Department of Psychological Sciences, University of Melbourne, Melbourne, Australia.
Psychol Res. 2011 Sep;75(5):435-43. doi: 10.1007/s00426-010-0315-2. Epub 2010 Nov 25.
This study explored the mechanisms that underlie asymmetries for the horizontal vertical illusion (HVI), which deceives length perception, so that a vertical line is perceived as longer than a horizontal line of equivalent length. In Experiment 1, university students (n = 14) made length judgements for vertical and horizontal lines. The vertical line was shifted in eight steps from the far left of the horizontal line (⌊) to the far right (⌋). An HVI was observed for the medial positions (⊥), which diminished towards the lateral positions. The HVI was also stronger when the vertical line was on the left. Because the left/right asymmetry changed as a function of lateral/medial position, the asymmetry within the HVI stimulus is most likely the result of pseudoneglect, which affects judgements of horizontal length. In Experiment 2, participants (n = 15) made judgements for HVI stimuli presented to the left- and right-hemispace and the midline. The HVI was stronger in the left hemispace. Because the asymmetry between the left- and right-hemispaces did not interact with the asymmetry within the stimuli, it was concluded that the asymmetry between hemispatial positions was the result of right hemisphere susceptibility to illusory geometrical effects whereas the asymmetry within the stimulus is related to an object-centred attentional asymmetry. The HVI is affected by asymmetries in length judgements and susceptibility to illusions and may provide interesting insights into attentional disorders in clinical populations, such as neglect.
本研究探讨了水平垂直错觉(HVI)不对称性的机制,该错觉会欺骗长度感知,使得垂直线看起来比等长的水平线更长。在实验 1 中,大学生(n=14)对垂直线和水平线进行了长度判断。垂直线从水平线的最左边(⌊)以八个步骤向右移动(⌋)。在中间位置(⊥)观察到 HVI,该错觉在侧向位置减弱。当垂直线在左侧时,HVI 也更强。由于左右不对称性随着侧向/中间位置的变化而变化,因此 HVI 刺激内的不对称性很可能是伪忽视的结果,伪忽视会影响对水平长度的判断。在实验 2 中,参与者(n=15)对呈现于左、右半空间和中线的 HVI 刺激进行了判断。HVI 在左半空间更强。由于左右半空间之间的不对称性与刺激内的不对称性没有相互作用,因此可以得出结论,半空间位置之间的不对称性是由于右半球易受错觉几何效应的影响,而刺激内的不对称性与以物体为中心的注意力不对称有关。HVI 受到长度判断和对错觉的敏感性的影响,这可能为临床人群(如忽视)的注意力障碍提供有趣的见解。