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Synchronized Audio-Visual Transients Drive Efficient Visual Search for Motion-in-Depth

机译:同步视听瞬变可有效地进行深度运动视觉搜索

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摘要

In natural audio-visual environments, a change in depth is usually correlated with a change in loudness. In the present study, we investigated whether correlating changes in disparity and loudness would provide a functional advantage in binding disparity and sound amplitude in a visual search paradigm. To test this hypothesis, we used a method similar to that used by van der Burg et al. to show that non-spatial transient (square-wave) modulations of loudness can drastically improve spatial visual search for a correlated luminance modulation. We used dynamic random-dot stereogram displays to produce pure disparity modulations. Target and distractors were small disparity-defined squares (either 6 or 10 in total). Each square moved back and forth in depth in front of the background plane at different phases. The target’s depth modulation was synchronized with an amplitude-modulated auditory tone. Visual and auditory modulations were always congruent (both sine-wave or square-wave). In a speeded search task, five observers were asked to identify the target as quickly as possible. Results show a significant improvement in visual search times in the square-wave condition compared to the sine condition, suggesting that transient auditory information can efficiently drive visual search in the disparity domain. In a second experiment, participants performed the same task in the absence of sound and showed a clear set-size effect in both modulation conditions. In a third experiment, we correlated the sound with a distractor instead of the target. This produced longer search times, indicating that the correlation is not easily ignored.
机译:在自然的视听环境中,深度的变化通常与响度的变化相关。在本研究中,我们调查了视差和响度的相关变化是否会在视觉搜索范例中绑定视差和声音幅度方面提供功能优势。为了验证这一假设,我们使用了类似于van der Burg等人的方法。表明响度的非空间瞬态(方波)调制可以大大改善空间视觉搜索,以实现相关的亮度调制。我们使用动态随机点立体图显示来产生纯视差调制。目标和干扰因素是视差定义的小方块(总计6或10)。每个方格在不同阶段在背景平面的前面深度前后移动。目标的深度调制与幅度调制的听觉音调同步。视觉和听觉调制总是一致的(正弦波或方波)。在快速搜索任务中,要求五名观察员尽快识别目标。结果显示,与正弦条件相比,方波条件下的视觉搜索时间有了显着改善,这表明瞬态听觉信息可以有效地驱动视差域中的视觉搜索。在第二个实验中,参与者在没有声音的情况下执行相同的任务,并且在两种调制条件下均显示出清晰的设定大小效果。在第三个实验中,我们将声音与干扰物而不是目标相关联。这样会产生更长的搜索时间,表明相关性不容易被忽略。

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