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人脸识别过程中与(微)扫视相关的电位:一项结合脑电图、眼动追踪和去卷积建模的研究。

(Micro)saccade-related potentials during face recognition: A study combining EEG, eye-tracking, and deconvolution modeling.

作者信息

Spiering Lisa, Dimigen Olaf

机构信息

Department of Psychology, Humboldt-Universität zu Berlin, Berlin, Germany.

Department of Experimental Psychology, University of Oxford, Oxford, UK.

出版信息

Atten Percept Psychophys. 2025 Jan;87(1):133-154. doi: 10.3758/s13414-024-02846-1. Epub 2024 Jan 31.

Abstract

Under natural viewing conditions, complex stimuli such as human faces are typically looked at several times in succession, implying that their recognition may unfold across multiple eye fixations. Although electrophysiological (EEG) experiments on face recognition typically prohibit eye movements, participants still execute frequent (micro)saccades on the face, each of which generates its own visuocortical response. This finding raises the question of whether the fixation-related potentials (FRPs) evoked by these tiny gaze shifts also contain psychologically valuable information about face processing. Here, we investigated this question by corecording EEG and eye movements in an experiment with emotional faces (happy, angry, neutral). Deconvolution modeling was used to separate the stimulus ERPs to face onset from the FRPs generated by subsequent microsaccades-induced refixations on the face. As expected, stimulus ERPs exhibited typical emotion effects, with a larger early posterior negativity (EPN) for happy/angry compared with neutral faces. Eye tracking confirmed that participants made small saccades in 98% of the trials, which were often aimed at the left eye of the stimulus face. However, while each saccade produced a strong response over visual areas, this response was unaffected by the face's emotional expression, both for the first and for subsequent (micro)saccades. This finding suggests that the face's affective content is rapidly evaluated after stimulus onset, leading to only a short-lived sensory enhancement by arousing stimuli that does not repeat itself during immediate refixations. Methodologically, our work demonstrates how eye tracking and deconvolution modeling can be used to extract several brain responses from each EEG trial, providing insights into neural processing at different latencies after stimulus onset.

摘要

在自然观看条件下,诸如人脸等复杂刺激通常会被连续注视多次,这意味着它们的识别可能在多次眼睛注视过程中逐步展开。尽管关于人脸识别的电生理(脑电图)实验通常禁止眼球运动,但参与者在面对人脸时仍会频繁进行(微)扫视,每次扫视都会产生其自身的视觉皮层反应。这一发现引发了一个问题,即这些微小注视转移所诱发的与注视相关的电位(FRP)是否也包含有关面部处理的具有心理价值的信息。在这里,我们通过在一个使用表情丰富的人脸(开心、愤怒、中性)的实验中同步记录脑电图和眼球运动来研究这个问题。反卷积建模被用于将刺激引发的脑电图信号与后续微扫视引起的面部重新注视所产生的FRP区分开来。正如预期的那样,刺激引发的脑电图信号表现出典型的情绪效应,与中性面孔相比,开心/愤怒面孔的早期后部负波(EPN)更大。眼动追踪证实,参与者在98%的试验中进行了小幅度扫视,这些扫视通常指向刺激面孔的左眼。然而,虽然每次扫视在视觉区域都会产生强烈反应,但这种反应不受面孔情绪表达的影响,无论是第一次扫视还是后续的(微)扫视都是如此。这一发现表明,面孔的情感内容在刺激开始后会迅速得到评估,导致仅由唤起性刺激产生短暂的感觉增强,且在随后的重新注视过程中不会重复。从方法学角度来看,我们的工作展示了如何利用眼动追踪和反卷积建模从每次脑电图试验中提取多种脑反应,从而深入了解刺激开始后不同潜伏期的神经处理过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0a9/11845548/c289ba13f97d/13414_2024_2846_Fig1_HTML.jpg

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