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一项双任务脑磁图研究中情绪面孔感知与工作记忆负荷的神经生理基础

Neurophysiological Basis of Emotional Face Perception and Working Memory Load in a Dual-Task MEG Study.

作者信息

Lingelbach Katharina, Rieger Jochem W

机构信息

Applied Neurocognitive Systems, Fraunhofer Institute for Industrial Engineering IAO, Stuttgart, Germany.

Applied Neurocognitive Psychology, Department of Psychology, Carl von Ossietzky University, Oldenburg, Germany.

出版信息

Hum Brain Mapp. 2025 Jun 1;46(8):e70242. doi: 10.1002/hbm.70242.

Abstract

Research on the neurophysiological effects of emotional face processing, working memory (WM) load, and their interaction in dual-tasks remains scarce. Therefore, we conducted a combined magnetoencephalography eye-tracking study with 47 participants. The dual-task temporally interleaved a facial emotion discrimination task with a visuo-spatial n-back task. Source-space cluster analyzes of event-related magnetic fields (ERFs) and oscillations revealed significant main effects of emotional expression and WM load. During emotion discrimination, enhanced ERFs for negative facial expressions located across the insula, ACC, and face-specific occipital regions suggest amplified emotion processing but also the recruitment of attentional control mechanisms. During the n-back phase, emotional faces did not affect evoked responses when they were task-irrelevant. Interaction trends in pupil dilation indicated that emotion-specific processing is diminished under high WM load. During the n-back phase, increased WM load reduced alpha and low beta oscillations in temporo- and parieto-occipital areas. In addition, reduced target fixations in the presence of negative facial distractors indicated a tendency toward emotion-specific interference. Furthermore, sustained increased WM load affected perceived valence, pupil size, and reaction time in both subtasks. A convergence of neurophysiological, physiological, and behavioural findings points to specific processing modes with greater resource depletion for negative expressions and high WM load in the dual-task. In conclusion, the study advanced our understanding of (a) circumstances under which emotional faces modulate ERFs in a dual-task, (b) mechanisms underlying emotion discrimination, (c) interaction effects of emotional expression and WM load in gaze behavior, as well as (d) how WM-related oscillatory alpha and beta power is affected by increasing load.

摘要

关于情绪面孔加工、工作记忆(WM)负荷及其在双重任务中的相互作用的神经生理效应的研究仍然很少。因此,我们对47名参与者进行了一项结合脑磁图和眼动追踪的研究。双重任务在时间上交错进行面部情绪辨别任务和视觉空间n-back任务。对事件相关磁场(ERF)和振荡进行源空间聚类分析,结果显示情绪表达和WM负荷具有显著的主效应。在情绪辨别过程中,岛叶、前扣带回和面部特定枕叶区域对面部负面表情增强的ERF表明情绪加工增强,但也招募了注意力控制机制。在n-back阶段,当情绪面孔与任务无关时,不会影响诱发反应。瞳孔扩张的交互趋势表明,在高WM负荷下,特定情绪的加工会减弱。在n-back阶段,增加的WM负荷会降低颞叶和顶枕叶区域的α波和低β波振荡。此外,在存在负面面部干扰物的情况下,目标注视次数减少表明存在特定情绪干扰的趋势。此外,持续增加的WM负荷会影响两个子任务中的感知效价、瞳孔大小和反应时间。神经生理、生理和行为学研究结果的趋同表明,在双重任务中,负面表情和高WM负荷会导致特定的加工模式,消耗更多资源。总之,该研究增进了我们对以下方面的理解:(a)情绪面孔在双重任务中调节ERF的情况;(b)情绪辨别背后的机制;(c)情绪表达和WM负荷在注视行为中的交互作用;以及(d)与WM相关的振荡α波和β波功率如何受到负荷增加的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/007c/12147946/705a5cb6883b/HBM-46-e70242-g004.jpg

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