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Flexible brain network reconfiguration supporting inhibitory control

机译:灵活的脑网络重构支持抑制控制

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摘要

The ability to inhibit distracting stimuli from interfering with goal-directed behavior is crucial for success in most spheres of life. Despite an abundance of studies examining regional brain activation, knowledge of the brain networks involved in inhibitory control remains quite limited. To address this critical gap, we applied graph theory tools to functional magnetic resonance imaging data collected while a large sample of adults (n = 101) performed a color-word Stroop task. Higher demand for inhibitory control was associated with restructuring of the global network into a configuration that was more optimized for specialized processing (functional segregation), more efficient at communicating the output of such processing across the network (functional integration), and more resilient to potential interruption (resilience). In addition, there were regional changes with right inferior frontal sulcus and right anterior insula occupying more central positions as network hubs, and dorsal anterior cingulate cortex becoming more tightly coupled with its regional subnetwork. Given the crucial role of inhibitory control in goal-directed behavior, present findings identifying functional network organization supporting inhibitory control have the potential to provide additional insights into how inhibitory control may break down in a wide variety of individuals with neurological or psychiatric difficulties.
机译:抑制分散注意力的干扰干扰目标导向行为的能力对于大多数生活领域的成功至关重要。尽管有大量研究研究区域性大脑激活,但有关抑制控制的大脑网络的知识仍然十分有限。为了解决这个关键差距,我们将图论工具应用于功能性磁共振成像数据,而大量成年人(n = 101)则执行了色词Stroop任务。对抑制控制的更高需求与将全球网络重组为针对专用处理(功能隔离)进行了优化的配置有关,在整个网络上传达此类处理输出的效率更高(功能集成),并且对潜力的适应能力更强中断(恢复力)。此外,还存在区域变化,右下额沟和右前岛突在网络中心处占据了更多的中心位置,并且背扣带回皮质与其区域子网络更加紧密地结合在一起。考虑到抑制控制在目标行为中的关键作用,目前发现支持抑制控制的功能网络组织的发现有可能提供更多的见解,以了解抑制控制在许多神经或精神病患者中可能会被分解。

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