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学习视觉和手部运动之间任意映射后的知觉变化。

Perceptual changes after learning of an arbitrary mapping between vision and hand movements.

机构信息

Department of Psychology, University of Würzburg, Röntgenring 11, 97070, Würzburg, Germany.

出版信息

Sci Rep. 2022 Jul 6;12(1):11427. doi: 10.1038/s41598-022-15579-8.

Abstract

The present study examined the perceptual consequences of learning arbitrary mappings between visual stimuli and hand movements. Participants moved a small cursor with their unseen hand twice to a large visual target object and then judged either the relative distance of the hand movements (Exp.1), or the relative number of dots that appeared in the two consecutive target objects (Exp.2) using a two-alternative forced choice method. During a learning phase, the numbers of dots that appeared in the target object were correlated with the hand movement distance. In Exp.1, we observed that after the participants were trained to expect many dots with larger hand movements, they judged movements made to targets with many dots as being longer than the same movements made to targets with few dots. In Exp.2, another group of participants who received the same training judged the same number of dots as smaller when larger rather than smaller hand movements were executed. When many dots were paired with smaller hand movements during the learning phase of both experiments, no significant changes in the perception of movements and of visual stimuli were observed. These results suggest that changes in the perception of body states and of external objects can arise when certain body characteristics co-occur with certain characteristics of the environment. They also indicate that the (dis)integration of multimodal perceptual signals depends not only on the physical or statistical relation between these signals, but on which signal is currently attended.

摘要

本研究考察了在视觉刺激与手部运动之间任意映射的学习过程中的知觉后果。参与者用未被看到的手两次将一个小光标移动到一个大的视觉目标物体上,然后使用二选一的强制选择方法判断手运动的相对距离(实验 1),或者在两个连续的目标物体中出现的点的相对数量(实验 2)。在学习阶段,目标物体中出现的点的数量与手运动的距离相关。在实验 1 中,我们观察到,在参与者被训练预期较大手运动有更多点之后,他们判断有更多点的目标的运动比有较少点的目标的运动更长。在实验 2 中,另一组接受相同训练的参与者判断,当较大的手运动而不是较小的手运动时,相同数量的点会显得较小。当在两个实验的学习阶段将许多点与较小的手运动配对时,在手运动和视觉刺激的感知中没有观察到显著的变化。这些结果表明,当某些身体特征与环境的某些特征同时出现时,身体状态和外部物体的感知可以发生变化。它们还表明,多模态感知信号的(分离)整合不仅取决于这些信号之间的物理或统计关系,还取决于当前关注的是哪个信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7421/9259624/108a2ea6c6bb/41598_2022_15579_Fig1_HTML.jpg

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