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面部与声音的感知整合取决于情感内容与空间频率的相互作用。

Perceptual integration of faces and voices depends on the interaction of emotional content and spatial frequency.

作者信息

Kokinous Jenny, Tavano Alessandro, Kotz Sonja A, Schröger Erich

机构信息

Institute of Psychology, Leipzig University, Germany.

Institute of Psychology, Leipzig University, Germany; Max Planck Institute for Empirical Aesthetics, Frankfurt am Main, Germany.

出版信息

Biol Psychol. 2017 Feb;123:155-165. doi: 10.1016/j.biopsycho.2016.12.007. Epub 2016 Dec 12.

Abstract

The role of spatial frequencies (SF) is highly debated in emotion perception, but previous work suggests the importance of low SFs for detecting emotion in faces. Furthermore, emotion perception essentially relies on the rapid integration of multimodal information from faces and voices. We used EEG to test the functional relevance of SFs in the integration of emotional and non-emotional audiovisual stimuli. While viewing dynamic face-voice pairs, participants were asked to identify auditory interjections, and the electroencephalogram (EEG) was recorded. Audiovisual integration was measured as auditory facilitation, indexed by the extent of the auditory N1 amplitude suppression in audiovisual compared to an auditory only condition. We found an interaction of SF filtering and emotion in the auditory response suppression. For neutral faces, larger N1 suppression ensued in the unfiltered and high SF conditions as compared to the low SF condition. Angry face perception led to a larger N1 suppression in the low SF condition. While the results for the neural faces indicate that perceptual quality in terms of SF content plays a major role in audiovisual integration, the results for angry faces suggest that early multisensory integration of emotional information favors low SF neural processing pathways, overruling the predictive value of the visual signal per se.

摘要

空间频率(SF)在情绪感知中的作用备受争议,但先前的研究表明低空间频率对于面部情绪检测具有重要意义。此外,情绪感知本质上依赖于来自面部和声音的多模态信息的快速整合。我们使用脑电图(EEG)来测试空间频率在情绪和非情绪视听刺激整合中的功能相关性。在观看动态面部 - 声音对时,要求参与者识别听觉感叹词,并记录脑电图(EEG)。视听整合通过听觉促进来衡量,以与仅听觉条件相比,视听条件下听觉N1振幅抑制的程度为指标。我们发现在听觉反应抑制中存在空间频率滤波与情绪的相互作用。对于中性面孔,与低空间频率条件相比,在未滤波和高空间频率条件下会出现更大的N1抑制。愤怒面孔的感知在低空间频率条件下导致更大的N1抑制。虽然中性面孔的结果表明空间频率内容方面的感知质量在视听整合中起主要作用,但愤怒面孔的结果表明情绪信息的早期多感官整合有利于低空间频率神经处理通路,从而超越了视觉信号本身的预测价值。

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