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短暂的瞳孔对脸部收缩对方向和物种敏感。

Transient pupil constrictions to faces are sensitive to orientation and species.

作者信息

Conway C A, Jones B C, DeBruine L M, Little A C, Sahraie A

机构信息

School of Psychology, University of Aberdeen, Scotland, UK.

出版信息

J Vis. 2008 Mar 24;8(3):17.1-11. doi: 10.1167/8.3.17.

Abstract

Previous studies have reported transient pupil constrictions to basic visual attributes (e.g., color and movement) that are processed along the ventral and the dorsal pathways. Specific cortical areas are activated more for faces than most other types of stimuli, raising the possibility that stimulus-specific transient pupil constrictions might also occur for faces. Such pupil responses may be sensitive to stimulus orientation and species since these parameters have been found to affect electrophysiological and behavioral responses to faces. Here we show transient pupil constrictions to upright human faces that are greater than those to scrambled versions, inverted versions, or macaque monkey faces. Similar to findings from electrophysiological studies, the inversion effect occurred for human faces but not macaque faces. Collectively, our findings show that transient pupil constrictions to faces are sensitive to the same parameters that have been found to influence electrophysiological and behavioral measures of face processing (i.e., orientation and species) and thus reveal a novel, objective, and non-invasive method for studying face perception.

摘要

先前的研究报告称,对于沿腹侧和背侧通路处理的基本视觉属性(如颜色和运动),会出现短暂的瞳孔收缩。与大多数其他类型的刺激相比,特定的皮质区域对面部的激活更强,这增加了面部也可能出现特定刺激的短暂瞳孔收缩的可能性。由于这些参数已被发现会影响对面部的电生理和行为反应,因此这种瞳孔反应可能对刺激方向和物种敏感。在这里,我们展示了对直立人脸的短暂瞳孔收缩大于对打乱版本、倒置版本或猕猴脸的收缩。与电生理研究的结果相似,倒置效应出现在人脸上,而不出现在猕猴脸上。总体而言,我们的研究结果表明,对面部的短暂瞳孔收缩对已被发现影响面部处理的电生理和行为测量的相同参数(即方向和物种)敏感,从而揭示了一种用于研究面部感知的新颖、客观且非侵入性的方法。

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