Department of Psychiatry, Psychotherapy and Psychosomatics, Aachen University Hospital, Pauwelsstr. 30, 52074 Aachen, Germany. Tel.: +49 241 80 89633, Fax: +49 241 80 82401.
Soc Cogn Affect Neurosci. 2013 Dec;8(8):950-7. doi: 10.1093/scan/nss092. Epub 2012 Sep 6.
Facial expressions convey important emotional and social information and are frequently applied in investigations of human affective processing. Dynamic faces may provide higher ecological validity to examine perceptual and cognitive processing of facial expressions. Higher order processing of emotional faces was addressed by varying the task and virtual face models systematically. Blood oxygenation level-dependent activation was assessed using functional magnetic resonance imaging in 20 healthy volunteers while viewing and evaluating either emotion or gender intensity of dynamic face stimuli. A general linear model analysis revealed that high valence activated a network of motion-responsive areas, indicating that visual motion areas support perceptual coding for the motion-based intensity of facial expressions. The comparison of emotion with gender discrimination task revealed increased activation of inferior parietal lobule, which highlights the involvement of parietal areas in processing of high level features of faces. Dynamic emotional stimuli may help to emphasize functions of the hypothesized 'extended' over the 'core' system for face processing.
面部表情传达着重要的情感和社交信息,常被应用于人类情感处理的研究中。动态面部表情可能为考察面部表情的感知和认知处理提供更高的生态有效性。通过系统地改变任务和虚拟面部模型来研究情绪面孔的高阶处理。在 20 名健康志愿者观看和评估动态面部表情刺激的情绪或性别强度时,使用功能磁共振成像评估血氧水平依赖激活。一般线性模型分析显示,高正价激活了一个运动反应区域网络,表明视觉运动区域支持基于运动的面部表情强度的感知编码。情绪与性别辨别任务的比较显示,下顶叶小叶的激活增加,这突出了顶叶区域在处理面部的高级特征中的参与。动态情感刺激可能有助于强调假设的“扩展”系统在面部处理中的作用超过“核心”系统。