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Behavioral performance follows the time course of neural facilitation and suppression during cued shifts of feature-selective attention

机译:行为表现遵循特征选择提示的提示转变过程中神经促进和抑制的时间过程

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摘要

A central question in the field of attention is whether visual processing is a strictly limited resource, which must be allocated by selective attention. If this were the case, attentional enhancement of one stimulus should invariably lead to suppression of unattended distracter stimuli. Here we examine voluntary cued shifts of feature-selective attention to either one of two superimposed red or blue random dot kinematograms (RDKs) to test whether such a reciprocal relationship between enhancement of an attended and suppression of an unattended stimulus can be observed. The steady-state visual evoked potential (SSVEP), an oscillatory brain response elicited by the flickering RDKs, was measured in human EEG. Supporting limited resources, we observed both an enhancement of the attended and a suppression of the unattended RDK, but this observed reciprocity did not occur concurrently: enhancement of the attended RDK started at 220 ms after cue onset and preceded suppression of the unattended RDK by about 130 ms. Furthermore, we found that behavior was significantly correlated with the SSVEP time course of a measure of selectivity (attended minus unattended) but not with a measure of total activity (attended plus unattended). The significant deviations from a temporally synchronized reciprocity between enhancement and suppression suggest that the enhancement of the attended stimulus may cause the suppression of the unattended stimulus in the present experiment.
机译:关注领域的中心问题是视觉处理是否是严格受限的资源,必须通过选择性关注来分配。如果是这种情况,注意刺激一种刺激必然会导致无人值守的干扰抑制。在这里,我们检查了特征选择性注意的自愿提示转移到两个重叠的红色或蓝色随机点运动图(RDK)之一,以测试是否可以观察到有人参与的增强与无人参与的刺激的抑制之间的这种相互关系。在人脑电图中测量了稳态视觉诱发电位(SSVEP),这是由闪烁的RDK引起的振荡性脑反应。在有限的资源支持下,我们观察到有人值守的RDK的增强和抑制,但是观察到的互惠性并没有同时发生:提示事件发生后220毫秒开始有人值守RDK的增强,并且在无人值守的RDK抑制之前约有220毫秒。 130毫秒此外,我们发现行为与选择性的量度(有人照看减去无人照看)的SSVEP时间进程显着相关,但与总活动量(有人照看加上无人照看)没有显着相关。与增强和抑制之间的时间同步互易性的显着偏离表明,在本实验中,伴随刺激的增强可能会导致无人参与刺激的抑制。

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