Keuper Kati, Zwanzger Peter, Nordt Marisa, Eden Annuschka, Laeger Inga, Zwitserlood Pienie, Kissler Johanna, Junghöfer Markus, Dobel Christian
Institute for Biomagnetism and Biosignalanalysis, University of Muenster, D-48149 Muenster, Germany; Otto Creutzfeldt Center for Cognitive and Behavioral Neuroscience, University of Muenster, D-48149 Muenster, Germany.
Hum Brain Mapp. 2014 Mar;35(3):875-88. doi: 10.1002/hbm.22220. Epub 2012 Dec 26.
Emotional words--as symbols for biologically relevant concepts--are preferentially processed in brain regions including the visual cortex, frontal and parietal regions, and a corticolimbic circuit including the amygdala. Some of the brain structures found in functional magnetic resonance imaging are not readily apparent in electro- and magnetoencephalographic (EEG; MEG) measures. By means of a combined EEG/MEG source localization procedure to fully exploit the available information, we sought to reduce these discrepancies and gain a better understanding of spatiotemporal brain dynamics underlying emotional-word processing. Eighteen participants read high-arousing positive and negative, and low-arousing neutral nouns, while EEG and MEG were recorded simultaneously. Combined current-density reconstructions (L2-minimum norm least squares) for two early emotion-sensitive time intervals, the P1 (80-120 ms) and the early posterior negativity (EPN, 200-300 ms), were computed using realistic individual head models with a cortical constraint. The P1 time window uncovered an emotion effect peaking in the left middle temporal gyrus. In the EPN time window, processing of emotional words was associated with enhanced activity encompassing parietal and occipital areas, and posterior limbic structures. We suggest that lexical access, being underway within 100 ms, is speeded and/or favored for emotional words, possibly on the basis of an "emotional tagging" of the word form during acquisition. This gives rise to their differential processing in the EPN time window. The EPN, as an index of natural selective attention, appears to reflect an elaborate interplay of distributed structures, related to cognitive functions, such as memory, attention, and evaluation of emotional stimuli.
情感词汇——作为与生物学相关概念的符号——在包括视觉皮层、额叶和顶叶区域以及包括杏仁核在内的皮质边缘回路等脑区中得到优先处理。功能磁共振成像中发现的一些脑结构在脑电图和脑磁图(EEG;MEG)测量中并不容易显现。通过EEG/MEG联合源定位程序来充分利用可用信息,我们试图减少这些差异,并更好地理解情感词汇加工背后的脑时空动态。18名参与者阅读高唤醒的积极和消极以及低唤醒的中性名词,同时同步记录EEG和MEG。使用具有皮质约束的真实个体头部模型,计算了两个早期情绪敏感时间间隔,即P1(80 - 120毫秒)和早期后负波(EPN,200 - 300毫秒)的联合电流密度重建(L2最小范数最小二乘法)。P1时间窗口揭示了在左中颞回达到峰值的情绪效应。在EPN时间窗口中,情感词汇的加工与包括顶叶和枕叶区域以及后边缘结构的增强活动相关。我们认为,在100毫秒内进行的词汇访问对于情感词汇来说会加速和/或更受青睐,这可能是基于词汇习得过程中对词形的“情感标记”。这导致了它们在EPN时间窗口中的差异加工。EPN作为自然选择性注意的指标,似乎反映了与认知功能(如记忆、注意和对情感刺激的评估)相关的分布式结构之间的复杂相互作用。