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Perceptual load modulates contour integration in conscious and unconscious states

机译:知觉负载调节有意识和无意识状态下的轮廓积分

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摘要

Previous research has documented that contour detection and integration may either be affected by local features such as the distances between elements or by high-level cognitive factors such as attention in our visual system. Less is known about how low and high level factors interact to influence contour integration. In this paper, we investigated how attention modulates contour integration through saliency (different element spacing) and topological propert ies (circle or S-shaped) when the state of conscious awareness is manipulated. A modified inattentional blindness (IB) combined with the Posner cuing paradigm was adopted in our three-phased experiment (unconscious-training-conscious). Attention was manipulated with high or low perceptual load for a foveal goo-go task. Cuing effects were utilized to assess the covert processing of contours prior to a peripheral orientation discrimination task. We found that (1) salient circles and S-contours induced different cuing effects under low perceptual load but not with high load; (2) no consistent pattern of cuing effects was found for non-salient contours in all the conditions; (3) a positive cuing effect was observed for salient circles either consciously or unconsciously while a negative cuing effect occurred for salient S-contours only consciously. These results suggest that conscious awareness plays a pivotal role in coordinating a closure effect with the level of perceptual load. Only salient circles can be successfully integrated in an unconscious state under low perceptual load although both salient circles and S-contours can be done consciously. Our findings support a bi-directional mechanism that low-level sensory features interact with high-level cognitive factors in contour integration.
机译:先前的研究已经证明,轮廓检测和整合可能受到局部特征(例如元素之间的距离)的影响,也可能受到高级认知因素(例如视觉系统中的注意力)的影响。人们对低水平和高水平因素如何相互作用影响轮廓积分知之甚少。在本文中,我们研究了当意识意识状态被操纵时,注意力如何通过显着性(不同元素间距)和拓扑属性(圆形或S形)来调节轮廓积分。在我们的三阶段实验(无意识训练意识)中,采用了改进的注意力不集中盲(IB)结合Posner提示模型。进行小凹去/不去任务时,以高或低的感知负荷来操纵注意力。在周围方向辨别任务之前,使用提示效果来评估轮廓的隐蔽处理。我们发现(1)显着圆和S形轮廓在低知觉负载下会产生不同的提示效果,但在高负载下却不会。 (2)在所有情况下都没有发现非突出轮廓的一致提示效果; (3)在有意识或无意识的情况下,对显着圆的积极暗示作用被观察到,而对于显着S轮廓的显着负面暗示作用则出现了。这些结果表明,自觉意识在协调封闭效果和知觉负荷水平方面起着关键作用。尽管显性圆和S轮廓都可以有意识地完成,但只有显性圆可以在低知觉负载下以无意识状态成功整合。我们的发现支持双向机制,即低等感觉特征与轮廓整合中的高等认知因素相互作用。

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