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Functional Connectivity Pattern Analysis Underlying Neural Oscillation Synchronization during Deception

机译:欺骗过程中神经振荡同步的功能连接模式分析

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摘要

To characterize system cognitive processes during deception, event-related coherence was computed to investigate the functional connectivity among brain regions underlying neural oscillation synchronization. In this study, 15 participants were randomly assigned to honesty or deception groups and were instructed to tell the truth or lie when facing certain stimuli. Meanwhile, event-related potential signals were recorded using a 64-channel electroencephalography cap. Event-related coherence was computed separately in four frequency bands (delta (1-3.5 Hz), theta (4-7 Hz), alpha (8-13 Hz), and beta (14-30 HZ)) for the long-range intrahemispheric electrode pairs (F3P3, F4P4, F3T7, F4T8, F3O1, and F4O2). The results indicated that deceptive responses elicited greater connectivities in the frontoparietal and frontotemporal networks than in the frontooccipital network. Furthermore, the deception group displayed lower values of coherence in the frontoparietal electrode pairs in the alpha and beta bands than the honesty group. In particular, increased coherence in the delta and theta bands on specific left frontoparietal electrode pairs was observed. Additionally, the deception group exhibited higher values of coherence in the delta band and lower values of coherence in the beta band on the frontotemporal electrode pairs than did the honesty group. These data indicated that the active cognitive processes during deception include changes in ensemble activities between the frontal and parietal/temporal regions.
机译:为了表征欺骗过程中的系统认知过程,计算了与事件相关的一致性,以调查神经振荡同步背后的大脑区域之间的功能连通性。在这项研究中,有15名参与者被随机分配到诚实或欺骗组,并被要求在面对某些刺激时讲出真相或说谎。同时,使用64通道脑电图帽记录了与事件相关的电位信号。与事件相关的相干性分别在远距离的四个频带(δ(1-3.5 Hz),θ(4-7 Hz),alpha(8-13 Hz)和beta(14-30 HZ))中计算半球内电极对(F3P3,F4P4,F3T7,F4T8,F3O1和F4O2)。结果表明,与额枕网络相比,欺骗性反应在额顶和额颞网络中引起更大的连接。此外,欺骗组在α和β波段的额顶电极对中显示的相干性值低于诚实组。特别地,观察到特定的左额顶电极对上的δ和θ带的相干性增加。另外,与诚实组相比,欺骗组在额颞电极对上表现出更高的三角带连贯性值和更低的β波段连贯性值。这些数据表明,欺骗过程中的主动认知过程包括额叶和顶叶/颞叶区域之间的整体活动变化。

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