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Revealing hidden states in visual working memory using electroencephalography

机译:使用脑电图揭示视觉工作记忆中的隐藏状态

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It is often assumed that information in visual working memory (vWM) is maintained via persistent activity. However, recent evidence indicates that information in vWM could be maintained in an effectively “activity-silent” neural state. Silent vWM is consistent with recent cognitive and neural models, but poses an important experimental problem: how can we study these silent states using conventional measures of brain activity? We propose a novel approach that is analogous to echolocation: using a high-contrast visual stimulus, it may be possible to drive brain activity during vWM maintenance and measure the vWM-dependent impulse response. We recorded electroencephalography (EEG) while participants performed a vWM task in which a randomly oriented grating was remembered. Crucially, a high-contrast, task-irrelevant stimulus was shown in the maintenance period in half of the trials. The electrophysiological response from posterior channels was used to decode the orientations of the gratings. While orientations could be decoded during and shortly after stimulus presentation, decoding accuracy dropped back close to baseline in the delay. However, the visual evoked response from the task-irrelevant stimulus resulted in a clear re-emergence in decodability. This result provides important proof-of-concept for a promising and relatively simple approach to decode “activity-silent” vWM content using non-invasive EEG.
机译:通常假定视觉工作记忆(vWM)中的信息是通过持续活动来维护的。但是,最近的证据表明,vWM中的信息可以保持在有效的“沉默活动”的神经状态下。沉默的vWM与最近的认知和神经模型一致,但提出了一个重要的实验问题:我们如何使用常规的大脑活动测量方法来研究这些沉默的状态?我们提出了一种类似于回声定位的新颖方法:使用高对比度的视觉刺激,可能有可能在vWM维护期间驱动大脑活动并测量vWM依赖的冲激反应。我们在参与者执行vWM任务时记录了脑电图(EEG),其中记忆了随机定向的光栅。至关重要的是,在一半的试验中,维持期显示出高对比度,与任务无关的刺激。来自后通道的电生理反应被用来解码光栅的方向。尽管可以在刺激表现期间和之后不久对方向进行解码,但解码精度在延迟中回落到接近基线的水平。但是,与任务无关的刺激的视觉诱发反应导致可解码性明显重新出现。该结果为使用无创性EEG解码“活动沉默” vWM内容的一种有前途且相对简单的方法提供了重要的概念验证。

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