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额叶激活增强是避免注意瞬脱的基础:来自人类电生理学的证据。

Enhanced frontal activation underlies sparing from the attentional blink: Evidence from human electrophysiology.

作者信息

Dell'Acqua Roberto, Doro Mattia, Dux Paul E, Losier Talia, Jolicœur Pierre

机构信息

Cognitive Neuroscience Center, University of Padova, Padova, Italy.

Department of Developmental Psychology, University of Padova, Padova, Italy.

出版信息

Psychophysiology. 2016 May;53(5):623-33. doi: 10.1111/psyp.12618. Epub 2016 Jan 21.

Abstract

Using the ERP method, we examined the processing operations elicited by stimuli that appear within the same temporal attention window. Forty subjects searched for letter targets among digit distractors displayed in rapid serial visual presentation (RSVP). ERPs were examined under conditions where a single target was embedded among distractors and compared to those recorded when two consecutive targets were embedded among distractors. Standard and independent component analyses revealed two temporally and topographically distinct ERP responses, a midfrontal P3a component peaking at about 300 ms followed by a midparietal P3b component peaking at about 450 ms. With minimal latency variations, the frontal P3a was amplified when elicited by two consecutive targets relative to a single target. The parietal P3b response was also amplified when elicited by two consecutive targets compared to a single target but, in contrast to P3a, it was also associated with a substantially longer time course. These results provide evidence for the involvement of frontal brain regions in the close-to-concurrent selection of two consecutive targets displayed in RSVP, and of posterior brain regions in the serial encoding of targets in visual working memory. The present findings are discussed in relation to current models of temporal gating of attention and the attentional blink effect.

摘要

我们采用事件相关电位(ERP)方法,研究了在同一时间注意窗口内出现的刺激所引发的加工操作。40名受试者在快速序列视觉呈现(RSVP)中,在数字干扰物中搜索字母目标。在干扰物中嵌入单个目标的条件下检测ERP,并与在干扰物中嵌入两个连续目标时记录的ERP进行比较。标准分析和独立成分分析揭示了两种在时间和地形上不同的ERP反应,一种是额中部P3a成分,在约300毫秒时达到峰值,随后是顶中部P3b成分,在约450毫秒时达到峰值。在潜伏期变化最小的情况下,相对于单个目标,两个连续目标引发的额部P3a被放大。与单个目标相比,两个连续目标引发的顶叶P3b反应也被放大,但与P3a不同的是,它还与明显更长的时间进程相关。这些结果为额叶脑区参与RSVP中两个连续目标的近同时选择以及后脑区参与视觉工作记忆中目标的序列编码提供了证据。本文的研究结果结合当前的时间注意门控模型和注意瞬脱效应进行了讨论。

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