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First valence, then arousal: the temporal dynamics of brain electric activity evoked by emotional stimuli.

机译:首先是价,然后是唤醒:情绪刺激引起的脑电活动的时间动态。

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The temporal dynamics of the neural activity that implements the dimensions valence and arousal during processing of emotional stimuli were studied in two multi-channel ERP experiments that used visually presented emotional words (experiment 1) and emotional pictures (experiment 2) as stimulus material. Thirty-two healthy subjects participated (mean age 26.8 +/- 6.4 years, 24 women). The stimuli in both experiments were selected on the basis of verbal reports in such a way that we were able to map the temporal dynamics of one dimension while controlling for the other one. Words (pictures) were centrally presented for 450 (600) ms with interstimulus intervals of 1,550 (1,400) ms. ERP microstate analysis of the entire epochs of stimulus presentations parsed the data into sequential steps of information processing. The results revealed that in several microstates of both experiments, processing of pleasant and unpleasant valence (experiment 1, microstate #3: 118-162 ms, #6: 218-238 ms, #7: 238-266 ms, #8:266-294 ms; experiment 2, microstate #5: 142-178 ms, #6: 178-226 ms, #7: 226-246 ms, #9: 262-302 ms, #10: 302-330 ms) as well as of low and high arousal (experiment 1, microstate #8: 266-294 ms, #9: 294-346 ms; experiment 2, microstate #10: 302-330 ms, #15: 562-600 ms) involved different neural assemblies. The results revealed also that in both experiments, information about valence was extracted before information about arousal. The last microstate of valence extraction was identical with the first microstate of arousal extraction.
机译:在两个多通道ERP实验中研究了在情感刺激处理过程中实现维数价数和唤醒的神经活动的时间动态,该实验使用视觉呈现的情感词(实验1)和情感图片(实验2)作为刺激材料。参加了32名健康受试者(平均年龄26.8 +/- 6.4岁,女性24位)。在两个实验中的刺激都是根据口头报告选择的,这样我们就可以绘制一个维度的时间动态,同时控制另一个维度。单词(图片)集中显示450(600)ms,间隔间隔为1,550(1,400)ms。整个刺激性陈述的ERP微观状态分析将数据解析为信息处理的顺序步骤。结果表明,在两个实验的几个微状态下,均处理愉快和令人不愉快的化合价(实验1,微状态#3:118-162 ms,#6:218-238 ms,#7:238-266 ms,#8:266 -294毫秒;实验2,微状态#5:142-178毫秒,#6:178-226毫秒,#7:226-246毫秒,#9:262-302毫秒,#10:302-330毫秒)从低和高唤起开始(实验1,微状态#8:266-294 ms,#9:294-346 ms;实验2,微状态#10:302-330 ms,#15:562-600 ms)涉及不同的神经组件。该结果还表明,在两个实验中,均在关于唤醒的信息之前提取了关于价的信息。价提取的最后一个微状态与唤醒提取的第一个微状态相同。

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