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Cortical mechanisms of auditory spatial attention in a target detection task

机译:目标检测任务中听觉空间注意的皮质机制

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The benefits of spatial attention on stimulus processing are thought to diminish with increased distance from the attended location, indicating an attention gradient. Evidence for attention gradients is provided by spatial attention effects on event-related potentials (ERPs) under conditions of rapid stimulus presentation from closely spaced locations. This study was motivated by ecological considerations which suggest that auditory attention is particularly useful for panoramic orienting to intermittent sounds. Auditory ERPs were recorded from a wide range of horizontal locations (180?) while subjects pressed a button to occasional targets at one attended location. Results showed that an ERP component associated with automatic orienting, the P3a, had linear amplitude increases to non-targets as a function of distance from the attended location. A component prior to the P3a with a latency of - 200 ms, the P200, showed a similar pattern but only when subjects attended to the left hemifield. When attending to lateral targets frontal slow waves contralateral to the attended location followed the P3a and were attenuated at greater distances from the target location for at least 1 s. Results suggest that auditory spatial attention under low cognitive loads modulates orienting responses as a function of distance from the attended location. The slow wave findings show that information about the relation between a stimulus and the attended location persists well beyond the time of initial sensory processing and may involve frontal regions important for maintaining online representations of task set.
机译:人们认为,在注意力刺激过程中,空间注意力的好处会随着与参与位置的距离增加而减少,这表明注意力梯度。注意力梯度的证据是通过在空间密集的位置快速刺激呈现的条件下,对事件相关电位(ERP)的空间注意力效应提供的。这项研究是出于生态因素的考虑,这些因素表明听觉注意对于全景定向间歇性声音特别有用。在广泛的水平位置(180度)上记录了听觉ERP,而受试者在一个有人参与的位置偶尔按下了一个按钮。结果表明,与自动定向相关的ERP组件P3a具有线性幅度增加,该幅度随与照看位置的距离而变,从而达到非目标。 P200之前的延迟时间为-200 ms的组件P200表现出类似的模式,但仅当受试者注意左半场时才显示。当关注侧向目标时,与被关注位置对侧的额叶慢波跟随P3a,并在距目标位置更大的距离处衰减至少1 s。结果表明,在低认知负荷下的听觉空间注意力会调节定向反应,该反应是距所参与位置的距离的函数。慢波波的发现表明,关于刺激和参与位置之间关系的信息在最初的感觉处理时间之后仍持续存在,并且可能涉及对维持任务集在线表示重要的额叶区域。

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