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Perceptual learning induces active suppression of physically nonsalient shapes

机译:感知学习诱导活跃的抑制身体不合形的形状

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Visual attention can be attracted by salient-but-irrelevant features, a phenomenon called attentional capture. Accompanying attentional capture, a top-down inhibitory mechanism is usually enacted to suppress the attentional shift. Our recent study showed that a physically nonsalient shape, which may be considered as a conjunction of basic features within the form domain, can also provoke a robust capture of attention as a consequence of perceptual learning, supporting an important role of prior experience in attentional deployment. It remains unclear, however, whether prior experience can also induce attentional suppression to conjunctions of features. Here, we examine whether and in which condition the brain would initiate an active suppression process to a physically nonsalient shape which has acquired an ability to capture attention after perceptual learning. We show that detectability of a shape after perceptual learning may be a key factor determining whether the shape would be actively suppressed or not. After extensive training as a target in visual search, a physically nonsalient shape could elicit an N2pc component when it was a distractor in a visual search task or a peripheral irrelevant stimulus in a central focused attention task, indicating a capture of attention induced by perceptual learning. Following the N2pc component, a Pd component would be elicited by the trained shape only if its detectability is relatively high. These findings suggest that an active suppression process could be applied not only to salient features but also to physically nonsalient shapes. A physically nonsalient shape could improve its salience through perceptual learning and would be actively suppressed when its learned salience reaches a certain level.
机译:视觉注意力可以被突出的但无关的特征引起,一种称为注意力捕获的现象。伴随着注意力捕获,通常颁布自上而下的抑制机制来抑制注意力转变。我们最近的研究表明,物理上不合形的形状,可以被视为形式域内的基本特征的结合,也可以根据感知学习的结果挑起强烈的注意力,支持事先经验在注意力部署中的重要作用。然而,仍然尚不清楚,此前经验是否也可以诱导特征的连词诱发预付抑制。在这里,我们检查大脑是否会使大脑将主动抑制过程发起到物理不合形的形状,这在感知学习后获得了捕获注意的能力。我们表明感知学习后形状的可检测性可以是确定是否将主动抑制形状的关键因素。在广泛的培训作为视觉搜索中的目标之后,当在视觉搜索任务中是一个在视觉搜索任务或中央聚焦注意事项中的外围无关刺激时,物理不合形的形状可以引起N2PC组件,表明通过感知学习引起的注意力捕获。在N2PC组件之后,仅当其可检测性相对较高时,才会引发PD分量。这些发现表明,活动抑制过程不仅可以应用于突出特征,而且可以应用于物理不值的形状。通过感知学习可以改善身体不良形状,并且当学习突出率达到一定程度时,将被积极地抑制。

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