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使用脑电图同步远程眼动追踪研究隐蔽和显性注意之间的神经差异。

Neural Differences between Covert and Overt Attention Studied using EEG with Simultaneous Remote Eye Tracking.

作者信息

Kulke Louisa V, Atkinson Janette, Braddick Oliver

机构信息

Department of Cognitive Developmental Psychology, Georg-Elias-Müller-Institute for Psychology, Georg-August University GöttingenGöttingen, Germany; Division of Psychology and Language Sciences, Faculty of Brain Sciences, University College LondonLondon, UK.

Division of Psychology and Language Sciences, Faculty of Brain Sciences, University College LondonLondon, UK; Department of Experimental Psychology, University of OxfordOxford, UK.

出版信息

Front Hum Neurosci. 2016 Nov 23;10:592. doi: 10.3389/fnhum.2016.00592. eCollection 2016.

Abstract

Research on neural mechanisms of attention has generally instructed subjects to direct attention covertly while maintaining a fixed gaze. This study combined simultaneous eye tracking and electroencephalogram (EEG) to measure neural attention responses during exogenous cueing in overt attention shifts (with saccadic eye movements to a target) and compared these with covert attention shifts (responding manually while maintaining central fixation). EEG analysis of the period preceding the saccade latency showed similar occipital response amplitudes for overt and covert shifts, although response latencies differed. However, a frontal positivity was greater during covert attention shifts, possibly reflecting saccade inhibition to maintain fixation. The results show that combined EEG and eye tracking can be successfully used to study natural overt shifts of attention (applicable to non-verbal infants) and that requiring inhibition of saccades can lead to additional frontal responses. Such data can be used to refine current neural models of attention that have been mainly based on covert shifts.

摘要

关于注意力神经机制的研究通常指导受试者在保持固定注视的同时进行隐蔽的注意力定向。本研究结合同步眼动追踪和脑电图(EEG)来测量外源性线索引导下显性注意力转移(通过眼球跳动至目标)过程中的神经注意力反应,并将其与隐性注意力转移(保持中央注视的同时手动做出反应)进行比较。对扫视潜伏期之前的时间段进行脑电图分析发现,显性和隐性转移的枕叶反应幅度相似,尽管反应潜伏期有所不同。然而,在隐性注意力转移过程中额叶正电位更大,这可能反映了为保持注视而对扫视的抑制。结果表明,脑电图和眼动追踪相结合可成功用于研究自然的显性注意力转移(适用于非语言期婴儿),并且需要抑制扫视会导致额外的额叶反应。这些数据可用于完善目前主要基于隐性转移的注意力神经模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeea/5120114/1382cb3d2154/fnhum-10-00592-g0001.jpg

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