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Phase-Amplitude Coupling and Long-Range Phase Synchronization Reveal Frontotemporal Interactions during Visual Working Memory

机译:在视觉工作记忆过程中相位-振幅耦合和远程相位同步揭示了额颞互动。

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摘要

It has been suggested that cross-frequency phase-amplitude coupling (PAC), particularly in temporal brain structures, serves as a neural mechanism for coordinated working memory storage. In this magnetoencephalography study, we show that during visual working memory maintenance, temporal cortex regions, which exhibit enhanced PAC, interact with prefrontal cortex via enhanced low-frequency phase synchronization. Healthy human participants were engaged in a visual delayed match-to-sample task with pictures of natural objects. During the delay period, we observed increased spectral power of beta (20–28 Hz) and gamma (40–94 Hz) bands as well as decreased power of theta/alpha band (7–9 Hz) oscillations in visual sensory areas. Enhanced PAC between the phases of theta/alpha and the amplitudes of beta oscillations was found in the left inferior temporal cortex (IT), an area known to be involved in visual object memory. Furthermore, the IT was functionally connected to the prefrontal cortex by increased low-frequency phase synchronization within the theta/alpha band. Together, these results point to a mechanism in which the combination of PAC and long-range phase synchronization subserves enhanced large-scale brain communication. They suggest that distant brain regions might coordinate their activity in the low-frequency range to engage local stimulus-related processing in higher frequencies via the combination of long-range, within-frequency phase synchronization and local cross-frequency PAC.>SIGNIFICANCE STATEMENT Working memory maintenance, like other cognitive functions, requires the coordinated engagement of brain areas in local and large-scale networks. However, the mechanisms by which spatially distributed brain regions share and combine information remain primarily unknown. We show that the combination of long-range, low-frequency phase synchronization and local cross-frequency phase-amplitude coupling might serve as a mechanism to coordinate memory processes across distant brain areas. In this study, low-frequency phase synchronization between prefrontal and temporal cortex co-occurred with local cross-frequency phase-amplitude coupling to higher frequencies in the latter. By such means, ongoing working memory storage taking place in higher frequencies in temporal regions might be effectively coordinated by distant frontal brain regions through synchronized activity in the low-frequency range.
机译:有人提出,跨频相位幅度耦合(PAC),尤其是在颞脑结构中,充当协调工作记忆存储的神经机制。在这项脑磁图研究中,我们显示了在视觉工作记忆维持期间,表现出增强的PAC的颞叶皮层区域通过增强的低频相位同步与前额叶皮层相互作用。健康的人类参与者参与了带有自然物体图片的视觉延迟的匹配样品任务。在延迟期间,我们观察到视觉感官区域中β(20–28 Hz)和γ(40–94 Hz)频段的频谱功率增加,以及theta / alpha频段(7–9 Hz)振荡的功率降低。在左下颞叶皮层(IT)中发现了theta / alpha相位和β振荡幅度之间增强的PAC,该区域已知与视觉对象记忆有关。此外,通过在theta / alpha频段内增加低频相位同步,IT在功能上已连接至前额叶皮层。总之,这些结果表明了一种机制,其中PAC和远程相位同步相结合可增强大型大脑的交流。他们认为,远距离的大脑区域可能会通过结合长距离,频率内相位同步和局部交叉频率PAC来协调低频区域的活动,从而参与较高频率的局部刺激相关处理。>意义声明:与其他认知功能一样,工作记忆的维护要求大脑区域在局部和大规模网络中的协调参与。但是,空间分布的大脑区域共享和组合信息的机制仍然未知。我们表明远程,低频相位同步和本地交叉频率相位幅度耦合的组合可能作为一种机制来协调遥远的大脑区域的记忆过程。在这项研究中,前额叶和颞叶皮层之间的低频相位同步与局部交叉频率相位幅度耦合到后者的较高频率同时发生。通过这种方式,通过在低频范围内的同步活动,可以由远侧额叶大脑区域有效地协调在颞区域中较高频率发生的正在进行的工作记忆存储。

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