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知觉负载在意识和无意识状态下调节轮廓整合。

Perceptual load modulates contour integration in conscious and unconscious states.

作者信息

Cheng Kaiwen, Yang Keyu, Qin Long, Zhuo Yixuan, Yan Hongmei

机构信息

MOE Key Lab for Neuroinformation, University of Electronic Science and Technology of China, Chengdu, Sichuan, China.

School of Foreign Languages, Southwest Jiaotong University, Chengdu, Sichuan, China.

出版信息

PeerJ. 2019 Aug 22;7:e7550. doi: 10.7717/peerj.7550. eCollection 2019.

Abstract

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 go/no-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.

摘要

先前的研究表明,在我们的视觉系统中,轮廓检测和整合可能会受到局部特征(如元素之间的距离)或高级认知因素(如注意力)的影响。关于低级和高级因素如何相互作用以影响轮廓整合,我们所知甚少。在本文中,我们研究了在有意识觉知状态被操纵时,注意力如何通过显著性(不同的元素间距)和拓扑属性(圆形或S形)来调节轮廓整合。我们在三个阶段的实验(无意识-训练-有意识)中采用了一种改进的无意视盲(IB)与波斯纳线索范式相结合的方法。对于中央凹的“是/否”任务,通过高或低感知负荷来操纵注意力。在周边方向辨别任务之前,利用线索效应来评估轮廓的隐蔽加工。我们发现:(1)在低感知负荷下,显著的圆形和S形轮廓会产生不同的线索效应,但在高负荷下则不会;(2)在所有条件下,非显著轮廓均未发现一致的线索效应模式;(3)显著圆形无论是在有意识还是无意识状态下都观察到正线索效应,而显著S形轮廓仅在有意识状态下产生负线索效应。这些结果表明,有意识觉知在协调闭合效应与感知负荷水平方面起着关键作用。尽管显著的圆形和S形轮廓在有意识状态下都能完成整合,但只有显著圆形在低感知负荷下能在无意识状态下成功整合。我们的研究结果支持了一种双向机制,即低级感觉特征与高级认知因素在轮廓整合中相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9795/6708573/f16de1a3dd18/peerj-07-7550-g001.jpg

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