain default mode network within attention-deficit/hyperactivity disorder

机译:注意缺陷/多动症中功能性大脑默认模式网络中的分层集成和隔离处理

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摘要

The hierarchical modular organization of functional networks in the brain is crucial for supporting diverse cognitive functions. Functional disorders in the brain are associated with an abnormal hierarchical modular organization. The default mode network (DMN) is a complex dynamic network that is linked to specialized cognitive functions and clinically relevant information. In this study, we hypothesize that hierarchical functional segregation and integration of the DMN within attention-deficit/hyperactivity disorder (ADHD) is abnormal. We investigated topological metrics of both segregation and integration in different hierarchical subnetworks of the DMN between patients with ADHD and healthy controls. We found that the hierarchical functional integration and segregation of the DMN decreased and increased, respectively, in ADHD. Our results also indicated that the abnormalities in the DMN are intrinsically caused by changes in functional segregation and integration in its higher-level subnetworks. To better understand the temporally dynamic changes in the hierarchical functional integration and segregation of the DMN within ADHD, we further analyzed the dynamic transitions between functional segregation and integration. We found that the adaptive reorganizational ability of brain network states decreased in ADHD patients, which indicated less adaptive regulation between the DMN subnetworks in ADHD for supporting correspondingly normal cognitive function. From the perspective of hierarchical functional segregation and integration, our results further provide evidence to support dysfunctional brain cognitive functions within ADHD linked to brain network segregation and integration.
机译:大脑中功能网络的分层模块化组织对于支持各种认知功能至关重要。大脑中的功能障碍与异常的分层模块化组织有关。默认模式网络(DMN)是一个复杂的动态网络,链接到专门的认知功能和临床相关信息。在这项研究中,我们假设注意缺陷/多动障碍(ADHD)中DMN的分层功能分离和整合是异常的。我们调查了ADHD患者与健康对照者在DMN的不同层次子网中隔离和集成的拓扑指标。我们发现在ADHD中,DMN的分层功能集成和隔离分别减少和增加。我们的结果还表明,DMN中的异常本质上是由其更高级别的子网中功能隔离和集成的更改引起的。为了更好地了解ADHD中DMN的分层功能集成和隔离的时间动态变化,我们进一步分析了功能隔离和集成之间的动态过渡。我们发现多动症患者脑网络状态的自适应重组能力下降,这表明多动症的DMN子网之间的适应性调节较少,无法支持相应的正常认知功能。从分层功能隔离和集成的角度来看,我们的结果进一步提供了证据来支持ADHD中与脑网络隔离和集成相关的功能障碍性大脑认知功能。

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