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Changes in auditory frequency guide visual-spatial attention

机译:听觉频率的变化引导视觉空间注意

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How do the characteristics of sounds influence the allocation of visual-spatial attention? Natural sounds typically change in frequency. Here we demonstrate that the direction of frequency change guides visual-spatial attention more strongly than the average or ending frequency, and provide evidence suggesting that this cross-modal effect may be mediated by perceptual experience. We used a Go/No-Go color-matching task to avoid response compatibility confounds. Participants performed the task either with their heads upright or tilted by 90°, misaligning the head-centered and environmental axes. The first of two colored circles was presented at fixation and the second was presented in one of four surrounding positions in a cardinal or diagonal direction. Either an ascending or descending auditory-frequency sweep was presented coincident with the first circle. Participants were instructed to respond to the color match between the two circles and to ignore the uninformative sounds. Ascending frequency sweeps facilitated performance (response time and/or sensitivity) when the second circle was presented at the cardinal top position and descending sweeps facilitated performance when the second circle was presented at the cardinal bottom position; there were no effects of the average or ending frequency. The sweeps had no effects when circles were presented at diagonal locations, and head tilt entirely eliminated the effect. Thus, visual-spatial cueing by pitch change is narrowly tuned to vertical directions and dominates any effect of average or ending frequency. Because this cross-modal cueing is dependent on the alignment of head-centered and environmental axes, it may develop through associative learning during waking upright experience.
机译:声音的特征如何影响视觉空间注意力的分配?自然声音通常会改变频率。在这里,我们证明了频率变化的方向比平均频率或结束频率更能引导视觉空间注意力,并提供证据表明这种跨峰效应可能是由感知经验介导的。我们使用了“通过/不通过”颜色匹配任务来避免响应兼容性混淆。参与者以直立或头部倾斜90°的方式执行任务,使头部居中的轴和环境轴未对齐。固定时出现两个彩色圆圈中的第一个,第二个出现在基本方向或对角线方向上四个周围位置之一。听觉频率扫描的上升或下降都与第一个圆圈重合。指示参与者对两个圆圈之间的颜色匹配做出响应,并忽略无用的声音。当第二个圆位于基数最高位置时,上升频率扫描有助于提高性能(响应时间和/或灵敏度),而第二个圆位于基数底部位置时,下降扫描有助于性能。没有平均或结束频率的影响。当在对角线位置出现圆圈时,扫掠没有任何效果,并且头部倾斜完全消除了这种影响。因此,通过音调变化而产生的视觉空间提示会被狭窄地调整到垂直方向,并且支配着平均或结束频率的影响。由于这种交叉模式提示取决于头部居中轴和环境轴的对齐方式,因此它可能是在唤醒直立体验时通过联想学习而形成的。

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