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在外部空间和工作记忆中搜索听觉目标:感知和追溯性空间注意的电生理机制。

Searching for auditory targets in external space and in working memory: Electrophysiological mechanisms underlying perceptual and retroactive spatial attention.

作者信息

Klatt Laura-Isabelle, Getzmann Stephan, Wascher Edmund, Schneider Daniel

机构信息

Leibniz Research Centre for Working Environment and Human Factors, TU Dortmund, Germany.

Leibniz Research Centre for Working Environment and Human Factors, TU Dortmund, Germany.

出版信息

Behav Brain Res. 2018 Nov 1;353:98-107. doi: 10.1016/j.bbr.2018.06.022. Epub 2018 Jun 26.

Abstract

Attention can be shifted within internal representations maintained in working memory. These retroactive processes are particularly inherent to the processing of auditory information that is especially transient over time and thus, requires us to continuously maintain, attend to, and integrate information in working memory. Using EEG recordings, the present study investigated the neurophysiological mechanisms underlying selective spatial attention in a retroactive as opposed to a perceptual auditory search task. Two kinds of sound stimuli were employed: a horizontal sound array consisting of two natural sounds presented simultaneously in the left and right hemispace and a central single target sound. The target sound was provided either after (retroactive search) or before the presentation of the sound array (perceptual search). In both search conditions, participants completed a sound localization and a sound detection task, indicating the position (left or right) or the presence versus absence (yes or no) of a particular target sound. Analyses revealed a lateralization of alpha power oscillations (8-12 Hz) over parieto-occipital scalp in both perceptual and retroactive sound localization tasks, but not in respective sound detection tasks, suggesting auditory alpha lateralization to be restricted to spatially-specific task demands. The observed asymmetric modulations of alpha power in sound localization are consistent with analogous findings from the visual domain, supporting the supramodal role of alpha oscillations in the deployment of spatial attention. Hence, we conclude that auditory alpha lateralization is a higher-order attention mechanism that operates in perceptual and mnemonic space reflecting the access to a spatially-specific, supramodal response template.

摘要

注意力可以在工作记忆中维持的内部表征内转移。这些回溯过程在听觉信息处理中尤为内在,因为听觉信息随时间特别短暂,因此需要我们在工作记忆中持续维持、关注并整合信息。本研究使用脑电图记录,调查了在回溯性而非感知性听觉搜索任务中选择性空间注意力背后的神经生理机制。采用了两种声音刺激:一种是水平声音阵列,由在左半空间和右半空间同时呈现的两种自然声音组成,以及一个中央单一目标声音。目标声音在声音阵列呈现之后(回溯性搜索)或之前(感知性搜索)提供。在两种搜索条件下,参与者完成了声音定位和声音检测任务,指示特定目标声音的位置(左或右)或是否存在(是或否)。分析显示,在感知性和回溯性声音定位任务中,顶枕头皮上的阿尔法功率振荡(8 - 12赫兹)出现了侧化,但在相应的声音检测任务中没有,这表明听觉阿尔法侧化仅限于空间特定的任务需求。在声音定位中观察到的阿尔法功率不对称调制与视觉领域的类似发现一致,支持了阿尔法振荡在空间注意力部署中的超模态作用。因此,我们得出结论,听觉阿尔法侧化是一种高阶注意力机制,在感知和记忆空间中运作,反映了对空间特定的超模态反应模板的访问。

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