首页> 外文期刊>Neuropsychologia >Distributed and interactive brain mechanisms during emotion face perception: evidence from functional neuroimaging.
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Distributed and interactive brain mechanisms during emotion face perception: evidence from functional neuroimaging.

机译:情绪面孔感知过程中的分布式和交互性大脑机制:功能性神经影像学的证据。

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Brain imaging studies in humans have shown that face processing in several areas is modulated by the affective significance of faces, particularly with fearful expressions, but also with other social signals such gaze direction. Here we review haemodynamic and electrical neuroimaging results indicating that activity in the face-selective fusiform cortex may be enhanced by emotional (fearful) expressions, without explicit voluntary control, and presumably through direct feedback connections from the amygdala. fMRI studies show that these increased responses in fusiform cortex to fearful faces are abolished by amygdala damage in the ipsilateral hemisphere, despite preserved effects of voluntary attention on fusiform; whereas emotional increases can still arise despite deficits in attention or awareness following parietal damage, and appear relatively unaffected by pharmacological increases in cholinergic stimulation. Fear-related modulations of face processing driven by amygdala signals may implicate notonly fusiform cortex, but also earlier visual areas in occipital cortex (e.g., V1) and other distant regions involved in social, cognitive, or somatic responses (e.g., superior temporal sulcus, cingulate, or parietal areas). In the temporal domain, evoked-potentials show a widespread time-course of emotional face perception, with some increases in the amplitude of responses recorded over both occipital and frontal regions for fearful relative to neutral faces (as well as in the amygdala and orbitofrontal cortex, when using intracranial recordings), but with different latencies post-stimulus onset. Early emotional responses may arise around 120ms, prior to a full visual categorization stage indexed by the face-selective N170 component, possibly reflecting rapid emotion processing based on crude visual cues in faces. Other electrical components arise at later latencies and involve more sustained activities, probably generated in associative or supramodal brain areas, and resulting in part from the modulatory signals received from amygdala. Altogether, these fMRI and ERP results demonstrate that emotion face perception is a complex process that cannot be related to a single neural event taking place in a single brain regions, but rather implicates an interactive network with distributed activity in time and space. Moreover, although traditional models in cognitive neuropsychology have often considered that facial expression and facial identity are processed along two separate pathways, evidence from fMRI and ERPs suggests instead that emotional processing can strongly affect brain systems responsible for face recognition and memory. The functional implications of these interactions remain to be fully explored, but might play an important role in the normal development of face processing skills and in some neuropsychiatric disorders.
机译:人类的大脑成像研究表明,在几个区域中,人脸的处理受人脸的情感意义所调节,尤其是在表情恐惧的情况下,而且在凝视方向等其他社交信号中也是如此。在这里,我们回顾了血液动力学和电神经影像学结果,这些结果表明面部选择梭形皮质的活动可能会通过情绪(恐惧)表达而得到增强,而无需明确的自愿控制,并且可能是通过杏仁核的直接反馈连接。功能磁共振成像研究表明,尽管保留了对梭形的自愿注意,但同侧半球杏仁核的损害消除了梭形皮层对恐惧面孔的这些增强反应。尽管壁球损伤后注意力或意识不足,情绪增加仍然会出现,并且胆碱能刺激的药理作用相对不受其影响。杏仁核信号驱动的与恐惧相关的面部处理调制可能不仅牵涉梭状皮质,而且还牵涉枕叶皮质中较早的视觉区域(例如,V1)和参与社会,认知或躯体反应的其他远处区域(例如,颞上沟,扣带或顶叶区域)。在时域中,诱发电位显示出情绪面部感知的广泛时程,枕骨和额叶区域记录的反应幅度有所增加,相对于中性面孔(以及杏仁核和眶额叶皮层)来说,这令人恐惧,当使用颅内录音时),但刺激后发作的延迟不同。在由脸部选择性N170组件索引的完整视觉分类阶段之前,可能会在120毫秒左右出现早期情绪反应,这可能反映出基于面部原始视觉提示的快速情绪处理。其他电子成分则在以后的延迟中出现,并涉及更持续的活动,可能是在联想或超峰脑区域产生的,并且部分是由于杏仁核的调制信号所致。总的来说,这些功能磁共振成像和ERP结果表明,情绪面部感知是一个复杂的过程,不能与在单个大脑区域中发生的单个神经事件相关,而是与具有时空分布活动的交互式网络有关。而且,尽管认知神经心理学的传统模型通常认为面部表情和面部身份是通过两种不同的途径处理的,但功能磁共振成像和ERP的证据表明,情绪处理会强烈影响负责面部识别和记忆的大脑系统。这些相互作用的功能含义尚待充分探讨,但可能在面部加工技能的正常发展和某些神经精神疾病中起重要作用。

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