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声音强度对听觉触觉跨模态动态捕获效应的影响。

The effect of sound intensity on the audiotactile crossmodal dynamic capture effect.

作者信息

Occelli Valeria, Spence Charles, Zampini Massimiliano

机构信息

Department of Cognitive Sciences and Education, University of Trento, Rovereto, TN, Italy.

出版信息

Exp Brain Res. 2009 Mar;193(3):409-19. doi: 10.1007/s00221-008-1637-9. Epub 2008 Nov 15.

Abstract

We investigated the effect of varying sound intensity on the audiotactile crossmodal dynamic capture effect. Participants had to discriminate the direction of a target stream (tactile, Experiment 1; auditory, Experiment 2) while trying to ignore the direction of a distractor stream presented in a different modality (auditory, Experiment 1; tactile, Experiment 2). The distractor streams could either be spatiotemporally congruent or incongruent with respect to the target stream. In half of the trials, the participants were presented with auditory stimuli at 75 dB(A) while in the other half of the trials they were presented with auditory stimuli at 82 dB(A). Participants' performance on both tasks was significantly affected by the intensity of the sounds. Namely, the crossmodal capture of tactile motion by audition was stronger with the more intense (vs. less intense) auditory distractors (Experiment 1), whereas the capture effect exerted by the tactile distractors was stronger for less intense (than for more intense) auditory targets (Experiment 2). The crossmodal dynamic capture was larger in Experiment 1 than in Experiment 2, with a stronger congruency effect when the target streams were presented in the tactile (vs. auditory) modality. Two explanations are put forward to account for these results: an attentional biasing toward the more intense auditory stimuli, and a modulation induced by the relative perceptual weight of, respectively, the auditory and the tactile signals.

摘要

我们研究了不同声音强度对听觉触觉跨通道动态捕获效应的影响。在实验1中,参与者必须辨别目标流(触觉)的方向,同时忽略以不同通道呈现的干扰流(听觉)的方向;在实验2中,参与者必须辨别目标流(听觉)的方向,同时忽略以不同通道呈现的干扰流(触觉)的方向。干扰流在时空上可能与目标流一致,也可能不一致。在一半的试验中,向参与者呈现75 dB(A)的听觉刺激,而在另一半试验中,向他们呈现82 dB(A)的听觉刺激。声音强度对两项任务中参与者的表现均有显著影响。具体而言,在实验1中,强度较高(相对于较低强度)的听觉干扰物对触觉运动的跨通道捕获更强;而在实验2中,强度较低(相对于较高强度)的听觉目标受到触觉干扰物的捕获效应更强。实验1中的跨通道动态捕获比实验2中的更大,当目标流以触觉(相对于听觉)通道呈现时,一致性效应更强。针对这些结果提出了两种解释:一是对强度较高的听觉刺激的注意力偏向,二是分别由听觉和触觉信号的相对感知权重引起的调制。

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