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米勒-莱尔图形中的指向与反指向:为何错觉效应需要进行缩放。

Pointing and antipointing in Müller-Lyer figures: Why illusion effects need to be scaled.

作者信息

Hesse Constanze, Franz Volker H, Schenk Thomas

机构信息

School of Psychology, University of Aberdeen.

Department of Psychology, University of Hamburg.

出版信息

J Exp Psychol Hum Percept Perform. 2016 Jan;42(1):90-102. doi: 10.1037/xhp0000124. Epub 2015 Aug 31.

Abstract

It has been suggested that goal-directed actions performed under full vision are immune to certain visual illusions, while movements relying on perception-based visual information are deceived by them (Milner & Goodale, 1995). Consequently, pointing movements should be deceived by visual illusions when a delay is introduced (memory demands) or when antipointing (spatial imagery) is required. In 2 experiments, participants performed either propointing or antipointing movements to different versions of the Müller-Lyer illusion in 2 vision conditions (open-loop vs. delay). Apart from open-loop propointing, all conditions should rely on perceptual processing and should therefore yield similarly illusion effects. While we observed illusion effects in all conditions, their magnitude varied in unexpected ways. Most surprisingly, introducing a delay seemed to reduce illusion effects in antipointing. We show that this decrease can be explained by the fact that pointing after delay is less responsive to physical size changes. After correcting for this, illusion effects in antipointing were similar in both vision conditions but still twice as large as in the delayed propointing task. Our findings highlight the necessity of employing a correction procedure when comparing illusion effects across tasks and do not conform well to the predictions derived from the perception-action model.

摘要

有人提出,在全视野下执行的目标导向动作不受某些视觉错觉的影响,而依赖基于感知的视觉信息的动作则会被它们欺骗(米尔纳和古德尔,1995)。因此,当引入延迟(记忆需求)或需要反向指向(空间意象)时,指向动作应该会被视觉错觉欺骗。在两项实验中,参与者在两种视觉条件下(开环与延迟)对不同版本的缪勒-莱尔错觉执行正向指向或反向指向动作。除了开环正向指向外,所有条件都应该依赖于感知处理,因此应该产生类似的错觉效果。虽然我们在所有条件下都观察到了错觉效果,但其大小以意想不到的方式变化。最令人惊讶的是,引入延迟似乎会减少反向指向中的错觉效果。我们表明,这种减少可以通过延迟后指向对物理大小变化的反应较小这一事实来解释。校正此因素后,两种视觉条件下反向指向中的错觉效果相似,但仍比延迟正向指向任务中的大两倍。我们的研究结果强调了在比较不同任务的错觉效果时采用校正程序的必要性,并且与从感知-动作模型得出的预测不太相符。

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