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面部情绪识别中证据积累困难时的脑加工过程:一项事件相关电位研究

Brain Processes While Struggling With Evidence Accumulation During Facial Emotion Recognition: An ERP Study.

作者信息

Yang Yu-Fang, Brunet-Gouet Eric, Burca Mariana, Kalunga Emmanuel K, Amorim Michel-Ange

机构信息

CIAMS, Université Paris-Saclay, Orsay, France.

CIAMS, Université d'Orléans, Orléans, France.

出版信息

Front Hum Neurosci. 2020 Sep 3;14:340. doi: 10.3389/fnhum.2020.00340. eCollection 2020.

Abstract

The human brain is tuned to recognize emotional facial expressions in faces having a natural upright orientation. The relative contributions of featural, configural, and holistic processing to decision-making are as yet poorly understood. This study used a diffusion decision model (DDM) of decision-making to investigate the contribution of early face-sensitive processes to emotion recognition from physiognomic features (the eyes, nose, and mouth) by determining how experimental conditions tapping those processes affect early face-sensitive neuroelectric reflections (P100, N170, and P250) of processes determining evidence accumulation at the behavioral level. We first examined the effects of both stimulus orientation (upright vs. inverted) and stimulus type (photographs vs. sketches) on behavior and neuroelectric components (amplitude and latency). Then, we explored the sources of variance common to the experimental effects on event-related potentials (ERPs) and the DDM parameters. Several results suggest that the N170 indicates core visual processing for emotion recognition decision-making: (a) the additive effect of stimulus inversion and impoverishment on N170 latency; and (b) multivariate analysis suggesting that N170 neuroelectric activity must be increased to counteract the detrimental effects of face inversion on drift rate and of stimulus impoverishment on the stimulus encoding component of non-decision times. Overall, our results show that emotion recognition is still possible even with degraded stimulation, but at a neurocognitive cost, reflecting the extent to which our brain struggles to accumulate sensory evidence of a given emotion. Accordingly, we theorize that: (a) the P100 neural generator would provide a holistic frame of reference to the face percept through categorical encoding; (b) the N170 neural generator would maintain the structural cohesiveness of the subtle configural variations in facial expressions across our experimental manipulations through coordinate encoding of the facial features; and (c) building on the previous configural processing, the neurons generating the P250 would be responsible for a normalization process adapting to the facial features to match the stimulus to internal representations of emotional expressions.

摘要

人类大脑倾向于识别自然直立方向的面部表情中的情感。特征、构型和整体加工对决策的相对贡献目前仍知之甚少。本研究使用决策的扩散决策模型(DDM),通过确定挖掘这些过程的实验条件如何影响行为水平上决定证据积累过程的早期面部敏感神经电反射(P100、N170和P250),来研究早期面部敏感过程对基于相貌特征(眼睛、鼻子和嘴巴)的情感识别的贡献。我们首先研究了刺激方向(直立与倒置)和刺激类型(照片与素描)对行为和神经电成分(振幅和潜伏期)的影响。然后,我们探索了实验对事件相关电位(ERP)和DDM参数的影响中共同的方差来源。几个结果表明,N170表明情感识别决策的核心视觉加工:(a)刺激倒置和简化对N170潜伏期的累加效应;(b)多变量分析表明,必须增加N170神经电活动以抵消面部倒置对漂移率的不利影响以及刺激简化对非决策时间的刺激编码成分的不利影响。总体而言,我们的结果表明,即使刺激退化,情感识别仍然可能,但要付出神经认知代价,这反映了我们的大脑在积累特定情感的感官证据时的挣扎程度。因此,我们提出以下理论:(a)P100神经发生器将通过分类编码为面部感知提供一个整体参考框架;(b)N170神经发生器将通过对面部特征的坐标编码,在我们的实验操作中维持面部表情中细微构型变化的结构凝聚力;(c)基于先前的构型加工,产生P250的神经元将负责一个归一化过程,使面部特征适应以将刺激与情感表达的内部表征相匹配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12fa/7497730/2a18ad032acc/fnhum-14-00340-g0001.jpg

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