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Auditory, tactile, and multisensory cues facilitate search for dynamic visual stimuli

机译:听觉,触觉和多感官提示有助于动态视觉刺激的搜索

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Presenting an auditory or tactile cue in temporal synchrony with a change in the color of a visual target can facilitate participants' visual search performance. In the present study, we compared the magnitude of unimodal auditory, vibrotactile, and bimodal (i.e., multisensory) cuing benefits when the nonvisual cues were presented in temporal synchrony with the changing of the target's color (Experiments 1 and 2). The target (a horizontal or vertical line segment) was presented among a number of distractors (tilted line segments) that also changed color at various times. In Experiments 3 and 4, the cues were also made spatially informative with regard to the location of the visual target. The unimodal and bimodal cues gave rise to an equivalent (significant) facilitation of participants' visual search performance relative to a no-cue baseline condition. Making the unimodal auditory and vibrotactile cues spatially informative produced further performance improvements (on validly cued trials), as compared with cues that were spatially uninformative or otherwise spatially invalid. A final experiment was conducted in order to determine whether cue location (close to versus far from the visual display) would influence participants' visual search performance. Auditory cues presented close to the visual search display were found to produce significantly better performance than cues presented over headphones. Taken together, these results have implications for the design of nonvisual and multisensory warning signals used in complex visual displays.
机译:呈现与视觉目标的颜色变化在时间上同步的听觉或触觉提示可以促进参与者的视觉搜索性能。在本研究中,我们比较了当非视觉提示与目标颜色的变化在时间上同步呈现时,单峰听觉,触觉触觉和双峰(即多感觉)提示益处的大小(实验1和2)。目标(水平或垂直线段)显示在许多分散器(倾斜线段)中,这些分散器也会在不同时间改变颜色。在实验3和4中,还针对视觉目标的位置在空间上提供了提示。单峰和双峰提示相对于无提示基线条件,对参与者的视觉搜索性能产生了同等(显着)的促进。与在空间上没有信息或在空间上无效的提示相比,使单峰听觉和触觉提示在空间上具有信息性会进一步改善性能(在有效的提示试验中)。为了确定提示位置(靠近或远离视觉显示)是否会影响参与者的视觉搜索性能,进行了最终实验。发现靠近视觉搜索显示器的听觉提示产生的性能比头戴式耳机提示的性能要好得多。综上所述,这些结果对复杂视觉显示中使用的非视觉和多感官警告信号的设计产生了影响。

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