首页> 外文期刊>Journal of experimental psychology. human perception and performance >Poorer Resolution for Audiotactile Than for Audiovisual Synchrony Detection in Cluttered Displays
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Poorer Resolution for Audiotactile Than for Audiovisual Synchrony Detection in Cluttered Displays

机译:比杂乱显示中的视听同步分辨率差的视听同步分辨率差

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摘要

The brain integrates signals from multiple modalities to provide a reliable estimate of environmental events. A temporally cluttered environment presents a challenge for sensory integration because of the risk of misbinding, yet it also provides scope for cross-modal binding to greatly enhance performance by highlighting multimodal events. We present a tactile search task in which fingertips received pulsed vibrations and participants identified which finger was stimulated in synchrony with an auditory signal. Results showed that performance for identifying the target finger was impaired when other fingers were stimulated, even though all fingers were stimulated sequentially. When the number of fingers vibrated was fixed, we found that both spatial and temporal factors constrained performance, because events occurring close to the target vibration in either space or time reduced accuracy. When tactile search was compared with visual search, we found overall performance was lower in touch than in vision, although the cost of reducing temporal separation between stimuli or increasing the presentation rate was similar for both target modalities. Audiotactile performance benefitted from increasing spatial separation between target and distractors, with a particularly strong benefit for locating the target on a different hand to the distractors, whereas the spatial manipulations did not affect audiovisual performance. The similar trends in performance for temporal manipulations across vision and touch suggest a common supramodal binding mechanism that, when combining audition and touch, is limited by the poor resolution of the underlying unisensory representation of touch in cluttered settings.
机译:大脑整合来自多种方式的信号,以提供对环境事件的可靠估计。由于存在错误绑定的风险,时间混乱的环境对感觉整合提出了挑战,但同时也为跨模式绑定提供了空间,以通过突出显示多模式事件来大大增强性能。我们提出了一种触觉搜索任务,其中指尖接收了脉冲振动,参与者识别出与听觉信号同步刺激的手指。结果表明,即使所有手指依次受到刺激,当刺激其他手指时,用于识别目标手指的性能也会受到损害。当振动的手指数固定时,我们发现时空因素都限制了性能,因为在空间或时间上接近目标振动的事件都会降低准确性。当将触觉搜索与视觉搜索进行比较时,我们发现触摸的总体性能要比视觉的要低,尽管在两种目标模式下减少刺激之间的时间间隔或增加提示率的成本是相似的。视听性能得益于目标物与干扰物之间的空间间隔的增加,特别有利于将目标物放在干扰物的另一侧,而空间操作不会影响视听性能。跨视觉和触摸的时间操作的相似性能趋势表明,一种通用的超模态绑定机制在组合试听和触摸时会受到混乱环境中触摸的基本单感表示分辨率差的限制。

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