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复杂视觉刺激中错误相关负波的检测:从业者箭袋中的一支新的神经工效学之箭。

Detection of error-related negativity in complex visual stimuli: a new neuroergonomic arrow in the practitioner's quiver.

作者信息

Sawyer Ben D, Karwowski Waldemar, Xanthopoulos Petros, Hancock P A

机构信息

a Department of Psychology , University of Central Florida , Orlando , FL , USA.

b Department of Industrial Engineering , University of Central Florida , Orlando , FL , USA.

出版信息

Ergonomics. 2017 Feb;60(2):234-240. doi: 10.1080/00140139.2015.1124928. Epub 2016 Mar 23.

Abstract

Brain processes responsible for the error-related negativity (ERN) evoked response potential (ERP) have historically been studied in highly controlled laboratory experiments through presentation of simple visual stimuli. The present work describes the first time the ERN has been evoked and successfully detected in visual search of complex stimuli. A letter flanker task and a motorcycle conspicuity task were presented to participants during electroencephalographic (EEG) recording. Direct visual inspection and subsequent statistical analysis of the resultant time-locked ERP data clearly indicated that the ERN was detectable in both groups. Further, the ERN pattern did not differ between groups. Such results show that the ERN can be successfully elicited and detected in visual search of complex static images, opening the door to applied neuroergonomic use. Harnessing the brain's error detection system presents significant opportunities and complex challenges, and implication of such are discussed in the context of human-machine systems. Practitioner Summary: For the first time, error-related negativity (ERN) has been successfully elicited and detected in a visually complex applied search task. Brain-process-based error detection in human-machine systems presents unique challenges, but promises broad neuroergonomic applications.

摘要

历史上,负责错误相关负波(ERN)诱发反应电位(ERP)的大脑过程一直是通过呈现简单视觉刺激,在高度受控的实验室实验中进行研究的。目前的这项工作描述了首次在对复杂刺激的视觉搜索中诱发并成功检测到ERN。在脑电图(EEG)记录过程中,向参与者呈现了字母侧翼任务和摩托车醒目性任务。对所得锁时ERP数据进行直接视觉检查和后续统计分析,结果清楚地表明两组中均可检测到ERN。此外,两组之间的ERN模式没有差异。这些结果表明,在对复杂静态图像的视觉搜索中可以成功诱发并检测到ERN,这为神经工效学的应用打开了大门。利用大脑的错误检测系统带来了重大机遇和复杂挑战,本文将在人机系统的背景下讨论其意义。从业者总结:首次在视觉复杂的应用搜索任务中成功诱发并检测到错误相关负波(ERN)。人机系统中基于大脑过程的错误检测带来了独特的挑战,但有望在神经工效学领域得到广泛应用。

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