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多通道感知过程中的交织波动:头部摆动的分形性支持在手动操作的触觉感知判断中使用视觉反馈。

Interwoven fluctuations during intermodal perception: fractality in head sway supports the use of visual feedback in haptic perceptual judgments by manual wielding.

作者信息

Kelty-Stephen Damian G, Dixon James A

机构信息

Psychology Department, Grinnell College.

Psychology Department, University of Connecticut.

出版信息

J Exp Psychol Hum Percept Perform. 2014 Dec;40(6):2289-309. doi: 10.1037/a0038159. Epub 2014 Oct 20.

DOI:10.1037/a0038159
PMID:25328996
Abstract

Intermodal integration required for perceptual learning tasks is rife with individual differences. Participants vary in how they use perceptual information to one modality. One participant alone might change her own response over time. Participants vary further in their use of feedback through one modality to inform another modality. Two experiments test the general hypothesis that perceptual-motor fluctuations reveal both information use within modality and coordination among modalities. Experiment 1 focuses on perceptual learning in dynamic touch, in which participants use exploratory hand-wielding of unseen objects to make visually guided length judgments and use visual feedback to rescale their judgments of the same mechanical information. Previous research found that the degree of fractal temporal scaling (i.e., "fractality") in hand-wielding moderates the use of mechanical information. Experiment 1 shows that head-sway fractality moderates the use of visual information. Further, experience with feedback increases head-sway fractality and prolongs its effect on later hand-wielding fractality. Experiment 2 replicates effects of head-sway fractality moderating use of visual information in a purely visual-judgment task. Together, these findings suggest that fractal fluctuations may provide a modal-general window onto not just how participants use perceptual information but also how well they may integrate information among different modalities.

摘要

感知学习任务所需的多模态整合存在着大量个体差异。参与者在如何将感知信息用于一种模态方面各不相同。仅一名参与者可能会随着时间改变自己的反应。参与者在通过一种模态的反馈来指导另一种模态的使用方面也存在差异。两项实验检验了一个一般性假设,即感知运动波动既揭示了模态内的信息使用情况,也揭示了不同模态之间的协调情况。实验1聚焦于动态触觉中的感知学习,在该实验中,参与者通过对看不见的物体进行探索性手部操作来做出视觉引导的长度判断,并利用视觉反馈来重新调整他们对相同机械信息的判断。先前的研究发现,手部操作中的分形时间标度(即“分形性”)程度会调节机械信息的使用。实验1表明,头部摆动的分形性会调节视觉信息的使用。此外,反馈经验会增加头部摆动的分形性,并延长其对后续手部操作分形性的影响。实验2在一个纯视觉判断任务中复制了头部摆动分形性调节视觉信息使用的效果。总之,这些发现表明,分形波动可能不仅为参与者如何使用感知信息,而且为他们在不同模态之间整合信息的能力提供了一个模态通用的窗口。

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