Is perception-action coupling more malleable in virtual than in real environments?

Christine J. Ziemer, Benjamin Chihak, J. Plumert, T. Nguyen, J. Cremer, J. Kearney
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Abstract

Whenever we move, we gain experience with how changes in visual flow are related to movement through the environment. One way that researchers have studied these perception-action linkages is through perturbing the normal relationship between perception and action [Kunz et al. 2009; Rieser et al. 1995]. In these studies, people experience an optic flow rate that is manipulated to be significantly faster or slower than their walking rate. Comparison of distance estimates from before and after this recalibration experience typically shows that people who experience faster optic flow undershoot targets at posttest and people who experience slower optic flow overshoot targets at posttest. Here, we examined how experience with mismatched perception and action (i.e., faster or slower optic flow) in a virtual environment affects subsequent distance estimation in the same virtual environment and in a similar real environment. Of particular interest was whether perception-action coupling is more malleable in the virtual environment than in the real environment.
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感知-行动耦合在虚拟环境中是否比在真实环境中更具可塑性?
每当我们移动时,我们就会体验到视觉流的变化是如何与环境中的移动相关联的。研究人员研究这些感知-行动联系的一种方法是通过扰乱感知和行动之间的正常关系[Kunz et al. 2009;Rieser et al. 1995]。在这些研究中,人们体验到的光流速率被操纵得明显快于或慢于他们的步行速率。比较重新校准前后的距离估计通常表明,光流更快的人在后测时低于目标,而光流更慢的人在后测时超过目标。在这里,我们研究了虚拟环境中不匹配的感知和动作(即更快或更慢的光流)的经验如何影响相同虚拟环境和类似真实环境中的后续距离估计。特别令人感兴趣的是,感知-行动耦合在虚拟环境中是否比在真实环境中更具可塑性。
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