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Augmenting serotonin neurotransmission with citalopram modulates emotional expression decoding but not structural encoding of moderate intensity sad facial emotional stimuli: an event-related potential (ERP) investigation.西酞普兰增强 5-羟色胺神经传递调制中度悲伤面部情绪刺激的情绪表达解码而不影响结构编码:一项事件相关电位(ERP)研究。
J Psychopharmacol. 2010 Aug;24(8):1153-64. doi: 10.1177/0269881108097878. Epub 2008 Oct 2.
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Cortical sources of visual evoked potentials during consciousness of executive processes.执行过程意识期间视觉诱发电位的皮质来源。
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3
Valuating other people's emotional face expression: a combined functional magnetic resonance imaging and electroencephalography study.评估他人的情绪面部表情:一项功能磁共振成像与脑电图相结合的研究。
Neuroscience. 2008 Mar 27;152(3):713-22. doi: 10.1016/j.neuroscience.2007.10.066. Epub 2008 Jan 25.
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Modification of N170 by different emotional expression of schematic faces.不同表情示意图面孔的情绪表达对N170的影响
Biol Psychol. 2007 Oct;76(3):156-62. doi: 10.1016/j.biopsycho.2007.07.004. Epub 2007 Jul 26.
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Human ventral parietal cortex plays a functional role on visuospatial attention and primary consciousness. A repetitive transcranial magnetic stimulation study.人类腹侧顶叶皮层在视觉空间注意力和初级意识方面发挥功能性作用。一项重复经颅磁刺激研究。
Cereb Cortex. 2007 Jun;17(6):1486-92. doi: 10.1093/cercor/bhl060. Epub 2006 Aug 21.
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Distributed and interactive brain mechanisms during emotion face perception: evidence from functional neuroimaging.情绪面孔感知过程中的分布式和交互式脑机制:来自功能神经影像学的证据
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皮层对 schematic 情绪面部表情的意识反应:一项高分辨率 EEG 研究。

Cortical responses to consciousness of schematic emotional facial expressions: a high-resolution EEG study.

机构信息

Department of Biomedical Sciences, University of Foggia, Foggia, Italy.

出版信息

Hum Brain Mapp. 2010 Oct;31(10):1556-69. doi: 10.1002/hbm.20958.

DOI:10.1002/hbm.20958
PMID:20143385
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6871096/
Abstract

Is conscious perception of emotional face expression related to enhanced cortical responses? Electroencephalographic data (112 channels) were recorded in 15 normal adults during the presentation of cue stimuli with neutral, happy or sad schematic faces (duration: "threshold time" inducing about 50% of correct recognitions), masking stimuli (2 s), and go stimuli with happy or sad schematic faces (0.5 s). The subjects clicked left (right) mouse button in response to go stimuli with happy (sad) faces. After the response, they said "seen" or "not seen" with reference to previous cue stimulus. Electroencephalographic data formed visual event-related potentials (ERPs). Cortical sources of ERPs were estimated by LORETA software. Reaction time to go stimuli was generally shorter during "seen" than "not seen" trials, possibly due to covert attention and awareness. The cue stimuli evoked four ERP components (posterior N100, N170, P200, and P300), which had similar peak latency in the "not seen" and "seen" ERPs. Only N170 amplitude showed differences in amplitude in the "seen" versus "not seen" ERPs. Compared to the "not seen" ERPs, the "seen" ones showed prefrontal, premotor, and posterior parietal sources of N170 higher in amplitude with the sad cue stimuli and lower in amplitude with the neutral and happy cue stimuli. These results suggest that nonconscious and conscious processing of schematic emotional facial expressions shares a similar temporal evolution of cortical activity, and conscious processing induces an early enhancement of bilateral cortical activity for the schematic sad facial expressions (N170).

摘要

意识对情绪面部表情的感知是否与增强的皮质反应有关?在 15 名正常成年人中记录了脑电图数据(112 个通道),在呈现带有中性、快乐或悲伤示意图面孔的提示刺激(持续时间:“阈限时间”诱导约 50%的正确识别)、掩蔽刺激(2 秒)和带有快乐或悲伤示意图面孔的 GO 刺激(0.5 秒)期间。受试者在看到带有快乐(悲伤)面孔的 GO 刺激时点击鼠标左键(右键)。响应后,他们根据之前的提示刺激说“看到”或“未看到”。脑电图数据形成视觉事件相关电位(ERP)。通过 LORETA 软件估计 ERP 的皮质源。与“未看到”试验相比,GO 刺激的反应时间通常在“看到”试验中更短,这可能是由于隐蔽注意力和意识。提示刺激引发了四个 ERP 成分(后 N100、N170、P200 和 P300),在“未看到”和“看到”ERP 中具有相似的峰值潜伏期。只有 N170 振幅在“看到”与“未看到”ERP 中显示出振幅差异。与“未看到”ERP 相比,“看到”ERP 显示出与悲伤提示刺激相比,额前、运动前和后顶叶的 N170 振幅更高,与中性和快乐提示刺激相比,N170 振幅更低。这些结果表明,示意图情绪面部表情的非意识和意识处理共享皮质活动的相似时间演化,并且意识处理诱导双侧皮质活动对示意图悲伤面部表情(N170)的早期增强。