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The perceptual consequences of the attentional bias: evidence for distractor removal

机译:注意偏见的感性后果:消除干扰物的证据

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A fundamental question of attentional research concerns the perceptual consequences of attention. Spatial attention can enhance stimuli within the focus of attention relative to stimuli outside; or attention can remove the influence of distracting stimuli and other forms of external noise inside the focus of attention. It is known that both strategies apply depending on how attention is cued to a location in space. Here we asked which strategy applies in an uncued situation in which people show a spontaneous bias of attention to the left side. To measure bias, we used a gratingscales task with stimuli corrupted by pixel noise. If biased attention resulted in biased stimulus enhancement its effect should be largest when there is little noise or few distractors within the attended region, and bias should decline with increasing noise. If, however, bias caused distractors to be removed asymmetrically, larger bias should show up with noisy stimuli. We found that bias rose exponentially as noise increased, in agreement with the external noise removal model, and we found evidence that noise modified interhemispheric competition between attentional systems. Our data offer new insights into the neural mechanisms of the right-hemisphere dominance in spatial and attentional tasks.
机译:注意研究的一个基本问题涉及注意的感性后果。相对于外部刺激,空间注意力可以增强注意力集中的刺激。注意力可以消除分散注意力的影响以及注意力集中的其他形式的外部噪音。众所周知,两种策略都取决于对空间位置的注意方式。在这里,我们问哪种策略适用于无提示的情况,在这种情况下,人们对左侧表现出自发的偏见。为了测量偏差,我们使用了光栅尺任务,其刺激被像素噪声破坏。如果偏向注意力导致偏向刺激增强,则当所关注区域内的噪音很小或干扰较少时,其效果应最大,并且偏倚应随着噪音的增加而降低。但是,如果偏见导致干扰物被非对称地去除,则较大的偏见会在嘈杂的刺激下出现。我们发现,随着噪声的增加,偏差随噪声的增加呈指数级增长,这与外部噪声消除模型一致,并且我们发现证据表明噪声会改变注意力系统之间的半球竞争。我们的数据为在空间和注意力任务中右半球优势的神经机制提供了新见解。

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