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Cross-frequency network analysis of functional brain connectivity in temporal lobe epilepsy 被引量:1
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作者 Hai-TaoYu Li-Hui Cai +3 位作者 Xin-Yu Wu Jiang Wang Jing Liu Hong Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第4期392-400,共9页
In this study, we investigate the cross-frequency coupling and functional brain networks in the subjects with temporal lobe epilepsy(TLE) using interictal EEG signals. The phase to phase synchronization within and acr... In this study, we investigate the cross-frequency coupling and functional brain networks in the subjects with temporal lobe epilepsy(TLE) using interictal EEG signals. The phase to phase synchronization within and across frequency bands is calculated and a significant difference between the epilepsy and control groups is observed. Compared with the controls,the epilepsy patients exhibit a stronger within-frequency coupling(WFC) within theta and beta bands, and shows a stronger cross-frequency coupling(CFC) in the delta–alpha and theta–alpha band pairs, but a weakened CFC in alpha–beta band pairs. The weakened coupling between alpha and high frequency band reflects a suppression of phase modulation between the brain regions related to epilepsy. Moreover, WFC and CFC are positively correlated, which is higher in the patients relative to controls. We further reconstruct functional brain connectivity and find that both WFC and CFC networks show small-world properties. For the epilepsy, the small-world efficiency is enhanced in the CFC networks in delta–alpha and theta–alpha band pairs, whereas weakened between alpha and beta bands, which suggests a shift away from the optimal operating point in the epileptic brain with a new balance between WFC and CFC. Our results may help us to understand the important role of information communication across different frequency bands and shed new light on the study of pathology of epilepsy. 展开更多
关键词 cross-frequency coupling EPILEPSY FUNCTIONAL CONNECTIVITY phase SYNCHRONIZATION
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创造力产生过程中的神经振荡机制 被引量:3
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作者 叶超群 林郁泓 刘春雷 《心理科学进展》 CSSCI CSCD 北大核心 2021年第4期697-706,共10页
创造力究竟是怎么产生的,目前尚未得出一致的结论。神经电生理技术因其高时间分辨率,可以准确地揭示创造力产生进程中的神经振荡机制,从而帮助人们更深刻地理解创造力的本质。近年来的研究发现,单节律alpha神经振荡会随着创造力的增加... 创造力究竟是怎么产生的,目前尚未得出一致的结论。神经电生理技术因其高时间分辨率,可以准确地揭示创造力产生进程中的神经振荡机制,从而帮助人们更深刻地理解创造力的本质。近年来的研究发现,单节律alpha神经振荡会随着创造力的增加而增强,这反映了创造力产生过程中的内部信息加工需求增加、自上而下的抑制控制增强。同时,多频段神经振荡交叉节律耦合体现了创造性产生过程中额叶、颞叶和顶叶等多脑区之间信息交流的动态变化。未来研究应该以整合理论框架为基础,结合多层次多方法的研究工具,引进更生态化的数理计算方法,并利用计算神经科学建模来预测个体创造力发展趋势,从而全面深刻地认识创造力的本质。 展开更多
关键词 创造力 神经振荡 脑电图 ALPHA 神经振荡 交叉节律耦合
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