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周边线索的视网膜大小对二维和三维世界中注意力定向的影响。

Effect of the retinal size of a peripheral cue on attentional orienting in two- and three-dimensional worlds.

作者信息

Jiang Yizhou, Li Sijie, Li You, Zeng Hang, Chen Qi

机构信息

Center for Studies of Psychological Application and School of Psychology, South China Normal University, Guangzhou, China.

Guangdong Key Laboratory of Mental Health and Cognitive Science, South China Normal University, Guangzhou, China.

出版信息

Atten Percept Psychophys. 2016 Jul;78(5):1285-92. doi: 10.3758/s13414-016-1089-4.

Abstract

It has been documented that due to limited attentional resources, the size of the attentional focus is inversely correlated with processing efficiency. Moreover, by adopting a variety of two-dimensional size illusions induced by pictorial depth cues (e.g., the Ponzo illusion), previous studies have revealed that the perceived, rather than the retinal, size of an object determines its detection. It remains unclear, however, whether and how the retinal versus perceived size of a cue influences the process of attentional orienting to subsequent targets, and whether the corresponding influencing processes differ between two-dimensional (2-D) and three-dimensional (3-D) space. In the present study, we incorporated the dot probe paradigm with either a 2-D Ponzo illusion, induced by pictorial depth cues, or a virtual 3-D world in which the Ponzo illusion turned into visual reality. By varying the retinal size of the cue while keeping its perceived size constant (Exp. 1), we found that a cue with smaller retinal size significantly facilitated attentional orienting as compared to a cue with larger retinal size, and that the effects were comparable between 2-D and 3-D displays. Furthermore, when the pictorial background was removed and the cue display was positioned in either the farther or the closer depth plane (Exp. 2), or when both the depth and the background were removed (Exp. 3), the retinal size, rather than the depth, of the cue still affected attentional orienting. Taken together, our results suggest that the retinal size of a cue plays the crucial role in the visuospatial orienting of attention in both 2-D and 3-D.

摘要

有文献记载,由于注意力资源有限,注意力焦点的大小与处理效率呈负相关。此外,通过采用由图形深度线索诱发的各种二维大小错觉(例如庞佐错觉),先前的研究表明,物体的感知大小而非视网膜大小决定了其可检测性。然而,线索的视网膜大小与感知大小是否以及如何影响对后续目标的注意力定向过程,以及相应的影响过程在二维(2-D)和三维(3-D)空间中是否存在差异,仍不清楚。在本研究中,我们将点探测范式与由图形深度线索诱发的二维庞佐错觉或庞佐错觉变为视觉现实的虚拟三维世界相结合。通过在保持线索感知大小不变的同时改变其视网膜大小(实验1),我们发现,与视网膜尺寸较大的线索相比,视网膜尺寸较小的线索显著促进了注意力定向,并且二维和三维显示的效果相当。此外,当去除图形背景并将线索显示置于更远或更近的深度平面时(实验2),或者当深度和背景都被去除时(实验3),线索的视网膜大小而非深度仍然影响注意力定向。综上所述,我们的结果表明,线索的视网膜大小在二维和三维空间的视觉空间注意力定向中起着关键作用。

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