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A domain-general brain network underlying emotional and cognitive interference processing: evidence from coordinate-based and functional connectivity meta-analyses

机译:域通用大脑网络潜在的情感和认知干扰处理:来自基于坐标和功能连接元分析的证据

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摘要

The inability to control or inhibit emotional distractors characterizes a range of psychiatric disorders. Despite the use of a variety of task paradigms to determine the mechanisms underlying the control of emotional interference, a precise characterization of the brain regions and networks that support emotional interference processing remains elusive. Here, we performed coordinate-based and functional connectivity meta-analyses to determine the brain networks underlying emotional interference. Paradigms addressing interference processing in the cognitive or emotional domain were included in the meta-analyses, particularly the Stroop, Flanker, and Simon tasks. Our results revealed a consistent involvement of the bilateral dorsal anterior cingulate cortex, anterior insula, left inferior frontal gyrus, and superior parietal lobule during emotional interference. Follow-up conjunction analyses identified correspondence in these regions between emotional and cognitive interference processing. Finally, the patterns of functional connectivity of these regions were examined using resting-state functional connectivity and meta-analytic connectivity modeling. These regions were strongly connected as a distributed system, primarily mapping onto fronto-parietal control, ventral attention, and dorsal attention networks. Together, the present findings indicate that a domain-general neural system is engaged across multiple types of interference processing and that regulating emotional and cognitive interference depends on interactions between large-scale distributed brain networks.
机译:无法控制或抑制情绪分散体的特征是一系列精神病疾病。尽管使用各种任务范式来确定控制情绪干扰控制的机制,但支持情绪干扰处理的大脑区域和网络的精确表征仍然难以捉摸。在这里,我们执行基于坐标和功能连接元分析,以确定潜在的情绪干扰的脑网络。解决认知或情绪域中的干扰处理的范例包括在元分析中,尤其是Tloop,Flanker和Simon任务中。我们的结果表明,在情绪干扰期间,双侧背侧铰接皮质,前肠道,左前额相回轴和高级顶叶叶片的一致累及。后续结合分析在情绪和认知干扰处理之间确定了这些区域的对应。最后,使用静态功能连接和元分析连接建模检查这些区域的功能连接模式。这些地区被密切连接为分布式系统,主要是映射到前视网上的控制,腹部注意力和背部注意网络。当前研究结果表明,域一般的神经系统在多种类型的干扰处理中接合,并且调节情绪和认知干扰取决于大规模分布式脑网络之间的相互作用。

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