Cross-Modal Cues Improve the Detection of Synchronized Targets during Human Foraging.

IF 1.8 4区 心理学 Q3 BIOPHYSICS
Ivan Makarov, Runar Unnthorsson, Árni Kristjánsson, Ian M Thornton
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Abstract

In two experiments, we explored whether cross-modal cues can be used to improve foraging for multiple targets in a novel human foraging paradigm. Foraging arrays consisted of a 6 × 6 grid containing outline circles with a small dot on the circumference. Each dot rotated from a random starting location in steps of 30°, either clockwise or counterclockwise, around the circumference. Targets were defined by a synchronized rate of rotation, which varied from trial-to-trial, and there were two distractor sets, one that rotated faster and one that rotated slower than the target rate. In Experiment 1, we compared baseline performance to a condition in which a nonspatial auditory cue was used to indicate the rate of target rotation. While overall foraging speed remained slow in both conditions, suggesting serial scanning of the display, the auditory cue reduced target detection times by a factor of two. In Experiment 2, we replicated the auditory cue advantage, and also showed that a vibrotactile pulse, delivered to the wrist, could be almost as effective. Interestingly, a visual-cue to rotation rate, in which the frame of the display changed polarity in step with target rotation, did not lead to the same foraging advantage. Our results clearly demonstrate that cross-modal cues to synchrony can be used to improve multitarget foraging, provided that synchrony itself is a defining feature of target identity.

跨模态线索提高了人类觅食过程中对同步目标的检测。
在两个实验中,我们探讨了在一种新的人类觅食范式中,跨模态线索是否可以用来改善对多个目标的觅食。觅食阵列由一个6 × 6的网格组成,其中包含圆周上有一个小点的轮廓圆。每个点从一个随机的起始位置以30°的步骤旋转,顺时针或逆时针,绕圆周旋转。目标被定义为一个同步的旋转速率,在不同的试验中不同,有两组分心物,一组比目标速率旋转得快,一组比目标速率旋转得慢。在实验1中,我们将基线表现与使用非空间听觉线索指示目标旋转速度的条件进行了比较。虽然在这两种情况下,总体觅食速度都很慢,这表明对显示器进行了连续扫描,但听觉线索将目标检测时间减少了两倍。在实验2中,我们复制了听觉线索的优势,同时也表明,传递到手腕的振动触觉脉冲几乎同样有效。有趣的是,在旋转速度的视觉提示中,显示的框架与目标旋转同步改变极性,并没有导致同样的觅食优势。我们的研究结果清楚地表明,如果同步性本身是目标身份的一个决定性特征,那么同步的跨模态线索可以用来改善多目标觅食。
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来源期刊
Multisensory Research
Multisensory Research BIOPHYSICS-PSYCHOLOGY
CiteScore
3.50
自引率
12.50%
发文量
15
期刊介绍: Multisensory Research is an interdisciplinary archival journal covering all aspects of multisensory processing including the control of action, cognition and attention. Research using any approach to increase our understanding of multisensory perceptual, behavioural, neural and computational mechanisms is encouraged. Empirical, neurophysiological, psychophysical, brain imaging, clinical, developmental, mathematical and computational analyses are welcome. Research will also be considered covering multisensory applications such as sensory substitution, crossmodal methods for delivering sensory information or multisensory approaches to robotics and engineering. Short communications and technical notes that draw attention to new developments will be included, as will reviews and commentaries on current issues. Special issues dealing with specific topics will be announced from time to time. Multisensory Research is a continuation of Seeing and Perceiving, and of Spatial Vision.
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