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The critical role of phase difference in gamma oscillation within the temporoparietal network for binding visual working memory

机译:相位差在颞顶网络内的伽马振荡中对于结合视觉工作记忆的关键作用

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摘要

How does the brain enable us to remember two or more object representations in visual working memory (VWM) without confusing them? This “gluing” process, or feature binding, refers to the ability to join certain features together while keeping them segregated from others. Recent neuroimaging research has reported higher BOLD response in the left temporal and parietal cortex during a binding-VWM task. However, less is known about how the two regions work in synchrony to support such process. In this study, we applied transcranial alternating current stimulation (tACS) over the left temporal and parietal cortex in gamma and theta frequency, with a phase difference of either 0° (in-phase) or 180° (anti-phase) to account for the different ways through which neural synchronization may occur. We found no facilitatory or inhibitory effect from sham, theta, and in-phase gamma stimulation. Importantly, there was an enhancement effect from anti-phase gamma tACS that was binding-specific, and such effect was only apparent in low-performing individuals who had room for improvement. Together, these results demonstrate that binding-VWM is supported by a temporally-precise oscillatory mechanism within the gamma frequency range, and that the advantageous 180°-apart phase relationship also implies a possible temporal driver-to-receiver time-lag between the temporal and parietal cortex.
机译:大脑如何使我们能够记住视觉工作记忆(VWM)中的两个或多个对象表示而不会引起混淆?这种“粘合”过程或功能绑定是指将某些功能结合在一起,同时又将它们与其他功能区分开的能力。最近的神经影像学研究报告说,在结合VWM任务期间,左侧颞叶和顶叶皮层的BOLD响应较高。但是,对于这两个区域如何同步工作以支持这种过程的了解还很少。在这项研究中,我们在左侧颞叶和顶叶皮层上以γ和theta频率应用经颅交流电刺激(tACS),相位差为0°(同相)或180°(反相)以解决神经同步可能发生的不同方式。我们发现,假手术,θ和同相伽马刺激均无促进或抑制作用。重要的是,反相位γtACS具有结合特异性的增强作用,这种作用仅在具有改善空间的性能低下的个体中明显。在一起,这些结果表明,绑定VWM由伽马频率范围内的时间精确振荡机制支持,并且有利的180°相距关系也暗示了时间之间驱动器与接收器之间可能存在时间滞后和顶叶皮层

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