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ERP correlates of anticipatory attention: spatial and non-spatial specificity and relation to subsequent selective attention.

机译:ERP与预期注意力相关:空间和非空间特异性以及与后续选择性注意力的关系。

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摘要

Brain-based models of visual attention hypothesize that attention-related benefits afforded to imperative stimuli occur via enhancement of neural activity associated with relevant spatial and non-spatial features. When relevant information is available in advance of a stimulus, anticipatory deployment processes are likely to facilitate allocation of attention to stimulus properties prior to its arrival. The current study recorded EEG from humans during a centrally-cued covert attention task. Cues indicated relevance of left or right visual field locations for an upcoming motion or orientation discrimination. During a 1 s delay between cue and S2, multiple attention-related events occurred at frontal, parietal and occipital electrode sites. Differences in anticipatory activity associated with the non-spatial task properties were found late in the delay, while spatially-specific modulation of activity occurred during both early and late periods and continued during S2 processing. The magnitude of anticipatory activity preceding the S2 at frontal scalp sites (and not occipital) was predictive of the magnitude of subsequent selective attention effects on the S2 event-related potentials observed at occipital electrodes. Results support the existence of multiple anticipatory attention-related processes, some with differing specificity for spatial and non-spatial task properties, and the hypothesis that levels of activity in anterior areas are important for effective control of subsequent S2 selective attention.
机译:基于大脑的视觉注意力模型假设,通过增强与相关空间和非空间特征相关的神经活动,可以为命令性刺激提供与注意力相关的好处。当刺激之前有相关信息可用时,预期的部署过程可能有助于在刺激属性到达之前将注意力分配给刺激属性。当前的研究记录了在集中提示的秘密注意任务中人类的脑电图。提示指示左或右视野位置与即将发生的运动或方向区分有关。在提示和S2之间的1 s延迟期间,额叶,顶叶和枕叶电极部位发生了多个与注意力相关的事件。在延迟的后期发现了与非空间任务属性相关的预期活动的差异,而活动的空间特定调制发生在早期和晚期,并在S2处理期间持续。在额头皮部位(而不是枕骨)S2之前的预期活动的幅度预示了随后在枕骨电极上观察到的对S2事件相关电位的选择性注意效应的幅度。结果支持多种预期的注意力相关过程的存在,其中一些对空间和非空间任务属性的特异性不同,并且认为前区活动水平对于有效控制随后的S2选择性注意力很重要。

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