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Alpha-Band Activity Reveals Spontaneous Representations of Spatial Position in Visual Working Memory

机译:alpha-band活动显示视觉工作记忆中的空间位置的自发表示

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An emerging view suggests that spatial position is an integral component of working memory (WM), such that non-spatial features are bound to locations regardless of whether space is relevant [1, 2]. For instance, past work has shown that stimulus position is spontaneously remembered when non-spatial features are stored. Item recognition is enhanced when memoranda appear at the same location where they were encoded [3-5], and accessing non-spatial information elicits shifts of spatial attention to the original position of the stimulus [6, 7]. However, these findings do not establish that a persistent, active representation of stimulus position is maintained in WM because similar effects have also been documented following storage in long-term memory [8, 9]. Here we show that the spatial position of the memorandum is actively coded by persistent neural activity during a non-spatial WM task. We used a spatial encoding model in conjunction with electroencephalogram (EEG) measurements of oscillatory alpha-band (812 Hz) activity to track active representations of spatial position. The position of the stimulus varied trial to trial but was wholly irrelevant to the tasks. We nevertheless observed active neural representations of the original stimulus position that persisted throughout the retention interval. Further experiments established that these spatial representations are dependent on the volitional storage of non-spatial features rather than being a lingering effect of sensory energy or initial encoding demands. These findings provide strong evidence that online spatial representations are spontaneously maintained in WM-regardless of task relevance-during the storage of non-spatial features.
机译:新兴视图表明空间位置是工作存储器(WM)的积分分量,使得不论空间是否相关[1,2],非空间特征绑定到位置。例如,过去的工作表明,当存储非空间特征时,自发地记住刺激位置。当备忘录出现在编码它们的相同位置时,项目识别得到增强,并且访问非空间信息引发空间注意的偏移对刺激的原始位置[6,7]。然而,这些发现没有确定刺激位置的持续性,主动表示在WM中维持,因为在长期存储器中的存储下也记录了类似的效果[8,9]。在这里,我们表明备忘录的空间位置在非空间WM任务期间通过持久的神经活动主动编码。我们使用与振荡α带(812Hz)活动的脑电图(EEG)测量结合的空间编码模型,以跟踪空间位置的主动表示。刺激的位置不同的审判对试验,但与任务完全无关紧要。然而,我们观察到持续存在于保留间隔内的原始刺激位置的主动神经表示。进一步的实验确定,这些空间表示依赖于非空间特征的激成储存,而不是感觉能量或初始编码需求的挥之不去的影响。这些调查结果提供了强有力的证据,即在储存非空间特征期间,无论任务相关如何,在线空间表示都会自发地维持在线空间表示。

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